bd0d5930bf
MPRQ feature should be updated to allow a packet to be received into multiple strides in order to support the MTU exceeding 8KB. Special care is needed to prevent the headroom corruption in the multi-stride mode since the headroom space is borrowed by the PMD from the tail of the preceding stride. Copy the whole packet into a separate mbuf in this case or just the overlapping data if the Rx scattering is supported by an application. Cc: stable@dpdk.org Signed-off-by: Alexander Kozyrev <akozyrev@mellanox.com> Acked-by: Viacheslav Ovsiienko <viacheslavo@mellanox.com> Acked-by: Matan Azrad <matan@mellanox.com>
682 lines
24 KiB
C
682 lines
24 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright 2015 6WIND S.A.
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* Copyright 2015 Mellanox Technologies, Ltd
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*/
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#ifndef RTE_PMD_MLX5_RXTX_H_
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#define RTE_PMD_MLX5_RXTX_H_
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#include <stddef.h>
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#include <stdint.h>
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#include <sys/queue.h>
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/* Verbs header. */
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/* ISO C doesn't support unnamed structs/unions, disabling -pedantic. */
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#ifdef PEDANTIC
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#pragma GCC diagnostic ignored "-Wpedantic"
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#endif
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#include <infiniband/verbs.h>
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#include <infiniband/mlx5dv.h>
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#ifdef PEDANTIC
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#pragma GCC diagnostic error "-Wpedantic"
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#endif
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#include <rte_mbuf.h>
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#include <rte_mempool.h>
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#include <rte_common.h>
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#include <rte_hexdump.h>
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#include <rte_atomic.h>
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#include <rte_spinlock.h>
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#include <rte_io.h>
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#include <rte_bus_pci.h>
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#include <rte_malloc.h>
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#include <mlx5_glue.h>
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#include <mlx5_prm.h>
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#include <mlx5_common.h>
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#include "mlx5_defs.h"
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#include "mlx5_utils.h"
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#include "mlx5.h"
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#include "mlx5_mr.h"
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#include "mlx5_autoconf.h"
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/* Support tunnel matching. */
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#define MLX5_FLOW_TUNNEL 10
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/* Mbuf dynamic flag offset for inline. */
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extern uint64_t rte_net_mlx5_dynf_inline_mask;
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struct mlx5_rxq_stats {
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#ifdef MLX5_PMD_SOFT_COUNTERS
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uint64_t ipackets; /**< Total of successfully received packets. */
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uint64_t ibytes; /**< Total of successfully received bytes. */
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#endif
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uint64_t idropped; /**< Total of packets dropped when RX ring full. */
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uint64_t rx_nombuf; /**< Total of RX mbuf allocation failures. */
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};
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struct mlx5_txq_stats {
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#ifdef MLX5_PMD_SOFT_COUNTERS
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uint64_t opackets; /**< Total of successfully sent packets. */
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uint64_t obytes; /**< Total of successfully sent bytes. */
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#endif
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uint64_t oerrors; /**< Total number of failed transmitted packets. */
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};
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struct mlx5_priv;
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/* Compressed CQE context. */
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struct rxq_zip {
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uint16_t ai; /* Array index. */
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uint16_t ca; /* Current array index. */
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uint16_t na; /* Next array index. */
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uint16_t cq_ci; /* The next CQE. */
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uint32_t cqe_cnt; /* Number of CQEs. */
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};
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/* Multi-Packet RQ buffer header. */
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struct mlx5_mprq_buf {
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struct rte_mempool *mp;
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rte_atomic16_t refcnt; /* Atomically accessed refcnt. */
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uint8_t pad[RTE_PKTMBUF_HEADROOM]; /* Headroom for the first packet. */
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struct rte_mbuf_ext_shared_info shinfos[];
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/*
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* Shared information per stride.
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* More memory will be allocated for the first stride head-room and for
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* the strides data.
