1 /*- 2 * BSD LICENSE 3 * 4 * Copyright 2015 6WIND S.A. 5 * Copyright 2015 Mellanox. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 11 * * Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * * Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in 15 * the documentation and/or other materials provided with the 16 * distribution. 17 * * Neither the name of 6WIND S.A. nor the names of its 18 * contributors may be used to endorse or promote products derived 19 * from this software without specific prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 22 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 24 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 25 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 26 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 27 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 31 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 32 */ 33 34 #include <stddef.h> 35 #include <assert.h> 36 #include <errno.h> 37 #include <string.h> 38 #include <stdint.h> 39 #include <unistd.h> 40 #include <sys/mman.h> 41 42 /* Verbs header. */ 43 /* ISO C doesn't support unnamed structs/unions, disabling -pedantic. */ 44 #ifdef PEDANTIC 45 #pragma GCC diagnostic ignored "-Wpedantic" 46 #endif 47 #include <infiniband/verbs.h> 48 #ifdef PEDANTIC 49 #pragma GCC diagnostic error "-Wpedantic" 50 #endif 51 52 #include <rte_mbuf.h> 53 #include <rte_malloc.h> 54 #include <rte_ethdev.h> 55 #include <rte_common.h> 56 57 #include "mlx5_utils.h" 58 #include "mlx5_defs.h" 59 #include "mlx5.h" 60 #include "mlx5_rxtx.h" 61 #include "mlx5_autoconf.h" 62 63 /** 64 * Allocate TX queue elements. 65 * 66 * @param txq_ctrl 67 * Pointer to TX queue structure. 68 */ 69 void 70 txq_alloc_elts(struct mlx5_txq_ctrl *txq_ctrl) 71 { 72 const unsigned int elts_n = 1 << txq_ctrl->txq.elts_n; 73 unsigned int i; 74 75 for (i = 0; (i != elts_n); ++i) 76 (*txq_ctrl->txq.elts)[i] = NULL; 77 DRV_LOG(DEBUG, "port %u Tx queue %u allocated and configured %u WRs", 78 PORT_ID(txq_ctrl->priv), txq_ctrl->idx, elts_n); 79 txq_ctrl->txq.elts_head = 0; 80 txq_ctrl->txq.elts_tail = 0; 81 txq_ctrl->txq.elts_comp = 0; 82 } 83 84 /** 85 * Free TX queue elements. 86 * 87 * @param txq_ctrl 88 * Pointer to TX queue structure. 89 */ 90 static void 91 txq_free_elts(struct mlx5_txq_ctrl *txq_ctrl) 92 { 93 const uint16_t elts_n = 1 << txq_ctrl->txq.elts_n; 94 const uint16_t elts_m = elts_n - 1; 95 uint16_t elts_head = txq_ctrl->txq.elts_head; 96 uint16_t elts_tail = txq_ctrl->txq.elts_tail; 97 struct rte_mbuf *(*elts)[elts_n] = txq_ctrl->txq.elts; 98 99 DRV_LOG(DEBUG, "port %u Tx queue %u freeing WRs", 100 PORT_ID(txq_ctrl->priv), txq_ctrl->idx); 101 txq_ctrl->txq.elts_head = 0; 102 txq_ctrl->txq.elts_tail = 0; 103 txq_ctrl->txq.elts_comp = 0; 104 105 while (elts_tail != elts_head) { 106 struct rte_mbuf *elt = (*elts)[elts_tail & elts_m]; 107 108 assert(elt != NULL); 109 rte_pktmbuf_free_seg(elt); 110 #ifndef NDEBUG 111 /* Poisoning. */ 112 memset(&(*elts)[elts_tail & elts_m], 113 0x77, 114 sizeof((*elts)[elts_tail & elts_m])); 115 #endif 116 ++elts_tail; 117 } 118 } 119 120 /** 121 * DPDK callback to configure a TX queue. 122 * 123 * @param dev 124 * Pointer to Ethernet device structure. 125 * @param idx 126 * TX queue index. 127 * @param desc 128 * Number of descriptors to configure in queue. 129 * @param socket 130 * NUMA socket on which memory must be allocated. 131 * @param[in] conf 132 * Thresholds parameters. 