diff options
author | Dmitry Torokhov <dmitry.torokhov@gmail.com> | 2016-12-16 09:31:17 -0800 |
---|---|---|
committer | Dmitry Torokhov <dmitry.torokhov@gmail.com> | 2016-12-16 09:31:17 -0800 |
commit | f26e8817b235d8764363bffcc9cbfc61867371f2 (patch) | |
tree | 6546ea2cf91b78f1ada2161db61e21085c880740 /drivers/net/ethernet/qlogic/qed | |
parent | 2425f1808123bf69a8f66d4ec90e0d0e302c2613 (diff) | |
parent | ebfb0184ef560897fad35005989e82433419202c (diff) |
Merge branch 'next' into for-linus
Prepare input updates for 4.10 merge window.
Diffstat (limited to 'drivers/net/ethernet/qlogic/qed')
30 files changed, 21199 insertions, 5230 deletions
diff --git a/drivers/net/ethernet/qlogic/qed/Makefile b/drivers/net/ethernet/qlogic/qed/Makefile index 5c2fd57236fe..d1f157e439cf 100644 --- a/drivers/net/ethernet/qlogic/qed/Makefile +++ b/drivers/net/ethernet/qlogic/qed/Makefile @@ -1,4 +1,6 @@ obj-$(CONFIG_QED) := qed.o qed-y := qed_cxt.o qed_dev.o qed_hw.o qed_init_fw_funcs.o qed_init_ops.o \ - qed_int.o qed_main.o qed_mcp.o qed_sp_commands.o qed_spq.o qed_l2.o + qed_int.o qed_main.o qed_mcp.o qed_sp_commands.o qed_spq.o qed_l2.o \ + qed_selftest.o qed_dcbx.o +qed-$(CONFIG_QED_SRIOV) += qed_sriov.o qed_vf.o diff --git a/drivers/net/ethernet/qlogic/qed/qed.h b/drivers/net/ethernet/qlogic/qed/qed.h index fcb8e9ba51d9..45ab74676573 100644 --- a/drivers/net/ethernet/qlogic/qed/qed.h +++ b/drivers/net/ethernet/qlogic/qed/qed.h @@ -26,12 +26,14 @@ #include "qed_hsi.h" extern const struct qed_common_ops qed_common_ops_pass; -#define DRV_MODULE_VERSION "8.7.0.0" +#define DRV_MODULE_VERSION "8.7.1.20" #define MAX_HWFNS_PER_DEVICE (4) #define NAME_SIZE 16 #define VER_SIZE 16 +#define QED_WFQ_UNIT 100 + /* cau states */ enum qed_coalescing_mode { QED_COAL_MODE_DISABLE, @@ -74,12 +76,59 @@ struct qed_rt_data { bool *b_valid; }; +enum qed_tunn_mode { + QED_MODE_L2GENEVE_TUNN, + QED_MODE_IPGENEVE_TUNN, + QED_MODE_L2GRE_TUNN, + QED_MODE_IPGRE_TUNN, + QED_MODE_VXLAN_TUNN, +}; + +enum qed_tunn_clss { + QED_TUNN_CLSS_MAC_VLAN, + QED_TUNN_CLSS_MAC_VNI, + QED_TUNN_CLSS_INNER_MAC_VLAN, + QED_TUNN_CLSS_INNER_MAC_VNI, + MAX_QED_TUNN_CLSS, +}; + +struct qed_tunn_start_params { + unsigned long tunn_mode; + u16 vxlan_udp_port; + u16 geneve_udp_port; + u8 update_vxlan_udp_port; + u8 update_geneve_udp_port; + u8 tunn_clss_vxlan; + u8 tunn_clss_l2geneve; + u8 tunn_clss_ipgeneve; + u8 tunn_clss_l2gre; + u8 tunn_clss_ipgre; +}; + +struct qed_tunn_update_params { + unsigned long tunn_mode_update_mask; + unsigned long tunn_mode; + u16 vxlan_udp_port; + u16 geneve_udp_port; + u8 update_rx_pf_clss; + u8 update_tx_pf_clss; + u8 update_vxlan_udp_port; + u8 update_geneve_udp_port; + u8 tunn_clss_vxlan; + u8 tunn_clss_l2geneve; + u8 tunn_clss_ipgeneve; + u8 tunn_clss_l2gre; + u8 tunn_clss_ipgre; +}; + /* The PCI personality is not quite synonymous to protocol ID: * 1. All personalities need CORE connections * 2. The Ethernet personality may support also the RoCE protocol */ enum qed_pci_personality { QED_PCI_ETH, + QED_PCI_ISCSI, + QED_PCI_ETH_ROCE, QED_PCI_DEFAULT /* default in shmem */ }; @@ -105,6 +154,7 @@ enum QED_RESOURCES { enum QED_FEATURE { QED_PF_L2_QUE, + QED_VF, QED_MAX_FEATURES, }; @@ -122,6 +172,8 @@ enum QED_PORT_MODE { enum qed_dev_cap { QED_DEV_CAP_ETH, + QED_DEV_CAP_ISCSI, + QED_DEV_CAP_ROCE, }; struct qed_hw_info { @@ -135,6 +187,8 @@ struct qed_hw_info { #define RESC_START(_p_hwfn, resc) ((_p_hwfn)->hw_info.resc_start[resc]) #define RESC_NUM(_p_hwfn, resc) ((_p_hwfn)->hw_info.resc_num[resc]) +#define RESC_END(_p_hwfn, resc) (RESC_START(_p_hwfn, resc) + \ + RESC_NUM(_p_hwfn, resc)) #define FEAT_NUM(_p_hwfn, resc) ((_p_hwfn)->hw_info.feat_num[resc]) u8 num_tc; @@ -192,6 +246,12 @@ struct qed_dmae_info { struct dmae_cmd *p_dmae_cmd; }; +struct qed_wfq_data { + /* when feature is configured for at least 1 vport */ + u32 min_speed; + bool configured; +}; + struct qed_qm_info { struct init_qm_pq_params *qm_pq_params; struct init_qm_vport_params *qm_vport_params; @@ -201,6 +261,7 @@ struct qed_qm_info { u8 pure_lb_pq; u8 offload_pq; u8 pure_ack_pq; + u8 ooo_pq; u8 vf_queues_offset; u16 num_pqs; u16 num_vf_pqs; @@ -212,6 +273,8 @@ struct qed_qm_info { bool vport_wfq_en; u8 pf_wfq; u32 pf_rl; + struct qed_wfq_data *wfq_data; + u8 num_pf_rls; }; struct storm_stats { @@ -256,6 +319,9 @@ struct qed_hwfn { bool first_on_engine; bool hw_init_done; + u8 num_funcs_on_engine; + u8 enabled_func_idx; + /* BAR access */ void __iomem *regview; void __iomem *doorbells; @@ -293,6 +359,9 @@ struct qed_hwfn { /* Protocol related */ struct qed_pf_params pf_params; + bool b_rdma_enabled_in_prs; + u32 rdma_prs_search_reg; + /* Array of sb_info of all status blocks */ struct qed_sb_info *sbs_info[MAX_SB_PER_PF_MIMD]; u16 num_sbs; @@ -306,8 +375,12 @@ struct qed_hwfn { /* True if the driver requests for the link */ bool b_drv_link_init; + struct qed_vf_iov *vf_iov_info; + struct qed_pf_iov *pf_iov_info; struct qed_mcp_info *mcp_info; + struct qed_dcbx_info *p_dcbx_info; + struct qed_hw_cid_data *p_tx_cids; struct qed_hw_cid_data *p_rx_cids; @@ -322,6 +395,12 @@ struct qed_hwfn { struct qed_simd_fp_handler simd_proto_handler[64]; +#ifdef CONFIG_QED_SRIOV + struct workqueue_struct *iov_wq; + struct delayed_work iov_task; + unsigned long iov_task_flags; +#endif + struct z_stream_s *stream; }; @@ -410,8 +489,8 @@ struct qed_dev { u32 int_mode; enum qed_coalescing_mode int_coalescing_mode; - u8 rx_coalesce_usecs; - u8 tx_coalesce_usecs; + u16 rx_coalesce_usecs; + u16 tx_coalesce_usecs; /* Start Bar offset of first hwfn */ void __iomem *regview; @@ -430,6 +509,13 @@ struct qed_dev { u8 num_hwfns; struct qed_hwfn hwfns[MAX_HWFNS_PER_DEVICE]; + /* SRIOV */ + struct qed_hw_sriov_info *p_iov_info; +#define IS_QED_SRIOV(cdev) (!!(cdev)->p_iov_info) + + unsigned long tunn_mode; + + bool b_is_vf; u32 drv_type; struct qed_eth_stats *reset_stats; @@ -459,6 +545,8 @@ struct qed_dev { const struct firmware *firmware; }; +#define NUM_OF_VFS(dev) MAX_NUM_VFS_BB +#define NUM_OF_L2_QUEUES(dev) MAX_NUM_L2_QUEUES_BB #define NUM_OF_SBS(dev) MAX_SB_PER_PATH_BB #define NUM_OF_ENG_PFS(dev) MAX_NUM_PFS_BB @@ -473,13 +561,27 @@ struct qed_dev { static inline u8 qed_concrete_to_sw_fid(struct qed_dev *cdev, u32 concrete_fid) { + u8 vfid = GET_FIELD(concrete_fid, PXP_CONCRETE_FID_VFID); u8 pfid = GET_FIELD(concrete_fid, PXP_CONCRETE_FID_PFID); + u8 vf_valid = GET_FIELD(concrete_fid, + PXP_CONCRETE_FID_VFVALID); + u8 sw_fid; + + if (vf_valid) + sw_fid = vfid + MAX_NUM_PFS; + else + sw_fid = pfid; - return pfid; + return sw_fid; } #define PURE_LB_TC 8 +#define OOO_LB_TC 9 +int qed_configure_vport_wfq(struct qed_dev *cdev, u16 vp_id, u32 rate); +void qed_configure_vp_wfq_on_link_change(struct qed_dev *cdev, u32 min_pf_rate); + +void qed_clean_wfq_db(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt); #define QED_LEADING_HWFN(dev) (&dev->hwfns[0]) /* Other Linux specific common definitions */ @@ -507,6 +609,4 @@ u32 qed_unzip_data(struct qed_hwfn *p_hwfn, int qed_slowpath_irq_req(struct qed_hwfn *hwfn); -#define QED_ETH_INTERFACE_VERSION 300 - #endif /* _QED_H */ diff --git a/drivers/net/ethernet/qlogic/qed/qed_cxt.c b/drivers/net/ethernet/qlogic/qed/qed_cxt.c index fc767c07a264..1c35f376143e 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_cxt.c +++ b/drivers/net/ethernet/qlogic/qed/qed_cxt.c @@ -24,11 +24,13 @@ #include "qed_hw.h" #include "qed_init_ops.h" #include "qed_reg_addr.h" +#include "qed_sriov.h" /* Max number of connection types in HW (DQ/CDU etc.) */ #define MAX_CONN_TYPES PROTOCOLID_COMMON #define NUM_TASK_TYPES 2 #define NUM_TASK_PF_SEGMENTS 4 +#define NUM_TASK_VF_SEGMENTS 1 /* QM constants */ #define QM_PQ_ELEMENT_SIZE 4 /* in bytes */ @@ -37,6 +39,14 @@ #define DQ_RANGE_SHIFT 4 #define DQ_RANGE_ALIGN BIT(DQ_RANGE_SHIFT) +/* Searcher constants */ +#define SRC_MIN_NUM_ELEMS 256 + +/* Timers constants */ +#define TM_SHIFT 7 +#define TM_ALIGN BIT(TM_SHIFT) +#define TM_ELEM_SIZE 4 + /* ILT constants */ #define ILT_DEFAULT_HW_P_SIZE 3 #define ILT_PAGE_IN_BYTES(hw_p_size) (1U << ((hw_p_size) + 12)) @@ -54,24 +64,71 @@ union conn_context { struct core_conn_context core_ctx; struct eth_conn_context eth_ctx; + struct iscsi_conn_context iscsi_ctx; + struct roce_conn_context roce_ctx; +}; + +/* TYPE-0 task context - iSCSI */ +union type0_task_context { + struct iscsi_task_context iscsi_ctx; +}; + +/* TYPE-1 task context - ROCE */ +union type1_task_context { + struct rdma_task_context roce_ctx; +}; + +struct src_ent { + u8 opaque[56]; + u64 next; }; +#define CDUT_SEG_ALIGNMET 3 /* in 4k chunks */ +#define CDUT_SEG_ALIGNMET_IN_BYTES (1 << (CDUT_SEG_ALIGNMET + 12)) + #define CONN_CXT_SIZE(p_hwfn) \ ALIGNED_TYPE_SIZE(union conn_context, p_hwfn) +#define SRQ_CXT_SIZE (sizeof(struct rdma_srq_context)) + +#define TYPE0_TASK_CXT_SIZE(p_hwfn) \ + ALIGNED_TYPE_SIZE(union type0_task_context, p_hwfn) + +/* Alignment is inherent to the type1_task_context structure */ +#define TYPE1_TASK_CXT_SIZE(p_hwfn) sizeof(union type1_task_context) + /* PF per protocl configuration object */ +#define TASK_SEGMENTS (NUM_TASK_PF_SEGMENTS + NUM_TASK_VF_SEGMENTS) +#define TASK_SEGMENT_VF (NUM_TASK_PF_SEGMENTS) + +struct qed_tid_seg { + u32 count; + u8 type; + bool has_fl_mem; +}; + struct qed_conn_type_cfg { u32 cid_count; u32 cid_start; + u32 cids_per_vf; + struct qed_tid_seg tid_seg[TASK_SEGMENTS]; }; /* ILT Client configuration, Per connection type (protocol) resources. */ #define ILT_CLI_PF_BLOCKS (1 + NUM_TASK_PF_SEGMENTS * 2) +#define ILT_CLI_VF_BLOCKS (1 + NUM_TASK_VF_SEGMENTS * 2) #define CDUC_BLK (0) +#define SRQ_BLK (0) +#define CDUT_SEG_BLK(n) (1 + (u8)(n)) +#define CDUT_FL_SEG_BLK(n, X) (1 + (n) + NUM_TASK_ ## X ## _SEGMENTS) enum ilt_clients { ILT_CLI_CDUC, + ILT_CLI_CDUT, ILT_CLI_QM, + ILT_CLI_TM, + ILT_CLI_SRC, + ILT_CLI_TSDM, ILT_CLI_MAX }; @@ -84,6 +141,7 @@ struct qed_ilt_cli_blk { u32 total_size; /* 0 means not active */ u32 real_size_in_page; u32 start_line; + u32 dynamic_line_cnt; }; struct qed_ilt_client_cfg { @@ -97,6 +155,10 @@ struct qed_ilt_client_cfg { /* ILT client blocks for PF */ struct qed_ilt_cli_blk pf_blks[ILT_CLI_PF_BLOCKS]; u32 pf_total_lines; + + /* ILT client blocks for VFs */ + struct qed_ilt_cli_blk vf_blks[ILT_CLI_VF_BLOCKS]; + u32 vf_total_lines; }; /* Per Path - @@ -123,45 +185,237 @@ struct qed_cxt_mngr { /* computed ILT structure */ struct qed_ilt_client_cfg clients[ILT_CLI_MAX]; + /* Task type sizes */ + u32 task_type_size[NUM_TASK_TYPES]; + + /* total number of VFs for this hwfn - + * ALL VFs are symmetric in terms of HW resources + */ + u32 vf_count; + + /* total number of SRQ's for this hwfn */ + u32 srq_count; + /* Acquired CIDs */ struct qed_cid_acquired_map acquired[MAX_CONN_TYPES]; /* ILT shadow table */ struct qed_dma_mem *ilt_shadow; u32 pf_start_line; + + /* Mutex for a dynamic ILT allocation */ + struct mutex mutex; + + /* SRC T2 */ + struct qed_dma_mem *t2; + u32 t2_num_pages; + u64 first_free; + u64 last_free; }; +static bool src_proto(enum protocol_type type) +{ + return type == PROTOCOLID_ISCSI || + type == PROTOCOLID_ROCE; +} -static u32 qed_cxt_cdu_iids(struct qed_cxt_mngr *p_mngr) +static bool tm_cid_proto(enum protocol_type type) { - u32 type, pf_cids = 0; + return type == PROTOCOLID_ISCSI || + type == PROTOCOLID_ROCE; +} - for (type = 0; type < MAX_CONN_TYPES; type++) - pf_cids += p_mngr->conn_cfg[type].cid_count; +/* counts the iids for the CDU/CDUC ILT client configuration */ +struct qed_cdu_iids { + u32 pf_cids; + u32 per_vf_cids; +}; - return pf_cids; +static void qed_cxt_cdu_iids(struct qed_cxt_mngr *p_mngr, + struct qed_cdu_iids *iids) +{ + u32 type; + + for (type = 0; type < MAX_CONN_TYPES; type++) { + iids->pf_cids += p_mngr->conn_cfg[type].cid_count; + iids->per_vf_cids += p_mngr->conn_cfg[type].cids_per_vf; + } +} + +/* counts the iids for the Searcher block configuration */ +struct qed_src_iids { + u32 pf_cids; + u32 per_vf_cids; +}; + +static void qed_cxt_src_iids(struct qed_cxt_mngr *p_mngr, + struct qed_src_iids *iids) +{ + u32 i; + + for (i = 0; i < MAX_CONN_TYPES; i++) { + if (!src_proto(i)) + continue; + + iids->pf_cids += p_mngr->conn_cfg[i].cid_count; + iids->per_vf_cids += p_mngr->conn_cfg[i].cids_per_vf; + } +} + +/* counts the iids for the Timers block configuration */ +struct qed_tm_iids { + u32 pf_cids; + u32 pf_tids[NUM_TASK_PF_SEGMENTS]; /* per segment */ + u32 pf_tids_total; + u32 per_vf_cids; + u32 per_vf_tids; +}; + +static void qed_cxt_tm_iids(struct qed_cxt_mngr *p_mngr, + struct qed_tm_iids *iids) +{ + u32 i, j; + + for (i = 0; i < MAX_CONN_TYPES; i++) { + struct qed_conn_type_cfg *p_cfg = &p_mngr->conn_cfg[i]; + + if (tm_cid_proto(i)) { + iids->pf_cids += p_cfg->cid_count; + iids->per_vf_cids += p_cfg->cids_per_vf; + } + } + + iids->pf_cids = roundup(iids->pf_cids, TM_ALIGN); + iids->per_vf_cids = roundup(iids->per_vf_cids, TM_ALIGN); + iids->per_vf_tids = roundup(iids->per_vf_tids, TM_ALIGN); + + for (iids->pf_tids_total = 0, j = 0; j < NUM_TASK_PF_SEGMENTS; j++) { + iids->pf_tids[j] = roundup(iids->pf_tids[j], TM_ALIGN); + iids->pf_tids_total += iids->pf_tids[j]; + } } static void qed_cxt_qm_iids(struct qed_hwfn *p_hwfn, struct qed_qm_iids *iids) { struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; - int type; + struct qed_tid_seg *segs; + u32 vf_cids = 0, type, j; + u32 vf_tids = 0; - for (type = 0; type < MAX_CONN_TYPES; type++) + for (type = 0; type < MAX_CONN_TYPES; type++) { iids->cids += p_mngr->conn_cfg[type].cid_count; + vf_cids += p_mngr->conn_cfg[type].cids_per_vf; + + segs = p_mngr->conn_cfg[type].tid_seg; + /* for each segment there is at most one + * protocol for which count is not 0. + */ + for (j = 0; j < NUM_TASK_PF_SEGMENTS; j++) + iids->tids += segs[j].count; + + /* The last array elelment is for the VFs. As for PF + * segments there can be only one protocol for + * which this value is not 0. + */ + vf_tids += segs[NUM_TASK_PF_SEGMENTS].count; + } + + iids->vf_cids += vf_cids * p_mngr->vf_count; + iids->tids += vf_tids * p_mngr->vf_count; + + DP_VERBOSE(p_hwfn, QED_MSG_ILT, + "iids: CIDS %08x vf_cids %08x tids %08x vf_tids %08x\n", + iids->cids, iids->vf_cids, iids->tids, vf_tids); +} + +static struct qed_tid_seg *qed_cxt_tid_seg_info(struct qed_hwfn *p_hwfn, + u32 seg) +{ + struct qed_cxt_mngr *p_cfg = p_hwfn->p_cxt_mngr; + u32 i; - DP_VERBOSE(p_hwfn, QED_MSG_ILT, "iids: CIDS %08x\n", iids->cids); + /* Find the protocol with tid count > 0 for this segment. + * Note: there can only be one and this is already validated. + */ + for (i = 0; i < MAX_CONN_TYPES; i++) + if (p_cfg->conn_cfg[i].tid_seg[seg].count) + return &p_cfg->conn_cfg[i].tid_seg[seg]; + return NULL; +} + +void qed_cxt_set_srq_count(struct qed_hwfn *p_hwfn, u32 num_srqs) +{ + struct qed_cxt_mngr *p_mgr = p_hwfn->p_cxt_mngr; + + p_mgr->srq_count = num_srqs; +} + +u32 qed_cxt_get_srq_count(struct qed_hwfn *p_hwfn) +{ + struct qed_cxt_mngr *p_mgr = p_hwfn->p_cxt_mngr; + + return p_mgr->srq_count; } /* set the iids count per protocol */ static void qed_cxt_set_proto_cid_count(struct qed_hwfn *p_hwfn, enum protocol_type type, - u32 cid_count) + u32 cid_count, u32 vf_cid_cnt) { struct qed_cxt_mngr *p_mgr = p_hwfn->p_cxt_mngr; struct qed_conn_type_cfg *p_conn = &p_mgr->conn_cfg[type]; p_conn->cid_count = roundup(cid_count, DQ_RANGE_ALIGN); + p_conn->cids_per_vf = roundup(vf_cid_cnt, DQ_RANGE_ALIGN); + + if (type == PROTOCOLID_ROCE) { + u32 page_sz = p_mgr->clients[ILT_CLI_CDUC].p_size.val; + u32 cxt_size = CONN_CXT_SIZE(p_hwfn); + u32 elems_per_page = ILT_PAGE_IN_BYTES(page_sz) / cxt_size; + + p_conn->cid_count = roundup(p_conn->cid_count, elems_per_page); + } +} + +u32 qed_cxt_get_proto_cid_count(struct qed_hwfn *p_hwfn, + enum protocol_type type, + u32 *vf_cid) +{ + if (vf_cid) + *vf_cid = p_hwfn->p_cxt_mngr->conn_cfg[type].cids_per_vf; + + return p_hwfn->p_cxt_mngr->conn_cfg[type].cid_count; +} + +u32 qed_cxt_get_proto_cid_start(struct qed_hwfn *p_hwfn, + enum protocol_type type) +{ + return p_hwfn->p_cxt_mngr->acquired[type].start_cid; +} + +u32 qed_cxt_get_proto_tid_count(struct qed_hwfn *p_hwfn, + enum protocol_type type) +{ + u32 cnt = 0; + int i; + + for (i = 0; i < TASK_SEGMENTS; i++) + cnt += p_hwfn->p_cxt_mngr->conn_cfg[type].tid_seg[i].count; + + return cnt; +} + +static void +qed_cxt_set_proto_tid_count(struct qed_hwfn *p_hwfn, + enum protocol_type proto, + u8 seg, u8 seg_type, u32 count, bool has_fl) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + struct qed_tid_seg *p_seg = &p_mngr->conn_cfg[proto].tid_seg[seg]; + + p_seg->count = count; + p_seg->has_fl_mem = has_fl; + p_seg->type = seg_type; } static void qed_ilt_cli_blk_fill(struct qed_ilt_client_cfg *p_cli, @@ -205,15 +459,42 @@ static void qed_ilt_cli_adv_line(struct qed_hwfn *p_hwfn, p_blk->real_size_in_page, p_blk->start_line); } +static u32 qed_ilt_get_dynamic_line_cnt(struct qed_hwfn *p_hwfn, + enum ilt_clients ilt_client) +{ + u32 cid_count = p_hwfn->p_cxt_mngr->conn_cfg[PROTOCOLID_ROCE].cid_count; + struct qed_ilt_client_cfg *p_cli; + u32 lines_to_skip = 0; + u32 cxts_per_p; + + if (ilt_client == ILT_CLI_CDUC) { + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUC]; + + cxts_per_p = ILT_PAGE_IN_BYTES(p_cli->p_size.val) / + (u32) CONN_CXT_SIZE(p_hwfn); + + lines_to_skip = cid_count / cxts_per_p; + } + + return lines_to_skip; +} + int qed_cxt_cfg_ilt_compute(struct qed_hwfn *p_hwfn) { struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + u32 curr_line, total, i, task_size, line; struct qed_ilt_client_cfg *p_cli; struct qed_ilt_cli_blk *p_blk; - u32 curr_line, total, pf_cids; + struct qed_cdu_iids cdu_iids; + struct qed_src_iids src_iids; struct qed_qm_iids qm_iids; + struct qed_tm_iids tm_iids; + struct qed_tid_seg *p_seg; memset(&qm_iids, 0, sizeof(qm_iids)); + memset(&cdu_iids, 0, sizeof(cdu_iids)); + memset(&src_iids, 0, sizeof(src_iids)); + memset(&tm_iids, 0, sizeof(tm_iids)); p_mngr->pf_start_line = RESC_START(p_hwfn, QED_ILT); @@ -224,14 +505,16 @@ int qed_cxt_cfg_ilt_compute(struct qed_hwfn *p_hwfn) /* CDUC */ p_cli = &p_mngr->clients[ILT_CLI_CDUC]; curr_line = p_mngr->pf_start_line; + + /* CDUC PF */ p_cli->pf_total_lines = 0; /* get the counters for the CDUC and QM clients */ - pf_cids = qed_cxt_cdu_iids(p_mngr); + qed_cxt_cdu_iids(p_mngr, &cdu_iids); p_blk = &p_cli->pf_blks[CDUC_BLK]; - total = pf_cids * CONN_CXT_SIZE(p_hwfn); + total = cdu_iids.pf_cids * CONN_CXT_SIZE(p_hwfn); qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, total, CONN_CXT_SIZE(p_hwfn)); @@ -239,17 +522,146 @@ int qed_cxt_cfg_ilt_compute(struct qed_hwfn *p_hwfn) qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, ILT_CLI_CDUC); p_cli->pf_total_lines = curr_line - p_blk->start_line; + p_blk->dynamic_line_cnt = qed_ilt_get_dynamic_line_cnt(p_hwfn, + ILT_CLI_CDUC); + + /* CDUC VF */ + p_blk = &p_cli->vf_blks[CDUC_BLK]; + total = cdu_iids.per_vf_cids * CONN_CXT_SIZE(p_hwfn); + + qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, + total, CONN_CXT_SIZE(p_hwfn)); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, ILT_CLI_CDUC); + p_cli->vf_total_lines = curr_line - p_blk->start_line; + + for (i = 1; i < p_mngr->vf_count; i++) + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUC); + + /* CDUT PF */ + p_cli = &p_mngr->clients[ILT_CLI_CDUT]; + p_cli->first.val = curr_line; + + /* first the 'working' task memory */ + for (i = 0; i < NUM_TASK_PF_SEGMENTS; i++) { + p_seg = qed_cxt_tid_seg_info(p_hwfn, i); + if (!p_seg || p_seg->count == 0) + continue; + + p_blk = &p_cli->pf_blks[CDUT_SEG_BLK(i)]; + total = p_seg->count * p_mngr->task_type_size[p_seg->type]; + qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, total, + p_mngr->task_type_size[p_seg->type]); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUT); + } + + /* next the 'init' task memory (forced load memory) */ + for (i = 0; i < NUM_TASK_PF_SEGMENTS; i++) { + p_seg = qed_cxt_tid_seg_info(p_hwfn, i); + if (!p_seg || p_seg->count == 0) + continue; + + p_blk = &p_cli->pf_blks[CDUT_FL_SEG_BLK(i, PF)]; + + if (!p_seg->has_fl_mem) { + /* The segment is active (total size pf 'working' + * memory is > 0) but has no FL (forced-load, Init) + * memory. Thus: + * + * 1. The total-size in the corrsponding FL block of + * the ILT client is set to 0 - No ILT line are + * provisioned and no ILT memory allocated. + * + * 2. The start-line of said block is set to the + * start line of the matching working memory + * block in the ILT client. This is later used to + * configure the CDU segment offset registers and + * results in an FL command for TIDs of this + * segement behaves as regular load commands + * (loading TIDs from the working memory). + */ + line = p_cli->pf_blks[CDUT_SEG_BLK(i)].start_line; + + qed_ilt_cli_blk_fill(p_cli, p_blk, line, 0, 0); + continue; + } + total = p_seg->count * p_mngr->task_type_size[p_seg->type]; + + qed_ilt_cli_blk_fill(p_cli, p_blk, + curr_line, total, + p_mngr->task_type_size[p_seg->type]); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUT); + } + p_cli->pf_total_lines = curr_line - p_cli->pf_blks[0].start_line; + + /* CDUT VF */ + p_seg = qed_cxt_tid_seg_info(p_hwfn, TASK_SEGMENT_VF); + if (p_seg && p_seg->count) { + /* Stricly speaking we need to iterate over all VF + * task segment types, but a VF has only 1 segment + */ + + /* 'working' memory */ + total = p_seg->count * p_mngr->task_type_size[p_seg->type]; + + p_blk = &p_cli->vf_blks[CDUT_SEG_BLK(0)]; + qed_ilt_cli_blk_fill(p_cli, p_blk, + curr_line, total, + p_mngr->task_type_size[p_seg->type]); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUT); + + /* 'init' memory */ + p_blk = &p_cli->vf_blks[CDUT_FL_SEG_BLK(0, VF)]; + if (!p_seg->has_fl_mem) { + /* see comment above */ + line = p_cli->vf_blks[CDUT_SEG_BLK(0)].start_line; + qed_ilt_cli_blk_fill(p_cli, p_blk, line, 0, 0); + } else { + task_size = p_mngr->task_type_size[p_seg->type]; + qed_ilt_cli_blk_fill(p_cli, p_blk, + curr_line, total, task_size); + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUT); + } + p_cli->vf_total_lines = curr_line - + p_cli->vf_blks[0].start_line; + + /* Now for the rest of the VFs */ + for (i = 1; i < p_mngr->vf_count; i++) { + p_blk = &p_cli->vf_blks[CDUT_SEG_BLK(0)]; + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUT); + + p_blk = &p_cli->vf_blks[CDUT_FL_SEG_BLK(0, VF)]; + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_CDUT); + } + } + /* QM */ p_cli = &p_mngr->clients[ILT_CLI_QM]; p_blk = &p_cli->pf_blks[0]; qed_cxt_qm_iids(p_hwfn, &qm_iids); - total = qed_qm_pf_mem_size(p_hwfn->rel_pf_id, qm_iids.cids, 0, 0, - p_hwfn->qm_info.num_pqs, 0); - - DP_VERBOSE(p_hwfn, QED_MSG_ILT, - "QM ILT Info, (cids=%d, num_pqs=%d, memory_size=%d)\n", - qm_iids.cids, p_hwfn->qm_info.num_pqs, total); + total = qed_qm_pf_mem_size(p_hwfn->rel_pf_id, qm_iids.cids, + qm_iids.vf_cids, qm_iids.tids, + p_hwfn->qm_info.num_pqs, + p_hwfn->qm_info.num_vf_pqs); + + DP_VERBOSE(p_hwfn, + QED_MSG_ILT, + "QM ILT Info, (cids=%d, vf_cids=%d, tids=%d, num_pqs=%d, num_vf_pqs=%d, memory_size=%d)\n", + qm_iids.cids, + qm_iids.vf_cids, + qm_iids.tids, + p_hwfn->qm_info.num_pqs, p_hwfn->qm_info.num_vf_pqs, total); qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, total * 0x1000, @@ -258,6 +670,75 @@ int qed_cxt_cfg_ilt_compute(struct qed_hwfn *p_hwfn) qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, ILT_CLI_QM); p_cli->pf_total_lines = curr_line - p_blk->start_line; + /* SRC */ + p_cli = &p_mngr->clients[ILT_CLI_SRC]; + qed_cxt_src_iids(p_mngr, &src_iids); + + /* Both the PF and VFs searcher connections are stored in the per PF + * database. Thus sum the PF searcher cids and all the VFs searcher + * cids. + */ + total = src_iids.pf_cids + src_iids.per_vf_cids * p_mngr->vf_count; + if (total) { + u32 local_max = max_t(u32, total, + SRC_MIN_NUM_ELEMS); + + total = roundup_pow_of_two(local_max); + + p_blk = &p_cli->pf_blks[0]; + qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, + total * sizeof(struct src_ent), + sizeof(struct src_ent)); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_SRC); + p_cli->pf_total_lines = curr_line - p_blk->start_line; + } + + /* TM PF */ + p_cli = &p_mngr->clients[ILT_CLI_TM]; + qed_cxt_tm_iids(p_mngr, &tm_iids); + total = tm_iids.pf_cids + tm_iids.pf_tids_total; + if (total) { + p_blk = &p_cli->pf_blks[0]; + qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, + total * TM_ELEM_SIZE, TM_ELEM_SIZE); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_TM); + p_cli->pf_total_lines = curr_line - p_blk->start_line; + } + + /* TM VF */ + total = tm_iids.per_vf_cids + tm_iids.per_vf_tids; + if (total) { + p_blk = &p_cli->vf_blks[0]; + qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, + total * TM_ELEM_SIZE, TM_ELEM_SIZE); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_TM); + p_cli->pf_total_lines = curr_line - p_blk->start_line; + + for (i = 1; i < p_mngr->vf_count; i++) + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_TM); + } + + /* TSDM (SRQ CONTEXT) */ + total = qed_cxt_get_srq_count(p_hwfn); + + if (total) { + p_cli = &p_mngr->clients[ILT_CLI_TSDM]; + p_blk = &p_cli->pf_blks[SRQ_BLK]; + qed_ilt_cli_blk_fill(p_cli, p_blk, curr_line, + total * SRQ_CXT_SIZE, SRQ_CXT_SIZE); + + qed_ilt_cli_adv_line(p_hwfn, p_cli, p_blk, &curr_line, + ILT_CLI_TSDM); + p_cli->pf_total_lines = curr_line - p_blk->start_line; + } + if (curr_line - p_hwfn->p_cxt_mngr->pf_start_line > RESC_NUM(p_hwfn, QED_ILT)) { DP_ERR(p_hwfn, "too many ilt lines...#lines=%d\n", @@ -268,8 +749,122 @@ int qed_cxt_cfg_ilt_compute(struct qed_hwfn *p_hwfn) return 0; } +static void qed_cxt_src_t2_free(struct qed_hwfn *p_hwfn) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + u32 i; + + if (!p_mngr->t2) + return; + + for (i = 0; i < p_mngr->t2_num_pages; i++) + if (p_mngr->t2[i].p_virt) + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + p_mngr->t2[i].size, + p_mngr->t2[i].p_virt, + p_mngr->t2[i].p_phys); + + kfree(p_mngr->t2); + p_mngr->t2 = NULL; +} + +static int qed_cxt_src_t2_alloc(struct qed_hwfn *p_hwfn) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + u32 conn_num, total_size, ent_per_page, psz, i; + struct qed_ilt_client_cfg *p_src; + struct qed_src_iids src_iids; + struct qed_dma_mem *p_t2; + int rc; + + memset(&src_iids, 0, sizeof(src_iids)); + + /* if the SRC ILT client is inactive - there are no connection + * requiring the searcer, leave. + */ + p_src = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_SRC]; + if (!p_src->active) + return 0; + + qed_cxt_src_iids(p_mngr, &src_iids); + conn_num = src_iids.pf_cids + src_iids.per_vf_cids * p_mngr->vf_count; + total_size = conn_num * sizeof(struct src_ent); + + /* use the same page size as the SRC ILT client */ + psz = ILT_PAGE_IN_BYTES(p_src->p_size.val); + p_mngr->t2_num_pages = DIV_ROUND_UP(total_size, psz); + + /* allocate t2 */ + p_mngr->t2 = kzalloc(p_mngr->t2_num_pages * sizeof(struct qed_dma_mem), + GFP_KERNEL); + if (!p_mngr->t2) { + DP_NOTICE(p_hwfn, "Failed to allocate t2 table\n"); + rc = -ENOMEM; + goto t2_fail; + } + + /* allocate t2 pages */ + for (i = 0; i < p_mngr->t2_num_pages; i++) { + u32 size = min_t(u32, total_size, psz); + void **p_virt = &p_mngr->t2[i].p_virt; + + *p_virt = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + size, + &p_mngr->t2[i].p_phys, GFP_KERNEL); + if (!p_mngr->t2[i].p_virt) { + rc = -ENOMEM; + goto t2_fail; + } + memset(*p_virt, 0, size); + p_mngr->t2[i].size = size; + total_size -= size; + } + + /* Set the t2 pointers */ + + /* entries per page - must be a power of two */ + ent_per_page = psz / sizeof(struct src_ent); + + p_mngr->first_free = (u64) p_mngr->t2[0].p_phys; + + p_t2 = &p_mngr->t2[(conn_num - 1) / ent_per_page]; + p_mngr->last_free = (u64) p_t2->p_phys + + ((conn_num - 1) & (ent_per_page - 1)) * sizeof(struct src_ent); + + for (i = 0; i < p_mngr->t2_num_pages; i++) { + u32 ent_num = min_t(u32, + ent_per_page, + conn_num); + struct src_ent *entries = p_mngr->t2[i].p_virt; + u64 p_ent_phys = (u64) p_mngr->t2[i].p_phys, val; + u32 j; + + for (j = 0; j < ent_num - 1; j++) { + val = p_ent_phys + (j + 1) * sizeof(struct src_ent); + entries[j].next = cpu_to_be64(val); + } + + if (i < p_mngr->t2_num_pages - 1) + val = (u64) p_mngr->t2[i + 1].p_phys; + else + val = 0; + entries[j].next = cpu_to_be64(val); + + conn_num -= ent_num; + } + + return 0; + +t2_fail: + qed_cxt_src_t2_free(p_hwfn); + return rc; +} + #define for_each_ilt_valid_client(pos, clients) \ - for (pos = 0; pos < ILT_CLI_MAX; pos++) + for (pos = 0; pos < ILT_CLI_MAX; pos++) \ + if (!clients[pos].active) { \ + continue; \ + } else \ /* Total number of ILT lines used by this PF */ static u32 qed_cxt_ilt_shadow_size(struct qed_ilt_client_cfg *ilt_clients) @@ -277,12 +872,8 @@ static u32 qed_cxt_ilt_shadow_size(struct qed_ilt_client_cfg *ilt_clients) u32 size = 0; u32 i; - for_each_ilt_valid_client(i, ilt_clients) { - if (!ilt_clients[i].active) - continue; - size += (ilt_clients[i].last.val - - ilt_clients[i].first.val + 1); - } + for_each_ilt_valid_client(i, ilt_clients) + size += (ilt_clients[i].last.val - ilt_clients[i].first.val + 1); return size; } @@ -313,15 +904,22 @@ static int qed_ilt_blk_alloc(struct qed_hwfn *p_hwfn, u32 start_line_offset) { struct qed_dma_mem *ilt_shadow = p_hwfn->p_cxt_mngr->ilt_shadow; - u32 lines, line, sz_left; + u32 lines, line, sz_left, lines_to_skip = 0; + + /* Special handling for RoCE that supports dynamic allocation */ + if ((p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) && + ((ilt_client == ILT_CLI_CDUT) || ilt_client == ILT_CLI_TSDM)) + return 0; + + lines_to_skip = p_blk->dynamic_line_cnt; if (!p_blk->total_size) return 0; sz_left = p_blk->total_size; - lines = DIV_ROUND_UP(sz_left, p_blk->real_size_in_page); + lines = DIV_ROUND_UP(sz_left, p_blk->real_size_in_page) - lines_to_skip; line = p_blk->start_line + start_line_offset - - p_hwfn->p_cxt_mngr->pf_start_line; + p_hwfn->p_cxt_mngr->pf_start_line + lines_to_skip; for (; lines; lines--) { dma_addr_t p_phys; @@ -358,7 +956,7 @@ static int qed_ilt_shadow_alloc(struct qed_hwfn *p_hwfn) struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; struct qed_ilt_client_cfg *clients = p_mngr->clients; struct qed_ilt_cli_blk *p_blk; - u32 size, i, j; + u32 size, i, j, k; int rc; size = qed_cxt_ilt_shadow_size(clients); @@ -375,14 +973,22 @@ static int qed_ilt_shadow_alloc(struct qed_hwfn *p_hwfn) (u32)(size * sizeof(struct qed_dma_mem))); for_each_ilt_valid_client(i, clients) { - if (!clients[i].active) - continue; for (j = 0; j < ILT_CLI_PF_BLOCKS; j++) { p_blk = &clients[i].pf_blks[j]; rc = qed_ilt_blk_alloc(p_hwfn, p_blk, i, 0); if (rc != 0) goto ilt_shadow_fail; } + for (k = 0; k < p_mngr->vf_count; k++) { + for (j = 0; j < ILT_CLI_VF_BLOCKS; j++) { + u32 lines = clients[i].vf_total_lines * k; + + p_blk = &clients[i].vf_blks[j]; + rc = qed_ilt_blk_alloc(p_hwfn, p_blk, i, lines); + if (rc != 0) + goto ilt_shadow_fail; + } + } } return 0; @@ -445,6 +1051,7 @@ cid_map_fail: int qed_cxt_mngr_alloc(struct qed_hwfn *p_hwfn) { + struct qed_ilt_client_cfg *clients; struct qed_cxt_mngr *p_mngr; u32 i; @@ -455,18 +1062,43 @@ int qed_cxt_mngr_alloc(struct qed_hwfn *p_hwfn) } /* Initialize ILT client registers */ - p_mngr->clients[ILT_CLI_CDUC].first.reg = ILT_CFG_REG(CDUC, FIRST_ILT); - p_mngr->clients[ILT_CLI_CDUC].last.reg = ILT_CFG_REG(CDUC, LAST_ILT); - p_mngr->clients[ILT_CLI_CDUC].p_size.reg = ILT_CFG_REG(CDUC, P_SIZE); - - p_mngr->clients[ILT_CLI_QM].first.reg = ILT_CFG_REG(QM, FIRST_ILT); - p_mngr->clients[ILT_CLI_QM].last.reg = ILT_CFG_REG(QM, LAST_ILT); - p_mngr->clients[ILT_CLI_QM].p_size.reg = ILT_CFG_REG(QM, P_SIZE); - + clients = p_mngr->clients; + clients[ILT_CLI_CDUC].first.reg = ILT_CFG_REG(CDUC, FIRST_ILT); + clients[ILT_CLI_CDUC].last.reg = ILT_CFG_REG(CDUC, LAST_ILT); + clients[ILT_CLI_CDUC].p_size.reg = ILT_CFG_REG(CDUC, P_SIZE); + + clients[ILT_CLI_QM].first.reg = ILT_CFG_REG(QM, FIRST_ILT); + clients[ILT_CLI_QM].last.reg = ILT_CFG_REG(QM, LAST_ILT); + clients[ILT_CLI_QM].p_size.reg = ILT_CFG_REG(QM, P_SIZE); + + clients[ILT_CLI_TM].first.reg = ILT_CFG_REG(TM, FIRST_ILT); + clients[ILT_CLI_TM].last.reg = ILT_CFG_REG(TM, LAST_ILT); + clients[ILT_CLI_TM].p_size.reg = ILT_CFG_REG(TM, P_SIZE); + + clients[ILT_CLI_SRC].first.reg = ILT_CFG_REG(SRC, FIRST_ILT); + clients[ILT_CLI_SRC].last.reg = ILT_CFG_REG(SRC, LAST_ILT); + clients[ILT_CLI_SRC].p_size.reg = ILT_CFG_REG(SRC, P_SIZE); + + clients[ILT_CLI_CDUT].first.reg = ILT_CFG_REG(CDUT, FIRST_ILT); + clients[ILT_CLI_CDUT].last.reg = ILT_CFG_REG(CDUT, LAST_ILT); + clients[ILT_CLI_CDUT].p_size.reg = ILT_CFG_REG(CDUT, P_SIZE); + + clients[ILT_CLI_TSDM].first.reg = ILT_CFG_REG(TSDM, FIRST_ILT); + clients[ILT_CLI_TSDM].last.reg = ILT_CFG_REG(TSDM, LAST_ILT); + clients[ILT_CLI_TSDM].p_size.reg = ILT_CFG_REG(TSDM, P_SIZE); /* default ILT page size for all clients is 32K */ for (i = 0; i < ILT_CLI_MAX; i++) p_mngr->clients[i].p_size.val = ILT_DEFAULT_HW_P_SIZE; + /* Initialize task sizes */ + p_mngr->task_type_size[0] = TYPE0_TASK_CXT_SIZE(p_hwfn); + p_mngr->task_type_size[1] = TYPE1_TASK_CXT_SIZE(p_hwfn); + + if (p_hwfn->cdev->p_iov_info) + p_mngr->vf_count = p_hwfn->cdev->p_iov_info->total_vfs; + /* Initialize the dynamic ILT allocation mutex */ + mutex_init(&p_mngr->mutex); + /* Set the cxt mangr pointer priori to further allocations */ p_hwfn->p_cxt_mngr = p_mngr; @@ -484,6 +1116,13 @@ int qed_cxt_tables_alloc(struct qed_hwfn *p_hwfn) goto tables_alloc_fail; } + /* Allocate the T2 table */ + rc = qed_cxt_src_t2_alloc(p_hwfn); + if (rc) { + DP_NOTICE(p_hwfn, "Failed to allocate T2 memory\n"); + goto tables_alloc_fail; + } + /* Allocate and initialize the acquired cids bitmaps */ rc = qed_cid_map_alloc(p_hwfn); if (rc) { @@ -504,6 +1143,7 @@ void qed_cxt_mngr_free(struct qed_hwfn *p_hwfn) return; qed_cid_map_free(p_hwfn); + qed_cxt_src_t2_free(p_hwfn); qed_ilt_shadow_free(p_hwfn); kfree(p_hwfn->p_cxt_mngr); @@ -548,6 +1188,48 @@ void qed_cxt_mngr_setup(struct qed_hwfn *p_hwfn) #define CDUC_NCIB_MASK \ (CDU_REG_CID_ADDR_PARAMS_NCIB >> CDUC_NCIB_SHIFT) +#define CDUT_TYPE0_CXT_SIZE_SHIFT \ + CDU_REG_SEGMENT0_PARAMS_T0_TID_SIZE_SHIFT + +#define CDUT_TYPE0_CXT_SIZE_MASK \ + (CDU_REG_SEGMENT0_PARAMS_T0_TID_SIZE >> \ + CDUT_TYPE0_CXT_SIZE_SHIFT) + +#define CDUT_TYPE0_BLOCK_WASTE_SHIFT \ + CDU_REG_SEGMENT0_PARAMS_T0_TID_BLOCK_WASTE_SHIFT + +#define CDUT_TYPE0_BLOCK_WASTE_MASK \ + (CDU_REG_SEGMENT0_PARAMS_T0_TID_BLOCK_WASTE >> \ + CDUT_TYPE0_BLOCK_WASTE_SHIFT) + +#define CDUT_TYPE0_NCIB_SHIFT \ + CDU_REG_SEGMENT0_PARAMS_T0_NUM_TIDS_IN_BLOCK_SHIFT + +#define CDUT_TYPE0_NCIB_MASK \ + (CDU_REG_SEGMENT0_PARAMS_T0_NUM_TIDS_IN_BLOCK >> \ + CDUT_TYPE0_NCIB_SHIFT) + +#define CDUT_TYPE1_CXT_SIZE_SHIFT \ + CDU_REG_SEGMENT1_PARAMS_T1_TID_SIZE_SHIFT + +#define CDUT_TYPE1_CXT_SIZE_MASK \ + (CDU_REG_SEGMENT1_PARAMS_T1_TID_SIZE >> \ + CDUT_TYPE1_CXT_SIZE_SHIFT) + +#define CDUT_TYPE1_BLOCK_WASTE_SHIFT \ + CDU_REG_SEGMENT1_PARAMS_T1_TID_BLOCK_WASTE_SHIFT + +#define CDUT_TYPE1_BLOCK_WASTE_MASK \ + (CDU_REG_SEGMENT1_PARAMS_T1_TID_BLOCK_WASTE >> \ + CDUT_TYPE1_BLOCK_WASTE_SHIFT) + +#define CDUT_TYPE1_NCIB_SHIFT \ + CDU_REG_SEGMENT1_PARAMS_T1_NUM_TIDS_IN_BLOCK_SHIFT + +#define CDUT_TYPE1_NCIB_MASK \ + (CDU_REG_SEGMENT1_PARAMS_T1_NUM_TIDS_IN_BLOCK >> \ + CDUT_TYPE1_NCIB_SHIFT) + static void qed_cdu_init_common(struct qed_hwfn *p_hwfn) { u32 page_sz, elems_per_page, block_waste, cxt_size, cdu_params = 0; @@ -562,6 +1244,92 @@ static void qed_cdu_init_common(struct qed_hwfn *p_hwfn) SET_FIELD(cdu_params, CDUC_BLOCK_WASTE, block_waste); SET_FIELD(cdu_params, CDUC_NCIB, elems_per_page); STORE_RT_REG(p_hwfn, CDU_REG_CID_ADDR_PARAMS_RT_OFFSET, cdu_params); + + /* CDUT - type-0 tasks configuration */ + page_sz = p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUT].p_size.val; + cxt_size = p_hwfn->p_cxt_mngr->task_type_size[0]; + elems_per_page = ILT_PAGE_IN_BYTES(page_sz) / cxt_size; + block_waste = ILT_PAGE_IN_BYTES(page_sz) - elems_per_page * cxt_size; + + /* cxt size and block-waste are multipes of 8 */ + cdu_params = 0; + SET_FIELD(cdu_params, CDUT_TYPE0_CXT_SIZE, (cxt_size >> 3)); + SET_FIELD(cdu_params, CDUT_TYPE0_BLOCK_WASTE, (block_waste >> 3)); + SET_FIELD(cdu_params, CDUT_TYPE0_NCIB, elems_per_page); + STORE_RT_REG(p_hwfn, CDU_REG_SEGMENT0_PARAMS_RT_OFFSET, cdu_params); + + /* CDUT - type-1 tasks configuration */ + cxt_size = p_hwfn->p_cxt_mngr->task_type_size[1]; + elems_per_page = ILT_PAGE_IN_BYTES(page_sz) / cxt_size; + block_waste = ILT_PAGE_IN_BYTES(page_sz) - elems_per_page * cxt_size; + + /* cxt size and block-waste are multipes of 8 */ + cdu_params = 0; + SET_FIELD(cdu_params, CDUT_TYPE1_CXT_SIZE, (cxt_size >> 3)); + SET_FIELD(cdu_params, CDUT_TYPE1_BLOCK_WASTE, (block_waste >> 3)); + SET_FIELD(cdu_params, CDUT_TYPE1_NCIB, elems_per_page); + STORE_RT_REG(p_hwfn, CDU_REG_SEGMENT1_PARAMS_RT_OFFSET, cdu_params); +} + +/* CDU PF */ +#define CDU_SEG_REG_TYPE_SHIFT CDU_SEG_TYPE_OFFSET_REG_TYPE_SHIFT +#define CDU_SEG_REG_TYPE_MASK 0x1 +#define CDU_SEG_REG_OFFSET_SHIFT 0 +#define CDU_SEG_REG_OFFSET_MASK CDU_SEG_TYPE_OFFSET_REG_OFFSET_MASK + +static void qed_cdu_init_pf(struct qed_hwfn *p_hwfn) +{ + struct qed_ilt_client_cfg *p_cli; + struct qed_tid_seg *p_seg; + u32 cdu_seg_params, offset; + int i; + + static const u32 rt_type_offset_arr[] = { + CDU_REG_PF_SEG0_TYPE_OFFSET_RT_OFFSET, + CDU_REG_PF_SEG1_TYPE_OFFSET_RT_OFFSET, + CDU_REG_PF_SEG2_TYPE_OFFSET_RT_OFFSET, + CDU_REG_PF_SEG3_TYPE_OFFSET_RT_OFFSET + }; + + static const u32 rt_type_offset_fl_arr[] = { + CDU_REG_PF_FL_SEG0_TYPE_OFFSET_RT_OFFSET, + CDU_REG_PF_FL_SEG1_TYPE_OFFSET_RT_OFFSET, + CDU_REG_PF_FL_SEG2_TYPE_OFFSET_RT_OFFSET, + CDU_REG_PF_FL_SEG3_TYPE_OFFSET_RT_OFFSET + }; + + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUT]; + + /* There are initializations only for CDUT during pf Phase */ + for (i = 0; i < NUM_TASK_PF_SEGMENTS; i++) { + /* Segment 0 */ + p_seg = qed_cxt_tid_seg_info(p_hwfn, i); + if (!p_seg) + continue; + + /* Note: start_line is already adjusted for the CDU + * segment register granularity, so we just need to + * divide. Adjustment is implicit as we assume ILT + * Page size is larger than 32K! + */ + offset = (ILT_PAGE_IN_BYTES(p_cli->p_size.val) * + (p_cli->pf_blks[CDUT_SEG_BLK(i)].start_line - + p_cli->first.val)) / CDUT_SEG_ALIGNMET_IN_BYTES; + + cdu_seg_params = 0; + SET_FIELD(cdu_seg_params, CDU_SEG_REG_TYPE, p_seg->type); + SET_FIELD(cdu_seg_params, CDU_SEG_REG_OFFSET, offset); + STORE_RT_REG(p_hwfn, rt_type_offset_arr[i], cdu_seg_params); + + offset = (ILT_PAGE_IN_BYTES(p_cli->p_size.val) * + (p_cli->pf_blks[CDUT_FL_SEG_BLK(i, PF)].start_line - + p_cli->first.val)) / CDUT_SEG_ALIGNMET_IN_BYTES; + + cdu_seg_params = 0; + SET_FIELD(cdu_seg_params, CDU_SEG_REG_TYPE, p_seg->type); + SET_FIELD(cdu_seg_params, CDU_SEG_REG_OFFSET, offset); + STORE_RT_REG(p_hwfn, rt_type_offset_fl_arr[i], cdu_seg_params); + } } void qed_qm_init_pf(struct qed_hwfn *p_hwfn) @@ -579,8 +1347,10 @@ void qed_qm_init_pf(struct qed_hwfn *p_hwfn) params.max_phys_tcs_per_port = qm_info->max_phys_tcs_per_port; params.is_first_pf = p_hwfn->first_on_engine; params.num_pf_cids = iids.cids; + params.num_vf_cids = iids.vf_cids; params.start_pq = qm_info->start_pq; - params.num_pf_pqs = qm_info->num_pqs; + params.num_pf_pqs = qm_info->num_pqs - qm_info->num_vf_pqs; + params.num_vf_pqs = qm_info->num_vf_pqs; params.start_vport = qm_info->start_vport; params.num_vports = qm_info->num_vports; params.pf_wfq = qm_info->pf_wfq; @@ -610,26 +1380,55 @@ static int qed_cm_init_pf(struct qed_hwfn *p_hwfn) static void qed_dq_init_pf(struct qed_hwfn *p_hwfn) { struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; - u32 dq_pf_max_cid = 0; + u32 dq_pf_max_cid = 0, dq_vf_max_cid = 0; dq_pf_max_cid += (p_mngr->conn_cfg[0].cid_count >> DQ_RANGE_SHIFT); STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_0_RT_OFFSET, dq_pf_max_cid); + dq_vf_max_cid += (p_mngr->conn_cfg[0].cids_per_vf >> DQ_RANGE_SHIFT); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_0_RT_OFFSET, dq_vf_max_cid); + dq_pf_max_cid += (p_mngr->conn_cfg[1].cid_count >> DQ_RANGE_SHIFT); STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_1_RT_OFFSET, dq_pf_max_cid); + dq_vf_max_cid += (p_mngr->conn_cfg[1].cids_per_vf >> DQ_RANGE_SHIFT); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_1_RT_OFFSET, dq_vf_max_cid); + dq_pf_max_cid += (p_mngr->conn_cfg[2].cid_count >> DQ_RANGE_SHIFT); STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_2_RT_OFFSET, dq_pf_max_cid); + dq_vf_max_cid += (p_mngr->conn_cfg[2].cids_per_vf >> DQ_RANGE_SHIFT); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_2_RT_OFFSET, dq_vf_max_cid); + dq_pf_max_cid += (p_mngr->conn_cfg[3].cid_count >> DQ_RANGE_SHIFT); STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_3_RT_OFFSET, dq_pf_max_cid); + dq_vf_max_cid += (p_mngr->conn_cfg[3].cids_per_vf >> DQ_RANGE_SHIFT); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_3_RT_OFFSET, dq_vf_max_cid); + dq_pf_max_cid += (p_mngr->conn_cfg[4].cid_count >> DQ_RANGE_SHIFT); STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_4_RT_OFFSET, dq_pf_max_cid); - /* 5 - PF */ + dq_vf_max_cid += (p_mngr->conn_cfg[4].cids_per_vf >> DQ_RANGE_SHIFT); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_4_RT_OFFSET, dq_vf_max_cid); + dq_pf_max_cid += (p_mngr->conn_cfg[5].cid_count >> DQ_RANGE_SHIFT); STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_5_RT_OFFSET, dq_pf_max_cid); + + dq_vf_max_cid += (p_mngr->conn_cfg[5].cids_per_vf >> DQ_RANGE_SHIFT); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_5_RT_OFFSET, dq_vf_max_cid); + + /* Connection types 6 & 7 are not in use, yet they must be configured + * as the highest possible connection. Not configuring them means the + * defaults will be used, and with a large number of cids a bug may + * occur, if the defaults will be smaller than dq_pf_max_cid / + * dq_vf_max_cid. + */ + STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_6_RT_OFFSET, dq_pf_max_cid); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_6_RT_OFFSET, dq_vf_max_cid); + + STORE_RT_REG(p_hwfn, DORQ_REG_PF_MAX_ICID_7_RT_OFFSET, dq_pf_max_cid); + STORE_RT_REG(p_hwfn, DORQ_REG_VF_MAX_ICID_7_RT_OFFSET, dq_vf_max_cid); } static void qed_ilt_bounds_init(struct qed_hwfn *p_hwfn) @@ -639,20 +1438,76 @@ static void qed_ilt_bounds_init(struct qed_hwfn *p_hwfn) ilt_clients = p_hwfn->p_cxt_mngr->clients; for_each_ilt_valid_client(i, ilt_clients) { - if (!ilt_clients[i].active) - continue; STORE_RT_REG(p_hwfn, ilt_clients[i].first.reg, ilt_clients[i].first.val); STORE_RT_REG(p_hwfn, - ilt_clients[i].last.reg, - ilt_clients[i].last.val); + ilt_clients[i].last.reg, ilt_clients[i].last.val); STORE_RT_REG(p_hwfn, ilt_clients[i].p_size.reg, ilt_clients[i].p_size.val); } } +static void qed_ilt_vf_bounds_init(struct qed_hwfn *p_hwfn) +{ + struct qed_ilt_client_cfg *p_cli; + u32 blk_factor; + + /* For simplicty we set the 'block' to be an ILT page */ + if (p_hwfn->cdev->p_iov_info) { + struct qed_hw_sriov_info *p_iov = p_hwfn->cdev->p_iov_info; + + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_VF_BASE_RT_OFFSET, + p_iov->first_vf_in_pf); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_VF_LAST_ILT_RT_OFFSET, + p_iov->first_vf_in_pf + p_iov->total_vfs); + } + + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUC]; + blk_factor = ilog2(ILT_PAGE_IN_BYTES(p_cli->p_size.val) >> 10); + if (p_cli->active) { + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_CDUC_BLOCKS_FACTOR_RT_OFFSET, + blk_factor); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_CDUC_NUMBER_OF_PF_BLOCKS_RT_OFFSET, + p_cli->pf_total_lines); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_CDUC_VF_BLOCKS_RT_OFFSET, + p_cli->vf_total_lines); + } + + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUT]; + blk_factor = ilog2(ILT_PAGE_IN_BYTES(p_cli->p_size.val) >> 10); + if (p_cli->active) { + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_CDUT_BLOCKS_FACTOR_RT_OFFSET, + blk_factor); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_CDUT_NUMBER_OF_PF_BLOCKS_RT_OFFSET, + p_cli->pf_total_lines); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_CDUT_VF_BLOCKS_RT_OFFSET, + p_cli->vf_total_lines); + } + + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_TM]; + blk_factor = ilog2(ILT_PAGE_IN_BYTES(p_cli->p_size.val) >> 10); + if (p_cli->active) { + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_TM_BLOCKS_FACTOR_RT_OFFSET, blk_factor); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_TM_NUMBER_OF_PF_BLOCKS_RT_OFFSET, + p_cli->pf_total_lines); + STORE_RT_REG(p_hwfn, + PSWRQ2_REG_TM_VF_BLOCKS_RT_OFFSET, + p_cli->vf_total_lines); + } +} + /* ILT (PSWRQ2) PF */ static void qed_ilt_init_pf(struct qed_hwfn *p_hwfn) { @@ -662,15 +1517,13 @@ static void qed_ilt_init_pf(struct qed_hwfn *p_hwfn) u32 line, rt_offst, i; qed_ilt_bounds_init(p_hwfn); + qed_ilt_vf_bounds_init(p_hwfn); p_mngr = p_hwfn->p_cxt_mngr; p_shdw = p_mngr->ilt_shadow; clients = p_hwfn->p_cxt_mngr->clients; for_each_ilt_valid_client(i, clients) { - if (!clients[i].active) - continue; - /** Client's 1st val and RT array are absolute, ILT shadows' * lines are relative. */ @@ -701,6 +1554,137 @@ static void qed_ilt_init_pf(struct qed_hwfn *p_hwfn) } } +/* SRC (Searcher) PF */ +static void qed_src_init_pf(struct qed_hwfn *p_hwfn) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + u32 rounded_conn_num, conn_num, conn_max; + struct qed_src_iids src_iids; + + memset(&src_iids, 0, sizeof(src_iids)); + qed_cxt_src_iids(p_mngr, &src_iids); + conn_num = src_iids.pf_cids + src_iids.per_vf_cids * p_mngr->vf_count; + if (!conn_num) + return; + + conn_max = max_t(u32, conn_num, SRC_MIN_NUM_ELEMS); + rounded_conn_num = roundup_pow_of_two(conn_max); + + STORE_RT_REG(p_hwfn, SRC_REG_COUNTFREE_RT_OFFSET, conn_num); + STORE_RT_REG(p_hwfn, SRC_REG_NUMBER_HASH_BITS_RT_OFFSET, + ilog2(rounded_conn_num)); + + STORE_RT_REG_AGG(p_hwfn, SRC_REG_FIRSTFREE_RT_OFFSET, + p_hwfn->p_cxt_mngr->first_free); + STORE_RT_REG_AGG(p_hwfn, SRC_REG_LASTFREE_RT_OFFSET, + p_hwfn->p_cxt_mngr->last_free); +} + +/* Timers PF */ +#define TM_CFG_NUM_IDS_SHIFT 0 +#define TM_CFG_NUM_IDS_MASK 0xFFFFULL +#define TM_CFG_PRE_SCAN_OFFSET_SHIFT 16 +#define TM_CFG_PRE_SCAN_OFFSET_MASK 0x1FFULL +#define TM_CFG_PARENT_PF_SHIFT 25 +#define TM_CFG_PARENT_PF_MASK 0x7ULL + +#define TM_CFG_CID_PRE_SCAN_ROWS_SHIFT 30 +#define TM_CFG_CID_PRE_SCAN_ROWS_MASK 0x1FFULL + +#define TM_CFG_TID_OFFSET_SHIFT 30 +#define TM_CFG_TID_OFFSET_MASK 0x7FFFFULL +#define TM_CFG_TID_PRE_SCAN_ROWS_SHIFT 49 +#define TM_CFG_TID_PRE_SCAN_ROWS_MASK 0x1FFULL + +static void qed_tm_init_pf(struct qed_hwfn *p_hwfn) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + u32 active_seg_mask = 0, tm_offset, rt_reg; + struct qed_tm_iids tm_iids; + u64 cfg_word; + u8 i; + + memset(&tm_iids, 0, sizeof(tm_iids)); + qed_cxt_tm_iids(p_mngr, &tm_iids); + + /* @@@TBD No pre-scan for now */ + + /* Note: We assume consecutive VFs for a PF */ + for (i = 0; i < p_mngr->vf_count; i++) { + cfg_word = 0; + SET_FIELD(cfg_word, TM_CFG_NUM_IDS, tm_iids.per_vf_cids); + SET_FIELD(cfg_word, TM_CFG_PRE_SCAN_OFFSET, 0); + SET_FIELD(cfg_word, TM_CFG_PARENT_PF, p_hwfn->rel_pf_id); + SET_FIELD(cfg_word, TM_CFG_CID_PRE_SCAN_ROWS, 0); + rt_reg = TM_REG_CONFIG_CONN_MEM_RT_OFFSET + + (sizeof(cfg_word) / sizeof(u32)) * + (p_hwfn->cdev->p_iov_info->first_vf_in_pf + i); + STORE_RT_REG_AGG(p_hwfn, rt_reg, cfg_word); + } + + cfg_word = 0; + SET_FIELD(cfg_word, TM_CFG_NUM_IDS, tm_iids.pf_cids); + SET_FIELD(cfg_word, TM_CFG_PRE_SCAN_OFFSET, 0); + SET_FIELD(cfg_word, TM_CFG_PARENT_PF, 0); /* n/a for PF */ + SET_FIELD(cfg_word, TM_CFG_CID_PRE_SCAN_ROWS, 0); /* scan all */ + + rt_reg = TM_REG_CONFIG_CONN_MEM_RT_OFFSET + + (sizeof(cfg_word) / sizeof(u32)) * + (NUM_OF_VFS(p_hwfn->cdev) + p_hwfn->rel_pf_id); + STORE_RT_REG_AGG(p_hwfn, rt_reg, cfg_word); + + /* enale scan */ + STORE_RT_REG(p_hwfn, TM_REG_PF_ENABLE_CONN_RT_OFFSET, + tm_iids.pf_cids ? 0x1 : 0x0); + + /* @@@TBD how to enable the scan for the VFs */ + + tm_offset = tm_iids.per_vf_cids; + + /* Note: We assume consecutive VFs for a PF */ + for (i = 0; i < p_mngr->vf_count; i++) { + cfg_word = 0; + SET_FIELD(cfg_word, TM_CFG_NUM_IDS, tm_iids.per_vf_tids); + SET_FIELD(cfg_word, TM_CFG_PRE_SCAN_OFFSET, 0); + SET_FIELD(cfg_word, TM_CFG_PARENT_PF, p_hwfn->rel_pf_id); + SET_FIELD(cfg_word, TM_CFG_TID_OFFSET, tm_offset); + SET_FIELD(cfg_word, TM_CFG_TID_PRE_SCAN_ROWS, (u64) 0); + + rt_reg = TM_REG_CONFIG_TASK_MEM_RT_OFFSET + + (sizeof(cfg_word) / sizeof(u32)) * + (p_hwfn->cdev->p_iov_info->first_vf_in_pf + i); + + STORE_RT_REG_AGG(p_hwfn, rt_reg, cfg_word); + } + + tm_offset = tm_iids.pf_cids; + for (i = 0; i < NUM_TASK_PF_SEGMENTS; i++) { + cfg_word = 0; + SET_FIELD(cfg_word, TM_CFG_NUM_IDS, tm_iids.pf_tids[i]); + SET_FIELD(cfg_word, TM_CFG_PRE_SCAN_OFFSET, 0); + SET_FIELD(cfg_word, TM_CFG_PARENT_PF, 0); + SET_FIELD(cfg_word, TM_CFG_TID_OFFSET, tm_offset); + SET_FIELD(cfg_word, TM_CFG_TID_PRE_SCAN_ROWS, (u64) 0); + + rt_reg = TM_REG_CONFIG_TASK_MEM_RT_OFFSET + + (sizeof(cfg_word) / sizeof(u32)) * + (NUM_OF_VFS(p_hwfn->cdev) + + p_hwfn->rel_pf_id * NUM_TASK_PF_SEGMENTS + i); + + STORE_RT_REG_AGG(p_hwfn, rt_reg, cfg_word); + active_seg_mask |= (tm_iids.pf_tids[i] ? (1 << i) : 0); + + tm_offset += tm_iids.pf_tids[i]; + } + + if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) + active_seg_mask = 0; + + STORE_RT_REG(p_hwfn, TM_REG_PF_ENABLE_TASK_RT_OFFSET, active_seg_mask); + + /* @@@TBD how to enable the scan for the VFs */ +} + void qed_cxt_hw_init_common(struct qed_hwfn *p_hwfn) { qed_cdu_init_common(p_hwfn); @@ -711,7 +1695,10 @@ void qed_cxt_hw_init_pf(struct qed_hwfn *p_hwfn) qed_qm_init_pf(p_hwfn); qed_cm_init_pf(p_hwfn); qed_dq_init_pf(p_hwfn); + qed_cdu_init_pf(p_hwfn); qed_ilt_init_pf(p_hwfn); + qed_src_init_pf(p_hwfn); + qed_tm_init_pf(p_hwfn); } int qed_cxt_acquire_cid(struct qed_hwfn *p_hwfn, @@ -832,17 +1819,439 @@ int qed_cxt_get_cid_info(struct qed_hwfn *p_hwfn, return 0; } -int qed_cxt_set_pf_params(struct qed_hwfn *p_hwfn) +void qed_rdma_set_pf_params(struct qed_hwfn *p_hwfn, + struct qed_rdma_pf_params *p_params) { - struct qed_eth_pf_params *p_params = &p_hwfn->pf_params.eth_pf_params; + u32 num_cons, num_tasks, num_qps, num_mrs, num_srqs; + enum protocol_type proto; + + num_mrs = min_t(u32, RDMA_MAX_TIDS, p_params->num_mrs); + num_tasks = num_mrs; /* each mr uses a single task id */ + num_srqs = min_t(u32, 32 * 1024, p_params->num_srqs); + + switch (p_hwfn->hw_info.personality) { + case QED_PCI_ETH_ROCE: + num_qps = min_t(u32, ROCE_MAX_QPS, p_params->num_qps); + num_cons = num_qps * 2; /* each QP requires two connections */ + proto = PROTOCOLID_ROCE; + break; + default: + return; + } + + if (num_cons && num_tasks) { + qed_cxt_set_proto_cid_count(p_hwfn, proto, num_cons, 0); + /* Deliberatly passing ROCE for tasks id. This is because + * iWARP / RoCE share the task id. + */ + qed_cxt_set_proto_tid_count(p_hwfn, PROTOCOLID_ROCE, + QED_CXT_ROCE_TID_SEG, 1, + num_tasks, false); + qed_cxt_set_srq_count(p_hwfn, num_srqs); + } else { + DP_INFO(p_hwfn->cdev, + "RDMA personality used without setting params!\n"); + } +} + +int qed_cxt_set_pf_params(struct qed_hwfn *p_hwfn) +{ /* Set the number of required CORE connections */ u32 core_cids = 1; /* SPQ */ - qed_cxt_set_proto_cid_count(p_hwfn, PROTOCOLID_CORE, core_cids); + qed_cxt_set_proto_cid_count(p_hwfn, PROTOCOLID_CORE, core_cids, 0); + + switch (p_hwfn->hw_info.personality) { + case QED_PCI_ETH_ROCE: + { + qed_rdma_set_pf_params(p_hwfn, + &p_hwfn-> + pf_params.rdma_pf_params); + /* no need for break since RoCE coexist with Ethernet */ + } + case QED_PCI_ETH: + { + struct qed_eth_pf_params *p_params = + &p_hwfn->pf_params.eth_pf_params; + + qed_cxt_set_proto_cid_count(p_hwfn, PROTOCOLID_ETH, + p_params->num_cons, 1); + break; + } + case QED_PCI_ISCSI: + { + struct qed_iscsi_pf_params *p_params; + + p_params = &p_hwfn->pf_params.iscsi_pf_params; + + if (p_params->num_cons && p_params->num_tasks) { + qed_cxt_set_proto_cid_count(p_hwfn, + PROTOCOLID_ISCSI, + p_params->num_cons, + 0); + + qed_cxt_set_proto_tid_count(p_hwfn, + PROTOCOLID_ISCSI, + QED_CXT_ISCSI_TID_SEG, + 0, + p_params->num_tasks, + true); + } else { + DP_INFO(p_hwfn->cdev, + "Iscsi personality used without setting params!\n"); + } + break; + } + default: + return -EINVAL; + } + + return 0; +} + +int qed_cxt_get_tid_mem_info(struct qed_hwfn *p_hwfn, + struct qed_tid_mem *p_info) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + u32 proto, seg, total_lines, i, shadow_line; + struct qed_ilt_client_cfg *p_cli; + struct qed_ilt_cli_blk *p_fl_seg; + struct qed_tid_seg *p_seg_info; + + /* Verify the personality */ + switch (p_hwfn->hw_info.personality) { + case QED_PCI_ISCSI: + proto = PROTOCOLID_ISCSI; + seg = QED_CXT_ISCSI_TID_SEG; + break; + default: + return -EINVAL; + } + + p_cli = &p_mngr->clients[ILT_CLI_CDUT]; + if (!p_cli->active) + return -EINVAL; + + p_seg_info = &p_mngr->conn_cfg[proto].tid_seg[seg]; + if (!p_seg_info->has_fl_mem) + return -EINVAL; + + p_fl_seg = &p_cli->pf_blks[CDUT_FL_SEG_BLK(seg, PF)]; + total_lines = DIV_ROUND_UP(p_fl_seg->total_size, + p_fl_seg->real_size_in_page); + + for (i = 0; i < total_lines; i++) { + shadow_line = i + p_fl_seg->start_line - + p_hwfn->p_cxt_mngr->pf_start_line; + p_info->blocks[i] = p_mngr->ilt_shadow[shadow_line].p_virt; + } + p_info->waste = ILT_PAGE_IN_BYTES(p_cli->p_size.val) - + p_fl_seg->real_size_in_page; + p_info->tid_size = p_mngr->task_type_size[p_seg_info->type]; + p_info->num_tids_per_block = p_fl_seg->real_size_in_page / + p_info->tid_size; + + return 0; +} + +/* This function is very RoCE oriented, if another protocol in the future + * will want this feature we'll need to modify the function to be more generic + */ +int +qed_cxt_dynamic_ilt_alloc(struct qed_hwfn *p_hwfn, + enum qed_cxt_elem_type elem_type, u32 iid) +{ + u32 reg_offset, shadow_line, elem_size, hw_p_size, elems_per_p, line; + struct qed_ilt_client_cfg *p_cli; + struct qed_ilt_cli_blk *p_blk; + struct qed_ptt *p_ptt; + dma_addr_t p_phys; + u64 ilt_hw_entry; + void *p_virt; + int rc = 0; + + switch (elem_type) { + case QED_ELEM_CXT: + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUC]; + elem_size = CONN_CXT_SIZE(p_hwfn); + p_blk = &p_cli->pf_blks[CDUC_BLK]; + break; + case QED_ELEM_SRQ: + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_TSDM]; + elem_size = SRQ_CXT_SIZE; + p_blk = &p_cli->pf_blks[SRQ_BLK]; + break; + case QED_ELEM_TASK: + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUT]; + elem_size = TYPE1_TASK_CXT_SIZE(p_hwfn); + p_blk = &p_cli->pf_blks[CDUT_SEG_BLK(QED_CXT_ROCE_TID_SEG)]; + break; + default: + DP_NOTICE(p_hwfn, "-EINVALID elem type = %d", elem_type); + return -EINVAL; + } + + /* Calculate line in ilt */ + hw_p_size = p_cli->p_size.val; + elems_per_p = ILT_PAGE_IN_BYTES(hw_p_size) / elem_size; + line = p_blk->start_line + (iid / elems_per_p); + shadow_line = line - p_hwfn->p_cxt_mngr->pf_start_line; + + /* If line is already allocated, do nothing, otherwise allocate it and + * write it to the PSWRQ2 registers. + * This section can be run in parallel from different contexts and thus + * a mutex protection is needed. + */ + + mutex_lock(&p_hwfn->p_cxt_mngr->mutex); + + if (p_hwfn->p_cxt_mngr->ilt_shadow[shadow_line].p_virt) + goto out0; + + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) { + DP_NOTICE(p_hwfn, + "QED_TIME_OUT on ptt acquire - dynamic allocation"); + rc = -EBUSY; + goto out0; + } + + p_virt = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + p_blk->real_size_in_page, + &p_phys, GFP_KERNEL); + if (!p_virt) { + rc = -ENOMEM; + goto out1; + } + memset(p_virt, 0, p_blk->real_size_in_page); + + /* configuration of refTagMask to 0xF is required for RoCE DIF MR only, + * to compensate for a HW bug, but it is configured even if DIF is not + * enabled. This is harmless and allows us to avoid a dedicated API. We + * configure the field for all of the contexts on the newly allocated + * page. + */ + if (elem_type == QED_ELEM_TASK) { + u32 elem_i; + u8 *elem_start = (u8 *)p_virt; + union type1_task_context *elem; + + for (elem_i = 0; elem_i < elems_per_p; elem_i++) { + elem = (union type1_task_context *)elem_start; + SET_FIELD(elem->roce_ctx.tdif_context.flags1, + TDIF_TASK_CONTEXT_REFTAGMASK, 0xf); + elem_start += TYPE1_TASK_CXT_SIZE(p_hwfn); + } + } + + p_hwfn->p_cxt_mngr->ilt_shadow[shadow_line].p_virt = p_virt; + p_hwfn->p_cxt_mngr->ilt_shadow[shadow_line].p_phys = p_phys; + p_hwfn->p_cxt_mngr->ilt_shadow[shadow_line].size = + p_blk->real_size_in_page; + + /* compute absolute offset */ + reg_offset = PSWRQ2_REG_ILT_MEMORY + + (line * ILT_REG_SIZE_IN_BYTES * ILT_ENTRY_IN_REGS); + + ilt_hw_entry = 0; + SET_FIELD(ilt_hw_entry, ILT_ENTRY_VALID, 1ULL); + SET_FIELD(ilt_hw_entry, + ILT_ENTRY_PHY_ADDR, + (p_hwfn->p_cxt_mngr->ilt_shadow[shadow_line].p_phys >> 12)); + + /* Write via DMAE since the PSWRQ2_REG_ILT_MEMORY line is a wide-bus */ + qed_dmae_host2grc(p_hwfn, p_ptt, (u64) (uintptr_t)&ilt_hw_entry, + reg_offset, sizeof(ilt_hw_entry) / sizeof(u32), 0); + + if (elem_type == QED_ELEM_CXT) { + u32 last_cid_allocated = (1 + (iid / elems_per_p)) * + elems_per_p; + + /* Update the relevant register in the parser */ + qed_wr(p_hwfn, p_ptt, PRS_REG_ROCE_DEST_QP_MAX_PF, + last_cid_allocated - 1); + + if (!p_hwfn->b_rdma_enabled_in_prs) { + /* Enable RoCE search */ + qed_wr(p_hwfn, p_ptt, p_hwfn->rdma_prs_search_reg, 1); + p_hwfn->b_rdma_enabled_in_prs = true; + } + } + +out1: + qed_ptt_release(p_hwfn, p_ptt); +out0: + mutex_unlock(&p_hwfn->p_cxt_mngr->mutex); + + return rc; +} + +/* This function is very RoCE oriented, if another protocol in the future + * will want this feature we'll need to modify the function to be more generic + */ +static int +qed_cxt_free_ilt_range(struct qed_hwfn *p_hwfn, + enum qed_cxt_elem_type elem_type, + u32 start_iid, u32 count) +{ + u32 start_line, end_line, shadow_start_line, shadow_end_line; + u32 reg_offset, elem_size, hw_p_size, elems_per_p; + struct qed_ilt_client_cfg *p_cli; + struct qed_ilt_cli_blk *p_blk; + u32 end_iid = start_iid + count; + struct qed_ptt *p_ptt; + u64 ilt_hw_entry = 0; + u32 i; + + switch (elem_type) { + case QED_ELEM_CXT: + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUC]; + elem_size = CONN_CXT_SIZE(p_hwfn); + p_blk = &p_cli->pf_blks[CDUC_BLK]; + break; + case QED_ELEM_SRQ: + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_TSDM]; + elem_size = SRQ_CXT_SIZE; + p_blk = &p_cli->pf_blks[SRQ_BLK]; + break; + case QED_ELEM_TASK: + p_cli = &p_hwfn->p_cxt_mngr->clients[ILT_CLI_CDUT]; + elem_size = TYPE1_TASK_CXT_SIZE(p_hwfn); + p_blk = &p_cli->pf_blks[CDUT_SEG_BLK(QED_CXT_ROCE_TID_SEG)]; + break; + default: + DP_NOTICE(p_hwfn, "-EINVALID elem type = %d", elem_type); + return -EINVAL; + } + + /* Calculate line in ilt */ + hw_p_size = p_cli->p_size.val; + elems_per_p = ILT_PAGE_IN_BYTES(hw_p_size) / elem_size; + start_line = p_blk->start_line + (start_iid / elems_per_p); + end_line = p_blk->start_line + (end_iid / elems_per_p); + if (((end_iid + 1) / elems_per_p) != (end_iid / elems_per_p)) + end_line--; + + shadow_start_line = start_line - p_hwfn->p_cxt_mngr->pf_start_line; + shadow_end_line = end_line - p_hwfn->p_cxt_mngr->pf_start_line; + + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) { + DP_NOTICE(p_hwfn, + "QED_TIME_OUT on ptt acquire - dynamic allocation"); + return -EBUSY; + } + + for (i = shadow_start_line; i < shadow_end_line; i++) { + if (!p_hwfn->p_cxt_mngr->ilt_shadow[i].p_virt) + continue; + + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + p_hwfn->p_cxt_mngr->ilt_shadow[i].size, + p_hwfn->p_cxt_mngr->ilt_shadow[i].p_virt, + p_hwfn->p_cxt_mngr->ilt_shadow[i].p_phys); + + p_hwfn->p_cxt_mngr->ilt_shadow[i].p_virt = NULL; + p_hwfn->p_cxt_mngr->ilt_shadow[i].p_phys = 0; + p_hwfn->p_cxt_mngr->ilt_shadow[i].size = 0; + + /* compute absolute offset */ + reg_offset = PSWRQ2_REG_ILT_MEMORY + + ((start_line++) * ILT_REG_SIZE_IN_BYTES * + ILT_ENTRY_IN_REGS); + + /* Write via DMAE since the PSWRQ2_REG_ILT_MEMORY line is a + * wide-bus. + */ + qed_dmae_host2grc(p_hwfn, p_ptt, + (u64) (uintptr_t) &ilt_hw_entry, + reg_offset, + sizeof(ilt_hw_entry) / sizeof(u32), + 0); + } + + qed_ptt_release(p_hwfn, p_ptt); + + return 0; +} + +int qed_cxt_free_proto_ilt(struct qed_hwfn *p_hwfn, enum protocol_type proto) +{ + int rc; + u32 cid; + + /* Free Connection CXT */ + rc = qed_cxt_free_ilt_range(p_hwfn, QED_ELEM_CXT, + qed_cxt_get_proto_cid_start(p_hwfn, + proto), + qed_cxt_get_proto_cid_count(p_hwfn, + proto, &cid)); + + if (rc) + return rc; + + /* Free Task CXT */ + rc = qed_cxt_free_ilt_range(p_hwfn, QED_ELEM_TASK, 0, + qed_cxt_get_proto_tid_count(p_hwfn, proto)); + if (rc) + return rc; + + /* Free TSDM CXT */ + rc = qed_cxt_free_ilt_range(p_hwfn, QED_ELEM_SRQ, 0, + qed_cxt_get_srq_count(p_hwfn)); + + return rc; +} + +int qed_cxt_get_task_ctx(struct qed_hwfn *p_hwfn, + u32 tid, u8 ctx_type, void **pp_task_ctx) +{ + struct qed_cxt_mngr *p_mngr = p_hwfn->p_cxt_mngr; + struct qed_ilt_client_cfg *p_cli; + struct qed_ilt_cli_blk *p_seg; + struct qed_tid_seg *p_seg_info; + u32 proto, seg; + u32 total_lines; + u32 tid_size, ilt_idx; + u32 num_tids_per_block; + + /* Verify the personality */ + switch (p_hwfn->hw_info.personality) { + case QED_PCI_ISCSI: + proto = PROTOCOLID_ISCSI; + seg = QED_CXT_ISCSI_TID_SEG; + break; + default: + return -EINVAL; + } + + p_cli = &p_mngr->clients[ILT_CLI_CDUT]; + if (!p_cli->active) + return -EINVAL; + + p_seg_info = &p_mngr->conn_cfg[proto].tid_seg[seg]; + + if (ctx_type == QED_CTX_WORKING_MEM) { + p_seg = &p_cli->pf_blks[CDUT_SEG_BLK(seg)]; + } else if (ctx_type == QED_CTX_FL_MEM) { + if (!p_seg_info->has_fl_mem) + return -EINVAL; + p_seg = &p_cli->pf_blks[CDUT_FL_SEG_BLK(seg, PF)]; + } else { + return -EINVAL; + } + total_lines = DIV_ROUND_UP(p_seg->total_size, p_seg->real_size_in_page); + tid_size = p_mngr->task_type_size[p_seg_info->type]; + num_tids_per_block = p_seg->real_size_in_page / tid_size; + + if (total_lines < tid / num_tids_per_block) + return -EINVAL; - qed_cxt_set_proto_cid_count(p_hwfn, PROTOCOLID_ETH, - p_params->num_cons); + ilt_idx = tid / num_tids_per_block + p_seg->start_line - + p_mngr->pf_start_line; + *pp_task_ctx = (u8 *)p_mngr->ilt_shadow[ilt_idx].p_virt + + (tid % num_tids_per_block) * tid_size; return 0; } diff --git a/drivers/net/ethernet/qlogic/qed/qed_cxt.h b/drivers/net/ethernet/qlogic/qed/qed_cxt.h index c8e1f5e5c42b..c6f6f2e8192d 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_cxt.h +++ b/drivers/net/ethernet/qlogic/qed/qed_cxt.h @@ -21,6 +21,14 @@ struct qed_cxt_info { enum protocol_type type; }; +#define MAX_TID_BLOCKS 512 +struct qed_tid_mem { + u32 tid_size; + u32 num_tids_per_block; + u32 waste; + u8 *blocks[MAX_TID_BLOCKS]; /* 4K */ +}; + /** * @brief qed_cxt_acquire - Acquire a new cid of a specific protocol type * @@ -46,11 +54,28 @@ int qed_cxt_acquire_cid(struct qed_hwfn *p_hwfn, int qed_cxt_get_cid_info(struct qed_hwfn *p_hwfn, struct qed_cxt_info *p_info); +/** + * @brief qed_cxt_get_tid_mem_info + * + * @param p_hwfn + * @param p_info + * + * @return int + */ +int qed_cxt_get_tid_mem_info(struct qed_hwfn *p_hwfn, + struct qed_tid_mem *p_info); + +#define QED_CXT_ISCSI_TID_SEG PROTOCOLID_ISCSI +#define QED_CXT_ROCE_TID_SEG PROTOCOLID_ROCE enum qed_cxt_elem_type { QED_ELEM_CXT, + QED_ELEM_SRQ, QED_ELEM_TASK }; +u32 qed_cxt_get_proto_cid_count(struct qed_hwfn *p_hwfn, + enum protocol_type type, u32 *vf_cid); + /** * @brief qed_cxt_set_pf_params - Set the PF params for cxt init * @@ -128,6 +153,16 @@ void qed_cxt_hw_init_pf(struct qed_hwfn *p_hwfn); void qed_qm_init_pf(struct qed_hwfn *p_hwfn); /** + * @brief Reconfigures QM pf on the fly + * + * @param p_hwfn + * @param p_ptt + * + * @return int + */ +int qed_qm_reconf(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt); + +/** * @brief qed_cxt_release - Release a cid * * @param p_hwfn @@ -136,4 +171,6 @@ void qed_qm_init_pf(struct qed_hwfn *p_hwfn); void qed_cxt_release_cid(struct qed_hwfn *p_hwfn, u32 cid); +#define QED_CTX_WORKING_MEM 0 +#define QED_CTX_FL_MEM 1 #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_dcbx.c b/drivers/net/ethernet/qlogic/qed/qed_dcbx.c new file mode 100644 index 000000000000..3656d2fd673d --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_dcbx.c @@ -0,0 +1,2313 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ + +#include <linux/types.h> +#include <asm/byteorder.h> +#include <linux/bitops.h> +#include <linux/dcbnl.h> +#include <linux/errno.h> +#include <linux/kernel.h> +#include <linux/slab.h> +#include <linux/string.h> +#include "qed.h" +#include "qed_cxt.h" +#include "qed_dcbx.h" +#include "qed_hsi.h" +#include "qed_sp.h" +#include "qed_sriov.h" +#ifdef CONFIG_DCB +#include <linux/qed/qed_eth_if.h> +#endif + +#define QED_DCBX_MAX_MIB_READ_TRY (100) +#define QED_ETH_TYPE_DEFAULT (0) +#define QED_ETH_TYPE_ROCE (0x8915) +#define QED_UDP_PORT_TYPE_ROCE_V2 (0x12B7) +#define QED_ETH_TYPE_FCOE (0x8906) +#define QED_TCP_PORT_ISCSI (0xCBC) + +#define QED_DCBX_INVALID_PRIORITY 0xFF + +/* Get Traffic Class from priority traffic class table, 4 bits represent + * the traffic class corresponding to the priority. + */ +#define QED_DCBX_PRIO2TC(prio_tc_tbl, prio) \ + ((u32)(prio_tc_tbl >> ((7 - prio) * 4)) & 0x7) + +static const struct qed_dcbx_app_metadata qed_dcbx_app_update[] = { + {DCBX_PROTOCOL_ISCSI, "ISCSI", QED_PCI_DEFAULT}, + {DCBX_PROTOCOL_FCOE, "FCOE", QED_PCI_DEFAULT}, + {DCBX_PROTOCOL_ROCE, "ROCE", QED_PCI_DEFAULT}, + {DCBX_PROTOCOL_ROCE_V2, "ROCE_V2", QED_PCI_DEFAULT}, + {DCBX_PROTOCOL_ETH, "ETH", QED_PCI_ETH} +}; + +static bool qed_dcbx_app_ethtype(u32 app_info_bitmap) +{ + return !!(QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF) == + DCBX_APP_SF_ETHTYPE); +} + +static bool qed_dcbx_ieee_app_ethtype(u32 app_info_bitmap) +{ + u8 mfw_val = QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF_IEEE); + + /* Old MFW */ + if (mfw_val == DCBX_APP_SF_IEEE_RESERVED) + return qed_dcbx_app_ethtype(app_info_bitmap); + + return !!(mfw_val == DCBX_APP_SF_IEEE_ETHTYPE); +} + +static bool qed_dcbx_app_port(u32 app_info_bitmap) +{ + return !!(QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF) == + DCBX_APP_SF_PORT); +} + +static bool qed_dcbx_ieee_app_port(u32 app_info_bitmap, u8 type) +{ + u8 mfw_val = QED_MFW_GET_FIELD(app_info_bitmap, DCBX_APP_SF_IEEE); + + /* Old MFW */ + if (mfw_val == DCBX_APP_SF_IEEE_RESERVED) + return qed_dcbx_app_port(app_info_bitmap); + + return !!(mfw_val == type || mfw_val == DCBX_APP_SF_IEEE_TCP_UDP_PORT); +} + +static bool qed_dcbx_default_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee) +{ + bool ethtype; + + if (ieee) + ethtype = qed_dcbx_ieee_app_ethtype(app_info_bitmap); + else + ethtype = qed_dcbx_app_ethtype(app_info_bitmap); + + return !!(ethtype && (proto_id == QED_ETH_TYPE_DEFAULT)); +} + +static bool qed_dcbx_iscsi_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee) +{ + bool port; + + if (ieee) + port = qed_dcbx_ieee_app_port(app_info_bitmap, + DCBX_APP_SF_IEEE_TCP_PORT); + else + port = qed_dcbx_app_port(app_info_bitmap); + + return !!(port && (proto_id == QED_TCP_PORT_ISCSI)); +} + +static bool qed_dcbx_fcoe_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee) +{ + bool ethtype; + + if (ieee) + ethtype = qed_dcbx_ieee_app_ethtype(app_info_bitmap); + else + ethtype = qed_dcbx_app_ethtype(app_info_bitmap); + + return !!(ethtype && (proto_id == QED_ETH_TYPE_FCOE)); +} + +static bool qed_dcbx_roce_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee) +{ + bool ethtype; + + if (ieee) + ethtype = qed_dcbx_ieee_app_ethtype(app_info_bitmap); + else + ethtype = qed_dcbx_app_ethtype(app_info_bitmap); + + return !!(ethtype && (proto_id == QED_ETH_TYPE_ROCE)); +} + +static bool qed_dcbx_roce_v2_tlv(u32 app_info_bitmap, u16 proto_id, bool ieee) +{ + bool port; + + if (ieee) + port = qed_dcbx_ieee_app_port(app_info_bitmap, + DCBX_APP_SF_IEEE_UDP_PORT); + else + port = qed_dcbx_app_port(app_info_bitmap); + + return !!(port && (proto_id == QED_UDP_PORT_TYPE_ROCE_V2)); +} + +static void +qed_dcbx_dp_protocol(struct qed_hwfn *p_hwfn, struct qed_dcbx_results *p_data) +{ + enum dcbx_protocol_type id; + int i; + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, "DCBX negotiated: %d\n", + p_data->dcbx_enabled); + + for (i = 0; i < ARRAY_SIZE(qed_dcbx_app_update); i++) { + id = qed_dcbx_app_update[i].id; + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, + "%s info: update %d, enable %d, prio %d, tc %d, num_tc %d\n", + qed_dcbx_app_update[i].name, p_data->arr[id].update, + p_data->arr[id].enable, p_data->arr[id].priority, + p_data->arr[id].tc, p_hwfn->hw_info.num_tc); + } +} + +static void +qed_dcbx_set_params(struct qed_dcbx_results *p_data, + struct qed_hw_info *p_info, + bool enable, + bool update, + u8 prio, + u8 tc, + enum dcbx_protocol_type type, + enum qed_pci_personality personality) +{ + /* PF update ramrod data */ + p_data->arr[type].update = update; + p_data->arr[type].enable = enable; + p_data->arr[type].priority = prio; + p_data->arr[type].tc = tc; + + /* QM reconf data */ + if (p_info->personality == personality) { + if (personality == QED_PCI_ETH) + p_info->non_offload_tc = tc; + else + p_info->offload_tc = tc; + } +} + +/* Update app protocol data and hw_info fields with the TLV info */ +static void +qed_dcbx_update_app_info(struct qed_dcbx_results *p_data, + struct qed_hwfn *p_hwfn, + bool enable, + bool update, + u8 prio, u8 tc, enum dcbx_protocol_type type) +{ + struct qed_hw_info *p_info = &p_hwfn->hw_info; + enum qed_pci_personality personality; + enum dcbx_protocol_type id; + char *name; + int i; + + for (i = 0; i < ARRAY_SIZE(qed_dcbx_app_update); i++) { + id = qed_dcbx_app_update[i].id; + + if (type != id) + continue; + + personality = qed_dcbx_app_update[i].personality; + name = qed_dcbx_app_update[i].name; + + qed_dcbx_set_params(p_data, p_info, enable, update, + prio, tc, type, personality); + } +} + +static bool +qed_dcbx_get_app_protocol_type(struct qed_hwfn *p_hwfn, + u32 app_prio_bitmap, + u16 id, enum dcbx_protocol_type *type, bool ieee) +{ + if (qed_dcbx_fcoe_tlv(app_prio_bitmap, id, ieee)) { + *type = DCBX_PROTOCOL_FCOE; + } else if (qed_dcbx_roce_tlv(app_prio_bitmap, id, ieee)) { + *type = DCBX_PROTOCOL_ROCE; + } else if (qed_dcbx_iscsi_tlv(app_prio_bitmap, id, ieee)) { + *type = DCBX_PROTOCOL_ISCSI; + } else if (qed_dcbx_default_tlv(app_prio_bitmap, id, ieee)) { + *type = DCBX_PROTOCOL_ETH; + } else if (qed_dcbx_roce_v2_tlv(app_prio_bitmap, id, ieee)) { + *type = DCBX_PROTOCOL_ROCE_V2; + } else { + *type = DCBX_MAX_PROTOCOL_TYPE; + DP_ERR(p_hwfn, + "No action required, App TLV id = 0x%x app_prio_bitmap = 0x%x\n", + id, app_prio_bitmap); + return false; + } + + return true; +} + +/* Parse app TLV's to update TC information in hw_info structure for + * reconfiguring QM. Get protocol specific data for PF update ramrod command. + */ +static int +qed_dcbx_process_tlv(struct qed_hwfn *p_hwfn, + struct qed_dcbx_results *p_data, + struct dcbx_app_priority_entry *p_tbl, + u32 pri_tc_tbl, int count, u8 dcbx_version) +{ + u8 tc, priority_map; + enum dcbx_protocol_type type; + bool enable, ieee; + u16 protocol_id; + int priority; + int i; + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, "Num APP entries = %d\n", count); + + ieee = (dcbx_version == DCBX_CONFIG_VERSION_IEEE); + /* Parse APP TLV */ + for (i = 0; i < count; i++) { + protocol_id = QED_MFW_GET_FIELD(p_tbl[i].entry, + DCBX_APP_PROTOCOL_ID); + priority_map = QED_MFW_GET_FIELD(p_tbl[i].entry, + DCBX_APP_PRI_MAP); + priority = ffs(priority_map) - 1; + if (priority < 0) { + DP_ERR(p_hwfn, "Invalid priority\n"); + return -EINVAL; + } + + tc = QED_DCBX_PRIO2TC(pri_tc_tbl, priority); + if (qed_dcbx_get_app_protocol_type(p_hwfn, p_tbl[i].entry, + protocol_id, &type, ieee)) { + /* ETH always have the enable bit reset, as it gets + * vlan information per packet. For other protocols, + * should be set according to the dcbx_enabled + * indication, but we only got here if there was an + * app tlv for the protocol, so dcbx must be enabled. + */ + enable = !(type == DCBX_PROTOCOL_ETH); + + qed_dcbx_update_app_info(p_data, p_hwfn, enable, true, + priority, tc, type); + } + } + + /* If RoCE-V2 TLV is not detected, driver need to use RoCE app + * data for RoCE-v2 not the default app data. + */ + if (!p_data->arr[DCBX_PROTOCOL_ROCE_V2].update && + p_data->arr[DCBX_PROTOCOL_ROCE].update) { + tc = p_data->arr[DCBX_PROTOCOL_ROCE].tc; + priority = p_data->arr[DCBX_PROTOCOL_ROCE].priority; + qed_dcbx_update_app_info(p_data, p_hwfn, true, true, + priority, tc, DCBX_PROTOCOL_ROCE_V2); + } + + /* Update ramrod protocol data and hw_info fields + * with default info when corresponding APP TLV's are not detected. + * The enabled field has a different logic for ethernet as only for + * ethernet dcb should disabled by default, as the information arrives + * from the OS (unless an explicit app tlv was present). + */ + tc = p_data->arr[DCBX_PROTOCOL_ETH].tc; + priority = p_data->arr[DCBX_PROTOCOL_ETH].priority; + for (type = 0; type < DCBX_MAX_PROTOCOL_TYPE; type++) { + if (p_data->arr[type].update) + continue; + + enable = !(type == DCBX_PROTOCOL_ETH); + qed_dcbx_update_app_info(p_data, p_hwfn, enable, true, + priority, tc, type); + } + + return 0; +} + +/* Parse app TLV's to update TC information in hw_info structure for + * reconfiguring QM. Get protocol specific data for PF update ramrod command. + */ +static int qed_dcbx_process_mib_info(struct qed_hwfn *p_hwfn) +{ + struct dcbx_app_priority_feature *p_app; + struct dcbx_app_priority_entry *p_tbl; + struct qed_dcbx_results data = { 0 }; + struct dcbx_ets_feature *p_ets; + struct qed_hw_info *p_info; + u32 pri_tc_tbl, flags; + u8 dcbx_version; + int num_entries; + int rc = 0; + + flags = p_hwfn->p_dcbx_info->operational.flags; + dcbx_version = QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION); + + p_app = &p_hwfn->p_dcbx_info->operational.features.app; + p_tbl = p_app->app_pri_tbl; + + p_ets = &p_hwfn->p_dcbx_info->operational.features.ets; + pri_tc_tbl = p_ets->pri_tc_tbl[0]; + + p_info = &p_hwfn->hw_info; + num_entries = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_NUM_ENTRIES); + + rc = qed_dcbx_process_tlv(p_hwfn, &data, p_tbl, pri_tc_tbl, + num_entries, dcbx_version); + if (rc) + return rc; + + p_info->num_tc = QED_MFW_GET_FIELD(p_ets->flags, DCBX_ETS_MAX_TCS); + data.pf_id = p_hwfn->rel_pf_id; + data.dcbx_enabled = !!dcbx_version; + + qed_dcbx_dp_protocol(p_hwfn, &data); + + memcpy(&p_hwfn->p_dcbx_info->results, &data, + sizeof(struct qed_dcbx_results)); + + return 0; +} + +static int +qed_dcbx_copy_mib(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_dcbx_mib_meta_data *p_data, + enum qed_mib_read_type type) +{ + u32 prefix_seq_num, suffix_seq_num; + int read_count = 0; + int rc = 0; + + /* The data is considered to be valid only if both sequence numbers are + * the same. + */ + do { + if (type == QED_DCBX_REMOTE_LLDP_MIB) { + qed_memcpy_from(p_hwfn, p_ptt, p_data->lldp_remote, + p_data->addr, p_data->size); + prefix_seq_num = p_data->lldp_remote->prefix_seq_num; + suffix_seq_num = p_data->lldp_remote->suffix_seq_num; + } else { + qed_memcpy_from(p_hwfn, p_ptt, p_data->mib, + p_data->addr, p_data->size); + prefix_seq_num = p_data->mib->prefix_seq_num; + suffix_seq_num = p_data->mib->suffix_seq_num; + } + read_count++; + + DP_VERBOSE(p_hwfn, + QED_MSG_DCB, + "mib type = %d, try count = %d prefix seq num = %d suffix seq num = %d\n", + type, read_count, prefix_seq_num, suffix_seq_num); + } while ((prefix_seq_num != suffix_seq_num) && + (read_count < QED_DCBX_MAX_MIB_READ_TRY)); + + if (read_count >= QED_DCBX_MAX_MIB_READ_TRY) { + DP_ERR(p_hwfn, + "MIB read err, mib type = %d, try count = %d prefix seq num = %d suffix seq num = %d\n", + type, read_count, prefix_seq_num, suffix_seq_num); + rc = -EIO; + } + + return rc; +} + +#ifdef CONFIG_DCB +static void +qed_dcbx_get_priority_info(struct qed_hwfn *p_hwfn, + struct qed_dcbx_app_prio *p_prio, + struct qed_dcbx_results *p_results) +{ + u8 val; + + p_prio->roce = QED_DCBX_INVALID_PRIORITY; + p_prio->roce_v2 = QED_DCBX_INVALID_PRIORITY; + p_prio->iscsi = QED_DCBX_INVALID_PRIORITY; + p_prio->fcoe = QED_DCBX_INVALID_PRIORITY; + + if (p_results->arr[DCBX_PROTOCOL_ROCE].update && + p_results->arr[DCBX_PROTOCOL_ROCE].enable) + p_prio->roce = p_results->arr[DCBX_PROTOCOL_ROCE].priority; + + if (p_results->arr[DCBX_PROTOCOL_ROCE_V2].update && + p_results->arr[DCBX_PROTOCOL_ROCE_V2].enable) { + val = p_results->arr[DCBX_PROTOCOL_ROCE_V2].priority; + p_prio->roce_v2 = val; + } + + if (p_results->arr[DCBX_PROTOCOL_ISCSI].update && + p_results->arr[DCBX_PROTOCOL_ISCSI].enable) + p_prio->iscsi = p_results->arr[DCBX_PROTOCOL_ISCSI].priority; + + if (p_results->arr[DCBX_PROTOCOL_FCOE].update && + p_results->arr[DCBX_PROTOCOL_FCOE].enable) + p_prio->fcoe = p_results->arr[DCBX_PROTOCOL_FCOE].priority; + + if (p_results->arr[DCBX_PROTOCOL_ETH].update && + p_results->arr[DCBX_PROTOCOL_ETH].enable) + p_prio->eth = p_results->arr[DCBX_PROTOCOL_ETH].priority; + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, + "Priorities: iscsi %d, roce %d, roce v2 %d, fcoe %d, eth %d\n", + p_prio->iscsi, p_prio->roce, p_prio->roce_v2, p_prio->fcoe, + p_prio->eth); +} + +static void +qed_dcbx_get_app_data(struct qed_hwfn *p_hwfn, + struct dcbx_app_priority_feature *p_app, + struct dcbx_app_priority_entry *p_tbl, + struct qed_dcbx_params *p_params, bool ieee) +{ + struct qed_app_entry *entry; + u8 pri_map; + int i; + + p_params->app_willing = QED_MFW_GET_FIELD(p_app->flags, + DCBX_APP_WILLING); + p_params->app_valid = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_ENABLED); + p_params->app_error = QED_MFW_GET_FIELD(p_app->flags, DCBX_APP_ERROR); + p_params->num_app_entries = QED_MFW_GET_FIELD(p_app->flags, + DCBX_APP_NUM_ENTRIES); + for (i = 0; i < DCBX_MAX_APP_PROTOCOL; i++) { + entry = &p_params->app_entry[i]; + if (ieee) { + u8 sf_ieee; + u32 val; + + sf_ieee = QED_MFW_GET_FIELD(p_tbl[i].entry, + DCBX_APP_SF_IEEE); + switch (sf_ieee) { + case DCBX_APP_SF_IEEE_RESERVED: + /* Old MFW */ + val = QED_MFW_GET_FIELD(p_tbl[i].entry, + DCBX_APP_SF); + entry->sf_ieee = val ? + QED_DCBX_SF_IEEE_TCP_UDP_PORT : + QED_DCBX_SF_IEEE_ETHTYPE; + break; + case DCBX_APP_SF_IEEE_ETHTYPE: + entry->sf_ieee = QED_DCBX_SF_IEEE_ETHTYPE; + break; + case DCBX_APP_SF_IEEE_TCP_PORT: + entry->sf_ieee = QED_DCBX_SF_IEEE_TCP_PORT; + break; + case DCBX_APP_SF_IEEE_UDP_PORT: + entry->sf_ieee = QED_DCBX_SF_IEEE_UDP_PORT; + break; + case DCBX_APP_SF_IEEE_TCP_UDP_PORT: + entry->sf_ieee = QED_DCBX_SF_IEEE_TCP_UDP_PORT; + break; + } + } else { + entry->ethtype = !(QED_MFW_GET_FIELD(p_tbl[i].entry, + DCBX_APP_SF)); + } + + pri_map = QED_MFW_GET_FIELD(p_tbl[i].entry, DCBX_APP_PRI_MAP); + entry->prio = ffs(pri_map) - 1; + entry->proto_id = QED_MFW_GET_FIELD(p_tbl[i].entry, + DCBX_APP_PROTOCOL_ID); + qed_dcbx_get_app_protocol_type(p_hwfn, p_tbl[i].entry, + entry->proto_id, + &entry->proto_type, ieee); + } + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, + "APP params: willing %d, valid %d error = %d\n", + p_params->app_willing, p_params->app_valid, + p_params->app_error); +} + +static void +qed_dcbx_get_pfc_data(struct qed_hwfn *p_hwfn, + u32 pfc, struct qed_dcbx_params *p_params) +{ + u8 pfc_map; + + p_params->pfc.willing = QED_MFW_GET_FIELD(pfc, DCBX_PFC_WILLING); + p_params->pfc.max_tc = QED_MFW_GET_FIELD(pfc, DCBX_PFC_CAPS); + p_params->pfc.enabled = QED_MFW_GET_FIELD(pfc, DCBX_PFC_ENABLED); + pfc_map = QED_MFW_GET_FIELD(pfc, DCBX_PFC_PRI_EN_BITMAP); + p_params->pfc.prio[0] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_0); + p_params->pfc.prio[1] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_1); + p_params->pfc.prio[2] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_2); + p_params->pfc.prio[3] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_3); + p_params->pfc.prio[4] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_4); + p_params->pfc.prio[5] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_5); + p_params->pfc.prio[6] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_6); + p_params->pfc.prio[7] = !!(pfc_map & DCBX_PFC_PRI_EN_BITMAP_PRI_7); + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, + "PFC params: willing %d, pfc_bitmap %d\n", + p_params->pfc.willing, pfc_map); +} + +static void +qed_dcbx_get_ets_data(struct qed_hwfn *p_hwfn, + struct dcbx_ets_feature *p_ets, + struct qed_dcbx_params *p_params) +{ + u32 bw_map[2], tsa_map[2], pri_map; + int i; + + p_params->ets_willing = QED_MFW_GET_FIELD(p_ets->flags, + DCBX_ETS_WILLING); + p_params->ets_enabled = QED_MFW_GET_FIELD(p_ets->flags, + DCBX_ETS_ENABLED); + p_params->ets_cbs = QED_MFW_GET_FIELD(p_ets->flags, DCBX_ETS_CBS); + p_params->max_ets_tc = QED_MFW_GET_FIELD(p_ets->flags, + DCBX_ETS_MAX_TCS); + DP_VERBOSE(p_hwfn, QED_MSG_DCB, + "ETS params: willing %d, ets_cbs %d pri_tc_tbl_0 %x max_ets_tc %d\n", + p_params->ets_willing, + p_params->ets_cbs, + p_ets->pri_tc_tbl[0], p_params->max_ets_tc); + + /* 8 bit tsa and bw data corresponding to each of the 8 TC's are + * encoded in a type u32 array of size 2. + */ + bw_map[0] = be32_to_cpu(p_ets->tc_bw_tbl[0]); + bw_map[1] = be32_to_cpu(p_ets->tc_bw_tbl[1]); + tsa_map[0] = be32_to_cpu(p_ets->tc_tsa_tbl[0]); + tsa_map[1] = be32_to_cpu(p_ets->tc_tsa_tbl[1]); + pri_map = p_ets->pri_tc_tbl[0]; + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) { + p_params->ets_tc_bw_tbl[i] = ((u8 *)bw_map)[i]; + p_params->ets_tc_tsa_tbl[i] = ((u8 *)tsa_map)[i]; + p_params->ets_pri_tc_tbl[i] = QED_DCBX_PRIO2TC(pri_map, i); + DP_VERBOSE(p_hwfn, QED_MSG_DCB, + "elem %d bw_tbl %x tsa_tbl %x\n", + i, p_params->ets_tc_bw_tbl[i], + p_params->ets_tc_tsa_tbl[i]); + } +} + +static void +qed_dcbx_get_common_params(struct qed_hwfn *p_hwfn, + struct dcbx_app_priority_feature *p_app, + struct dcbx_app_priority_entry *p_tbl, + struct dcbx_ets_feature *p_ets, + u32 pfc, struct qed_dcbx_params *p_params, bool ieee) +{ + qed_dcbx_get_app_data(p_hwfn, p_app, p_tbl, p_params, ieee); + qed_dcbx_get_ets_data(p_hwfn, p_ets, p_params); + qed_dcbx_get_pfc_data(p_hwfn, pfc, p_params); +} + +static void +qed_dcbx_get_local_params(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, struct qed_dcbx_get *params) +{ + struct dcbx_features *p_feat; + + p_feat = &p_hwfn->p_dcbx_info->local_admin.features; + qed_dcbx_get_common_params(p_hwfn, &p_feat->app, + p_feat->app.app_pri_tbl, &p_feat->ets, + p_feat->pfc, ¶ms->local.params, false); + params->local.valid = true; +} + +static void +qed_dcbx_get_remote_params(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, struct qed_dcbx_get *params) +{ + struct dcbx_features *p_feat; + + p_feat = &p_hwfn->p_dcbx_info->remote.features; + qed_dcbx_get_common_params(p_hwfn, &p_feat->app, + p_feat->app.app_pri_tbl, &p_feat->ets, + p_feat->pfc, ¶ms->remote.params, false); + params->remote.valid = true; +} + +static void +qed_dcbx_get_operational_params(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_dcbx_get *params) +{ + struct qed_dcbx_operational_params *p_operational; + struct qed_dcbx_results *p_results; + struct dcbx_features *p_feat; + bool enabled, err; + u32 flags; + bool val; + + flags = p_hwfn->p_dcbx_info->operational.flags; + + /* If DCBx version is non zero, then negotiation + * was successfuly performed + */ + p_operational = ¶ms->operational; + enabled = !!(QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION) != + DCBX_CONFIG_VERSION_DISABLED); + if (!enabled) { + p_operational->enabled = enabled; + p_operational->valid = false; + return; + } + + p_feat = &p_hwfn->p_dcbx_info->operational.features; + p_results = &p_hwfn->p_dcbx_info->results; + + val = !!(QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION) == + DCBX_CONFIG_VERSION_IEEE); + p_operational->ieee = val; + val = !!(QED_MFW_GET_FIELD(flags, DCBX_CONFIG_VERSION) == + DCBX_CONFIG_VERSION_CEE); + p_operational->cee = val; + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, "Version support: ieee %d, cee %d\n", + p_operational->ieee, p_operational->cee); + + qed_dcbx_get_common_params(p_hwfn, &p_feat->app, + p_feat->app.app_pri_tbl, &p_feat->ets, + p_feat->pfc, ¶ms->operational.params, + p_operational->ieee); + qed_dcbx_get_priority_info(p_hwfn, &p_operational->app_prio, p_results); + err = QED_MFW_GET_FIELD(p_feat->app.flags, DCBX_APP_ERROR); + p_operational->err = err; + p_operational->enabled = enabled; + p_operational->valid = true; +} + +static void +qed_dcbx_get_local_lldp_params(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_dcbx_get *params) +{ + struct lldp_config_params_s *p_local; + + p_local = &p_hwfn->p_dcbx_info->lldp_local[LLDP_NEAREST_BRIDGE]; + + memcpy(params->lldp_local.local_chassis_id, p_local->local_chassis_id, + ARRAY_SIZE(p_local->local_chassis_id)); + memcpy(params->lldp_local.local_port_id, p_local->local_port_id, + ARRAY_SIZE(p_local->local_port_id)); +} + +static void +qed_dcbx_get_remote_lldp_params(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_dcbx_get *params) +{ + struct lldp_status_params_s *p_remote; + + p_remote = &p_hwfn->p_dcbx_info->lldp_remote[LLDP_NEAREST_BRIDGE]; + + memcpy(params->lldp_remote.peer_chassis_id, p_remote->peer_chassis_id, + ARRAY_SIZE(p_remote->peer_chassis_id)); + memcpy(params->lldp_remote.peer_port_id, p_remote->peer_port_id, + ARRAY_SIZE(p_remote->peer_port_id)); +} + +static int +qed_dcbx_get_params(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + struct qed_dcbx_get *p_params, + enum qed_mib_read_type type) +{ + switch (type) { + case QED_DCBX_REMOTE_MIB: + qed_dcbx_get_remote_params(p_hwfn, p_ptt, p_params); + break; + case QED_DCBX_LOCAL_MIB: + qed_dcbx_get_local_params(p_hwfn, p_ptt, p_params); + break; + case QED_DCBX_OPERATIONAL_MIB: + qed_dcbx_get_operational_params(p_hwfn, p_ptt, p_params); + break; + case QED_DCBX_REMOTE_LLDP_MIB: + qed_dcbx_get_remote_lldp_params(p_hwfn, p_ptt, p_params); + break; + case QED_DCBX_LOCAL_LLDP_MIB: + qed_dcbx_get_local_lldp_params(p_hwfn, p_ptt, p_params); + break; + default: + DP_ERR(p_hwfn, "MIB read err, unknown mib type %d\n", type); + return -EINVAL; + } + + return 0; +} +#endif + +static int +qed_dcbx_read_local_lldp_mib(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + struct qed_dcbx_mib_meta_data data; + int rc = 0; + + memset(&data, 0, sizeof(data)); + data.addr = p_hwfn->mcp_info->port_addr + offsetof(struct public_port, + lldp_config_params); + data.lldp_local = p_hwfn->p_dcbx_info->lldp_local; + data.size = sizeof(struct lldp_config_params_s); + qed_memcpy_from(p_hwfn, p_ptt, data.lldp_local, data.addr, data.size); + + return rc; +} + +static int +qed_dcbx_read_remote_lldp_mib(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + enum qed_mib_read_type type) +{ + struct qed_dcbx_mib_meta_data data; + int rc = 0; + + memset(&data, 0, sizeof(data)); + data.addr = p_hwfn->mcp_info->port_addr + offsetof(struct public_port, + lldp_status_params); + data.lldp_remote = p_hwfn->p_dcbx_info->lldp_remote; + data.size = sizeof(struct lldp_status_params_s); + rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type); + + return rc; +} + +static int +qed_dcbx_read_operational_mib(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + enum qed_mib_read_type type) +{ + struct qed_dcbx_mib_meta_data data; + int rc = 0; + + memset(&data, 0, sizeof(data)); + data.addr = p_hwfn->mcp_info->port_addr + + offsetof(struct public_port, operational_dcbx_mib); + data.mib = &p_hwfn->p_dcbx_info->operational; + data.size = sizeof(struct dcbx_mib); + rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type); + + return rc; +} + +static int +qed_dcbx_read_remote_mib(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, enum qed_mib_read_type type) +{ + struct qed_dcbx_mib_meta_data data; + int rc = 0; + + memset(&data, 0, sizeof(data)); + data.addr = p_hwfn->mcp_info->port_addr + + offsetof(struct public_port, remote_dcbx_mib); + data.mib = &p_hwfn->p_dcbx_info->remote; + data.size = sizeof(struct dcbx_mib); + rc = qed_dcbx_copy_mib(p_hwfn, p_ptt, &data, type); + + return rc; +} + +static int +qed_dcbx_read_local_mib(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + struct qed_dcbx_mib_meta_data data; + int rc = 0; + + memset(&data, 0, sizeof(data)); + data.addr = p_hwfn->mcp_info->port_addr + + offsetof(struct public_port, local_admin_dcbx_mib); + data.local_admin = &p_hwfn->p_dcbx_info->local_admin; + data.size = sizeof(struct dcbx_local_params); + qed_memcpy_from(p_hwfn, p_ptt, data.local_admin, data.addr, data.size); + + return rc; +} + +static int qed_dcbx_read_mib(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, enum qed_mib_read_type type) +{ + int rc = -EINVAL; + + switch (type) { + case QED_DCBX_OPERATIONAL_MIB: + rc = qed_dcbx_read_operational_mib(p_hwfn, p_ptt, type); + break; + case QED_DCBX_REMOTE_MIB: + rc = qed_dcbx_read_remote_mib(p_hwfn, p_ptt, type); + break; + case QED_DCBX_LOCAL_MIB: + rc = qed_dcbx_read_local_mib(p_hwfn, p_ptt); + break; + case QED_DCBX_REMOTE_LLDP_MIB: + rc = qed_dcbx_read_remote_lldp_mib(p_hwfn, p_ptt, type); + break; + case QED_DCBX_LOCAL_LLDP_MIB: + rc = qed_dcbx_read_local_lldp_mib(p_hwfn, p_ptt); + break; + default: + DP_ERR(p_hwfn, "MIB read err, unknown mib type %d\n", type); + } + + return rc; +} + +/* Read updated MIB. + * Reconfigure QM and invoke PF update ramrod command if operational MIB + * change is detected. + */ +int +qed_dcbx_mib_update_event(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, enum qed_mib_read_type type) +{ + int rc = 0; + + rc = qed_dcbx_read_mib(p_hwfn, p_ptt, type); + if (rc) + return rc; + + if (type == QED_DCBX_OPERATIONAL_MIB) { + rc = qed_dcbx_process_mib_info(p_hwfn); + if (!rc) { + /* reconfigure tcs of QM queues according + * to negotiation results + */ + qed_qm_reconf(p_hwfn, p_ptt); + + /* update storm FW with negotiation results */ + qed_sp_pf_update(p_hwfn); + } + } + + return rc; +} + +int qed_dcbx_info_alloc(struct qed_hwfn *p_hwfn) +{ + int rc = 0; + + p_hwfn->p_dcbx_info = kzalloc(sizeof(*p_hwfn->p_dcbx_info), GFP_KERNEL); + if (!p_hwfn->p_dcbx_info) { + DP_NOTICE(p_hwfn, + "Failed to allocate 'struct qed_dcbx_info'\n"); + rc = -ENOMEM; + } + + return rc; +} + +void qed_dcbx_info_free(struct qed_hwfn *p_hwfn, + struct qed_dcbx_info *p_dcbx_info) +{ + kfree(p_hwfn->p_dcbx_info); +} + +static void qed_dcbx_update_protocol_data(struct protocol_dcb_data *p_data, + struct qed_dcbx_results *p_src, + enum dcbx_protocol_type type) +{ + p_data->dcb_enable_flag = p_src->arr[type].enable; + p_data->dcb_priority = p_src->arr[type].priority; + p_data->dcb_tc = p_src->arr[type].tc; +} + +/* Set pf update ramrod command params */ +void qed_dcbx_set_pf_update_params(struct qed_dcbx_results *p_src, + struct pf_update_ramrod_data *p_dest) +{ + struct protocol_dcb_data *p_dcb_data; + bool update_flag = false; + + p_dest->pf_id = p_src->pf_id; + + update_flag = p_src->arr[DCBX_PROTOCOL_FCOE].update; + p_dest->update_fcoe_dcb_data_flag = update_flag; + + update_flag = p_src->arr[DCBX_PROTOCOL_ROCE].update; + p_dest->update_roce_dcb_data_flag = update_flag; + update_flag = p_src->arr[DCBX_PROTOCOL_ROCE_V2].update; + p_dest->update_roce_dcb_data_flag = update_flag; + + update_flag = p_src->arr[DCBX_PROTOCOL_ISCSI].update; + p_dest->update_iscsi_dcb_data_flag = update_flag; + update_flag = p_src->arr[DCBX_PROTOCOL_ETH].update; + p_dest->update_eth_dcb_data_flag = update_flag; + + p_dcb_data = &p_dest->fcoe_dcb_data; + qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_FCOE); + p_dcb_data = &p_dest->roce_dcb_data; + + if (p_src->arr[DCBX_PROTOCOL_ROCE].update) + qed_dcbx_update_protocol_data(p_dcb_data, p_src, + DCBX_PROTOCOL_ROCE); + if (p_src->arr[DCBX_PROTOCOL_ROCE_V2].update) + qed_dcbx_update_protocol_data(p_dcb_data, p_src, + DCBX_PROTOCOL_ROCE_V2); + + p_dcb_data = &p_dest->iscsi_dcb_data; + qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_ISCSI); + p_dcb_data = &p_dest->eth_dcb_data; + qed_dcbx_update_protocol_data(p_dcb_data, p_src, DCBX_PROTOCOL_ETH); +} + +#ifdef CONFIG_DCB +static int qed_dcbx_query_params(struct qed_hwfn *p_hwfn, + struct qed_dcbx_get *p_get, + enum qed_mib_read_type type) +{ + struct qed_ptt *p_ptt; + int rc; + + if (IS_VF(p_hwfn->cdev)) + return -EINVAL; + + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) + return -EBUSY; + + rc = qed_dcbx_read_mib(p_hwfn, p_ptt, type); + if (rc) + goto out; + + rc = qed_dcbx_get_params(p_hwfn, p_ptt, p_get, type); + +out: + qed_ptt_release(p_hwfn, p_ptt); + return rc; +} + +static void +qed_dcbx_set_pfc_data(struct qed_hwfn *p_hwfn, + u32 *pfc, struct qed_dcbx_params *p_params) +{ + u8 pfc_map = 0; + int i; + + if (p_params->pfc.willing) + *pfc |= DCBX_PFC_WILLING_MASK; + else + *pfc &= ~DCBX_PFC_WILLING_MASK; + + if (p_params->pfc.enabled) + *pfc |= DCBX_PFC_ENABLED_MASK; + else + *pfc &= ~DCBX_PFC_ENABLED_MASK; + + *pfc &= ~DCBX_PFC_CAPS_MASK; + *pfc |= (u32)p_params->pfc.max_tc << DCBX_PFC_CAPS_SHIFT; + + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) + if (p_params->pfc.prio[i]) + pfc_map |= BIT(i); + + *pfc &= ~DCBX_PFC_PRI_EN_BITMAP_MASK; + *pfc |= (pfc_map << DCBX_PFC_PRI_EN_BITMAP_SHIFT); + + DP_VERBOSE(p_hwfn, QED_MSG_DCB, "pfc = 0x%x\n", *pfc); +} + +static void +qed_dcbx_set_ets_data(struct qed_hwfn *p_hwfn, + struct dcbx_ets_feature *p_ets, + struct qed_dcbx_params *p_params) +{ + u8 *bw_map, *tsa_map; + u32 val; + int i; + + if (p_params->ets_willing) + p_ets->flags |= DCBX_ETS_WILLING_MASK; + else + p_ets->flags &= ~DCBX_ETS_WILLING_MASK; + + if (p_params->ets_cbs) + p_ets->flags |= DCBX_ETS_CBS_MASK; + else + p_ets->flags &= ~DCBX_ETS_CBS_MASK; + + if (p_params->ets_enabled) + p_ets->flags |= DCBX_ETS_ENABLED_MASK; + else + p_ets->flags &= ~DCBX_ETS_ENABLED_MASK; + + p_ets->flags &= ~DCBX_ETS_MAX_TCS_MASK; + p_ets->flags |= (u32)p_params->max_ets_tc << DCBX_ETS_MAX_TCS_SHIFT; + + bw_map = (u8 *)&p_ets->tc_bw_tbl[0]; + tsa_map = (u8 *)&p_ets->tc_tsa_tbl[0]; + p_ets->pri_tc_tbl[0] = 0; + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) { + bw_map[i] = p_params->ets_tc_bw_tbl[i]; + tsa_map[i] = p_params->ets_tc_tsa_tbl[i]; + /* Copy the priority value to the corresponding 4 bits in the + * traffic class table. + */ + val = (((u32)p_params->ets_pri_tc_tbl[i]) << ((7 - i) * 4)); + p_ets->pri_tc_tbl[0] |= val; + } + for (i = 0; i < 2; i++) { + p_ets->tc_bw_tbl[i] = cpu_to_be32(p_ets->tc_bw_tbl[i]); + p_ets->tc_tsa_tbl[i] = cpu_to_be32(p_ets->tc_tsa_tbl[i]); + } +} + +static void +qed_dcbx_set_app_data(struct qed_hwfn *p_hwfn, + struct dcbx_app_priority_feature *p_app, + struct qed_dcbx_params *p_params, bool ieee) +{ + u32 *entry; + int i; + + if (p_params->app_willing) + p_app->flags |= DCBX_APP_WILLING_MASK; + else + p_app->flags &= ~DCBX_APP_WILLING_MASK; + + if (p_params->app_valid) + p_app->flags |= DCBX_APP_ENABLED_MASK; + else + p_app->flags &= ~DCBX_APP_ENABLED_MASK; + + p_app->flags &= ~DCBX_APP_NUM_ENTRIES_MASK; + p_app->flags |= (u32)p_params->num_app_entries << + DCBX_APP_NUM_ENTRIES_SHIFT; + + for (i = 0; i < DCBX_MAX_APP_PROTOCOL; i++) { + entry = &p_app->app_pri_tbl[i].entry; + *entry = 0; + if (ieee) { + *entry &= ~(DCBX_APP_SF_IEEE_MASK | DCBX_APP_SF_MASK); + switch (p_params->app_entry[i].sf_ieee) { + case QED_DCBX_SF_IEEE_ETHTYPE: + *entry |= ((u32)DCBX_APP_SF_IEEE_ETHTYPE << + DCBX_APP_SF_IEEE_SHIFT); + *entry |= ((u32)DCBX_APP_SF_ETHTYPE << + DCBX_APP_SF_SHIFT); + break; + case QED_DCBX_SF_IEEE_TCP_PORT: + *entry |= ((u32)DCBX_APP_SF_IEEE_TCP_PORT << + DCBX_APP_SF_IEEE_SHIFT); + *entry |= ((u32)DCBX_APP_SF_PORT << + DCBX_APP_SF_SHIFT); + break; + case QED_DCBX_SF_IEEE_UDP_PORT: + *entry |= ((u32)DCBX_APP_SF_IEEE_UDP_PORT << + DCBX_APP_SF_IEEE_SHIFT); + *entry |= ((u32)DCBX_APP_SF_PORT << + DCBX_APP_SF_SHIFT); + break; + case QED_DCBX_SF_IEEE_TCP_UDP_PORT: + *entry |= ((u32)DCBX_APP_SF_IEEE_TCP_UDP_PORT << + DCBX_APP_SF_IEEE_SHIFT); + *entry |= ((u32)DCBX_APP_SF_PORT << + DCBX_APP_SF_SHIFT); + break; + } + } else { + *entry &= ~DCBX_APP_SF_MASK; + if (p_params->app_entry[i].ethtype) + *entry |= ((u32)DCBX_APP_SF_ETHTYPE << + DCBX_APP_SF_SHIFT); + else + *entry |= ((u32)DCBX_APP_SF_PORT << + DCBX_APP_SF_SHIFT); + } + + *entry &= ~DCBX_APP_PROTOCOL_ID_MASK; + *entry |= ((u32)p_params->app_entry[i].proto_id << + DCBX_APP_PROTOCOL_ID_SHIFT); + *entry &= ~DCBX_APP_PRI_MAP_MASK; + *entry |= ((u32)(p_params->app_entry[i].prio) << + DCBX_APP_PRI_MAP_SHIFT); + } +} + +static void +qed_dcbx_set_local_params(struct qed_hwfn *p_hwfn, + struct dcbx_local_params *local_admin, + struct qed_dcbx_set *params) +{ + bool ieee = false; + + local_admin->flags = 0; + memcpy(&local_admin->features, + &p_hwfn->p_dcbx_info->operational.features, + sizeof(local_admin->features)); + + if (params->enabled) { + local_admin->config = params->ver_num; + ieee = !!(params->ver_num & DCBX_CONFIG_VERSION_IEEE); + } else { + local_admin->config = DCBX_CONFIG_VERSION_DISABLED; + } + + if (params->override_flags & QED_DCBX_OVERRIDE_PFC_CFG) + qed_dcbx_set_pfc_data(p_hwfn, &local_admin->features.pfc, + ¶ms->config.params); + + if (params->override_flags & QED_DCBX_OVERRIDE_ETS_CFG) + qed_dcbx_set_ets_data(p_hwfn, &local_admin->features.ets, + ¶ms->config.params); + + if (params->override_flags & QED_DCBX_OVERRIDE_APP_CFG) + qed_dcbx_set_app_data(p_hwfn, &local_admin->features.app, + ¶ms->config.params, ieee); +} + +int qed_dcbx_config_params(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + struct qed_dcbx_set *params, bool hw_commit) +{ + struct dcbx_local_params local_admin; + struct qed_dcbx_mib_meta_data data; + u32 resp = 0, param = 0; + int rc = 0; + + if (!hw_commit) { + memcpy(&p_hwfn->p_dcbx_info->set, params, + sizeof(struct qed_dcbx_set)); + return 0; + } + + /* clear set-parmas cache */ + memset(&p_hwfn->p_dcbx_info->set, 0, sizeof(p_hwfn->p_dcbx_info->set)); + + memset(&local_admin, 0, sizeof(local_admin)); + qed_dcbx_set_local_params(p_hwfn, &local_admin, params); + + data.addr = p_hwfn->mcp_info->port_addr + + offsetof(struct public_port, local_admin_dcbx_mib); + data.local_admin = &local_admin; + data.size = sizeof(struct dcbx_local_params); + qed_memcpy_to(p_hwfn, p_ptt, data.addr, data.local_admin, data.size); + + rc = qed_mcp_cmd(p_hwfn, p_ptt, DRV_MSG_CODE_SET_DCBX, + 1 << DRV_MB_PARAM_LLDP_SEND_SHIFT, &resp, ¶m); + if (rc) + DP_NOTICE(p_hwfn, "Failed to send DCBX update request\n"); + + return rc; +} + +int qed_dcbx_get_config_params(struct qed_hwfn *p_hwfn, + struct qed_dcbx_set *params) +{ + struct qed_dcbx_get *dcbx_info; + int rc; + + if (p_hwfn->p_dcbx_info->set.config.valid) { + memcpy(params, &p_hwfn->p_dcbx_info->set, + sizeof(struct qed_dcbx_set)); + return 0; + } + + dcbx_info = kzalloc(sizeof(*dcbx_info), GFP_KERNEL); + if (!dcbx_info) { + DP_ERR(p_hwfn, "Failed to allocate struct qed_dcbx_info\n"); + return -ENOMEM; + } + + rc = qed_dcbx_query_params(p_hwfn, dcbx_info, QED_DCBX_OPERATIONAL_MIB); + if (rc) { + kfree(dcbx_info); + return rc; + } + + p_hwfn->p_dcbx_info->set.override_flags = 0; + p_hwfn->p_dcbx_info->set.ver_num = DCBX_CONFIG_VERSION_DISABLED; + if (dcbx_info->operational.cee) + p_hwfn->p_dcbx_info->set.ver_num |= DCBX_CONFIG_VERSION_CEE; + if (dcbx_info->operational.ieee) + p_hwfn->p_dcbx_info->set.ver_num |= DCBX_CONFIG_VERSION_IEEE; + + p_hwfn->p_dcbx_info->set.enabled = dcbx_info->operational.enabled; + memcpy(&p_hwfn->p_dcbx_info->set.config.params, + &dcbx_info->operational.params, + sizeof(struct qed_dcbx_admin_params)); + p_hwfn->p_dcbx_info->set.config.valid = true; + + memcpy(params, &p_hwfn->p_dcbx_info->set, sizeof(struct qed_dcbx_set)); + + kfree(dcbx_info); + + return 0; +} + +static struct qed_dcbx_get *qed_dcbnl_get_dcbx(struct qed_hwfn *hwfn, + enum qed_mib_read_type type) +{ + struct qed_dcbx_get *dcbx_info; + + dcbx_info = kzalloc(sizeof(*dcbx_info), GFP_KERNEL); + if (!dcbx_info) { + DP_ERR(hwfn->cdev, "Failed to allocate memory for dcbx_info\n"); + return NULL; + } + + if (qed_dcbx_query_params(hwfn, dcbx_info, type)) { + kfree(dcbx_info); + return NULL; + } + + if ((type == QED_DCBX_OPERATIONAL_MIB) && + !dcbx_info->operational.enabled) { + DP_INFO(hwfn, "DCBX is not enabled/operational\n"); + kfree(dcbx_info); + return NULL; + } + + return dcbx_info; +} + +static u8 qed_dcbnl_getstate(struct qed_dev *cdev) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + bool enabled; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return 0; + + enabled = dcbx_info->operational.enabled; + DP_VERBOSE(hwfn, QED_MSG_DCB, "DCB state = %d\n", enabled); + kfree(dcbx_info); + + return enabled; +} + +static u8 qed_dcbnl_setstate(struct qed_dev *cdev, u8 state) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "DCB state = %d\n", state); + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return 1; + + dcbx_set.enabled = !!state; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return 1; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return rc ? 1 : 0; +} + +static void qed_dcbnl_getpgtccfgtx(struct qed_dev *cdev, int tc, u8 *prio_type, + u8 *pgid, u8 *bw_pct, u8 *up_map) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "tc = %d\n", tc); + *prio_type = *pgid = *bw_pct = *up_map = 0; + if (tc < 0 || tc >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid tc %d\n", tc); + return; + } + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return; + + *pgid = dcbx_info->operational.params.ets_pri_tc_tbl[tc]; + kfree(dcbx_info); +} + +static void qed_dcbnl_getpgbwgcfgtx(struct qed_dev *cdev, int pgid, u8 *bw_pct) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + + *bw_pct = 0; + DP_VERBOSE(hwfn, QED_MSG_DCB, "pgid = %d\n", pgid); + if (pgid < 0 || pgid >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid pgid %d\n", pgid); + return; + } + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return; + + *bw_pct = dcbx_info->operational.params.ets_tc_bw_tbl[pgid]; + DP_VERBOSE(hwfn, QED_MSG_DCB, "bw_pct = %d\n", *bw_pct); + kfree(dcbx_info); +} + +static void qed_dcbnl_getpgtccfgrx(struct qed_dev *cdev, int tc, u8 *prio, + u8 *bwg_id, u8 *bw_pct, u8 *up_map) +{ + DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n"); + *prio = *bwg_id = *bw_pct = *up_map = 0; +} + +static void qed_dcbnl_getpgbwgcfgrx(struct qed_dev *cdev, + int bwg_id, u8 *bw_pct) +{ + DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n"); + *bw_pct = 0; +} + +static void qed_dcbnl_getpfccfg(struct qed_dev *cdev, + int priority, u8 *setting) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "priority = %d\n", priority); + if (priority < 0 || priority >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid priority %d\n", priority); + return; + } + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return; + + *setting = dcbx_info->operational.params.pfc.prio[priority]; + DP_VERBOSE(hwfn, QED_MSG_DCB, "setting = %d\n", *setting); + kfree(dcbx_info); +} + +static void qed_dcbnl_setpfccfg(struct qed_dev *cdev, int priority, u8 setting) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "priority = %d setting = %d\n", + priority, setting); + if (priority < 0 || priority >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid priority %d\n", priority); + return; + } + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return; + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG; + dcbx_set.config.params.pfc.prio[priority] = !!setting; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); +} + +static u8 qed_dcbnl_getcap(struct qed_dev *cdev, int capid, u8 *cap) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + int rc = 0; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "capid = %d\n", capid); + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return 1; + + switch (capid) { + case DCB_CAP_ATTR_PG: + case DCB_CAP_ATTR_PFC: + case DCB_CAP_ATTR_UP2TC: + case DCB_CAP_ATTR_GSP: + *cap = true; + break; + case DCB_CAP_ATTR_PG_TCS: + case DCB_CAP_ATTR_PFC_TCS: + *cap = 0x80; + break; + case DCB_CAP_ATTR_DCBX: + *cap = (DCB_CAP_DCBX_LLD_MANAGED | DCB_CAP_DCBX_VER_CEE | + DCB_CAP_DCBX_VER_IEEE); + break; + default: + *cap = false; + rc = 1; + } + + DP_VERBOSE(hwfn, QED_MSG_DCB, "id = %d caps = %d\n", capid, *cap); + kfree(dcbx_info); + + return rc; +} + +static int qed_dcbnl_getnumtcs(struct qed_dev *cdev, int tcid, u8 *num) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + int rc = 0; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "tcid = %d\n", tcid); + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + switch (tcid) { + case DCB_NUMTCS_ATTR_PG: + *num = dcbx_info->operational.params.max_ets_tc; + break; + case DCB_NUMTCS_ATTR_PFC: + *num = dcbx_info->operational.params.pfc.max_tc; + break; + default: + rc = -EINVAL; + } + + kfree(dcbx_info); + DP_VERBOSE(hwfn, QED_MSG_DCB, "numtcs = %d\n", *num); + + return rc; +} + +static u8 qed_dcbnl_getpfcstate(struct qed_dev *cdev) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + bool enabled; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return 0; + + enabled = dcbx_info->operational.params.pfc.enabled; + DP_VERBOSE(hwfn, QED_MSG_DCB, "pfc state = %d\n", enabled); + kfree(dcbx_info); + + return enabled; +} + +static u8 qed_dcbnl_getdcbx(struct qed_dev *cdev) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + u8 mode = 0; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return 0; + + if (dcbx_info->operational.enabled) + mode |= DCB_CAP_DCBX_LLD_MANAGED; + if (dcbx_info->operational.ieee) + mode |= DCB_CAP_DCBX_VER_IEEE; + if (dcbx_info->operational.cee) + mode |= DCB_CAP_DCBX_VER_CEE; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "dcb mode = %d\n", mode); + kfree(dcbx_info); + + return mode; +} + +static void qed_dcbnl_setpgtccfgtx(struct qed_dev *cdev, + int tc, + u8 pri_type, u8 pgid, u8 bw_pct, u8 up_map) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, + "tc = %d pri_type = %d pgid = %d bw_pct = %d up_map = %d\n", + tc, pri_type, pgid, bw_pct, up_map); + + if (tc < 0 || tc >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid tc %d\n", tc); + return; + } + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return; + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG; + dcbx_set.config.params.ets_pri_tc_tbl[tc] = pgid; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); +} + +static void qed_dcbnl_setpgtccfgrx(struct qed_dev *cdev, int prio, + u8 pri_type, u8 pgid, u8 bw_pct, u8 up_map) +{ + DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n"); +} + +static void qed_dcbnl_setpgbwgcfgtx(struct qed_dev *cdev, int pgid, u8 bw_pct) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "pgid = %d bw_pct = %d\n", pgid, bw_pct); + if (pgid < 0 || pgid >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid pgid %d\n", pgid); + return; + } + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return; + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG; + dcbx_set.config.params.ets_tc_bw_tbl[pgid] = bw_pct; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); +} + +static void qed_dcbnl_setpgbwgcfgrx(struct qed_dev *cdev, int pgid, u8 bw_pct) +{ + DP_INFO(QED_LEADING_HWFN(cdev), "Rx ETS is not supported\n"); +} + +static u8 qed_dcbnl_setall(struct qed_dev *cdev) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return 1; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return 1; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 1); + + qed_ptt_release(hwfn, ptt); + + return rc; +} + +static int qed_dcbnl_setnumtcs(struct qed_dev *cdev, int tcid, u8 num) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "tcid = %d num = %d\n", tcid, num); + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return 1; + + switch (tcid) { + case DCB_NUMTCS_ATTR_PG: + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG; + dcbx_set.config.params.max_ets_tc = num; + break; + case DCB_NUMTCS_ATTR_PFC: + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG; + dcbx_set.config.params.pfc.max_tc = num; + break; + default: + DP_INFO(hwfn, "Invalid tcid %d\n", tcid); + return -EINVAL; + } + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return -EINVAL; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return 0; +} + +static void qed_dcbnl_setpfcstate(struct qed_dev *cdev, u8 state) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "new state = %d\n", state); + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return; + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG; + dcbx_set.config.params.pfc.enabled = !!state; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); +} + +static int qed_dcbnl_getapp(struct qed_dev *cdev, u8 idtype, u16 idval) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + struct qed_app_entry *entry; + bool ethtype; + u8 prio = 0; + int i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + ethtype = !!(idtype == DCB_APP_IDTYPE_ETHTYPE); + for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) { + entry = &dcbx_info->operational.params.app_entry[i]; + if ((entry->ethtype == ethtype) && (entry->proto_id == idval)) { + prio = entry->prio; + break; + } + } + + if (i == QED_DCBX_MAX_APP_PROTOCOL) { + DP_ERR(cdev, "App entry (%d, %d) not found\n", idtype, idval); + kfree(dcbx_info); + return -EINVAL; + } + + kfree(dcbx_info); + + return prio; +} + +static int qed_dcbnl_setapp(struct qed_dev *cdev, + u8 idtype, u16 idval, u8 pri_map) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_app_entry *entry; + struct qed_ptt *ptt; + bool ethtype; + int rc, i; + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return -EINVAL; + + ethtype = !!(idtype == DCB_APP_IDTYPE_ETHTYPE); + for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) { + entry = &dcbx_set.config.params.app_entry[i]; + if ((entry->ethtype == ethtype) && (entry->proto_id == idval)) + break; + /* First empty slot */ + if (!entry->proto_id) { + dcbx_set.config.params.num_app_entries++; + break; + } + } + + if (i == QED_DCBX_MAX_APP_PROTOCOL) { + DP_ERR(cdev, "App table is full\n"); + return -EBUSY; + } + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_APP_CFG; + dcbx_set.config.params.app_entry[i].ethtype = ethtype; + dcbx_set.config.params.app_entry[i].proto_id = idval; + dcbx_set.config.params.app_entry[i].prio = pri_map; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return -EBUSY; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return rc; +} + +static u8 qed_dcbnl_setdcbx(struct qed_dev *cdev, u8 mode) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "new mode = %x\n", mode); + + if (!(mode & DCB_CAP_DCBX_VER_IEEE) && !(mode & DCB_CAP_DCBX_VER_CEE)) { + DP_INFO(hwfn, "Allowed mode is cee, ieee or both\n"); + return 1; + } + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return 1; + + dcbx_set.ver_num = 0; + if (mode & DCB_CAP_DCBX_VER_CEE) { + dcbx_set.ver_num |= DCBX_CONFIG_VERSION_CEE; + dcbx_set.enabled = true; + } + + if (mode & DCB_CAP_DCBX_VER_IEEE) { + dcbx_set.ver_num |= DCBX_CONFIG_VERSION_IEEE; + dcbx_set.enabled = true; + } + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return 1; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return 0; +} + +static u8 qed_dcbnl_getfeatcfg(struct qed_dev *cdev, int featid, u8 *flags) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "Feature id = %d\n", featid); + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return 1; + + *flags = 0; + switch (featid) { + case DCB_FEATCFG_ATTR_PG: + if (dcbx_info->operational.params.ets_enabled) + *flags = DCB_FEATCFG_ENABLE; + else + *flags = DCB_FEATCFG_ERROR; + break; + case DCB_FEATCFG_ATTR_PFC: + if (dcbx_info->operational.params.pfc.enabled) + *flags = DCB_FEATCFG_ENABLE; + else + *flags = DCB_FEATCFG_ERROR; + break; + case DCB_FEATCFG_ATTR_APP: + if (dcbx_info->operational.params.app_valid) + *flags = DCB_FEATCFG_ENABLE; + else + *flags = DCB_FEATCFG_ERROR; + break; + default: + DP_INFO(hwfn, "Invalid feature-ID %d\n", featid); + kfree(dcbx_info); + return 1; + } + + DP_VERBOSE(hwfn, QED_MSG_DCB, "flags = %d\n", *flags); + kfree(dcbx_info); + + return 0; +} + +static u8 qed_dcbnl_setfeatcfg(struct qed_dev *cdev, int featid, u8 flags) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_set dcbx_set; + bool enabled, willing; + struct qed_ptt *ptt; + int rc; + + DP_VERBOSE(hwfn, QED_MSG_DCB, "featid = %d flags = %d\n", + featid, flags); + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return 1; + + enabled = !!(flags & DCB_FEATCFG_ENABLE); + willing = !!(flags & DCB_FEATCFG_WILLING); + switch (featid) { + case DCB_FEATCFG_ATTR_PG: + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG; + dcbx_set.config.params.ets_enabled = enabled; + dcbx_set.config.params.ets_willing = willing; + break; + case DCB_FEATCFG_ATTR_PFC: + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG; + dcbx_set.config.params.pfc.enabled = enabled; + dcbx_set.config.params.pfc.willing = willing; + break; + case DCB_FEATCFG_ATTR_APP: + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_APP_CFG; + dcbx_set.config.params.app_willing = willing; + break; + default: + DP_INFO(hwfn, "Invalid feature-ID %d\n", featid); + return 1; + } + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return 1; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return 0; +} + +static int qed_dcbnl_peer_getappinfo(struct qed_dev *cdev, + struct dcb_peer_app_info *info, + u16 *app_count) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB); + if (!dcbx_info) + return -EINVAL; + + info->willing = dcbx_info->remote.params.app_willing; + info->error = dcbx_info->remote.params.app_error; + *app_count = dcbx_info->remote.params.num_app_entries; + kfree(dcbx_info); + + return 0; +} + +static int qed_dcbnl_peer_getapptable(struct qed_dev *cdev, + struct dcb_app *table) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + int i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB); + if (!dcbx_info) + return -EINVAL; + + for (i = 0; i < dcbx_info->remote.params.num_app_entries; i++) { + if (dcbx_info->remote.params.app_entry[i].ethtype) + table[i].selector = DCB_APP_IDTYPE_ETHTYPE; + else + table[i].selector = DCB_APP_IDTYPE_PORTNUM; + table[i].priority = dcbx_info->remote.params.app_entry[i].prio; + table[i].protocol = + dcbx_info->remote.params.app_entry[i].proto_id; + } + + kfree(dcbx_info); + + return 0; +} + +static int qed_dcbnl_cee_peer_getpfc(struct qed_dev *cdev, struct cee_pfc *pfc) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + int i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB); + if (!dcbx_info) + return -EINVAL; + + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) + if (dcbx_info->remote.params.pfc.prio[i]) + pfc->pfc_en |= BIT(i); + + pfc->tcs_supported = dcbx_info->remote.params.pfc.max_tc; + DP_VERBOSE(hwfn, QED_MSG_DCB, "pfc state = %d tcs_supported = %d\n", + pfc->pfc_en, pfc->tcs_supported); + kfree(dcbx_info); + + return 0; +} + +static int qed_dcbnl_cee_peer_getpg(struct qed_dev *cdev, struct cee_pg *pg) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + int i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_REMOTE_MIB); + if (!dcbx_info) + return -EINVAL; + + pg->willing = dcbx_info->remote.params.ets_willing; + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) { + pg->pg_bw[i] = dcbx_info->remote.params.ets_tc_bw_tbl[i]; + pg->prio_pg[i] = dcbx_info->remote.params.ets_pri_tc_tbl[i]; + } + + DP_VERBOSE(hwfn, QED_MSG_DCB, "willing = %d", pg->willing); + kfree(dcbx_info); + + return 0; +} + +static int qed_dcbnl_get_ieee_pfc(struct qed_dev *cdev, + struct ieee_pfc *pfc, bool remote) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_params *params; + struct qed_dcbx_get *dcbx_info; + int rc, i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + if (!dcbx_info->operational.ieee) { + DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n"); + return -EINVAL; + } + + if (remote) { + memset(dcbx_info, 0, sizeof(*dcbx_info)); + rc = qed_dcbx_query_params(hwfn, dcbx_info, + QED_DCBX_REMOTE_MIB); + if (rc) { + kfree(dcbx_info); + return -EINVAL; + } + + params = &dcbx_info->remote.params; + } else { + params = &dcbx_info->operational.params; + } + + pfc->pfc_cap = params->pfc.max_tc; + pfc->pfc_en = 0; + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) + if (params->pfc.prio[i]) + pfc->pfc_en |= BIT(i); + + kfree(dcbx_info); + + return 0; +} + +static int qed_dcbnl_ieee_getpfc(struct qed_dev *cdev, struct ieee_pfc *pfc) +{ + return qed_dcbnl_get_ieee_pfc(cdev, pfc, false); +} + +static int qed_dcbnl_ieee_setpfc(struct qed_dev *cdev, struct ieee_pfc *pfc) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc, i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + if (!dcbx_info->operational.ieee) { + DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n"); + kfree(dcbx_info); + return -EINVAL; + } + + kfree(dcbx_info); + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return -EINVAL; + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_PFC_CFG; + for (i = 0; i < QED_MAX_PFC_PRIORITIES; i++) + dcbx_set.config.params.pfc.prio[i] = !!