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*/
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} __rte_cache_aligned;
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/* Get pointer to the first stride. */
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#define mlx5_mprq_buf_addr(ptr, strd_n) (RTE_PTR_ADD((ptr), \
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sizeof(struct mlx5_mprq_buf) + \
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(strd_n) * \
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sizeof(struct rte_mbuf_ext_shared_info) + \
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RTE_PKTMBUF_HEADROOM))
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#define MLX5_MIN_SINGLE_STRIDE_LOG_NUM_BYTES 6
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#define MLX5_MIN_SINGLE_WQE_LOG_NUM_STRIDES 9
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enum mlx5_rxq_err_state {
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MLX5_RXQ_ERR_STATE_NO_ERROR = 0,
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MLX5_RXQ_ERR_STATE_NEED_RESET,
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MLX5_RXQ_ERR_STATE_NEED_READY,
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};
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/* RX queue descriptor. */
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struct mlx5_rxq_data {
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unsigned int csum:1; /* Enable checksum offloading. */
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unsigned int hw_timestamp:1; /* Enable HW timestamp. */
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unsigned int vlan_strip:1; /* Enable VLAN stripping. */
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unsigned int crc_present:1; /* CRC must be subtracted. */
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unsigned int sges_n:3; /* Log 2 of SGEs (max buffers per packet). */
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unsigned int cqe_n:4; /* Log 2 of CQ elements. */
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unsigned int elts_n:4; /* Log 2 of Mbufs. */
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unsigned int rss_hash:1; /* RSS hash result is enabled. */
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unsigned int mark:1; /* Marked flow available on the queue. */
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unsigned int strd_num_n:5; /* Log 2 of the number of stride. */
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unsigned int strd_sz_n:4; /* Log 2 of stride size. */
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unsigned int strd_shift_en:1; /* Enable 2bytes shift on a stride. */
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unsigned int err_state:2; /* enum mlx5_rxq_err_state. */
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unsigned int strd_scatter_en:1; /* Scattered packets from a stride. */
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unsigned int lro:1; /* Enable LRO. */
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unsigned int :1; /* Remaining bits. */
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volatile uint32_t *rq_db;
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volatile uint32_t *cq_db;
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uint16_t port_id;
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uint32_t rq_ci;
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uint16_t consumed_strd; /* Number of consumed strides in WQE. */
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uint32_t rq_pi;
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uint32_t cq_ci;
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uint16_t rq_repl_thresh; /* Threshold for buffer replenishment. */
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union {
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struct rxq_zip zip; /* Compressed context. */
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uint16_t decompressed;
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/* Number of ready mbufs decompressed from the CQ. */
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};
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struct mlx5_mr_ctrl mr_ctrl; /* MR control descriptor. */
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uint16_t mprq_max_memcpy_len; /* Maximum size of packet to memcpy. */
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volatile void *wqes;
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volatile struct mlx5_cqe(*cqes)[];
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RTE_STD_C11
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union {
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struct rte_mbuf *(*elts)[];
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struct mlx5_mprq_buf *(*mprq_bufs)[];
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};
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struct rte_mempool *mp;
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struct rte_mempool *mprq_mp; /* Mempool for Multi-Packet RQ. */
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struct mlx5_mprq_buf *mprq_repl; /* Stashed mbuf for replenish. */
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uint16_t idx; /* Queue index. */
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struct mlx5_rxq_stats stats;
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rte_xmm_t mbuf_initializer; /* Default rearm/flags for vectorized Rx. */
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struct rte_mbuf fake_mbuf; /* elts padding for vectorized Rx. */
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void *cq_uar; /* CQ user access region. */
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uint32_t cqn; /* CQ number. */
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uint8_t cq_arm_sn; /* CQ arm seq number. */
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#ifndef RTE_ARCH_64
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rte_spinlock_t *uar_lock_cq;
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/* CQ (UAR) access lock required for 32bit implementations */
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#endif
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uint32_t tunnel; /* Tunnel information. */
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} __rte_cache_aligned;
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enum mlx5_rxq_obj_type {
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MLX5_RXQ_OBJ_TYPE_IBV, /* mlx5_rxq_obj with ibv_wq. */
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MLX5_RXQ_OBJ_TYPE_DEVX_RQ, /* mlx5_rxq_obj with mlx5_devx_rq. */
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MLX5_RXQ_OBJ_TYPE_DEVX_HAIRPIN,
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/* mlx5_rxq_obj with mlx5_devx_rq and hairpin support. */
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};
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enum mlx5_rxq_type {
