diff options
Diffstat (limited to 'drivers/net/ethernet/marvell/octeontx2/nic/otx2_common.c')
| -rw-r--r-- | drivers/net/ethernet/marvell/octeontx2/nic/otx2_common.c | 776 |
1 files changed, 608 insertions, 168 deletions
diff --git a/drivers/net/ethernet/marvell/octeontx2/nic/otx2_common.c b/drivers/net/ethernet/marvell/octeontx2/nic/otx2_common.c index 66da31f30d3e..75ebb17419c4 100644 --- a/drivers/net/ethernet/marvell/octeontx2/nic/otx2_common.c +++ b/drivers/net/ethernet/marvell/octeontx2/nic/otx2_common.c @@ -7,23 +7,33 @@ #include <linux/interrupt.h> #include <linux/pci.h> +#include <net/page_pool/helpers.h> #include <net/tso.h> +#include <linux/bitfield.h> +#include <linux/dcbnl.h> +#include <net/xfrm.h> #include "otx2_reg.h" #include "otx2_common.h" #include "otx2_struct.h" #include "cn10k.h" +#include "otx2_xsk.h" + +static bool otx2_is_pfc_enabled(struct otx2_nic *pfvf) +{ + return IS_ENABLED(CONFIG_DCB) && !!pfvf->pfc_en; +} static void otx2_nix_rq_op_stats(struct queue_stats *stats, struct otx2_nic *pfvf, int qidx) { u64 incr = (u64)qidx << 32; - u64 *ptr; + void __iomem *ptr; - ptr = (u64 *)otx2_get_regaddr(pfvf, NIX_LF_RQ_OP_OCTS); + ptr = otx2_get_regaddr(pfvf, NIX_LF_RQ_OP_OCTS); stats->bytes = otx2_atomic64_add(incr, ptr); - ptr = (u64 *)otx2_get_regaddr(pfvf, NIX_LF_RQ_OP_PKTS); + ptr = otx2_get_regaddr(pfvf, NIX_LF_RQ_OP_PKTS); stats->pkts = otx2_atomic64_add(incr, ptr); } @@ -31,12 +41,12 @@ static void otx2_nix_sq_op_stats(struct queue_stats *stats, struct otx2_nic *pfvf, int qidx) { u64 incr = (u64)qidx << 32; - u64 *ptr; + void __iomem *ptr; - ptr = (u64 *)otx2_get_regaddr(pfvf, NIX_LF_SQ_OP_OCTS); + ptr = otx2_get_regaddr(pfvf, NIX_LF_SQ_OP_OCTS); stats->bytes = otx2_atomic64_add(incr, ptr); - ptr = (u64 *)otx2_get_regaddr(pfvf, NIX_LF_SQ_OP_PKTS); + ptr = otx2_get_regaddr(pfvf, NIX_LF_SQ_OP_PKTS); stats->pkts = otx2_atomic64_add(incr, ptr); } @@ -81,6 +91,7 @@ int otx2_update_rq_stats(struct otx2_nic *pfvf, int qidx) otx2_nix_rq_op_stats(&rq->stats, pfvf, qidx); return 1; } +EXPORT_SYMBOL(otx2_update_rq_stats); int otx2_update_sq_stats(struct otx2_nic *pfvf, int qidx) { @@ -89,19 +100,20 @@ int otx2_update_sq_stats(struct otx2_nic *pfvf, int qidx) if (!pfvf->qset.sq) return 0; + if (qidx >= pfvf->hw.non_qos_queues) { + if (!test_bit(qidx - pfvf->hw.non_qos_queues, pfvf->qos.qos_sq_bmap)) + return 0; + } + otx2_nix_sq_op_stats(&sq->stats, pfvf, qidx); return 1; } +EXPORT_SYMBOL(otx2_update_sq_stats); void otx2_get_dev_stats(struct otx2_nic *pfvf) { struct otx2_dev_stats *dev_stats = &pfvf->hw.dev_stats; -#define OTX2_GET_RX_STATS(reg) \ - otx2_read64(pfvf, NIX_LF_RX_STATX(reg)) -#define OTX2_GET_TX_STATS(reg) \ - otx2_read64(pfvf, NIX_LF_TX_STATX(reg)) - dev_stats->rx_bytes = OTX2_GET_RX_STATS(RX_OCTS); dev_stats->rx_drops = OTX2_GET_RX_STATS(RX_DROP); dev_stats->rx_bcast_frames = OTX2_GET_RX_STATS(RX_BCAST); @@ -112,7 +124,9 @@ void otx2_get_dev_stats(struct otx2_nic *pfvf) dev_stats->rx_ucast_frames; dev_stats->tx_bytes = OTX2_GET_TX_STATS(TX_OCTS); - dev_stats->tx_drops = OTX2_GET_TX_STATS(TX_DROP); + dev_stats->tx_drops = OTX2_GET_TX_STATS(TX_DROP) + + (unsigned long)atomic_long_read(&dev_stats->tx_discards); + dev_stats->tx_bcast_frames = OTX2_GET_TX_STATS(TX_BCAST); dev_stats->tx_mcast_frames = OTX2_GET_TX_STATS(TX_MCAST); dev_stats->tx_ucast_frames = OTX2_GET_TX_STATS(TX_UCAST); @@ -222,8 +236,11 @@ EXPORT_SYMBOL(otx2_set_mac_address); int otx2_hw_set_mtu(struct otx2_nic *pfvf, int mtu) { struct nix_frs_cfg *req; + u16 maxlen; int err; + maxlen = pfvf->hw.max_mtu + OTX2_ETH_HLEN + OTX2_HW_TIMESTAMP_LEN; + mutex_lock(&pfvf->mbox.lock); req = otx2_mbox_alloc_msg_nix_set_hw_frs(&pfvf->mbox); if (!req) { @@ -231,19 +248,24 @@ int otx2_hw_set_mtu(struct otx2_nic *pfvf, int mtu) return -ENOMEM; } - req->maxlen = pfvf->netdev->mtu + OTX2_ETH_HLEN + OTX2_HW_TIMESTAMP_LEN; + req->maxlen = mtu + OTX2_ETH_HLEN + OTX2_HW_TIMESTAMP_LEN; + + /* Use max receive length supported by hardware for loopback devices */ + if (is_otx2_lbkvf(pfvf->pdev)) + req->maxlen = maxlen; err = otx2_sync_mbox_msg(&pfvf->mbox); mutex_unlock(&pfvf->mbox.lock); return err; } +EXPORT_SYMBOL(otx2_hw_set_mtu); int otx2_config_pause_frm(struct otx2_nic *pfvf) { struct cgx_pause_frm_cfg *req; int err; - if (is_otx2_lbkvf(pfvf->pdev)) + if (is_otx2_lbkvf(pfvf->pdev) || is_otx2_sdp_rep(pfvf->pdev)) return 0; mutex_lock(&pfvf->mbox.lock); @@ -262,6 +284,7 @@ unlock: mutex_unlock(&pfvf->mbox.lock); return err; } +EXPORT_SYMBOL(otx2_config_pause_frm); int otx2_set_flowkey_cfg(struct otx2_nic *pfvf) { @@ -297,19 +320,22 @@ fail: return err; } -int otx2_set_rss_table(struct otx2_nic *pfvf, int ctx_id) +int otx2_set_rss_table(struct otx2_nic *pfvf, int ctx_id, const u32 *ind_tbl) { struct otx2_rss_info *rss = &pfvf->hw.rss_info; const int index = rss->rss_size * ctx_id; struct mbox *mbox = &pfvf->mbox; - struct otx2_rss_ctx *rss_ctx; struct nix_aq_enq_req *aq; int idx, err; mutex_lock(&mbox->lock); - rss_ctx = rss->rss_ctx[ctx_id]; + ind_tbl = ind_tbl ?: rss->ind_tbl; /* Get memory to put this msg */ for (idx = 0; idx < rss->rss_size; idx++) { + /* Ignore the queue if AF_XDP zero copy is enabled */ + if (test_bit(ind_tbl[idx], pfvf->af_xdp_zc_qidx)) + continue; + aq = otx2_mbox_alloc_msg_nix_aq_enq(mbox); if (!aq) { /* The shared memory buffer can be full. @@ -327,7 +353,7 @@ int otx2_set_rss_table(struct otx2_nic *pfvf, int ctx_id) } } - aq->rss.rq = rss_ctx->ind_tbl[idx]; + aq->rss.rq = ind_tbl[idx]; /* Fill AQ info */ aq->qidx = index + idx; @@ -365,30 +391,22 @@ void otx2_set_rss_key(struct otx2_nic *pfvf) int otx2_rss_init(struct otx2_nic *pfvf) { struct otx2_rss_info *rss = &pfvf->hw.rss_info; - struct otx2_rss_ctx *rss_ctx; int idx, ret = 0; - rss->rss_size = sizeof(*rss->rss_ctx[DEFAULT_RSS_CONTEXT_GROUP]); + rss->rss_size = sizeof(*rss->ind_tbl); /* Init RSS key if it is not setup already */ if (!rss->enable) netdev_rss_key_fill(rss->key, sizeof(rss->key)); otx2_set_rss_key(pfvf); - if (!netif_is_rxfh_configured(pfvf->netdev)) { - /* Set RSS group 0 as default indirection table */ - rss->rss_ctx[DEFAULT_RSS_CONTEXT_GROUP] = kzalloc(rss->rss_size, - GFP_KERNEL); - if (!rss->rss_ctx[DEFAULT_RSS_CONTEXT_GROUP]) - return -ENOMEM; - - rss_ctx = rss->rss_ctx[DEFAULT_RSS_CONTEXT_GROUP]; + if (!netif_is_rxfh_configured(pfvf->netdev)) for (idx = 0; idx < rss->rss_size; idx++) - rss_ctx->ind_tbl[idx] = + rss->ind_tbl[idx] = ethtool_rxfh_indir_default(idx, pfvf->hw.rx_queues); - } - ret = otx2_set_rss_table(pfvf, DEFAULT_RSS_CONTEXT_GROUP); + + ret = otx2_set_rss_table(pfvf, DEFAULT_RSS_CONTEXT_GROUP, NULL); if (ret) return ret; @@ -510,11 +528,35 @@ void otx2_config_irq_coalescing(struct otx2_nic *pfvf, int qidx) (pfvf->hw.cq_ecount_wait - 1)); } -int __otx2_alloc_rbuf(struct otx2_nic *pfvf, struct otx2_pool *pool, - dma_addr_t *dma) +static int otx2_alloc_pool_buf(struct otx2_nic *pfvf, struct otx2_pool *pool, + dma_addr_t *dma) +{ + unsigned int offset = 0; + struct page *page; + size_t sz; + + sz = SKB_DATA_ALIGN(pool->rbsize); + sz = ALIGN(sz, OTX2_ALIGN); + + page = page_pool_alloc_frag(pool->page_pool, &offset, sz, GFP_ATOMIC); + if (unlikely(!page)) + return -ENOMEM; + + *dma = page_pool_get_dma_addr(page) + offset; + return 0; +} + +static int __otx2_alloc_rbuf(struct otx2_nic *pfvf, struct otx2_pool *pool, + dma_addr_t *dma, int qidx, int idx) { u8 *buf; + if (pool->xsk_pool) + return otx2_xsk_pool_alloc_buf(pfvf, pool, dma, idx); + + if (pool->page_pool) + return otx2_alloc_pool_buf(pfvf, pool, dma); + buf = napi_alloc_frag_align(pool->rbsize, OTX2_ALIGN); if (unlikely(!buf)) return -ENOMEM; @@ -529,13 +571,13 @@ int __otx2_alloc_rbuf(struct otx2_nic *pfvf, struct otx2_pool *pool, return 0; } -static int otx2_alloc_rbuf(struct otx2_nic *pfvf, struct otx2_pool *pool, - dma_addr_t *dma) +int otx2_alloc_rbuf(struct otx2_nic *pfvf, struct otx2_pool *pool, + dma_addr_t *dma, int qidx, int idx) { int ret; local_bh_disable(); - ret = __otx2_alloc_rbuf(pfvf, pool, dma); + ret = __otx2_alloc_rbuf(pfvf, pool, dma, qidx, idx); local_bh_enable(); return ret; } @@ -543,20 +585,9 @@ static int otx2_alloc_rbuf(struct otx2_nic *pfvf, struct otx2_pool *pool, int otx2_alloc_buffer(struct otx2_nic *pfvf, struct otx2_cq_queue *cq, dma_addr_t *dma) { - if (unlikely(__otx2_alloc_rbuf(pfvf, cq->rbpool, dma))) { - struct refill_work *work; - struct delayed_work *dwork; - - work = &pfvf->refill_wrk[cq->cq_idx]; - dwork = &work->pool_refill_work; - /* Schedule a task if no other task is running */ - if (!cq->refill_task_sched) { - cq->refill_task_sched = true; - schedule_delayed_work(dwork, - msecs_to_jiffies(100)); - } + if (unlikely(__otx2_alloc_rbuf(pfvf, cq->rbpool, dma, + cq->cq_idx, cq->pool_ptrs - 1))) return -ENOMEM; - } return 0; } @@ -583,8 +614,9 @@ void otx2_get_mac_from_af(struct net_device *netdev) } EXPORT_SYMBOL(otx2_get_mac_from_af); -int otx2_txschq_config(struct otx2_nic *pfvf, int lvl) +int otx2_txschq_config(struct otx2_nic *pfvf, int lvl, int prio, bool txschq_for_pfc) { + u16 (*schq_list)[MAX_TXSCHQ_PER_FUNC]; struct otx2_hw *hw = &pfvf->hw; struct nix_txschq_config *req; u64 schq, parent; @@ -599,16 +631,26 @@ int otx2_txschq_config(struct otx2_nic *pfvf, int lvl) req->lvl = lvl; req->num_regs = 1; - schq = hw->txschq_list[lvl][0]; + schq_list = hw->txschq_list; +#ifdef CONFIG_DCB + if (txschq_for_pfc) + schq_list = pfvf->pfc_schq_list; +#endif + + schq = schq_list[lvl][prio]; /* Set topology e.t.c configuration */ if (lvl == NIX_TXSCH_LVL_SMQ) { req->reg[0] = NIX_AF_SMQX_CFG(schq); req->regval[0] = ((u64)pfvf->tx_max_pktlen << 8) | OTX2_MIN_MTU; req->regval[0] |= (0x20ULL << 51) | (0x80ULL << 