(pfc->pfc_en & BIT(i)); + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return -EINVAL; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return rc; +} + +static int qed_dcbnl_get_ieee_ets(struct qed_dev *cdev, + struct ieee_ets *ets, bool remote) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + struct qed_dcbx_params *params; + int rc; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + if (!dcbx_info->operational.ieee) { + DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n"); + kfree(dcbx_info); + return -EINVAL; + } + + if (remote) { + memset(dcbx_info, 0, sizeof(*dcbx_info)); + rc = qed_dcbx_query_params(hwfn, dcbx_info, + QED_DCBX_REMOTE_MIB); + if (rc) { + kfree(dcbx_info); + return -EINVAL; + } + + params = &dcbx_info->remote.params; + } else { + params = &dcbx_info->operational.params; + } + + ets->ets_cap = params->max_ets_tc; + ets->willing = params->ets_willing; + ets->cbs = params->ets_cbs; + memcpy(ets->tc_tx_bw, params->ets_tc_bw_tbl, sizeof(ets->tc_tx_bw)); + memcpy(ets->tc_tsa, params->ets_tc_tsa_tbl, sizeof(ets->tc_tsa)); + memcpy(ets->prio_tc, params->ets_pri_tc_tbl, sizeof(ets->prio_tc)); + kfree(dcbx_info); + + return 0; +} + +static int qed_dcbnl_ieee_getets(struct qed_dev *cdev, struct ieee_ets *ets) +{ + return qed_dcbnl_get_ieee_ets(cdev, ets, false); +} + +static int qed_dcbnl_ieee_setets(struct qed_dev *cdev, struct ieee_ets *ets) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + struct qed_dcbx_set dcbx_set; + struct qed_ptt *ptt; + int rc; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + if (!dcbx_info->operational.ieee) { + DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n"); + kfree(dcbx_info); + return -EINVAL; + } + + kfree(dcbx_info); + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return -EINVAL; + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_ETS_CFG; + dcbx_set.config.params.max_ets_tc = ets->ets_cap; + dcbx_set.config.params.ets_willing = ets->willing; + dcbx_set.config.params.ets_cbs = ets->cbs; + memcpy(dcbx_set.config.params.ets_tc_bw_tbl, ets->tc_tx_bw, + sizeof(ets->tc_tx_bw)); + memcpy(dcbx_set.config.params.ets_tc_tsa_tbl, ets->tc_tsa, + sizeof(ets->tc_tsa)); + memcpy(dcbx_set.config.params.ets_pri_tc_tbl, ets->prio_tc, + sizeof(ets->prio_tc)); + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return -EINVAL; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return rc; +} + +int qed_dcbnl_ieee_peer_getets(struct qed_dev *cdev, struct ieee_ets *ets) +{ + return qed_dcbnl_get_ieee_ets(cdev, ets, true); +} + +int qed_dcbnl_ieee_peer_getpfc(struct qed_dev *cdev, struct ieee_pfc *pfc) +{ + return qed_dcbnl_get_ieee_pfc(cdev, pfc, true); +} + +int qed_dcbnl_ieee_getapp(struct qed_dev *cdev, struct dcb_app *app) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + struct qed_app_entry *entry; + bool ethtype; + u8 prio = 0; + int i; + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + if (!dcbx_info->operational.ieee) { + DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n"); + kfree(dcbx_info); + return -EINVAL; + } + + /* ieee defines the selector field value for ethertype to be 1 */ + ethtype = !!((app->selector - 1) == DCB_APP_IDTYPE_ETHTYPE); + for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) { + entry = &dcbx_info->operational.params.app_entry[i]; + if ((entry->ethtype == ethtype) && + (entry->proto_id == app->protocol)) { + prio = entry->prio; + break; + } + } + + if (i == QED_DCBX_MAX_APP_PROTOCOL) { + DP_ERR(cdev, "App entry (%d, %d) not found\n", app->selector, + app->protocol); + kfree(dcbx_info); + return -EINVAL; + } + + app->priority = ffs(prio) - 1; + + kfree(dcbx_info); + + return 0; +} + +int qed_dcbnl_ieee_setapp(struct qed_dev *cdev, struct dcb_app *app) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_dcbx_get *dcbx_info; + struct qed_dcbx_set dcbx_set; + struct qed_app_entry *entry; + struct qed_ptt *ptt; + bool ethtype; + int rc, i; + + if (app->priority < 0 || app->priority >= QED_MAX_PFC_PRIORITIES) { + DP_INFO(hwfn, "Invalid priority %d\n", app->priority); + return -EINVAL; + } + + dcbx_info = qed_dcbnl_get_dcbx(hwfn, QED_DCBX_OPERATIONAL_MIB); + if (!dcbx_info) + return -EINVAL; + + if (!dcbx_info->operational.ieee) { + DP_INFO(hwfn, "DCBX is not enabled/operational in IEEE mode\n"); + kfree(dcbx_info); + return -EINVAL; + } + + kfree(dcbx_info); + + memset(&dcbx_set, 0, sizeof(dcbx_set)); + rc = qed_dcbx_get_config_params(hwfn, &dcbx_set); + if (rc) + return -EINVAL; + + /* ieee defines the selector field value for ethertype to be 1 */ + ethtype = !!((app->selector - 1) == DCB_APP_IDTYPE_ETHTYPE); + for (i = 0; i < QED_DCBX_MAX_APP_PROTOCOL; i++) { + entry = &dcbx_set.config.params.app_entry[i]; + if ((entry->ethtype == ethtype) && + (entry->proto_id == app->protocol)) + break; + /* First empty slot */ + if (!entry->proto_id) { + dcbx_set.config.params.num_app_entries++; + break; + } + } + + if (i == QED_DCBX_MAX_APP_PROTOCOL) { + DP_ERR(cdev, "App table is full\n"); + return -EBUSY; + } + + dcbx_set.override_flags |= QED_DCBX_OVERRIDE_APP_CFG; + dcbx_set.config.params.app_entry[i].ethtype = ethtype; + dcbx_set.config.params.app_entry[i].proto_id = app->protocol; + dcbx_set.config.params.app_entry[i].prio = BIT(app->priority); + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return -EBUSY; + + rc = qed_dcbx_config_params(hwfn, ptt, &dcbx_set, 0); + + qed_ptt_release(hwfn, ptt); + + return rc; +} + +const struct qed_eth_dcbnl_ops qed_dcbnl_ops_pass = { + .getstate = qed_dcbnl_getstate, + .setstate = qed_dcbnl_setstate, + .getpgtccfgtx = qed_dcbnl_getpgtccfgtx, + .getpgbwgcfgtx = qed_dcbnl_getpgbwgcfgtx, + .getpgtccfgrx = qed_dcbnl_getpgtccfgrx, + .getpgbwgcfgrx = qed_dcbnl_getpgbwgcfgrx, + .getpfccfg = qed_dcbnl_getpfccfg, + .setpfccfg = qed_dcbnl_setpfccfg, + .getcap = qed_dcbnl_getcap, + .getnumtcs = qed_dcbnl_getnumtcs, + .getpfcstate = qed_dcbnl_getpfcstate, + .getdcbx = qed_dcbnl_getdcbx, + .setpgtccfgtx = qed_dcbnl_setpgtccfgtx, + .setpgtccfgrx = qed_dcbnl_setpgtccfgrx, + .setpgbwgcfgtx = qed_dcbnl_setpgbwgcfgtx, + .setpgbwgcfgrx = qed_dcbnl_setpgbwgcfgrx, + .setall = qed_dcbnl_setall, + .setnumtcs = qed_dcbnl_setnumtcs, + .setpfcstate = qed_dcbnl_setpfcstate, + .setapp = qed_dcbnl_setapp, + .setdcbx = qed_dcbnl_setdcbx, + .setfeatcfg = qed_dcbnl_setfeatcfg, + .getfeatcfg = qed_dcbnl_getfeatcfg, + .getapp = qed_dcbnl_getapp, + .peer_getappinfo = qed_dcbnl_peer_getappinfo, + .peer_getapptable = qed_dcbnl_peer_getapptable, + .cee_peer_getpfc = qed_dcbnl_cee_peer_getpfc, + .cee_peer_getpg = qed_dcbnl_cee_peer_getpg, + .ieee_getpfc = qed_dcbnl_ieee_getpfc, + .ieee_setpfc = qed_dcbnl_ieee_setpfc, + .ieee_getets = qed_dcbnl_ieee_getets, + .ieee_setets = qed_dcbnl_ieee_setets, + .ieee_peer_getpfc = qed_dcbnl_ieee_peer_getpfc, + .ieee_peer_getets = qed_dcbnl_ieee_peer_getets, + .ieee_getapp = qed_dcbnl_ieee_getapp, + .ieee_setapp = qed_dcbnl_ieee_setapp, +}; + +#endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_dcbx.h b/drivers/net/ethernet/qlogic/qed/qed_dcbx.h new file mode 100644 index 000000000000..9ba681643d05 --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_dcbx.h @@ -0,0 +1,108 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ + +#ifndef _QED_DCBX_H +#define _QED_DCBX_H +#include <linux/types.h> +#include <linux/slab.h> +#include "qed.h" +#include "qed_hsi.h" +#include "qed_hw.h" +#include "qed_mcp.h" +#include "qed_reg_addr.h" + +#define DCBX_CONFIG_MAX_APP_PROTOCOL 4 + +enum qed_mib_read_type { + QED_DCBX_OPERATIONAL_MIB, + QED_DCBX_REMOTE_MIB, + QED_DCBX_LOCAL_MIB, + QED_DCBX_REMOTE_LLDP_MIB, + QED_DCBX_LOCAL_LLDP_MIB +}; + +struct qed_dcbx_app_data { + bool enable; /* DCB enabled */ + bool update; /* Update indication */ + u8 priority; /* Priority */ + u8 tc; /* Traffic Class */ +}; + +#ifdef CONFIG_DCB +#define QED_DCBX_VERSION_DISABLED 0 +#define QED_DCBX_VERSION_IEEE 1 +#define QED_DCBX_VERSION_CEE 2 + +struct qed_dcbx_set { +#define QED_DCBX_OVERRIDE_STATE BIT(0) +#define QED_DCBX_OVERRIDE_PFC_CFG BIT(1) +#define QED_DCBX_OVERRIDE_ETS_CFG BIT(2) +#define QED_DCBX_OVERRIDE_APP_CFG BIT(3) +#define QED_DCBX_OVERRIDE_DSCP_CFG BIT(4) + u32 override_flags; + bool enabled; + struct qed_dcbx_admin_params config; + u32 ver_num; +}; +#endif + +struct qed_dcbx_results { + bool dcbx_enabled; + u8 pf_id; + struct qed_dcbx_app_data arr[DCBX_MAX_PROTOCOL_TYPE]; +}; + +struct qed_dcbx_app_metadata { + enum dcbx_protocol_type id; + char *name; + enum qed_pci_personality personality; +}; + +#define QED_MFW_GET_FIELD(name, field) \ + (((name) & (field ## _MASK)) >> (field ## _SHIFT)) + +struct qed_dcbx_info { + struct lldp_status_params_s lldp_remote[LLDP_MAX_LLDP_AGENTS]; + struct lldp_config_params_s lldp_local[LLDP_MAX_LLDP_AGENTS]; + struct dcbx_local_params local_admin; + struct qed_dcbx_results results; + struct dcbx_mib operational; + struct dcbx_mib remote; +#ifdef CONFIG_DCB + struct qed_dcbx_set set; +#endif + u8 dcbx_cap; +}; + +struct qed_dcbx_mib_meta_data { + struct lldp_config_params_s *lldp_local; + struct lldp_status_params_s *lldp_remote; + struct dcbx_local_params *local_admin; + struct dcbx_mib *mib; + size_t size; + u32 addr; +}; + +#ifdef CONFIG_DCB +int qed_dcbx_get_config_params(struct qed_hwfn *, struct qed_dcbx_set *); + +int qed_dcbx_config_params(struct qed_hwfn *, + struct qed_ptt *, struct qed_dcbx_set *, bool); +#endif + +/* QED local interface routines */ +int +qed_dcbx_mib_update_event(struct qed_hwfn *, + struct qed_ptt *, enum qed_mib_read_type); + +int qed_dcbx_info_alloc(struct qed_hwfn *p_hwfn); +void qed_dcbx_info_free(struct qed_hwfn *, struct qed_dcbx_info *); +void qed_dcbx_set_pf_update_params(struct qed_dcbx_results *p_src, + struct pf_update_ramrod_data *p_dest); + +#endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_dev.c b/drivers/net/ethernet/qlogic/qed/qed_dev.c index b7d100f6bd6f..0e4f4a9306b5 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_dev.c +++ b/drivers/net/ethernet/qlogic/qed/qed_dev.c @@ -17,11 +17,13 @@ #include <linux/pci.h> #include <linux/slab.h> #include <linux/string.h> +#include <linux/vmalloc.h> #include <linux/etherdevice.h> #include <linux/qed/qed_chain.h> #include <linux/qed/qed_if.h> #include "qed.h" #include "qed_cxt.h" +#include "qed_dcbx.h" #include "qed_dev_api.h" #include "qed_hsi.h" #include "qed_hw.h" @@ -30,6 +32,11 @@ #include "qed_mcp.h" #include "qed_reg_addr.h" #include "qed_sp.h" +#include "qed_sriov.h" +#include "qed_vf.h" + +static spinlock_t qm_lock; +static bool qm_lock_init = false; /* API common to all protocols */ enum BAR_ID { @@ -40,10 +47,14 @@ enum BAR_ID { static u32 qed_hw_bar_size(struct qed_hwfn *p_hwfn, enum BAR_ID bar_id) { - u32 bar_reg = (bar_id == BAR_ID_0 ? - PGLUE_B_REG_PF_BAR0_SIZE : PGLUE_B_REG_PF_BAR1_SIZE); - u32 val = qed_rd(p_hwfn, p_hwfn->p_main_ptt, bar_reg); + u32 bar_reg = (bar_id == BAR_ID_0 ? + PGLUE_B_REG_PF_BAR0_SIZE : PGLUE_B_REG_PF_BAR1_SIZE); + u32 val; + + if (IS_VF(p_hwfn->cdev)) + return 1 << 17; + val = qed_rd(p_hwfn, p_hwfn->p_main_ptt, bar_reg); if (val) return 1 << (val + 15); @@ -105,12 +116,17 @@ static void qed_qm_info_free(struct qed_hwfn *p_hwfn) qm_info->qm_vport_params = NULL; kfree(qm_info->qm_port_params); qm_info->qm_port_params = NULL; + kfree(qm_info->wfq_data); + qm_info->wfq_data = NULL; } void qed_resc_free(struct qed_dev *cdev) { int i; + if (IS_VF(cdev)) + return; + kfree(cdev->fw_data); cdev->fw_data = NULL; @@ -134,22 +150,54 @@ void qed_resc_free(struct qed_dev *cdev) qed_eq_free(p_hwfn, p_hwfn->p_eq); qed_consq_free(p_hwfn, p_hwfn->p_consq); qed_int_free(p_hwfn); + qed_iov_free(p_hwfn); qed_dmae_info_free(p_hwfn); + qed_dcbx_info_free(p_hwfn, p_hwfn->p_dcbx_info); } } -static int qed_init_qm_info(struct qed_hwfn *p_hwfn) +static int qed_init_qm_info(struct qed_hwfn *p_hwfn, bool b_sleepable) { + u8 num_vports, vf_offset = 0, i, vport_id, num_ports, curr_queue = 0; struct qed_qm_info *qm_info = &p_hwfn->qm_info; struct init_qm_port_params *p_qm_port; - u8 num_vports, i, vport_id, num_ports; + bool init_rdma_offload_pq = false; + bool init_pure_ack_pq = false; + bool init_ooo_pq = false; u16 num_pqs, multi_cos_tcs = 1; - + u8 pf_wfq = qm_info->pf_wfq; + u32 pf_rl = qm_info->pf_rl; + u16 num_pf_rls = 0; + u16 num_vfs = 0; + +#ifdef CONFIG_QED_SRIOV + if (p_hwfn->cdev->p_iov_info) + num_vfs = p_hwfn->cdev->p_iov_info->total_vfs; +#endif memset(qm_info, 0, sizeof(*qm_info)); - num_pqs = multi_cos_tcs + 1; /* The '1' is for pure-LB */ + num_pqs = multi_cos_tcs + num_vfs + 1; /* The '1' is for pure-LB */ num_vports = (u8)RESC_NUM(p_hwfn, QED_VPORT); + if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) { + num_pqs++; /* for RoCE queue */ + init_rdma_offload_pq = true; + /* we subtract num_vfs because each require a rate limiter, + * and one default rate limiter + */ + if (p_hwfn->pf_params.rdma_pf_params.enable_dcqcn) + num_pf_rls = RESC_NUM(p_hwfn, QED_RL) - num_vfs - 1; + + num_pqs += num_pf_rls; + qm_info->num_pf_rls = (u8) num_pf_rls; + } + + if (p_hwfn->hw_info.personality == QED_PCI_ISCSI) { + num_pqs += 2; /* for iSCSI pure-ACK / OOO queue */ + init_pure_ack_pq = true; + init_ooo_pq = true; + } + /* Sanity checking that setup requires legal number of resources */ if (num_pqs > RESC_NUM(p_hwfn, QED_PQ)) { DP_ERR(p_hwfn, @@ -160,40 +208,107 @@ static int qed_init_qm_info(struct qed_hwfn *p_hwfn) /* PQs will be arranged as follows: First per-TC PQ then pure-LB quete. */ - qm_info->qm_pq_params = kzalloc(sizeof(*qm_info->qm_pq_params) * - num_pqs, GFP_KERNEL); + qm_info->qm_pq_params = kcalloc(num_pqs, + sizeof(struct init_qm_pq_params), + b_sleepable ? GFP_KERNEL : GFP_ATOMIC); if (!qm_info->qm_pq_params) goto alloc_err; - qm_info->qm_vport_params = kzalloc(sizeof(*qm_info->qm_vport_params) * - num_vports, GFP_KERNEL); + qm_info->qm_vport_params = kcalloc(num_vports, + sizeof(struct init_qm_vport_params), + b_sleepable ? GFP_KERNEL + : GFP_ATOMIC); if (!qm_info->qm_vport_params) goto alloc_err; - qm_info->qm_port_params = kzalloc(sizeof(*qm_info->qm_port_params) * - MAX_NUM_PORTS, GFP_KERNEL); + qm_info->qm_port_params = kcalloc(MAX_NUM_PORTS, + sizeof(struct init_qm_port_params), + b_sleepable ? GFP_KERNEL + : GFP_ATOMIC); if (!qm_info->qm_port_params) goto alloc_err; + qm_info->wfq_data = kcalloc(num_vports, sizeof(struct qed_wfq_data), + b_sleepable ? GFP_KERNEL : GFP_ATOMIC); + if (!qm_info->wfq_data) + goto alloc_err; + vport_id = (u8)RESC_START(p_hwfn, QED_VPORT); + /* First init rate limited queues */ + for (curr_queue = 0; curr_queue < num_pf_rls; curr_queue++) { + qm_info->qm_pq_params[curr_queue].vport_id = vport_id++; + qm_info->qm_pq_params[curr_queue].tc_id = + p_hwfn->hw_info.non_offload_tc; + qm_info->qm_pq_params[curr_queue].wrr_group = 1; + qm_info->qm_pq_params[curr_queue].rl_valid = 1; + } + /* First init per-TC PQs */ for (i = 0; i < multi_cos_tcs; i++) { - struct init_qm_pq_params *params = &qm_info->qm_pq_params[i]; - - params->vport_id = vport_id; - params->tc_id = p_hwfn->hw_info.non_offload_tc; - params->wrr_group = 1; + struct init_qm_pq_params *params = + &qm_info->qm_pq_params[curr_queue++]; + + if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE || + p_hwfn->hw_info.personality == QED_PCI_ETH) { + params->vport_id = vport_id; + params->tc_id = p_hwfn->hw_info.non_offload_tc; + params->wrr_group = 1; + } else { + params->vport_id = vport_id; + params->tc_id = p_hwfn->hw_info.offload_tc; + params->wrr_group = 1; + } } /* Then init pure-LB PQ */ - qm_info->pure_lb_pq = i; - qm_info->qm_pq_params[i].vport_id = (u8)RESC_START(p_hwfn, QED_VPORT); - qm_info->qm_pq_params[i].tc_id = PURE_LB_TC; - qm_info->qm_pq_params[i].wrr_group = 1; - i++; + qm_info->pure_lb_pq = curr_queue; + qm_info->qm_pq_params[curr_queue].vport_id = + (u8) RESC_START(p_hwfn, QED_VPORT); + qm_info->qm_pq_params[curr_queue].tc_id = PURE_LB_TC; + qm_info->qm_pq_params[curr_queue].wrr_group = 1; + curr_queue++; qm_info->offload_pq = 0; + if (init_rdma_offload_pq) { + qm_info->offload_pq = curr_queue; + qm_info->qm_pq_params[curr_queue].vport_id = vport_id; + qm_info->qm_pq_params[curr_queue].tc_id = + p_hwfn->hw_info.offload_tc; + qm_info->qm_pq_params[curr_queue].wrr_group = 1; + curr_queue++; + } + + if (init_pure_ack_pq) { + qm_info->pure_ack_pq = curr_queue; + qm_info->qm_pq_params[curr_queue].vport_id = vport_id; + qm_info->qm_pq_params[curr_queue].tc_id = + p_hwfn->hw_info.offload_tc; + qm_info->qm_pq_params[curr_queue].wrr_group = 1; + curr_queue++; + } + + if (init_ooo_pq) { + qm_info->ooo_pq = curr_queue; + qm_info->qm_pq_params[curr_queue].vport_id = vport_id; + qm_info->qm_pq_params[curr_queue].tc_id = DCBX_ISCSI_OOO_TC; + qm_info->qm_pq_params[curr_queue].wrr_group = 1; + curr_queue++; + } + + /* Then init per-VF PQs */ + vf_offset = curr_queue; + for (i = 0; i < num_vfs; i++) { + /* First vport is used by the PF */ + qm_info->qm_pq_params[curr_queue].vport_id = vport_id + i + 1; + qm_info->qm_pq_params[curr_queue].tc_id = + p_hwfn->hw_info.non_offload_tc; + qm_info->qm_pq_params[curr_queue].wrr_group = 1; + qm_info->qm_pq_params[curr_queue].rl_valid = 1; + curr_queue++; + } + + qm_info->vf_queues_offset = vf_offset; qm_info->num_pqs = num_pqs; qm_info->num_vports = num_vports; @@ -202,7 +317,10 @@ static int qed_init_qm_info(struct qed_hwfn *p_hwfn) for (i = 0; i < num_ports; i++) { p_qm_port = &qm_info->qm_port_params[i]; p_qm_port->active = 1; - p_qm_port->num_active_phys_tcs = 4; + if (num_ports == 4) + p_qm_port->active_phys_tcs = 0x7; + else + p_qm_port->active_phys_tcs = 0x9f; p_qm_port->num_pbf_cmd_lines = PBF_MAX_CMD_LINES / num_ports; p_qm_port->num_btb_blocks = BTB_MAX_BLOCKS / num_ports; } @@ -211,29 +329,91 @@ static int qed_init_qm_info(struct qed_hwfn *p_hwfn) qm_info->start_pq = (u16)RESC_START(p_hwfn, QED_PQ); - qm_info->start_vport = (u8)RESC_START(p_hwfn, QED_VPORT); + qm_info->num_vf_pqs = num_vfs; + qm_info->start_vport = (u8) RESC_START(p_hwfn, QED_VPORT); + + for (i = 0; i < qm_info->num_vports; i++) + qm_info->qm_vport_params[i].vport_wfq = 1; - qm_info->pf_wfq = 0; - qm_info->pf_rl = 0; qm_info->vport_rl_en = 1; + qm_info->vport_wfq_en = 1; + qm_info->pf_rl = pf_rl; + qm_info->pf_wfq = pf_wfq; return 0; alloc_err: DP_NOTICE(p_hwfn, "Failed to allocate memory for QM params\n"); - kfree(qm_info->qm_pq_params); - kfree(qm_info->qm_vport_params); - kfree(qm_info->qm_port_params); - + qed_qm_info_free(p_hwfn); return -ENOMEM; } +/* This function reconfigures the QM pf on the fly. + * For this purpose we: + * 1. reconfigure the QM database + * 2. set new values to runtime arrat + * 3. send an sdm_qm_cmd through the rbc interface to stop the QM + * 4. activate init tool in QM_PF stage + * 5. send an sdm_qm_cmd through rbc interface to release the QM + */ +int qed_qm_reconf(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + struct qed_qm_info *qm_info = &p_hwfn->qm_info; + bool b_rc; + int rc; + + /* qm_info is allocated in qed_init_qm_info() which is already called + * from qed_resc_alloc() or previous call of qed_qm_reconf(). + * The allocated size may change each init, so we free it before next + * allocation. + */ + qed_qm_info_free(p_hwfn); + + /* initialize qed's qm data structure */ + rc = qed_init_qm_info(p_hwfn, false); + if (rc) + return rc; + + /* stop PF's qm queues */ + spin_lock_bh(&qm_lock); + b_rc = qed_send_qm_stop_cmd(p_hwfn, p_ptt, false, true, + qm_info->start_pq, qm_info->num_pqs); + spin_unlock_bh(&qm_lock); + if (!b_rc) + return -EINVAL; + + /* clear the QM_PF runtime phase leftovers from previous init */ + qed_init_clear_rt_data(p_hwfn); + + /* prepare QM portion of runtime array */ + qed_qm_init_pf(p_hwfn); + + /* activate init tool on runtime array */ + rc = qed_init_run(p_hwfn, p_ptt, PHASE_QM_PF, p_hwfn->rel_pf_id, + p_hwfn->hw_info.hw_mode); + if (rc) + return rc; + + /* start PF's qm queues */ + spin_lock_bh(&qm_lock); + b_rc = qed_send_qm_stop_cmd(p_hwfn, p_ptt, true, true, + qm_info->start_pq, qm_info->num_pqs); + spin_unlock_bh(&qm_lock); + if (!b_rc) + return -EINVAL; + + return 0; +} + int qed_resc_alloc(struct qed_dev *cdev) { struct qed_consq *p_consq; struct qed_eq *p_eq; int i, rc = 0; + if (IS_VF(cdev)) + return rc; + cdev->fw_data = kzalloc(sizeof(*cdev->fw_data), GFP_KERNEL); if (!cdev->fw_data) return -ENOMEM; @@ -250,21 +430,20 @@ int qed_resc_alloc(struct qed_dev *cdev) if (!p_hwfn->p_tx_cids) { DP_NOTICE(p_hwfn, "Failed to allocate memory for Tx Cids\n"); - rc = -ENOMEM; - goto alloc_err; + goto alloc_no_mem; } p_hwfn->p_rx_cids = kzalloc(rx_size, GFP_KERNEL); if (!p_hwfn->p_rx_cids) { DP_NOTICE(p_hwfn, "Failed to allocate memory for Rx Cids\n"); - rc = -ENOMEM; - goto alloc_err; + goto alloc_no_mem; } } for_each_hwfn(cdev, i) { struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + u32 n_eqes, num_cons; /* First allocate the context manager structure */ rc = qed_cxt_mngr_alloc(p_hwfn); @@ -279,7 +458,7 @@ int qed_resc_alloc(struct qed_dev *cdev) goto alloc_err; /* Prepare and process QM requirements */ - rc = qed_init_qm_info(p_hwfn); + rc = qed_init_qm_info(p_hwfn, true); if (rc) goto alloc_err; @@ -308,19 +487,40 @@ int qed_resc_alloc(struct qed_dev *cdev) if (rc) goto alloc_err; + rc = qed_iov_alloc(p_hwfn); + if (rc) + goto alloc_err; + /* EQ */ - p_eq = qed_eq_alloc(p_hwfn, 256); - if (!p_eq) { - rc = -ENOMEM; + n_eqes = qed_chain_get_capacity(&p_hwfn->p_spq->chain); + if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) { + num_cons = qed_cxt_get_proto_cid_count(p_hwfn, + PROTOCOLID_ROCE, + 0) * 2; + n_eqes += num_cons + 2 * MAX_NUM_VFS_BB; + } else if (p_hwfn->hw_info.personality == QED_PCI_ISCSI) { + num_cons = + qed_cxt_get_proto_cid_count(p_hwfn, + PROTOCOLID_ISCSI, 0); + n_eqes += 2 * num_cons; + } + + if (n_eqes > 0xFFFF) { + DP_ERR(p_hwfn, + "Cannot allocate 0x%x EQ elements. The maximum of a u16 chain is 0x%x\n", + n_eqes, 0xFFFF); + rc = -EINVAL; goto alloc_err; } + + p_eq = qed_eq_alloc(p_hwfn, (u16) n_eqes); + if (!p_eq) + goto alloc_no_mem; p_hwfn->p_eq = p_eq; p_consq = qed_consq_alloc(p_hwfn); - if (!p_consq) { - rc = -ENOMEM; - goto alloc_err; - } + if (!p_consq) + goto alloc_no_mem; p_hwfn->p_consq = p_consq; /* DMA info initialization */ @@ -330,6 +530,14 @@ int qed_resc_alloc(struct qed_dev *cdev) "Failed to allocate memory for dmae_info structure\n"); goto alloc_err; } + + /* DCBX initialization */ + rc = qed_dcbx_info_alloc(p_hwfn); + if (rc) { + DP_NOTICE(p_hwfn, + "Failed to allocate memory for dcbx structure\n"); + goto alloc_err; + } } cdev->reset_stats = kzalloc(sizeof(*cdev->reset_stats), GFP_KERNEL); @@ -341,6 +549,8 @@ int qed_resc_alloc(struct qed_dev *cdev) return 0; +alloc_no_mem: + rc = -ENOMEM; alloc_err: qed_resc_free(cdev); return rc; @@ -350,6 +560,9 @@ void qed_resc_setup(struct qed_dev *cdev) { int i; + if (IS_VF(cdev)) + return; + for_each_hwfn(cdev, i) { struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; @@ -365,14 +578,15 @@ void qed_resc_setup(struct qed_dev *cdev) p_hwfn->mcp_info->mfw_mb_length); qed_int_setup(p_hwfn, p_hwfn->p_main_ptt); + + qed_iov_setup(p_hwfn, p_hwfn->p_main_ptt); } } #define FINAL_CLEANUP_POLL_CNT (100) #define FINAL_CLEANUP_POLL_TIME (10) int qed_final_cleanup(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u16 id) + struct qed_ptt *p_ptt, u16 id, bool is_vf) { u32 command = 0, addr, count = FINAL_CLEANUP_POLL_CNT; int rc = -EBUSY; @@ -380,6 +594,9 @@ int qed_final_cleanup(struct qed_hwfn *p_hwfn, addr = GTT_BAR0_MAP_REG_USDM_RAM + USTORM_FLR_FINAL_ACK_OFFSET(p_hwfn->rel_pf_id); + if (is_vf) + id += 0x10; + command |= X_FINAL_CLEANUP_AGG_INT << SDM_AGG_INT_COMP_PARAMS_AGG_INT_INDEX_SHIFT; command |= 1 << SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_ENABLE_SHIFT; @@ -453,7 +670,14 @@ static void qed_calc_hw_mode(struct qed_hwfn *p_hwfn) hw_mode |= 1 << MODE_ASIC; + if (p_hwfn->cdev->num_hwfns > 1) + hw_mode |= 1 << MODE_100G; + p_hwfn->hw_info.hw_mode = hw_mode; + + DP_VERBOSE(p_hwfn, (NETIF_MSG_PROBE | NETIF_MSG_IFUP), + "Configuring function for hw_mode: 0x%08x\n", + p_hwfn->hw_info.hw_mode); } /* Init run time data for all PFs on an engine. */ @@ -492,7 +716,10 @@ static int qed_hw_init_common(struct qed_hwfn *p_hwfn, struct qed_qm_info *qm_info = &p_hwfn->qm_info; struct qed_qm_common_rt_init_params params; struct qed_dev *cdev = p_hwfn->cdev; + u16 num_pfs, pf_id; + u32 concrete_fid; int rc = 0; + u8 vf_id; qed_init_cau_rt_data(cdev); @@ -538,9 +765,24 @@ static int qed_hw_init_common(struct qed_hwfn *p_hwfn, qed_wr(p_hwfn, p_ptt, PSWRQ2_REG_L2P_VALIDATE_VFID, 0); qed_wr(p_hwfn, p_ptt, PGLUE_B_REG_USE_CLIENTID_IN_TAG, 1); - /* Disable relaxed ordering in the PCI config space */ - qed_wr(p_hwfn, p_ptt, 0x20b4, - qed_rd(p_hwfn, p_ptt, 0x20b4) & ~0x10); + if (QED_IS_BB(p_hwfn->cdev)) { + num_pfs = NUM_OF_ENG_PFS(p_hwfn->cdev); + for (pf_id = 0; pf_id < num_pfs; pf_id++) { + qed_fid_pretend(p_hwfn, p_ptt, pf_id); + qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_ROCE, 0x0); + qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_TCP, 0x0); + } + /* pretend to original PF */ + qed_fid_pretend(p_hwfn, p_ptt, p_hwfn->rel_pf_id); + } + + for (vf_id = 0; vf_id < MAX_NUM_VFS_BB; vf_id++) { + concrete_fid = qed_vfid_to_concrete(p_hwfn, vf_id); + qed_fid_pretend(p_hwfn, p_ptt, (u16) concrete_fid); + qed_wr(p_hwfn, p_ptt, CCFC_REG_STRONG_ENABLE_VF, 0x1); + } + /* pretend to original PF */ + qed_fid_pretend(p_hwfn, p_ptt, p_hwfn->rel_pf_id); return rc; } @@ -551,13 +793,37 @@ static int qed_hw_init_port(struct qed_hwfn *p_hwfn, { int rc = 0; - rc = qed_init_run(p_hwfn, p_ptt, PHASE_PORT, p_hwfn->port_id, - hw_mode); + rc = qed_init_run(p_hwfn, p_ptt, PHASE_PORT, p_hwfn->port_id, hw_mode); + if (rc != 0) + return rc; + + if (hw_mode & (1 << MODE_MF_SI)) { + u8 pf_id = 0; + + if (!qed_hw_init_first_eth(p_hwfn, p_ptt, &pf_id)) { + DP_VERBOSE(p_hwfn, NETIF_MSG_IFUP, + "PF[%08x] is first eth on engine\n", pf_id); + + /* We should have configured BIT for ppfid, i.e., the + * relative function number in the port. But there's a + * bug in LLH in BB where the ppfid is actually engine + * based, so we need to take this into account. + */ + qed_wr(p_hwfn, p_ptt, + NIG_REG_LLH_TAGMAC_DEF_PF_VECTOR, 1 << pf_id); + } + + /* Take the protocol-based hit vector if there is a hit, + * otherwise take the other vector. + */ + qed_wr(p_hwfn, p_ptt, NIG_REG_LLH_CLS_TYPE_DUALMODE, 0x2); + } return rc; } static int qed_hw_init_pf(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + struct qed_tunn_start_params *p_tunn, int hw_mode, bool b_hw_start, enum qed_int_mode int_mode, @@ -574,7 +840,7 @@ static int qed_hw_init_pf(struct qed_hwfn *p_hwfn, p_hwfn->qm_info.pf_wfq = p_info->bandwidth_min; /* Update rate limit once we'll actually have a link */ - p_hwfn->qm_info.pf_rl = 100; + p_hwfn->qm_info.pf_rl = 100000; } qed_cxt_hw_init_pf(p_hwfn); @@ -598,12 +864,13 @@ static int qed_hw_init_pf(struct qed_hwfn *p_hwfn, } /* Protocl Configuration */ - STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_TCP_RT_OFFSET, 0); + STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_TCP_RT_OFFSET, + (p_hwfn->hw_info.personality == QED_PCI_ISCSI) ? 1 : 0); STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_FCOE_RT_OFFSET, 0); STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_ROCE_RT_OFFSET, 0); /* Cleanup chip from previous driver if such remains exist */ - rc = qed_final_cleanup(p_hwfn, p_ptt, rel_pf_id); + rc = qed_final_cleanup(p_hwfn, p_ptt, rel_pf_id, false); if (rc != 0) return rc; @@ -620,12 +887,28 @@ static int qed_hw_init_pf(struct qed_hwfn *p_hwfn, /* Pure runtime initializations - directly to the HW */ qed_int_igu_init_pure_rt(p_hwfn, p_ptt, true, true); + if (hw_mode & (1 << MODE_MF_SI)) { + u8 pf_id = 0; + u32 val = 0; + + if (!qed_hw_init_first_eth(p_hwfn, p_ptt, &pf_id)) { + if (p_hwfn->rel_pf_id == pf_id) { + DP_VERBOSE(p_hwfn, NETIF_MSG_IFUP, + "PF[%d] is first ETH on engine\n", + pf_id); + val = 1; + } + qed_wr(p_hwfn, p_ptt, PRS_REG_MSG_INFO, val); + } + } + if (b_hw_start) { /* enable interrupts */ qed_int_igu_enable(p_hwfn, p_ptt, int_mode); /* send function start command */ - rc = qed_sp_pf_start(p_hwfn, p_hwfn->cdev->mf_mode); + rc = qed_sp_pf_start(p_hwfn, p_tunn, p_hwfn->cdev->mf_mode, + allow_npar_tx_switch); if (rc) DP_NOTICE(p_hwfn, "Function start ramrod failed\n"); } @@ -672,6 +955,7 @@ static void qed_reset_mb_shadow(struct qed_hwfn *p_hwfn, } int qed_hw_init(struct qed_dev *cdev, + struct qed_tunn_start_params *p_tunn, bool b_hw_start, enum qed_int_mode int_mode, bool allow_npar_tx_switch, @@ -680,13 +964,25 @@ int qed_hw_init(struct qed_dev *cdev, u32 load_code, param; int rc, mfw_rc, i; - rc = qed_init_fw_data(cdev, bin_fw_data); - if (rc != 0) - return rc; + if ((int_mode == QED_INT_MODE_MSI) && (cdev->num_hwfns > 1)) { + DP_NOTICE(cdev, "MSI mode is not supported for CMT devices\n"); + return -EINVAL; + } + + if (IS_PF(cdev)) { + rc = qed_init_fw_data(cdev, bin_fw_data); + if (rc != 0) + return rc; + } for_each_hwfn(cdev, i) { struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + if (IS_VF(cdev)) { + p_hwfn->b_int_enabled = 1; + continue; + } + /* Enable DMAE in PXP */ rc = qed_change_pci_hwfn(p_hwfn, p_hwfn->p_main_ptt, true); @@ -708,6 +1004,11 @@ int qed_hw_init(struct qed_dev *cdev, p_hwfn->first_on_engine = (load_code == FW_MSG_CODE_DRV_LOAD_ENGINE); + if (!qm_lock_init) { + spin_lock_init(&qm_lock); + qm_lock_init = true; + } + switch (load_code) { case FW_MSG_CODE_DRV_LOAD_ENGINE: rc = qed_hw_init_common(p_hwfn, p_hwfn->p_main_ptt, @@ -724,7 +1025,7 @@ int qed_hw_init(struct qed_dev *cdev, /* Fall into */ case FW_MSG_CODE_DRV_LOAD_FUNCTION: rc = qed_hw_init_pf(p_hwfn, p_hwfn->p_main_ptt, - p_hwfn->hw_info.hw_mode, + p_tunn, p_hwfn->hw_info.hw_mode, b_hw_start, int_mode, allow_npar_tx_switch); break; @@ -749,6 +1050,20 @@ int qed_hw_init(struct qed_dev *cdev, return mfw_rc; } + /* send DCBX attention request command */ + DP_VERBOSE(p_hwfn, + QED_MSG_DCB, + "sending phony dcbx set command to trigger DCBx attention handling\n"); + mfw_rc = qed_mcp_cmd(p_hwfn, p_hwfn->p_main_ptt, + DRV_MSG_CODE_SET_DCBX, + 1 << DRV_MB_PARAM_DCBX_NOTIFY_SHIFT, + &load_code, ¶m); + if (mfw_rc) { + DP_NOTICE(p_hwfn, + "Failed to send DCBX attention request\n"); + return mfw_rc; + } + p_hwfn->hw_init_done = true; } @@ -811,6 +1126,11 @@ int qed_hw_stop(struct qed_dev *cdev) DP_VERBOSE(p_hwfn, NETIF_MSG_IFDOWN, "Stopping hw/fw\n"); + if (IS_VF(cdev)) { + qed_vf_pf_int_cleanup(p_hwfn); + continue; + } + /* mark the hw as uninitialized... */ p_hwfn->hw_init_done = false; @@ -842,15 +1162,16 @@ int qed_hw_stop(struct qed_dev *cdev) usleep_range(1000, 2000); } - /* Disable DMAE in PXP - in CMT, this should only be done for - * first hw-function, and only after all transactions have - * stopped for all active hw-functions. - */ - t_rc = qed_change_pci_hwfn(&cdev->hwfns[0], - cdev->hwfns[0].p_main_ptt, - false); - if (t_rc != 0) - rc = t_rc; + if (IS_PF(cdev)) { + /* Disable DMAE in PXP - in CMT, this should only be done for + * first hw-function, and only after all transactions have + * stopped for all active hw-functions. + */ + t_rc = qed_change_pci_hwfn(&cdev->hwfns[0], + cdev->hwfns[0].p_main_ptt, false); + if (t_rc != 0) + rc = t_rc; + } return rc; } @@ -861,7 +1182,12 @@ void qed_hw_stop_fastpath(struct qed_dev *cdev) for_each_hwfn(cdev, j) { struct qed_hwfn *p_hwfn = &cdev->hwfns[j]; - struct qed_ptt *p_ptt = p_hwfn->p_main_ptt; + struct qed_ptt *p_ptt = p_hwfn->p_main_ptt; + + if (IS_VF(cdev)) { + qed_vf_pf_int_cleanup(p_hwfn); + continue; + } DP_VERBOSE(p_hwfn, NETIF_MSG_IFDOWN, @@ -885,6 +1211,9 @@ void qed_hw_stop_fastpath(struct qed_dev *cdev) void qed_hw_start_fastpath(struct qed_hwfn *p_hwfn) { + if (IS_VF(p_hwfn->cdev)) + return; + /* Re-open incoming traffic */ qed_wr(p_hwfn, p_hwfn->p_main_ptt, NIG_REG_RX_LLH_BRB_GATE_DNTFWD_PERPF, 0x0); @@ -914,6 +1243,13 @@ int qed_hw_reset(struct qed_dev *cdev) for_each_hwfn(cdev, i) { struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + if (IS_VF(cdev)) { + rc = qed_vf_pf_reset(p_hwfn); + if (rc) + return rc; + continue; + } + DP_VERBOSE(p_hwfn, NETIF_MSG_IFDOWN, "Resetting hw/fw\n"); /* Check for incorrect states */ @@ -1006,16 +1342,23 @@ static void qed_hw_set_feat(struct qed_hwfn *p_hwfn) num_features); } -static void qed_hw_get_resc(struct qed_hwfn *p_hwfn) +static int qed_hw_get_resc(struct qed_hwfn *p_hwfn) { + u8 enabled_func_idx = p_hwfn->enabled_func_idx; u32 *resc_start = p_hwfn->hw_info.resc_start; + u8 num_funcs = p_hwfn->num_funcs_on_engine; u32 *resc_num = p_hwfn->hw_info.resc_num; struct qed_sb_cnt_info sb_cnt_info; - int num_funcs, i; - - num_funcs = MAX_NUM_PFS_BB; + int i, max_vf_vlan_filters; memset(&sb_cnt_info, 0, sizeof(sb_cnt_info)); + +#ifdef CONFIG_QED_SRIOV + max_vf_vlan_filters = QED_ETH_MAX_VF_NUM_VLAN_FILTERS; +#else + max_vf_vlan_filters = 0; +#endif + qed_int_get_num_sbs(p_hwfn, &sb_cnt_info); resc_num[QED_SB] = min_t(u32, @@ -1025,14 +1368,22 @@ static void qed_hw_get_resc(struct qed_hwfn *p_hwfn) resc_num[QED_VPORT] = MAX_NUM_VPORTS_BB / num_funcs; resc_num[QED_RSS_ENG] = ETH_RSS_ENGINE_NUM_BB / num_funcs; resc_num[QED_PQ] = MAX_QM_TX_QUEUES_BB / num_funcs; - resc_num[QED_RL] = 8; + resc_num[QED_RL] = min_t(u32, 64, resc_num[QED_VPORT]); resc_num[QED_MAC] = ETH_NUM_MAC_FILTERS / num_funcs; resc_num[QED_VLAN] = (ETH_NUM_VLAN_FILTERS - 1 /*For vlan0*/) / num_funcs; - resc_num[QED_ILT] = 950; + resc_num[QED_ILT] = PXP_NUM_ILT_RECORDS_BB / num_funcs; for (i = 0; i < QED_MAX_RESC; i++) - resc_start[i] = resc_num[i] * p_hwfn->rel_pf_id; + resc_start[i] = resc_num[i] * enabled_func_idx; + + /* Sanity for ILT */ + if (RESC_END(p_hwfn, QED_ILT) > PXP_NUM_ILT_RECORDS_BB) { + DP_NOTICE(p_hwfn, "Can't assign ILT pages [%08x,...,%08x]\n", + RESC_START(p_hwfn, QED_ILT), + RESC_END(p_hwfn, QED_ILT) - 1); + return -EINVAL; + } qed_hw_set_feat(p_hwfn); @@ -1062,6 +1413,8 @@ static void qed_hw_get_resc(struct qed_hwfn *p_hwfn) p_hwfn->hw_info.resc_start[QED_VLAN], p_hwfn->hw_info.resc_num[QED_ILT], p_hwfn->hw_info.resc_start[QED_ILT]); + + return 0; } static int qed_hw_get_nvm_info(struct qed_hwfn *p_hwfn, @@ -1091,31 +1444,31 @@ static int qed_hw_get_nvm_info(struct qed_hwfn *p_hwfn, switch ((core_cfg & NVM_CFG1_GLOB_NETWORK_PORT_MODE_MASK) >> NVM_CFG1_GLOB_NETWORK_PORT_MODE_OFFSET) { - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_2X40G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_2X40G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_2X40G; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_2X50G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_2X50G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_2X50G; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_1X100G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_1X100G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_1X100G; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_4X10G_F: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_4X10G_F: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_4X10G_F; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_4X10G_E: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_4X10G_E: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_4X10G_E; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_4X20G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_4X20G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_4X20G; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_1X40G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_1X40G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_1X40G; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_2X25G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_2X25G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_2X25G; break; - case NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_1X25G: + case NVM_CFG1_GLOB_NETWORK_PORT_MODE_1X25G: p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_1X25G; break; default: @@ -1160,7 +1513,7 @@ static int qed_hw_get_nvm_info(struct qed_hwfn *p_hwfn, case NVM_CFG1_PORT_DRV_LINK_SPEED_50G: link->speed.forced_speed = 50000; break; - case NVM_CFG1_PORT_DRV_LINK_SPEED_100G: + case NVM_CFG1_PORT_DRV_LINK_SPEED_BB_100G: link->speed.forced_speed = 100000; break; default: @@ -1216,10 +1569,71 @@ static int qed_hw_get_nvm_info(struct qed_hwfn *p_hwfn, if (device_capabilities & NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ETHERNET) __set_bit(QED_DEV_CAP_ETH, &p_hwfn->hw_info.device_capabilities); + if (device_capabilities & NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ISCSI) + __set_bit(QED_DEV_CAP_ISCSI, + &p_hwfn->hw_info.device_capabilities); + if (device_capabilities & NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ROCE) + __set_bit(QED_DEV_CAP_ROCE, + &p_hwfn->hw_info.device_capabilities); return qed_mcp_fill_shmem_func_info(p_hwfn, p_ptt); } +static void qed_get_num_funcs(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + u8 num_funcs, enabled_func_idx = p_hwfn->rel_pf_id; + u32 reg_function_hide, tmp, eng_mask, low_pfs_mask; + + num_funcs = MAX_NUM_PFS_BB; + + /* Bit 0 of MISCS_REG_FUNCTION_HIDE indicates whether the bypass values + * in the other bits are selected. + * Bits 1-15 are for functions 1-15, respectively, and their value is + * '0' only for enabled functions (function 0 always exists and + * enabled). + * In case of CMT, only the "even" functions are enabled, and thus the + * number of functions for both hwfns is learnt from the same bits. + */ + reg_function_hide = qed_rd(p_hwfn, p_ptt, MISCS_REG_FUNCTION_HIDE); + + if (reg_function_hide & 0x1) { + if (QED_PATH_ID(p_hwfn) && p_hwfn->cdev->num_hwfns == 1) { + num_funcs = 0; + eng_mask = 0xaaaa; + } else { + num_funcs = 1; + eng_mask = 0x5554; + } + + /* Get the number of the enabled functions on the engine */ + tmp = (reg_function_hide ^ 0xffffffff) & eng_mask; + while (tmp) { + if (tmp & 0x1) + num_funcs++; + tmp >>= 0x1; + } + + /* Get the PF index within the enabled functions */ + low_pfs_mask = (0x1 << p_hwfn->abs_pf_id) - 1; + tmp = reg_function_hide & eng_mask & low_pfs_mask; + while (tmp) { + if (tmp & 0x1) + enabled_func_idx--; + tmp >>= 0x1; + } + } + + p_hwfn->num_funcs_on_engine = num_funcs; + p_hwfn->enabled_func_idx = enabled_func_idx; + + DP_VERBOSE(p_hwfn, + NETIF_MSG_PROBE, + "PF [rel_id %d, abs_id %d] within the %d enabled functions on the engine\n", + p_hwfn->rel_pf_id, + p_hwfn->abs_pf_id, + p_hwfn->num_funcs_on_engine); +} + static int qed_get_hw_info(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, @@ -1228,6 +1642,13 @@ qed_get_hw_info(struct qed_hwfn *p_hwfn, u32 port_mode; int rc; + /* Since all information is common, only first hwfns should do this */ + if (IS_LEAD_HWFN(p_hwfn)) { + rc = qed_iov_hw_info(p_hwfn); + if (rc) + return rc; + } + /* Read the port mode */ port_mode = qed_rd(p_hwfn, p_ptt, CNIG_REG_NW_PORT_MODE_BB_B0); @@ -1271,9 +1692,9 @@ qed_get_hw_info(struct qed_hwfn *p_hwfn, p_hwfn->hw_info.personality = protocol; } - qed_hw_get_resc(p_hwfn); + qed_get_num_funcs(p_hwfn, p_ptt); - return rc; + return qed_hw_get_resc(p_hwfn); } static int qed_get_dev_info(struct qed_dev *cdev) @@ -1336,6 +1757,9 @@ static int qed_hw_prepare_single(struct qed_hwfn *p_hwfn, p_hwfn->regview = p_regview; p_hwfn->doorbells = p_doorbells; + if (IS_VF(p_hwfn->cdev)) + return qed_vf_hw_prepare(p_hwfn); + /* Validate that chip access is feasible */ if (REG_RD(p_hwfn, PXP_PF_ME_OPAQUE_ADDR) == 0xffffffff) { DP_ERR(p_hwfn, @@ -1387,6 +1811,8 @@ static int qed_hw_prepare_single(struct qed_hwfn *p_hwfn, return rc; err2: + if (IS_LEAD_HWFN(p_hwfn)) + qed_iov_free_hw_info(p_hwfn->cdev); qed_mcp_free(p_hwfn); err1: qed_hw_hwfn_free(p_hwfn); @@ -1401,7 +1827,8 @@ int qed_hw_prepare(struct qed_dev *cdev, int rc; /* Store the precompiled init data ptrs */ - qed_init_iro_array(cdev); + if (IS_PF(cdev)) + qed_init_iro_array(cdev); /* Initialize the first hwfn - will learn number of hwfns */ rc = qed_hw_prepare_single(p_hwfn, @@ -1433,9 +1860,11 @@ int qed_hw_prepare(struct qed_dev *cdev, * initiliazed hwfn 0. */ if (rc) { - qed_init_free(p_hwfn); - qed_mcp_free(p_hwfn); - qed_hw_hwfn_free(p_hwfn); + if (IS_PF(cdev)) { + qed_init_free(p_hwfn); + qed_mcp_free(p_hwfn); + qed_hw_hwfn_free(p_hwfn); + } } } @@ -1449,98 +1878,298 @@ void qed_hw_remove(struct qed_dev *cdev) for_each_hwfn(cdev, i) { struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + if (IS_VF(cdev)) { + qed_vf_pf_release(p_hwfn); + continue; + } + qed_init_free(p_hwfn); qed_hw_hwfn_free(p_hwfn); qed_mcp_free(p_hwfn); } + + qed_iov_free_hw_info(cdev); } -int qed_chain_alloc(struct qed_dev *cdev, - enum qed_chain_use_mode intended_use, - enum qed_chain_mode mode, - u16 num_elems, - size_t elem_size, - struct qed_chain *p_chain) +static void qed_chain_free_next_ptr(struct qed_dev *cdev, + struct qed_chain *p_chain) { - dma_addr_t p_pbl_phys = 0; - void *p_pbl_virt = NULL; + void *p_virt = p_chain->p_virt_addr, *p_virt_next = NULL; + dma_addr_t p_phys = p_chain->p_phys_addr, p_phys_next = 0; + struct qed_chain_next *p_next; + u32 size, i; + + if (!p_virt) + return; + + size = p_chain->elem_size * p_chain->usable_per_page; + + for (i = 0; i < p_chain->page_cnt; i++) { + if (!p_virt) + break; + + p_next = (struct qed_chain_next *)((u8 *)p_virt + size); + p_virt_next = p_next->next_virt; + p_phys_next = HILO_DMA_REGPAIR(p_next->next_phys); + + dma_free_coherent(&cdev->pdev->dev, + QED_CHAIN_PAGE_SIZE, p_virt, p_phys); + + p_virt = p_virt_next; + p_phys = p_phys_next; + } +} + +static void qed_chain_free_single(struct qed_dev *cdev, + struct qed_chain *p_chain) +{ + if (!p_chain->p_virt_addr) + return; + + dma_free_coherent(&cdev->pdev->dev, + QED_CHAIN_PAGE_SIZE, + p_chain->p_virt_addr, p_chain->p_phys_addr); +} + +static void qed_chain_free_pbl(struct qed_dev *cdev, struct qed_chain *p_chain) +{ + void **pp_virt_addr_tbl = p_chain->pbl.pp_virt_addr_tbl; + u32 page_cnt = p_chain->page_cnt, i, pbl_size; + u8 *p_pbl_virt = p_chain->pbl.p_virt_table; + + if (!pp_virt_addr_tbl) + return; + + if (!p_chain->pbl.p_virt_table) + goto out; + + for (i = 0; i < page_cnt; i++) { + if (!pp_virt_addr_tbl[i]) + break; + + dma_free_coherent(&cdev->pdev->dev, + QED_CHAIN_PAGE_SIZE, + pp_virt_addr_tbl[i], + *(dma_addr_t *)p_pbl_virt); + + p_pbl_virt += QED_CHAIN_PBL_ENTRY_SIZE; + } + + pbl_size = page_cnt * QED_CHAIN_PBL_ENTRY_SIZE; + dma_free_coherent(&cdev->pdev->dev, + pbl_size, + p_chain->pbl.p_virt_table, p_chain->pbl.p_phys_table); +out: + vfree(p_chain->pbl.pp_virt_addr_tbl); +} + +void qed_chain_free(struct qed_dev *cdev, struct qed_chain *p_chain) +{ + switch (p_chain->mode) { + case QED_CHAIN_MODE_NEXT_PTR: + qed_chain_free_next_ptr(cdev, p_chain); + break; + case QED_CHAIN_MODE_SINGLE: + qed_chain_free_single(cdev, p_chain); + break; + case QED_CHAIN_MODE_PBL: + qed_chain_free_pbl(cdev, p_chain); + break; + } +} + +static int +qed_chain_alloc_sanity_check(struct qed_dev *cdev, + enum qed_chain_cnt_type cnt_type, + size_t elem_size, u32 page_cnt) +{ + u64 chain_size = ELEMS_PER_PAGE(elem_size) * page_cnt; + + /* The actual chain size can be larger than the maximal possible value + * after rounding up the requested elements number to pages, and after + * taking into acount the unusuable elements (next-ptr elements). + * The size of a "u16" chain can be (U16_MAX + 1) since the chain + * size/capacity fields are of a u32 type. + */ + if ((cnt_type == QED_CHAIN_CNT_TYPE_U16 && + chain_size > 0x10000) || + (cnt_type == QED_CHAIN_CNT_TYPE_U32 && + chain_size > 0x100000000ULL)) { + DP_NOTICE(cdev, + "The actual chain size (0x%llx) is larger than the maximal possible value\n", + chain_size); + return -EINVAL; + } + + return 0; +} + +static int +qed_chain_alloc_next_ptr(struct qed_dev *cdev, struct qed_chain *p_chain) +{ + void *p_virt = NULL, *p_virt_prev = NULL; dma_addr_t p_phys = 0; - void *p_virt = NULL; - u16 page_cnt = 0; - size_t size; + u32 i; - if (mode == QED_CHAIN_MODE_SINGLE) - page_cnt = 1; - else - page_cnt = QED_CHAIN_PAGE_CNT(num_elems, elem_size, mode); + for (i = 0; i < p_chain->page_cnt; i++) { + p_virt = dma_alloc_coherent(&cdev->pdev->dev, + QED_CHAIN_PAGE_SIZE, + &p_phys, GFP_KERNEL); + if (!p_virt) { + DP_NOTICE(cdev, "Failed to allocate chain memory\n"); + return -ENOMEM; + } + + if (i == 0) { + qed_chain_init_mem(p_chain, p_virt, p_phys); + qed_chain_reset(p_chain); + } else { + qed_chain_init_next_ptr_elem(p_chain, p_virt_prev, + p_virt, p_phys); + } + + p_virt_prev = p_virt; + } + /* Last page's next element should point to the beginning of the + * chain. + */ + qed_chain_init_next_ptr_elem(p_chain, p_virt_prev, + p_chain->p_virt_addr, + p_chain->p_phys_addr); + + return 0; +} + +static int +qed_chain_alloc_single(struct qed_dev *cdev, struct qed_chain *p_chain) +{ + dma_addr_t p_phys = 0; + void *p_virt = NULL; - size = page_cnt * QED_CHAIN_PAGE_SIZE; p_virt = dma_alloc_coherent(&cdev->pdev->dev, - size, &p_phys, GFP_KERNEL); + QED_CHAIN_PAGE_SIZE, &p_phys, GFP_KERNEL); if (!p_virt) { - DP_NOTICE(cdev, "Failed to allocate chain mem\n"); - goto nomem; + DP_NOTICE(cdev, "Failed to allocate chain memory\n"); + return -ENOMEM; } - if (mode == QED_CHAIN_MODE_PBL) { - size = page_cnt * QED_CHAIN_PBL_ENTRY_SIZE; - p_pbl_virt = dma_alloc_coherent(&cdev->pdev->dev, - size, &p_pbl_phys, - GFP_KERNEL); - if (!p_pbl_virt) { - DP_NOTICE(cdev, "Failed to allocate chain pbl mem\n"); - goto nomem; - } + qed_chain_init_mem(p_chain, p_virt, p_phys); + qed_chain_reset(p_chain); - qed_chain_pbl_init(p_chain, p_virt, p_phys, page_cnt, - (u8)elem_size, intended_use, - p_pbl_phys, p_pbl_virt); - } else { - qed_chain_init(p_chain, p_virt, p_phys, page_cnt, - (u8)elem_size, intended_use, mode); + return 0; +} + +static int qed_chain_alloc_pbl(struct qed_dev *cdev, struct qed_chain *p_chain) +{ + u32 page_cnt = p_chain->page_cnt, size, i; + dma_addr_t p_phys = 0, p_pbl_phys = 0; + void **pp_virt_addr_tbl = NULL; + u8 *p_pbl_virt = NULL; + void *p_virt = NULL; + + size = page_cnt * sizeof(*pp_virt_addr_tbl); + pp_virt_addr_tbl = vmalloc(size); + if (!pp_virt_addr_tbl) { + DP_NOTICE(cdev, + "Failed to allocate memory for the chain virtual addresses table\n"); + return -ENOMEM; } + memset(pp_virt_addr_tbl, 0, size); - return 0; + /* The allocation of the PBL table is done with its full size, since it + * is expected to be successive. + * qed_chain_init_pbl_mem() is called even in a case of an allocation + * failure, since pp_virt_addr_tbl was previously allocated, and it + * should be saved to allow its freeing during the error flow. + */ + size = page_cnt * QED_CHAIN_PBL_ENTRY_SIZE; + p_pbl_virt = dma_alloc_coherent(&cdev->pdev->dev, + size, &p_pbl_phys, GFP_KERNEL); + qed_chain_init_pbl_mem(p_chain, p_pbl_virt, p_pbl_phys, + pp_virt_addr_tbl); + if (!p_pbl_virt) { + DP_NOTICE(cdev, "Failed to allocate chain pbl memory\n"); + return -ENOMEM; + } -nomem: - dma_free_coherent(&cdev->pdev->dev, - page_cnt * QED_CHAIN_PAGE_SIZE, - p_virt, p_phys); - dma_free_coherent(&cdev->pdev->dev, - page_cnt * QED_CHAIN_PBL_ENTRY_SIZE, - p_pbl_virt, p_pbl_phys); + for (i = 0; i < page_cnt; i++) { + p_virt = dma_alloc_coherent(&cdev->pdev->dev, + QED_CHAIN_PAGE_SIZE, + &p_phys, GFP_KERNEL); + if (!p_virt) { + DP_NOTICE(cdev, "Failed to allocate chain memory\n"); + return -ENOMEM; + } - return -ENOMEM; + if (i == 0) { + qed_chain_init_mem(p_chain, p_virt, p_phys); + qed_chain_reset(p_chain); + } + + /* Fill the PBL table with the physical address of the page */ + *(dma_addr_t *)p_pbl_virt = p_phys; + /* Keep the virtual address of the page */ + p_chain->pbl.pp_virt_addr_tbl[i] = p_virt; + + p_pbl_virt += QED_CHAIN_PBL_ENTRY_SIZE; + } + + return 0; } -void qed_chain_free(struct qed_dev *cdev, - struct qed_chain *p_chain) +int qed_chain_alloc(struct qed_dev *cdev, + enum qed_chain_use_mode intended_use, + enum qed_chain_mode mode, + enum qed_chain_cnt_type cnt_type, + u32 num_elems, size_t elem_size, struct qed_chain *p_chain) { - size_t size; + u32 page_cnt; + int rc = 0; - if (!p_chain->p_virt_addr) - return; + if (mode == QED_CHAIN_MODE_SINGLE) + page_cnt = 1; + else + page_cnt = QED_CHAIN_PAGE_CNT(num_elems, elem_size, mode); - if (p_chain->mode == QED_CHAIN_MODE_PBL) { - size = p_chain->page_cnt * QED_CHAIN_PBL_ENTRY_SIZE; - dma_free_coherent(&cdev->pdev->dev, size, - p_chain->pbl.p_virt_table, - p_chain->pbl.p_phys_table); + rc = qed_chain_alloc_sanity_check(cdev, cnt_type, elem_size, page_cnt); + if (rc) { + DP_NOTICE(cdev, + "Cannot allocate a chain with the given arguments:\n" + "[use_mode %d, mode %d, cnt_type %d, num_elems %d, elem_size %zu]\n", + intended_use, mode, cnt_type, num_elems, elem_size); + return rc; } - size = p_chain->page_cnt * QED_CHAIN_PAGE_SIZE; - dma_free_coherent(&cdev->pdev->dev, size, - p_chain->p_virt_addr, - p_chain->p_phys_addr); + qed_chain_init_params(p_chain, page_cnt, (u8) elem_size, intended_use, + mode, cnt_type); + + switch (mode) { + case QED_CHAIN_MODE_NEXT_PTR: + rc = qed_chain_alloc_next_ptr(cdev, p_chain); + break; + case QED_CHAIN_MODE_SINGLE: + rc = qed_chain_alloc_single(cdev, p_chain); + break; + case QED_CHAIN_MODE_PBL: + rc = qed_chain_alloc_pbl(cdev, p_chain); + break; + } + if (rc) + goto nomem; + + return 0; + +nomem: + qed_chain_free(cdev, p_chain); + return rc; } -int qed_fw_l2_queue(struct qed_hwfn *p_hwfn, - u16 src_id, u16 *dst_id) +int qed_fw_l2_queue(struct qed_hwfn *p_hwfn, u16 src_id, u16 *dst_id) { if (src_id >= RESC_NUM(p_hwfn, QED_L2_QUEUE)) { u16 min, max; - min = (u16)RESC_START(p_hwfn, QED_L2_QUEUE); + min = (u16) RESC_START(p_hwfn, QED_L2_QUEUE); max = min + RESC_NUM(p_hwfn, QED_L2_QUEUE); DP_NOTICE(p_hwfn, "l2_queue id [%d] is not valid, available indices [%d - %d]\n", @@ -1593,3 +2222,499 @@ int qed_fw_rss_eng(struct qed_hwfn *p_hwfn, return 0; } + +static int qed_set_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u32 hw_addr, void *p_eth_qzone, + size_t eth_qzone_size, u8 timeset) +{ + struct coalescing_timeset *p_coal_timeset; + + if (p_hwfn->cdev->int_coalescing_mode != QED_COAL_MODE_ENABLE) { + DP_NOTICE(p_hwfn, "Coalescing configuration not enabled\n"); + return -EINVAL; + } + + p_coal_timeset = p_eth_qzone; + memset(p_coal_timeset, 0, eth_qzone_size); + SET_FIELD(p_coal_timeset->value, COALESCING_TIMESET_TIMESET, timeset); + SET_FIELD(p_coal_timeset->value, COALESCING_TIMESET_VALID, 1); + qed_memcpy_to(p_hwfn, p_ptt, hw_addr, p_eth_qzone, eth_qzone_size); + + return 0; +} + +int qed_set_rxq_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u16 coalesce, u8 qid, u16 sb_id) +{ + struct ustorm_eth_queue_zone eth_qzone; + u8 timeset, timer_res; + u16 fw_qid = 0; + u32 address; + int rc; + + /* Coalesce = (timeset << timer-resolution), timeset is 7bit wide */ + if (coalesce <= 0x7F) { + timer_res = 0; + } else if (coalesce <= 0xFF) { + timer_res = 1; + } else if (coalesce <= 0x1FF) { + timer_res = 2; + } else { + DP_ERR(p_hwfn, "Invalid coalesce value - %d\n", coalesce); + return -EINVAL; + } + timeset = (u8)(coalesce >> timer_res); + + rc = qed_fw_l2_queue(p_hwfn, (u16)qid, &fw_qid); + if (rc) + return rc; + + rc = qed_int_set_timer_res(p_hwfn, p_ptt, timer_res, sb_id, false); + if (rc) + goto out; + + address = BAR0_MAP_REG_USDM_RAM + USTORM_ETH_QUEUE_ZONE_OFFSET(fw_qid); + + rc = qed_set_coalesce(p_hwfn, p_ptt, address, ð_qzone, + sizeof(struct ustorm_eth_queue_zone), timeset); + if (rc) + goto out; + + p_hwfn->cdev->rx_coalesce_usecs = coalesce; +out: + return rc; +} + +int qed_set_txq_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u16 coalesce, u8 qid, u16 sb_id) +{ + struct xstorm_eth_queue_zone eth_qzone; + u8 timeset, timer_res; + u16 fw_qid = 0; + u32 address; + int rc; + + /* Coalesce = (timeset << timer-resolution), timeset is 7bit wide */ + if (coalesce <= 0x7F) { + timer_res = 0; + } else if (coalesce <= 0xFF) { + timer_res = 1; + } else if (coalesce <= 0x1FF) { + timer_res = 2; + } else { + DP_ERR(p_hwfn, "Invalid coalesce value - %d\n", coalesce); + return -EINVAL; + } + timeset = (u8)(coalesce >> timer_res); + + rc = qed_fw_l2_queue(p_hwfn, (u16)qid, &fw_qid); + if (rc) + return rc; + + rc = qed_int_set_timer_res(p_hwfn, p_ptt, timer_res, sb_id, true); + if (rc) + goto out; + + address = BAR0_MAP_REG_XSDM_RAM + XSTORM_ETH_QUEUE_ZONE_OFFSET(fw_qid); + + rc = qed_set_coalesce(p_hwfn, p_ptt, address, ð_qzone, + sizeof(struct xstorm_eth_queue_zone), timeset); + if (rc) + goto out; + + p_hwfn->cdev->tx_coalesce_usecs = coalesce; +out: + return rc; +} + +/* Calculate final WFQ values for all vports and configure them. + * After this configuration each vport will have + * approx min rate = min_pf_rate * (vport_wfq / QED_WFQ_UNIT) + */ +static void qed_configure_wfq_for_all_vports(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u32 min_pf_rate) +{ + struct init_qm_vport_params *vport_params; + int i; + + vport_params = p_hwfn->qm_info.qm_vport_params; + + for (i = 0; i < p_hwfn->qm_info.num_vports; i++) { + u32 wfq_speed = p_hwfn->qm_info.wfq_data[i].min_speed; + + vport_params[i].vport_wfq = (wfq_speed * QED_WFQ_UNIT) / + min_pf_rate; + qed_init_vport_wfq(p_hwfn, p_ptt, + vport_params[i].first_tx_pq_id, + vport_params[i].vport_wfq); + } +} + +static void qed_init_wfq_default_param(struct qed_hwfn *p_hwfn, + u32 min_pf_rate) + +{ + int i; + + for (i = 0; i < p_hwfn->qm_info.num_vports; i++) + p_hwfn->qm_info.qm_vport_params[i].vport_wfq = 1; +} + +static void qed_disable_wfq_for_all_vports(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u32 min_pf_rate) +{ + struct init_qm_vport_params *vport_params; + int i; + + vport_params = p_hwfn->qm_info.qm_vport_params; + + for (i = 0; i < p_hwfn->qm_info.num_vports; i++) { + qed_init_wfq_default_param(p_hwfn, min_pf_rate); + qed_init_vport_wfq(p_hwfn, p_ptt, + vport_params[i].first_tx_pq_id, + vport_params[i].vport_wfq); + } +} + +/* This function performs several validations for WFQ + * configuration and required min rate for a given vport + * 1. req_rate must be greater than one percent of min_pf_rate. + * 2. req_rate should not cause other vports [not configured for WFQ explicitly] + * rates to get less than one percent of min_pf_rate. + * 3. total_req_min_rate [all vports min rate sum] shouldn't exceed min_pf_rate. + */ +static int qed_init_wfq_param(struct qed_hwfn *p_hwfn, + u16 vport_id, u32 req_rate, + u32 min_pf_rate) +{ + u32 total_req_min_rate = 0, total_left_rate = 0, left_rate_per_vp = 0; + int non_requested_count = 0, req_count = 0, i, num_vports; + + num_vports = p_hwfn->qm_info.num_vports; + + /* Accounting for the vports which are configured for WFQ explicitly */ + for (i = 0; i < num_vports; i++) { + u32 tmp_speed; + + if ((i != vport_id) && + p_hwfn->qm_info.wfq_data[i].configured) { + req_count++; + tmp_speed = p_hwfn->qm_info.wfq_data[i].min_speed; + total_req_min_rate += tmp_speed; + } + } + + /* Include current vport data as well */ + req_count++; + total_req_min_rate += req_rate; + non_requested_count = num_vports - req_count; + + if (req_rate < min_pf_rate / QED_WFQ_UNIT) { + DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, + "Vport [%d] - Requested rate[%d Mbps] is less than one percent of configured PF min rate[%d Mbps]\n", + vport_id, req_rate, min_pf_rate); + return -EINVAL; + } + + if (num_vports > QED_WFQ_UNIT) { + DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, + "Number of vports is greater than %d\n", + QED_WFQ_UNIT); + return -EINVAL; + } + + if (total_req_min_rate > min_pf_rate) { + DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, + "Total requested min rate for all vports[%d Mbps] is greater than configured PF min rate[%d Mbps]\n", + total_req_min_rate, min_pf_rate); + return -EINVAL; + } + + total_left_rate = min_pf_rate - total_req_min_rate; + + left_rate_per_vp = total_left_rate / non_requested_count; + if (left_rate_per_vp < min_pf_rate / QED_WFQ_UNIT) { + DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, + "Non WFQ configured vports rate [%d Mbps] is less than one percent of configured PF min rate[%d Mbps]\n", + left_rate_per_vp, min_pf_rate); + return -EINVAL; + } + + p_hwfn->qm_info.wfq_data[vport_id].min_speed = req_rate; + p_hwfn->qm_info.wfq_data[vport_id].configured = true; + + for (i = 0; i < num_vports; i++) { + if (p_hwfn->qm_info.wfq_data[i].configured) + continue; + + p_hwfn->qm_info.wfq_data[i].min_speed = left_rate_per_vp; + } + + return 0; +} + +static int __qed_configure_vport_wfq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u16 vp_id, u32 rate) +{ + struct qed_mcp_link_state *p_link; + int rc = 0; + + p_link = &p_hwfn->cdev->hwfns[0].mcp_info->link_output; + + if (!p_link->min_pf_rate) { + p_hwfn->qm_info.wfq_data[vp_id].min_speed = rate; + p_hwfn->qm_info.wfq_data[vp_id].configured = true; + return rc; + } + + rc = qed_init_wfq_param(p_hwfn, vp_id, rate, p_link->min_pf_rate); + + if (rc == 0) + qed_configure_wfq_for_all_vports(p_hwfn, p_ptt, + p_link->min_pf_rate); + else + DP_NOTICE(p_hwfn, + "Validation failed while configuring min rate\n"); + + return rc; +} + +static int __qed_configure_vp_wfq_on_link_change(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u32 min_pf_rate) +{ + bool use_wfq = false; + int rc = 0; + u16 i; + + /* Validate all pre configured vports for wfq */ + for (i = 0; i < p_hwfn->qm_info.num_vports; i++) { + u32 rate; + + if (!p_hwfn->qm_info.wfq_data[i].configured) + continue; + + rate = p_hwfn->qm_info.wfq_data[i].min_speed; + use_wfq = true; + + rc = qed_init_wfq_param(p_hwfn, i, rate, min_pf_rate); + if (rc) { + DP_NOTICE(p_hwfn, + "WFQ validation failed while configuring min rate\n"); + break; + } + } + + if (!rc && use_wfq) + qed_configure_wfq_for_all_vports(p_hwfn, p_ptt, min_pf_rate); + else + qed_disable_wfq_for_all_vports(p_hwfn, p_ptt, min_pf_rate); + + return rc; +} + +/* Main API for qed clients to configure vport min rate. + * vp_id - vport id in PF Range[0 - (total_num_vports_per_pf - 1)] + * rate - Speed in Mbps needs to be assigned to a given vport. + */ +int qed_configure_vport_wfq(struct qed_dev *cdev, u16 vp_id, u32 rate) +{ + int i, rc = -EINVAL; + + /* Currently not supported; Might change in future */ + if (cdev->num_hwfns > 1) { + DP_NOTICE(cdev, + "WFQ configuration is not supported for this device\n"); + return rc; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + struct qed_ptt *p_ptt; + + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) + return -EBUSY; + + rc = __qed_configure_vport_wfq(p_hwfn, p_ptt, vp_id, rate); + + if (rc) { + qed_ptt_release(p_hwfn, p_ptt); + return rc; + } + + qed_ptt_release(p_hwfn, p_ptt); + } + + return rc; +} + +/* API to configure WFQ from mcp link change */ +void qed_configure_vp_wfq_on_link_change(struct qed_dev *cdev, u32 min_pf_rate) +{ + int i; + + if (cdev->num_hwfns > 1) { + DP_VERBOSE(cdev, + NETIF_MSG_LINK, + "WFQ configuration is not supported for this device\n"); + return; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + + __qed_configure_vp_wfq_on_link_change(p_hwfn, + p_hwfn->p_dpc_ptt, + min_pf_rate); + } +} + +int __qed_configure_pf_max_bandwidth(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_mcp_link_state *p_link, + u8 max_bw) +{ + int rc = 0; + + p_hwfn->mcp_info->func_info.bandwidth_max = max_bw; + + if (!p_link->line_speed && (max_bw != 100)) + return rc; + + p_link->speed = (p_link->line_speed * max_bw) / 100; + p_hwfn->qm_info.pf_rl = p_link->speed; + + /* Since the limiter also affects Tx-switched traffic, we don't want it + * to limit such traffic in case there's no actual limit. + * In that case, set limit to imaginary high boundary. + */ + if (max_bw == 100) + p_hwfn->qm_info.pf_rl = 100000; + + rc = qed_init_pf_rl(p_hwfn, p_ptt, p_hwfn->rel_pf_id, + p_hwfn->qm_info.pf_rl); + + DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, + "Configured MAX bandwidth to be %08x Mb/sec\n", + p_link->speed); + + return rc; +} + +/* Main API to configure PF max bandwidth where bw range is [1 - 100] */ +int qed_configure_pf_max_bandwidth(struct qed_dev *cdev, u8 max_bw) +{ + int i, rc = -EINVAL; + + if (max_bw < 1 || max_bw > 100) { + DP_NOTICE(cdev, "PF max bw valid range is [1-100]\n"); + return rc; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + struct qed_hwfn *p_lead = QED_LEADING_HWFN(cdev); + struct qed_mcp_link_state *p_link; + struct qed_ptt *p_ptt; + + p_link = &p_lead->mcp_info->link_output; + + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) + return -EBUSY; + + rc = __qed_configure_pf_max_bandwidth(p_hwfn, p_ptt, + p_link, max_bw); + + qed_ptt_release(p_hwfn, p_ptt); + + if (rc) + break; + } + + return rc; +} + +int __qed_configure_pf_min_bandwidth(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_mcp_link_state *p_link, + u8 min_bw) +{ + int rc = 0; + + p_hwfn->mcp_info->func_info.bandwidth_min = min_bw; + p_hwfn->qm_info.pf_wfq = min_bw; + + if (!p_link->line_speed) + return rc; + + p_link->min_pf_rate = (p_link->line_speed * min_bw) / 100; + + rc = qed_init_pf_wfq(p_hwfn, p_ptt, p_hwfn->rel_pf_id, min_bw); + + DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, + "Configured MIN bandwidth to be %d Mb/sec\n", + p_link->min_pf_rate); + + return rc; +} + +/* Main API to configure PF min bandwidth where bw range is [1-100] */ +int qed_configure_pf_min_bandwidth(struct qed_dev *cdev, u8 min_bw) +{ + int i, rc = -EINVAL; + + if (min_bw < 1 || min_bw > 100) { + DP_NOTICE(cdev, "PF min bw valid range is [1-100]\n"); + return rc; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + struct qed_hwfn *p_lead = QED_LEADING_HWFN(cdev); + struct qed_mcp_link_state *p_link; + struct qed_ptt *p_ptt; + + p_link = &p_lead->mcp_info->link_output; + + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) + return -EBUSY; + + rc = __qed_configure_pf_min_bandwidth(p_hwfn, p_ptt, + p_link, min_bw); + if (rc) { + qed_ptt_release(p_hwfn, p_ptt); + return rc; + } + + if (p_link->min_pf_rate) { + u32 min_rate = p_link->min_pf_rate; + + rc = __qed_configure_vp_wfq_on_link_change(p_hwfn, + p_ptt, + min_rate); + } + + qed_ptt_release(p_hwfn, p_ptt); + } + + return rc; +} + +void qed_clean_wfq_db(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + struct qed_mcp_link_state *p_link; + + p_link = &p_hwfn->mcp_info->link_output; + + if (p_link->min_pf_rate) + qed_disable_wfq_for_all_vports(p_hwfn, p_ptt, + p_link->min_pf_rate); + + memset(p_hwfn->qm_info.wfq_data, 0, + sizeof(*p_hwfn->qm_info.wfq_data) * p_hwfn->qm_info.num_vports); +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_dev_api.h b/drivers/net/ethernet/qlogic/qed/qed_dev_api.h index d6c7ddf4f4d4..343bb0344f62 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_dev_api.h +++ b/drivers/net/ethernet/qlogic/qed/qed_dev_api.h @@ -62,6 +62,7 @@ void qed_resc_setup(struct qed_dev *cdev); * @brief qed_hw_init - * * @param cdev + * @param p_tunn * @param b_hw_start * @param int_mode - interrupt mode [msix, inta, etc.] to use. * @param allow_npar_tx_switch - npar tx switching to be used @@ -72,6 +73,7 @@ void qed_resc_setup(struct qed_dev *cdev); * @return int */ int qed_hw_init(struct qed_dev *cdev, + struct qed_tunn_start_params *p_tunn, bool b_hw_start, enum qed_int_mode int_mode, bool allow_npar_tx_switch, @@ -180,11 +182,15 @@ enum qed_dmae_address_type_t { * used mostly to write a zeroed buffer to destination address * using DMA */ -#define QED_DMAE_FLAG_RW_REPL_SRC 0x00000001 -#define QED_DMAE_FLAG_COMPLETION_DST 0x00000008 +#define QED_DMAE_FLAG_RW_REPL_SRC 0x00000001 +#define QED_DMAE_FLAG_VF_SRC 0x00000002 +#define QED_DMAE_FLAG_VF_DST 0x00000004 +#define QED_DMAE_FLAG_COMPLETION_DST 0x00000008 struct qed_dmae_params { - u32 flags; /* consists of QED_DMAE_FLAG_* values */ + u32 flags; /* consists of QED_DMAE_FLAG_* values */ + u8 src_vfid; + u8 dst_vfid; }; /** @@ -206,6 +212,37 @@ qed_dmae_host2grc(struct qed_hwfn *p_hwfn, u32 size_in_dwords, u32 flags); + /** + * @brief qed_dmae_grc2host - Read data from dmae data offset + * to source address using the given ptt + * + * @param p_ptt + * @param grc_addr (dmae_data_offset) + * @param dest_addr + * @param size_in_dwords + * @param flags - one of the flags defined above + */ +int qed_dmae_grc2host(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u32 grc_addr, dma_addr_t dest_addr, u32 size_in_dwords, + u32 flags); + +/** + * @brief qed_dmae_host2host - copy data from to source address + * to a destination adress (for SRIOV) using the given ptt + * + * @param p_hwfn + * @param p_ptt + * @param source_addr + * @param dest_addr + * @param size_in_dwords + * @param params + */ +int qed_dmae_host2host(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + dma_addr_t source_addr, + dma_addr_t dest_addr, + u32 size_in_dwords, struct qed_dmae_params *p_params); + /** * @brief qed_chain_alloc - Allocate and initialize a chain * @@ -222,9 +259,8 @@ int qed_chain_alloc(struct qed_dev *cdev, enum qed_chain_use_mode intended_use, enum qed_chain_mode mode, - u16 num_elems, - size_t elem_size, - struct qed_chain *p_chain); + enum qed_chain_cnt_type cnt_type, + u32 num_elems, size_t elem_size, struct qed_chain *p_chain); /** * @brief qed_chain_free - Free chain DMA memory @@ -232,8 +268,7 @@ qed_chain_alloc(struct qed_dev *cdev, * @param p_hwfn * @param p_chain */ -void qed_chain_free(struct qed_dev *cdev, - struct qed_chain *p_chain); +void qed_chain_free(struct qed_dev *cdev, struct qed_chain *p_chain); /** * @@brief qed_fw_l2_queue - Get absolute L2 queue ID @@ -280,11 +315,44 @@ int qed_fw_rss_eng(struct qed_hwfn *p_hwfn, * @param p_hwfn * @param p_ptt * @param id - For PF, engine-relative. For VF, PF-relative. + * @param is_vf - true iff cleanup is made for a VF. * * @return int */ int qed_final_cleanup(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u16 id); + struct qed_ptt *p_ptt, u16 id, bool is_vf); +/** + * @brief qed_set_rxq_coalesce - Configure coalesce parameters for an Rx queue + * The fact that we can configure coalescing to up to 511, but on varying + * accuracy [the bigger the value the less accurate] up to a mistake of 3usec + * for the highest values. + * + * @param p_hwfn + * @param p_ptt + * @param coalesce - Coalesce value in micro seconds. + * @param qid - Queue index. + * @param qid - SB Id + * + * @return int + */ +int qed_set_rxq_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u16 coalesce, u8 qid, u16 sb_id); + +/** + * @brief qed_set_txq_coalesce - Configure coalesce parameters for a Tx queue + * While the API allows setting coalescing per-qid, all tx queues sharing a + * SB should be in same range [i.e., either 0-0x7f, 0x80-0xff or 0x100-0x1ff] + * otherwise configuration would break. + * + * @param p_hwfn + * @param p_ptt + * @param coalesce - Coalesce value in micro seconds. + * @param qid - Queue index. + * @param qid - SB Id + * + * @return int + */ +int qed_set_txq_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u16 coalesce, u8 qid, u16 sb_id); #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_hsi.h b/drivers/net/ethernet/qlogic/qed/qed_hsi.h index a368f5e71d95..6f9d3b831a2a 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_hsi.h +++ b/drivers/net/ethernet/qlogic/qed/qed_hsi.h @@ -17,24 +17,27 @@ #include <linux/list.h> #include <linux/slab.h> #include <linux/qed/common_hsi.h> +#include <linux/qed/storage_common.h> +#include <linux/qed/tcp_common.h> #include <linux/qed/eth_common.h> +#include <linux/qed/iscsi_common.h> +#include <linux/qed/rdma_common.h> +#include <linux/qed/roce_common.h> struct qed_hwfn; struct qed_ptt; -/********************************/ -/* Add include to common target */ -/********************************/ /* opcodes for the event ring */ enum common_event_opcode { COMMON_EVENT_PF_START, COMMON_EVENT_PF_STOP, - COMMON_EVENT_RESERVED, - COMMON_EVENT_RESERVED2, - COMMON_EVENT_RESERVED3, - COMMON_EVENT_RESERVED4, - COMMON_EVENT_RESERVED5, - COMMON_EVENT_RESERVED6, + COMMON_EVENT_VF_START, + COMMON_EVENT_VF_STOP, + COMMON_EVENT_VF_PF_CHANNEL, + COMMON_EVENT_VF_FLR, + COMMON_EVENT_PF_UPDATE, + COMMON_EVENT_MALICIOUS_VF, + COMMON_EVENT_RL_UPDATE, COMMON_EVENT_EMPTY, MAX_COMMON_EVENT_OPCODE }; @@ -42,11 +45,12 @@ enum common_event_opcode { /* Common Ramrod Command IDs */ enum common_ramrod_cmd_id { COMMON_RAMROD_UNUSED, - COMMON_RAMROD_PF_START /* PF Function Start Ramrod */, - COMMON_RAMROD_PF_STOP /* PF Function Stop Ramrod */, - COMMON_RAMROD_RESERVED, - COMMON_RAMROD_RESERVED2, - COMMON_RAMROD_RESERVED3, + COMMON_RAMROD_PF_START, + COMMON_RAMROD_PF_STOP, + COMMON_RAMROD_VF_START, + COMMON_RAMROD_VF_STOP, + COMMON_RAMROD_PF_UPDATE, + COMMON_RAMROD_RL_UPDATE, COMMON_RAMROD_EMPTY, MAX_COMMON_RAMROD_CMD_ID }; @@ -63,448 +67,448 @@ struct pstorm_core_conn_st_ctx { /* Core Slowpath Connection storm context of Xstorm */ struct xstorm_core_conn_st_ctx { - __le32 spq_base_lo /* SPQ Ring Base Address low dword */; - __le32 spq_base_hi /* SPQ Ring Base Address high dword */; - struct regpair consolid_base_addr; - __le16 spq_cons /* SPQ Ring Consumer */; - __le16 consolid_cons /* Consolidation Ring Consumer */; - __le32 reserved0[55] /* Pad to 15 cycles */; + __le32 spq_base_lo; + __le32 spq_base_hi; + struct regpair consolid_base_addr; + __le16 spq_cons; + __le16 consolid_cons; + __le32 reserved0[55]; }; struct xstorm_core_conn_ag_ctx { - u8 reserved0 /* cdu_validation */; - u8 core_state /* state */; - u8 flags0; -#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED1_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED1_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED2_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED2_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED3_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED3_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED4_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED4_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED5_MASK 0x1 /* bit6 */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED5_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED6_MASK 0x1 /* bit7 */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED6_SHIFT 7 + u8 reserved0; + u8 core_state; + u8 flags0; +#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED1_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED1_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED2_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED2_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED3_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED3_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED4_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED4_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED5_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED5_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED6_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED6_SHIFT 7 u8 flags1; -#define XSTORM_CORE_CONN_AG_CTX_RESERVED7_MASK 0x1 /* bit8 */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED7_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED8_MASK 0x1 /* bit9 */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED8_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED9_MASK 0x1 /* bit10 */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED9_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_BIT11_MASK 0x1 /* bit11 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT11_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_BIT12_MASK 0x1 /* bit12 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT12_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_BIT13_MASK 0x1 /* bit13 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT13_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_TX_RULE_ACTIVE_MASK 0x1 /* bit14 */ -#define XSTORM_CORE_CONN_AG_CTX_TX_RULE_ACTIVE_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_ACTIVE_MASK 0x1 /* bit15 */ -#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_ACTIVE_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED7_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED7_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED8_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED8_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED9_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED9_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_BIT11_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT11_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_BIT12_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT12_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_BIT13_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT13_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_TX_RULE_ACTIVE_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_TX_RULE_ACTIVE_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_ACTIVE_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_ACTIVE_SHIFT 7 u8 flags2; -#define XSTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 /* timer0cf */ -#define XSTORM_CORE_CONN_AG_CTX_CF0_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 /* timer1cf */ -#define XSTORM_CORE_CONN_AG_CTX_CF1_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 /* timer2cf */ -#define XSTORM_CORE_CONN_AG_CTX_CF2_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF3_MASK 0x3 -#define XSTORM_CORE_CONN_AG_CTX_CF3_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF0_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF1_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF2_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF3_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF3_SHIFT 6 u8 flags3; -#define XSTORM_CORE_CONN_AG_CTX_CF4_MASK 0x3 /* cf4 */ -#define XSTORM_CORE_CONN_AG_CTX_CF4_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF5_MASK 0x3 /* cf5 */ -#define XSTORM_CORE_CONN_AG_CTX_CF5_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_CF6_MASK 0x3 /* cf6 */ -#define XSTORM_CORE_CONN_AG_CTX_CF6_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF7_MASK 0x3 /* cf7 */ -#define XSTORM_CORE_CONN_AG_CTX_CF7_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF4_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF4_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF5_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF5_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_CF6_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF6_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF7_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF7_SHIFT 6 u8 flags4; -#define XSTORM_CORE_CONN_AG_CTX_CF8_MASK 0x3 /* cf8 */ -#define XSTORM_CORE_CONN_AG_CTX_CF8_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF9_MASK 0x3 /* cf9 */ -#define XSTORM_CORE_CONN_AG_CTX_CF9_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_CF10_MASK 0x3 /* cf10 */ -#define XSTORM_CORE_CONN_AG_CTX_CF10_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF11_MASK 0x3 /* cf11 */ -#define XSTORM_CORE_CONN_AG_CTX_CF11_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF8_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF8_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF9_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF9_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_CF10_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF10_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF11_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF11_SHIFT 6 u8 flags5; -#define XSTORM_CORE_CONN_AG_CTX_CF12_MASK 0x3 /* cf12 */ -#define XSTORM_CORE_CONN_AG_CTX_CF12_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF13_MASK 0x3 /* cf13 */ -#define XSTORM_CORE_CONN_AG_CTX_CF13_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_CF14_MASK 0x3 /* cf14 */ -#define XSTORM_CORE_CONN_AG_CTX_CF14_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF15_MASK 0x3 /* cf15 */ -#define XSTORM_CORE_CONN_AG_CTX_CF15_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF12_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF12_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF13_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF13_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_CF14_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF14_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF15_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF15_SHIFT 6 u8 flags6; -#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_MASK 0x3 /* cf16 */ -#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF17_MASK 0x3 -#define XSTORM_CORE_CONN_AG_CTX_CF17_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_MASK 0x3 /* cf18 */ -#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_MASK 0x3 /* cf19 */ -#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF17_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF17_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_SHIFT 6 u8 flags7; -#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_MASK 0x3 /* cf20 */ -#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED10_MASK 0x3 /* cf21 */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED10_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_MASK 0x3 /* cf22 */ -#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 /* cf0en */ -#define XSTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 /* cf1en */ -#define XSTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED10_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED10_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 7 u8 flags8; -#define XSTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define XSTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF3EN_MASK 0x1 /* cf3en */ -#define XSTORM_CORE_CONN_AG_CTX_CF3EN_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_CF4EN_MASK 0x1 /* cf4en */ -#define XSTORM_CORE_CONN_AG_CTX_CF4EN_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_CF5EN_MASK 0x1 /* cf5en */ -#define XSTORM_CORE_CONN_AG_CTX_CF5EN_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_CF6EN_MASK 0x1 /* cf6en */ -#define XSTORM_CORE_CONN_AG_CTX_CF6EN_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF7EN_MASK 0x1 /* cf7en */ -#define XSTORM_CORE_CONN_AG_CTX_CF7EN_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_CF8EN_MASK 0x1 /* cf8en */ -#define XSTORM_CORE_CONN_AG_CTX_CF8EN_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_CF9EN_MASK 0x1 /* cf9en */ -#define XSTORM_CORE_CONN_AG_CTX_CF9EN_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF3EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF3EN_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_CF4EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF4EN_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_CF5EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF5EN_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_CF6EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF6EN_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF7EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF7EN_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_CF8EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF8EN_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF9EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF9EN_SHIFT 7 u8 flags9; -#define XSTORM_CORE_CONN_AG_CTX_CF10EN_MASK 0x1 /* cf10en */ -#define XSTORM_CORE_CONN_AG_CTX_CF10EN_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_CF11EN_MASK 0x1 /* cf11en */ -#define XSTORM_CORE_CONN_AG_CTX_CF11EN_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_CF12EN_MASK 0x1 /* cf12en */ -#define XSTORM_CORE_CONN_AG_CTX_CF12EN_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_CF13EN_MASK 0x1 /* cf13en */ -#define XSTORM_CORE_CONN_AG_CTX_CF13EN_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_CF14EN_MASK 0x1 /* cf14en */ -#define XSTORM_CORE_CONN_AG_CTX_CF14EN_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF15EN_MASK 0x1 /* cf15en */ -#define XSTORM_CORE_CONN_AG_CTX_CF15EN_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_EN_MASK 0x1 /* cf16en */ -#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_EN_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_CF17EN_MASK 0x1 -#define XSTORM_CORE_CONN_AG_CTX_CF17EN_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_CF10EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF10EN_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_CF11EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF11EN_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_CF12EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF12EN_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_CF13EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF13EN_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_CF14EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF14EN_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF15EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF15EN_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CONSOLID_PROD_CF_EN_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_CF17EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF17EN_SHIFT 7 u8 flags10; -#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_EN_MASK 0x1 /* cf18en */ -#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_EN_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_EN_MASK 0x1 /* cf19en */ -#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_EN_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_EN_MASK 0x1 /* cf20en */ -#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_EN_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED11_MASK 0x1 /* cf21en */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED11_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 /* cf22en */ -#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_CF23EN_MASK 0x1 /* cf23en */ -#define XSTORM_CORE_CONN_AG_CTX_CF23EN_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED12_MASK 0x1 /* rule0en */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED12_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED13_MASK 0x1 /* rule1en */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED13_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_DQ_CF_EN_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_TERMINATE_CF_EN_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_FLUSH_Q0_EN_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED11_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED11_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_CF23EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_CF23EN_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED12_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED12_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED13_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED13_SHIFT 7 u8 flags11; -#define XSTORM_CORE_CONN_AG_CTX_RESERVED14_MASK 0x1 /* rule2en */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED14_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_RESERVED15_MASK 0x1 /* rule3en */ -#define XSTORM_CORE_CONN_AG_CTX_RESERVED15_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_TX_DEC_RULE_EN_MASK 0x1 /* rule4en */ -#define XSTORM_CORE_CONN_AG_CTX_TX_DEC_RULE_EN_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_RULE5EN_MASK 0x1 /* rule5en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE5EN_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_RULE6EN_MASK 0x1 /* rule6en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE6EN_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_RULE7EN_MASK 0x1 /* rule7en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE7EN_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 /* rule8en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_RULE9EN_MASK 0x1 /* rule9en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE9EN_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED14_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED14_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED15_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RESERVED15_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_TX_DEC_RULE_EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_TX_DEC_RULE_EN_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE5EN_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE6EN_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE7EN_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_RULE9EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE9EN_SHIFT 7 u8 flags12; -#define XSTORM_CORE_CONN_AG_CTX_RULE10EN_MASK 0x1 /* rule10en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE10EN_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_RULE11EN_MASK 0x1 /* rule11en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE11EN_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 /* rule12en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 /* rule13en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_RULE14EN_MASK 0x1 /* rule14en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE14EN_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_RULE15EN_MASK 0x1 /* rule15en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE15EN_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_RULE16EN_MASK 0x1 /* rule16en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE16EN_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_RULE17EN_MASK 0x1 /* rule17en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE17EN_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_RULE10EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE10EN_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_RULE11EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE11EN_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_RULE14EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE14EN_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_RULE15EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE15EN_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_RULE16EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE16EN_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_RULE17EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE17EN_SHIFT 7 u8 flags13; -#define XSTORM_CORE_CONN_AG_CTX_RULE18EN_MASK 0x1 /* rule18en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE18EN_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_RULE19EN_MASK 0x1 /* rule19en */ -#define XSTORM_CORE_CONN_AG_CTX_RULE19EN_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 /* rule20en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 /* rule21en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 /* rule22en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 /* rule23en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 /* rule24en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 /* rule25en */ -#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 +#define XSTORM_CORE_CONN_AG_CTX_RULE18EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE18EN_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_RULE19EN_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_RULE19EN_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 u8 flags14; -#define XSTORM_CORE_CONN_AG_CTX_BIT16_MASK 0x1 /* bit16 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT16_SHIFT 0 -#define XSTORM_CORE_CONN_AG_CTX_BIT17_MASK 0x1 /* bit17 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT17_SHIFT 1 -#define XSTORM_CORE_CONN_AG_CTX_BIT18_MASK 0x1 /* bit18 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT18_SHIFT 2 -#define XSTORM_CORE_CONN_AG_CTX_BIT19_MASK 0x1 /* bit19 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT19_SHIFT 3 -#define XSTORM_CORE_CONN_AG_CTX_BIT20_MASK 0x1 /* bit20 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT20_SHIFT 4 -#define XSTORM_CORE_CONN_AG_CTX_BIT21_MASK 0x1 /* bit21 */ -#define XSTORM_CORE_CONN_AG_CTX_BIT21_SHIFT 5 -#define XSTORM_CORE_CONN_AG_CTX_CF23_MASK 0x3 /* cf23 */ -#define XSTORM_CORE_CONN_AG_CTX_CF23_SHIFT 6 - u8 byte2 /* byte2 */; - __le16 physical_q0 /* physical_q0 */; - __le16 consolid_prod /* physical_q1 */; - __le16 reserved16 /* physical_q2 */; - __le16 tx_bd_cons /* word3 */; - __le16 tx_bd_or_spq_prod /* word4 */; - __le16 word5 /* word5 */; - __le16 conn_dpi /* conn_dpi */; - u8 byte3 /* byte3 */; - u8 byte4 /* byte4 */; - u8 byte5 /* byte5 */; - u8 byte6 /* byte6 */; - __le32 reg0 /* reg0 */; - __le32 reg1 /* reg1 */; - __le32 reg2 /* reg2 */; - __le32 reg3 /* reg3 */; - __le32 reg4 /* reg4 */; - __le32 reg5 /* cf_array0 */; - __le32 reg6 /* cf_array1 */; - __le16 word7 /* word7 */; - __le16 word8 /* word8 */; - __le16 word9 /* word9 */; - __le16 word10 /* word10 */; - __le32 reg7 /* reg7 */; - __le32 reg8 /* reg8 */; - __le32 reg9 /* reg9 */; - u8 byte7 /* byte7 */; - u8 byte8 /* byte8 */; - u8 byte9 /* byte9 */; - u8 byte10 /* byte10 */; - u8 byte11 /* byte11 */; - u8 byte12 /* byte12 */; - u8 byte13 /* byte13 */; - u8 byte14 /* byte14 */; - u8 byte15 /* byte15 */; - u8 byte16 /* byte16 */; - __le16 word11 /* word11 */; - __le32 reg10 /* reg10 */; - __le32 reg11 /* reg11 */; - __le32 reg12 /* reg12 */; - __le32 reg13 /* reg13 */; - __le32 reg14 /* reg14 */; - __le32 reg15 /* reg15 */; - __le32 reg16 /* reg16 */; - __le32 reg17 /* reg17 */; - __le32 reg18 /* reg18 */; - __le32 reg19 /* reg19 */; - __le16 word12 /* word12 */; - __le16 word13 /* word13 */; - __le16 word14 /* word14 */; - __le16 word15 /* word15 */; +#define XSTORM_CORE_CONN_AG_CTX_BIT16_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT16_SHIFT 0 +#define XSTORM_CORE_CONN_AG_CTX_BIT17_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT17_SHIFT 1 +#define XSTORM_CORE_CONN_AG_CTX_BIT18_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT18_SHIFT 2 +#define XSTORM_CORE_CONN_AG_CTX_BIT19_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT19_SHIFT 3 +#define XSTORM_CORE_CONN_AG_CTX_BIT20_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT20_SHIFT 4 +#define XSTORM_CORE_CONN_AG_CTX_BIT21_MASK 0x1 +#define XSTORM_CORE_CONN_AG_CTX_BIT21_SHIFT 5 +#define XSTORM_CORE_CONN_AG_CTX_CF23_MASK 0x3 +#define XSTORM_CORE_CONN_AG_CTX_CF23_SHIFT 6 + u8 byte2; + __le16 physical_q0; + __le16 consolid_prod; + __le16 reserved16; + __le16 tx_bd_cons; + __le16 tx_bd_or_spq_prod; + __le16 word5; + __le16 conn_dpi; + u8 byte3; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le16 word7; + __le16 word8; + __le16 word9; + __le16 word10; + __le32 reg7; + __le32 reg8; + __le32 reg9; + u8 byte7; + u8 byte8; + u8 byte9; + u8 byte10; + u8 byte11; + u8 byte12; + u8 byte13; + u8 byte14; + u8 byte15; + u8 byte16; + __le16 word11; + __le32 reg10; + __le32 reg11; + __le32 reg12; + __le32 reg13; + __le32 reg14; + __le32 reg15; + __le32 reg16; + __le32 reg17; + __le32 reg18; + __le32 reg19; + __le16 word12; + __le16 word13; + __le16 word14; + __le16 word15; }; struct tstorm_core_conn_ag_ctx { - u8 byte0 /* cdu_validation */; - u8 byte1 /* state */; - u8 flags0; -#define TSTORM_CORE_CONN_AG_CTX_BIT0_MASK 0x1 /* exist_in_qm0 */ -#define TSTORM_CORE_CONN_AG_CTX_BIT0_SHIFT 0 -#define TSTORM_CORE_CONN_AG_CTX_BIT1_MASK 0x1 /* exist_in_qm1 */ -#define TSTORM_CORE_CONN_AG_CTX_BIT1_SHIFT 1 -#define TSTORM_CORE_CONN_AG_CTX_BIT2_MASK 0x1 /* bit2 */ -#define TSTORM_CORE_CONN_AG_CTX_BIT2_SHIFT 2 -#define TSTORM_CORE_CONN_AG_CTX_BIT3_MASK 0x1 /* bit3 */ -#define TSTORM_CORE_CONN_AG_CTX_BIT3_SHIFT 3 -#define TSTORM_CORE_CONN_AG_CTX_BIT4_MASK 0x1 /* bit4 */ -#define TSTORM_CORE_CONN_AG_CTX_BIT4_SHIFT 4 -#define TSTORM_CORE_CONN_AG_CTX_BIT5_MASK 0x1 /* bit5 */ -#define TSTORM_CORE_CONN_AG_CTX_BIT5_SHIFT 5 -#define TSTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 /* timer0cf */ -#define TSTORM_CORE_CONN_AG_CTX_CF0_SHIFT 6 + u8 byte0; + u8 byte1; + u8 flags0; +#define TSTORM_CORE_CONN_AG_CTX_BIT0_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_BIT0_SHIFT 0 +#define TSTORM_CORE_CONN_AG_CTX_BIT1_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_BIT1_SHIFT 1 +#define TSTORM_CORE_CONN_AG_CTX_BIT2_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_BIT2_SHIFT 2 +#define TSTORM_CORE_CONN_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_BIT3_SHIFT 3 +#define TSTORM_CORE_CONN_AG_CTX_BIT4_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_BIT4_SHIFT 4 +#define TSTORM_CORE_CONN_AG_CTX_BIT5_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_BIT5_SHIFT 5 +#define TSTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF0_SHIFT 6 u8 flags1; -#define TSTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 /* timer1cf */ -#define TSTORM_CORE_CONN_AG_CTX_CF1_SHIFT 0 -#define TSTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 /* timer2cf */ -#define TSTORM_CORE_CONN_AG_CTX_CF2_SHIFT 2 -#define TSTORM_CORE_CONN_AG_CTX_CF3_MASK 0x3 /* timer_stop_all */ -#define TSTORM_CORE_CONN_AG_CTX_CF3_SHIFT 4 -#define TSTORM_CORE_CONN_AG_CTX_CF4_MASK 0x3 /* cf4 */ -#define TSTORM_CORE_CONN_AG_CTX_CF4_SHIFT 6 +#define TSTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF1_SHIFT 0 +#define TSTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF2_SHIFT 2 +#define TSTORM_CORE_CONN_AG_CTX_CF3_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF3_SHIFT 4 +#define TSTORM_CORE_CONN_AG_CTX_CF4_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF4_SHIFT 6 u8 flags2; -#define TSTORM_CORE_CONN_AG_CTX_CF5_MASK 0x3 /* cf5 */ -#define TSTORM_CORE_CONN_AG_CTX_CF5_SHIFT 0 -#define TSTORM_CORE_CONN_AG_CTX_CF6_MASK 0x3 /* cf6 */ -#define TSTORM_CORE_CONN_AG_CTX_CF6_SHIFT 2 -#define TSTORM_CORE_CONN_AG_CTX_CF7_MASK 0x3 /* cf7 */ -#define TSTORM_CORE_CONN_AG_CTX_CF7_SHIFT 4 -#define TSTORM_CORE_CONN_AG_CTX_CF8_MASK 0x3 /* cf8 */ -#define TSTORM_CORE_CONN_AG_CTX_CF8_SHIFT 6 +#define TSTORM_CORE_CONN_AG_CTX_CF5_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF5_SHIFT 0 +#define TSTORM_CORE_CONN_AG_CTX_CF6_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF6_SHIFT 2 +#define TSTORM_CORE_CONN_AG_CTX_CF7_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF7_SHIFT 4 +#define TSTORM_CORE_CONN_AG_CTX_CF8_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF8_SHIFT 6 u8 flags3; -#define TSTORM_CORE_CONN_AG_CTX_CF9_MASK 0x3 /* cf9 */ -#define TSTORM_CORE_CONN_AG_CTX_CF9_SHIFT 0 -#define TSTORM_CORE_CONN_AG_CTX_CF10_MASK 0x3 /* cf10 */ -#define TSTORM_CORE_CONN_AG_CTX_CF10_SHIFT 2 -#define TSTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 /* cf0en */ -#define TSTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 4 -#define TSTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 /* cf1en */ -#define TSTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 5 -#define TSTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define TSTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 6 -#define TSTORM_CORE_CONN_AG_CTX_CF3EN_MASK 0x1 /* cf3en */ -#define TSTORM_CORE_CONN_AG_CTX_CF3EN_SHIFT 7 +#define TSTORM_CORE_CONN_AG_CTX_CF9_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF9_SHIFT 0 +#define TSTORM_CORE_CONN_AG_CTX_CF10_MASK 0x3 +#define TSTORM_CORE_CONN_AG_CTX_CF10_SHIFT 2 +#define TSTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 4 +#define TSTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 5 +#define TSTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 6 +#define TSTORM_CORE_CONN_AG_CTX_CF3EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF3EN_SHIFT 7 u8 flags4; -#define TSTORM_CORE_CONN_AG_CTX_CF4EN_MASK 0x1 /* cf4en */ -#define TSTORM_CORE_CONN_AG_CTX_CF4EN_SHIFT 0 -#define TSTORM_CORE_CONN_AG_CTX_CF5EN_MASK 0x1 /* cf5en */ -#define TSTORM_CORE_CONN_AG_CTX_CF5EN_SHIFT 1 -#define TSTORM_CORE_CONN_AG_CTX_CF6EN_MASK 0x1 /* cf6en */ -#define TSTORM_CORE_CONN_AG_CTX_CF6EN_SHIFT 2 -#define TSTORM_CORE_CONN_AG_CTX_CF7EN_MASK 0x1 /* cf7en */ -#define TSTORM_CORE_CONN_AG_CTX_CF7EN_SHIFT 3 -#define TSTORM_CORE_CONN_AG_CTX_CF8EN_MASK 0x1 /* cf8en */ -#define TSTORM_CORE_CONN_AG_CTX_CF8EN_SHIFT 4 -#define TSTORM_CORE_CONN_AG_CTX_CF9EN_MASK 0x1 /* cf9en */ -#define TSTORM_CORE_CONN_AG_CTX_CF9EN_SHIFT 5 -#define TSTORM_CORE_CONN_AG_CTX_CF10EN_MASK 0x1 /* cf10en */ -#define TSTORM_CORE_CONN_AG_CTX_CF10EN_SHIFT 6 -#define TSTORM_CORE_CONN_AG_CTX_RULE0EN_MASK 0x1 /* rule0en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE0EN_SHIFT 7 +#define TSTORM_CORE_CONN_AG_CTX_CF4EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF4EN_SHIFT 0 +#define TSTORM_CORE_CONN_AG_CTX_CF5EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF5EN_SHIFT 1 +#define TSTORM_CORE_CONN_AG_CTX_CF6EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF6EN_SHIFT 2 +#define TSTORM_CORE_CONN_AG_CTX_CF7EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF7EN_SHIFT 3 +#define TSTORM_CORE_CONN_AG_CTX_CF8EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF8EN_SHIFT 4 +#define TSTORM_CORE_CONN_AG_CTX_CF9EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF9EN_SHIFT 5 +#define TSTORM_CORE_CONN_AG_CTX_CF10EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_CF10EN_SHIFT 6 +#define TSTORM_CORE_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE0EN_SHIFT 7 u8 flags5; -#define TSTORM_CORE_CONN_AG_CTX_RULE1EN_MASK 0x1 /* rule1en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE1EN_SHIFT 0 -#define TSTORM_CORE_CONN_AG_CTX_RULE2EN_MASK 0x1 /* rule2en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE2EN_SHIFT 1 -#define TSTORM_CORE_CONN_AG_CTX_RULE3EN_MASK 0x1 /* rule3en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE3EN_SHIFT 2 -#define TSTORM_CORE_CONN_AG_CTX_RULE4EN_MASK 0x1 /* rule4en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE4EN_SHIFT 3 -#define TSTORM_CORE_CONN_AG_CTX_RULE5EN_MASK 0x1 /* rule5en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE5EN_SHIFT 4 -#define TSTORM_CORE_CONN_AG_CTX_RULE6EN_MASK 0x1 /* rule6en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE6EN_SHIFT 5 -#define TSTORM_CORE_CONN_AG_CTX_RULE7EN_MASK 0x1 /* rule7en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE7EN_SHIFT 6 -#define TSTORM_CORE_CONN_AG_CTX_RULE8EN_MASK 0x1 /* rule8en */ -#define TSTORM_CORE_CONN_AG_CTX_RULE8EN_SHIFT 7 - __le32 reg0 /* reg0 */; - __le32 reg1 /* reg1 */; - __le32 reg2 /* reg2 */; - __le32 reg3 /* reg3 */; - __le32 reg4 /* reg4 */; - __le32 reg5 /* reg5 */; - __le32 reg6 /* reg6 */; - __le32 reg7 /* reg7 */; - __le32 reg8 /* reg8 */; - u8 byte2 /* byte2 */; - u8 byte3 /* byte3 */; - __le16 word0 /* word0 */; - u8 byte4 /* byte4 */; - u8 byte5 /* byte5 */; - __le16 word1 /* word1 */; - __le16 word2 /* conn_dpi */; - __le16 word3 /* word3 */; - __le32 reg9 /* reg9 */; - __le32 reg10 /* reg10 */; +#define TSTORM_CORE_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define TSTORM_CORE_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define TSTORM_CORE_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define TSTORM_CORE_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define TSTORM_CORE_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define TSTORM_CORE_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define TSTORM_CORE_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define TSTORM_CORE_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define TSTORM_CORE_CONN_AG_CTX_RULE8EN_SHIFT 7 + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le32 reg7; + __le32 reg8; + u8 byte2; + u8 byte3; + __le16 word0; + u8 byte4; + u8 byte5; + __le16 word1; + __le16 word2; + __le16 word3; + __le32 reg9; + __le32 reg10; }; struct ustorm_core_conn_ag_ctx { - u8 reserved /* cdu_validation */; - u8 byte1 /* state */; - u8 flags0; -#define USTORM_CORE_CONN_AG_CTX_BIT0_MASK 0x1 /* exist_in_qm0 */ -#define USTORM_CORE_CONN_AG_CTX_BIT0_SHIFT 0 -#define USTORM_CORE_CONN_AG_CTX_BIT1_MASK 0x1 /* exist_in_qm1 */ -#define USTORM_CORE_CONN_AG_CTX_BIT1_SHIFT 1 -#define USTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 /* timer0cf */ -#define USTORM_CORE_CONN_AG_CTX_CF0_SHIFT 2 -#define USTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 /* timer1cf */ -#define USTORM_CORE_CONN_AG_CTX_CF1_SHIFT 4 -#define USTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 /* timer2cf */ -#define USTORM_CORE_CONN_AG_CTX_CF2_SHIFT 6 + u8 reserved; + u8 byte1; + u8 flags0; +#define USTORM_CORE_CONN_AG_CTX_BIT0_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_BIT0_SHIFT 0 +#define USTORM_CORE_CONN_AG_CTX_BIT1_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_BIT1_SHIFT 1 +#define USTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF0_SHIFT 2 +#define USTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF1_SHIFT 4 +#define USTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF2_SHIFT 6 u8 flags1; -#define USTORM_CORE_CONN_AG_CTX_CF3_MASK 0x3 /* timer_stop_all */ -#define USTORM_CORE_CONN_AG_CTX_CF3_SHIFT 0 -#define USTORM_CORE_CONN_AG_CTX_CF4_MASK 0x3 /* cf4 */ -#define USTORM_CORE_CONN_AG_CTX_CF4_SHIFT 2 -#define USTORM_CORE_CONN_AG_CTX_CF5_MASK 0x3 /* cf5 */ -#define USTORM_CORE_CONN_AG_CTX_CF5_SHIFT 4 -#define USTORM_CORE_CONN_AG_CTX_CF6_MASK 0x3 /* cf6 */ -#define USTORM_CORE_CONN_AG_CTX_CF6_SHIFT 6 +#define USTORM_CORE_CONN_AG_CTX_CF3_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF3_SHIFT 0 +#define USTORM_CORE_CONN_AG_CTX_CF4_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF4_SHIFT 2 +#define USTORM_CORE_CONN_AG_CTX_CF5_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF5_SHIFT 4 +#define USTORM_CORE_CONN_AG_CTX_CF6_MASK 0x3 +#define USTORM_CORE_CONN_AG_CTX_CF6_SHIFT 6 u8 flags2; -#define USTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 /* cf0en */ -#define USTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 0 -#define USTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 /* cf1en */ -#define USTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 1 -#define USTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define USTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 2 -#define USTORM_CORE_CONN_AG_CTX_CF3EN_MASK 0x1 /* cf3en */ -#define USTORM_CORE_CONN_AG_CTX_CF3EN_SHIFT 3 -#define USTORM_CORE_CONN_AG_CTX_CF4EN_MASK 0x1 /* cf4en */ -#define USTORM_CORE_CONN_AG_CTX_CF4EN_SHIFT 4 -#define USTORM_CORE_CONN_AG_CTX_CF5EN_MASK 0x1 /* cf5en */ -#define USTORM_CORE_CONN_AG_CTX_CF5EN_SHIFT 5 -#define USTORM_CORE_CONN_AG_CTX_CF6EN_MASK 0x1 /* cf6en */ -#define USTORM_CORE_CONN_AG_CTX_CF6EN_SHIFT 6 -#define USTORM_CORE_CONN_AG_CTX_RULE0EN_MASK 0x1 /* rule0en */ -#define USTORM_CORE_CONN_AG_CTX_RULE0EN_SHIFT 7 +#define USTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 0 +#define USTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 1 +#define USTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 2 +#define USTORM_CORE_CONN_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_CORE_CONN_AG_CTX_CF4EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF4EN_SHIFT 4 +#define USTORM_CORE_CONN_AG_CTX_CF5EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF5EN_SHIFT 5 +#define USTORM_CORE_CONN_AG_CTX_CF6EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_CF6EN_SHIFT 6 +#define USTORM_CORE_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE0EN_SHIFT 7 u8 flags3; -#define USTORM_CORE_CONN_AG_CTX_RULE1EN_MASK 0x1 /* rule1en */ -#define USTORM_CORE_CONN_AG_CTX_RULE1EN_SHIFT 0 -#define USTORM_CORE_CONN_AG_CTX_RULE2EN_MASK 0x1 /* rule2en */ -#define USTORM_CORE_CONN_AG_CTX_RULE2EN_SHIFT 1 -#define USTORM_CORE_CONN_AG_CTX_RULE3EN_MASK 0x1 /* rule3en */ -#define USTORM_CORE_CONN_AG_CTX_RULE3EN_SHIFT 2 -#define USTORM_CORE_CONN_AG_CTX_RULE4EN_MASK 0x1 /* rule4en */ -#define USTORM_CORE_CONN_AG_CTX_RULE4EN_SHIFT 3 -#define USTORM_CORE_CONN_AG_CTX_RULE5EN_MASK 0x1 /* rule5en */ -#define USTORM_CORE_CONN_AG_CTX_RULE5EN_SHIFT 4 -#define USTORM_CORE_CONN_AG_CTX_RULE6EN_MASK 0x1 /* rule6en */ -#define USTORM_CORE_CONN_AG_CTX_RULE6EN_SHIFT 5 -#define USTORM_CORE_CONN_AG_CTX_RULE7EN_MASK 0x1 /* rule7en */ -#define USTORM_CORE_CONN_AG_CTX_RULE7EN_SHIFT 6 -#define USTORM_CORE_CONN_AG_CTX_RULE8EN_MASK 0x1 /* rule8en */ -#define USTORM_CORE_CONN_AG_CTX_RULE8EN_SHIFT 7 - u8 byte2 /* byte2 */; - u8 byte3 /* byte3 */; - __le16 word0 /* conn_dpi */; - __le16 word1 /* word1 */; - __le32 rx_producers /* reg0 */; - __le32 reg1 /* reg1 */; - __le32 reg2 /* reg2 */; - __le32 reg3 /* reg3 */; - __le16 word2 /* word2 */; - __le16 word3 /* word3 */; +#define USTORM_CORE_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define USTORM_CORE_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define USTORM_CORE_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define USTORM_CORE_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define USTORM_CORE_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define USTORM_CORE_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define USTORM_CORE_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define USTORM_CORE_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define USTORM_CORE_CONN_AG_CTX_RULE8EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le16 word1; + __le32 rx_producers; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le16 word2; + __le16 word3; }; /* The core storm context for the Mstorm */ @@ -519,239 +523,821 @@ struct ustorm_core_conn_st_ctx { /* core connection context */ struct core_conn_context { - struct ystorm_core_conn_st_ctx ystorm_st_context; - struct regpair ystorm_st_padding[2] /* padding */; - struct pstorm_core_conn_st_ctx pstorm_st_context; - struct regpair pstorm_st_padding[2]; - struct xstorm_core_conn_st_ctx xstorm_st_context; - struct xstorm_core_conn_ag_ctx xstorm_ag_context; - struct tstorm_core_conn_ag_ctx tstorm_ag_context; - struct ustorm_core_conn_ag_ctx ustorm_ag_context; - struct mstorm_core_conn_st_ctx mstorm_st_context; - struct ustorm_core_conn_st_ctx ustorm_st_context; - struct regpair ustorm_st_padding[2] /* padding */; + struct ystorm_core_conn_st_ctx ystorm_st_context; + struct regpair ystorm_st_padding[2]; + struct pstorm_core_conn_st_ctx pstorm_st_context; + struct regpair pstorm_st_padding[2]; + struct xstorm_core_conn_st_ctx xstorm_st_context; + struct xstorm_core_conn_ag_ctx xstorm_ag_context; + struct tstorm_core_conn_ag_ctx tstorm_ag_context; + struct ustorm_core_conn_ag_ctx ustorm_ag_context; + struct mstorm_core_conn_st_ctx mstorm_st_context; + struct ustorm_core_conn_st_ctx ustorm_st_context; + struct regpair ustorm_st_padding[2]; +}; + +struct eth_mstorm_per_pf_stat { + struct regpair gre_discard_pkts; + struct regpair vxlan_discard_pkts; + struct regpair geneve_discard_pkts; + struct regpair lb_discard_pkts; }; struct eth_mstorm_per_queue_stat { - struct regpair ttl0_discard; - struct regpair packet_too_big_discard; - struct regpair no_buff_discard; - struct regpair not_active_discard; - struct regpair tpa_coalesced_pkts; - struct regpair tpa_coalesced_events; - struct regpair tpa_aborts_num; - struct regpair tpa_coalesced_bytes; -}; - + struct regpair ttl0_discard; + struct regpair packet_too_big_discard; + struct regpair no_buff_discard; + struct regpair not_active_discard; + struct regpair tpa_coalesced_pkts; + struct regpair tpa_coalesced_events; + struct regpair tpa_aborts_num; + struct regpair tpa_coalesced_bytes; +}; + +/* Ethernet TX Per PF */ +struct eth_pstorm_per_pf_stat { + struct regpair sent_lb_ucast_bytes; + struct regpair sent_lb_mcast_bytes; + struct regpair sent_lb_bcast_bytes; + struct regpair sent_lb_ucast_pkts; + struct regpair sent_lb_mcast_pkts; + struct regpair sent_lb_bcast_pkts; + struct regpair sent_gre_bytes; + struct regpair sent_vxlan_bytes; + struct regpair sent_geneve_bytes; + struct regpair sent_gre_pkts; + struct regpair sent_vxlan_pkts; + struct regpair sent_geneve_pkts; + struct regpair gre_drop_pkts; + struct regpair vxlan_drop_pkts; + struct regpair geneve_drop_pkts; +}; + +/* Ethernet TX Per Queue Stats */ struct eth_pstorm_per_queue_stat { - struct regpair sent_ucast_bytes; - struct regpair sent_mcast_bytes; - struct regpair sent_bcast_bytes; - struct regpair sent_ucast_pkts; - struct regpair sent_mcast_pkts; - struct regpair sent_bcast_pkts; - struct regpair error_drop_pkts; + struct regpair sent_ucast_bytes; + struct regpair sent_mcast_bytes; + struct regpair sent_bcast_bytes; + struct regpair sent_ucast_pkts; + struct regpair sent_mcast_pkts; + struct regpair sent_bcast_pkts; + struct regpair error_drop_pkts; +}; + +/* ETH Rx producers data */ +struct eth_rx_rate_limit { + __le16 mult; + __le16 cnst; + u8 add_sub_cnst; + u8 reserved0; + __le16 reserved1; +}; + +struct eth_ustorm_per_pf_stat { + struct regpair rcv_lb_ucast_bytes; + struct regpair rcv_lb_mcast_bytes; + struct regpair rcv_lb_bcast_bytes; + struct regpair rcv_lb_ucast_pkts; + struct regpair rcv_lb_mcast_pkts; + struct regpair rcv_lb_bcast_pkts; + struct regpair rcv_gre_bytes; + struct regpair rcv_vxlan_bytes; + struct regpair rcv_geneve_bytes; + struct regpair rcv_gre_pkts; + struct regpair rcv_vxlan_pkts; + struct regpair rcv_geneve_pkts; }; struct eth_ustorm_per_queue_stat { - struct regpair rcv_ucast_bytes; - struct regpair rcv_mcast_bytes; - struct regpair rcv_bcast_bytes; - struct regpair rcv_ucast_pkts; - struct regpair rcv_mcast_pkts; - struct regpair rcv_bcast_pkts; + struct regpair rcv_ucast_bytes; + struct regpair rcv_mcast_bytes; + struct regpair rcv_bcast_bytes; + struct regpair rcv_ucast_pkts; + struct regpair rcv_mcast_pkts; + struct regpair rcv_bcast_pkts; }; /* Event Ring Next Page Address */ struct event_ring_next_addr { - struct regpair addr /* Next Page Address */; - __le32 reserved[2] /* Reserved */; + struct regpair addr; + __le32 reserved[2]; }; +/* Event Ring Element */ union event_ring_element { - struct event_ring_entry entry /* Event Ring Entry */; - struct event_ring_next_addr next_addr; + struct event_ring_entry entry; + struct event_ring_next_addr next_addr; }; +/* Major and Minor hsi Versions */ +struct hsi_fp_ver_struct { + u8 minor_ver_arr[2]; + u8 major_ver_arr[2]; +}; + +/* Mstorm non-triggering VF zone */ +struct mstorm_non_trigger_vf_zone { + struct eth_mstorm_per_queue_stat eth_queue_stat; + struct eth_rx_prod_data eth_rx_queue_producers[ETH_MAX_NUM_RX_QUEUES_PER_VF]; +}; + +/* Mstorm VF zone */ +struct mstorm_vf_zone { + struct mstorm_non_trigger_vf_zone non_trigger; + +}; + +/* personality per PF */ enum personality_type { BAD_PERSONALITY_TYP, - PERSONALITY_RESERVED, + PERSONALITY_ISCSI, PERSONALITY_RESERVED2, - PERSONALITY_RDMA_AND_ETH /* Roce or Iwarp */, + PERSONALITY_RDMA_AND_ETH, PERSONALITY_RESERVED3, PERSONALITY_CORE, - PERSONALITY_ETH /* Ethernet */, + PERSONALITY_ETH, PERSONALITY_RESERVED4, MAX_PERSONALITY_TYPE }; +/* tunnel configuration */ struct pf_start_tunnel_config { - u8 set_vxlan_udp_port_flg; - u8 set_geneve_udp_port_flg; - u8 tx_enable_vxlan /* If set, enable VXLAN tunnel in TX path. */; - u8 tx_enable_l2geneve; - u8 tx_enable_ipgeneve; - u8 tx_enable_l2gre /* If set, enable l2 GRE tunnel in TX path. */; - u8 tx_enable_ipgre /* If set, enable IP GRE tunnel in TX path. */; - u8 tunnel_clss_vxlan /* Classification scheme for VXLAN tunnel. */; - u8 tunnel_clss_l2geneve; - u8 tunnel_clss_ipgeneve; - u8 tunnel_clss_l2gre; - u8 tunnel_clss_ipgre; - __le16 vxlan_udp_port /* VXLAN tunnel UDP destination port. */; - __le16 geneve_udp_port /* GENEVE tunnel UDP destination port. */; + u8 set_vxlan_udp_port_flg; + u8 set_geneve_udp_port_flg; + u8 tx_enable_vxlan; + u8 tx_enable_l2geneve; + u8 tx_enable_ipgeneve; + u8 tx_enable_l2gre; + u8 tx_enable_ipgre; + u8 tunnel_clss_vxlan; + u8 tunnel_clss_l2geneve; + u8 tunnel_clss_ipgeneve; + u8 tunnel_clss_l2gre; + u8 tunnel_clss_ipgre; + __le16 vxlan_udp_port; + __le16 geneve_udp_port; }; /* Ramrod data for PF start ramrod */ struct pf_start_ramrod_data { - struct regpair event_ring_pbl_addr; - struct regpair consolid_q_pbl_addr; - struct pf_start_tunnel_config tunnel_config; - __le16 event_ring_sb_id; - u8 base_vf_id; - u8 num_vfs; - u8 event_ring_num_pages; - u8 event_ring_sb_index; - u8 path_id; - u8 warning_as_error; - u8 dont_log_ramrods; - u8 personality; - __le16 log_type_mask; - u8 mf_mode /* Multi function mode */; - u8 integ_phase /* Integration phase */; - u8 allow_npar_tx_switching; - u8 inner_to_outer_pri_map[8]; - u8 pri_map_valid; - u32 outer_tag; - u8 reserved0[4]; -}; - + struct regpair event_ring_pbl_addr; + struct regpair consolid_q_pbl_addr; + struct pf_start_tunnel_config tunnel_config; + __le16 event_ring_sb_id; + u8 base_vf_id; + u8 num_vfs; + u8 event_ring_num_pages; + u8 event_ring_sb_index; + u8 path_id; + u8 warning_as_error; + u8 dont_log_ramrods; + u8 personality; + __le16 log_type_mask; + u8 mf_mode; + u8 integ_phase; + u8 allow_npar_tx_switching; + u8 inner_to_outer_pri_map[8]; + u8 pri_map_valid; + __le32 outer_tag; + struct hsi_fp_ver_struct hsi_fp_ver; + +}; + +struct protocol_dcb_data { + u8 dcb_enable_flag; + u8 dcb_priority; + u8 dcb_tc; + u8 reserved; +}; + +struct pf_update_tunnel_config { + u8 update_rx_pf_clss; + u8 update_tx_pf_clss; + u8 set_vxlan_udp_port_flg; + u8 set_geneve_udp_port_flg; + u8 tx_enable_vxlan; + u8 tx_enable_l2geneve; + u8 tx_enable_ipgeneve; + u8 tx_enable_l2gre; + u8 tx_enable_ipgre; + u8 tunnel_clss_vxlan; + u8 tunnel_clss_l2geneve; + u8 tunnel_clss_ipgeneve; + u8 tunnel_clss_l2gre; + u8 tunnel_clss_ipgre; + __le16 vxlan_udp_port; + __le16 geneve_udp_port; + __le16 reserved[3]; +}; + +struct pf_update_ramrod_data { + u8 pf_id; + u8 update_eth_dcb_data_flag; + u8 update_fcoe_dcb_data_flag; + u8 update_iscsi_dcb_data_flag; + u8 update_roce_dcb_data_flag; + u8 update_iwarp_dcb_data_flag; + u8 update_mf_vlan_flag; + u8 reserved; + struct protocol_dcb_data eth_dcb_data; + struct protocol_dcb_data fcoe_dcb_data; + struct protocol_dcb_data iscsi_dcb_data; + struct protocol_dcb_data roce_dcb_data; + struct protocol_dcb_data iwarp_dcb_data; + __le16 mf_vlan; + __le16 reserved2; + struct pf_update_tunnel_config tunnel_config; +}; + +/* Ports mode */ enum ports_mode { - ENGX2_PORTX1 /* 2 engines x 1 port */, - ENGX2_PORTX2 /* 2 engines x 2 ports */, - ENGX1_PORTX1 /* 1 engine x 1 port */, - ENGX1_PORTX2 /* 1 engine x 2 ports */, - ENGX1_PORTX4 /* 1 engine x 4 ports */, + ENGX2_PORTX1, + ENGX2_PORTX2, + ENGX1_PORTX1, + ENGX1_PORTX2, + ENGX1_PORTX4, MAX_PORTS_MODE }; +/* use to index in hsi_fp_[major|minor]_ver_arr per protocol */ +enum protocol_version_array_key { + ETH_VER_KEY = 0, + ROCE_VER_KEY, + MAX_PROTOCOL_VERSION_ARRAY_KEY +}; + +/* Pstorm non-triggering VF zone */ +struct pstorm_non_trigger_vf_zone { + struct eth_pstorm_per_queue_stat eth_queue_stat; + struct regpair reserved[2]; +}; + +/* Pstorm VF zone */ +struct pstorm_vf_zone { + struct pstorm_non_trigger_vf_zone non_trigger; + struct regpair reserved[7]; +}; + /* Ramrod Header of SPQE */ struct ramrod_header { - __le32 cid /* Slowpath Connection CID */; - u8 cmd_id /* Ramrod Cmd (Per Protocol Type) */; - u8 protocol_id /* Ramrod Protocol ID */; - __le16 echo /* Ramrod echo */; + __le32 cid; + u8 cmd_id; + u8 protocol_id; + __le16 echo; }; /* Slowpath Element (SPQE) */ struct slow_path_element { - struct ramrod_header hdr /* Ramrod Header */; - struct regpair data_ptr; + struct ramrod_header hdr; + struct regpair data_ptr; +}; + +/* Tstorm non-triggering VF zone */ +struct tstorm_non_trigger_vf_zone { + struct regpair reserved[2]; }; struct tstorm_per_port_stat { - struct regpair trunc_error_discard; - struct regpair mac_error_discard; - struct regpair mftag_filter_discard; - struct regpair eth_mac_filter_discard; - struct regpair ll2_mac_filter_discard; - struct regpair ll2_conn_disabled_discard; - struct regpair iscsi_irregular_pkt; - struct regpair fcoe_irregular_pkt; - struct regpair roce_irregular_pkt; - struct regpair eth_irregular_pkt; - struct regpair toe_irregular_pkt; - struct regpair preroce_irregular_pkt; + struct regpair trunc_error_discard; + struct regpair mac_error_discard; + struct regpair mftag_filter_discard; + struct regpair eth_mac_filter_discard; + struct regpair reserved[5]; + struct regpair eth_irregular_pkt; + struct regpair reserved1[2]; + struct regpair eth_gre_tunn_filter_discard; + struct regpair eth_vxlan_tunn_filter_discard; + struct regpair eth_geneve_tunn_filter_discard; +}; + +/* Tstorm VF zone */ +struct tstorm_vf_zone { + struct tstorm_non_trigger_vf_zone non_trigger; +}; + +/* Tunnel classification scheme */ +enum tunnel_clss { + TUNNEL_CLSS_MAC_VLAN = 0, + TUNNEL_CLSS_MAC_VNI, + TUNNEL_CLSS_INNER_MAC_VLAN, + TUNNEL_CLSS_INNER_MAC_VNI, + TUNNEL_CLSS_MAC_VLAN_DUAL_STAGE, + MAX_TUNNEL_CLSS +}; + +/* Ustorm non-triggering VF zone */ +struct ustorm_non_trigger_vf_zone { + struct eth_ustorm_per_queue_stat eth_queue_stat; + struct regpair vf_pf_msg_addr; +}; + +/* Ustorm triggering VF zone */ +struct ustorm_trigger_vf_zone { + u8 vf_pf_msg_valid; + u8 reserved[7]; +}; + +/* Ustorm VF zone */ +struct ustorm_vf_zone { + struct ustorm_non_trigger_vf_zone non_trigger; + struct ustorm_trigger_vf_zone trigger; +}; + +/* VF-PF channel data */ +struct vf_pf_channel_data { + __le32 ready; + u8 valid; + u8 reserved0; + __le16 reserved1; +}; + +/* Ramrod data for VF start ramrod */ +struct vf_start_ramrod_data { + u8 vf_id; + u8 enable_flr_ack; + __le16 opaque_fid; + u8 personality; + u8 reserved[7]; + struct hsi_fp_ver_struct hsi_fp_ver; + }; +/* Ramrod data for VF start ramrod */ +struct vf_stop_ramrod_data { + u8 vf_id; + u8 reserved0; + __le16 reserved1; + __le32 reserved2; +}; + +/* Attentions status block */ struct atten_status_block { - __le32 atten_bits; - __le32 atten_ack; - __le16 reserved0; - __le16 sb_index /* status block running index */; - __le32 reserved1; + __le32 atten_bits; + __le32 atten_ack; + __le16 reserved0; + __le16 sb_index; + __le32 reserved1; +}; + +enum command_type_bit { + IGU_COMMAND_TYPE_NOP = 0, + IGU_COMMAND_TYPE_SET = 1, + MAX_COMMAND_TYPE_BIT +}; + +/* DMAE command */ +struct dmae_cmd { + __le32 opcode; +#define DMAE_CMD_SRC_MASK 0x1 +#define DMAE_CMD_SRC_SHIFT 0 +#define DMAE_CMD_DST_MASK 0x3 +#define DMAE_CMD_DST_SHIFT 1 +#define DMAE_CMD_C_DST_MASK 0x1 +#define DMAE_CMD_C_DST_SHIFT 3 +#define DMAE_CMD_CRC_RESET_MASK 0x1 +#define DMAE_CMD_CRC_RESET_SHIFT 4 +#define DMAE_CMD_SRC_ADDR_RESET_MASK 0x1 +#define DMAE_CMD_SRC_ADDR_RESET_SHIFT 5 +#define DMAE_CMD_DST_ADDR_RESET_MASK 0x1 +#define DMAE_CMD_DST_ADDR_RESET_SHIFT 6 +#define