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MLX5_RXQ_TYPE_STANDARD, /* Standard Rx queue. */
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MLX5_RXQ_TYPE_HAIRPIN, /* Hairpin Rx queue. */
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MLX5_RXQ_TYPE_UNDEFINED,
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};
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/* Verbs/DevX Rx queue elements. */
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struct mlx5_rxq_obj {
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LIST_ENTRY(mlx5_rxq_obj) next; /* Pointer to the next element. */
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rte_atomic32_t refcnt; /* Reference counter. */
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struct mlx5_rxq_ctrl *rxq_ctrl; /* Back pointer to parent. */
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struct ibv_cq *cq; /* Completion Queue. */
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enum mlx5_rxq_obj_type type;
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RTE_STD_C11
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union {
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struct ibv_wq *wq; /* Work Queue. */
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struct mlx5_devx_obj *rq; /* DevX object for Rx Queue. */
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};
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struct ibv_comp_channel *channel;
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};
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/* RX queue control descriptor. */
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struct mlx5_rxq_ctrl {
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struct mlx5_rxq_data rxq; /* Data path structure. */
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LIST_ENTRY(mlx5_rxq_ctrl) next; /* Pointer to the next element. */
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rte_atomic32_t refcnt; /* Reference counter. */
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struct mlx5_rxq_obj *obj; /* Verbs/DevX elements. */
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struct mlx5_priv *priv; /* Back pointer to private data. */
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enum mlx5_rxq_type type; /* Rxq type. */
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unsigned int socket; /* CPU socket ID for allocations. */
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unsigned int irq:1; /* Whether IRQ is enabled. */
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unsigned int dbr_umem_id_valid:1; /* dbr_umem_id holds a valid value. */
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uint32_t flow_mark_n; /* Number of Mark/Flag flows using this Queue. */
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uint32_t flow_tunnels_n[MLX5_FLOW_TUNNEL]; /* Tunnels counters. */
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uint32_t wqn; /* WQ number. */
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uint16_t dump_file_n; /* Number of dump files. */
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uint32_t dbr_umem_id; /* Storing door-bell information, */
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uint64_t dbr_offset; /* needed when freeing door-bell. */
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struct mlx5dv_devx_umem *wq_umem; /* WQ buffer registration info. */
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struct rte_eth_hairpin_conf hairpin_conf; /* Hairpin configuration. */
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};
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enum mlx5_ind_tbl_type {
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MLX5_IND_TBL_TYPE_IBV,
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MLX5_IND_TBL_TYPE_DEVX,
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};
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/* Indirection table. */
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struct mlx5_ind_table_obj {
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LIST_ENTRY(mlx5_ind_table_obj) next; /* Pointer to the next element. */
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rte_atomic32_t refcnt; /* Reference counter. */
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enum mlx5_ind_tbl_type type;
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RTE_STD_C11
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union {
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struct ibv_rwq_ind_table *ind_table; /**< Indirection table. */
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struct mlx5_devx_obj *rqt; /* DevX RQT object. */
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};
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uint32_t queues_n; /**< Number of queues in the list. */
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uint16_t queues[]; /**< Queue list. */
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};
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/* Hash Rx queue. */
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struct mlx5_hrxq {
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LIST_ENTRY(mlx5_hrxq) next; /* Pointer to the next element. */
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rte_atomic32_t refcnt; /* Reference counter. */
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struct mlx5_ind_table_obj *ind_table; /* Indirection table. */
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RTE_STD_C11
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union {
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struct ibv_qp *qp; /* Verbs queue pair. */
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struct mlx5_devx_obj *tir; /* DevX TIR object. */
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};
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#ifdef HAVE_IBV_FLOW_DV_SUPPORT
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void *action; /* DV QP action pointer. */
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#endif
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uint64_t hash_fields; /* Verbs Hash fields. */
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uint32_t rss_key_len; /* Hash key length in bytes. */
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uint8_t rss_key[]; /* Hash key. */
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};
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/* TX queue send local data. */
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__extension__
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struct mlx5_txq_local {
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struct mlx5_wqe *wqe_last; /* last sent WQE pointer. */
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struct rte_mbuf *mbuf; /* first mbuf to process. */
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uint16_t pkts_copy; /* packets copied to elts. */