39) | (0x2ULL << 36); + /* Set link type for DWRR MTU selection on CN10K silicons */ + if (!is_dev_otx2(pfvf->pdev)) + req->regval[0] |= FIELD_PREP(GENMASK_ULL(58, 57), + (u64)hw->smq_link_type); req->num_regs++; /* MDQ config */ - parent = hw->txschq_list[NIX_TXSCH_LVL_TL4][0]; + parent = schq_list[NIX_TXSCH_LVL_TL4][prio]; req->reg[1] = NIX_AF_MDQX_PARENT(schq); req->regval[1] = parent << 16; req->num_regs++; @@ -616,33 +658,56 @@ int otx2_txschq_config(struct otx2_nic *pfvf, int lvl) req->reg[2] = NIX_AF_MDQX_SCHEDULE(schq); req->regval[2] = dwrr_val; } else if (lvl == NIX_TXSCH_LVL_TL4) { - parent = hw->txschq_list[NIX_TXSCH_LVL_TL3][0]; + int sdp_chan = hw->tx_chan_base + prio; + + if (is_otx2_sdp_rep(pfvf->pdev)) + prio = 0; + parent = schq_list[NIX_TXSCH_LVL_TL3][prio]; req->reg[0] = NIX_AF_TL4X_PARENT(schq); - req->regval[0] = parent << 16; + req->regval[0] = (u64)parent << 16; req->num_regs++; req->reg[1] = NIX_AF_TL4X_SCHEDULE(schq); req->regval[1] = dwrr_val; + if (is_otx2_sdp_rep(pfvf->pdev)) { + req->num_regs++; + req->reg[2] = NIX_AF_TL4X_SDP_LINK_CFG(schq); + req->regval[2] = BIT_ULL(12) | BIT_ULL(13) | + (sdp_chan & 0xff); + } } else if (lvl == NIX_TXSCH_LVL_TL3) { - parent = hw->txschq_list[NIX_TXSCH_LVL_TL2][0]; + parent = schq_list[NIX_TXSCH_LVL_TL2][prio]; req->reg[0] = NIX_AF_TL3X_PARENT(schq); - req->regval[0] = parent << 16; + req->regval[0] = (u64)parent << 16; req->num_regs++; req->reg[1] = NIX_AF_TL3X_SCHEDULE(schq); req->regval[1] = dwrr_val; + if (lvl == hw->txschq_link_cfg_lvl && + !is_otx2_sdp_rep(pfvf->pdev)) { + req->num_regs++; + req->reg[2] = NIX_AF_TL3_TL2X_LINKX_CFG(schq, hw->tx_link); + /* Enable this queue and backpressure + * and set relative channel + */ + req->regval[2] = BIT_ULL(13) | BIT_ULL(12) | prio; + } } else if (lvl == NIX_TXSCH_LVL_TL2) { - parent = hw->txschq_list[NIX_TXSCH_LVL_TL1][0]; + parent = schq_list[NIX_TXSCH_LVL_TL1][prio]; req->reg[0] = NIX_AF_TL2X_PARENT(schq); - req->regval[0] = parent << 16; + req->regval[0] = (u64)parent << 16; req->num_regs++; req->reg[1] = NIX_AF_TL2X_SCHEDULE(schq); - req->regval[1] = TXSCH_TL1_DFLT_RR_PRIO << 24 | dwrr_val; - - req->num_regs++; - req->reg[2] = NIX_AF_TL3_TL2X_LINKX_CFG(schq, hw->tx_link); - /* Enable this queue and backpressure */ - req->regval[2] = BIT_ULL(13) | BIT_ULL(12); - + req->regval[1] = (u64)hw->txschq_aggr_lvl_rr_prio << 24 | dwrr_val; + + if (lvl == hw->txschq_link_cfg_lvl && + !is_otx2_sdp_rep(pfvf->pdev)) { + req->num_regs++; + req->reg[2] = NIX_AF_TL3_TL2X_LINKX_CFG(schq, hw->tx_link); + /* Enable this queue and backpressure + * and set relative channel + */ + req->regval[2] = BIT_ULL(13) | BIT_ULL(12) | prio; + } } else if (lvl == NIX_TXSCH_LVL_TL1) { /* Default config for TL1. * For VF this is always ignored. @@ -657,7 +722,7 @@ int otx2_txschq_config(struct otx2_nic *pfvf, int lvl) req->num_regs++; req->reg[1] = NIX_AF_TL1X_TOPOLOGY(schq); - req->regval[1] = (TXSCH_TL1_DFLT_RR_PRIO << 1); + req->regval[1] = hw->txschq_aggr_lvl_rr_prio << 1; req->num_regs++; req->reg[2] = NIX_AF_TL1X_CIR(schq); @@ -666,11 +731,38 @@ int otx2_txschq_config(struct otx2_nic *pfvf, int lvl) return otx2_sync_mbox_msg(&pfvf->mbox); } +EXPORT_SYMBOL(otx2_txschq_config); + +int otx2_smq_flush(struct otx2_nic *pfvf, int smq) +{ + struct nix_txschq_config *req; + int rc; + + mutex_lock(&pfvf->mbox.lock); + + req = otx2_mbox_alloc_msg_nix_txschq_cfg(&pfvf->mbox); + if (!req) { + mutex_unlock(&pfvf->mbox.lock); + return -ENOMEM; + } + + req->lvl = NIX_TXSCH_LVL_SMQ; + req->reg[0] = NIX_AF_SMQX_CFG(smq); + req->regval[0] |= BIT_ULL(49); + req->num_regs++; + + rc = otx2_sync_mbox_msg(&pfvf->mbox); + mutex_unlock(&pfvf->mbox.lock); + return rc; +} +EXPORT_SYMBOL(otx2_smq_flush); int otx2_txsch_alloc(struct otx2_nic *pfvf) { + int chan_cnt = pfvf->hw.tx_chan_cnt; struct nix_txsch_alloc_req *req; - int lvl; + struct nix_txsch_alloc_rsp *rsp; + int lvl, schq, rc; /* Get memory to put this msg */ req = otx2_mbox_alloc_msg_nix_txsch_alloc(&pfvf->mbox); @@ -681,52 +773,101 @@ int otx2_txsch_alloc(struct otx2_nic *pfvf) for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) req->schq[lvl] = 1; - return otx2_sync_mbox_msg(&pfvf->mbox); + if (is_otx2_sdp_rep(pfvf->pdev) && chan_cnt > 1) { + req->schq[NIX_TXSCH_LVL_SMQ] = chan_cnt; + req->schq[NIX_TXSCH_LVL_TL4] = chan_cnt; + } + + rc = otx2_sync_mbox_msg(&pfvf->mbox); + if (rc) + return rc; + + rsp = (struct nix_txsch_alloc_rsp *) + otx2_mbox_get_rsp(&pfvf->mbox.mbox, 0, &req->hdr); + if (IS_ERR(rsp)) + return PTR_ERR(rsp); + + /* Setup transmit scheduler list */ + for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) { + pfvf->hw.txschq_cnt[lvl] = rsp->schq[lvl]; + for (schq = 0; schq < rsp->schq[lvl]; schq++) + pfvf->hw.txschq_list[lvl][schq] = + rsp->schq_list[lvl][schq]; + } + + pfvf->hw.txschq_link_cfg_lvl = rsp->link_cfg_lvl; + pfvf->hw.txschq_aggr_lvl_rr_prio = rsp->aggr_lvl_rr_prio; + + return 0; } -int otx2_txschq_stop(struct otx2_nic *pfvf) +void otx2_txschq_free_one(struct otx2_nic *pfvf, u16 lvl, u16 schq) { struct nix_txsch_free_req *free_req; - int lvl, schq, err; + int err; mutex_lock(&pfvf->mbox.lock); - /* Free the transmit schedulers */ + free_req = otx2_mbox_alloc_msg_nix_txsch_free(&pfvf->mbox); if (!free_req) { mutex_unlock(&pfvf->mbox.lock); - return -ENOMEM; + netdev_err(pfvf->netdev, + "Failed alloc txschq free req\n"); + return; } - free_req->flags = TXSCHQ_FREE_ALL; + free_req->schq_lvl = lvl; + free_req->schq = schq; + err = otx2_sync_mbox_msg(&pfvf->mbox); + if (err) { + netdev_err(pfvf->netdev, + "Failed stop txschq %d at level %d\n", schq, lvl); + } + mutex_unlock(&pfvf->mbox.lock); +} +EXPORT_SYMBOL(otx2_txschq_free_one); + +void otx2_txschq_stop(struct otx2_nic *pfvf) +{ + int lvl, schq, idx; + + /* free non QOS TLx nodes */ + for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) { + for (idx = 0; idx < pfvf->hw.txschq_cnt[lvl]; idx++) { + otx2_txschq_free_one(pfvf, lvl, + pfvf->hw.txschq_list[lvl][idx]); + } + } /* Clear the txschq list */ for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) { for (schq = 0; schq < MAX_TXSCHQ_PER_FUNC; schq++) pfvf->hw.txschq_list[lvl][schq] = 0; } - return err; + } void otx2_sqb_flush(struct otx2_nic *pfvf) { int qidx, sqe_tail, sqe_head; - u64 incr, *ptr, val; - int timeout = 1000; + struct otx2_snd_queue *sq; + void __iomem *ptr; + u64 incr, val; + + ptr = otx2_get_regaddr(pfvf, NIX_LF_SQ_OP_STATUS); + for (qidx = 0; qidx < otx2_get_total_tx_queues(pfvf); qidx++) { + sq = &pfvf->qset.sq[qidx]; + if (!sq->sqb_ptrs) + continue; - ptr = (u64 *)otx2_get_regaddr(pfvf, NIX_LF_SQ_OP_STATUS); - for (qidx = 0; qidx < pfvf->hw.tot_tx_queues; qidx++) { incr = (u64)qidx << 32; - while (timeout) { - val = otx2_atomic64_add(incr, ptr); - sqe_head = (val >> 20) & 0x3F; - sqe_tail = (val >> 28) & 0x3F; - if (sqe_head == sqe_tail) - break; - usleep_range(1, 3); - timeout--; - } + val = otx2_atomic64_add(incr, ptr); + sqe_head = (val >> 20) & 0x3F; + sqe_tail = (val >> 28) & 0x3F; + if (sqe_head != sqe_tail) + usleep_range(50, 60); } } @@ -746,7 +887,7 @@ void otx2_sqb_flush(struct otx2_nic *pfvf) #define RQ_PASS_LVL_AURA (255 - ((95 * 256) / 100)) /* RED when 95% is full */ #define RQ_DROP_LVL_AURA (255 - ((99 * 256) / 100)) /* Drop when 99% is full */ -static int otx2_rq_init(struct otx2_nic *pfvf, u16 qidx, u16 lpb_aura) +int otx2_rq_init(struct otx2_nic *pfvf, u16 qidx, u16 lpb_aura) { struct otx2_qset *qset = &pfvf->qset; struct nix_aq_enq_req *aq; @@ -779,7 +920,7 @@ static int otx2_rq_init(struct otx2_nic *pfvf, u16 qidx, u16 lpb_aura) return otx2_sync_mbox_msg(&pfvf->mbox); } -int otx2_sq_aq_init(void *dev, u16 qidx, u16 sqb_aura) +int otx2_sq_aq_init(void *dev, u16 qidx, u8 chan_offset, u16 sqb_aura) { struct otx2_nic *pfvf = dev; struct otx2_snd_queue *sq; @@ -796,10 +937,9 @@ int otx2_sq_aq_init(void *dev, u16 qidx, u16 sqb_aura) aq->sq.max_sqe_size = NIX_MAXSQESZ_W16; /* 128 byte */ aq->sq.cq_ena = 1; aq->sq.ena = 1; - /* Only one SMQ is allocated, map all SQ's to that SMQ */ - aq->sq.smq = pfvf->hw.txschq_list[NIX_TXSCH_LVL_SMQ][0]; + aq->sq.smq = otx2_get_smq_idx(pfvf, qidx); aq->sq.smq_rr_quantum = mtu_to_dwrr_weight(pfvf, pfvf->tx_max_pktlen); - aq->sq.default_chan = pfvf->hw.tx_chan_base; + aq->sq.default_chan = pfvf->hw.tx_chan_base + chan_offset; aq->sq.sqe_stype = NIX_STYPE_STF; /* Cache SQB */ aq->sq.sqb_aura = sqb_aura; aq->sq.sq_int_ena = NIX_SQINT_BITS; @@ -817,11 +957,12 @@ int otx2_sq_aq_init(void *dev, u16 qidx, u16 sqb_aura) return otx2_sync_mbox_msg(&pfvf->mbox); } -static int otx2_sq_init(struct otx2_nic *pfvf, u16 qidx, u16 sqb_aura) +int otx2_sq_init(struct otx2_nic *pfvf, u16 qidx, u16 sqb_aura) { struct otx2_qset *qset = &pfvf->qset; struct otx2_snd_queue *sq; struct otx2_pool *pool; + u8 chan_offset; int err; pool = &pfvf->qset.pool[sqb_aura]; @@ -833,6 +974,29 @@ static int otx2_sq_init(struct otx2_nic *pfvf, u16 qidx, u16 sqb_aura) if (err) return err; + /* Allocate memory for NIX SQE (which includes NIX SG) and CPT SG. + * SG of NIX and CPT are same in size. Allocate memory for CPT SG + * same as NIX SQE for base address alignment. + * Layout of a NIX SQE and CPT SG entry: + * ----------------------------- + * | CPT Scatter Gather | + * | (SQE SIZE) | + * | | + * ----------------------------- + * | NIX SQE | + * | (SQE SIZE) | + * | | + * ----------------------------- + */ + err = qmem_alloc(pfvf->dev, &sq->sqe_ring, qset->sqe_cnt, + sq->sqe_size * 2); + if (err) + return err; + + err = qmem_alloc(pfvf->dev, &sq->cpt_resp, qset->sqe_cnt, 64); + if (err) + return err; + if (qidx < pfvf->hw.tx_queues) { err = qmem_alloc(pfvf->dev, &sq->tso_hdrs, qset->sqe_cnt, TSO_HEADER_SIZE); @@ -848,11 +1012,15 @@ static int otx2_sq_init(struct otx2_nic *pfvf, u16 qidx, u16 sqb_aura) if (pfvf->ptp && qidx < pfvf->hw.tx_queues) { err = qmem_alloc(pfvf->dev, &sq->timestamps, qset->sqe_cnt, sizeof(*sq->timestamps)); - if (err) + if (err) { + kfree(sq->sg); + sq->sg = NULL; return err; + } } sq->head = 0; + sq->cons_head = 0; sq->sqe_per_sqb = (pfvf->hw.sqb_size / sq->sqe_size) - 1; sq->num_sqbs = (qset->sqe_cnt + sq->sqe_per_sqb) / sq->sqe_per_sqb; /* Set SQE threshold to 10% of total SQEs */ @@ -863,17 +1031,30 @@ static int otx2_sq_init(struct otx2_nic *pfvf, u16 qidx, u16 sqb_aura) sq->stats.bytes = 0; sq->stats.pkts = 0; + /* Attach XSK_BUFF_POOL to XDP queue */ + if (qidx > pfvf->hw.xdp_queues) + otx2_attach_xsk_buff(pfvf, sq, (qidx - pfvf->hw.xdp_queues)); + - return pfvf->hw_ops->sq_aq_init(pfvf, qidx, sqb_aura); + chan_offset = qidx % pfvf->hw.tx_chan_cnt; + err = pfvf->hw_ops->sq_aq_init(pfvf, qidx, chan_offset, sqb_aura); + if (err) { + kfree(sq->sg); + sq->sg = NULL; + return err; + } + + return 0; } -static int otx2_cq_init(struct otx2_nic *pfvf, u16 qidx) +int otx2_cq_init(struct otx2_nic *pfvf, u16 qidx) { struct otx2_qset *qset = &pfvf->qset; int err, pool_id, non_xdp_queues; struct nix_aq_enq_req *aq; struct otx2_cq_queue *cq; + struct otx2_pool *pool; cq = &qset->cq[qidx]; cq->cq_idx = qidx; @@ -882,16 +1063,36 @@ static int otx2_cq_init(struct otx2_nic *pfvf, u16 qidx) cq->cq_type = CQ_RX; cq->cint_idx = qidx; cq->cqe_cnt = qset->rqe_cnt; - if (pfvf->xdp_prog) + if (pfvf->xdp_prog) { xdp_rxq_info_reg(&cq->xdp_rxq, pfvf->netdev, qidx, 0); + pool = &qset->pool[qidx]; + if (pool->xsk_pool) { + xdp_rxq_info_reg_mem_model(&cq->xdp_rxq, + MEM_TYPE_XSK_BUFF_POOL, + NULL); + xsk_pool_set_rxq_info(pool->xsk_pool, &cq->xdp_rxq); + } else if (pool->page_pool) { + xdp_rxq_info_reg_mem_model(&cq->xdp_rxq, + MEM_TYPE_PAGE_POOL, + pool->page_pool); + } + } } else if (qidx < non_xdp_queues) { cq->cq_type = CQ_TX; cq->cint_idx = qidx - pfvf->hw.rx_queues; cq->cqe_cnt = qset->sqe_cnt; } else { - cq->cq_type = CQ_XDP; - cq->cint_idx = qidx - non_xdp_queues; - cq->cqe_cnt = qset->sqe_cnt; + if (pfvf->hw.xdp_queues && + qidx < non_xdp_queues + pfvf->hw.xdp_queues) { + cq->cq_type = CQ_XDP; + cq->cint_idx = qidx - non_xdp_queues; + cq->cqe_cnt = qset->sqe_cnt; + } else { + cq->cq_type = CQ_QOS; + cq->cint_idx = qidx - non_xdp_queues - + pfvf->hw.xdp_queues; + cq->cqe_cnt = qset->sqe_cnt; + } } cq->cqe_size = pfvf->qset.xqe_size; @@ -931,7 +1132,11 @@ static int otx2_cq_init(struct otx2_nic *pfvf, u16 qidx) if (!is_otx2_lbkvf(pfvf->pdev)) { /* Enable receive CQ backpressure */ aq->cq.bp_ena = 1; +#ifdef CONFIG_DCB + aq->cq.bpid = pfvf->bpid[pfvf->queue_to_pfc_map[qidx]]; +#else aq->cq.bpid = pfvf->bpid[0]; +#endif /* Set backpressure level is same as cq pass level */ aq->cq.bp = RQ_PASS_LVL_CQ(pfvf->hw.rq_skid, qset->rqe_cnt); @@ -949,39 +1154,20 @@ static int otx2_cq_init(struct otx2_nic *pfvf, u16 qidx) static void otx2_pool_refill_task(struct work_struct *work) { struct otx2_cq_queue *cq; - struct otx2_pool *rbpool; struct refill_work *wrk; - int qidx, free_ptrs = 0; struct otx2_nic *pfvf; - dma_addr_t bufptr; + int qidx; wrk = container_of(work, struct refill_work, pool_refill_work.work); pfvf = wrk->pf; qidx = wrk - pfvf->refill_wrk; cq = &pfvf->qset.cq[qidx]; - rbpool = cq->rbpool; - free_ptrs = cq->pool_ptrs; - while (cq->pool_ptrs) { - if (otx2_alloc_rbuf(pfvf, rbpool, &bufptr)) { - /* Schedule a WQ if we fails to free atleast half of the - * pointers else enable napi for this RQ. - */ - if (!((free_ptrs - cq->pool_ptrs) > free_ptrs / 2)) { - struct delayed_work *dwork; - - dwork = &wrk->pool_refill_work; - schedule_delayed_work(dwork, - msecs_to_jiffies(100)); - } else { - cq->refill_task_sched = false; - } - return; - } - pfvf->hw_ops->aura_freeptr(pfvf, qidx, bufptr + OTX2_HEAD_ROOM); - cq->pool_ptrs--; - } cq->refill_task_sched = false; + + local_bh_disable(); + napi_schedule(wrk->napi); + local_bh_enable(); } int otx2_config_nix_queues(struct otx2_nic *pfvf) @@ -998,7 +1184,7 @@ int otx2_config_nix_queues(struct otx2_nic *pfvf) } /* Initialize TX queues */ - for (qidx = 0; qidx < pfvf->hw.tot_tx_queues; qidx++) { + for (qidx = 0; qidx < pfvf->hw.non_qos_queues; qidx++) { u16 sqb_aura = otx2_get_pool_idx(pfvf, AURA_NIX_SQ, qidx); err = otx2_sq_init(pfvf, qidx, sqb_aura); @@ -1036,7 +1222,7 @@ int otx2_config_nix(struct otx2_nic *pfvf) struct nix_lf_alloc_rsp *rsp; int err; - pfvf->qset.xqe_size = NIX_XQESZ_W16 ? 