DMAE_CMD_COMP_FUNC_MASK 0x1 +#define DMAE_CMD_COMP_FUNC_SHIFT 7 +#define DMAE_CMD_COMP_WORD_EN_MASK 0x1 +#define DMAE_CMD_COMP_WORD_EN_SHIFT 8 +#define DMAE_CMD_COMP_CRC_EN_MASK 0x1 +#define DMAE_CMD_COMP_CRC_EN_SHIFT 9 +#define DMAE_CMD_COMP_CRC_OFFSET_MASK 0x7 +#define DMAE_CMD_COMP_CRC_OFFSET_SHIFT 10 +#define DMAE_CMD_RESERVED1_MASK 0x1 +#define DMAE_CMD_RESERVED1_SHIFT 13 +#define DMAE_CMD_ENDIANITY_MODE_MASK 0x3 +#define DMAE_CMD_ENDIANITY_MODE_SHIFT 14 +#define DMAE_CMD_ERR_HANDLING_MASK 0x3 +#define DMAE_CMD_ERR_HANDLING_SHIFT 16 +#define DMAE_CMD_PORT_ID_MASK 0x3 +#define DMAE_CMD_PORT_ID_SHIFT 18 +#define DMAE_CMD_SRC_PF_ID_MASK 0xF +#define DMAE_CMD_SRC_PF_ID_SHIFT 20 +#define DMAE_CMD_DST_PF_ID_MASK 0xF +#define DMAE_CMD_DST_PF_ID_SHIFT 24 +#define DMAE_CMD_SRC_VF_ID_VALID_MASK 0x1 +#define DMAE_CMD_SRC_VF_ID_VALID_SHIFT 28 +#define DMAE_CMD_DST_VF_ID_VALID_MASK 0x1 +#define DMAE_CMD_DST_VF_ID_VALID_SHIFT 29 +#define DMAE_CMD_RESERVED2_MASK 0x3 +#define DMAE_CMD_RESERVED2_SHIFT 30 + __le32 src_addr_lo; + __le32 src_addr_hi; + __le32 dst_addr_lo; + __le32 dst_addr_hi; + __le16 length_dw; + __le16 opcode_b; +#define DMAE_CMD_SRC_VF_ID_MASK 0xFF +#define DMAE_CMD_SRC_VF_ID_SHIFT 0 +#define DMAE_CMD_DST_VF_ID_MASK 0xFF +#define DMAE_CMD_DST_VF_ID_SHIFT 8 + __le32 comp_addr_lo; + __le32 comp_addr_hi; + __le32 comp_val; + __le32 crc32; + __le32 crc_32_c; + __le16 crc16; + __le16 crc16_c; + __le16 crc10; + __le16 reserved; + __le16 xsum16; + __le16 xsum8; +}; + +enum dmae_cmd_comp_crc_en_enum { + dmae_cmd_comp_crc_disabled, + dmae_cmd_comp_crc_enabled, + MAX_DMAE_CMD_COMP_CRC_EN_ENUM +}; + +enum dmae_cmd_comp_func_enum { + dmae_cmd_comp_func_to_src, + dmae_cmd_comp_func_to_dst, + MAX_DMAE_CMD_COMP_FUNC_ENUM +}; + +enum dmae_cmd_comp_word_en_enum { + dmae_cmd_comp_word_disabled, + dmae_cmd_comp_word_enabled, + MAX_DMAE_CMD_COMP_WORD_EN_ENUM +}; + +enum dmae_cmd_c_dst_enum { + dmae_cmd_c_dst_pcie, + dmae_cmd_c_dst_grc, + MAX_DMAE_CMD_C_DST_ENUM +}; + +enum dmae_cmd_dst_enum { + dmae_cmd_dst_none_0, + dmae_cmd_dst_pcie, + dmae_cmd_dst_grc, + dmae_cmd_dst_none_3, + MAX_DMAE_CMD_DST_ENUM +}; + +enum dmae_cmd_error_handling_enum { + dmae_cmd_error_handling_send_regular_comp, + dmae_cmd_error_handling_send_comp_with_err, + dmae_cmd_error_handling_dont_send_comp, + MAX_DMAE_CMD_ERROR_HANDLING_ENUM +}; + +enum dmae_cmd_src_enum { + dmae_cmd_src_pcie, + dmae_cmd_src_grc, + MAX_DMAE_CMD_SRC_ENUM +}; + +/* IGU cleanup command */ +struct igu_cleanup { + __le32 sb_id_and_flags; +#define IGU_CLEANUP_RESERVED0_MASK 0x7FFFFFF +#define IGU_CLEANUP_RESERVED0_SHIFT 0 +#define IGU_CLEANUP_CLEANUP_SET_MASK 0x1 +#define IGU_CLEANUP_CLEANUP_SET_SHIFT 27 +#define IGU_CLEANUP_CLEANUP_TYPE_MASK 0x7 +#define IGU_CLEANUP_CLEANUP_TYPE_SHIFT 28 +#define IGU_CLEANUP_COMMAND_TYPE_MASK 0x1 +#define IGU_CLEANUP_COMMAND_TYPE_SHIFT 31 + __le32 reserved1; +}; + +/* IGU firmware driver command */ +union igu_command { + struct igu_prod_cons_update prod_cons_update; + struct igu_cleanup cleanup; }; +/* IGU firmware driver command */ +struct igu_command_reg_ctrl { + __le16 opaque_fid; + __le16 igu_command_reg_ctrl_fields; +#define IGU_COMMAND_REG_CTRL_PXP_BAR_ADDR_MASK 0xFFF +#define IGU_COMMAND_REG_CTRL_PXP_BAR_ADDR_SHIFT 0 +#define IGU_COMMAND_REG_CTRL_RESERVED_MASK 0x7 +#define IGU_COMMAND_REG_CTRL_RESERVED_SHIFT 12 +#define IGU_COMMAND_REG_CTRL_COMMAND_TYPE_MASK 0x1 +#define IGU_COMMAND_REG_CTRL_COMMAND_TYPE_SHIFT 15 +}; + +/* IGU mapping line structure */ +struct igu_mapping_line { + __le32 igu_mapping_line_fields; +#define IGU_MAPPING_LINE_VALID_MASK 0x1 +#define IGU_MAPPING_LINE_VALID_SHIFT 0 +#define IGU_MAPPING_LINE_VECTOR_NUMBER_MASK 0xFF +#define IGU_MAPPING_LINE_VECTOR_NUMBER_SHIFT 1 +#define IGU_MAPPING_LINE_FUNCTION_NUMBER_MASK 0xFF +#define IGU_MAPPING_LINE_FUNCTION_NUMBER_SHIFT 9 +#define IGU_MAPPING_LINE_PF_VALID_MASK 0x1 +#define IGU_MAPPING_LINE_PF_VALID_SHIFT 17 +#define IGU_MAPPING_LINE_IPS_GROUP_MASK 0x3F +#define IGU_MAPPING_LINE_IPS_GROUP_SHIFT 18 +#define IGU_MAPPING_LINE_RESERVED_MASK 0xFF +#define IGU_MAPPING_LINE_RESERVED_SHIFT 24 +}; + +/* IGU MSIX line structure */ +struct igu_msix_vector { + struct regpair address; + __le32 data; + __le32 msix_vector_fields; +#define IGU_MSIX_VECTOR_MASK_BIT_MASK 0x1 +#define IGU_MSIX_VECTOR_MASK_BIT_SHIFT 0 +#define IGU_MSIX_VECTOR_RESERVED0_MASK 0x7FFF +#define IGU_MSIX_VECTOR_RESERVED0_SHIFT 1 +#define IGU_MSIX_VECTOR_STEERING_TAG_MASK 0xFF +#define IGU_MSIX_VECTOR_STEERING_TAG_SHIFT 16 +#define IGU_MSIX_VECTOR_RESERVED1_MASK 0xFF +#define IGU_MSIX_VECTOR_RESERVED1_SHIFT 24 +}; + +struct mstorm_core_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define MSTORM_CORE_CONN_AG_CTX_BIT0_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_BIT0_SHIFT 0 +#define MSTORM_CORE_CONN_AG_CTX_BIT1_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_BIT1_SHIFT 1 +#define MSTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 +#define MSTORM_CORE_CONN_AG_CTX_CF0_SHIFT 2 +#define MSTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 +#define MSTORM_CORE_CONN_AG_CTX_CF1_SHIFT 4 +#define MSTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 +#define MSTORM_CORE_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define MSTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 0 +#define MSTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 1 +#define MSTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 2 +#define MSTORM_CORE_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define MSTORM_CORE_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define MSTORM_CORE_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define MSTORM_CORE_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define MSTORM_CORE_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define MSTORM_CORE_CONN_AG_CTX_RULE4EN_SHIFT 7 + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; +}; + +/* per encapsulation type enabling flags */ +struct prs_reg_encapsulation_type_en { + u8 flags; +#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GRE_ENABLE_MASK 0x1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GRE_ENABLE_SHIFT 0 +#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GRE_ENABLE_MASK 0x1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GRE_ENABLE_SHIFT 1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_VXLAN_ENABLE_MASK 0x1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_VXLAN_ENABLE_SHIFT 2 +#define PRS_REG_ENCAPSULATION_TYPE_EN_T_TAG_ENABLE_MASK 0x1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_T_TAG_ENABLE_SHIFT 3 +#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GENEVE_ENABLE_MASK 0x1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GENEVE_ENABLE_SHIFT 4 +#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GENEVE_ENABLE_MASK 0x1 +#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GENEVE_ENABLE_SHIFT 5 +#define PRS_REG_ENCAPSULATION_TYPE_EN_RESERVED_MASK 0x3 +#define PRS_REG_ENCAPSULATION_TYPE_EN_RESERVED_SHIFT 6 +}; + +enum pxp_tph_st_hint { + TPH_ST_HINT_BIDIR, + TPH_ST_HINT_REQUESTER, + TPH_ST_HINT_TARGET, + TPH_ST_HINT_TARGET_PRIO, + MAX_PXP_TPH_ST_HINT +}; + +/* QM hardware structure of enable bypass credit mask */ +struct qm_rf_bypass_mask { + u8 flags; +#define QM_RF_BYPASS_MASK_LINEVOQ_MASK 0x1 +#define QM_RF_BYPASS_MASK_LINEVOQ_SHIFT 0 +#define QM_RF_BYPASS_MASK_RESERVED0_MASK 0x1 +#define QM_RF_BYPASS_MASK_RESERVED0_SHIFT 1 +#define QM_RF_BYPASS_MASK_PFWFQ_MASK 0x1 +#define QM_RF_BYPASS_MASK_PFWFQ_SHIFT 2 +#define QM_RF_BYPASS_MASK_VPWFQ_MASK 0x1 +#define QM_RF_BYPASS_MASK_VPWFQ_SHIFT 3 +#define QM_RF_BYPASS_MASK_PFRL_MASK 0x1 +#define QM_RF_BYPASS_MASK_PFRL_SHIFT 4 +#define QM_RF_BYPASS_MASK_VPQCNRL_MASK 0x1 +#define QM_RF_BYPASS_MASK_VPQCNRL_SHIFT 5 +#define QM_RF_BYPASS_MASK_FWPAUSE_MASK 0x1 +#define QM_RF_BYPASS_MASK_FWPAUSE_SHIFT 6 +#define QM_RF_BYPASS_MASK_RESERVED1_MASK 0x1 +#define QM_RF_BYPASS_MASK_RESERVED1_SHIFT 7 +}; + +/* QM hardware structure of opportunistic credit mask */ +struct qm_rf_opportunistic_mask { + __le16 flags; +#define QM_RF_OPPORTUNISTIC_MASK_LINEVOQ_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_LINEVOQ_SHIFT 0 +#define QM_RF_OPPORTUNISTIC_MASK_BYTEVOQ_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_BYTEVOQ_SHIFT 1 +#define QM_RF_OPPORTUNISTIC_MASK_PFWFQ_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_PFWFQ_SHIFT 2 +#define QM_RF_OPPORTUNISTIC_MASK_VPWFQ_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_VPWFQ_SHIFT 3 +#define QM_RF_OPPORTUNISTIC_MASK_PFRL_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_PFRL_SHIFT 4 +#define QM_RF_OPPORTUNISTIC_MASK_VPQCNRL_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_VPQCNRL_SHIFT 5 +#define QM_RF_OPPORTUNISTIC_MASK_FWPAUSE_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_FWPAUSE_SHIFT 6 +#define QM_RF_OPPORTUNISTIC_MASK_RESERVED0_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_RESERVED0_SHIFT 7 +#define QM_RF_OPPORTUNISTIC_MASK_QUEUEEMPTY_MASK 0x1 +#define QM_RF_OPPORTUNISTIC_MASK_QUEUEEMPTY_SHIFT 8 +#define QM_RF_OPPORTUNISTIC_MASK_RESERVED1_MASK 0x7F +#define QM_RF_OPPORTUNISTIC_MASK_RESERVED1_SHIFT 9 +}; + +/* QM hardware structure of QM map memory */ +struct qm_rf_pq_map { + __le32 reg; +#define QM_RF_PQ_MAP_PQ_VALID_MASK 0x1 +#define QM_RF_PQ_MAP_PQ_VALID_SHIFT 0 +#define QM_RF_PQ_MAP_RL_ID_MASK 0xFF +#define QM_RF_PQ_MAP_RL_ID_SHIFT 1 +#define QM_RF_PQ_MAP_VP_PQ_ID_MASK 0x1FF +#define QM_RF_PQ_MAP_VP_PQ_ID_SHIFT 9 +#define QM_RF_PQ_MAP_VOQ_MASK 0x1F +#define QM_RF_PQ_MAP_VOQ_SHIFT 18 +#define QM_RF_PQ_MAP_WRR_WEIGHT_GROUP_MASK 0x3 +#define QM_RF_PQ_MAP_WRR_WEIGHT_GROUP_SHIFT 23 +#define QM_RF_PQ_MAP_RL_VALID_MASK 0x1 +#define QM_RF_PQ_MAP_RL_VALID_SHIFT 25 +#define QM_RF_PQ_MAP_RESERVED_MASK 0x3F +#define QM_RF_PQ_MAP_RESERVED_SHIFT 26 +}; + +/* Completion params for aggregated interrupt completion */ +struct sdm_agg_int_comp_params { + __le16 params; +#define SDM_AGG_INT_COMP_PARAMS_AGG_INT_INDEX_MASK 0x3F +#define SDM_AGG_INT_COMP_PARAMS_AGG_INT_INDEX_SHIFT 0 +#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_ENABLE_MASK 0x1 +#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_ENABLE_SHIFT 6 +#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_BIT_MASK 0x1FF +#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_BIT_SHIFT 7 +}; + +/* SDM operation gen command (generate aggregative interrupt) */ +struct sdm_op_gen { + __le32 command; +#define SDM_OP_GEN_COMP_PARAM_MASK 0xFFFF +#define SDM_OP_GEN_COMP_PARAM_SHIFT 0 +#define SDM_OP_GEN_COMP_TYPE_MASK 0xF +#define SDM_OP_GEN_COMP_TYPE_SHIFT 16 +#define SDM_OP_GEN_RESERVED_MASK 0xFFF +#define SDM_OP_GEN_RESERVED_SHIFT 20 +}; + +struct ystorm_core_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define YSTORM_CORE_CONN_AG_CTX_BIT0_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_BIT0_SHIFT 0 +#define YSTORM_CORE_CONN_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_BIT1_SHIFT 1 +#define YSTORM_CORE_CONN_AG_CTX_CF0_MASK 0x3 +#define YSTORM_CORE_CONN_AG_CTX_CF0_SHIFT 2 +#define YSTORM_CORE_CONN_AG_CTX_CF1_MASK 0x3 +#define YSTORM_CORE_CONN_AG_CTX_CF1_SHIFT 4 +#define YSTORM_CORE_CONN_AG_CTX_CF2_MASK 0x3 +#define YSTORM_CORE_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define YSTORM_CORE_CONN_AG_CTX_CF0EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_CF0EN_SHIFT 0 +#define YSTORM_CORE_CONN_AG_CTX_CF1EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_CF1EN_SHIFT 1 +#define YSTORM_CORE_CONN_AG_CTX_CF2EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_CF2EN_SHIFT 2 +#define YSTORM_CORE_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define YSTORM_CORE_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define YSTORM_CORE_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define YSTORM_CORE_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define YSTORM_CORE_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_CORE_CONN_AG_CTX_RULE4EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le32 reg0; + __le32 reg1; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg2; + __le32 reg3; +}; + +/****************************************/ +/* Debug Tools HSI constants and macros */ +/****************************************/ + enum block_addr { - GRCBASE_GRC = 0x50000, - GRCBASE_MISCS = 0x9000, - GRCBASE_MISC = 0x8000, - GRCBASE_DBU = 0xa000, - GRCBASE_PGLUE_B = 0x2a8000, - GRCBASE_CNIG = 0x218000, - GRCBASE_CPMU = 0x30000, - GRCBASE_NCSI = 0x40000, - GRCBASE_OPTE = 0x53000, - GRCBASE_BMB = 0x540000, - GRCBASE_PCIE = 0x54000, - GRCBASE_MCP = 0xe00000, - GRCBASE_MCP2 = 0x52000, - GRCBASE_PSWHST = 0x2a0000, - GRCBASE_PSWHST2 = 0x29e000, - GRCBASE_PSWRD = 0x29c000, - GRCBASE_PSWRD2 = 0x29d000, - GRCBASE_PSWWR = 0x29a000, - GRCBASE_PSWWR2 = 0x29b000, - GRCBASE_PSWRQ = 0x280000, - GRCBASE_PSWRQ2 = 0x240000, - GRCBASE_PGLCS = 0x0, - GRCBASE_PTU = 0x560000, - GRCBASE_DMAE = 0xc000, - GRCBASE_TCM = 0x1180000, - GRCBASE_MCM = 0x1200000, - GRCBASE_UCM = 0x1280000, - GRCBASE_XCM = 0x1000000, - GRCBASE_YCM = 0x1080000, - GRCBASE_PCM = 0x1100000, - GRCBASE_QM = 0x2f0000, - GRCBASE_TM = 0x2c0000, - GRCBASE_DORQ = 0x100000, - GRCBASE_BRB = 0x340000, - GRCBASE_SRC = 0x238000, - GRCBASE_PRS = 0x1f0000, - GRCBASE_TSDM = 0xfb0000, - GRCBASE_MSDM = 0xfc0000, - GRCBASE_USDM = 0xfd0000, - GRCBASE_XSDM = 0xf80000, - GRCBASE_YSDM = 0xf90000, - GRCBASE_PSDM = 0xfa0000, - GRCBASE_TSEM = 0x1700000, - GRCBASE_MSEM = 0x1800000, - GRCBASE_USEM = 0x1900000, - GRCBASE_XSEM = 0x1400000, - GRCBASE_YSEM = 0x1500000, - GRCBASE_PSEM = 0x1600000, - GRCBASE_RSS = 0x238800, - GRCBASE_TMLD = 0x4d0000, - GRCBASE_MULD = 0x4e0000, - GRCBASE_YULD = 0x4c8000, - GRCBASE_XYLD = 0x4c0000, - GRCBASE_PRM = 0x230000, - GRCBASE_PBF_PB1 = 0xda0000, - GRCBASE_PBF_PB2 = 0xda4000, - GRCBASE_RPB = 0x23c000, - GRCBASE_BTB = 0xdb0000, - GRCBASE_PBF = 0xd80000, - GRCBASE_RDIF = 0x300000, - GRCBASE_TDIF = 0x310000, - GRCBASE_CDU = 0x580000, - GRCBASE_CCFC = 0x2e0000, - GRCBASE_TCFC = 0x2d0000, - GRCBASE_IGU = 0x180000, - GRCBASE_CAU = 0x1c0000, - GRCBASE_UMAC = 0x51000, - GRCBASE_XMAC = 0x210000, - GRCBASE_DBG = 0x10000, - GRCBASE_NIG = 0x500000, - GRCBASE_WOL = 0x600000, - GRCBASE_BMBN = 0x610000, - GRCBASE_IPC = 0x20000, - GRCBASE_NWM = 0x800000, - GRCBASE_NWS = 0x700000, - GRCBASE_MS = 0x6a0000, - GRCBASE_PHY_PCIE = 0x620000, - GRCBASE_MISC_AEU = 0x8000, - GRCBASE_BAR0_MAP = 0x1c00000, + GRCBASE_GRC = 0x50000, + GRCBASE_MISCS = 0x9000, + GRCBASE_MISC = 0x8000, + GRCBASE_DBU = 0xa000, + GRCBASE_PGLUE_B = 0x2a8000, + GRCBASE_CNIG = 0x218000, + GRCBASE_CPMU = 0x30000, + GRCBASE_NCSI = 0x40000, + GRCBASE_OPTE = 0x53000, + GRCBASE_BMB = 0x540000, + GRCBASE_PCIE = 0x54000, + GRCBASE_MCP = 0xe00000, + GRCBASE_MCP2 = 0x52000, + GRCBASE_PSWHST = 0x2a0000, + GRCBASE_PSWHST2 = 0x29e000, + GRCBASE_PSWRD = 0x29c000, + GRCBASE_PSWRD2 = 0x29d000, + GRCBASE_PSWWR = 0x29a000, + GRCBASE_PSWWR2 = 0x29b000, + GRCBASE_PSWRQ = 0x280000, + GRCBASE_PSWRQ2 = 0x240000, + GRCBASE_PGLCS = 0x0, + GRCBASE_DMAE = 0xc000, + GRCBASE_PTU = 0x560000, + GRCBASE_TCM = 0x1180000, + GRCBASE_MCM = 0x1200000, + GRCBASE_UCM = 0x1280000, + GRCBASE_XCM = 0x1000000, + GRCBASE_YCM = 0x1080000, + GRCBASE_PCM = 0x1100000, + GRCBASE_QM = 0x2f0000, + GRCBASE_TM = 0x2c0000, + GRCBASE_DORQ = 0x100000, + GRCBASE_BRB = 0x340000, + GRCBASE_SRC = 0x238000, + GRCBASE_PRS = 0x1f0000, + GRCBASE_TSDM = 0xfb0000, + GRCBASE_MSDM = 0xfc0000, + GRCBASE_USDM = 0xfd0000, + GRCBASE_XSDM = 0xf80000, + GRCBASE_YSDM = 0xf90000, + GRCBASE_PSDM = 0xfa0000, + GRCBASE_TSEM = 0x1700000, + GRCBASE_MSEM = 0x1800000, + GRCBASE_USEM = 0x1900000, + GRCBASE_XSEM = 0x1400000, + GRCBASE_YSEM = 0x1500000, + GRCBASE_PSEM = 0x1600000, + GRCBASE_RSS = 0x238800, + GRCBASE_TMLD = 0x4d0000, + GRCBASE_MULD = 0x4e0000, + GRCBASE_YULD = 0x4c8000, + GRCBASE_XYLD = 0x4c0000, + GRCBASE_PRM = 0x230000, + GRCBASE_PBF_PB1 = 0xda0000, + GRCBASE_PBF_PB2 = 0xda4000, + GRCBASE_RPB = 0x23c000, + GRCBASE_BTB = 0xdb0000, + GRCBASE_PBF = 0xd80000, + GRCBASE_RDIF = 0x300000, + GRCBASE_TDIF = 0x310000, + GRCBASE_CDU = 0x580000, + GRCBASE_CCFC = 0x2e0000, + GRCBASE_TCFC = 0x2d0000, + GRCBASE_IGU = 0x180000, + GRCBASE_CAU = 0x1c0000, + GRCBASE_UMAC = 0x51000, + GRCBASE_XMAC = 0x210000, + GRCBASE_DBG = 0x10000, + GRCBASE_NIG = 0x500000, + GRCBASE_WOL = 0x600000, + GRCBASE_BMBN = 0x610000, + GRCBASE_IPC = 0x20000, + GRCBASE_NWM = 0x800000, + GRCBASE_NWS = 0x700000, + GRCBASE_MS = 0x6a0000, + GRCBASE_PHY_PCIE = 0x620000, + GRCBASE_LED = 0x6b8000, + GRCBASE_MISC_AEU = 0x8000, + GRCBASE_BAR0_MAP = 0x1c00000, MAX_BLOCK_ADDR }; @@ -778,8 +1364,8 @@ enum block_id { BLOCK_PSWRQ, BLOCK_PSWRQ2, BLOCK_PGLCS, - BLOCK_PTU, BLOCK_DMAE, + BLOCK_PTU, BLOCK_TCM, BLOCK_MCM, BLOCK_UCM, @@ -833,141 +1419,216 @@ enum block_id { BLOCK_NWS, BLOCK_MS, BLOCK_PHY_PCIE, + BLOCK_LED, BLOCK_MISC_AEU, BLOCK_BAR0_MAP, MAX_BLOCK_ID }; -enum command_type_bit { - IGU_COMMAND_TYPE_NOP = 0, - IGU_COMMAND_TYPE_SET = 1, - MAX_COMMAND_TYPE_BIT +/* binary debug buffer types */ +enum bin_dbg_buffer_type { + BIN_BUF_DBG_MODE_TREE, + BIN_BUF_DBG_DUMP_REG, + BIN_BUF_DBG_DUMP_MEM, + BIN_BUF_DBG_IDLE_CHK_REGS, + BIN_BUF_DBG_IDLE_CHK_IMMS, + BIN_BUF_DBG_IDLE_CHK_RULES, + BIN_BUF_DBG_IDLE_CHK_PARSING_DATA, + BIN_BUF_DBG_ATTN_BLOCKS, + BIN_BUF_DBG_ATTN_REGS, + BIN_BUF_DBG_ATTN_INDEXES, + BIN_BUF_DBG_ATTN_NAME_OFFSETS, + BIN_BUF_DBG_PARSING_STRINGS, + MAX_BIN_DBG_BUFFER_TYPE }; -struct dmae_cmd { - __le32 opcode; -#define DMAE_CMD_SRC_MASK 0x1 -#define DMAE_CMD_SRC_SHIFT 0 -#define DMAE_CMD_DST_MASK 0x3 -#define DMAE_CMD_DST_SHIFT 1 -#define DMAE_CMD_C_DST_MASK 0x1 -#define DMAE_CMD_C_DST_SHIFT 3 -#define DMAE_CMD_CRC_RESET_MASK 0x1 -#define DMAE_CMD_CRC_RESET_SHIFT 4 -#define DMAE_CMD_SRC_ADDR_RESET_MASK 0x1 -#define DMAE_CMD_SRC_ADDR_RESET_SHIFT 5 -#define DMAE_CMD_DST_ADDR_RESET_MASK 0x1 -#define DMAE_CMD_DST_ADDR_RESET_SHIFT 6 -#define DMAE_CMD_COMP_FUNC_MASK 0x1 -#define DMAE_CMD_COMP_FUNC_SHIFT 7 -#define DMAE_CMD_COMP_WORD_EN_MASK 0x1 -#define DMAE_CMD_COMP_WORD_EN_SHIFT 8 -#define DMAE_CMD_COMP_CRC_EN_MASK 0x1 -#define DMAE_CMD_COMP_CRC_EN_SHIFT 9 -#define DMAE_CMD_COMP_CRC_OFFSET_MASK 0x7 -#define DMAE_CMD_COMP_CRC_OFFSET_SHIFT 10 -#define DMAE_CMD_RESERVED1_MASK 0x1 -#define DMAE_CMD_RESERVED1_SHIFT 13 -#define DMAE_CMD_ENDIANITY_MODE_MASK 0x3 -#define DMAE_CMD_ENDIANITY_MODE_SHIFT 14 -#define DMAE_CMD_ERR_HANDLING_MASK 0x3 -#define DMAE_CMD_ERR_HANDLING_SHIFT 16 -#define DMAE_CMD_PORT_ID_MASK 0x3 -#define DMAE_CMD_PORT_ID_SHIFT 18 -#define DMAE_CMD_SRC_PF_ID_MASK 0xF -#define DMAE_CMD_SRC_PF_ID_SHIFT 20 -#define DMAE_CMD_DST_PF_ID_MASK 0xF -#define DMAE_CMD_DST_PF_ID_SHIFT 24 -#define DMAE_CMD_SRC_VF_ID_VALID_MASK 0x1 -#define DMAE_CMD_SRC_VF_ID_VALID_SHIFT 28 -#define DMAE_CMD_DST_VF_ID_VALID_MASK 0x1 -#define DMAE_CMD_DST_VF_ID_VALID_SHIFT 29 -#define DMAE_CMD_RESERVED2_MASK 0x3 -#define DMAE_CMD_RESERVED2_SHIFT 30 - __le32 src_addr_lo; - __le32 src_addr_hi; - __le32 dst_addr_lo; - __le32 dst_addr_hi; - __le16 length /* Length in DW */; - __le16 opcode_b; -#define DMAE_CMD_SRC_VF_ID_MASK 0xFF /* Source VF id */ -#define DMAE_CMD_SRC_VF_ID_SHIFT 0 -#define DMAE_CMD_DST_VF_ID_MASK 0xFF /* Destination VF id */ -#define DMAE_CMD_DST_VF_ID_SHIFT 8 - __le32 comp_addr_lo /* PCIe completion address low or grc address */; - __le32 comp_addr_hi; - __le32 comp_val /* Value to write to copmletion address */; - __le32 crc32 /* crc16 result */; - __le32 crc_32_c /* crc32_c result */; - __le16 crc16 /* crc16 result */; - __le16 crc16_c /* crc16_c result */; - __le16 crc10 /* crc_t10 result */; - __le16 reserved; - __le16 xsum16 /* checksum16 result */; - __le16 xsum8 /* checksum8 result */; +/* Chip IDs */ +enum chip_ids { + CHIP_RESERVED, + CHIP_BB_B0, + CHIP_RESERVED2, + MAX_CHIP_IDS }; -struct igu_cleanup { - __le32 sb_id_and_flags; -#define IGU_CLEANUP_RESERVED0_MASK 0x7FFFFFF -#define IGU_CLEANUP_RESERVED0_SHIFT 0 -#define IGU_CLEANUP_CLEANUP_SET_MASK 0x1 /* cleanup clear - 0, set - 1 */ -#define IGU_CLEANUP_CLEANUP_SET_SHIFT 27 -#define IGU_CLEANUP_CLEANUP_TYPE_MASK 0x7 -#define IGU_CLEANUP_CLEANUP_TYPE_SHIFT 28 -#define IGU_CLEANUP_COMMAND_TYPE_MASK 0x1 -#define IGU_CLEANUP_COMMAND_TYPE_SHIFT 31 - __le32 reserved1; +/* Attention bit mapping */ +struct dbg_attn_bit_mapping { + __le16 data; +#define DBG_ATTN_BIT_MAPPING_VAL_MASK 0x7FFF +#define DBG_ATTN_BIT_MAPPING_VAL_SHIFT 0 +#define DBG_ATTN_BIT_MAPPING_IS_UNUSED_BIT_CNT_MASK 0x1 +#define DBG_ATTN_BIT_MAPPING_IS_UNUSED_BIT_CNT_SHIFT 15 }; -union igu_command { - struct igu_prod_cons_update prod_cons_update; - struct igu_cleanup cleanup; +/* Attention block per-type data */ +struct dbg_attn_block_type_data { + __le16 names_offset; + __le16 reserved1; + u8 num_regs; + u8 reserved2; + __le16 regs_offset; }; -struct igu_command_reg_ctrl { - __le16 opaque_fid; - __le16 igu_command_reg_ctrl_fields; -#define IGU_COMMAND_REG_CTRL_PXP_BAR_ADDR_MASK 0xFFF -#define IGU_COMMAND_REG_CTRL_PXP_BAR_ADDR_SHIFT 0 -#define IGU_COMMAND_REG_CTRL_RESERVED_MASK 0x7 -#define IGU_COMMAND_REG_CTRL_RESERVED_SHIFT 12 -#define IGU_COMMAND_REG_CTRL_COMMAND_TYPE_MASK 0x1 -#define IGU_COMMAND_REG_CTRL_COMMAND_TYPE_SHIFT 15 +/* Block attentions */ +struct dbg_attn_block { + struct dbg_attn_block_type_data per_type_data[2]; }; -struct igu_mapping_line { - __le32 igu_mapping_line_fields; -#define IGU_MAPPING_LINE_VALID_MASK 0x1 -#define IGU_MAPPING_LINE_VALID_SHIFT 0 -#define IGU_MAPPING_LINE_VECTOR_NUMBER_MASK 0xFF -#define IGU_MAPPING_LINE_VECTOR_NUMBER_SHIFT 1 -#define IGU_MAPPING_LINE_FUNCTION_NUMBER_MASK 0xFF -#define IGU_MAPPING_LINE_FUNCTION_NUMBER_SHIFT 9 -#define IGU_MAPPING_LINE_PF_VALID_MASK 0x1 /* PF-1, VF-0 */ -#define IGU_MAPPING_LINE_PF_VALID_SHIFT 17 -#define IGU_MAPPING_LINE_IPS_GROUP_MASK 0x3F -#define IGU_MAPPING_LINE_IPS_GROUP_SHIFT 18 -#define IGU_MAPPING_LINE_RESERVED_MASK 0xFF -#define IGU_MAPPING_LINE_RESERVED_SHIFT 24 +/* Attention register result */ +struct dbg_attn_reg_result { + __le32 data; +#define DBG_ATTN_REG_RESULT_STS_ADDRESS_MASK 0xFFFFFF +#define DBG_ATTN_REG_RESULT_STS_ADDRESS_SHIFT 0 +#define DBG_ATTN_REG_RESULT_NUM_ATTN_IDX_MASK 0xFF +#define DBG_ATTN_REG_RESULT_NUM_ATTN_IDX_SHIFT 24 + __le16 attn_idx_offset; + __le16 reserved; + __le32 sts_val; + __le32 mask_val; +}; + +/* Attention block result */ +struct dbg_attn_block_result { + u8 block_id; + u8 data; +#define DBG_ATTN_BLOCK_RESULT_ATTN_TYPE_MASK 0x3 +#define DBG_ATTN_BLOCK_RESULT_ATTN_TYPE_SHIFT 0 +#define DBG_ATTN_BLOCK_RESULT_NUM_REGS_MASK 0x3F +#define DBG_ATTN_BLOCK_RESULT_NUM_REGS_SHIFT 2 + __le16 names_offset; + struct dbg_attn_reg_result reg_results[15]; +}; + +/* mode header */ +struct dbg_mode_hdr { + __le16 data; +#define DBG_MODE_HDR_EVAL_MODE_MASK 0x1 +#define DBG_MODE_HDR_EVAL_MODE_SHIFT 0 +#define DBG_MODE_HDR_MODES_BUF_OFFSET_MASK 0x7FFF +#define DBG_MODE_HDR_MODES_BUF_OFFSET_SHIFT 1 +}; + +/* Attention register */ +struct dbg_attn_reg { + struct dbg_mode_hdr mode; + __le16 attn_idx_offset; + __le32 data; +#define DBG_ATTN_REG_STS_ADDRESS_MASK 0xFFFFFF +#define DBG_ATTN_REG_STS_ADDRESS_SHIFT 0 +#define DBG_ATTN_REG_NUM_ATTN_IDX_MASK 0xFF +#define DBG_ATTN_REG_NUM_ATTN_IDX_SHIFT 24 + __le32 sts_clr_address; + __le32 mask_address; +}; + +/* attention types */ +enum dbg_attn_type { + ATTN_TYPE_INTERRUPT, + ATTN_TYPE_PARITY, + MAX_DBG_ATTN_TYPE +}; + +/* Debug status codes */ +enum dbg_status { + DBG_STATUS_OK, + DBG_STATUS_APP_VERSION_NOT_SET, + DBG_STATUS_UNSUPPORTED_APP_VERSION, + DBG_STATUS_DBG_BLOCK_NOT_RESET, + DBG_STATUS_INVALID_ARGS, + DBG_STATUS_OUTPUT_ALREADY_SET, + DBG_STATUS_INVALID_PCI_BUF_SIZE, + DBG_STATUS_PCI_BUF_ALLOC_FAILED, + DBG_STATUS_PCI_BUF_NOT_ALLOCATED, + DBG_STATUS_TOO_MANY_INPUTS, + DBG_STATUS_INPUT_OVERLAP, + DBG_STATUS_HW_ONLY_RECORDING, + DBG_STATUS_STORM_ALREADY_ENABLED, + DBG_STATUS_STORM_NOT_ENABLED, + DBG_STATUS_BLOCK_ALREADY_ENABLED, + DBG_STATUS_BLOCK_NOT_ENABLED, + DBG_STATUS_NO_INPUT_ENABLED, + DBG_STATUS_NO_FILTER_TRIGGER_64B, + DBG_STATUS_FILTER_ALREADY_ENABLED, + DBG_STATUS_TRIGGER_ALREADY_ENABLED, + DBG_STATUS_TRIGGER_NOT_ENABLED, + DBG_STATUS_CANT_ADD_CONSTRAINT, + DBG_STATUS_TOO_MANY_TRIGGER_STATES, + DBG_STATUS_TOO_MANY_CONSTRAINTS, + DBG_STATUS_RECORDING_NOT_STARTED, + DBG_STATUS_DATA_DIDNT_TRIGGER, + DBG_STATUS_NO_DATA_RECORDED, + DBG_STATUS_DUMP_BUF_TOO_SMALL, + DBG_STATUS_DUMP_NOT_CHUNK_ALIGNED, + DBG_STATUS_UNKNOWN_CHIP, + DBG_STATUS_VIRT_MEM_ALLOC_FAILED, + DBG_STATUS_BLOCK_IN_RESET, + DBG_STATUS_INVALID_TRACE_SIGNATURE, + DBG_STATUS_INVALID_NVRAM_BUNDLE, + DBG_STATUS_NVRAM_GET_IMAGE_FAILED, + DBG_STATUS_NON_ALIGNED_NVRAM_IMAGE, + DBG_STATUS_NVRAM_READ_FAILED, + DBG_STATUS_IDLE_CHK_PARSE_FAILED, + DBG_STATUS_MCP_TRACE_BAD_DATA, + DBG_STATUS_MCP_TRACE_NO_META, + DBG_STATUS_MCP_COULD_NOT_HALT, + DBG_STATUS_MCP_COULD_NOT_RESUME, + DBG_STATUS_DMAE_FAILED, + DBG_STATUS_SEMI_FIFO_NOT_EMPTY, + DBG_STATUS_IGU_FIFO_BAD_DATA, + DBG_STATUS_MCP_COULD_NOT_MASK_PRTY, + DBG_STATUS_FW_ASSERTS_PARSE_FAILED, + DBG_STATUS_REG_FIFO_BAD_DATA, + DBG_STATUS_PROTECTION_OVERRIDE_BAD_DATA, + DBG_STATUS_DBG_ARRAY_NOT_SET, + MAX_DBG_STATUS }; -struct igu_msix_vector { - struct regpair address; - __le32 data; - __le32 msix_vector_fields; -#define IGU_MSIX_VECTOR_MASK_BIT_MASK 0x1 -#define IGU_MSIX_VECTOR_MASK_BIT_SHIFT 0 -#define IGU_MSIX_VECTOR_RESERVED0_MASK 0x7FFF -#define IGU_MSIX_VECTOR_RESERVED0_SHIFT 1 -#define IGU_MSIX_VECTOR_STEERING_TAG_MASK 0xFF -#define IGU_MSIX_VECTOR_STEERING_TAG_SHIFT 16 -#define IGU_MSIX_VECTOR_RESERVED1_MASK 0xFF -#define IGU_MSIX_VECTOR_RESERVED1_SHIFT 24 +/********************************/ +/* HSI Init Functions constants */ +/********************************/ + +/* Number of VLAN priorities */ +#define NUM_OF_VLAN_PRIORITIES 8 + +/* QM per-port init parameters */ +struct init_qm_port_params { + u8 active; + u8 active_phys_tcs; + __le16 num_pbf_cmd_lines; + __le16 num_btb_blocks; + __le16 reserved; +}; + +/* QM per-PQ init parameters */ +struct init_qm_pq_params { + u8 vport_id; + u8 tc_id; + u8 wrr_group; + u8 rl_valid; }; +/* QM per-vport init parameters */ +struct init_qm_vport_params { + __le32 vport_rl; + __le16 vport_wfq; + __le16 first_tx_pq_id[NUM_OF_TCS]; +}; + +/**************************************/ +/* Init Tool HSI constants and macros */ +/**************************************/ + +/* Width of GRC address in bits (addresses are specified in dwords) */ +#define GRC_ADDR_BITS 23 +#define MAX_GRC_ADDR ((1 << GRC_ADDR_BITS) - 1) + +/* indicates an init that should be applied to any phase ID */ +#define ANY_PHASE_ID 0xffff + +/* Max size in dwords of a zipped array */ +#define MAX_ZIPPED_SIZE 8192 + enum init_modes { - MODE_BB_A0, + MODE_RESERVED, MODE_BB_B0, MODE_RESERVED2, MODE_ASIC, @@ -982,7 +1643,8 @@ enum init_modes { MODE_PORTS_PER_ENG_2, MODE_PORTS_PER_ENG_4, MODE_100G, - MODE_EAGLE_ENG1_WORKAROUND, + MODE_40G, + MODE_RESERVED7, MAX_INIT_MODES }; @@ -990,489 +1652,307 @@ enum init_phases { PHASE_ENGINE, PHASE_PORT, PHASE_PF, - PHASE_RESERVED, + PHASE_VF, PHASE_QM_PF, MAX_INIT_PHASES }; -/* per encapsulation type enabling flags */ -struct prs_reg_encapsulation_type_en { - u8 flags; -#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GRE_ENABLE_MASK 0x1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GRE_ENABLE_SHIFT 0 -#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GRE_ENABLE_MASK 0x1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GRE_ENABLE_SHIFT 1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_VXLAN_ENABLE_MASK 0x1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_VXLAN_ENABLE_SHIFT 2 -#define PRS_REG_ENCAPSULATION_TYPE_EN_T_TAG_ENABLE_MASK 0x1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_T_TAG_ENABLE_SHIFT 3 -#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GENEVE_ENABLE_MASK 0x1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GENEVE_ENABLE_SHIFT 4 -#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GENEVE_ENABLE_MASK 0x1 -#define PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GENEVE_ENABLE_SHIFT 5 -#define PRS_REG_ENCAPSULATION_TYPE_EN_RESERVED_MASK 0x3 -#define PRS_REG_ENCAPSULATION_TYPE_EN_RESERVED_SHIFT 6 -}; - -enum pxp_tph_st_hint { - TPH_ST_HINT_BIDIR /* Read/Write access by Host and Device */, - TPH_ST_HINT_REQUESTER /* Read/Write access by Device */, - TPH_ST_HINT_TARGET, - TPH_ST_HINT_TARGET_PRIO, - MAX_PXP_TPH_ST_HINT -}; - -/* QM hardware structure of enable bypass credit mask */ -struct qm_rf_bypass_mask { - u8 flags; -#define QM_RF_BYPASS_MASK_LINEVOQ_MASK 0x1 -#define QM_RF_BYPASS_MASK_LINEVOQ_SHIFT 0 -#define QM_RF_BYPASS_MASK_RESERVED0_MASK 0x1 -#define QM_RF_BYPASS_MASK_RESERVED0_SHIFT 1 -#define QM_RF_BYPASS_MASK_PFWFQ_MASK 0x1 -#define QM_RF_BYPASS_MASK_PFWFQ_SHIFT 2 -#define QM_RF_BYPASS_MASK_VPWFQ_MASK 0x1 -#define QM_RF_BYPASS_MASK_VPWFQ_SHIFT 3 -#define QM_RF_BYPASS_MASK_PFRL_MASK 0x1 -#define QM_RF_BYPASS_MASK_PFRL_SHIFT 4 -#define QM_RF_BYPASS_MASK_VPQCNRL_MASK 0x1 -#define QM_RF_BYPASS_MASK_VPQCNRL_SHIFT 5 -#define QM_RF_BYPASS_MASK_FWPAUSE_MASK 0x1 -#define QM_RF_BYPASS_MASK_FWPAUSE_SHIFT 6 -#define QM_RF_BYPASS_MASK_RESERVED1_MASK 0x1 -#define QM_RF_BYPASS_MASK_RESERVED1_SHIFT 7 +enum init_split_types { + SPLIT_TYPE_NONE, + SPLIT_TYPE_PORT, + SPLIT_TYPE_PF, + SPLIT_TYPE_PORT_PF, + SPLIT_TYPE_VF, + MAX_INIT_SPLIT_TYPES }; -/* QM hardware structure of opportunistic credit mask */ -struct qm_rf_opportunistic_mask { - __le16 flags; -#define QM_RF_OPPORTUNISTIC_MASK_LINEVOQ_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_LINEVOQ_SHIFT 0 -#define QM_RF_OPPORTUNISTIC_MASK_BYTEVOQ_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_BYTEVOQ_SHIFT 1 -#define QM_RF_OPPORTUNISTIC_MASK_PFWFQ_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_PFWFQ_SHIFT 2 -#define QM_RF_OPPORTUNISTIC_MASK_VPWFQ_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_VPWFQ_SHIFT 3 -#define QM_RF_OPPORTUNISTIC_MASK_PFRL_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_PFRL_SHIFT 4 -#define QM_RF_OPPORTUNISTIC_MASK_VPQCNRL_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_VPQCNRL_SHIFT 5 -#define QM_RF_OPPORTUNISTIC_MASK_FWPAUSE_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_FWPAUSE_SHIFT 6 -#define QM_RF_OPPORTUNISTIC_MASK_RESERVED0_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_RESERVED0_SHIFT 7 -#define QM_RF_OPPORTUNISTIC_MASK_QUEUEEMPTY_MASK 0x1 -#define QM_RF_OPPORTUNISTIC_MASK_QUEUEEMPTY_SHIFT 8 -#define QM_RF_OPPORTUNISTIC_MASK_RESERVED1_MASK 0x7F -#define QM_RF_OPPORTUNISTIC_MASK_RESERVED1_SHIFT 9 -}; - -/* QM hardware structure of QM map memory */ -struct qm_rf_pq_map { - u32 reg; -#define QM_RF_PQ_MAP_PQ_VALID_MASK 0x1 /* PQ active */ -#define QM_RF_PQ_MAP_PQ_VALID_SHIFT 0 -#define QM_RF_PQ_MAP_RL_ID_MASK 0xFF /* RL ID */ -#define QM_RF_PQ_MAP_RL_ID_SHIFT 1 -#define QM_RF_PQ_MAP_VP_PQ_ID_MASK 0x1FF -#define QM_RF_PQ_MAP_VP_PQ_ID_SHIFT 9 -#define QM_RF_PQ_MAP_VOQ_MASK 0x1F /* VOQ */ -#define QM_RF_PQ_MAP_VOQ_SHIFT 18 -#define QM_RF_PQ_MAP_WRR_WEIGHT_GROUP_MASK 0x3 /* WRR weight */ -#define QM_RF_PQ_MAP_WRR_WEIGHT_GROUP_SHIFT 23 -#define QM_RF_PQ_MAP_RL_VALID_MASK 0x1 /* RL active */ -#define QM_RF_PQ_MAP_RL_VALID_SHIFT 25 -#define QM_RF_PQ_MAP_RESERVED_MASK 0x3F -#define QM_RF_PQ_MAP_RESERVED_SHIFT 26 -}; - -/* Completion params for aggregated interrupt completion */ -struct sdm_agg_int_comp_params { - __le16 params; -#define SDM_AGG_INT_COMP_PARAMS_AGG_INT_INDEX_MASK 0x3F -#define SDM_AGG_INT_COMP_PARAMS_AGG_INT_INDEX_SHIFT 0 -#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_ENABLE_MASK 0x1 -#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_ENABLE_SHIFT 6 -#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_BIT_MASK 0x1FF -#define SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_BIT_SHIFT 7 -}; - -/* SDM operation gen command (generate aggregative interrupt) */ -struct sdm_op_gen { - __le32 command; -#define SDM_OP_GEN_COMP_PARAM_MASK 0xFFFF /* completion parameters 0-15 */ -#define SDM_OP_GEN_COMP_PARAM_SHIFT 0 -#define SDM_OP_GEN_COMP_TYPE_MASK 0xF /* completion type 16-19 */ -#define SDM_OP_GEN_COMP_TYPE_SHIFT 16 -#define SDM_OP_GEN_RESERVED_MASK 0xFFF /* reserved 20-31 */ -#define SDM_OP_GEN_RESERVED_SHIFT 20 -}; - -/*********************************** Init ************************************/ - -/* Width of GRC address in bits (addresses are specified in dwords) */ -#define GRC_ADDR_BITS 23 -#define MAX_GRC_ADDR ((1 << GRC_ADDR_BITS) - 1) - -/* indicates an init that should be applied to any phase ID */ -#define ANY_PHASE_ID 0xffff - -/* init pattern size in bytes */ -#define INIT_PATTERN_SIZE_BITS 4 -#define MAX_INIT_PATTERN_SIZE BIT(INIT_PATTERN_SIZE_BITS) - -/* Max size in dwords of a zipped array */ -#define MAX_ZIPPED_SIZE 8192 - -/* Global PXP window */ -#define NUM_OF_PXP_WIN 19 -#define PXP_WIN_DWORD_SIZE_BITS 10 -#define PXP_WIN_DWORD_SIZE BIT(PXP_WIN_DWORD_SIZE_BITS) -#define PXP_WIN_BYTE_SIZE_BITS (PXP_WIN_DWORD_SIZE_BITS + 2) -#define PXP_WIN_BYTE_SIZE (PXP_WIN_DWORD_SIZE * 4) - -/********************************* GRC Dump **********************************/ - -/* width of GRC dump register sequence length in bits */ -#define DUMP_SEQ_LEN_BITS 8 -#define DUMP_SEQ_LEN_MAX_VAL ((1 << DUMP_SEQ_LEN_BITS) - 1) - -/* width of GRC dump memory length in bits */ -#define DUMP_MEM_LEN_BITS 18 -#define DUMP_MEM_LEN_MAX_VAL ((1 << DUMP_MEM_LEN_BITS) - 1) - -/* width of register type ID in bits */ -#define REG_TYPE_ID_BITS 6 -#define REG_TYPE_ID_MAX_VAL ((1 << REG_TYPE_ID_BITS) - 1) - -/* width of block ID in bits */ -#define BLOCK_ID_BITS 8 -#define BLOCK_ID_MAX_VAL ((1 << BLOCK_ID_BITS) - 1) - -/******************************** Idle Check *********************************/ - -/* max number of idle check predicate immediates */ -#define MAX_IDLE_CHK_PRED_IMM 3 - -/* max number of idle check argument registers */ -#define MAX_IDLE_CHK_READ_REGS 3 - -/* max number of idle check loops */ -#define MAX_IDLE_CHK_LOOPS 0x10000 - -/* max idle check address increment */ -#define MAX_IDLE_CHK_INCREMENT 0x10000 - -/* inicates an undefined idle check line index */ -#define IDLE_CHK_UNDEFINED_LINE_IDX 0xffffff - -/* max number of register values following the idle check header */ -#define IDLE_CHK_MAX_DUMP_REGS 2 - -/* arguments for IDLE_CHK_MACRO_TYPE_QM_RD_WR */ -#define IDLE_CHK_QM_RD_WR_PTR 0 -#define IDLE_CHK_QM_RD_WR_BANK 1 - -/**************************************/ -/* HSI Functions constants and macros */ -/**************************************/ - -/* Number of VLAN priorities */ -#define NUM_OF_VLAN_PRIORITIES 8 - -/* the MCP Trace meta data signautre is duplicated in the perl script that - * generats the NVRAM images. - */ -#define MCP_TRACE_META_IMAGE_SIGNATURE 0x669955aa - /* Binary buffer header */ struct bin_buffer_hdr { - u32 offset; - u32 length /* buffer length in bytes */; + __le32 offset; + __le32 length; }; -/* binary buffer types */ -enum bin_buffer_type { - BIN_BUF_FW_VER_INFO /* fw_ver_info struct */, - BIN_BUF_INIT_CMD /* init commands */, - BIN_BUF_INIT_VAL /* init data */, - BIN_BUF_INIT_MODE_TREE /* init modes tree */, - BIN_BUF_IRO /* internal RAM offsets array */, - MAX_BIN_BUFFER_TYPE -}; - -/* Chip IDs */ -enum chip_ids { - CHIP_BB_A0 /* BB A0 chip ID */, - CHIP_BB_B0 /* BB B0 chip ID */, - CHIP_K2 /* AH chip ID */, - MAX_CHIP_IDS +/* binary init buffer types */ +enum bin_init_buffer_type { + BIN_BUF_FW_VER_INFO, + BIN_BUF_INIT_CMD, + BIN_BUF_INIT_VAL, + BIN_BUF_INIT_MODE_TREE, + BIN_BUF_IRO, + MAX_BIN_INIT_BUFFER_TYPE }; +/* init array header: raw */ struct init_array_raw_hdr { __le32 data; -#define INIT_ARRAY_RAW_HDR_TYPE_MASK 0xF -#define INIT_ARRAY_RAW_HDR_TYPE_SHIFT 0 -#define INIT_ARRAY_RAW_HDR_PARAMS_MASK 0xFFFFFFF /* init array params */ -#define INIT_ARRAY_RAW_HDR_PARAMS_SHIFT 4 +#define INIT_ARRAY_RAW_HDR_TYPE_MASK 0xF +#define INIT_ARRAY_RAW_HDR_TYPE_SHIFT 0 +#define INIT_ARRAY_RAW_HDR_PARAMS_MASK 0xFFFFFFF +#define INIT_ARRAY_RAW_HDR_PARAMS_SHIFT 4 }; +/* init array header: standard */ struct init_array_standard_hdr { __le32 data; -#define INIT_ARRAY_STANDARD_HDR_TYPE_MASK 0xF -#define INIT_ARRAY_STANDARD_HDR_TYPE_SHIFT 0 -#define INIT_ARRAY_STANDARD_HDR_SIZE_MASK 0xFFFFFFF -#define INIT_ARRAY_STANDARD_HDR_SIZE_SHIFT 4 +#define INIT_ARRAY_STANDARD_HDR_TYPE_MASK 0xF +#define INIT_ARRAY_STANDARD_HDR_TYPE_SHIFT 0 +#define INIT_ARRAY_STANDARD_HDR_SIZE_MASK 0xFFFFFFF +#define INIT_ARRAY_STANDARD_HDR_SIZE_SHIFT 4 }; +/* init array header: zipped */ struct init_array_zipped_hdr { __le32 data; -#define INIT_ARRAY_ZIPPED_HDR_TYPE_MASK 0xF -#define INIT_ARRAY_ZIPPED_HDR_TYPE_SHIFT 0 -#define INIT_ARRAY_ZIPPED_HDR_ZIPPED_SIZE_MASK 0xFFFFFFF -#define INIT_ARRAY_ZIPPED_HDR_ZIPPED_SIZE_SHIFT 4 +#define INIT_ARRAY_ZIPPED_HDR_TYPE_MASK 0xF +#define INIT_ARRAY_ZIPPED_HDR_TYPE_SHIFT 0 +#define INIT_ARRAY_ZIPPED_HDR_ZIPPED_SIZE_MASK 0xFFFFFFF +#define INIT_ARRAY_ZIPPED_HDR_ZIPPED_SIZE_SHIFT 4 }; +/* init array header: pattern */ struct init_array_pattern_hdr { __le32 data; -#define INIT_ARRAY_PATTERN_HDR_TYPE_MASK 0xF -#define INIT_ARRAY_PATTERN_HDR_TYPE_SHIFT 0 -#define INIT_ARRAY_PATTERN_HDR_PATTERN_SIZE_MASK 0xF -#define INIT_ARRAY_PATTERN_HDR_PATTERN_SIZE_SHIFT 4 -#define INIT_ARRAY_PATTERN_HDR_REPETITIONS_MASK 0xFFFFFF -#define INIT_ARRAY_PATTERN_HDR_REPETITIONS_SHIFT 8 +#define INIT_ARRAY_PATTERN_HDR_TYPE_MASK 0xF +#define INIT_ARRAY_PATTERN_HDR_TYPE_SHIFT 0 +#define INIT_ARRAY_PATTERN_HDR_PATTERN_SIZE_MASK 0xF +#define INIT_ARRAY_PATTERN_HDR_PATTERN_SIZE_SHIFT 4 +#define INIT_ARRAY_PATTERN_HDR_REPETITIONS_MASK 0xFFFFFF +#define INIT_ARRAY_PATTERN_HDR_REPETITIONS_SHIFT 8 }; +/* init array header union */ union init_array_hdr { - struct init_array_raw_hdr raw /* raw init array header */; - struct init_array_standard_hdr standard; - struct init_array_zipped_hdr zipped /* zipped init array header */; - struct init_array_pattern_hdr pattern /* pattern init array header */; + struct init_array_raw_hdr raw; + struct init_array_standard_hdr standard; + struct init_array_zipped_hdr zipped; + struct init_array_pattern_hdr pattern; }; +/* init array types */ enum init_array_types { - INIT_ARR_STANDARD /* standard init array */, - INIT_ARR_ZIPPED /* zipped init array */, - INIT_ARR_PATTERN /* a repeated pattern */, + INIT_ARR_STANDARD, + INIT_ARR_ZIPPED, + INIT_ARR_PATTERN, MAX_INIT_ARRAY_TYPES }; /* init operation: callback */ struct init_callback_op { - __le32 op_data; -#define INIT_CALLBACK_OP_OP_MASK 0xF -#define INIT_CALLBACK_OP_OP_SHIFT 0 -#define INIT_CALLBACK_OP_RESERVED_MASK 0xFFFFFFF -#define INIT_CALLBACK_OP_RESERVED_SHIFT 4 - __le16 callback_id /* Callback ID */; - __le16 block_id /* Blocks ID */; + __le32 op_data; +#define INIT_CALLBACK_OP_OP_MASK 0xF +#define INIT_CALLBACK_OP_OP_SHIFT 0 +#define INIT_CALLBACK_OP_RESERVED_MASK 0xFFFFFFF +#define INIT_CALLBACK_OP_RESERVED_SHIFT 4 + __le16 callback_id; + __le16 block_id; }; /* init operation: delay */ struct init_delay_op { - __le32 op_data; -#define INIT_DELAY_OP_OP_MASK 0xF -#define INIT_DELAY_OP_OP_SHIFT 0 -#define INIT_DELAY_OP_RESERVED_MASK 0xFFFFFFF -#define INIT_DELAY_OP_RESERVED_SHIFT 4 - __le32 delay /* delay in us */; + __le32 op_data; +#define INIT_DELAY_OP_OP_MASK 0xF +#define INIT_DELAY_OP_OP_SHIFT 0 +#define INIT_DELAY_OP_RESERVED_MASK 0xFFFFFFF +#define INIT_DELAY_OP_RESERVED_SHIFT 4 + __le32 delay; }; /* init operation: if_mode */ struct init_if_mode_op { __le32 op_data; -#define INIT_IF_MODE_OP_OP_MASK 0xF -#define INIT_IF_MODE_OP_OP_SHIFT 0 -#define INIT_IF_MODE_OP_RESERVED1_MASK 0xFFF -#define INIT_IF_MODE_OP_RESERVED1_SHIFT 4 -#define INIT_IF_MODE_OP_CMD_OFFSET_MASK 0xFFFF -#define INIT_IF_MODE_OP_CMD_OFFSET_SHIFT 16 - __le16 reserved2; - __le16 modes_buf_offset; +#define INIT_IF_MODE_OP_OP_MASK 0xF +#define INIT_IF_MODE_OP_OP_SHIFT 0 +#define INIT_IF_MODE_OP_RESERVED1_MASK 0xFFF +#define INIT_IF_MODE_OP_RESERVED1_SHIFT 4 +#define INIT_IF_MODE_OP_CMD_OFFSET_MASK 0xFFFF +#define INIT_IF_MODE_OP_CMD_OFFSET_SHIFT 16 + __le16 reserved2; + __le16 modes_buf_offset; }; -/* init operation: if_phase */ +/* init operation: if_phase */ struct init_if_phase_op { __le32 op_data; -#define INIT_IF_PHASE_OP_OP_MASK 0xF -#define INIT_IF_PHASE_OP_OP_SHIFT 0 -#define INIT_IF_PHASE_OP_DMAE_ENABLE_MASK 0x1 -#define INIT_IF_PHASE_OP_DMAE_ENABLE_SHIFT 4 -#define INIT_IF_PHASE_OP_RESERVED1_MASK 0x7FF -#define INIT_IF_PHASE_OP_RESERVED1_SHIFT 5 -#define INIT_IF_PHASE_OP_CMD_OFFSET_MASK 0xFFFF -#define INIT_IF_PHASE_OP_CMD_OFFSET_SHIFT 16 +#define INIT_IF_PHASE_OP_OP_MASK 0xF +#define INIT_IF_PHASE_OP_OP_SHIFT 0 +#define INIT_IF_PHASE_OP_DMAE_ENABLE_MASK 0x1 +#define INIT_IF_PHASE_OP_DMAE_ENABLE_SHIFT 4 +#define INIT_IF_PHASE_OP_RESERVED1_MASK 0x7FF +#define INIT_IF_PHASE_OP_RESERVED1_SHIFT 5 +#define INIT_IF_PHASE_OP_CMD_OFFSET_MASK 0xFFFF +#define INIT_IF_PHASE_OP_CMD_OFFSET_SHIFT 16 __le32 phase_data; -#define INIT_IF_PHASE_OP_PHASE_MASK 0xFF /* Init phase */ -#define INIT_IF_PHASE_OP_PHASE_SHIFT 0 -#define INIT_IF_PHASE_OP_RESERVED2_MASK 0xFF -#define INIT_IF_PHASE_OP_RESERVED2_SHIFT 8 -#define INIT_IF_PHASE_OP_PHASE_ID_MASK 0xFFFF /* Init phase ID */ -#define INIT_IF_PHASE_OP_PHASE_ID_SHIFT 16 +#define INIT_IF_PHASE_OP_PHASE_MASK 0xFF +#define INIT_IF_PHASE_OP_PHASE_SHIFT 0 +#define INIT_IF_PHASE_OP_RESERVED2_MASK 0xFF +#define INIT_IF_PHASE_OP_RESERVED2_SHIFT 8 +#define INIT_IF_PHASE_OP_PHASE_ID_MASK 0xFFFF +#define INIT_IF_PHASE_OP_PHASE_ID_SHIFT 16 }; /* init mode operators */ enum init_mode_ops { - INIT_MODE_OP_NOT /* init mode not operator */, - INIT_MODE_OP_OR /* init mode or operator */, - INIT_MODE_OP_AND /* init mode and operator */, + INIT_MODE_OP_NOT, + INIT_MODE_OP_OR, + INIT_MODE_OP_AND, MAX_INIT_MODE_OPS }; /* init operation: raw */ struct init_raw_op { - __le32 op_data; -#define INIT_RAW_OP_OP_MASK 0xF -#define INIT_RAW_OP_OP_SHIFT 0 -#define INIT_RAW_OP_PARAM1_MASK 0xFFFFFFF /* init param 1 */ -#define INIT_RAW_OP_PARAM1_SHIFT 4 - __le32 param2 /* Init param 2 */; + __le32 op_data; +#define INIT_RAW_OP_OP_MASK 0xF +#define INIT_RAW_OP_OP_SHIFT 0 +#define INIT_RAW_OP_PARAM1_MASK 0xFFFFFFF +#define INIT_RAW_OP_PARAM1_SHIFT 4 + __le32 param2; }; /* init array params */ struct init_op_array_params { - __le16 size /* array size in dwords */; - __le16 offset /* array start offset in dwords */; + __le16 size; + __le16 offset; }; /* Write init operation arguments */ union init_write_args { - __le32 inline_val; - __le32 zeros_count; - __le32 array_offset; - struct init_op_array_params runtime; + __le32 inline_val; + __le32 zeros_count; + __le32 array_offset; + struct init_op_array_params runtime; }; /* init operation: write */ struct init_write_op { __le32 data; -#define INIT_WRITE_OP_OP_MASK 0xF -#define INIT_WRITE_OP_OP_SHIFT 0 -#define INIT_WRITE_OP_SOURCE_MASK 0x7 -#define INIT_WRITE_OP_SOURCE_SHIFT 4 -#define INIT_WRITE_OP_RESERVED_MASK 0x1 -#define INIT_WRITE_OP_RESERVED_SHIFT 7 -#define INIT_WRITE_OP_WIDE_BUS_MASK 0x1 -#define INIT_WRITE_OP_WIDE_BUS_SHIFT 8 -#define INIT_WRITE_OP_ADDRESS_MASK 0x7FFFFF -#define INIT_WRITE_OP_ADDRESS_SHIFT 9 - union init_write_args args /* Write init operation arguments */; +#define INIT_WRITE_OP_OP_MASK 0xF +#define INIT_WRITE_OP_OP_SHIFT 0 +#define INIT_WRITE_OP_SOURCE_MASK 0x7 +#define INIT_WRITE_OP_SOURCE_SHIFT 4 +#define INIT_WRITE_OP_RESERVED_MASK 0x1 +#define INIT_WRITE_OP_RESERVED_SHIFT 7 +#define INIT_WRITE_OP_WIDE_BUS_MASK 0x1 +#define INIT_WRITE_OP_WIDE_BUS_SHIFT 8 +#define INIT_WRITE_OP_ADDRESS_MASK 0x7FFFFF +#define INIT_WRITE_OP_ADDRESS_SHIFT 9 + union init_write_args args; }; /* init operation: read */ struct init_read_op { __le32 op_data; -#define INIT_READ_OP_OP_MASK 0xF -#define INIT_READ_OP_OP_SHIFT 0 -#define INIT_READ_OP_POLL_TYPE_MASK 0xF -#define INIT_READ_OP_POLL_TYPE_SHIFT 4 -#define INIT_READ_OP_RESERVED_MASK 0x1 -#define INIT_READ_OP_RESERVED_SHIFT 8 -#define INIT_READ_OP_ADDRESS_MASK 0x7FFFFF -#define INIT_READ_OP_ADDRESS_SHIFT 9 +#define INIT_READ_OP_OP_MASK 0xF +#define INIT_READ_OP_OP_SHIFT 0 +#define INIT_READ_OP_POLL_TYPE_MASK 0xF +#define INIT_READ_OP_POLL_TYPE_SHIFT 4 +#define INIT_READ_OP_RESERVED_MASK 0x1 +#define INIT_READ_OP_RESERVED_SHIFT 8 +#define INIT_READ_OP_ADDRESS_MASK 0x7FFFFF +#define INIT_READ_OP_ADDRESS_SHIFT 9 __le32 expected_val; + }; /* Init operations union */ union init_op { - struct init_raw_op raw /* raw init operation */; - struct init_write_op write /* write init operation */; - struct init_read_op read /* read init operation */; - struct init_if_mode_op if_mode /* if_mode init operation */; - struct init_if_phase_op if_phase /* if_phase init operation */; - struct init_callback_op callback /* callback init operation */; - struct init_delay_op delay /* delay init operation */; + struct init_raw_op raw; + struct init_write_op write; + struct init_read_op read; + struct init_if_mode_op if_mode; + struct init_if_phase_op if_phase; + struct init_callback_op callback; + struct init_delay_op delay; }; /* Init command operation types */ enum init_op_types { - INIT_OP_READ /* GRC read init command */, - INIT_OP_WRITE /* GRC write init command */, + INIT_OP_READ, + INIT_OP_WRITE, INIT_OP_IF_MODE, INIT_OP_IF_PHASE, - INIT_OP_DELAY /* delay init command */, - INIT_OP_CALLBACK /* callback init command */, + INIT_OP_DELAY, + INIT_OP_CALLBACK, MAX_INIT_OP_TYPES }; +/* init polling types */ enum init_poll_types { - INIT_POLL_NONE /* No polling */, - INIT_POLL_EQ /* init value is included in the init command */, - INIT_POLL_OR /* init value is all zeros */, - INIT_POLL_AND /* init value is an array of values */, + INIT_POLL_NONE, + INIT_POLL_EQ, + INIT_POLL_OR, + INIT_POLL_AND, MAX_INIT_POLL_TYPES }; /* init source types */ enum init_source_types { - INIT_SRC_INLINE /* init value is included in the init command */, - INIT_SRC_ZEROS /* init value is all zeros */, - INIT_SRC_ARRAY /* init value is an array of values */, - INIT_SRC_RUNTIME /* init value is provided during runtime */, + INIT_SRC_INLINE, + INIT_SRC_ZEROS, + INIT_SRC_ARRAY, + INIT_SRC_RUNTIME, MAX_INIT_SOURCE_TYPES }; /* Internal RAM Offsets macro data */ struct iro { - u32 base /* RAM field offset */; - u16 m1 /* multiplier 1 */; - u16 m2 /* multiplier 2 */; - u16 m3 /* multiplier 3 */; - u16 size /* RAM field size */; -}; - -/* QM per-port init parameters */ -struct init_qm_port_params { - u8 active /* Indicates if this port is active */; - u8 num_active_phys_tcs; - u16 num_pbf_cmd_lines; - u16 num_btb_blocks; - __le16 reserved; + __le32 base; + __le16 m1; + __le16 m2; + __le16 m3; + __le16 size; }; -/* QM per-PQ init parameters */ -struct init_qm_pq_params { - u8 vport_id /* VPORT ID */; - u8 tc_id /* TC ID */; - u8 wrr_group /* WRR group */; - u8 reserved; -}; +/** + * @brief qed_dbg_print_attn - Prints attention registers values in the specified results struct. + * + * @param p_hwfn + * @param results - Pointer to the attention read results + * + * @return error if one of the following holds: + * - the version wasn't set + * Otherwise, returns ok. + */ +enum dbg_status qed_dbg_print_attn(struct qed_hwfn *p_hwfn, + struct dbg_attn_block_result *results); -/* QM per-vport init parameters */ -struct init_qm_vport_params { - u32 vport_rl; - u16 vport_wfq; - u16 first_tx_pq_id[NUM_OF_TCS]; -}; +#define MAX_NAME_LEN 16 /* Win 2 */ #define GTT_BAR0_MAP_REG_IGU_CMD \ 0x00f000UL + /* Win 3 */ #define GTT_BAR0_MAP_REG_TSDM_RAM \ 0x010000UL + /* Win 4 */ #define GTT_BAR0_MAP_REG_MSDM_RAM \ 0x011000UL + /* Win 5 */ #define GTT_BAR0_MAP_REG_MSDM_RAM_1024 \ 0x012000UL + /* Win 6 */ #define GTT_BAR0_MAP_REG_USDM_RAM \ 0x013000UL + /* Win 7 */ #define GTT_BAR0_MAP_REG_USDM_RAM_1024 \ 0x014000UL + /* Win 8 */ #define GTT_BAR0_MAP_REG_USDM_RAM_2048 \ 0x015000UL + /* Win 9 */ #define GTT_BAR0_MAP_REG_XSDM_RAM \ 0x016000UL + /* Win 10 */ #define GTT_BAR0_MAP_REG_YSDM_RAM \ 0x017000UL + /* Win 11 */ #define GTT_BAR0_MAP_REG_PSDM_RAM \ 0x018000UL @@ -1483,772 +1963,718 @@ struct init_qm_vport_params { * Returns the required host memory size in 4KB units. * Must be called before all QM init HSI functions. * - * @param pf_id - physical function ID - * @param num_pf_cids - number of connections used by this PF - * @param num_vf_cids - number of connections used by VFs of this PF - * @param num_tids - number of tasks used by this PF - * @param num_pf_pqs - number of PQs used by this PF - * @param num_vf_pqs - number of PQs used by VFs of this PF + * @param pf_id - physical function ID + * @param num_pf_cids - number of connections used by this PF + * @param num_vf_cids - number of connections used by VFs of this PF + * @param num_tids - number of tasks used by this PF + * @param num_pf_pqs - number of PQs used by this PF + * @param num_vf_pqs - number of PQs used by VFs of this PF * * @return The required host memory size in 4KB units. */ -u32 qed_qm_pf_mem_size(u8 pf_id, - u32 num_pf_cids, - u32 num_vf_cids, - u32 num_tids, - u16 num_pf_pqs, - u16 num_vf_pqs); +u32 qed_qm_pf_mem_size(u8 pf_id, + u32 num_pf_cids, + u32 num_vf_cids, + u32 num_tids, u16 num_pf_pqs, u16 num_vf_pqs); struct qed_qm_common_rt_init_params { - u8 max_ports_per_engine; - u8 max_phys_tcs_per_port; - bool pf_rl_en; - bool pf_wfq_en; - bool vport_rl_en; - bool vport_wfq_en; - struct init_qm_port_params *port_params; + u8 max_ports_per_engine; + u8 max_phys_tcs_per_port; + bool pf_rl_en; + bool pf_wfq_en; + bool vport_rl_en; + bool vport_wfq_en; + struct init_qm_port_params *port_params; }; +int qed_qm_common_rt_init(struct qed_hwfn *p_hwfn, + struct qed_qm_common_rt_init_params *p_params); + +struct qed_qm_pf_rt_init_params { + u8 port_id; + u8 pf_id; + u8 max_phys_tcs_per_port; + bool is_first_pf; + u32 num_pf_cids; + u32 num_vf_cids; + u32 num_tids; + u16 start_pq; + u16 num_pf_pqs; + u16 num_vf_pqs; + u8 start_vport; + u8 num_vports; + u8 pf_wfq; + u32 pf_rl; + struct init_qm_pq_params *pq_params; + struct init_qm_vport_params *vport_params; +}; + +int qed_qm_pf_rt_init(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_qm_pf_rt_init_params *p_params); + /** - * @brief qed_qm_common_rt_init - Prepare QM runtime init values for the - * engine phase. + * @brief qed_init_pf_wfq - Initializes the WFQ weight of the specified PF * * @param p_hwfn - * @param max_ports_per_engine - max number of ports per engine in HW - * @param max_phys_tcs_per_port - max number of physical TCs per port in HW - * @param pf_rl_en - enable per-PF rate limiters - * @param pf_wfq_en - enable per-PF WFQ - * @param vport_rl_en - enable per-VPORT rate limiters - * @param vport_wfq_en - enable per-VPORT WFQ - * @param port_params - array of size MAX_NUM_PORTS with - * arameters for each port + * @param p_ptt - ptt window used for writing the registers + * @param pf_id - PF ID + * @param pf_wfq - WFQ weight. Must be non-zero. * * @return 0 on success, -1 on error. */ -int qed_qm_common_rt_init( - struct qed_hwfn *p_hwfn, - struct qed_qm_common_rt_init_params *p_params); - -struct qed_qm_pf_rt_init_params { - u8 port_id; - u8 pf_id; - u8 max_phys_tcs_per_port; - bool is_first_pf; - u32 num_pf_cids; - u32 num_vf_cids; - u32 num_tids; - u16 start_pq; - u16 num_pf_pqs; - u16 num_vf_pqs; - u8 start_vport; - u8 num_vports; - u8 pf_wfq; - u32 pf_rl; - struct init_qm_pq_params *pq_params; - struct init_qm_vport_params *vport_params; -}; - -int qed_qm_pf_rt_init(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - struct qed_qm_pf_rt_init_params *p_params); +int qed_init_pf_wfq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 pf_id, u16 pf_wfq); /** - * @brief qed_init_pf_rl Initializes the rate limit of the specified PF + * @brief qed_init_pf_rl - Initializes the rate limit of the specified PF * * @param p_hwfn - * @param p_ptt - ptt window used for writing the registers - * @param pf_id - PF ID - * @param pf_rl - rate limit in Mb/sec units + * @param p_ptt - ptt window used for writing the registers + * @param pf_id - PF ID + * @param pf_rl - rate limit in Mb/sec units * * @return 0 on success, -1 on error. */ -int qed_init_pf_rl(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u8 pf_id, - u32 pf_rl); +int qed_init_pf_rl(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 pf_id, u32 pf_rl); /** - * @brief qed_init_vport_rl Initializes the rate limit of the specified VPORT + * @brief qed_init_vport_wfq Initializes the WFQ weight of the specified VPORT * * @param p_hwfn - * @param p_ptt - ptt window used for writing the registers - * @param vport_id - VPORT ID - * @param vport_rl - rate limit in Mb/sec units + * @param p_ptt - ptt window used for writing the registers + * @param first_tx_pq_id- An array containing the first Tx PQ ID associated + * with the VPORT for each TC. This array is filled by + * qed_qm_pf_rt_init + * @param vport_wfq - WFQ weight. Must be non-zero. * * @return 0 on success, -1 on error. */ +int qed_init_vport_wfq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u16 first_tx_pq_id[NUM_OF_TCS], u16 vport_wfq); -int qed_init_vport_rl(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u8 vport_id, - u32 vport_rl); +/** + * @brief qed_init_vport_rl - Initializes the rate limit of the specified VPORT + * + * @param p_hwfn + * @param p_ptt - ptt window used for writing the registers + * @param vport_id - VPORT ID + * @param vport_rl - rate limit in Mb/sec units + * + * @return 0 on success, -1 on error. + */ +int qed_init_vport_rl(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 vport_id, u32 vport_rl); /** * @brief qed_send_qm_stop_cmd Sends a stop command to the QM * * @param p_hwfn - * @param p_ptt - ptt window used for writing the registers + * @param p_ptt * @param is_release_cmd - true for release, false for stop. - * @param is_tx_pq - true for Tx PQs, false for Other PQs. - * @param start_pq - first PQ ID to stop - * @param num_pqs - Number of PQs to stop, starting from start_pq. + * @param is_tx_pq - true for Tx PQs, false for Other PQs. + * @param start_pq - first PQ ID to stop + * @param num_pqs - Number of PQs to stop, starting from start_pq. + * + * @return bool, true if successful, false if timeout occured while waiting for QM command done. + */ +bool qed_send_qm_stop_cmd(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + bool is_release_cmd, + bool is_tx_pq, u16 start_pq, u16 num_pqs); + +/** + * @brief qed_set_vxlan_dest_port - initializes vxlan tunnel destination udp port + * + * @param p_ptt - ptt window used for writing the registers. + * @param dest_port - vxlan destination udp port. + */ +void qed_set_vxlan_dest_port(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u16 dest_port); + +/** + * @brief qed_set_vxlan_enable - enable or disable VXLAN tunnel in HW + * + * @param p_ptt - ptt window used for writing the registers. + * @param vxlan_enable - vxlan enable flag. + */ +void qed_set_vxlan_enable(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, bool vxlan_enable); + +/** + * @brief qed_set_gre_enable - enable or disable GRE tunnel in HW + * + * @param p_ptt - ptt window used for writing the registers. + * @param eth_gre_enable - eth GRE enable enable flag. + * @param ip_gre_enable - IP GRE enable enable flag. + */ +void qed_set_gre_enable(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + bool eth_gre_enable, bool ip_gre_enable); + +/** + * @brief qed_set_geneve_dest_port - initializes geneve tunnel destination udp port * - * @return bool, true if successful, false if timeout occurred while waiting - * for QM command done. + * @param p_ptt - ptt window used for writing the registers. + * @param dest_port - geneve destination udp port. */ +void qed_set_geneve_dest_port(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u16 dest_port); -bool qed_send_qm_stop_cmd(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - bool is_release_cmd, - bool is_tx_pq, - u16 start_pq, - u16 num_pqs); - -/* Ystorm flow control mode. Use enum fw_flow_ctrl_mode */ -#define YSTORM_FLOW_CONTROL_MODE_OFFSET (IRO[0].base) -#define YSTORM_FLOW_CONTROL_MODE_SIZE (IRO[0].size) -/* Tstorm port statistics */ -#define TSTORM_PORT_STAT_OFFSET(port_id) (IRO[1].base + ((port_id) * IRO[1].m1)) -#define TSTORM_PORT_STAT_SIZE (IRO[1].size) -/* Tstorm ll2 port statistics */ -#define TSTORM_LL2_PORT_STAT_OFFSET(port_id) \ - (IRO[2].base + ((port_id) * IRO[2].m1)) -#define TSTORM_LL2_PORT_STAT_SIZE (IRO[2].size) -/* Ustorm VF-PF Channel ready flag */ -#define USTORM_VF_PF_CHANNEL_READY_OFFSET(vf_id) \ - (IRO[3].base + ((vf_id) * IRO[3].m1)) -#define USTORM_VF_PF_CHANNEL_READY_SIZE (IRO[3].size) -/* Ustorm Final flr cleanup ack */ -#define USTORM_FLR_FINAL_ACK_OFFSET(pf_id) (IRO[4].base + ((pf_id) * IRO[4].m1)) -#define USTORM_FLR_FINAL_ACK_SIZE (IRO[4].size) -/* Ustorm Event ring consumer */ -#define USTORM_EQE_CONS_OFFSET(pf_id) (IRO[5].base + ((pf_id) * IRO[5].m1)) -#define USTORM_EQE_CONS_SIZE (IRO[5].size) -/* Ustorm Common Queue ring consumer */ -#define USTORM_COMMON_QUEUE_CONS_OFFSET(global_queue_id) \ - (IRO[6].base + ((global_queue_id) * IRO[6].m1)) -#define USTORM_COMMON_QUEUE_CONS_SIZE (IRO[6].size) -/* Xstorm Integration Test Data */ -#define XSTORM_INTEG_TEST_DATA_OFFSET (IRO[7].base) -#define XSTORM_INTEG_TEST_DATA_SIZE (IRO[7].size) -/* Ystorm Integration Test Data */ -#define YSTORM_INTEG_TEST_DATA_OFFSET (IRO[8].base) -#define YSTORM_INTEG_TEST_DATA_SIZE (IRO[8].size) -/* Pstorm Integration Test Data */ -#define PSTORM_INTEG_TEST_DATA_OFFSET (IRO[9].base) -#define PSTORM_INTEG_TEST_DATA_SIZE (IRO[9].size) -/* Tstorm Integration Test Data */ -#define TSTORM_INTEG_TEST_DATA_OFFSET (IRO[10].base) -#define TSTORM_INTEG_TEST_DATA_SIZE (IRO[10].size) -/* Mstorm Integration Test Data */ -#define MSTORM_INTEG_TEST_DATA_OFFSET (IRO[11].base) -#define MSTORM_INTEG_TEST_DATA_SIZE (IRO[11].size) -/* Ustorm Integration Test Data */ -#define USTORM_INTEG_TEST_DATA_OFFSET (IRO[12].base) -#define USTORM_INTEG_TEST_DATA_SIZE (IRO[12].size) -/* Tstorm producers */ -#define TSTORM_LL2_RX_PRODS_OFFSET(core_rx_queue_id) \ - (IRO[13].base + ((core_rx_queue_id) * IRO[13].m1)) -#define TSTORM_LL2_RX_PRODS_SIZE (IRO[13].size) -/* Tstorm LightL2 queue statistics */ -#define CORE_LL2_TSTORM_PER_QUEUE_STAT_OFFSET(core_rx_queue_id) \ - (IRO[14].base + ((core_rx_queue_id) * IRO[14].m1)) -#define CORE_LL2_TSTORM_PER_QUEUE_STAT_SIZE (IRO[14].size) -/* Ustorm LiteL2 queue statistics */ -#define CORE_LL2_USTORM_PER_QUEUE_STAT_OFFSET(core_rx_queue_id) \ - (IRO[15].base + ((core_rx_queue_id) * IRO[15].m1)) -#define CORE_LL2_USTORM_PER_QUEUE_STAT_SIZE (IRO[15].size) -/* Pstorm LiteL2 queue statistics */ -#define CORE_LL2_PSTORM_PER_QUEUE_STAT_OFFSET(core_tx_stats_id) \ - (IRO[16].base + ((core_tx_stats_id) * IRO[16].m1)) -#define CORE_LL2_PSTORM_PER_QUEUE_STAT_SIZE (IRO[16].size) -/* Mstorm queue statistics */ -#define MSTORM_QUEUE_STAT_OFFSET(stat_counter_id) \ - (IRO[17].base + ((stat_counter_id) * IRO[17].m1)) -#define MSTORM_QUEUE_STAT_SIZE (IRO[17].size) -/* Mstorm producers */ -#define MSTORM_PRODS_OFFSET(queue_id) (IRO[18].base + ((queue_id) * IRO[18].m1)) -#define MSTORM_PRODS_SIZE (IRO[18].size) -/* TPA agregation timeout in us resolution (on ASIC) */ -#define MSTORM_TPA_TIMEOUT_US_OFFSET (IRO[19].base) -#define MSTORM_TPA_TIMEOUT_US_SIZE (IRO[19].size) -/* Ustorm queue statistics */ -#define USTORM_QUEUE_STAT_OFFSET(stat_counter_id) \ - (IRO[20].base + ((stat_counter_id) * IRO[20].m1)) -#define USTORM_QUEUE_STAT_SIZE (IRO[20].size) -/* Ustorm queue zone */ -#define USTORM_ETH_QUEUE_ZONE_OFFSET(queue_id) \ - (IRO[21].base + ((queue_id) * IRO[21].m1)) -#define USTORM_ETH_QUEUE_ZONE_SIZE (IRO[21].size) -/* Pstorm queue statistics */ -#define PSTORM_QUEUE_STAT_OFFSET(stat_counter_id) \ - (IRO[22].base + ((stat_counter_id) * IRO[22].m1)) -#define PSTORM_QUEUE_STAT_SIZE (IRO[22].size) -/* Tstorm last parser message */ -#define TSTORM_ETH_PRS_INPUT_OFFSET (IRO[23].base) -#define TSTORM_ETH_PRS_INPUT_SIZE (IRO[23].size) -/* Tstorm Eth limit Rx rate */ -#define ETH_RX_RATE_LIMIT_OFFSET(pf_id) (IRO[24].base + ((pf_id) * IRO[24].m1)) -#define ETH_RX_RATE_LIMIT_SIZE (IRO[24].size) -/* Ystorm queue zone */ -#define YSTORM_ETH_QUEUE_ZONE_OFFSET(queue_id) \ - (IRO[25].base + ((queue_id) * IRO[25].m1)) -#define YSTORM_ETH_QUEUE_ZONE_SIZE (IRO[25].size) -/* Ystorm cqe producer */ -#define YSTORM_TOE_CQ_PROD_OFFSET(rss_id) \ - (IRO[26].base + ((rss_id) * IRO[26].m1)) -#define YSTORM_TOE_CQ_PROD_SIZE (IRO[26].size) -/* Ustorm cqe producer */ -#define USTORM_TOE_CQ_PROD_OFFSET(rss_id) \ - (IRO[27].base + ((rss_id) * IRO[27].m1)) -#define USTORM_TOE_CQ_PROD_SIZE (IRO[27].size) -/* Ustorm grq producer */ -#define USTORM_TOE_GRQ_PROD_OFFSET(pf_id) \ - (IRO[28].base + ((pf_id) * IRO[28].m1)) -#define USTORM_TOE_GRQ_PROD_SIZE (IRO[28].size) -/* Tstorm cmdq-cons of given command queue-id */ -#define TSTORM_SCSI_CMDQ_CONS_OFFSET(cmdq_queue_id) \ - (IRO[29].base + ((cmdq_queue_id) * IRO[29].m1)) -#define TSTORM_SCSI_CMDQ_CONS_SIZE (IRO[29].size) -/* Mstorm rq-cons of given queue-id */ -#define MSTORM_SCSI_RQ_CONS_OFFSET(rq_queue_id) \ - (IRO[30].base + ((rq_queue_id) * IRO[30].m1)) -#define MSTORM_SCSI_RQ_CONS_SIZE (IRO[30].size) -/* Mstorm bdq-external-producer of given BDQ function ID, BDqueue-id */ -#define MSTORM_SCSI_BDQ_EXT_PROD_OFFSET(func_id, bdq_id) \ - (IRO[31].base + ((func_id) * IRO[31].m1) + ((bdq_id) * IRO[31].m2)) -#define MSTORM_SCSI_BDQ_EXT_PROD_SIZE (IRO[31].size) -/* Tstorm (reflects M-Storm) bdq-external-producer of given fn ID, BDqueue-id */ -#define TSTORM_SCSI_BDQ_EXT_PROD_OFFSET(func_id, bdq_id) \ - (IRO[32].base + ((func_id) * IRO[32].m1) + ((bdq_id) * IRO[32].m2)) -#define TSTORM_SCSI_BDQ_EXT_PROD_SIZE (IRO[32].size) -/* Tstorm iSCSI RX stats */ -#define TSTORM_ISCSI_RX_STATS_OFFSET(pf_id) \ - (IRO[33].base + ((pf_id) * IRO[33].m1)) -#define TSTORM_ISCSI_RX_STATS_SIZE (IRO[33].size) -/* Mstorm iSCSI RX stats */ -#define MSTORM_ISCSI_RX_STATS_OFFSET(pf_id) \ - (IRO[34].base + ((pf_id) * IRO[34].m1)) -#define MSTORM_ISCSI_RX_STATS_SIZE (IRO[34].size) -/* Ustorm iSCSI RX stats */ -#define USTORM_ISCSI_RX_STATS_OFFSET(pf_id) \ - (IRO[35].base + ((pf_id) * IRO[35].m1)) -#define USTORM_ISCSI_RX_STATS_SIZE (IRO[35].size) -/* Xstorm iSCSI TX stats */ -#define XSTORM_ISCSI_TX_STATS_OFFSET(pf_id) \ - (IRO[36].base + ((pf_id) * IRO[36].m1)) -#define XSTORM_ISCSI_TX_STATS_SIZE (IRO[36].size) -/* Ystorm iSCSI TX stats */ -#define YSTORM_ISCSI_TX_STATS_OFFSET(pf_id) \ - (IRO[37].base + ((pf_id) * IRO[37].m1)) -#define YSTORM_ISCSI_TX_STATS_SIZE (IRO[37].size) -/* Pstorm iSCSI TX stats */ -#define PSTORM_ISCSI_TX_STATS_OFFSET(pf_id) \ - (IRO[38].base + ((pf_id) * IRO[38].m1)) -#define PSTORM_ISCSI_TX_STATS_SIZE (IRO[38].size) -/* Tstorm FCoE RX stats */ -#define TSTORM_FCOE_RX_STATS_OFFSET(pf_id) \ - (IRO[39].base + ((pf_id) * IRO[39].m1)) -#define TSTORM_FCOE_RX_STATS_SIZE (IRO[39].size) -/* Mstorm FCoE RX stats */ -#define MSTORM_FCOE_RX_STATS_OFFSET(pf_id) \ - (IRO[40].base + ((pf_id) * IRO[40].m1)) -#define MSTORM_FCOE_RX_STATS_SIZE (IRO[40].size) -/* Pstorm FCoE TX stats */ -#define PSTORM_FCOE_TX_STATS_OFFSET(pf_id) \ - (IRO[41].base + ((pf_id) * IRO[41].m1)) -#define PSTORM_FCOE_TX_STATS_SIZE (IRO[41].size) -/* Pstorm RoCE statistics */ -#define PSTORM_ROCE_STAT_OFFSET(stat_counter_id) \ - (IRO[42].base + ((stat_counter_id) * IRO[42].m1)) -#define PSTORM_ROCE_STAT_SIZE (IRO[42].size) -/* Tstorm RoCE statistics */ -#define TSTORM_ROCE_STAT_OFFSET(stat_counter_id) \ - (IRO[43].base + ((stat_counter_id) * IRO[43].m1)) -#define TSTORM_ROCE_STAT_SIZE (IRO[43].size) - -static const struct iro iro_arr[44] = { - { 0x10, 0x0, 0x0, 0x0, 0x8 }, - { 0x47c8, 0x60, 0x0, 0x0, 0x60 }, - { 0x5e30, 0x20, 0x0, 0x0, 0x20 }, - { 0x510, 0x8, 0x0, 0x0, 0x4 }, - { 0x490, 0x8, 0x0, 0x0, 0x4 }, - { 0x10, 0x8, 0x0, 0x0, 0x2 }, - { 0x90, 0x8, 0x0, 0x0, 0x2 }, - { 0x4940, 0x0, 0x0, 0x0, 0x78 }, - { 0x3de0, 0x0, 0x0, 0x0, 0x78 }, - { 0x2998, 0x0, 0x0, 0x0, 0x78 }, - { 0x4750, 0x0, 0x0, 0x0, 0x78 }, - { 0x56d0, 0x0, 0x0, 0x0, 0x78 }, - { 0x7e50, 0x0, 0x0, 0x0, 0x78 }, - { 0x100, 0x8, 0x0, 0x0, 0x8 }, - { 0x5c10, 0x10, 0x0, 0x0, 0x10 }, - { 0xb508, 0x30, 0x0, 0x0, 0x30 }, - { 0x95c0, 0x30, 0x0, 0x0, 0x30 }, - { 0x58a0, 0x40, 0x0, 0x0, 0x40 }, - { 0x200, 0x10, 0x0, 0x0, 0x8 }, - { 0xa230, 0x0, 0x0, 0x0, 0x4 }, - { 0x8058, 0x40, 0x0, 0x0, 0x30 }, - { 0xd00, 0x8, 0x0, 0x0, 0x8 }, - { 0x2b30, 0x80, 0x0, 0x0, 0x38 }, - { 0xa808, 0x0, 0x0, 0x0, 0xf0 }, - { 0xa8f8, 0x8, 0x0, 0x0, 0x8 }, - { 0x80, 0x8, 0x0, 0x0, 0x8 }, - { 0xac0, 0x8, 0x0, 0x0, 0x8 }, - { 0x2580, 0x8, 0x0, 0x0, 0x8 }, - { 0x2500, 0x8, 0x0, 0x0, 0x8 }, - { 0x440, 0x8, 0x0, 0x0, 0x2 }, - { 0x1800, 0x8, 0x0, 0x0, 0x2 }, - { 0x1a00, 0x10, 0x8, 0x0, 0x2 }, - { 0x640, 0x10, 0x8, 0x0, 0x2 }, - { 0xd9b8, 0x38, 0x0, 0x0, 0x24 }, - { 0x11048, 0x10, 0x0, 0x0, 0x8 }, - { 0x11678, 0x38, 0x0, 0x0, 0x18 }, - { 0xaec0, 0x30, 0x0, 0x0, 0x10 }, - { 0x8700, 0x28, 0x0, 0x0, 0x18 }, - { 0xec00, 0x10, 0x0, 0x0, 0x10 }, - { 0xde38, 0x40, 0x0, 0x0, 0x30 }, - { 0x121a8, 0x38, 0x0, 0x0, 0x8 }, - { 0xf068, 0x20, 0x0, 0x0, 0x20 }, - { 0x2b68, 0x80, 0x0, 0x0, 0x10 }, - { 0x4ab8, 0x10, 0x0, 0x0, 0x10 }, +/** + * @brief qed_set_gre_enable - enable or disable GRE tunnel in HW + * + * @param p_ptt - ptt window used for writing the registers. + * @param eth_geneve_enable - eth GENEVE enable enable flag. + * @param ip_geneve_enable - IP GENEVE enable enable flag. + */ +void qed_set_geneve_enable(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + bool eth_geneve_enable, bool ip_geneve_enable); + +#define YSTORM_FLOW_CONTROL_MODE_OFFSET (IRO[0].base) +#define YSTORM_FLOW_CONTROL_MODE_SIZE (IRO[0].size) +#define TSTORM_PORT_STAT_OFFSET(port_id) \ + (IRO[1].base + ((port_id) * IRO[1].m1)) +#define TSTORM_PORT_STAT_SIZE (IRO[1].size) +#define USTORM_VF_PF_CHANNEL_READY_OFFSET(vf_id) \ + (IRO[3].base + ((vf_id) * IRO[3].m1)) +#define USTORM_VF_PF_CHANNEL_READY_SIZE (IRO[3].size) +#define USTORM_FLR_FINAL_ACK_OFFSET(pf_id) \ + (IRO[4].base + (pf_id) * IRO[4].m1) +#define USTORM_FLR_FINAL_ACK_SIZE (IRO[4].size) +#define USTORM_EQE_CONS_OFFSET(pf_id) \ + (IRO[5].base + ((pf_id) * IRO[5].m1)) +#define USTORM_EQE_CONS_SIZE (IRO[5].size) +#define USTORM_ETH_QUEUE_ZONE_OFFSET(queue_zone_id) \ + (IRO[6].base + ((queue_zone_id) * IRO[6].m1)) +#define USTORM_ETH_QUEUE_ZONE_SIZE (IRO[6].size) +#define USTORM_COMMON_QUEUE_CONS_OFFSET(queue_zone_id) \ + (IRO[7].base + ((queue_zone_id) * IRO[7].m1)) +#define USTORM_COMMON_QUEUE_CONS_SIZE (IRO[7].size) +#define MSTORM_QUEUE_STAT_OFFSET(stat_counter_id) \ + (IRO[18].base + ((stat_counter_id) * IRO[18].m1)) +#define MSTORM_QUEUE_STAT_SIZE (IRO[18].size) +#define MSTORM_ETH_PF_PRODS_OFFSET(queue_id) \ + (IRO[19].base + ((queue_id) * IRO[19].m1)) +#define MSTORM_ETH_PF_PRODS_SIZE (IRO[19].size) +#define MSTORM_TPA_TIMEOUT_US_OFFSET (IRO[20].base) +#define MSTORM_TPA_TIMEOUT_US_SIZE (IRO[20].size) +#define MSTORM_ETH_PF_STAT_OFFSET(pf_id) \ + (IRO[21].base + ((pf_id) * IRO[21].m1)) +#define MSTORM_ETH_PF_STAT_SIZE (IRO[21].size) +#define USTORM_QUEUE_STAT_OFFSET(stat_counter_id) \ + (IRO[22].base + ((stat_counter_id) * IRO[22].m1)) +#define USTORM_QUEUE_STAT_SIZE (IRO[22].size) +#define USTORM_ETH_PF_STAT_OFFSET(pf_id) \ + (IRO[23].base + ((pf_id) * IRO[23].m1)) +#define USTORM_ETH_PF_STAT_SIZE (IRO[23].size) +#define PSTORM_QUEUE_STAT_OFFSET(stat_counter_id) \ + (IRO[24].base + ((stat_counter_id) * IRO[24].m1)) +#define PSTORM_QUEUE_STAT_SIZE (IRO[24].size) +#define PSTORM_ETH_PF_STAT_OFFSET(pf_id) \ + (IRO[25].base + ((pf_id) * IRO[25].m1)) +#define PSTORM_ETH_PF_STAT_SIZE (IRO[25].size) +#define PSTORM_CTL_FRAME_ETHTYPE_OFFSET(ethtype) \ + (IRO[26].base + ((ethtype) * IRO[26].m1)) +#define PSTORM_CTL_FRAME_ETHTYPE_SIZE (IRO[26].size) +#define TSTORM_ETH_PRS_INPUT_OFFSET (IRO[27].base) +#define TSTORM_ETH_PRS_INPUT_SIZE (IRO[27].size) +#define ETH_RX_RATE_LIMIT_OFFSET(pf_id) \ + (IRO[28].base + ((pf_id) * IRO[28].m1)) +#define ETH_RX_RATE_LIMIT_SIZE (IRO[28].size) +#define XSTORM_ETH_QUEUE_ZONE_OFFSET(queue_id) \ + (IRO[29].base + ((queue_id) * IRO[29].m1)) +#define XSTORM_ETH_QUEUE_ZONE_SIZE (IRO[29].size) + +static const struct iro iro_arr[46] = { + {0x0, 0x0, 0x0, 0x0, 0x8}, + {0x4cb0, 0x78, 0x0, 0x0, 0x78}, + {0x6318, 0x20, 0x0, 0x0, 0x20}, + {0xb00, 0x8, 0x0, 0x0, 0x4}, + {0xa80, 0x8, 0x0, 0x0, 0x4}, + {0x0, 0x8, 0x0, 0x0, 0x2}, + {0x80, 0x8, 0x0, 0x0, 0x4}, + {0x84, 0x8, 0x0, 0x0, 0x2}, + {0x4bc0, 0x0, 0x0, 0x0, 0x78}, + {0x3df0, 0x0, 0x0, 0x0, 0x78}, + {0x29b0, 0x0, 0x0, 0x0, 0x78}, + {0x4c38, 0x0, 0x0, 0x0, 0x78}, + {0x4a48, 0x0, 0x0, 0x0, 0x78}, + {0x7e48, 0x0, 0x0, 0x0, 0x78}, + {0xa28, 0x8, 0x0, 0x0, 0x8}, + {0x60f8, 0x10, 0x0, 0x0, 0x10}, + {0xb820, 0x30, 0x0, 0x0, 0x30}, + {0x95b8, 0x30, 0x0, 0x0, 0x30}, + {0x4c18, 0x80, 0x0, 0x0, 0x40}, + {0x1f8, 0x4, 0x0, 0x0, 0x4}, + {0xc9a8, 0x0, 0x0, 0x0, 0x4}, + {0x4c58, 0x80, 0x0, 0x0, 0x20}, + {0x8050, 0x40, 0x0, 0x0, 0x30}, + {0xe770, 0x60, 0x0, 0x0, 0x60}, + {0x2b48, 0x80, 0x0, 0x0, 0x38}, + {0xdf88, 0x78, 0x0, 0x0, 0x78}, + {0x1f8, 0x4, 0x0, 0x0, 0x4}, + {0xacf0, 0x0, 0x0, 0x0, 0xf0}, + {0xade0, 0x8, 0x0, 0x0, 0x8}, + {0x1f8, 0x8, 0x0, 0x0, 0x8}, + {0xac0, 0x8, 0x0, 0x0, 0x8}, + {0x2578, 0x8, 0x0, 0x0, 0x8}, + {0x24f8, 0x8, 0x0, 0x0, 0x8}, + {0x0, 0x8, 0x0, 0x0, 0x8}, + {0x200, 0x10, 0x8, 0x0, 0x8}, + {0xb78, 0x10, 0x8, 0x0, 0x2}, + {0xd888, 0x38, 0x0, 0x0, 0x24}, + {0x12120, 0x10, 0x0, 0x0, 0x8}, + {0x11b20, 0x38, 0x0, 0x0, 0x18}, + {0xa8c0, 0x30, 0x0, 0x0, 0x10}, + {0x86f8, 0x28, 0x0, 0x0, 0x18}, + {0xeff8, 0x10, 0x0, 0x0, 0x10}, + {0xdd08, 0x48, 0x0, 0x0, 0x38}, + {0xf460, 0x20, 0x0, 0x0, 0x20}, + {0x2b80, 0x80, 0x0, 0x0, 0x10}, + {0x5000, 0x10, 0x0, 0x0, 0x10}, }; /* Runtime array offsets */ -#define DORQ_REG_PF_MAX_ICID_0_RT_OFFSET 0 -#define DORQ_REG_PF_MAX_ICID_1_RT_OFFSET 1 -#define DORQ_REG_PF_MAX_ICID_2_RT_OFFSET 2 -#define DORQ_REG_PF_MAX_ICID_3_RT_OFFSET 3 -#define DORQ_REG_PF_MAX_ICID_4_RT_OFFSET 4 -#define DORQ_REG_PF_MAX_ICID_5_RT_OFFSET 5 -#define DORQ_REG_PF_MAX_ICID_6_RT_OFFSET 6 -#define DORQ_REG_PF_MAX_ICID_7_RT_OFFSET 7 -#define DORQ_REG_VF_MAX_ICID_0_RT_OFFSET 8 -#define DORQ_REG_VF_MAX_ICID_1_RT_OFFSET 9 -#define DORQ_REG_VF_MAX_ICID_2_RT_OFFSET 10 -#define DORQ_REG_VF_MAX_ICID_3_RT_OFFSET 11 -#define DORQ_REG_VF_MAX_ICID_4_RT_OFFSET 12 -#define DORQ_REG_VF_MAX_ICID_5_RT_OFFSET 13 -#define DORQ_REG_VF_MAX_ICID_6_RT_OFFSET 14 -#define DORQ_REG_VF_MAX_ICID_7_RT_OFFSET 15 -#define DORQ_REG_PF_WAKE_ALL_RT_OFFSET 16 -#define DORQ_REG_TAG1_ETHERTYPE_RT_OFFSET 17 -#define IGU_REG_PF_CONFIGURATION_RT_OFFSET 18 -#define IGU_REG_VF_CONFIGURATION_RT_OFFSET 19 -#define IGU_REG_ATTN_MSG_ADDR_L_RT_OFFSET 20 -#define IGU_REG_ATTN_MSG_ADDR_H_RT_OFFSET 21 -#define IGU_REG_LEADING_EDGE_LATCH_RT_OFFSET 22 -#define IGU_REG_TRAILING_EDGE_LATCH_RT_OFFSET 23 -#define CAU_REG_CQE_AGG_UNIT_SIZE_RT_OFFSET 24 -#define CAU_REG_SB_VAR_MEMORY_RT_OFFSET 761 -#define CAU_REG_SB_VAR_MEMORY_RT_SIZE 736 -#define CAU_REG_SB_VAR_MEMORY_RT_OFFSET 761 -#define CAU_REG_SB_VAR_MEMORY_RT_SIZE 736 -#define CAU_REG_SB_ADDR_MEMORY_RT_OFFSET 1497 -#define CAU_REG_SB_ADDR_MEMORY_RT_SIZE 736 -#define CAU_REG_PI_MEMORY_RT_OFFSET 2233 -#define CAU_REG_PI_MEMORY_RT_SIZE 4416 -#define PRS_REG_SEARCH_RESP_INITIATOR_TYPE_RT_OFFSET 6649 -#define PRS_REG_TASK_ID_MAX_INITIATOR_PF_RT_OFFSET 6650 -#define PRS_REG_TASK_ID_MAX_INITIATOR_VF_RT_OFFSET 6651 -#define PRS_REG_TASK_ID_MAX_TARGET_PF_RT_OFFSET 6652 -#define PRS_REG_TASK_ID_MAX_TARGET_VF_RT_OFFSET 6653 -#define PRS_REG_SEARCH_TCP_RT_OFFSET 6654 -#define PRS_REG_SEARCH_FCOE_RT_OFFSET 6655 -#define PRS_REG_SEARCH_ROCE_RT_OFFSET 6656 -#define PRS_REG_ROCE_DEST_QP_MAX_VF_RT_OFFSET 6657 -#define PRS_REG_ROCE_DEST_QP_MAX_PF_RT_OFFSET 6658 -#define PRS_REG_SEARCH_OPENFLOW_RT_OFFSET 6659 -#define PRS_REG_SEARCH_NON_IP_AS_OPENFLOW_RT_OFFSET 6660 -#define PRS_REG_OPENFLOW_SUPPORT_ONLY_KNOWN_OVER_IP_RT_OFFSET 6661 -#define PRS_REG_OPENFLOW_SEARCH_KEY_MASK_RT_OFFSET 6662 -#define PRS_REG_TAG_ETHERTYPE_0_RT_OFFSET 6663 -#define PRS_REG_LIGHT_L2_ETHERTYPE_EN_RT_OFFSET 6664 -#define SRC_REG_FIRSTFREE_RT_OFFSET 6665 -#define SRC_REG_FIRSTFREE_RT_SIZE 2 -#define SRC_REG_LASTFREE_RT_OFFSET 6667 -#define SRC_REG_LASTFREE_RT_SIZE 2 -#define SRC_REG_COUNTFREE_RT_OFFSET 6669 -#define SRC_REG_NUMBER_HASH_BITS_RT_OFFSET 6670 -#define PSWRQ2_REG_CDUT_P_SIZE_RT_OFFSET 6671 -#define PSWRQ2_REG_CDUC_P_SIZE_RT_OFFSET 6672 -#define PSWRQ2_REG_TM_P_SIZE_RT_OFFSET 6673 -#define PSWRQ2_REG_QM_P_SIZE_RT_OFFSET 6674 -#define PSWRQ2_REG_SRC_P_SIZE_RT_OFFSET 6675 -#define PSWRQ2_REG_TM_FIRST_ILT_RT_OFFSET 6676 -#define PSWRQ2_REG_TM_LAST_ILT_RT_OFFSET 6677 -#define PSWRQ2_REG_QM_FIRST_ILT_RT_OFFSET 6678 -#define PSWRQ2_REG_QM_LAST_ILT_RT_OFFSET 6679 -#define PSWRQ2_REG_SRC_FIRST_ILT_RT_OFFSET 6680 -#define PSWRQ2_REG_SRC_LAST_ILT_RT_OFFSET 6681 -#define PSWRQ2_REG_CDUC_FIRST_ILT_RT_OFFSET 6682 -#define PSWRQ2_REG_CDUC_LAST_ILT_RT_OFFSET 6683 -#define PSWRQ2_REG_CDUT_FIRST_ILT_RT_OFFSET 6684 -#define PSWRQ2_REG_CDUT_LAST_ILT_RT_OFFSET 6685 -#define PSWRQ2_REG_TSDM_FIRST_ILT_RT_OFFSET 6686 -#define PSWRQ2_REG_TSDM_LAST_ILT_RT_OFFSET 6687 -#define PSWRQ2_REG_TM_NUMBER_OF_PF_BLOCKS_RT_OFFSET 6688 -#define PSWRQ2_REG_CDUT_NUMBER_OF_PF_BLOCKS_RT_OFFSET 6689 -#define PSWRQ2_REG_CDUC_NUMBER_OF_PF_BLOCKS_RT_OFFSET 6690 -#define PSWRQ2_REG_TM_VF_BLOCKS_RT_OFFSET 6691 -#define PSWRQ2_REG_CDUT_VF_BLOCKS_RT_OFFSET 6692 -#define PSWRQ2_REG_CDUC_VF_BLOCKS_RT_OFFSET 6693 -#define PSWRQ2_REG_TM_BLOCKS_FACTOR_RT_OFFSET 6694 -#define PSWRQ2_REG_CDUT_BLOCKS_FACTOR_RT_OFFSET 6695 -#define PSWRQ2_REG_CDUC_BLOCKS_FACTOR_RT_OFFSET 6696 -#define PSWRQ2_REG_VF_BASE_RT_OFFSET 6697 -#define PSWRQ2_REG_VF_LAST_ILT_RT_OFFSET 6698 -#define PSWRQ2_REG_WR_MBS0_RT_OFFSET 6699 -#define PSWRQ2_REG_RD_MBS0_RT_OFFSET 6700 -#define PSWRQ2_REG_DRAM_ALIGN_WR_RT_OFFSET 6701 -#define PSWRQ2_REG_DRAM_ALIGN_RD_RT_OFFSET 6702 -#define PSWRQ2_REG_ILT_MEMORY_RT_OFFSET 6703 -#define PSWRQ2_REG_ILT_MEMORY_RT_SIZE 22000 -#define PGLUE_REG_B_VF_BASE_RT_OFFSET 28703 -#define PGLUE_REG_B_CACHE_LINE_SIZE_RT_OFFSET 28704 -#define PGLUE_REG_B_PF_BAR0_SIZE_RT_OFFSET 28705 -#define PGLUE_REG_B_PF_BAR1_SIZE_RT_OFFSET 28706 -#define PGLUE_REG_B_VF_BAR1_SIZE_RT_OFFSET 28707 -#define TM_REG_VF_ENABLE_CONN_RT_OFFSET 28708 -#define TM_REG_PF_ENABLE_CONN_RT_OFFSET 28709 -#define TM_REG_PF_ENABLE_TASK_RT_OFFSET 28710 -#define TM_REG_GROUP_SIZE_RESOLUTION_CONN_RT_OFFSET 28711 -#define TM_REG_GROUP_SIZE_RESOLUTION_TASK_RT_OFFSET 28712 -#define TM_REG_CONFIG_CONN_MEM_RT_OFFSET 28713 -#define TM_REG_CONFIG_CONN_MEM_RT_SIZE 416 -#define TM_REG_CONFIG_TASK_MEM_RT_OFFSET 29129 -#define TM_REG_CONFIG_TASK_MEM_RT_SIZE 512 -#define QM_REG_MAXPQSIZE_0_RT_OFFSET 29641 -#define QM_REG_MAXPQSIZE_1_RT_OFFSET 29642 -#define QM_REG_MAXPQSIZE_2_RT_OFFSET 29643 -#define QM_REG_MAXPQSIZETXSEL_0_RT_OFFSET 29644 -#define QM_REG_MAXPQSIZETXSEL_1_RT_OFFSET 29645 -#define QM_REG_MAXPQSIZETXSEL_2_RT_OFFSET 29646 -#define QM_REG_MAXPQSIZETXSEL_3_RT_OFFSET 29647 -#define QM_REG_MAXPQSIZETXSEL_4_RT_OFFSET 29648 -#define QM_REG_MAXPQSIZETXSEL_5_RT_OFFSET 29649 -#define QM_REG_MAXPQSIZETXSEL_6_RT_OFFSET 29650 -#define QM_REG_MAXPQSIZETXSEL_7_RT_OFFSET 29651 -#define QM_REG_MAXPQSIZETXSEL_8_RT_OFFSET 29652 -#define QM_REG_MAXPQSIZETXSEL_9_RT_OFFSET 29653 -#define QM_REG_MAXPQSIZETXSEL_10_RT_OFFSET 29654 -#define QM_REG_MAXPQSIZETXSEL_11_RT_OFFSET 29655 -#define QM_REG_MAXPQSIZETXSEL_12_RT_OFFSET 29656 -#define QM_REG_MAXPQSIZETXSEL_13_RT_OFFSET 29657 -#define QM_REG_MAXPQSIZETXSEL_14_RT_OFFSET 29658 -#define QM_REG_MAXPQSIZETXSEL_15_RT_OFFSET 29659 -#define QM_REG_MAXPQSIZETXSEL_16_RT_OFFSET 29660 -#define QM_REG_MAXPQSIZETXSEL_17_RT_OFFSET 29661 -#define QM_REG_MAXPQSIZETXSEL_18_RT_OFFSET 29662 -#define QM_REG_MAXPQSIZETXSEL_19_RT_OFFSET 29663 -#define QM_REG_MAXPQSIZETXSEL_20_RT_OFFSET 29664 -#define QM_REG_MAXPQSIZETXSEL_21_RT_OFFSET 29665 -#define QM_REG_MAXPQSIZETXSEL_22_RT_OFFSET 29666 -#define QM_REG_MAXPQSIZETXSEL_23_RT_OFFSET 29667 -#define QM_REG_MAXPQSIZETXSEL_24_RT_OFFSET 29668 -#define QM_REG_MAXPQSIZETXSEL_25_RT_OFFSET 29669 -#define QM_REG_MAXPQSIZETXSEL_26_RT_OFFSET 29670 -#define QM_REG_MAXPQSIZETXSEL_27_RT_OFFSET 29671 -#define QM_REG_MAXPQSIZETXSEL_28_RT_OFFSET 29672 -#define QM_REG_MAXPQSIZETXSEL_29_RT_OFFSET 29673 -#define QM_REG_MAXPQSIZETXSEL_30_RT_OFFSET 29674 -#define QM_REG_MAXPQSIZETXSEL_31_RT_OFFSET 29675 -#define QM_REG_MAXPQSIZETXSEL_32_RT_OFFSET 29676 -#define QM_REG_MAXPQSIZETXSEL_33_RT_OFFSET 29677 -#define QM_REG_MAXPQSIZETXSEL_34_RT_OFFSET 29678 -#define QM_REG_MAXPQSIZETXSEL_35_RT_OFFSET 29679 -#define QM_REG_MAXPQSIZETXSEL_36_RT_OFFSET 29680 -#define QM_REG_MAXPQSIZETXSEL_37_RT_OFFSET 29681 -#define QM_REG_MAXPQSIZETXSEL_38_RT_OFFSET 29682 -#define QM_REG_MAXPQSIZETXSEL_39_RT_OFFSET 29683 -#define QM_REG_MAXPQSIZETXSEL_40_RT_OFFSET 29684 -#define QM_REG_MAXPQSIZETXSEL_41_RT_OFFSET 29685 -#define QM_REG_MAXPQSIZETXSEL_42_RT_OFFSET 29686 -#define QM_REG_MAXPQSIZETXSEL_43_RT_OFFSET 29687 -#define QM_REG_MAXPQSIZETXSEL_44_RT_OFFSET 29688 -#define QM_REG_MAXPQSIZETXSEL_45_RT_OFFSET 29689 -#define QM_REG_MAXPQSIZETXSEL_46_RT_OFFSET 29690 -#define QM_REG_MAXPQSIZETXSEL_47_RT_OFFSET 29691 -#define QM_REG_MAXPQSIZETXSEL_48_RT_OFFSET 29692 -#define QM_REG_MAXPQSIZETXSEL_49_RT_OFFSET 29693 -#define QM_REG_MAXPQSIZETXSEL_50_RT_OFFSET 29694 -#define QM_REG_MAXPQSIZETXSEL_51_RT_OFFSET 29695 -#define QM_REG_MAXPQSIZETXSEL_52_RT_OFFSET 29696 -#define QM_REG_MAXPQSIZETXSEL_53_RT_OFFSET 29697 -#define QM_REG_MAXPQSIZETXSEL_54_RT_OFFSET 29698 -#define QM_REG_MAXPQSIZETXSEL_55_RT_OFFSET 29699 -#define QM_REG_MAXPQSIZETXSEL_56_RT_OFFSET 29700 -#define QM_REG_MAXPQSIZETXSEL_57_RT_OFFSET 29701 -#define QM_REG_MAXPQSIZETXSEL_58_RT_OFFSET 29702 -#define QM_REG_MAXPQSIZETXSEL_59_RT_OFFSET 29703 -#define QM_REG_MAXPQSIZETXSEL_60_RT_OFFSET 29704 -#define QM_REG_MAXPQSIZETXSEL_61_RT_OFFSET 29705 -#define QM_REG_MAXPQSIZETXSEL_62_RT_OFFSET 29706 -#define QM_REG_MAXPQSIZETXSEL_63_RT_OFFSET 29707 -#define QM_REG_BASEADDROTHERPQ_RT_OFFSET 29708 -#define QM_REG_BASEADDROTHERPQ_RT_SIZE 128 -#define QM_REG_VOQCRDLINE_RT_OFFSET 29836 -#define QM_REG_VOQCRDLINE_RT_SIZE 20 -#define QM_REG_VOQINITCRDLINE_RT_OFFSET 29856 -#define QM_REG_VOQINITCRDLINE_RT_SIZE 20 -#define QM_REG_AFULLQMBYPTHRPFWFQ_RT_OFFSET 29876 -#define QM_REG_AFULLQMBYPTHRVPWFQ_RT_OFFSET 29877 -#define QM_REG_AFULLQMBYPTHRPFRL_RT_OFFSET 29878 -#define QM_REG_AFULLQMBYPTHRGLBLRL_RT_OFFSET 29879 -#define QM_REG_AFULLOPRTNSTCCRDMASK_RT_OFFSET 29880 -#define QM_REG_WRROTHERPQGRP_0_RT_OFFSET 29881 -#define QM_REG_WRROTHERPQGRP_1_RT_OFFSET 29882 -#define QM_REG_WRROTHERPQGRP_2_RT_OFFSET 29883 -#define QM_REG_WRROTHERPQGRP_3_RT_OFFSET 29884 -#define QM_REG_WRROTHERPQGRP_4_RT_OFFSET 29885 -#define QM_REG_WRROTHERPQGRP_5_RT_OFFSET 29886 -#define QM_REG_WRROTHERPQGRP_6_RT_OFFSET 29887 -#define QM_REG_WRROTHERPQGRP_7_RT_OFFSET 29888 -#define QM_REG_WRROTHERPQGRP_8_RT_OFFSET 29889 -#define QM_REG_WRROTHERPQGRP_9_RT_OFFSET 29890 -#define QM_REG_WRROTHERPQGRP_10_RT_OFFSET 29891 -#define QM_REG_WRROTHERPQGRP_11_RT_OFFSET 29892 -#define QM_REG_WRROTHERPQGRP_12_RT_OFFSET 29893 -#define QM_REG_WRROTHERPQGRP_13_RT_OFFSET 29894 -#define QM_REG_WRROTHERPQGRP_14_RT_OFFSET 29895 -#define QM_REG_WRROTHERPQGRP_15_RT_OFFSET 29896 -#define QM_REG_WRROTHERGRPWEIGHT_0_RT_OFFSET 29897 -#define QM_REG_WRROTHERGRPWEIGHT_1_RT_OFFSET 29898 -#define QM_REG_WRROTHERGRPWEIGHT_2_RT_OFFSET 29899 -#define QM_REG_WRROTHERGRPWEIGHT_3_RT_OFFSET 29900 -#define QM_REG_WRRTXGRPWEIGHT_0_RT_OFFSET 29901 -#define QM_REG_WRRTXGRPWEIGHT_1_RT_OFFSET 29902 -#define QM_REG_PQTX2PF_0_RT_OFFSET 29903 -#define QM_REG_PQTX2PF_1_RT_OFFSET 29904 -#define QM_REG_PQTX2PF_2_RT_OFFSET 29905 -#define QM_REG_PQTX2PF_3_RT_OFFSET 29906 -#define QM_REG_PQTX2PF_4_RT_OFFSET 29907 -#define QM_REG_PQTX2PF_5_RT_OFFSET 29908 -#define QM_REG_PQTX2PF_6_RT_OFFSET 29909 -#define QM_REG_PQTX2PF_7_RT_OFFSET 29910 -#define QM_REG_PQTX2PF_8_RT_OFFSET 29911 -#define QM_REG_PQTX2PF_9_RT_OFFSET 29912 -#define QM_REG_PQTX2PF_10_RT_OFFSET 29913 -#define QM_REG_PQTX2PF_11_RT_OFFSET 29914 -#define QM_REG_PQTX2PF_12_RT_OFFSET 29915 -#define QM_REG_PQTX2PF_13_RT_OFFSET 29916 -#define QM_REG_PQTX2PF_14_RT_OFFSET 29917 -#define QM_REG_PQTX2PF_15_RT_OFFSET 29918 -#define QM_REG_PQTX2PF_16_RT_OFFSET 29919 -#define QM_REG_PQTX2PF_17_RT_OFFSET 29920 -#define QM_REG_PQTX2PF_18_RT_OFFSET 29921 -#define QM_REG_PQTX2PF_19_RT_OFFSET 29922 -#define QM_REG_PQTX2PF_20_RT_OFFSET 29923 -#define QM_REG_PQTX2PF_21_RT_OFFSET 29924 -#define QM_REG_PQTX2PF_22_RT_OFFSET 29925 -#define QM_REG_PQTX2PF_23_RT_OFFSET 29926 -#define QM_REG_PQTX2PF_24_RT_OFFSET 29927 -#define QM_REG_PQTX2PF_25_RT_OFFSET 29928 -#define QM_REG_PQTX2PF_26_RT_OFFSET 29929 -#define QM_REG_PQTX2PF_27_RT_OFFSET 29930 -#define QM_REG_PQTX2PF_28_RT_OFFSET 29931 -#define QM_REG_PQTX2PF_29_RT_OFFSET 29932 -#define QM_REG_PQTX2PF_30_RT_OFFSET 29933 -#define QM_REG_PQTX2PF_31_RT_OFFSET 29934 -#define QM_REG_PQTX2PF_32_RT_OFFSET 29935 -#define QM_REG_PQTX2PF_33_RT_OFFSET 29936 -#define QM_REG_PQTX2PF_34_RT_OFFSET 29937 -#define QM_REG_PQTX2PF_35_RT_OFFSET 29938 -#define QM_REG_PQTX2PF_36_RT_OFFSET 29939 -#define QM_REG_PQTX2PF_37_RT_OFFSET 29940 -#define QM_REG_PQTX2PF_38_RT_OFFSET 29941 -#define QM_REG_PQTX2PF_39_RT_OFFSET 29942 -#define QM_REG_PQTX2PF_40_RT_OFFSET 29943 -#define QM_REG_PQTX2PF_41_RT_OFFSET 29944 -#define QM_REG_PQTX2PF_42_RT_OFFSET 29945 -#define QM_REG_PQTX2PF_43_RT_OFFSET 29946 -#define QM_REG_PQTX2PF_44_RT_OFFSET 29947 -#define QM_REG_PQTX2PF_45_RT_OFFSET 29948 -#define QM_REG_PQTX2PF_46_RT_OFFSET 29949 -#define QM_REG_PQTX2PF_47_RT_OFFSET 29950 -#define QM_REG_PQTX2PF_48_RT_OFFSET 29951 -#define QM_REG_PQTX2PF_49_RT_OFFSET 29952 -#define QM_REG_PQTX2PF_50_RT_OFFSET 29953 -#define QM_REG_PQTX2PF_51_RT_OFFSET 29954 -#define QM_REG_PQTX2PF_52_RT_OFFSET 29955 -#define QM_REG_PQTX2PF_53_RT_OFFSET 29956 -#define QM_REG_PQTX2PF_54_RT_OFFSET 29957 -#define QM_REG_PQTX2PF_55_RT_OFFSET 29958 -#define QM_REG_PQTX2PF_56_RT_OFFSET 29959 -#define QM_REG_PQTX2PF_57_RT_OFFSET 29960 -#define QM_REG_PQTX2PF_58_RT_OFFSET 29961 -#define QM_REG_PQTX2PF_59_RT_OFFSET 29962 -#define QM_REG_PQTX2PF_60_RT_OFFSET 29963 -#define QM_REG_PQTX2PF_61_RT_OFFSET 29964 -#define QM_REG_PQTX2PF_62_RT_OFFSET 29965 -#define QM_REG_PQTX2PF_63_RT_OFFSET 29966 -#define QM_REG_PQOTHER2PF_0_RT_OFFSET 29967 -#define QM_REG_PQOTHER2PF_1_RT_OFFSET 29968 -#define QM_REG_PQOTHER2PF_2_RT_OFFSET 29969 -#define QM_REG_PQOTHER2PF_3_RT_OFFSET 29970 -#define QM_REG_PQOTHER2PF_4_RT_OFFSET 29971 -#define QM_REG_PQOTHER2PF_5_RT_OFFSET 29972 -#define QM_REG_PQOTHER2PF_6_RT_OFFSET 29973 -#define QM_REG_PQOTHER2PF_7_RT_OFFSET 29974 -#define QM_REG_PQOTHER2PF_8_RT_OFFSET 29975 -#define QM_REG_PQOTHER2PF_9_RT_OFFSET 29976 -#define QM_REG_PQOTHER2PF_10_RT_OFFSET 29977 -#define QM_REG_PQOTHER2PF_11_RT_OFFSET 29978 -#define QM_REG_PQOTHER2PF_12_RT_OFFSET 29979 -#define QM_REG_PQOTHER2PF_13_RT_OFFSET 29980 -#define QM_REG_PQOTHER2PF_14_RT_OFFSET 29981 -#define QM_REG_PQOTHER2PF_15_RT_OFFSET 29982 -#define QM_REG_RLGLBLPERIOD_0_RT_OFFSET 29983 -#define QM_REG_RLGLBLPERIOD_1_RT_OFFSET 29984 -#define QM_REG_RLGLBLPERIODTIMER_0_RT_OFFSET 29985 -#define QM_REG_RLGLBLPERIODTIMER_1_RT_OFFSET 29986 -#define QM_REG_RLGLBLPERIODSEL_0_RT_OFFSET 29987 -#define QM_REG_RLGLBLPERIODSEL_1_RT_OFFSET 29988 -#define QM_REG_RLGLBLPERIODSEL_2_RT_OFFSET 29989 -#define QM_REG_RLGLBLPERIODSEL_3_RT_OFFSET 29990 -#define QM_REG_RLGLBLPERIODSEL_4_RT_OFFSET 29991 -#define QM_REG_RLGLBLPERIODSEL_5_RT_OFFSET 29992 -#define QM_REG_RLGLBLPERIODSEL_6_RT_OFFSET 29993 -#define QM_REG_RLGLBLPERIODSEL_7_RT_OFFSET 29994 -#define QM_REG_RLGLBLINCVAL_RT_OFFSET 29995 -#define QM_REG_RLGLBLINCVAL_RT_SIZE 256 -#define QM_REG_RLGLBLUPPERBOUND_RT_OFFSET 30251 -#define QM_REG_RLGLBLUPPERBOUND_RT_SIZE 256 -#define QM_REG_RLGLBLCRD_RT_OFFSET 30507 -#define QM_REG_RLGLBLCRD_RT_SIZE 256 -#define QM_REG_RLGLBLENABLE_RT_OFFSET 30763 -#define QM_REG_RLPFPERIOD_RT_OFFSET 30764 -#define QM_REG_RLPFPERIODTIMER_RT_OFFSET 30765 -#define QM_REG_RLPFINCVAL_RT_OFFSET 30766 -#define QM_REG_RLPFINCVAL_RT_SIZE 16 -#define QM_REG_RLPFUPPERBOUND_RT_OFFSET 30782 -#define QM_REG_RLPFUPPERBOUND_RT_SIZE 16 -#define QM_REG_RLPFCRD_RT_OFFSET 30798 -#define QM_REG_RLPFCRD_RT_SIZE 16 -#define QM_REG_RLPFENABLE_RT_OFFSET 30814 -#define QM_REG_RLPFVOQENABLE_RT_OFFSET 30815 -#define QM_REG_WFQPFWEIGHT_RT_OFFSET 30816 -#define QM_REG_WFQPFWEIGHT_RT_SIZE 16 -#define QM_REG_WFQPFUPPERBOUND_RT_OFFSET 30832 -#define QM_REG_WFQPFUPPERBOUND_RT_SIZE 16 -#define QM_REG_WFQPFCRD_RT_OFFSET 30848 -#define QM_REG_WFQPFCRD_RT_SIZE 160 -#define QM_REG_WFQPFENABLE_RT_OFFSET 31008 -#define QM_REG_WFQVPENABLE_RT_OFFSET 31009 -#define QM_REG_BASEADDRTXPQ_RT_OFFSET 31010 -#define QM_REG_BASEADDRTXPQ_RT_SIZE 512 -#define QM_REG_TXPQMAP_RT_OFFSET 31522 -#define QM_REG_TXPQMAP_RT_SIZE 512 -#define QM_REG_WFQVPWEIGHT_RT_OFFSET 32034 -#define QM_REG_WFQVPWEIGHT_RT_SIZE 512 -#define QM_REG_WFQVPCRD_RT_OFFSET 32546 -#define QM_REG_WFQVPCRD_RT_SIZE 512 -#define QM_REG_WFQVPMAP_RT_OFFSET 33058 -#define QM_REG_WFQVPMAP_RT_SIZE 512 -#define QM_REG_WFQPFCRD_MSB_RT_OFFSET 33570 -#define QM_REG_WFQPFCRD_MSB_RT_SIZE 160 -#define NIG_REG_TAG_ETHERTYPE_0_RT_OFFSET 33730 -#define NIG_REG_OUTER_TAG_VALUE_LIST0_RT_OFFSET 33731 -#define NIG_REG_OUTER_TAG_VALUE_LIST1_RT_OFFSET 33732 -#define NIG_REG_OUTER_TAG_VALUE_LIST2_RT_OFFSET 33733 -#define NIG_REG_OUTER_TAG_VALUE_LIST3_RT_OFFSET 33734 -#define NIG_REG_OUTER_TAG_VALUE_MASK_RT_OFFSET 33735 -#define NIG_REG_LLH_FUNC_TAGMAC_CLS_TYPE_RT_OFFSET 33736 -#define NIG_REG_LLH_FUNC_TAG_EN_RT_OFFSET 33737 -#define NIG_REG_LLH_FUNC_TAG_EN_RT_SIZE 4 -#define NIG_REG_LLH_FUNC_TAG_HDR_SEL_RT_OFFSET 33741 -#define NIG_REG_LLH_FUNC_TAG_HDR_SEL_RT_SIZE 4 -#define NIG_REG_LLH_FUNC_TAG_VALUE_RT_OFFSET 33745 -#define NIG_REG_LLH_FUNC_TAG_VALUE_RT_SIZE 4 -#define NIG_REG_LLH_FUNC_NO_TAG_RT_OFFSET 33749 -#define NIG_REG_LLH_FUNC_FILTER_VALUE_RT_OFFSET 33750 -#define NIG_REG_LLH_FUNC_FILTER_VALUE_RT_SIZE 32 -#define NIG_REG_LLH_FUNC_FILTER_EN_RT_OFFSET 33782 -#define NIG_REG_LLH_FUNC_FILTER_EN_RT_SIZE 16 -#define NIG_REG_LLH_FUNC_FILTER_MODE_RT_OFFSET 33798 -#define NIG_REG_LLH_FUNC_FILTER_MODE_RT_SIZE 16 -#define NIG_REG_LLH_FUNC_FILTER_PROTOCOL_TYPE_RT_OFFSET 33814 -#define NIG_REG_LLH_FUNC_FILTER_PROTOCOL_TYPE_RT_SIZE 16 -#define NIG_REG_LLH_FUNC_FILTER_HDR_SEL_RT_OFFSET 33830 -#define NIG_REG_LLH_FUNC_FILTER_HDR_SEL_RT_SIZE 16 -#define NIG_REG_TX_EDPM_CTRL_RT_OFFSET 33846 -#define CDU_REG_CID_ADDR_PARAMS_RT_OFFSET 33847 -#define CDU_REG_SEGMENT0_PARAMS_RT_OFFSET 33848 -#define CDU_REG_SEGMENT1_PARAMS_RT_OFFSET 33849 -#define CDU_REG_PF_SEG0_TYPE_OFFSET_RT_OFFSET 33850 -#define CDU_REG_PF_SEG1_TYPE_OFFSET_RT_OFFSET 33851 -#define CDU_REG_PF_SEG2_TYPE_OFFSET_RT_OFFSET 33852 -#define CDU_REG_PF_SEG3_TYPE_OFFSET_RT_OFFSET 33853 -#define CDU_REG_PF_FL_SEG0_TYPE_OFFSET_RT_OFFSET 33854 -#define CDU_REG_PF_FL_SEG1_TYPE_OFFSET_RT_OFFSET 33855 -#define CDU_REG_PF_FL_SEG2_TYPE_OFFSET_RT_OFFSET 33856 -#define CDU_REG_PF_FL_SEG3_TYPE_OFFSET_RT_OFFSET 33857 -#define CDU_REG_VF_SEG_TYPE_OFFSET_RT_OFFSET 33858 -#define CDU_REG_VF_FL_SEG_TYPE_OFFSET_RT_OFFSET 33859 -#define PBF_REG_TAG_ETHERTYPE_0_RT_OFFSET 33860 -#define PBF_REG_BTB_SHARED_AREA_SIZE_RT_OFFSET 33861 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ0_RT_OFFSET 33862 -#define PBF_REG_BTB_GUARANTEED_VOQ0_RT_OFFSET 33863 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ0_RT_OFFSET 33864 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ1_RT_OFFSET 33865 -#define PBF_REG_BTB_GUARANTEED_VOQ1_RT_OFFSET 33866 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ1_RT_OFFSET 33867 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ2_RT_OFFSET 33868 -#define PBF_REG_BTB_GUARANTEED_VOQ2_RT_OFFSET 33869 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ2_RT_OFFSET 33870 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ3_RT_OFFSET 33871 -#define PBF_REG_BTB_GUARANTEED_VOQ3_RT_OFFSET 33872 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ3_RT_OFFSET 33873 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ4_RT_OFFSET 33874 -#define PBF_REG_BTB_GUARANTEED_VOQ4_RT_OFFSET 33875 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ4_RT_OFFSET 33876 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ5_RT_OFFSET 33877 -#define PBF_REG_BTB_GUARANTEED_VOQ5_RT_OFFSET 33878 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ5_RT_OFFSET 33879 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ6_RT_OFFSET 33880 -#define PBF_REG_BTB_GUARANTEED_VOQ6_RT_OFFSET 33881 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ6_RT_OFFSET 33882 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ7_RT_OFFSET 33883 -#define PBF_REG_BTB_GUARANTEED_VOQ7_RT_OFFSET 33884 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ7_RT_OFFSET 33885 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ8_RT_OFFSET 33886 -#define PBF_REG_BTB_GUARANTEED_VOQ8_RT_OFFSET 33887 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ8_RT_OFFSET 33888 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ9_RT_OFFSET 33889 -#define PBF_REG_BTB_GUARANTEED_VOQ9_RT_OFFSET 33890 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ9_RT_OFFSET 33891 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ10_RT_OFFSET 33892 -#define PBF_REG_BTB_GUARANTEED_VOQ10_RT_OFFSET 33893 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ10_RT_OFFSET 33894 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ11_RT_OFFSET 33895 -#define PBF_REG_BTB_GUARANTEED_VOQ11_RT_OFFSET 33896 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ11_RT_OFFSET 33897 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ12_RT_OFFSET 33898 -#define PBF_REG_BTB_GUARANTEED_VOQ12_RT_OFFSET 33899 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ12_RT_OFFSET 33900 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ13_RT_OFFSET 33901 -#define PBF_REG_BTB_GUARANTEED_VOQ13_RT_OFFSET 33902 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ13_RT_OFFSET 33903 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ14_RT_OFFSET 33904 -#define PBF_REG_BTB_GUARANTEED_VOQ14_RT_OFFSET 33905 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ14_RT_OFFSET 33906 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ15_RT_OFFSET 33907 -#define PBF_REG_BTB_GUARANTEED_VOQ15_RT_OFFSET 33908 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ15_RT_OFFSET 33909 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ16_RT_OFFSET 33910 -#define PBF_REG_BTB_GUARANTEED_VOQ16_RT_OFFSET 33911 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ16_RT_OFFSET 33912 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ17_RT_OFFSET 33913 -#define PBF_REG_BTB_GUARANTEED_VOQ17_RT_OFFSET 33914 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ17_RT_OFFSET 33915 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ18_RT_OFFSET 33916 -#define PBF_REG_BTB_GUARANTEED_VOQ18_RT_OFFSET 33917 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ18_RT_OFFSET 33918 -#define PBF_REG_YCMD_QS_NUM_LINES_VOQ19_RT_OFFSET 33919 -#define PBF_REG_BTB_GUARANTEED_VOQ19_RT_OFFSET 33920 -#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ19_RT_OFFSET 33921 -#define XCM_REG_CON_PHY_Q3_RT_OFFSET 33922 - -#define RUNTIME_ARRAY_SIZE 33923 +#define DORQ_REG_PF_MAX_ICID_0_RT_OFFSET 0 +#define DORQ_REG_PF_MAX_ICID_1_RT_OFFSET 1 +#define DORQ_REG_PF_MAX_ICID_2_RT_OFFSET 2 +#define DORQ_REG_PF_MAX_ICID_3_RT_OFFSET 3 +#define DORQ_REG_PF_MAX_ICID_4_RT_OFFSET 4 +#define DORQ_REG_PF_MAX_ICID_5_RT_OFFSET 5 +#define DORQ_REG_PF_MAX_ICID_6_RT_OFFSET 6 +#define DORQ_REG_PF_MAX_ICID_7_RT_OFFSET 7 +#define DORQ_REG_VF_MAX_ICID_0_RT_OFFSET 8 +#define DORQ_REG_VF_MAX_ICID_1_RT_OFFSET 9 +#define DORQ_REG_VF_MAX_ICID_2_RT_OFFSET 10 +#define DORQ_REG_VF_MAX_ICID_3_RT_OFFSET 11 +#define DORQ_REG_VF_MAX_ICID_4_RT_OFFSET 12 +#define DORQ_REG_VF_MAX_ICID_5_RT_OFFSET 13 +#define DORQ_REG_VF_MAX_ICID_6_RT_OFFSET 14 +#define DORQ_REG_VF_MAX_ICID_7_RT_OFFSET 15 +#define DORQ_REG_PF_WAKE_ALL_RT_OFFSET 16 +#define DORQ_REG_TAG1_ETHERTYPE_RT_OFFSET 17 +#define IGU_REG_PF_CONFIGURATION_RT_OFFSET 18 +#define IGU_REG_VF_CONFIGURATION_RT_OFFSET 19 +#define IGU_REG_ATTN_MSG_ADDR_L_RT_OFFSET 20 +#define IGU_REG_ATTN_MSG_ADDR_H_RT_OFFSET 21 +#define IGU_REG_LEADING_EDGE_LATCH_RT_OFFSET 22 +#define IGU_REG_TRAILING_EDGE_LATCH_RT_OFFSET 23 +#define CAU_REG_CQE_AGG_UNIT_SIZE_RT_OFFSET 24 +#define CAU_REG_SB_VAR_MEMORY_RT_OFFSET 761 +#define CAU_REG_SB_VAR_MEMORY_RT_SIZE 736 +#define CAU_REG_SB_VAR_MEMORY_RT_OFFSET 761 +#define CAU_REG_SB_VAR_MEMORY_RT_SIZE 736 +#define CAU_REG_SB_ADDR_MEMORY_RT_OFFSET 1497 +#define CAU_REG_SB_ADDR_MEMORY_RT_SIZE 736 +#define CAU_REG_PI_MEMORY_RT_OFFSET 2233 +#define CAU_REG_PI_MEMORY_RT_SIZE 4416 +#define PRS_REG_SEARCH_RESP_INITIATOR_TYPE_RT_OFFSET 6649 +#define PRS_REG_TASK_ID_MAX_INITIATOR_PF_RT_OFFSET 6650 +#define PRS_REG_TASK_ID_MAX_INITIATOR_VF_RT_OFFSET 6651 +#define PRS_REG_TASK_ID_MAX_TARGET_PF_RT_OFFSET 6652 +#define PRS_REG_TASK_ID_MAX_TARGET_VF_RT_OFFSET 6653 +#define PRS_REG_SEARCH_TCP_RT_OFFSET 6654 +#define PRS_REG_SEARCH_FCOE_RT_OFFSET 6655 +#define PRS_REG_SEARCH_ROCE_RT_OFFSET 6656 +#define PRS_REG_ROCE_DEST_QP_MAX_VF_RT_OFFSET 6657 +#define PRS_REG_ROCE_DEST_QP_MAX_PF_RT_OFFSET 6658 +#define PRS_REG_SEARCH_OPENFLOW_RT_OFFSET 6659 +#define PRS_REG_SEARCH_NON_IP_AS_OPENFLOW_RT_OFFSET 6660 +#define PRS_REG_OPENFLOW_SUPPORT_ONLY_KNOWN_OVER_IP_RT_OFFSET 6661 +#define PRS_REG_OPENFLOW_SEARCH_KEY_MASK_RT_OFFSET 6662 +#define PRS_REG_TAG_ETHERTYPE_0_RT_OFFSET 6663 +#define PRS_REG_LIGHT_L2_ETHERTYPE_EN_RT_OFFSET 6664 +#define SRC_REG_FIRSTFREE_RT_OFFSET 6665 +#define SRC_REG_FIRSTFREE_RT_SIZE 2 +#define SRC_REG_LASTFREE_RT_OFFSET 6667 +#define SRC_REG_LASTFREE_RT_SIZE 2 +#define SRC_REG_COUNTFREE_RT_OFFSET 6669 +#define SRC_REG_NUMBER_HASH_BITS_RT_OFFSET 6670 +#define PSWRQ2_REG_CDUT_P_SIZE_RT_OFFSET 6671 +#define PSWRQ2_REG_CDUC_P_SIZE_RT_OFFSET 6672 +#define PSWRQ2_REG_TM_P_SIZE_RT_OFFSET 6673 +#define PSWRQ2_REG_QM_P_SIZE_RT_OFFSET 6674 +#define PSWRQ2_REG_SRC_P_SIZE_RT_OFFSET 6675 +#define PSWRQ2_REG_TSDM_P_SIZE_RT_OFFSET 6676 +#define PSWRQ2_REG_TM_FIRST_ILT_RT_OFFSET 6677 +#define PSWRQ2_REG_TM_LAST_ILT_RT_OFFSET 6678 +#define PSWRQ2_REG_QM_FIRST_ILT_RT_OFFSET 6679 +#define PSWRQ2_REG_QM_LAST_ILT_RT_OFFSET 6680 +#define PSWRQ2_REG_SRC_FIRST_ILT_RT_OFFSET 6681 +#define PSWRQ2_REG_SRC_LAST_ILT_RT_OFFSET 6682 +#define PSWRQ2_REG_CDUC_FIRST_ILT_RT_OFFSET 6683 +#define PSWRQ2_REG_CDUC_LAST_ILT_RT_OFFSET 6684 +#define PSWRQ2_REG_CDUT_FIRST_ILT_RT_OFFSET 6685 +#define PSWRQ2_REG_CDUT_LAST_ILT_RT_OFFSET 6686 +#define PSWRQ2_REG_TSDM_FIRST_ILT_RT_OFFSET 6687 +#define PSWRQ2_REG_TSDM_LAST_ILT_RT_OFFSET 6688 +#define PSWRQ2_REG_TM_NUMBER_OF_PF_BLOCKS_RT_OFFSET 6689 +#define PSWRQ2_REG_CDUT_NUMBER_OF_PF_BLOCKS_RT_OFFSET 6690 +#define PSWRQ2_REG_CDUC_NUMBER_OF_PF_BLOCKS_RT_OFFSET 6691 +#define PSWRQ2_REG_TM_VF_BLOCKS_RT_OFFSET 6692 +#define PSWRQ2_REG_CDUT_VF_BLOCKS_RT_OFFSET 6693 +#define PSWRQ2_REG_CDUC_VF_BLOCKS_RT_OFFSET 6694 +#define PSWRQ2_REG_TM_BLOCKS_FACTOR_RT_OFFSET 6695 +#define PSWRQ2_REG_CDUT_BLOCKS_FACTOR_RT_OFFSET 6696 +#define PSWRQ2_REG_CDUC_BLOCKS_FACTOR_RT_OFFSET 6697 +#define PSWRQ2_REG_VF_BASE_RT_OFFSET 6698 +#define PSWRQ2_REG_VF_LAST_ILT_RT_OFFSET 6699 +#define PSWRQ2_REG_WR_MBS0_RT_OFFSET 6700 +#define PSWRQ2_REG_RD_MBS0_RT_OFFSET 6701 +#define PSWRQ2_REG_DRAM_ALIGN_WR_RT_OFFSET 6702 +#define PSWRQ2_REG_DRAM_ALIGN_RD_RT_OFFSET 6703 +#define PSWRQ2_REG_ILT_MEMORY_RT_OFFSET 6704 +#define PSWRQ2_REG_ILT_MEMORY_RT_SIZE 22000 +#define PGLUE_REG_B_VF_BASE_RT_OFFSET 28704 +#define PGLUE_REG_B_CACHE_LINE_SIZE_RT_OFFSET 28705 +#define PGLUE_REG_B_PF_BAR0_SIZE_RT_OFFSET 28706 +#define PGLUE_REG_B_PF_BAR1_SIZE_RT_OFFSET 28707 +#define PGLUE_REG_B_VF_BAR1_SIZE_RT_OFFSET 28708 +#define TM_REG_VF_ENABLE_CONN_RT_OFFSET 28709 +#define TM_REG_PF_ENABLE_CONN_RT_OFFSET 28710 +#define TM_REG_PF_ENABLE_TASK_RT_OFFSET 28711 +#define TM_REG_GROUP_SIZE_RESOLUTION_CONN_RT_OFFSET 28712 +#define TM_REG_GROUP_SIZE_RESOLUTION_TASK_RT_OFFSET 28713 +#define TM_REG_CONFIG_CONN_MEM_RT_OFFSET 28714 +#define TM_REG_CONFIG_CONN_MEM_RT_SIZE 416 +#define TM_REG_CONFIG_TASK_MEM_RT_OFFSET 29130 +#define TM_REG_CONFIG_TASK_MEM_RT_SIZE 512 +#define QM_REG_MAXPQSIZE_0_RT_OFFSET 29642 +#define QM_REG_MAXPQSIZE_1_RT_OFFSET 29643 +#define QM_REG_MAXPQSIZE_2_RT_OFFSET 29644 +#define QM_REG_MAXPQSIZETXSEL_0_RT_OFFSET 29645 +#define QM_REG_MAXPQSIZETXSEL_1_RT_OFFSET 29646 +#define QM_REG_MAXPQSIZETXSEL_2_RT_OFFSET 29647 +#define QM_REG_MAXPQSIZETXSEL_3_RT_OFFSET 29648 +#define QM_REG_MAXPQSIZETXSEL_4_RT_OFFSET 29649 +#define QM_REG_MAXPQSIZETXSEL_5_RT_OFFSET 29650 +#define QM_REG_MAXPQSIZETXSEL_6_RT_OFFSET 29651 +#define QM_REG_MAXPQSIZETXSEL_7_RT_OFFSET 29652 +#define QM_REG_MAXPQSIZETXSEL_8_RT_OFFSET 29653 +#define QM_REG_MAXPQSIZETXSEL_9_RT_OFFSET 29654 +#define QM_REG_MAXPQSIZETXSEL_10_RT_OFFSET 29655 +#define QM_REG_MAXPQSIZETXSEL_11_RT_OFFSET 29656 +#define QM_REG_MAXPQSIZETXSEL_12_RT_OFFSET 29657 +#define QM_REG_MAXPQSIZETXSEL_13_RT_OFFSET 29658 +#define QM_REG_MAXPQSIZETXSEL_14_RT_OFFSET 29659 +#define QM_REG_MAXPQSIZETXSEL_15_RT_OFFSET 29660 +#define QM_REG_MAXPQSIZETXSEL_16_RT_OFFSET 29661 +#define QM_REG_MAXPQSIZETXSEL_17_RT_OFFSET 29662 +#define QM_REG_MAXPQSIZETXSEL_18_RT_OFFSET 29663 +#define QM_REG_MAXPQSIZETXSEL_19_RT_OFFSET 29664 +#define QM_REG_MAXPQSIZETXSEL_20_RT_OFFSET 29665 +#define QM_REG_MAXPQSIZETXSEL_21_RT_OFFSET 29666 +#define QM_REG_MAXPQSIZETXSEL_22_RT_OFFSET 29667 +#define QM_REG_MAXPQSIZETXSEL_23_RT_OFFSET 29668 +#define QM_REG_MAXPQSIZETXSEL_24_RT_OFFSET 29669 +#define QM_REG_MAXPQSIZETXSEL_25_RT_OFFSET 29670 +#define QM_REG_MAXPQSIZETXSEL_26_RT_OFFSET 29671 +#define QM_REG_MAXPQSIZETXSEL_27_RT_OFFSET 29672 +#define QM_REG_MAXPQSIZETXSEL_28_RT_OFFSET 29673 +#define QM_REG_MAXPQSIZETXSEL_29_RT_OFFSET 29674 +#define QM_REG_MAXPQSIZETXSEL_30_RT_OFFSET 29675 +#define QM_REG_MAXPQSIZETXSEL_31_RT_OFFSET 29676 +#define QM_REG_MAXPQSIZETXSEL_32_RT_OFFSET 29677 +#define QM_REG_MAXPQSIZETXSEL_33_RT_OFFSET 29678 +#define QM_REG_MAXPQSIZETXSEL_34_RT_OFFSET 29679 +#define QM_REG_MAXPQSIZETXSEL_35_RT_OFFSET 29680 +#define QM_REG_MAXPQSIZETXSEL_36_RT_OFFSET 29681 +#define QM_REG_MAXPQSIZETXSEL_37_RT_OFFSET 29682 +#define QM_REG_MAXPQSIZETXSEL_38_RT_OFFSET 29683 +#define QM_REG_MAXPQSIZETXSEL_39_RT_OFFSET 29684 +#define QM_REG_MAXPQSIZETXSEL_40_RT_OFFSET 29685 +#define QM_REG_MAXPQSIZETXSEL_41_RT_OFFSET 29686 +#define QM_REG_MAXPQSIZETXSEL_42_RT_OFFSET 29687 +#define QM_REG_MAXPQSIZETXSEL_43_RT_OFFSET 29688 +#define QM_REG_MAXPQSIZETXSEL_44_RT_OFFSET 29689 +#define QM_REG_MAXPQSIZETXSEL_45_RT_OFFSET 29690 +#define QM_REG_MAXPQSIZETXSEL_46_RT_OFFSET 29691 +#define QM_REG_MAXPQSIZETXSEL_47_RT_OFFSET 29692 +#define QM_REG_MAXPQSIZETXSEL_48_RT_OFFSET 29693 +#define QM_REG_MAXPQSIZETXSEL_49_RT_OFFSET 29694 +#define QM_REG_MAXPQSIZETXSEL_50_RT_OFFSET 29695 +#define QM_REG_MAXPQSIZETXSEL_51_RT_OFFSET 29696 +#define QM_REG_MAXPQSIZETXSEL_52_RT_OFFSET 29697 +#define QM_REG_MAXPQSIZETXSEL_53_RT_OFFSET 29698 +#define QM_REG_MAXPQSIZETXSEL_54_RT_OFFSET 29699 +#define QM_REG_MAXPQSIZETXSEL_55_RT_OFFSET 29700 +#define QM_REG_MAXPQSIZETXSEL_56_RT_OFFSET 29701 +#define QM_REG_MAXPQSIZETXSEL_57_RT_OFFSET 29702 +#define QM_REG_MAXPQSIZETXSEL_58_RT_OFFSET 29703 +#define QM_REG_MAXPQSIZETXSEL_59_RT_OFFSET 29704 +#define QM_REG_MAXPQSIZETXSEL_60_RT_OFFSET 29705 +#define QM_REG_MAXPQSIZETXSEL_61_RT_OFFSET 29706 +#define QM_REG_MAXPQSIZETXSEL_62_RT_OFFSET 29707 +#define QM_REG_MAXPQSIZETXSEL_63_RT_OFFSET 29708 +#define QM_REG_BASEADDROTHERPQ_RT_OFFSET 29709 +#define QM_REG_BASEADDROTHERPQ_RT_SIZE 128 +#define QM_REG_VOQCRDLINE_RT_OFFSET 29837 +#define QM_REG_VOQCRDLINE_RT_SIZE 20 +#define QM_REG_VOQINITCRDLINE_RT_OFFSET 29857 +#define QM_REG_VOQINITCRDLINE_RT_SIZE 20 +#define QM_REG_AFULLQMBYPTHRPFWFQ_RT_OFFSET 29877 +#define QM_REG_AFULLQMBYPTHRVPWFQ_RT_OFFSET 29878 +#define QM_REG_AFULLQMBYPTHRPFRL_RT_OFFSET 29879 +#define QM_REG_AFULLQMBYPTHRGLBLRL_RT_OFFSET 29880 +#define QM_REG_AFULLOPRTNSTCCRDMASK_RT_OFFSET 29881 +#define QM_REG_WRROTHERPQGRP_0_RT_OFFSET 29882 +#define QM_REG_WRROTHERPQGRP_1_RT_OFFSET 29883 +#define QM_REG_WRROTHERPQGRP_2_RT_OFFSET 29884 +#define QM_REG_WRROTHERPQGRP_3_RT_OFFSET 29885 +#define QM_REG_WRROTHERPQGRP_4_RT_OFFSET 29886 +#define QM_REG_WRROTHERPQGRP_5_RT_OFFSET 29887 +#define QM_REG_WRROTHERPQGRP_6_RT_OFFSET 29888 +#define QM_REG_WRROTHERPQGRP_7_RT_OFFSET 29889 +#define QM_REG_WRROTHERPQGRP_8_RT_OFFSET 29890 +#define QM_REG_WRROTHERPQGRP_9_RT_OFFSET 29891 +#define QM_REG_WRROTHERPQGRP_10_RT_OFFSET 29892 +#define QM_REG_WRROTHERPQGRP_11_RT_OFFSET 29893 +#define QM_REG_WRROTHERPQGRP_12_RT_OFFSET 29894 +#define QM_REG_WRROTHERPQGRP_13_RT_OFFSET 29895 +#define QM_REG_WRROTHERPQGRP_14_RT_OFFSET 29896 +#define QM_REG_WRROTHERPQGRP_15_RT_OFFSET 29897 +#define QM_REG_WRROTHERGRPWEIGHT_0_RT_OFFSET 29898 +#define QM_REG_WRROTHERGRPWEIGHT_1_RT_OFFSET 29899 +#define QM_REG_WRROTHERGRPWEIGHT_2_RT_OFFSET 29900 +#define QM_REG_WRROTHERGRPWEIGHT_3_RT_OFFSET 29901 +#define QM_REG_WRRTXGRPWEIGHT_0_RT_OFFSET 29902 +#define QM_REG_WRRTXGRPWEIGHT_1_RT_OFFSET 29903 +#define QM_REG_PQTX2PF_0_RT_OFFSET 29904 +#define QM_REG_PQTX2PF_1_RT_OFFSET 29905 +#define QM_REG_PQTX2PF_2_RT_OFFSET 29906 +#define QM_REG_PQTX2PF_3_RT_OFFSET 29907 +#define QM_REG_PQTX2PF_4_RT_OFFSET 29908 +#define QM_REG_PQTX2PF_5_RT_OFFSET 29909 +#define QM_REG_PQTX2PF_6_RT_OFFSET 29910 +#define QM_REG_PQTX2PF_7_RT_OFFSET 29911 +#define QM_REG_PQTX2PF_8_RT_OFFSET 29912 +#define QM_REG_PQTX2PF_9_RT_OFFSET 29913 +#define QM_REG_PQTX2PF_10_RT_OFFSET 29914 +#define QM_REG_PQTX2PF_11_RT_OFFSET 29915 +#define QM_REG_PQTX2PF_12_RT_OFFSET 29916 +#define QM_REG_PQTX2PF_13_RT_OFFSET 29917 +#define QM_REG_PQTX2PF_14_RT_OFFSET 29918 +#define QM_REG_PQTX2PF_15_RT_OFFSET 29919 +#define QM_REG_PQTX2PF_16_RT_OFFSET 29920 +#define QM_REG_PQTX2PF_17_RT_OFFSET 29921 +#define QM_REG_PQTX2PF_18_RT_OFFSET 29922 +#define QM_REG_PQTX2PF_19_RT_OFFSET 29923 +#define QM_REG_PQTX2PF_20_RT_OFFSET 29924 +#define QM_REG_PQTX2PF_21_RT_OFFSET 29925 +#define QM_REG_PQTX2PF_22_RT_OFFSET 29926 +#define QM_REG_PQTX2PF_23_RT_OFFSET 29927 +#define QM_REG_PQTX2PF_24_RT_OFFSET 29928 +#define QM_REG_PQTX2PF_25_RT_OFFSET 29929 +#define QM_REG_PQTX2PF_26_RT_OFFSET 29930 +#define QM_REG_PQTX2PF_27_RT_OFFSET 29931 +#define QM_REG_PQTX2PF_28_RT_OFFSET 29932 +#define QM_REG_PQTX2PF_29_RT_OFFSET 29933 +#define QM_REG_PQTX2PF_30_RT_OFFSET 29934 +#define QM_REG_PQTX2PF_31_RT_OFFSET 29935 +#define QM_REG_PQTX2PF_32_RT_OFFSET 29936 +#define QM_REG_PQTX2PF_33_RT_OFFSET 29937 +#define QM_REG_PQTX2PF_34_RT_OFFSET 29938 +#define QM_REG_PQTX2PF_35_RT_OFFSET 29939 +#define QM_REG_PQTX2PF_36_RT_OFFSET 29940 +#define QM_REG_PQTX2PF_37_RT_OFFSET 29941 +#define QM_REG_PQTX2PF_38_RT_OFFSET 29942 +#define QM_REG_PQTX2PF_39_RT_OFFSET 29943 +#define QM_REG_PQTX2PF_40_RT_OFFSET 29944 +#define QM_REG_PQTX2PF_41_RT_OFFSET 29945 +#define QM_REG_PQTX2PF_42_RT_OFFSET 29946 +#define QM_REG_PQTX2PF_43_RT_OFFSET 29947 +#define QM_REG_PQTX2PF_44_RT_OFFSET 29948 +#define QM_REG_PQTX2PF_45_RT_OFFSET 29949 +#define QM_REG_PQTX2PF_46_RT_OFFSET 29950 +#define QM_REG_PQTX2PF_47_RT_OFFSET 29951 +#define QM_REG_PQTX2PF_48_RT_OFFSET 29952 +#define QM_REG_PQTX2PF_49_RT_OFFSET 29953 +#define QM_REG_PQTX2PF_50_RT_OFFSET 29954 +#define QM_REG_PQTX2PF_51_RT_OFFSET 29955 +#define QM_REG_PQTX2PF_52_RT_OFFSET 29956 +#define QM_REG_PQTX2PF_53_RT_OFFSET 29957 +#define QM_REG_PQTX2PF_54_RT_OFFSET 29958 +#define QM_REG_PQTX2PF_55_RT_OFFSET 29959 +#define QM_REG_PQTX2PF_56_RT_OFFSET 29960 +#define QM_REG_PQTX2PF_57_RT_OFFSET 29961 +#define QM_REG_PQTX2PF_58_RT_OFFSET 29962 +#define QM_REG_PQTX2PF_59_RT_OFFSET 29963 +#define QM_REG_PQTX2PF_60_RT_OFFSET 29964 +#define QM_REG_PQTX2PF_61_RT_OFFSET 29965 +#define QM_REG_PQTX2PF_62_RT_OFFSET 29966 +#define QM_REG_PQTX2PF_63_RT_OFFSET 29967 +#define QM_REG_PQOTHER2PF_0_RT_OFFSET 29968 +#define QM_REG_PQOTHER2PF_1_RT_OFFSET 29969 +#define QM_REG_PQOTHER2PF_2_RT_OFFSET 29970 +#define QM_REG_PQOTHER2PF_3_RT_OFFSET 29971 +#define QM_REG_PQOTHER2PF_4_RT_OFFSET 29972 +#define QM_REG_PQOTHER2PF_5_RT_OFFSET 29973 +#define QM_REG_PQOTHER2PF_6_RT_OFFSET 29974 +#define QM_REG_PQOTHER2PF_7_RT_OFFSET 29975 +#define QM_REG_PQOTHER2PF_8_RT_OFFSET 29976 +#define QM_REG_PQOTHER2PF_9_RT_OFFSET 29977 +#define QM_REG_PQOTHER2PF_10_RT_OFFSET 29978 +#define QM_REG_PQOTHER2PF_11_RT_OFFSET 29979 +#define QM_REG_PQOTHER2PF_12_RT_OFFSET 29980 +#define QM_REG_PQOTHER2PF_13_RT_OFFSET 29981 +#define QM_REG_PQOTHER2PF_14_RT_OFFSET 29982 +#define QM_REG_PQOTHER2PF_15_RT_OFFSET 29983 +#define QM_REG_RLGLBLPERIOD_0_RT_OFFSET 29984 +#define QM_REG_RLGLBLPERIOD_1_RT_OFFSET 29985 +#define QM_REG_RLGLBLPERIODTIMER_0_RT_OFFSET 29986 +#define QM_REG_RLGLBLPERIODTIMER_1_RT_OFFSET 29987 +#define QM_REG_RLGLBLPERIODSEL_0_RT_OFFSET 29988 +#define QM_REG_RLGLBLPERIODSEL_1_RT_OFFSET 29989 +#define QM_REG_RLGLBLPERIODSEL_2_RT_OFFSET 29990 +#define QM_REG_RLGLBLPERIODSEL_3_RT_OFFSET 29991 +#define QM_REG_RLGLBLPERIODSEL_4_RT_OFFSET 29992 +#define QM_REG_RLGLBLPERIODSEL_5_RT_OFFSET 29993 +#define QM_REG_RLGLBLPERIODSEL_6_RT_OFFSET 29994 +#define QM_REG_RLGLBLPERIODSEL_7_RT_OFFSET 29995 +#define QM_REG_RLGLBLINCVAL_RT_OFFSET 29996 +#define QM_REG_RLGLBLINCVAL_RT_SIZE 256 +#define QM_REG_RLGLBLUPPERBOUND_RT_OFFSET 30252 +#define QM_REG_RLGLBLUPPERBOUND_RT_SIZE 256 +#define QM_REG_RLGLBLCRD_RT_OFFSET 30508 +#define QM_REG_RLGLBLCRD_RT_SIZE 256 +#define QM_REG_RLGLBLENABLE_RT_OFFSET 30764 +#define QM_REG_RLPFPERIOD_RT_OFFSET 30765 +#define QM_REG_RLPFPERIODTIMER_RT_OFFSET 30766 +#define QM_REG_RLPFINCVAL_RT_OFFSET 30767 +#define QM_REG_RLPFINCVAL_RT_SIZE 16 +#define QM_REG_RLPFUPPERBOUND_RT_OFFSET 30783 +#define QM_REG_RLPFUPPERBOUND_RT_SIZE 16 +#define QM_REG_RLPFCRD_RT_OFFSET 30799 +#define QM_REG_RLPFCRD_RT_SIZE 16 +#define QM_REG_RLPFENABLE_RT_OFFSET 30815 +#define QM_REG_RLPFVOQENABLE_RT_OFFSET 30816 +#define QM_REG_WFQPFWEIGHT_RT_OFFSET 30817 +#define QM_REG_WFQPFWEIGHT_RT_SIZE 16 +#define QM_REG_WFQPFUPPERBOUND_RT_OFFSET 30833 +#define QM_REG_WFQPFUPPERBOUND_RT_SIZE 16 +#define QM_REG_WFQPFCRD_RT_OFFSET 30849 +#define QM_REG_WFQPFCRD_RT_SIZE 160 +#define QM_REG_WFQPFENABLE_RT_OFFSET 31009 +#define QM_REG_WFQVPENABLE_RT_OFFSET 31010 +#define QM_REG_BASEADDRTXPQ_RT_OFFSET 31011 +#define QM_REG_BASEADDRTXPQ_RT_SIZE 512 +#define QM_REG_TXPQMAP_RT_OFFSET 31523 +#define QM_REG_TXPQMAP_RT_SIZE 512 +#define QM_REG_WFQVPWEIGHT_RT_OFFSET 32035 +#define QM_REG_WFQVPWEIGHT_RT_SIZE 512 +#define QM_REG_WFQVPCRD_RT_OFFSET 32547 +#define QM_REG_WFQVPCRD_RT_SIZE 512 +#define QM_REG_WFQVPMAP_RT_OFFSET 33059 +#define QM_REG_WFQVPMAP_RT_SIZE 512 +#define QM_REG_WFQPFCRD_MSB_RT_OFFSET 33571 +#define QM_REG_WFQPFCRD_MSB_RT_SIZE 160 +#define NIG_REG_TAG_ETHERTYPE_0_RT_OFFSET 33731 +#define NIG_REG_OUTER_TAG_VALUE_LIST0_RT_OFFSET 33732 +#define NIG_REG_OUTER_TAG_VALUE_LIST1_RT_OFFSET 33733 +#define NIG_REG_OUTER_TAG_VALUE_LIST2_RT_OFFSET 33734 +#define NIG_REG_OUTER_TAG_VALUE_LIST3_RT_OFFSET 33735 +#define NIG_REG_OUTER_TAG_VALUE_MASK_RT_OFFSET 33736 +#define NIG_REG_LLH_FUNC_TAGMAC_CLS_TYPE_RT_OFFSET 33737 +#define NIG_REG_LLH_FUNC_TAG_EN_RT_OFFSET 33738 +#define NIG_REG_LLH_FUNC_TAG_EN_RT_SIZE 4 +#define NIG_REG_LLH_FUNC_TAG_HDR_SEL_RT_OFFSET 33742 +#define NIG_REG_LLH_FUNC_TAG_HDR_SEL_RT_SIZE 4 +#define NIG_REG_LLH_FUNC_TAG_VALUE_RT_OFFSET 33746 +#define NIG_REG_LLH_FUNC_TAG_VALUE_RT_SIZE 4 +#define NIG_REG_LLH_FUNC_NO_TAG_RT_OFFSET 33750 +#define NIG_REG_LLH_FUNC_FILTER_VALUE_RT_OFFSET 33751 +#define NIG_REG_LLH_FUNC_FILTER_VALUE_RT_SIZE 32 +#define NIG_REG_LLH_FUNC_FILTER_EN_RT_OFFSET 33783 +#define NIG_REG_LLH_FUNC_FILTER_EN_RT_SIZE 16 +#define NIG_REG_LLH_FUNC_FILTER_MODE_RT_OFFSET 33799 +#define NIG_REG_LLH_FUNC_FILTER_MODE_RT_SIZE 16 +#define NIG_REG_LLH_FUNC_FILTER_PROTOCOL_TYPE_RT_OFFSET 33815 +#define NIG_REG_LLH_FUNC_FILTER_PROTOCOL_TYPE_RT_SIZE 16 +#define NIG_REG_LLH_FUNC_FILTER_HDR_SEL_RT_OFFSET 33831 +#define NIG_REG_LLH_FUNC_FILTER_HDR_SEL_RT_SIZE 16 +#define NIG_REG_TX_EDPM_CTRL_RT_OFFSET 33847 +#define NIG_REG_ROCE_DUPLICATE_TO_HOST_RT_OFFSET 33848 +#define CDU_REG_CID_ADDR_PARAMS_RT_OFFSET 33849 +#define CDU_REG_SEGMENT0_PARAMS_RT_OFFSET 33850 +#define CDU_REG_SEGMENT1_PARAMS_RT_OFFSET 33851 +#define CDU_REG_PF_SEG0_TYPE_OFFSET_RT_OFFSET 33852 +#define CDU_REG_PF_SEG1_TYPE_OFFSET_RT_OFFSET 33853 +#define CDU_REG_PF_SEG2_TYPE_OFFSET_RT_OFFSET 33854 +#define CDU_REG_PF_SEG3_TYPE_OFFSET_RT_OFFSET 33855 +#define CDU_REG_PF_FL_SEG0_TYPE_OFFSET_RT_OFFSET 33856 +#define CDU_REG_PF_FL_SEG1_TYPE_OFFSET_RT_OFFSET 33857 +#define CDU_REG_PF_FL_SEG2_TYPE_OFFSET_RT_OFFSET 33858 +#define CDU_REG_PF_FL_SEG3_TYPE_OFFSET_RT_OFFSET 33859 +#define CDU_REG_VF_SEG_TYPE_OFFSET_RT_OFFSET 33860 +#define CDU_REG_VF_FL_SEG_TYPE_OFFSET_RT_OFFSET 33861 +#define PBF_REG_TAG_ETHERTYPE_0_RT_OFFSET 33862 +#define PBF_REG_BTB_SHARED_AREA_SIZE_RT_OFFSET 33863 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ0_RT_OFFSET 33864 +#define PBF_REG_BTB_GUARANTEED_VOQ0_RT_OFFSET 33865 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ0_RT_OFFSET 33866 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ1_RT_OFFSET 33867 +#define PBF_REG_BTB_GUARANTEED_VOQ1_RT_OFFSET 33868 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ1_RT_OFFSET 33869 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ2_RT_OFFSET 33870 +#define PBF_REG_BTB_GUARANTEED_VOQ2_RT_OFFSET 33871 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ2_RT_OFFSET 33872 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ3_RT_OFFSET 33873 +#define PBF_REG_BTB_GUARANTEED_VOQ3_RT_OFFSET 33874 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ3_RT_OFFSET 33875 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ4_RT_OFFSET 33876 +#define PBF_REG_BTB_GUARANTEED_VOQ4_RT_OFFSET 33877 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ4_RT_OFFSET 33878 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ5_RT_OFFSET 33879 +#define PBF_REG_BTB_GUARANTEED_VOQ5_RT_OFFSET 33880 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ5_RT_OFFSET 33881 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ6_RT_OFFSET 33882 +#define PBF_REG_BTB_GUARANTEED_VOQ6_RT_OFFSET 33883 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ6_RT_OFFSET 33884 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ7_RT_OFFSET 33885 +#define PBF_REG_BTB_GUARANTEED_VOQ7_RT_OFFSET 33886 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ7_RT_OFFSET 33887 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ8_RT_OFFSET 33888 +#define PBF_REG_BTB_GUARANTEED_VOQ8_RT_OFFSET 33889 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ8_RT_OFFSET 33890 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ9_RT_OFFSET 33891 +#define PBF_REG_BTB_GUARANTEED_VOQ9_RT_OFFSET 33892 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ9_RT_OFFSET 33893 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ10_RT_OFFSET 33894 +#define PBF_REG_BTB_GUARANTEED_VOQ10_RT_OFFSET 33895 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ10_RT_OFFSET 33896 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ11_RT_OFFSET 33897 +#define PBF_REG_BTB_GUARANTEED_VOQ11_RT_OFFSET 33898 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ11_RT_OFFSET 33899 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ12_RT_OFFSET 33900 +#define PBF_REG_BTB_GUARANTEED_VOQ12_RT_OFFSET 33901 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ12_RT_OFFSET 33902 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ13_RT_OFFSET 33903 +#define PBF_REG_BTB_GUARANTEED_VOQ13_RT_OFFSET 33904 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ13_RT_OFFSET 33905 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ14_RT_OFFSET 33906 +#define PBF_REG_BTB_GUARANTEED_VOQ14_RT_OFFSET 33907 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ14_RT_OFFSET 33908 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ15_RT_OFFSET 33909 +#define PBF_REG_BTB_GUARANTEED_VOQ15_RT_OFFSET 33910 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ15_RT_OFFSET 33911 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ16_RT_OFFSET 33912 +#define PBF_REG_BTB_GUARANTEED_VOQ16_RT_OFFSET 33913 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ16_RT_OFFSET 33914 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ17_RT_OFFSET 33915 +#define PBF_REG_BTB_GUARANTEED_VOQ17_RT_OFFSET 33916 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ17_RT_OFFSET 33917 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ18_RT_OFFSET 33918 +#define PBF_REG_BTB_GUARANTEED_VOQ18_RT_OFFSET 33919 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ18_RT_OFFSET 33920 +#define PBF_REG_YCMD_QS_NUM_LINES_VOQ19_RT_OFFSET 33921 +#define PBF_REG_BTB_GUARANTEED_VOQ19_RT_OFFSET 33922 +#define PBF_REG_BTB_SHARED_AREA_SETUP_VOQ19_RT_OFFSET 33923 +#define XCM_REG_CON_PHY_Q3_RT_OFFSET 33924 + +#define RUNTIME_ARRAY_SIZE 33925 /* The eth storm context for the Tstorm */ struct tstorm_eth_conn_st_ctx { @@ -2266,266 +2692,266 @@ struct xstorm_eth_conn_st_ctx { }; struct xstorm_eth_conn_ag_ctx { - u8 reserved0 /* cdu_validation */; - u8 eth_state /* state */; - u8 flags0; -#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 -#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED1_MASK 0x1 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED1_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED2_MASK 0x1 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED2_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 -#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED3_MASK 0x1 /* bit4 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED3_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED4_MASK 0x1 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED4_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED5_MASK 0x1 /* bit6 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED5_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED6_MASK 0x1 /* bit7 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED6_SHIFT 7 - u8 flags1; -#define XSTORM_ETH_CONN_AG_CTX_RESERVED7_MASK 0x1 /* bit8 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED7_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED8_MASK 0x1 /* bit9 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED8_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED9_MASK 0x1 /* bit10 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED9_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_BIT11_MASK 0x1 /* bit11 */ -#define XSTORM_ETH_CONN_AG_CTX_BIT11_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_BIT12_MASK 0x1 /* bit12 */ -#define XSTORM_ETH_CONN_AG_CTX_BIT12_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_BIT13_MASK 0x1 /* bit13 */ -#define XSTORM_ETH_CONN_AG_CTX_BIT13_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_TX_RULE_ACTIVE_MASK 0x1 /* bit14 */ -#define XSTORM_ETH_CONN_AG_CTX_TX_RULE_ACTIVE_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_ACTIVE_MASK 0x1 /* bit15 */ -#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_ACTIVE_SHIFT 7 + u8 reserved0; + u8 eth_state; + u8 flags0; +#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED1_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED1_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED2_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED2_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED3_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED3_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED4_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED4_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED5_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED5_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED6_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED6_SHIFT 7 + u8 flags1; +#define XSTORM_ETH_CONN_AG_CTX_RESERVED7_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED7_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED8_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED8_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED9_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED9_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_BIT11_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_BIT11_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_BIT12_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_BIT12_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_BIT13_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_BIT13_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_TX_RULE_ACTIVE_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_TX_RULE_ACTIVE_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_ACTIVE_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_ACTIVE_SHIFT 7 u8 flags2; -#define XSTORM_ETH_CONN_AG_CTX_CF0_MASK 0x3 /* timer0cf */ -#define XSTORM_ETH_CONN_AG_CTX_CF0_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_CF1_MASK 0x3 /* timer1cf */ -#define XSTORM_ETH_CONN_AG_CTX_CF1_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 /* timer2cf */ -#define XSTORM_ETH_CONN_AG_CTX_CF2_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF3_MASK 0x3 -#define XSTORM_ETH_CONN_AG_CTX_CF3_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_CF0_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF0_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_CF1_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF1_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF2_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF3_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF3_SHIFT 6 u8 flags3; -#define XSTORM_ETH_CONN_AG_CTX_CF4_MASK 0x3 /* cf4 */ -#define XSTORM_ETH_CONN_AG_CTX_CF4_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_CF5_MASK 0x3 /* cf5 */ -#define XSTORM_ETH_CONN_AG_CTX_CF5_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_CF6_MASK 0x3 /* cf6 */ -#define XSTORM_ETH_CONN_AG_CTX_CF6_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF7_MASK 0x3 /* cf7 */ -#define XSTORM_ETH_CONN_AG_CTX_CF7_SHIFT 6 - u8 flags4; -#define XSTORM_ETH_CONN_AG_CTX_CF8_MASK 0x3 /* cf8 */ -#define XSTORM_ETH_CONN_AG_CTX_CF8_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_CF9_MASK 0x3 /* cf9 */ -#define XSTORM_ETH_CONN_AG_CTX_CF9_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_CF10_MASK 0x3 /* cf10 */ -#define XSTORM_ETH_CONN_AG_CTX_CF10_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF11_MASK 0x3 /* cf11 */ -#define XSTORM_ETH_CONN_AG_CTX_CF11_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_CF4_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF4_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_CF5_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF5_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_CF6_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF6_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF7_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF7_SHIFT 6 + u8 flags4; +#define XSTORM_ETH_CONN_AG_CTX_CF8_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF8_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_CF9_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF9_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_CF10_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF10_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF11_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF11_SHIFT 6 u8 flags5; -#define XSTORM_ETH_CONN_AG_CTX_CF12_MASK 0x3 /* cf12 */ -#define XSTORM_ETH_CONN_AG_CTX_CF12_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_CF13_MASK 0x3 /* cf13 */ -#define XSTORM_ETH_CONN_AG_CTX_CF13_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_CF14_MASK 0x3 /* cf14 */ -#define XSTORM_ETH_CONN_AG_CTX_CF14_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF15_MASK 0x3 /* cf15 */ -#define XSTORM_ETH_CONN_AG_CTX_CF15_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_CF12_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF12_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_CF13_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF13_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_CF14_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF14_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF15_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_CF15_SHIFT 6 u8 flags6; -#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_MASK 0x3 /* cf16 */ -#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_MASK 0x3 -#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_MASK 0x3 /* cf18 */ -#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_MASK 0x3 /* cf19 */ -#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_SHIFT 6 u8 flags7; -#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_MASK 0x3 /* cf20 */ -#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED10_MASK 0x3 /* cf21 */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED10_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_MASK 0x3 /* cf22 */ -#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF0EN_MASK 0x1 /* cf0en */ -#define XSTORM_ETH_CONN_AG_CTX_CF0EN_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_CF1EN_MASK 0x1 /* cf1en */ -#define XSTORM_ETH_CONN_AG_CTX_CF1EN_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED10_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED10_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF0EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF0EN_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_CF1EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF1EN_SHIFT 7 u8 flags8; -#define XSTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define XSTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_CF3EN_MASK 0x1 /* cf3en */ -#define XSTORM_ETH_CONN_AG_CTX_CF3EN_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_CF4EN_MASK 0x1 /* cf4en */ -#define XSTORM_ETH_CONN_AG_CTX_CF4EN_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_CF5EN_MASK 0x1 /* cf5en */ -#define XSTORM_ETH_CONN_AG_CTX_CF5EN_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_CF6EN_MASK 0x1 /* cf6en */ -#define XSTORM_ETH_CONN_AG_CTX_CF6EN_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF7EN_MASK 0x1 /* cf7en */ -#define XSTORM_ETH_CONN_AG_CTX_CF7EN_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_CF8EN_MASK 0x1 /* cf8en */ -#define XSTORM_ETH_CONN_AG_CTX_CF8EN_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_CF9EN_MASK 0x1 /* cf9en */ -#define XSTORM_ETH_CONN_AG_CTX_CF9EN_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_CF3EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF3EN_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_CF4EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF4EN_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_CF5EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF5EN_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_CF6EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF6EN_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF7EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF7EN_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_CF8EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF8EN_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_CF9EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF9EN_SHIFT 7 u8 flags9; -#define XSTORM_ETH_CONN_AG_CTX_CF10EN_MASK 0x1 /* cf10en */ -#define XSTORM_ETH_CONN_AG_CTX_CF10EN_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_CF11EN_MASK 0x1 /* cf11en */ -#define XSTORM_ETH_CONN_AG_CTX_CF11EN_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_CF12EN_MASK 0x1 /* cf12en */ -#define XSTORM_ETH_CONN_AG_CTX_CF12EN_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_CF13EN_MASK 0x1 /* cf13en */ -#define XSTORM_ETH_CONN_AG_CTX_CF13EN_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_CF14EN_MASK 0x1 /* cf14en */ -#define XSTORM_ETH_CONN_AG_CTX_CF14EN_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_CF15EN_MASK 0x1 /* cf15en */ -#define XSTORM_ETH_CONN_AG_CTX_CF15EN_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_EN_MASK 0x1 /* cf16en */ -#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_EN_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_EN_MASK 0x1 -#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_EN_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_CF10EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF10EN_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_CF11EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF11EN_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_CF12EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF12EN_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_CF13EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF13EN_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_CF14EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF14EN_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_CF15EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_CF15EN_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_GO_TO_BD_CONS_CF_EN_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_MULTI_UNICAST_CF_EN_SHIFT 7 u8 flags10; -#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_EN_MASK 0x1 /* cf18en */ -#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_EN_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_EN_MASK 0x1 /* cf19en */ -#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_EN_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_EN_MASK 0x1 /* cf20en */ -#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_EN_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED11_MASK 0x1 /* cf21en */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED11_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 /* cf22en */ -#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_EN_RESERVED_MASK 0x1 /* cf23en */ +#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_DQ_CF_EN_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_TERMINATE_CF_EN_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_FLUSH_Q0_EN_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED11_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED11_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_EN_RESERVED_MASK 0x1 #define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_EN_RESERVED_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED12_MASK 0x1 /* rule0en */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED12_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED13_MASK 0x1 /* rule1en */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED13_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED12_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED12_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED13_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED13_SHIFT 7 u8 flags11; -#define XSTORM_ETH_CONN_AG_CTX_RESERVED14_MASK 0x1 /* rule2en */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED14_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_RESERVED15_MASK 0x1 /* rule3en */ -#define XSTORM_ETH_CONN_AG_CTX_RESERVED15_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_TX_DEC_RULE_EN_MASK 0x1 /* rule4en */ -#define XSTORM_ETH_CONN_AG_CTX_TX_DEC_RULE_EN_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_RULE5EN_MASK 0x1 /* rule5en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE5EN_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_RULE6EN_MASK 0x1 /* rule6en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE6EN_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_RULE7EN_MASK 0x1 /* rule7en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE7EN_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 /* rule8en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_RULE9EN_MASK 0x1 /* rule9en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE9EN_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED14_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED14_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED15_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RESERVED15_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_TX_DEC_RULE_EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_TX_DEC_RULE_EN_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE5EN_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE6EN_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE7EN_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_RULE9EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE9EN_SHIFT 7 u8 flags12; -#define XSTORM_ETH_CONN_AG_CTX_RULE10EN_MASK 0x1 /* rule10en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE10EN_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_RULE11EN_MASK 0x1 /* rule11en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE11EN_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 /* rule12en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 /* rule13en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_RULE14EN_MASK 0x1 /* rule14en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE14EN_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_RULE15EN_MASK 0x1 /* rule15en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE15EN_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_RULE16EN_MASK 0x1 /* rule16en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE16EN_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_RULE17EN_MASK 0x1 /* rule17en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE17EN_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_RULE10EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE10EN_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_RULE11EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE11EN_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_RULE14EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE14EN_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_RULE15EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE15EN_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_RULE16EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE16EN_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_RULE17EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE17EN_SHIFT 7 u8 flags13; -#define XSTORM_ETH_CONN_AG_CTX_RULE18EN_MASK 0x1 /* rule18en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE18EN_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_RULE19EN_MASK 0x1 /* rule19en */ -#define XSTORM_ETH_CONN_AG_CTX_RULE19EN_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 /* rule20en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 /* rule21en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 /* rule22en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 /* rule23en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 /* rule24en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 /* rule25en */ -#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 +#define XSTORM_ETH_CONN_AG_CTX_RULE18EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE18EN_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_RULE19EN_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_RULE19EN_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 u8 flags14; -#define XSTORM_ETH_CONN_AG_CTX_EDPM_USE_EXT_HDR_MASK 0x1 /* bit16 */ -#define XSTORM_ETH_CONN_AG_CTX_EDPM_USE_EXT_HDR_SHIFT 0 -#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_RAW_L3L4_MASK 0x1 /* bit17 */ -#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_RAW_L3L4_SHIFT 1 -#define XSTORM_ETH_CONN_AG_CTX_EDPM_INBAND_PROP_HDR_MASK 0x1 /* bit18 */ -#define XSTORM_ETH_CONN_AG_CTX_EDPM_INBAND_PROP_HDR_SHIFT 2 -#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_EXT_TUNNEL_MASK 0x1 /* bit19 */ -#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_EXT_TUNNEL_SHIFT 3 -#define XSTORM_ETH_CONN_AG_CTX_L2_EDPM_ENABLE_MASK 0x1 /* bit20 */ -#define XSTORM_ETH_CONN_AG_CTX_L2_EDPM_ENABLE_SHIFT 4 -#define XSTORM_ETH_CONN_AG_CTX_ROCE_EDPM_ENABLE_MASK 0x1 /* bit21 */ -#define XSTORM_ETH_CONN_AG_CTX_ROCE_EDPM_ENABLE_SHIFT 5 -#define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_MASK 0x3 /* cf23 */ -#define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_SHIFT 6 - u8 edpm_event_id /* byte2 */; - __le16 physical_q0 /* physical_q0 */; - __le16 word1 /* physical_q1 */; - __le16 edpm_num_bds /* physical_q2 */; - __le16 tx_bd_cons /* word3 */; - __le16 tx_bd_prod /* word4 */; - __le16 go_to_bd_cons /* word5 */; - __le16 conn_dpi /* conn_dpi */; - u8 byte3 /* byte3 */; - u8 byte4 /* byte4 */; - u8 byte5 /* byte5 */; - u8 byte6 /* byte6 */; - __le32 reg0 /* reg0 */; - __le32 reg1 /* reg1 */; - __le32 reg2 /* reg2 */; - __le32 reg3 /* reg3 */; - __le32 reg4 /* reg4 */; - __le32 reg5 /* cf_array0 */; - __le32 reg6 /* cf_array1 */; - __le16 word7 /* word7 */; - __le16 word8 /* word8 */; - __le16 word9 /* word9 */; - __le16 word10 /* word10 */; - __le32 reg7 /* reg7 */; - __le32 reg8 /* reg8 */; - __le32 reg9 /* reg9 */; - u8 byte7 /* byte7 */; - u8 byte8 /* byte8 */; - u8 byte9 /* byte9 */; - u8 byte10 /* byte10 */; - u8 byte11 /* byte11 */; - u8 byte12 /* byte12 */; - u8 byte13 /* byte13 */; - u8 byte14 /* byte14 */; - u8 byte15 /* byte15 */; - u8 byte16 /* byte16 */; - __le16 word11 /* word11 */; - __le32 reg10 /* reg10 */; - __le32 reg11 /* reg11 */; - __le32 reg12 /* reg12 */; - __le32 reg13 /* reg13 */; - __le32 reg14 /* reg14 */; - __le32 reg15 /* reg15 */; - __le32 reg16 /* reg16 */; - __le32 reg17 /* reg17 */; - __le32 reg18 /* reg18 */; - __le32 reg19 /* reg19 */; - __le16 word12 /* word12 */; - __le16 word13 /* word13 */; - __le16 word14 /* word14 */; - __le16 word15 /* word15 */; +#define XSTORM_ETH_CONN_AG_CTX_EDPM_USE_EXT_HDR_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_USE_EXT_HDR_SHIFT 0 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_RAW_L3L4_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_RAW_L3L4_SHIFT 1 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_INBAND_PROP_HDR_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_INBAND_PROP_HDR_SHIFT 2 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_EXT_TUNNEL_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_EDPM_SEND_EXT_TUNNEL_SHIFT 3 +#define XSTORM_ETH_CONN_AG_CTX_L2_EDPM_ENABLE_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_L2_EDPM_ENABLE_SHIFT 4 +#define XSTORM_ETH_CONN_AG_CTX_ROCE_EDPM_ENABLE_MASK 0x1 +#define XSTORM_ETH_CONN_AG_CTX_ROCE_EDPM_ENABLE_SHIFT 5 +#define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_MASK 0x3 +#define XSTORM_ETH_CONN_AG_CTX_TPH_ENABLE_SHIFT 6 + u8 edpm_event_id; + __le16 physical_q0; + __le16 quota; + __le16 edpm_num_bds; + __le16 tx_bd_cons; + __le16 tx_bd_prod; + __le16 tx_class; + __le16 conn_dpi; + u8 byte3; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le16 word7; + __le16 word8; + __le16 word9; + __le16 word10; + __le32 reg7; + __le32 reg8; + __le32 reg9; + u8 byte7; + u8 byte8; + u8 byte9; + u8 byte10; + u8 byte11; + u8 byte12; + u8 byte13; + u8 byte14; + u8 byte15; + u8 byte16; + __le16 word11; + __le32 reg10; + __le32 reg11; + __le32 reg12; + __le32 reg13; + __le32 reg14; + __le32 reg15; + __le32 reg16; + __le32 reg17; + __le32 reg18; + __le32 reg19; + __le16 word12; + __le16 word13; + __le16 word14; + __le16 word15; }; /* The eth storm context for the Ystorm */ @@ -2534,220 +2960,220 @@ struct ystorm_eth_conn_st_ctx { }; struct ystorm_eth_conn_ag_ctx { - u8 byte0 /* cdu_validation */; - u8 byte1 /* state */; - u8 flags0; -#define YSTORM_ETH_CONN_AG_CTX_BIT0_MASK 0x1 /* exist_in_qm0 */ -#define YSTORM_ETH_CONN_AG_CTX_BIT0_SHIFT 0 -#define YSTORM_ETH_CONN_AG_CTX_BIT1_MASK 0x1 /* exist_in_qm1 */ -#define YSTORM_ETH_CONN_AG_CTX_BIT1_SHIFT 1 -#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_MASK 0x3 /* cf0 */ -#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_SHIFT 2 -#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_MASK 0x3 /* cf1 */ -#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_SHIFT 4 -#define YSTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 /* cf2 */ -#define YSTORM_ETH_CONN_AG_CTX_CF2_SHIFT 6 + u8 byte0; + u8 state; + u8 flags0; +#define YSTORM_ETH_CONN_AG_CTX_BIT0_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_BIT0_SHIFT 0 +#define YSTORM_ETH_CONN_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_BIT1_SHIFT 1 +#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_MASK 0x3 +#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_SHIFT 2 +#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_MASK 0x3 +#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_SHIFT 4 +#define YSTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 +#define YSTORM_ETH_CONN_AG_CTX_CF2_SHIFT 6 u8 flags1; -#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_MASK 0x1 /* cf0en */ -#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_SHIFT 0 -#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_EN_MASK 0x1 /* cf1en */ -#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_EN_SHIFT 1 -#define YSTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define YSTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 2 -#define YSTORM_ETH_CONN_AG_CTX_RULE0EN_MASK 0x1 /* rule0en */ -#define YSTORM_ETH_CONN_AG_CTX_RULE0EN_SHIFT 3 -#define YSTORM_ETH_CONN_AG_CTX_RULE1EN_MASK 0x1 /* rule1en */ -#define YSTORM_ETH_CONN_AG_CTX_RULE1EN_SHIFT 4 -#define YSTORM_ETH_CONN_AG_CTX_RULE2EN_MASK 0x1 /* rule2en */ -#define YSTORM_ETH_CONN_AG_CTX_RULE2EN_SHIFT 5 -#define YSTORM_ETH_CONN_AG_CTX_RULE3EN_MASK 0x1 /* rule3en */ -#define YSTORM_ETH_CONN_AG_CTX_RULE3EN_SHIFT 6 -#define YSTORM_ETH_CONN_AG_CTX_RULE4EN_MASK 0x1 /* rule4en */ -#define YSTORM_ETH_CONN_AG_CTX_RULE4EN_SHIFT 7 - u8 byte2 /* byte2 */; - u8 byte3 /* byte3 */; - __le16 word0 /* word0 */; - __le32 terminate_spqe /* reg0 */; - __le32 reg1 /* reg1 */; - __le16 tx_bd_cons_upd /* word1 */; - __le16 word2 /* word2 */; - __le16 word3 /* word3 */; - __le16 word4 /* word4 */; - __le32 reg2 /* reg2 */; - __le32 reg3 /* reg3 */; +#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_SHIFT 0 +#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_PMD_TERMINATE_CF_EN_SHIFT 1 +#define YSTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 2 +#define YSTORM_ETH_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define YSTORM_ETH_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define YSTORM_ETH_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define YSTORM_ETH_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define YSTORM_ETH_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_ETH_CONN_AG_CTX_RULE4EN_SHIFT 7 + u8 tx_q0_int_coallecing_timeset; + u8 byte3; + __le16 word0; + __le32 terminate_spqe; + __le32 reg1; + __le16 tx_bd_cons_upd; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg2; + __le32 reg3; }; struct tstorm_eth_conn_ag_ctx { - u8 byte0 /* cdu_validation */; - u8 byte1 /* state */; - u8 flags0; -#define TSTORM_ETH_CONN_AG_CTX_BIT0_MASK 0x1 /* exist_in_qm0 */ -#define TSTORM_ETH_CONN_AG_CTX_BIT0_SHIFT 0 -#define TSTORM_ETH_CONN_AG_CTX_BIT1_MASK 0x1 /* exist_in_qm1 */ -#define TSTORM_ETH_CONN_AG_CTX_BIT1_SHIFT 1 -#define TSTORM_ETH_CONN_AG_CTX_BIT2_MASK 0x1 /* bit2 */ -#define TSTORM_ETH_CONN_AG_CTX_BIT2_SHIFT 2 -#define TSTORM_ETH_CONN_AG_CTX_BIT3_MASK 0x1 /* bit3 */ -#define TSTORM_ETH_CONN_AG_CTX_BIT3_SHIFT 3 -#define TSTORM_ETH_CONN_AG_CTX_BIT4_MASK 0x1 /* bit4 */ -#define TSTORM_ETH_CONN_AG_CTX_BIT4_SHIFT 4 -#define TSTORM_ETH_CONN_AG_CTX_BIT5_MASK 0x1 /* bit5 */ -#define TSTORM_ETH_CONN_AG_CTX_BIT5_SHIFT 5 -#define TSTORM_ETH_CONN_AG_CTX_CF0_MASK 0x3 /* timer0cf */ -#define TSTORM_ETH_CONN_AG_CTX_CF0_SHIFT 6 + u8 byte0; + u8 byte1; + u8 flags0; +#define TSTORM_ETH_CONN_AG_CTX_BIT0_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_BIT0_SHIFT 0 +#define TSTORM_ETH_CONN_AG_CTX_BIT1_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_BIT1_SHIFT 1 +#define TSTORM_ETH_CONN_AG_CTX_BIT2_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_BIT2_SHIFT 2 +#define TSTORM_ETH_CONN_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_BIT3_SHIFT 3 +#define TSTORM_ETH_CONN_AG_CTX_BIT4_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_BIT4_SHIFT 4 +#define TSTORM_ETH_CONN_AG_CTX_BIT5_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_BIT5_SHIFT 5 +#define TSTORM_ETH_CONN_AG_CTX_CF0_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF0_SHIFT 6 u8 flags1; -#define TSTORM_ETH_CONN_AG_CTX_CF1_MASK 0x3 /* timer1cf */ -#define TSTORM_ETH_CONN_AG_CTX_CF1_SHIFT 0 -#define TSTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 /* timer2cf */ -#define TSTORM_ETH_CONN_AG_CTX_CF2_SHIFT 2 -#define TSTORM_ETH_CONN_AG_CTX_CF3_MASK 0x3 /* timer_stop_all */ -#define TSTORM_ETH_CONN_AG_CTX_CF3_SHIFT 4 -#define TSTORM_ETH_CONN_AG_CTX_CF4_MASK 0x3 /* cf4 */ -#define TSTORM_ETH_CONN_AG_CTX_CF4_SHIFT 6 +#define TSTORM_ETH_CONN_AG_CTX_CF1_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF1_SHIFT 0 +#define TSTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF2_SHIFT 2 +#define TSTORM_ETH_CONN_AG_CTX_CF3_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF3_SHIFT 4 +#define TSTORM_ETH_CONN_AG_CTX_CF4_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF4_SHIFT 6 u8 flags2; -#define TSTORM_ETH_CONN_AG_CTX_CF5_MASK 0x3 /* cf5 */ -#define TSTORM_ETH_CONN_AG_CTX_CF5_SHIFT 0 -#define TSTORM_ETH_CONN_AG_CTX_CF6_MASK 0x3 /* cf6 */ -#define TSTORM_ETH_CONN_AG_CTX_CF6_SHIFT 2 -#define TSTORM_ETH_CONN_AG_CTX_CF7_MASK 0x3 /* cf7 */ -#define TSTORM_ETH_CONN_AG_CTX_CF7_SHIFT 4 -#define TSTORM_ETH_CONN_AG_CTX_CF8_MASK 0x3 /* cf8 */ -#define TSTORM_ETH_CONN_AG_CTX_CF8_SHIFT 6 +#define TSTORM_ETH_CONN_AG_CTX_CF5_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF5_SHIFT 0 +#define TSTORM_ETH_CONN_AG_CTX_CF6_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF6_SHIFT 2 +#define TSTORM_ETH_CONN_AG_CTX_CF7_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF7_SHIFT 4 +#define TSTORM_ETH_CONN_AG_CTX_CF8_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF8_SHIFT 6 u8 flags3; -#define TSTORM_ETH_CONN_AG_CTX_CF9_MASK 0x3 /* cf9 */ -#define TSTORM_ETH_CONN_AG_CTX_CF9_SHIFT 0 -#define TSTORM_ETH_CONN_AG_CTX_CF10_MASK 0x3 /* cf10 */ -#define TSTORM_ETH_CONN_AG_CTX_CF10_SHIFT 2 -#define TSTORM_ETH_CONN_AG_CTX_CF0EN_MASK 0x1 /* cf0en */ -#define TSTORM_ETH_CONN_AG_CTX_CF0EN_SHIFT 4 -#define TSTORM_ETH_CONN_AG_CTX_CF1EN_MASK 0x1 /* cf1en */ -#define TSTORM_ETH_CONN_AG_CTX_CF1EN_SHIFT 5 -#define TSTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define TSTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 6 -#define TSTORM_ETH_CONN_AG_CTX_CF3EN_MASK 0x1 /* cf3en */ -#define TSTORM_ETH_CONN_AG_CTX_CF3EN_SHIFT 7 +#define TSTORM_ETH_CONN_AG_CTX_CF9_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF9_SHIFT 0 +#define TSTORM_ETH_CONN_AG_CTX_CF10_MASK 0x3 +#define TSTORM_ETH_CONN_AG_CTX_CF10_SHIFT 2 +#define TSTORM_ETH_CONN_AG_CTX_CF0EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF0EN_SHIFT 4 +#define TSTORM_ETH_CONN_AG_CTX_CF1EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF1EN_SHIFT 5 +#define TSTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 6 +#define TSTORM_ETH_CONN_AG_CTX_CF3EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF3EN_SHIFT 7 u8 flags4; -#define TSTORM_ETH_CONN_AG_CTX_CF4EN_MASK 0x1 /* cf4en */ -#define TSTORM_ETH_CONN_AG_CTX_CF4EN_SHIFT 0 -#define TSTORM_ETH_CONN_AG_CTX_CF5EN_MASK 0x1 /* cf5en */ -#define TSTORM_ETH_CONN_AG_CTX_CF5EN_SHIFT 1 -#define TSTORM_ETH_CONN_AG_CTX_CF6EN_MASK 0x1 /* cf6en */ -#define TSTORM_ETH_CONN_AG_CTX_CF6EN_SHIFT 2 -#define TSTORM_ETH_CONN_AG_CTX_CF7EN_MASK 0x1 /* cf7en */ -#define TSTORM_ETH_CONN_AG_CTX_CF7EN_SHIFT 3 -#define TSTORM_ETH_CONN_AG_CTX_CF8EN_MASK 0x1 /* cf8en */ -#define TSTORM_ETH_CONN_AG_CTX_CF8EN_SHIFT 4 -#define TSTORM_ETH_CONN_AG_CTX_CF9EN_MASK 0x1 /* cf9en */ -#define TSTORM_ETH_CONN_AG_CTX_CF9EN_SHIFT 5 -#define TSTORM_ETH_CONN_AG_CTX_CF10EN_MASK 0x1 /* cf10en */ -#define TSTORM_ETH_CONN_AG_CTX_CF10EN_SHIFT 6 -#define TSTORM_ETH_CONN_AG_CTX_RULE0EN_MASK 0x1 /* rule0en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE0EN_SHIFT 7 +#define TSTORM_ETH_CONN_AG_CTX_CF4EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF4EN_SHIFT 0 +#define TSTORM_ETH_CONN_AG_CTX_CF5EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF5EN_SHIFT 1 +#define TSTORM_ETH_CONN_AG_CTX_CF6EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF6EN_SHIFT 2 +#define TSTORM_ETH_CONN_AG_CTX_CF7EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF7EN_SHIFT 3 +#define TSTORM_ETH_CONN_AG_CTX_CF8EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF8EN_SHIFT 4 +#define TSTORM_ETH_CONN_AG_CTX_CF9EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF9EN_SHIFT 5 +#define TSTORM_ETH_CONN_AG_CTX_CF10EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_CF10EN_SHIFT 6 +#define TSTORM_ETH_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE0EN_SHIFT 7 u8 flags5; -#define TSTORM_ETH_CONN_AG_CTX_RULE1EN_MASK 0x1 /* rule1en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE1EN_SHIFT 0 -#define TSTORM_ETH_CONN_AG_CTX_RULE2EN_MASK 0x1 /* rule2en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE2EN_SHIFT 1 -#define TSTORM_ETH_CONN_AG_CTX_RULE3EN_MASK 0x1 /* rule3en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE3EN_SHIFT 2 -#define TSTORM_ETH_CONN_AG_CTX_RULE4EN_MASK 0x1 /* rule4en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE4EN_SHIFT 3 -#define TSTORM_ETH_CONN_AG_CTX_RULE5EN_MASK 0x1 /* rule5en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE5EN_SHIFT 4 -#define TSTORM_ETH_CONN_AG_CTX_RX_BD_EN_MASK 0x1 /* rule6en */ -#define TSTORM_ETH_CONN_AG_CTX_RX_BD_EN_SHIFT 5 -#define TSTORM_ETH_CONN_AG_CTX_RULE7EN_MASK 0x1 /* rule7en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE7EN_SHIFT 6 -#define TSTORM_ETH_CONN_AG_CTX_RULE8EN_MASK 0x1 /* rule8en */ -#define TSTORM_ETH_CONN_AG_CTX_RULE8EN_SHIFT 7 - __le32 reg0 /* reg0 */; - __le32 reg1 /* reg1 */; - __le32 reg2 /* reg2 */; - __le32 reg3 /* reg3 */; - __le32 reg4 /* reg4 */; - __le32 reg5 /* reg5 */; - __le32 reg6 /* reg6 */; - __le32 reg7 /* reg7 */; - __le32 reg8 /* reg8 */; - u8 byte2 /* byte2 */; - u8 byte3 /* byte3 */; - __le16 rx_bd_cons /* word0 */; - u8 byte4 /* byte4 */; - u8 byte5 /* byte5 */; - __le16 rx_bd_prod /* word1 */; - __le16 word2 /* conn_dpi */; - __le16 word3 /* word3 */; - __le32 reg9 /* reg9 */; - __le32 reg10 /* reg10 */; +#define TSTORM_ETH_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define TSTORM_ETH_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define TSTORM_ETH_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define TSTORM_ETH_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define TSTORM_ETH_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define TSTORM_ETH_CONN_AG_CTX_RX_BD_EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RX_BD_EN_SHIFT 5 +#define TSTORM_ETH_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define TSTORM_ETH_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define TSTORM_ETH_CONN_AG_CTX_RULE8EN_SHIFT 7 + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le32 reg7; + __le32 reg8; + u8 byte2; + u8 byte3; + __le16 rx_bd_cons; + u8 byte4; + u8 byte5; + __le16 rx_bd_prod; + __le16 word2; + __le16 word3; + __le32 reg9; + __le32 reg10; }; struct ustorm_eth_conn_ag_ctx { - u8 byte0 /* cdu_validation */; - u8 byte1 /* state */; - u8 flags0; -#define USTORM_ETH_CONN_AG_CTX_BIT0_MASK 0x1 /* exist_in_qm0 */ -#define USTORM_ETH_CONN_AG_CTX_BIT0_SHIFT 0 -#define USTORM_ETH_CONN_AG_CTX_BIT1_MASK 0x1 /* exist_in_qm1 */ -#define USTORM_ETH_CONN_AG_CTX_BIT1_SHIFT 1 -#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_MASK 0x3 /* timer0cf */ -#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_SHIFT 2 -#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_MASK 0x3 /* timer1cf */ -#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_SHIFT 4 -#define USTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 /* timer2cf */ -#define USTORM_ETH_CONN_AG_CTX_CF2_SHIFT 6 + u8 byte0; + u8 byte1; + u8 flags0; +#define USTORM_ETH_CONN_AG_CTX_BIT0_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_BIT0_SHIFT 0 +#define USTORM_ETH_CONN_AG_CTX_BIT1_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_BIT1_SHIFT 1 +#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_SHIFT 2 +#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_SHIFT 4 +#define USTORM_ETH_CONN_AG_CTX_CF2_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_CF2_SHIFT 6 u8 flags1; -#define USTORM_ETH_CONN_AG_CTX_CF3_MASK 0x3 /* timer_stop_all */ -#define USTORM_ETH_CONN_AG_CTX_CF3_SHIFT 0 -#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_MASK 0x3 /* cf4 */ -#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_SHIFT 2 -#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_MASK 0x3 /* cf5 */ -#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_SHIFT 4 -#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_MASK 0x3 /* cf6 */ -#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_SHIFT 6 +#define USTORM_ETH_CONN_AG_CTX_CF3_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_CF3_SHIFT 0 +#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_SHIFT 2 +#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_SHIFT 4 +#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_MASK 0x3 +#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_SHIFT 6 u8 flags2; -#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_EN_MASK 0x1 /* cf0en */ -#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_EN_SHIFT 0 -#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_EN_MASK 0x1 /* cf1en */ -#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_EN_SHIFT 1 -#define USTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 /* cf2en */ -#define USTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 2 -#define USTORM_ETH_CONN_AG_CTX_CF3EN_MASK 0x1 /* cf3en */ -#define USTORM_ETH_CONN_AG_CTX_CF3EN_SHIFT 3 -#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_EN_MASK 0x1 /* cf4en */ -#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_EN_SHIFT 4 -#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_EN_MASK 0x1 /* cf5en */ -#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_EN_SHIFT 5 -#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_MASK 0x1 /* cf6en */ -#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_SHIFT 6 -#define USTORM_ETH_CONN_AG_CTX_RULE0EN_MASK 0x1 /* rule0en */ -#define USTORM_ETH_CONN_AG_CTX_RULE0EN_SHIFT 7 +#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_TX_PMD_TERMINATE_CF_EN_SHIFT 0 +#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RX_PMD_TERMINATE_CF_EN_SHIFT 1 +#define USTORM_ETH_CONN_AG_CTX_CF2EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_CF2EN_SHIFT 2 +#define USTORM_ETH_CONN_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_TX_ARM_CF_EN_SHIFT 4 +#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RX_ARM_CF_EN_SHIFT 5 +#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_TX_BD_CONS_UPD_CF_EN_SHIFT 6 +#define USTORM_ETH_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE0EN_SHIFT 7 u8 flags3; -#define USTORM_ETH_CONN_AG_CTX_RULE1EN_MASK 0x1 /* rule1en */ -#define USTORM_ETH_CONN_AG_CTX_RULE1EN_SHIFT 0 -#define USTORM_ETH_CONN_AG_CTX_RULE2EN_MASK 0x1 /* rule2en */ -#define USTORM_ETH_CONN_AG_CTX_RULE2EN_SHIFT 1 -#define USTORM_ETH_CONN_AG_CTX_RULE3EN_MASK 0x1 /* rule3en */ -#define USTORM_ETH_CONN_AG_CTX_RULE3EN_SHIFT 2 -#define USTORM_ETH_CONN_AG_CTX_RULE4EN_MASK 0x1 /* rule4en */ -#define USTORM_ETH_CONN_AG_CTX_RULE4EN_SHIFT 3 -#define USTORM_ETH_CONN_AG_CTX_RULE5EN_MASK 0x1 /* rule5en */ -#define USTORM_ETH_CONN_AG_CTX_RULE5EN_SHIFT 4 -#define USTORM_ETH_CONN_AG_CTX_RULE6EN_MASK 0x1 /* rule6en */ -#define USTORM_ETH_CONN_AG_CTX_RULE6EN_SHIFT 5 -#define USTORM_ETH_CONN_AG_CTX_RULE7EN_MASK 0x1 /* rule7en */ -#define USTORM_ETH_CONN_AG_CTX_RULE7EN_SHIFT 6 -#define USTORM_ETH_CONN_AG_CTX_RULE8EN_MASK 0x1 /* rule8en */ -#define USTORM_ETH_CONN_AG_CTX_RULE8EN_SHIFT 7 - u8 byte2 /* byte2 */; - u8 byte3 /* byte3 */; - __le16 word0 /* conn_dpi */; - __le16 tx_bd_cons /* word1 */; - __le32 reg0 /* reg0 */; - __le32 reg1 /* reg1 */; - __le32 reg2 /* reg2 */; - __le32 tx_int_coallecing_timeset /* reg3 */; - __le16 tx_drv_bd_cons /* word2 */; - __le16 rx_drv_cqe_cons /* word3 */; +#define USTORM_ETH_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define USTORM_ETH_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define USTORM_ETH_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define USTORM_ETH_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define USTORM_ETH_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define USTORM_ETH_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define USTORM_ETH_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define USTORM_ETH_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define USTORM_ETH_CONN_AG_CTX_RULE8EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le16 tx_bd_cons; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 tx_int_coallecing_timeset; + __le16 tx_drv_bd_cons; + __le16 rx_drv_cqe_cons; }; /* The eth storm context for the Ustorm */ @@ -2762,47 +3188,75 @@ struct mstorm_eth_conn_st_ctx { /* eth connection context */ struct eth_conn_context { - struct tstorm_eth_conn_st_ctx tstorm_st_context; - struct regpair tstorm_st_padding[2]; - struct pstorm_eth_conn_st_ctx pstorm_st_context; - struct xstorm_eth_conn_st_ctx xstorm_st_context; - struct xstorm_eth_conn_ag_ctx xstorm_ag_context; - struct ystorm_eth_conn_st_ctx ystorm_st_context; - struct ystorm_eth_conn_ag_ctx ystorm_ag_context; - struct tstorm_eth_conn_ag_ctx tstorm_ag_context; - struct ustorm_eth_conn_ag_ctx ustorm_ag_context; - struct ustorm_eth_conn_st_ctx ustorm_st_context; - struct mstorm_eth_conn_st_ctx mstorm_st_context; + struct tstorm_eth_conn_st_ctx tstorm_st_context; + struct regpair tstorm_st_padding[2]; + struct pstorm_eth_conn_st_ctx pstorm_st_context; + struct xstorm_eth_conn_st_ctx xstorm_st_context; + struct xstorm_eth_conn_ag_ctx xstorm_ag_context; + struct ystorm_eth_conn_st_ctx ystorm_st_context; + struct ystorm_eth_conn_ag_ctx ystorm_ag_context; + struct tstorm_eth_conn_ag_ctx tstorm_ag_context; + struct ustorm_eth_conn_ag_ctx ustorm_ag_context; + struct ustorm_eth_conn_st_ctx ustorm_st_context; + struct mstorm_eth_conn_st_ctx mstorm_st_context; }; +/* opcodes for the event ring */ +enum eth_event_opcode { + ETH_EVENT_UNUSED, + ETH_EVENT_VPORT_START, + ETH_EVENT_VPORT_UPDATE, + ETH_EVENT_VPORT_STOP, + ETH_EVENT_TX_QUEUE_START, + ETH_EVENT_TX_QUEUE_STOP, + ETH_EVENT_RX_QUEUE_START, + ETH_EVENT_RX_QUEUE_UPDATE, + ETH_EVENT_RX_QUEUE_STOP, + ETH_EVENT_FILTERS_UPDATE, + ETH_EVENT_RESERVED, + ETH_EVENT_RESERVED2, + ETH_EVENT_RESERVED3, + ETH_EVENT_RX_ADD_UDP_FILTER, + ETH_EVENT_RX_DELETE_UDP_FILTER, + ETH_EVENT_RESERVED4, + ETH_EVENT_RESERVED5, + MAX_ETH_EVENT_OPCODE +}; + +/* Classify rule types in E2/E3 */ enum eth_filter_action { + ETH_FILTER_ACTION_UNUSED, ETH_FILTER_ACTION_REMOVE, ETH_FILTER_ACTION_ADD, ETH_FILTER_ACTION_REMOVE_ALL, MAX_ETH_FILTER_ACTION }; +/* Command for adding/removing a classification rule $$KEEP_ENDIANNESS$$ */ struct eth_filter_cmd { - u8 type /* Filter Type (MAC/VLAN/Pair/VNI) */; - u8 vport_id /* the vport id */; - u8 action /* filter command action: add/remove/replace */; - u8 reserved0; - __le32 vni; - __le16 mac_lsb; - __le16 mac_mid; - __le16 mac_msb; - __le16 vlan_id; -}; - + u8 type; + u8 vport_id; + u8 action; + u8 reserved0; + __le32 vni; + __le16 mac_lsb; + __le16 mac_mid; + __le16 mac_msb; + __le16 vlan_id; +}; + +/* $$KEEP_ENDIANNESS$$ */ struct eth_filter_cmd_header { - u8 rx; - u8 tx; - u8 cmd_cnt; - u8 assert_on_error; - u8 reserved1[4]; + u8 rx; + u8 tx; + u8 cmd_cnt; + u8 assert_on_error; + u8 reserved1[4]; }; +/* Ethernet filter types: mac/vlan/pair */ enum eth_filter_type { + ETH_FILTER_TYPE_UNUSED, ETH_FILTER_TYPE_MAC, ETH_FILTER_TYPE_VLAN, ETH_FILTER_TYPE_PAIR, @@ -2815,463 +3269,3515 @@ enum eth_filter_type { MAX_ETH_FILTER_TYPE }; +/* Ethernet Ramrod Command IDs */ enum eth_ramrod_cmd_id { ETH_RAMROD_UNUSED, - ETH_RAMROD_VPORT_START /* VPort Start Ramrod */, - ETH_RAMROD_VPORT_UPDATE /* VPort Update Ramrod */, - ETH_RAMROD_VPORT_STOP /* VPort Stop Ramrod */, - ETH_RAMROD_RX_QUEUE_START /* RX Queue Start Ramrod */, - ETH_RAMROD_RX_QUEUE_STOP /* RX Queue Stop Ramrod */, - ETH_RAMROD_TX_QUEUE_START /* TX Queue Start Ramrod */, - ETH_RAMROD_TX_QUEUE_STOP /* TX Queue Stop Ramrod */, - ETH_RAMROD_FILTERS_UPDATE /* Add or Remove Mac/Vlan/Pair filters */, - ETH_RAMROD_RX_QUEUE_UPDATE /* RX Queue Update Ramrod */, - ETH_RAMROD_RESERVED, - ETH_RAMROD_RESERVED2, - ETH_RAMROD_RESERVED3, - ETH_RAMROD_RESERVED4, - ETH_RAMROD_RESERVED5, - ETH_RAMROD_RESERVED6, - ETH_RAMROD_RESERVED7, - ETH_RAMROD_RESERVED8, + ETH_RAMROD_VPORT_START, + ETH_RAMROD_VPORT_UPDATE, + ETH_RAMROD_VPORT_STOP, + ETH_RAMROD_RX_QUEUE_START, + ETH_RAMROD_RX_QUEUE_STOP, + ETH_RAMROD_TX_QUEUE_START, + ETH_RAMROD_TX_QUEUE_STOP, + ETH_RAMROD_FILTERS_UPDATE, + ETH_RAMROD_RX_QUEUE_UPDATE, + ETH_RAMROD_RX_CREATE_OPENFLOW_ACTION, + ETH_RAMROD_RX_ADD_OPENFLOW_FILTER, + ETH_RAMROD_RX_DELETE_OPENFLOW_FILTER, + ETH_RAMROD_RX_ADD_UDP_FILTER, + ETH_RAMROD_RX_DELETE_UDP_FILTER, + ETH_RAMROD_RX_CREATE_GFT_ACTION, + ETH_RAMROD_GFT_UPDATE_FILTER, MAX_ETH_RAMROD_CMD_ID }; +/* return code from eth sp ramrods */ +struct eth_return_code { + u8 value; +#define ETH_RETURN_CODE_ERR_CODE_MASK 0x1F +#define ETH_RETURN_CODE_ERR_CODE_SHIFT 0 +#define ETH_RETURN_CODE_RESERVED_MASK 0x3 +#define ETH_RETURN_CODE_RESERVED_SHIFT 5 +#define ETH_RETURN_CODE_RX_TX_MASK 0x1 +#define ETH_RETURN_CODE_RX_TX_SHIFT 7 +}; + +/* What to do in case an error occurs */ enum eth_tx_err { - ETH_TX_ERR_DROP /* Drop erronous packet. */, + ETH_TX_ERR_DROP, ETH_TX_ERR_ASSERT_MALICIOUS, MAX_ETH_TX_ERR }; +/* Array of the different error type behaviors */ struct eth_tx_err_vals { __le16 values; -#define ETH_TX_ERR_VALS_ILLEGAL_VLAN_MODE_MASK 0x1 -#define ETH_TX_ERR_VALS_ILLEGAL_VLAN_MODE_SHIFT 0 -#define ETH_TX_ERR_VALS_PACKET_TOO_SMALL_MASK 0x1 -#define ETH_TX_ERR_VALS_PACKET_TOO_SMALL_SHIFT 1 -#define ETH_TX_ERR_VALS_ANTI_SPOOFING_ERR_MASK 0x1 -#define ETH_TX_ERR_VALS_ANTI_SPOOFING_ERR_SHIFT 2 -#define ETH_TX_ERR_VALS_ILLEGAL_INBAND_TAGS_MASK 0x1 -#define ETH_TX_ERR_VALS_ILLEGAL_INBAND_TAGS_SHIFT 3 -#define ETH_TX_ERR_VALS_VLAN_INSERTION_W_INBAND_TAG_MASK 0x1 -#define ETH_TX_ERR_VALS_VLAN_INSERTION_W_INBAND_TAG_SHIFT 4 -#define ETH_TX_ERR_VALS_MTU_VIOLATION_MASK 0x1 -#define ETH_TX_ERR_VALS_MTU_VIOLATION_SHIFT 5 -#define ETH_TX_ERR_VALS_ILLEGAL_CONTROL_FRAME_MASK 0x1 -#define ETH_TX_ERR_VALS_ILLEGAL_CONTROL_FRAME_SHIFT 6 -#define ETH_TX_ERR_VALS_RESERVED_MASK 0x1FF -#define ETH_TX_ERR_VALS_RESERVED_SHIFT 7 -}; - +#define ETH_TX_ERR_VALS_ILLEGAL_VLAN_MODE_MASK 0x1 +#define ETH_TX_ERR_VALS_ILLEGAL_VLAN_MODE_SHIFT 0 +#define ETH_TX_ERR_VALS_PACKET_TOO_SMALL_MASK 0x1 +#define ETH_TX_ERR_VALS_PACKET_TOO_SMALL_SHIFT 1 +#define ETH_TX_ERR_VALS_ANTI_SPOOFING_ERR_MASK 0x1 +#define ETH_TX_ERR_VALS_ANTI_SPOOFING_ERR_SHIFT 2 +#define ETH_TX_ERR_VALS_ILLEGAL_INBAND_TAGS_MASK 0x1 +#define ETH_TX_ERR_VALS_ILLEGAL_INBAND_TAGS_SHIFT 3 +#define ETH_TX_ERR_VALS_VLAN_INSERTION_W_INBAND_TAG_MASK 0x1 +#define ETH_TX_ERR_VALS_VLAN_INSERTION_W_INBAND_TAG_SHIFT 4 +#define ETH_TX_ERR_VALS_MTU_VIOLATION_MASK 0x1 +#define ETH_TX_ERR_VALS_MTU_VIOLATION_SHIFT 5 +#define ETH_TX_ERR_VALS_ILLEGAL_CONTROL_FRAME_MASK 0x1 +#define ETH_TX_ERR_VALS_ILLEGAL_CONTROL_FRAME_SHIFT 6 +#define ETH_TX_ERR_VALS_RESERVED_MASK 0x1FF +#define ETH_TX_ERR_VALS_RESERVED_SHIFT 7 +}; + +/* vport rss configuration data */ struct eth_vport_rss_config { __le16 capabilities; -#define ETH_VPORT_RSS_CONFIG_IPV4_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_IPV4_CAPABILITY_SHIFT 0 -#define ETH_VPORT_RSS_CONFIG_IPV6_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_IPV6_CAPABILITY_SHIFT 1 -#define ETH_VPORT_RSS_CONFIG_IPV4_TCP_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_IPV4_TCP_CAPABILITY_SHIFT 2 -#define ETH_VPORT_RSS_CONFIG_IPV6_TCP_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_IPV6_TCP_CAPABILITY_SHIFT 3 -#define ETH_VPORT_RSS_CONFIG_IPV4_UDP_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_IPV4_UDP_CAPABILITY_SHIFT 4 -#define ETH_VPORT_RSS_CONFIG_IPV6_UDP_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_IPV6_UDP_CAPABILITY_SHIFT 5 -#define ETH_VPORT_RSS_CONFIG_EN_5_TUPLE_CAPABILITY_MASK 0x1 -#define ETH_VPORT_RSS_CONFIG_EN_5_TUPLE_CAPABILITY_SHIFT 6 -#define ETH_VPORT_RSS_CONFIG_RESERVED0_MASK 0x1FF -#define ETH_VPORT_RSS_CONFIG_RESERVED0_SHIFT 7 - u8 rss_id; - u8 rss_mode; - u8 update_rss_key; - u8 update_rss_ind_table; - u8 update_rss_capabilities; - u8 tbl_size; - __le32 reserved2[2]; - __le16 indirection_table[ETH_RSS_IND_TABLE_ENTRIES_NUM]; - __le32 rss_key[ETH_RSS_KEY_SIZE_REGS]; - __le32 reserved3[2]; -}; - +#define ETH_VPORT_RSS_CONFIG_IPV4_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_IPV4_CAPABILITY_SHIFT 0 +#define ETH_VPORT_RSS_CONFIG_IPV6_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_IPV6_CAPABILITY_SHIFT 1 +#define ETH_VPORT_RSS_CONFIG_IPV4_TCP_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_IPV4_TCP_CAPABILITY_SHIFT 2 +#define ETH_VPORT_RSS_CONFIG_IPV6_TCP_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_IPV6_TCP_CAPABILITY_SHIFT 3 +#define ETH_VPORT_RSS_CONFIG_IPV4_UDP_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_IPV4_UDP_CAPABILITY_SHIFT 4 +#define ETH_VPORT_RSS_CONFIG_IPV6_UDP_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_IPV6_UDP_CAPABILITY_SHIFT 5 +#define ETH_VPORT_RSS_CONFIG_EN_5_TUPLE_CAPABILITY_MASK 0x1 +#define ETH_VPORT_RSS_CONFIG_EN_5_TUPLE_CAPABILITY_SHIFT 6 +#define ETH_VPORT_RSS_CONFIG_RESERVED0_MASK 0x1FF +#define ETH_VPORT_RSS_CONFIG_RESERVED0_SHIFT 7 + u8 rss_id; + u8 rss_mode; + u8 update_rss_key; + u8 update_rss_ind_table; + u8 update_rss_capabilities; + u8 tbl_size; + __le32 reserved2[2]; + __le16 indirection_table[ETH_RSS_IND_TABLE_ENTRIES_NUM]; + + __le32 rss_key[ETH_RSS_KEY_SIZE_REGS]; + __le32 reserved3[2]; +}; + +/* eth vport RSS mode */ enum eth_vport_rss_mode { ETH_VPORT_RSS_MODE_DISABLED, ETH_VPORT_RSS_MODE_REGULAR, MAX_ETH_VPORT_RSS_MODE }; +/* Command for setting classification flags for a vport $$KEEP_ENDIANNESS$$ */ struct eth_vport_rx_mode { __le16 state; -#define ETH_VPORT_RX_MODE_UCAST_DROP_ALL_MASK 0x1 -#define ETH_VPORT_RX_MODE_UCAST_DROP_ALL_SHIFT 0 -#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_ALL_MASK 0x1 -#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_ALL_SHIFT 1 -#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_UNMATCHED_MASK 0x1 -#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_UNMATCHED_SHIFT 2 -#define ETH_VPORT_RX_MODE_MCAST_DROP_ALL_MASK 0x1 -#define ETH_VPORT_RX_MODE_MCAST_DROP_ALL_SHIFT 3 -#define ETH_VPORT_RX_MODE_MCAST_ACCEPT_ALL_MASK 0x1 -#define ETH_VPORT_RX_MODE_MCAST_ACCEPT_ALL_SHIFT 4 -#define ETH_VPORT_RX_MODE_BCAST_ACCEPT_ALL_MASK 0x1 -#define ETH_VPORT_RX_MODE_BCAST_ACCEPT_ALL_SHIFT 5 -#define ETH_VPORT_RX_MODE_RESERVED1_MASK 0x3FF -#define ETH_VPORT_RX_MODE_RESERVED1_SHIFT 6 +#define ETH_VPORT_RX_MODE_UCAST_DROP_ALL_MASK 0x1 +#define ETH_VPORT_RX_MODE_UCAST_DROP_ALL_SHIFT 0 +#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_ALL_MASK 0x1 +#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_ALL_SHIFT 1 +#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_UNMATCHED_MASK 0x1 +#define ETH_VPORT_RX_MODE_UCAST_ACCEPT_UNMATCHED_SHIFT 2 +#define ETH_VPORT_RX_MODE_MCAST_DROP_ALL_MASK 0x1 +#define ETH_VPORT_RX_MODE_MCAST_DROP_ALL_SHIFT 3 +#define ETH_VPORT_RX_MODE_MCAST_ACCEPT_ALL_MASK 0x1 +#define ETH_VPORT_RX_MODE_MCAST_ACCEPT_ALL_SHIFT 4 +#define ETH_VPORT_RX_MODE_BCAST_ACCEPT_ALL_MASK 0x1 +#define ETH_VPORT_RX_MODE_BCAST_ACCEPT_ALL_SHIFT 5 +#define ETH_VPORT_RX_MODE_RESERVED1_MASK 0x3FF +#define ETH_VPORT_RX_MODE_RESERVED1_SHIFT 6 __le16 reserved2[3]; }; +/* Command for setting tpa parameters */ struct eth_vport_tpa_param { - u8 tpa_ipv4_en_flg; - u8 tpa_ipv6_en_flg; - u8 tpa_ipv4_tunn_en_flg; - u8 tpa_ipv6_tunn_en_flg; - u8 tpa_pkt_split_flg; - u8 tpa_hdr_data_split_flg; - u8 tpa_gro_consistent_flg; - u8 tpa_max_aggs_num; - u16 tpa_max_size; - u16 tpa_min_size_to_start; - u16 tpa_min_size_to_cont; - u8 max_buff_num; - u8 reserved; + u8 tpa_ipv4_en_flg; + u8 tpa_ipv6_en_flg; + u8 tpa_ipv4_tunn_en_flg; + u8 tpa_ipv6_tunn_en_flg; + u8 tpa_pkt_split_flg; + u8 tpa_hdr_data_split_flg; + u8 tpa_gro_consistent_flg; + + u8 tpa_max_aggs_num; + + __le16 tpa_max_size; + __le16 tpa_min_size_to_start; + + __le16 tpa_min_size_to_cont; + u8 max_buff_num; + u8 reserved; }; +/* Command for setting classification flags for a vport $$KEEP_ENDIANNESS$$ */ struct eth_vport_tx_mode { __le16 state; -#define ETH_VPORT_TX_MODE_UCAST_DROP_ALL_MASK 0x1 -#define ETH_VPORT_TX_MODE_UCAST_DROP_ALL_SHIFT 0 -#define ETH_VPORT_TX_MODE_UCAST_ACCEPT_ALL_MASK 0x1 -#define ETH_VPORT_TX_MODE_UCAST_ACCEPT_ALL_SHIFT 1 -#define ETH_VPORT_TX_MODE_MCAST_DROP_ALL_MASK 0x1 -#define ETH_VPORT_TX_MODE_MCAST_DROP_ALL_SHIFT 2 -#define ETH_VPORT_TX_MODE_MCAST_ACCEPT_ALL_MASK 0x1 -#define ETH_VPORT_TX_MODE_MCAST_ACCEPT_ALL_SHIFT 3 -#define ETH_VPORT_TX_MODE_BCAST_ACCEPT_ALL_MASK 0x1 -#define ETH_VPORT_TX_MODE_BCAST_ACCEPT_ALL_SHIFT 4 -#define ETH_VPORT_TX_MODE_RESERVED1_MASK 0x7FF -#define ETH_VPORT_TX_MODE_RESERVED1_SHIFT 5 +#define ETH_VPORT_TX_MODE_UCAST_DROP_ALL_MASK 0x1 +#define ETH_VPORT_TX_MODE_UCAST_DROP_ALL_SHIFT 0 +#define ETH_VPORT_TX_MODE_UCAST_ACCEPT_ALL_MASK 0x1 +#define ETH_VPORT_TX_MODE_UCAST_ACCEPT_ALL_SHIFT 1 +#define ETH_VPORT_TX_MODE_MCAST_DROP_ALL_MASK 0x1 +#define ETH_VPORT_TX_MODE_MCAST_DROP_ALL_SHIFT 2 +#define ETH_VPORT_TX_MODE_MCAST_ACCEPT_ALL_MASK 0x1 +#define ETH_VPORT_TX_MODE_MCAST_ACCEPT_ALL_SHIFT 3 +#define ETH_VPORT_TX_MODE_BCAST_ACCEPT_ALL_MASK 0x1 +#define ETH_VPORT_TX_MODE_BCAST_ACCEPT_ALL_SHIFT 4 +#define ETH_VPORT_TX_MODE_RESERVED1_MASK 0x7FF +#define ETH_VPORT_TX_MODE_RESERVED1_SHIFT 5 __le16 reserved2[3]; }; +/* Ramrod data for rx queue start ramrod */ struct rx_queue_start_ramrod_data { - __le16 rx_queue_id; - __le16 num_of_pbl_pages; - __le16 bd_max_bytes; - __le16 sb_id; - u8 sb_index; - u8 vport_id; - u8 default_rss_queue_flg; - u8 complete_cqe_flg; - u8 complete_event_flg; - u8 stats_counter_id; - u8 pin_context; - u8 pxp_tph_valid_bd; - u8 pxp_tph_valid_pkt; - u8 pxp_st_hint; - __le16 pxp_st_index; - u8 pmd_mode; - u8 notify_en; - u8 toggle_val; - u8 reserved[7]; - __le16 reserved1; - struct regpair cqe_pbl_addr; - struct regpair bd_base; - struct regpair reserved2; -}; - + __le16 rx_queue_id; + __le16 num_of_pbl_pages; + __le16 bd_max_bytes; + __le16 sb_id; + u8 sb_index; + u8 vport_id; + u8 default_rss_queue_flg; + u8 complete_cqe_flg; + u8 complete_event_flg; + u8 stats_counter_id; + u8 pin_context; + u8 pxp_tph_valid_bd; + u8 pxp_tph_valid_pkt; + u8 pxp_st_hint; + + __le16 pxp_st_index; + u8 pmd_mode; + + u8 notify_en; + u8 toggle_val; + + u8 vf_rx_prod_index; + + u8 reserved[6]; + __le16 reserved1; + struct regpair cqe_pbl_addr; + struct regpair bd_base; + struct regpair reserved2; +}; + +/* Ramrod data for rx queue start ramrod */ struct rx_queue_stop_ramrod_data { - __le16 rx_queue_id; - u8 complete_cqe_flg; - u8 complete_event_flg; - u8 vport_id; - u8 reserved[3]; + __le16 rx_queue_id; + u8 complete_cqe_flg; + u8 complete_event_flg; + u8 vport_id; + u8 reserved[3]; }; +/* Ramrod data for rx queue update ramrod */ struct rx_queue_update_ramrod_data { - __le16 rx_queue_id; - u8 complete_cqe_flg; - u8 complete_event_flg; - u8 vport_id; - u8 reserved[4]; - u8 reserved1; - u8 reserved2; - u8 reserved3; - __le16 reserved4; - __le16 reserved5; + __le16 rx_queue_id; + u8 complete_cqe_flg; + u8 complete_event_flg; + u8 vport_id; + u8 reserved[4]; + u8 reserved1; + u8 reserved2; + u8 reserved3; + __le16 reserved4; + __le16 reserved5; struct regpair reserved6; }; -struct tx_queue_start_ramrod_data { - __le16 sb_id; - u8 sb_index; - u8 vport_id; - u8 reserved0; - u8 stats_counter_id; - __le16 qm_pq_id; - u8 flags; -#define TX_QUEUE_START_RAMROD_DATA_DISABLE_OPPORTUNISTIC_MASK 0x1 -#define TX_QUEUE_START_RAMROD_DATA_DISABLE_OPPORTUNISTIC_SHIFT 0 -#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_PKT_DUP_MASK 0x1 -#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_PKT_DUP_SHIFT 1 -#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_TX_DEST_MASK 0x1 -#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_TX_DEST_SHIFT 2 -#define TX_QUEUE_START_RAMROD_DATA_PMD_MODE_MASK 0x1 -#define TX_QUEUE_START_RAMROD_DATA_PMD_MODE_SHIFT 3 -#define TX_QUEUE_START_RAMROD_DATA_NOTIFY_EN_MASK 0x1 -#define TX_QUEUE_START_RAMROD_DATA_NOTIFY_EN_SHIFT 4 -#define TX_QUEUE_START_RAMROD_DATA_PIN_CONTEXT_MASK 0x1 -#define TX_QUEUE_START_RAMROD_DATA_PIN_CONTEXT_SHIFT 5 -#define TX_QUEUE_START_RAMROD_DATA_RESERVED1_MASK 0x3 -#define TX_QUEUE_START_RAMROD_DATA_RESERVED1_SHIFT 6 - u8 pxp_st_hint; - u8 pxp_tph_valid_bd; - u8 pxp_tph_valid_pkt; - __le16 pxp_st_index; - __le16 comp_agg_size; - __le16 queue_zone_id; - __le16 test_dup_count; - __le16 pbl_size; - __le16 tx_queue_id; - struct regpair pbl_base_addr; - struct regpair bd_cons_address; +/* Ramrod data for rx Add UDP Filter */ +struct rx_udp_filter_data { + __le16 action_icid; + __le16 vlan_id; + u8 ip_type; + u8 tenant_id_exists; + __le16 reserved1; + __le32 ip_dst_addr[4]; + __le32 ip_src_addr[4]; + __le16 udp_dst_port; + __le16 udp_src_port; + __le32 tenant_id; }; +/* Ramrod data for rx queue start ramrod */ +struct tx_queue_start_ramrod_data { + __le16 sb_id; + u8 sb_index; + u8 vport_id; + u8 reserved0; + u8 stats_counter_id; + __le16 qm_pq_id; + u8 flags; +#define TX_QUEUE_START_RAMROD_DATA_DISABLE_OPPORTUNISTIC_MASK 0x1 +#define TX_QUEUE_START_RAMROD_DATA_DISABLE_OPPORTUNISTIC_SHIFT 0 +#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_PKT_DUP_MASK 0x1 +#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_PKT_DUP_SHIFT 1 +#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_TX_DEST_MASK 0x1 +#define TX_QUEUE_START_RAMROD_DATA_TEST_MODE_TX_DEST_SHIFT 2 +#define TX_QUEUE_START_RAMROD_DATA_PMD_MODE_MASK 0x1 +#define TX_QUEUE_START_RAMROD_DATA_PMD_MODE_SHIFT 3 +#define TX_QUEUE_START_RAMROD_DATA_NOTIFY_EN_MASK 0x1 +#define TX_QUEUE_START_RAMROD_DATA_NOTIFY_EN_SHIFT 4 +#define TX_QUEUE_START_RAMROD_DATA_PIN_CONTEXT_MASK 0x1 +#define TX_QUEUE_START_RAMROD_DATA_PIN_CONTEXT_SHIFT 5 +#define TX_QUEUE_START_RAMROD_DATA_RESERVED1_MASK 0x3 +#define TX_QUEUE_START_RAMROD_DATA_RESERVED1_SHIFT 6 + u8 pxp_st_hint; + u8 pxp_tph_valid_bd; + u8 pxp_tph_valid_pkt; + __le16 pxp_st_index; + __le16 comp_agg_size; + __le16 queue_zone_id; + __le16 test_dup_count; + __le16 pbl_size; + __le16 tx_queue_id; + + struct regpair pbl_base_addr; + struct regpair bd_cons_address; +}; + +/* Ramrod data for tx queue stop ramrod */ struct tx_queue_stop_ramrod_data { __le16 reserved[4]; }; +/* Ramrod data for vport update ramrod */ struct vport_filter_update_ramrod_data { - struct eth_filter_cmd_header filter_cmd_hdr; - struct eth_filter_cmd filter_cmds[ETH_FILTER_RULES_COUNT]; + struct eth_filter_cmd_header filter_cmd_hdr; + struct eth_filter_cmd filter_cmds[ETH_FILTER_RULES_COUNT]; }; +/* Ramrod data for vport start ramrod */ struct vport_start_ramrod_data { - u8 vport_id; - u8 sw_fid; - __le16 mtu; - u8 drop_ttl0_en; - u8 inner_vlan_removal_en; - struct eth_vport_rx_mode rx_mode; - struct eth_vport_tx_mode tx_mode; - struct eth_vport_tpa_param tpa_param; - __le16 default_vlan; - u8 tx_switching_en; - u8 anti_spoofing_en; - u8 default_vlan_en; - u8 handle_ptp_pkts; - u8 silent_vlan_removal_en; - u8 untagged; - struct eth_tx_err_vals tx_err_behav; - u8 zero_placement_offset; - u8 reserved[7]; -}; - + u8 vport_id; + u8 sw_fid; + __le16 mtu; + u8 drop_ttl0_en; + u8 inner_vlan_removal_en; + struct eth_vport_rx_mode rx_mode; + struct eth_vport_tx_mode tx_mode; + struct eth_vport_tpa_param tpa_param; + __le16 default_vlan; + u8 tx_switching_en; + u8 anti_spoofing_en; + + u8 default_vlan_en; + + u8 handle_ptp_pkts; + u8 silent_vlan_removal_en; + u8 untagged; + struct eth_tx_err_vals tx_err_behav; + + u8 zero_placement_offset; + u8 ctl_frame_mac_check_en; + u8 ctl_frame_ethtype_check_en; + u8 reserved[5]; +}; + +/* Ramrod data for vport stop ramrod */ struct vport_stop_ramrod_data { - u8 vport_id; - u8 reserved[7]; + u8 vport_id; + u8 reserved[7]; }; +/* Ramrod data for vport update ramrod */ struct vport_update_ramrod_data_cmn { - u8 vport_id; - u8 update_rx_active_flg; - u8 rx_active_flg; - u8 update_tx_active_flg; - u8 tx_active_flg; - u8 update_rx_mode_flg; - u8 update_tx_mode_flg; - u8 update_approx_mcast_flg; - u8 update_rss_flg; - u8 update_inner_vlan_removal_en_flg; - u8 inner_vlan_removal_en; - u8 update_tpa_param_flg; - u8 update_tpa_en_flg; - u8 update_tx_switching_en_flg; - u8 tx_switching_en; - u8 update_anti_spoofing_en_flg; - u8 anti_spoofing_en; - u8 update_handle_ptp_pkts; - u8 handle_ptp_pkts; - u8 update_default_vlan_en_flg; - u8 default_vlan_en; - u8 update_default_vlan_flg; - __le16 default_vlan; - u8 update_accept_any_vlan_flg; - u8 accept_any_vlan; - u8 silent_vlan_removal_en; - u8 update_mtu_flg; - __le16 mtu; - u8 reserved[2]; + u8 vport_id; + u8 update_rx_active_flg; + u8 rx_active_flg; + u8 update_tx_active_flg; + u8 tx_active_flg; + u8 update_rx_mode_flg; + u8 update_tx_mode_flg; + u8 update_approx_mcast_flg; + + u8 update_rss_flg; + u8 update_inner_vlan_removal_en_flg; + + u8 inner_vlan_removal_en; + u8 update_tpa_param_flg; + u8 update_tpa_en_flg; + u8 update_tx_switching_en_flg; + + u8 tx_switching_en; + u8 update_anti_spoofing_en_flg; + + u8 anti_spoofing_en; + u8 update_handle_ptp_pkts; + + u8 handle_ptp_pkts; + u8 update_default_vlan_en_flg; + + u8 default_vlan_en; + + u8 update_default_vlan_flg; + + __le16 default_vlan; + u8 update_accept_any_vlan_flg; + + u8 accept_any_vlan; + u8 silent_vlan_removal_en; + u8 update_mtu_flg; + + __le16 mtu; + u8 reserved[2]; }; struct vport_update_ramrod_mcast { __le32 bins[ETH_MULTICAST_MAC_BINS_IN_REGS]; }; +/* Ramrod data for vport update ramrod */ struct vport_update_ramrod_data { - struct vport_update_ramrod_data_cmn common; - struct eth_vport_rx_mode rx_mode; - struct eth_vport_tx_mode tx_mode; - struct eth_vport_tpa_param tpa_param; - struct vport_update_ramrod_mcast approx_mcast; - struct eth_vport_rss_config rss_config; + struct vport_update_ramrod_data_cmn common; + + struct eth_vport_rx_mode rx_mode; + struct eth_vport_tx_mode tx_mode; + struct eth_vport_tpa_param tpa_param; + struct vport_update_ramrod_mcast approx_mcast; + struct eth_vport_rss_config rss_config; }; -#define VF_MAX_STATIC 192 /* In case of K2 */ +struct mstorm_rdma_task_st_ctx { + struct regpair temp[4]; +}; -#define MCP_GLOB_PATH_MAX 2 -#define MCP_PORT_MAX 2 /* Global */ -#define MCP_GLOB_PORT_MAX 4 /* Global */ -#define MCP_GLOB_FUNC_MAX 16 /* Global */ +struct rdma_close_func_ramrod_data { + u8 cnq_start_offset; + u8 num_cnqs; + u8 vf_id; + u8 vf_valid; + u8 reserved[4]; +}; + +struct rdma_cnq_params { + __le16 sb_num; + u8 sb_index; + u8 num_pbl_pages; + __le32 reserved; + struct regpair pbl_base_addr; + __le16 queue_zone_num; + u8 reserved1[6]; +}; + +struct rdma_create_cq_ramrod_data { + struct regpair cq_handle; + struct regpair pbl_addr; + __le32 max_cqes; + __le16 pbl_num_pages; + __le16 dpi; + u8 is_two_level_pbl; + u8 cnq_id; + u8 pbl_log_page_size; + u8 toggle_bit; + __le16 int_timeout; + __le16 reserved1; +}; + +struct rdma_deregister_tid_ramrod_data { + __le32 itid; + __le32 reserved; +}; + +struct rdma_destroy_cq_output_params { + __le16 cnq_num; + __le16 reserved0; + __le32 reserved1; +}; + +struct rdma_destroy_cq_ramrod_data { + struct regpair output_params_addr; +}; + +enum rdma_event_opcode { + RDMA_EVENT_UNUSED, + RDMA_EVENT_FUNC_INIT, + RDMA_EVENT_FUNC_CLOSE, + RDMA_EVENT_REGISTER_MR, + RDMA_EVENT_DEREGISTER_MR, + RDMA_EVENT_CREATE_CQ, + RDMA_EVENT_RESIZE_CQ, + RDMA_EVENT_DESTROY_CQ, + RDMA_EVENT_CREATE_SRQ, + RDMA_EVENT_MODIFY_SRQ, + RDMA_EVENT_DESTROY_SRQ, + MAX_RDMA_EVENT_OPCODE +}; + +enum rdma_fw_return_code { + RDMA_RETURN_OK = 0, + RDMA_RETURN_REGISTER_MR_BAD_STATE_ERR, + RDMA_RETURN_DEREGISTER_MR_BAD_STATE_ERR, + RDMA_RETURN_RESIZE_CQ_ERR, + RDMA_RETURN_NIG_DRAIN_REQ, + MAX_RDMA_FW_RETURN_CODE +}; + +struct rdma_init_func_hdr { + u8 cnq_start_offset; + u8 num_cnqs; + u8 cq_ring_mode; + u8 cnp_vlan_priority; + __le32 cnp_send_timeout; + u8 cnp_dscp; + u8 vf_id; + u8 vf_valid; + u8 reserved[5]; +}; + +struct rdma_init_func_ramrod_data { + struct rdma_init_func_hdr params_header; + struct rdma_cnq_params cnq_params[NUM_OF_GLOBAL_QUEUES]; +}; + +enum rdma_ramrod_cmd_id { + RDMA_RAMROD_UNUSED, + RDMA_RAMROD_FUNC_INIT, + RDMA_RAMROD_FUNC_CLOSE, + RDMA_RAMROD_REGISTER_MR, + RDMA_RAMROD_DEREGISTER_MR, + RDMA_RAMROD_CREATE_CQ, + RDMA_RAMROD_RESIZE_CQ, + RDMA_RAMROD_DESTROY_CQ, + RDMA_RAMROD_CREATE_SRQ, + RDMA_RAMROD_MODIFY_SRQ, + RDMA_RAMROD_DESTROY_SRQ, + MAX_RDMA_RAMROD_CMD_ID +}; + +struct rdma_register_tid_ramrod_data { + __le32 flags; +#define RDMA_REGISTER_TID_RAMROD_DATA_MAX_ID_MASK 0x3FFFF +#define RDMA_REGISTER_TID_RAMROD_DATA_MAX_ID_SHIFT 0 +#define RDMA_REGISTER_TID_RAMROD_DATA_PAGE_SIZE_LOG_MASK 0x1F +#define RDMA_REGISTER_TID_RAMROD_DATA_PAGE_SIZE_LOG_SHIFT 18 +#define RDMA_REGISTER_TID_RAMROD_DATA_TWO_LEVEL_PBL_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_TWO_LEVEL_PBL_SHIFT 23 +#define RDMA_REGISTER_TID_RAMROD_DATA_ZERO_BASED_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_ZERO_BASED_SHIFT 24 +#define RDMA_REGISTER_TID_RAMROD_DATA_PHY_MR_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_PHY_MR_SHIFT 25 +#define RDMA_REGISTER_TID_RAMROD_DATA_REMOTE_READ_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_REMOTE_READ_SHIFT 26 +#define RDMA_REGISTER_TID_RAMROD_DATA_REMOTE_WRITE_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_REMOTE_WRITE_SHIFT 27 +#define RDMA_REGISTER_TID_RAMROD_DATA_REMOTE_ATOMIC_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_REMOTE_ATOMIC_SHIFT 28 +#define RDMA_REGISTER_TID_RAMROD_DATA_LOCAL_WRITE_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_LOCAL_WRITE_SHIFT 29 +#define RDMA_REGISTER_TID_RAMROD_DATA_LOCAL_READ_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_LOCAL_READ_SHIFT 30 +#define RDMA_REGISTER_TID_RAMROD_DATA_ENABLE_MW_BIND_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_ENABLE_MW_BIND_SHIFT 31 + u8 flags1; +#define RDMA_REGISTER_TID_RAMROD_DATA_PBL_PAGE_SIZE_LOG_MASK 0x1F +#define RDMA_REGISTER_TID_RAMROD_DATA_PBL_PAGE_SIZE_LOG_SHIFT 0 +#define RDMA_REGISTER_TID_RAMROD_DATA_TID_TYPE_MASK 0x7 +#define RDMA_REGISTER_TID_RAMROD_DATA_TID_TYPE_SHIFT 5 + u8 flags2; +#define RDMA_REGISTER_TID_RAMROD_DATA_DMA_MR_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_DMA_MR_SHIFT 0 +#define RDMA_REGISTER_TID_RAMROD_DATA_DIF_ON_HOST_FLG_MASK 0x1 +#define RDMA_REGISTER_TID_RAMROD_DATA_DIF_ON_HOST_FLG_SHIFT 1 +#define RDMA_REGISTER_TID_RAMROD_DATA_RESERVED1_MASK 0x3F +#define RDMA_REGISTER_TID_RAMROD_DATA_RESERVED1_SHIFT 2 + u8 key; + u8 length_hi; + u8 vf_id; + u8 vf_valid; + __le16 pd; + __le32 length_lo; + __le32 itid; + __le32 reserved2; + struct regpair va; + struct regpair pbl_base; + struct regpair dif_error_addr; + struct regpair dif_runt_addr; + __le32 reserved3[2]; +}; + +struct rdma_resize_cq_output_params { + __le32 old_cq_cons; + __le32 old_cq_prod; +}; + +struct rdma_resize_cq_ramrod_data { + u8 flags; +#define RDMA_RESIZE_CQ_RAMROD_DATA_TOGGLE_BIT_MASK 0x1 +#define RDMA_RESIZE_CQ_RAMROD_DATA_TOGGLE_BIT_SHIFT 0 +#define RDMA_RESIZE_CQ_RAMROD_DATA_IS_TWO_LEVEL_PBL_MASK 0x1 +#define RDMA_RESIZE_CQ_RAMROD_DATA_IS_TWO_LEVEL_PBL_SHIFT 1 +#define RDMA_RESIZE_CQ_RAMROD_DATA_RESERVED_MASK 0x3F +#define RDMA_RESIZE_CQ_RAMROD_DATA_RESERVED_SHIFT 2 + u8 pbl_log_page_size; + __le16 pbl_num_pages; + __le32 max_cqes; + struct regpair pbl_addr; + struct regpair output_params_addr; +}; + +struct rdma_srq_context { + struct regpair temp[8]; +}; + +struct rdma_srq_create_ramrod_data { + struct regpair pbl_base_addr; + __le16 pages_in_srq_pbl; + __le16 pd_id; + struct rdma_srq_id srq_id; + __le16 page_size; + __le16 reserved1; + __le32 reserved2; + struct regpair producers_addr; +}; + +struct rdma_srq_destroy_ramrod_data { + struct rdma_srq_id srq_id; + __le32 reserved; +}; + +struct rdma_srq_modify_ramrod_data { + struct rdma_srq_id srq_id; + __le32 wqe_limit; +}; + +struct ystorm_rdma_task_st_ctx { + struct regpair temp[4]; +}; + +struct ystorm_rdma_task_ag_ctx { + u8 reserved; + u8 byte1; + __le16 msem_ctx_upd_seq; + u8 flags0; +#define YSTORM_RDMA_TASK_AG_CTX_CONNECTION_TYPE_MASK 0xF +#define YSTORM_RDMA_TASK_AG_CTX_CONNECTION_TYPE_SHIFT 0 +#define YSTORM_RDMA_TASK_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_EXIST_IN_QM0_SHIFT 4 +#define YSTORM_RDMA_TASK_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_BIT1_SHIFT 5 +#define YSTORM_RDMA_TASK_AG_CTX_VALID_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_VALID_SHIFT 6 +#define YSTORM_RDMA_TASK_AG_CTX_BIT3_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_BIT3_SHIFT 7 + u8 flags1; +#define YSTORM_RDMA_TASK_AG_CTX_CF0_MASK 0x3 +#define YSTORM_RDMA_TASK_AG_CTX_CF0_SHIFT 0 +#define YSTORM_RDMA_TASK_AG_CTX_CF1_MASK 0x3 +#define YSTORM_RDMA_TASK_AG_CTX_CF1_SHIFT 2 +#define YSTORM_RDMA_TASK_AG_CTX_CF2SPECIAL_MASK 0x3 +#define YSTORM_RDMA_TASK_AG_CTX_CF2SPECIAL_SHIFT 4 +#define YSTORM_RDMA_TASK_AG_CTX_CF0EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_CF0EN_SHIFT 6 +#define YSTORM_RDMA_TASK_AG_CTX_CF1EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_CF1EN_SHIFT 7 + u8 flags2; +#define YSTORM_RDMA_TASK_AG_CTX_BIT4_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_BIT4_SHIFT 0 +#define YSTORM_RDMA_TASK_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE0EN_SHIFT 1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE1EN_SHIFT 2 +#define YSTORM_RDMA_TASK_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE2EN_SHIFT 3 +#define YSTORM_RDMA_TASK_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE3EN_SHIFT 4 +#define YSTORM_RDMA_TASK_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE4EN_SHIFT 5 +#define YSTORM_RDMA_TASK_AG_CTX_RULE5EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE5EN_SHIFT 6 +#define YSTORM_RDMA_TASK_AG_CTX_RULE6EN_MASK 0x1 +#define YSTORM_RDMA_TASK_AG_CTX_RULE6EN_SHIFT 7 + u8 key; + __le32 mw_cnt; + u8 ref_cnt_seq; + u8 ctx_upd_seq; + __le16 dif_flags; + __le16 tx_ref_count; + __le16 last_used_ltid; + __le16 parent_mr_lo; + __le16 parent_mr_hi; + __le32 fbo_lo; + __le32 fbo_hi; +}; + +struct mstorm_rdma_task_ag_ctx { + u8 reserved; + u8 byte1; + __le16 icid; + u8 flags0; +#define MSTORM_RDMA_TASK_AG_CTX_CONNECTION_TYPE_MASK 0xF +#define MSTORM_RDMA_TASK_AG_CTX_CONNECTION_TYPE_SHIFT 0 +#define MSTORM_RDMA_TASK_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_EXIST_IN_QM0_SHIFT 4 +#define MSTORM_RDMA_TASK_AG_CTX_BIT1_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_BIT1_SHIFT 5 +#define MSTORM_RDMA_TASK_AG_CTX_BIT2_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_BIT2_SHIFT 6 +#define MSTORM_RDMA_TASK_AG_CTX_BIT3_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_BIT3_SHIFT 7 + u8 flags1; +#define MSTORM_RDMA_TASK_AG_CTX_CF0_MASK 0x3 +#define MSTORM_RDMA_TASK_AG_CTX_CF0_SHIFT 0 +#define MSTORM_RDMA_TASK_AG_CTX_CF1_MASK 0x3 +#define MSTORM_RDMA_TASK_AG_CTX_CF1_SHIFT 2 +#define MSTORM_RDMA_TASK_AG_CTX_CF2_MASK 0x3 +#define MSTORM_RDMA_TASK_AG_CTX_CF2_SHIFT 4 +#define MSTORM_RDMA_TASK_AG_CTX_CF0EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_CF0EN_SHIFT 6 +#define MSTORM_RDMA_TASK_AG_CTX_CF1EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_CF1EN_SHIFT 7 + u8 flags2; +#define MSTORM_RDMA_TASK_AG_CTX_CF2EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_CF2EN_SHIFT 0 +#define MSTORM_RDMA_TASK_AG_CTX_RULE0EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE0EN_SHIFT 1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE1EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE1EN_SHIFT 2 +#define MSTORM_RDMA_TASK_AG_CTX_RULE2EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE2EN_SHIFT 3 +#define MSTORM_RDMA_TASK_AG_CTX_RULE3EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE3EN_SHIFT 4 +#define MSTORM_RDMA_TASK_AG_CTX_RULE4EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE4EN_SHIFT 5 +#define MSTORM_RDMA_TASK_AG_CTX_RULE5EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE5EN_SHIFT 6 +#define MSTORM_RDMA_TASK_AG_CTX_RULE6EN_MASK 0x1 +#define MSTORM_RDMA_TASK_AG_CTX_RULE6EN_SHIFT 7 + u8 key; + __le32 mw_cnt; + u8 ref_cnt_seq; + u8 ctx_upd_seq; + __le16 dif_flags; + __le16 tx_ref_count; + __le16 last_used_ltid; + __le16 parent_mr_lo; + __le16 parent_mr_hi; + __le32 fbo_lo; + __le32 fbo_hi; +}; + +struct ustorm_rdma_task_st_ctx { + struct regpair temp[2]; +}; + +struct ustorm_rdma_task_ag_ctx { + u8 reserved; + u8 byte1; + __le16 icid; + u8 flags0; +#define USTORM_RDMA_TASK_AG_CTX_CONNECTION_TYPE_MASK 0xF +#define USTORM_RDMA_TASK_AG_CTX_CONNECTION_TYPE_SHIFT 0 +#define USTORM_RDMA_TASK_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_EXIST_IN_QM0_SHIFT 4 +#define USTORM_RDMA_TASK_AG_CTX_DIF_RUNT_VALID_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_DIF_RUNT_VALID_SHIFT 5 +#define USTORM_RDMA_TASK_AG_CTX_DIF_WRITE_RESULT_CF_MASK 0x3 +#define USTORM_RDMA_TASK_AG_CTX_DIF_WRITE_RESULT_CF_SHIFT 6 + u8 flags1; +#define USTORM_RDMA_TASK_AG_CTX_DIF_RESULT_TOGGLE_BIT_MASK 0x3 +#define USTORM_RDMA_TASK_AG_CTX_DIF_RESULT_TOGGLE_BIT_SHIFT 0 +#define USTORM_RDMA_TASK_AG_CTX_DIF_TX_IO_FLG_MASK 0x3 +#define USTORM_RDMA_TASK_AG_CTX_DIF_TX_IO_FLG_SHIFT 2 +#define USTORM_RDMA_TASK_AG_CTX_CF3_MASK 0x3 +#define USTORM_RDMA_TASK_AG_CTX_CF3_SHIFT 4 +#define USTORM_RDMA_TASK_AG_CTX_DIF_ERROR_CF_MASK 0x3 +#define USTORM_RDMA_TASK_AG_CTX_DIF_ERROR_CF_SHIFT 6 + u8 flags2; +#define USTORM_RDMA_TASK_AG_CTX_DIF_WRITE_RESULT_CF_EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_DIF_WRITE_RESULT_CF_EN_SHIFT 0 +#define USTORM_RDMA_TASK_AG_CTX_RESERVED2_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RESERVED2_SHIFT 1 +#define USTORM_RDMA_TASK_AG_CTX_RESERVED3_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RESERVED3_SHIFT 2 +#define USTORM_RDMA_TASK_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_RDMA_TASK_AG_CTX_DIF_ERROR_CF_EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_DIF_ERROR_CF_EN_SHIFT 4 +#define USTORM_RDMA_TASK_AG_CTX_RULE0EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE0EN_SHIFT 5 +#define USTORM_RDMA_TASK_AG_CTX_RULE1EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE1EN_SHIFT 6 +#define USTORM_RDMA_TASK_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE2EN_SHIFT 7 + u8 flags3; +#define USTORM_RDMA_TASK_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE3EN_SHIFT 0 +#define USTORM_RDMA_TASK_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE4EN_SHIFT 1 +#define USTORM_RDMA_TASK_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE5EN_SHIFT 2 +#define USTORM_RDMA_TASK_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_RDMA_TASK_AG_CTX_RULE6EN_SHIFT 3 +#define USTORM_RDMA_TASK_AG_CTX_DIF_ERROR_TYPE_MASK 0xF +#define USTORM_RDMA_TASK_AG_CTX_DIF_ERROR_TYPE_SHIFT 4 + __le32 dif_err_intervals; + __le32 dif_error_1st_interval; + __le32 reg2; + __le32 dif_runt_value; + __le32 reg4; + __le32 reg5; +}; + +struct rdma_task_context { + struct ystorm_rdma_task_st_ctx ystorm_st_context; + struct ystorm_rdma_task_ag_ctx ystorm_ag_context; + struct tdif_task_context tdif_context; + struct mstorm_rdma_task_ag_ctx mstorm_ag_context; + struct mstorm_rdma_task_st_ctx mstorm_st_context; + struct rdif_task_context rdif_context; + struct ustorm_rdma_task_st_ctx ustorm_st_context; + struct regpair ustorm_st_padding[2]; + struct ustorm_rdma_task_ag_ctx ustorm_ag_context; +}; + +enum rdma_tid_type { + RDMA_TID_REGISTERED_MR, + RDMA_TID_FMR, + RDMA_TID_MW_TYPE1, + RDMA_TID_MW_TYPE2A, + MAX_RDMA_TID_TYPE +}; + +struct mstorm_rdma_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define MSTORM_RDMA_CONN_AG_CTX_BIT0_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_BIT0_SHIFT 0 +#define MSTORM_RDMA_CONN_AG_CTX_BIT1_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_BIT1_SHIFT 1 +#define MSTORM_RDMA_CONN_AG_CTX_CF0_MASK 0x3 +#define MSTORM_RDMA_CONN_AG_CTX_CF0_SHIFT 2 +#define MSTORM_RDMA_CONN_AG_CTX_CF1_MASK 0x3 +#define MSTORM_RDMA_CONN_AG_CTX_CF1_SHIFT 4 +#define MSTORM_RDMA_CONN_AG_CTX_CF2_MASK 0x3 +#define MSTORM_RDMA_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define MSTORM_RDMA_CONN_AG_CTX_CF0EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_CF0EN_SHIFT 0 +#define MSTORM_RDMA_CONN_AG_CTX_CF1EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_CF1EN_SHIFT 1 +#define MSTORM_RDMA_CONN_AG_CTX_CF2EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_CF2EN_SHIFT 2 +#define MSTORM_RDMA_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define MSTORM_RDMA_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define MSTORM_RDMA_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define MSTORM_RDMA_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define MSTORM_RDMA_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define MSTORM_RDMA_CONN_AG_CTX_RULE4EN_SHIFT 7 + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; +}; + +struct tstorm_rdma_conn_ag_ctx { + u8 reserved0; + u8 byte1; + u8 flags0; +#define TSTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define TSTORM_RDMA_CONN_AG_CTX_BIT1_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_BIT1_SHIFT 1 +#define TSTORM_RDMA_CONN_AG_CTX_BIT2_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_BIT2_SHIFT 2 +#define TSTORM_RDMA_CONN_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_BIT3_SHIFT 3 +#define TSTORM_RDMA_CONN_AG_CTX_BIT4_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_BIT4_SHIFT 4 +#define TSTORM_RDMA_CONN_AG_CTX_BIT5_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_BIT5_SHIFT 5 +#define TSTORM_RDMA_CONN_AG_CTX_CF0_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF0_SHIFT 6 + u8 flags1; +#define TSTORM_RDMA_CONN_AG_CTX_CF1_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF1_SHIFT 0 +#define TSTORM_RDMA_CONN_AG_CTX_CF2_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF2_SHIFT 2 +#define TSTORM_RDMA_CONN_AG_CTX_TIMER_STOP_ALL_CF_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_TIMER_STOP_ALL_CF_SHIFT 4 +#define TSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 6 + u8 flags2; +#define TSTORM_RDMA_CONN_AG_CTX_MSTORM_FLUSH_CF_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_MSTORM_FLUSH_CF_SHIFT 0 +#define TSTORM_RDMA_CONN_AG_CTX_CF6_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF6_SHIFT 2 +#define TSTORM_RDMA_CONN_AG_CTX_CF7_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF7_SHIFT 4 +#define TSTORM_RDMA_CONN_AG_CTX_CF8_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF8_SHIFT 6 + u8 flags3; +#define TSTORM_RDMA_CONN_AG_CTX_CF9_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF9_SHIFT 0 +#define TSTORM_RDMA_CONN_AG_CTX_CF10_MASK 0x3 +#define TSTORM_RDMA_CONN_AG_CTX_CF10_SHIFT 2 +#define TSTORM_RDMA_CONN_AG_CTX_CF0EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF0EN_SHIFT 4 +#define TSTORM_RDMA_CONN_AG_CTX_CF1EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF1EN_SHIFT 5 +#define TSTORM_RDMA_CONN_AG_CTX_CF2EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF2EN_SHIFT 6 +#define TSTORM_RDMA_CONN_AG_CTX_TIMER_STOP_ALL_CF_EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_TIMER_STOP_ALL_CF_EN_SHIFT 7 + u8 flags4; +#define TSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 0 +#define TSTORM_RDMA_CONN_AG_CTX_MSTORM_FLUSH_CF_EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_MSTORM_FLUSH_CF_EN_SHIFT 1 +#define TSTORM_RDMA_CONN_AG_CTX_CF6EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF6EN_SHIFT 2 +#define TSTORM_RDMA_CONN_AG_CTX_CF7EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF7EN_SHIFT 3 +#define TSTORM_RDMA_CONN_AG_CTX_CF8EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF8EN_SHIFT 4 +#define TSTORM_RDMA_CONN_AG_CTX_CF9EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF9EN_SHIFT 5 +#define TSTORM_RDMA_CONN_AG_CTX_CF10EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_CF10EN_SHIFT 6 +#define TSTORM_RDMA_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags5; +#define TSTORM_RDMA_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define TSTORM_RDMA_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define TSTORM_RDMA_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define TSTORM_RDMA_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define TSTORM_RDMA_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define TSTORM_RDMA_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define TSTORM_RDMA_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define TSTORM_RDMA_CONN_AG_CTX_RULE8EN_SHIFT 7 + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le32 reg7; + __le32 reg8; + u8 byte2; + u8 byte3; + __le16 word0; + u8 byte4; + u8 byte5; + __le16 word1; + __le16 word2; + __le16 word3; + __le32 reg9; + __le32 reg10; +}; + +struct tstorm_rdma_task_ag_ctx { + u8 byte0; + u8 byte1; + __le16 word0; + u8 flags0; +#define TSTORM_RDMA_TASK_AG_CTX_NIBBLE0_MASK 0xF +#define TSTORM_RDMA_TASK_AG_CTX_NIBBLE0_SHIFT 0 +#define TSTORM_RDMA_TASK_AG_CTX_BIT0_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_BIT0_SHIFT 4 +#define TSTORM_RDMA_TASK_AG_CTX_BIT1_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_BIT1_SHIFT 5 +#define TSTORM_RDMA_TASK_AG_CTX_BIT2_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_BIT2_SHIFT 6 +#define TSTORM_RDMA_TASK_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_BIT3_SHIFT 7 + u8 flags1; +#define TSTORM_RDMA_TASK_AG_CTX_BIT4_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_BIT4_SHIFT 0 +#define TSTORM_RDMA_TASK_AG_CTX_BIT5_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_BIT5_SHIFT 1 +#define TSTORM_RDMA_TASK_AG_CTX_CF0_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF0_SHIFT 2 +#define TSTORM_RDMA_TASK_AG_CTX_CF1_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF1_SHIFT 4 +#define TSTORM_RDMA_TASK_AG_CTX_CF2_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF2_SHIFT 6 + u8 flags2; +#define TSTORM_RDMA_TASK_AG_CTX_CF3_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF3_SHIFT 0 +#define TSTORM_RDMA_TASK_AG_CTX_CF4_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF4_SHIFT 2 +#define TSTORM_RDMA_TASK_AG_CTX_CF5_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF5_SHIFT 4 +#define TSTORM_RDMA_TASK_AG_CTX_CF6_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF6_SHIFT 6 + u8 flags3; +#define TSTORM_RDMA_TASK_AG_CTX_CF7_MASK 0x3 +#define TSTORM_RDMA_TASK_AG_CTX_CF7_SHIFT 0 +#define TSTORM_RDMA_TASK_AG_CTX_CF0EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF0EN_SHIFT 2 +#define TSTORM_RDMA_TASK_AG_CTX_CF1EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF1EN_SHIFT 3 +#define TSTORM_RDMA_TASK_AG_CTX_CF2EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF2EN_SHIFT 4 +#define TSTORM_RDMA_TASK_AG_CTX_CF3EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF3EN_SHIFT 5 +#define TSTORM_RDMA_TASK_AG_CTX_CF4EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF4EN_SHIFT 6 +#define TSTORM_RDMA_TASK_AG_CTX_CF5EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF5EN_SHIFT 7 + u8 flags4; +#define TSTORM_RDMA_TASK_AG_CTX_CF6EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF6EN_SHIFT 0 +#define TSTORM_RDMA_TASK_AG_CTX_CF7EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_CF7EN_SHIFT 1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE0EN_SHIFT 2 +#define TSTORM_RDMA_TASK_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE1EN_SHIFT 3 +#define TSTORM_RDMA_TASK_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE2EN_SHIFT 4 +#define TSTORM_RDMA_TASK_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE3EN_SHIFT 5 +#define TSTORM_RDMA_TASK_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE4EN_SHIFT 6 +#define TSTORM_RDMA_TASK_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_RDMA_TASK_AG_CTX_RULE5EN_SHIFT 7 + u8 byte2; + __le16 word1; + __le32 reg0; + u8 byte3; + u8 byte4; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg1; + __le32 reg2; +}; + +struct ustorm_rdma_conn_ag_ctx { + u8 reserved; + u8 byte1; + u8 flags0; +#define USTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define USTORM_RDMA_CONN_AG_CTX_BIT1_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_BIT1_SHIFT 1 +#define USTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 2 +#define USTORM_RDMA_CONN_AG_CTX_CF1_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_CF1_SHIFT 4 +#define USTORM_RDMA_CONN_AG_CTX_CF2_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define USTORM_RDMA_CONN_AG_CTX_CF3_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_CF3_SHIFT 0 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_SE_CF_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_SE_CF_SHIFT 2 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_CF_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_CF_SHIFT 4 +#define USTORM_RDMA_CONN_AG_CTX_CF6_MASK 0x3 +#define USTORM_RDMA_CONN_AG_CTX_CF6_SHIFT 6 + u8 flags2; +#define USTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 0 +#define USTORM_RDMA_CONN_AG_CTX_CF1EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CF1EN_SHIFT 1 +#define USTORM_RDMA_CONN_AG_CTX_CF2EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CF2EN_SHIFT 2 +#define USTORM_RDMA_CONN_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_SE_CF_EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_SE_CF_EN_SHIFT 4 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_CF_EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CQ_ARM_CF_EN_SHIFT 5 +#define USTORM_RDMA_CONN_AG_CTX_CF6EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CF6EN_SHIFT 6 +#define USTORM_RDMA_CONN_AG_CTX_CQ_SE_EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CQ_SE_EN_SHIFT 7 + u8 flags3; +#define USTORM_RDMA_CONN_AG_CTX_CQ_EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_CQ_EN_SHIFT 0 +#define USTORM_RDMA_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define USTORM_RDMA_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define USTORM_RDMA_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define USTORM_RDMA_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define USTORM_RDMA_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define USTORM_RDMA_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define USTORM_RDMA_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define USTORM_RDMA_CONN_AG_CTX_RULE8EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 conn_dpi; + __le16 word1; + __le32 cq_cons; + __le32 cq_se_prod; + __le32 cq_prod; + __le32 reg3; + __le16 int_timeout; + __le16 word3; +}; + +struct xstorm_roce_conn_ag_ctx_dq_ext_ld_part { + u8 reserved0; + u8 state; + u8 flags0; +#define XSTORMROCECONNAGCTXDQEXTLDPART_EXIST_IN_QM0_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_EXIST_IN_QM0_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT1_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT1_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT2_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT2_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_EXIST_IN_QM3_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_EXIST_IN_QM3_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT4_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT4_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT5_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT5_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT6_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT6_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT7_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT7_SHIFT 7 + u8 flags1; +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT8_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT8_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT9_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT9_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT10_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT10_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT11_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT11_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT12_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT12_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT13_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT13_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT14_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT14_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_YSTORM_FLUSH_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_YSTORM_FLUSH_SHIFT 7 + u8 flags2; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF0_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF0_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF1_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF1_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF2_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF2_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF3_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF3_SHIFT 6 + u8 flags3; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF4_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF4_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF5_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF5_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF6_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF6_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_FLUSH_Q0_CF_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_FLUSH_Q0_CF_SHIFT 6 + u8 flags4; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF8_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF8_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF9_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF9_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF10_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF10_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF11_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF11_SHIFT 6 + u8 flags5; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF12_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF12_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF13_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF13_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF14_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF14_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF15_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF15_SHIFT 6 + u8 flags6; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF16_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF16_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF17_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF17_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF18_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF18_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF19_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF19_SHIFT 6 + u8 flags7; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF20_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF20_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF21_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF21_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_SLOW_PATH_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_SLOW_PATH_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF0EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF0EN_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF1EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF1EN_SHIFT 7 + u8 flags8; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF2EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF2EN_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF3EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF3EN_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF4EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF4EN_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF5EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF5EN_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF6EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF6EN_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_FLUSH_Q0_CF_EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_FLUSH_Q0_CF_EN_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF8EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF8EN_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF9EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF9EN_SHIFT 7 + u8 flags9; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF10EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF10EN_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF11EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF11EN_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF12EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF12EN_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF13EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF13EN_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF14EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF14EN_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF15EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF15EN_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF16EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF16EN_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF17EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF17EN_SHIFT 7 + u8 flags10; +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF18EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF18EN_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF19EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF19EN_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF20EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF20EN_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF21EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF21EN_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_SLOW_PATH_EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_SLOW_PATH_EN_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF23EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF23EN_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE0EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE0EN_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE1EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE1EN_SHIFT 7 + u8 flags11; +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE2EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE2EN_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE3EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE3EN_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE4EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE4EN_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE5EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE5EN_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE6EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE6EN_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE7EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE7EN_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED1_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED1_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE9EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE9EN_SHIFT 7 + u8 flags12; +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE10EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE10EN_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE11EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE11EN_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED2_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED2_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED3_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED3_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE14EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE14EN_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE15EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE15EN_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE16EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE16EN_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE17EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE17EN_SHIFT 7 + u8 flags13; +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE18EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE18EN_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE19EN_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RULE19EN_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED4_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED4_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED5_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED5_SHIFT 3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED6_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED6_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED7_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED7_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED8_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED8_SHIFT 6 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED9_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_A0_RESERVED9_SHIFT 7 + u8 flags14; +#define XSTORMROCECONNAGCTXDQEXTLDPART_MIGRATION_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_MIGRATION_SHIFT 0 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT17_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_BIT17_SHIFT 1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_DPM_PORT_NUM_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_DPM_PORT_NUM_SHIFT 2 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RESERVED_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_RESERVED_SHIFT 4 +#define XSTORMROCECONNAGCTXDQEXTLDPART_ROCE_EDPM_ENABLE_MASK 0x1 +#define XSTORMROCECONNAGCTXDQEXTLDPART_ROCE_EDPM_ENABLE_SHIFT 5 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF23_MASK 0x3 +#define XSTORMROCECONNAGCTXDQEXTLDPART_CF23_SHIFT 6 + u8 byte2; + __le16 physical_q0; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le16 word5; + __le16 conn_dpi; + u8 byte3; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 snd_nxt_psn; + __le32 reg4; +}; + +struct xstorm_rdma_conn_ag_ctx { + u8 reserved0; + u8 state; + u8 flags0; +#define XSTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_BIT1_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT1_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT2_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT2_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_BIT4_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT4_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_BIT5_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT5_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_BIT6_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT6_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_BIT7_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT7_SHIFT 7 + u8 flags1; +#define XSTORM_RDMA_CONN_AG_CTX_BIT8_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT8_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_BIT9_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT9_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT10_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT10_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_BIT11_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT11_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_BIT12_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT12_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_BIT13_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT13_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_BIT14_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT14_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_YSTORM_FLUSH_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_YSTORM_FLUSH_SHIFT 7 + u8 flags2; +#define XSTORM_RDMA_CONN_AG_CTX_CF0_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF0_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF1_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF1_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF2_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF2_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF3_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF3_SHIFT 6 + u8 flags3; +#define XSTORM_RDMA_CONN_AG_CTX_CF4_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF4_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF5_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF5_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF6_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF6_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 6 + u8 flags4; +#define XSTORM_RDMA_CONN_AG_CTX_CF8_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF8_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF9_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF9_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF10_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF10_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF11_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF11_SHIFT 6 + u8 flags5; +#define XSTORM_RDMA_CONN_AG_CTX_CF12_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF12_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF13_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF13_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF14_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF14_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF15_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF15_SHIFT 6 + u8 flags6; +#define XSTORM_RDMA_CONN_AG_CTX_CF16_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF16_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF17_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF17_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF18_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF18_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF19_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF19_SHIFT 6 + u8 flags7; +#define XSTORM_RDMA_CONN_AG_CTX_CF20_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF20_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF21_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF21_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_SLOW_PATH_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_SLOW_PATH_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF0EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF0EN_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_CF1EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF1EN_SHIFT 7 + u8 flags8; +#define XSTORM_RDMA_CONN_AG_CTX_CF2EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF2EN_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF3EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF3EN_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_CF4EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF4EN_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF5EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF5EN_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_CF6EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF6EN_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_CF8EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF8EN_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_CF9EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF9EN_SHIFT 7 + u8 flags9; +#define XSTORM_RDMA_CONN_AG_CTX_CF10EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF10EN_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF11EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF11EN_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_CF12EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF12EN_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF13EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF13EN_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_CF14EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF14EN_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF15EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF15EN_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_CF16EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF16EN_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_CF17EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF17EN_SHIFT 7 + u8 flags10; +#define XSTORM_RDMA_CONN_AG_CTX_CF18EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF18EN_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_CF19EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF19EN_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_CF20EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF20EN_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_CF21EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF21EN_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_CF23EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_CF23EN_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE0EN_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE1EN_SHIFT 7 + u8 flags11; +#define XSTORM_RDMA_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE2EN_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE3EN_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE4EN_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE5EN_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE6EN_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE7EN_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_RULE9EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE9EN_SHIFT 7 + u8 flags12; +#define XSTORM_RDMA_CONN_AG_CTX_RULE10EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE10EN_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_RULE11EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE11EN_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_RULE14EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE14EN_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_RULE15EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE15EN_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_RULE16EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE16EN_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_RULE17EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE17EN_SHIFT 7 + u8 flags13; +#define XSTORM_RDMA_CONN_AG_CTX_RULE18EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE18EN_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_RULE19EN_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RULE19EN_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 + u8 flags14; +#define XSTORM_RDMA_CONN_AG_CTX_MIGRATION_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_MIGRATION_SHIFT 0 +#define XSTORM_RDMA_CONN_AG_CTX_BIT17_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_BIT17_SHIFT 1 +#define XSTORM_RDMA_CONN_AG_CTX_DPM_PORT_NUM_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_DPM_PORT_NUM_SHIFT 2 +#define XSTORM_RDMA_CONN_AG_CTX_RESERVED_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_RESERVED_SHIFT 4 +#define XSTORM_RDMA_CONN_AG_CTX_ROCE_EDPM_ENABLE_MASK 0x1 +#define XSTORM_RDMA_CONN_AG_CTX_ROCE_EDPM_ENABLE_SHIFT 5 +#define XSTORM_RDMA_CONN_AG_CTX_CF23_MASK 0x3 +#define XSTORM_RDMA_CONN_AG_CTX_CF23_SHIFT 6 + u8 byte2; + __le16 physical_q0; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le16 word5; + __le16 conn_dpi; + u8 byte3; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 snd_nxt_psn; + __le32 reg4; + __le32 reg5; + __le32 reg6; +}; + +struct ystorm_rdma_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define YSTORM_RDMA_CONN_AG_CTX_BIT0_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_BIT0_SHIFT 0 +#define YSTORM_RDMA_CONN_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_BIT1_SHIFT 1 +#define YSTORM_RDMA_CONN_AG_CTX_CF0_MASK 0x3 +#define YSTORM_RDMA_CONN_AG_CTX_CF0_SHIFT 2 +#define YSTORM_RDMA_CONN_AG_CTX_CF1_MASK 0x3 +#define YSTORM_RDMA_CONN_AG_CTX_CF1_SHIFT 4 +#define YSTORM_RDMA_CONN_AG_CTX_CF2_MASK 0x3 +#define YSTORM_RDMA_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define YSTORM_RDMA_CONN_AG_CTX_CF0EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_CF0EN_SHIFT 0 +#define YSTORM_RDMA_CONN_AG_CTX_CF1EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_CF1EN_SHIFT 1 +#define YSTORM_RDMA_CONN_AG_CTX_CF2EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_CF2EN_SHIFT 2 +#define YSTORM_RDMA_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define YSTORM_RDMA_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define YSTORM_RDMA_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define YSTORM_RDMA_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define YSTORM_RDMA_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_RDMA_CONN_AG_CTX_RULE4EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le32 reg0; + __le32 reg1; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg2; + __le32 reg3; +}; + +struct mstorm_roce_conn_st_ctx { + struct regpair temp[6]; +}; + +struct pstorm_roce_conn_st_ctx { + struct regpair temp[16]; +}; + +struct ystorm_roce_conn_st_ctx { + struct regpair temp[2]; +}; + +struct xstorm_roce_conn_st_ctx { + struct regpair temp[22]; +}; + +struct tstorm_roce_conn_st_ctx { + struct regpair temp[30]; +}; + +struct ustorm_roce_conn_st_ctx { + struct regpair temp[12]; +}; + +struct roce_conn_context { + struct ystorm_roce_conn_st_ctx ystorm_st_context; + struct regpair ystorm_st_padding[2]; + struct pstorm_roce_conn_st_ctx pstorm_st_context; + struct xstorm_roce_conn_st_ctx xstorm_st_context; + struct regpair xstorm_st_padding[2]; + struct xstorm_rdma_conn_ag_ctx xstorm_ag_context; + struct tstorm_rdma_conn_ag_ctx tstorm_ag_context; + struct timers_context timer_context; + struct ustorm_rdma_conn_ag_ctx ustorm_ag_context; + struct tstorm_roce_conn_st_ctx tstorm_st_context; + struct mstorm_roce_conn_st_ctx mstorm_st_context; + struct ustorm_roce_conn_st_ctx ustorm_st_context; + struct regpair ustorm_st_padding[2]; +}; + +struct roce_create_qp_req_ramrod_data { + __le16 flags; +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_ROCE_FLAVOR_MASK 0x3 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_ROCE_FLAVOR_SHIFT 0 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_FMR_AND_RESERVED_EN_MASK 0x1 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_FMR_AND_RESERVED_EN_SHIFT 2 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_SIGNALED_COMP_MASK 0x1 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_SIGNALED_COMP_SHIFT 3 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_PRI_MASK 0x7 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_PRI_SHIFT 4 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_RESERVED_MASK 0x1 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_RESERVED_SHIFT 7 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_ERR_RETRY_CNT_MASK 0xF +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_ERR_RETRY_CNT_SHIFT 8 +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_RNR_NAK_CNT_MASK 0xF +#define ROCE_CREATE_QP_REQ_RAMROD_DATA_RNR_NAK_CNT_SHIFT 12 + u8 max_ord; + u8 traffic_class; + u8 hop_limit; + u8 orq_num_pages; + __le16 p_key; + __le32 flow_label; + __le32 dst_qp_id; + __le32 ack_timeout_val; + __le32 initial_psn; + __le16 mtu; + __le16 pd; + __le16 sq_num_pages; + __le16 reseved2; + struct regpair sq_pbl_addr; + struct regpair orq_pbl_addr; + __le16 local_mac_addr[3]; + __le16 remote_mac_addr[3]; + __le16 vlan_id; + __le16 udp_src_port; + __le32 src_gid[4]; + __le32 dst_gid[4]; + struct regpair qp_handle_for_cqe; + struct regpair qp_handle_for_async; + u8 stats_counter_id; + u8 reserved3[7]; + __le32 cq_cid; + __le16 physical_queue0; + __le16 dpi; +}; + +struct roce_create_qp_resp_ramrod_data { + __le16 flags; +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_ROCE_FLAVOR_MASK 0x3 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_ROCE_FLAVOR_SHIFT 0 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_RDMA_RD_EN_MASK 0x1 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_RDMA_RD_EN_SHIFT 2 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_RDMA_WR_EN_MASK 0x1 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_RDMA_WR_EN_SHIFT 3 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_ATOMIC_EN_MASK 0x1 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_ATOMIC_EN_SHIFT 4 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_SRQ_FLG_MASK 0x1 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_SRQ_FLG_SHIFT 5 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_E2E_FLOW_CONTROL_EN_MASK 0x1 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_E2E_FLOW_CONTROL_EN_SHIFT 6 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_RESERVED0_MASK 0x1 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_RESERVED0_SHIFT 7 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_PRI_MASK 0x7 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_PRI_SHIFT 8 +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_MIN_RNR_NAK_TIMER_MASK 0x1F +#define ROCE_CREATE_QP_RESP_RAMROD_DATA_MIN_RNR_NAK_TIMER_SHIFT 11 + u8 max_ird; + u8 traffic_class; + u8 hop_limit; + u8 irq_num_pages; + __le16 p_key; + __le32 flow_label; + __le32 dst_qp_id; + u8 stats_counter_id; + u8 reserved1; + __le16 mtu; + __le32 initial_psn; + __le16 pd; + __le16 rq_num_pages; + struct rdma_srq_id srq_id; + struct regpair rq_pbl_addr; + struct regpair irq_pbl_addr; + __le16 local_mac_addr[3]; + __le16 remote_mac_addr[3]; + __le16 vlan_id; + __le16 udp_src_port; + __le32 src_gid[4]; + __le32 dst_gid[4]; + struct regpair qp_handle_for_cqe; + struct regpair qp_handle_for_async; + __le32 reserved2[2]; + __le32 cq_cid; + __le16 physical_queue0; + __le16 dpi; +}; + +struct roce_destroy_qp_req_output_params { + __le32 num_bound_mw; + __le32 reserved; +}; + +struct roce_destroy_qp_req_ramrod_data { + struct regpair output_params_addr; +}; + +struct roce_destroy_qp_resp_output_params { + __le32 num_invalidated_mw; + __le32 reserved; +}; + +struct roce_destroy_qp_resp_ramrod_data { + struct regpair output_params_addr; +}; + +enum roce_event_opcode { + ROCE_EVENT_CREATE_QP = 11, + ROCE_EVENT_MODIFY_QP, + ROCE_EVENT_QUERY_QP, + ROCE_EVENT_DESTROY_QP, + MAX_ROCE_EVENT_OPCODE +}; + +struct roce_modify_qp_req_ramrod_data { + __le16 flags; +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_MOVE_TO_ERR_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_MOVE_TO_ERR_FLG_SHIFT 0 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_MOVE_TO_SQD_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_MOVE_TO_SQD_FLG_SHIFT 1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_EN_SQD_ASYNC_NOTIFY_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_EN_SQD_ASYNC_NOTIFY_SHIFT 2 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_P_KEY_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_P_KEY_FLG_SHIFT 3 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ADDRESS_VECTOR_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ADDRESS_VECTOR_FLG_SHIFT 4 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_MAX_ORD_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_MAX_ORD_FLG_SHIFT 5 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_RNR_NAK_CNT_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_RNR_NAK_CNT_FLG_SHIFT 6 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ERR_RETRY_CNT_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ERR_RETRY_CNT_FLG_SHIFT 7 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ACK_TIMEOUT_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ACK_TIMEOUT_FLG_SHIFT 8 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_PRI_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_PRI_FLG_SHIFT 9 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_PRI_MASK 0x7 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_PRI_SHIFT 10 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_RESERVED1_MASK 0x7 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_RESERVED1_SHIFT 13 + u8 fields; +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ERR_RETRY_CNT_MASK 0xF +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_ERR_RETRY_CNT_SHIFT 0 +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_RNR_NAK_CNT_MASK 0xF +#define ROCE_MODIFY_QP_REQ_RAMROD_DATA_RNR_NAK_CNT_SHIFT 4 + u8 max_ord; + u8 traffic_class; + u8 hop_limit; + __le16 p_key; + __le32 flow_label; + __le32 ack_timeout_val; + __le16 mtu; + __le16 reserved2; + __le32 reserved3[3]; + __le32 src_gid[4]; + __le32 dst_gid[4]; +}; + +struct roce_modify_qp_resp_ramrod_data { + __le16 flags; +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MOVE_TO_ERR_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MOVE_TO_ERR_FLG_SHIFT 0 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RDMA_RD_EN_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RDMA_RD_EN_SHIFT 1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RDMA_WR_EN_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RDMA_WR_EN_SHIFT 2 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_ATOMIC_EN_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_ATOMIC_EN_SHIFT 3 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_P_KEY_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_P_KEY_FLG_SHIFT 4 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_ADDRESS_VECTOR_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_ADDRESS_VECTOR_FLG_SHIFT 5 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MAX_IRD_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MAX_IRD_FLG_SHIFT 6 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_PRI_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_PRI_FLG_SHIFT 7 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MIN_RNR_NAK_TIMER_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MIN_RNR_NAK_TIMER_FLG_SHIFT 8 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RDMA_OPS_EN_FLG_MASK 0x1 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RDMA_OPS_EN_FLG_SHIFT 9 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RESERVED1_MASK 0x3F +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_RESERVED1_SHIFT 10 + u8 fields; +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_PRI_MASK 0x7 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_PRI_SHIFT 0 +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MIN_RNR_NAK_TIMER_MASK 0x1F +#define ROCE_MODIFY_QP_RESP_RAMROD_DATA_MIN_RNR_NAK_TIMER_SHIFT 3 + u8 max_ird; + u8 traffic_class; + u8 hop_limit; + __le16 p_key; + __le32 flow_label; + __le16 mtu; + __le16 reserved2; + __le32 src_gid[4]; + __le32 dst_gid[4]; +}; + +struct roce_query_qp_req_output_params { + __le32 psn; + __le32 flags; +#define ROCE_QUERY_QP_REQ_OUTPUT_PARAMS_ERR_FLG_MASK 0x1 +#define ROCE_QUERY_QP_REQ_OUTPUT_PARAMS_ERR_FLG_SHIFT 0 +#define ROCE_QUERY_QP_REQ_OUTPUT_PARAMS_SQ_DRAINING_FLG_MASK 0x1 +#define ROCE_QUERY_QP_REQ_OUTPUT_PARAMS_SQ_DRAINING_FLG_SHIFT 1 +#define ROCE_QUERY_QP_REQ_OUTPUT_PARAMS_RESERVED0_MASK 0x3FFFFFFF +#define ROCE_QUERY_QP_REQ_OUTPUT_PARAMS_RESERVED0_SHIFT 2 +}; + +struct roce_query_qp_req_ramrod_data { + struct regpair output_params_addr; +}; + +struct roce_query_qp_resp_output_params { + __le32 psn; + __le32 err_flag; +#define ROCE_QUERY_QP_RESP_OUTPUT_PARAMS_ERROR_FLG_MASK 0x1 +#define ROCE_QUERY_QP_RESP_OUTPUT_PARAMS_ERROR_FLG_SHIFT 0 +#define ROCE_QUERY_QP_RESP_OUTPUT_PARAMS_RESERVED0_MASK 0x7FFFFFFF +#define ROCE_QUERY_QP_RESP_OUTPUT_PARAMS_RESERVED0_SHIFT 1 +}; + +struct roce_query_qp_resp_ramrod_data { + struct regpair output_params_addr; +}; + +enum roce_ramrod_cmd_id { + ROCE_RAMROD_CREATE_QP = 11, + ROCE_RAMROD_MODIFY_QP, + ROCE_RAMROD_QUERY_QP, + ROCE_RAMROD_DESTROY_QP, + MAX_ROCE_RAMROD_CMD_ID +}; + +struct mstorm_roce_req_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define MSTORM_ROCE_REQ_CONN_AG_CTX_BIT0_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_BIT0_SHIFT 0 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_BIT1_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_BIT1_SHIFT 1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF0_MASK 0x3 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF0_SHIFT 2 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF1_MASK 0x3 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF1_SHIFT 4 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF2_MASK 0x3 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_SHIFT 0 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_SHIFT 1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_SHIFT 2 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define MSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_SHIFT 7 + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; +}; + +struct mstorm_roce_resp_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define MSTORM_ROCE_RESP_CONN_AG_CTX_BIT0_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_BIT0_SHIFT 0 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_BIT1_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_BIT1_SHIFT 1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF0_MASK 0x3 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF0_SHIFT 2 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF1_MASK 0x3 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF1_SHIFT 4 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF2_MASK 0x3 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_SHIFT 0 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_SHIFT 1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_SHIFT 2 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define MSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_SHIFT 7 + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; +}; + +enum roce_flavor { + PLAIN_ROCE /* RoCE v1 */ , + RROCE_IPV4 /* RoCE v2 (Routable RoCE) over ipv4 */ , + RROCE_IPV6 /* RoCE v2 (Routable RoCE) over ipv6 */ , + MAX_ROCE_FLAVOR +}; + +struct tstorm_roce_req_conn_ag_ctx { + u8 reserved0; + u8 state; + u8 flags0; +#define TSTORM_ROCE_REQ_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RX_ERROR_OCCURED_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RX_ERROR_OCCURED_SHIFT 1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TX_CQE_ERROR_OCCURED_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TX_CQE_ERROR_OCCURED_SHIFT 2 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_BIT3_SHIFT 3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_MSTORM_FLUSH_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_MSTORM_FLUSH_SHIFT 4 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_CACHED_ORQ_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_CACHED_ORQ_SHIFT 5 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_CF_SHIFT 6 + u8 flags1; +#define