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uint16_t pkts_sent; /* packets sent. */
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uint16_t pkts_loop; /* packets sent on loop entry. */
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uint16_t elts_free; /* available elts remain. */
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uint16_t wqe_free; /* available wqe remain. */
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uint16_t mbuf_off; /* data offset in current mbuf. */
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uint16_t mbuf_nseg; /* number of remaining mbuf. */
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};
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/* TX queue descriptor. */
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__extension__
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struct mlx5_txq_data {
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uint16_t elts_head; /* Current counter in (*elts)[]. */
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uint16_t elts_tail; /* Counter of first element awaiting completion. */
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uint16_t elts_comp; /* elts index since last completion request. */
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uint16_t elts_s; /* Number of mbuf elements. */
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uint16_t elts_m; /* Mask for mbuf elements indices. */
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/* Fields related to elts mbuf storage. */
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uint16_t wqe_ci; /* Consumer index for work queue. */
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uint16_t wqe_pi; /* Producer index for work queue. */
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uint16_t wqe_s; /* Number of WQ elements. */
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uint16_t wqe_m; /* Mask Number for WQ elements. */
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uint16_t wqe_comp; /* WQE index since last completion request. */
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uint16_t wqe_thres; /* WQE threshold to request completion in CQ. */
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/* WQ related fields. */
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uint16_t cq_ci; /* Consumer index for completion queue. */
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uint16_t cq_pi; /* Production index for completion queue. */
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uint16_t cqe_s; /* Number of CQ elements. */
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uint16_t cqe_m; /* Mask for CQ indices. */
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/* CQ related fields. */
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uint16_t elts_n:4; /* elts[] length (in log2). */
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uint16_t cqe_n:4; /* Number of CQ elements (in log2). */
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uint16_t wqe_n:4; /* Number of WQ elements (in log2). */
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uint16_t tso_en:1; /* When set hardware TSO is enabled. */
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uint16_t tunnel_en:1;
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/* When set TX offload for tunneled packets are supported. */
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uint16_t swp_en:1; /* Whether SW parser is enabled. */
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uint16_t vlan_en:1; /* VLAN insertion in WQE is supported. */
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uint16_t db_nc:1; /* Doorbell mapped to non-cached region. */
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uint16_t db_heu:1; /* Doorbell heuristic write barrier. */
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uint16_t inlen_send; /* Ordinary send data inline size. */
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uint16_t inlen_empw; /* eMPW max packet size to inline. */
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uint16_t inlen_mode; /* Minimal data length to inline. */
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uint32_t qp_num_8s; /* QP number shifted by 8. */
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uint64_t offloads; /* Offloads for Tx Queue. */
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struct mlx5_mr_ctrl mr_ctrl; /* MR control descriptor. */
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struct mlx5_wqe *wqes; /* Work queue. */
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struct mlx5_wqe *wqes_end; /* Work queue array limit. */
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#ifdef RTE_LIBRTE_MLX5_DEBUG
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uint32_t *fcqs; /* Free completion queue (debug extended). */
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#else
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uint16_t *fcqs; /* Free completion queue. */
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#endif
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volatile struct mlx5_cqe *cqes; /* Completion queue. */
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volatile uint32_t *qp_db; /* Work queue doorbell. */
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volatile uint32_t *cq_db; /* Completion queue doorbell. */
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uint16_t port_id; /* Port ID of device. */
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uint16_t idx; /* Queue index. */
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struct mlx5_txq_stats stats; /* TX queue counters. */
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#ifndef RTE_ARCH_64
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rte_spinlock_t *uar_lock;
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/* UAR access lock required for 32bit implementations */
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#endif
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struct rte_mbuf *elts[0];
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/* Storage for queued packets, must be the last field. */
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} __rte_cache_aligned;
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enum mlx5_txq_obj_type {
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MLX5_TXQ_OBJ_TYPE_IBV, /* mlx5_txq_obj with ibv_wq. */
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MLX5_TXQ_OBJ_TYPE_DEVX_HAIRPIN,
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/* mlx5_txq_obj with mlx5_devx_tq and hairpin support. */
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};
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enum mlx5_txq_type {
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MLX5_TXQ_TYPE_STANDARD, /* Standard Tx queue. */
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MLX5_TXQ_TYPE_HAIRPIN, /* Hairpin Rx queue. */
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};