128 : 512; + pfvf->qset.xqe_size = pfvf->hw.xqe_size; /* Get memory to put this msg */ nixlf = otx2_mbox_alloc_msg_nix_lf_alloc(&pfvf->mbox); @@ -1045,11 +1231,11 @@ int otx2_config_nix(struct otx2_nic *pfvf) /* Set RQ/SQ/CQ counts */ nixlf->rq_cnt = pfvf->hw.rx_queues; - nixlf->sq_cnt = pfvf->hw.tot_tx_queues; + nixlf->sq_cnt = otx2_get_total_tx_queues(pfvf); nixlf->cq_cnt = pfvf->qset.cq_cnt; nixlf->rss_sz = MAX_RSS_INDIR_TBL_SIZE; nixlf->rss_grps = MAX_RSS_GROUPS; - nixlf->xqe_sz = NIX_XQESZ_W16; + nixlf->xqe_sz = pfvf->hw.xqe_size == 128 ? NIX_XQESZ_W16 : NIX_XQESZ_W64; /* We don't know absolute NPA LF idx attached. * AF will replace 'RVU_DEFAULT_PF_FUNC' with * NPA LF attached to this RVU PF/VF. @@ -1083,7 +1269,7 @@ void otx2_sq_free_sqbs(struct otx2_nic *pfvf) int sqb, qidx; u64 iova, pa; - for (qidx = 0; qidx < hw->tot_tx_queues; qidx++) { + for (qidx = 0; qidx < otx2_get_total_tx_queues(pfvf); qidx++) { sq = &qset->sq[qidx]; if (!sq->sqb_ptrs) continue; @@ -1101,10 +1287,33 @@ void otx2_sq_free_sqbs(struct otx2_nic *pfvf) } } +void otx2_free_bufs(struct otx2_nic *pfvf, struct otx2_pool *pool, + u64 iova, int size) +{ + struct page *page; + u64 pa; + + pa = otx2_iova_to_phys(pfvf->iommu_domain, iova); + page = virt_to_head_page(phys_to_virt(pa)); + if (pool->page_pool) { + page_pool_put_full_page(pool->page_pool, page, true); + } else if (pool->xsk_pool) { + /* Note: No way of identifying xdp_buff */ + } else { + dma_unmap_page_attrs(pfvf->dev, iova, size, + DMA_FROM_DEVICE, + DMA_ATTR_SKIP_CPU_SYNC); + + put_page(page); + } +} + void otx2_free_aura_ptr(struct otx2_nic *pfvf, int type) { int pool_id, pool_start = 0, pool_end = 0, size = 0; - u64 iova, pa; + struct otx2_pool *pool; + u64 iova; + int idx; if (type == AURA_NIX_SQ) { pool_start = otx2_get_pool_idx(pfvf, type, 0); @@ -1119,18 +1328,21 @@ void otx2_free_aura_ptr(struct otx2_nic *pfvf, int type) /* Free SQB and RQB pointers from the aura pool */ for (pool_id = pool_start; pool_id < pool_end; pool_id++) { + pool = &pfvf->qset.pool[pool_id]; iova = otx2_aura_allocptr(pfvf, pool_id); while (iova) { if (type == AURA_NIX_RQ) iova -= OTX2_HEAD_ROOM; - - pa = otx2_iova_to_phys(pfvf->iommu_domain, iova); - dma_unmap_page_attrs(pfvf->dev, iova, size, - DMA_FROM_DEVICE, - DMA_ATTR_SKIP_CPU_SYNC); - put_page(virt_to_page(phys_to_virt(pa))); + otx2_free_bufs(pfvf, pool, iova, size); iova = otx2_aura_allocptr(pfvf, pool_id); } + + for (idx = 0 ; idx < pool->xdp_cnt; idx++) { + if (!pool->xdp[idx]) + continue; + + xsk_buff_free(pool->xdp[idx]); + } } } @@ -1146,13 +1358,23 @@ void otx2_aura_pool_free(struct otx2_nic *pfvf) pool = &pfvf->qset.pool[pool_id]; qmem_free(pfvf->dev, pool->stack); qmem_free(pfvf->dev, pool->fc_addr); + page_pool_destroy(pool->page_pool); + devm_kfree(pfvf->dev, pool->xdp); + pool->xsk_pool = NULL; } devm_kfree(pfvf->dev, pfvf->qset.pool); pfvf->qset.pool = NULL; } -static int otx2_aura_init(struct otx2_nic *pfvf, int aura_id, - int pool_id, int numptrs) +int otx2_aura_init(struct otx2_nic *pfvf, int aura_id, + int pool_id, int numptrs) +{ + return pfvf->hw_ops->aura_aq_init(pfvf, aura_id, pool_id, + numptrs); +} + +int otx2_aura_aq_init(struct otx2_nic *pfvf, int aura_id, + int pool_id, int numptrs) { struct npa_aq_enq_req *aq; struct otx2_pool *pool; @@ -1211,7 +1433,11 @@ static int otx2_aura_init(struct otx2_nic *pfvf, int aura_id, */ if (pfvf->nix_blkaddr == BLKADDR_NIX1) aq->aura.bp_ena = 1; +#ifdef CONFIG_DCB + aq->aura.nix0_bpid = pfvf->bpid[pfvf->queue_to_pfc_map[aura_id]]; +#else aq->aura.nix0_bpid = pfvf->bpid[0]; +#endif /* Set backpressure level for RQ's Aura */ aq->aura.bp = RQ_BP_LVL_AURA; @@ -1224,9 +1450,18 @@ static int otx2_aura_init(struct otx2_nic *pfvf, int aura_id, return 0; } -static int otx2_pool_init(struct otx2_nic *pfvf, u16 pool_id, - int stack_pages, int numptrs, int buf_size) +int otx2_pool_init(struct otx2_nic *pfvf, u16 pool_id, + int stack_pages, int numptrs, int buf_size, int type) { + return pfvf->hw_ops->pool_aq_init(pfvf, pool_id, stack_pages, numptrs, + buf_size, type); +} + +int otx2_pool_aq_init(struct otx2_nic *pfvf, u16 pool_id, + int stack_pages, int numptrs, int buf_size, int type) +{ + struct page_pool_params pp_params = { 0 }; + struct xsk_buff_pool *xsk_pool; struct npa_aq_enq_req *aq; struct otx2_pool *pool; int err; @@ -1270,6 +1505,35 @@ static int otx2_pool_init(struct otx2_nic *pfvf, u16 pool_id, aq->ctype = NPA_AQ_CTYPE_POOL; aq->op = NPA_AQ_INSTOP_INIT; + if (type != AURA_NIX_RQ) + return 0; + + if (!test_bit(pool_id, pfvf->af_xdp_zc_qidx)) { + pp_params.order = get_order(buf_size); + pp_params.flags = PP_FLAG_DMA_MAP; + pp_params.pool_size = min(OTX2_PAGE_POOL_SZ, numptrs); + pp_params.nid = NUMA_NO_NODE; + pp_params.dev = pfvf->dev; + pp_params.dma_dir = DMA_FROM_DEVICE; + pool->page_pool = page_pool_create(&pp_params); + if (IS_ERR(pool->page_pool)) { + netdev_err(pfvf->netdev, "Creation of page pool failed\n"); + return PTR_ERR(pool->page_pool); + } + return 0; + } + + /* Set XSK pool to support AF_XDP zero-copy */ + xsk_pool = xsk_get_pool_from_qid(pfvf->netdev, pool_id); + if (xsk_pool) { + pool->xsk_pool = xsk_pool; + pool->xdp_cnt = numptrs; + pool->xdp = devm_kcalloc(pfvf->dev, + numptrs, sizeof(struct xdp_buff *), GFP_KERNEL); + if (!pool->xdp) + return -ENOMEM; + } + return 0; } @@ -1295,7 +1559,7 @@ int otx2_sq_aura_pool_init(struct otx2_nic *pfvf) stack_pages = (num_sqbs + hw->stack_pg_ptrs - 1) / hw->stack_pg_ptrs; - for (qidx = 0; qidx < hw->tot_tx_queues; qidx++) { + for (qidx = 0; qidx < hw->non_qos_queues; qidx++) { pool_id = otx2_get_pool_idx(pfvf, AURA_NIX_SQ, qidx); /* Initialize aura context */ err = otx2_aura_init(pfvf, pool_id, pool_id, num_sqbs); @@ -1304,7 +1568,7 @@ int otx2_sq_aura_pool_init(struct otx2_nic *pfvf) /* Initialize pool context */ err = otx2_pool_init(pfvf, pool_id, stack_pages, - num_sqbs, hw->sqb_size); + num_sqbs, hw->sqb_size, AURA_NIX_SQ); if (err) goto fail; } @@ -1315,25 +1579,39 @@ int otx2_sq_aura_pool_init(struct otx2_nic *pfvf) goto fail; /* Allocate pointers and free them to aura/pool */ - for (qidx = 0; qidx < hw->tot_tx_queues; qidx++) { + for (qidx = 0; qidx < hw->non_qos_queues; qidx++) { pool_id = otx2_get_pool_idx(pfvf, AURA_NIX_SQ, qidx); pool = &pfvf->qset.pool[pool_id]; sq = &qset->sq[qidx]; sq->sqb_count = 0; sq->sqb_ptrs = kcalloc(num_sqbs, sizeof(*sq->sqb_ptrs), GFP_KERNEL); - if (!sq->sqb_ptrs) - return -ENOMEM; + if (!sq->sqb_ptrs) { + err = -ENOMEM; + goto err_mem; + } for (ptr = 0; ptr < num_sqbs; ptr++) { - if (otx2_alloc_rbuf(pfvf, pool, &bufptr)) - return -ENOMEM; + err = otx2_alloc_rbuf(pfvf, pool, &bufptr, pool_id, ptr); + if (err) { + if (pool->xsk_pool) { + ptr--; + while (ptr >= 0) { + xsk_buff_free(pool->xdp[ptr]); + ptr--; + } + } + goto err_mem; + } + pfvf->hw_ops->aura_freeptr(pfvf, pool_id, bufptr); sq->sqb_ptrs[sq->sqb_count++] = (u64)bufptr; } } - return 0; +err_mem: + return err ? -ENOMEM : 0; + fail: otx2_mbox_reset(&pfvf->mbox.mbox, 0); otx2_aura_pool_free(pfvf); @@ -1362,7 +1640,7 @@ int otx2_rq_aura_pool_init(struct otx2_nic *pfvf) } for (pool_id = 0; pool_id < hw->rqpool_cnt; pool_id++) { err = otx2_pool_init(pfvf, pool_id, stack_pages, - num_ptrs, pfvf->rbsize); + num_ptrs, pfvf->rbsize, AURA_NIX_RQ); if (err) goto fail; } @@ -1375,14 +1653,22 @@ int otx2_rq_aura_pool_init(struct otx2_nic *pfvf) /* Allocate pointers and free them to aura/pool */ for (pool_id = 0; pool_id < hw->rqpool_cnt; pool_id++) { pool = &pfvf->qset.pool[pool_id]; + for (ptr = 0; ptr < num_ptrs; ptr++) { - if (otx2_alloc_rbuf(pfvf, pool, &bufptr)) + err = otx2_alloc_rbuf(pfvf, pool, &bufptr, pool_id, ptr); + if (err) { + if (pool->xsk_pool) { + while (ptr) + xsk_buff_free(pool->xdp[--ptr]); + } return -ENOMEM; + } + pfvf->hw_ops->aura_freeptr(pfvf, pool_id, + pool->xsk_pool ? bufptr : bufptr + OTX2_HEAD_ROOM); } } - return 0; fail: otx2_mbox_reset(&pfvf->mbox.mbox, 0); @@ -1437,7 +1723,7 @@ int otx2_detach_resources(struct mbox *mbox) detach->partial = false; /* Send detach request to AF */ - otx2_mbox_msg_send(&mbox->mbox, 0); + otx2_sync_mbox_msg(mbox); mutex_unlock(&mbox->lock); return 0; } @@ -1538,11 +1824,42 @@ int otx2_nix_config_bp(struct otx2_nic *pfvf, bool enable) return -ENOMEM; req->chan_base = 0; - req->chan_cnt = 1; - req->bpid_per_chan = 0; + if (otx2_is_pfc_enabled(pfvf)) { + req->chan_cnt = IEEE_8021QAZ_MAX_TCS; + req->bpid_per_chan = 1; + } else { + req->chan_cnt = pfvf->hw.rx_chan_cnt; + req->bpid_per_chan = 0; + } + + return otx2_sync_mbox_msg(&pfvf->mbox); +} +EXPORT_SYMBOL(otx2_nix_config_bp); + +int otx2_nix_cpt_config_bp(struct otx2_nic *pfvf, bool enable) +{ + struct nix_bp_cfg_req *req; + + if (enable) + req = otx2_mbox_alloc_msg_nix_cpt_bp_enable(&pfvf->mbox); + else + req = otx2_mbox_alloc_msg_nix_cpt_bp_disable(&pfvf->mbox); + + if (!req) + return -ENOMEM; + + req->chan_base = 0; + if (otx2_is_pfc_enabled(pfvf)) { + req->chan_cnt = IEEE_8021QAZ_MAX_TCS; + req->bpid_per_chan = 1; + } else { + req->chan_cnt = pfvf->hw.rx_chan_cnt; + req->bpid_per_chan = 0; + } return otx2_sync_mbox_msg(&pfvf->mbox); } +EXPORT_SYMBOL(otx2_nix_cpt_config_bp); /* Mbox message handlers */ void mbox_handler_cgx_stats(struct otx2_nic *pfvf, @@ -1563,19 +1880,6 @@ void mbox_handler_cgx_fec_stats(struct otx2_nic *pfvf, pfvf->hw.cgx_fec_uncorr_blks += rsp->fec_uncorr_blks; } -void mbox_handler_nix_txsch_alloc(struct otx2_nic *pf, - struct nix_txsch_alloc_rsp *rsp) -{ - int lvl, schq; - - /* Setup transmit scheduler list */ - for (lvl = 0; lvl < NIX_TXSCH_LVL_CNT; lvl++) - for (schq = 0; schq < rsp->schq[lvl]; schq++) - pf->hw.txschq_list[lvl][schq] = - rsp->schq_list[lvl][schq]; -} -EXPORT_SYMBOL(mbox_handler_nix_txsch_alloc); - void mbox_handler_npa_lf_alloc(struct otx2_nic *pfvf, struct npa_lf_alloc_rsp *rsp) { @@ -1590,6 +1894,8 @@ void mbox_handler_nix_lf_alloc(struct otx2_nic *pfvf, pfvf->hw.sqb_size = rsp->sqb_size; pfvf->hw.rx_chan_base = rsp->rx_chan_base; pfvf->hw.tx_chan_base = rsp->tx_chan_base; + pfvf->hw.rx_chan_cnt = rsp->rx_chan_cnt; + pfvf->hw.tx_chan_cnt = rsp->tx_chan_cnt; pfvf->hw.lso_tsov4_idx = rsp->lso_tsov4_idx; pfvf->hw.lso_tsov6_idx = rsp->lso_tsov6_idx; pfvf->hw.cgx_links = rsp->cgx_links; @@ -1634,6 +1940,7 @@ void otx2_free_cints(struct otx2_nic *pfvf, int n) free_irq(vector, &qset->napi[qidx]); } } +EXPORT_SYMBOL(otx2_free_cints); void otx2_set_cints_affinity(struct otx2_nic *pfvf) { @@ -1659,6 +1966,17 @@ void otx2_set_cints_affinity(struct otx2_nic *pfvf) } } +static u32 get_dwrr_mtu(struct otx2_nic *pfvf, struct nix_hw_info *hw) +{ + if (is_otx2_lbkvf(pfvf->pdev)) { + pfvf->hw.smq_link_type = SMQ_LINK_TYPE_LBK; + return hw->lbk_dwrr_mtu; + } + + pfvf->hw.smq_link_type = SMQ_LINK_TYPE_RPM; + return hw->rpm_dwrr_mtu; +} + u16 otx2_get_max_mtu(struct otx2_nic *pfvf) { struct nix_hw_info *rsp; @@ -1678,6 +1996,10 @@ u16 otx2_get_max_mtu(struct otx2_nic *pfvf) if (!rc) { rsp = (struct nix_hw_info *) otx2_mbox_get_rsp(&pfvf->mbox.mbox, 0, &req->hdr); + if (IS_ERR(rsp)) { + rc = PTR_ERR(rsp); + goto out; + } /* HW counts VLAN insertion bytes (8 for double tag) * irrespective of whether SQE is requesting to insert VLAN @@ -1688,7 +2010,7 @@ u16 otx2_get_max_mtu(struct otx2_nic *pfvf) max_mtu = rsp->max_mtu - 8 - OTX2_ETH_HLEN; /* Also save DWRR MTU, needed for DWRR weight calculation */ - pfvf->hw.dwrr_mtu = rsp->rpm_dwrr_mtu; + pfvf->hw.dwrr_mtu = get_dwrr_mtu(pfvf, rsp); if (!pfvf->hw.dwrr_mtu) pfvf->hw.dwrr_mtu = 1; } @@ -1704,6 +2026,78 @@ out: } EXPORT_SYMBOL(otx2_get_max_mtu); +int otx2_handle_ntuple_tc_features(struct net_device *netdev, netdev_features_t features) +{ + netdev_features_t changed = features ^ netdev->features; + struct otx2_nic *pfvf = netdev_priv(netdev); + bool ntuple = !!(features & NETIF_F_NTUPLE); + bool tc = !!(features & NETIF_F_HW_TC); + + if ((changed & NETIF_F_NTUPLE) && !ntuple) + otx2_destroy_ntuple_flows(pfvf); + + if ((changed & NETIF_F_NTUPLE) && ntuple) { + if (!pfvf->flow_cfg->max_flows) { + netdev_err(netdev, + "Can't enable NTUPLE, MCAM entries not allocated\n"); + return -EINVAL; + } + } + + if ((changed & NETIF_F_HW_TC) && !tc && + otx2_tc_flower_rule_cnt(pfvf)) { + netdev_err(netdev, "Can't disable TC hardware offload while flows are active\n"); + return -EBUSY; + } + + if ((changed & NETIF_F_NTUPLE) && ntuple && + otx2_tc_flower_rule_cnt(pfvf) && !(changed & NETIF_F_HW_TC)) { + netdev_err(netdev, + "Can't enable NTUPLE when TC flower offload is active, disable TC rules and retry\n"); + return -EINVAL; + } + + return 0; +} +EXPORT_SYMBOL(otx2_handle_ntuple_tc_features); + +int otx2_set_hw_capabilities(struct otx2_nic *pfvf) +{ + struct mbox *mbox = &pfvf->mbox; + struct otx2_hw *hw = &pfvf->hw; + struct get_hw_cap_rsp *rsp; + struct msg_req *req; + int ret = -ENOMEM; + + mutex_lock(&mbox->lock); + + req = otx2_mbox_alloc_msg_get_hw_cap(mbox); + if (!req) + goto fail; + + ret = otx2_sync_mbox_msg(mbox); + if (ret) + goto fail; + + rsp = (struct get_hw_cap_rsp *)otx2_mbox_get_rsp(&pfvf->mbox.mbox, + 0, &req->hdr); + if (IS_ERR(rsp)) { + ret = -EINVAL; + goto fail; + } + + if (rsp->hw_caps & HW_CAP_MACSEC) + __set_bit(CN10K_HW_MACSEC, &hw->cap_flag); + + mutex_unlock(&mbox->lock); + + return 0; +fail: + dev_err(pfvf->dev, "Cannot get MACSEC capability from AF\n"); + mutex_unlock(&mbox->lock); + return ret; +} + #define M(_name, _id, _fn_name, _req_type, _rsp_type) \ int __weak \ otx2_mbox_up_handler_ ## _fn_name(struct otx2_nic *pfvf, \ @@ -1715,4 +2109,50 @@ otx2_mbox_up_handler_ ## _fn_name(struct otx2_nic *pfvf, \ } \ EXPORT_SYMBOL(otx2_mbox_up_handler_ ## _fn_name); MBOX_UP_CGX_MESSAGES +MBOX_UP_MCS_MESSAGES #undef M + +dma_addr_t otx2_dma_map_skb_frag(struct otx2_nic *pfvf, + struct sk_buff *skb, int seg, int *len) +{ + enum dma_data_direction dir = DMA_TO_DEVICE; + const skb_frag_t *frag; + struct page *page; + int offset; + + /* Crypto hardware need write permission for ipsec crypto offload */ + if (unlikely(xfrm_offload(skb))) { + dir = DMA_BIDIRECTIONAL; + skb = skb_unshare(skb, GFP_ATOMIC); + } + + /* First segment is always skb->data */ + if (!seg) { + page = virt_to_page(skb->data); + offset = offset_in_page(skb->data); + *len = skb_headlen(skb); + } else { + frag = &skb_shinfo(skb)->frags[seg - 1]; + page = skb_frag_page(frag); + offset = skb_frag_off(frag); + *len = skb_frag_size(frag); + } + return otx2_dma_map_page(pfvf, page, offset, *len, dir); +} + +void otx2_dma_unmap_skb_frags(struct otx2_nic *pfvf, struct sg_list *sg) +{ + enum dma_data_direction dir = DMA_TO_DEVICE; + struct sk_buff *skb = NULL; + int seg; + + skb = (struct sk_buff *)sg->skb; + if (unlikely(xfrm_offload(skb))) + dir = DMA_BIDIRECTIONAL; + + for (seg = 0; seg < sg->num_segs; seg++) { + otx2_dma_unmap_page(pfvf, sg->dma_addr[seg], + sg->size[seg], dir); + } + sg->num_segs = 0; +} |