TSTORM_ROCE_REQ_CONN_AG_CTX_CF1_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_CF1_SHIFT 0 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_SQ_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_SQ_CF_SHIFT 2 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_STOP_ALL_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_STOP_ALL_CF_SHIFT 4 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 6 + u8 flags2; +#define TSTORM_ROCE_REQ_CONN_AG_CTX_MSTORM_FLUSH_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_MSTORM_FLUSH_CF_SHIFT 0 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SET_TIMER_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SET_TIMER_CF_SHIFT 2 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TX_ASYNC_ERROR_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TX_ASYNC_ERROR_CF_SHIFT 4 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RXMIT_DONE_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RXMIT_DONE_CF_SHIFT 6 + u8 flags3; +#define TSTORM_ROCE_REQ_CONN_AG_CTX_ERROR_SCAN_COMPLETED_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_ERROR_SCAN_COMPLETED_CF_SHIFT 0 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SQ_DRAIN_COMPLETED_CF_MASK 0x3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SQ_DRAIN_COMPLETED_CF_SHIFT 2 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_CF_EN_SHIFT 4 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_SHIFT 5 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_SQ_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_SQ_CF_EN_SHIFT 6 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_STOP_ALL_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TIMER_STOP_ALL_CF_EN_SHIFT 7 + u8 flags4; +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 0 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_MSTORM_FLUSH_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_MSTORM_FLUSH_CF_EN_SHIFT 1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SET_TIMER_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SET_TIMER_CF_EN_SHIFT 2 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TX_ASYNC_ERROR_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_TX_ASYNC_ERROR_CF_EN_SHIFT 3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RXMIT_DONE_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RXMIT_DONE_CF_EN_SHIFT 4 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_ERROR_SCAN_COMPLETED_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_ERROR_SCAN_COMPLETED_CF_EN_SHIFT 5 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SQ_DRAIN_COMPLETED_CF_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SQ_DRAIN_COMPLETED_CF_EN_SHIFT 6 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags5; +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SND_SQ_CONS_EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_SND_SQ_CONS_EN_SHIFT 5 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define TSTORM_ROCE_REQ_CONN_AG_CTX_RULE8EN_SHIFT 7 + __le32 reg0; + __le32 snd_nxt_psn; + __le32 snd_max_psn; + __le32 orq_prod; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le32 reg7; + __le32 reg8; + u8 tx_cqe_error_type; + u8 orq_cache_idx; + __le16 snd_sq_cons_th; + u8 byte4; + u8 byte5; + __le16 snd_sq_cons; + __le16 word2; + __le16 word3; + __le32 reg9; + __le32 reg10; +}; + +struct tstorm_roce_resp_conn_ag_ctx { + u8 byte0; + u8 state; + u8 flags0; +#define TSTORM_ROCE_RESP_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT1_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT1_SHIFT 1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT2_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT2_SHIFT 2 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT3_SHIFT 3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_MSTORM_FLUSH_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_MSTORM_FLUSH_SHIFT 4 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT5_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_BIT5_SHIFT 5 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF0_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF0_SHIFT 6 + u8 flags1; +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_SHIFT 0 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_TX_ERROR_CF_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_TX_ERROR_CF_SHIFT 2 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF3_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF3_SHIFT 4 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 6 + u8 flags2; +#define TSTORM_ROCE_RESP_CONN_AG_CTX_MSTORM_FLUSH_CF_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_MSTORM_FLUSH_CF_SHIFT 0 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF6_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF6_SHIFT 2 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF7_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF7_SHIFT 4 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF8_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF8_SHIFT 6 + u8 flags3; +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF9_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF9_SHIFT 0 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF10_MASK 0x3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF10_SHIFT 2 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_SHIFT 4 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_EN_SHIFT 5 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_TX_ERROR_CF_EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_TX_ERROR_CF_EN_SHIFT 6 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF3EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF3EN_SHIFT 7 + u8 flags4; +#define TSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 0 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_MSTORM_FLUSH_CF_EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_MSTORM_FLUSH_CF_EN_SHIFT 1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF6EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF6EN_SHIFT 2 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF7EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF7EN_SHIFT 3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF8EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF8EN_SHIFT 4 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF9EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF9EN_SHIFT 5 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF10EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_CF10EN_SHIFT 6 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags5; +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RQ_RULE_EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RQ_RULE_EN_SHIFT 5 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define TSTORM_ROCE_RESP_CONN_AG_CTX_RULE8EN_SHIFT 7 + __le32 psn_and_rxmit_id_echo; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le32 reg7; + __le32 reg8; + u8 tx_async_error_type; + u8 byte3; + __le16 rq_cons; + u8 byte4; + u8 byte5; + __le16 rq_prod; + __le16 conn_dpi; + __le16 irq_cons; + __le32 num_invlidated_mw; + __le32 reg10; +}; + +struct ustorm_roce_req_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define USTORM_ROCE_REQ_CONN_AG_CTX_BIT0_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_BIT0_SHIFT 0 +#define USTORM_ROCE_REQ_CONN_AG_CTX_BIT1_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_BIT1_SHIFT 1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF0_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF0_SHIFT 2 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF1_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF1_SHIFT 4 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF2_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF3_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF3_SHIFT 0 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF4_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF4_SHIFT 2 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF5_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF5_SHIFT 4 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF6_MASK 0x3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF6_SHIFT 6 + u8 flags2; +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_SHIFT 0 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_SHIFT 1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_SHIFT 2 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF4EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF4EN_SHIFT 4 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF5EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF5EN_SHIFT 5 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF6EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_CF6EN_SHIFT 6 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags3; +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define USTORM_ROCE_REQ_CONN_AG_CTX_RULE8EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le16 word2; + __le16 word3; +}; + +struct ustorm_roce_resp_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define USTORM_ROCE_RESP_CONN_AG_CTX_BIT0_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_BIT0_SHIFT 0 +#define USTORM_ROCE_RESP_CONN_AG_CTX_BIT1_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_BIT1_SHIFT 1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF0_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF0_SHIFT 2 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF1_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF1_SHIFT 4 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF2_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF3_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF3_SHIFT 0 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF4_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF4_SHIFT 2 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF5_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF5_SHIFT 4 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF6_MASK 0x3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF6_SHIFT 6 + u8 flags2; +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_SHIFT 0 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_SHIFT 1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_SHIFT 2 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF4EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF4EN_SHIFT 4 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF5EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF5EN_SHIFT 5 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF6EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_CF6EN_SHIFT 6 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags3; +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define USTORM_ROCE_RESP_CONN_AG_CTX_RULE8EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le16 word2; + __le16 word3; +}; + +struct xstorm_roce_req_conn_ag_ctx { + u8 reserved0; + u8 state; + u8 flags0; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED1_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED1_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED2_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED2_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED3_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED3_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED4_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED4_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED5_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED5_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED6_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED6_SHIFT 7 + u8 flags1; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED7_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED7_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED8_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED8_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT10_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT10_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT11_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT11_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT12_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT12_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT13_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT13_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_ERROR_STATE_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_ERROR_STATE_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_YSTORM_FLUSH_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_YSTORM_FLUSH_SHIFT 7 + u8 flags2; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF0_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF0_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF1_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF1_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF2_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF2_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF3_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF3_SHIFT 6 + u8 flags3; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SQ_FLUSH_CF_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SQ_FLUSH_CF_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RX_ERROR_CF_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RX_ERROR_CF_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SND_RXMIT_CF_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SND_RXMIT_CF_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 6 + u8 flags4; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF8_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF8_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF9_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF9_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF10_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF10_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF11_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF11_SHIFT 6 + u8 flags5; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF12_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF12_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF13_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF13_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FMR_ENDED_CF_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FMR_ENDED_CF_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF15_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF15_SHIFT 6 + u8 flags6; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF16_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF16_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF17_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF17_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF18_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF18_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF19_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF19_SHIFT 6 + u8 flags7; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF20_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF20_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF21_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF21_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SLOW_PATH_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SLOW_PATH_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_SHIFT 7 + u8 flags8; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF3EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF3EN_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SQ_FLUSH_CF_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SQ_FLUSH_CF_EN_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RX_ERROR_CF_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RX_ERROR_CF_EN_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SND_RXMIT_CF_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SND_RXMIT_CF_EN_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF8EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF8EN_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF9EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF9EN_SHIFT 7 + u8 flags9; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF10EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF10EN_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF11EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF11EN_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF12EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF12EN_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF13EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF13EN_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FME_ENDED_CF_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_FME_ENDED_CF_EN_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF15EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF15EN_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF16EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF16EN_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF17EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF17EN_SHIFT 7 + u8 flags10; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF18EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF18EN_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF19EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF19EN_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF20EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF20EN_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF21EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF21EN_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF23EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF23EN_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_SHIFT 7 + u8 flags11; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE5EN_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE6EN_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_E2E_CREDIT_RULE_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_E2E_CREDIT_RULE_EN_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE9EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE9EN_SHIFT 7 + u8 flags12; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SQ_PROD_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_SQ_PROD_EN_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE11EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE11EN_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_INV_FENCE_RULE_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_INV_FENCE_RULE_EN_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE15EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE15EN_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_ORQ_FENCE_RULE_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_ORQ_FENCE_RULE_EN_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_MAX_ORD_RULE_EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_MAX_ORD_RULE_EN_SHIFT 7 + u8 flags13; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE18EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE18EN_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE19EN_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RULE19EN_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 + u8 flags14; +#define XSTORM_ROCE_REQ_CONN_AG_CTX_MIGRATION_FLAG_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_MIGRATION_FLAG_SHIFT 0 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT17_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_BIT17_SHIFT 1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_DPM_PORT_NUM_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_DPM_PORT_NUM_SHIFT 2 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_RESERVED_SHIFT 4 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_ROCE_EDPM_ENABLE_MASK 0x1 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_ROCE_EDPM_ENABLE_SHIFT 5 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF23_MASK 0x3 +#define XSTORM_ROCE_REQ_CONN_AG_CTX_CF23_SHIFT 6 + u8 byte2; + __le16 physical_q0; + __le16 word1; + __le16 sq_cmp_cons; + __le16 sq_cons; + __le16 sq_prod; + __le16 word5; + __le16 conn_dpi; + u8 byte3; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 lsn; + __le32 ssn; + __le32 snd_una_psn; + __le32 snd_nxt_psn; + __le32 reg4; + __le32 orq_cons_th; + __le32 orq_cons; +}; + +struct xstorm_roce_resp_conn_ag_ctx { + u8 reserved0; + u8 state; + u8 flags0; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED1_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED1_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED2_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED2_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED3_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED3_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED4_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED4_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED5_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED5_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED6_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED6_SHIFT 7 + u8 flags1; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED7_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED7_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED8_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RESERVED8_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT10_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT10_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT11_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT11_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT12_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT12_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT13_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT13_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_ERROR_STATE_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_ERROR_STATE_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_YSTORM_FLUSH_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_YSTORM_FLUSH_SHIFT 7 + u8 flags2; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF0_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF0_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF1_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF1_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF2_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF2_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF3_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF3_SHIFT 6 + u8 flags3; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RXMIT_CF_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RXMIT_CF_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FORCE_ACK_CF_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FORCE_ACK_CF_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_SHIFT 6 + u8 flags4; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF8_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF8_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF9_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF9_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF10_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF10_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF11_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF11_SHIFT 6 + u8 flags5; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF12_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF12_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF13_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF13_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF14_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF14_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF15_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF15_SHIFT 6 + u8 flags6; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF16_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF16_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF17_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF17_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF18_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF18_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF19_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF19_SHIFT 6 + u8 flags7; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF20_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF20_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF21_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF21_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_SLOW_PATH_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_SLOW_PATH_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_SHIFT 7 + u8 flags8; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF3EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF3EN_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RXMIT_CF_EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RXMIT_CF_EN_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RX_ERROR_CF_EN_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FORCE_ACK_CF_EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FORCE_ACK_CF_EN_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_FLUSH_Q0_CF_EN_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF8EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF8EN_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF9EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF9EN_SHIFT 7 + u8 flags9; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF10EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF10EN_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF11EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF11EN_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF12EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF12EN_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF13EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF13EN_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF14EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF14EN_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF15EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF15EN_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF16EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF16EN_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF17EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF17EN_SHIFT 7 + u8 flags10; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF18EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF18EN_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF19EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF19EN_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF20EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF20EN_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF21EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF21EN_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF23EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF23EN_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_SHIFT 7 + u8 flags11; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE5EN_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE6EN_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE7EN_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE9EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE9EN_SHIFT 7 + u8 flags12; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE10EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE10EN_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_IRQ_PROD_RULE_EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_IRQ_PROD_RULE_EN_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE14EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE14EN_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE15EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE15EN_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE16EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE16EN_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE17EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE17EN_SHIFT 7 + u8 flags13; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE18EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE18EN_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE19EN_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_RULE19EN_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 + u8 flags14; +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT16_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT16_SHIFT 0 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT17_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT17_SHIFT 1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT18_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT18_SHIFT 2 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT19_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT19_SHIFT 3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT20_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT20_SHIFT 4 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT21_MASK 0x1 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_BIT21_SHIFT 5 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF23_MASK 0x3 +#define XSTORM_ROCE_RESP_CONN_AG_CTX_CF23_SHIFT 6 + u8 byte2; + __le16 physical_q0; + __le16 word1; + __le16 irq_prod; + __le16 word3; + __le16 word4; + __le16 word5; + __le16 irq_cons; + u8 rxmit_opcode; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 rxmit_psn_and_id; + __le32 rxmit_bytes_length; + __le32 psn; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 msn_and_syndrome; +}; + +struct ystorm_roce_req_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define YSTORM_ROCE_REQ_CONN_AG_CTX_BIT0_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_BIT0_SHIFT 0 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_BIT1_SHIFT 1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF0_MASK 0x3 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF0_SHIFT 2 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF1_MASK 0x3 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF1_SHIFT 4 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF2_MASK 0x3 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF0EN_SHIFT 0 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF1EN_SHIFT 1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_CF2EN_SHIFT 2 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_ROCE_REQ_CONN_AG_CTX_RULE4EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le32 reg0; + __le32 reg1; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg2; + __le32 reg3; +}; + +struct ystorm_roce_resp_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define YSTORM_ROCE_RESP_CONN_AG_CTX_BIT0_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_BIT0_SHIFT 0 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_BIT1_SHIFT 1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF0_MASK 0x3 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF0_SHIFT 2 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF1_MASK 0x3 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF1_SHIFT 4 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF2_MASK 0x3 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF0EN_SHIFT 0 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF1EN_SHIFT 1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_CF2EN_SHIFT 2 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_ROCE_RESP_CONN_AG_CTX_RULE4EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le32 reg0; + __le32 reg1; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg2; + __le32 reg3; +}; + +struct ystorm_iscsi_conn_st_ctx { + __le32 reserved[4]; +}; + +struct pstorm_iscsi_tcp_conn_st_ctx { + __le32 tcp[32]; + __le32 iscsi[4]; +}; + +struct xstorm_iscsi_tcp_conn_st_ctx { + __le32 reserved_iscsi[40]; + __le32 reserved_tcp[4]; +}; + +struct xstorm_iscsi_conn_ag_ctx { + u8 cdu_validation; + u8 state; + u8 flags0; +#define XSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM1_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM1_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_RESERVED1_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RESERVED1_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM3_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM3_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT4_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT4_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_RESERVED2_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RESERVED2_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT6_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT6_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT7_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT7_SHIFT 7 + u8 flags1; +#define XSTORM_ISCSI_CONN_AG_CTX_BIT8_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT8_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT9_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT9_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT10_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT10_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT11_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT11_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT12_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT12_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT13_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT13_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT14_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT14_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_TX_TRUNCATE_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_TX_TRUNCATE_SHIFT 7 + u8 flags2; +#define XSTORM_ISCSI_CONN_AG_CTX_CF0_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF0_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_CF1_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF1_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF2_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF2_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_SHIFT 6 + u8 flags3; +#define XSTORM_ISCSI_CONN_AG_CTX_CF4_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF4_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_CF5_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF5_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF6_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF6_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_CF7_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF7_SHIFT 6 + u8 flags4; +#define XSTORM_ISCSI_CONN_AG_CTX_CF8_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF8_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_CF9_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF9_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF10_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF10_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_CF11_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF11_SHIFT 6 + u8 flags5; +#define XSTORM_ISCSI_CONN_AG_CTX_CF12_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF12_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_CF13_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF13_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF14_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF14_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_UPDATE_STATE_TO_BASE_CF_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_UPDATE_STATE_TO_BASE_CF_SHIFT 6 + u8 flags6; +#define XSTORM_ISCSI_CONN_AG_CTX_CF16_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF16_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_CF17_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF17_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF18_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF18_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_DQ_FLUSH_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_DQ_FLUSH_SHIFT 6 + u8 flags7; +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q1_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q1_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_SLOW_PATH_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_SLOW_PATH_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_CF0EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF0EN_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_CF1EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF1EN_SHIFT 7 + u8 flags8; +#define XSTORM_ISCSI_CONN_AG_CTX_CF2EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF2EN_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_EN_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF4EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF4EN_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF5EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF5EN_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF6EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF6EN_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_CF7EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF7EN_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_CF8EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF8EN_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_CF9EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF9EN_SHIFT 7 + u8 flags9; +#define XSTORM_ISCSI_CONN_AG_CTX_CF10EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF10EN_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_CF11EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF11EN_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF12EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF12EN_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_CF13EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF13EN_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_CF14EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF14EN_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_UPDATE_STATE_TO_BASE_CF_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_UPDATE_STATE_TO_BASE_CF_EN_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_CF16EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF16EN_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_CF17EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF17EN_SHIFT 7 + u8 flags10; +#define XSTORM_ISCSI_CONN_AG_CTX_CF18EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_CF18EN_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_DQ_FLUSH_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_DQ_FLUSH_EN_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_EN_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q1_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q1_EN_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_SLOW_PATH_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_SLOW_PATH_EN_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_PROC_ONLY_CLEANUP_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_PROC_ONLY_CLEANUP_EN_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE0EN_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_MORE_TO_SEND_DEC_RULE_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_MORE_TO_SEND_DEC_RULE_EN_SHIFT 7 + u8 flags11; +#define XSTORM_ISCSI_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE2EN_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE3EN_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_RESERVED3_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RESERVED3_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE5EN_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE6EN_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE7EN_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED1_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED1_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE9EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE9EN_SHIFT 7 + u8 flags12; +#define XSTORM_ISCSI_CONN_AG_CTX_SQ_DEC_RULE_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_SQ_DEC_RULE_EN_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE11EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE11EN_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED2_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED2_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED3_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED3_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE14EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE14EN_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE15EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE15EN_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE16EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE16EN_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE17EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_RULE17EN_SHIFT 7 + u8 flags13; +#define XSTORM_ISCSI_CONN_AG_CTX_R2TQ_DEC_RULE_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_R2TQ_DEC_RULE_EN_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_HQ_DEC_RULE_EN_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_HQ_DEC_RULE_EN_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED4_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED4_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED5_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED5_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED6_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED6_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED7_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED7_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED8_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED8_SHIFT 6 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED9_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_A0_RESERVED9_SHIFT 7 + u8 flags14; +#define XSTORM_ISCSI_CONN_AG_CTX_BIT16_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT16_SHIFT 0 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT17_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT17_SHIFT 1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT18_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT18_SHIFT 2 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT19_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT19_SHIFT 3 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT20_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_BIT20_SHIFT 4 +#define XSTORM_ISCSI_CONN_AG_CTX_DUMMY_READ_DONE_MASK 0x1 +#define XSTORM_ISCSI_CONN_AG_CTX_DUMMY_READ_DONE_SHIFT 5 +#define XSTORM_ISCSI_CONN_AG_CTX_PROC_ONLY_CLEANUP_MASK 0x3 +#define XSTORM_ISCSI_CONN_AG_CTX_PROC_ONLY_CLEANUP_SHIFT 6 + u8 byte2; + __le16 physical_q0; + __le16 physical_q1; + __le16 dummy_dorq_var; + __le16 sq_cons; + __le16 sq_prod; + __le16 word5; + __le16 slow_io_total_data_tx_update; + u8 byte3; + u8 byte4; + u8 byte5; + u8 byte6; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 more_to_send_seq; + __le32 reg4; + __le32 reg5; + __le32 hq_scan_next_relevant_ack; + __le16 r2tq_prod; + __le16 r2tq_cons; + __le16 hq_prod; + __le16 hq_cons; + __le32 remain_seq; + __le32 bytes_to_next_pdu; + __le32 hq_tcp_seq; + u8 byte7; + u8 byte8; + u8 byte9; + u8 byte10; + u8 byte11; + u8 byte12; + u8 byte13; + u8 byte14; + u8 byte15; + u8 byte16; + __le16 word11; + __le32 reg10; + __le32 reg11; + __le32 exp_stat_sn; + __le32 reg13; + __le32 reg14; + __le32 reg15; + __le32 reg16; + __le32 reg17; +}; + +struct tstorm_iscsi_conn_ag_ctx { + u8 reserved0; + u8 state; + u8 flags0; +#define TSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM0_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_EXIST_IN_QM0_SHIFT 0 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT1_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT1_SHIFT 1 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT2_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT2_SHIFT 2 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT3_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT3_SHIFT 3 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT4_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT4_SHIFT 4 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT5_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_BIT5_SHIFT 5 +#define TSTORM_ISCSI_CONN_AG_CTX_CF0_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF0_SHIFT 6 + u8 flags1; +#define TSTORM_ISCSI_CONN_AG_CTX_CF1_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF1_SHIFT 0 +#define TSTORM_ISCSI_CONN_AG_CTX_CF2_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF2_SHIFT 2 +#define TSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_SHIFT 4 +#define TSTORM_ISCSI_CONN_AG_CTX_CF4_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF4_SHIFT 6 + u8 flags2; +#define TSTORM_ISCSI_CONN_AG_CTX_CF5_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF5_SHIFT 0 +#define TSTORM_ISCSI_CONN_AG_CTX_CF6_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF6_SHIFT 2 +#define TSTORM_ISCSI_CONN_AG_CTX_CF7_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF7_SHIFT 4 +#define TSTORM_ISCSI_CONN_AG_CTX_CF8_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF8_SHIFT 6 + u8 flags3; +#define TSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_SHIFT 0 +#define TSTORM_ISCSI_CONN_AG_CTX_CF10_MASK 0x3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF10_SHIFT 2 +#define TSTORM_ISCSI_CONN_AG_CTX_CF0EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF0EN_SHIFT 4 +#define TSTORM_ISCSI_CONN_AG_CTX_CF1EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF1EN_SHIFT 5 +#define TSTORM_ISCSI_CONN_AG_CTX_CF2EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF2EN_SHIFT 6 +#define TSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_TIMER_STOP_ALL_EN_SHIFT 7 + u8 flags4; +#define TSTORM_ISCSI_CONN_AG_CTX_CF4EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF4EN_SHIFT 0 +#define TSTORM_ISCSI_CONN_AG_CTX_CF5EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF5EN_SHIFT 1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF6EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF6EN_SHIFT 2 +#define TSTORM_ISCSI_CONN_AG_CTX_CF7EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF7EN_SHIFT 3 +#define TSTORM_ISCSI_CONN_AG_CTX_CF8EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF8EN_SHIFT 4 +#define TSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_FLUSH_Q0_EN_SHIFT 5 +#define TSTORM_ISCSI_CONN_AG_CTX_CF10EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_CF10EN_SHIFT 6 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags5; +#define TSTORM_ISCSI_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define TSTORM_ISCSI_CONN_AG_CTX_RULE8EN_SHIFT 7 + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le32 reg4; + __le32 reg5; + __le32 reg6; + __le32 reg7; + __le32 reg8; + u8 byte2; + u8 byte3; + __le16 word0; +}; + +struct ustorm_iscsi_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define USTORM_ISCSI_CONN_AG_CTX_BIT0_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_BIT0_SHIFT 0 +#define USTORM_ISCSI_CONN_AG_CTX_BIT1_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_BIT1_SHIFT 1 +#define USTORM_ISCSI_CONN_AG_CTX_CF0_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF0_SHIFT 2 +#define USTORM_ISCSI_CONN_AG_CTX_CF1_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF1_SHIFT 4 +#define USTORM_ISCSI_CONN_AG_CTX_CF2_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define USTORM_ISCSI_CONN_AG_CTX_CF3_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF3_SHIFT 0 +#define USTORM_ISCSI_CONN_AG_CTX_CF4_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF4_SHIFT 2 +#define USTORM_ISCSI_CONN_AG_CTX_CF5_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF5_SHIFT 4 +#define USTORM_ISCSI_CONN_AG_CTX_CF6_MASK 0x3 +#define USTORM_ISCSI_CONN_AG_CTX_CF6_SHIFT 6 + u8 flags2; +#define USTORM_ISCSI_CONN_AG_CTX_CF0EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF0EN_SHIFT 0 +#define USTORM_ISCSI_CONN_AG_CTX_CF1EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF1EN_SHIFT 1 +#define USTORM_ISCSI_CONN_AG_CTX_CF2EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF2EN_SHIFT 2 +#define USTORM_ISCSI_CONN_AG_CTX_CF3EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF3EN_SHIFT 3 +#define USTORM_ISCSI_CONN_AG_CTX_CF4EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF4EN_SHIFT 4 +#define USTORM_ISCSI_CONN_AG_CTX_CF5EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF5EN_SHIFT 5 +#define USTORM_ISCSI_CONN_AG_CTX_CF6EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_CF6EN_SHIFT 6 +#define USTORM_ISCSI_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE0EN_SHIFT 7 + u8 flags3; +#define USTORM_ISCSI_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE1EN_SHIFT 0 +#define USTORM_ISCSI_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE2EN_SHIFT 1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE3EN_SHIFT 2 +#define USTORM_ISCSI_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE4EN_SHIFT 3 +#define USTORM_ISCSI_CONN_AG_CTX_RULE5EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE5EN_SHIFT 4 +#define USTORM_ISCSI_CONN_AG_CTX_RULE6EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE6EN_SHIFT 5 +#define USTORM_ISCSI_CONN_AG_CTX_RULE7EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE7EN_SHIFT 6 +#define USTORM_ISCSI_CONN_AG_CTX_RULE8EN_MASK 0x1 +#define USTORM_ISCSI_CONN_AG_CTX_RULE8EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; + __le32 reg2; + __le32 reg3; + __le16 word2; + __le16 word3; +}; + +struct tstorm_iscsi_conn_st_ctx { + __le32 reserved[40]; +}; + +struct mstorm_iscsi_conn_ag_ctx { + u8 reserved; + u8 state; + u8 flags0; +#define MSTORM_ISCSI_CONN_AG_CTX_BIT0_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_BIT0_SHIFT 0 +#define MSTORM_ISCSI_CONN_AG_CTX_BIT1_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_BIT1_SHIFT 1 +#define MSTORM_ISCSI_CONN_AG_CTX_CF0_MASK 0x3 +#define MSTORM_ISCSI_CONN_AG_CTX_CF0_SHIFT 2 +#define MSTORM_ISCSI_CONN_AG_CTX_CF1_MASK 0x3 +#define MSTORM_ISCSI_CONN_AG_CTX_CF1_SHIFT 4 +#define MSTORM_ISCSI_CONN_AG_CTX_CF2_MASK 0x3 +#define MSTORM_ISCSI_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define MSTORM_ISCSI_CONN_AG_CTX_CF0EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_CF0EN_SHIFT 0 +#define MSTORM_ISCSI_CONN_AG_CTX_CF1EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_CF1EN_SHIFT 1 +#define MSTORM_ISCSI_CONN_AG_CTX_CF2EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_CF2EN_SHIFT 2 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define MSTORM_ISCSI_CONN_AG_CTX_RULE4EN_SHIFT 7 + __le16 word0; + __le16 word1; + __le32 reg0; + __le32 reg1; +}; + +struct mstorm_iscsi_tcp_conn_st_ctx { + __le32 reserved_tcp[20]; + __le32 reserved_iscsi[8]; +}; + +struct ustorm_iscsi_conn_st_ctx { + __le32 reserved[52]; +}; + +struct iscsi_conn_context { + struct ystorm_iscsi_conn_st_ctx ystorm_st_context; + struct regpair ystorm_st_padding[2]; + struct pstorm_iscsi_tcp_conn_st_ctx pstorm_st_context; + struct regpair pstorm_st_padding[2]; + struct pb_context xpb2_context; + struct xstorm_iscsi_tcp_conn_st_ctx xstorm_st_context; + struct regpair xstorm_st_padding[2]; + struct xstorm_iscsi_conn_ag_ctx xstorm_ag_context; + struct tstorm_iscsi_conn_ag_ctx tstorm_ag_context; + struct regpair tstorm_ag_padding[2]; + struct timers_context timer_context; + struct ustorm_iscsi_conn_ag_ctx ustorm_ag_context; + struct pb_context upb_context; + struct tstorm_iscsi_conn_st_ctx tstorm_st_context; + struct regpair tstorm_st_padding[2]; + struct mstorm_iscsi_conn_ag_ctx mstorm_ag_context; + struct mstorm_iscsi_tcp_conn_st_ctx mstorm_st_context; + struct ustorm_iscsi_conn_st_ctx ustorm_st_context; +}; + +struct iscsi_init_ramrod_params { + struct iscsi_spe_func_init iscsi_init_spe; + struct tcp_init_params tcp_init; +}; + +struct ystorm_iscsi_conn_ag_ctx { + u8 byte0; + u8 byte1; + u8 flags0; +#define YSTORM_ISCSI_CONN_AG_CTX_BIT0_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_BIT0_SHIFT 0 +#define YSTORM_ISCSI_CONN_AG_CTX_BIT1_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_BIT1_SHIFT 1 +#define YSTORM_ISCSI_CONN_AG_CTX_CF0_MASK 0x3 +#define YSTORM_ISCSI_CONN_AG_CTX_CF0_SHIFT 2 +#define YSTORM_ISCSI_CONN_AG_CTX_CF1_MASK 0x3 +#define YSTORM_ISCSI_CONN_AG_CTX_CF1_SHIFT 4 +#define YSTORM_ISCSI_CONN_AG_CTX_CF2_MASK 0x3 +#define YSTORM_ISCSI_CONN_AG_CTX_CF2_SHIFT 6 + u8 flags1; +#define YSTORM_ISCSI_CONN_AG_CTX_CF0EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_CF0EN_SHIFT 0 +#define YSTORM_ISCSI_CONN_AG_CTX_CF1EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_CF1EN_SHIFT 1 +#define YSTORM_ISCSI_CONN_AG_CTX_CF2EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_CF2EN_SHIFT 2 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE0EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE0EN_SHIFT 3 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE1EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE1EN_SHIFT 4 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE2EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE2EN_SHIFT 5 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE3EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE3EN_SHIFT 6 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE4EN_MASK 0x1 +#define YSTORM_ISCSI_CONN_AG_CTX_RULE4EN_SHIFT 7 + u8 byte2; + u8 byte3; + __le16 word0; + __le32 reg0; + __le32 reg1; + __le16 word1; + __le16 word2; + __le16 word3; + __le16 word4; + __le32 reg2; + __le32 reg3; +}; +#define VF_MAX_STATIC 192 + +#define MCP_GLOB_PATH_MAX 2 +#define MCP_PORT_MAX 2 +#define MCP_GLOB_PORT_MAX 4 +#define MCP_GLOB_FUNC_MAX 16 -typedef u32 offsize_t; /* In DWORDS !!! */ /* Offset from the beginning of the MCP scratchpad */ -#define OFFSIZE_OFFSET_SHIFT 0 -#define OFFSIZE_OFFSET_MASK 0x0000ffff +#define OFFSIZE_OFFSET_SHIFT 0 +#define OFFSIZE_OFFSET_MASK 0x0000ffff /* Size of specific element (not the whole array if any) */ -#define OFFSIZE_SIZE_SHIFT 16 -#define OFFSIZE_SIZE_MASK 0xffff0000 +#define OFFSIZE_SIZE_SHIFT 16 +#define OFFSIZE_SIZE_MASK 0xffff0000 -/* SECTION_OFFSET is calculating the offset in bytes out of offsize */ -#define SECTION_OFFSET(_offsize) ((((_offsize & \ - OFFSIZE_OFFSET_MASK) >> \ - OFFSIZE_OFFSET_SHIFT) << 2)) +#define SECTION_OFFSET(_offsize) ((((_offsize & \ + OFFSIZE_OFFSET_MASK) >> \ + OFFSIZE_OFFSET_SHIFT) << 2)) -/* QED_SECTION_SIZE is calculating the size in bytes out of offsize */ -#define QED_SECTION_SIZE(_offsize) (((_offsize & \ - OFFSIZE_SIZE_MASK) >> \ - OFFSIZE_SIZE_SHIFT) << 2) +#define QED_SECTION_SIZE(_offsize) (((_offsize & \ + OFFSIZE_SIZE_MASK) >> \ + OFFSIZE_SIZE_SHIFT) << 2) -/* SECTION_ADDR returns the GRC addr of a section, given offsize and index - * within section. - */ -#define SECTION_ADDR(_offsize, idx) (MCP_REG_SCRATCH + \ - SECTION_OFFSET(_offsize) + \ - (QED_SECTION_SIZE(_offsize) * idx)) +#define SECTION_ADDR(_offsize, idx) (MCP_REG_SCRATCH + \ + SECTION_OFFSET(_offsize) + \ + (QED_SECTION_SIZE(_offsize) * idx)) + +#define SECTION_OFFSIZE_ADDR(_pub_base, _section) \ + (_pub_base + offsetof(struct mcp_public_data, sections[_section])) -/* SECTION_OFFSIZE_ADDR returns the GRC addr to the offsize address. - * Use offsetof, since the OFFSETUP collide with the firmware definition - */ -#define SECTION_OFFSIZE_ADDR(_pub_base, _section) (_pub_base + \ - offsetof(struct \ - mcp_public_data, \ - sections[_section])) /* PHY configuration */ -struct pmm_phy_cfg { - u32 speed; -#define PMM_SPEED_AUTONEG 0 - - u32 pause; /* bitmask */ -#define PMM_PAUSE_NONE 0x0 -#define PMM_PAUSE_AUTONEG 0x1 -#define PMM_PAUSE_RX 0x2 -#define PMM_PAUSE_TX 0x4 - - u32 adv_speed; /* Default should be the speed_cap_mask */ - u32 loopback_mode; -#define PMM_LOOPBACK_NONE 0 -#define PMM_LOOPBACK_INT_PHY 1 -#define PMM_LOOPBACK_EXT_PHY 2 -#define PMM_LOOPBACK_EXT 3 -#define PMM_LOOPBACK_MAC 4 - - /* features */ +struct eth_phy_cfg { + u32 speed; +#define ETH_SPEED_AUTONEG 0 +#define ETH_SPEED_SMARTLINQ 0x8 + + u32 pause; +#define ETH_PAUSE_NONE 0x0 +#define ETH_PAUSE_AUTONEG 0x1 +#define ETH_PAUSE_RX 0x2 +#define ETH_PAUSE_TX 0x4 + + u32 adv_speed; + u32 loopback_mode; +#define ETH_LOOPBACK_NONE (0) +#define ETH_LOOPBACK_INT_PHY (1) +#define ETH_LOOPBACK_EXT_PHY (2) +#define ETH_LOOPBACK_EXT (3) +#define ETH_LOOPBACK_MAC (4) + u32 feature_config_flags; +#define ETH_EEE_MODE_ADV_LPI (1 << 0) }; struct port_mf_cfg { - u32 dynamic_cfg; /* device control channel */ -#define PORT_MF_CFG_OV_TAG_MASK 0x0000ffff -#define PORT_MF_CFG_OV_TAG_SHIFT 0 -#define PORT_MF_CFG_OV_TAG_DEFAULT PORT_MF_CFG_OV_TAG_MASK - - u32 reserved[1]; -}; - -/* DO NOT add new fields in the middle - * MUST be synced with struct pmm_stats_map - */ -struct pmm_stats { - u64 r64; /* 0x00 (Offset 0x00 ) RX 64-byte frame counter*/ - u64 r127; /* 0x01 (Offset 0x08 ) RX 65 to 127 byte frame counter*/ - u64 r255; - u64 r511; - u64 r1023; - u64 r1518; - u64 r1522; - u64 r2047; - u64 r4095; - u64 r9216; - u64 r16383; - u64 rfcs; /* 0x0F (Offset 0x58 ) RX FCS error frame counter*/ - u64 rxcf; /* 0x10 (Offset 0x60 ) RX control frame counter*/ - u64 rxpf; /* 0x11 (Offset 0x68 ) RX pause frame counter*/ - u64 rxpp; /* 0x12 (Offset 0x70 ) RX PFC frame counter*/ - u64 raln; /* 0x16 (Offset 0x78 ) RX alignment error counter*/ - u64 rfcr; /* 0x19 (Offset 0x80 ) RX false carrier counter */ - u64 rovr; /* 0x1A (Offset 0x88 ) RX oversized frame counter*/ - u64 rjbr; /* 0x1B (Offset 0x90 ) RX jabber frame counter */ - u64 rund; /* 0x34 (Offset 0x98 ) RX undersized frame counter */ - u64 rfrg; /* 0x35 (Offset 0xa0 ) RX fragment counter */ - u64 t64; /* 0x40 (Offset 0xa8 ) TX 64-byte frame counter */ - u64 t127; - u64 t255; - u64 t511; - u64 t1023; - u64 t1518; - u64 t2047; - u64 t4095; - u64 t9216; - u64 t16383; - u64 txpf; /* 0x50 (Offset 0xf8 ) TX pause frame counter */ - u64 txpp; /* 0x51 (Offset 0x100) TX PFC frame counter */ - u64 tlpiec; - u64 tncl; - u64 rbyte; /* 0x3d (Offset 0x118) RX byte counter */ - u64 rxuca; /* 0x0c (Offset 0x120) RX UC frame counter */ - u64 rxmca; /* 0x0d (Offset 0x128) RX MC frame counter */ - u64 rxbca; /* 0x0e (Offset 0x130) RX BC frame counter */ - u64 rxpok; - u64 tbyte; /* 0x6f (Offset 0x140) TX byte counter */ - u64 txuca; /* 0x4d (Offset 0x148) TX UC frame counter */ - u64 txmca; /* 0x4e (Offset 0x150) TX MC frame counter */ - u64 txbca; /* 0x4f (Offset 0x158) TX BC frame counter */ - u64 txcf; /* 0x54 (Offset 0x160) TX control frame counter */ + u32 dynamic_cfg; +#define PORT_MF_CFG_OV_TAG_MASK 0x0000ffff +#define PORT_MF_CFG_OV_TAG_SHIFT 0 +#define PORT_MF_CFG_OV_TAG_DEFAULT PORT_MF_CFG_OV_TAG_MASK + + u32 reserved[1]; +}; + +struct eth_stats { + u64 r64; + u64 r127; + u64 r255; + u64 r511; + u64 r1023; + u64 r1518; + u64 r1522; + u64 r2047; + u64 r4095; + u64 r9216; + u64 r16383; + u64 rfcs; + u64 rxcf; + u64 rxpf; + u64 rxpp; + u64 raln; + u64 rfcr; + u64 rovr; + u64 rjbr; + u64 rund; + u64 rfrg; + u64 t64; + u64 t127; + u64 t255; + u64 t511; + u64 t1023; + u64 t1518; + u64 t2047; + u64 t4095; + u64 t9216; + u64 t16383; + u64 txpf; + u64 txpp; + u64 tlpiec; + u64 tncl; + u64 rbyte; + u64 rxuca; + u64 rxmca; + u64 rxbca; + u64 rxpok; + u64 tbyte; + u64 txuca; + u64 txmca; + u64 txbca; + u64 txcf; }; struct brb_stats { - u64 brb_truncate[8]; - u64 brb_discard[8]; + u64 brb_truncate[8]; + u64 brb_discard[8]; }; struct port_stats { - struct brb_stats brb; - struct pmm_stats pmm; + struct brb_stats brb; + struct eth_stats eth; }; -#define CMT_TEAM0 0 -#define CMT_TEAM1 1 -#define CMT_TEAM_MAX 2 - struct couple_mode_teaming { u8 port_cmt[MCP_GLOB_PORT_MAX]; -#define PORT_CMT_IN_TEAM BIT(0) +#define PORT_CMT_IN_TEAM (1 << 0) -#define PORT_CMT_PORT_ROLE BIT(1) -#define PORT_CMT_PORT_INACTIVE (0 << 1) -#define PORT_CMT_PORT_ACTIVE BIT(1) +#define PORT_CMT_PORT_ROLE (1 << 1) +#define PORT_CMT_PORT_INACTIVE (0 << 1) +#define PORT_CMT_PORT_ACTIVE (1 << 1) -#define PORT_CMT_TEAM_MASK BIT(2) -#define PORT_CMT_TEAM0 (0 << 2) -#define PORT_CMT_TEAM1 BIT(2) +#define PORT_CMT_TEAM_MASK (1 << 2) +#define PORT_CMT_TEAM0 (0 << 2) +#define PORT_CMT_TEAM1 (1 << 2) }; -/************************************** -* LLDP and DCBX HSI structures -**************************************/ -#define LLDP_CHASSIS_ID_STAT_LEN 4 -#define LLDP_PORT_ID_STAT_LEN 4 -#define DCBX_MAX_APP_PROTOCOL 32 -#define MAX_SYSTEM_LLDP_TLV_DATA 32 +#define LLDP_CHASSIS_ID_STAT_LEN 4 +#define LLDP_PORT_ID_STAT_LEN 4 +#define DCBX_MAX_APP_PROTOCOL 32 +#define MAX_SYSTEM_LLDP_TLV_DATA 32 -enum lldp_agent_e { +enum _lldp_agent { LLDP_NEAREST_BRIDGE = 0, LLDP_NEAREST_NON_TPMR_BRIDGE, LLDP_NEAREST_CUSTOMER_BRIDGE, @@ -3280,676 +6786,525 @@ enum lldp_agent_e { struct lldp_config_params_s { u32 config; -#define LLDP_CONFIG_TX_INTERVAL_MASK 0x000000ff -#define LLDP_CONFIG_TX_INTERVAL_SHIFT 0 -#define LLDP_CONFIG_HOLD_MASK 0x00000f00 -#define LLDP_CONFIG_HOLD_SHIFT 8 -#define LLDP_CONFIG_MAX_CREDIT_MASK 0x0000f000 -#define LLDP_CONFIG_MAX_CREDIT_SHIFT 12 -#define LLDP_CONFIG_ENABLE_RX_MASK 0x40000000 -#define LLDP_CONFIG_ENABLE_RX_SHIFT 30 -#define LLDP_CONFIG_ENABLE_TX_MASK 0x80000000 -#define LLDP_CONFIG_ENABLE_TX_SHIFT 31 - u32 local_chassis_id[LLDP_CHASSIS_ID_STAT_LEN]; - u32 local_port_id[LLDP_PORT_ID_STAT_LEN]; +#define LLDP_CONFIG_TX_INTERVAL_MASK 0x000000ff +#define LLDP_CONFIG_TX_INTERVAL_SHIFT 0 +#define LLDP_CONFIG_HOLD_MASK 0x00000f00 +#define LLDP_CONFIG_HOLD_SHIFT 8 +#define LLDP_CONFIG_MAX_CREDIT_MASK 0x0000f000 +#define LLDP_CONFIG_MAX_CREDIT_SHIFT 12 +#define LLDP_CONFIG_ENABLE_RX_MASK 0x40000000 +#define LLDP_CONFIG_ENABLE_RX_SHIFT 30 +#define LLDP_CONFIG_ENABLE_TX_MASK 0x80000000 +#define LLDP_CONFIG_ENABLE_TX_SHIFT 31 + u32 local_chassis_id[LLDP_CHASSIS_ID_STAT_LEN]; + u32 local_port_id[LLDP_PORT_ID_STAT_LEN]; }; struct lldp_status_params_s { - u32 prefix_seq_num; - u32 status; /* TBD */ - - /* Holds remote Chassis ID TLV header, subtype and 9B of payload. */ - u32 peer_chassis_id[LLDP_CHASSIS_ID_STAT_LEN]; - - /* Holds remote Port ID TLV header, subtype and 9B of payload. */ - u32 peer_port_id[LLDP_PORT_ID_STAT_LEN]; - u32 suffix_seq_num; + u32 prefix_seq_num; + u32 status; + u32 peer_chassis_id[LLDP_CHASSIS_ID_STAT_LEN]; + u32 peer_port_id[LLDP_PORT_ID_STAT_LEN]; + u32 suffix_seq_num; }; struct dcbx_ets_feature { u32 flags; -#define DCBX_ETS_ENABLED_MASK 0x00000001 -#define DCBX_ETS_ENABLED_SHIFT 0 -#define DCBX_ETS_WILLING_MASK 0x00000002 -#define DCBX_ETS_WILLING_SHIFT 1 -#define DCBX_ETS_ERROR_MASK 0x00000004 -#define DCBX_ETS_ERROR_SHIFT 2 -#define DCBX_ETS_CBS_MASK 0x00000008 -#define DCBX_ETS_CBS_SHIFT 3 -#define DCBX_ETS_MAX_TCS_MASK 0x000000f0 -#define DCBX_ETS_MAX_TCS_SHIFT 4 - u32 pri_tc_tbl[1]; -#define DCBX_ISCSI_OOO_TC 4 -#define NIG_ETS_ISCSI_OOO_CLIENT_OFFSET (DCBX_ISCSI_OOO_TC + 1) - u32 tc_bw_tbl[2]; - u32 tc_tsa_tbl[2]; -#define DCBX_ETS_TSA_STRICT 0 -#define DCBX_ETS_TSA_CBS 1 -#define DCBX_ETS_TSA_ETS 2 +#define DCBX_ETS_ENABLED_MASK 0x00000001 +#define DCBX_ETS_ENABLED_SHIFT 0 +#define DCBX_ETS_WILLING_MASK 0x00000002 +#define DCBX_ETS_WILLING_SHIFT 1 +#define DCBX_ETS_ERROR_MASK 0x00000004 +#define DCBX_ETS_ERROR_SHIFT 2 +#define DCBX_ETS_CBS_MASK 0x00000008 +#define DCBX_ETS_CBS_SHIFT 3 +#define DCBX_ETS_MAX_TCS_MASK 0x000000f0 +#define DCBX_ETS_MAX_TCS_SHIFT 4 +#define DCBX_ISCSI_OOO_TC_MASK 0x00000f00 +#define DCBX_ISCSI_OOO_TC_SHIFT 8 + u32 pri_tc_tbl[1]; +#define DCBX_ISCSI_OOO_TC (4) + +#define NIG_ETS_ISCSI_OOO_CLIENT_OFFSET (DCBX_ISCSI_OOO_TC + 1) +#define DCBX_CEE_STRICT_PRIORITY 0xf + u32 tc_bw_tbl[2]; + u32 tc_tsa_tbl[2]; +#define DCBX_ETS_TSA_STRICT 0 +#define DCBX_ETS_TSA_CBS 1 +#define DCBX_ETS_TSA_ETS 2 }; struct dcbx_app_priority_entry { u32 entry; -#define DCBX_APP_PRI_MAP_MASK 0x000000ff -#define DCBX_APP_PRI_MAP_SHIFT 0 -#define DCBX_APP_PRI_0 0x01 -#define DCBX_APP_PRI_1 0x02 -#define DCBX_APP_PRI_2 0x04 -#define DCBX_APP_PRI_3 0x08 -#define DCBX_APP_PRI_4 0x10 -#define DCBX_APP_PRI_5 0x20 -#define DCBX_APP_PRI_6 0x40 -#define DCBX_APP_PRI_7 0x80 -#define DCBX_APP_SF_MASK 0x00000300 -#define DCBX_APP_SF_SHIFT 8 -#define DCBX_APP_SF_ETHTYPE 0 -#define DCBX_APP_SF_PORT 1 -#define DCBX_APP_PROTOCOL_ID_MASK 0xffff0000 -#define DCBX_APP_PROTOCOL_ID_SHIFT 16 -}; - -/* FW structure in BE */ +#define DCBX_APP_PRI_MAP_MASK 0x000000ff +#define DCBX_APP_PRI_MAP_SHIFT 0 +#define DCBX_APP_PRI_0 0x01 +#define DCBX_APP_PRI_1 0x02 +#define DCBX_APP_PRI_2 0x04 +#define DCBX_APP_PRI_3 0x08 +#define DCBX_APP_PRI_4 0x10 +#define DCBX_APP_PRI_5 0x20 +#define DCBX_APP_PRI_6 0x40 +#define DCBX_APP_PRI_7 0x80 +#define DCBX_APP_SF_MASK 0x00000300 +#define DCBX_APP_SF_SHIFT 8 +#define DCBX_APP_SF_ETHTYPE 0 +#define DCBX_APP_SF_PORT 1 +#define DCBX_APP_SF_IEEE_MASK 0x0000f000 +#define DCBX_APP_SF_IEEE_SHIFT 12 +#define DCBX_APP_SF_IEEE_RESERVED 0 +#define DCBX_APP_SF_IEEE_ETHTYPE 1 +#define DCBX_APP_SF_IEEE_TCP_PORT 2 +#define DCBX_APP_SF_IEEE_UDP_PORT 3 +#define DCBX_APP_SF_IEEE_TCP_UDP_PORT 4 + +#define DCBX_APP_PROTOCOL_ID_MASK 0xffff0000 +#define DCBX_APP_PROTOCOL_ID_SHIFT 16 +}; + struct dcbx_app_priority_feature { u32 flags; -#define DCBX_APP_ENABLED_MASK 0x00000001 -#define DCBX_APP_ENABLED_SHIFT 0 -#define DCBX_APP_WILLING_MASK 0x00000002 -#define DCBX_APP_WILLING_SHIFT 1 -#define DCBX_APP_ERROR_MASK 0x00000004 -#define DCBX_APP_ERROR_SHIFT 2 -/* Not in use - * #define DCBX_APP_DEFAULT_PRI_MASK 0x00000f00 - * #define DCBX_APP_DEFAULT_PRI_SHIFT 8 - */ -#define DCBX_APP_MAX_TCS_MASK 0x0000f000 -#define DCBX_APP_MAX_TCS_SHIFT 12 -#define DCBX_APP_NUM_ENTRIES_MASK 0x00ff0000 -#define DCBX_APP_NUM_ENTRIES_SHIFT 16 +#define DCBX_APP_ENABLED_MASK 0x00000001 +#define DCBX_APP_ENABLED_SHIFT 0 +#define DCBX_APP_WILLING_MASK 0x00000002 +#define DCBX_APP_WILLING_SHIFT 1 +#define DCBX_APP_ERROR_MASK 0x00000004 +#define DCBX_APP_ERROR_SHIFT 2 +#define DCBX_APP_MAX_TCS_MASK 0x0000f000 +#define DCBX_APP_MAX_TCS_SHIFT 12 +#define DCBX_APP_NUM_ENTRIES_MASK 0x00ff0000 +#define DCBX_APP_NUM_ENTRIES_SHIFT 16 struct dcbx_app_priority_entry app_pri_tbl[DCBX_MAX_APP_PROTOCOL]; }; -/* FW structure in BE */ struct dcbx_features { - /* PG feature */ struct dcbx_ets_feature ets; + u32 pfc; +#define DCBX_PFC_PRI_EN_BITMAP_MASK 0x000000ff +#define DCBX_PFC_PRI_EN_BITMAP_SHIFT 0 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_0 0x01 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_1 0x02 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_2 0x04 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_3 0x08 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_4 0x10 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_5 0x20 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_6 0x40 +#define DCBX_PFC_PRI_EN_BITMAP_PRI_7 0x80 + +#define DCBX_PFC_FLAGS_MASK 0x0000ff00 +#define DCBX_PFC_FLAGS_SHIFT 8 +#define DCBX_PFC_CAPS_MASK 0x00000f00 +#define DCBX_PFC_CAPS_SHIFT 8 +#define DCBX_PFC_MBC_MASK 0x00004000 +#define DCBX_PFC_MBC_SHIFT 14 +#define DCBX_PFC_WILLING_MASK 0x00008000 +#define DCBX_PFC_WILLING_SHIFT 15 +#define DCBX_PFC_ENABLED_MASK 0x00010000 +#define DCBX_PFC_ENABLED_SHIFT 16 +#define DCBX_PFC_ERROR_MASK 0x00020000 +#define DCBX_PFC_ERROR_SHIFT 17 - /* PFC feature */ - u32 pfc; -#define DCBX_PFC_PRI_EN_BITMAP_MASK 0x000000ff -#define DCBX_PFC_PRI_EN_BITMAP_SHIFT 0 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_0 0x01 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_1 0x02 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_2 0x04 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_3 0x08 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_4 0x10 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_5 0x20 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_6 0x40 -#define DCBX_PFC_PRI_EN_BITMAP_PRI_7 0x80 - -#define DCBX_PFC_FLAGS_MASK 0x0000ff00 -#define DCBX_PFC_FLAGS_SHIFT 8 -#define DCBX_PFC_CAPS_MASK 0x00000f00 -#define DCBX_PFC_CAPS_SHIFT 8 -#define DCBX_PFC_MBC_MASK 0x00004000 -#define DCBX_PFC_MBC_SHIFT 14 -#define DCBX_PFC_WILLING_MASK 0x00008000 -#define DCBX_PFC_WILLING_SHIFT 15 -#define DCBX_PFC_ENABLED_MASK 0x00010000 -#define DCBX_PFC_ENABLED_SHIFT 16 -#define DCBX_PFC_ERROR_MASK 0x00020000 -#define DCBX_PFC_ERROR_SHIFT 17 - - /* APP feature */ struct dcbx_app_priority_feature app; }; struct dcbx_local_params { u32 config; -#define DCBX_CONFIG_VERSION_MASK 0x00000003 -#define DCBX_CONFIG_VERSION_SHIFT 0 -#define DCBX_CONFIG_VERSION_DISABLED 0 -#define DCBX_CONFIG_VERSION_IEEE 1 -#define DCBX_CONFIG_VERSION_CEE 2 +#define DCBX_CONFIG_VERSION_MASK 0x00000007 +#define DCBX_CONFIG_VERSION_SHIFT 0 +#define DCBX_CONFIG_VERSION_DISABLED 0 +#define DCBX_CONFIG_VERSION_IEEE 1 +#define DCBX_CONFIG_VERSION_CEE 2 +#define DCBX_CONFIG_VERSION_STATIC 4 - u32 flags; - struct dcbx_features features; + u32 flags; + struct dcbx_features features; }; struct dcbx_mib { - u32 prefix_seq_num; - u32 flags; - struct dcbx_features features; - u32 suffix_seq_num; + u32 prefix_seq_num; + u32 flags; + struct dcbx_features features; + u32 suffix_seq_num; }; struct lldp_system_tlvs_buffer_s { - u16 valid; - u16 length; - u32 data[MAX_SYSTEM_LLDP_TLV_DATA]; + u16 valid; + u16 length; + u32 data[MAX_SYSTEM_LLDP_TLV_DATA]; }; -/**************************************/ -/* */ -/* P U B L I C G L O B A L */ -/* */ -/**************************************/ -struct public_global { - u32 max_path; -#define MAX_PATH_BIG_BEAR 2 -#define MAX_PATH_K2 1 - u32 max_ports; -#define MODE_1P 1 -#define MODE_2P 2 -#define MODE_3P 3 -#define MODE_4P 4 - u32 debug_mb_offset; - u32 phymod_dbg_mb_offset; - struct couple_mode_teaming cmt; - s32 internal_temperature; - u32 mfw_ver; - u32 running_bundle_id; +struct dcb_dscp_map { + u32 flags; +#define DCB_DSCP_ENABLE_MASK 0x1 +#define DCB_DSCP_ENABLE_SHIFT 0 +#define DCB_DSCP_ENABLE 1 + u32 dscp_pri_map[8]; }; -/**************************************/ -/* */ -/* P U B L I C P A T H */ -/* */ -/**************************************/ +struct public_global { + u32 max_path; + u32 max_ports; + u32 debug_mb_offset; + u32 phymod_dbg_mb_offset; + struct couple_mode_teaming cmt; + s32 internal_temperature; + u32 mfw_ver; + u32 running_bundle_id; + s32 external_temperature; + u32 mdump_reason; +}; -/**************************************************************************** -* Shared Memory 2 Region * -****************************************************************************/ -/* The fw_flr_ack is actually built in the following way: */ -/* 8 bit: PF ack */ -/* 128 bit: VF ack */ -/* 8 bit: ios_dis_ack */ -/* In order to maintain endianity in the mailbox hsi, we want to keep using */ -/* u32. The fw must have the VF right after the PF since this is how it */ -/* access arrays(it expects always the VF to reside after the PF, and that */ -/* makes the calculation much easier for it. ) */ -/* In order to answer both limitations, and keep the struct small, the code */ -/* will abuse the structure defined here to achieve the actual partition */ -/* above */ -/****************************************************************************/ struct fw_flr_mb { - u32 aggint; - u32 opgen_addr; - u32 accum_ack; /* 0..15:PF, 16..207:VF, 256..271:IOV_DIS */ -#define ACCUM_ACK_PF_BASE 0 -#define ACCUM_ACK_PF_SHIFT 0 - -#define ACCUM_ACK_VF_BASE 8 -#define ACCUM_ACK_VF_SHIFT 3 - -#define ACCUM_ACK_IOV_DIS_BASE 256 -#define ACCUM_ACK_IOV_DIS_SHIFT 8 + u32 aggint; + u32 opgen_addr; + u32 accum_ack; }; struct public_path { - struct fw_flr_mb flr_mb; - u32 mcp_vf_disabled[VF_MAX_STATIC / 32]; - - u32 process_kill; -#define PROCESS_KILL_COUNTER_MASK 0x0000ffff -#define PROCESS_KILL_COUNTER_SHIFT 0 -#define PROCESS_KILL_GLOB_AEU_BIT_MASK 0xffff0000 -#define PROCESS_KILL_GLOB_AEU_BIT_SHIFT 16 + struct fw_flr_mb flr_mb; + u32 mcp_vf_disabled[VF_MAX_STATIC / 32]; + + u32 process_kill; +#define PROCESS_KILL_COUNTER_MASK 0x0000ffff +#define PROCESS_KILL_COUNTER_SHIFT 0 +#define PROCESS_KILL_GLOB_AEU_BIT_MASK 0xffff0000 +#define PROCESS_KILL_GLOB_AEU_BIT_SHIFT 16 #define GLOBAL_AEU_BIT(aeu_reg_id, aeu_bit) (aeu_reg_id * 32 + aeu_bit) }; -/**************************************/ -/* */ -/* P U B L I C P O R T */ -/* */ -/**************************************/ - -/**************************************************************************** -* Driver <-> FW Mailbox * -****************************************************************************/ - struct public_port { - u32 validity_map; /* 0x0 (4*2 = 0x8) */ - - /* validity bits */ -#define MCP_VALIDITY_PCI_CFG 0x00100000 -#define MCP_VALIDITY_MB 0x00200000 -#define MCP_VALIDITY_DEV_INFO 0x00400000 -#define MCP_VALIDITY_RESERVED 0x00000007 - - /* One licensing bit should be set */ -#define MCP_VALIDITY_LIC_KEY_IN_EFFECT_MASK 0x00000038 -#define MCP_VALIDITY_LIC_MANUF_KEY_IN_EFFECT 0x00000008 -#define MCP_VALIDITY_LIC_UPGRADE_KEY_IN_EFFECT 0x00000010 -#define MCP_VALIDITY_LIC_NO_KEY_IN_EFFECT 0x00000020 - - /* Active MFW */ -#define MCP_VALIDITY_ACTIVE_MFW_UNKNOWN 0x00000000 -#define MCP_VALIDITY_ACTIVE_MFW_MASK 0x000001c0 -#define MCP_VALIDITY_ACTIVE_MFW_NCSI 0x00000040 -#define MCP_VALIDITY_ACTIVE_MFW_NONE 0x000001c0 + u32 validity_map; u32 link_status; -#define LINK_STATUS_LINK_UP \ - 0x00000001 -#define LINK_STATUS_SPEED_AND_DUPLEX_MASK 0x0000001e -#define LINK_STATUS_SPEED_AND_DUPLEX_1000THD BIT(1) -#define LINK_STATUS_SPEED_AND_DUPLEX_1000TFD (2 << 1) -#define LINK_STATUS_SPEED_AND_DUPLEX_10G (3 << 1) -#define LINK_STATUS_SPEED_AND_DUPLEX_20G (4 << 1) -#define LINK_STATUS_SPEED_AND_DUPLEX_40G (5 << 1) -#define LINK_STATUS_SPEED_AND_DUPLEX_50G (6 << 1) -#define LINK_STATUS_SPEED_AND_DUPLEX_100G (7 << 1) -#define LINK_STATUS_SPEED_AND_DUPLEX_25G (8 << 1) - -#define LINK_STATUS_AUTO_NEGOTIATE_ENABLED 0x00000020 - -#define LINK_STATUS_AUTO_NEGOTIATE_COMPLETE 0x00000040 -#define LINK_STATUS_PARALLEL_DETECTION_USED 0x00000080 - -#define LINK_STATUS_PFC_ENABLED \ - 0x00000100 -#define LINK_STATUS_LINK_PARTNER_1000TFD_CAPABLE 0x00000200 -#define LINK_STATUS_LINK_PARTNER_1000THD_CAPABLE 0x00000400 -#define LINK_STATUS_LINK_PARTNER_10G_CAPABLE 0x00000800 -#define LINK_STATUS_LINK_PARTNER_20G_CAPABLE 0x00001000 -#define LINK_STATUS_LINK_PARTNER_40G_CAPABLE 0x00002000 -#define LINK_STATUS_LINK_PARTNER_50G_CAPABLE 0x00004000 -#define LINK_STATUS_LINK_PARTNER_100G_CAPABLE 0x00008000 -#define LINK_STATUS_LINK_PARTNER_25G_CAPABLE 0x00010000 - -#define LINK_STATUS_LINK_PARTNER_FLOW_CONTROL_MASK 0x000C0000 -#define LINK_STATUS_LINK_PARTNER_NOT_PAUSE_CAPABLE (0 << 18) -#define LINK_STATUS_LINK_PARTNER_SYMMETRIC_PAUSE BIT(18) -#define LINK_STATUS_LINK_PARTNER_ASYMMETRIC_PAUSE (2 << 18) -#define LINK_STATUS_LINK_PARTNER_BOTH_PAUSE (3 << 18) - -#define LINK_STATUS_SFP_TX_FAULT \ - 0x00100000 -#define LINK_STATUS_TX_FLOW_CONTROL_ENABLED 0x00200000 -#define LINK_STATUS_RX_FLOW_CONTROL_ENABLED 0x00400000 - - u32 link_status1; - u32 ext_phy_fw_version; - u32 drv_phy_cfg_addr; - - u32 port_stx; - - u32 stat_nig_timer; - - struct port_mf_cfg port_mf_config; - struct port_stats stats; - - u32 media_type; -#define MEDIA_UNSPECIFIED 0x0 -#define MEDIA_SFPP_10G_FIBER 0x1 -#define MEDIA_XFP_FIBER 0x2 -#define MEDIA_DA_TWINAX 0x3 -#define MEDIA_BASE_T 0x4 -#define MEDIA_SFP_1G_FIBER 0x5 -#define MEDIA_KR 0xf0 -#define MEDIA_NOT_PRESENT 0xff +#define LINK_STATUS_LINK_UP 0x00000001 +#define LINK_STATUS_SPEED_AND_DUPLEX_MASK 0x0000001e +#define LINK_STATUS_SPEED_AND_DUPLEX_1000THD (1 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_1000TFD (2 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_10G (3 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_20G (4 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_40G (5 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_50G (6 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_100G (7 << 1) +#define LINK_STATUS_SPEED_AND_DUPLEX_25G (8 << 1) + +#define LINK_STATUS_AUTO_NEGOTIATE_ENABLED 0x00000020 + +#define LINK_STATUS_AUTO_NEGOTIATE_COMPLETE 0x00000040 +#define LINK_STATUS_PARALLEL_DETECTION_USED 0x00000080 + +#define LINK_STATUS_PFC_ENABLED 0x00000100 +#define LINK_STATUS_LINK_PARTNER_1000TFD_CAPABLE 0x00000200 +#define LINK_STATUS_LINK_PARTNER_1000THD_CAPABLE 0x00000400 +#define LINK_STATUS_LINK_PARTNER_10G_CAPABLE 0x00000800 +#define LINK_STATUS_LINK_PARTNER_20G_CAPABLE 0x00001000 +#define LINK_STATUS_LINK_PARTNER_40G_CAPABLE 0x00002000 +#define LINK_STATUS_LINK_PARTNER_50G_CAPABLE 0x00004000 +#define LINK_STATUS_LINK_PARTNER_100G_CAPABLE 0x00008000 +#define LINK_STATUS_LINK_PARTNER_25G_CAPABLE 0x00010000 + +#define LINK_STATUS_LINK_PARTNER_FLOW_CONTROL_MASK 0x000C0000 +#define LINK_STATUS_LINK_PARTNER_NOT_PAUSE_CAPABLE (0 << 18) +#define LINK_STATUS_LINK_PARTNER_SYMMETRIC_PAUSE (1 << 18) +#define LINK_STATUS_LINK_PARTNER_ASYMMETRIC_PAUSE (2 << 18) +#define LINK_STATUS_LINK_PARTNER_BOTH_PAUSE (3 << 18) + +#define LINK_STATUS_SFP_TX_FAULT 0x00100000 +#define LINK_STATUS_TX_FLOW_CONTROL_ENABLED 0x00200000 +#define LINK_STATUS_RX_FLOW_CONTROL_ENABLED 0x00400000 +#define LINK_STATUS_RX_SIGNAL_PRESENT 0x00800000 +#define LINK_STATUS_MAC_LOCAL_FAULT 0x01000000 +#define LINK_STATUS_MAC_REMOTE_FAULT 0x02000000 +#define LINK_STATUS_UNSUPPORTED_SPD_REQ 0x04000000 + + u32 link_status1; + u32 ext_phy_fw_version; + u32 drv_phy_cfg_addr; + + u32 port_stx; + + u32 stat_nig_timer; + + struct port_mf_cfg port_mf_config; + struct port_stats stats; + + u32 media_type; +#define MEDIA_UNSPECIFIED 0x0 +#define MEDIA_SFPP_10G_FIBER 0x1 +#define MEDIA_XFP_FIBER 0x2 +#define MEDIA_DA_TWINAX 0x3 +#define MEDIA_BASE_T 0x4 +#define MEDIA_SFP_1G_FIBER 0x5 +#define MEDIA_MODULE_FIBER 0x6 +#define MEDIA_KR 0xf0 +#define MEDIA_NOT_PRESENT 0xff u32 lfa_status; -#define LFA_LINK_FLAP_REASON_OFFSET 0 -#define LFA_LINK_FLAP_REASON_MASK 0x000000ff -#define LFA_NO_REASON (0 << 0) -#define LFA_LINK_DOWN BIT(0) -#define LFA_FORCE_INIT BIT(1) -#define LFA_LOOPBACK_MISMATCH BIT(2) -#define LFA_SPEED_MISMATCH BIT(3) -#define LFA_FLOW_CTRL_MISMATCH BIT(4) -#define LFA_ADV_SPEED_MISMATCH BIT(5) -#define LINK_FLAP_AVOIDANCE_COUNT_OFFSET 8 -#define LINK_FLAP_AVOIDANCE_COUNT_MASK 0x0000ff00 -#define LINK_FLAP_COUNT_OFFSET 16 -#define LINK_FLAP_COUNT_MASK 0x00ff0000 - - u32 link_change_count; - - /* LLDP params */ - struct lldp_config_params_s lldp_config_params[ - LLDP_MAX_LLDP_AGENTS]; - struct lldp_status_params_s lldp_status_params[ - LLDP_MAX_LLDP_AGENTS]; - struct lldp_system_tlvs_buffer_s system_lldp_tlvs_buf; + u32 link_change_count; + + struct lldp_config_params_s lldp_config_params[LLDP_MAX_LLDP_AGENTS]; + struct lldp_status_params_s lldp_status_params[LLDP_MAX_LLDP_AGENTS]; + struct lldp_system_tlvs_buffer_s system_lldp_tlvs_buf; /* DCBX related MIB */ - struct dcbx_local_params local_admin_dcbx_mib; - struct dcbx_mib remote_dcbx_mib; - struct dcbx_mib operational_dcbx_mib; + struct dcbx_local_params local_admin_dcbx_mib; + struct dcbx_mib remote_dcbx_mib; + struct dcbx_mib operational_dcbx_mib; - u32 fc_npiv_nvram_tbl_addr; - u32 fc_npiv_nvram_tbl_size; - u32 transceiver_data; -#define PMM_TRANSCEIVER_STATE_MASK 0x000000FF -#define PMM_TRANSCEIVER_STATE_SHIFT 0x00000000 -#define PMM_TRANSCEIVER_STATE_PRESENT 0x00000001 -}; + u32 reserved[2]; + u32 transceiver_data; +#define ETH_TRANSCEIVER_STATE_MASK 0x000000FF +#define ETH_TRANSCEIVER_STATE_SHIFT 0x00000000 +#define ETH_TRANSCEIVER_STATE_UNPLUGGED 0x00000000 +#define ETH_TRANSCEIVER_STATE_PRESENT 0x00000001 +#define ETH_TRANSCEIVER_STATE_VALID 0x00000003 +#define ETH_TRANSCEIVER_STATE_UPDATING 0x00000008 -/**************************************/ -/* */ -/* P U B L I C F U N C */ -/* */ -/**************************************/ + u32 wol_info; + u32 wol_pkt_len; + u32 wol_pkt_details; + struct dcb_dscp_map dcb_dscp_map; +}; struct public_func { - u32 iscsi_boot_signature; - u32 iscsi_boot_block_offset; - - u32 mtu_size; - u32 c2s_pcp_map_lower; - u32 c2s_pcp_map_upper; - u32 c2s_pcp_map_default; - u32 reserved[4]; - - u32 config; - - /* E/R/I/D */ - /* function 0 of each port cannot be hidden */ -#define FUNC_MF_CFG_FUNC_HIDE 0x00000001 -#define FUNC_MF_CFG_PAUSE_ON_HOST_RING 0x00000002 -#define FUNC_MF_CFG_PAUSE_ON_HOST_RING_SHIFT 0x00000001 - -#define FUNC_MF_CFG_PROTOCOL_MASK 0x000000f0 -#define FUNC_MF_CFG_PROTOCOL_SHIFT 4 -#define FUNC_MF_CFG_PROTOCOL_ETHERNET 0x00000000 + u32 reserved0[2]; + + u32 mtu_size; + + u32 reserved[7]; + + u32 config; +#define FUNC_MF_CFG_FUNC_HIDE 0x00000001 +#define FUNC_MF_CFG_PAUSE_ON_HOST_RING 0x00000002 +#define FUNC_MF_CFG_PAUSE_ON_HOST_RING_SHIFT 0x00000001 + +#define FUNC_MF_CFG_PROTOCOL_MASK 0x000000f0 +#define FUNC_MF_CFG_PROTOCOL_SHIFT 4 +#define FUNC_MF_CFG_PROTOCOL_ETHERNET 0x00000000 #define FUNC_MF_CFG_PROTOCOL_ISCSI 0x00000010 -#define FUNC_MF_CFG_PROTOCOL_FCOE 0x00000020 #define FUNC_MF_CFG_PROTOCOL_ROCE 0x00000030 -#define FUNC_MF_CFG_PROTOCOL_MAX 0x00000030 +#define FUNC_MF_CFG_PROTOCOL_MAX 0x00000030 - /* MINBW, MAXBW */ - /* value range - 0..100, increments in 1 % */ -#define FUNC_MF_CFG_MIN_BW_MASK 0x0000ff00 -#define FUNC_MF_CFG_MIN_BW_SHIFT 8 -#define FUNC_MF_CFG_MIN_BW_DEFAULT 0x00000000 -#define FUNC_MF_CFG_MAX_BW_MASK 0x00ff0000 -#define FUNC_MF_CFG_MAX_BW_SHIFT 16 -#define FUNC_MF_CFG_MAX_BW_DEFAULT 0x00640000 +#define FUNC_MF_CFG_MIN_BW_MASK 0x0000ff00 +#define FUNC_MF_CFG_MIN_BW_SHIFT 8 +#define FUNC_MF_CFG_MIN_BW_DEFAULT 0x00000000 +#define FUNC_MF_CFG_MAX_BW_MASK 0x00ff0000 +#define FUNC_MF_CFG_MAX_BW_SHIFT 16 +#define FUNC_MF_CFG_MAX_BW_DEFAULT 0x00640000 - u32 status; -#define FUNC_STATUS_VLINK_DOWN 0x00000001 + u32 status; +#define FUNC_STATUS_VLINK_DOWN 0x00000001 - u32 mac_upper; /* MAC */ -#define FUNC_MF_CFG_UPPERMAC_MASK 0x0000ffff -#define FUNC_MF_CFG_UPPERMAC_SHIFT 0 -#define FUNC_MF_CFG_UPPERMAC_DEFAULT FUNC_MF_CFG_UPPERMAC_MASK - u32 mac_lower; -#define FUNC_MF_CFG_LOWERMAC_DEFAULT 0xffffffff + u32 mac_upper; +#define FUNC_MF_CFG_UPPERMAC_MASK 0x0000ffff +#define FUNC_MF_CFG_UPPERMAC_SHIFT 0 +#define FUNC_MF_CFG_UPPERMAC_DEFAULT FUNC_MF_CFG_UPPERMAC_MASK + u32 mac_lower; +#define FUNC_MF_CFG_LOWERMAC_DEFAULT 0xffffffff - u32 fcoe_wwn_port_name_upper; - u32 fcoe_wwn_port_name_lower; + u32 fcoe_wwn_port_name_upper; + u32 fcoe_wwn_port_name_lower; - u32 fcoe_wwn_node_name_upper; - u32 fcoe_wwn_node_name_lower; + u32 fcoe_wwn_node_name_upper; + u32 fcoe_wwn_node_name_lower; - u32 ovlan_stag; /* tags */ -#define FUNC_MF_CFG_OV_STAG_MASK 0x0000ffff -#define FUNC_MF_CFG_OV_STAG_SHIFT 0 -#define FUNC_MF_CFG_OV_STAG_DEFAULT FUNC_MF_CFG_OV_STAG_MASK + u32 ovlan_stag; +#define FUNC_MF_CFG_OV_STAG_MASK 0x0000ffff +#define FUNC_MF_CFG_OV_STAG_SHIFT 0 +#define FUNC_MF_CFG_OV_STAG_DEFAULT FUNC_MF_CFG_OV_STAG_MASK - u32 pf_allocation; /* vf per pf */ + u32 pf_allocation; - u32 preserve_data; /* Will be used bt CCM */ + u32 preserve_data; - u32 driver_last_activity_ts; + u32 driver_last_activity_ts; - u32 drv_ack_vf_disabled[VF_MAX_STATIC / 32]; /* 0x0044 */ + u32 drv_ack_vf_disabled[VF_MAX_STATIC / 32]; - u32 drv_id; -#define DRV_ID_PDA_COMP_VER_MASK 0x0000ffff -#define DRV_ID_PDA_COMP_VER_SHIFT 0 + u32 drv_id; +#define DRV_ID_PDA_COMP_VER_MASK 0x0000ffff +#define DRV_ID_PDA_COMP_VER_SHIFT 0 -#define DRV_ID_MCP_HSI_VER_MASK 0x00ff0000 -#define DRV_ID_MCP_HSI_VER_SHIFT 16 -#define DRV_ID_MCP_HSI_VER_CURRENT BIT(DRV_ID_MCP_HSI_VER_SHIFT) +#define DRV_ID_MCP_HSI_VER_MASK 0x00ff0000 +#define DRV_ID_MCP_HSI_VER_SHIFT 16 +#define DRV_ID_MCP_HSI_VER_CURRENT (1 << DRV_ID_MCP_HSI_VER_SHIFT) -#define DRV_ID_DRV_TYPE_MASK 0x7f000000 -#define DRV_ID_DRV_TYPE_SHIFT 24 -#define DRV_ID_DRV_TYPE_UNKNOWN (0 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_LINUX (1 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_WINDOWS (2 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_DIAG (3 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_PREBOOT (4 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_SOLARIS (5 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_VMWARE (6 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_FREEBSD (7 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_TYPE_AIX (8 << DRV_ID_DRV_TYPE_SHIFT) +#define DRV_ID_DRV_TYPE_MASK 0x7f000000 +#define DRV_ID_DRV_TYPE_SHIFT 24 +#define DRV_ID_DRV_TYPE_UNKNOWN (0 << DRV_ID_DRV_TYPE_SHIFT) +#define DRV_ID_DRV_TYPE_LINUX (1 << DRV_ID_DRV_TYPE_SHIFT) -#define DRV_ID_DRV_INIT_HW_MASK 0x80000000 -#define DRV_ID_DRV_INIT_HW_SHIFT 31 -#define DRV_ID_DRV_INIT_HW_FLAG BIT(DRV_ID_DRV_INIT_HW_SHIFT) +#define DRV_ID_DRV_INIT_HW_MASK 0x80000000 +#define DRV_ID_DRV_INIT_HW_SHIFT 31 +#define DRV_ID_DRV_INIT_HW_FLAG (1 << DRV_ID_DRV_INIT_HW_SHIFT) }; -/**************************************/ -/* */ -/* P U B L I C M B */ -/* */ -/**************************************/ -/* This is the only section that the driver can write to, and each */ -/* Basically each driver request to set feature parameters, - * will be done using a different command, which will be linked - * to a specific data structure from the union below. - * For huge strucuture, the common blank structure should be used. - */ - struct mcp_mac { - u32 mac_upper; /* Upper 16 bits are always zeroes */ - u32 mac_lower; + u32 mac_upper; + u32 mac_lower; }; struct mcp_val64 { - u32 lo; - u32 hi; + u32 lo; + u32 hi; }; struct mcp_file_att { - u32 nvm_start_addr; - u32 len; + u32 nvm_start_addr; + u32 len; +}; + +struct bist_nvm_image_att { + u32 return_code; + u32 image_type; + u32 nvm_start_addr; + u32 len; }; #define MCP_DRV_VER_STR_SIZE 16 #define MCP_DRV_VER_STR_SIZE_DWORD (MCP_DRV_VER_STR_SIZE / sizeof(u32)) #define MCP_DRV_NVM_BUF_LEN 32 struct drv_version_stc { - u32 version; - u8 name[MCP_DRV_VER_STR_SIZE - 4]; + u32 version; + u8 name[MCP_DRV_VER_STR_SIZE - 4]; +}; + +struct lan_stats_stc { + u64 ucast_rx_pkts; + u64 ucast_tx_pkts; + u32 fcs_err; + u32 rserved; +}; + +struct ocbb_data_stc { + u32 ocbb_host_addr; + u32 ocsd_host_addr; + u32 ocsd_req_update_interval; +}; + +#define MAX_NUM_OF_SENSORS 7 +struct temperature_status_stc { + u32 num_of_sensors; + u32 sensor[MAX_NUM_OF_SENSORS]; +}; + +/* crash dump configuration header */ +struct mdump_config_stc { + u32 version; + u32 config; + u32 epoc; + u32 num_of_logs; + u32 valid_logs; }; union drv_union_data { - u32 ver_str[MCP_DRV_VER_STR_SIZE_DWORD]; - struct mcp_mac wol_mac; + u32 ver_str[MCP_DRV_VER_STR_SIZE_DWORD]; + struct mcp_mac wol_mac; - struct pmm_phy_cfg drv_phy_cfg; + struct eth_phy_cfg drv_phy_cfg; - struct mcp_val64 val64; /* For PHY / AVS commands */ + struct mcp_val64 val64; - u8 raw_data[MCP_DRV_NVM_BUF_LEN]; + u8 raw_data[MCP_DRV_NVM_BUF_LEN]; - struct mcp_file_att file_att; + struct mcp_file_att file_att; - u32 ack_vf_disabled[VF_MAX_STATIC / 32]; + u32 ack_vf_disabled[VF_MAX_STATIC / 32]; - struct drv_version_stc drv_version; + struct drv_version_stc drv_version; + + struct lan_stats_stc lan_stats; + u64 reserved_stats[11]; + struct ocbb_data_stc ocbb_info; + struct temperature_status_stc temp_info; + struct bist_nvm_image_att nvm_image_att; + struct mdump_config_stc mdump_config; }; struct public_drv_mb { u32 drv_mb_header; -#define DRV_MSG_CODE_MASK 0xffff0000 -#define DRV_MSG_CODE_LOAD_REQ 0x10000000 -#define DRV_MSG_CODE_LOAD_DONE 0x11000000 -#define DRV_MSG_CODE_INIT_HW 0x12000000 -#define DRV_MSG_CODE_UNLOAD_REQ 0x20000000 -#define DRV_MSG_CODE_UNLOAD_DONE 0x21000000 -#define DRV_MSG_CODE_INIT_PHY 0x22000000 - /* Params - FORCE - Reinitialize the link regardless of LFA */ - /* - DONT_CARE - Don't flap the link if up */ -#define DRV_MSG_CODE_LINK_RESET 0x23000000 - -#define DRV_MSG_CODE_SET_LLDP 0x24000000 -#define DRV_MSG_CODE_SET_DCBX 0x25000000 - -#define DRV_MSG_CODE_NIG_DRAIN 0x30000000 - -#define DRV_MSG_CODE_INITIATE_FLR 0x02000000 -#define DRV_MSG_CODE_VF_DISABLED_DONE 0xc0000000 -#define DRV_MSG_CODE_CFG_VF_MSIX 0xc0010000 -#define DRV_MSG_CODE_NVM_PUT_FILE_BEGIN 0x00010000 -#define DRV_MSG_CODE_NVM_PUT_FILE_DATA 0x00020000 -#define DRV_MSG_CODE_NVM_GET_FILE_ATT 0x00030000 -#define DRV_MSG_CODE_NVM_READ_NVRAM 0x00050000 -#define DRV_MSG_CODE_NVM_WRITE_NVRAM 0x00060000 -#define DRV_MSG_CODE_NVM_DEL_FILE 0x00080000 -#define DRV_MSG_CODE_MCP_RESET 0x00090000 -#define DRV_MSG_CODE_SET_SECURE_MODE 0x000a0000 -#define DRV_MSG_CODE_PHY_RAW_READ 0x000b0000 -#define DRV_MSG_CODE_PHY_RAW_WRITE 0x000c0000 -#define DRV_MSG_CODE_PHY_CORE_READ 0x000d0000 -#define DRV_MSG_CODE_PHY_CORE_WRITE 0x000e0000 -#define DRV_MSG_CODE_SET_VERSION 0x000f0000 - -#define DRV_MSG_CODE_SET_LED_MODE 0x00200000 - -#define DRV_MSG_SEQ_NUMBER_MASK 0x0000ffff +#define DRV_MSG_CODE_MASK 0xffff0000 +#define DRV_MSG_CODE_LOAD_REQ 0x10000000 +#define DRV_MSG_CODE_LOAD_DONE 0x11000000 +#define DRV_MSG_CODE_INIT_HW 0x12000000 +#define DRV_MSG_CODE_UNLOAD_REQ 0x20000000 +#define DRV_MSG_CODE_UNLOAD_DONE 0x21000000 +#define DRV_MSG_CODE_INIT_PHY 0x22000000 +#define DRV_MSG_CODE_LINK_RESET 0x23000000 +#define DRV_MSG_CODE_SET_DCBX 0x25000000 + +#define DRV_MSG_CODE_BW_UPDATE_ACK 0x32000000 +#define DRV_MSG_CODE_NIG_DRAIN 0x30000000 +#define DRV_MSG_CODE_VF_DISABLED_DONE 0xc0000000 +#define DRV_MSG_CODE_CFG_VF_MSIX 0xc0010000 +#define DRV_MSG_CODE_MCP_RESET 0x00090000 +#define DRV_MSG_CODE_SET_VERSION 0x000f0000 + +#define DRV_MSG_CODE_BIST_TEST 0x001e0000 +#define DRV_MSG_CODE_SET_LED_MODE 0x00200000 + +#define DRV_MSG_SEQ_NUMBER_MASK 0x0000ffff u32 drv_mb_param; +#define DRV_MB_PARAM_UNLOAD_WOL_MCP 0x00000001 +#define DRV_MB_PARAM_DCBX_NOTIFY_MASK 0x000000FF +#define DRV_MB_PARAM_DCBX_NOTIFY_SHIFT 3 +#define DRV_MB_PARAM_CFG_VF_MSIX_VF_ID_SHIFT 0 +#define DRV_MB_PARAM_CFG_VF_MSIX_VF_ID_MASK 0x000000FF +#define DRV_MB_PARAM_CFG_VF_MSIX_SB_NUM_SHIFT 8 +#define DRV_MB_PARAM_CFG_VF_MSIX_SB_NUM_MASK 0x0000FF00 +#define DRV_MB_PARAM_LLDP_SEND_MASK 0x00000001 +#define DRV_MB_PARAM_LLDP_SEND_SHIFT 0 + + +#define DRV_MB_PARAM_SET_LED_MODE_OPER 0x0 +#define DRV_MB_PARAM_SET_LED_MODE_ON 0x1 +#define DRV_MB_PARAM_SET_LED_MODE_OFF 0x2 + +#define DRV_MB_PARAM_BIST_REGISTER_TEST 1 +#define DRV_MB_PARAM_BIST_CLOCK_TEST 2 + +#define DRV_MB_PARAM_BIST_RC_UNKNOWN 0 +#define DRV_MB_PARAM_BIST_RC_PASSED 1 +#define DRV_MB_PARAM_BIST_RC_FAILED 2 +#define DRV_MB_PARAM_BIST_RC_INVALID_PARAMETER 3 - /* UNLOAD_REQ params */ -#define DRV_MB_PARAM_UNLOAD_WOL_UNKNOWN 0x00000000 -#define DRV_MB_PARAM_UNLOAD_WOL_MCP 0x00000001 -#define DRV_MB_PARAM_UNLOAD_WOL_DISABLED 0x00000002 -#define DRV_MB_PARAM_UNLOAD_WOL_ENABLED 0x00000003 - - /* UNLOAD_DONE_params */ -#define DRV_MB_PARAM_UNLOAD_NON_D3_POWER 0x00000001 - - /* INIT_PHY params */ -#define DRV_MB_PARAM_INIT_PHY_FORCE 0x00000001 -#define DRV_MB_PARAM_INIT_PHY_DONT_CARE 0x00000002 - - /* LLDP / DCBX params*/ -#define DRV_MB_PARAM_LLDP_SEND_MASK 0x00000001 -#define DRV_MB_PARAM_LLDP_SEND_SHIFT 0 -#define DRV_MB_PARAM_LLDP_AGENT_MASK 0x00000006 -#define DRV_MB_PARAM_LLDP_AGENT_SHIFT 1 -#define DRV_MB_PARAM_DCBX_NOTIFY_MASK 0x00000008 -#define DRV_MB_PARAM_DCBX_NOTIFY_SHIFT 3 - -#define DRV_MB_PARAM_NIG_DRAIN_PERIOD_MS_MASK 0x000000FF -#define DRV_MB_PARAM_NIG_DRAIN_PERIOD_MS_SHIFT 0 - -#define DRV_MB_PARAM_NVM_PUT_FILE_BEGIN_MFW 0x1 -#define DRV_MB_PARAM_NVM_PUT_FILE_BEGIN_IMAGE 0x2 - -#define DRV_MB_PARAM_NVM_OFFSET_SHIFT 0 -#define DRV_MB_PARAM_NVM_OFFSET_MASK 0x00FFFFFF -#define DRV_MB_PARAM_NVM_LEN_SHIFT 24 -#define DRV_MB_PARAM_NVM_LEN_MASK 0xFF000000 - -#define DRV_MB_PARAM_PHY_ADDR_SHIFT 0 -#define DRV_MB_PARAM_PHY_ADDR_MASK 0x1FF0FFFF -#define DRV_MB_PARAM_PHY_LANE_SHIFT 16 -#define DRV_MB_PARAM_PHY_LANE_MASK 0x000F0000 -#define DRV_MB_PARAM_PHY_SELECT_PORT_SHIFT 29 -#define DRV_MB_PARAM_PHY_SELECT_PORT_MASK 0x20000000 -#define DRV_MB_PARAM_PHY_PORT_SHIFT 30 -#define DRV_MB_PARAM_PHY_PORT_MASK 0xc0000000 - -/* configure vf MSIX params*/ -#define DRV_MB_PARAM_CFG_VF_MSIX_VF_ID_SHIFT 0 -#define DRV_MB_PARAM_CFG_VF_MSIX_VF_ID_MASK 0x000000FF -#define DRV_MB_PARAM_CFG_VF_MSIX_SB_NUM_SHIFT 8 -#define DRV_MB_PARAM_CFG_VF_MSIX_SB_NUM_MASK 0x0000FF00 - -#define DRV_MB_PARAM_SET_LED_MODE_OPER 0x0 -#define DRV_MB_PARAM_SET_LED_MODE_ON 0x1 -#define DRV_MB_PARAM_SET_LED_MODE_OFF 0x2 +#define DRV_MB_PARAM_BIST_TEST_INDEX_SHIFT 0 +#define DRV_MB_PARAM_BIST_TEST_INDEX_MASK 0x000000FF u32 fw_mb_header; -#define FW_MSG_CODE_MASK 0xffff0000 -#define FW_MSG_CODE_DRV_LOAD_ENGINE 0x10100000 -#define FW_MSG_CODE_DRV_LOAD_PORT 0x10110000 -#define FW_MSG_CODE_DRV_LOAD_FUNCTION 0x10120000 -#define FW_MSG_CODE_DRV_LOAD_REFUSED_PDA 0x10200000 -#define FW_MSG_CODE_DRV_LOAD_REFUSED_HSI 0x10210000 -#define FW_MSG_CODE_DRV_LOAD_REFUSED_DIAG 0x10220000 -#define FW_MSG_CODE_DRV_LOAD_DONE 0x11100000 -#define FW_MSG_CODE_DRV_UNLOAD_ENGINE 0x20110000 -#define FW_MSG_CODE_DRV_UNLOAD_PORT 0x20120000 -#define FW_MSG_CODE_DRV_UNLOAD_FUNCTION 0x20130000 -#define FW_MSG_CODE_DRV_UNLOAD_DONE 0x21100000 -#define FW_MSG_CODE_INIT_PHY_DONE 0x21200000 -#define FW_MSG_CODE_INIT_PHY_ERR_INVALID_ARGS 0x21300000 -#define FW_MSG_CODE_LINK_RESET_DONE 0x23000000 -#define FW_MSG_CODE_SET_LLDP_DONE 0x24000000 -#define FW_MSG_CODE_SET_LLDP_UNSUPPORTED_AGENT 0x24010000 -#define FW_MSG_CODE_SET_DCBX_DONE 0x25000000 -#define FW_MSG_CODE_NIG_DRAIN_DONE 0x30000000 -#define FW_MSG_CODE_VF_DISABLED_DONE 0xb0000000 -#define FW_MSG_CODE_DRV_CFG_VF_MSIX_DONE 0xb0010000 -#define FW_MSG_CODE_FLR_ACK 0x02000000 -#define FW_MSG_CODE_FLR_NACK 0x02100000 - -#define FW_MSG_CODE_NVM_OK 0x00010000 -#define FW_MSG_CODE_NVM_INVALID_MODE 0x00020000 -#define FW_MSG_CODE_NVM_PREV_CMD_WAS_NOT_FINISHED 0x00030000 -#define FW_MSG_CODE_NVM_FAILED_TO_ALLOCATE_PAGE 0x00040000 -#define FW_MSG_CODE_NVM_INVALID_DIR_FOUND 0x00050000 -#define FW_MSG_CODE_NVM_PAGE_NOT_FOUND 0x00060000 -#define FW_MSG_CODE_NVM_FAILED_PARSING_BNDLE_HEADER 0x00070000 -#define FW_MSG_CODE_NVM_FAILED_PARSING_IMAGE_HEADER 0x00080000 -#define FW_MSG_CODE_NVM_PARSING_OUT_OF_SYNC 0x00090000 -#define FW_MSG_CODE_NVM_FAILED_UPDATING_DIR 0x000a0000 -#define FW_MSG_CODE_NVM_FAILED_TO_FREE_PAGE 0x000b0000 -#define FW_MSG_CODE_NVM_FILE_NOT_FOUND 0x000c0000 -#define FW_MSG_CODE_NVM_OPERATION_FAILED 0x000d0000 -#define FW_MSG_CODE_NVM_FAILED_UNALIGNED 0x000e0000 -#define FW_MSG_CODE_NVM_BAD_OFFSET 0x000f0000 -#define FW_MSG_CODE_NVM_BAD_SIGNATURE 0x00100000 -#define FW_MSG_CODE_NVM_FILE_READ_ONLY 0x00200000 -#define FW_MSG_CODE_NVM_UNKNOWN_FILE 0x00300000 -#define FW_MSG_CODE_NVM_PUT_FILE_FINISH_OK 0x00400000 -#define FW_MSG_CODE_MCP_RESET_REJECT 0x00600000 -#define FW_MSG_CODE_PHY_OK 0x00110000 -#define FW_MSG_CODE_PHY_ERROR 0x00120000 -#define FW_MSG_CODE_SET_SECURE_MODE_ERROR 0x00130000 -#define FW_MSG_CODE_SET_SECURE_MODE_OK 0x00140000 -#define FW_MSG_MODE_PHY_PRIVILEGE_ERROR 0x00150000 -#define FW_MSG_CODE_OK 0x00160000 - -#define FW_MSG_SEQ_NUMBER_MASK 0x0000ffff - - u32 fw_mb_param; - - u32 drv_pulse_mb; -#define DRV_PULSE_SEQ_MASK 0x00007fff -#define DRV_PULSE_SYSTEM_TIME_MASK 0xffff0000 -#define DRV_PULSE_ALWAYS_ALIVE 0x00008000 +#define FW_MSG_CODE_MASK 0xffff0000 +#define FW_MSG_CODE_DRV_LOAD_ENGINE 0x10100000 +#define FW_MSG_CODE_DRV_LOAD_PORT 0x10110000 +#define FW_MSG_CODE_DRV_LOAD_FUNCTION 0x10120000 +#define FW_MSG_CODE_DRV_LOAD_REFUSED_PDA 0x10200000 +#define FW_MSG_CODE_DRV_LOAD_REFUSED_HSI 0x10210000 +#define FW_MSG_CODE_DRV_LOAD_REFUSED_DIAG 0x10220000 +#define FW_MSG_CODE_DRV_LOAD_DONE 0x11100000 +#define FW_MSG_CODE_DRV_UNLOAD_ENGINE 0x20110000 +#define FW_MSG_CODE_DRV_UNLOAD_PORT 0x20120000 +#define FW_MSG_CODE_DRV_UNLOAD_FUNCTION 0x20130000 +#define FW_MSG_CODE_DRV_UNLOAD_DONE 0x21100000 +#define FW_MSG_CODE_DRV_CFG_VF_MSIX_DONE 0xb0010000 +#define FW_MSG_CODE_OK 0x00160000 + +#define FW_MSG_SEQ_NUMBER_MASK 0x0000ffff + + u32 fw_mb_param; + + u32 drv_pulse_mb; +#define DRV_PULSE_SEQ_MASK 0x00007fff +#define DRV_PULSE_SYSTEM_TIME_MASK 0xffff0000 +#define DRV_PULSE_ALWAYS_ALIVE 0x00008000 + u32 mcp_pulse_mb; -#define MCP_PULSE_SEQ_MASK 0x00007fff -#define MCP_PULSE_ALWAYS_ALIVE 0x00008000 -#define MCP_EVENT_MASK 0xffff0000 -#define MCP_EVENT_OTHER_DRIVER_RESET_REQ 0x00010000 +#define MCP_PULSE_SEQ_MASK 0x00007fff +#define MCP_PULSE_ALWAYS_ALIVE 0x00008000 +#define MCP_EVENT_MASK 0xffff0000 +#define MCP_EVENT_OTHER_DRIVER_RESET_REQ 0x00010000 union drv_union_data union_data; }; -/* MFW - DRV MB */ -/********************************************************************** -* Description -* Incremental Aggregative -* 8-bit MFW counter per message -* 8-bit ack-counter per message -* Capabilities -* Provides up to 256 aggregative message per type -* Provides 4 message types in dword -* Message type pointers to byte offset -* Backward Compatibility by using sizeof for the counters. -* No lock requires for 32bit messages -* Limitations: -* In case of messages greater than 32bit, a dedicated mechanism(e.g lock) -* is required to prevent data corruption. -**********************************************************************/ enum MFW_DRV_MSG_TYPE { MFW_DRV_MSG_LINK_CHANGE, MFW_DRV_MSG_FLR_FW_ACK_FAILED, @@ -3957,37 +7312,33 @@ enum MFW_DRV_MSG_TYPE { MFW_DRV_MSG_LLDP_DATA_UPDATED, MFW_DRV_MSG_DCBX_REMOTE_MIB_UPDATED, MFW_DRV_MSG_DCBX_OPERATIONAL_MIB_UPDATED, - MFW_DRV_MSG_ERROR_RECOVERY, + MFW_DRV_MSG_RESERVED4, MFW_DRV_MSG_BW_UPDATE, - MFW_DRV_MSG_S_TAG_UPDATE, - MFW_DRV_MSG_GET_LAN_STATS, - MFW_DRV_MSG_GET_FCOE_STATS, - MFW_DRV_MSG_GET_ISCSI_STATS, - MFW_DRV_MSG_GET_RDMA_STATS, - MFW_DRV_MSG_FAILURE_DETECTED, + MFW_DRV_MSG_BW_UPDATE5, + MFW_DRV_MSG_BW_UPDATE6, + MFW_DRV_MSG_BW_UPDATE7, + MFW_DRV_MSG_BW_UPDATE8, + MFW_DRV_MSG_BW_UPDATE9, + MFW_DRV_MSG_BW_UPDATE10, MFW_DRV_MSG_TRANSCEIVER_STATE_CHANGE, + MFW_DRV_MSG_BW_UPDATE11, MFW_DRV_MSG_MAX }; -#define MFW_DRV_MSG_MAX_DWORDS(msgs) (((msgs - 1) >> 2) + 1) -#define MFW_DRV_MSG_DWORD(msg_id) (msg_id >> 2) -#define MFW_DRV_MSG_OFFSET(msg_id) ((msg_id & 0x3) << 3) -#define MFW_DRV_MSG_MASK(msg_id) (0xff << MFW_DRV_MSG_OFFSET(msg_id)) +#define MFW_DRV_MSG_MAX_DWORDS(msgs) (((msgs - 1) >> 2) + 1) +#define MFW_DRV_MSG_DWORD(msg_id) (msg_id >> 2) +#define MFW_DRV_MSG_OFFSET(msg_id) ((msg_id & 0x3) << 3) +#define MFW_DRV_MSG_MASK(msg_id) (0xff << MFW_DRV_MSG_OFFSET(msg_id)) struct public_mfw_mb { - u32 sup_msgs; - u32 msg[MFW_DRV_MSG_MAX_DWORDS(MFW_DRV_MSG_MAX)]; - u32 ack[MFW_DRV_MSG_MAX_DWORDS(MFW_DRV_MSG_MAX)]; + u32 sup_msgs; + u32 msg[MFW_DRV_MSG_MAX_DWORDS(MFW_DRV_MSG_MAX)]; + u32 ack[MFW_DRV_MSG_MAX_DWORDS(MFW_DRV_MSG_MAX)]; }; -/**************************************/ -/* */ -/* P U B L I C D A T A */ -/* */ -/**************************************/ enum public_sections { - PUBLIC_DRV_MB, /* Points to the first drv_mb of path0 */ - PUBLIC_MFW_MB, /* Points to the first mfw_mb of path0 */ + PUBLIC_DRV_MB, + PUBLIC_MFW_MB, PUBLIC_GLOBAL, PUBLIC_PATH, PUBLIC_PORT, @@ -3995,1076 +7346,179 @@ enum public_sections { PUBLIC_MAX_SECTIONS }; -struct drv_ver_info_stc { - u32 ver; - u8 name[32]; -}; - struct mcp_public_data { - /* The sections fields is an array */ - u32 num_sections; - offsize_t sections[PUBLIC_MAX_SECTIONS]; - struct public_drv_mb drv_mb[MCP_GLOB_FUNC_MAX]; - struct public_mfw_mb mfw_mb[MCP_GLOB_FUNC_MAX]; - struct public_global global; - struct public_path path[MCP_GLOB_PATH_MAX]; - struct public_port port[MCP_GLOB_PORT_MAX]; - struct public_func func[MCP_GLOB_FUNC_MAX]; - struct drv_ver_info_stc drv_info; + u32 num_sections; + u32 sections[PUBLIC_MAX_SECTIONS]; + struct public_drv_mb drv_mb[MCP_GLOB_FUNC_MAX]; + struct public_mfw_mb mfw_mb[MCP_GLOB_FUNC_MAX]; + struct public_global global; + struct public_path path[MCP_GLOB_PATH_MAX]; + struct public_port port[MCP_GLOB_PORT_MAX]; + struct public_func func[MCP_GLOB_FUNC_MAX]; }; struct nvm_cfg_mac_address { - u32 mac_addr_hi; -#define NVM_CFG_MAC_ADDRESS_HI_MASK 0x0000FFFF -#define NVM_CFG_MAC_ADDRESS_HI_OFFSET 0 - - u32 mac_addr_lo; + u32 mac_addr_hi; +#define NVM_CFG_MAC_ADDRESS_HI_MASK 0x0000FFFF +#define NVM_CFG_MAC_ADDRESS_HI_OFFSET 0 + u32 mac_addr_lo; }; -/****************************************** -* nvm_cfg1 structs -******************************************/ - struct nvm_cfg1_glob { - u32 generic_cont0; /* 0x0 */ -#define NVM_CFG1_GLOB_BOARD_SWAP_MASK 0x0000000F -#define NVM_CFG1_GLOB_BOARD_SWAP_OFFSET 0 -#define NVM_CFG1_GLOB_BOARD_SWAP_NONE 0x0 -#define NVM_CFG1_GLOB_BOARD_SWAP_PATH 0x1 -#define NVM_CFG1_GLOB_BOARD_SWAP_PORT 0x2 -#define NVM_CFG1_GLOB_BOARD_SWAP_BOTH 0x3 -#define NVM_CFG1_GLOB_MF_MODE_MASK 0x00000FF0 -#define NVM_CFG1_GLOB_MF_MODE_OFFSET 4 -#define NVM_CFG1_GLOB_MF_MODE_MF_ALLOWED 0x0 -#define NVM_CFG1_GLOB_MF_MODE_DEFAULT 0x1 -#define NVM_CFG1_GLOB_MF_MODE_SPIO4 0x2 -#define NVM_CFG1_GLOB_MF_MODE_NPAR1_0 0x3 -#define NVM_CFG1_GLOB_MF_MODE_NPAR1_5 0x4 -#define NVM_CFG1_GLOB_MF_MODE_NPAR2_0 0x5 -#define NVM_CFG1_GLOB_MF_MODE_BD 0x6 -#define NVM_CFG1_GLOB_MF_MODE_UFP 0x7 -#define NVM_CFG1_GLOB_FAN_FAILURE_ENFORCEMENT_MASK 0x00001000 -#define NVM_CFG1_GLOB_FAN_FAILURE_ENFORCEMENT_OFFSET 12 -#define NVM_CFG1_GLOB_FAN_FAILURE_ENFORCEMENT_DISABLED 0x0 -#define NVM_CFG1_GLOB_FAN_FAILURE_ENFORCEMENT_ENABLED 0x1 -#define NVM_CFG1_GLOB_AVS_MARGIN_LOW_MASK 0x001FE000 -#define NVM_CFG1_GLOB_AVS_MARGIN_LOW_OFFSET 13 -#define NVM_CFG1_GLOB_AVS_MARGIN_HIGH_MASK 0x1FE00000 -#define NVM_CFG1_GLOB_AVS_MARGIN_HIGH_OFFSET 21 -#define NVM_CFG1_GLOB_ENABLE_SRIOV_MASK 0x20000000 -#define NVM_CFG1_GLOB_ENABLE_SRIOV_OFFSET 29 -#define NVM_CFG1_GLOB_ENABLE_SRIOV_DISABLED 0x0 -#define NVM_CFG1_GLOB_ENABLE_SRIOV_ENABLED 0x1 -#define NVM_CFG1_GLOB_ENABLE_ATC_MASK 0x40000000 -#define NVM_CFG1_GLOB_ENABLE_ATC_OFFSET 30 -#define NVM_CFG1_GLOB_ENABLE_ATC_DISABLED 0x0 -#define NVM_CFG1_GLOB_ENABLE_ATC_ENABLED 0x1 -#define NVM_CFG1_GLOB_CLOCK_SLOWDOWN_MASK 0x80000000 -#define NVM_CFG1_GLOB_CLOCK_SLOWDOWN_OFFSET 31 -#define NVM_CFG1_GLOB_CLOCK_SLOWDOWN_DISABLED 0x0 -#define NVM_CFG1_GLOB_CLOCK_SLOWDOWN_ENABLED 0x1 - - u32 engineering_change[3]; /* 0x4 */ - - u32 manufacturing_id; /* 0x10 */ - - u32 serial_number[4]; /* 0x14 */ - - u32 pcie_cfg; /* 0x24 */ -#define NVM_CFG1_GLOB_PCI_GEN_MASK 0x00000003 -#define NVM_CFG1_GLOB_PCI_GEN_OFFSET 0 -#define NVM_CFG1_GLOB_PCI_GEN_PCI_GEN1 0x0 -#define NVM_CFG1_GLOB_PCI_GEN_PCI_GEN2 0x1 -#define NVM_CFG1_GLOB_PCI_GEN_PCI_GEN3 0x2 -#define NVM_CFG1_GLOB_BEACON_WOL_ENABLED_MASK 0x00000004 -#define NVM_CFG1_GLOB_BEACON_WOL_ENABLED_OFFSET 2 -#define NVM_CFG1_GLOB_BEACON_WOL_ENABLED_DISABLED 0x0 -#define NVM_CFG1_GLOB_BEACON_WOL_ENABLED_ENABLED 0x1 -#define NVM_CFG1_GLOB_ASPM_SUPPORT_MASK 0x00000018 -#define NVM_CFG1_GLOB_ASPM_SUPPORT_OFFSET 3 -#define NVM_CFG1_GLOB_ASPM_SUPPORT_L0S_L1_ENABLED 0x0 -#define NVM_CFG1_GLOB_ASPM_SUPPORT_L0S_DISABLED 0x1 -#define NVM_CFG1_GLOB_ASPM_SUPPORT_L1_DISABLED 0x2 -#define NVM_CFG1_GLOB_ASPM_SUPPORT_L0S_L1_DISABLED 0x3 -#define NVM_CFG1_GLOB_PREVENT_PCIE_L1_MENTRY_MASK 0x00000020 -#define NVM_CFG1_GLOB_PREVENT_PCIE_L1_MENTRY_OFFSET 5 -#define NVM_CFG1_GLOB_PREVENT_PCIE_L1_MENTRY_DISABLED 0x0 -#define NVM_CFG1_GLOB_PREVENT_PCIE_L1_MENTRY_ENABLED 0x1 -#define NVM_CFG1_GLOB_PCIE_G2_TX_AMPLITUDE_MASK 0x000003C0 -#define NVM_CFG1_GLOB_PCIE_G2_TX_AMPLITUDE_OFFSET 6 -#define NVM_CFG1_GLOB_PCIE_PREEMPHASIS_MASK 0x00001C00 -#define NVM_CFG1_GLOB_PCIE_PREEMPHASIS_OFFSET 10 -#define NVM_CFG1_GLOB_PCIE_PREEMPHASIS_HW 0x0 -#define NVM_CFG1_GLOB_PCIE_PREEMPHASIS_0DB 0x1 -#define NVM_CFG1_GLOB_PCIE_PREEMPHASIS_3_5DB 0x2 -#define NVM_CFG1_GLOB_PCIE_PREEMPHASIS_6_0DB 0x3 -#define NVM_CFG1_GLOB_WWN_NODE_PREFIX0_MASK 0x001FE000 -#define NVM_CFG1_GLOB_WWN_NODE_PREFIX0_OFFSET 13 -#define NVM_CFG1_GLOB_WWN_NODE_PREFIX1_MASK 0x1FE00000 -#define NVM_CFG1_GLOB_WWN_NODE_PREFIX1_OFFSET 21 -#define NVM_CFG1_GLOB_NCSI_PACKAGE_ID_MASK 0x60000000 -#define NVM_CFG1_GLOB_NCSI_PACKAGE_ID_OFFSET 29 - - u32 mgmt_traffic; /* 0x28 */ -#define NVM_CFG1_GLOB_RESERVED60_MASK 0x00000001 -#define NVM_CFG1_GLOB_RESERVED60_OFFSET 0 -#define NVM_CFG1_GLOB_RESERVED60_100KHZ 0x0 -#define NVM_CFG1_GLOB_RESERVED60_400KHZ 0x1 -#define NVM_CFG1_GLOB_WWN_PORT_PREFIX0_MASK 0x000001FE -#define NVM_CFG1_GLOB_WWN_PORT_PREFIX0_OFFSET 1 -#define NVM_CFG1_GLOB_WWN_PORT_PREFIX1_MASK 0x0001FE00 -#define NVM_CFG1_GLOB_WWN_PORT_PREFIX1_OFFSET 9 -#define NVM_CFG1_GLOB_SMBUS_ADDRESS_MASK 0x01FE0000 -#define NVM_CFG1_GLOB_SMBUS_ADDRESS_OFFSET 17 -#define NVM_CFG1_GLOB_SIDEBAND_MODE_MASK 0x06000000 -#define NVM_CFG1_GLOB_SIDEBAND_MODE_OFFSET 25 -#define NVM_CFG1_GLOB_SIDEBAND_MODE_DISABLED 0x0 -#define NVM_CFG1_GLOB_SIDEBAND_MODE_RMII 0x1 -#define NVM_CFG1_GLOB_SIDEBAND_MODE_SGMII 0x2 - - u32 core_cfg; /* 0x2C */ -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_MASK 0x000000FF -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_OFFSET 0 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_2X40G 0x0 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_2X50G 0x1 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_1X100G 0x2 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_4X10G_F 0x3 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_4X10G_E 0x4 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_4X20G 0x5 -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_1X40G 0xB -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_2X25G 0xC -#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_DE_1X25G 0xD -#define NVM_CFG1_GLOB_EAGLE_ENFORCE_TX_FIR_CFG_MASK 0x00000100 -#define NVM_CFG1_GLOB_EAGLE_ENFORCE_TX_FIR_CFG_OFFSET 8 -#define NVM_CFG1_GLOB_EAGLE_ENFORCE_TX_FIR_CFG_DISABLED 0x0 -#define NVM_CFG1_GLOB_EAGLE_ENFORCE_TX_FIR_CFG_ENABLED 0x1 -#define NVM_CFG1_GLOB_FALCON_ENFORCE_TX_FIR_CFG_MASK 0x00000200 -#define NVM_CFG1_GLOB_FALCON_ENFORCE_TX_FIR_CFG_OFFSET 9 -#define NVM_CFG1_GLOB_FALCON_ENFORCE_TX_FIR_CFG_DISABLED 0x0 -#define NVM_CFG1_GLOB_FALCON_ENFORCE_TX_FIR_CFG_ENABLED 0x1 -#define NVM_CFG1_GLOB_EAGLE_CORE_ADDR_MASK 0x0003FC00 -#define NVM_CFG1_GLOB_EAGLE_CORE_ADDR_OFFSET 10 -#define NVM_CFG1_GLOB_FALCON_CORE_ADDR_MASK 0x03FC0000 -#define NVM_CFG1_GLOB_FALCON_CORE_ADDR_OFFSET 18 -#define NVM_CFG1_GLOB_AVS_MODE_MASK 0x1C000000 -#define NVM_CFG1_GLOB_AVS_MODE_OFFSET 26 -#define NVM_CFG1_GLOB_AVS_MODE_CLOSE_LOOP 0x0 -#define NVM_CFG1_GLOB_AVS_MODE_OPEN_LOOP 0x1 -#define NVM_CFG1_GLOB_AVS_MODE_DISABLED 0x3 -#define NVM_CFG1_GLOB_OVERRIDE_SECURE_MODE_MASK 0x60000000 -#define NVM_CFG1_GLOB_OVERRIDE_SECURE_MODE_OFFSET 29 -#define NVM_CFG1_GLOB_OVERRIDE_SECURE_MODE_DISABLED 0x0 -#define NVM_CFG1_GLOB_OVERRIDE_SECURE_MODE_ENABLED 0x1 - - u32 e_lane_cfg1; /* 0x30 */ -#define NVM_CFG1_GLOB_RX_LANE0_SWAP_MASK 0x0000000F -#define NVM_CFG1_GLOB_RX_LANE0_SWAP_OFFSET 0 -#define NVM_CFG1_GLOB_RX_LANE1_SWAP_MASK 0x000000F0 -#define NVM_CFG1_GLOB_RX_LANE1_SWAP_OFFSET 4 -#define NVM_CFG1_GLOB_RX_LANE2_SWAP_MASK 0x00000F00 -#define NVM_CFG1_GLOB_RX_LANE2_SWAP_OFFSET 8 -#define NVM_CFG1_GLOB_RX_LANE3_SWAP_MASK 0x0000F000 -#define NVM_CFG1_GLOB_RX_LANE3_SWAP_OFFSET 12 -#define NVM_CFG1_GLOB_TX_LANE0_SWAP_MASK 0x000F0000 -#define NVM_CFG1_GLOB_TX_LANE0_SWAP_OFFSET 16 -#define NVM_CFG1_GLOB_TX_LANE1_SWAP_MASK 0x00F00000 -#define NVM_CFG1_GLOB_TX_LANE1_SWAP_OFFSET 20 -#define NVM_CFG1_GLOB_TX_LANE2_SWAP_MASK 0x0F000000 -#define NVM_CFG1_GLOB_TX_LANE2_SWAP_OFFSET 24 -#define NVM_CFG1_GLOB_TX_LANE3_SWAP_MASK 0xF0000000 -#define NVM_CFG1_GLOB_TX_LANE3_SWAP_OFFSET 28 - - u32 e_lane_cfg2; /* 0x34 */ -#define NVM_CFG1_GLOB_RX_LANE0_POL_FLIP_MASK 0x00000001 -#define NVM_CFG1_GLOB_RX_LANE0_POL_FLIP_OFFSET 0 -#define NVM_CFG1_GLOB_RX_LANE1_POL_FLIP_MASK 0x00000002 -#define NVM_CFG1_GLOB_RX_LANE1_POL_FLIP_OFFSET 1 -#define NVM_CFG1_GLOB_RX_LANE2_POL_FLIP_MASK 0x00000004 -#define NVM_CFG1_GLOB_RX_LANE2_POL_FLIP_OFFSET 2 -#define NVM_CFG1_GLOB_RX_LANE3_POL_FLIP_MASK 0x00000008 -#define NVM_CFG1_GLOB_RX_LANE3_POL_FLIP_OFFSET 3 -#define NVM_CFG1_GLOB_TX_LANE0_POL_FLIP_MASK 0x00000010 -#define NVM_CFG1_GLOB_TX_LANE0_POL_FLIP_OFFSET 4 -#define NVM_CFG1_GLOB_TX_LANE1_POL_FLIP_MASK 0x00000020 -#define NVM_CFG1_GLOB_TX_LANE1_POL_FLIP_OFFSET 5 -#define NVM_CFG1_GLOB_TX_LANE2_POL_FLIP_MASK 0x00000040 -#define NVM_CFG1_GLOB_TX_LANE2_POL_FLIP_OFFSET 6 -#define NVM_CFG1_GLOB_TX_LANE3_POL_FLIP_MASK 0x00000080 -#define NVM_CFG1_GLOB_TX_LANE3_POL_FLIP_OFFSET 7 -#define NVM_CFG1_GLOB_SMBUS_MODE_MASK 0x00000F00 -#define NVM_CFG1_GLOB_SMBUS_MODE_OFFSET 8 -#define NVM_CFG1_GLOB_SMBUS_MODE_DISABLED 0x0 -#define NVM_CFG1_GLOB_SMBUS_MODE_100KHZ 0x1 -#define NVM_CFG1_GLOB_SMBUS_MODE_400KHZ 0x2 -#define NVM_CFG1_GLOB_NCSI_MASK 0x0000F000 -#define NVM_CFG1_GLOB_NCSI_OFFSET 12 -#define NVM_CFG1_GLOB_NCSI_DISABLED 0x0 -#define NVM_CFG1_GLOB_NCSI_ENABLED 0x1 - - u32 f_lane_cfg1; /* 0x38 */ -#define NVM_CFG1_GLOB_RX_LANE0_SWAP_MASK 0x0000000F -#define NVM_CFG1_GLOB_RX_LANE0_SWAP_OFFSET 0 -#define NVM_CFG1_GLOB_RX_LANE1_SWAP_MASK 0x000000F0 -#define NVM_CFG1_GLOB_RX_LANE1_SWAP_OFFSET 4 -#define NVM_CFG1_GLOB_RX_LANE2_SWAP_MASK 0x00000F00 -#define NVM_CFG1_GLOB_RX_LANE2_SWAP_OFFSET 8 -#define NVM_CFG1_GLOB_RX_LANE3_SWAP_MASK 0x0000F000 -#define NVM_CFG1_GLOB_RX_LANE3_SWAP_OFFSET 12 -#define NVM_CFG1_GLOB_TX_LANE0_SWAP_MASK 0x000F0000 -#define NVM_CFG1_GLOB_TX_LANE0_SWAP_OFFSET 16 -#define NVM_CFG1_GLOB_TX_LANE1_SWAP_MASK 0x00F00000 -#define NVM_CFG1_GLOB_TX_LANE1_SWAP_OFFSET 20 -#define NVM_CFG1_GLOB_TX_LANE2_SWAP_MASK 0x0F000000 -#define NVM_CFG1_GLOB_TX_LANE2_SWAP_OFFSET 24 -#define NVM_CFG1_GLOB_TX_LANE3_SWAP_MASK 0xF0000000 -#define NVM_CFG1_GLOB_TX_LANE3_SWAP_OFFSET 28 - - u32 f_lane_cfg2; /* 0x3C */ -#define NVM_CFG1_GLOB_RX_LANE0_POL_FLIP_MASK 0x00000001 -#define NVM_CFG1_GLOB_RX_LANE0_POL_FLIP_OFFSET 0 -#define NVM_CFG1_GLOB_RX_LANE1_POL_FLIP_MASK 0x00000002 -#define NVM_CFG1_GLOB_RX_LANE1_POL_FLIP_OFFSET 1 -#define NVM_CFG1_GLOB_RX_LANE2_POL_FLIP_MASK 0x00000004 -#define NVM_CFG1_GLOB_RX_LANE2_POL_FLIP_OFFSET 2 -#define NVM_CFG1_GLOB_RX_LANE3_POL_FLIP_MASK 0x00000008 -#define NVM_CFG1_GLOB_RX_LANE3_POL_FLIP_OFFSET 3 -#define NVM_CFG1_GLOB_TX_LANE0_POL_FLIP_MASK 0x00000010 -#define NVM_CFG1_GLOB_TX_LANE0_POL_FLIP_OFFSET 4 -#define NVM_CFG1_GLOB_TX_LANE1_POL_FLIP_MASK 0x00000020 -#define NVM_CFG1_GLOB_TX_LANE1_POL_FLIP_OFFSET 5 -#define NVM_CFG1_GLOB_TX_LANE2_POL_FLIP_MASK 0x00000040 -#define NVM_CFG1_GLOB_TX_LANE2_POL_FLIP_OFFSET 6 -#define NVM_CFG1_GLOB_TX_LANE3_POL_FLIP_MASK 0x00000080 -#define NVM_CFG1_GLOB_TX_LANE3_POL_FLIP_OFFSET 7 - - u32 eagle_preemphasis; /* 0x40 */ -#define NVM_CFG1_GLOB_LANE0_PREEMP_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_PREEMP_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_PREEMP_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_PREEMP_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_PREEMP_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_PREEMP_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_PREEMP_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_PREEMP_OFFSET 24 - - u32 eagle_driver_current; /* 0x44 */ -#define NVM_CFG1_GLOB_LANE0_AMP_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_AMP_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_AMP_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_AMP_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_AMP_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_AMP_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_AMP_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_AMP_OFFSET 24 - - u32 falcon_preemphasis; /* 0x48 */ -#define NVM_CFG1_GLOB_LANE0_PREEMP_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_PREEMP_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_PREEMP_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_PREEMP_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_PREEMP_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_PREEMP_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_PREEMP_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_PREEMP_OFFSET 24 - - u32 falcon_driver_current; /* 0x4C */ -#define NVM_CFG1_GLOB_LANE0_AMP_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_AMP_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_AMP_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_AMP_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_AMP_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_AMP_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_AMP_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_AMP_OFFSET 24 - - u32 pci_id; /* 0x50 */ -#define NVM_CFG1_GLOB_VENDOR_ID_MASK 0x0000FFFF -#define NVM_CFG1_GLOB_VENDOR_ID_OFFSET 0 - - u32 pci_subsys_id; /* 0x54 */ -#define NVM_CFG1_GLOB_SUBSYSTEM_VENDOR_ID_MASK 0x0000FFFF -#define NVM_CFG1_GLOB_SUBSYSTEM_VENDOR_ID_OFFSET 0 -#define NVM_CFG1_GLOB_SUBSYSTEM_DEVICE_ID_MASK 0xFFFF0000 -#define NVM_CFG1_GLOB_SUBSYSTEM_DEVICE_ID_OFFSET 16 - - u32 bar; /* 0x58 */ -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_MASK 0x0000000F -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_OFFSET 0 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_DISABLED 0x0 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_2K 0x1 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_4K 0x2 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_8K 0x3 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_16K 0x4 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_32K 0x5 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_64K 0x6 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_128K 0x7 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_256K 0x8 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_512K 0x9 -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_1M 0xA -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_2M 0xB -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_4M 0xC -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_8M 0xD -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_16M 0xE -#define NVM_CFG1_GLOB_EXPANSION_ROM_SIZE_32M 0xF -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_MASK 0x000000F0 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_OFFSET 4 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_DISABLED 0x0 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_4K 0x1 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_8K 0x2 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_16K 0x3 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_32K 0x4 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_64K 0x5 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_128K 0x6 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_256K 0x7 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_512K 0x8 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_1M 0x9 -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_2M 0xA -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_4M 0xB -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_8M 0xC -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_16M 0xD -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_32M 0xE -#define NVM_CFG1_GLOB_VF_PCI_BAR2_SIZE_64M 0xF -#define NVM_CFG1_GLOB_BAR2_SIZE_MASK 0x00000F00 -#define NVM_CFG1_GLOB_BAR2_SIZE_OFFSET 8 -#define NVM_CFG1_GLOB_BAR2_SIZE_DISABLED 0x0 -#define NVM_CFG1_GLOB_BAR2_SIZE_64K 0x1 -#define NVM_CFG1_GLOB_BAR2_SIZE_128K 0x2 -#define NVM_CFG1_GLOB_BAR2_SIZE_256K 0x3 -#define NVM_CFG1_GLOB_BAR2_SIZE_512K 0x4 -#define NVM_CFG1_GLOB_BAR2_SIZE_1M 0x5 -#define NVM_CFG1_GLOB_BAR2_SIZE_2M 0x6 -#define NVM_CFG1_GLOB_BAR2_SIZE_4M 0x7 -#define NVM_CFG1_GLOB_BAR2_SIZE_8M 0x8 -#define NVM_CFG1_GLOB_BAR2_SIZE_16M 0x9 -#define NVM_CFG1_GLOB_BAR2_SIZE_32M 0xA -#define NVM_CFG1_GLOB_BAR2_SIZE_64M 0xB -#define NVM_CFG1_GLOB_BAR2_SIZE_128M 0xC -#define NVM_CFG1_GLOB_BAR2_SIZE_256M 0xD -#define NVM_CFG1_GLOB_BAR2_SIZE_512M 0xE -#define NVM_CFG1_GLOB_BAR2_SIZE_1G 0xF - - u32 eagle_txfir_main; /* 0x5C */ -#define NVM_CFG1_GLOB_LANE0_TXFIR_MAIN_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_TXFIR_MAIN_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_TXFIR_MAIN_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_TXFIR_MAIN_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_TXFIR_MAIN_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_TXFIR_MAIN_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_TXFIR_MAIN_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_TXFIR_MAIN_OFFSET 24 - - u32 eagle_txfir_post; /* 0x60 */ -#define NVM_CFG1_GLOB_LANE0_TXFIR_POST_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_TXFIR_POST_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_TXFIR_POST_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_TXFIR_POST_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_TXFIR_POST_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_TXFIR_POST_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_TXFIR_POST_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_TXFIR_POST_OFFSET 24 - - u32 falcon_txfir_main; /* 0x64 */ -#define NVM_CFG1_GLOB_LANE0_TXFIR_MAIN_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_TXFIR_MAIN_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_TXFIR_MAIN_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_TXFIR_MAIN_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_TXFIR_MAIN_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_TXFIR_MAIN_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_TXFIR_MAIN_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_TXFIR_MAIN_OFFSET 24 - - u32 falcon_txfir_post; /* 0x68 */ -#define NVM_CFG1_GLOB_LANE0_TXFIR_POST_MASK 0x000000FF -#define NVM_CFG1_GLOB_LANE0_TXFIR_POST_OFFSET 0 -#define NVM_CFG1_GLOB_LANE1_TXFIR_POST_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_LANE1_TXFIR_POST_OFFSET 8 -#define NVM_CFG1_GLOB_LANE2_TXFIR_POST_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_LANE2_TXFIR_POST_OFFSET 16 -#define NVM_CFG1_GLOB_LANE3_TXFIR_POST_MASK 0xFF000000 -#define NVM_CFG1_GLOB_LANE3_TXFIR_POST_OFFSET 24 - - u32 