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/* Verbs/DevX Tx queue elements. */
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struct mlx5_txq_obj {
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LIST_ENTRY(mlx5_txq_obj) next; /* Pointer to the next element. */
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rte_atomic32_t refcnt; /* Reference counter. */
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struct mlx5_txq_ctrl *txq_ctrl; /* Pointer to the control queue. */
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enum mlx5_txq_obj_type type; /* The txq object type. */
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RTE_STD_C11
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union {
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struct {
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struct ibv_cq *cq; /* Completion Queue. */
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struct ibv_qp *qp; /* Queue Pair. */
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};
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struct {
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struct mlx5_devx_obj *sq;
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/* DevX object for Sx queue. */
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struct mlx5_devx_obj *tis; /* The TIS object. */
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};
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};
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};
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/* TX queue control descriptor. */
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struct mlx5_txq_ctrl {
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LIST_ENTRY(mlx5_txq_ctrl) next; /* Pointer to the next element. */
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rte_atomic32_t refcnt; /* Reference counter. */
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unsigned int socket; /* CPU socket ID for allocations. */
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enum mlx5_txq_type type; /* The txq ctrl type. */
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unsigned int max_inline_data; /* Max inline data. */
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unsigned int max_tso_header; /* Max TSO header size. */
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struct mlx5_txq_obj *obj; /* Verbs/DevX queue object. */
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struct mlx5_priv *priv; /* Back pointer to private data. */
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off_t uar_mmap_offset; /* UAR mmap offset for non-primary process. */
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void *bf_reg; /* BlueFlame register from Verbs. */
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uint16_t dump_file_n; /* Number of dump files. */
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struct rte_eth_hairpin_conf hairpin_conf; /* Hairpin configuration. */
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struct mlx5_txq_data txq; /* Data path structure. */
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/* Must be the last field in the structure, contains elts[]. */
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};
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#define MLX5_TX_BFREG(txq) \
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(MLX5_PROC_PRIV((txq)->port_id)->uar_table[(txq)->idx])
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/* mlx5_rxq.c */
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extern uint8_t rss_hash_default_key[];
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int mlx5_check_mprq_support(struct rte_eth_dev *dev);
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int mlx5_rxq_mprq_enabled(struct mlx5_rxq_data *rxq);
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int mlx5_mprq_enabled(struct rte_eth_dev *dev);
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int mlx5_mprq_free_mp(struct rte_eth_dev *dev);
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int mlx5_mprq_alloc_mp(struct rte_eth_dev *dev);
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int mlx5_rx_queue_setup(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
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unsigned int socket, const struct rte_eth_rxconf *conf,
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struct rte_mempool *mp);
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int mlx5_rx_hairpin_queue_setup
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(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
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const struct rte_eth_hairpin_conf *hairpin_conf);
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void mlx5_rx_queue_release(void *dpdk_rxq);
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int mlx5_rx_intr_vec_enable(struct rte_eth_dev *dev);
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void mlx5_rx_intr_vec_disable(struct rte_eth_dev *dev);
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int mlx5_rx_intr_enable(struct rte_eth_dev *dev, uint16_t rx_queue_id);
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int mlx5_rx_intr_disable(struct rte_eth_dev *dev, uint16_t rx_queue_id);
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struct mlx5_rxq_obj *mlx5_rxq_obj_new(struct rte_eth_dev *dev, uint16_t idx,
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enum mlx5_rxq_obj_type type);
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int mlx5_rxq_obj_verify(struct rte_eth_dev *dev);
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struct mlx5_rxq_ctrl *mlx5_rxq_new(struct rte_eth_dev *dev, uint16_t idx,
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uint16_t desc, unsigned int socket,
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const struct rte_eth_rxconf *conf,
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struct rte_mempool *mp);
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struct mlx5_rxq_ctrl *mlx5_rxq_hairpin_new
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(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
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const struct rte_eth_hairpin_conf *hairpin_conf);
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struct mlx5_rxq_ctrl *mlx5_rxq_get(struct rte_eth_dev *dev, uint16_t idx);
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int mlx5_rxq_release(struct rte_eth_dev *dev, uint16_t idx);
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int mlx5_rxq_verify(struct rte_eth_dev *dev);
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int rxq_alloc_elts(struct mlx5_rxq_ctrl *rxq_ctrl);
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int mlx5_ind_table_obj_verify(struct rte_eth_dev *dev);
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struct mlx5_hrxq *mlx5_hrxq_new(struct rte_eth_dev *dev,
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const uint8_t *rss_key, uint32_t rss_key_len,