manufacture_ver; /* 0x6C */ -#define NVM_CFG1_GLOB_MANUF0_VER_MASK 0x0000003F -#define NVM_CFG1_GLOB_MANUF0_VER_OFFSET 0 -#define NVM_CFG1_GLOB_MANUF1_VER_MASK 0x00000FC0 -#define NVM_CFG1_GLOB_MANUF1_VER_OFFSET 6 -#define NVM_CFG1_GLOB_MANUF2_VER_MASK 0x0003F000 -#define NVM_CFG1_GLOB_MANUF2_VER_OFFSET 12 -#define NVM_CFG1_GLOB_MANUF3_VER_MASK 0x00FC0000 -#define NVM_CFG1_GLOB_MANUF3_VER_OFFSET 18 -#define NVM_CFG1_GLOB_MANUF4_VER_MASK 0x3F000000 -#define NVM_CFG1_GLOB_MANUF4_VER_OFFSET 24 - - u32 manufacture_time; /* 0x70 */ -#define NVM_CFG1_GLOB_MANUF0_TIME_MASK 0x0000003F -#define NVM_CFG1_GLOB_MANUF0_TIME_OFFSET 0 -#define NVM_CFG1_GLOB_MANUF1_TIME_MASK 0x00000FC0 -#define NVM_CFG1_GLOB_MANUF1_TIME_OFFSET 6 -#define NVM_CFG1_GLOB_MANUF2_TIME_MASK 0x0003F000 -#define NVM_CFG1_GLOB_MANUF2_TIME_OFFSET 12 - - u32 led_global_settings; /* 0x74 */ -#define NVM_CFG1_GLOB_LED_SWAP_0_MASK 0x0000000F -#define NVM_CFG1_GLOB_LED_SWAP_0_OFFSET 0 -#define NVM_CFG1_GLOB_LED_SWAP_1_MASK 0x000000F0 -#define NVM_CFG1_GLOB_LED_SWAP_1_OFFSET 4 -#define NVM_CFG1_GLOB_LED_SWAP_2_MASK 0x00000F00 -#define NVM_CFG1_GLOB_LED_SWAP_2_OFFSET 8 -#define NVM_CFG1_GLOB_LED_SWAP_3_MASK 0x0000F000 -#define NVM_CFG1_GLOB_LED_SWAP_3_OFFSET 12 - - u32 generic_cont1; /* 0x78 */ -#define NVM_CFG1_GLOB_AVS_DAC_CODE_MASK 0x000003FF -#define NVM_CFG1_GLOB_AVS_DAC_CODE_OFFSET 0 - - u32 mbi_version; /* 0x7C */ -#define NVM_CFG1_GLOB_MBI_VERSION_0_MASK 0x000000FF -#define NVM_CFG1_GLOB_MBI_VERSION_0_OFFSET 0 -#define NVM_CFG1_GLOB_MBI_VERSION_1_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_MBI_VERSION_1_OFFSET 8 -#define NVM_CFG1_GLOB_MBI_VERSION_2_MASK 0x00FF0000 -#define NVM_CFG1_GLOB_MBI_VERSION_2_OFFSET 16 - - u32 mbi_date; /* 0x80 */ - - u32 misc_sig; /* 0x84 */ - - /* Define the GPIO mapping to switch i2c mux */ -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO_0_MASK 0x000000FF -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO_0_OFFSET 0 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO_1_MASK 0x0000FF00 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO_1_OFFSET 8 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__NA 0x0 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO0 0x1 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO1 0x2 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO2 0x3 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO3 0x4 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO4 0x5 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO5 0x6 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO6 0x7 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO7 0x8 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO8 0x9 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO9 0xA -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO10 0xB -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO11 0xC -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO12 0xD -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO13 0xE -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO14 0xF -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO15 0x10 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO16 0x11 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO17 0x12 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO18 0x13 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO19 0x14 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO20 0x15 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO21 0x16 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO22 0x17 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO23 0x18 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO24 0x19 -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO25 0x1A -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO26 0x1B -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO27 0x1C -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO28 0x1D -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO29 0x1E -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO30 0x1F -#define NVM_CFG1_GLOB_I2C_MUX_SEL_GPIO__GPIO31 0x20 - u32 device_capabilities; /* 0x88 */ -#define NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ETHERNET 0x1 - u32 power_dissipated; /* 0x8C */ - u32 power_consumed; /* 0x90 */ - u32 efi_version; /* 0x94 */ - u32 reserved[42]; /* 0x98 */ + u32 generic_cont0; +#define NVM_CFG1_GLOB_MF_MODE_MASK 0x00000FF0 +#define NVM_CFG1_GLOB_MF_MODE_OFFSET 4 +#define NVM_CFG1_GLOB_MF_MODE_MF_ALLOWED 0x0 +#define NVM_CFG1_GLOB_MF_MODE_DEFAULT 0x1 +#define NVM_CFG1_GLOB_MF_MODE_SPIO4 0x2 +#define NVM_CFG1_GLOB_MF_MODE_NPAR1_0 0x3 +#define NVM_CFG1_GLOB_MF_MODE_NPAR1_5 0x4 +#define NVM_CFG1_GLOB_MF_MODE_NPAR2_0 0x5 +#define NVM_CFG1_GLOB_MF_MODE_BD 0x6 +#define NVM_CFG1_GLOB_MF_MODE_UFP 0x7 + u32 engineering_change[3]; + u32 manufacturing_id; + u32 serial_number[4]; + u32 pcie_cfg; + u32 mgmt_traffic; + u32 core_cfg; +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_MASK 0x000000FF +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_OFFSET 0 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_2X40G 0x0 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_2X50G 0x1 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_1X100G 0x2 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_4X10G_F 0x3 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_4X10G_E 0x4 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_4X20G 0x5 +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_1X40G 0xB +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_2X25G 0xC +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_1X25G 0xD +#define NVM_CFG1_GLOB_NETWORK_PORT_MODE_4X25G 0xE + u32 e_lane_cfg1; + u32 e_lane_cfg2; + u32 f_lane_cfg1; + u32 f_lane_cfg2; + u32 mps10_preemphasis; + u32 mps10_driver_current; + u32 mps25_preemphasis; + u32 mps25_driver_current; + u32 pci_id; + u32 pci_subsys_id; + u32 bar; + u32 mps10_txfir_main; + u32 mps10_txfir_post; + u32 mps25_txfir_main; + u32 mps25_txfir_post; + u32 manufacture_ver; + u32 manufacture_time; + u32 led_global_settings; + u32 generic_cont1; + u32 mbi_version; + u32 mbi_date; + u32 misc_sig; + u32 device_capabilities; +#define NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ETHERNET 0x1 +#define NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ISCSI 0x4 +#define NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ROCE 0x8 + u32 power_dissipated; + u32 power_consumed; + u32 efi_version; + u32 multi_network_modes_capability; + u32 reserved[41]; }; struct nvm_cfg1_path { - u32 reserved[30]; /* 0x0 */ + u32 reserved[30]; }; struct nvm_cfg1_port { - u32 reserved__m_relocated_to_option_123; /* 0x0 */ - u32 reserved__m_relocated_to_option_124; /* 0x4 */ - u32 generic_cont0; /* 0x8 */ -#define NVM_CFG1_PORT_LED_MODE_MASK 0x000000FF -#define NVM_CFG1_PORT_LED_MODE_OFFSET 0 -#define NVM_CFG1_PORT_LED_MODE_MAC1 0x0 -#define NVM_CFG1_PORT_LED_MODE_PHY1 0x1 -#define NVM_CFG1_PORT_LED_MODE_PHY2 0x2 -#define NVM_CFG1_PORT_LED_MODE_PHY3 0x3 -#define NVM_CFG1_PORT_LED_MODE_MAC2 0x4 -#define NVM_CFG1_PORT_LED_MODE_PHY4 0x5 -#define NVM_CFG1_PORT_LED_MODE_PHY5 0x6 -#define NVM_CFG1_PORT_LED_MODE_PHY6 0x7 -#define NVM_CFG1_PORT_LED_MODE_MAC3 0x8 -#define NVM_CFG1_PORT_LED_MODE_PHY7 0x9 -#define NVM_CFG1_PORT_LED_MODE_PHY8 0xA -#define NVM_CFG1_PORT_LED_MODE_PHY9 0xB -#define NVM_CFG1_PORT_LED_MODE_MAC4 0xC -#define NVM_CFG1_PORT_LED_MODE_PHY10 0xD -#define NVM_CFG1_PORT_LED_MODE_PHY11 0xE -#define NVM_CFG1_PORT_LED_MODE_PHY12 0xF -#define NVM_CFG1_PORT_ROCE_PRIORITY_MASK 0x0000FF00 -#define NVM_CFG1_PORT_ROCE_PRIORITY_OFFSET 8 -#define NVM_CFG1_PORT_DCBX_MODE_MASK 0x000F0000 -#define NVM_CFG1_PORT_DCBX_MODE_OFFSET 16 -#define NVM_CFG1_PORT_DCBX_MODE_DISABLED 0x0 -#define NVM_CFG1_PORT_DCBX_MODE_IEEE 0x1 -#define NVM_CFG1_PORT_DCBX_MODE_CEE 0x2 -#define NVM_CFG1_PORT_DCBX_MODE_DYNAMIC 0x3 -#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_MASK 0x00F00000 -#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_OFFSET 20 -#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_ETHERNET 0x1 - u32 pcie_cfg; /* 0xC */ -#define NVM_CFG1_PORT_RESERVED15_MASK 0x00000007 -#define NVM_CFG1_PORT_RESERVED15_OFFSET 0 - - u32 features; /* 0x10 */ -#define NVM_CFG1_PORT_ENABLE_WOL_ON_ACPI_PATTERN_MASK 0x00000001 -#define NVM_CFG1_PORT_ENABLE_WOL_ON_ACPI_PATTERN_OFFSET 0 -#define NVM_CFG1_PORT_ENABLE_WOL_ON_ACPI_PATTERN_DISABLED 0x0 -#define NVM_CFG1_PORT_ENABLE_WOL_ON_ACPI_PATTERN_ENABLED 0x1 -#define NVM_CFG1_PORT_MAGIC_PACKET_WOL_MASK 0x00000002 -#define NVM_CFG1_PORT_MAGIC_PACKET_WOL_OFFSET 1 -#define NVM_CFG1_PORT_MAGIC_PACKET_WOL_DISABLED 0x0 -#define NVM_CFG1_PORT_MAGIC_PACKET_WOL_ENABLED 0x1 - - u32 speed_cap_mask; /* 0x14 */ -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_MASK 0x0000FFFF -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_OFFSET 0 -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_1G 0x1 -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_10G 0x2 -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_25G 0x8 -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_40G 0x10 -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G 0x20 -#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G 0x40 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_MASK 0xFFFF0000 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_OFFSET 16 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_1G 0x1 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_10G 0x2 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_25G 0x8 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_40G 0x10 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_50G 0x20 -#define NVM_CFG1_PORT_MFW_SPEED_CAPABILITY_MASK_100G 0x40 - - u32 link_settings; /* 0x18 */ -#define NVM_CFG1_PORT_DRV_LINK_SPEED_MASK 0x0000000F -#define NVM_CFG1_PORT_DRV_LINK_SPEED_OFFSET 0 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_AUTONEG 0x0 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_1G 0x1 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_10G 0x2 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_25G 0x4 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_40G 0x5 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_50G 0x6 -#define NVM_CFG1_PORT_DRV_LINK_SPEED_100G 0x7 -#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_MASK 0x00000070 -#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_OFFSET 4 -#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_AUTONEG 0x1 -#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_RX 0x2 -#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_TX 0x4 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_MASK 0x00000780 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_OFFSET 7 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_AUTONEG 0x0 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_1G 0x1 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_10G 0x2 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_25G 0x4 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_40G 0x5 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_50G 0x6 -#define NVM_CFG1_PORT_MFW_LINK_SPEED_100G 0x7 -#define NVM_CFG1_PORT_MFW_FLOW_CONTROL_MASK 0x00003800 -#define NVM_CFG1_PORT_MFW_FLOW_CONTROL_OFFSET 11 -#define NVM_CFG1_PORT_MFW_FLOW_CONTROL_AUTONEG 0x1 -#define NVM_CFG1_PORT_MFW_FLOW_CONTROL_RX 0x2 -#define NVM_CFG1_PORT_MFW_FLOW_CONTROL_TX 0x4 -#define NVM_CFG1_PORT_OPTIC_MODULE_VENDOR_ENFORCEMENT_MASK 0x00004000 -#define NVM_CFG1_PORT_OPTIC_MODULE_VENDOR_ENFORCEMENT_OFFSET 14 -#define NVM_CFG1_PORT_OPTIC_MODULE_VENDOR_ENFORCEMENT_DISABLED 0x0 -#define NVM_CFG1_PORT_OPTIC_MODULE_VENDOR_ENFORCEMENT_ENABLED 0x1 - - u32 phy_cfg; /* 0x1C */ -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_MASK 0x0000FFFF -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_OFFSET 0 -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_HIGIG 0x1 -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_SCRAMBLER 0x2 -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_FIBER 0x4 -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_DISABLE_CL72_AN 0x8 -#define NVM_CFG1_PORT_OPTIONAL_LINK_MODES_DISABLE_FEC_AN 0x10 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_MASK 0x00FF0000 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_OFFSET 16 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_BYPASS 0x0 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_KR 0x2 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_KR2 0x3 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_KR4 0x4 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_XFI 0x8 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_SFI 0x9 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_1000X 0xB -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_SGMII 0xC -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_XLAUI 0x11 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_XLPPI 0x12 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_CAUI 0x21 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_CPPI 0x22 -#define NVM_CFG1_PORT_SERDES_NET_INTERFACE_25GAUI 0x31 -#define NVM_CFG1_PORT_AN_MODE_MASK 0xFF000000 -#define NVM_CFG1_PORT_AN_MODE_OFFSET 24 -#define NVM_CFG1_PORT_AN_MODE_NONE 0x0 -#define NVM_CFG1_PORT_AN_MODE_CL73 0x1 -#define NVM_CFG1_PORT_AN_MODE_CL37 0x2 -#define NVM_CFG1_PORT_AN_MODE_CL73_BAM 0x3 -#define NVM_CFG1_PORT_AN_MODE_CL37_BAM 0x4 -#define NVM_CFG1_PORT_AN_MODE_HPAM 0x5 -#define NVM_CFG1_PORT_AN_MODE_SGMII 0x6 - - u32 mgmt_traffic; /* 0x20 */ -#define NVM_CFG1_PORT_RESERVED61_MASK 0x0000000F -#define NVM_CFG1_PORT_RESERVED61_OFFSET 0 - - u32 ext_phy; /* 0x24 */ -#define NVM_CFG1_PORT_EXTERNAL_PHY_TYPE_MASK 0x000000FF -#define NVM_CFG1_PORT_EXTERNAL_PHY_TYPE_OFFSET 0 -#define NVM_CFG1_PORT_EXTERNAL_PHY_TYPE_NONE 0x0 -#define NVM_CFG1_PORT_EXTERNAL_PHY_TYPE_BCM84844 0x1 -#define NVM_CFG1_PORT_EXTERNAL_PHY_ADDRESS_MASK 0x0000FF00 -#define NVM_CFG1_PORT_EXTERNAL_PHY_ADDRESS_OFFSET 8 - - u32 mba_cfg1; /* 0x28 */ -#define NVM_CFG1_PORT_PREBOOT_OPROM_MASK 0x00000001 -#define NVM_CFG1_PORT_PREBOOT_OPROM_OFFSET 0 -#define NVM_CFG1_PORT_PREBOOT_OPROM_DISABLED 0x0 -#define NVM_CFG1_PORT_PREBOOT_OPROM_ENABLED 0x1 -#define NVM_CFG1_PORT_RESERVED__M_MBA_BOOT_TYPE_MASK 0x00000006 -#define NVM_CFG1_PORT_RESERVED__M_MBA_BOOT_TYPE_OFFSET 1 -#define NVM_CFG1_PORT_MBA_DELAY_TIME_MASK 0x00000078 -#define NVM_CFG1_PORT_MBA_DELAY_TIME_OFFSET 3 -#define NVM_CFG1_PORT_MBA_SETUP_HOT_KEY_MASK 0x00000080 -#define NVM_CFG1_PORT_MBA_SETUP_HOT_KEY_OFFSET 7 -#define NVM_CFG1_PORT_MBA_SETUP_HOT_KEY_CTRL_S 0x0 -#define NVM_CFG1_PORT_MBA_SETUP_HOT_KEY_CTRL_B 0x1 -#define NVM_CFG1_PORT_MBA_HIDE_SETUP_PROMPT_MASK 0x00000100 -#define NVM_CFG1_PORT_MBA_HIDE_SETUP_PROMPT_OFFSET 8 -#define NVM_CFG1_PORT_MBA_HIDE_SETUP_PROMPT_DISABLED 0x0 -#define NVM_CFG1_PORT_MBA_HIDE_SETUP_PROMPT_ENABLED 0x1 -#define NVM_CFG1_PORT_RESERVED5_MASK 0x0001FE00 -#define NVM_CFG1_PORT_RESERVED5_OFFSET 9 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_MASK 0x001E0000 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_OFFSET 17 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_AUTONEG 0x0 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_1G 0x1 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_10G 0x2 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_25G 0x4 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_40G 0x5 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_50G 0x6 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_100G 0x7 -#define NVM_CFG1_PORT_PREBOOT_LINK_SPEED_SMARTLINQ 0x8 -#define NVM_CFG1_PORT_RESERVED__M_MBA_BOOT_RETRY_COUNT_MASK 0x00E00000 -#define NVM_CFG1_PORT_RESERVED__M_MBA_BOOT_RETRY_COUNT_OFFSET 21 - - u32 mba_cfg2; /* 0x2C */ -#define NVM_CFG1_PORT_RESERVED65_MASK 0x0000FFFF -#define NVM_CFG1_PORT_RESERVED65_OFFSET 0 -#define NVM_CFG1_PORT_RESERVED66_MASK 0x00010000 -#define NVM_CFG1_PORT_RESERVED66_OFFSET 16 - - u32 vf_cfg; /* 0x30 */ -#define NVM_CFG1_PORT_RESERVED8_MASK 0x0000FFFF -#define NVM_CFG1_PORT_RESERVED8_OFFSET 0 -#define NVM_CFG1_PORT_RESERVED6_MASK 0x000F0000 -#define NVM_CFG1_PORT_RESERVED6_OFFSET 16 - - struct nvm_cfg_mac_address lldp_mac_address; /* 0x34 */ - - u32 led_port_settings; /* 0x3C */ -#define NVM_CFG1_PORT_LANE_LED_SPD_0_SEL_MASK 0x000000FF -#define NVM_CFG1_PORT_LANE_LED_SPD_0_SEL_OFFSET 0 -#define NVM_CFG1_PORT_LANE_LED_SPD_1_SEL_MASK 0x0000FF00 -#define NVM_CFG1_PORT_LANE_LED_SPD_1_SEL_OFFSET 8 -#define NVM_CFG1_PORT_LANE_LED_SPD_2_SEL_MASK 0x00FF0000 -#define NVM_CFG1_PORT_LANE_LED_SPD_2_SEL_OFFSET 16 -#define NVM_CFG1_PORT_LANE_LED_SPD__SEL_1G 0x1 -#define NVM_CFG1_PORT_LANE_LED_SPD__SEL_10G 0x2 -#define NVM_CFG1_PORT_LANE_LED_SPD__SEL_25G 0x8 -#define NVM_CFG1_PORT_LANE_LED_SPD__SEL_40G 0x10 -#define NVM_CFG1_PORT_LANE_LED_SPD__SEL_50G 0x20 -#define NVM_CFG1_PORT_LANE_LED_SPD__SEL_100G 0x40 - - u32 transceiver_00; /* 0x40 */ - - /* Define for mapping of transceiver signal module absent */ -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_MASK 0x000000FF -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_OFFSET 0 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_NA 0x0 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO0 0x1 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO1 0x2 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO2 0x3 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO3 0x4 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO4 0x5 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO5 0x6 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO6 0x7 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO7 0x8 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO8 0x9 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO9 0xA -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO10 0xB -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO11 0xC -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO12 0xD -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO13 0xE -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO14 0xF -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO15 0x10 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO16 0x11 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO17 0x12 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO18 0x13 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO19 0x14 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO20 0x15 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO21 0x16 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO22 0x17 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO23 0x18 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO24 0x19 -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO25 0x1A -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO26 0x1B -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO27 0x1C -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO28 0x1D -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO29 0x1E -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO30 0x1F -#define NVM_CFG1_PORT_TRANS_MODULE_ABS_GPIO31 0x20 - /* Define the GPIO mux settings to switch i2c mux to this port */ -#define NVM_CFG1_PORT_I2C_MUX_SEL_VALUE_0_MASK 0x00000F00 -#define NVM_CFG1_PORT_I2C_MUX_SEL_VALUE_0_OFFSET 8 -#define NVM_CFG1_PORT_I2C_MUX_SEL_VALUE_1_MASK 0x0000F000 -#define NVM_CFG1_PORT_I2C_MUX_SEL_VALUE_1_OFFSET 12 - - u32 reserved[133]; /* 0x44 */ + u32 reserved__m_relocated_to_option_123; + u32 reserved__m_relocated_to_option_124; + u32 generic_cont0; +#define NVM_CFG1_PORT_DCBX_MODE_MASK 0x000F0000 +#define NVM_CFG1_PORT_DCBX_MODE_OFFSET 16 +#define NVM_CFG1_PORT_DCBX_MODE_DISABLED 0x0 +#define NVM_CFG1_PORT_DCBX_MODE_IEEE 0x1 +#define NVM_CFG1_PORT_DCBX_MODE_CEE 0x2 +#define NVM_CFG1_PORT_DCBX_MODE_DYNAMIC 0x3 +#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_MASK 0x00F00000 +#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_OFFSET 20 +#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_ETHERNET 0x1 +#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_FCOE 0x2 +#define NVM_CFG1_PORT_DEFAULT_ENABLED_PROTOCOLS_ISCSI 0x4 + u32 pcie_cfg; + u32 features; + u32 speed_cap_mask; +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_MASK 0x0000FFFF +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_OFFSET 0 +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_1G 0x1 +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_10G 0x2 +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_25G 0x8 +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_40G 0x10 +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G 0x20 +#define NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_BB_100G 0x40 + u32 link_settings; +#define NVM_CFG1_PORT_DRV_LINK_SPEED_MASK 0x0000000F +#define NVM_CFG1_PORT_DRV_LINK_SPEED_OFFSET 0 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_AUTONEG 0x0 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_1G 0x1 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_10G 0x2 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_25G 0x4 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_40G 0x5 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_50G 0x6 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_BB_100G 0x7 +#define NVM_CFG1_PORT_DRV_LINK_SPEED_SMARTLINQ 0x8 +#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_MASK 0x00000070 +#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_OFFSET 4 +#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_AUTONEG 0x1 +#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_RX 0x2 +#define NVM_CFG1_PORT_DRV_FLOW_CONTROL_TX 0x4 + u32 phy_cfg; + u32 mgmt_traffic; + u32 ext_phy; + u32 mba_cfg1; + u32 mba_cfg2; + u32 vf_cfg; + struct nvm_cfg_mac_address lldp_mac_address; + u32 led_port_settings; + u32 transceiver_00; + u32 device_ids; + u32 board_cfg; + u32 mnm_10g_cap; + u32 mnm_10g_ctrl; + u32 mnm_10g_misc; + u32 mnm_25g_cap; + u32 mnm_25g_ctrl; + u32 mnm_25g_misc; + u32 mnm_40g_cap; + u32 mnm_40g_ctrl; + u32 mnm_40g_misc; + u32 mnm_50g_cap; + u32 mnm_50g_ctrl; + u32 mnm_50g_misc; + u32 mnm_100g_cap; + u32 mnm_100g_ctrl; + u32 mnm_100g_misc; + u32 reserved[116]; }; struct nvm_cfg1_func { - struct nvm_cfg_mac_address mac_address; /* 0x0 */ - - u32 rsrv1; /* 0x8 */ -#define NVM_CFG1_FUNC_RESERVED1_MASK 0x0000FFFF -#define NVM_CFG1_FUNC_RESERVED1_OFFSET 0 -#define NVM_CFG1_FUNC_RESERVED2_MASK 0xFFFF0000 -#define NVM_CFG1_FUNC_RESERVED2_OFFSET 16 - - u32 rsrv2; /* 0xC */ -#define NVM_CFG1_FUNC_RESERVED3_MASK 0x0000FFFF -#define NVM_CFG1_FUNC_RESERVED3_OFFSET 0 -#define NVM_CFG1_FUNC_RESERVED4_MASK 0xFFFF0000 -#define NVM_CFG1_FUNC_RESERVED4_OFFSET 16 - - u32 device_id; /* 0x10 */ -#define NVM_CFG1_FUNC_MF_VENDOR_DEVICE_ID_MASK 0x0000FFFF -#define NVM_CFG1_FUNC_MF_VENDOR_DEVICE_ID_OFFSET 0 -#define NVM_CFG1_FUNC_RESERVED77_MASK 0xFFFF0000 -#define NVM_CFG1_FUNC_RESERVED77_OFFSET 16 - - u32 cmn_cfg; /* 0x14 */ -#define NVM_CFG1_FUNC_PREBOOT_BOOT_PROTOCOL_MASK 0x00000007 -#define NVM_CFG1_FUNC_PREBOOT_BOOT_PROTOCOL_OFFSET 0 -#define NVM_CFG1_FUNC_PREBOOT_BOOT_PROTOCOL_PXE 0x0 -#define NVM_CFG1_FUNC_PREBOOT_BOOT_PROTOCOL_ISCSI_BOOT 0x3 -#define NVM_CFG1_FUNC_PREBOOT_BOOT_PROTOCOL_FCOE_BOOT 0x4 -#define NVM_CFG1_FUNC_PREBOOT_BOOT_PROTOCOL_NONE 0x7 -#define NVM_CFG1_FUNC_VF_PCI_DEVICE_ID_MASK 0x0007FFF8 -#define NVM_CFG1_FUNC_VF_PCI_DEVICE_ID_OFFSET 3 -#define NVM_CFG1_FUNC_PERSONALITY_MASK 0x00780000 -#define NVM_CFG1_FUNC_PERSONALITY_OFFSET 19 -#define NVM_CFG1_FUNC_PERSONALITY_ETHERNET 0x0 -#define NVM_CFG1_FUNC_PERSONALITY_ISCSI 0x1 -#define NVM_CFG1_FUNC_PERSONALITY_FCOE 0x2 -#define NVM_CFG1_FUNC_PERSONALITY_ROCE 0x3 -#define NVM_CFG1_FUNC_BANDWIDTH_WEIGHT_MASK 0x7F800000 -#define NVM_CFG1_FUNC_BANDWIDTH_WEIGHT_OFFSET 23 -#define NVM_CFG1_FUNC_PAUSE_ON_HOST_RING_MASK 0x80000000 -#define NVM_CFG1_FUNC_PAUSE_ON_HOST_RING_OFFSET 31 -#define NVM_CFG1_FUNC_PAUSE_ON_HOST_RING_DISABLED 0x0 -#define NVM_CFG1_FUNC_PAUSE_ON_HOST_RING_ENABLED 0x1 - - u32 pci_cfg; /* 0x18 */ -#define NVM_CFG1_FUNC_NUMBER_OF_VFS_PER_PF_MASK 0x0000007F -#define NVM_CFG1_FUNC_NUMBER_OF_VFS_PER_PF_OFFSET 0 -#define NVM_CFG1_FUNC_RESERVESD12_MASK 0x00003F80 -#define NVM_CFG1_FUNC_RESERVESD12_OFFSET 7 -#define NVM_CFG1_FUNC_BAR1_SIZE_MASK 0x0003C000 -#define NVM_CFG1_FUNC_BAR1_SIZE_OFFSET 14 -#define NVM_CFG1_FUNC_BAR1_SIZE_DISABLED 0x0 -#define NVM_CFG1_FUNC_BAR1_SIZE_64K 0x1 -#define NVM_CFG1_FUNC_BAR1_SIZE_128K 0x2 -#define NVM_CFG1_FUNC_BAR1_SIZE_256K 0x3 -#define NVM_CFG1_FUNC_BAR1_SIZE_512K 0x4 -#define NVM_CFG1_FUNC_BAR1_SIZE_1M 0x5 -#define NVM_CFG1_FUNC_BAR1_SIZE_2M 0x6 -#define NVM_CFG1_FUNC_BAR1_SIZE_4M 0x7 -#define NVM_CFG1_FUNC_BAR1_SIZE_8M 0x8 -#define NVM_CFG1_FUNC_BAR1_SIZE_16M 0x9 -#define NVM_CFG1_FUNC_BAR1_SIZE_32M 0xA -#define NVM_CFG1_FUNC_BAR1_SIZE_64M 0xB -#define NVM_CFG1_FUNC_BAR1_SIZE_128M 0xC -#define NVM_CFG1_FUNC_BAR1_SIZE_256M 0xD -#define NVM_CFG1_FUNC_BAR1_SIZE_512M 0xE -#define NVM_CFG1_FUNC_BAR1_SIZE_1G 0xF -#define NVM_CFG1_FUNC_MAX_BANDWIDTH_MASK 0x03FC0000 -#define NVM_CFG1_FUNC_MAX_BANDWIDTH_OFFSET 18 - - struct nvm_cfg_mac_address fcoe_node_wwn_mac_addr; /* 0x1C */ - - struct nvm_cfg_mac_address fcoe_port_wwn_mac_addr; /* 0x24 */ - u32 preboot_generic_cfg; /* 0x2C */ - u32 reserved[8]; /* 0x30 */ + struct nvm_cfg_mac_address mac_address; + u32 rsrv1; + u32 rsrv2; + u32 device_id; + u32 cmn_cfg; + u32 pci_cfg; + struct nvm_cfg_mac_address fcoe_node_wwn_mac_addr; + struct nvm_cfg_mac_address fcoe_port_wwn_mac_addr; + u32 preboot_generic_cfg; + u32 reserved[8]; }; struct nvm_cfg1 { - struct nvm_cfg1_glob glob; /* 0x0 */ - - struct nvm_cfg1_path path[MCP_GLOB_PATH_MAX]; /* 0x140 */ - - struct nvm_cfg1_port port[MCP_GLOB_PORT_MAX]; /* 0x230 */ - - struct nvm_cfg1_func func[MCP_GLOB_FUNC_MAX]; /* 0xB90 */ -}; - -/****************************************** -* nvm_cfg structs -******************************************/ - -enum nvm_cfg_sections { - NVM_CFG_SECTION_NVM_CFG1, - NVM_CFG_SECTION_MAX -}; - -struct nvm_cfg { - u32 num_sections; - u32 sections_offset[NVM_CFG_SECTION_MAX]; - struct nvm_cfg1 cfg1; + struct nvm_cfg1_glob glob; + struct nvm_cfg1_path path[MCP_GLOB_PATH_MAX]; + struct nvm_cfg1_port port[MCP_GLOB_PORT_MAX]; + struct nvm_cfg1_func func[MCP_GLOB_FUNC_MAX]; }; - -#define PORT_0 0 -#define PORT_1 1 -#define PORT_2 2 -#define PORT_3 3 - -extern struct spad_layout g_spad; - -#define MCP_SPAD_SIZE 0x00028000 /* 160 KB */ - -#define SPAD_OFFSET(addr) (((u32)addr - (u32)CPU_SPAD_BASE)) - -#define TO_OFFSIZE(_offset, _size) \ - (u32)((((u32)(_offset) >> 2) << OFFSIZE_OFFSET_SHIFT) | \ - (((u32)(_size) >> 2) << OFFSIZE_SIZE_SHIFT)) - -enum spad_sections { - SPAD_SECTION_TRACE, - SPAD_SECTION_NVM_CFG, - SPAD_SECTION_PUBLIC, - SPAD_SECTION_PRIVATE, - SPAD_SECTION_MAX -}; - -struct spad_layout { - struct nvm_cfg nvm_cfg; - struct mcp_public_data public_data; -}; - -#define CRC_MAGIC_VALUE 0xDEBB20E3 -#define CRC32_POLYNOMIAL 0xEDB88320 -#define NVM_CRC_SIZE (sizeof(u32)) - -enum nvm_sw_arbitrator { - NVM_SW_ARB_HOST, - NVM_SW_ARB_MCP, - NVM_SW_ARB_UART, - NVM_SW_ARB_RESERVED -}; - -/**************************************************************************** -* Boot Strap Region * -****************************************************************************/ -struct legacy_bootstrap_region { - u32 magic_value; -#define NVM_MAGIC_VALUE 0x669955aa - u32 sram_start_addr; - u32 code_len; /* boot code length (in dwords) */ - u32 code_start_addr; - u32 crc; /* 32-bit CRC */ -}; - -/**************************************************************************** -* Directories Region * -****************************************************************************/ -struct nvm_code_entry { - u32 image_type; /* Image type */ - u32 nvm_start_addr; /* NVM address of the image */ - u32 len; /* Include CRC */ - u32 sram_start_addr; - u32 sram_run_addr; /* Relevant in case of MIM only */ -}; - -enum nvm_image_type { - NVM_TYPE_TIM1 = 0x01, - NVM_TYPE_TIM2 = 0x02, - NVM_TYPE_MIM1 = 0x03, - NVM_TYPE_MIM2 = 0x04, - NVM_TYPE_MBA = 0x05, - NVM_TYPE_MODULES_PN = 0x06, - NVM_TYPE_VPD = 0x07, - NVM_TYPE_MFW_TRACE1 = 0x08, - NVM_TYPE_MFW_TRACE2 = 0x09, - NVM_TYPE_NVM_CFG1 = 0x0a, - NVM_TYPE_L2B = 0x0b, - NVM_TYPE_DIR1 = 0x0c, - NVM_TYPE_EAGLE_FW1 = 0x0d, - NVM_TYPE_FALCON_FW1 = 0x0e, - NVM_TYPE_PCIE_FW1 = 0x0f, - NVM_TYPE_HW_SET = 0x10, - NVM_TYPE_LIM = 0x11, - NVM_TYPE_AVS_FW1 = 0x12, - NVM_TYPE_DIR2 = 0x13, - NVM_TYPE_CCM = 0x14, - NVM_TYPE_EAGLE_FW2 = 0x15, - NVM_TYPE_FALCON_FW2 = 0x16, - NVM_TYPE_PCIE_FW2 = 0x17, - NVM_TYPE_AVS_FW2 = 0x18, - - NVM_TYPE_MAX, -}; - -#define MAX_NVM_DIR_ENTRIES 200 - -struct nvm_dir { - s32 seq; -#define NVM_DIR_NEXT_MFW_MASK 0x00000001 -#define NVM_DIR_SEQ_MASK 0xfffffffe -#define NVM_DIR_NEXT_MFW(seq) ((seq) & NVM_DIR_NEXT_MFW_MASK) - -#define IS_DIR_SEQ_VALID(seq) ((seq & NVM_DIR_SEQ_MASK) != NVM_DIR_SEQ_MASK) - - u32 num_images; - u32 rsrv; - struct nvm_code_entry code[1]; /* Up to MAX_NVM_DIR_ENTRIES */ -}; - -#define NVM_DIR_SIZE(_num_images) (sizeof(struct nvm_dir) + \ - (_num_images - \ - 1) * sizeof(struct nvm_code_entry) + \ - NVM_CRC_SIZE) - -struct nvm_vpd_image { - u32 format_revision; -#define VPD_IMAGE_VERSION 1 - - /* This array length depends on the number of VPD fields */ - u8 vpd_data[1]; -}; - -/**************************************************************************** -* NVRAM FULL MAP * -****************************************************************************/ -#define DIR_ID_1 (0) -#define DIR_ID_2 (1) -#define MAX_DIR_IDS (2) - -#define MFW_BUNDLE_1 (0) -#define MFW_BUNDLE_2 (1) -#define MAX_MFW_BUNDLES (2) - -#define FLASH_PAGE_SIZE 0x1000 -#define NVM_DIR_MAX_SIZE (FLASH_PAGE_SIZE) /* 4Kb */ -#define ASIC_MIM_MAX_SIZE (300 * FLASH_PAGE_SIZE) /* 1.2Mb */ -#define FPGA_MIM_MAX_SIZE (25 * FLASH_PAGE_SIZE) /* 60Kb */ - -#define LIM_MAX_SIZE ((2 * \ - FLASH_PAGE_SIZE) - \ - sizeof(struct legacy_bootstrap_region) - \ - NVM_RSV_SIZE) -#define LIM_OFFSET (NVM_OFFSET(lim_image)) -#define NVM_RSV_SIZE (44) -#define MIM_MAX_SIZE(is_asic) ((is_asic) ? ASIC_MIM_MAX_SIZE : \ - FPGA_MIM_MAX_SIZE) -#define MIM_OFFSET(idx, is_asic) (NVM_OFFSET(dir[MAX_MFW_BUNDLES]) + \ - ((idx == \ - NVM_TYPE_MIM2) ? MIM_MAX_SIZE(is_asic) : 0)) -#define NVM_FIXED_AREA_SIZE(is_asic) (sizeof(struct nvm_image) + \ - MIM_MAX_SIZE(is_asic) * 2) - -union nvm_dir_union { - struct nvm_dir dir; - u8 page[FLASH_PAGE_SIZE]; -}; - -/* Address - * +-------------------+ 0x000000 - * | Bootstrap: | - * | magic_number | - * | sram_start_addr | - * | code_len | - * | code_start_addr | - * | crc | - * +-------------------+ 0x000014 - * | rsrv | - * +-------------------+ 0x000040 - * | LIM | - * +-------------------+ 0x002000 - * | Dir1 | - * +-------------------+ 0x003000 - * | Dir2 | - * +-------------------+ 0x004000 - * | MIM1 | - * +-------------------+ 0x130000 - * | MIM2 | - * +-------------------+ 0x25C000 - * | Rest Images: | - * | TIM1/2 | - * | MFW_TRACE1/2 | - * | Eagle/Falcon FW | - * | PCIE/AVS FW | - * | MBA/CCM/L2B | - * | VPD | - * | optic_modules | - * | ... | - * +-------------------+ 0x400000 - */ -struct nvm_image { -/*********** !!! FIXED SECTIONS !!! DO NOT MODIFY !!! **********************/ - /* NVM Offset (size) */ - struct legacy_bootstrap_region bootstrap; - u8 rsrv[NVM_RSV_SIZE]; - u8 lim_image[LIM_MAX_SIZE]; - union nvm_dir_union dir[MAX_MFW_BUNDLES]; - - /* MIM1_IMAGE 0x004000 (0x12c000) */ - /* MIM2_IMAGE 0x130000 (0x12c000) */ -/*********** !!! FIXED SECTIONS !!! DO NOT MODIFY !!! **********************/ -}; /* 0x134 */ - -#define NVM_OFFSET(f) ((u32_t)((int_ptr_t)(&(((struct nvm_image *)0)->f)))) - -struct hw_set_info { - u32 reg_type; -#define GRC_REG_TYPE 1 -#define PHY_REG_TYPE 2 -#define PCI_REG_TYPE 4 - - u32 bank_num; - u32 pf_num; - u32 operation; -#define READ_OP 1 -#define WRITE_OP 2 -#define RMW_SET_OP 3 -#define RMW_CLR_OP 4 - - u32 reg_addr; - u32 reg_data; - - u32 reset_type; -#define POR_RESET_TYPE BIT(0) -#define HARD_RESET_TYPE BIT(1) -#define CORE_RESET_TYPE BIT(2) -#define MCP_RESET_TYPE BIT(3) -#define PERSET_ASSERT BIT(4) -#define PERSET_DEASSERT BIT(5) -}; - -struct hw_set_image { - u32 format_version; -#define HW_SET_IMAGE_VERSION 1 - u32 no_hw_sets; - - /* This array length depends on the no_hw_sets */ - struct hw_set_info hw_sets[1]; -}; - #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_hw.c b/drivers/net/ethernet/qlogic/qed/qed_hw.c index a95a3e4b3101..e17885321faf 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_hw.c +++ b/drivers/net/ethernet/qlogic/qed/qed_hw.c @@ -23,6 +23,7 @@ #include "qed_hsi.h" #include "qed_hw.h" #include "qed_reg_addr.h" +#include "qed_sriov.h" #define QED_BAR_ACQUIRE_TIMEOUT 1000 @@ -236,8 +237,12 @@ static void qed_memcpy_hw(struct qed_hwfn *p_hwfn, quota = min_t(size_t, n - done, PXP_EXTERNAL_BAR_PF_WINDOW_SINGLE_SIZE); - qed_ptt_set_win(p_hwfn, p_ptt, hw_addr + done); - hw_offset = qed_ptt_get_bar_addr(p_ptt); + if (IS_PF(p_hwfn->cdev)) { + qed_ptt_set_win(p_hwfn, p_ptt, hw_addr + done); + hw_offset = qed_ptt_get_bar_addr(p_ptt); + } else { + hw_offset = hw_addr + done; + } dw_count = quota / 4; host_addr = (u32 *)((u8 *)addr + done); @@ -338,14 +343,25 @@ void qed_port_unpretend(struct qed_hwfn *p_hwfn, *(u32 *)&p_ptt->pxp.pretend); } +u32 qed_vfid_to_concrete(struct qed_hwfn *p_hwfn, u8 vfid) +{ + u32 concrete_fid = 0; + + SET_FIELD(concrete_fid, PXP_CONCRETE_FID_PFID, p_hwfn->rel_pf_id); + SET_FIELD(concrete_fid, PXP_CONCRETE_FID_VFID, vfid); + SET_FIELD(concrete_fid, PXP_CONCRETE_FID_VFVALID, 1); + + return concrete_fid; +} + /* DMAE */ static void qed_dmae_opcode(struct qed_hwfn *p_hwfn, const u8 is_src_type_grc, const u8 is_dst_type_grc, struct qed_dmae_params *p_params) { + u16 opcode_b = 0; u32 opcode = 0; - u16 opcodeB = 0; /* Whether the source is the PCIe or the GRC. * 0- The source is the PCIe @@ -387,14 +403,24 @@ static void qed_dmae_opcode(struct qed_hwfn *p_hwfn, opcode |= (DMAE_CMD_DST_ADDR_RESET_MASK << DMAE_CMD_DST_ADDR_RESET_SHIFT); - opcodeB |= (DMAE_CMD_SRC_VF_ID_MASK << - DMAE_CMD_SRC_VF_ID_SHIFT); + /* SRC/DST VFID: all 1's - pf, otherwise VF id */ + if (p_params->flags & QED_DMAE_FLAG_VF_SRC) { + opcode |= 1 << DMAE_CMD_SRC_VF_ID_VALID_SHIFT; + opcode_b |= p_params->src_vfid << DMAE_CMD_SRC_VF_ID_SHIFT; + } else { + opcode_b |= DMAE_CMD_SRC_VF_ID_MASK << + DMAE_CMD_SRC_VF_ID_SHIFT; + } - opcodeB |= (DMAE_CMD_DST_VF_ID_MASK << - DMAE_CMD_DST_VF_ID_SHIFT); + if (p_params->flags & QED_DMAE_FLAG_VF_DST) { + opcode |= 1 << DMAE_CMD_DST_VF_ID_VALID_SHIFT; + opcode_b |= p_params->dst_vfid << DMAE_CMD_DST_VF_ID_SHIFT; + } else { + opcode_b |= DMAE_CMD_DST_VF_ID_MASK << DMAE_CMD_DST_VF_ID_SHIFT; + } p_hwfn->dmae_info.p_dmae_cmd->opcode = cpu_to_le32(opcode); - p_hwfn->dmae_info.p_dmae_cmd->opcode_b = cpu_to_le16(opcodeB); + p_hwfn->dmae_info.p_dmae_cmd->opcode_b = cpu_to_le16(opcode_b); } u32 qed_dmae_idx_to_go_cmd(u8 idx) @@ -420,7 +446,7 @@ qed_dmae_post_command(struct qed_hwfn *p_hwfn, idx_cmd, le32_to_cpu(command->opcode), le16_to_cpu(command->opcode_b), - le16_to_cpu(command->length), + le16_to_cpu(command->length_dw), le32_to_cpu(command->src_addr_hi), le32_to_cpu(command->src_addr_lo), le32_to_cpu(command->dst_addr_hi), @@ -435,7 +461,7 @@ qed_dmae_post_command(struct qed_hwfn *p_hwfn, idx_cmd, le32_to_cpu(command->opcode), le16_to_cpu(command->opcode_b), - le16_to_cpu(command->length), + le16_to_cpu(command->length_dw), le32_to_cpu(command->src_addr_hi), le32_to_cpu(command->src_addr_lo), le32_to_cpu(command->dst_addr_hi), @@ -619,7 +645,7 @@ static int qed_dmae_execute_sub_operation(struct qed_hwfn *p_hwfn, return -EINVAL; } - cmd->length = cpu_to_le16((u16)length); + cmd->length_dw = cpu_to_le16((u16)length); qed_dmae_post_command(p_hwfn, p_ptt); @@ -742,17 +768,62 @@ int qed_dmae_host2grc(struct qed_hwfn *p_hwfn, return rc; } +int +qed_dmae_grc2host(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, u32 grc_addr, + dma_addr_t dest_addr, u32 size_in_dwords, u32 flags) +{ + u32 grc_addr_in_dw = grc_addr / sizeof(u32); + struct qed_dmae_params params; + int rc; + + memset(¶ms, 0, sizeof(struct qed_dmae_params)); + params.flags = flags; + + mutex_lock(&p_hwfn->dmae_info.mutex); + + rc = qed_dmae_execute_command(p_hwfn, p_ptt, grc_addr_in_dw, + dest_addr, QED_DMAE_ADDRESS_GRC, + QED_DMAE_ADDRESS_HOST_VIRT, + size_in_dwords, ¶ms); + + mutex_unlock(&p_hwfn->dmae_info.mutex); + + return rc; +} + +int +qed_dmae_host2host(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + dma_addr_t source_addr, + dma_addr_t dest_addr, + u32 size_in_dwords, struct qed_dmae_params *p_params) +{ + int rc; + + mutex_lock(&(p_hwfn->dmae_info.mutex)); + + rc = qed_dmae_execute_command(p_hwfn, p_ptt, source_addr, + dest_addr, + QED_DMAE_ADDRESS_HOST_PHYS, + QED_DMAE_ADDRESS_HOST_PHYS, + size_in_dwords, p_params); + + mutex_unlock(&(p_hwfn->dmae_info.mutex)); + + return rc; +} + u16 qed_get_qm_pq(struct qed_hwfn *p_hwfn, - enum protocol_type proto, - union qed_qm_pq_params *p_params) + enum protocol_type proto, union qed_qm_pq_params *p_params) { u16 pq_id = 0; - if ((proto == PROTOCOLID_CORE || proto == PROTOCOLID_ETH) && - !p_params) { + if ((proto == PROTOCOLID_CORE || + proto == PROTOCOLID_ETH || + proto == PROTOCOLID_ISCSI || + proto == PROTOCOLID_ROCE) && !p_params) { DP_NOTICE(p_hwfn, - "Protocol %d received NULL PQ params\n", - proto); + "Protocol %d received NULL PQ params\n", proto); return 0; } @@ -760,11 +831,28 @@ u16 qed_get_qm_pq(struct qed_hwfn *p_hwfn, case PROTOCOLID_CORE: if (p_params->core.tc == LB_TC) pq_id = p_hwfn->qm_info.pure_lb_pq; + else if (p_params->core.tc == OOO_LB_TC) + pq_id = p_hwfn->qm_info.ooo_pq; else pq_id = p_hwfn->qm_info.offload_pq; break; case PROTOCOLID_ETH: pq_id = p_params->eth.tc; + if (p_params->eth.is_vf) + pq_id += p_hwfn->qm_info.vf_queues_offset + + p_params->eth.vf_id; + break; + case PROTOCOLID_ISCSI: + if (p_params->iscsi.q_idx == 1) + pq_id = p_hwfn->qm_info.pure_ack_pq; + break; + case PROTOCOLID_ROCE: + if (p_params->roce.dcqcn) + pq_id = p_params->roce.qpid; + else + pq_id = p_hwfn->qm_info.offload_pq; + if (pq_id > p_hwfn->qm_info.num_pf_rls) + pq_id = p_hwfn->qm_info.offload_pq; break; default: pq_id = 0; diff --git a/drivers/net/ethernet/qlogic/qed/qed_hw.h b/drivers/net/ethernet/qlogic/qed/qed_hw.h index e56d433793be..d01557092868 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_hw.h +++ b/drivers/net/ethernet/qlogic/qed/qed_hw.h @@ -221,6 +221,16 @@ void qed_port_unpretend(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt); /** + * @brief qed_vfid_to_concrete - build a concrete FID for a + * given VF ID + * + * @param p_hwfn + * @param p_ptt + * @param vfid + */ +u32 qed_vfid_to_concrete(struct qed_hwfn *p_hwfn, u8 vfid); + +/** * @brief qed_dmae_idx_to_go_cmd - map the idx to dmae cmd * this is declared here since other files will require it. * @param idx @@ -244,6 +254,10 @@ void qed_dmae_info_free(struct qed_hwfn *p_hwfn); union qed_qm_pq_params { struct { + u8 q_idx; + } iscsi; + + struct { u8 tc; } core; @@ -252,11 +266,15 @@ union qed_qm_pq_params { u8 vf_id; u8 tc; } eth; + + struct { + u8 dcqcn; + u8 qpid; /* roce relative */ + } roce; }; u16 qed_get_qm_pq(struct qed_hwfn *p_hwfn, - enum protocol_type proto, - union qed_qm_pq_params *params); + enum protocol_type proto, union qed_qm_pq_params *params); int qed_init_fw_data(struct qed_dev *cdev, const u8 *fw_data); diff --git a/drivers/net/ethernet/qlogic/qed/qed_init_fw_funcs.c b/drivers/net/ethernet/qlogic/qed/qed_init_fw_funcs.c index f55ebdc3c832..23e455f22adc 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_init_fw_funcs.c +++ b/drivers/net/ethernet/qlogic/qed/qed_init_fw_funcs.c @@ -31,7 +31,6 @@ enum cminterface { }; /* general constants */ -#define QM_PQ_ELEMENT_SIZE 4 /* in bytes */ #define QM_PQ_MEM_4KB(pq_size) (pq_size ? DIV_ROUND_UP((pq_size + 1) * \ QM_PQ_ELEMENT_SIZE, \ 0x1000) : 0) @@ -44,28 +43,28 @@ enum cminterface { /* other PQ constants */ #define QM_OTHER_PQS_PER_PF 4 /* WFQ constants */ -#define QM_WFQ_UPPER_BOUND 6250000 +#define QM_WFQ_UPPER_BOUND 62500000 #define QM_WFQ_VP_PQ_VOQ_SHIFT 0 #define QM_WFQ_VP_PQ_PF_SHIFT 5 #define QM_WFQ_INC_VAL(weight) ((weight) * 0x9000) -#define QM_WFQ_MAX_INC_VAL 4375000 -#define QM_WFQ_INIT_CRD(inc_val) (2 * (inc_val)) +#define QM_WFQ_MAX_INC_VAL 43750000 + /* RL constants */ -#define QM_RL_UPPER_BOUND 6250000 +#define QM_RL_UPPER_BOUND 62500000 #define QM_RL_PERIOD 5 /* in us */ #define QM_RL_PERIOD_CLK_25M (25 * QM_RL_PERIOD) +#define QM_RL_MAX_INC_VAL 43750000 #define QM_RL_INC_VAL(rate) max_t(u32, \ - (((rate ? rate : 1000000) \ - * QM_RL_PERIOD) / 8), 1) -#define QM_RL_MAX_INC_VAL 4375000 + (u32)(((rate ? rate : \ + 1000000) * \ + QM_RL_PERIOD * \ + 101) / (8 * 100)), 1) /* AFullOprtnstcCrdMask constants */ #define QM_OPPOR_LINE_VOQ_DEF 1 #define QM_OPPOR_FW_STOP_DEF 0 #define QM_OPPOR_PQ_EMPTY_DEF 1 -#define EAGLE_WORKAROUND_TC 7 /* Command Queue constants */ #define PBF_CMDQ_PURE_LB_LINES 150 -#define PBF_CMDQ_EAGLE_WORKAROUND_LINES 8 #define PBF_CMDQ_LINES_RT_OFFSET(voq) ( \ PBF_REG_YCMD_QS_NUM_LINES_VOQ0_RT_OFFSET + voq * \ (PBF_REG_YCMD_QS_NUM_LINES_VOQ1_RT_OFFSET - \ @@ -80,7 +79,6 @@ enum cminterface { /* BTB: blocks constants (block size = 256B) */ #define BTB_JUMBO_PKT_BLOCKS 38 #define BTB_HEADROOM_BLOCKS BTB_JUMBO_PKT_BLOCKS -#define BTB_EAGLE_WORKAROUND_BLOCKS 4 #define BTB_PURE_LB_FACTOR 10 #define BTB_PURE_LB_RATIO 7 /* QM stop command constants */ @@ -107,9 +105,9 @@ enum cminterface { cmd ## _ ## field, \ value) /* QM: VOQ macros */ -#define PHYS_VOQ(port, tc, max_phy_tcs_pr_port) ((port) * \ - (max_phy_tcs_pr_port) \ - + (tc)) +#define PHYS_VOQ(port, tc, max_phys_tcs_per_port) ((port) * \ + (max_phys_tcs_per_port) + \ + (tc)) #define LB_VOQ(port) ( \ MAX_PHYS_VOQS + (port)) #define VOQ(port, tc, max_phy_tcs_pr_port) \ @@ -120,8 +118,7 @@ enum cminterface { : LB_VOQ(port)) /******************** INTERNAL IMPLEMENTATION *********************/ /* Prepare PF RL enable/disable runtime init values */ -static void qed_enable_pf_rl(struct qed_hwfn *p_hwfn, - bool pf_rl_en) +static void qed_enable_pf_rl(struct qed_hwfn *p_hwfn, bool pf_rl_en) { STORE_RT_REG(p_hwfn, QM_REG_RLPFENABLE_RT_OFFSET, pf_rl_en ? 1 : 0); if (pf_rl_en) { @@ -130,8 +127,7 @@ static void qed_enable_pf_rl(struct qed_hwfn *p_hwfn, (1 << MAX_NUM_VOQS) - 1); /* write RL period */ STORE_RT_REG(p_hwfn, - QM_REG_RLPFPERIOD_RT_OFFSET, - QM_RL_PERIOD_CLK_25M); + QM_REG_RLPFPERIOD_RT_OFFSET, QM_RL_PERIOD_CLK_25M); STORE_RT_REG(p_hwfn, QM_REG_RLPFPERIODTIMER_RT_OFFSET, QM_RL_PERIOD_CLK_25M); @@ -144,8 +140,7 @@ static void qed_enable_pf_rl(struct qed_hwfn *p_hwfn, } /* Prepare PF WFQ enable/disable runtime init values */ -static void qed_enable_pf_wfq(struct qed_hwfn *p_hwfn, - bool pf_wfq_en) +static void qed_enable_pf_wfq(struct qed_hwfn *p_hwfn, bool pf_wfq_en) { STORE_RT_REG(p_hwfn, QM_REG_WFQPFENABLE_RT_OFFSET, pf_wfq_en ? 1 : 0); /* set credit threshold for QM bypass flow */ @@ -156,8 +151,7 @@ static void qed_enable_pf_wfq(struct qed_hwfn *p_hwfn, } /* Prepare VPORT RL enable/disable runtime init values */ -static void qed_enable_vport_rl(struct qed_hwfn *p_hwfn, - bool vport_rl_en) +static void qed_enable_vport_rl(struct qed_hwfn *p_hwfn, bool vport_rl_en) { STORE_RT_REG(p_hwfn, QM_REG_RLGLBLENABLE_RT_OFFSET, vport_rl_en ? 1 : 0); @@ -178,8 +172,7 @@ static void qed_enable_vport_rl(struct qed_hwfn *p_hwfn, } /* Prepare VPORT WFQ enable/disable runtime init values */ -static void qed_enable_vport_wfq(struct qed_hwfn *p_hwfn, - bool vport_wfq_en) +static void qed_enable_vport_wfq(struct qed_hwfn *p_hwfn, bool vport_wfq_en) { STORE_RT_REG(p_hwfn, QM_REG_WFQVPENABLE_RT_OFFSET, vport_wfq_en ? 1 : 0); @@ -194,8 +187,7 @@ static void qed_enable_vport_wfq(struct qed_hwfn *p_hwfn, * the specified VOQ */ static void qed_cmdq_lines_voq_rt_init(struct qed_hwfn *p_hwfn, - u8 voq, - u16 cmdq_lines) + u8 voq, u16 cmdq_lines) { u32 qm_line_crd; @@ -221,7 +213,7 @@ static void qed_cmdq_lines_rt_init( u8 max_phys_tcs_per_port, struct init_qm_port_params port_params[MAX_NUM_PORTS]) { - u8 tc, voq, port_id; + u8 tc, voq, port_id, num_tcs_in_port; /* clear PBF lines for all VOQs */ for (voq = 0; voq < MAX_NUM_VOQS; voq++) @@ -229,22 +221,31 @@ static void qed_cmdq_lines_rt_init( for (port_id = 0; port_id < max_ports_per_engine; port_id++) { if (port_params[port_id].active) { u16 phys_lines, phys_lines_per_tc; - u8 phys_tcs = port_params[port_id].num_active_phys_tcs; - /* find #lines to divide between the active - * physical TCs. - */ + /* find #lines to divide between active phys TCs */ phys_lines = port_params[port_id].num_pbf_cmd_lines - PBF_CMDQ_PURE_LB_LINES; /* find #lines per active physical TC */ - phys_lines_per_tc = phys_lines / phys_tcs; + num_tcs_in_port = 0; + for (tc = 0; tc < NUM_OF_PHYS_TCS; tc++) { + if (((port_params[port_id].active_phys_tcs >> + tc) & 0x1) == 1) + num_tcs_in_port++; + } + + phys_lines_per_tc = phys_lines / num_tcs_in_port; /* init registers per active TC */ - for (tc = 0; tc < phys_tcs; tc++) { + for (tc = 0; tc < NUM_OF_PHYS_TCS; tc++) { + if (((port_params[port_id].active_phys_tcs >> + tc) & 0x1) != 1) + continue; + voq = PHYS_VOQ(port_id, tc, max_phys_tcs_per_port); qed_cmdq_lines_voq_rt_init(p_hwfn, voq, phys_lines_per_tc); } + /* init registers for pure LB TC */ qed_cmdq_lines_voq_rt_init(p_hwfn, LB_VOQ(port_id), PBF_CMDQ_PURE_LB_LINES); @@ -259,34 +260,42 @@ static void qed_btb_blocks_rt_init( struct init_qm_port_params port_params[MAX_NUM_PORTS]) { u32 usable_blocks, pure_lb_blocks, phys_blocks; - u8 tc, voq, port_id; + u8 tc, voq, port_id, num_tcs_in_port; for (port_id = 0; port_id < max_ports_per_engine; port_id++) { u32 temp; - u8 phys_tcs; if (!port_params[port_id].active) continue; - phys_tcs = port_params[port_id].num_active_phys_tcs; - /* subtract headroom blocks */ usable_blocks = port_params[port_id].num_btb_blocks - BTB_HEADROOM_BLOCKS; - /* find blocks per physical TC. use factor to avoid - * floating arithmethic. - */ + /* find blocks per physical TC */ + num_tcs_in_port = 0; + for (tc = 0; tc < NUM_OF_PHYS_TCS; tc++) { + if (((port_params[port_id].active_phys_tcs >> + tc) & 0x1) == 1) + num_tcs_in_port++; + } + pure_lb_blocks = (usable_blocks * BTB_PURE_LB_FACTOR) / - (phys_tcs * BTB_PURE_LB_FACTOR + + (num_tcs_in_port * BTB_PURE_LB_FACTOR + BTB_PURE_LB_RATIO); pure_lb_blocks = max_t(u32, BTB_JUMBO_PKT_BLOCKS, pure_lb_blocks / BTB_PURE_LB_FACTOR); - phys_blocks = (usable_blocks - pure_lb_blocks) / phys_tcs; + phys_blocks = (usable_blocks - pure_lb_blocks) / + num_tcs_in_port; /* init physical TCs */ - for (tc = 0; tc < phys_tcs; tc++) { - voq = PHYS_VOQ(port_id, tc, max_phys_tcs_per_port); + for (tc = 0; tc < NUM_OF_PHYS_TCS; tc++) { + if (((port_params[port_id].active_phys_tcs >> + tc) & 0x1) != 1) + continue; + + voq = PHYS_VOQ(port_id, tc, + max_phys_tcs_per_port); STORE_RT_REG(p_hwfn, PBF_BTB_GUARANTEED_RT_OFFSET(voq), phys_blocks); } @@ -360,10 +369,11 @@ static void qed_tx_pq_map_rt_init( memset(&tx_pq_map, 0, sizeof(tx_pq_map)); SET_FIELD(tx_pq_map.reg, QM_RF_PQ_MAP_PQ_VALID, 1); SET_FIELD(tx_pq_map.reg, QM_RF_PQ_MAP_RL_VALID, - is_vf_pq ? 1 : 0); + p_params->pq_params[i].rl_valid ? 1 : 0); SET_FIELD(tx_pq_map.reg, QM_RF_PQ_MAP_VP_PQ_ID, first_tx_pq_id); SET_FIELD(tx_pq_map.reg, QM_RF_PQ_MAP_RL_ID, - is_vf_pq ? p_params->pq_params[i].vport_id : 0); + p_params->pq_params[i].rl_valid ? + p_params->pq_params[i].vport_id : 0); SET_FIELD(tx_pq_map.reg, QM_RF_PQ_MAP_VOQ, voq); SET_FIELD(tx_pq_map.reg, QM_RF_PQ_MAP_WRR_WEIGHT_GROUP, p_params->pq_params[i].wrr_group); @@ -390,25 +400,11 @@ static void qed_tx_pq_map_rt_init( /* store Tx PQ VF mask to size select register */ for (i = 0; i < num_tx_pq_vf_masks; i++) { if (tx_pq_vf_mask[i]) { - if (is_bb_a0) { - u32 curr_mask = 0, addr; - - addr = QM_REG_MAXPQSIZETXSEL_0 + (i * 4); - if (!p_params->is_first_pf) - curr_mask = qed_rd(p_hwfn, p_ptt, - addr); - - addr = QM_REG_MAXPQSIZETXSEL_0_RT_OFFSET + i; - - STORE_RT_REG(p_hwfn, addr, - curr_mask | tx_pq_vf_mask[i]); - } else { - u32 addr; + u32 addr; - addr = QM_REG_MAXPQSIZETXSEL_0_RT_OFFSET + i; - STORE_RT_REG(p_hwfn, addr, - tx_pq_vf_mask[i]); - } + addr = QM_REG_MAXPQSIZETXSEL_0_RT_OFFSET + i; + STORE_RT_REG(p_hwfn, addr, + tx_pq_vf_mask[i]); } } } @@ -418,8 +414,7 @@ static void qed_other_pq_map_rt_init(struct qed_hwfn *p_hwfn, u8 port_id, u8 pf_id, u32 num_pf_cids, - u32 num_tids, - u32 base_mem_addr_4kb) + u32 num_tids, u32 base_mem_addr_4kb) { u16 i, pq_id; @@ -465,15 +460,10 @@ static int qed_pf_wfq_rt_init(struct qed_hwfn *p_hwfn, (p_params->pf_id % MAX_NUM_PFS_BB); inc_val = QM_WFQ_INC_VAL(p_params->pf_wfq); - if (inc_val > QM_WFQ_MAX_INC_VAL) { + if (!inc_val || inc_val > QM_WFQ_MAX_INC_VAL) { DP_NOTICE(p_hwfn, "Invalid PF WFQ weight configuration"); return -1; } - STORE_RT_REG(p_hwfn, QM_REG_WFQPFWEIGHT_RT_OFFSET + p_params->pf_id, - inc_val); - STORE_RT_REG(p_hwfn, - QM_REG_WFQPFUPPERBOUND_RT_OFFSET + p_params->pf_id, - QM_WFQ_UPPER_BOUND | QM_WFQ_CRD_REG_SIGN_BIT); for (i = 0; i < num_tx_pqs; i++) { u8 voq = VOQ(p_params->port_id, p_params->pq_params[i].tc_id, @@ -481,19 +471,21 @@ static int qed_pf_wfq_rt_init(struct qed_hwfn *p_hwfn, OVERWRITE_RT_REG(p_hwfn, crd_reg_offset + voq * MAX_NUM_PFS_BB, - QM_WFQ_INIT_CRD(inc_val) | QM_WFQ_CRD_REG_SIGN_BIT); } + STORE_RT_REG(p_hwfn, QM_REG_WFQPFWEIGHT_RT_OFFSET + p_params->pf_id, + inc_val); + STORE_RT_REG(p_hwfn, + QM_REG_WFQPFUPPERBOUND_RT_OFFSET + p_params->pf_id, + QM_WFQ_UPPER_BOUND | QM_WFQ_CRD_REG_SIGN_BIT); return 0; } /* Prepare PF RL runtime init values for the specified PF. * Return -1 on error. */ -static int qed_pf_rl_rt_init(struct qed_hwfn *p_hwfn, - u8 pf_id, - u32 pf_rl) +static int qed_pf_rl_rt_init(struct qed_hwfn *p_hwfn, u8 pf_id, u32 pf_rl) { u32 inc_val = QM_RL_INC_VAL(pf_rl); @@ -607,9 +599,7 @@ static bool qed_poll_on_qm_cmd_ready(struct qed_hwfn *p_hwfn, static bool qed_send_qm_cmd(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, - u32 cmd_addr, - u32 cmd_data_lsb, - u32 cmd_data_msb) + u32 cmd_addr, u32 cmd_data_lsb, u32 cmd_data_msb) { if (!qed_poll_on_qm_cmd_ready(p_hwfn, p_ptt)) return false; @@ -627,9 +617,7 @@ static bool qed_send_qm_cmd(struct qed_hwfn *p_hwfn, u32 qed_qm_pf_mem_size(u8 pf_id, u32 num_pf_cids, u32 num_vf_cids, - u32 num_tids, - u16 num_pf_pqs, - u16 num_vf_pqs) + u32 num_tids, u16 num_pf_pqs, u16 num_vf_pqs) { return QM_PQ_MEM_4KB(num_pf_cids) * num_pf_pqs + QM_PQ_MEM_4KB(num_vf_cids) * num_vf_pqs + @@ -712,10 +700,22 @@ int qed_qm_pf_rt_init(struct qed_hwfn *p_hwfn, return 0; } +int qed_init_pf_wfq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 pf_id, u16 pf_wfq) +{ + u32 inc_val = QM_WFQ_INC_VAL(pf_wfq); + + if (!inc_val || inc_val > QM_WFQ_MAX_INC_VAL) { + DP_NOTICE(p_hwfn, "Invalid PF WFQ weight configuration"); + return -1; + } + + qed_wr(p_hwfn, p_ptt, QM_REG_WFQPFWEIGHT + pf_id * 4, inc_val); + return 0; +} + int qed_init_pf_rl(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u8 pf_id, - u32 pf_rl) + struct qed_ptt *p_ptt, u8 pf_id, u32 pf_rl) { u32 inc_val = QM_RL_INC_VAL(pf_rl); @@ -732,10 +732,32 @@ int qed_init_pf_rl(struct qed_hwfn *p_hwfn, return 0; } +int qed_init_vport_wfq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u16 first_tx_pq_id[NUM_OF_TCS], u16 vport_wfq) +{ + u32 inc_val = QM_WFQ_INC_VAL(vport_wfq); + u8 tc; + + if (!inc_val || inc_val > QM_WFQ_MAX_INC_VAL) { + DP_NOTICE(p_hwfn, "Invalid VPORT WFQ weight configuration"); + return -1; + } + + for (tc = 0; tc < NUM_OF_TCS; tc++) { + u16 vport_pq_id = first_tx_pq_id[tc]; + + if (vport_pq_id != QM_INVALID_PQ_ID) + qed_wr(p_hwfn, p_ptt, + QM_REG_WFQVPWEIGHT + vport_pq_id * 4, + inc_val); + } + + return 0; +} + int qed_init_vport_rl(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u8 vport_id, - u32 vport_rl) + struct qed_ptt *p_ptt, u8 vport_id, u32 vport_rl) { u32 inc_val = QM_RL_INC_VAL(vport_rl); @@ -755,9 +777,7 @@ int qed_init_vport_rl(struct qed_hwfn *p_hwfn, bool qed_send_qm_stop_cmd(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, bool is_release_cmd, - bool is_tx_pq, - u16 start_pq, - u16 num_pqs) + bool is_tx_pq, u16 start_pq, u16 num_pqs) { u32 cmd_arr[QM_CMD_STRUCT_SIZE(QM_STOP_CMD)] = { 0 }; u32 pq_mask = 0, last_pq = start_pq + num_pqs - 1, pq_id; @@ -788,3 +808,126 @@ bool qed_send_qm_stop_cmd(struct qed_hwfn *p_hwfn, return true; } + +static void +qed_set_tunnel_type_enable_bit(unsigned long *var, int bit, bool enable) +{ + if (enable) + set_bit(bit, var); + else + clear_bit(bit, var); +} + +#define PRS_ETH_TUNN_FIC_FORMAT -188897008 + +void qed_set_vxlan_dest_port(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u16 dest_port) +{ + qed_wr(p_hwfn, p_ptt, PRS_REG_VXLAN_PORT, dest_port); + qed_wr(p_hwfn, p_ptt, NIG_REG_VXLAN_CTRL, dest_port); + qed_wr(p_hwfn, p_ptt, PBF_REG_VXLAN_PORT, dest_port); +} + +void qed_set_vxlan_enable(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, bool vxlan_enable) +{ + unsigned long reg_val = 0; + u8 shift; + + reg_val = qed_rd(p_hwfn, p_ptt, PRS_REG_ENCAPSULATION_TYPE_EN); + shift = PRS_REG_ENCAPSULATION_TYPE_EN_VXLAN_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, vxlan_enable); + + qed_wr(p_hwfn, p_ptt, PRS_REG_ENCAPSULATION_TYPE_EN, reg_val); + + if (reg_val) + qed_wr(p_hwfn, p_ptt, PRS_REG_OUTPUT_FORMAT_4_0, + PRS_ETH_TUNN_FIC_FORMAT); + + reg_val = qed_rd(p_hwfn, p_ptt, NIG_REG_ENC_TYPE_ENABLE); + shift = NIG_REG_ENC_TYPE_ENABLE_VXLAN_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, vxlan_enable); + + qed_wr(p_hwfn, p_ptt, NIG_REG_ENC_TYPE_ENABLE, reg_val); + + qed_wr(p_hwfn, p_ptt, DORQ_REG_L2_EDPM_TUNNEL_VXLAN_EN, + vxlan_enable ? 1 : 0); +} + +void qed_set_gre_enable(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + bool eth_gre_enable, bool ip_gre_enable) +{ + unsigned long reg_val = 0; + u8 shift; + + reg_val = qed_rd(p_hwfn, p_ptt, PRS_REG_ENCAPSULATION_TYPE_EN); + shift = PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GRE_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, eth_gre_enable); + + shift = PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GRE_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, ip_gre_enable); + qed_wr(p_hwfn, p_ptt, PRS_REG_ENCAPSULATION_TYPE_EN, reg_val); + if (reg_val) + qed_wr(p_hwfn, p_ptt, PRS_REG_OUTPUT_FORMAT_4_0, + PRS_ETH_TUNN_FIC_FORMAT); + + reg_val = qed_rd(p_hwfn, p_ptt, NIG_REG_ENC_TYPE_ENABLE); + shift = NIG_REG_ENC_TYPE_ENABLE_ETH_OVER_GRE_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, eth_gre_enable); + + shift = NIG_REG_ENC_TYPE_ENABLE_IP_OVER_GRE_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, ip_gre_enable); + qed_wr(p_hwfn, p_ptt, NIG_REG_ENC_TYPE_ENABLE, reg_val); + + qed_wr(p_hwfn, p_ptt, DORQ_REG_L2_EDPM_TUNNEL_GRE_ETH_EN, + eth_gre_enable ? 1 : 0); + qed_wr(p_hwfn, p_ptt, DORQ_REG_L2_EDPM_TUNNEL_GRE_IP_EN, + ip_gre_enable ? 1 : 0); +} + +void qed_set_geneve_dest_port(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u16 dest_port) +{ + qed_wr(p_hwfn, p_ptt, PRS_REG_NGE_PORT, dest_port); + qed_wr(p_hwfn, p_ptt, NIG_REG_NGE_PORT, dest_port); + qed_wr(p_hwfn, p_ptt, PBF_REG_NGE_PORT, dest_port); +} + +void qed_set_geneve_enable(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + bool eth_geneve_enable, bool ip_geneve_enable) +{ + unsigned long reg_val = 0; + u8 shift; + + reg_val = qed_rd(p_hwfn, p_ptt, PRS_REG_ENCAPSULATION_TYPE_EN); + shift = PRS_REG_ENCAPSULATION_TYPE_EN_ETH_OVER_GENEVE_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, eth_geneve_enable); + + shift = PRS_REG_ENCAPSULATION_TYPE_EN_IP_OVER_GENEVE_ENABLE_SHIFT; + qed_set_tunnel_type_enable_bit(®_val, shift, ip_geneve_enable); + + qed_wr(p_hwfn, p_ptt, PRS_REG_ENCAPSULATION_TYPE_EN, reg_val); + if (reg_val) + qed_wr(p_hwfn, p_ptt, PRS_REG_OUTPUT_FORMAT_4_0, + PRS_ETH_TUNN_FIC_FORMAT); + + qed_wr(p_hwfn, p_ptt, NIG_REG_NGE_ETH_ENABLE, + eth_geneve_enable ? 1 : 0); + qed_wr(p_hwfn, p_ptt, NIG_REG_NGE_IP_ENABLE, ip_geneve_enable ? 1 : 0); + + /* comp ver */ + reg_val = (ip_geneve_enable || eth_geneve_enable) ? 1 : 0; + qed_wr(p_hwfn, p_ptt, NIG_REG_NGE_COMP_VER, reg_val); + qed_wr(p_hwfn, p_ptt, PBF_REG_NGE_COMP_VER, reg_val); + qed_wr(p_hwfn, p_ptt, PRS_REG_NGE_COMP_VER, reg_val); + + /* EDPM with geneve tunnel not supported in BB_B0 */ + if (QED_IS_BB_B0(p_hwfn->cdev)) + return; + + qed_wr(p_hwfn, p_ptt, DORQ_REG_L2_EDPM_TUNNEL_NGE_ETH_EN, + eth_geneve_enable ? 1 : 0); + qed_wr(p_hwfn, p_ptt, DORQ_REG_L2_EDPM_TUNNEL_NGE_IP_EN, + ip_geneve_enable ? 1 : 0); +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_init_ops.c b/drivers/net/ethernet/qlogic/qed/qed_init_ops.c index 3269b3610e03..9866a20d2128 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_init_ops.c +++ b/drivers/net/ethernet/qlogic/qed/qed_init_ops.c @@ -18,6 +18,7 @@ #include "qed_hw.h" #include "qed_init_ops.h" #include "qed_reg_addr.h" +#include "qed_sriov.h" #define QED_INIT_MAX_POLL_COUNT 100 #define QED_INIT_POLL_PERIOD_US 500 @@ -128,6 +129,9 @@ int qed_init_alloc(struct qed_hwfn *p_hwfn) { struct qed_rt_data *rt_data = &p_hwfn->rt_data; + if (IS_VF(p_hwfn->cdev)) + return 0; + rt_data->b_valid = kzalloc(sizeof(bool) * RUNTIME_ARRAY_SIZE, GFP_KERNEL); if (!rt_data->b_valid) @@ -539,8 +543,7 @@ void qed_gtt_init(struct qed_hwfn *p_hwfn) pxp_global_win[i]); } -int qed_init_fw_data(struct qed_dev *cdev, - const u8 *data) +int qed_init_fw_data(struct qed_dev *cdev, const u8 *data) { struct qed_fw_data *fw = cdev->fw_data; struct bin_buffer_hdr *buf_hdr; @@ -551,7 +554,11 @@ int qed_init_fw_data(struct qed_dev *cdev, return -EINVAL; } - buf_hdr = (struct bin_buffer_hdr *)data; + /* First Dword contains metadata and should be skipped */ + buf_hdr = (struct bin_buffer_hdr *)(data + sizeof(u32)); + + offset = buf_hdr[BIN_BUF_FW_VER_INFO].offset; + fw->fw_ver_info = (struct fw_ver_info *)(data + offset); offset = buf_hdr[BIN_BUF_INIT_CMD].offset; fw->init_ops = (union init_op *)(data + offset); diff --git a/drivers/net/ethernet/qlogic/qed/qed_int.c b/drivers/net/ethernet/qlogic/qed/qed_int.c index 2017b0121f5f..8fa50fa23c8d 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_int.c +++ b/drivers/net/ethernet/qlogic/qed/qed_int.c @@ -26,6 +26,8 @@ #include "qed_mcp.h" #include "qed_reg_addr.h" #include "qed_sp.h" +#include "qed_sriov.h" +#include "qed_vf.h" struct qed_pi_info { qed_int_comp_cb_t comp_cb; @@ -2416,6 +2418,7 @@ void qed_init_cau_sb_entry(struct qed_hwfn *p_hwfn, { struct qed_dev *cdev = p_hwfn->cdev; u32 cau_state; + u8 timer_res; memset(p_sb_entry, 0, sizeof(*p_sb_entry)); @@ -2441,6 +2444,23 @@ void qed_init_cau_sb_entry(struct qed_hwfn *p_hwfn, cdev->tx_coalesce_usecs = QED_CAU_DEF_TX_USECS; } + /* Coalesce = (timeset << timer-res), timeset is 7bit wide */ + if (cdev->rx_coalesce_usecs <= 0x7F) + timer_res = 0; + else if (cdev->rx_coalesce_usecs <= 0xFF) + timer_res = 1; + else + timer_res = 2; + SET_FIELD(p_sb_entry->params, CAU_SB_ENTRY_TIMER_RES0, timer_res); + + if (cdev->tx_coalesce_usecs <= 0x7F) + timer_res = 0; + else if (cdev->tx_coalesce_usecs <= 0xFF) + timer_res = 1; + else + timer_res = 2; + SET_FIELD(p_sb_entry->params, CAU_SB_ENTRY_TIMER_RES1, timer_res); + SET_FIELD(p_sb_entry->data, CAU_SB_ENTRY_STATE0, cau_state); SET_FIELD(p_sb_entry->data, CAU_SB_ENTRY_STATE1, cau_state); } @@ -2482,17 +2502,28 @@ void qed_int_cau_conf_sb(struct qed_hwfn *p_hwfn, /* Configure pi coalescing if set */ if (p_hwfn->cdev->int_coalescing_mode == QED_COAL_MODE_ENABLE) { - u8 timeset = p_hwfn->cdev->rx_coalesce_usecs >> - (QED_CAU_DEF_RX_TIMER_RES + 1); + u8 timeset, timer_res; u8 num_tc = 1, i; + /* timeset = (coalesce >> timer-res), timeset is 7bit wide */ + if (p_hwfn->cdev->rx_coalesce_usecs <= 0x7F) + timer_res = 0; + else if (p_hwfn->cdev->rx_coalesce_usecs <= 0xFF) + timer_res = 1; + else + timer_res = 2; + timeset = (u8)(p_hwfn->cdev->rx_coalesce_usecs >> timer_res); qed_int_cau_conf_pi(p_hwfn, p_ptt, igu_sb_id, RX_PI, QED_COAL_RX_STATE_MACHINE, timeset); - timeset = p_hwfn->cdev->tx_coalesce_usecs >> - (QED_CAU_DEF_TX_TIMER_RES + 1); - + if (p_hwfn->cdev->tx_coalesce_usecs <= 0x7F) + timer_res = 0; + else if (p_hwfn->cdev->tx_coalesce_usecs <= 0xFF) + timer_res = 1; + else + timer_res = 2; + timeset = (u8)(p_hwfn->cdev->tx_coalesce_usecs >> timer_res); for (i = 0; i < num_tc; i++) { qed_int_cau_conf_pi(p_hwfn, p_ptt, igu_sb_id, TX_PI(i), @@ -2513,6 +2544,9 @@ void qed_int_cau_conf_pi(struct qed_hwfn *p_hwfn, u32 sb_offset; u32 pi_offset; + if (IS_VF(p_hwfn->cdev)) + return; + sb_offset = igu_sb_id * PIS_PER_SB; memset(&pi_entry, 0, sizeof(struct cau_pi_entry)); @@ -2542,8 +2576,9 @@ void qed_int_sb_setup(struct qed_hwfn *p_hwfn, sb_info->sb_ack = 0; memset(sb_info->sb_virt, 0, sizeof(*sb_info->sb_virt)); - qed_int_cau_conf_sb(p_hwfn, p_ptt, sb_info->sb_phys, - sb_info->igu_sb_id, 0, 0); + if (IS_PF(p_hwfn->cdev)) + qed_int_cau_conf_sb(p_hwfn, p_ptt, sb_info->sb_phys, + sb_info->igu_sb_id, 0, 0); } /** @@ -2563,8 +2598,10 @@ static u16 qed_get_igu_sb_id(struct qed_hwfn *p_hwfn, /* Assuming continuous set of IGU SBs dedicated for given PF */ if (sb_id == QED_SP_SB_ID) igu_sb_id = p_hwfn->hw_info.p_igu_info->igu_dsb_id; - else + else if (IS_PF(p_hwfn->cdev)) igu_sb_id = sb_id + p_hwfn->hw_info.p_igu_info->igu_base_sb; + else + igu_sb_id = qed_vf_get_igu_sb_id(p_hwfn, sb_id); DP_VERBOSE(p_hwfn, NETIF_MSG_INTR, "SB [%s] index is 0x%04x\n", (sb_id == QED_SP_SB_ID) ? "DSB" : "non-DSB", igu_sb_id); @@ -2594,9 +2631,16 @@ int qed_int_sb_init(struct qed_hwfn *p_hwfn, /* The igu address will hold the absolute address that needs to be * written to for a specific status block */ - sb_info->igu_addr = (u8 __iomem *)p_hwfn->regview + - GTT_BAR0_MAP_REG_IGU_CMD + - (sb_info->igu_sb_id << 3); + if (IS_PF(p_hwfn->cdev)) { + sb_info->igu_addr = (u8 __iomem *)p_hwfn->regview + + GTT_BAR0_MAP_REG_IGU_CMD + + (sb_info->igu_sb_id << 3); + } else { + sb_info->igu_addr = (u8 __iomem *)p_hwfn->regview + + PXP_VF_BAR0_START_IGU + + ((IGU_CMD_INT_ACK_BASE + + sb_info->igu_sb_id) << 3); + } sb_info->flags |= QED_SB_INFO_INIT; @@ -2783,24 +2827,20 @@ void qed_int_igu_disable_int(struct qed_hwfn *p_hwfn, { p_hwfn->b_int_enabled = 0; + if (IS_VF(p_hwfn->cdev)) + return; + qed_wr(p_hwfn, p_ptt, IGU_REG_PF_CONFIGURATION, 0); } #define IGU_CLEANUP_SLEEP_LENGTH (1000) -void qed_int_igu_cleanup_sb(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u32 sb_id, - bool cleanup_set, - u16 opaque_fid - ) +static void qed_int_igu_cleanup_sb(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u32 sb_id, bool cleanup_set, u16 opaque_fid) { + u32 cmd_ctrl = 0, val = 0, sb_bit = 0, sb_bit_addr = 0, data = 0; u32 pxp_addr = IGU_CMD_INT_ACK_BASE + sb_id; u32 sleep_cnt = IGU_CLEANUP_SLEEP_LENGTH; - u32 data = 0; - u32 cmd_ctrl = 0; - u32 val = 0; - u32 sb_bit = 0; - u32 sb_bit_addr = 0; /* Set the data field */ SET_FIELD(data, IGU_CLEANUP_CLEANUP_SET, cleanup_set ? 1 : 0); @@ -2845,11 +2885,9 @@ void qed_int_igu_cleanup_sb(struct qed_hwfn *p_hwfn, void qed_int_igu_init_pure_rt_single(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, - u32 sb_id, - u16 opaque, - bool b_set) + u32 sb_id, u16 opaque, bool b_set) { - int pi; + int pi, i; /* Set */ if (b_set) @@ -2858,6 +2896,22 @@ void qed_int_igu_init_pure_rt_single(struct qed_hwfn *p_hwfn, /* Clear */ qed_int_igu_cleanup_sb(p_hwfn, p_ptt, sb_id, 0, opaque); + /* Wait for the IGU SB to cleanup */ + for (i = 0; i < IGU_CLEANUP_SLEEP_LENGTH; i++) { + u32 val; + + val = qed_rd(p_hwfn, p_ptt, + IGU_REG_WRITE_DONE_PENDING + ((sb_id / 32) * 4)); + if (val & (1 << (sb_id % 32))) + usleep_range(10, 20); + else + break; + } + if (i == IGU_CLEANUP_SLEEP_LENGTH) + DP_NOTICE(p_hwfn, + "Failed SB[0x%08x] still appearing in WRITE_DONE_PENDING\n", + sb_id); + /* Clear the CAU for the SB */ for (pi = 0; pi < 12; pi++) qed_wr(p_hwfn, p_ptt, @@ -2866,13 +2920,11 @@ void qed_int_igu_init_pure_rt_single(struct qed_hwfn *p_hwfn, void qed_int_igu_init_pure_rt(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, - bool b_set, - bool b_slowpath) + bool b_set, bool b_slowpath) { u32 igu_base_sb = p_hwfn->hw_info.p_igu_info->igu_base_sb; u32 igu_sb_cnt = p_hwfn->hw_info.p_igu_info->igu_sb_cnt; - u32 sb_id = 0; - u32 val = 0; + u32 sb_id = 0, val = 0; val = qed_rd(p_hwfn, p_ptt, IGU_REG_BLOCK_CONFIGURATION); val |= IGU_REG_BLOCK_CONFIGURATION_VF_CLEANUP_EN; @@ -2888,14 +2940,14 @@ void qed_int_igu_init_pure_rt(struct qed_hwfn *p_hwfn, p_hwfn->hw_info.opaque_fid, b_set); - if (b_slowpath) { - sb_id = p_hwfn->hw_info.p_igu_info->igu_dsb_id; - DP_VERBOSE(p_hwfn, NETIF_MSG_INTR, - "IGU cleaning slowpath SB [%d]\n", sb_id); - qed_int_igu_init_pure_rt_single(p_hwfn, p_ptt, sb_id, - p_hwfn->hw_info.opaque_fid, - b_set); - } + if (!b_slowpath) + return; + + sb_id = p_hwfn->hw_info.p_igu_info->igu_dsb_id; + DP_VERBOSE(p_hwfn, NETIF_MSG_INTR, + "IGU cleaning slowpath SB [%d]\n", sb_id); + qed_int_igu_init_pure_rt_single(p_hwfn, p_ptt, sb_id, + p_hwfn->hw_info.opaque_fid, b_set); } static u32 qed_int_igu_read_cam_block(struct qed_hwfn *p_hwfn, @@ -2935,9 +2987,9 @@ int qed_int_igu_read_cam(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) { struct qed_igu_info *p_igu_info; + u32 val, min_vf = 0, max_vf = 0; + u16 sb_id, last_iov_sb_id = 0; struct qed_igu_block *blk; - u32 val; - u16 sb_id; u16 prev_sb_id = 0xFF; p_hwfn->hw_info.p_igu_info = kzalloc(sizeof(*p_igu_info), GFP_KERNEL); @@ -2947,12 +2999,19 @@ int qed_int_igu_read_cam(struct qed_hwfn *p_hwfn, p_igu_info = p_hwfn->hw_info.p_igu_info; - /* Initialize base sb / sb cnt for PFs */ + /* Initialize base sb / sb cnt for PFs and VFs */ p_igu_info->igu_base_sb = 0xffff; p_igu_info->igu_sb_cnt = 0; p_igu_info->igu_dsb_id = 0xffff; p_igu_info->igu_base_sb_iov = 0xffff; + if (p_hwfn->cdev->p_iov_info) { + struct qed_hw_sriov_info *p_iov = p_hwfn->cdev->p_iov_info; + + min_vf = p_iov->first_vf_in_pf; + max_vf = p_iov->first_vf_in_pf + p_iov->total_vfs; + } + for (sb_id = 0; sb_id < QED_MAPPING_MEMORY_SIZE(p_hwfn->cdev); sb_id++) { blk = &p_igu_info->igu_map.igu_blocks[sb_id]; @@ -2986,14 +3045,43 @@ int qed_int_igu_read_cam(struct qed_hwfn *p_hwfn, (p_igu_info->igu_sb_cnt)++; } } + } else { + if ((blk->function_id >= min_vf) && + (blk->function_id < max_vf)) { + /* Available for VFs of this PF */ + if (p_igu_info->igu_base_sb_iov == 0xffff) { + p_igu_info->igu_base_sb_iov = sb_id; + } else if (last_iov_sb_id != sb_id - 1) { + if (!val) { + DP_VERBOSE(p_hwfn->cdev, + NETIF_MSG_INTR, + "First uninitialized IGU CAM entry at index 0x%04x\n", + sb_id); + } else { + DP_NOTICE(p_hwfn->cdev, + "Consecutive igu vectors for HWFN %x vfs is broken [jumps from %04x to %04x]\n", + p_hwfn->rel_pf_id, + last_iov_sb_id, + sb_id); } + break; + } + blk->status |= QED_IGU_STATUS_FREE; + p_hwfn->hw_info.p_igu_info->free_blks++; + last_iov_sb_id = sb_id; + } } } - - DP_VERBOSE(p_hwfn, NETIF_MSG_INTR, - "IGU igu_base_sb=0x%x igu_sb_cnt=%d igu_dsb_id=0x%x\n", - p_igu_info->igu_base_sb, - p_igu_info->igu_sb_cnt, - p_igu_info->igu_dsb_id); + p_igu_info->igu_sb_cnt_iov = p_igu_info->free_blks; + + DP_VERBOSE( + p_hwfn, + NETIF_MSG_INTR, + "IGU igu_base_sb=0x%x [IOV 0x%x] igu_sb_cnt=%d [IOV 0x%x] igu_dsb_id=0x%x\n", + p_igu_info->igu_base_sb, + p_igu_info->igu_base_sb_iov, + p_igu_info->igu_sb_cnt, + p_igu_info->igu_sb_cnt_iov, + p_igu_info->igu_dsb_id); if (p_igu_info->igu_base_sb == 0xffff || p_igu_info->igu_dsb_id == 0xffff || @@ -3116,6 +3204,23 @@ void qed_int_get_num_sbs(struct qed_hwfn *p_hwfn, p_sb_cnt_info->sb_free_blk = info->free_blks; } +u16 qed_int_queue_id_from_sb_id(struct qed_hwfn *p_hwfn, u16 sb_id) +{ + struct qed_igu_info *p_info = p_hwfn->hw_info.p_igu_info; + + /* Determine origin of SB id */ + if ((sb_id >= p_info->igu_base_sb) && + (sb_id < p_info->igu_base_sb + p_info->igu_sb_cnt)) { + return sb_id - p_info->igu_base_sb; + } else if ((sb_id >= p_info->igu_base_sb_iov) && + (sb_id < p_info->igu_base_sb_iov + p_info->igu_sb_cnt_iov)) { + return sb_id - p_info->igu_base_sb_iov + p_info->igu_sb_cnt; + } else { + DP_NOTICE(p_hwfn, "SB %d not in range for function\n", sb_id); + return 0; + } +} + void qed_int_disable_post_isr_release(struct qed_dev *cdev) { int i; @@ -3123,3 +3228,39 @@ void qed_int_disable_post_isr_release(struct qed_dev *cdev) for_each_hwfn(cdev, i) cdev->hwfns[i].b_int_requested = false; } + +int qed_int_set_timer_res(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u8 timer_res, u16 sb_id, bool tx) +{ + struct cau_sb_entry sb_entry; + int rc; + + if (!p_hwfn->hw_init_done) { + DP_ERR(p_hwfn, "hardware not initialized yet\n"); + return -EINVAL; + } + + rc = qed_dmae_grc2host(p_hwfn, p_ptt, CAU_REG_SB_VAR_MEMORY + + sb_id * sizeof(u64), + (u64)(uintptr_t)&sb_entry, 2, 0); + if (rc) { + DP_ERR(p_hwfn, "dmae_grc2host failed %d\n", rc); + return rc; + } + + if (tx) + SET_FIELD(sb_entry.params, CAU_SB_ENTRY_TIMER_RES1, timer_res); + else + SET_FIELD(sb_entry.params, CAU_SB_ENTRY_TIMER_RES0, timer_res); + + rc = qed_dmae_host2grc(p_hwfn, p_ptt, + (u64)(uintptr_t)&sb_entry, + CAU_REG_SB_VAR_MEMORY + + sb_id * sizeof(u64), 2, 0); + if (rc) { + DP_ERR(p_hwfn, "dmae_host2grc failed %d\n", rc); + return rc; + } + + return rc; +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_int.h b/drivers/net/ethernet/qlogic/qed/qed_int.h index c57f2e680770..0948be64dc78 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_int.h +++ b/drivers/net/ethernet/qlogic/qed/qed_int.h @@ -20,6 +20,12 @@ #define IGU_PF_CONF_ATTN_BIT_EN (0x1 << 3) /* attention enable */ #define IGU_PF_CONF_SINGLE_ISR_EN (0x1 << 4) /* single ISR mode enable */ #define IGU_PF_CONF_SIMD_MODE (0x1 << 5) /* simd all ones mode */ +/* Fields of IGU VF CONFIGRATION REGISTER */ +#define IGU_VF_CONF_FUNC_EN (0x1 << 0) /* function enable */ +#define IGU_VF_CONF_MSI_MSIX_EN (0x1 << 1) /* MSI/MSIX enable */ +#define IGU_VF_CONF_SINGLE_ISR_EN (0x1 << 4) /* single ISR mode enable */ +#define IGU_VF_CONF_PARENT_MASK (0xF) /* Parent PF */ +#define IGU_VF_CONF_PARENT_SHIFT 5 /* Parent PF */ /* Igu control commands */ @@ -292,26 +298,8 @@ u16 qed_int_get_sp_sb_id(struct qed_hwfn *p_hwfn); * @param p_hwfn * @param p_ptt * @param sb_id - igu status block id - * @param cleanup_set - set(1) / clear(0) - * @param opaque_fid - the function for which to perform - * cleanup, for example a PF on behalf of - * its VFs. - */ -void qed_int_igu_cleanup_sb(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - u32 sb_id, - bool cleanup_set, - u16 opaque_fid); - -/** - * @brief Status block cleanup. Should be called for each status - * block that will be used -> both PF / VF - * - * @param p_hwfn - * @param p_ptt - * @param sb_id - igu status block id * @param opaque - opaque fid of the sb owner. - * @param cleanup_set - set(1) / clear(0) + * @param b_set - set(1) / clear(0) */ void qed_int_igu_init_pure_rt_single(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, @@ -365,6 +353,16 @@ void qed_int_setup(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt); /** + * @brief - Returns an Rx queue index appropriate for usage with given SB. + * + * @param p_hwfn + * @param sb_id - absolute index of SB + * + * @return index of Rx queue + */ +u16 qed_int_queue_id_from_sb_id(struct qed_hwfn *p_hwfn, u16 sb_id); + +/** * @brief - Enable Interrupt & Attention for hw function * * @param p_hwfn @@ -391,6 +389,9 @@ void qed_init_cau_sb_entry(struct qed_hwfn *p_hwfn, u16 vf_number, u8 vf_valid); +int qed_int_set_timer_res(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, + u8 timer_res, u16 sb_id, bool tx); + #define QED_MAPPING_MEMORY_SIZE(dev) (NUM_OF_SBS(dev)) #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_l2.c b/drivers/net/ethernet/qlogic/qed/qed_l2.c index 3f35c6ca9252..401e738543b5 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_l2.c +++ b/drivers/net/ethernet/qlogic/qed/qed_l2.c @@ -31,137 +31,25 @@ #include "qed_hsi.h" #include "qed_hw.h" #include "qed_int.h" +#include "qed_l2.h" #include "qed_mcp.h" #include "qed_reg_addr.h" #include "qed_sp.h" +#include "qed_sriov.h" -enum qed_rss_caps { - QED_RSS_IPV4 = 0x1, - QED_RSS_IPV6 = 0x2, - QED_RSS_IPV4_TCP = 0x4, - QED_RSS_IPV6_TCP = 0x8, - QED_RSS_IPV4_UDP = 0x10, - QED_RSS_IPV6_UDP = 0x20, -}; - -/* Should be the same as ETH_RSS_IND_TABLE_ENTRIES_NUM */ -#define QED_RSS_IND_TABLE_SIZE 128 -#define QED_RSS_KEY_SIZE 10 /* size in 32b chunks */ - -struct qed_rss_params { - u8 update_rss_config; - u8 rss_enable; - u8 rss_eng_id; - u8 update_rss_capabilities; - u8 update_rss_ind_table; - u8 update_rss_key; - u8 rss_caps; - u8 rss_table_size_log; - u16 rss_ind_table[QED_RSS_IND_TABLE_SIZE]; - u32 rss_key[QED_RSS_KEY_SIZE]; -}; - -enum qed_filter_opcode { - QED_FILTER_ADD, - QED_FILTER_REMOVE, - QED_FILTER_MOVE, - QED_FILTER_REPLACE, /* Delete all MACs and add new one instead */ - QED_FILTER_FLUSH, /* Removes all filters */ -}; - -enum qed_filter_ucast_type { - QED_FILTER_MAC, - QED_FILTER_VLAN, - QED_FILTER_MAC_VLAN, - QED_FILTER_INNER_MAC, - QED_FILTER_INNER_VLAN, - QED_FILTER_INNER_PAIR, - QED_FILTER_INNER_MAC_VNI_PAIR, - QED_FILTER_MAC_VNI_PAIR, - QED_FILTER_VNI, -}; - -struct qed_filter_ucast { - enum qed_filter_opcode opcode; - enum qed_filter_ucast_type type; - u8 is_rx_filter; - u8 is_tx_filter; - u8 vport_to_add_to; - u8 vport_to_remove_from; - unsigned char mac[ETH_ALEN]; - u8 assert_on_error; - u16 vlan; - u32 vni; -}; - -struct qed_filter_mcast { - /* MOVE is not supported for multicast */ - enum qed_filter_opcode opcode; - u8 vport_to_add_to; - u8 vport_to_remove_from; - u8 num_mc_addrs; -#define QED_MAX_MC_ADDRS 64 - unsigned char mac[QED_MAX_MC_ADDRS][ETH_ALEN]; -}; - -struct qed_filter_accept_flags { - u8 update_rx_mode_config; - u8 update_tx_mode_config; - u8 rx_accept_filter; - u8 tx_accept_filter; -#define QED_ACCEPT_NONE 0x01 -#define QED_ACCEPT_UCAST_MATCHED 0x02 -#define QED_ACCEPT_UCAST_UNMATCHED 0x04 -#define QED_ACCEPT_MCAST_MATCHED 0x08 -#define QED_ACCEPT_MCAST_UNMATCHED 0x10 -#define QED_ACCEPT_BCAST 0x20 -}; - -struct qed_sp_vport_update_params { - u16 opaque_fid; - u8 vport_id; - u8 update_vport_active_rx_flg; - u8 vport_active_rx_flg; - u8 update_vport_active_tx_flg; - u8 vport_active_tx_flg; - u8 update_approx_mcast_flg; - u8 update_accept_any_vlan_flg; - u8 accept_any_vlan; - unsigned long bins[8]; - struct qed_rss_params *rss_params; - struct qed_filter_accept_flags accept_flags; -}; - -enum qed_tpa_mode { - QED_TPA_MODE_NONE, - QED_TPA_MODE_UNUSED, - QED_TPA_MODE_GRO, - QED_TPA_MODE_MAX -}; - -struct qed_sp_vport_start_params { - enum qed_tpa_mode tpa_mode; - bool remove_inner_vlan; - bool drop_ttl0; - u8 max_buffers_per_cqe; - u32 concrete_fid; - u16 opaque_fid; - u8 vport_id; - u16 mtu; -}; #define QED_MAX_SGES_NUM 16 #define CRC32_POLY 0x1edc6f41 -static int qed_sp_vport_start(struct qed_hwfn *p_hwfn, - struct qed_sp_vport_start_params *p_params) +int qed_sp_eth_vport_start(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_start_params *p_params) { struct vport_start_ramrod_data *p_ramrod = NULL; struct qed_spq_entry *p_ent = NULL; struct qed_sp_init_data init_data; + u8 abs_vport_id = 0; int rc = -EINVAL; u16 rx_mode = 0; - u8 abs_vport_id = 0; rc = qed_fw_vport(p_hwfn, p_params->vport_id, &abs_vport_id); if (rc != 0) @@ -184,6 +72,7 @@ static int qed_sp_vport_start(struct qed_hwfn *p_hwfn, p_ramrod->mtu = cpu_to_le16(p_params->mtu); p_ramrod->inner_vlan_removal_en = p_params->remove_inner_vlan; p_ramrod->drop_ttl0_en = p_params->drop_ttl0; + p_ramrod->untagged = p_params->only_untagged; SET_FIELD(rx_mode, ETH_VPORT_RX_MODE_UCAST_DROP_ALL, 1); SET_FIELD(rx_mode, ETH_VPORT_RX_MODE_MCAST_DROP_ALL, 1); @@ -211,6 +100,8 @@ static int qed_sp_vport_start(struct qed_hwfn *p_hwfn, break; } + p_ramrod->tx_switching_en = p_params->tx_switching; + /* Software Function ID in hwfn (PFs are 0 - 15, VFs are 16 - 135) */ p_ramrod->sw_fid = qed_concrete_to_sw_fid(p_hwfn->cdev, p_params->concrete_fid); @@ -218,6 +109,21 @@ static int qed_sp_vport_start(struct qed_hwfn *p_hwfn, return qed_spq_post(p_hwfn, p_ent, NULL); } +int qed_sp_vport_start(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_start_params *p_params) +{ + if (IS_VF(p_hwfn->cdev)) { + return qed_vf_pf_vport_start(p_hwfn, p_params->vport_id, + p_params->mtu, + p_params->remove_inner_vlan, + p_params->tpa_mode, + p_params->max_buffers_per_cqe, + p_params->only_untagged); + } + + return qed_sp_eth_vport_start(p_hwfn, p_params); +} + static int qed_sp_vport_update_rss(struct qed_hwfn *p_hwfn, struct vport_update_ramrod_data *p_ramrod, @@ -342,10 +248,6 @@ qed_sp_update_accept_mode(struct qed_hwfn *p_hwfn, SET_FIELD(state, ETH_VPORT_TX_MODE_UCAST_DROP_ALL, !!(accept_filter & QED_ACCEPT_NONE)); - SET_FIELD(state, ETH_VPORT_TX_MODE_UCAST_ACCEPT_ALL, - (!!(accept_filter & QED_ACCEPT_UCAST_MATCHED) && - !!(accept_filter & QED_ACCEPT_UCAST_UNMATCHED))); - SET_FIELD(state, ETH_VPORT_TX_MODE_MCAST_DROP_ALL, !!(accept_filter & QED_ACCEPT_NONE)); @@ -363,6 +265,38 @@ qed_sp_update_accept_mode(struct qed_hwfn *p_hwfn, } static void +qed_sp_vport_update_sge_tpa(struct qed_hwfn *p_hwfn, + struct vport_update_ramrod_data *p_ramrod, + struct qed_sge_tpa_params *p_params) +{ + struct eth_vport_tpa_param *p_tpa; + + if (!p_params) { + p_ramrod->common.update_tpa_param_flg = 0; + p_ramrod->common.update_tpa_en_flg = 0; + p_ramrod->common.update_tpa_param_flg = 0; + return; + } + + p_ramrod->common.update_tpa_en_flg = p_params->update_tpa_en_flg; + p_tpa = &p_ramrod->tpa_param; + p_tpa->tpa_ipv4_en_flg = p_params->tpa_ipv4_en_flg; + p_tpa->tpa_ipv6_en_flg = p_params->tpa_ipv6_en_flg; + p_tpa->tpa_ipv4_tunn_en_flg = p_params->tpa_ipv4_tunn_en_flg; + p_tpa->tpa_ipv6_tunn_en_flg = p_params->tpa_ipv6_tunn_en_flg; + + p_ramrod->common.update_tpa_param_flg = p_params->update_tpa_param_flg; + p_tpa->max_buff_num = p_params->max_buffers_per_cqe; + p_tpa->tpa_pkt_split_flg = p_params->tpa_pkt_split_flg; + p_tpa->tpa_hdr_data_split_flg = p_params->tpa_hdr_data_split_flg; + p_tpa->tpa_gro_consistent_flg = p_params->tpa_gro_consistent_flg; + p_tpa->tpa_max_aggs_num = p_params->tpa_max_aggs_num; + p_tpa->tpa_max_size = p_params->tpa_max_size; + p_tpa->tpa_min_size_to_start = p_params->tpa_min_size_to_start; + p_tpa->tpa_min_size_to_cont = p_params->tpa_min_size_to_cont; +} + +static void qed_sp_update_mcast_bin(struct qed_hwfn *p_hwfn, struct vport_update_ramrod_data *p_ramrod, struct qed_sp_vport_update_params *p_params) @@ -383,20 +317,24 @@ qed_sp_update_mcast_bin(struct qed_hwfn *p_hwfn, } } -static int -qed_sp_vport_update(struct qed_hwfn *p_hwfn, - struct qed_sp_vport_update_params *p_params, - enum spq_mode comp_mode, - struct qed_spq_comp_cb *p_comp_data) +int qed_sp_vport_update(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_params, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data) { struct qed_rss_params *p_rss_params = p_params->rss_params; struct vport_update_ramrod_data_cmn *p_cmn; struct qed_sp_init_data init_data; struct vport_update_ramrod_data *p_ramrod = NULL; struct qed_spq_entry *p_ent = NULL; - u8 abs_vport_id = 0; + u8 abs_vport_id = 0, val; int rc = -EINVAL; + if (IS_VF(p_hwfn->cdev)) { + rc = qed_vf_pf_vport_update(p_hwfn, p_params); + return rc; + } + rc = qed_fw_vport(p_hwfn, p_params->vport_id, &abs_vport_id); if (rc != 0) return rc; @@ -425,6 +363,27 @@ qed_sp_vport_update(struct qed_hwfn *p_hwfn, p_cmn->accept_any_vlan = p_params->accept_any_vlan; p_cmn->update_accept_any_vlan_flg = p_params->update_accept_any_vlan_flg; + + p_cmn->inner_vlan_removal_en = p_params->inner_vlan_removal_flg; + val = p_params->update_inner_vlan_removal_flg; + p_cmn->update_inner_vlan_removal_en_flg = val; + + p_cmn->default_vlan_en = p_params->default_vlan_enable_flg; + val = p_params->update_default_vlan_enable_flg; + p_cmn->update_default_vlan_en_flg = val; + + p_cmn->default_vlan = cpu_to_le16(p_params->default_vlan); + p_cmn->update_default_vlan_flg = p_params->update_default_vlan_flg; + + p_cmn->silent_vlan_removal_en = p_params->silent_vlan_removal_flg; + + p_ramrod->common.tx_switching_en = p_params->tx_switching_flg; + p_cmn->update_tx_switching_en_flg = p_params->update_tx_switching_flg; + + p_cmn->anti_spoofing_en = p_params->anti_spoofing_en; + val = p_params->update_anti_spoofing_en_flg; + p_ramrod->common.update_anti_spoofing_en_flg = val; + rc = qed_sp_vport_update_rss(p_hwfn, p_ramrod, p_rss_params); if (rc) { /* Return spq entry which is taken in qed_sp_init_request()*/ @@ -436,12 +395,11 @@ qed_sp_vport_update(struct qed_hwfn *p_hwfn, qed_sp_update_mcast_bin(p_hwfn, p_ramrod, p_params); qed_sp_update_accept_mode(p_hwfn, p_ramrod, p_params->accept_flags); + qed_sp_vport_update_sge_tpa(p_hwfn, p_ramrod, p_params->sge_tpa_params); return qed_spq_post(p_hwfn, p_ent, NULL); } -static int qed_sp_vport_stop(struct qed_hwfn *p_hwfn, - u16 opaque_fid, - u8 vport_id) +int qed_sp_vport_stop(struct qed_hwfn *p_hwfn, u16 opaque_fid, u8 vport_id) { struct vport_stop_ramrod_data *p_ramrod; struct qed_sp_init_data init_data; @@ -449,6 +407,9 @@ static int qed_sp_vport_stop(struct qed_hwfn *p_hwfn, u8 abs_vport_id = 0; int rc; + if (IS_VF(p_hwfn->cdev)) + return qed_vf_pf_vport_stop(p_hwfn); + rc = qed_fw_vport(p_hwfn, vport_id, &abs_vport_id); if (rc != 0) return rc; @@ -470,13 +431,26 @@ static int qed_sp_vport_stop(struct qed_hwfn *p_hwfn, return qed_spq_post(p_hwfn, p_ent, NULL); } +static int +qed_vf_pf_accept_flags(struct qed_hwfn *p_hwfn, + struct qed_filter_accept_flags *p_accept_flags) +{ + struct qed_sp_vport_update_params s_params; + + memset(&s_params, 0, sizeof(s_params)); + memcpy(&s_params.accept_flags, p_accept_flags, + sizeof(struct qed_filter_accept_flags)); + + return qed_vf_pf_vport_update(p_hwfn, &s_params); +} + static int qed_filter_accept_cmd(struct qed_dev *cdev, u8 vport, struct qed_filter_accept_flags accept_flags, u8 update_accept_any_vlan, u8 accept_any_vlan, - enum spq_mode comp_mode, - struct qed_spq_comp_cb *p_comp_data) + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data) { struct qed_sp_vport_update_params vport_update_params; int i, rc; @@ -493,6 +467,13 @@ static int qed_filter_accept_cmd(struct qed_dev *cdev, vport_update_params.opaque_fid = p_hwfn->hw_info.opaque_fid; + if (IS_VF(cdev)) { + rc = qed_vf_pf_accept_flags(p_hwfn, &accept_flags); + if (rc) + return rc; + continue; + } + rc = qed_sp_vport_update(p_hwfn, &vport_update_params, comp_mode, p_comp_data); if (rc != 0) { @@ -527,16 +508,14 @@ static int qed_sp_release_queue_cid( return 0; } -static int -qed_sp_eth_rxq_start_ramrod(struct qed_hwfn *p_hwfn, - u16 opaque_fid, - u32 cid, - struct qed_queue_start_common_params *params, - u8 stats_id, - u16 bd_max_bytes, - dma_addr_t bd_chain_phys_addr, - dma_addr_t cqe_pbl_addr, - u16 cqe_pbl_size) +int qed_sp_eth_rxq_start_ramrod(struct qed_hwfn *p_hwfn, + u16 opaque_fid, + u32 cid, + struct qed_queue_start_common_params *params, + u8 stats_id, + u16 bd_max_bytes, + dma_addr_t bd_chain_phys_addr, + dma_addr_t cqe_pbl_addr, u16 cqe_pbl_size) { struct rx_queue_start_ramrod_data *p_ramrod = NULL; struct qed_spq_entry *p_ent = NULL; @@ -593,9 +572,12 @@ qed_sp_eth_rxq_start_ramrod(struct qed_hwfn *p_hwfn, p_ramrod->num_of_pbl_pages = cpu_to_le16(cqe_pbl_size); DMA_REGPAIR_LE(p_ramrod->cqe_pbl_addr, cqe_pbl_addr); - rc = qed_spq_post(p_hwfn, p_ent, NULL); + p_ramrod->vf_rx_prod_index = params->vf_qid; + if (params->vf_qid) + DP_VERBOSE(p_hwfn, QED_MSG_SP, + "Queue is meant for VF rxq[%04x]\n", params->vf_qid); - return rc; + return qed_spq_post(p_hwfn, p_ent, NULL); } static int @@ -605,15 +587,24 @@ qed_sp_eth_rx_queue_start(struct qed_hwfn *p_hwfn, u16 bd_max_bytes, dma_addr_t bd_chain_phys_addr, dma_addr_t cqe_pbl_addr, - u16 cqe_pbl_size, - void __iomem **pp_prod) + u16 cqe_pbl_size, void __iomem **pp_prod) { struct qed_hw_cid_data *p_rx_cid; - u64 init_prod_val = 0; + u32 init_prod_val = 0; u16 abs_l2_queue = 0; u8 abs_stats_id = 0; int rc; + if (IS_VF(p_hwfn->cdev)) { + return qed_vf_pf_rxq_start(p_hwfn, + params->queue_id, + params->sb, + params->sb_idx, + bd_max_bytes, + bd_chain_phys_addr, + cqe_pbl_addr, cqe_pbl_size, pp_prod); + } + rc = qed_fw_l2_queue(p_hwfn, params->queue_id, &abs_l2_queue); if (rc != 0) return rc; @@ -624,10 +615,10 @@ qed_sp_eth_rx_queue_start(struct qed_hwfn *p_hwfn, *pp_prod = (u8 __iomem *)p_hwfn->regview + GTT_BAR0_MAP_REG_MSDM_RAM + - MSTORM_PRODS_OFFSET(abs_l2_queue); + MSTORM_ETH_PF_PRODS_OFFSET(abs_l2_queue); /* Init the rcq, rx bd and rx sge (if valid) producers to 0 */ - __internal_ram_wr(p_hwfn, *pp_prod, sizeof(u64), + __internal_ram_wr(p_hwfn, *pp_prod, sizeof(u32), (u32 *)(&init_prod_val)); /* Allocate a CID for the queue */ @@ -656,10 +647,59 @@ qed_sp_eth_rx_queue_start(struct qed_hwfn *p_hwfn, return rc; } -static int qed_sp_eth_rx_queue_stop(struct qed_hwfn *p_hwfn, - u16 rx_queue_id, - bool eq_completion_only, - bool cqe_completion) +int qed_sp_eth_rx_queues_update(struct qed_hwfn *p_hwfn, + u16 rx_queue_id, + u8 num_rxqs, + u8 complete_cqe_flg, + u8 complete_event_flg, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data) +{ + struct rx_queue_update_ramrod_data *p_ramrod = NULL; + struct qed_spq_entry *p_ent = NULL; + struct qed_sp_init_data init_data; + struct qed_hw_cid_data *p_rx_cid; + u16 qid, abs_rx_q_id = 0; + int rc = -EINVAL; + u8 i; + + memset(&init_data, 0, sizeof(init_data)); + init_data.comp_mode = comp_mode; + init_data.p_comp_data = p_comp_data; + + for (i = 0; i < num_rxqs; i++) { + qid = rx_queue_id + i; + p_rx_cid = &p_hwfn->p_rx_cids[qid]; + + /* Get SPQ entry */ + init_data.cid = p_rx_cid->cid; + init_data.opaque_fid = p_rx_cid->opaque_fid; + + rc = qed_sp_init_request(p_hwfn, &p_ent, + ETH_RAMROD_RX_QUEUE_UPDATE, + PROTOCOLID_ETH, &init_data); + if (rc) + return rc; + + p_ramrod = &p_ent->ramrod.rx_queue_update; + + qed_fw_vport(p_hwfn, p_rx_cid->vport_id, &p_ramrod->vport_id); + qed_fw_l2_queue(p_hwfn, qid, &abs_rx_q_id); + p_ramrod->rx_queue_id = cpu_to_le16(abs_rx_q_id); + p_ramrod->complete_cqe_flg = complete_cqe_flg; + p_ramrod->complete_event_flg = complete_event_flg; + + rc = qed_spq_post(p_hwfn, p_ent, NULL); + if (rc) + return rc; + } + + return rc; +} + +int qed_sp_eth_rx_queue_stop(struct qed_hwfn *p_hwfn, + u16 rx_queue_id, + bool eq_completion_only, bool cqe_completion) { struct qed_hw_cid_data *p_rx_cid = &p_hwfn->p_rx_cids[rx_queue_id]; struct rx_queue_stop_ramrod_data *p_ramrod = NULL; @@ -668,6 +708,9 @@ static int qed_sp_eth_rx_queue_stop(struct qed_hwfn *p_hwfn, u16 abs_rx_q_id = 0; int rc = -EINVAL; + if (IS_VF(p_hwfn->cdev)) + return qed_vf_pf_rxq_stop(p_hwfn, rx_queue_id, cqe_completion); + /* Get SPQ entry */ memset(&init_data, 0, sizeof(init_data)); init_data.cid = p_rx_cid->cid; @@ -703,23 +746,22 @@ static int qed_sp_eth_rx_queue_stop(struct qed_hwfn *p_hwfn, return qed_sp_release_queue_cid(p_hwfn, p_rx_cid); } -static int -qed_sp_eth_txq_start_ramrod(struct qed_hwfn *p_hwfn, - u16 opaque_fid, - u32 cid, - struct qed_queue_start_common_params *p_params, - u8 stats_id, - dma_addr_t pbl_addr, - u16 pbl_size, - union qed_qm_pq_params *p_pq_params) +int qed_sp_eth_txq_start_ramrod(struct qed_hwfn *p_hwfn, + u16 opaque_fid, + u32 cid, + struct qed_queue_start_common_params *p_params, + u8 stats_id, + dma_addr_t pbl_addr, + u16 pbl_size, + union qed_qm_pq_params *p_pq_params) { struct tx_queue_start_ramrod_data *p_ramrod = NULL; struct qed_spq_entry *p_ent = NULL; struct qed_sp_init_data init_data; struct qed_hw_cid_data *p_tx_cid; - u8 abs_vport_id; + u16 pq_id, abs_tx_q_id = 0; int rc = -EINVAL; - u16 pq_id; + u8 abs_vport_id; /* Store information for the stop */ p_tx_cid = &p_hwfn->p_tx_cids[p_params->queue_id]; @@ -730,6 +772,10 @@ qed_sp_eth_txq_start_ramrod(struct qed_hwfn *p_hwfn, if (rc) return rc; + rc = qed_fw_l2_queue(p_hwfn, p_params->queue_id, &abs_tx_q_id); + if (rc) + return rc; + /* Get SPQ entry */ memset(&init_data, 0, sizeof(init_data)); init_data.cid = cid; @@ -749,6 +795,7 @@ qed_sp_eth_txq_start_ramrod(struct qed_hwfn *p_hwfn, p_ramrod->sb_index = p_params->sb_idx; p_ramrod->stats_counter_id = stats_id; + p_ramrod->queue_zone_id = cpu_to_le16(abs_tx_q_id); p_ramrod->pbl_size = cpu_to_le16(pbl_size); DMA_REGPAIR_LE(p_ramrod->pbl_base_addr, pbl_addr); @@ -765,14 +812,21 @@ qed_sp_eth_tx_queue_start(struct qed_hwfn *p_hwfn, u16 opaque_fid, struct qed_queue_start_common_params *p_params, dma_addr_t pbl_addr, - u16 pbl_size, - void __iomem **pp_doorbell) + u16 pbl_size, void __iomem **pp_doorbell) { struct qed_hw_cid_data *p_tx_cid; union qed_qm_pq_params pq_params; u8 abs_stats_id = 0; int rc; + if (IS_VF(p_hwfn->cdev)) { + return qed_vf_pf_txq_start(p_hwfn, + p_params->queue_id, + p_params->sb, + p_params->sb_idx, + pbl_addr, pbl_size, pp_doorbell); + } + rc = qed_fw_vport(p_hwfn, p_params->vport_id, &abs_stats_id); if (rc) return rc; @@ -813,14 +867,16 @@ qed_sp_eth_tx_queue_start(struct qed_hwfn *p_hwfn, return rc; } -static int qed_sp_eth_tx_queue_stop(struct qed_hwfn *p_hwfn, - u16 tx_queue_id) +int qed_sp_eth_tx_queue_stop(struct qed_hwfn *p_hwfn, u16 tx_queue_id) { struct qed_hw_cid_data *p_tx_cid = &p_hwfn->p_tx_cids[tx_queue_id]; struct qed_spq_entry *p_ent = NULL; struct qed_sp_init_data init_data; int rc = -EINVAL; + if (IS_VF(p_hwfn->cdev)) + return qed_vf_pf_txq_stop(p_hwfn, tx_queue_id); + /* Get SPQ entry */ memset(&init_data, 0, sizeof(init_data)); init_data.cid = p_tx_cid->cid; @@ -1016,11 +1072,11 @@ qed_filter_ucast_common(struct qed_hwfn *p_hwfn, return 0; } -static int qed_sp_eth_filter_ucast(struct qed_hwfn *p_hwfn, - u16 opaque_fid, - struct qed_filter_ucast *p_filter_cmd, - enum spq_mode comp_mode, - struct qed_spq_comp_cb *p_comp_data) +int qed_sp_eth_filter_ucast(struct qed_hwfn *p_hwfn, + u16 opaque_fid, + struct qed_filter_ucast *p_filter_cmd, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data) { struct vport_filter_update_ramrod_data *p_ramrod = NULL; struct qed_spq_entry *p_ent = NULL; @@ -1118,7 +1174,7 @@ static inline u32 qed_crc32c_le(u32 seed, return qed_calc_crc32c((u8 *)packet_buf, 8, seed, 0); } -static u8 qed_mcast_bin_from_mac(u8 *mac) +u8 qed_mcast_bin_from_mac(u8 *mac) { u32 crc = qed_crc32c_le(ETH_MULTICAST_BIN_FROM_MAC_SEED, mac, ETH_ALEN); @@ -1201,11 +1257,10 @@ qed_sp_eth_filter_mcast(struct qed_hwfn *p_hwfn, return qed_spq_post(p_hwfn, p_ent, NULL); } -static int -qed_filter_mcast_cmd(struct qed_dev *cdev, - struct qed_filter_mcast *p_filter_cmd, - enum spq_mode comp_mode, - struct qed_spq_comp_cb *p_comp_data) +static int qed_filter_mcast_cmd(struct qed_dev *cdev, + struct qed_filter_mcast *p_filter_cmd, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data) { int rc = 0; int i; @@ -1221,8 +1276,10 @@ qed_filter_mcast_cmd(struct qed_dev *cdev, u16 opaque_fid; - if (rc != 0) - break; + if (IS_VF(cdev)) { + qed_vf_pf_filter_mcast(p_hwfn, p_filter_cmd); + continue; + } opaque_fid = p_hwfn->hw_info.opaque_fid; @@ -1247,8 +1304,10 @@ static int qed_filter_ucast_cmd(struct qed_dev *cdev, struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; u16 opaque_fid; - if (rc != 0) - break; + if (IS_VF(cdev)) { + rc = qed_vf_pf_filter_ucast(p_hwfn, p_filter_cmd); + continue; + } opaque_fid = p_hwfn->hw_info.opaque_fid; @@ -1257,6 +1316,8 @@ static int qed_filter_ucast_cmd(struct qed_dev *cdev, p_filter_cmd, comp_mode, p_comp_data); + if (rc != 0) + break; } return rc; @@ -1265,12 +1326,19 @@ static int qed_filter_ucast_cmd(struct qed_dev *cdev, /* Statistics related code */ static void __qed_get_vport_pstats_addrlen(struct qed_hwfn *p_hwfn, u32 *p_addr, - u32 *p_len, - u16 statistics_bin) + u32 *p_len, u16 statistics_bin) { - *p_addr = BAR0_MAP_REG_PSDM_RAM + - PSTORM_QUEUE_STAT_OFFSET(statistics_bin); - *p_len = sizeof(struct eth_pstorm_per_queue_stat); + if (IS_PF(p_hwfn->cdev)) { + *p_addr = BAR0_MAP_REG_PSDM_RAM + + PSTORM_QUEUE_STAT_OFFSET(statistics_bin); + *p_len = sizeof(struct eth_pstorm_per_queue_stat); + } else { + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_acquire_resp_tlv *p_resp = &p_iov->acquire_resp; + + *p_addr = p_resp->pfdev_info.stats_info.pstats.address; + *p_len = p_resp->pfdev_info.stats_info.pstats.len; + } } static void __qed_get_vport_pstats(struct qed_hwfn *p_hwfn, @@ -1285,32 +1353,15 @@ static void __qed_get_vport_pstats(struct qed_hwfn *p_hwfn, statistics_bin); memset(&pstats, 0, sizeof(pstats)); - qed_memcpy_from(p_hwfn, p_ptt, &pstats, - pstats_addr, pstats_len); - - p_stats->tx_ucast_bytes += - HILO_64_REGPAIR(pstats.sent_ucast_bytes); - p_stats->tx_mcast_bytes += - HILO_64_REGPAIR(pstats.sent_mcast_bytes); - p_stats->tx_bcast_bytes += - HILO_64_REGPAIR(pstats.sent_bcast_bytes); - p_stats->tx_ucast_pkts += - HILO_64_REGPAIR(pstats.sent_ucast_pkts); - p_stats->tx_mcast_pkts += - HILO_64_REGPAIR(pstats.sent_mcast_pkts); - p_stats->tx_bcast_pkts += - HILO_64_REGPAIR(pstats.sent_bcast_pkts); - p_stats->tx_err_drop_pkts += - HILO_64_REGPAIR(pstats.error_drop_pkts); -} - -static void __qed_get_vport_tstats_addrlen(struct qed_hwfn *p_hwfn, - u32 *p_addr, - u32 *p_len) -{ - *p_addr = BAR0_MAP_REG_TSDM_RAM + - TSTORM_PORT_STAT_OFFSET(MFW_PORT(p_hwfn)); - *p_len = sizeof(struct tstorm_per_port_stat); + qed_memcpy_from(p_hwfn, p_ptt, &pstats, pstats_addr, pstats_len); + + p_stats->tx_ucast_bytes += HILO_64_REGPAIR(pstats.sent_ucast_bytes); + p_stats->tx_mcast_bytes += HILO_64_REGPAIR(pstats.sent_mcast_bytes); + p_stats->tx_bcast_bytes += HILO_64_REGPAIR(pstats.sent_bcast_bytes); + p_stats->tx_ucast_pkts += HILO_64_REGPAIR(pstats.sent_ucast_pkts); + p_stats->tx_mcast_pkts += HILO_64_REGPAIR(pstats.sent_mcast_pkts); + p_stats->tx_bcast_pkts += HILO_64_REGPAIR(pstats.sent_bcast_pkts); + p_stats->tx_err_drop_pkts += HILO_64_REGPAIR(pstats.error_drop_pkts); } static void __qed_get_vport_tstats(struct qed_hwfn *p_hwfn, @@ -1318,14 +1369,23 @@ static void __qed_get_vport_tstats(struct qed_hwfn *p_hwfn, struct qed_eth_stats *p_stats, u16 statistics_bin) { - u32 tstats_addr = 0, tstats_len = 0; struct tstorm_per_port_stat tstats; + u32 tstats_addr, tstats_len; - __qed_get_vport_tstats_addrlen(p_hwfn, &tstats_addr, &tstats_len); + if (IS_PF(p_hwfn->cdev)) { + tstats_addr = BAR0_MAP_REG_TSDM_RAM + + TSTORM_PORT_STAT_OFFSET(MFW_PORT(p_hwfn)); + tstats_len = sizeof(struct tstorm_per_port_stat); + } else { + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_acquire_resp_tlv *p_resp = &p_iov->acquire_resp; + + tstats_addr = p_resp->pfdev_info.stats_info.tstats.address; + tstats_len = p_resp->pfdev_info.stats_info.tstats.len; + } memset(&tstats, 0, sizeof(tstats)); - qed_memcpy_from(p_hwfn, p_ptt, &tstats, - tstats_addr, tstats_len); + qed_memcpy_from(p_hwfn, p_ptt, &tstats, tstats_addr, tstats_len); p_stats->mftag_filter_discards += HILO_64_REGPAIR(tstats.mftag_filter_discard); @@ -1335,12 +1395,19 @@ static void __qed_get_vport_tstats(struct qed_hwfn *p_hwfn, static void __qed_get_vport_ustats_addrlen(struct qed_hwfn *p_hwfn, u32 *p_addr, - u32 *p_len, - u16 statistics_bin) + u32 *p_len, u16 statistics_bin) { - *p_addr = BAR0_MAP_REG_USDM_RAM + - USTORM_QUEUE_STAT_OFFSET(statistics_bin); - *p_len = sizeof(struct eth_ustorm_per_queue_stat); + if (IS_PF(p_hwfn->cdev)) { + *p_addr = BAR0_MAP_REG_USDM_RAM + + USTORM_QUEUE_STAT_OFFSET(statistics_bin); + *p_len = sizeof(struct eth_ustorm_per_queue_stat); + } else { + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_acquire_resp_tlv *p_resp = &p_iov->acquire_resp; + + *p_addr = p_resp->pfdev_info.stats_info.ustats.address; + *p_len = p_resp->pfdev_info.stats_info.ustats.len; + } } static void __qed_get_vport_ustats(struct qed_hwfn *p_hwfn, @@ -1355,31 +1422,31 @@ static void __qed_get_vport_ustats(struct qed_hwfn *p_hwfn, statistics_bin); memset(&ustats, 0, sizeof(ustats)); - qed_memcpy_from(p_hwfn, p_ptt, &ustats, - ustats_addr, ustats_len); - - p_stats->rx_ucast_bytes += - HILO_64_REGPAIR(ustats.rcv_ucast_bytes); - p_stats->rx_mcast_bytes += - HILO_64_REGPAIR(ustats.rcv_mcast_bytes); - p_stats->rx_bcast_bytes += - HILO_64_REGPAIR(ustats.rcv_bcast_bytes); - p_stats->rx_ucast_pkts += - HILO_64_REGPAIR(ustats.rcv_ucast_pkts); - p_stats->rx_mcast_pkts += - HILO_64_REGPAIR(ustats.rcv_mcast_pkts); - p_stats->rx_bcast_pkts += - HILO_64_REGPAIR(ustats.rcv_bcast_pkts); + qed_memcpy_from(p_hwfn, p_ptt, &ustats, ustats_addr, ustats_len); + + p_stats->rx_ucast_bytes += HILO_64_REGPAIR(ustats.rcv_ucast_bytes); + p_stats->rx_mcast_bytes += HILO_64_REGPAIR(ustats.rcv_mcast_bytes); + p_stats->rx_bcast_bytes += HILO_64_REGPAIR(ustats.rcv_bcast_bytes); + p_stats->rx_ucast_pkts += HILO_64_REGPAIR(ustats.rcv_ucast_pkts); + p_stats->rx_mcast_pkts += HILO_64_REGPAIR(ustats.rcv_mcast_pkts); + p_stats->rx_bcast_pkts += HILO_64_REGPAIR(ustats.rcv_bcast_pkts); } static void __qed_get_vport_mstats_addrlen(struct qed_hwfn *p_hwfn, u32 *p_addr, - u32 *p_len, - u16 statistics_bin) + u32 *p_len, u16 statistics_bin) { - *p_addr = BAR0_MAP_REG_MSDM_RAM + - MSTORM_QUEUE_STAT_OFFSET(statistics_bin); - *p_len = sizeof(struct eth_mstorm_per_queue_stat); + if (IS_PF(p_hwfn->cdev)) { + *p_addr = BAR0_MAP_REG_MSDM_RAM + + MSTORM_QUEUE_STAT_OFFSET(statistics_bin); + *p_len = sizeof(struct eth_mstorm_per_queue_stat); + } else { + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_acquire_resp_tlv *p_resp = &p_iov->acquire_resp; + + *p_addr = p_resp->pfdev_info.stats_info.mstats.address; + *p_len = p_resp->pfdev_info.stats_info.mstats.len; + } } static void __qed_get_vport_mstats(struct qed_hwfn *p_hwfn, @@ -1394,21 +1461,17 @@ static void __qed_get_vport_mstats(struct qed_hwfn *p_hwfn, statistics_bin); memset(&mstats, 0, sizeof(mstats)); - qed_memcpy_from(p_hwfn, p_ptt, &mstats, - mstats_addr, mstats_len); + qed_memcpy_from(p_hwfn, p_ptt, &mstats, mstats_addr, mstats_len); - p_stats->no_buff_discards += - HILO_64_REGPAIR(mstats.no_buff_discard); + p_stats->no_buff_discards += HILO_64_REGPAIR(mstats.no_buff_discard); p_stats->packet_too_big_discard += HILO_64_REGPAIR(mstats.packet_too_big_discard); - p_stats->ttl0_discard += - HILO_64_REGPAIR(mstats.ttl0_discard); + p_stats->ttl0_discard += HILO_64_REGPAIR(mstats.ttl0_discard); p_stats->tpa_coalesced_pkts += HILO_64_REGPAIR(mstats.tpa_coalesced_pkts); p_stats->tpa_coalesced_events += HILO_64_REGPAIR(mstats.tpa_coalesced_events); - p_stats->tpa_aborts_num += - HILO_64_REGPAIR(mstats.tpa_aborts_num); + p_stats->tpa_aborts_num += HILO_64_REGPAIR(mstats.tpa_aborts_num); p_stats->tpa_coalesced_bytes += HILO_64_REGPAIR(mstats.tpa_coalesced_bytes); } @@ -1427,51 +1490,51 @@ static void __qed_get_vport_port_stats(struct qed_hwfn *p_hwfn, offsetof(struct public_port, stats), sizeof(port_stats)); - p_stats->rx_64_byte_packets += port_stats.pmm.r64; - p_stats->rx_127_byte_packets += port_stats.pmm.r127; - p_stats->rx_255_byte_packets += port_stats.pmm.r255; - p_stats->rx_511_byte_packets += port_stats.pmm.r511; - p_stats->rx_1023_byte_packets += port_stats.pmm.r1023; - p_stats->rx_1518_byte_packets += port_stats.pmm.r1518; - p_stats->rx_1522_byte_packets += port_stats.pmm.r1522; - p_stats->rx_2047_byte_packets += port_stats.pmm.r2047; - p_stats->rx_4095_byte_packets += port_stats.pmm.r4095; - p_stats->rx_9216_byte_packets += port_stats.pmm.r9216; - p_stats->rx_16383_byte_packets += port_stats.pmm.r16383; - p_stats->rx_crc_errors += port_stats.pmm.rfcs; - p_stats->rx_mac_crtl_frames += port_stats.pmm.rxcf; - p_stats->rx_pause_frames += port_stats.pmm.rxpf; - p_stats->rx_pfc_frames += port_stats.pmm.rxpp; - p_stats->rx_align_errors += port_stats.pmm.raln; - p_stats->rx_carrier_errors += port_stats.pmm.rfcr; - p_stats->rx_oversize_packets += port_stats.pmm.rovr; - p_stats->rx_jabbers += port_stats.pmm.rjbr; - p_stats->rx_undersize_packets += port_stats.pmm.rund; - p_stats->rx_fragments += port_stats.pmm.rfrg; - p_stats->tx_64_byte_packets += port_stats.pmm.t64; - p_stats->tx_65_to_127_byte_packets += port_stats.pmm.t127; - p_stats->tx_128_to_255_byte_packets += port_stats.pmm.t255; - p_stats->tx_256_to_511_byte_packets += port_stats.pmm.t511; - p_stats->tx_512_to_1023_byte_packets += port_stats.pmm.t1023; - p_stats->tx_1024_to_1518_byte_packets += port_stats.pmm.t1518; - p_stats->tx_1519_to_2047_byte_packets += port_stats.pmm.t2047; - p_stats->tx_2048_to_4095_byte_packets += port_stats.pmm.t4095; - p_stats->tx_4096_to_9216_byte_packets += port_stats.pmm.t9216; - p_stats->tx_9217_to_16383_byte_packets += port_stats.pmm.t16383; - p_stats->tx_pause_frames += port_stats.pmm.txpf; - p_stats->tx_pfc_frames += port_stats.pmm.txpp; - p_stats->tx_lpi_entry_count += port_stats.pmm.tlpiec; - p_stats->tx_total_collisions += port_stats.pmm.tncl; - p_stats->rx_mac_bytes += port_stats.pmm.rbyte; - p_stats->rx_mac_uc_packets += port_stats.pmm.rxuca; - p_stats->rx_mac_mc_packets += port_stats.pmm.rxmca; - p_stats->rx_mac_bc_packets += port_stats.pmm.rxbca; - p_stats->rx_mac_frames_ok += port_stats.pmm.rxpok; - p_stats->tx_mac_bytes += port_stats.pmm.tbyte; - p_stats->tx_mac_uc_packets += port_stats.pmm.txuca; - p_stats->tx_mac_mc_packets += port_stats.pmm.txmca; - p_stats->tx_mac_bc_packets += port_stats.pmm.txbca; - p_stats->tx_mac_ctrl_frames += port_stats.pmm.txcf; + p_stats->rx_64_byte_packets += port_stats.eth.r64; + p_stats->rx_65_to_127_byte_packets += port_stats.eth.r127; + p_stats->rx_128_to_255_byte_packets += port_stats.eth.r255; + p_stats->rx_256_to_511_byte_packets += port_stats.eth.r511; + p_stats->rx_512_to_1023_byte_packets += port_stats.eth.r1023; + p_stats->rx_1024_to_1518_byte_packets += port_stats.eth.r1518; + p_stats->rx_1519_to_1522_byte_packets += port_stats.eth.r1522; + p_stats->rx_1519_to_2047_byte_packets += port_stats.eth.r2047; + p_stats->rx_2048_to_4095_byte_packets += port_stats.eth.r4095; + p_stats->rx_4096_to_9216_byte_packets += port_stats.eth.r9216; + p_stats->rx_9217_to_16383_byte_packets += port_stats.eth.r16383; + p_stats->rx_crc_errors += port_stats.eth.rfcs; + p_stats->rx_mac_crtl_frames += port_stats.eth.rxcf; + p_stats->rx_pause_frames += port_stats.eth.rxpf; + p_stats->rx_pfc_frames += port_stats.eth.rxpp; + p_stats->rx_align_errors += port_stats.eth.raln; + p_stats->rx_carrier_errors += port_stats.eth.rfcr; + p_stats->rx_oversize_packets += port_stats.eth.rovr; + p_stats->rx_jabbers += port_stats.eth.rjbr; + p_stats->rx_undersize_packets += port_stats.eth.rund; + p_stats->rx_fragments += port_stats.eth.rfrg; + p_stats->tx_64_byte_packets += port_stats.eth.t64; + p_stats->tx_65_to_127_byte_packets += port_stats.eth.t127; + p_stats->tx_128_to_255_byte_packets += port_stats.eth.t255; + p_stats->tx_256_to_511_byte_packets += port_stats.eth.t511; + p_stats->tx_512_to_1023_byte_packets += port_stats.eth.t1023; + p_stats->tx_1024_to_1518_byte_packets += port_stats.eth.t1518; + p_stats->tx_1519_to_2047_byte_packets += port_stats.eth.t2047; + p_stats->tx_2048_to_4095_byte_packets += port_stats.eth.t4095; + p_stats->tx_4096_to_9216_byte_packets += port_stats.eth.t9216; + p_stats->tx_9217_to_16383_byte_packets += port_stats.eth.t16383; + p_stats->tx_pause_frames += port_stats.eth.txpf; + p_stats->tx_pfc_frames += port_stats.eth.txpp; + p_stats->tx_lpi_entry_count += port_stats.eth.tlpiec; + p_stats->tx_total_collisions += port_stats.eth.tncl; + p_stats->rx_mac_bytes += port_stats.eth.rbyte; + p_stats->rx_mac_uc_packets += port_stats.eth.rxuca; + p_stats->rx_mac_mc_packets += port_stats.eth.rxmca; + p_stats->rx_mac_bc_packets += port_stats.eth.rxbca; + p_stats->rx_mac_frames_ok += port_stats.eth.rxpok; + p_stats->tx_mac_bytes += port_stats.eth.tbyte; + p_stats->tx_mac_uc_packets += port_stats.eth.txuca; + p_stats->tx_mac_mc_packets += port_stats.eth.txmca; + p_stats->tx_mac_bc_packets += port_stats.eth.txbca; + p_stats->tx_mac_ctrl_frames += port_stats.eth.txcf; for (j = 0; j < 8; j++) { p_stats->brb_truncates += port_stats.brb.brb_truncate[j]; p_stats->brb_discards += port_stats.brb.brb_discard[j]; @@ -1481,44 +1544,49 @@ static void __qed_get_vport_port_stats(struct qed_hwfn *p_hwfn, static void __qed_get_vport_stats(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, struct qed_eth_stats *stats, - u16 statistics_bin) + u16 statistics_bin, bool b_get_port_stats) { __qed_get_vport_mstats(p_hwfn, p_ptt, stats, statistics_bin); __qed_get_vport_ustats(p_hwfn, p_ptt, stats, statistics_bin); __qed_get_vport_tstats(p_hwfn, p_ptt, stats, statistics_bin); __qed_get_vport_pstats(p_hwfn, p_ptt, stats, statistics_bin); - if (p_hwfn->mcp_info) + if (b_get_port_stats && p_hwfn->mcp_info) __qed_get_vport_port_stats(p_hwfn, p_ptt, stats); } static void _qed_get_vport_stats(struct qed_dev *cdev, struct qed_eth_stats *stats) { - u8 fw_vport = 0; - int i; + u8 fw_vport = 0; + int i; memset(stats, 0, sizeof(*stats)); for_each_hwfn(cdev, i) { struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; - struct qed_ptt *p_ptt; - - /* The main vport index is relative first */ - if (qed_fw_vport(p_hwfn, 0, &fw_vport)) { - DP_ERR(p_hwfn, "No vport available!\n"); - continue; + struct qed_ptt *p_ptt = IS_PF(cdev) ? qed_ptt_acquire(p_hwfn) + : NULL; + + if (IS_PF(cdev)) { + /* The main vport index is relative first */ + if (qed_fw_vport(p_hwfn, 0, &fw_vport)) { + DP_ERR(p_hwfn, "No vport available!\n"); + goto out; + } } - p_ptt = qed_ptt_acquire(p_hwfn); - if (!p_ptt) { + if (IS_PF(cdev) && !p_ptt) { DP_ERR(p_hwfn, "Failed to acquire ptt\n"); continue; } - __qed_get_vport_stats(p_hwfn, p_ptt, stats, fw_vport); + __qed_get_vport_stats(p_hwfn, p_ptt, stats, fw_vport, + IS_PF(cdev) ? true : false); - qed_ptt_release(p_hwfn, p_ptt); +out: + if (IS_PF(cdev) && p_ptt) + qed_ptt_release(p_hwfn, p_ptt); } } @@ -1552,10 +1620,11 @@ void qed_reset_vport_stats(struct qed_dev *cdev) struct eth_mstorm_per_queue_stat mstats; struct eth_ustorm_per_queue_stat ustats; struct eth_pstorm_per_queue_stat pstats; - struct qed_ptt *p_ptt = qed_ptt_acquire(p_hwfn); + struct qed_ptt *p_ptt = IS_PF(cdev) ? qed_ptt_acquire(p_hwfn) + : NULL; u32 addr = 0, len = 0; - if (!p_ptt) { + if (IS_PF(cdev) && !p_ptt) { DP_ERR(p_hwfn, "Failed to acquire ptt\n"); continue; } @@ -1572,7 +1641,8 @@ void qed_reset_vport_stats(struct qed_dev *cdev) __qed_get_vport_pstats_addrlen(p_hwfn, &addr, &len, 0); qed_memcpy_to(p_hwfn, p_ptt, addr, &pstats, len); - qed_ptt_release(p_hwfn, p_ptt); + if (IS_PF(cdev)) + qed_ptt_release(p_hwfn, p_ptt); } /* PORT statistics are not necessarily reset, so we need to @@ -1593,32 +1663,68 @@ static int qed_fill_eth_dev_info(struct qed_dev *cdev, info->num_tc = 1; - if (cdev->int_params.out.int_mode == QED_INT_MODE_MSIX) { - for_each_hwfn(cdev, i) - info->num_queues += FEAT_NUM(&cdev->hwfns[i], - QED_PF_L2_QUE); - if (cdev->int_params.fp_msix_cnt) - info->num_queues = min_t(u8, info->num_queues, - cdev->int_params.fp_msix_cnt); + if (IS_PF(cdev)) { + int max_vf_vlan_filters = 0; + + if (cdev->int_params.out.int_mode == QED_INT_MODE_MSIX) { + for_each_hwfn(cdev, i) + info->num_queues += + FEAT_NUM(&cdev->hwfns[i], QED_PF_L2_QUE); + if (cdev->int_params.fp_msix_cnt) + info->num_queues = + min_t(u8, info->num_queues, + cdev->int_params.fp_msix_cnt); + } else { + info->num_queues = cdev->num_hwfns; + } + + if (IS_QED_SRIOV(cdev)) + max_vf_vlan_filters = cdev->p_iov_info->total_vfs * + QED_ETH_VF_NUM_VLAN_FILTERS; + info->num_vlan_filters = RESC_NUM(&cdev->hwfns[0], QED_VLAN) - + max_vf_vlan_filters; + + ether_addr_copy(info->port_mac, + cdev->hwfns[0].hw_info.hw_mac_addr); } else { - info->num_queues = cdev->num_hwfns; - } + qed_vf_get_num_rxqs(QED_LEADING_HWFN(cdev), &info->num_queues); + if (cdev->num_hwfns > 1) { + u8 queues = 0; + + qed_vf_get_num_rxqs(&cdev->hwfns[1], &queues); + info->num_queues += queues; + } - info->num_vlan_filters = RESC_NUM(&cdev->hwfns[0], QED_VLAN); - ether_addr_copy(info->port_mac, - cdev->hwfns[0].hw_info.hw_mac_addr); + qed_vf_get_num_vlan_filters(&cdev->hwfns[0], + &info->num_vlan_filters); + qed_vf_get_port_mac(&cdev->hwfns[0], info->port_mac); + } qed_fill_dev_info(cdev, &info->common); + if (IS_VF(cdev)) + memset(info->common.hw_mac, 0, ETH_ALEN); + return 0; } static void qed_register_eth_ops(struct qed_dev *cdev, - struct qed_eth_cb_ops *ops, - void *cookie) + struct qed_eth_cb_ops *ops, void *cookie) { - cdev->protocol_ops.eth = ops; - cdev->ops_cookie = cookie; + cdev->protocol_ops.eth = ops; + cdev->ops_cookie = cookie; + + /* For VF, we start bulletin reading */ + if (IS_VF(cdev)) + qed_vf_start_iov_wq(cdev); +} + +static bool qed_check_mac(struct qed_dev *cdev, u8 *mac) +{ + if (IS_PF(cdev)) + return true; + + return qed_vf_check_mac(&cdev->hwfns[0], mac); } static int qed_start_vport(struct qed_dev *cdev, @@ -1633,6 +1739,7 @@ static int qed_start_vport(struct qed_dev *cdev, start.tpa_mode = params->gro_enable ? QED_TPA_MODE_GRO : QED_TPA_MODE_NONE; start.remove_inner_vlan = params->remove_inner_vlan; + start.only_untagged = true; /* untagged only */ start.drop_ttl0 = params->drop_ttl0; start.opaque_fid = p_hwfn->hw_info.opaque_fid; start.concrete_fid = p_hwfn->hw_info.concrete_fid; @@ -1653,7 +1760,8 @@ static int qed_start_vport(struct qed_dev *cdev, start.vport_id, start.mtu); } - qed_reset_vport_stats(cdev); + if (params->clear_stats) + qed_reset_vport_stats(cdev); return 0; } @@ -1699,6 +1807,8 @@ static int qed_update_vport(struct qed_dev *cdev, params->update_vport_active_flg; sp_params.vport_active_rx_flg = params->vport_active_flg; sp_params.vport_active_tx_flg = params->vport_active_flg; + sp_params.update_tx_switching_flg = params->update_tx_switching_flg; + sp_params.tx_switching_flg = params->tx_switching_flg; sp_params.accept_any_vlan = params->accept_any_vlan; sp_params.update_accept_any_vlan_flg = params->update_accept_any_vlan_flg; @@ -1744,9 +1854,7 @@ static int qed_update_vport(struct qed_dev *cdev, sp_rss_params.update_rss_capabilities = 1; sp_rss_params.update_rss_ind_table = 1; sp_rss_params.update_rss_key = 1; - sp_rss_params.rss_caps = QED_RSS_IPV4 | - QED_RSS_IPV6 | - QED_RSS_IPV4_TCP | QED_RSS_IPV6_TCP; + sp_rss_params.rss_caps = params->rss_params.rss_caps; sp_rss_params.rss_table_size_log = 7; /* 2^7 = 128 */ memcpy(sp_rss_params.rss_ind_table, params->rss_params.rss_ind_table, @@ -1899,6 +2007,39 @@ static int qed_stop_txq(struct qed_dev *cdev, return 0; } +static int qed_tunn_configure(struct qed_dev *cdev, + struct qed_tunn_params *tunn_params) +{ + struct qed_tunn_update_params tunn_info; + int i, rc; + + if (IS_VF(cdev)) + return 0; + + memset(&tunn_info, 0, sizeof(tunn_info)); + if (tunn_params->update_vxlan_port == 1) { + tunn_info.update_vxlan_udp_port = 1; + tunn_info.vxlan_udp_port = tunn_params->vxlan_port; + } + + if (tunn_params->update_geneve_port == 1) { + tunn_info.update_geneve_udp_port = 1; + tunn_info.geneve_udp_port = tunn_params->geneve_port; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *hwfn = &cdev->hwfns[i]; + + rc = qed_sp_pf_update_tunn_cfg(hwfn, &tunn_info, + QED_SPQ_MODE_EBLOCK, NULL); + + if (rc) + return rc; + } + + return 0; +} + static int qed_configure_filter_rx_mode(struct qed_dev *cdev, enum qed_filter_rx_mode_type type) { @@ -2026,10 +2167,25 @@ static int qed_fp_cqe_completion(struct qed_dev *dev, cqe); } +#ifdef CONFIG_QED_SRIOV +extern const struct qed_iov_hv_ops qed_iov_ops_pass; +#endif + +#ifdef CONFIG_DCB +extern const struct qed_eth_dcbnl_ops qed_dcbnl_ops_pass; +#endif + static const struct qed_eth_ops qed_eth_ops_pass = { .common = &qed_common_ops_pass, +#ifdef CONFIG_QED_SRIOV + .iov = &qed_iov_ops_pass, +#endif +#ifdef CONFIG_DCB + .dcb = &qed_dcbnl_ops_pass, +#endif .fill_dev_info = &qed_fill_eth_dev_info, .register_ops = &qed_register_eth_ops, + .check_mac = &qed_check_mac, .vport_start = &qed_start_vport, .vport_stop = &qed_stop_vport, .vport_update = &qed_update_vport, @@ -2041,16 +2197,11 @@ static const struct qed_eth_ops qed_eth_ops_pass = { .fastpath_stop = &qed_fastpath_stop, .eth_cqe_completion = &qed_fp_cqe_completion, .get_vport_stats = &qed_get_vport_stats, + .tunn_config = &qed_tunn_configure, }; -const struct qed_eth_ops *qed_get_eth_ops(u32 version) +const struct qed_eth_ops *qed_get_eth_ops(void) { - if (version != QED_ETH_INTERFACE_VERSION) { - pr_notice("Cannot supply ethtool operations [%08x != %08x]\n", - version, QED_ETH_INTERFACE_VERSION); - return NULL; - } - return &qed_eth_ops_pass; } EXPORT_SYMBOL(qed_get_eth_ops); diff --git a/drivers/net/ethernet/qlogic/qed/qed_l2.h b/drivers/net/ethernet/qlogic/qed/qed_l2.h new file mode 100644 index 000000000000..002114543451 --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_l2.h @@ -0,0 +1,239 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ +#ifndef _QED_L2_H +#define _QED_L2_H +#include <linux/types.h> +#include <linux/io.h> +#include <linux/kernel.h> +#include <linux/slab.h> +#include <linux/qed/qed_eth_if.h> +#include "qed.h" +#include "qed_hw.h" +#include "qed_sp.h" + +struct qed_sge_tpa_params { + u8 max_buffers_per_cqe; + + u8 update_tpa_en_flg; + u8 tpa_ipv4_en_flg; + u8 tpa_ipv6_en_flg; + u8 tpa_ipv4_tunn_en_flg; + u8 tpa_ipv6_tunn_en_flg; + + u8 update_tpa_param_flg; + u8 tpa_pkt_split_flg; + u8 tpa_hdr_data_split_flg; + u8 tpa_gro_consistent_flg; + u8 tpa_max_aggs_num; + u16 tpa_max_size; + u16 tpa_min_size_to_start; + u16 tpa_min_size_to_cont; +}; + +enum qed_filter_opcode { + QED_FILTER_ADD, + QED_FILTER_REMOVE, + QED_FILTER_MOVE, + QED_FILTER_REPLACE, /* Delete all MACs and add new one instead */ + QED_FILTER_FLUSH, /* Removes all filters */ +}; + +enum qed_filter_ucast_type { + QED_FILTER_MAC, + QED_FILTER_VLAN, + QED_FILTER_MAC_VLAN, + QED_FILTER_INNER_MAC, + QED_FILTER_INNER_VLAN, + QED_FILTER_INNER_PAIR, + QED_FILTER_INNER_MAC_VNI_PAIR, + QED_FILTER_MAC_VNI_PAIR, + QED_FILTER_VNI, +}; + +struct qed_filter_ucast { + enum qed_filter_opcode opcode; + enum qed_filter_ucast_type type; + u8 is_rx_filter; + u8 is_tx_filter; + u8 vport_to_add_to; + u8 vport_to_remove_from; + unsigned char mac[ETH_ALEN]; + u8 assert_on_error; + u16 vlan; + u32 vni; +}; + +struct qed_filter_mcast { + /* MOVE is not supported for multicast */ + enum qed_filter_opcode opcode; + u8 vport_to_add_to; + u8 vport_to_remove_from; + u8 num_mc_addrs; +#define QED_MAX_MC_ADDRS 64 + unsigned char mac[QED_MAX_MC_ADDRS][ETH_ALEN]; +}; + +int qed_sp_eth_rx_queue_stop(struct qed_hwfn *p_hwfn, + u16 rx_queue_id, + bool eq_completion_only, bool cqe_completion); + +int qed_sp_eth_tx_queue_stop(struct qed_hwfn *p_hwfn, u16 tx_queue_id); + +enum qed_tpa_mode { + QED_TPA_MODE_NONE, + QED_TPA_MODE_UNUSED, + QED_TPA_MODE_GRO, + QED_TPA_MODE_MAX +}; + +struct qed_sp_vport_start_params { + enum qed_tpa_mode tpa_mode; + bool remove_inner_vlan; + bool tx_switching; + bool only_untagged; + bool drop_ttl0; + u8 max_buffers_per_cqe; + u32 concrete_fid; + u16 opaque_fid; + u8 vport_id; + u16 mtu; +}; + +int qed_sp_eth_vport_start(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_start_params *p_params); + +struct qed_rss_params { + u8 update_rss_config; + u8 rss_enable; + u8 rss_eng_id; + u8 update_rss_capabilities; + u8 update_rss_ind_table; + u8 update_rss_key; + u8 rss_caps; + u8 rss_table_size_log; + u16 rss_ind_table[QED_RSS_IND_TABLE_SIZE]; + u32 rss_key[QED_RSS_KEY_SIZE]; +}; + +struct qed_filter_accept_flags { + u8 update_rx_mode_config; + u8 update_tx_mode_config; + u8 rx_accept_filter; + u8 tx_accept_filter; +#define QED_ACCEPT_NONE 0x01 +#define QED_ACCEPT_UCAST_MATCHED 0x02 +#define QED_ACCEPT_UCAST_UNMATCHED 0x04 +#define QED_ACCEPT_MCAST_MATCHED 0x08 +#define QED_ACCEPT_MCAST_UNMATCHED 0x10 +#define QED_ACCEPT_BCAST 0x20 +}; + +struct qed_sp_vport_update_params { + u16 opaque_fid; + u8 vport_id; + u8 update_vport_active_rx_flg; + u8 vport_active_rx_flg; + u8 update_vport_active_tx_flg; + u8 vport_active_tx_flg; + u8 update_inner_vlan_removal_flg; + u8 inner_vlan_removal_flg; + u8 silent_vlan_removal_flg; + u8 update_default_vlan_enable_flg; + u8 default_vlan_enable_flg; + u8 update_default_vlan_flg; + u16 default_vlan; + u8 update_tx_switching_flg; + u8 tx_switching_flg; + u8 update_approx_mcast_flg; + u8 update_anti_spoofing_en_flg; + u8 anti_spoofing_en; + u8 update_accept_any_vlan_flg; + u8 accept_any_vlan; + unsigned long bins[8]; + struct qed_rss_params *rss_params; + struct qed_filter_accept_flags accept_flags; + struct qed_sge_tpa_params *sge_tpa_params; +}; + +int qed_sp_vport_update(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_params, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data); + +/** + * @brief qed_sp_vport_stop - + * + * This ramrod closes a VPort after all its RX and TX queues are terminated. + * An Assert is generated if any queues are left open. + * + * @param p_hwfn + * @param opaque_fid + * @param vport_id VPort ID + * + * @return int + */ +int qed_sp_vport_stop(struct qed_hwfn *p_hwfn, u16 opaque_fid, u8 vport_id); + +int qed_sp_eth_filter_ucast(struct qed_hwfn *p_hwfn, + u16 opaque_fid, + struct qed_filter_ucast *p_filter_cmd, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data); + +/** + * @brief qed_sp_rx_eth_queues_update - + * + * This ramrod updates an RX queue. It is used for setting the active state + * of the queue and updating the TPA and SGE parameters. + * + * @note At the moment - only used by non-linux VFs. + * + * @param p_hwfn + * @param rx_queue_id RX Queue ID + * @param num_rxqs Allow to update multiple rx + * queues, from rx_queue_id to + * (rx_queue_id + num_rxqs) + * @param complete_cqe_flg Post completion to the CQE Ring if set + * @param complete_event_flg Post completion to the Event Ring if set + * + * @return int + */ + +int +qed_sp_eth_rx_queues_update(struct qed_hwfn *p_hwfn, + u16 rx_queue_id, + u8 num_rxqs, + u8 complete_cqe_flg, + u8 complete_event_flg, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data); + +int qed_sp_eth_vport_start(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_start_params *p_params); + +int qed_sp_eth_rxq_start_ramrod(struct qed_hwfn *p_hwfn, + u16 opaque_fid, + u32 cid, + struct qed_queue_start_common_params *params, + u8 stats_id, + u16 bd_max_bytes, + dma_addr_t bd_chain_phys_addr, + dma_addr_t cqe_pbl_addr, u16 cqe_pbl_size); + +int qed_sp_eth_txq_start_ramrod(struct qed_hwfn *p_hwfn, + u16 opaque_fid, + u32 cid, + struct qed_queue_start_common_params *p_params, + u8 stats_id, + dma_addr_t pbl_addr, + u16 pbl_size, + union qed_qm_pq_params *p_pq_params); + +u8 qed_mcast_bin_from_mac(u8 *mac); + +#endif /* _QED_L2_H */ diff --git a/drivers/net/ethernet/qlogic/qed/qed_main.c b/drivers/net/ethernet/qlogic/qed/qed_main.c index 26d40db07ddd..c7dc34bfdd0a 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_main.c +++ b/drivers/net/ethernet/qlogic/qed/qed_main.c @@ -24,10 +24,12 @@ #include <linux/qed/qed_if.h> #include "qed.h" +#include "qed_sriov.h" #include "qed_sp.h" #include "qed_dev_api.h" #include "qed_mcp.h" #include "qed_hw.h" +#include "qed_selftest.h" static char version[] = "QLogic FastLinQ 4xxxx Core Module qed " DRV_MODULE_VERSION "\n"; @@ -124,7 +126,7 @@ static int qed_init_pci(struct qed_dev *cdev, goto err1; } - if (!