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uint64_t hash_fields,
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const uint16_t *queues, uint32_t queues_n,
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int tunnel __rte_unused);
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struct mlx5_hrxq *mlx5_hrxq_get(struct rte_eth_dev *dev,
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const uint8_t *rss_key, uint32_t rss_key_len,
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uint64_t hash_fields,
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const uint16_t *queues, uint32_t queues_n);
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int mlx5_hrxq_release(struct rte_eth_dev *dev, struct mlx5_hrxq *hxrq);
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int mlx5_hrxq_verify(struct rte_eth_dev *dev);
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enum mlx5_rxq_type mlx5_rxq_get_type(struct rte_eth_dev *dev, uint16_t idx);
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struct mlx5_hrxq *mlx5_hrxq_drop_new(struct rte_eth_dev *dev);
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void mlx5_hrxq_drop_release(struct rte_eth_dev *dev);
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uint64_t mlx5_get_rx_port_offloads(void);
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uint64_t mlx5_get_rx_queue_offloads(struct rte_eth_dev *dev);
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/* mlx5_txq.c */
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int mlx5_tx_queue_setup(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
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unsigned int socket, const struct rte_eth_txconf *conf);
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int mlx5_tx_hairpin_queue_setup
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(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
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const struct rte_eth_hairpin_conf *hairpin_conf);
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void mlx5_tx_queue_release(void *dpdk_txq);
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int mlx5_tx_uar_init_secondary(struct rte_eth_dev *dev, int fd);
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struct mlx5_txq_obj *mlx5_txq_obj_new(struct rte_eth_dev *dev, uint16_t idx,
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enum mlx5_txq_obj_type type);
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struct mlx5_txq_obj *mlx5_txq_obj_get(struct rte_eth_dev *dev, uint16_t idx);
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int mlx5_txq_obj_release(struct mlx5_txq_obj *txq_ibv);
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int mlx5_txq_obj_verify(struct rte_eth_dev *dev);
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struct mlx5_txq_ctrl *mlx5_txq_new(struct rte_eth_dev *dev, uint16_t idx,
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uint16_t desc, unsigned int socket,
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const struct rte_eth_txconf *conf);
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struct mlx5_txq_ctrl *mlx5_txq_hairpin_new
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(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
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const struct rte_eth_hairpin_conf *hairpin_conf);
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struct mlx5_txq_ctrl *mlx5_txq_get(struct rte_eth_dev *dev, uint16_t idx);
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int mlx5_txq_release(struct rte_eth_dev *dev, uint16_t idx);
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int mlx5_txq_releasable(struct rte_eth_dev *dev, uint16_t idx);
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int mlx5_txq_verify(struct rte_eth_dev *dev);
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void txq_alloc_elts(struct mlx5_txq_ctrl *txq_ctrl);
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void txq_free_elts(struct mlx5_txq_ctrl *txq_ctrl);
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uint64_t mlx5_get_tx_port_offloads(struct rte_eth_dev *dev);
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/* mlx5_rxtx.c */
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extern uint32_t mlx5_ptype_table[];
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extern uint8_t mlx5_cksum_table[];
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extern uint8_t mlx5_swp_types_table[];
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void mlx5_set_ptype_table(void);
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void mlx5_set_cksum_table(void);
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void mlx5_set_swp_types_table(void);
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uint16_t mlx5_rx_burst(void *dpdk_rxq, struct rte_mbuf **pkts, uint16_t pkts_n);
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void mlx5_rxq_initialize(struct mlx5_rxq_data *rxq);
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__rte_noinline int mlx5_rx_err_handle(struct mlx5_rxq_data *rxq, uint8_t vec);
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void mlx5_mprq_buf_free_cb(void *addr, void *opaque);
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void mlx5_mprq_buf_free(struct mlx5_mprq_buf *buf);
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uint16_t mlx5_rx_burst_mprq(void *dpdk_rxq, struct rte_mbuf **pkts,
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uint16_t pkts_n);
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uint16_t removed_tx_burst(void *dpdk_txq, struct rte_mbuf **pkts,
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uint16_t pkts_n);
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uint16_t removed_rx_burst(void *dpdk_rxq, struct rte_mbuf **pkts,
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uint16_t pkts_n);
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int mlx5_rx_descriptor_status(void *rx_queue, uint16_t offset);
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int mlx5_tx_descriptor_status(void *tx_queue, uint16_t offset);
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uint32_t mlx5_rx_queue_count(struct rte_eth_dev *dev, uint16_t rx_queue_id);
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void mlx5_dump_debug_information(const char *path, const char *title,
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const void *buf, unsigned int len);
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int mlx5_queue_state_modify_primary(struct rte_eth_dev *dev,
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const struct mlx5_mp_arg_queue_state_modify *sm);
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void mlx5_rxq_info_get(struct rte_eth_dev *dev, uint16_t queue_id,
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struct rte_eth_rxq_info *qinfo);
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void mlx5_txq_info_get(struct rte_eth_dev *dev, uint16_t queue_id,
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struct rte_eth_txq_info *qinfo);
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int mlx5_rx_burst_mode_get(struct rte_eth_dev *dev, uint16_t rx_queue_id,
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struct rte_eth_burst_mode *mode);
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int mlx5_tx_burst_mode_get(struct rte_eth_dev *dev, uint16_t tx_queue_id,
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struct rte_eth_burst_mode *mode);
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/* Vectorized version of mlx5_rxtx.c */
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int mlx5_rxq_check_vec_support(struct mlx5_rxq_data *rxq_data);
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int mlx5_check_vec_rx_support(struct rte_eth_dev *dev);
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uint16_t mlx5_rx_burst_vec(void *dpdk_txq, struct rte_mbuf **pkts,
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uint16_t pkts_n);
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/* mlx5_mr.c */
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void mlx5_mr_flush_local_cache(struct mlx5_mr_ctrl *mr_ctrl);
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uint32_t mlx5_rx_addr2mr_bh(struct mlx5_rxq_data *rxq, uintptr_t addr);
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uint32_t mlx5_tx_mb2mr_bh(struct mlx5_txq_data *txq, struct rte_mbuf *mb);
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uint32_t mlx5_tx_update_ext_mp(struct mlx5_txq_data *txq, uintptr_t addr,
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struct rte_mempool *mp);
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int mlx5_dma_map(struct rte_pci_device *pdev, void *addr, uint64_t iova,
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size_t len);
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int mlx5_dma_unmap(struct rte_pci_device *pdev, void *addr, uint64_t iova,
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size_t len);
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/**
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* Provide safe 64bit store operation to mlx5 UAR region for both 32bit and
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* 64bit architectures.
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*
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* @param val
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* value to write in CPU endian format.
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* @param addr
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* Address to write to.
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* @param lock
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* Address of the lock to use for that UAR access.
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*/
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static __rte_always_inline void
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__mlx5_uar_write64_relaxed(uint64_t val, void *addr,
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rte_spinlock_t *lock __rte_unused)
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{
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#ifdef RTE_ARCH_64
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*(uint64_t *)addr = val;
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#else /* !RTE_ARCH_64 */
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rte_spinlock_lock(lock);
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*(uint32_t *)addr = val;
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rte_io_wmb();
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*((uint32_t *)addr + 1) = val >> 32;
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rte_spinlock_unlock(lock);
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#endif
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}
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/**
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* Provide safe 64bit store operation to mlx5 UAR region for both 32bit and
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* 64bit architectures while guaranteeing the order of execution with the
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* code being executed.
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*
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* @param val
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* value to write in CPU endian format.
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* @param addr
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* Address to write to.
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* @param lock
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* Address of the lock to use for that UAR access.
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*/
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static __rte_always_inline void
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__mlx5_uar_write64(uint64_t val, void *addr, rte_spinlock_t *lock)
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{
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rte_io_wmb();
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__mlx5_uar_write64_relaxed(val, addr, lock);
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}
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/* Assist macros, used instead of directly calling the functions they wrap. */
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#ifdef RTE_ARCH_64
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#define mlx5_uar_write64_relaxed(val, dst, lock) \
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__mlx5_uar_write64_relaxed(val, dst, NULL)
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#define mlx5_uar_write64(val, dst, lock) __mlx5_uar_write64(val, dst, NULL)
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#else
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#define mlx5_uar_write64_relaxed(val, dst, lock) \
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__mlx5_uar_write64_relaxed(val, dst, lock)
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#define mlx5_uar_write64(val, dst, lock) __mlx5_uar_write64(val, dst, lock)
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#endif
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/**
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* Get Memory Pool (MP) from mbuf. If mbuf is indirect, the pool from which the
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* cloned mbuf is allocated is returned instead.
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*
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* @param buf
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* Pointer to mbuf.
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*
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* @return
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* Memory pool where data is located for given mbuf.