(pci_resource_flags(pdev, 2) & IORESOURCE_MEM)) { + if (IS_PF(cdev) && !(pci_resource_flags(pdev, 2) & IORESOURCE_MEM)) { DP_NOTICE(cdev, "No memory region found in bar #2\n"); rc = -EIO; goto err1; @@ -156,7 +158,7 @@ static int qed_init_pci(struct qed_dev *cdev, } cdev->pci_params.pm_cap = pci_find_capability(pdev, PCI_CAP_ID_PM); - if (cdev->pci_params.pm_cap == 0) + if (IS_PF(cdev) && !cdev->pci_params.pm_cap) DP_NOTICE(cdev, "Cannot find power management capability\n"); rc = qed_set_coherency_mask(cdev); @@ -174,12 +176,14 @@ static int qed_init_pci(struct qed_dev *cdev, goto err2; } - cdev->db_phys_addr = pci_resource_start(cdev->pdev, 2); - cdev->db_size = pci_resource_len(cdev->pdev, 2); - cdev->doorbells = ioremap_wc(cdev->db_phys_addr, cdev->db_size); - if (!cdev->doorbells) { - DP_NOTICE(cdev, "Cannot map doorbell space\n"); - return -ENOMEM; + if (IS_PF(cdev)) { + cdev->db_phys_addr = pci_resource_start(cdev->pdev, 2); + cdev->db_size = pci_resource_len(cdev->pdev, 2); + cdev->doorbells = ioremap_wc(cdev->db_phys_addr, cdev->db_size); + if (!cdev->doorbells) { + DP_NOTICE(cdev, "Cannot map doorbell space\n"); + return -ENOMEM; + } } return 0; @@ -203,23 +207,38 @@ int qed_fill_dev_info(struct qed_dev *cdev, dev_info->pci_mem_start = cdev->pci_params.mem_start; dev_info->pci_mem_end = cdev->pci_params.mem_end; dev_info->pci_irq = cdev->pci_params.irq; + dev_info->rdma_supported = + (cdev->hwfns[0].hw_info.personality == QED_PCI_ETH_ROCE); dev_info->is_mf_default = IS_MF_DEFAULT(&cdev->hwfns[0]); ether_addr_copy(dev_info->hw_mac, cdev->hwfns[0].hw_info.hw_mac_addr); - dev_info->fw_major = FW_MAJOR_VERSION; - dev_info->fw_minor = FW_MINOR_VERSION; - dev_info->fw_rev = FW_REVISION_VERSION; - dev_info->fw_eng = FW_ENGINEERING_VERSION; - dev_info->mf_mode = cdev->mf_mode; + if (IS_PF(cdev)) { + dev_info->fw_major = FW_MAJOR_VERSION; + dev_info->fw_minor = FW_MINOR_VERSION; + dev_info->fw_rev = FW_REVISION_VERSION; + dev_info->fw_eng = FW_ENGINEERING_VERSION; + dev_info->mf_mode = cdev->mf_mode; + dev_info->tx_switching = true; + } else { + qed_vf_get_fw_version(&cdev->hwfns[0], &dev_info->fw_major, + &dev_info->fw_minor, &dev_info->fw_rev, + &dev_info->fw_eng); + } - qed_mcp_get_mfw_ver(cdev, &dev_info->mfw_rev); + if (IS_PF(cdev)) { + ptt = qed_ptt_acquire(QED_LEADING_HWFN(cdev)); + if (ptt) { + qed_mcp_get_mfw_ver(QED_LEADING_HWFN(cdev), ptt, + &dev_info->mfw_rev, NULL); - ptt = qed_ptt_acquire(QED_LEADING_HWFN(cdev)); - if (ptt) { - qed_mcp_get_flash_size(QED_LEADING_HWFN(cdev), ptt, - &dev_info->flash_size); + qed_mcp_get_flash_size(QED_LEADING_HWFN(cdev), ptt, + &dev_info->flash_size); - qed_ptt_release(QED_LEADING_HWFN(cdev), ptt); + qed_ptt_release(QED_LEADING_HWFN(cdev), ptt); + } + } else { + qed_mcp_get_mfw_ver(QED_LEADING_HWFN(cdev), NULL, + &dev_info->mfw_rev, NULL); } return 0; @@ -256,9 +275,7 @@ static int qed_set_power_state(struct qed_dev *cdev, /* probing */ static struct qed_dev *qed_probe(struct pci_dev *pdev, - enum qed_protocol protocol, - u32 dp_module, - u8 dp_level) + struct qed_probe_params *params) { struct qed_dev *cdev; int rc; @@ -267,9 +284,12 @@ static struct qed_dev *qed_probe(struct pci_dev *pdev, if (!cdev) goto err0; - cdev->protocol = protocol; + cdev->protocol = params->protocol; + + if (params->is_vf) + cdev->b_is_vf = true; - qed_init_dp(cdev, dp_module, dp_level); + qed_init_dp(cdev, params->dp_module, params->dp_level); rc = qed_init_pci(cdev, pdev); if (rc) { @@ -395,15 +415,17 @@ static int qed_set_int_mode(struct qed_dev *cdev, bool force_mode) /* Fallthrough */ case QED_INT_MODE_MSI: - rc = pci_enable_msi(cdev->pdev); - if (!rc) { - int_params->out.int_mode = QED_INT_MODE_MSI; - goto out; - } + if (cdev->num_hwfns == 1) { + rc = pci_enable_msi(cdev->pdev); + if (!rc) { + int_params->out.int_mode = QED_INT_MODE_MSI; + goto out; + } - DP_NOTICE(cdev, "Failed to enable MSI\n"); - if (force_mode) - goto out; + DP_NOTICE(cdev, "Failed to enable MSI\n"); + if (force_mode) + goto out; + } /* Fallthrough */ case QED_INT_MODE_INTA: @@ -637,8 +659,13 @@ static int qed_slowpath_setup_int(struct qed_dev *cdev, struct qed_sb_cnt_info sb_cnt_info; int rc; int i; - memset(&cdev->int_params, 0, sizeof(struct qed_int_params)); + if ((int_mode == QED_INT_MODE_MSI) && (cdev->num_hwfns > 1)) { + DP_NOTICE(cdev, "MSI mode is not supported for CMT devices\n"); + return -EINVAL; + } + + memset(&cdev->int_params, 0, sizeof(struct qed_int_params)); cdev->int_params.in.int_mode = int_mode; for_each_hwfn(cdev, i) { memset(&sb_cnt_info, 0, sizeof(sb_cnt_info)); @@ -663,6 +690,35 @@ static int qed_slowpath_setup_int(struct qed_dev *cdev, return 0; } +static int qed_slowpath_vf_setup_int(struct qed_dev *cdev) +{ + int rc; + + memset(&cdev->int_params, 0, sizeof(struct qed_int_params)); + cdev->int_params.in.int_mode = QED_INT_MODE_MSIX; + + qed_vf_get_num_rxqs(QED_LEADING_HWFN(cdev), + &cdev->int_params.in.num_vectors); + if (cdev->num_hwfns > 1) { + u8 vectors = 0; + + qed_vf_get_num_rxqs(&cdev->hwfns[1], &vectors); + cdev->int_params.in.num_vectors += vectors; + } + + /* We want a minimum of one fastpath vector per vf hwfn */ + cdev->int_params.in.min_msix_cnt = cdev->num_hwfns; + + rc = qed_set_int_mode(cdev, true); + if (rc) + return rc; + + cdev->int_params.fp_msix_base = 0; + cdev->int_params.fp_msix_cnt = cdev->int_params.out.num_vectors; + + return 0; +} + u32 qed_unzip_data(struct qed_hwfn *p_hwfn, u32 input_len, u8 *input_buf, u32 max_size, u8 *unzip_buf) { @@ -744,39 +800,63 @@ static void qed_update_pf_params(struct qed_dev *cdev, static int qed_slowpath_start(struct qed_dev *cdev, struct qed_slowpath_params *params) { + struct qed_tunn_start_params tunn_info; struct qed_mcp_drv_version drv_version; const u8 *data = NULL; struct qed_hwfn *hwfn; - int rc; + int rc = -EINVAL; - rc = request_firmware(&cdev->firmware, QED_FW_FILE_NAME, - &cdev->pdev->dev); - if (rc) { - DP_NOTICE(cdev, - "Failed to find fw file - /lib/firmware/%s\n", - QED_FW_FILE_NAME); + if (qed_iov_wq_start(cdev)) goto err; + + if (IS_PF(cdev)) { + rc = request_firmware(&cdev->firmware, QED_FW_FILE_NAME, + &cdev->pdev->dev); + if (rc) { + DP_NOTICE(cdev, + "Failed to find fw file - /lib/firmware/%s\n", + QED_FW_FILE_NAME); + goto err; + } } rc = qed_nic_setup(cdev); if (rc) goto err; - rc = qed_slowpath_setup_int(cdev, params->int_mode); + if (IS_PF(cdev)) + rc = qed_slowpath_setup_int(cdev, params->int_mode); + else + rc = qed_slowpath_vf_setup_int(cdev); if (rc) goto err1; - /* Allocate stream for unzipping */ - rc = qed_alloc_stream_mem(cdev); - if (rc) { - DP_NOTICE(cdev, "Failed to allocate stream memory\n"); - goto err2; + if (IS_PF(cdev)) { + /* Allocate stream for unzipping */ + rc = qed_alloc_stream_mem(cdev); + if (rc) { + DP_NOTICE(cdev, "Failed to allocate stream memory\n"); + goto err2; + } + + /* First Dword used to diffrentiate between various sources */ + data = cdev->firmware->data + sizeof(u32); } - /* Start the slowpath */ - data = cdev->firmware->data; + memset(&tunn_info, 0, sizeof(tunn_info)); + tunn_info.tunn_mode |= 1 << QED_MODE_VXLAN_TUNN | + 1 << QED_MODE_L2GRE_TUNN | + 1 << QED_MODE_IPGRE_TUNN | + 1 << QED_MODE_L2GENEVE_TUNN | + 1 << QED_MODE_IPGENEVE_TUNN; + + tunn_info.tunn_clss_vxlan = QED_TUNN_CLSS_MAC_VLAN; + tunn_info.tunn_clss_l2gre = QED_TUNN_CLSS_MAC_VLAN; + tunn_info.tunn_clss_ipgre = QED_TUNN_CLSS_MAC_VLAN; - rc = qed_hw_init(cdev, true, cdev->int_params.out.int_mode, + /* Start the slowpath */ + rc = qed_hw_init(cdev, &tunn_info, true, + cdev->int_params.out.int_mode, true, data); if (rc) goto err2; @@ -784,18 +864,20 @@ static int qed_slowpath_start(struct qed_dev *cdev, DP_INFO(cdev, "HW initialization and function start completed successfully\n"); - hwfn = QED_LEADING_HWFN(cdev); - drv_version.version = (params->drv_major << 24) | - (params->drv_minor << 16) | - (params->drv_rev << 8) | - (params->drv_eng); - strlcpy(drv_version.name, params->name, - MCP_DRV_VER_STR_SIZE - 4); - rc = qed_mcp_send_drv_version(hwfn, hwfn->p_main_ptt, - &drv_version); - if (rc) { - DP_NOTICE(cdev, "Failed sending drv version command\n"); - return rc; + if (IS_PF(cdev)) { + hwfn = QED_LEADING_HWFN(cdev); + drv_version.version = (params->drv_major << 24) | + (params->drv_minor << 16) | + (params->drv_rev << 8) | + (params->drv_eng); + strlcpy(drv_version.name, params->name, + MCP_DRV_VER_STR_SIZE - 4); + rc = qed_mcp_send_drv_version(hwfn, hwfn->p_main_ptt, + &drv_version); + if (rc) { + DP_NOTICE(cdev, "Failed sending drv version command\n"); + return rc; + } } qed_reset_vport_stats(cdev); @@ -804,13 +886,17 @@ static int qed_slowpath_start(struct qed_dev *cdev, err2: qed_hw_timers_stop_all(cdev); - qed_slowpath_irq_free(cdev); + if (IS_PF(cdev)) + qed_slowpath_irq_free(cdev); qed_free_stream_mem(cdev); qed_disable_msix(cdev); err1: qed_resc_free(cdev); err: - release_firmware(cdev->firmware); + if (IS_PF(cdev)) + release_firmware(cdev->firmware); + + qed_iov_wq_stop(cdev, false); return rc; } @@ -820,15 +906,22 @@ static int qed_slowpath_stop(struct qed_dev *cdev) if (!cdev) return -ENODEV; - qed_free_stream_mem(cdev); + if (IS_PF(cdev)) { + qed_free_stream_mem(cdev); + if (IS_QED_ETH_IF(cdev)) + qed_sriov_disable(cdev, true); - qed_nic_stop(cdev); - qed_slowpath_irq_free(cdev); + qed_nic_stop(cdev); + qed_slowpath_irq_free(cdev); + } qed_disable_msix(cdev); qed_nic_reset(cdev); - release_firmware(cdev->firmware); + qed_iov_wq_stop(cdev, true); + + if (IS_PF(cdev)) + release_firmware(cdev->firmware); return 0; } @@ -902,8 +995,12 @@ static u32 qed_sb_release(struct qed_dev *cdev, return rc; } -static int qed_set_link(struct qed_dev *cdev, - struct qed_link_params *params) +static bool qed_can_link_change(struct qed_dev *cdev) +{ + return true; +} + +static int qed_set_link(struct qed_dev *cdev, struct qed_link_params *params) { struct qed_hwfn *hwfn; struct qed_mcp_link_params *link_params; @@ -913,6 +1010,9 @@ static int qed_set_link(struct qed_dev *cdev, if (!cdev) return -ENODEV; + if (IS_VF(cdev)) + return 0; + /* The link should be set only once per PF */ hwfn = &cdev->hwfns[0]; @@ -940,10 +1040,43 @@ static int qed_set_link(struct qed_dev *cdev, NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G; if (params->adv_speeds & 0) link_params->speed.advertised_speeds |= - NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G; + NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_BB_100G; } if (params->override_flags & QED_LINK_OVERRIDE_SPEED_FORCED_SPEED) link_params->speed.forced_speed = params->forced_speed; + if (params->override_flags & QED_LINK_OVERRIDE_PAUSE_CONFIG) { + if (params->pause_config & QED_LINK_PAUSE_AUTONEG_ENABLE) + link_params->pause.autoneg = true; + else + link_params->pause.autoneg = false; + if (params->pause_config & QED_LINK_PAUSE_RX_ENABLE) + link_params->pause.forced_rx = true; + else + link_params->pause.forced_rx = false; + if (params->pause_config & QED_LINK_PAUSE_TX_ENABLE) + link_params->pause.forced_tx = true; + else + link_params->pause.forced_tx = false; + } + if (params->override_flags & QED_LINK_OVERRIDE_LOOPBACK_MODE) { + switch (params->loopback_mode) { + case QED_LINK_LOOPBACK_INT_PHY: + link_params->loopback_mode = ETH_LOOPBACK_INT_PHY; + break; + case QED_LINK_LOOPBACK_EXT_PHY: + link_params->loopback_mode = ETH_LOOPBACK_EXT_PHY; + break; + case QED_LINK_LOOPBACK_EXT: + link_params->loopback_mode = ETH_LOOPBACK_EXT; + break; + case QED_LINK_LOOPBACK_MAC: + link_params->loopback_mode = ETH_LOOPBACK_MAC; + break; + default: + link_params->loopback_mode = ETH_LOOPBACK_NONE; + break; + } + } rc = qed_mcp_set_link(hwfn, ptt, params->link_up); @@ -960,6 +1093,7 @@ static int qed_get_port_type(u32 media_type) case MEDIA_SFPP_10G_FIBER: case MEDIA_SFP_1G_FIBER: case MEDIA_XFP_FIBER: + case MEDIA_MODULE_FIBER: case MEDIA_KR: port_type = PORT_FIBRE; break; @@ -980,6 +1114,39 @@ static int qed_get_port_type(u32 media_type) return port_type; } +static int qed_get_link_data(struct qed_hwfn *hwfn, + struct qed_mcp_link_params *params, + struct qed_mcp_link_state *link, + struct qed_mcp_link_capabilities *link_caps) +{ + void *p; + + if (!IS_PF(hwfn->cdev)) { + qed_vf_get_link_params(hwfn, params); + qed_vf_get_link_state(hwfn, link); + qed_vf_get_link_caps(hwfn, link_caps); + + return 0; + } + + p = qed_mcp_get_link_params(hwfn); + if (!p) + return -ENXIO; + memcpy(params, p, sizeof(*params)); + + p = qed_mcp_get_link_state(hwfn); + if (!p) + return -ENXIO; + memcpy(link, p, sizeof(*link)); + + p = qed_mcp_get_link_capabilities(hwfn); + if (!p) + return -ENXIO; + memcpy(link_caps, p, sizeof(*link_caps)); + + return 0; +} + static void qed_fill_link(struct qed_hwfn *hwfn, struct qed_link_output *if_link) { @@ -991,10 +1158,10 @@ static void qed_fill_link(struct qed_hwfn *hwfn, memset(if_link, 0, sizeof(*if_link)); /* Prepare source inputs */ - memcpy(¶ms, qed_mcp_get_link_params(hwfn), sizeof(params)); - memcpy(&link, qed_mcp_get_link_state(hwfn), sizeof(link)); - memcpy(&link_caps, qed_mcp_get_link_capabilities(hwfn), - sizeof(link_caps)); + if (qed_get_link_data(hwfn, ¶ms, &link, &link_caps)) { + dev_warn(&hwfn->cdev->pdev->dev, "no link data available\n"); + return; + } /* Set the link parameters to pass to protocol driver */ if (link.link_up) @@ -1026,7 +1193,7 @@ static void qed_fill_link(struct qed_hwfn *hwfn, NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G) if_link->advertised_caps |= 0; if (params.speed.advertised_speeds & - NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G) + NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_BB_100G) if_link->advertised_caps |= 0; if (link_caps.speed_capabilities & @@ -1043,7 +1210,7 @@ static void qed_fill_link(struct qed_hwfn *hwfn, NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_50G) if_link->supported_caps |= 0; if (link_caps.speed_capabilities & - NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_100G) + NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_BB_100G) if_link->supported_caps |= 0; if (link.link_up) @@ -1096,7 +1263,12 @@ static void qed_fill_link(struct qed_hwfn *hwfn, static void qed_get_current_link(struct qed_dev *cdev, struct qed_link_output *if_link) { + int i; + qed_fill_link(&cdev->hwfns[0], if_link); + + for_each_hwfn(cdev, i) + qed_inform_vf_link_state(&cdev->hwfns[i]); } void qed_link_update(struct qed_hwfn *hwfn) @@ -1106,6 +1278,7 @@ void qed_link_update(struct qed_hwfn *hwfn) struct qed_link_output if_link; qed_fill_link(hwfn, &if_link); + qed_inform_vf_link_state(hwfn); if (IS_LEAD_HWFN(hwfn) && cookie) op->link_update(cookie, &if_link); @@ -1117,6 +1290,9 @@ static int qed_drain(struct qed_dev *cdev) struct qed_ptt *ptt; int i, rc; + if (IS_VF(cdev)) + return 0; + for_each_hwfn(cdev, i) { hwfn = &cdev->hwfns[i]; ptt = qed_ptt_acquire(hwfn); @@ -1133,6 +1309,38 @@ static int qed_drain(struct qed_dev *cdev) return 0; } +static void qed_get_coalesce(struct qed_dev *cdev, u16 *rx_coal, u16 *tx_coal) +{ + *rx_coal = cdev->rx_coalesce_usecs; + *tx_coal = cdev->tx_coalesce_usecs; +} + +static int qed_set_coalesce(struct qed_dev *cdev, u16 rx_coal, u16 tx_coal, + u8 qid, u16 sb_id) +{ + struct qed_hwfn *hwfn; + struct qed_ptt *ptt; + int hwfn_index; + int status = 0; + + hwfn_index = qid % cdev->num_hwfns; + hwfn = &cdev->hwfns[hwfn_index]; + ptt = qed_ptt_acquire(hwfn); + if (!ptt) + return -EAGAIN; + + status = qed_set_rxq_coalesce(hwfn, ptt, rx_coal, + qid / cdev->num_hwfns, sb_id); + if (status) + goto out; + status = qed_set_txq_coalesce(hwfn, ptt, tx_coal, + qid / cdev->num_hwfns, sb_id); +out: + qed_ptt_release(hwfn, ptt); + + return status; +} + static int qed_set_led(struct qed_dev *cdev, enum qed_led_mode mode) { struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); @@ -1150,7 +1358,15 @@ static int qed_set_led(struct qed_dev *cdev, enum qed_led_mode mode) return status; } +struct qed_selftest_ops qed_selftest_ops_pass = { + .selftest_memory = &qed_selftest_memory, + .selftest_interrupt = &qed_selftest_interrupt, + .selftest_register = &qed_selftest_register, + .selftest_clock = &qed_selftest_clock, +}; + const struct qed_common_ops qed_common_ops_pass = { + .selftest = &qed_selftest_ops_pass, .probe = &qed_probe, .remove = &qed_remove, .set_power_state = &qed_set_power_state, @@ -1164,22 +1380,14 @@ const struct qed_common_ops qed_common_ops_pass = { .sb_release = &qed_sb_release, .simd_handler_config = &qed_simd_handler_config, .simd_handler_clean = &qed_simd_handler_clean, + .can_link_change = &qed_can_link_change, .set_link = &qed_set_link, .get_link = &qed_get_current_link, .drain = &qed_drain, .update_msglvl = &qed_init_dp, .chain_alloc = &qed_chain_alloc, .chain_free = &qed_chain_free, + .get_coalesce = &qed_get_coalesce, + .set_coalesce = &qed_set_coalesce, .set_led = &qed_set_led, }; - -u32 qed_get_protocol_version(enum qed_protocol protocol) -{ - switch (protocol) { - case QED_PROTOCOL_ETH: - return QED_ETH_INTERFACE_VERSION; - default: - return 0; - } -} -EXPORT_SYMBOL(qed_get_protocol_version); diff --git a/drivers/net/ethernet/qlogic/qed/qed_mcp.c b/drivers/net/ethernet/qlogic/qed/qed_mcp.c index b89c9a8e1655..f776a77794c5 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_mcp.c +++ b/drivers/net/ethernet/qlogic/qed/qed_mcp.c @@ -15,10 +15,13 @@ #include <linux/spinlock.h> #include <linux/string.h> #include "qed.h" +#include "qed_dcbx.h" #include "qed_hsi.h" #include "qed_hw.h" #include "qed_mcp.h" #include "qed_reg_addr.h" +#include "qed_sriov.h" + #define CHIP_MCP_RESP_ITER_US 10 #define QED_DRV_MB_MAX_RETRIES (500 * 1000) /* Account for 5 sec */ @@ -440,6 +443,75 @@ int qed_mcp_load_req(struct qed_hwfn *p_hwfn, return 0; } +static void qed_mcp_handle_vf_flr(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt) +{ + u32 addr = SECTION_OFFSIZE_ADDR(p_hwfn->mcp_info->public_base, + PUBLIC_PATH); + u32 mfw_path_offsize = qed_rd(p_hwfn, p_ptt, addr); + u32 path_addr = SECTION_ADDR(mfw_path_offsize, + QED_PATH_ID(p_hwfn)); + u32 disabled_vfs[VF_MAX_STATIC / 32]; + int i; + + DP_VERBOSE(p_hwfn, + QED_MSG_SP, + "Reading Disabled VF information from [offset %08x], path_addr %08x\n", + mfw_path_offsize, path_addr); + + for (i = 0; i < (VF_MAX_STATIC / 32); i++) { + disabled_vfs[i] = qed_rd(p_hwfn, p_ptt, + path_addr + + offsetof(struct public_path, + mcp_vf_disabled) + + sizeof(u32) * i); + DP_VERBOSE(p_hwfn, (QED_MSG_SP | QED_MSG_IOV), + "FLR-ed VFs [%08x,...,%08x] - %08x\n", + i * 32, (i + 1) * 32 - 1, disabled_vfs[i]); + } + + if (qed_iov_mark_vf_flr(p_hwfn, disabled_vfs)) + qed_schedule_iov(p_hwfn, QED_IOV_WQ_FLR_FLAG); +} + +int qed_mcp_ack_vf_flr(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u32 *vfs_to_ack) +{ + u32 addr = SECTION_OFFSIZE_ADDR(p_hwfn->mcp_info->public_base, + PUBLIC_FUNC); + u32 mfw_func_offsize = qed_rd(p_hwfn, p_ptt, addr); + u32 func_addr = SECTION_ADDR(mfw_func_offsize, + MCP_PF_ID(p_hwfn)); + struct qed_mcp_mb_params mb_params; + union drv_union_data union_data; + int rc; + int i; + + for (i = 0; i < (VF_MAX_STATIC / 32); i++) + DP_VERBOSE(p_hwfn, (QED_MSG_SP | QED_MSG_IOV), + "Acking VFs [%08x,...,%08x] - %08x\n", + i * 32, (i + 1) * 32 - 1, vfs_to_ack[i]); + + memset(&mb_params, 0, sizeof(mb_params)); + mb_params.cmd = DRV_MSG_CODE_VF_DISABLED_DONE; + memcpy(&union_data.ack_vf_disabled, vfs_to_ack, VF_MAX_STATIC / 8); + mb_params.p_data_src = &union_data; + rc = qed_mcp_cmd_and_union(p_hwfn, p_ptt, &mb_params); + if (rc) { + DP_NOTICE(p_hwfn, "Failed to pass ACK for VF flr to MFW\n"); + return -EBUSY; + } + + /* Clear the ACK bits */ + for (i = 0; i < (VF_MAX_STATIC / 32); i++) + qed_wr(p_hwfn, p_ptt, + func_addr + + offsetof(struct public_func, drv_ack_vf_disabled) + + i * sizeof(u32), 0); + + return rc; +} + static void qed_mcp_handle_transceiver_change(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) { @@ -459,9 +531,9 @@ static void qed_mcp_handle_transceiver_change(struct qed_hwfn *p_hwfn, transceiver_data))); transceiver_state = GET_FIELD(transceiver_state, - PMM_TRANSCEIVER_STATE); + ETH_TRANSCEIVER_STATE); - if (transceiver_state == PMM_TRANSCEIVER_STATE_PRESENT) + if (transceiver_state == ETH_TRANSCEIVER_STATE_PRESENT) DP_NOTICE(p_hwfn, "Transceiver is present.\n"); else DP_NOTICE(p_hwfn, "Transceiver is unplugged.\n"); @@ -472,6 +544,7 @@ static void qed_mcp_handle_link_change(struct qed_hwfn *p_hwfn, bool b_reset) { struct qed_mcp_link_state *p_link; + u8 max_bw, min_bw; u32 status = 0; p_link = &p_hwfn->mcp_info->link_output; @@ -527,17 +600,20 @@ static void qed_mcp_handle_link_change(struct qed_hwfn *p_hwfn, p_link->speed = 0; } - /* Correct speed according to bandwidth allocation */ - if (p_hwfn->mcp_info->func_info.bandwidth_max && p_link->speed) { - p_link->speed = p_link->speed * - p_hwfn->mcp_info->func_info.bandwidth_max / - 100; - qed_init_pf_rl(p_hwfn, p_ptt, p_hwfn->rel_pf_id, - p_link->speed); - DP_VERBOSE(p_hwfn, NETIF_MSG_LINK, - "Configured MAX bandwidth to be %08x Mb/sec\n", - p_link->speed); - } + if (p_link->link_up && p_link->speed) + p_link->line_speed = p_link->speed; + else + p_link->line_speed = 0; + + max_bw = p_hwfn->mcp_info->func_info.bandwidth_max; + min_bw = p_hwfn->mcp_info->func_info.bandwidth_min; + + /* Max bandwidth configuration */ + __qed_configure_pf_max_bandwidth(p_hwfn, p_ptt, p_link, max_bw); + + /* Min bandwidth configuration */ + __qed_configure_pf_min_bandwidth(p_hwfn, p_ptt, p_link, min_bw); + qed_configure_vp_wfq_on_link_change(p_hwfn->cdev, p_link->min_pf_rate); p_link->an = !!(status & LINK_STATUS_AUTO_NEGOTIATE_ENABLED); p_link->an_complete = !!(status & @@ -592,14 +668,12 @@ static void qed_mcp_handle_link_change(struct qed_hwfn *p_hwfn, qed_link_update(p_hwfn); } -int qed_mcp_set_link(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - bool b_up) +int qed_mcp_set_link(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, bool b_up) { struct qed_mcp_link_params *params = &p_hwfn->mcp_info->link_input; struct qed_mcp_mb_params mb_params; union drv_union_data union_data; - struct pmm_phy_cfg *phy_cfg; + struct eth_phy_cfg *phy_cfg; int rc = 0; u32 cmd; @@ -609,9 +683,9 @@ int qed_mcp_set_link(struct qed_hwfn *p_hwfn, cmd = b_up ? DRV_MSG_CODE_INIT_PHY : DRV_MSG_CODE_LINK_RESET; if (!params->speed.autoneg) phy_cfg->speed = params->speed.forced_speed; - phy_cfg->pause |= (params->pause.autoneg) ? PMM_PAUSE_AUTONEG : 0; - phy_cfg->pause |= (params->pause.forced_rx) ? PMM_PAUSE_RX : 0; - phy_cfg->pause |= (params->pause.forced_tx) ? PMM_PAUSE_TX : 0; + phy_cfg->pause |= (params->pause.autoneg) ? ETH_PAUSE_AUTONEG : 0; + phy_cfg->pause |= (params->pause.forced_rx) ? ETH_PAUSE_RX : 0; + phy_cfg->pause |= (params->pause.forced_tx) ? ETH_PAUSE_TX : 0; phy_cfg->adv_speed = params->speed.advertised_speeds; phy_cfg->loopback_mode = params->loopback_mode; @@ -648,6 +722,105 @@ int qed_mcp_set_link(struct qed_hwfn *p_hwfn, return 0; } +static void qed_read_pf_bandwidth(struct qed_hwfn *p_hwfn, + struct public_func *p_shmem_info) +{ + struct qed_mcp_function_info *p_info; + + p_info = &p_hwfn->mcp_info->func_info; + + p_info->bandwidth_min = (p_shmem_info->config & + FUNC_MF_CFG_MIN_BW_MASK) >> + FUNC_MF_CFG_MIN_BW_SHIFT; + if (p_info->bandwidth_min < 1 || p_info->bandwidth_min > 100) { + DP_INFO(p_hwfn, + "bandwidth minimum out of bounds [%02x]. Set to 1\n", + p_info->bandwidth_min); + p_info->bandwidth_min = 1; + } + + p_info->bandwidth_max = (p_shmem_info->config & + FUNC_MF_CFG_MAX_BW_MASK) >> + FUNC_MF_CFG_MAX_BW_SHIFT; + if (p_info->bandwidth_max < 1 || p_info->bandwidth_max > 100) { + DP_INFO(p_hwfn, + "bandwidth maximum out of bounds [%02x]. Set to 100\n", + p_info->bandwidth_max); + p_info->bandwidth_max = 100; + } +} + +static u32 qed_mcp_get_shmem_func(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct public_func *p_data, + int pfid) +{ + u32 addr = SECTION_OFFSIZE_ADDR(p_hwfn->mcp_info->public_base, + PUBLIC_FUNC); + u32 mfw_path_offsize = qed_rd(p_hwfn, p_ptt, addr); + u32 func_addr = SECTION_ADDR(mfw_path_offsize, pfid); + u32 i, size; + + memset(p_data, 0, sizeof(*p_data)); + + size = min_t(u32, sizeof(*p_data), + QED_SECTION_SIZE(mfw_path_offsize)); + for (i = 0; i < size / sizeof(u32); i++) + ((u32 *)p_data)[i] = qed_rd(p_hwfn, p_ptt, + func_addr + (i << 2)); + return size; +} + +int qed_hw_init_first_eth(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 *p_pf) +{ + struct public_func shmem_info; + int i; + + /* Find first Ethernet interface in port */ + for (i = 0; i < NUM_OF_ENG_PFS(p_hwfn->cdev); + i += p_hwfn->cdev->num_ports_in_engines) { + qed_mcp_get_shmem_func(p_hwfn, p_ptt, &shmem_info, + MCP_PF_ID_BY_REL(p_hwfn, i)); + + if (shmem_info.config & FUNC_MF_CFG_FUNC_HIDE) + continue; + + if ((shmem_info.config & FUNC_MF_CFG_PROTOCOL_MASK) == + FUNC_MF_CFG_PROTOCOL_ETHERNET) { + *p_pf = (u8)i; + return 0; + } + } + + DP_NOTICE(p_hwfn, + "Failed to find on port an ethernet interface in MF_SI mode\n"); + + return -EINVAL; +} + +static void qed_mcp_update_bw(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt) +{ + struct qed_mcp_function_info *p_info; + struct public_func shmem_info; + u32 resp = 0, param = 0; + + qed_mcp_get_shmem_func(p_hwfn, p_ptt, &shmem_info, + MCP_PF_ID(p_hwfn)); + + qed_read_pf_bandwidth(p_hwfn, &shmem_info); + + p_info = &p_hwfn->mcp_info->func_info; + + qed_configure_pf_min_bandwidth(p_hwfn->cdev, p_info->bandwidth_min); + qed_configure_pf_max_bandwidth(p_hwfn->cdev, p_info->bandwidth_max); + + /* Acknowledge the MFW */ + qed_mcp_cmd(p_hwfn, p_ptt, DRV_MSG_CODE_BW_UPDATE_ACK, 0, &resp, + ¶m); +} + int qed_mcp_handle_events(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) { @@ -676,9 +849,27 @@ int qed_mcp_handle_events(struct qed_hwfn *p_hwfn, case MFW_DRV_MSG_LINK_CHANGE: qed_mcp_handle_link_change(p_hwfn, p_ptt, false); break; + case MFW_DRV_MSG_VF_DISABLED: + qed_mcp_handle_vf_flr(p_hwfn, p_ptt); + break; + case MFW_DRV_MSG_LLDP_DATA_UPDATED: + qed_dcbx_mib_update_event(p_hwfn, p_ptt, + QED_DCBX_REMOTE_LLDP_MIB); + break; + case MFW_DRV_MSG_DCBX_REMOTE_MIB_UPDATED: + qed_dcbx_mib_update_event(p_hwfn, p_ptt, + QED_DCBX_REMOTE_MIB); + break; + case MFW_DRV_MSG_DCBX_OPERATIONAL_MIB_UPDATED: + qed_dcbx_mib_update_event(p_hwfn, p_ptt, + QED_DCBX_OPERATIONAL_MIB); + break; case MFW_DRV_MSG_TRANSCEIVER_STATE_CHANGE: qed_mcp_handle_transceiver_change(p_hwfn, p_ptt); break; + case MFW_DRV_MSG_BW_UPDATE: + qed_mcp_update_bw(p_hwfn, p_ptt); + break; default: DP_NOTICE(p_hwfn, "Unimplemented MFW message %d\n", i); rc = -EINVAL; @@ -709,26 +900,42 @@ int qed_mcp_handle_events(struct qed_hwfn *p_hwfn, return rc; } -int qed_mcp_get_mfw_ver(struct qed_dev *cdev, - u32 *p_mfw_ver) +int qed_mcp_get_mfw_ver(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u32 *p_mfw_ver, u32 *p_running_bundle_id) { - struct qed_hwfn *p_hwfn = &cdev->hwfns[0]; - struct qed_ptt *p_ptt; u32 global_offsize; - p_ptt = qed_ptt_acquire(p_hwfn); - if (!p_ptt) - return -EBUSY; + if (IS_VF(p_hwfn->cdev)) { + if (p_hwfn->vf_iov_info) { + struct pfvf_acquire_resp_tlv *p_resp; + + p_resp = &p_hwfn->vf_iov_info->acquire_resp; + *p_mfw_ver = p_resp->pfdev_info.mfw_ver; + return 0; + } else { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF requested MFW version prior to ACQUIRE\n"); + return -EINVAL; + } + } global_offsize = qed_rd(p_hwfn, p_ptt, - SECTION_OFFSIZE_ADDR(p_hwfn->mcp_info-> - public_base, + SECTION_OFFSIZE_ADDR(p_hwfn-> + mcp_info->public_base, PUBLIC_GLOBAL)); - *p_mfw_ver = qed_rd(p_hwfn, p_ptt, - SECTION_ADDR(global_offsize, 0) + - offsetof(struct public_global, mfw_ver)); - - qed_ptt_release(p_hwfn, p_ptt); + *p_mfw_ver = + qed_rd(p_hwfn, p_ptt, + SECTION_ADDR(global_offsize, + 0) + offsetof(struct public_global, mfw_ver)); + + if (p_running_bundle_id != NULL) { + *p_running_bundle_id = qed_rd(p_hwfn, p_ptt, + SECTION_ADDR(global_offsize, 0) + + offsetof(struct public_global, + running_bundle_id)); + } return 0; } @@ -739,6 +946,9 @@ int qed_mcp_get_media_type(struct qed_dev *cdev, struct qed_hwfn *p_hwfn = &cdev->hwfns[0]; struct qed_ptt *p_ptt; + if (IS_VF(cdev)) + return -EINVAL; + if (!qed_mcp_is_init(p_hwfn)) { DP_NOTICE(p_hwfn, "MFW is not initialized !\n"); return -EBUSY; @@ -758,28 +968,6 @@ int qed_mcp_get_media_type(struct qed_dev *cdev, return 0; } -static u32 qed_mcp_get_shmem_func(struct qed_hwfn *p_hwfn, - struct qed_ptt *p_ptt, - struct public_func *p_data, - int pfid) -{ - u32 addr = SECTION_OFFSIZE_ADDR(p_hwfn->mcp_info->public_base, - PUBLIC_FUNC); - u32 mfw_path_offsize = qed_rd(p_hwfn, p_ptt, addr); - u32 func_addr = SECTION_ADDR(mfw_path_offsize, pfid); - u32 i, size; - - memset(p_data, 0, sizeof(*p_data)); - - size = min_t(u32, sizeof(*p_data), - QED_SECTION_SIZE(mfw_path_offsize)); - for (i = 0; i < size / sizeof(u32); i++) - ((u32 *)p_data)[i] = qed_rd(p_hwfn, p_ptt, - func_addr + (i << 2)); - - return size; -} - static int qed_mcp_get_shmem_proto(struct qed_hwfn *p_hwfn, struct public_func *p_info, @@ -789,7 +977,18 @@ qed_mcp_get_shmem_proto(struct qed_hwfn *p_hwfn, switch (p_info->config & FUNC_MF_CFG_PROTOCOL_MASK) { case FUNC_MF_CFG_PROTOCOL_ETHERNET: - *p_proto = QED_PCI_ETH; + if (test_bit(QED_DEV_CAP_ROCE, + &p_hwfn->hw_info.device_capabilities)) + *p_proto = QED_PCI_ETH_ROCE; + else + *p_proto = QED_PCI_ETH; + break; + case FUNC_MF_CFG_PROTOCOL_ISCSI: + *p_proto = QED_PCI_ISCSI; + break; + case FUNC_MF_CFG_PROTOCOL_ROCE: + DP_NOTICE(p_hwfn, "RoCE personality is not a valid value!\n"); + rc = -EINVAL; break; default: rc = -EINVAL; @@ -818,26 +1017,7 @@ int qed_mcp_fill_shmem_func_info(struct qed_hwfn *p_hwfn, return -EINVAL; } - - info->bandwidth_min = (shmem_info.config & - FUNC_MF_CFG_MIN_BW_MASK) >> - FUNC_MF_CFG_MIN_BW_SHIFT; - if (info->bandwidth_min < 1 || info->bandwidth_min > 100) { - DP_INFO(p_hwfn, - "bandwidth minimum out of bounds [%02x]. Set to 1\n", - info->bandwidth_min); - info->bandwidth_min = 1; - } - - info->bandwidth_max = (shmem_info.config & - FUNC_MF_CFG_MAX_BW_MASK) >> - FUNC_MF_CFG_MAX_BW_SHIFT; - if (info->bandwidth_max < 1 || info->bandwidth_max > 100) { - DP_INFO(p_hwfn, - "bandwidth maximum out of bounds [%02x]. Set to 100\n", - info->bandwidth_max); - info->bandwidth_max = 100; - } + qed_read_pf_bandwidth(p_hwfn, &shmem_info); if (shmem_info.mac_upper || shmem_info.mac_lower) { info->mac[0] = (u8)(shmem_info.mac_upper >> 8); @@ -914,6 +1094,9 @@ int qed_mcp_get_flash_size(struct qed_hwfn *p_hwfn, { u32 flash_size; + if (IS_VF(p_hwfn->cdev)) + return -EINVAL; + flash_size = qed_rd(p_hwfn, p_ptt, MCP_REG_NVM_CFG4); flash_size = (flash_size & MCP_REG_NVM_CFG4_FLASH_SIZE) >> MCP_REG_NVM_CFG4_FLASH_SIZE_SHIFT; @@ -924,6 +1107,37 @@ int qed_mcp_get_flash_size(struct qed_hwfn *p_hwfn, return 0; } +int qed_mcp_config_vf_msix(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 vf_id, u8 num) +{ + u32 resp = 0, param = 0, rc_param = 0; + int rc; + + /* Only Leader can configure MSIX, and need to take CMT into account */ + if (!IS_LEAD_HWFN(p_hwfn)) + return 0; + num *= p_hwfn->cdev->num_hwfns; + + param |= (vf_id << DRV_MB_PARAM_CFG_VF_MSIX_VF_ID_SHIFT) & + DRV_MB_PARAM_CFG_VF_MSIX_VF_ID_MASK; + param |= (num << DRV_MB_PARAM_CFG_VF_MSIX_SB_NUM_SHIFT) & + DRV_MB_PARAM_CFG_VF_MSIX_SB_NUM_MASK; + + rc = qed_mcp_cmd(p_hwfn, p_ptt, DRV_MSG_CODE_CFG_VF_MSIX, param, + &resp, &rc_param); + + if (resp != FW_MSG_CODE_DRV_CFG_VF_MSIX_DONE) { + DP_NOTICE(p_hwfn, "VF[%d]: MFW failed to set MSI-X\n", vf_id); + rc = -EINVAL; + } else { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Requested 0x%02x MSI-x interrupts from VF 0x%02x\n", + num, vf_id); + } + + return rc; +} + int qed_mcp_send_drv_version(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, @@ -938,9 +1152,10 @@ qed_mcp_send_drv_version(struct qed_hwfn *p_hwfn, p_drv_version = &union_data.drv_version; p_drv_version->version = p_ver->version; - for (i = 0; i < MCP_DRV_VER_STR_SIZE - 1; i += 4) { - val = cpu_to_be32(p_ver->name[i]); - *(u32 *)&p_drv_version->name[i * sizeof(u32)] = val; + + for (i = 0; i < (MCP_DRV_VER_STR_SIZE - 4) / sizeof(u32); i++) { + val = cpu_to_be32(*((u32 *)&p_ver->name[i * sizeof(u32)])); + *(__be32 *)&p_drv_version->name[i * sizeof(u32)] = val; } memset(&mb_params, 0, sizeof(mb_params)); @@ -979,3 +1194,45 @@ int qed_mcp_set_led(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, return rc; } + +int qed_mcp_bist_register_test(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + u32 drv_mb_param = 0, rsp, param; + int rc = 0; + + drv_mb_param = (DRV_MB_PARAM_BIST_REGISTER_TEST << + DRV_MB_PARAM_BIST_TEST_INDEX_SHIFT); + + rc = qed_mcp_cmd(p_hwfn, p_ptt, DRV_MSG_CODE_BIST_TEST, + drv_mb_param, &rsp, ¶m); + + if (rc) + return rc; + + if (((rsp & FW_MSG_CODE_MASK) != FW_MSG_CODE_OK) || + (param != DRV_MB_PARAM_BIST_RC_PASSED)) + rc = -EAGAIN; + + return rc; +} + +int qed_mcp_bist_clock_test(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + u32 drv_mb_param, rsp, param; + int rc = 0; + + drv_mb_param = (DRV_MB_PARAM_BIST_CLOCK_TEST << + DRV_MB_PARAM_BIST_TEST_INDEX_SHIFT); + + rc = qed_mcp_cmd(p_hwfn, p_ptt, DRV_MSG_CODE_BIST_TEST, + drv_mb_param, &rsp, ¶m); + + if (rc) + return rc; + + if (((rsp & FW_MSG_CODE_MASK) != FW_MSG_CODE_OK) || + (param != DRV_MB_PARAM_BIST_RC_PASSED)) + rc = -EAGAIN; + + return rc; +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_mcp.h b/drivers/net/ethernet/qlogic/qed/qed_mcp.h index 50917a2131a5..7f319aa1b229 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_mcp.h +++ b/drivers/net/ethernet/qlogic/qed/qed_mcp.h @@ -40,7 +40,15 @@ struct qed_mcp_link_capabilities { struct qed_mcp_link_state { bool link_up; - u32 speed; /* In Mb/s */ + u32 min_pf_rate; + + /* Actual link speed in Mb/s */ + u32 line_speed; + + /* PF max speed in Mb/s, deduced from line_speed + * according to PF max bandwidth configuration. + */ + u32 speed; bool full_duplex; bool an; @@ -141,13 +149,16 @@ int qed_mcp_set_link(struct qed_hwfn *p_hwfn, /** * @brief Get the management firmware version value * - * @param cdev - qed dev pointer - * @param mfw_ver - mfw version value + * @param p_hwfn + * @param p_ptt + * @param p_mfw_ver - mfw version value + * @param p_running_bundle_id - image id in nvram; Optional. * - * @return int - 0 - operation was successul. + * @return int - 0 - operation was successful. */ -int qed_mcp_get_mfw_ver(struct qed_dev *cdev, - u32 *mfw_ver); +int qed_mcp_get_mfw_ver(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u32 *p_mfw_ver, u32 *p_running_bundle_id); /** * @brief Get media type value of the port. @@ -237,6 +248,28 @@ int qed_mcp_set_led(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt, enum qed_led_mode mode); +/** + * @brief Bist register test + * + * @param p_hwfn - hw function + * @param p_ptt - PTT required for register access + * + * @return int - 0 - operation was successful. + */ +int qed_mcp_bist_register_test(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt); + +/** + * @brief Bist clock test + * + * @param p_hwfn - hw function + * @param p_ptt - PTT required for register access + * + * @return int - 0 - operation was successful. + */ +int qed_mcp_bist_clock_test(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt); + /* Using hwfn number (and not pf_num) is required since in CMT mode, * same pf_num may be used by two different hwfn * TODO - this shouldn't really be in .h file, but until all fields @@ -360,6 +393,18 @@ void qed_mcp_read_mb(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt); /** + * @brief Ack to mfw that driver finished FLR process for VFs + * + * @param p_hwfn + * @param p_ptt + * @param vfs_to_ack - bit mask of all engine VFs for which the PF acks. + * + * @param return int - 0 upon success. + */ +int qed_mcp_ack_vf_flr(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u32 *vfs_to_ack); + +/** * @brief - calls during init to read shmem of all function-related info. * * @param p_hwfn @@ -389,4 +434,30 @@ int qed_mcp_reset(struct qed_hwfn *p_hwfn, */ bool qed_mcp_is_init(struct qed_hwfn *p_hwfn); +/** + * @brief request MFW to configure MSI-X for a VF + * + * @param p_hwfn + * @param p_ptt + * @param vf_id - absolute inside engine + * @param num_sbs - number of entries to request + * + * @return int + */ +int qed_mcp_config_vf_msix(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 vf_id, u8 num); + +int qed_configure_pf_min_bandwidth(struct qed_dev *cdev, u8 min_bw); +int qed_configure_pf_max_bandwidth(struct qed_dev *cdev, u8 max_bw); +int __qed_configure_pf_max_bandwidth(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_mcp_link_state *p_link, + u8 max_bw); +int __qed_configure_pf_min_bandwidth(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_mcp_link_state *p_link, + u8 min_bw); + +int qed_hw_init_first_eth(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 *p_pf); #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_reg_addr.h b/drivers/net/ethernet/qlogic/qed/qed_reg_addr.h index c15b1622e636..f6b86ca1ff79 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_reg_addr.h +++ b/drivers/net/ethernet/qlogic/qed/qed_reg_addr.h @@ -27,6 +27,35 @@ #define CDU_REG_CID_ADDR_PARAMS_NCIB ( \ 0xff << 24) +#define CDU_REG_SEGMENT0_PARAMS \ + 0x580904UL +#define CDU_REG_SEGMENT0_PARAMS_T0_NUM_TIDS_IN_BLOCK \ + (0xfff << 0) +#define CDU_REG_SEGMENT0_PARAMS_T0_NUM_TIDS_IN_BLOCK_SHIFT \ + 0 +#define CDU_REG_SEGMENT0_PARAMS_T0_TID_BLOCK_WASTE \ + (0xff << 16) +#define CDU_REG_SEGMENT0_PARAMS_T0_TID_BLOCK_WASTE_SHIFT \ + 16 +#define CDU_REG_SEGMENT0_PARAMS_T0_TID_SIZE \ + (0xff << 24) +#define CDU_REG_SEGMENT0_PARAMS_T0_TID_SIZE_SHIFT \ + 24 +#define CDU_REG_SEGMENT1_PARAMS \ + 0x580908UL +#define CDU_REG_SEGMENT1_PARAMS_T1_NUM_TIDS_IN_BLOCK \ + (0xfff << 0) +#define CDU_REG_SEGMENT1_PARAMS_T1_NUM_TIDS_IN_BLOCK_SHIFT \ + 0 +#define CDU_REG_SEGMENT1_PARAMS_T1_TID_BLOCK_WASTE \ + (0xff << 16) +#define CDU_REG_SEGMENT1_PARAMS_T1_TID_BLOCK_WASTE_SHIFT \ + 16 +#define CDU_REG_SEGMENT1_PARAMS_T1_TID_SIZE \ + (0xff << 24) +#define CDU_REG_SEGMENT1_PARAMS_T1_TID_SIZE_SHIFT \ + 24 + #define XSDM_REG_OPERATION_GEN \ 0xf80408UL #define NIG_REG_RX_BRB_OUT_EN \ @@ -39,6 +68,10 @@ 0x2aae04UL #define PGLUE_B_REG_INTERNAL_PFID_ENABLE_MASTER \ 0x2aa16cUL +#define PGLUE_B_REG_WAS_ERROR_VF_31_0_CLR \ + 0x2aa118UL +#define PSWHST_REG_ZONE_PERMISSION_TABLE \ + 0x2a0800UL #define BAR0_MAP_REG_MSDM_RAM \ 0x1d00000UL #define BAR0_MAP_REG_USDM_RAM \ @@ -47,6 +80,8 @@ 0x1f00000UL #define BAR0_MAP_REG_TSDM_RAM \ 0x1c80000UL +#define BAR0_MAP_REG_XSDM_RAM \ + 0x1e00000UL #define NIG_REG_RX_LLH_BRB_GATE_DNTFWD_PERPF \ 0x5011f4UL #define PRS_REG_SEARCH_TCP \ @@ -77,6 +112,8 @@ 0x2f2eb0UL #define DORQ_REG_PF_DB_ENABLE \ 0x100508UL +#define DORQ_REG_VF_USAGE_CNT \ + 0x1009c4UL #define QM_REG_PF_EN \ 0x2f2ea4UL #define TCFC_REG_STRONG_ENABLE_PF \ @@ -111,6 +148,8 @@ 0x009778UL #define MISCS_REG_CHIP_METAL \ 0x009774UL +#define MISCS_REG_FUNCTION_HIDE \ + 0x0096f0UL #define BRB_REG_HEADER_SIZE \ 0x340804UL #define BTB_REG_HEADER_SIZE \ @@ -119,6 +158,8 @@ 0x1c0708UL #define CCFC_REG_ACTIVITY_COUNTER \ 0x2e8800UL +#define CCFC_REG_STRONG_ENABLE_VF \ + 0x2e070cUL #define CDU_REG_CID_ADDR_PARAMS \ 0x580900UL #define DBG_REG_CLIENT_ENABLE \ @@ -157,10 +198,18 @@ 0x1800004UL #define NIG_REG_CM_HDR \ 0x500840UL +#define NIG_REG_LLH_TAGMAC_DEF_PF_VECTOR \ + 0x50196cUL +#define NIG_REG_LLH_CLS_TYPE_DUALMODE \ + 0x501964UL #define NCSI_REG_CONFIG \ 0x040200UL #define PBF_REG_INIT \ 0xd80000UL +#define PBF_REG_NUM_BLOCKS_ALLOCATED_PROD_VOQ0 \ + 0xd806c8UL +#define PBF_REG_NUM_BLOCKS_ALLOCATED_CONS_VOQ0 \ + 0xd806ccUL #define PTU_REG_ATC_INIT_ARRAY \ 0x560000UL #define PCM_REG_INIT \ @@ -205,6 +254,10 @@ 0x230000UL #define PRS_REG_SOFT_RST \ 0x1f0000UL +#define PRS_REG_MSG_INFO \ + 0x1f0a1cUL +#define PRS_REG_ROCE_DEST_QP_MAX_PF \ + 0x1f0430UL #define PSDM_REG_ENABLE_IN1 \ 0xfa0004UL #define PSEM_REG_ENABLE_IN \ @@ -213,6 +266,8 @@ 0x280020UL #define PSWRQ2_REG_CDUT_P_SIZE \ 0x24000cUL +#define PSWRQ2_REG_ILT_MEMORY \ + 0x260000UL #define PSWHST_REG_DISCARD_INTERNAL_WRITES \ 0x2a0040UL #define PSWHST2_REG_DBGSYN_ALMOST_FULL_THR \ @@ -385,6 +440,8 @@ 0x1d0000UL #define IGU_REG_PF_CONFIGURATION \ 0x180800UL +#define IGU_REG_VF_CONFIGURATION \ + 0x180804UL #define MISC_REG_AEU_ENABLE1_IGU_OUT_0 \ 0x00849cUL #define MISC_REG_AEU_AFTER_INVERT_1_IGU \ @@ -411,6 +468,10 @@ 0x1 << 0) #define IGU_REG_MAPPING_MEMORY \ 0x184000UL +#define IGU_REG_STATISTIC_NUM_VF_MSG_SENT \ + 0x180408UL +#define IGU_REG_WRITE_DONE_PENDING \ + 0x180900UL #define MISCS_REG_GENERIC_POR_0 \ 0x0096d4UL #define MCP_REG_NVM_CFG4 \ @@ -427,4 +488,37 @@ 0x2aae60UL #define PGLUE_B_REG_PF_BAR1_SIZE \ 0x2aae64UL +#define PRS_REG_ENCAPSULATION_TYPE_EN 0x1f0730UL +#define PRS_REG_GRE_PROTOCOL 0x1f0734UL +#define PRS_REG_VXLAN_PORT 0x1f0738UL +#define PRS_REG_OUTPUT_FORMAT_4_0 0x1f099cUL +#define NIG_REG_ENC_TYPE_ENABLE 0x501058UL + +#define NIG_REG_ENC_TYPE_ENABLE_ETH_OVER_GRE_ENABLE (0x1 << 0) +#define NIG_REG_ENC_TYPE_ENABLE_ETH_OVER_GRE_ENABLE_SHIFT 0 +#define NIG_REG_ENC_TYPE_ENABLE_IP_OVER_GRE_ENABLE (0x1 << 1) +#define NIG_REG_ENC_TYPE_ENABLE_IP_OVER_GRE_ENABLE_SHIFT 1 +#define NIG_REG_ENC_TYPE_ENABLE_VXLAN_ENABLE (0x1 << 2) +#define NIG_REG_ENC_TYPE_ENABLE_VXLAN_ENABLE_SHIFT 2 + +#define NIG_REG_VXLAN_CTRL 0x50105cUL +#define PBF_REG_VXLAN_PORT 0xd80518UL +#define PBF_REG_NGE_PORT 0xd8051cUL +#define PRS_REG_NGE_PORT 0x1f086cUL +#define NIG_REG_NGE_PORT 0x508b38UL + +#define DORQ_REG_L2_EDPM_TUNNEL_GRE_ETH_EN 0x10090cUL +#define DORQ_REG_L2_EDPM_TUNNEL_GRE_IP_EN 0x100910UL +#define DORQ_REG_L2_EDPM_TUNNEL_VXLAN_EN 0x100914UL +#define DORQ_REG_L2_EDPM_TUNNEL_NGE_IP_EN 0x10092cUL +#define DORQ_REG_L2_EDPM_TUNNEL_NGE_ETH_EN 0x100930UL + +#define NIG_REG_NGE_IP_ENABLE 0x508b28UL +#define NIG_REG_NGE_ETH_ENABLE 0x508b2cUL +#define NIG_REG_NGE_COMP_VER 0x508b30UL +#define PBF_REG_NGE_COMP_VER 0xd80524UL +#define PRS_REG_NGE_COMP_VER 0x1f0878UL + +#define QM_REG_WFQPFWEIGHT 0x2f4e80UL +#define QM_REG_WFQVPWEIGHT 0x2fa000UL #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_selftest.c b/drivers/net/ethernet/qlogic/qed/qed_selftest.c new file mode 100644 index 000000000000..a342bfe4280d --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_selftest.c @@ -0,0 +1,76 @@ +#include "qed.h" +#include "qed_dev_api.h" +#include "qed_mcp.h" +#include "qed_sp.h" + +int qed_selftest_memory(struct qed_dev *cdev) +{ + int rc = 0, i; + + for_each_hwfn(cdev, i) { + rc = qed_sp_heartbeat_ramrod(&cdev->hwfns[i]); + if (rc) + return rc; + } + + return rc; +} + +int qed_selftest_interrupt(struct qed_dev *cdev) +{ + int rc = 0, i; + + for_each_hwfn(cdev, i) { + rc = qed_sp_heartbeat_ramrod(&cdev->hwfns[i]); + if (rc) + return rc; + } + + return rc; +} + +int qed_selftest_register(struct qed_dev *cdev) +{ + struct qed_hwfn *p_hwfn; + struct qed_ptt *p_ptt; + int rc = 0, i; + + /* although performed by MCP, this test is per engine */ + for_each_hwfn(cdev, i) { + p_hwfn = &cdev->hwfns[i]; + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) { + DP_ERR(p_hwfn, "failed to acquire ptt\n"); + return -EBUSY; + } + rc = qed_mcp_bist_register_test(p_hwfn, p_ptt); + qed_ptt_release(p_hwfn, p_ptt); + if (rc) + break; + } + + return rc; +} + +int qed_selftest_clock(struct qed_dev *cdev) +{ + struct qed_hwfn *p_hwfn; + struct qed_ptt *p_ptt; + int rc = 0, i; + + /* although performed by MCP, this test is per engine */ + for_each_hwfn(cdev, i) { + p_hwfn = &cdev->hwfns[i]; + p_ptt = qed_ptt_acquire(p_hwfn); + if (!p_ptt) { + DP_ERR(p_hwfn, "failed to acquire ptt\n"); + return -EBUSY; + } + rc = qed_mcp_bist_clock_test(p_hwfn, p_ptt); + qed_ptt_release(p_hwfn, p_ptt); + if (rc) + break; + } + + return rc; +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_selftest.h b/drivers/net/ethernet/qlogic/qed/qed_selftest.h new file mode 100644 index 000000000000..50eb0b49950f --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_selftest.h @@ -0,0 +1,40 @@ +#ifndef _QED_SELFTEST_API_H +#define _QED_SELFTEST_API_H +#include <linux/types.h> + +/** + * @brief qed_selftest_memory - Perform memory test + * + * @param cdev + * + * @return int + */ +int qed_selftest_memory(struct qed_dev *cdev); + +/** + * @brief qed_selftest_interrupt - Perform interrupt test + * + * @param cdev + * + * @return int + */ +int qed_selftest_interrupt(struct qed_dev *cdev); + +/** + * @brief qed_selftest_register - Perform register test + * + * @param cdev + * + * @return int + */ +int qed_selftest_register(struct qed_dev *cdev); + +/** + * @brief qed_selftest_clock - Perform clock test + * + * @param cdev + * + * @return int + */ +int qed_selftest_clock(struct qed_dev *cdev); +#endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_sp.h b/drivers/net/ethernet/qlogic/qed/qed_sp.h index d39f914b66ee..a548504c3420 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_sp.h +++ b/drivers/net/ethernet/qlogic/qed/qed_sp.h @@ -52,6 +52,7 @@ int qed_eth_cqe_completion(struct qed_hwfn *p_hwfn, union ramrod_data { struct pf_start_ramrod_data pf_start; + struct pf_update_ramrod_data pf_update; struct rx_queue_start_ramrod_data rx_queue_start; struct rx_queue_update_ramrod_data rx_queue_update; struct rx_queue_stop_ramrod_data rx_queue_stop; @@ -61,6 +62,35 @@ union ramrod_data { struct vport_stop_ramrod_data vport_stop; struct vport_update_ramrod_data vport_update; struct vport_filter_update_ramrod_data vport_filter_update; + + struct rdma_init_func_ramrod_data rdma_init_func; + struct rdma_close_func_ramrod_data rdma_close_func; + struct rdma_register_tid_ramrod_data rdma_register_tid; + struct rdma_deregister_tid_ramrod_data rdma_deregister_tid; + struct roce_create_qp_resp_ramrod_data roce_create_qp_resp; + struct roce_create_qp_req_ramrod_data roce_create_qp_req; + struct roce_modify_qp_resp_ramrod_data roce_modify_qp_resp; + struct roce_modify_qp_req_ramrod_data roce_modify_qp_req; + struct roce_query_qp_resp_ramrod_data roce_query_qp_resp; + struct roce_query_qp_req_ramrod_data roce_query_qp_req; + struct roce_destroy_qp_resp_ramrod_data roce_destroy_qp_resp; + struct roce_destroy_qp_req_ramrod_data roce_destroy_qp_req; + struct rdma_create_cq_ramrod_data rdma_create_cq; + struct rdma_resize_cq_ramrod_data rdma_resize_cq; + struct rdma_destroy_cq_ramrod_data rdma_destroy_cq; + struct rdma_srq_create_ramrod_data rdma_create_srq; + struct rdma_srq_destroy_ramrod_data rdma_destroy_srq; + struct rdma_srq_modify_ramrod_data rdma_modify_srq; + + struct iscsi_slow_path_hdr iscsi_empty; + struct iscsi_init_ramrod_params iscsi_init; + struct iscsi_spe_func_dstry iscsi_destroy; + struct iscsi_spe_conn_offload iscsi_conn_offload; + struct iscsi_conn_update_ramrod_params iscsi_conn_update; + struct iscsi_spe_conn_termination iscsi_conn_terminate; + + struct vf_start_ramrod_data vf_start; + struct vf_stop_ramrod_data vf_stop; }; #define EQ_MAX_CREDIT 0xffffffff @@ -338,13 +368,29 @@ int qed_sp_init_request(struct qed_hwfn *p_hwfn, * to the internal RAM of the UStorm by the Function Start Ramrod. * * @param p_hwfn + * @param p_tunn * @param mode + * @param allow_npar_tx_switch * * @return int */ int qed_sp_pf_start(struct qed_hwfn *p_hwfn, - enum qed_mf_mode mode); + struct qed_tunn_start_params *p_tunn, + enum qed_mf_mode mode, bool allow_npar_tx_switch); + +/** + * @brief qed_sp_pf_update - PF Function Update Ramrod + * + * This ramrod updates function-related parameters. Every parameter can be + * updated independently, according to configuration flags. + * + * @param p_hwfn + * + * @return int + */ + +int qed_sp_pf_update(struct qed_hwfn *p_hwfn); /** * @brief qed_sp_pf_stop - PF Function Stop Ramrod @@ -362,4 +408,18 @@ int qed_sp_pf_start(struct qed_hwfn *p_hwfn, int qed_sp_pf_stop(struct qed_hwfn *p_hwfn); +int qed_sp_pf_update_tunn_cfg(struct qed_hwfn *p_hwfn, + struct qed_tunn_update_params *p_tunn, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data); +/** + * @brief qed_sp_heartbeat_ramrod - Send empty Ramrod + * + * @param p_hwfn + * + * @return int + */ + +int qed_sp_heartbeat_ramrod(struct qed_hwfn *p_hwfn); + #endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_sp_commands.c b/drivers/net/ethernet/qlogic/qed/qed_sp_commands.c index 1c06c37d4c3d..a52f3fc051f5 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_sp_commands.c +++ b/drivers/net/ethernet/qlogic/qed/qed_sp_commands.c @@ -15,11 +15,13 @@ #include "qed.h" #include <linux/qed/qed_chain.h> #include "qed_cxt.h" +#include "qed_dcbx.h" #include "qed_hsi.h" #include "qed_hw.h" #include "qed_int.h" #include "qed_reg_addr.h" #include "qed_sp.h" +#include "qed_sriov.h" int qed_sp_init_request(struct qed_hwfn *p_hwfn, struct qed_spq_entry **pp_ent, @@ -87,8 +89,218 @@ int qed_sp_init_request(struct qed_hwfn *p_hwfn, return 0; } +static enum tunnel_clss qed_tunn_get_clss_type(u8 type) +{ + switch (type) { + case QED_TUNN_CLSS_MAC_VLAN: + return TUNNEL_CLSS_MAC_VLAN; + case QED_TUNN_CLSS_MAC_VNI: + return TUNNEL_CLSS_MAC_VNI; + case QED_TUNN_CLSS_INNER_MAC_VLAN: + return TUNNEL_CLSS_INNER_MAC_VLAN; + case QED_TUNN_CLSS_INNER_MAC_VNI: + return TUNNEL_CLSS_INNER_MAC_VNI; + default: + return TUNNEL_CLSS_MAC_VLAN; + } +} + +static void +qed_tunn_set_pf_fix_tunn_mode(struct qed_hwfn *p_hwfn, + struct qed_tunn_update_params *p_src, + struct pf_update_tunnel_config *p_tunn_cfg) +{ + unsigned long cached_tunn_mode = p_hwfn->cdev->tunn_mode; + unsigned long update_mask = p_src->tunn_mode_update_mask; + unsigned long tunn_mode = p_src->tunn_mode; + unsigned long new_tunn_mode = 0; + + if (test_bit(QED_MODE_L2GRE_TUNN, &update_mask)) { + if (test_bit(QED_MODE_L2GRE_TUNN, &tunn_mode)) + __set_bit(QED_MODE_L2GRE_TUNN, &new_tunn_mode); + } else { + if (test_bit(QED_MODE_L2GRE_TUNN, &cached_tunn_mode)) + __set_bit(QED_MODE_L2GRE_TUNN, &new_tunn_mode); + } + + if (test_bit(QED_MODE_IPGRE_TUNN, &update_mask)) { + if (test_bit(QED_MODE_IPGRE_TUNN, &tunn_mode)) + __set_bit(QED_MODE_IPGRE_TUNN, &new_tunn_mode); + } else { + if (test_bit(QED_MODE_IPGRE_TUNN, &cached_tunn_mode)) + __set_bit(QED_MODE_IPGRE_TUNN, &new_tunn_mode); + } + + if (test_bit(QED_MODE_VXLAN_TUNN, &update_mask)) { + if (test_bit(QED_MODE_VXLAN_TUNN, &tunn_mode)) + __set_bit(QED_MODE_VXLAN_TUNN, &new_tunn_mode); + } else { + if (test_bit(QED_MODE_VXLAN_TUNN, &cached_tunn_mode)) + __set_bit(QED_MODE_VXLAN_TUNN, &new_tunn_mode); + } + + if (p_src->update_geneve_udp_port) { + p_tunn_cfg->set_geneve_udp_port_flg = 1; + p_tunn_cfg->geneve_udp_port = + cpu_to_le16(p_src->geneve_udp_port); + } + + if (test_bit(QED_MODE_L2GENEVE_TUNN, &update_mask)) { + if (test_bit(QED_MODE_L2GENEVE_TUNN, &tunn_mode)) + __set_bit(QED_MODE_L2GENEVE_TUNN, &new_tunn_mode); + } else { + if (test_bit(QED_MODE_L2GENEVE_TUNN, &cached_tunn_mode)) + __set_bit(QED_MODE_L2GENEVE_TUNN, &new_tunn_mode); + } + + if (test_bit(QED_MODE_IPGENEVE_TUNN, &update_mask)) { + if (test_bit(QED_MODE_IPGENEVE_TUNN, &tunn_mode)) + __set_bit(QED_MODE_IPGENEVE_TUNN, &new_tunn_mode); + } else { + if (test_bit(QED_MODE_IPGENEVE_TUNN, &cached_tunn_mode)) + __set_bit(QED_MODE_IPGENEVE_TUNN, &new_tunn_mode); + } + + p_src->tunn_mode = new_tunn_mode; +} + +static void +qed_tunn_set_pf_update_params(struct qed_hwfn *p_hwfn, + struct qed_tunn_update_params *p_src, + struct pf_update_tunnel_config *p_tunn_cfg) +{ + unsigned long tunn_mode = p_src->tunn_mode; + enum tunnel_clss type; + + qed_tunn_set_pf_fix_tunn_mode(p_hwfn, p_src, p_tunn_cfg); + p_tunn_cfg->update_rx_pf_clss = p_src->update_rx_pf_clss; + p_tunn_cfg->update_tx_pf_clss = p_src->update_tx_pf_clss; + + type = qed_tunn_get_clss_type(p_src->tunn_clss_vxlan); + p_tunn_cfg->tunnel_clss_vxlan = type; + + type = qed_tunn_get_clss_type(p_src->tunn_clss_l2gre); + p_tunn_cfg->tunnel_clss_l2gre = type; + + type = qed_tunn_get_clss_type(p_src->tunn_clss_ipgre); + p_tunn_cfg->tunnel_clss_ipgre = type; + + if (p_src->update_vxlan_udp_port) { + p_tunn_cfg->set_vxlan_udp_port_flg = 1; + p_tunn_cfg->vxlan_udp_port = cpu_to_le16(p_src->vxlan_udp_port); + } + + if (test_bit(QED_MODE_L2GRE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_l2gre = 1; + + if (test_bit(QED_MODE_IPGRE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_ipgre = 1; + + if (test_bit(QED_MODE_VXLAN_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_vxlan = 1; + + if (p_src->update_geneve_udp_port) { + p_tunn_cfg->set_geneve_udp_port_flg = 1; + p_tunn_cfg->geneve_udp_port = + cpu_to_le16(p_src->geneve_udp_port); + } + + if (test_bit(QED_MODE_L2GENEVE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_l2geneve = 1; + + if (test_bit(QED_MODE_IPGENEVE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_ipgeneve = 1; + + type = qed_tunn_get_clss_type(p_src->tunn_clss_l2geneve); + p_tunn_cfg->tunnel_clss_l2geneve = type; + + type = qed_tunn_get_clss_type(p_src->tunn_clss_ipgeneve); + p_tunn_cfg->tunnel_clss_ipgeneve = type; +} + +static void qed_set_hw_tunn_mode(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + unsigned long tunn_mode) +{ + u8 l2gre_enable = 0, ipgre_enable = 0, vxlan_enable = 0; + u8 l2geneve_enable = 0, ipgeneve_enable = 0; + + if (test_bit(QED_MODE_L2GRE_TUNN, &tunn_mode)) + l2gre_enable = 1; + + if (test_bit(QED_MODE_IPGRE_TUNN, &tunn_mode)) + ipgre_enable = 1; + + if (test_bit(QED_MODE_VXLAN_TUNN, &tunn_mode)) + vxlan_enable = 1; + + qed_set_gre_enable(p_hwfn, p_ptt, l2gre_enable, ipgre_enable); + qed_set_vxlan_enable(p_hwfn, p_ptt, vxlan_enable); + + if (test_bit(QED_MODE_L2GENEVE_TUNN, &tunn_mode)) + l2geneve_enable = 1; + + if (test_bit(QED_MODE_IPGENEVE_TUNN, &tunn_mode)) + ipgeneve_enable = 1; + + qed_set_geneve_enable(p_hwfn, p_ptt, l2geneve_enable, + ipgeneve_enable); +} + +static void +qed_tunn_set_pf_start_params(struct qed_hwfn *p_hwfn, + struct qed_tunn_start_params *p_src, + struct pf_start_tunnel_config *p_tunn_cfg) +{ + unsigned long tunn_mode; + enum tunnel_clss type; + + if (!p_src) + return; + + tunn_mode = p_src->tunn_mode; + type = qed_tunn_get_clss_type(p_src->tunn_clss_vxlan); + p_tunn_cfg->tunnel_clss_vxlan = type; + type = qed_tunn_get_clss_type(p_src->tunn_clss_l2gre); + p_tunn_cfg->tunnel_clss_l2gre = type; + type = qed_tunn_get_clss_type(p_src->tunn_clss_ipgre); + p_tunn_cfg->tunnel_clss_ipgre = type; + + if (p_src->update_vxlan_udp_port) { + p_tunn_cfg->set_vxlan_udp_port_flg = 1; + p_tunn_cfg->vxlan_udp_port = cpu_to_le16(p_src->vxlan_udp_port); + } + + if (test_bit(QED_MODE_L2GRE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_l2gre = 1; + + if (test_bit(QED_MODE_IPGRE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_ipgre = 1; + + if (test_bit(QED_MODE_VXLAN_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_vxlan = 1; + + if (p_src->update_geneve_udp_port) { + p_tunn_cfg->set_geneve_udp_port_flg = 1; + p_tunn_cfg->geneve_udp_port = + cpu_to_le16(p_src->geneve_udp_port); + } + + if (test_bit(QED_MODE_L2GENEVE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_l2geneve = 1; + + if (test_bit(QED_MODE_IPGENEVE_TUNN, &tunn_mode)) + p_tunn_cfg->tx_enable_ipgeneve = 1; + + type = qed_tunn_get_clss_type(p_src->tunn_clss_l2geneve); + p_tunn_cfg->tunnel_clss_l2geneve = type; + type = qed_tunn_get_clss_type(p_src->tunn_clss_ipgeneve); + p_tunn_cfg->tunnel_clss_ipgeneve = type; +} + int qed_sp_pf_start(struct qed_hwfn *p_hwfn, - enum qed_mf_mode mode) + struct qed_tunn_start_params *p_tunn, + enum qed_mf_mode mode, bool allow_npar_tx_switch) { struct pf_start_ramrod_data *p_ramrod = NULL; u16 sb = qed_int_get_sp_sb_id(p_hwfn); @@ -96,6 +308,7 @@ int qed_sp_pf_start(struct qed_hwfn *p_hwfn, struct qed_spq_entry *p_ent = NULL; struct qed_sp_init_data init_data; int rc = -EINVAL; + u8 page_cnt; /* update initial eq producer */ qed_eq_prod_update(p_hwfn, @@ -120,7 +333,7 @@ int qed_sp_pf_start(struct qed_hwfn *p_hwfn, p_ramrod->path_id = QED_PATH_ID(p_hwfn); p_ramrod->dont_log_ramrods = 0; p_ramrod->log_type_mask = cpu_to_le16(0xf); - p_ramrod->mf_mode = mode; + switch (mode) { case QED_MF_DEFAULT: case QED_MF_NPAR: @@ -138,21 +351,125 @@ int qed_sp_pf_start(struct qed_hwfn *p_hwfn, /* Place EQ address in RAMROD */ DMA_REGPAIR_LE(p_ramrod->event_ring_pbl_addr, p_hwfn->p_eq->chain.pbl.p_phys_table); - p_ramrod->event_ring_num_pages = (u8)p_hwfn->p_eq->chain.page_cnt; - + page_cnt = (u8)qed_chain_get_page_cnt(&p_hwfn->p_eq->chain); + p_ramrod->event_ring_num_pages = page_cnt; DMA_REGPAIR_LE(p_ramrod->consolid_q_pbl_addr, p_hwfn->p_consq->chain.pbl.p_phys_table); - p_hwfn->hw_info.personality = PERSONALITY_ETH; + qed_tunn_set_pf_start_params(p_hwfn, p_tunn, + &p_ramrod->tunnel_config); + + if (IS_MF_SI(p_hwfn)) + p_ramrod->allow_npar_tx_switching = allow_npar_tx_switch; + + switch (p_hwfn->hw_info.personality) { + case QED_PCI_ETH: + p_ramrod->personality = PERSONALITY_ETH; + break; + case QED_PCI_ISCSI: + p_ramrod->personality = PERSONALITY_ISCSI; + break; + case QED_PCI_ETH_ROCE: + p_ramrod->personality = PERSONALITY_RDMA_AND_ETH; + break; + default: + DP_NOTICE(p_hwfn, "Unkown personality %d\n", + p_hwfn->hw_info.personality); + p_ramrod->personality = PERSONALITY_ETH; + } + + if (p_hwfn->cdev->p_iov_info) { + struct qed_hw_sriov_info *p_iov = p_hwfn->cdev->p_iov_info; + + p_ramrod->base_vf_id = (u8) p_iov->first_vf_in_pf; + p_ramrod->num_vfs = (u8) p_iov->total_vfs; + } + p_ramrod->hsi_fp_ver.major_ver_arr[ETH_VER_KEY] = ETH_HSI_VER_MAJOR; + p_ramrod->hsi_fp_ver.minor_ver_arr[ETH_VER_KEY] = ETH_HSI_VER_MINOR; DP_VERBOSE(p_hwfn, QED_MSG_SPQ, "Setting event_ring_sb [id %04x index %02x], outer_tag [%d]\n", sb, sb_index, p_ramrod->outer_tag); + rc = qed_spq_post(p_hwfn, p_ent, NULL); + + if (p_tunn) { + qed_set_hw_tunn_mode(p_hwfn, p_hwfn->p_main_ptt, + p_tunn->tunn_mode); + p_hwfn->cdev->tunn_mode = p_tunn->tunn_mode; + } + + return rc; +} + +int qed_sp_pf_update(struct qed_hwfn *p_hwfn) +{ + struct qed_spq_entry *p_ent = NULL; + struct qed_sp_init_data init_data; + int rc = -EINVAL; + + /* Get SPQ entry */ + memset(&init_data, 0, sizeof(init_data)); + init_data.cid = qed_spq_get_cid(p_hwfn); + init_data.opaque_fid = p_hwfn->hw_info.opaque_fid; + init_data.comp_mode = QED_SPQ_MODE_CB; + + rc = qed_sp_init_request(p_hwfn, &p_ent, + COMMON_RAMROD_PF_UPDATE, PROTOCOLID_COMMON, + &init_data); + if (rc) + return rc; + + qed_dcbx_set_pf_update_params(&p_hwfn->p_dcbx_info->results, + &p_ent->ramrod.pf_update); + return qed_spq_post(p_hwfn, p_ent, NULL); } +/* Set pf update ramrod command params */ +int qed_sp_pf_update_tunn_cfg(struct qed_hwfn *p_hwfn, + struct qed_tunn_update_params *p_tunn, + enum spq_mode comp_mode, + struct qed_spq_comp_cb *p_comp_data) +{ + struct qed_spq_entry *p_ent = NULL; + struct qed_sp_init_data init_data; + int rc = -EINVAL; + + /* Get SPQ entry */ + memset(&init_data, 0, sizeof(init_data)); + init_data.cid = qed_spq_get_cid(p_hwfn); + init_data.opaque_fid = p_hwfn->hw_info.opaque_fid; + init_data.comp_mode = comp_mode; + init_data.p_comp_data = p_comp_data; + + rc = qed_sp_init_request(p_hwfn, &p_ent, + COMMON_RAMROD_PF_UPDATE, PROTOCOLID_COMMON, + &init_data); + if (rc) + return rc; + + qed_tunn_set_pf_update_params(p_hwfn, p_tunn, + &p_ent->ramrod.pf_update.tunnel_config); + + rc = qed_spq_post(p_hwfn, p_ent, NULL); + if (rc) + return rc; + + if (p_tunn->update_vxlan_udp_port) + qed_set_vxlan_dest_port(p_hwfn, p_hwfn->p_main_ptt, + p_tunn->vxlan_udp_port); + if (p_tunn->update_geneve_udp_port) + qed_set_geneve_dest_port(p_hwfn, p_hwfn->p_main_ptt, + p_tunn->geneve_udp_port); + + qed_set_hw_tunn_mode(p_hwfn, p_hwfn->p_main_ptt, p_tunn->tunn_mode); + p_hwfn->cdev->tunn_mode = p_tunn->tunn_mode; + + return rc; +} + int qed_sp_pf_stop(struct qed_hwfn *p_hwfn) { struct qed_spq_entry *p_ent = NULL; @@ -173,3 +490,24 @@ int qed_sp_pf_stop(struct qed_hwfn *p_hwfn) return qed_spq_post(p_hwfn, p_ent, NULL); } + +int qed_sp_heartbeat_ramrod(struct qed_hwfn *p_hwfn) +{ + struct qed_spq_entry *p_ent = NULL; + struct qed_sp_init_data init_data; + int rc; + + /* Get SPQ entry */ + memset(&init_data, 0, sizeof(init_data)); + init_data.cid = qed_spq_get_cid(p_hwfn); + init_data.opaque_fid = p_hwfn->hw_info.opaque_fid; + init_data.comp_mode = QED_SPQ_MODE_EBLOCK; + + rc = qed_sp_init_request(p_hwfn, &p_ent, + COMMON_RAMROD_EMPTY, PROTOCOLID_COMMON, + &init_data); + if (rc) + return rc; + + return qed_spq_post(p_hwfn, p_ent, NULL); +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_spq.c b/drivers/net/ethernet/qlogic/qed/qed_spq.c index 89469d5aae25..d73456eab1d7 100644 --- a/drivers/net/ethernet/qlogic/qed/qed_spq.c +++ b/drivers/net/ethernet/qlogic/qed/qed_spq.c @@ -27,6 +27,7 @@ #include "qed_mcp.h" #include "qed_reg_addr.h" #include "qed_sp.h" +#include "qed_sriov.h" /*************************************************************************** * Structures & Definitions @@ -212,19 +213,15 @@ static int qed_spq_hw_post(struct qed_hwfn *p_hwfn, SET_FIELD(db.params, CORE_DB_DATA_AGG_VAL_SEL, DQ_XCM_CORE_SPQ_PROD_CMD); db.agg_flags = DQ_XCM_CORE_DQ_CF_CMD; - - /* validate producer is up to-date */ - rmb(); - db.spq_prod = cpu_to_le16(qed_chain_get_prod_idx(p_chain)); - /* do not reorder */ - barrier(); + /* make sure the SPQE is updated before the doorbell */ + wmb(); DOORBELL(p_hwfn, qed_db_addr(p_spq->cid, DQ_DEMS_LEGACY), *(u32 *)&db); /* make sure doorbell is rang */ - mmiowb(); + wmb(); DP_VERBOSE(p_hwfn, QED_MSG_SPQ, "Doorbelled [0x%08x, CID 0x%08x] with Flags: %02x agg_params: %02x, prod: %04x\n", @@ -242,10 +239,17 @@ static int qed_async_event_completion(struct qed_hwfn *p_hwfn, struct event_ring_entry *p_eqe) { - DP_NOTICE(p_hwfn, - "Unknown Async completion for protocol: %d\n", - p_eqe->protocol_id); - return -EINVAL; + switch (p_eqe->protocol_id) { + case PROTOCOLID_COMMON: + return qed_sriov_eqe_event(p_hwfn, + p_eqe->opcode, + p_eqe->echo, &p_eqe->data); + default: + DP_NOTICE(p_hwfn, + "Unknown Async completion for protocol: %d\n", + p_eqe->protocol_id); + return -EINVAL; + } } /*************************************************************************** @@ -335,6 +339,7 @@ struct qed_eq *qed_eq_alloc(struct qed_hwfn *p_hwfn, if (qed_chain_alloc(p_hwfn->cdev, QED_CHAIN_USE_TO_PRODUCE, QED_CHAIN_MODE_PBL, + QED_CHAIN_CNT_TYPE_U16, num_elem, sizeof(union event_ring_element), &p_eq->chain)) { @@ -379,6 +384,9 @@ static int qed_cqe_completion( struct eth_slow_path_rx_cqe *cqe, enum protocol_type protocol) { + if (IS_VF(p_hwfn->cdev)) + return 0; + /* @@@tmp - it's possible we'll eventually want to handle some * actual commands that can arrive here, but for now this is only * used to complete the ramrod using the echo value on the cqe @@ -405,10 +413,10 @@ int qed_eth_cqe_completion(struct qed_hwfn *p_hwfn, ***************************************************************************/ void qed_spq_setup(struct qed_hwfn *p_hwfn) { - struct qed_spq *p_spq = p_hwfn->p_spq; - struct qed_spq_entry *p_virt = NULL; - dma_addr_t p_phys = 0; - unsigned int i = 0; + struct qed_spq *p_spq = p_hwfn->p_spq; + struct qed_spq_entry *p_virt = NULL; + dma_addr_t p_phys = 0; + u32 i, capacity; INIT_LIST_HEAD(&p_spq->pending); INIT_LIST_HEAD(&p_spq->completion_pending); @@ -420,7 +428,8 @@ void qed_spq_setup(struct qed_hwfn *p_hwfn) p_phys = p_spq->p_phys + offsetof(struct qed_spq_entry, ramrod); p_virt = p_spq->p_virt; - for (i = 0; i < p_spq->chain.capacity; i++) { + capacity = qed_chain_get_capacity(&p_spq->chain); + for (i = 0; i < capacity; i++) { DMA_REGPAIR_LE(p_virt->elem.data_ptr, p_phys); list_add_tail(&p_virt->list, &p_spq->free_pool); @@ -448,9 +457,10 @@ void qed_spq_setup(struct qed_hwfn *p_hwfn) int qed_spq_alloc(struct qed_hwfn *p_hwfn) { - struct qed_spq *p_spq = NULL; - dma_addr_t p_phys = 0; - struct qed_spq_entry *p_virt = NULL; + struct qed_spq_entry *p_virt = NULL; + struct qed_spq *p_spq = NULL; + dma_addr_t p_phys = 0; + u32 capacity; /* SPQ struct */ p_spq = @@ -464,6 +474,7 @@ int qed_spq_alloc(struct qed_hwfn *p_hwfn) if (qed_chain_alloc(p_hwfn->cdev, QED_CHAIN_USE_TO_PRODUCE, QED_CHAIN_MODE_SINGLE, + QED_CHAIN_CNT_TYPE_U16, 0, /* N/A when the mode is SINGLE */ sizeof(struct slow_path_element), &p_spq->chain)) { @@ -472,11 +483,11 @@ int qed_spq_alloc(struct qed_hwfn *p_hwfn) } /* allocate and fill the SPQ elements (incl. ramrod data list) */ + capacity = qed_chain_get_capacity(&p_spq->chain); p_virt = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, - p_spq->chain.capacity * + capacity * sizeof(struct qed_spq_entry), - &p_phys, - GFP_KERNEL); + &p_phys, GFP_KERNEL); if (!p_virt) goto spq_allocate_fail; @@ -496,16 +507,18 @@ spq_allocate_fail: void qed_spq_free(struct qed_hwfn *p_hwfn) { struct qed_spq *p_spq = p_hwfn->p_spq; + u32 capacity; if (!p_spq) return; - if (p_spq->p_virt) + if (p_spq->p_virt) { + capacity = qed_chain_get_capacity(&p_spq->chain); dma_free_coherent(&p_hwfn->cdev->pdev->dev, - p_spq->chain.capacity * + capacity * sizeof(struct qed_spq_entry), - p_spq->p_virt, - p_spq->p_phys); + p_spq->p_virt, p_spq->p_phys); + } qed_chain_free(p_hwfn->cdev, &p_spq->chain); ; @@ -603,7 +616,9 @@ qed_spq_add_entry(struct qed_hwfn *p_hwfn, *p_en2 = *p_ent; - kfree(p_ent); + /* EBLOCK responsible to free the allocated p_ent */ + if (p_ent->comp_mode != QED_SPQ_MODE_EBLOCK) + kfree(p_ent); p_ent = p_en2; } @@ -738,6 +753,15 @@ int qed_spq_post(struct qed_hwfn *p_hwfn, * Thus, after gaining the answer perform the cleanup here. */ rc = qed_spq_block(p_hwfn, p_ent, fw_return_code); + + if (p_ent->queue == &p_spq->unlimited_pending) { + /* This is an allocated p_ent which does not need to + * return to pool. + */ + kfree(p_ent); + return rc; + } + if (rc) goto spq_post_fail2; @@ -791,13 +815,12 @@ int qed_spq_completion(struct qed_hwfn *p_hwfn, * in a bitmap and increasing the chain consumer only * for the first successive completed entries. */ - bitmap_set(p_spq->p_comp_bitmap, pos, SPQ_RING_SIZE); + __set_bit(pos, p_spq->p_comp_bitmap); while (test_bit(p_spq->comp_bitmap_idx, p_spq->p_comp_bitmap)) { - bitmap_clear(p_spq->p_comp_bitmap, - p_spq->comp_bitmap_idx, - SPQ_RING_SIZE); + __clear_bit(p_spq->comp_bitmap_idx, + p_spq->p_comp_bitmap); p_spq->comp_bitmap_idx++; qed_chain_return_produced(&p_spq->chain); } @@ -833,8 +856,12 @@ int qed_spq_completion(struct qed_hwfn *p_hwfn, found->comp_cb.function(p_hwfn, found->comp_cb.cookie, p_data, fw_return_code); - if (found->comp_mode != QED_SPQ_MODE_EBLOCK) - /* EBLOCK is responsible for freeing its own entry */ + if ((found->comp_mode != QED_SPQ_MODE_EBLOCK) || + (found->queue == &p_spq->unlimited_pending)) + /* EBLOCK is responsible for returning its own entry into the + * free list, unless it originally added the entry into the + * unlimited pending list. + */ qed_spq_return_entry(p_hwfn, found); /* Attempt to post pending requests */ @@ -860,9 +887,9 @@ struct qed_consq *qed_consq_alloc(struct qed_hwfn *p_hwfn) if (qed_chain_alloc(p_hwfn->cdev, QED_CHAIN_USE_TO_PRODUCE, QED_CHAIN_MODE_PBL, + QED_CHAIN_CNT_TYPE_U16, QED_CHAIN_PAGE_SIZE / 0x80, - 0x80, - &p_consq->chain)) { + 0x80, &p_consq->chain)) { DP_NOTICE(p_hwfn, "Failed to allocate consq chain"); goto consq_allocate_fail; } diff --git a/drivers/net/ethernet/qlogic/qed/qed_sriov.c b/drivers/net/ethernet/qlogic/qed/qed_sriov.c new file mode 100644 index 000000000000..15399da268d9 --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_sriov.c @@ -0,0 +1,3859 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ + +#include <linux/etherdevice.h> +#include <linux/crc32.h> +#include <linux/qed/qed_iov_if.h> +#include "qed_cxt.h" +#include "qed_hsi.h" +#include "qed_hw.h" +#include "qed_init_ops.h" +#include "qed_int.h" +#include "qed_mcp.h" +#include "qed_reg_addr.h" +#include "qed_sp.h" +#include "qed_sriov.h" +#include "qed_vf.h" + +/* IOV ramrods */ +static int qed_sp_vf_start(struct qed_hwfn *p_hwfn, struct qed_vf_info *p_vf) +{ + struct vf_start_ramrod_data *p_ramrod = NULL; + struct qed_spq_entry *p_ent = NULL; + struct qed_sp_init_data init_data; + int rc = -EINVAL; + u8 fp_minor; + + /* Get SPQ entry */ + memset(&init_data, 0, sizeof(init_data)); + init_data.cid = qed_spq_get_cid(p_hwfn); + init_data.opaque_fid = p_vf->opaque_fid; + init_data.comp_mode = QED_SPQ_MODE_EBLOCK; + + rc = qed_sp_init_request(p_hwfn, &p_ent, + COMMON_RAMROD_VF_START, + PROTOCOLID_COMMON, &init_data); + if (rc) + return rc; + + p_ramrod = &p_ent->ramrod.vf_start; + + p_ramrod->vf_id = GET_FIELD(p_vf->concrete_fid, PXP_CONCRETE_FID_VFID); + p_ramrod->opaque_fid = cpu_to_le16(p_vf->opaque_fid); + + switch (p_hwfn->hw_info.personality) { + case QED_PCI_ETH: + p_ramrod->personality = PERSONALITY_ETH; + break; + case QED_PCI_ETH_ROCE: + p_ramrod->personality = PERSONALITY_RDMA_AND_ETH; + break; + default: + DP_NOTICE(p_hwfn, "Unknown VF personality %d\n", + p_hwfn->hw_info.personality); + return -EINVAL; + } + + fp_minor = p_vf->acquire.vfdev_info.eth_fp_hsi_minor; + if (fp_minor > ETH_HSI_VER_MINOR) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF [%d] - Requested fp hsi %02x.%02x which is slightly newer than PF's %02x.%02x; Configuring PFs version\n", + p_vf->abs_vf_id, + ETH_HSI_VER_MAJOR, + fp_minor, ETH_HSI_VER_MAJOR, ETH_HSI_VER_MINOR); + fp_minor = ETH_HSI_VER_MINOR; + } + + p_ramrod->hsi_fp_ver.major_ver_arr[ETH_VER_KEY] = ETH_HSI_VER_MAJOR; + p_ramrod->hsi_fp_ver.minor_ver_arr[ETH_VER_KEY] = fp_minor; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF[%d] - Starting using HSI %02x.%02x\n", + p_vf->abs_vf_id, ETH_HSI_VER_MAJOR, fp_minor); + + return qed_spq_post(p_hwfn, p_ent, NULL); +} + +static int qed_sp_vf_stop(struct qed_hwfn *p_hwfn, + u32 concrete_vfid, u16 opaque_vfid) +{ + struct vf_stop_ramrod_data *p_ramrod = NULL; + struct qed_spq_entry *p_ent = NULL; + struct qed_sp_init_data init_data; + int rc = -EINVAL; + + /* Get SPQ entry */ + memset(&init_data, 0, sizeof(init_data)); + init_data.cid = qed_spq_get_cid(p_hwfn); + init_data.opaque_fid = opaque_vfid; + init_data.comp_mode = QED_SPQ_MODE_EBLOCK; + + rc = qed_sp_init_request(p_hwfn, &p_ent, + COMMON_RAMROD_VF_STOP, + PROTOCOLID_COMMON, &init_data); + if (rc) + return rc; + + p_ramrod = &p_ent->ramrod.vf_stop; + + p_ramrod->vf_id = GET_FIELD(concrete_vfid, PXP_CONCRETE_FID_VFID); + + return qed_spq_post(p_hwfn, p_ent, NULL); +} + +bool qed_iov_is_valid_vfid(struct qed_hwfn *p_hwfn, + int rel_vf_id, bool b_enabled_only) +{ + if (!p_hwfn->pf_iov_info) { + DP_NOTICE(p_hwfn->cdev, "No iov info\n"); + return false; + } + + if ((rel_vf_id >= p_hwfn->cdev->p_iov_info->total_vfs) || + (rel_vf_id < 0)) + return false; + + if ((!p_hwfn->pf_iov_info->vfs_array[rel_vf_id].b_init) && + b_enabled_only) + return false; + + return true; +} + +static struct qed_vf_info *qed_iov_get_vf_info(struct qed_hwfn *p_hwfn, + u16 relative_vf_id, + bool b_enabled_only) +{ + struct qed_vf_info *vf = NULL; + + if (!p_hwfn->pf_iov_info) { + DP_NOTICE(p_hwfn->cdev, "No iov info\n"); + return NULL; + } + + if (qed_iov_is_valid_vfid(p_hwfn, relative_vf_id, b_enabled_only)) + vf = &p_hwfn->pf_iov_info->vfs_array[relative_vf_id]; + else + DP_ERR(p_hwfn, "qed_iov_get_vf_info: VF[%d] is not enabled\n", + relative_vf_id); + + return vf; +} + +static bool qed_iov_validate_rxq(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, u16 rx_qid) +{ + if (rx_qid >= p_vf->num_rxqs) + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[0x%02x] - can't touch Rx queue[%04x]; Only 0x%04x are allocated\n", + p_vf->abs_vf_id, rx_qid, p_vf->num_rxqs); + return rx_qid < p_vf->num_rxqs; +} + +static bool qed_iov_validate_txq(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, u16 tx_qid) +{ + if (tx_qid >= p_vf->num_txqs) + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[0x%02x] - can't touch Tx queue[%04x]; Only 0x%04x are allocated\n", + p_vf->abs_vf_id, tx_qid, p_vf->num_txqs); + return tx_qid < p_vf->num_txqs; +} + +static bool qed_iov_validate_sb(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, u16 sb_idx) +{ + int i; + + for (i = 0; i < p_vf->num_sbs; i++) + if (p_vf->igu_sbs[i] == sb_idx) + return true; + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[0%02x] - tried using sb_idx %04x which doesn't exist as one of its 0x%02x SBs\n", + p_vf->abs_vf_id, sb_idx, p_vf->num_sbs); + + return false; +} + +int qed_iov_post_vf_bulletin(struct qed_hwfn *p_hwfn, + int vfid, struct qed_ptt *p_ptt) +{ + struct qed_bulletin_content *p_bulletin; + int crc_size = sizeof(p_bulletin->crc); + struct qed_dmae_params params; + struct qed_vf_info *p_vf; + + p_vf = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!p_vf) + return -EINVAL; + + if (!p_vf->vf_bulletin) + return -EINVAL; + + p_bulletin = p_vf->bulletin.p_virt; + + /* Increment bulletin board version and compute crc */ + p_bulletin->version++; + p_bulletin->crc = crc32(0, (u8 *)p_bulletin + crc_size, + p_vf->bulletin.size - crc_size); + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Posting Bulletin 0x%08x to VF[%d] (CRC 0x%08x)\n", + p_bulletin->version, p_vf->relative_vf_id, p_bulletin->crc); + + /* propagate bulletin board via dmae to vm memory */ + memset(¶ms, 0, sizeof(params)); + params.flags = QED_DMAE_FLAG_VF_DST; + params.dst_vfid = p_vf->abs_vf_id; + return qed_dmae_host2host(p_hwfn, p_ptt, p_vf->bulletin.phys, + p_vf->vf_bulletin, p_vf->bulletin.size / 4, + ¶ms); +} + +static int qed_iov_pci_cfg_info(struct qed_dev *cdev) +{ + struct qed_hw_sriov_info *iov = cdev->p_iov_info; + int pos = iov->pos; + + DP_VERBOSE(cdev, QED_MSG_IOV, "sriov ext pos %d\n", pos); + pci_read_config_word(cdev->pdev, pos + PCI_SRIOV_CTRL, &iov->ctrl); + + pci_read_config_word(cdev->pdev, + pos + PCI_SRIOV_TOTAL_VF, &iov->total_vfs); + pci_read_config_word(cdev->pdev, + pos + PCI_SRIOV_INITIAL_VF, &iov->initial_vfs); + + pci_read_config_word(cdev->pdev, pos + PCI_SRIOV_NUM_VF, &iov->num_vfs); + if (iov->num_vfs) { + DP_VERBOSE(cdev, + QED_MSG_IOV, + "Number of VFs are already set to non-zero value. Ignoring PCI configuration value\n"); + iov->num_vfs = 0; + } + + pci_read_config_word(cdev->pdev, + pos + PCI_SRIOV_VF_OFFSET, &iov->offset); + + pci_read_config_word(cdev->pdev, + pos + PCI_SRIOV_VF_STRIDE, &iov->stride); + + pci_read_config_word(cdev->pdev, + pos + PCI_SRIOV_VF_DID, &iov->vf_device_id); + + pci_read_config_dword(cdev->pdev, + pos + PCI_SRIOV_SUP_PGSIZE, &iov->pgsz); + + pci_read_config_dword(cdev->pdev, pos + PCI_SRIOV_CAP, &iov->cap); + + pci_read_config_byte(cdev->pdev, pos + PCI_SRIOV_FUNC_LINK, &iov->link); + + DP_VERBOSE(cdev, + QED_MSG_IOV, + "IOV info: nres %d, cap 0x%x, ctrl 0x%x, total %d, initial %d, num vfs %d, offset %d, stride %d, page size 0x%x\n", + iov->nres, + iov->cap, + iov->ctrl, + iov->total_vfs, + iov->initial_vfs, + iov->nr_virtfn, iov->offset, iov->stride, iov->pgsz); + + /* Some sanity checks */ + if (iov->num_vfs > NUM_OF_VFS(cdev) || + iov->total_vfs > NUM_OF_VFS(cdev)) { + /* This can happen only due to a bug. In this case we set + * num_vfs to zero to avoid memory corruption in the code that + * assumes max number of vfs + */ + DP_NOTICE(cdev, + "IOV: Unexpected number of vfs set: %d setting num_vf to zero\n", + iov->num_vfs); + + iov->num_vfs = 0; + iov->total_vfs = 0; + } + + return 0; +} + +static void qed_iov_clear_vf_igu_blocks(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt) +{ + struct qed_igu_block *p_sb; + u16 sb_id; + u32 val; + + if (!p_hwfn->hw_info.p_igu_info) { + DP_ERR(p_hwfn, + "qed_iov_clear_vf_igu_blocks IGU Info not initialized\n"); + return; + } + + for (sb_id = 0; sb_id < QED_MAPPING_MEMORY_SIZE(p_hwfn->cdev); + sb_id++) { + p_sb = &p_hwfn->hw_info.p_igu_info->igu_map.igu_blocks[sb_id]; + if ((p_sb->status & QED_IGU_STATUS_FREE) && + !(p_sb->status & QED_IGU_STATUS_PF)) { + val = qed_rd(p_hwfn, p_ptt, + IGU_REG_MAPPING_MEMORY + sb_id * 4); + SET_FIELD(val, IGU_MAPPING_LINE_VALID, 0); + qed_wr(p_hwfn, p_ptt, + IGU_REG_MAPPING_MEMORY + 4 * sb_id, val); + } + } +} + +static void qed_iov_setup_vfdb(struct qed_hwfn *p_hwfn) +{ + struct qed_hw_sriov_info *p_iov = p_hwfn->cdev->p_iov_info; + struct qed_pf_iov *p_iov_info = p_hwfn->pf_iov_info; + struct qed_bulletin_content *p_bulletin_virt; + dma_addr_t req_p, rply_p, bulletin_p; + union pfvf_tlvs *p_reply_virt_addr; + union vfpf_tlvs *p_req_virt_addr; + u8 idx = 0; + + memset(p_iov_info->vfs_array, 0, sizeof(p_iov_info->vfs_array)); + + p_req_virt_addr = p_iov_info->mbx_msg_virt_addr; + req_p = p_iov_info->mbx_msg_phys_addr; + p_reply_virt_addr = p_iov_info->mbx_reply_virt_addr; + rply_p = p_iov_info->mbx_reply_phys_addr; + p_bulletin_virt = p_iov_info->p_bulletins; + bulletin_p = p_iov_info->bulletins_phys; + if (!p_req_virt_addr || !p_reply_virt_addr || !p_bulletin_virt) { + DP_ERR(p_hwfn, + "qed_iov_setup_vfdb called without allocating mem first\n"); + return; + } + + for (idx = 0; idx < p_iov->total_vfs; idx++) { + struct qed_vf_info *vf = &p_iov_info->vfs_array[idx]; + u32 concrete; + + vf->vf_mbx.req_virt = p_req_virt_addr + idx; + vf->vf_mbx.req_phys = req_p + idx * sizeof(union vfpf_tlvs); + vf->vf_mbx.reply_virt = p_reply_virt_addr + idx; + vf->vf_mbx.reply_phys = rply_p + idx * sizeof(union pfvf_tlvs); + + vf->state = VF_STOPPED; + vf->b_init = false; + + vf->bulletin.phys = idx * + sizeof(struct qed_bulletin_content) + + bulletin_p; + vf->bulletin.p_virt = p_bulletin_virt + idx; + vf->bulletin.size = sizeof(struct qed_bulletin_content); + + vf->relative_vf_id = idx; + vf->abs_vf_id = idx + p_iov->first_vf_in_pf; + concrete = qed_vfid_to_concrete(p_hwfn, vf->abs_vf_id); + vf->concrete_fid = concrete; + vf->opaque_fid = (p_hwfn->hw_info.opaque_fid & 0xff) | + (vf->abs_vf_id << 8); + vf->vport_id = idx + 1; + + vf->num_mac_filters = QED_ETH_VF_NUM_MAC_FILTERS; + vf->num_vlan_filters = QED_ETH_VF_NUM_VLAN_FILTERS; + } +} + +static int qed_iov_allocate_vfdb(struct qed_hwfn *p_hwfn) +{ + struct qed_pf_iov *p_iov_info = p_hwfn->pf_iov_info; + void **p_v_addr; + u16 num_vfs = 0; + + num_vfs = p_hwfn->cdev->p_iov_info->total_vfs; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "qed_iov_allocate_vfdb for %d VFs\n", num_vfs); + + /* Allocate PF Mailbox buffer (per-VF) */ + p_iov_info->mbx_msg_size = sizeof(union vfpf_tlvs) * num_vfs; + p_v_addr = &p_iov_info->mbx_msg_virt_addr; + *p_v_addr = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + p_iov_info->mbx_msg_size, + &p_iov_info->mbx_msg_phys_addr, + GFP_KERNEL); + if (!*p_v_addr) + return -ENOMEM; + + /* Allocate PF Mailbox Reply buffer (per-VF) */ + p_iov_info->mbx_reply_size = sizeof(union pfvf_tlvs) * num_vfs; + p_v_addr = &p_iov_info->mbx_reply_virt_addr; + *p_v_addr = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + p_iov_info->mbx_reply_size, + &p_iov_info->mbx_reply_phys_addr, + GFP_KERNEL); + if (!*p_v_addr) + return -ENOMEM; + + p_iov_info->bulletins_size = sizeof(struct qed_bulletin_content) * + num_vfs; + p_v_addr = &p_iov_info->p_bulletins; + *p_v_addr = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + p_iov_info->bulletins_size, + &p_iov_info->bulletins_phys, + GFP_KERNEL); + if (!*p_v_addr) + return -ENOMEM; + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "PF's Requests mailbox [%p virt 0x%llx phys], Response mailbox [%p virt 0x%llx phys] Bulletins [%p virt 0x%llx phys]\n", + p_iov_info->mbx_msg_virt_addr, + (u64) p_iov_info->mbx_msg_phys_addr, + p_iov_info->mbx_reply_virt_addr, + (u64) p_iov_info->mbx_reply_phys_addr, + p_iov_info->p_bulletins, (u64) p_iov_info->bulletins_phys); + + return 0; +} + +static void qed_iov_free_vfdb(struct qed_hwfn *p_hwfn) +{ + struct qed_pf_iov *p_iov_info = p_hwfn->pf_iov_info; + + if (p_hwfn->pf_iov_info->mbx_msg_virt_addr) + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + p_iov_info->mbx_msg_size, + p_iov_info->mbx_msg_virt_addr, + p_iov_info->mbx_msg_phys_addr); + + if (p_hwfn->pf_iov_info->mbx_reply_virt_addr) + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + p_iov_info->mbx_reply_size, + p_iov_info->mbx_reply_virt_addr, + p_iov_info->mbx_reply_phys_addr); + + if (p_iov_info->p_bulletins) + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + p_iov_info->bulletins_size, + p_iov_info->p_bulletins, + p_iov_info->bulletins_phys); +} + +int qed_iov_alloc(struct qed_hwfn *p_hwfn) +{ + struct qed_pf_iov *p_sriov; + + if (!IS_PF_SRIOV(p_hwfn)) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "No SR-IOV - no need for IOV db\n"); + return 0; + } + + p_sriov = kzalloc(sizeof(*p_sriov), GFP_KERNEL); + if (!p_sriov) { + DP_NOTICE(p_hwfn, "Failed to allocate `struct qed_sriov'\n"); + return -ENOMEM; + } + + p_hwfn->pf_iov_info = p_sriov; + + return qed_iov_allocate_vfdb(p_hwfn); +} + +void qed_iov_setup(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + if (!IS_PF_SRIOV(p_hwfn) || !IS_PF_SRIOV_ALLOC(p_hwfn)) + return; + + qed_iov_setup_vfdb(p_hwfn); + qed_iov_clear_vf_igu_blocks(p_hwfn, p_ptt); +} + +void qed_iov_free(struct qed_hwfn *p_hwfn) +{ + if (IS_PF_SRIOV_ALLOC(p_hwfn)) { + qed_iov_free_vfdb(p_hwfn); + kfree(p_hwfn->pf_iov_info); + } +} + +void qed_iov_free_hw_info(struct qed_dev *cdev) +{ + kfree(cdev->p_iov_info); + cdev->p_iov_info = NULL; +} + +int qed_iov_hw_info(struct qed_hwfn *p_hwfn) +{ + struct qed_dev *cdev = p_hwfn->cdev; + int pos; + int rc; + + if (IS_VF(p_hwfn->cdev)) + return 0; + + /* Learn the PCI configuration */ + pos = pci_find_ext_capability(p_hwfn->cdev->pdev, + PCI_EXT_CAP_ID_SRIOV); + if (!pos) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, "No PCIe IOV support\n"); + return 0; + } + + /* Allocate a new struct for IOV information */ + cdev->p_iov_info = kzalloc(sizeof(*cdev->p_iov_info), GFP_KERNEL); + if (!cdev->p_iov_info) { + DP_NOTICE(p_hwfn, "Can't support IOV due to lack of memory\n"); + return -ENOMEM; + } + cdev->p_iov_info->pos = pos; + + rc = qed_iov_pci_cfg_info(cdev); + if (rc) + return rc; + + /* We want PF IOV to be synonemous with the existance of p_iov_info; + * In case the capability is published but there are no VFs, simply + * de-allocate the struct. + */ + if (!cdev->p_iov_info->total_vfs) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "IOV capabilities, but no VFs are published\n"); + kfree(cdev->p_iov_info); + cdev->p_iov_info = NULL; + return 0; + } + + /* Calculate the first VF index - this is a bit tricky; Basically, + * VFs start at offset 16 relative to PF0, and 2nd engine VFs begin + * after the first engine's VFs. + */ + cdev->p_iov_info->first_vf_in_pf = p_hwfn->cdev->p_iov_info->offset + + p_hwfn->abs_pf_id - 16; + if (QED_PATH_ID(p_hwfn)) + cdev->p_iov_info->first_vf_in_pf -= MAX_NUM_VFS_BB; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "First VF in hwfn 0x%08x\n", + cdev->p_iov_info->first_vf_in_pf); + + return 0; +} + +static bool qed_iov_pf_sanity_check(struct qed_hwfn *p_hwfn, int vfid) +{ + /* Check PF supports sriov */ + if (IS_VF(p_hwfn->cdev) || !IS_QED_SRIOV(p_hwfn->cdev) || + !IS_PF_SRIOV_ALLOC(p_hwfn)) + return false; + + /* Check VF validity */ + if (!qed_iov_is_valid_vfid(p_hwfn, vfid, true)) + return false; + + return true; +} + +static void qed_iov_set_vf_to_disable(struct qed_dev *cdev, + u16 rel_vf_id, u8 to_disable) +{ + struct qed_vf_info *vf; + int i; + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + + vf = qed_iov_get_vf_info(p_hwfn, rel_vf_id, false); + if (!vf) + continue; + + vf->to_disable = to_disable; + } +} + +void qed_iov_set_vfs_to_disable(struct qed_dev *cdev, u8 to_disable) +{ + u16 i; + + if (!IS_QED_SRIOV(cdev)) + return; + + for (i = 0; i < cdev->p_iov_info->total_vfs; i++) + qed_iov_set_vf_to_disable(cdev, i, to_disable); +} + +static void qed_iov_vf_pglue_clear_err(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u8 abs_vfid) +{ + qed_wr(p_hwfn, p_ptt, + PGLUE_B_REG_WAS_ERROR_VF_31_0_CLR + (abs_vfid >> 5) * 4, + 1 << (abs_vfid & 0x1f)); +} + +static void qed_iov_vf_igu_reset(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, struct qed_vf_info *vf) +{ + int i; + + /* Set VF masks and configuration - pretend */ + qed_fid_pretend(p_hwfn, p_ptt, (u16) vf->concrete_fid); + + qed_wr(p_hwfn, p_ptt, IGU_REG_STATISTIC_NUM_VF_MSG_SENT, 0); + + /* unpretend */ + qed_fid_pretend(p_hwfn, p_ptt, (u16) p_hwfn->hw_info.concrete_fid); + + /* iterate over all queues, clear sb consumer */ + for (i = 0; i < vf->num_sbs; i++) + qed_int_igu_init_pure_rt_single(p_hwfn, p_ptt, + vf->igu_sbs[i], + vf->opaque_fid, true); +} + +static void qed_iov_vf_igu_set_int(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf, bool enable) +{ + u32 igu_vf_conf; + + qed_fid_pretend(p_hwfn, p_ptt, (u16) vf->concrete_fid); + + igu_vf_conf = qed_rd(p_hwfn, p_ptt, IGU_REG_VF_CONFIGURATION); + + if (enable) + igu_vf_conf |= IGU_VF_CONF_MSI_MSIX_EN; + else + igu_vf_conf &= ~IGU_VF_CONF_MSI_MSIX_EN; + + qed_wr(p_hwfn, p_ptt, IGU_REG_VF_CONFIGURATION, igu_vf_conf); + + /* unpretend */ + qed_fid_pretend(p_hwfn, p_ptt, (u16) p_hwfn->hw_info.concrete_fid); +} + +static int qed_iov_enable_vf_access(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + u32 igu_vf_conf = IGU_VF_CONF_FUNC_EN; + int rc; + + if (vf->to_disable) + return 0; + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "Enable internal access for vf %x [abs %x]\n", + vf->abs_vf_id, QED_VF_ABS_ID(p_hwfn, vf)); + + qed_iov_vf_pglue_clear_err(p_hwfn, p_ptt, QED_VF_ABS_ID(p_hwfn, vf)); + + qed_iov_vf_igu_reset(p_hwfn, p_ptt, vf); + + rc = qed_mcp_config_vf_msix(p_hwfn, p_ptt, vf->abs_vf_id, vf->num_sbs); + if (rc) + return rc; + + qed_fid_pretend(p_hwfn, p_ptt, (u16) vf->concrete_fid); + + SET_FIELD(igu_vf_conf, IGU_VF_CONF_PARENT, p_hwfn->rel_pf_id); + STORE_RT_REG(p_hwfn, IGU_REG_VF_CONFIGURATION_RT_OFFSET, igu_vf_conf); + + qed_init_run(p_hwfn, p_ptt, PHASE_VF, vf->abs_vf_id, + p_hwfn->hw_info.hw_mode); + + /* unpretend */ + qed_fid_pretend(p_hwfn, p_ptt, (u16) p_hwfn->hw_info.concrete_fid); + + vf->state = VF_FREE; + + return rc; +} + +/** + * @brief qed_iov_config_perm_table - configure the permission + * zone table. + * In E4, queue zone permission table size is 320x9. There + * are 320 VF queues for single engine device (256 for dual + * engine device), and each entry has the following format: + * {Valid, VF[7:0]} + * @param p_hwfn + * @param p_ptt + * @param vf + * @param enable + */ +static void qed_iov_config_perm_table(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf, u8 enable) +{ + u32 reg_addr, val; + u16 qzone_id = 0; + int qid; + + for (qid = 0; qid < vf->num_rxqs; qid++) { + qed_fw_l2_queue(p_hwfn, vf->vf_queues[qid].fw_rx_qid, + &qzone_id); + + reg_addr = PSWHST_REG_ZONE_PERMISSION_TABLE + qzone_id * 4; + val = enable ? (vf->abs_vf_id | (1 << 8)) : 0; + qed_wr(p_hwfn, p_ptt, reg_addr, val); + } +} + +static void qed_iov_enable_vf_traffic(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + /* Reset vf in IGU - interrupts are still disabled */ + qed_iov_vf_igu_reset(p_hwfn, p_ptt, vf); + + qed_iov_vf_igu_set_int(p_hwfn, p_ptt, vf, 1); + + /* Permission Table */ + qed_iov_config_perm_table(p_hwfn, p_ptt, vf, true); +} + +static u8 qed_iov_alloc_vf_igu_sbs(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf, u16 num_rx_queues) +{ + struct qed_igu_block *igu_blocks; + int qid = 0, igu_id = 0; + u32 val = 0; + + igu_blocks = p_hwfn->hw_info.p_igu_info->igu_map.igu_blocks; + + if (num_rx_queues > p_hwfn->hw_info.p_igu_info->free_blks) + num_rx_queues = p_hwfn->hw_info.p_igu_info->free_blks; + p_hwfn->hw_info.p_igu_info->free_blks -= num_rx_queues; + + SET_FIELD(val, IGU_MAPPING_LINE_FUNCTION_NUMBER, vf->abs_vf_id); + SET_FIELD(val, IGU_MAPPING_LINE_VALID, 1); + SET_FIELD(val, IGU_MAPPING_LINE_PF_VALID, 0); + + while ((qid < num_rx_queues) && + (igu_id < QED_MAPPING_MEMORY_SIZE(p_hwfn->cdev))) { + if (igu_blocks[igu_id].status & QED_IGU_STATUS_FREE) { + struct cau_sb_entry sb_entry; + + vf->igu_sbs[qid] = (u16)igu_id; + igu_blocks[igu_id].status &= ~QED_IGU_STATUS_FREE; + + SET_FIELD(val, IGU_MAPPING_LINE_VECTOR_NUMBER, qid); + + qed_wr(p_hwfn, p_ptt, + IGU_REG_MAPPING_MEMORY + sizeof(u32) * igu_id, + val); + + /* Configure igu sb in CAU which were marked valid */ + qed_init_cau_sb_entry(p_hwfn, &sb_entry, + p_hwfn->rel_pf_id, + vf->abs_vf_id, 1); + qed_dmae_host2grc(p_hwfn, p_ptt, + (u64)(uintptr_t)&sb_entry, + CAU_REG_SB_VAR_MEMORY + + igu_id * sizeof(u64), 2, 0); + qid++; + } + igu_id++; + } + + vf->num_sbs = (u8) num_rx_queues; + + return vf->num_sbs; +} + +static void qed_iov_free_vf_igu_sbs(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_igu_info *p_info = p_hwfn->hw_info.p_igu_info; + int idx, igu_id; + u32 addr, val; + + /* Invalidate igu CAM lines and mark them as free */ + for (idx = 0; idx < vf->num_sbs; idx++) { + igu_id = vf->igu_sbs[idx]; + addr = IGU_REG_MAPPING_MEMORY + sizeof(u32) * igu_id; + + val = qed_rd(p_hwfn, p_ptt, addr); + SET_FIELD(val, IGU_MAPPING_LINE_VALID, 0); + qed_wr(p_hwfn, p_ptt, addr, val); + + p_info->igu_map.igu_blocks[igu_id].status |= + QED_IGU_STATUS_FREE; + + p_hwfn->hw_info.p_igu_info->free_blks++; + } + + vf->num_sbs = 0; +} + +static int qed_iov_init_hw_for_vf(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u16 rel_vf_id, u16 num_rx_queues) +{ + u8 num_of_vf_avaiable_chains = 0; + struct qed_vf_info *vf = NULL; + int rc = 0; + u32 cids; + u8 i; + + vf = qed_iov_get_vf_info(p_hwfn, rel_vf_id, false); + if (!vf) { + DP_ERR(p_hwfn, "qed_iov_init_hw_for_vf : vf is NULL\n"); + return -EINVAL; + } + + if (vf->b_init) { + DP_NOTICE(p_hwfn, "VF[%d] is already active.\n", rel_vf_id); + return -EINVAL; + } + + /* Limit number of queues according to number of CIDs */ + qed_cxt_get_proto_cid_count(p_hwfn, PROTOCOLID_ETH, &cids); + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[%d] - requesting to initialize for 0x%04x queues [0x%04x CIDs available]\n", + vf->relative_vf_id, num_rx_queues, (u16) cids); + num_rx_queues = min_t(u16, num_rx_queues, ((u16) cids)); + + num_of_vf_avaiable_chains = qed_iov_alloc_vf_igu_sbs(p_hwfn, + p_ptt, + vf, + num_rx_queues); + if (!num_of_vf_avaiable_chains) { + DP_ERR(p_hwfn, "no available igu sbs\n"); + return -ENOMEM; + } + + /* Choose queue number and index ranges */ + vf->num_rxqs = num_of_vf_avaiable_chains; + vf->num_txqs = num_of_vf_avaiable_chains; + + for (i = 0; i < vf->num_rxqs; i++) { + u16 queue_id = qed_int_queue_id_from_sb_id(p_hwfn, + vf->igu_sbs[i]); + + if (queue_id > RESC_NUM(p_hwfn, QED_L2_QUEUE)) { + DP_NOTICE(p_hwfn, + "VF[%d] will require utilizing of out-of-bounds queues - %04x\n", + vf->relative_vf_id, queue_id); + return -EINVAL; + } + + /* CIDs are per-VF, so no problem having them 0-based. */ + vf->vf_queues[i].fw_rx_qid = queue_id; + vf->vf_queues[i].fw_tx_qid = queue_id; + vf->vf_queues[i].fw_cid = i; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF[%d] - [%d] SB %04x, Tx/Rx queue %04x CID %04x\n", + vf->relative_vf_id, i, vf->igu_sbs[i], queue_id, i); + } + rc = qed_iov_enable_vf_access(p_hwfn, p_ptt, vf); + if (!rc) { + vf->b_init = true; + + if (IS_LEAD_HWFN(p_hwfn)) + p_hwfn->cdev->p_iov_info->num_vfs++; + } + + return rc; +} + +static void qed_iov_set_link(struct qed_hwfn *p_hwfn, + u16 vfid, + struct qed_mcp_link_params *params, + struct qed_mcp_link_state *link, + struct qed_mcp_link_capabilities *p_caps) +{ + struct qed_vf_info *p_vf = qed_iov_get_vf_info(p_hwfn, + vfid, + false); + struct qed_bulletin_content *p_bulletin; + + if (!p_vf) + return; + + p_bulletin = p_vf->bulletin.p_virt; + p_bulletin->req_autoneg = params->speed.autoneg; + p_bulletin->req_adv_speed = params->speed.advertised_speeds; + p_bulletin->req_forced_speed = params->speed.forced_speed; + p_bulletin->req_autoneg_pause = params->pause.autoneg; + p_bulletin->req_forced_rx = params->pause.forced_rx; + p_bulletin->req_forced_tx = params->pause.forced_tx; + p_bulletin->req_loopback = params->loopback_mode; + + p_bulletin->link_up = link->link_up; + p_bulletin->speed = link->speed; + p_bulletin->full_duplex = link->full_duplex; + p_bulletin->autoneg = link->an; + p_bulletin->autoneg_complete = link->an_complete; + p_bulletin->parallel_detection = link->parallel_detection; + p_bulletin->pfc_enabled = link->pfc_enabled; + p_bulletin->partner_adv_speed = link->partner_adv_speed; + p_bulletin->partner_tx_flow_ctrl_en = link->partner_tx_flow_ctrl_en; + p_bulletin->partner_rx_flow_ctrl_en = link->partner_rx_flow_ctrl_en; + p_bulletin->partner_adv_pause = link->partner_adv_pause; + p_bulletin->sfp_tx_fault = link->sfp_tx_fault; + + p_bulletin->capability_speed = p_caps->speed_capabilities; +} + +static int qed_iov_release_hw_for_vf(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, u16 rel_vf_id) +{ + struct qed_mcp_link_capabilities caps; + struct qed_mcp_link_params params; + struct qed_mcp_link_state link; + struct qed_vf_info *vf = NULL; + + vf = qed_iov_get_vf_info(p_hwfn, rel_vf_id, true); + if (!vf) { + DP_ERR(p_hwfn, "qed_iov_release_hw_for_vf : vf is NULL\n"); + return -EINVAL; + } + + if (vf->bulletin.p_virt) + memset(vf->bulletin.p_virt, 0, sizeof(*vf->bulletin.p_virt)); + + memset(&vf->p_vf_info, 0, sizeof(vf->p_vf_info)); + + /* Get the link configuration back in bulletin so + * that when VFs are re-enabled they get the actual + * link configuration. + */ + memcpy(¶ms, qed_mcp_get_link_params(p_hwfn), sizeof(params)); + memcpy(&link, qed_mcp_get_link_state(p_hwfn), sizeof(link)); + memcpy(&caps, qed_mcp_get_link_capabilities(p_hwfn), sizeof(caps)); + qed_iov_set_link(p_hwfn, rel_vf_id, ¶ms, &link, &caps); + + /* Forget the VF's acquisition message */ + memset(&vf->acquire, 0, sizeof(vf->acquire)); + + /* disablng interrupts and resetting permission table was done during + * vf-close, however, we could get here without going through vf_close + */ + /* Disable Interrupts for VF */ + qed_iov_vf_igu_set_int(p_hwfn, p_ptt, vf, 0); + + /* Reset Permission table */ + qed_iov_config_perm_table(p_hwfn, p_ptt, vf, 0); + + vf->num_rxqs = 0; + vf->num_txqs = 0; + qed_iov_free_vf_igu_sbs(p_hwfn, p_ptt, vf); + + if (vf->b_init) { + vf->b_init = false; + + if (IS_LEAD_HWFN(p_hwfn)) + p_hwfn->cdev->p_iov_info->num_vfs--; + } + + return 0; +} + +static bool qed_iov_tlv_supported(u16 tlvtype) +{ + return CHANNEL_TLV_NONE < tlvtype && tlvtype < CHANNEL_TLV_MAX; +} + +/* place a given tlv on the tlv buffer, continuing current tlv list */ +void *qed_add_tlv(struct qed_hwfn *p_hwfn, u8 **offset, u16 type, u16 length) +{ + struct channel_tlv *tl = (struct channel_tlv *)*offset; + + tl->type = type; + tl->length = length; + + /* Offset should keep pointing to next TLV (the end of the last) */ + *offset += length; + + /* Return a pointer to the start of the added tlv */ + return *offset - length; +} + +/* list the types and lengths of the tlvs on the buffer */ +void qed_dp_tlv_list(struct qed_hwfn *p_hwfn, void *tlvs_list) +{ + u16 i = 1, total_length = 0; + struct channel_tlv *tlv; + + do { + tlv = (struct channel_tlv *)((u8 *)tlvs_list + total_length); + + /* output tlv */ + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "TLV number %d: type %d, length %d\n", + i, tlv->type, tlv->length); + + if (tlv->type == CHANNEL_TLV_LIST_END) + return; + + /* Validate entry - protect against malicious VFs */ + if (!tlv->length) { + DP_NOTICE(p_hwfn, "TLV of length 0 found\n"); + return; + } + + total_length += tlv->length; + + if (total_length >= sizeof(struct tlv_buffer_size)) { + DP_NOTICE(p_hwfn, "TLV ==> Buffer overflow\n"); + return; + } + + i++; + } while (1); +} + +static void qed_iov_send_response(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *p_vf, + u16 length, u8 status) +{ + struct qed_iov_vf_mbx *mbx = &p_vf->vf_mbx; + struct qed_dmae_params params; + u8 eng_vf_id; + + mbx->reply_virt->default_resp.hdr.status = status; + + qed_dp_tlv_list(p_hwfn, mbx->reply_virt); + + eng_vf_id = p_vf->abs_vf_id; + + memset(¶ms, 0, sizeof(struct qed_dmae_params)); + params.flags = QED_DMAE_FLAG_VF_DST; + params.dst_vfid = eng_vf_id; + + qed_dmae_host2host(p_hwfn, p_ptt, mbx->reply_phys + sizeof(u64), + mbx->req_virt->first_tlv.reply_address + + sizeof(u64), + (sizeof(union pfvf_tlvs) - sizeof(u64)) / 4, + ¶ms); + + qed_dmae_host2host(p_hwfn, p_ptt, mbx->reply_phys, + mbx->req_virt->first_tlv.reply_address, + sizeof(u64) / 4, ¶ms); + + REG_WR(p_hwfn, + GTT_BAR0_MAP_REG_USDM_RAM + + USTORM_VF_PF_CHANNEL_READY_OFFSET(eng_vf_id), 1); +} + +static u16 qed_iov_vport_to_tlv(struct qed_hwfn *p_hwfn, + enum qed_iov_vport_update_flag flag) +{ + switch (flag) { + case QED_IOV_VP_UPDATE_ACTIVATE: + return CHANNEL_TLV_VPORT_UPDATE_ACTIVATE; + case QED_IOV_VP_UPDATE_VLAN_STRIP: + return CHANNEL_TLV_VPORT_UPDATE_VLAN_STRIP; + case QED_IOV_VP_UPDATE_TX_SWITCH: + return CHANNEL_TLV_VPORT_UPDATE_TX_SWITCH; + case QED_IOV_VP_UPDATE_MCAST: + return CHANNEL_TLV_VPORT_UPDATE_MCAST; + case QED_IOV_VP_UPDATE_ACCEPT_PARAM: + return CHANNEL_TLV_VPORT_UPDATE_ACCEPT_PARAM; + case QED_IOV_VP_UPDATE_RSS: + return CHANNEL_TLV_VPORT_UPDATE_RSS; + case QED_IOV_VP_UPDATE_ACCEPT_ANY_VLAN: + return CHANNEL_TLV_VPORT_UPDATE_ACCEPT_ANY_VLAN; + case QED_IOV_VP_UPDATE_SGE_TPA: + return CHANNEL_TLV_VPORT_UPDATE_SGE_TPA; + default: + return 0; + } +} + +static u16 qed_iov_prep_vp_update_resp_tlvs(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, + struct qed_iov_vf_mbx *p_mbx, + u8 status, + u16 tlvs_mask, u16 tlvs_accepted) +{ + struct pfvf_def_resp_tlv *resp; + u16 size, total_len, i; + + memset(p_mbx->reply_virt, 0, sizeof(union pfvf_tlvs)); + p_mbx->offset = (u8 *)p_mbx->reply_virt; + size = sizeof(struct pfvf_def_resp_tlv); + total_len = size; + + qed_add_tlv(p_hwfn, &p_mbx->offset, CHANNEL_TLV_VPORT_UPDATE, size); + + /* Prepare response for all extended tlvs if they are found by PF */ + for (i = 0; i < QED_IOV_VP_UPDATE_MAX; i++) { + if (!(tlvs_mask & (1 << i))) + continue; + + resp = qed_add_tlv(p_hwfn, &p_mbx->offset, + qed_iov_vport_to_tlv(p_hwfn, i), size); + + if (tlvs_accepted & (1 << i)) + resp->hdr.status = status; + else + resp->hdr.status = PFVF_STATUS_NOT_SUPPORTED; + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[%d] - vport_update response: TLV %d, status %02x\n", + p_vf->relative_vf_id, + qed_iov_vport_to_tlv(p_hwfn, i), resp->hdr.status); + + total_len += size; + } + + qed_add_tlv(p_hwfn, &p_mbx->offset, CHANNEL_TLV_LIST_END, + sizeof(struct channel_list_end_tlv)); + + return total_len; +} + +static void qed_iov_prepare_resp(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf_info, + u16 type, u16 length, u8 status) +{ + struct qed_iov_vf_mbx *mbx = &vf_info->vf_mbx; + + mbx->offset = (u8 *)mbx->reply_virt; + + qed_add_tlv(p_hwfn, &mbx->offset, type, length); + qed_add_tlv(p_hwfn, &mbx->offset, CHANNEL_TLV_LIST_END, + sizeof(struct channel_list_end_tlv)); + + qed_iov_send_response(p_hwfn, p_ptt, vf_info, length, status); +} + +struct qed_public_vf_info *qed_iov_get_public_vf_info(struct qed_hwfn *p_hwfn, + u16 relative_vf_id, + bool b_enabled_only) +{ + struct qed_vf_info *vf = NULL; + + vf = qed_iov_get_vf_info(p_hwfn, relative_vf_id, b_enabled_only); + if (!vf) + return NULL; + + return &vf->p_vf_info; +} + +void qed_iov_clean_vf(struct qed_hwfn *p_hwfn, u8 vfid) +{ + struct qed_public_vf_info *vf_info; + + vf_info = qed_iov_get_public_vf_info(p_hwfn, vfid, false); + + if (!vf_info) + return; + + /* Clear the VF mac */ + memset(vf_info->mac, 0, ETH_ALEN); +} + +static void qed_iov_vf_cleanup(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf) +{ + u32 i; + + p_vf->vf_bulletin = 0; + p_vf->vport_instance = 0; + p_vf->configured_features = 0; + + /* If VF previously requested less resources, go back to default */ + p_vf->num_rxqs = p_vf->num_sbs; + p_vf->num_txqs = p_vf->num_sbs; + + p_vf->num_active_rxqs = 0; + + for (i = 0; i < QED_MAX_VF_CHAINS_PER_PF; i++) + p_vf->vf_queues[i].rxq_active = 0; + + memset(&p_vf->shadow_config, 0, sizeof(p_vf->shadow_config)); + memset(&p_vf->acquire, 0, sizeof(p_vf->acquire)); + qed_iov_clean_vf(p_hwfn, p_vf->relative_vf_id); +} + +static u8 qed_iov_vf_mbx_acquire_resc(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *p_vf, + struct vf_pf_resc_request *p_req, + struct pf_vf_resc *p_resp) +{ + int i; + + /* Queue related information */ + p_resp->num_rxqs = p_vf->num_rxqs; + p_resp->num_txqs = p_vf->num_txqs; + p_resp->num_sbs = p_vf->num_sbs; + + for (i = 0; i < p_resp->num_sbs; i++) { + p_resp->hw_sbs[i].hw_sb_id = p_vf->igu_sbs[i]; + p_resp->hw_sbs[i].sb_qid = 0; + } + + /* These fields are filled for backward compatibility. + * Unused by modern vfs. + */ + for (i = 0; i < p_resp->num_rxqs; i++) { + qed_fw_l2_queue(p_hwfn, p_vf->vf_queues[i].fw_rx_qid, + (u16 *)&p_resp->hw_qid[i]); + p_resp->cid[i] = p_vf->vf_queues[i].fw_cid; + } + + /* Filter related information */ + p_resp->num_mac_filters = min_t(u8, p_vf->num_mac_filters, + p_req->num_mac_filters); + p_resp->num_vlan_filters = min_t(u8, p_vf->num_vlan_filters, + p_req->num_vlan_filters); + + /* This isn't really needed/enforced, but some legacy VFs might depend + * on the correct filling of this field. + */ + p_resp->num_mc_filters = QED_MAX_MC_ADDRS; + + /* Validate sufficient resources for VF */ + if (p_resp->num_rxqs < p_req->num_rxqs || + p_resp->num_txqs < p_req->num_txqs || + p_resp->num_sbs < p_req->num_sbs || + p_resp->num_mac_filters < p_req->num_mac_filters || + p_resp->num_vlan_filters < p_req->num_vlan_filters || + p_resp->num_mc_filters < p_req->num_mc_filters) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[%d] - Insufficient resources: rxq [%02x/%02x] txq [%02x/%02x] sbs [%02x/%02x] mac [%02x/%02x] vlan [%02x/%02x] mc [%02x/%02x]\n", + p_vf->abs_vf_id, + p_req->num_rxqs, + p_resp->num_rxqs, + p_req->num_rxqs, + p_resp->num_txqs, + p_req->num_sbs, + p_resp->num_sbs, + p_req->num_mac_filters, + p_resp->num_mac_filters, + p_req->num_vlan_filters, + p_resp->num_vlan_filters, + p_req->num_mc_filters, p_resp->num_mc_filters); + return PFVF_STATUS_NO_RESOURCE; + } + + return PFVF_STATUS_SUCCESS; +} + +static void qed_iov_vf_mbx_acquire_stats(struct qed_hwfn *p_hwfn, + struct pfvf_stats_info *p_stats) +{ + p_stats->mstats.address = PXP_VF_BAR0_START_MSDM_ZONE_B + + offsetof(struct mstorm_vf_zone, + non_trigger.eth_queue_stat); + p_stats->mstats.len = sizeof(struct eth_mstorm_per_queue_stat); + p_stats->ustats.address = PXP_VF_BAR0_START_USDM_ZONE_B + + offsetof(struct ustorm_vf_zone, + non_trigger.eth_queue_stat); + p_stats->ustats.len = sizeof(struct eth_ustorm_per_queue_stat); + p_stats->pstats.address = PXP_VF_BAR0_START_PSDM_ZONE_B + + offsetof(struct pstorm_vf_zone, + non_trigger.eth_queue_stat); + p_stats->pstats.len = sizeof(struct eth_pstorm_per_queue_stat); + p_stats->tstats.address = 0; + p_stats->tstats.len = 0; +} + +static void qed_iov_vf_mbx_acquire(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + struct pfvf_acquire_resp_tlv *resp = &mbx->reply_virt->acquire_resp; + struct pf_vf_pfdev_info *pfdev_info = &resp->pfdev_info; + struct vfpf_acquire_tlv *req = &mbx->req_virt->acquire; + u8 vfpf_status = PFVF_STATUS_NOT_SUPPORTED; + struct pf_vf_resc *resc = &resp->resc; + int rc; + + memset(resp, 0, sizeof(*resp)); + + /* Validate FW compatibility */ + if (req->vfdev_info.eth_fp_hsi_major != ETH_HSI_VER_MAJOR) { + DP_INFO(p_hwfn, + "VF[%d] needs fastpath HSI %02x.%02x, which is incompatible with loaded FW's faspath HSI %02x.%02x\n", + vf->abs_vf_id, + req->vfdev_info.eth_fp_hsi_major, + req->vfdev_info.eth_fp_hsi_minor, + ETH_HSI_VER_MAJOR, ETH_HSI_VER_MINOR); + + /* Write the PF version so that VF would know which version + * is supported. + */ + pfdev_info->major_fp_hsi = ETH_HSI_VER_MAJOR; + pfdev_info->minor_fp_hsi = ETH_HSI_VER_MINOR; + + goto out; + } + + /* On 100g PFs, prevent old VFs from loading */ + if ((p_hwfn->cdev->num_hwfns > 1) && + !(req->vfdev_info.capabilities & VFPF_ACQUIRE_CAP_100G)) { + DP_INFO(p_hwfn, + "VF[%d] is running an old driver that doesn't support 100g\n", + vf->abs_vf_id); + goto out; + } + + /* Store the acquire message */ + memcpy(&vf->acquire, req, sizeof(vf->acquire)); + + vf->opaque_fid = req->vfdev_info.opaque_fid; + + vf->vf_bulletin = req->bulletin_addr; + vf->bulletin.size = (vf->bulletin.size < req->bulletin_size) ? + vf->bulletin.size : req->bulletin_size; + + /* fill in pfdev info */ + pfdev_info->chip_num = p_hwfn->cdev->chip_num; + pfdev_info->db_size = 0; + pfdev_info->indices_per_sb = PIS_PER_SB; + + pfdev_info->capabilities = PFVF_ACQUIRE_CAP_DEFAULT_UNTAGGED | + PFVF_ACQUIRE_CAP_POST_FW_OVERRIDE; + if (p_hwfn->cdev->num_hwfns > 1) + pfdev_info->capabilities |= PFVF_ACQUIRE_CAP_100G; + + qed_iov_vf_mbx_acquire_stats(p_hwfn, &pfdev_info->stats_info); + + memcpy(pfdev_info->port_mac, p_hwfn->hw_info.hw_mac_addr, ETH_ALEN); + + pfdev_info->fw_major = FW_MAJOR_VERSION; + pfdev_info->fw_minor = FW_MINOR_VERSION; + pfdev_info->fw_rev = FW_REVISION_VERSION; + pfdev_info->fw_eng = FW_ENGINEERING_VERSION; + pfdev_info->minor_fp_hsi = min_t(u8, + ETH_HSI_VER_MINOR, + req->vfdev_info.eth_fp_hsi_minor); + pfdev_info->os_type = VFPF_ACQUIRE_OS_LINUX; + qed_mcp_get_mfw_ver(p_hwfn, p_ptt, &pfdev_info->mfw_ver, NULL); + + pfdev_info->dev_type = p_hwfn->cdev->type; + pfdev_info->chip_rev = p_hwfn->cdev->chip_rev; + + /* Fill resources available to VF; Make sure there are enough to + * satisfy the VF's request. + */ + vfpf_status = qed_iov_vf_mbx_acquire_resc(p_hwfn, p_ptt, vf, + &req->resc_request, resc); + if (vfpf_status != PFVF_STATUS_SUCCESS) + goto out; + + /* Start the VF in FW */ + rc = qed_sp_vf_start(p_hwfn, vf); + if (rc) { + DP_NOTICE(p_hwfn, "Failed to start VF[%02x]\n", vf->abs_vf_id); + vfpf_status = PFVF_STATUS_FAILURE; + goto out; + } + + /* Fill agreed size of bulletin board in response */ + resp->bulletin_size = vf->bulletin.size; + qed_iov_post_vf_bulletin(p_hwfn, vf->relative_vf_id, p_ptt); + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[%d] ACQUIRE_RESPONSE: pfdev_info- chip_num=0x%x, db_size=%d, idx_per_sb=%d, pf_cap=0x%llx\n" + "resources- n_rxq-%d, n_txq-%d, n_sbs-%d, n_macs-%d, n_vlans-%d\n", + vf->abs_vf_id, + resp->pfdev_info.chip_num, + resp->pfdev_info.db_size, + resp->pfdev_info.indices_per_sb, + resp->pfdev_info.capabilities, + resc->num_rxqs, + resc->num_txqs, + resc->num_sbs, + resc->num_mac_filters, + resc->num_vlan_filters); + vf->state = VF_ACQUIRED; + + /* Prepare Response */ +out: + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_ACQUIRE, + sizeof(struct pfvf_acquire_resp_tlv), vfpf_status); +} + +static int __qed_iov_spoofchk_set(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, bool val) +{ + struct qed_sp_vport_update_params params; + int rc; + + if (val == p_vf->spoof_chk) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Spoofchk value[%d] is already configured\n", val); + return 0; + } + + memset(¶ms, 0, sizeof(struct qed_sp_vport_update_params)); + params.opaque_fid = p_vf->opaque_fid; + params.vport_id = p_vf->vport_id; + params.update_anti_spoofing_en_flg = 1; + params.anti_spoofing_en = val; + + rc = qed_sp_vport_update(p_hwfn, ¶ms, QED_SPQ_MODE_EBLOCK, NULL); + if (!rc) { + p_vf->spoof_chk = val; + p_vf->req_spoofchk_val = p_vf->spoof_chk; + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Spoofchk val[%d] configured\n", val); + } else { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Spoofchk configuration[val:%d] failed for VF[%d]\n", + val, p_vf->relative_vf_id); + } + + return rc; +} + +static int qed_iov_reconfigure_unicast_vlan(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf) +{ + struct qed_filter_ucast filter; + int rc = 0; + int i; + + memset(&filter, 0, sizeof(filter)); + filter.is_rx_filter = 1; + filter.is_tx_filter = 1; + filter.vport_to_add_to = p_vf->vport_id; + filter.opcode = QED_FILTER_ADD; + + /* Reconfigure vlans */ + for (i = 0; i < QED_ETH_VF_NUM_VLAN_FILTERS + 1; i++) { + if (!p_vf->shadow_config.vlans[i].used) + continue; + + filter.type = QED_FILTER_VLAN; + filter.vlan = p_vf->shadow_config.vlans[i].vid; + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "Reconfiguring VLAN [0x%04x] for VF [%04x]\n", + filter.vlan, p_vf->relative_vf_id); + rc = qed_sp_eth_filter_ucast(p_hwfn, + p_vf->opaque_fid, + &filter, + QED_SPQ_MODE_CB, NULL); + if (rc) { + DP_NOTICE(p_hwfn, + "Failed to configure VLAN [%04x] to VF [%04x]\n", + filter.vlan, p_vf->relative_vf_id); + break; + } + } + + return rc; +} + +static int +qed_iov_reconfigure_unicast_shadow(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, u64 events) +{ + int rc = 0; + + if ((events & (1 << VLAN_ADDR_FORCED)) && + !(p_vf->configured_features & (1 << VLAN_ADDR_FORCED))) + rc = qed_iov_reconfigure_unicast_vlan(p_hwfn, p_vf); + + return rc; +} + +static int qed_iov_configure_vport_forced(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, u64 events) +{ + int rc = 0; + struct qed_filter_ucast filter; + + if (!p_vf->vport_instance) + return -EINVAL; + + if (events & (1 << MAC_ADDR_FORCED)) { + /* Since there's no way [currently] of removing the MAC, + * we can always assume this means we need to force it. + */ + memset(&filter, 0, sizeof(filter)); + filter.type = QED_FILTER_MAC; + filter.opcode = QED_FILTER_REPLACE; + filter.is_rx_filter = 1; + filter.is_tx_filter = 1; + filter.vport_to_add_to = p_vf->vport_id; + ether_addr_copy(filter.mac, p_vf->bulletin.p_virt->mac); + + rc = qed_sp_eth_filter_ucast(p_hwfn, p_vf->opaque_fid, + &filter, QED_SPQ_MODE_CB, NULL); + if (rc) { + DP_NOTICE(p_hwfn, + "PF failed to configure MAC for VF\n"); + return rc; + } + + p_vf->configured_features |= 1 << MAC_ADDR_FORCED; + } + + if (events & (1 << VLAN_ADDR_FORCED)) { + struct qed_sp_vport_update_params vport_update; + u8 removal; + int i; + + memset(&filter, 0, sizeof(filter)); + filter.type = QED_FILTER_VLAN; + filter.is_rx_filter = 1; + filter.is_tx_filter = 1; + filter.vport_to_add_to = p_vf->vport_id; + filter.vlan = p_vf->bulletin.p_virt->pvid; + filter.opcode = filter.vlan ? QED_FILTER_REPLACE : + QED_FILTER_FLUSH; + + /* Send the ramrod */ + rc = qed_sp_eth_filter_ucast(p_hwfn, p_vf->opaque_fid, + &filter, QED_SPQ_MODE_CB, NULL); + if (rc) { + DP_NOTICE(p_hwfn, + "PF failed to configure VLAN for VF\n"); + return rc; + } + + /* Update the default-vlan & silent vlan stripping */ + memset(&vport_update, 0, sizeof(vport_update)); + vport_update.opaque_fid = p_vf->opaque_fid; + vport_update.vport_id = p_vf->vport_id; + vport_update.update_default_vlan_enable_flg = 1; + vport_update.default_vlan_enable_flg = filter.vlan ? 1 : 0; + vport_update.update_default_vlan_flg = 1; + vport_update.default_vlan = filter.vlan; + + vport_update.update_inner_vlan_removal_flg = 1; + removal = filter.vlan ? 1 + : p_vf->shadow_config.inner_vlan_removal; + vport_update.inner_vlan_removal_flg = removal; + vport_update.silent_vlan_removal_flg = filter.vlan ? 1 : 0; + rc = qed_sp_vport_update(p_hwfn, + &vport_update, + QED_SPQ_MODE_EBLOCK, NULL); + if (rc) { + DP_NOTICE(p_hwfn, + "PF failed to configure VF vport for vlan\n"); + return rc; + } + + /* Update all the Rx queues */ + for (i = 0; i < QED_MAX_VF_CHAINS_PER_PF; i++) { + u16 qid; + + if (!p_vf->vf_queues[i].rxq_active) + continue; + + qid = p_vf->vf_queues[i].fw_rx_qid; + + rc = qed_sp_eth_rx_queues_update(p_hwfn, qid, + 1, 0, 1, + QED_SPQ_MODE_EBLOCK, + NULL); + if (rc) { + DP_NOTICE(p_hwfn, + "Failed to send Rx update fo queue[0x%04x]\n", + qid); + return rc; + } + } + + if (filter.vlan) + p_vf->configured_features |= 1 << VLAN_ADDR_FORCED; + else + p_vf->configured_features &= ~(1 << VLAN_ADDR_FORCED); + } + + /* If forced features are terminated, we need to configure the shadow + * configuration back again. + */ + if (events) + qed_iov_reconfigure_unicast_shadow(p_hwfn, p_vf, events); + + return rc; +} + +static void qed_iov_vf_mbx_start_vport(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_sp_vport_start_params params = { 0 }; + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + struct vfpf_vport_start_tlv *start; + u8 status = PFVF_STATUS_SUCCESS; + struct qed_vf_info *vf_info; + u64 *p_bitmap; + int sb_id; + int rc; + + vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vf->relative_vf_id, true); + if (!vf_info) { + DP_NOTICE(p_hwfn->cdev, + "Failed to get VF info, invalid vfid [%d]\n", + vf->relative_vf_id); + return; + } + + vf->state = VF_ENABLED; + start = &mbx->req_virt->start_vport; + + /* Initialize Status block in CAU */ + for (sb_id = 0; sb_id < vf->num_sbs; sb_id++) { + if (!start->sb_addr[sb_id]) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF[%d] did not fill the address of SB %d\n", + vf->relative_vf_id, sb_id); + break; + } + + qed_int_cau_conf_sb(p_hwfn, p_ptt, + start->sb_addr[sb_id], + vf->igu_sbs[sb_id], + vf->abs_vf_id, 1); + } + qed_iov_enable_vf_traffic(p_hwfn, p_ptt, vf); + + vf->mtu = start->mtu; + vf->shadow_config.inner_vlan_removal = start->inner_vlan_removal; + + /* Take into consideration configuration forced by hypervisor; + * If none is configured, use the supplied VF values [for old + * vfs that would still be fine, since they passed '0' as padding]. + */ + p_bitmap = &vf_info->bulletin.p_virt->valid_bitmap; + if (!(*p_bitmap & (1 << VFPF_BULLETIN_UNTAGGED_DEFAULT_FORCED))) { + u8 vf_req = start->only_untagged; + + vf_info->bulletin.p_virt->default_only_untagged = vf_req; + *p_bitmap |= 1 << VFPF_BULLETIN_UNTAGGED_DEFAULT; + } + + params.tpa_mode = start->tpa_mode; + params.remove_inner_vlan = start->inner_vlan_removal; + params.tx_switching = true; + + params.only_untagged = vf_info->bulletin.p_virt->default_only_untagged; + params.drop_ttl0 = false; + params.concrete_fid = vf->concrete_fid; + params.opaque_fid = vf->opaque_fid; + params.vport_id = vf->vport_id; + params.max_buffers_per_cqe = start->max_buffers_per_cqe; + params.mtu = vf->mtu; + + rc = qed_sp_eth_vport_start(p_hwfn, ¶ms); + if (rc != 0) { + DP_ERR(p_hwfn, + "qed_iov_vf_mbx_start_vport returned error %d\n", rc); + status = PFVF_STATUS_FAILURE; + } else { + vf->vport_instance++; + + /* Force configuration if needed on the newly opened vport */ + qed_iov_configure_vport_forced(p_hwfn, vf, *p_bitmap); + + __qed_iov_spoofchk_set(p_hwfn, vf, vf->req_spoofchk_val); + } + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_VPORT_START, + sizeof(struct pfvf_def_resp_tlv), status); +} + +static void qed_iov_vf_mbx_stop_vport(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + u8 status = PFVF_STATUS_SUCCESS; + int rc; + + vf->vport_instance--; + vf->spoof_chk = false; + + rc = qed_sp_vport_stop(p_hwfn, vf->opaque_fid, vf->vport_id); + if (rc != 0) { + DP_ERR(p_hwfn, "qed_iov_vf_mbx_stop_vport returned error %d\n", + rc); + status = PFVF_STATUS_FAILURE; + } + + /* Forget the configuration on the vport */ + vf->configured_features = 0; + memset(&vf->shadow_config, 0, sizeof(vf->shadow_config)); + + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_VPORT_TEARDOWN, + sizeof(struct pfvf_def_resp_tlv), status); +} + +static void qed_iov_vf_mbx_start_rxq_resp(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf, u8 status) +{ + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + struct pfvf_start_queue_resp_tlv *p_tlv; + struct vfpf_start_rxq_tlv *req; + + mbx->offset = (u8 *)mbx->reply_virt; + + p_tlv = qed_add_tlv(p_hwfn, &mbx->offset, CHANNEL_TLV_START_RXQ, + sizeof(*p_tlv)); + qed_add_tlv(p_hwfn, &mbx->offset, CHANNEL_TLV_LIST_END, + sizeof(struct channel_list_end_tlv)); + + /* Update the TLV with the response */ + if (status == PFVF_STATUS_SUCCESS) { + req = &mbx->req_virt->start_rxq; + p_tlv->offset = PXP_VF_BAR0_START_MSDM_ZONE_B + + offsetof(struct mstorm_vf_zone, + non_trigger.eth_rx_queue_producers) + + sizeof(struct eth_rx_prod_data) * req->rx_qid; + } + + qed_iov_send_response(p_hwfn, p_ptt, vf, sizeof(*p_tlv), status); +} + +static void qed_iov_vf_mbx_start_rxq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_queue_start_common_params params; + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + u8 status = PFVF_STATUS_NO_RESOURCE; + struct vfpf_start_rxq_tlv *req; + int rc; + + memset(¶ms, 0, sizeof(params)); + req = &mbx->req_virt->start_rxq; + + if (!qed_iov_validate_rxq(p_hwfn, vf, req->rx_qid) || + !qed_iov_validate_sb(p_hwfn, vf, req->hw_sb)) + goto out; + + params.queue_id = vf->vf_queues[req->rx_qid].fw_rx_qid; + params.vf_qid = req->rx_qid; + params.vport_id = vf->vport_id; + params.sb = req->hw_sb; + params.sb_idx = req->sb_index; + + rc = qed_sp_eth_rxq_start_ramrod(p_hwfn, vf->opaque_fid, + vf->vf_queues[req->rx_qid].fw_cid, + ¶ms, + vf->abs_vf_id + 0x10, + req->bd_max_bytes, + req->rxq_addr, + req->cqe_pbl_addr, req->cqe_pbl_size); + + if (rc) { + status = PFVF_STATUS_FAILURE; + } else { + status = PFVF_STATUS_SUCCESS; + vf->vf_queues[req->rx_qid].rxq_active = true; + vf->num_active_rxqs++; + } + +out: + qed_iov_vf_mbx_start_rxq_resp(p_hwfn, p_ptt, vf, status); +} + +static void qed_iov_vf_mbx_start_txq_resp(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *p_vf, u8 status) +{ + struct qed_iov_vf_mbx *mbx = &p_vf->vf_mbx; + struct pfvf_start_queue_resp_tlv *p_tlv; + + mbx->offset = (u8 *)mbx->reply_virt; + + p_tlv = qed_add_tlv(p_hwfn, &mbx->offset, CHANNEL_TLV_START_TXQ, + sizeof(*p_tlv)); + qed_add_tlv(p_hwfn, &mbx->offset, CHANNEL_TLV_LIST_END, + sizeof(struct channel_list_end_tlv)); + + /* Update the TLV with the response */ + if (status == PFVF_STATUS_SUCCESS) { + u16 qid = mbx->req_virt->start_txq.tx_qid; + + p_tlv->offset = qed_db_addr(p_vf->vf_queues[qid].fw_cid, + DQ_DEMS_LEGACY); + } + + qed_iov_send_response(p_hwfn, p_ptt, p_vf, sizeof(*p_tlv), status); +} + +static void qed_iov_vf_mbx_start_txq(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_queue_start_common_params params; + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + u8 status = PFVF_STATUS_NO_RESOURCE; + union qed_qm_pq_params pq_params; + struct vfpf_start_txq_tlv *req; + int rc; + + /* Prepare the parameters which would choose the right PQ */ + memset(&pq_params, 0, sizeof(pq_params)); + pq_params.eth.is_vf = 1; + pq_params.eth.vf_id = vf->relative_vf_id; + + memset(¶ms, 0, sizeof(params)); + req = &mbx->req_virt->start_txq; + + if (!qed_iov_validate_txq(p_hwfn, vf, req->tx_qid) || + !qed_iov_validate_sb(p_hwfn, vf, req->hw_sb)) + goto out; + + params.queue_id = vf->vf_queues[req->tx_qid].fw_tx_qid; + params.vport_id = vf->vport_id; + params.sb = req->hw_sb; + params.sb_idx = req->sb_index; + + rc = qed_sp_eth_txq_start_ramrod(p_hwfn, + vf->opaque_fid, + vf->vf_queues[req->tx_qid].fw_cid, + ¶ms, + vf->abs_vf_id + 0x10, + req->pbl_addr, + req->pbl_size, &pq_params); + + if (rc) { + status = PFVF_STATUS_FAILURE; + } else { + status = PFVF_STATUS_SUCCESS; + vf->vf_queues[req->tx_qid].txq_active = true; + } + +out: + qed_iov_vf_mbx_start_txq_resp(p_hwfn, p_ptt, vf, status); +} + +static int qed_iov_vf_stop_rxqs(struct qed_hwfn *p_hwfn, + struct qed_vf_info *vf, + u16 rxq_id, u8 num_rxqs, bool cqe_completion) +{ + int rc = 0; + int qid; + + if (rxq_id + num_rxqs > ARRAY_SIZE(vf->vf_queues)) + return -EINVAL; + + for (qid = rxq_id; qid < rxq_id + num_rxqs; qid++) { + if (vf->vf_queues[qid].rxq_active) { + rc = qed_sp_eth_rx_queue_stop(p_hwfn, + vf->vf_queues[qid]. + fw_rx_qid, false, + cqe_completion); + + if (rc) + return rc; + } + vf->vf_queues[qid].rxq_active = false; + vf->num_active_rxqs--; + } + + return rc; +} + +static int qed_iov_vf_stop_txqs(struct qed_hwfn *p_hwfn, + struct qed_vf_info *vf, u16 txq_id, u8 num_txqs) +{ + int rc = 0; + int qid; + + if (txq_id + num_txqs > ARRAY_SIZE(vf->vf_queues)) + return -EINVAL; + + for (qid = txq_id; qid < txq_id + num_txqs; qid++) { + if (vf->vf_queues[qid].txq_active) { + rc = qed_sp_eth_tx_queue_stop(p_hwfn, + vf->vf_queues[qid]. + fw_tx_qid); + + if (rc) + return rc; + } + vf->vf_queues[qid].txq_active = false; + } + return rc; +} + +static void qed_iov_vf_mbx_stop_rxqs(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + u16 length = sizeof(struct pfvf_def_resp_tlv); + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + u8 status = PFVF_STATUS_SUCCESS; + struct vfpf_stop_rxqs_tlv *req; + int rc; + + /* We give the option of starting from qid != 0, in this case we + * need to make sure that qid + num_qs doesn't exceed the actual + * amount of queues that exist. + */ + req = &mbx->req_virt->stop_rxqs; + rc = qed_iov_vf_stop_rxqs(p_hwfn, vf, req->rx_qid, + req->num_rxqs, req->cqe_completion); + if (rc) + status = PFVF_STATUS_FAILURE; + + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_STOP_RXQS, + length, status); +} + +static void qed_iov_vf_mbx_stop_txqs(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + u16 length = sizeof(struct pfvf_def_resp_tlv); + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + u8 status = PFVF_STATUS_SUCCESS; + struct vfpf_stop_txqs_tlv *req; + int rc; + + /* We give the option of starting from qid != 0, in this case we + * need to make sure that qid + num_qs doesn't exceed the actual + * amount of queues that exist. + */ + req = &mbx->req_virt->stop_txqs; + rc = qed_iov_vf_stop_txqs(p_hwfn, vf, req->tx_qid, req->num_txqs); + if (rc) + status = PFVF_STATUS_FAILURE; + + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_STOP_TXQS, + length, status); +} + +static void qed_iov_vf_mbx_update_rxqs(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + u16 length = sizeof(struct pfvf_def_resp_tlv); + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + struct vfpf_update_rxq_tlv *req; + u8 status = PFVF_STATUS_SUCCESS; + u8 complete_event_flg; + u8 complete_cqe_flg; + u16 qid; + int rc; + u8 i; + + req = &mbx->req_virt->update_rxq; + complete_cqe_flg = !!(req->flags & VFPF_RXQ_UPD_COMPLETE_CQE_FLAG); + complete_event_flg = !!(req->flags & VFPF_RXQ_UPD_COMPLETE_EVENT_FLAG); + + for (i = 0; i < req->num_rxqs; i++) { + qid = req->rx_qid + i; + + if (!vf->vf_queues[qid].rxq_active) { + DP_NOTICE(p_hwfn, "VF rx_qid = %d isn`t active!\n", + qid); + status = PFVF_STATUS_FAILURE; + break; + } + + rc = qed_sp_eth_rx_queues_update(p_hwfn, + vf->vf_queues[qid].fw_rx_qid, + 1, + complete_cqe_flg, + complete_event_flg, + QED_SPQ_MODE_EBLOCK, NULL); + + if (rc) { + status = PFVF_STATUS_FAILURE; + break; + } + } + + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_UPDATE_RXQ, + length, status); +} + +void *qed_iov_search_list_tlvs(struct qed_hwfn *p_hwfn, + void *p_tlvs_list, u16 req_type) +{ + struct channel_tlv *p_tlv = (struct channel_tlv *)p_tlvs_list; + int len = 0; + + do { + if (!p_tlv->length) { + DP_NOTICE(p_hwfn, "Zero length TLV found\n"); + return NULL; + } + + if (p_tlv->type == req_type) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Extended tlv type %d, length %d found\n", + p_tlv->type, p_tlv->length); + return p_tlv; + } + + len += p_tlv->length; + p_tlv = (struct channel_tlv *)((u8 *)p_tlv + p_tlv->length); + + if ((len + p_tlv->length) > TLV_BUFFER_SIZE) { + DP_NOTICE(p_hwfn, "TLVs has overrun the buffer size\n"); + return NULL; + } + } while (p_tlv->type != CHANNEL_TLV_LIST_END); + + return NULL; +} + +static void +qed_iov_vp_update_act_param(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_activate_tlv *p_act_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_ACTIVATE; + + p_act_tlv = (struct vfpf_vport_update_activate_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, tlv); + if (!p_act_tlv) + return; + + p_data->update_vport_active_rx_flg = p_act_tlv->update_rx; + p_data->vport_active_rx_flg = p_act_tlv->active_rx; + p_data->update_vport_active_tx_flg = p_act_tlv->update_tx; + p_data->vport_active_tx_flg = p_act_tlv->active_tx; + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_ACTIVATE; +} + +static void +qed_iov_vp_update_vlan_param(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + struct qed_vf_info *p_vf, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_vlan_strip_tlv *p_vlan_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_VLAN_STRIP; + + p_vlan_tlv = (struct vfpf_vport_update_vlan_strip_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, tlv); + if (!p_vlan_tlv) + return; + + p_vf->shadow_config.inner_vlan_removal = p_vlan_tlv->remove_vlan; + + /* Ignore the VF request if we're forcing a vlan */ + if (!(p_vf->configured_features & (1 << VLAN_ADDR_FORCED))) { + p_data->update_inner_vlan_removal_flg = 1; + p_data->inner_vlan_removal_flg = p_vlan_tlv->remove_vlan; + } + + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_VLAN_STRIP; +} + +static void +qed_iov_vp_update_tx_switch(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_tx_switch_tlv *p_tx_switch_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_TX_SWITCH; + + p_tx_switch_tlv = (struct vfpf_vport_update_tx_switch_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, + tlv); + if (!p_tx_switch_tlv) + return; + + p_data->update_tx_switching_flg = 1; + p_data->tx_switching_flg = p_tx_switch_tlv->tx_switching; + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_TX_SWITCH; +} + +static void +qed_iov_vp_update_mcast_bin_param(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_mcast_bin_tlv *p_mcast_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_MCAST; + + p_mcast_tlv = (struct vfpf_vport_update_mcast_bin_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, tlv); + if (!p_mcast_tlv) + return; + + p_data->update_approx_mcast_flg = 1; + memcpy(p_data->bins, p_mcast_tlv->bins, + sizeof(unsigned long) * ETH_MULTICAST_MAC_BINS_IN_REGS); + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_MCAST; +} + +static void +qed_iov_vp_update_accept_flag(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct qed_filter_accept_flags *p_flags = &p_data->accept_flags; + struct vfpf_vport_update_accept_param_tlv *p_accept_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_ACCEPT_PARAM; + + p_accept_tlv = (struct vfpf_vport_update_accept_param_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, tlv); + if (!p_accept_tlv) + return; + + p_flags->update_rx_mode_config = p_accept_tlv->update_rx_mode; + p_flags->rx_accept_filter = p_accept_tlv->rx_accept_filter; + p_flags->update_tx_mode_config = p_accept_tlv->update_tx_mode; + p_flags->tx_accept_filter = p_accept_tlv->tx_accept_filter; + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_ACCEPT_PARAM; +} + +static void +qed_iov_vp_update_accept_any_vlan(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_accept_any_vlan_tlv *p_accept_any_vlan; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_ACCEPT_ANY_VLAN; + + p_accept_any_vlan = (struct vfpf_vport_update_accept_any_vlan_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, + tlv); + if (!p_accept_any_vlan) + return; + + p_data->accept_any_vlan = p_accept_any_vlan->accept_any_vlan; + p_data->update_accept_any_vlan_flg = + p_accept_any_vlan->update_accept_any_vlan_flg; + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_ACCEPT_ANY_VLAN; +} + +static void +qed_iov_vp_update_rss_param(struct qed_hwfn *p_hwfn, + struct qed_vf_info *vf, + struct qed_sp_vport_update_params *p_data, + struct qed_rss_params *p_rss, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_rss_tlv *p_rss_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_RSS; + u16 i, q_idx, max_q_idx; + u16 table_size; + + p_rss_tlv = (struct vfpf_vport_update_rss_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, tlv); + if (!p_rss_tlv) { + p_data->rss_params = NULL; + return; + } + + memset(p_rss, 0, sizeof(struct qed_rss_params)); + + p_rss->update_rss_config = !!(p_rss_tlv->update_rss_flags & + VFPF_UPDATE_RSS_CONFIG_FLAG); + p_rss->update_rss_capabilities = !!(p_rss_tlv->update_rss_flags & + VFPF_UPDATE_RSS_CAPS_FLAG); + p_rss->update_rss_ind_table = !!(p_rss_tlv->update_rss_flags & + VFPF_UPDATE_RSS_IND_TABLE_FLAG); + p_rss->update_rss_key = !!(p_rss_tlv->update_rss_flags & + VFPF_UPDATE_RSS_KEY_FLAG); + + p_rss->rss_enable = p_rss_tlv->rss_enable; + p_rss->rss_eng_id = vf->relative_vf_id + 1; + p_rss->rss_caps = p_rss_tlv->rss_caps; + p_rss->rss_table_size_log = p_rss_tlv->rss_table_size_log; + memcpy(p_rss->rss_ind_table, p_rss_tlv->rss_ind_table, + sizeof(p_rss->rss_ind_table)); + memcpy(p_rss->rss_key, p_rss_tlv->rss_key, sizeof(p_rss->rss_key)); + + table_size = min_t(u16, ARRAY_SIZE(p_rss->rss_ind_table), + (1 << p_rss_tlv->rss_table_size_log)); + + max_q_idx = ARRAY_SIZE(vf->vf_queues); + + for (i = 0; i < table_size; i++) { + u16 index = vf->vf_queues[0].fw_rx_qid; + + q_idx = p_rss->rss_ind_table[i]; + if (q_idx >= max_q_idx) + DP_NOTICE(p_hwfn, + "rss_ind_table[%d] = %d, rxq is out of range\n", + i, q_idx); + else if (!vf->vf_queues[q_idx].rxq_active) + DP_NOTICE(p_hwfn, + "rss_ind_table[%d] = %d, rxq is not active\n", + i, q_idx); + else + index = vf->vf_queues[q_idx].fw_rx_qid; + p_rss->rss_ind_table[i] = index; + } + + p_data->rss_params = p_rss; + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_RSS; +} + +static void +qed_iov_vp_update_sge_tpa_param(struct qed_hwfn *p_hwfn, + struct qed_vf_info *vf, + struct qed_sp_vport_update_params *p_data, + struct qed_sge_tpa_params *p_sge_tpa, + struct qed_iov_vf_mbx *p_mbx, u16 *tlvs_mask) +{ + struct vfpf_vport_update_sge_tpa_tlv *p_sge_tpa_tlv; + u16 tlv = CHANNEL_TLV_VPORT_UPDATE_SGE_TPA; + + p_sge_tpa_tlv = (struct vfpf_vport_update_sge_tpa_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_mbx->req_virt, tlv); + + if (!p_sge_tpa_tlv) { + p_data->sge_tpa_params = NULL; + return; + } + + memset(p_sge_tpa, 0, sizeof(struct qed_sge_tpa_params)); + + p_sge_tpa->update_tpa_en_flg = + !!(p_sge_tpa_tlv->update_sge_tpa_flags & VFPF_UPDATE_TPA_EN_FLAG); + p_sge_tpa->update_tpa_param_flg = + !!(p_sge_tpa_tlv->update_sge_tpa_flags & + VFPF_UPDATE_TPA_PARAM_FLAG); + + p_sge_tpa->tpa_ipv4_en_flg = + !!(p_sge_tpa_tlv->sge_tpa_flags & VFPF_TPA_IPV4_EN_FLAG); + p_sge_tpa->tpa_ipv6_en_flg = + !!(p_sge_tpa_tlv->sge_tpa_flags & VFPF_TPA_IPV6_EN_FLAG); + p_sge_tpa->tpa_pkt_split_flg = + !!(p_sge_tpa_tlv->sge_tpa_flags & VFPF_TPA_PKT_SPLIT_FLAG); + p_sge_tpa->tpa_hdr_data_split_flg = + !!(p_sge_tpa_tlv->sge_tpa_flags & VFPF_TPA_HDR_DATA_SPLIT_FLAG); + p_sge_tpa->tpa_gro_consistent_flg = + !!(p_sge_tpa_tlv->sge_tpa_flags & VFPF_TPA_GRO_CONSIST_FLAG); + + p_sge_tpa->tpa_max_aggs_num = p_sge_tpa_tlv->tpa_max_aggs_num; + p_sge_tpa->tpa_max_size = p_sge_tpa_tlv->tpa_max_size; + p_sge_tpa->tpa_min_size_to_start = p_sge_tpa_tlv->tpa_min_size_to_start; + p_sge_tpa->tpa_min_size_to_cont = p_sge_tpa_tlv->tpa_min_size_to_cont; + p_sge_tpa->max_buffers_per_cqe = p_sge_tpa_tlv->max_buffers_per_cqe; + + p_data->sge_tpa_params = p_sge_tpa; + + *tlvs_mask |= 1 << QED_IOV_VP_UPDATE_SGE_TPA; +} + +static void qed_iov_vf_mbx_vport_update(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_sp_vport_update_params params; + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + struct qed_sge_tpa_params sge_tpa_params; + struct qed_rss_params rss_params; + u8 status = PFVF_STATUS_SUCCESS; + u16 tlvs_mask = 0; + u16 length; + int rc; + + /* Valiate PF can send such a request */ + if (!vf->vport_instance) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "No VPORT instance available for VF[%d], failing vport update\n", + vf->abs_vf_id); + status = PFVF_STATUS_FAILURE; + goto out; + } + + memset(¶ms, 0, sizeof(params)); + params.opaque_fid = vf->opaque_fid; + params.vport_id = vf->vport_id; + params.rss_params = NULL; + + /* Search for extended tlvs list and update values + * from VF in struct qed_sp_vport_update_params. + */ + qed_iov_vp_update_act_param(p_hwfn, ¶ms, mbx, &tlvs_mask); + qed_iov_vp_update_vlan_param(p_hwfn, ¶ms, vf, mbx, &tlvs_mask); + qed_iov_vp_update_tx_switch(p_hwfn, ¶ms, mbx, &tlvs_mask); + qed_iov_vp_update_mcast_bin_param(p_hwfn, ¶ms, mbx, &tlvs_mask); + qed_iov_vp_update_accept_flag(p_hwfn, ¶ms, mbx, &tlvs_mask); + qed_iov_vp_update_rss_param(p_hwfn, vf, ¶ms, &rss_params, + mbx, &tlvs_mask); + qed_iov_vp_update_accept_any_vlan(p_hwfn, ¶ms, mbx, &tlvs_mask); + qed_iov_vp_update_sge_tpa_param(p_hwfn, vf, ¶ms, + &sge_tpa_params, mbx, &tlvs_mask); + + /* Just log a message if there is no single extended tlv in buffer. + * When all features of vport update ramrod would be requested by VF + * as extended TLVs in buffer then an error can be returned in response + * if there is no extended TLV present in buffer. + */ + if (!tlvs_mask) { + DP_NOTICE(p_hwfn, + "No feature tlvs found for vport update\n"); + status = PFVF_STATUS_NOT_SUPPORTED; + goto out; + } + + rc = qed_sp_vport_update(p_hwfn, ¶ms, QED_SPQ_MODE_EBLOCK, NULL); + + if (rc) + status = PFVF_STATUS_FAILURE; + +out: + length = qed_iov_prep_vp_update_resp_tlvs(p_hwfn, vf, mbx, status, + tlvs_mask, tlvs_mask); + qed_iov_send_response(p_hwfn, p_ptt, vf, length, status); +} + +static int qed_iov_vf_update_vlan_shadow(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, + struct qed_filter_ucast *p_params) +{ + int i; + + /* First remove entries and then add new ones */ + if (p_params->opcode == QED_FILTER_REMOVE) { + for (i = 0; i < QED_ETH_VF_NUM_VLAN_FILTERS + 1; i++) + if (p_vf->shadow_config.vlans[i].used && + p_vf->shadow_config.vlans[i].vid == + p_params->vlan) { + p_vf->shadow_config.vlans[i].used = false; + break; + } + if (i == QED_ETH_VF_NUM_VLAN_FILTERS + 1) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF [%d] - Tries to remove a non-existing vlan\n", + p_vf->relative_vf_id); + return -EINVAL; + } + } else if (p_params->opcode == QED_FILTER_REPLACE || + p_params->opcode == QED_FILTER_FLUSH) { + for (i = 0; i < QED_ETH_VF_NUM_VLAN_FILTERS + 1; i++) + p_vf->shadow_config.vlans[i].used = false; + } + + /* In forced mode, we're willing to remove entries - but we don't add + * new ones. + */ + if (p_vf->bulletin.p_virt->valid_bitmap & (1 << VLAN_ADDR_FORCED)) + return 0; + + if (p_params->opcode == QED_FILTER_ADD || + p_params->opcode == QED_FILTER_REPLACE) { + for (i = 0; i < QED_ETH_VF_NUM_VLAN_FILTERS + 1; i++) { + if (p_vf->shadow_config.vlans[i].used) + continue; + + p_vf->shadow_config.vlans[i].used = true; + p_vf->shadow_config.vlans[i].vid = p_params->vlan; + break; + } + + if (i == QED_ETH_VF_NUM_VLAN_FILTERS + 1) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF [%d] - Tries to configure more than %d vlan filters\n", + p_vf->relative_vf_id, + QED_ETH_VF_NUM_VLAN_FILTERS + 1); + return -EINVAL; + } + } + + return 0; +} + +static int qed_iov_vf_update_mac_shadow(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, + struct qed_filter_ucast *p_params) +{ + int i; + + /* If we're in forced-mode, we don't allow any change */ + if (p_vf->bulletin.p_virt->valid_bitmap & (1 << MAC_ADDR_FORCED)) + return 0; + + /* First remove entries and then add new ones */ + if (p_params->opcode == QED_FILTER_REMOVE) { + for (i = 0; i < QED_ETH_VF_NUM_MAC_FILTERS; i++) { + if (ether_addr_equal(p_vf->shadow_config.macs[i], + p_params->mac)) { + memset(p_vf->shadow_config.macs[i], 0, + ETH_ALEN); + break; + } + } + + if (i == QED_ETH_VF_NUM_MAC_FILTERS) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "MAC isn't configured\n"); + return -EINVAL; + } + } else if (p_params->opcode == QED_FILTER_REPLACE || + p_params->opcode == QED_FILTER_FLUSH) { + for (i = 0; i < QED_ETH_VF_NUM_MAC_FILTERS; i++) + memset(p_vf->shadow_config.macs[i], 0, ETH_ALEN); + } + + /* List the new MAC address */ + if (p_params->opcode != QED_FILTER_ADD && + p_params->opcode != QED_FILTER_REPLACE) + return 0; + + for (i = 0; i < QED_ETH_VF_NUM_MAC_FILTERS; i++) { + if (is_zero_ether_addr(p_vf->shadow_config.macs[i])) { + ether_addr_copy(p_vf->shadow_config.macs[i], + p_params->mac); + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Added MAC at %d entry in shadow\n", i); + break; + } + } + + if (i == QED_ETH_VF_NUM_MAC_FILTERS) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, "No available place for MAC\n"); + return -EINVAL; + } + + return 0; +} + +static int +qed_iov_vf_update_unicast_shadow(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, + struct qed_filter_ucast *p_params) +{ + int rc = 0; + + if (p_params->type == QED_FILTER_MAC) { + rc = qed_iov_vf_update_mac_shadow(p_hwfn, p_vf, p_params); + if (rc) + return rc; + } + + if (p_params->type == QED_FILTER_VLAN) + rc = qed_iov_vf_update_vlan_shadow(p_hwfn, p_vf, p_params); + + return rc; +} + +int qed_iov_chk_ucast(struct qed_hwfn *hwfn, + int vfid, struct qed_filter_ucast *params) +{ + struct qed_public_vf_info *vf; + + vf = qed_iov_get_public_vf_info(hwfn, vfid, true); + if (!vf) + return -EINVAL; + + /* No real decision to make; Store the configured MAC */ + if (params->type == QED_FILTER_MAC || + params->type == QED_FILTER_MAC_VLAN) + ether_addr_copy(vf->mac, params->mac); + + return 0; +} + +static void qed_iov_vf_mbx_ucast_filter(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + struct qed_bulletin_content *p_bulletin = vf->bulletin.p_virt; + struct qed_iov_vf_mbx *mbx = &vf->vf_mbx; + struct vfpf_ucast_filter_tlv *req; + u8 status = PFVF_STATUS_SUCCESS; + struct qed_filter_ucast params; + int rc; + + /* Prepare the unicast filter params */ + memset(¶ms, 0, sizeof(struct qed_filter_ucast)); + req = &mbx->req_virt->ucast_filter; + params.opcode = (enum qed_filter_opcode)req->opcode; + params.type = (enum qed_filter_ucast_type)req->type; + + params.is_rx_filter = 1; + params.is_tx_filter = 1; + params.vport_to_remove_from = vf->vport_id; + params.vport_to_add_to = vf->vport_id; + memcpy(params.mac, req->mac, ETH_ALEN); + params.vlan = req->vlan; + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[%d]: opcode 0x%02x type 0x%02x [%s %s] [vport 0x%02x] MAC %02x:%02x:%02x:%02x:%02x:%02x, vlan 0x%04x\n", + vf->abs_vf_id, params.opcode, params.type, + params.is_rx_filter ? "RX" : "", + params.is_tx_filter ? "TX" : "", + params.vport_to_add_to, + params.mac[0], params.mac[1], + params.mac[2], params.mac[3], + params.mac[4], params.mac[5], params.vlan); + + if (!vf->vport_instance) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "No VPORT instance available for VF[%d], failing ucast MAC configuration\n", + vf->abs_vf_id); + status = PFVF_STATUS_FAILURE; + goto out; + } + + /* Update shadow copy of the VF configuration */ + if (qed_iov_vf_update_unicast_shadow(p_hwfn, vf, ¶ms)) { + status = PFVF_STATUS_FAILURE; + goto out; + } + + /* Determine if the unicast filtering is acceptible by PF */ + if ((p_bulletin->valid_bitmap & (1 << VLAN_ADDR_FORCED)) && + (params.type == QED_FILTER_VLAN || + params.type == QED_FILTER_MAC_VLAN)) { + /* Once VLAN is forced or PVID is set, do not allow + * to add/replace any further VLANs. + */ + if (params.opcode == QED_FILTER_ADD || + params.opcode == QED_FILTER_REPLACE) + status = PFVF_STATUS_FORCED; + goto out; + } + + if ((p_bulletin->valid_bitmap & (1 << MAC_ADDR_FORCED)) && + (params.type == QED_FILTER_MAC || + params.type == QED_FILTER_MAC_VLAN)) { + if (!ether_addr_equal(p_bulletin->mac, params.mac) || + (params.opcode != QED_FILTER_ADD && + params.opcode != QED_FILTER_REPLACE)) + status = PFVF_STATUS_FORCED; + goto out; + } + + rc = qed_iov_chk_ucast(p_hwfn, vf->relative_vf_id, ¶ms); + if (rc) { + status = PFVF_STATUS_FAILURE; + goto out; + } + + rc = qed_sp_eth_filter_ucast(p_hwfn, vf->opaque_fid, ¶ms, + QED_SPQ_MODE_CB, NULL); + if (rc) + status = PFVF_STATUS_FAILURE; + +out: + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_UCAST_FILTER, + sizeof(struct pfvf_def_resp_tlv), status); +} + +static void qed_iov_vf_mbx_int_cleanup(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *vf) +{ + int i; + + /* Reset the SBs */ + for (i = 0; i < vf->num_sbs; i++) + qed_int_igu_init_pure_rt_single(p_hwfn, p_ptt, + vf->igu_sbs[i], + vf->opaque_fid, false); + + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_INT_CLEANUP, + sizeof(struct pfvf_def_resp_tlv), + PFVF_STATUS_SUCCESS); +} + +static void qed_iov_vf_mbx_close(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, struct qed_vf_info *vf) +{ + u16 length = sizeof(struct pfvf_def_resp_tlv); + u8 status = PFVF_STATUS_SUCCESS; + + /* Disable Interrupts for VF */ + qed_iov_vf_igu_set_int(p_hwfn, p_ptt, vf, 0); + + /* Reset Permission table */ + qed_iov_config_perm_table(p_hwfn, p_ptt, vf, 0); + + qed_iov_prepare_resp(p_hwfn, p_ptt, vf, CHANNEL_TLV_CLOSE, + length, status); +} + +static void qed_iov_vf_mbx_release(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + struct qed_vf_info *p_vf) +{ + u16 length = sizeof(struct pfvf_def_resp_tlv); + u8 status = PFVF_STATUS_SUCCESS; + int rc = 0; + + qed_iov_vf_cleanup(p_hwfn, p_vf); + + if (p_vf->state != VF_STOPPED && p_vf->state != VF_FREE) { + /* Stopping the VF */ + rc = qed_sp_vf_stop(p_hwfn, p_vf->concrete_fid, + p_vf->opaque_fid); + + if (rc) { + DP_ERR(p_hwfn, "qed_sp_vf_stop returned error %d\n", + rc); + status = PFVF_STATUS_FAILURE; + } + + p_vf->state = VF_STOPPED; + } + + qed_iov_prepare_resp(p_hwfn, p_ptt, p_vf, CHANNEL_TLV_RELEASE, + length, status); +} + +static int +qed_iov_vf_flr_poll_dorq(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, struct qed_ptt *p_ptt) +{ + int cnt; + u32 val; + + qed_fid_pretend(p_hwfn, p_ptt, (u16) p_vf->concrete_fid); + + for (cnt = 0; cnt < 50; cnt++) { + val = qed_rd(p_hwfn, p_ptt, DORQ_REG_VF_USAGE_CNT); + if (!val) + break; + msleep(20); + } + qed_fid_pretend(p_hwfn, p_ptt, (u16) p_hwfn->hw_info.concrete_fid); + + if (cnt == 50) { + DP_ERR(p_hwfn, + "VF[%d] - dorq failed to cleanup [usage 0x%08x]\n", + p_vf->abs_vf_id, val); + return -EBUSY; + } + + return 0; +} + +static int +qed_iov_vf_flr_poll_pbf(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, struct qed_ptt *p_ptt) +{ + u32 cons[MAX_NUM_VOQS], distance[MAX_NUM_VOQS]; + int i, cnt; + + /* Read initial consumers & producers */ + for (i = 0; i < MAX_NUM_VOQS; i++) { + u32 prod; + + cons[i] = qed_rd(p_hwfn, p_ptt, + PBF_REG_NUM_BLOCKS_ALLOCATED_CONS_VOQ0 + + i * 0x40); + prod = qed_rd(p_hwfn, p_ptt, + PBF_REG_NUM_BLOCKS_ALLOCATED_PROD_VOQ0 + + i * 0x40); + distance[i] = prod - cons[i]; + } + + /* Wait for consumers to pass the producers */ + i = 0; + for (cnt = 0; cnt < 50; cnt++) { + for (; i < MAX_NUM_VOQS; i++) { + u32 tmp; + + tmp = qed_rd(p_hwfn, p_ptt, + PBF_REG_NUM_BLOCKS_ALLOCATED_CONS_VOQ0 + + i * 0x40); + if (distance[i] > tmp - cons[i]) + break; + } + + if (i == MAX_NUM_VOQS) + break; + + msleep(20); + } + + if (cnt == 50) { + DP_ERR(p_hwfn, "VF[%d] - pbf polling failed on VOQ %d\n", + p_vf->abs_vf_id, i); + return -EBUSY; + } + + return 0; +} + +static int qed_iov_vf_flr_poll(struct qed_hwfn *p_hwfn, + struct qed_vf_info *p_vf, struct qed_ptt *p_ptt) +{ + int rc; + + rc = qed_iov_vf_flr_poll_dorq(p_hwfn, p_vf, p_ptt); + if (rc) + return rc; + + rc = qed_iov_vf_flr_poll_pbf(p_hwfn, p_vf, p_ptt); + if (rc) + return rc; + + return 0; +} + +static int +qed_iov_execute_vf_flr_cleanup(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, + u16 rel_vf_id, u32 *ack_vfs) +{ + struct qed_vf_info *p_vf; + int rc = 0; + + p_vf = qed_iov_get_vf_info(p_hwfn, rel_vf_id, false); + if (!p_vf) + return 0; + + if (p_hwfn->pf_iov_info->pending_flr[rel_vf_id / 64] & + (1ULL << (rel_vf_id % 64))) { + u16 vfid = p_vf->abs_vf_id; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF[%d] - Handling FLR\n", vfid); + + qed_iov_vf_cleanup(p_hwfn, p_vf); + + /* If VF isn't active, no need for anything but SW */ + if (!p_vf->b_init) + goto cleanup; + + rc = qed_iov_vf_flr_poll(p_hwfn, p_vf, p_ptt); + if (rc) + goto cleanup; + + rc = qed_final_cleanup(p_hwfn, p_ptt, vfid, true); + if (rc) { + DP_ERR(p_hwfn, "Failed handle FLR of VF[%d]\n", vfid); + return rc; + } + + /* VF_STOPPED has to be set only after final cleanup + * but prior to re-enabling the VF. + */ + p_vf->state = VF_STOPPED; + + rc = qed_iov_enable_vf_access(p_hwfn, p_ptt, p_vf); + if (rc) { + DP_ERR(p_hwfn, "Failed to re-enable VF[%d] acces\n", + vfid); + return rc; + } +cleanup: + /* Mark VF for ack and clean pending state */ + if (p_vf->state == VF_RESET) + p_vf->state = VF_STOPPED; + ack_vfs[vfid / 32] |= (1 << (vfid % 32)); + p_hwfn->pf_iov_info->pending_flr[rel_vf_id / 64] &= + ~(1ULL << (rel_vf_id % 64)); + p_hwfn->pf_iov_info->pending_events[rel_vf_id / 64] &= + ~(1ULL << (rel_vf_id % 64)); + } + + return rc; +} + +int qed_iov_vf_flr_cleanup(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ + u32 ack_vfs[VF_MAX_STATIC / 32]; + int rc = 0; + u16 i; + + memset(ack_vfs, 0, sizeof(u32) * (VF_MAX_STATIC / 32)); + + /* Since BRB <-> PRS interface can't be tested as part of the flr + * polling due to HW limitations, simply sleep a bit. And since + * there's no need to wait per-vf, do it before looping. + */ + msleep(100); + + for (i = 0; i < p_hwfn->cdev->p_iov_info->total_vfs; i++) + qed_iov_execute_vf_flr_cleanup(p_hwfn, p_ptt, i, ack_vfs); + + rc = qed_mcp_ack_vf_flr(p_hwfn, p_ptt, ack_vfs); + return rc; +} + +int qed_iov_mark_vf_flr(struct qed_hwfn *p_hwfn, u32 *p_disabled_vfs) +{ + u16 i, found = 0; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, "Marking FLR-ed VFs\n"); + for (i = 0; i < (VF_MAX_STATIC / 32); i++) + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "[%08x,...,%08x]: %08x\n", + i * 32, (i + 1) * 32 - 1, p_disabled_vfs[i]); + + if (!p_hwfn->cdev->p_iov_info) { + DP_NOTICE(p_hwfn, "VF flr but no IOV\n"); + return 0; + } + + /* Mark VFs */ + for (i = 0; i < p_hwfn->cdev->p_iov_info->total_vfs; i++) { + struct qed_vf_info *p_vf; + u8 vfid; + + p_vf = qed_iov_get_vf_info(p_hwfn, i, false); + if (!p_vf) + continue; + + vfid = p_vf->abs_vf_id; + if ((1 << (vfid % 32)) & p_disabled_vfs[vfid / 32]) { + u64 *p_flr = p_hwfn->pf_iov_info->pending_flr; + u16 rel_vf_id = p_vf->relative_vf_id; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF[%d] [rel %d] got FLR-ed\n", + vfid, rel_vf_id); + + p_vf->state = VF_RESET; + + /* No need to lock here, since pending_flr should + * only change here and before ACKing MFw. Since + * MFW will not trigger an additional attention for + * VF flr until ACKs, we're safe. + */ + p_flr[rel_vf_id / 64] |= 1ULL << (rel_vf_id % 64); + found = 1; + } + } + + return found; +} + +static void qed_iov_get_link(struct qed_hwfn *p_hwfn, + u16 vfid, + struct qed_mcp_link_params *p_params, + struct qed_mcp_link_state *p_link, + struct qed_mcp_link_capabilities *p_caps) +{ + struct qed_vf_info *p_vf = qed_iov_get_vf_info(p_hwfn, + vfid, + false); + struct qed_bulletin_content *p_bulletin; + + if (!p_vf) + return; + + p_bulletin = p_vf->bulletin.p_virt; + + if (p_params) + __qed_vf_get_link_params(p_hwfn, p_params, p_bulletin); + if (p_link) + __qed_vf_get_link_state(p_hwfn, p_link, p_bulletin); + if (p_caps) + __qed_vf_get_link_caps(p_hwfn, p_caps, p_bulletin); +} + +static void qed_iov_process_mbx_req(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, int vfid) +{ + struct qed_iov_vf_mbx *mbx; + struct qed_vf_info *p_vf; + + p_vf = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!p_vf) + return; + + mbx = &p_vf->vf_mbx; + + /* qed_iov_process_mbx_request */ + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF[%02x]: Processing mailbox message\n", p_vf->abs_vf_id); + + mbx->first_tlv = mbx->req_virt->first_tlv; + + /* check if tlv type is known */ + if (qed_iov_tlv_supported(mbx->first_tlv.tl.type)) { + switch (mbx->first_tlv.tl.type) { + case CHANNEL_TLV_ACQUIRE: + qed_iov_vf_mbx_acquire(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_VPORT_START: + qed_iov_vf_mbx_start_vport(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_VPORT_TEARDOWN: + qed_iov_vf_mbx_stop_vport(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_START_RXQ: + qed_iov_vf_mbx_start_rxq(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_START_TXQ: + qed_iov_vf_mbx_start_txq(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_STOP_RXQS: + qed_iov_vf_mbx_stop_rxqs(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_STOP_TXQS: + qed_iov_vf_mbx_stop_txqs(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_UPDATE_RXQ: + qed_iov_vf_mbx_update_rxqs(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_VPORT_UPDATE: + qed_iov_vf_mbx_vport_update(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_UCAST_FILTER: + qed_iov_vf_mbx_ucast_filter(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_CLOSE: + qed_iov_vf_mbx_close(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_INT_CLEANUP: + qed_iov_vf_mbx_int_cleanup(p_hwfn, p_ptt, p_vf); + break; + case CHANNEL_TLV_RELEASE: + qed_iov_vf_mbx_release(p_hwfn, p_ptt, p_vf); + break; + } + } else { + /* unknown TLV - this may belong to a VF driver from the future + * - a version written after this PF driver was written, which + * supports features unknown as of yet. Too bad since we don't + * support them. Or this may be because someone wrote a crappy + * VF driver and is sending garbage over the channel. + */ + DP_NOTICE(p_hwfn, + "VF[%02x]: unknown TLV. type %04x length %04x padding %08x reply address %llu\n", + p_vf->abs_vf_id, + mbx->first_tlv.tl.type, + mbx->first_tlv.tl.length, + mbx->first_tlv.padding, mbx->first_tlv.reply_address); + + /* Try replying in case reply address matches the acquisition's + * posted address. + */ + if (p_vf->acquire.first_tlv.reply_address && + (mbx->first_tlv.reply_address == + p_vf->acquire.first_tlv.reply_address)) { + qed_iov_prepare_resp(p_hwfn, p_ptt, p_vf, + mbx->first_tlv.tl.type, + sizeof(struct pfvf_def_resp_tlv), + PFVF_STATUS_NOT_SUPPORTED); + } else { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF[%02x]: Can't respond to TLV - no valid reply address\n", + p_vf->abs_vf_id); + } + } +} + +void qed_iov_pf_add_pending_events(struct qed_hwfn *p_hwfn, u8 vfid) +{ + u64 add_bit = 1ULL << (vfid % 64); + + p_hwfn->pf_iov_info->pending_events[vfid / 64] |= add_bit; +} + +static void qed_iov_pf_get_and_clear_pending_events(struct qed_hwfn *p_hwfn, + u64 *events) +{ + u64 *p_pending_events = p_hwfn->pf_iov_info->pending_events; + + memcpy(events, p_pending_events, sizeof(u64) * QED_VF_ARRAY_LENGTH); + memset(p_pending_events, 0, sizeof(u64) * QED_VF_ARRAY_LENGTH); +} + +static int qed_sriov_vfpf_msg(struct qed_hwfn *p_hwfn, + u16 abs_vfid, struct regpair *vf_msg) +{ + u8 min = (u8)p_hwfn->cdev->p_iov_info->first_vf_in_pf; + struct qed_vf_info *p_vf; + + if (!qed_iov_pf_sanity_check(p_hwfn, (int)abs_vfid - min)) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "Got a message from VF [abs 0x%08x] that cannot be handled by PF\n", + abs_vfid); + return 0; + } + p_vf = &p_hwfn->pf_iov_info->vfs_array[(u8)abs_vfid - min]; + + /* List the physical address of the request so that handler + * could later on copy the message from it. + */ + p_vf->vf_mbx.pending_req = (((u64)vf_msg->hi) << 32) | vf_msg->lo; + + /* Mark the event and schedule the workqueue */ + qed_iov_pf_add_pending_events(p_hwfn, p_vf->relative_vf_id); + qed_schedule_iov(p_hwfn, QED_IOV_WQ_MSG_FLAG); + + return 0; +} + +int qed_sriov_eqe_event(struct qed_hwfn *p_hwfn, + u8 opcode, __le16 echo, union event_ring_data *data) +{ + switch (opcode) { + case COMMON_EVENT_VF_PF_CHANNEL: + return qed_sriov_vfpf_msg(p_hwfn, le16_to_cpu(echo), + &data->vf_pf_channel.msg_addr); + default: + DP_INFO(p_hwfn->cdev, "Unknown sriov eqe event 0x%02x\n", + opcode); + return -EINVAL; + } +} + +u16 qed_iov_get_next_active_vf(struct qed_hwfn *p_hwfn, u16 rel_vf_id) +{ + struct qed_hw_sriov_info *p_iov = p_hwfn->cdev->p_iov_info; + u16 i; + + if (!p_iov) + goto out; + + for (i = rel_vf_id; i < p_iov->total_vfs; i++) + if (qed_iov_is_valid_vfid(p_hwfn, rel_vf_id, true)) + return i; + +out: + return MAX_NUM_VFS; +} + +static int qed_iov_copy_vf_msg(struct qed_hwfn *p_hwfn, struct qed_ptt *ptt, + int vfid) +{ + struct qed_dmae_params params; + struct qed_vf_info *vf_info; + + vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!vf_info) + return -EINVAL; + + memset(¶ms, 0, sizeof(struct qed_dmae_params)); + params.flags = QED_DMAE_FLAG_VF_SRC | QED_DMAE_FLAG_COMPLETION_DST; + params.src_vfid = vf_info->abs_vf_id; + + if (qed_dmae_host2host(p_hwfn, ptt, + vf_info->vf_mbx.pending_req, + vf_info->vf_mbx.req_phys, + sizeof(union vfpf_tlvs) / 4, ¶ms)) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Failed to copy message from VF 0x%02x\n", vfid); + + return -EIO; + } + + return 0; +} + +static void qed_iov_bulletin_set_forced_mac(struct qed_hwfn *p_hwfn, + u8 *mac, int vfid) +{ + struct qed_vf_info *vf_info; + u64 feature; + + vf_info = qed_iov_get_vf_info(p_hwfn, (u16)vfid, true); + if (!vf_info) { + DP_NOTICE(p_hwfn->cdev, + "Can not set forced MAC, invalid vfid [%d]\n", vfid); + return; + } + + feature = 1 << MAC_ADDR_FORCED; + memcpy(vf_info->bulletin.p_virt->mac, mac, ETH_ALEN); + + vf_info->bulletin.p_virt->valid_bitmap |= feature; + /* Forced MAC will disable MAC_ADDR */ + vf_info->bulletin.p_virt->valid_bitmap &= + ~(1 << VFPF_BULLETIN_MAC_ADDR); + + qed_iov_configure_vport_forced(p_hwfn, vf_info, feature); +} + +void qed_iov_bulletin_set_forced_vlan(struct qed_hwfn *p_hwfn, + u16 pvid, int vfid) +{ + struct qed_vf_info *vf_info; + u64 feature; + + vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!vf_info) { + DP_NOTICE(p_hwfn->cdev, + "Can not set forced MAC, invalid vfid [%d]\n", vfid); + return; + } + + feature = 1 << VLAN_ADDR_FORCED; + vf_info->bulletin.p_virt->pvid = pvid; + if (pvid) + vf_info->bulletin.p_virt->valid_bitmap |= feature; + else + vf_info->bulletin.p_virt->valid_bitmap &= ~feature; + + qed_iov_configure_vport_forced(p_hwfn, vf_info, feature); +} + +static bool qed_iov_vf_has_vport_instance(struct qed_hwfn *p_hwfn, int vfid) +{ + struct qed_vf_info *p_vf_info; + + p_vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!p_vf_info) + return false; + + return !!p_vf_info->vport_instance; +} + +bool qed_iov_is_vf_stopped(struct qed_hwfn *p_hwfn, int vfid) +{ + struct qed_vf_info *p_vf_info; + + p_vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!p_vf_info) + return true; + + return p_vf_info->state == VF_STOPPED; +} + +static bool qed_iov_spoofchk_get(struct qed_hwfn *p_hwfn, int vfid) +{ + struct qed_vf_info *vf_info; + + vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!vf_info) + return false; + + return vf_info->spoof_chk; +} + +int qed_iov_spoofchk_set(struct qed_hwfn *p_hwfn, int vfid, bool val) +{ + struct qed_vf_info *vf; + int rc = -EINVAL; + + if (!qed_iov_pf_sanity_check(p_hwfn, vfid)) { + DP_NOTICE(p_hwfn, + "SR-IOV sanity check failed, can't set spoofchk\n"); + goto out; + } + + vf = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!vf) + goto out; + + if (!qed_iov_vf_has_vport_instance(p_hwfn, vfid)) { + /* After VF VPORT start PF will configure spoof check */ + vf->req_spoofchk_val = val; + rc = 0; + goto out; + } + + rc = __qed_iov_spoofchk_set(p_hwfn, vf, val); + +out: + return rc; +} + +static u8 *qed_iov_bulletin_get_forced_mac(struct qed_hwfn *p_hwfn, + u16 rel_vf_id) +{ + struct qed_vf_info *p_vf; + + p_vf = qed_iov_get_vf_info(p_hwfn, rel_vf_id, true); + if (!p_vf || !p_vf->bulletin.p_virt) + return NULL; + + if (!(p_vf->bulletin.p_virt->valid_bitmap & (1 << MAC_ADDR_FORCED))) + return NULL; + + return p_vf->bulletin.p_virt->mac; +} + +u16 qed_iov_bulletin_get_forced_vlan(struct qed_hwfn *p_hwfn, u16 rel_vf_id) +{ + struct qed_vf_info *p_vf; + + p_vf = qed_iov_get_vf_info(p_hwfn, rel_vf_id, true); + if (!p_vf || !p_vf->bulletin.p_virt) + return 0; + + if (!(p_vf->bulletin.p_virt->valid_bitmap & (1 << VLAN_ADDR_FORCED))) + return 0; + + return p_vf->bulletin.p_virt->pvid; +} + +static int qed_iov_configure_tx_rate(struct qed_hwfn *p_hwfn, + struct qed_ptt *p_ptt, int vfid, int val) +{ + struct qed_vf_info *vf; + u8 abs_vp_id = 0; + int rc; + + vf = qed_iov_get_vf_info(p_hwfn, (u16)vfid, true); + if (!vf) + return -EINVAL; + + rc = qed_fw_vport(p_hwfn, vf->vport_id, &abs_vp_id); + if (rc) + return rc; + + return qed_init_vport_rl(p_hwfn, p_ptt, abs_vp_id, (u32)val); +} + +int qed_iov_configure_min_tx_rate(struct qed_dev *cdev, int vfid, u32 rate) +{ + struct qed_vf_info *vf; + u8 vport_id; + int i; + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + + if (!qed_iov_pf_sanity_check(p_hwfn, vfid)) { + DP_NOTICE(p_hwfn, + "SR-IOV sanity check failed, can't set min rate\n"); + return -EINVAL; + } + } + + vf = qed_iov_get_vf_info(QED_LEADING_HWFN(cdev), (u16)vfid, true); + vport_id = vf->vport_id; + + return qed_configure_vport_wfq(cdev, vport_id, rate); +} + +static int qed_iov_get_vf_min_rate(struct qed_hwfn *p_hwfn, int vfid) +{ + struct qed_wfq_data *vf_vp_wfq; + struct qed_vf_info *vf_info; + + vf_info = qed_iov_get_vf_info(p_hwfn, (u16) vfid, true); + if (!vf_info) + return 0; + + vf_vp_wfq = &p_hwfn->qm_info.wfq_data[vf_info->vport_id]; + + if (vf_vp_wfq->configured) + return vf_vp_wfq->min_speed; + else + return 0; +} + +/** + * qed_schedule_iov - schedules IOV task for VF and PF + * @hwfn: hardware function pointer + * @flag: IOV flag for VF/PF + */ +void qed_schedule_iov(struct qed_hwfn *hwfn, enum qed_iov_wq_flag flag) +{ + smp_mb__before_atomic(); + set_bit(flag, &hwfn->iov_task_flags); + smp_mb__after_atomic(); + DP_VERBOSE(hwfn, QED_MSG_IOV, "Scheduling iov task [Flag: %d]\n", flag); + queue_delayed_work(hwfn->iov_wq, &hwfn->iov_task, 0); +} + +void qed_vf_start_iov_wq(struct qed_dev *cdev) +{ + int i; + + for_each_hwfn(cdev, i) + queue_delayed_work(cdev->hwfns[i].iov_wq, + &cdev->hwfns[i].iov_task, 0); +} + +int qed_sriov_disable(struct qed_dev *cdev, bool pci_enabled) +{ + int i, j; + + for_each_hwfn(cdev, i) + if (cdev->hwfns[i].iov_wq) + flush_workqueue(cdev->hwfns[i].iov_wq); + + /* Mark VFs for disablement */ + qed_iov_set_vfs_to_disable(cdev, true); + + if (cdev->p_iov_info && cdev->p_iov_info->num_vfs && pci_enabled) + pci_disable_sriov(cdev->pdev); + + for_each_hwfn(cdev, i) { + struct qed_hwfn *hwfn = &cdev->hwfns[i]; + struct qed_ptt *ptt = qed_ptt_acquire(hwfn); + + /* Failure to acquire the ptt in 100g creates an odd error + * where the first engine has already relased IOV. + */ + if (!ptt) { + DP_ERR(hwfn, "Failed to acquire ptt\n"); + return -EBUSY; + } + + /* Clean WFQ db and configure equal weight for all vports */ + qed_clean_wfq_db(hwfn, ptt); + + qed_for_each_vf(hwfn, j) { + int k; + + if (!qed_iov_is_valid_vfid(hwfn, j, true)) + continue; + + /* Wait until VF is disabled before releasing */ + for (k = 0; k < 100; k++) { + if (!qed_iov_is_vf_stopped(hwfn, j)) + msleep(20); + else + break; + } + + if (k < 100) + qed_iov_release_hw_for_vf(&cdev->hwfns[i], + ptt, j); + else + DP_ERR(hwfn, + "Timeout waiting for VF's FLR to end\n"); + } + + qed_ptt_release(hwfn, ptt); + } + + qed_iov_set_vfs_to_disable(cdev, false); + + return 0; +} + +static int qed_sriov_enable(struct qed_dev *cdev, int num) +{ + struct qed_sb_cnt_info sb_cnt_info; + int i, j, rc; + + if (num >= RESC_NUM(&cdev->hwfns[0], QED_VPORT)) { + DP_NOTICE(cdev, "Can start at most %d VFs\n", + RESC_NUM(&cdev->hwfns[0], QED_VPORT) - 1); + return -EINVAL; + } + + /* Initialize HW for VF access */ + for_each_hwfn(cdev, j) { + struct qed_hwfn *hwfn = &cdev->hwfns[j]; + struct qed_ptt *ptt = qed_ptt_acquire(hwfn); + int num_sbs = 0, limit = 16; + + if (!ptt) { + DP_ERR(hwfn, "Failed to acquire ptt\n"); + rc = -EBUSY; + goto err; + } + + if (IS_MF_DEFAULT(hwfn)) + limit = MAX_NUM_VFS_BB / hwfn->num_funcs_on_engine; + + memset(&sb_cnt_info, 0, sizeof(sb_cnt_info)); + qed_int_get_num_sbs(hwfn, &sb_cnt_info); + num_sbs = min_t(int, sb_cnt_info.sb_free_blk, limit); + + for (i = 0; i < num; i++) { + if (!qed_iov_is_valid_vfid(hwfn, i, false)) + continue; + + rc = qed_iov_init_hw_for_vf(hwfn, + ptt, i, num_sbs / num); + if (rc) { + DP_ERR(cdev, "Failed to enable VF[%d]\n", i); + qed_ptt_release(hwfn, ptt); + goto err; + } + } + + qed_ptt_release(hwfn, ptt); + } + + /* Enable SRIOV PCIe functions */ + rc = pci_enable_sriov(cdev->pdev, num); + if (rc) { + DP_ERR(cdev, "Failed to enable sriov [%d]\n", rc); + goto err; + } + + return num; + +err: + qed_sriov_disable(cdev, false); + return rc; +} + +static int qed_sriov_configure(struct qed_dev *cdev, int num_vfs_param) +{ + if (!IS_QED_SRIOV(cdev)) { + DP_VERBOSE(cdev, QED_MSG_IOV, "SR-IOV is not supported\n"); + return -EOPNOTSUPP; + } + + if (num_vfs_param) + return qed_sriov_enable(cdev, num_vfs_param); + else + return qed_sriov_disable(cdev, true); +} + +static int qed_sriov_pf_set_mac(struct qed_dev *cdev, u8 *mac, int vfid) +{ + int i; + + if (!IS_QED_SRIOV(cdev) || !IS_PF_SRIOV_ALLOC(&cdev->hwfns[0])) { + DP_VERBOSE(cdev, QED_MSG_IOV, + "Cannot set a VF MAC; Sriov is not enabled\n"); + return -EINVAL; + } + + if (!qed_iov_is_valid_vfid(&cdev->hwfns[0], vfid, true)) { + DP_VERBOSE(cdev, QED_MSG_IOV, + "Cannot set VF[%d] MAC (VF is not active)\n", vfid); + return -EINVAL; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *hwfn = &cdev->hwfns[i]; + struct qed_public_vf_info *vf_info; + + vf_info = qed_iov_get_public_vf_info(hwfn, vfid, true); + if (!vf_info) + continue; + + /* Set the forced MAC, and schedule the IOV task */ + ether_addr_copy(vf_info->forced_mac, mac); + qed_schedule_iov(hwfn, QED_IOV_WQ_SET_UNICAST_FILTER_FLAG); + } + + return 0; +} + +static int qed_sriov_pf_set_vlan(struct qed_dev *cdev, u16 vid, int vfid) +{ + int i; + + if (!IS_QED_SRIOV(cdev) || !IS_PF_SRIOV_ALLOC(&cdev->hwfns[0])) { + DP_VERBOSE(cdev, QED_MSG_IOV, + "Cannot set a VF MAC; Sriov is not enabled\n"); + return -EINVAL; + } + + if (!qed_iov_is_valid_vfid(&cdev->hwfns[0], vfid, true)) { + DP_VERBOSE(cdev, QED_MSG_IOV, + "Cannot set VF[%d] MAC (VF is not active)\n", vfid); + return -EINVAL; + } + + for_each_hwfn(cdev, i) { + struct qed_hwfn *hwfn = &cdev->hwfns[i]; + struct qed_public_vf_info *vf_info; + + vf_info = qed_iov_get_public_vf_info(hwfn, vfid, true); + if (!vf_info) + continue; + + /* Set the forced vlan, and schedule the IOV task */ + vf_info->forced_vlan = vid; + qed_schedule_iov(hwfn, QED_IOV_WQ_SET_UNICAST_FILTER_FLAG); + } + + return 0; +} + +static int qed_get_vf_config(struct qed_dev *cdev, + int vf_id, struct ifla_vf_info *ivi) +{ + struct qed_hwfn *hwfn = QED_LEADING_HWFN(cdev); + struct qed_public_vf_info *vf_info; + struct qed_mcp_link_state link; + u32 tx_rate; + + /* Sanitize request */ + if (IS_VF(cdev)) + return -EINVAL; + + if (!qed_iov_is_valid_vfid(&cdev->hwfns[0], vf_id, true)) { + DP_VERBOSE(cdev, QED_MSG_IOV, + "VF index [%d] isn't active\n", vf_id); + return -EINVAL; + } + + vf_info = qed_iov_get_public_vf_info(hwfn, vf_id, true); + + qed_iov_get_link(hwfn, vf_id, NULL, &link, NULL); + + /* Fill information about VF */ + ivi->vf = vf_id; + + if (is_valid_ether_addr(vf_info->forced_mac)) + ether_addr_copy(ivi->mac, vf_info->forced_mac); + else + ether_addr_copy(ivi->mac, vf_info->mac); + + ivi->vlan = vf_info->forced_vlan; + ivi->spoofchk = qed_iov_spoofchk_get(hwfn, vf_id); + ivi->linkstate = vf_info->link_state; + tx_rate = vf_info->tx_rate; + ivi->max_tx_rate = tx_rate ? tx_rate : link.speed; + ivi->min_tx_rate = qed_iov_get_vf_min_rate(hwfn, vf_id); + + return 0; +} + +void qed_inform_vf_link_state(struct qed_hwfn *hwfn) +{ + struct qed_mcp_link_capabilities caps; + struct qed_mcp_link_params params; + struct qed_mcp_link_state link; + int i; + + if (!hwfn->pf_iov_info) + return; + + /* Update bulletin of all future possible VFs with link configuration */ + for (i = 0; i < hwfn->cdev->p_iov_info->total_vfs; i++) { + struct qed_public_vf_info *vf_info; + + vf_info = qed_iov_get_public_vf_info(hwfn, i, false); + if (!vf_info) + continue; + + memcpy(¶ms, qed_mcp_get_link_params(hwfn), sizeof(params)); + memcpy(&link, qed_mcp_get_link_state(hwfn), sizeof(link)); + memcpy(&caps, qed_mcp_get_link_capabilities(hwfn), + sizeof(caps)); + + /* Modify link according to the VF's configured link state */ + switch (vf_info->link_state) { + case IFLA_VF_LINK_STATE_DISABLE: + link.link_up = false; + break; + case IFLA_VF_LINK_STATE_ENABLE: + link.link_up = true; + /* Set speed according to maximum supported by HW. + * that is 40G for regular devices and 100G for CMT + * mode devices. + */ + link.speed = (hwfn->cdev->num_hwfns > 1) ? + 100000 : 40000; + default: + /* In auto mode pass PF link image to VF */ + break; + } + + if (link.link_up && vf_info->tx_rate) { + struct qed_ptt *ptt; + int rate; + + rate = min_t(int, vf_info->tx_rate, link.speed); + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) { + DP_NOTICE(hwfn, "Failed to acquire PTT\n"); + return; + } + + if (!qed_iov_configure_tx_rate(hwfn, ptt, i, rate)) { + vf_info->tx_rate = rate; + link.speed = rate; + } + + qed_ptt_release(hwfn, ptt); + } + + qed_iov_set_link(hwfn, i, ¶ms, &link, &caps); + } + + qed_schedule_iov(hwfn, QED_IOV_WQ_BULLETIN_UPDATE_FLAG); +} + +static int qed_set_vf_link_state(struct qed_dev *cdev, + int vf_id, int link_state) +{ + int i; + + /* Sanitize request */ + if (IS_VF(cdev)) + return -EINVAL; + + if (!qed_iov_is_valid_vfid(&cdev->hwfns[0], vf_id, true)) { + DP_VERBOSE(cdev, QED_MSG_IOV, + "VF index [%d] isn't active\n", vf_id); + return -EINVAL; + } + + /* Handle configuration of link state */ + for_each_hwfn(cdev, i) { + struct qed_hwfn *hwfn = &cdev->hwfns[i]; + struct qed_public_vf_info *vf; + + vf = qed_iov_get_public_vf_info(hwfn, vf_id, true); + if (!vf) + continue; + + if (vf->link_state == link_state) + continue; + + vf->link_state = link_state; + qed_inform_vf_link_state(&cdev->hwfns[i]); + } + + return 0; +} + +static int qed_spoof_configure(struct qed_dev *cdev, int vfid, bool val) +{ + int i, rc = -EINVAL; + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + + rc = qed_iov_spoofchk_set(p_hwfn, vfid, val); + if (rc) + break; + } + + return rc; +} + +static int qed_configure_max_vf_rate(struct qed_dev *cdev, int vfid, int rate) +{ + int i; + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + struct qed_public_vf_info *vf; + + if (!qed_iov_pf_sanity_check(p_hwfn, vfid)) { + DP_NOTICE(p_hwfn, + "SR-IOV sanity check failed, can't set tx rate\n"); + return -EINVAL; + } + + vf = qed_iov_get_public_vf_info(p_hwfn, vfid, true); + + vf->tx_rate = rate; + + qed_inform_vf_link_state(p_hwfn); + } + + return 0; +} + +static int qed_set_vf_rate(struct qed_dev *cdev, + int vfid, u32 min_rate, u32 max_rate) +{ + int rc_min = 0, rc_max = 0; + + if (max_rate) + rc_max = qed_configure_max_vf_rate(cdev, vfid, max_rate); + + if (min_rate) + rc_min = qed_iov_configure_min_tx_rate(cdev, vfid, min_rate); + + if (rc_max | rc_min) + return -EINVAL; + + return 0; +} + +static void qed_handle_vf_msg(struct qed_hwfn *hwfn) +{ + u64 events[QED_VF_ARRAY_LENGTH]; + struct qed_ptt *ptt; + int i; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) { + DP_VERBOSE(hwfn, QED_MSG_IOV, + "Can't acquire PTT; re-scheduling\n"); + qed_schedule_iov(hwfn, QED_IOV_WQ_MSG_FLAG); + return; + } + + qed_iov_pf_get_and_clear_pending_events(hwfn, events); + + DP_VERBOSE(hwfn, QED_MSG_IOV, + "Event mask of VF events: 0x%llx 0x%llx 0x%llx\n", + events[0], events[1], events[2]); + + qed_for_each_vf(hwfn, i) { + /* Skip VFs with no pending messages */ + if (!(events[i / 64] & (1ULL << (i % 64)))) + continue; + + DP_VERBOSE(hwfn, QED_MSG_IOV, + "Handling VF message from VF 0x%02x [Abs 0x%02x]\n", + i, hwfn->cdev->p_iov_info->first_vf_in_pf + i); + + /* Copy VF's message to PF's request buffer for that VF */ + if (qed_iov_copy_vf_msg(hwfn, ptt, i)) + continue; + + qed_iov_process_mbx_req(hwfn, ptt, i); + } + + qed_ptt_release(hwfn, ptt); +} + +static void qed_handle_pf_set_vf_unicast(struct qed_hwfn *hwfn) +{ + int i; + + qed_for_each_vf(hwfn, i) { + struct qed_public_vf_info *info; + bool update = false; + u8 *mac; + + info = qed_iov_get_public_vf_info(hwfn, i, true); + if (!info) + continue; + + /* Update data on bulletin board */ + mac = qed_iov_bulletin_get_forced_mac(hwfn, i); + if (is_valid_ether_addr(info->forced_mac) && + (!mac || !ether_addr_equal(mac, info->forced_mac))) { + DP_VERBOSE(hwfn, + QED_MSG_IOV, + "Handling PF setting of VF MAC to VF 0x%02x [Abs 0x%02x]\n", + i, + hwfn->cdev->p_iov_info->first_vf_in_pf + i); + + /* Update bulletin board with forced MAC */ + qed_iov_bulletin_set_forced_mac(hwfn, + info->forced_mac, i); + update = true; + } + + if (qed_iov_bulletin_get_forced_vlan(hwfn, i) ^ + info->forced_vlan) { + DP_VERBOSE(hwfn, + QED_MSG_IOV, + "Handling PF setting of pvid [0x%04x] to VF 0x%02x [Abs 0x%02x]\n", + info->forced_vlan, + i, + hwfn->cdev->p_iov_info->first_vf_in_pf + i); + qed_iov_bulletin_set_forced_vlan(hwfn, + info->forced_vlan, i); + update = true; + } + + if (update) + qed_schedule_iov(hwfn, QED_IOV_WQ_BULLETIN_UPDATE_FLAG); + } +} + +static void qed_handle_bulletin_post(struct qed_hwfn *hwfn) +{ + struct qed_ptt *ptt; + int i; + + ptt = qed_ptt_acquire(hwfn); + if (!ptt) { + DP_NOTICE(hwfn, "Failed allocating a ptt entry\n"); + qed_schedule_iov(hwfn, QED_IOV_WQ_BULLETIN_UPDATE_FLAG); + return; + } + + qed_for_each_vf(hwfn, i) + qed_iov_post_vf_bulletin(hwfn, i, ptt); + + qed_ptt_release(hwfn, ptt); +} + +void qed_iov_pf_task(struct work_struct *work) +{ + struct qed_hwfn *hwfn = container_of(work, struct qed_hwfn, + iov_task.work); + int rc; + + if (test_and_clear_bit(QED_IOV_WQ_STOP_WQ_FLAG, &hwfn->iov_task_flags)) + return; + + if (test_and_clear_bit(QED_IOV_WQ_FLR_FLAG, &hwfn->iov_task_flags)) { + struct qed_ptt *ptt = qed_ptt_acquire(hwfn); + + if (!ptt) { + qed_schedule_iov(hwfn, QED_IOV_WQ_FLR_FLAG); + return; + } + + rc = qed_iov_vf_flr_cleanup(hwfn, ptt); + if (rc) + qed_schedule_iov(hwfn, QED_IOV_WQ_FLR_FLAG); + + qed_ptt_release(hwfn, ptt); + } + + if (test_and_clear_bit(QED_IOV_WQ_MSG_FLAG, &hwfn->iov_task_flags)) + qed_handle_vf_msg(hwfn); + + if (test_and_clear_bit(QED_IOV_WQ_SET_UNICAST_FILTER_FLAG, + &hwfn->iov_task_flags)) + qed_handle_pf_set_vf_unicast(hwfn); + + if (test_and_clear_bit(QED_IOV_WQ_BULLETIN_UPDATE_FLAG, + &hwfn->iov_task_flags)) + qed_handle_bulletin_post(hwfn); +} + +void qed_iov_wq_stop(struct qed_dev *cdev, bool schedule_first) +{ + int i; + + for_each_hwfn(cdev, i) { + if (!cdev->hwfns[i].iov_wq) + continue; + + if (schedule_first) { + qed_schedule_iov(&cdev->hwfns[i], + QED_IOV_WQ_STOP_WQ_FLAG); + cancel_delayed_work_sync(&cdev->hwfns[i].iov_task); + } + + flush_workqueue(cdev->hwfns[i].iov_wq); + destroy_workqueue(cdev->hwfns[i].iov_wq); + } +} + +int qed_iov_wq_start(struct qed_dev *cdev) +{ + char name[NAME_SIZE]; + int i; + + for_each_hwfn(cdev, i) { + struct qed_hwfn *p_hwfn = &cdev->hwfns[i]; + + /* PFs needs a dedicated workqueue only if they support IOV. + * VFs always require one. + */ + if (IS_PF(p_hwfn->cdev) && !IS_PF_SRIOV(p_hwfn)) + continue; + + snprintf(name, NAME_SIZE, "iov-%02x:%02x.%02x", + cdev->pdev->bus->number, + PCI_SLOT(cdev->pdev->devfn), p_hwfn->abs_pf_id); + + p_hwfn->iov_wq = create_singlethread_workqueue(name); + if (!p_hwfn->iov_wq) { + DP_NOTICE(p_hwfn, "Cannot create iov workqueue\n"); + return -ENOMEM; + } + + if (IS_PF(cdev)) + INIT_DELAYED_WORK(&p_hwfn->iov_task, qed_iov_pf_task); + else + INIT_DELAYED_WORK(&p_hwfn->iov_task, qed_iov_vf_task); + } + + return 0; +} + +const struct qed_iov_hv_ops qed_iov_ops_pass = { + .configure = &qed_sriov_configure, + .set_mac = &qed_sriov_pf_set_mac, + .set_vlan = &qed_sriov_pf_set_vlan, + .get_config = &qed_get_vf_config, + .set_link_state = &qed_set_vf_link_state, + .set_spoof = &qed_spoof_configure, + .set_rate = &qed_set_vf_rate, +}; diff --git a/drivers/net/ethernet/qlogic/qed/qed_sriov.h b/drivers/net/ethernet/qlogic/qed/qed_sriov.h new file mode 100644 index 000000000000..0dd23e409b3f --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_sriov.h @@ -0,0 +1,395 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ + +#ifndef _QED_SRIOV_H +#define _QED_SRIOV_H +#include <linux/types.h> +#include "qed_vf.h" + +#define QED_ETH_VF_NUM_MAC_FILTERS 1 +#define QED_ETH_VF_NUM_VLAN_FILTERS 2 +#define QED_VF_ARRAY_LENGTH (3) + +#ifdef CONFIG_QED_SRIOV +#define IS_VF(cdev) ((cdev)->b_is_vf) +#define IS_PF(cdev) (!((cdev)->b_is_vf)) +#define IS_PF_SRIOV(p_hwfn) (!!((p_hwfn)->cdev->p_iov_info)) +#else +#define IS_VF(cdev) (0) +#define IS_PF(cdev) (1) +#define IS_PF_SRIOV(p_hwfn) (0) +#endif +#define IS_PF_SRIOV_ALLOC(p_hwfn) (!!((p_hwfn)->pf_iov_info)) + +#define QED_MAX_VF_CHAINS_PER_PF 16 + +#define QED_ETH_MAX_VF_NUM_VLAN_FILTERS \ + (MAX_NUM_VFS * QED_ETH_VF_NUM_VLAN_FILTERS) + +enum qed_iov_vport_update_flag { + QED_IOV_VP_UPDATE_ACTIVATE, + QED_IOV_VP_UPDATE_VLAN_STRIP, + QED_IOV_VP_UPDATE_TX_SWITCH, + QED_IOV_VP_UPDATE_MCAST, + QED_IOV_VP_UPDATE_ACCEPT_PARAM, + QED_IOV_VP_UPDATE_RSS, + QED_IOV_VP_UPDATE_ACCEPT_ANY_VLAN, + QED_IOV_VP_UPDATE_SGE_TPA, + QED_IOV_VP_UPDATE_MAX, +}; + +struct qed_public_vf_info { + /* These copies will later be reflected in the bulletin board, + * but this copy should be newer. + */ + u8 forced_mac[ETH_ALEN]; + u16 forced_vlan; + u8 mac[ETH_ALEN]; + + /* IFLA_VF_LINK_STATE_<X> */ + int link_state; + + /* Currently configured Tx rate in MB/sec. 0 if unconfigured */ + int tx_rate; +}; + +/* This struct is part of qed_dev and contains data relevant to all hwfns; + * Initialized only if SR-IOV cpabability is exposed in PCIe config space. + */ +struct qed_hw_sriov_info { + int pos; /* capability position */ + int nres; /* number of resources */ + u32 cap; /* SR-IOV Capabilities */ + u16 ctrl; /* SR-IOV Control */ + u16 total_vfs; /* total VFs associated with the PF */ + u16 num_vfs; /* number of vfs that have been started */ + u16 initial_vfs; /* initial VFs associated with the PF */ + u16 nr_virtfn; /* number of VFs available */ + u16 offset; /* first VF Routing ID offset */ + u16 stride; /* following VF stride */ + u16 vf_device_id; /* VF device id */ + u32 pgsz; /* page size for BAR alignment */ + u8 link; /* Function Dependency Link */ + + u32 first_vf_in_pf; +}; + +/* This mailbox is maintained per VF in its PF contains all information + * required for sending / receiving a message. + */ +struct qed_iov_vf_mbx { + union vfpf_tlvs *req_virt; + dma_addr_t req_phys; + union pfvf_tlvs *reply_virt; + dma_addr_t reply_phys; + + /* Address in VF where a pending message is located */ + dma_addr_t pending_req; + + u8 *offset; + + /* saved VF request header */ + struct vfpf_first_tlv first_tlv; +}; + +struct qed_vf_q_info { + u16 fw_rx_qid; + u16 fw_tx_qid; + u8 fw_cid; + u8 rxq_active; + u8 txq_active; +}; + +enum vf_state { + VF_FREE = 0, /* VF ready to be acquired holds no resc */ + VF_ACQUIRED, /* VF, acquired, but not initalized */ + VF_ENABLED, /* VF, Enabled */ + VF_RESET, /* VF, FLR'd, pending cleanup */ + VF_STOPPED /* VF, Stopped */ +}; + +struct qed_vf_vlan_shadow { + bool used; + u16 vid; +}; + +struct qed_vf_shadow_config { + /* Shadow copy of all guest vlans */ + struct qed_vf_vlan_shadow vlans[QED_ETH_VF_NUM_VLAN_FILTERS + 1]; + + /* Shadow copy of all configured MACs; Empty if forcing MACs */ + u8 macs[QED_ETH_VF_NUM_MAC_FILTERS][ETH_ALEN]; + u8 inner_vlan_removal; +}; + +/* PFs maintain an array of this structure, per VF */ +struct qed_vf_info { + struct qed_iov_vf_mbx vf_mbx; + enum vf_state state; + bool b_init; + u8 to_disable; + + struct qed_bulletin bulletin; + dma_addr_t vf_bulletin; + + /* PF saves a copy of the last VF acquire message */ + struct vfpf_acquire_tlv acquire; + + u32 concrete_fid; + u16 opaque_fid; + u16 mtu; + + u8 vport_id; + u8 relative_vf_id; + u8 abs_vf_id; +#define QED_VF_ABS_ID(p_hwfn, p_vf) (QED_PATH_ID(p_hwfn) ? \ + (p_vf)->abs_vf_id + MAX_NUM_VFS_BB : \ + (p_vf)->abs_vf_id) + + u8 vport_instance; + u8 num_rxqs; + u8 num_txqs; + + u8 num_sbs; + + u8 num_mac_filters; + u8 num_vlan_filters; + struct qed_vf_q_info vf_queues[QED_MAX_VF_CHAINS_PER_PF]; + u16 igu_sbs[QED_MAX_VF_CHAINS_PER_PF]; + u8 num_active_rxqs; + struct qed_public_vf_info p_vf_info; + bool spoof_chk; + bool req_spoofchk_val; + + /* Stores the configuration requested by VF */ + struct qed_vf_shadow_config shadow_config; + + /* A bitfield using bulletin's valid-map bits, used to indicate + * which of the bulletin board features have been configured. + */ + u64 configured_features; +#define QED_IOV_CONFIGURED_FEATURES_MASK ((1 << MAC_ADDR_FORCED) | \ + (1 << VLAN_ADDR_FORCED)) +}; + +/* This structure is part of qed_hwfn and used only for PFs that have sriov + * capability enabled. + */ +struct qed_pf_iov { + struct qed_vf_info vfs_array[MAX_NUM_VFS]; + u64 pending_events[QED_VF_ARRAY_LENGTH]; + u64 pending_flr[QED_VF_ARRAY_LENGTH]; + + /* Allocate message address continuosuly and split to each VF */ + void *mbx_msg_virt_addr; + dma_addr_t mbx_msg_phys_addr; + u32 mbx_msg_size; + void *mbx_reply_virt_addr; + dma_addr_t mbx_reply_phys_addr; + u32 mbx_reply_size; + void *p_bulletins; + dma_addr_t bulletins_phys; + u32 bulletins_size; +}; + +enum qed_iov_wq_flag { + QED_IOV_WQ_MSG_FLAG, + QED_IOV_WQ_SET_UNICAST_FILTER_FLAG, + QED_IOV_WQ_BULLETIN_UPDATE_FLAG, + QED_IOV_WQ_STOP_WQ_FLAG, + QED_IOV_WQ_FLR_FLAG, +}; + +#ifdef CONFIG_QED_SRIOV +/** + * @brief - Given a VF index, return index of next [including that] active VF. + * + * @param p_hwfn + * @param rel_vf_id + * + * @return MAX_NUM_VFS in case no further active VFs, otherwise index. + */ +u16 qed_iov_get_next_active_vf(struct qed_hwfn *p_hwfn, u16 rel_vf_id); + +/** + * @brief Read sriov related information and allocated resources + * reads from configuraiton space, shmem, etc. + * + * @param p_hwfn + * + * @return int + */ +int qed_iov_hw_info(struct qed_hwfn *p_hwfn); + +/** + * @brief qed_add_tlv - place a given tlv on the tlv buffer at next offset + * + * @param p_hwfn + * @param p_iov + * @param type + * @param length + * + * @return pointer to the newly placed tlv + */ +void *qed_add_tlv(struct qed_hwfn *p_hwfn, u8 **offset, u16 type, u16 length); + +/** + * @brief list the types and lengths of the tlvs on the buffer + * + * @param p_hwfn + * @param tlvs_list + */ +void qed_dp_tlv_list(struct qed_hwfn *p_hwfn, void *tlvs_list); + +/** + * @brief qed_iov_alloc - allocate sriov related resources + * + * @param p_hwfn + * + * @return int + */ +int qed_iov_alloc(struct qed_hwfn *p_hwfn); + +/** + * @brief qed_iov_setup - setup sriov related resources + * + * @param p_hwfn + * @param p_ptt + */ +void qed_iov_setup(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt); + +/** + * @brief qed_iov_free - free sriov related resources + * + * @param p_hwfn + */ +void qed_iov_free(struct qed_hwfn *p_hwfn); + +/** + * @brief free sriov related memory that was allocated during hw_prepare + * + * @param cdev + */ +void qed_iov_free_hw_info(struct qed_dev *cdev); + +/** + * @brief qed_sriov_eqe_event - handle async sriov event arrived on eqe. + * + * @param p_hwfn + * @param opcode + * @param echo + * @param data + */ +int qed_sriov_eqe_event(struct qed_hwfn *p_hwfn, + u8 opcode, __le16 echo, union event_ring_data *data); + +/** + * @brief Mark structs of vfs that have been FLR-ed. + * + * @param p_hwfn + * @param disabled_vfs - bitmask of all VFs on path that were FLRed + * + * @return 1 iff one of the PF's vfs got FLRed. 0 otherwise. + */ +int qed_iov_mark_vf_flr(struct qed_hwfn *p_hwfn, u32 *disabled_vfs); + +/** + * @brief Search extended TLVs in request/reply buffer. + * + * @param p_hwfn + * @param p_tlvs_list - Pointer to tlvs list + * @param req_type - Type of TLV + * + * @return pointer to tlv type if found, otherwise returns NULL. + */ +void *qed_iov_search_list_tlvs(struct qed_hwfn *p_hwfn, + void *p_tlvs_list, u16 req_type); + +void qed_iov_wq_stop(struct qed_dev *cdev, bool schedule_first); +int qed_iov_wq_start(struct qed_dev *cdev); + +void qed_schedule_iov(struct qed_hwfn *hwfn, enum qed_iov_wq_flag flag); +void qed_vf_start_iov_wq(struct qed_dev *cdev); +int qed_sriov_disable(struct qed_dev *cdev, bool pci_enabled); +void qed_inform_vf_link_state(struct qed_hwfn *hwfn); +#else +static inline u16 qed_iov_get_next_active_vf(struct qed_hwfn *p_hwfn, + u16 rel_vf_id) +{ + return MAX_NUM_VFS; +} + +static inline int qed_iov_hw_info(struct qed_hwfn *p_hwfn) +{ + return 0; +} + +static inline int qed_iov_alloc(struct qed_hwfn *p_hwfn) +{ + return 0; +} + +static inline void qed_iov_setup(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt) +{ +} + +static inline void qed_iov_free(struct qed_hwfn *p_hwfn) +{ +} + +static inline void qed_iov_free_hw_info(struct qed_dev *cdev) +{ +} + +static inline int qed_sriov_eqe_event(struct qed_hwfn *p_hwfn, + u8 opcode, + __le16 echo, union event_ring_data *data) +{ + return -EINVAL; +} + +static inline int qed_iov_mark_vf_flr(struct qed_hwfn *p_hwfn, + u32 *disabled_vfs) +{ + return 0; +} + +static inline void qed_iov_wq_stop(struct qed_dev *cdev, bool schedule_first) +{ +} + +static inline int qed_iov_wq_start(struct qed_dev *cdev) +{ + return 0; +} + +static inline void qed_schedule_iov(struct qed_hwfn *hwfn, + enum qed_iov_wq_flag flag) +{ +} + +static inline void qed_vf_start_iov_wq(struct qed_dev *cdev) +{ +} + +static inline int qed_sriov_disable(struct qed_dev *cdev, bool pci_enabled) +{ + return 0; +} + +static inline void qed_inform_vf_link_state(struct qed_hwfn *hwfn) +{ +} +#endif + +#define qed_for_each_vf(_p_hwfn, _i) \ + for (_i = qed_iov_get_next_active_vf(_p_hwfn, 0); \ + _i < MAX_NUM_VFS; \ + _i = qed_iov_get_next_active_vf(_p_hwfn, _i + 1)) + +#endif diff --git a/drivers/net/ethernet/qlogic/qed/qed_vf.c b/drivers/net/ethernet/qlogic/qed/qed_vf.c new file mode 100644 index 000000000000..9b780b31b15c --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_vf.c @@ -0,0 +1,1141 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ + +#include <linux/crc32.h> +#include <linux/etherdevice.h> +#include "qed.h" +#include "qed_sriov.h" +#include "qed_vf.h" + +static void *qed_vf_pf_prep(struct qed_hwfn *p_hwfn, u16 type, u16 length) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + void *p_tlv; + + /* This lock is released when we receive PF's response + * in qed_send_msg2pf(). + * So, qed_vf_pf_prep() and qed_send_msg2pf() + * must come in sequence. + */ + mutex_lock(&(p_iov->mutex)); + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "preparing to send 0x%04x tlv over vf pf channel\n", + type); + + /* Reset Requst offset */ + p_iov->offset = (u8 *)p_iov->vf2pf_request; + + /* Clear mailbox - both request and reply */ + memset(p_iov->vf2pf_request, 0, sizeof(union vfpf_tlvs)); + memset(p_iov->pf2vf_reply, 0, sizeof(union pfvf_tlvs)); + + /* Init type and length */ + p_tlv = qed_add_tlv(p_hwfn, &p_iov->offset, type, length); + + /* Init first tlv header */ + ((struct vfpf_first_tlv *)p_tlv)->reply_address = + (u64)p_iov->pf2vf_reply_phys; + + return p_tlv; +} + +static int qed_send_msg2pf(struct qed_hwfn *p_hwfn, u8 *done, u32 resp_size) +{ + union vfpf_tlvs *p_req = p_hwfn->vf_iov_info->vf2pf_request; + struct ustorm_trigger_vf_zone trigger; + struct ustorm_vf_zone *zone_data; + int rc = 0, time = 100; + + zone_data = (struct ustorm_vf_zone *)PXP_VF_BAR0_START_USDM_ZONE_B; + + /* output tlvs list */ + qed_dp_tlv_list(p_hwfn, p_req); + + /* need to add the END TLV to the message size */ + resp_size += sizeof(struct channel_list_end_tlv); + + /* Send TLVs over HW channel */ + memset(&trigger, 0, sizeof(struct ustorm_trigger_vf_zone)); + trigger.vf_pf_msg_valid = 1; + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF -> PF [%02x] message: [%08x, %08x] --> %p, %08x --> %p\n", + GET_FIELD(p_hwfn->hw_info.concrete_fid, + PXP_CONCRETE_FID_PFID), + upper_32_bits(p_hwfn->vf_iov_info->vf2pf_request_phys), + lower_32_bits(p_hwfn->vf_iov_info->vf2pf_request_phys), + &zone_data->non_trigger.vf_pf_msg_addr, + *((u32 *)&trigger), &zone_data->trigger); + + REG_WR(p_hwfn, + (uintptr_t)&zone_data->non_trigger.vf_pf_msg_addr.lo, + lower_32_bits(p_hwfn->vf_iov_info->vf2pf_request_phys)); + + REG_WR(p_hwfn, + (uintptr_t)&zone_data->non_trigger.vf_pf_msg_addr.hi, + upper_32_bits(p_hwfn->vf_iov_info->vf2pf_request_phys)); + + /* The message data must be written first, to prevent trigger before + * data is written. + */ + wmb(); + + REG_WR(p_hwfn, (uintptr_t)&zone_data->trigger, *((u32 *)&trigger)); + + /* When PF would be done with the response, it would write back to the + * `done' address. Poll until then. + */ + while ((!*done) && time) { + msleep(25); + time--; + } + + if (!*done) { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF <-- PF Timeout [Type %d]\n", + p_req->first_tlv.tl.type); + rc = -EBUSY; + goto exit; + } else { + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "PF response: %d [Type %d]\n", + *done, p_req->first_tlv.tl.type); + } + +exit: + mutex_unlock(&(p_hwfn->vf_iov_info->mutex)); + + return rc; +} + +#define VF_ACQUIRE_THRESH 3 +static void qed_vf_pf_acquire_reduce_resc(struct qed_hwfn *p_hwfn, + struct vf_pf_resc_request *p_req, + struct pf_vf_resc *p_resp) +{ + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "PF unwilling to fullill resource request: rxq [%02x/%02x] txq [%02x/%02x] sbs [%02x/%02x] mac [%02x/%02x] vlan [%02x/%02x] mc [%02x/%02x]. Try PF recommended amount\n", + p_req->num_rxqs, + p_resp->num_rxqs, + p_req->num_rxqs, + p_resp->num_txqs, + p_req->num_sbs, + p_resp->num_sbs, + p_req->num_mac_filters, + p_resp->num_mac_filters, + p_req->num_vlan_filters, + p_resp->num_vlan_filters, + p_req->num_mc_filters, p_resp->num_mc_filters); + + /* humble our request */ + p_req->num_txqs = p_resp->num_txqs; + p_req->num_rxqs = p_resp->num_rxqs; + p_req->num_sbs = p_resp->num_sbs; + p_req->num_mac_filters = p_resp->num_mac_filters; + p_req->num_vlan_filters = p_resp->num_vlan_filters; + p_req->num_mc_filters = p_resp->num_mc_filters; +} + +static int qed_vf_pf_acquire(struct qed_hwfn *p_hwfn) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_acquire_resp_tlv *resp = &p_iov->pf2vf_reply->acquire_resp; + struct pf_vf_pfdev_info *pfdev_info = &resp->pfdev_info; + struct vf_pf_resc_request *p_resc; + bool resources_acquired = false; + struct vfpf_acquire_tlv *req; + int rc = 0, attempts = 0; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_ACQUIRE, sizeof(*req)); + p_resc = &req->resc_request; + + /* starting filling the request */ + req->vfdev_info.opaque_fid = p_hwfn->hw_info.opaque_fid; + + p_resc->num_rxqs = QED_MAX_VF_CHAINS_PER_PF; + p_resc->num_txqs = QED_MAX_VF_CHAINS_PER_PF; + p_resc->num_sbs = QED_MAX_VF_CHAINS_PER_PF; + p_resc->num_mac_filters = QED_ETH_VF_NUM_MAC_FILTERS; + p_resc->num_vlan_filters = QED_ETH_VF_NUM_VLAN_FILTERS; + + req->vfdev_info.os_type = VFPF_ACQUIRE_OS_LINUX; + req->vfdev_info.fw_major = FW_MAJOR_VERSION; + req->vfdev_info.fw_minor = FW_MINOR_VERSION; + req->vfdev_info.fw_revision = FW_REVISION_VERSION; + req->vfdev_info.fw_engineering = FW_ENGINEERING_VERSION; + req->vfdev_info.eth_fp_hsi_major = ETH_HSI_VER_MAJOR; + req->vfdev_info.eth_fp_hsi_minor = ETH_HSI_VER_MINOR; + + /* Fill capability field with any non-deprecated config we support */ + req->vfdev_info.capabilities |= VFPF_ACQUIRE_CAP_100G; + + /* pf 2 vf bulletin board address */ + req->bulletin_addr = p_iov->bulletin.phys; + req->bulletin_size = p_iov->bulletin.size; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + while (!resources_acquired) { + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, "attempting to acquire resources\n"); + + /* send acquire request */ + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + /* copy acquire response from buffer to p_hwfn */ + memcpy(&p_iov->acquire_resp, resp, sizeof(p_iov->acquire_resp)); + + attempts++; + + if (resp->hdr.status == PFVF_STATUS_SUCCESS) { + /* PF agrees to allocate our resources */ + if (!(resp->pfdev_info.capabilities & + PFVF_ACQUIRE_CAP_POST_FW_OVERRIDE)) { + DP_INFO(p_hwfn, + "PF is using old incompatible driver; Either downgrade driver or request provider to update hypervisor version\n"); + return -EINVAL; + } + DP_VERBOSE(p_hwfn, QED_MSG_IOV, "resources acquired\n"); + resources_acquired = true; + } else if (resp->hdr.status == PFVF_STATUS_NO_RESOURCE && + attempts < VF_ACQUIRE_THRESH) { + qed_vf_pf_acquire_reduce_resc(p_hwfn, p_resc, + &resp->resc); + + /* Clear response buffer */ + memset(p_iov->pf2vf_reply, 0, sizeof(union pfvf_tlvs)); + } else if ((resp->hdr.status == PFVF_STATUS_NOT_SUPPORTED) && + pfdev_info->major_fp_hsi && + (pfdev_info->major_fp_hsi != ETH_HSI_VER_MAJOR)) { + DP_NOTICE(p_hwfn, + "PF uses an incompatible fastpath HSI %02x.%02x [VF requires %02x.%02x]. Please change to a VF driver using %02x.xx.\n", + pfdev_info->major_fp_hsi, + pfdev_info->minor_fp_hsi, + ETH_HSI_VER_MAJOR, + ETH_HSI_VER_MINOR, pfdev_info->major_fp_hsi); + return -EINVAL; + } else { + DP_ERR(p_hwfn, + "PF returned error %d to VF acquisition request\n", + resp->hdr.status); + return -EAGAIN; + } + } + + /* Update bulletin board size with response from PF */ + p_iov->bulletin.size = resp->bulletin_size; + + /* get HW info */ + p_hwfn->cdev->type = resp->pfdev_info.dev_type; + p_hwfn->cdev->chip_rev = resp->pfdev_info.chip_rev; + + p_hwfn->cdev->chip_num = pfdev_info->chip_num & 0xffff; + + /* Learn of the possibility of CMT */ + if (IS_LEAD_HWFN(p_hwfn)) { + if (resp->pfdev_info.capabilities & PFVF_ACQUIRE_CAP_100G) { + DP_NOTICE(p_hwfn, "100g VF\n"); + p_hwfn->cdev->num_hwfns = 2; + } + } + + if (ETH_HSI_VER_MINOR && + (resp->pfdev_info.minor_fp_hsi < ETH_HSI_VER_MINOR)) { + DP_INFO(p_hwfn, + "PF is using older fastpath HSI; %02x.%02x is configured\n", + ETH_HSI_VER_MAJOR, resp->pfdev_info.minor_fp_hsi); + } + + return 0; +} + +int qed_vf_hw_prepare(struct qed_hwfn *p_hwfn) +{ + struct qed_vf_iov *p_iov; + u32 reg; + + /* Set number of hwfns - might be overriden once leading hwfn learns + * actual configuration from PF. + */ + if (IS_LEAD_HWFN(p_hwfn)) + p_hwfn->cdev->num_hwfns = 1; + + /* Set the doorbell bar. Assumption: regview is set */ + p_hwfn->doorbells = (u8 __iomem *)p_hwfn->regview + + PXP_VF_BAR0_START_DQ; + + reg = PXP_VF_BAR0_ME_OPAQUE_ADDRESS; + p_hwfn->hw_info.opaque_fid = (u16)REG_RD(p_hwfn, reg); + + reg = PXP_VF_BAR0_ME_CONCRETE_ADDRESS; + p_hwfn->hw_info.concrete_fid = REG_RD(p_hwfn, reg); + + /* Allocate vf sriov info */ + p_iov = kzalloc(sizeof(*p_iov), GFP_KERNEL); + if (!p_iov) { + DP_NOTICE(p_hwfn, "Failed to allocate `struct qed_sriov'\n"); + return -ENOMEM; + } + + /* Allocate vf2pf msg */ + p_iov->vf2pf_request = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + sizeof(union vfpf_tlvs), + &p_iov->vf2pf_request_phys, + GFP_KERNEL); + if (!p_iov->vf2pf_request) { + DP_NOTICE(p_hwfn, + "Failed to allocate `vf2pf_request' DMA memory\n"); + goto free_p_iov; + } + + p_iov->pf2vf_reply = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + sizeof(union pfvf_tlvs), + &p_iov->pf2vf_reply_phys, + GFP_KERNEL); + if (!p_iov->pf2vf_reply) { + DP_NOTICE(p_hwfn, + "Failed to allocate `pf2vf_reply' DMA memory\n"); + goto free_vf2pf_request; + } + + DP_VERBOSE(p_hwfn, + QED_MSG_IOV, + "VF's Request mailbox [%p virt 0x%llx phys], Response mailbox [%p virt 0x%llx phys]\n", + p_iov->vf2pf_request, + (u64) p_iov->vf2pf_request_phys, + p_iov->pf2vf_reply, (u64)p_iov->pf2vf_reply_phys); + + /* Allocate Bulletin board */ + p_iov->bulletin.size = sizeof(struct qed_bulletin_content); + p_iov->bulletin.p_virt = dma_alloc_coherent(&p_hwfn->cdev->pdev->dev, + p_iov->bulletin.size, + &p_iov->bulletin.phys, + GFP_KERNEL); + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "VF's bulletin Board [%p virt 0x%llx phys 0x%08x bytes]\n", + p_iov->bulletin.p_virt, + (u64)p_iov->bulletin.phys, p_iov->bulletin.size); + + mutex_init(&p_iov->mutex); + + p_hwfn->vf_iov_info = p_iov; + + p_hwfn->hw_info.personality = QED_PCI_ETH; + + return qed_vf_pf_acquire(p_hwfn); + +free_vf2pf_request: + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + sizeof(union vfpf_tlvs), + p_iov->vf2pf_request, p_iov->vf2pf_request_phys); +free_p_iov: + kfree(p_iov); + + return -ENOMEM; +} + +int qed_vf_pf_rxq_start(struct qed_hwfn *p_hwfn, + u8 rx_qid, + u16 sb, + u8 sb_index, + u16 bd_max_bytes, + dma_addr_t bd_chain_phys_addr, + dma_addr_t cqe_pbl_addr, + u16 cqe_pbl_size, void __iomem **pp_prod) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_start_queue_resp_tlv *resp; + struct vfpf_start_rxq_tlv *req; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_START_RXQ, sizeof(*req)); + + req->rx_qid = rx_qid; + req->cqe_pbl_addr = cqe_pbl_addr; + req->cqe_pbl_size = cqe_pbl_size; + req->rxq_addr = bd_chain_phys_addr; + req->hw_sb = sb; + req->sb_index = sb_index; + req->bd_max_bytes = bd_max_bytes; + req->stat_id = -1; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->queue_start; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + /* Learn the address of the producer from the response */ + if (pp_prod) { + u32 init_prod_val = 0; + + *pp_prod = (u8 __iomem *)p_hwfn->regview + resp->offset; + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Rxq[0x%02x]: producer at %p [offset 0x%08x]\n", + rx_qid, *pp_prod, resp->offset); + + /* Init the rcq, rx bd and rx sge (if valid) producers to 0 */ + __internal_ram_wr(p_hwfn, *pp_prod, sizeof(u32), + (u32 *)&init_prod_val); + } + + return rc; +} + +int qed_vf_pf_rxq_stop(struct qed_hwfn *p_hwfn, u16 rx_qid, bool cqe_completion) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct vfpf_stop_rxqs_tlv *req; + struct pfvf_def_resp_tlv *resp; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_STOP_RXQS, sizeof(*req)); + + req->rx_qid = rx_qid; + req->num_rxqs = 1; + req->cqe_completion = cqe_completion; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->default_resp; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + return rc; +} + +int qed_vf_pf_txq_start(struct qed_hwfn *p_hwfn, + u16 tx_queue_id, + u16 sb, + u8 sb_index, + dma_addr_t pbl_addr, + u16 pbl_size, void __iomem **pp_doorbell) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_start_queue_resp_tlv *resp; + struct vfpf_start_txq_tlv *req; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_START_TXQ, sizeof(*req)); + + req->tx_qid = tx_queue_id; + + /* Tx */ + req->pbl_addr = pbl_addr; + req->pbl_size = pbl_size; + req->hw_sb = sb; + req->sb_index = sb_index; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->queue_start; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + goto exit; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) { + rc = -EINVAL; + goto exit; + } + + if (pp_doorbell) { + *pp_doorbell = (u8 __iomem *)p_hwfn->doorbells + resp->offset; + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Txq[0x%02x]: doorbell at %p [offset 0x%08x]\n", + tx_queue_id, *pp_doorbell, resp->offset); + } +exit: + + return rc; +} + +int qed_vf_pf_txq_stop(struct qed_hwfn *p_hwfn, u16 tx_qid) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct vfpf_stop_txqs_tlv *req; + struct pfvf_def_resp_tlv *resp; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_STOP_TXQS, sizeof(*req)); + + req->tx_qid = tx_qid; + req->num_txqs = 1; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->default_resp; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + return rc; +} + +int qed_vf_pf_vport_start(struct qed_hwfn *p_hwfn, + u8 vport_id, + u16 mtu, + u8 inner_vlan_removal, + enum qed_tpa_mode tpa_mode, + u8 max_buffers_per_cqe, u8 only_untagged) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct vfpf_vport_start_tlv *req; + struct pfvf_def_resp_tlv *resp; + int rc, i; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_VPORT_START, sizeof(*req)); + + req->mtu = mtu; + req->vport_id = vport_id; + req->inner_vlan_removal = inner_vlan_removal; + req->tpa_mode = tpa_mode; + req->max_buffers_per_cqe = max_buffers_per_cqe; + req->only_untagged = only_untagged; + + /* status blocks */ + for (i = 0; i < p_hwfn->vf_iov_info->acquire_resp.resc.num_sbs; i++) + if (p_hwfn->sbs_info[i]) + req->sb_addr[i] = p_hwfn->sbs_info[i]->sb_phys; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->default_resp; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + return rc; +} + +int qed_vf_pf_vport_stop(struct qed_hwfn *p_hwfn) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_def_resp_tlv *resp = &p_iov->pf2vf_reply->default_resp; + int rc; + + /* clear mailbox and prep first tlv */ + qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_VPORT_TEARDOWN, + sizeof(struct vfpf_first_tlv)); + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + return rc; +} + +static bool +qed_vf_handle_vp_update_is_needed(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data, + u16 tlv) +{ + switch (tlv) { + case CHANNEL_TLV_VPORT_UPDATE_ACTIVATE: + return !!(p_data->update_vport_active_rx_flg || + p_data->update_vport_active_tx_flg); + case CHANNEL_TLV_VPORT_UPDATE_TX_SWITCH: + return !!p_data->update_tx_switching_flg; + case CHANNEL_TLV_VPORT_UPDATE_VLAN_STRIP: + return !!p_data->update_inner_vlan_removal_flg; + case CHANNEL_TLV_VPORT_UPDATE_ACCEPT_ANY_VLAN: + return !!p_data->update_accept_any_vlan_flg; + case CHANNEL_TLV_VPORT_UPDATE_MCAST: + return !!p_data->update_approx_mcast_flg; + case CHANNEL_TLV_VPORT_UPDATE_ACCEPT_PARAM: + return !!(p_data->accept_flags.update_rx_mode_config || + p_data->accept_flags.update_tx_mode_config); + case CHANNEL_TLV_VPORT_UPDATE_RSS: + return !!p_data->rss_params; + case CHANNEL_TLV_VPORT_UPDATE_SGE_TPA: + return !!p_data->sge_tpa_params; + default: + DP_INFO(p_hwfn, "Unexpected vport-update TLV[%d]\n", + tlv); + return false; + } +} + +static void +qed_vf_handle_vp_update_tlvs_resp(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_data) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_def_resp_tlv *p_resp; + u16 tlv; + + for (tlv = CHANNEL_TLV_VPORT_UPDATE_ACTIVATE; + tlv < CHANNEL_TLV_VPORT_UPDATE_MAX; tlv++) { + if (!qed_vf_handle_vp_update_is_needed(p_hwfn, p_data, tlv)) + continue; + + p_resp = (struct pfvf_def_resp_tlv *) + qed_iov_search_list_tlvs(p_hwfn, p_iov->pf2vf_reply, + tlv); + if (p_resp && p_resp->hdr.status) + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "TLV[%d] Configuration %s\n", + tlv, + (p_resp && p_resp->hdr.status) ? "succeeded" + : "failed"); + } +} + +int qed_vf_pf_vport_update(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_params) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct vfpf_vport_update_tlv *req; + struct pfvf_def_resp_tlv *resp; + u8 update_rx, update_tx; + u32 resp_size = 0; + u16 size, tlv; + int rc; + + resp = &p_iov->pf2vf_reply->default_resp; + resp_size = sizeof(*resp); + + update_rx = p_params->update_vport_active_rx_flg; + update_tx = p_params->update_vport_active_tx_flg; + + /* clear mailbox and prep header tlv */ + qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_VPORT_UPDATE, sizeof(*req)); + + /* Prepare extended tlvs */ + if (update_rx || update_tx) { + struct vfpf_vport_update_activate_tlv *p_act_tlv; + + size = sizeof(struct vfpf_vport_update_activate_tlv); + p_act_tlv = qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_VPORT_UPDATE_ACTIVATE, + size); + resp_size += sizeof(struct pfvf_def_resp_tlv); + + if (update_rx) { + p_act_tlv->update_rx = update_rx; + p_act_tlv->active_rx = p_params->vport_active_rx_flg; + } + + if (update_tx) { + p_act_tlv->update_tx = update_tx; + p_act_tlv->active_tx = p_params->vport_active_tx_flg; + } + } + + if (p_params->update_tx_switching_flg) { + struct vfpf_vport_update_tx_switch_tlv *p_tx_switch_tlv; + + size = sizeof(struct vfpf_vport_update_tx_switch_tlv); + tlv = CHANNEL_TLV_VPORT_UPDATE_TX_SWITCH; + p_tx_switch_tlv = qed_add_tlv(p_hwfn, &p_iov->offset, + tlv, size); + resp_size += sizeof(struct pfvf_def_resp_tlv); + + p_tx_switch_tlv->tx_switching = p_params->tx_switching_flg; + } + + if (p_params->update_approx_mcast_flg) { + struct vfpf_vport_update_mcast_bin_tlv *p_mcast_tlv; + + size = sizeof(struct vfpf_vport_update_mcast_bin_tlv); + p_mcast_tlv = qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_VPORT_UPDATE_MCAST, size); + resp_size += sizeof(struct pfvf_def_resp_tlv); + + memcpy(p_mcast_tlv->bins, p_params->bins, + sizeof(unsigned long) * ETH_MULTICAST_MAC_BINS_IN_REGS); + } + + update_rx = p_params->accept_flags.update_rx_mode_config; + update_tx = p_params->accept_flags.update_tx_mode_config; + + if (update_rx || update_tx) { + struct vfpf_vport_update_accept_param_tlv *p_accept_tlv; + + tlv = CHANNEL_TLV_VPORT_UPDATE_ACCEPT_PARAM; + size = sizeof(struct vfpf_vport_update_accept_param_tlv); + p_accept_tlv = qed_add_tlv(p_hwfn, &p_iov->offset, tlv, size); + resp_size += sizeof(struct pfvf_def_resp_tlv); + + if (update_rx) { + p_accept_tlv->update_rx_mode = update_rx; + p_accept_tlv->rx_accept_filter = + p_params->accept_flags.rx_accept_filter; + } + + if (update_tx) { + p_accept_tlv->update_tx_mode = update_tx; + p_accept_tlv->tx_accept_filter = + p_params->accept_flags.tx_accept_filter; + } + } + + if (p_params->rss_params) { + struct qed_rss_params *rss_params = p_params->rss_params; + struct vfpf_vport_update_rss_tlv *p_rss_tlv; + + size = sizeof(struct vfpf_vport_update_rss_tlv); + p_rss_tlv = qed_add_tlv(p_hwfn, + &p_iov->offset, + CHANNEL_TLV_VPORT_UPDATE_RSS, size); + resp_size += sizeof(struct pfvf_def_resp_tlv); + + if (rss_params->update_rss_config) + p_rss_tlv->update_rss_flags |= + VFPF_UPDATE_RSS_CONFIG_FLAG; + if (rss_params->update_rss_capabilities) + p_rss_tlv->update_rss_flags |= + VFPF_UPDATE_RSS_CAPS_FLAG; + if (rss_params->update_rss_ind_table) + p_rss_tlv->update_rss_flags |= + VFPF_UPDATE_RSS_IND_TABLE_FLAG; + if (rss_params->update_rss_key) + p_rss_tlv->update_rss_flags |= VFPF_UPDATE_RSS_KEY_FLAG; + + p_rss_tlv->rss_enable = rss_params->rss_enable; + p_rss_tlv->rss_caps = rss_params->rss_caps; + p_rss_tlv->rss_table_size_log = rss_params->rss_table_size_log; + memcpy(p_rss_tlv->rss_ind_table, rss_params->rss_ind_table, + sizeof(rss_params->rss_ind_table)); + memcpy(p_rss_tlv->rss_key, rss_params->rss_key, + sizeof(rss_params->rss_key)); + } + + if (p_params->update_accept_any_vlan_flg) { + struct vfpf_vport_update_accept_any_vlan_tlv *p_any_vlan_tlv; + + size = sizeof(struct vfpf_vport_update_accept_any_vlan_tlv); + tlv = CHANNEL_TLV_VPORT_UPDATE_ACCEPT_ANY_VLAN; + p_any_vlan_tlv = qed_add_tlv(p_hwfn, &p_iov->offset, tlv, size); + + resp_size += sizeof(struct pfvf_def_resp_tlv); + p_any_vlan_tlv->accept_any_vlan = p_params->accept_any_vlan; + p_any_vlan_tlv->update_accept_any_vlan_flg = + p_params->update_accept_any_vlan_flg; + } + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, resp_size); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + qed_vf_handle_vp_update_tlvs_resp(p_hwfn, p_params); + + return rc; +} + +int qed_vf_pf_reset(struct qed_hwfn *p_hwfn) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_def_resp_tlv *resp; + struct vfpf_first_tlv *req; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_CLOSE, sizeof(*req)); + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->default_resp; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EAGAIN; + + p_hwfn->b_int_enabled = 0; + + return 0; +} + +int qed_vf_pf_release(struct qed_hwfn *p_hwfn) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_def_resp_tlv *resp; + struct vfpf_first_tlv *req; + u32 size; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_RELEASE, sizeof(*req)); + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->default_resp; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + + if (!rc && resp->hdr.status != PFVF_STATUS_SUCCESS) + rc = -EAGAIN; + + p_hwfn->b_int_enabled = 0; + + if (p_iov->vf2pf_request) + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + sizeof(union vfpf_tlvs), + p_iov->vf2pf_request, + p_iov->vf2pf_request_phys); + if (p_iov->pf2vf_reply) + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + sizeof(union pfvf_tlvs), + p_iov->pf2vf_reply, p_iov->pf2vf_reply_phys); + + if (p_iov->bulletin.p_virt) { + size = sizeof(struct qed_bulletin_content); + dma_free_coherent(&p_hwfn->cdev->pdev->dev, + size, + p_iov->bulletin.p_virt, p_iov->bulletin.phys); + } + + kfree(p_hwfn->vf_iov_info); + p_hwfn->vf_iov_info = NULL; + + return rc; +} + +void qed_vf_pf_filter_mcast(struct qed_hwfn *p_hwfn, + struct qed_filter_mcast *p_filter_cmd) +{ + struct qed_sp_vport_update_params sp_params; + int i; + + memset(&sp_params, 0, sizeof(sp_params)); + sp_params.update_approx_mcast_flg = 1; + + if (p_filter_cmd->opcode == QED_FILTER_ADD) { + for (i = 0; i < p_filter_cmd->num_mc_addrs; i++) { + u32 bit; + + bit = qed_mcast_bin_from_mac(p_filter_cmd->mac[i]); + __set_bit(bit, sp_params.bins); + } + } + + qed_vf_pf_vport_update(p_hwfn, &sp_params); +} + +int qed_vf_pf_filter_ucast(struct qed_hwfn *p_hwfn, + struct qed_filter_ucast *p_ucast) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct vfpf_ucast_filter_tlv *req; + struct pfvf_def_resp_tlv *resp; + int rc; + + /* clear mailbox and prep first tlv */ + req = qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_UCAST_FILTER, sizeof(*req)); + req->opcode = (u8) p_ucast->opcode; + req->type = (u8) p_ucast->type; + memcpy(req->mac, p_ucast->mac, ETH_ALEN); + req->vlan = p_ucast->vlan; + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + resp = &p_iov->pf2vf_reply->default_resp; + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EAGAIN; + + return 0; +} + +int qed_vf_pf_int_cleanup(struct qed_hwfn *p_hwfn) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct pfvf_def_resp_tlv *resp = &p_iov->pf2vf_reply->default_resp; + int rc; + + /* clear mailbox and prep first tlv */ + qed_vf_pf_prep(p_hwfn, CHANNEL_TLV_INT_CLEANUP, + sizeof(struct vfpf_first_tlv)); + + /* add list termination tlv */ + qed_add_tlv(p_hwfn, &p_iov->offset, + CHANNEL_TLV_LIST_END, sizeof(struct channel_list_end_tlv)); + + rc = qed_send_msg2pf(p_hwfn, &resp->hdr.status, sizeof(*resp)); + if (rc) + return rc; + + if (resp->hdr.status != PFVF_STATUS_SUCCESS) + return -EINVAL; + + return 0; +} + +u16 qed_vf_get_igu_sb_id(struct qed_hwfn *p_hwfn, u16 sb_id) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + + if (!p_iov) { + DP_NOTICE(p_hwfn, "vf_sriov_info isn't initialized\n"); + return 0; + } + + return p_iov->acquire_resp.resc.hw_sbs[sb_id].hw_sb_id; +} + +int qed_vf_read_bulletin(struct qed_hwfn *p_hwfn, u8 *p_change) +{ + struct qed_vf_iov *p_iov = p_hwfn->vf_iov_info; + struct qed_bulletin_content shadow; + u32 crc, crc_size; + + crc_size = sizeof(p_iov->bulletin.p_virt->crc); + *p_change = 0; + + /* Need to guarantee PF is not in the middle of writing it */ + memcpy(&shadow, p_iov->bulletin.p_virt, p_iov->bulletin.size); + + /* If version did not update, no need to do anything */ + if (shadow.version == p_iov->bulletin_shadow.version) + return 0; + + /* Verify the bulletin we see is valid */ + crc = crc32(0, (u8 *)&shadow + crc_size, + p_iov->bulletin.size - crc_size); + if (crc != shadow.crc) + return -EAGAIN; + + /* Set the shadow bulletin and process it */ + memcpy(&p_iov->bulletin_shadow, &shadow, p_iov->bulletin.size); + + DP_VERBOSE(p_hwfn, QED_MSG_IOV, + "Read a bulletin update %08x\n", shadow.version); + + *p_change = 1; + + return 0; +} + +void __qed_vf_get_link_params(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_params *p_params, + struct qed_bulletin_content *p_bulletin) +{ + memset(p_params, 0, sizeof(*p_params)); + + p_params->speed.autoneg = p_bulletin->req_autoneg; + p_params->speed.advertised_speeds = p_bulletin->req_adv_speed; + p_params->speed.forced_speed = p_bulletin->req_forced_speed; + p_params->pause.autoneg = p_bulletin->req_autoneg_pause; + p_params->pause.forced_rx = p_bulletin->req_forced_rx; + p_params->pause.forced_tx = p_bulletin->req_forced_tx; + p_params->loopback_mode = p_bulletin->req_loopback; +} + +void qed_vf_get_link_params(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_params *params) +{ + __qed_vf_get_link_params(p_hwfn, params, + &(p_hwfn->vf_iov_info->bulletin_shadow)); +} + +void __qed_vf_get_link_state(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_state *p_link, + struct qed_bulletin_content *p_bulletin) +{ + memset(p_link, 0, sizeof(*p_link)); + + p_link->link_up = p_bulletin->link_up; + p_link->speed = p_bulletin->speed; + p_link->full_duplex = p_bulletin->full_duplex; + p_link->an = p_bulletin->autoneg; + p_link->an_complete = p_bulletin->autoneg_complete; + p_link->parallel_detection = p_bulletin->parallel_detection; + p_link->pfc_enabled = p_bulletin->pfc_enabled; + p_link->partner_adv_speed = p_bulletin->partner_adv_speed; + p_link->partner_tx_flow_ctrl_en = p_bulletin->partner_tx_flow_ctrl_en; + p_link->partner_rx_flow_ctrl_en = p_bulletin->partner_rx_flow_ctrl_en; + p_link->partner_adv_pause = p_bulletin->partner_adv_pause; + p_link->sfp_tx_fault = p_bulletin->sfp_tx_fault; +} + +void qed_vf_get_link_state(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_state *link) +{ + __qed_vf_get_link_state(p_hwfn, link, + &(p_hwfn->vf_iov_info->bulletin_shadow)); +} + +void __qed_vf_get_link_caps(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_capabilities *p_link_caps, + struct qed_bulletin_content *p_bulletin) +{ + memset(p_link_caps, 0, sizeof(*p_link_caps)); + p_link_caps->speed_capabilities = p_bulletin->capability_speed; +} + +void qed_vf_get_link_caps(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_capabilities *p_link_caps) +{ + __qed_vf_get_link_caps(p_hwfn, p_link_caps, + &(p_hwfn->vf_iov_info->bulletin_shadow)); +} + +void qed_vf_get_num_rxqs(struct qed_hwfn *p_hwfn, u8 *num_rxqs) +{ + *num_rxqs = p_hwfn->vf_iov_info->acquire_resp.resc.num_rxqs; +} + +void qed_vf_get_port_mac(struct qed_hwfn *p_hwfn, u8 *port_mac) +{ + memcpy(port_mac, + p_hwfn->vf_iov_info->acquire_resp.pfdev_info.port_mac, ETH_ALEN); +} + +void qed_vf_get_num_vlan_filters(struct qed_hwfn *p_hwfn, u8 *num_vlan_filters) +{ + struct qed_vf_iov *p_vf; + + p_vf = p_hwfn->vf_iov_info; + *num_vlan_filters = p_vf->acquire_resp.resc.num_vlan_filters; +} + +bool qed_vf_check_mac(struct qed_hwfn *p_hwfn, u8 *mac) +{ + struct qed_bulletin_content *bulletin; + + bulletin = &p_hwfn->vf_iov_info->bulletin_shadow; + if (!(bulletin->valid_bitmap & (1 << MAC_ADDR_FORCED))) + return true; + + /* Forbid VF from changing a MAC enforced by PF */ + if (ether_addr_equal(bulletin->mac, mac)) + return false; + + return false; +} + +bool qed_vf_bulletin_get_forced_mac(struct qed_hwfn *hwfn, + u8 *dst_mac, u8 *p_is_forced) +{ + struct qed_bulletin_content *bulletin; + + bulletin = &hwfn->vf_iov_info->bulletin_shadow; + + if (bulletin->valid_bitmap & (1 << MAC_ADDR_FORCED)) { + if (p_is_forced) + *p_is_forced = 1; + } else if (bulletin->valid_bitmap & (1 << VFPF_BULLETIN_MAC_ADDR)) { + if (p_is_forced) + *p_is_forced = 0; + } else { + return false; + } + + ether_addr_copy(dst_mac, bulletin->mac); + + return true; +} + +void qed_vf_get_fw_version(struct qed_hwfn *p_hwfn, + u16 *fw_major, u16 *fw_minor, + u16 *fw_rev, u16 *fw_eng) +{ + struct pf_vf_pfdev_info *info; + + info = &p_hwfn->vf_iov_info->acquire_resp.pfdev_info; + + *fw_major = info->fw_major; + *fw_minor = info->fw_minor; + *fw_rev = info->fw_rev; + *fw_eng = info->fw_eng; +} + +static void qed_handle_bulletin_change(struct qed_hwfn *hwfn) +{ + struct qed_eth_cb_ops *ops = hwfn->cdev->protocol_ops.eth; + u8 mac[ETH_ALEN], is_mac_exist, is_mac_forced; + void *cookie = hwfn->cdev->ops_cookie; + + is_mac_exist = qed_vf_bulletin_get_forced_mac(hwfn, mac, + &is_mac_forced); + if (is_mac_exist && is_mac_forced && cookie) + ops->force_mac(cookie, mac); + + /* Always update link configuration according to bulletin */ + qed_link_update(hwfn); +} + +void qed_iov_vf_task(struct work_struct *work) +{ + struct qed_hwfn *hwfn = container_of(work, struct qed_hwfn, + iov_task.work); + u8 change = 0; + + if (test_and_clear_bit(QED_IOV_WQ_STOP_WQ_FLAG, &hwfn->iov_task_flags)) + return; + + /* Handle bulletin board changes */ + qed_vf_read_bulletin(hwfn, &change); + if (change) + qed_handle_bulletin_change(hwfn); + + /* As VF is polling bulletin board, need to constantly re-schedule */ + queue_delayed_work(hwfn->iov_wq, &hwfn->iov_task, HZ); +} diff --git a/drivers/net/ethernet/qlogic/qed/qed_vf.h b/drivers/net/ethernet/qlogic/qed/qed_vf.h new file mode 100644 index 000000000000..b23ce58e932f --- /dev/null +++ b/drivers/net/ethernet/qlogic/qed/qed_vf.h @@ -0,0 +1,999 @@ +/* QLogic qed NIC Driver + * Copyright (c) 2015 QLogic Corporation + * + * This software is available under the terms of the GNU General Public License + * (GPL) Version 2, available from the file COPYING in the main directory of + * this source tree. + */ + +#ifndef _QED_VF_H +#define _QED_VF_H + +#include "qed_l2.h" +#include "qed_mcp.h" + +#define T_ETH_INDIRECTION_TABLE_SIZE 128 +#define T_ETH_RSS_KEY_SIZE 10 + +struct vf_pf_resc_request { + u8 num_rxqs; + u8 num_txqs; + u8 num_sbs; + u8 num_mac_filters; + u8 num_vlan_filters; + u8 num_mc_filters; + u16 padding; +}; + +struct hw_sb_info { + u16 hw_sb_id; + u8 sb_qid; + u8 padding[5]; +}; + +#define TLV_BUFFER_SIZE 1024 + +enum { + PFVF_STATUS_WAITING, + PFVF_STATUS_SUCCESS, + PFVF_STATUS_FAILURE, + PFVF_STATUS_NOT_SUPPORTED, + PFVF_STATUS_NO_RESOURCE, + PFVF_STATUS_FORCED, +}; + +/* vf pf channel tlvs */ +/* general tlv header (used for both vf->pf request and pf->vf response) */ +struct channel_tlv { + u16 type; + u16 length; +}; + +/* header of first vf->pf tlv carries the offset used to calculate reponse + * buffer address + */ +struct vfpf_first_tlv { + struct channel_tlv tl; + u32 padding; + u64 reply_address; +}; + +/* header of pf->vf tlvs, carries the status of handling the request */ +struct pfvf_tlv { + struct channel_tlv tl; + u8 status; + u8 padding[3]; +}; + +/* response tlv used for most tlvs */ +struct pfvf_def_resp_tlv { + struct pfvf_tlv hdr; +}; + +/* used to terminate and pad a tlv list */ +struct channel_list_end_tlv { + struct channel_tlv tl; + u8 padding[4]; +}; + +#define VFPF_ACQUIRE_OS_LINUX (0) +#define VFPF_ACQUIRE_OS_WINDOWS (1) +#define VFPF_ACQUIRE_OS_ESX (2) +#define VFPF_ACQUIRE_OS_SOLARIS (3) +#define VFPF_ACQUIRE_OS_LINUX_USERSPACE (4) + +struct vfpf_acquire_tlv { + struct vfpf_first_tlv first_tlv; + + struct vf_pf_vfdev_info { +#define VFPF_ACQUIRE_CAP_OBSOLETE (1 << 0) +#define VFPF_ACQUIRE_CAP_100G (1 << 1) /* VF can support 100g */ + u64 capabilities; + u8 fw_major; + u8 fw_minor; + u8 fw_revision; + u8 fw_engineering; + u32 driver_version; + u16 opaque_fid; /* ME register value */ + u8 os_type; /* VFPF_ACQUIRE_OS_* value */ + u8 eth_fp_hsi_major; + u8 eth_fp_hsi_minor; + u8 padding[3]; + } vfdev_info; + + struct vf_pf_resc_request resc_request; + + u64 bulletin_addr; + u32 bulletin_size; + u32 padding; +}; + +/* receive side scaling tlv */ +struct vfpf_vport_update_rss_tlv { + struct channel_tlv tl; + + u8 update_rss_flags; +#define VFPF_UPDATE_RSS_CONFIG_FLAG BIT(0) +#define VFPF_UPDATE_RSS_CAPS_FLAG BIT(1) +#define VFPF_UPDATE_RSS_IND_TABLE_FLAG BIT(2) +#define VFPF_UPDATE_RSS_KEY_FLAG BIT(3) + + u8 rss_enable; + u8 rss_caps; + u8 rss_table_size_log; /* The table size is 2 ^ rss_table_size_log */ + u16 rss_ind_table[T_ETH_INDIRECTION_TABLE_SIZE]; + u32 rss_key[T_ETH_RSS_KEY_SIZE]; +}; + +struct pfvf_storm_stats { + u32 address; + u32 len; +}; + +struct pfvf_stats_info { + struct pfvf_storm_stats mstats; + struct pfvf_storm_stats pstats; + struct pfvf_storm_stats tstats; + struct pfvf_storm_stats ustats; +}; + +struct pfvf_acquire_resp_tlv { + struct pfvf_tlv hdr; + + struct pf_vf_pfdev_info { + u32 chip_num; + u32 mfw_ver; + + u16 fw_major; + u16 fw_minor; + u16 fw_rev; + u16 fw_eng; + + u64 capabilities; +#define PFVF_ACQUIRE_CAP_DEFAULT_UNTAGGED BIT(0) +#define PFVF_ACQUIRE_CAP_100G BIT(1) /* If set, 100g PF */ +/* There are old PF versions where the PF might mistakenly override the sanity + * mechanism [version-based] and allow a VF that can't be supported to pass + * the acquisition phase. + * To overcome this, PFs now indicate that they're past that point and the new + * VFs would fail probe on the older PFs that fail to do so. + */ +#define PFVF_ACQUIRE_CAP_POST_FW_OVERRIDE BIT(2) + + u16 db_size; + u8 indices_per_sb; + u8 os_type; + + /* These should match the PF's qed_dev values */ + u16 chip_rev; + u8 dev_type; + + u8 padding; + + struct pfvf_stats_info stats_info; + + u8 port_mac[ETH_ALEN]; + + /* It's possible PF had to configure an older fastpath HSI + * [in case VF is newer than PF]. This is communicated back + * to the VF. It can also be used in case of error due to + * non-matching versions to shed light in VF about failure. + */ + u8 major_fp_hsi; + u8 minor_fp_hsi; + } pfdev_info; + + struct pf_vf_resc { +#define PFVF_MAX_QUEUES_PER_VF 16 +#define PFVF_MAX_SBS_PER_VF 16 + struct hw_sb_info hw_sbs[PFVF_MAX_SBS_PER_VF]; + u8 hw_qid[PFVF_MAX_QUEUES_PER_VF]; + u8 cid[PFVF_MAX_QUEUES_PER_VF]; + + u8 num_rxqs; + u8 num_txqs; + u8 num_sbs; + u8 num_mac_filters; + u8 num_vlan_filters; + u8 num_mc_filters; + u8 padding[2]; + } resc; + + u32 bulletin_size; + u32 padding; +}; + +struct pfvf_start_queue_resp_tlv { + struct pfvf_tlv hdr; + u32 offset; /* offset to consumer/producer of queue */ + u8 padding[4]; +}; + +/* Setup Queue */ +struct vfpf_start_rxq_tlv { + struct vfpf_first_tlv first_tlv; + + /* physical addresses */ + u64 rxq_addr; + u64 deprecated_sge_addr; + u64 cqe_pbl_addr; + + u16 cqe_pbl_size; + u16 hw_sb; + u16 rx_qid; + u16 hc_rate; /* desired interrupts per sec. */ + + u16 bd_max_bytes; + u16 stat_id; + u8 sb_index; + u8 padding[3]; +}; + +struct vfpf_start_txq_tlv { + struct vfpf_first_tlv first_tlv; + + /* physical addresses */ + u64 pbl_addr; + u16 pbl_size; + u16 stat_id; + u16 tx_qid; + u16 hw_sb; + + u32 flags; /* VFPF_QUEUE_FLG_X flags */ + u16 hc_rate; /* desired interrupts per sec. */ + u8 sb_index; + u8 padding[3]; +}; + +/* Stop RX Queue */ +struct vfpf_stop_rxqs_tlv { + struct vfpf_first_tlv first_tlv; + + u16 rx_qid; + u8 num_rxqs; + u8 cqe_completion; + u8 padding[4]; +}; + +/* Stop TX Queues */ +struct vfpf_stop_txqs_tlv { + struct vfpf_first_tlv first_tlv; + + u16 tx_qid; + u8 num_txqs; + u8 padding[5]; +}; + +struct vfpf_update_rxq_tlv { + struct vfpf_first_tlv first_tlv; + + u64 deprecated_sge_addr[PFVF_MAX_QUEUES_PER_VF]; + + u16 rx_qid; + u8 num_rxqs; + u8 flags; +#define VFPF_RXQ_UPD_INIT_SGE_DEPRECATE_FLAG BIT(0) +#define VFPF_RXQ_UPD_COMPLETE_CQE_FLAG BIT(1) +#define VFPF_RXQ_UPD_COMPLETE_EVENT_FLAG BIT(2) + + u8 padding[4]; +}; + +/* Set Queue Filters */ +struct vfpf_q_mac_vlan_filter { + u32 flags; +#define VFPF_Q_FILTER_DEST_MAC_VALID 0x01 +#define VFPF_Q_FILTER_VLAN_TAG_VALID 0x02 +#define VFPF_Q_FILTER_SET_MAC 0x100 /* set/clear */ + + u8 mac[ETH_ALEN]; + u16 vlan_tag; + + u8 padding[4]; +}; + +/* Start a vport */ +struct vfpf_vport_start_tlv { + struct vfpf_first_tlv first_tlv; + + u64 sb_addr[PFVF_MAX_SBS_PER_VF]; + + u32 tpa_mode; + u16 dep1; + u16 mtu; + + u8 vport_id; + u8 inner_vlan_removal; + + u8 only_untagged; + u8 max_buffers_per_cqe; + + u8 padding[4]; +}; + +/* Extended tlvs - need to add rss, mcast, accept mode tlvs */ +struct vfpf_vport_update_activate_tlv { + struct channel_tlv tl; + u8 update_rx; + u8 update_tx; + u8 active_rx; + u8 active_tx; +}; + +struct vfpf_vport_update_tx_switch_tlv { + struct channel_tlv tl; + u8 tx_switching; + u8 padding[3]; +}; + +struct vfpf_vport_update_vlan_strip_tlv { + struct channel_tlv tl; + u8 remove_vlan; + u8 padding[3]; +}; + +struct vfpf_vport_update_mcast_bin_tlv { + struct channel_tlv tl; + u8 padding[4]; + + u64 bins[8]; +}; + +struct vfpf_vport_update_accept_param_tlv { + struct channel_tlv tl; + u8 update_rx_mode; + u8 update_tx_mode; + u8 rx_accept_filter; + u8 tx_accept_filter; +}; + +struct vfpf_vport_update_accept_any_vlan_tlv { + struct channel_tlv tl; + u8 update_accept_any_vlan_flg; + u8 accept_any_vlan; + + u8 padding[2]; +}; + +struct vfpf_vport_update_sge_tpa_tlv { + struct channel_tlv tl; + + u16 sge_tpa_flags; +#define VFPF_TPA_IPV4_EN_FLAG BIT(0) +#define VFPF_TPA_IPV6_EN_FLAG BIT(1) +#define VFPF_TPA_PKT_SPLIT_FLAG BIT(2) +#define VFPF_TPA_HDR_DATA_SPLIT_FLAG BIT(3) +#define VFPF_TPA_GRO_CONSIST_FLAG BIT(4) + + u8 update_sge_tpa_flags; +#define VFPF_UPDATE_SGE_DEPRECATED_FLAG BIT(0) +#define VFPF_UPDATE_TPA_EN_FLAG BIT(1) +#define VFPF_UPDATE_TPA_PARAM_FLAG BIT(2) + + u8 max_buffers_per_cqe; + + u16 deprecated_sge_buff_size; + u16 tpa_max_size; + u16 tpa_min_size_to_start; + u16 tpa_min_size_to_cont; + + u8 tpa_max_aggs_num; + u8 padding[7]; +}; + +/* Primary tlv as a header for various extended tlvs for + * various functionalities in vport update ramrod. + */ +struct vfpf_vport_update_tlv { + struct vfpf_first_tlv first_tlv; +}; + +struct vfpf_ucast_filter_tlv { + struct vfpf_first_tlv first_tlv; + + u8 opcode; + u8 type; + + u8 mac[ETH_ALEN]; + + u16 vlan; + u16 padding[3]; +}; + +struct tlv_buffer_size { + u8 tlv_buffer[TLV_BUFFER_SIZE]; +}; + +union vfpf_tlvs { + struct vfpf_first_tlv first_tlv; + struct vfpf_acquire_tlv acquire; + struct vfpf_start_rxq_tlv start_rxq; + struct vfpf_start_txq_tlv start_txq; + struct vfpf_stop_rxqs_tlv stop_rxqs; + struct vfpf_stop_txqs_tlv stop_txqs; + struct vfpf_update_rxq_tlv update_rxq; + struct vfpf_vport_start_tlv start_vport; + struct vfpf_vport_update_tlv vport_update; + struct vfpf_ucast_filter_tlv ucast_filter; + struct channel_list_end_tlv list_end; + struct tlv_buffer_size tlv_buf_size; +}; + +union pfvf_tlvs { + struct pfvf_def_resp_tlv default_resp; + struct pfvf_acquire_resp_tlv acquire_resp; + struct tlv_buffer_size tlv_buf_size; + struct pfvf_start_queue_resp_tlv queue_start; +}; + +enum qed_bulletin_bit { + /* Alert the VF that a forced MAC was set by the PF */ + MAC_ADDR_FORCED = 0, + /* Alert the VF that a forced VLAN was set by the PF */ + VLAN_ADDR_FORCED = 2, + + /* Indicate that `default_only_untagged' contains actual data */ + VFPF_BULLETIN_UNTAGGED_DEFAULT = 3, + VFPF_BULLETIN_UNTAGGED_DEFAULT_FORCED = 4, + + /* Alert the VF that suggested mac was sent by the PF. + * MAC_ADDR will be disabled in case MAC_ADDR_FORCED is set. + */ + VFPF_BULLETIN_MAC_ADDR = 5 +}; + +struct qed_bulletin_content { + /* crc of structure to ensure is not in mid-update */ + u32 crc; + + u32 version; + + /* bitmap indicating which fields hold valid values */ + u64 valid_bitmap; + + /* used for MAC_ADDR or MAC_ADDR_FORCED */ + u8 mac[ETH_ALEN]; + + /* If valid, 1 => only untagged Rx if no vlan is configured */ + u8 default_only_untagged; + u8 padding; + + /* The following is a 'copy' of qed_mcp_link_state, + * qed_mcp_link_params and qed_mcp_link_capabilities. Since it's + * possible the structs will increase further along the road we cannot + * have it here; Instead we need to have all of its fields. + */ + u8 req_autoneg; + u8 req_autoneg_pause; + u8 req_forced_rx; + u8 req_forced_tx; + u8 padding2[4]; + + u32 req_adv_speed; + u32 req_forced_speed; + u32 req_loopback; + u32 padding3; + + u8 link_up; + u8 full_duplex; + u8 autoneg; + u8 autoneg_complete; + u8 parallel_detection; + u8 pfc_enabled; + u8 partner_tx_flow_ctrl_en; + u8 partner_rx_flow_ctrl_en; + u8 partner_adv_pause; + u8 sfp_tx_fault; + u8 padding4[6]; + + u32 speed; + u32 partner_adv_speed; + + u32 capability_speed; + + /* Forced vlan */ + u16 pvid; + u16 padding5; +}; + +struct qed_bulletin { + dma_addr_t phys; + struct qed_bulletin_content *p_virt; + u32 size; +}; + +enum { + CHANNEL_TLV_NONE, /* ends tlv sequence */ + CHANNEL_TLV_ACQUIRE, + CHANNEL_TLV_VPORT_START, + CHANNEL_TLV_VPORT_UPDATE, + CHANNEL_TLV_VPORT_TEARDOWN, + CHANNEL_TLV_START_RXQ, + CHANNEL_TLV_START_TXQ, + CHANNEL_TLV_STOP_RXQS, + CHANNEL_TLV_STOP_TXQS, + CHANNEL_TLV_UPDATE_RXQ, + CHANNEL_TLV_INT_CLEANUP, + CHANNEL_TLV_CLOSE, + CHANNEL_TLV_RELEASE, + CHANNEL_TLV_LIST_END, + CHANNEL_TLV_UCAST_FILTER, + CHANNEL_TLV_VPORT_UPDATE_ACTIVATE, + CHANNEL_TLV_VPORT_UPDATE_TX_SWITCH, + CHANNEL_TLV_VPORT_UPDATE_VLAN_STRIP, + CHANNEL_TLV_VPORT_UPDATE_MCAST, + CHANNEL_TLV_VPORT_UPDATE_ACCEPT_PARAM, + CHANNEL_TLV_VPORT_UPDATE_RSS, + CHANNEL_TLV_VPORT_UPDATE_ACCEPT_ANY_VLAN, + CHANNEL_TLV_VPORT_UPDATE_SGE_TPA, + CHANNEL_TLV_MAX, + + /* Required for iterating over vport-update tlvs. + * Will break in case non-sequential vport-update tlvs. + */ + CHANNEL_TLV_VPORT_UPDATE_MAX = CHANNEL_TLV_VPORT_UPDATE_SGE_TPA + 1, +}; + +/* This data is held in the qed_hwfn structure for VFs only. */ +struct qed_vf_iov { + union vfpf_tlvs *vf2pf_request; + dma_addr_t vf2pf_request_phys; + union pfvf_tlvs *pf2vf_reply; + dma_addr_t pf2vf_reply_phys; + + /* Should be taken whenever the mailbox buffers are accessed */ + struct mutex mutex; + u8 *offset; + + /* Bulletin Board */ + struct qed_bulletin bulletin; + struct qed_bulletin_content bulletin_shadow; + + /* we set aside a copy of the acquire response */ + struct pfvf_acquire_resp_tlv acquire_resp; +}; + +#ifdef CONFIG_QED_SRIOV +/** + * @brief Read the VF bulletin and act on it if needed + * + * @param p_hwfn + * @param p_change - qed fills 1 iff bulletin board has changed, 0 otherwise. + * + * @return enum _qed_status + */ +int qed_vf_read_bulletin(struct qed_hwfn *p_hwfn, u8 *p_change); + +/** + * @brief Get link paramters for VF from qed + * + * @param p_hwfn + * @param params - the link params structure to be filled for the VF + */ +void qed_vf_get_link_params(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_params *params); + +/** + * @brief Get link state for VF from qed + * + * @param p_hwfn + * @param link - the link state structure to be filled for the VF + */ +void qed_vf_get_link_state(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_state *link); + +/** + * @brief Get link capabilities for VF from qed + * + * @param p_hwfn + * @param p_link_caps - the link capabilities structure to be filled for the VF + */ +void qed_vf_get_link_caps(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_capabilities *p_link_caps); + +/** + * @brief Get number of Rx queues allocated for VF by qed + * + * @param p_hwfn + * @param num_rxqs - allocated RX queues + */ +void qed_vf_get_num_rxqs(struct qed_hwfn *p_hwfn, u8 *num_rxqs); + +/** + * @brief Get port mac address for VF + * + * @param p_hwfn + * @param port_mac - destination location for port mac + */ +void qed_vf_get_port_mac(struct qed_hwfn *p_hwfn, u8 *port_mac); + +/** + * @brief Get number of VLAN filters allocated for VF by qed + * + * @param p_hwfn + * @param num_rxqs - allocated VLAN filters + */ +void qed_vf_get_num_vlan_filters(struct qed_hwfn *p_hwfn, + u8 *num_vlan_filters); + +/** + * @brief Check if VF can set a MAC address + * + * @param p_hwfn + * @param mac + * + * @return bool + */ +bool qed_vf_check_mac(struct qed_hwfn *p_hwfn, u8 *mac); + +/** + * @brief Set firmware version information in dev_info from VFs acquire response tlv + * + * @param p_hwfn + * @param fw_major + * @param fw_minor + * @param fw_rev + * @param fw_eng + */ +void qed_vf_get_fw_version(struct qed_hwfn *p_hwfn, + u16 *fw_major, u16 *fw_minor, + u16 *fw_rev, u16 *fw_eng); + +/** + * @brief hw preparation for VF + * sends ACQUIRE message + * + * @param p_hwfn + * + * @return int + */ +int qed_vf_hw_prepare(struct qed_hwfn *p_hwfn); + +/** + * @brief VF - start the RX Queue by sending a message to the PF + * @param p_hwfn + * @param cid - zero based within the VF + * @param rx_queue_id - zero based within the VF + * @param sb - VF status block for this queue + * @param sb_index - Index within the status block + * @param bd_max_bytes - maximum number of bytes per bd + * @param bd_chain_phys_addr - physical address of bd chain + * @param cqe_pbl_addr - physical address of pbl + * @param cqe_pbl_size - pbl size + * @param pp_prod - pointer to the producer to be + * used in fastpath + * + * @return int + */ +int qed_vf_pf_rxq_start(struct qed_hwfn *p_hwfn, + u8 rx_queue_id, + u16 sb, + u8 sb_index, + u16 bd_max_bytes, + dma_addr_t bd_chain_phys_addr, + dma_addr_t cqe_pbl_addr, + u16 cqe_pbl_size, void __iomem **pp_prod); + +/** + * @brief VF - start the TX queue by sending a message to the + * PF. + * + * @param p_hwfn + * @param tx_queue_id - zero based within the VF + * @param sb - status block for this queue + * @param sb_index - index within the status block + * @param bd_chain_phys_addr - physical address of tx chain + * @param pp_doorbell - pointer to address to which to + * write the doorbell too.. + * + * @return int + */ +int qed_vf_pf_txq_start(struct qed_hwfn *p_hwfn, + u16 tx_queue_id, + u16 sb, + u8 sb_index, + dma_addr_t pbl_addr, + u16 pbl_size, void __iomem **pp_doorbell); + +/** + * @brief VF - stop the RX queue by sending a message to the PF + * + * @param p_hwfn + * @param rx_qid + * @param cqe_completion + * + * @return int + */ +int qed_vf_pf_rxq_stop(struct qed_hwfn *p_hwfn, + u16 rx_qid, bool cqe_completion); + +/** + * @brief VF - stop the TX queue by sending a message to the PF + * + * @param p_hwfn + * @param tx_qid + * + * @return int + */ +int qed_vf_pf_txq_stop(struct qed_hwfn *p_hwfn, u16 tx_qid); + +/** + * @brief VF - send a vport update command + * + * @param p_hwfn + * @param params + * + * @return int + */ +int qed_vf_pf_vport_update(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_params); + +/** + * + * @brief VF - send a close message to PF + * + * @param p_hwfn + * + * @return enum _qed_status + */ +int qed_vf_pf_reset(struct qed_hwfn *p_hwfn); + +/** + * @brief VF - free vf`s memories + * + * @param p_hwfn + * + * @return enum _qed_status + */ +int qed_vf_pf_release(struct qed_hwfn *p_hwfn); + +/** + * @brief qed_vf_get_igu_sb_id - Get the IGU SB ID for a given + * sb_id. For VFs igu sbs don't have to be contiguous + * + * @param p_hwfn + * @param sb_id + * + * @return INLINE u16 + */ +u16 qed_vf_get_igu_sb_id(struct qed_hwfn *p_hwfn, u16 sb_id); + +/** + * @brief qed_vf_pf_vport_start - perform vport start for VF. + * + * @param p_hwfn + * @param vport_id + * @param mtu + * @param inner_vlan_removal + * @param tpa_mode + * @param max_buffers_per_cqe, + * @param only_untagged - default behavior regarding vlan acceptance + * + * @return enum _qed_status + */ +int qed_vf_pf_vport_start(struct qed_hwfn *p_hwfn, + u8 vport_id, + u16 mtu, + u8 inner_vlan_removal, + enum qed_tpa_mode tpa_mode, + u8 max_buffers_per_cqe, u8 only_untagged); + +/** + * @brief qed_vf_pf_vport_stop - stop the VF's vport + * + * @param p_hwfn + * + * @return enum _qed_status + */ +int qed_vf_pf_vport_stop(struct qed_hwfn *p_hwfn); + +int qed_vf_pf_filter_ucast(struct qed_hwfn *p_hwfn, + struct qed_filter_ucast *p_param); + +void qed_vf_pf_filter_mcast(struct qed_hwfn *p_hwfn, + struct qed_filter_mcast *p_filter_cmd); + +/** + * @brief qed_vf_pf_int_cleanup - clean the SB of the VF + * + * @param p_hwfn + * + * @return enum _qed_status + */ +int qed_vf_pf_int_cleanup(struct qed_hwfn *p_hwfn); + +/** + * @brief - return the link params in a given bulletin board + * + * @param p_hwfn + * @param p_params - pointer to a struct to fill with link params + * @param p_bulletin + */ +void __qed_vf_get_link_params(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_params *p_params, + struct qed_bulletin_content *p_bulletin); + +/** + * @brief - return the link state in a given bulletin board + * + * @param p_hwfn + * @param p_link - pointer to a struct to fill with link state + * @param p_bulletin + */ +void __qed_vf_get_link_state(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_state *p_link, + struct qed_bulletin_content *p_bulletin); + +/** + * @brief - return the link capabilities in a given bulletin board + * + * @param p_hwfn + * @param p_link - pointer to a struct to fill with link capabilities + * @param p_bulletin + */ +void __qed_vf_get_link_caps(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_capabilities *p_link_caps, + struct qed_bulletin_content *p_bulletin); + +void qed_iov_vf_task(struct work_struct *work); +#else +static inline void qed_vf_get_link_params(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_params *params) +{ +} + +static inline void qed_vf_get_link_state(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_state *link) +{ +} + +static inline void +qed_vf_get_link_caps(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_capabilities *p_link_caps) +{ +} + +static inline void qed_vf_get_num_rxqs(struct qed_hwfn *p_hwfn, u8 *num_rxqs) +{ +} + +static inline void qed_vf_get_port_mac(struct qed_hwfn *p_hwfn, u8 *port_mac) +{ +} + +static inline void qed_vf_get_num_vlan_filters(struct qed_hwfn *p_hwfn, + u8 *num_vlan_filters) +{ +} + +static inline bool qed_vf_check_mac(struct qed_hwfn *p_hwfn, u8 *mac) +{ + return false; +} + +static inline void qed_vf_get_fw_version(struct qed_hwfn *p_hwfn, + u16 *fw_major, u16 *fw_minor, + u16 *fw_rev, u16 *fw_eng) +{ +} + +static inline int qed_vf_hw_prepare(struct qed_hwfn *p_hwfn) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_rxq_start(struct qed_hwfn *p_hwfn, + u8 rx_queue_id, + u16 sb, + u8 sb_index, + u16 bd_max_bytes, + dma_addr_t bd_chain_phys_adr, + dma_addr_t cqe_pbl_addr, + u16 cqe_pbl_size, void __iomem **pp_prod) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_txq_start(struct qed_hwfn *p_hwfn, + u16 tx_queue_id, + u16 sb, + u8 sb_index, + dma_addr_t pbl_addr, + u16 pbl_size, void __iomem **pp_doorbell) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_rxq_stop(struct qed_hwfn *p_hwfn, + u16 rx_qid, bool cqe_completion) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_txq_stop(struct qed_hwfn *p_hwfn, u16 tx_qid) +{ + return -EINVAL; +} + +static inline int +qed_vf_pf_vport_update(struct qed_hwfn *p_hwfn, + struct qed_sp_vport_update_params *p_params) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_reset(struct qed_hwfn *p_hwfn) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_release(struct qed_hwfn *p_hwfn) +{ + return -EINVAL; +} + +static inline u16 qed_vf_get_igu_sb_id(struct qed_hwfn *p_hwfn, u16 sb_id) +{ + return 0; +} + +static inline int qed_vf_pf_vport_start(struct qed_hwfn *p_hwfn, + u8 vport_id, + u16 mtu, + u8 inner_vlan_removal, + enum qed_tpa_mode tpa_mode, + u8 max_buffers_per_cqe, + u8 only_untagged) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_vport_stop(struct qed_hwfn *p_hwfn) +{ + return -EINVAL; +} + +static inline int qed_vf_pf_filter_ucast(struct qed_hwfn *p_hwfn, + struct qed_filter_ucast *p_param) +{ + return -EINVAL; +} + +static inline void qed_vf_pf_filter_mcast(struct qed_hwfn *p_hwfn, + struct qed_filter_mcast *p_filter_cmd) +{ +} + +static inline int qed_vf_pf_int_cleanup(struct qed_hwfn *p_hwfn) +{ + return -EINVAL; +} + +static inline void __qed_vf_get_link_params(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_params + *p_params, + struct qed_bulletin_content + *p_bulletin) +{ +} + +static inline void __qed_vf_get_link_state(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_state *p_link, + struct qed_bulletin_content + *p_bulletin) +{ +} + +static inline void +__qed_vf_get_link_caps(struct qed_hwfn *p_hwfn, + struct qed_mcp_link_capabilities *p_link_caps, + struct qed_bulletin_content *p_bulletin) +{ +} + +static inline void qed_iov_vf_task(struct work_struct *work) +{ +} +#endif + +#endif |