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*/
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static inline struct rte_mempool *
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mlx5_mb2mp(struct rte_mbuf *buf)
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{
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if (unlikely(RTE_MBUF_CLONED(buf)))
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return rte_mbuf_from_indirect(buf)->pool;
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return buf->pool;
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}
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/**
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* Query LKey from a packet buffer for Rx. No need to flush local caches for Rx
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* as mempool is pre-configured and static.
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*
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* @param rxq
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* Pointer to Rx queue structure.
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* @param addr
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* Address to search.
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*
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* @return
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* Searched LKey on success, UINT32_MAX on no match.
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*/
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static __rte_always_inline uint32_t
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mlx5_rx_addr2mr(struct mlx5_rxq_data *rxq, uintptr_t addr)
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{
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struct mlx5_mr_ctrl *mr_ctrl = &rxq->mr_ctrl;
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uint32_t lkey;
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/* Linear search on MR cache array. */
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lkey = mlx5_mr_lookup_cache(mr_ctrl->cache, &mr_ctrl->mru,
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MLX5_MR_CACHE_N, addr);
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if (likely(lkey != UINT32_MAX))
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return lkey;
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/* Take slower bottom-half (Binary Search) on miss. */
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return mlx5_rx_addr2mr_bh(rxq, addr);
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}
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#define mlx5_rx_mb2mr(rxq, mb) mlx5_rx_addr2mr(rxq, (uintptr_t)((mb)->buf_addr))
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/**
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* Query LKey from a packet buffer for Tx. If not found, add the mempool.
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*
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* @param txq
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* Pointer to Tx queue structure.
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* @param addr
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* Address to search.
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*
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* @return
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* Searched LKey on success, UINT32_MAX on no match.
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*/
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static __rte_always_inline uint32_t
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mlx5_tx_mb2mr(struct mlx5_txq_data *txq, struct rte_mbuf *mb)
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{
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struct mlx5_mr_ctrl *mr_ctrl = &txq->mr_ctrl;
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uintptr_t addr = (uintptr_t)mb->buf_addr;
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uint32_t lkey;
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/* Check generation bit to see if there's any change on existing MRs. */
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if (unlikely(*mr_ctrl->dev_gen_ptr != mr_ctrl->cur_gen))
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mlx5_mr_flush_local_cache(mr_ctrl);
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/* Linear search on MR cache array. */
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lkey = mlx5_mr_lookup_cache(mr_ctrl->cache, &mr_ctrl->mru,
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MLX5_MR_CACHE_N, addr);
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if (likely(lkey != UINT32_MAX))
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return lkey;
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/* Take slower bottom-half on miss. */
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return mlx5_tx_mb2mr_bh(txq, mb);
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}
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/**
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|
* Ring TX queue doorbell and flush the update if requested.
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|
*
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|
* @param txq
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* Pointer to TX queue structure.
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|
* @param wqe
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|
* Pointer to the last WQE posted in the NIC.
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|
* @param cond
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|
* Request for write memory barrier after BlueFlame update.
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*/
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static __rte_always_inline void
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mlx5_tx_dbrec_cond_wmb(struct mlx5_txq_data *txq, volatile struct mlx5_wqe *wqe,
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int cond)
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{
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uint64_t *dst = MLX5_TX_BFREG(txq);
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volatile uint64_t *src = ((volatile uint64_t *)wqe);
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rte_cio_wmb();
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*txq->qp_db = rte_cpu_to_be_32(txq->wqe_ci);
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|
/* Ensure ordering between DB record and BF copy. */
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rte_wmb();
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mlx5_uar_write64_relaxed(*src, dst, txq->uar_lock);
|
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if (cond)
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|
rte_wmb();
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|
}
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|
|
/**
|
|
* Ring TX queue doorbell and flush the update by write memory barrier.
|
|
*
|
|
* @param txq
|
|
* Pointer to TX queue structure.
|
|
* @param wqe
|
|
* Pointer to the last WQE posted in the NIC.
|
|
*/
|
|
static __rte_always_inline void
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|
mlx5_tx_dbrec(struct mlx5_txq_data *txq, volatile struct mlx5_wqe *wqe)
|
|
{
|
|
mlx5_tx_dbrec_cond_wmb(txq, wqe, 1);
|
|
}
|
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|
|
#endif /* RTE_PMD_MLX5_RXTX_H_ */
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