133 * 134 * @return 135 * 0 on success, a negative errno value otherwise and rte_errno is set. 136 */ 137 int 138 mlx5_tx_queue_setup(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc, 139 unsigned int socket, const struct rte_eth_txconf *conf) 140 { 141 struct priv *priv = dev->data->dev_private; 142 struct mlx5_txq_data *txq = (*priv->txqs)[idx]; 143 struct mlx5_txq_ctrl *txq_ctrl = 144 container_of(txq, struct mlx5_txq_ctrl, txq); 145 146 if (desc <= MLX5_TX_COMP_THRESH) { 147 DRV_LOG(WARNING, 148 "port %u number of descriptors requested for Tx queue" 149 " %u must be higher than MLX5_TX_COMP_THRESH, using %u" 150 " instead of %u", 151 dev->data->port_id, idx, MLX5_TX_COMP_THRESH + 1, desc); 152 desc = MLX5_TX_COMP_THRESH + 1; 153 } 154 if (!rte_is_power_of_2(desc)) { 155 desc = 1 << log2above(desc); 156 DRV_LOG(WARNING, 157 "port %u increased number of descriptors in Tx queue" 158 " %u to the next power of two (%d)", 159 dev->data->port_id, idx, desc); 160 } 161 DRV_LOG(DEBUG, "port %u configuring queue %u for %u descriptors", 162 dev->data->port_id, idx, desc); 163 if (idx >= priv->txqs_n) { 164 DRV_LOG(ERR, "port %u Tx queue index out of range (%u >= %u)", 165 dev->data->port_id, idx, priv->txqs_n); 166 rte_errno = EOVERFLOW; 167 return -rte_errno; 168 } 169 if (!mlx5_txq_releasable(dev, idx)) { 170 rte_errno = EBUSY; 171 DRV_LOG(ERR, "port %u unable to release queue index %u", 172 dev->data->port_id, idx); 173 return -rte_errno; 174 } 175 mlx5_txq_release(dev, idx); 176 txq_ctrl = mlx5_txq_new(dev, idx, desc, socket, conf); 177 if (!txq_ctrl) { 178 DRV_LOG(ERR, "port %u unable to allocate queue index %u", 179 dev->data->port_id, idx); 180 return -rte_errno; 181 } 182 DRV_LOG(DEBUG, "port %u adding Tx queue %u to list", 183 dev->data->port_id, idx); 184 (*priv->txqs)[idx] = &txq_ctrl->txq; 185 return 0; 186 } 187 188 /** 189 * DPDK callback to release a TX queue. 190 * 191 * @param dpdk_txq 192 * Generic TX queue pointer. 193 */ 194 void 195 mlx5_tx_queue_release(void *dpdk_txq) 196 { 197 struct mlx5_txq_data *txq = (struct mlx5_txq_data *)dpdk_txq; 198 struct mlx5_txq_ctrl *txq_ctrl; 199 struct priv *priv; 200 unsigned int i; 201 202 if (txq == NULL) 203 return; 204 txq_ctrl = container_of(txq, struct mlx5_txq_ctrl, txq); 205 priv = txq_ctrl->priv; 206 for (i = 0; (i != priv->txqs_n); ++i) 207 if ((*priv->txqs)[i] == txq) { 208 mlx5_txq_release(ETH_DEV(priv), i); 209 DRV_LOG(DEBUG, "port %u removing Tx queue %u from list", 210 PORT_ID(priv), txq_ctrl->idx); 211 break; 212 } 213 } 214 215 216 /** 217 * Mmap TX UAR(HW doorbell) pages into reserved UAR address space. 218 * Both primary and secondary process do mmap to make UAR address 219 * aligned. 220 * 221 * @param[in] dev 222 * Pointer to Ethernet device. 223 * @param fd 224 * Verbs file descriptor to map UAR pages. 225 * 226 * @return 227 * 0 on success, a negative errno value otherwise and rte_errno is set. 228 */ 229 int 230 mlx5_tx_uar_remap(struct rte_eth_dev *dev, int fd) 231 { 232 struct priv *priv = dev->data->dev_private; 233 unsigned int i, j; 234 uintptr_t pages[priv->txqs_n]; 235 unsigned int pages_n = 0; 236 uintptr_t uar_va; 237 uintptr_t off; 238 void *addr; 239 void *ret; 240 struct mlx5_txq_data *txq; 241 struct mlx5_txq_ctrl *txq_ctrl; 242 int already_mapped; 243 size_t page_size = sysconf(_SC_PAGESIZE); 244 245 memset(pages, 0, priv->txqs_n * sizeof(uintptr_t)); 246 /* 247 * As rdma-core, UARs are mapped in size of OS page size. 248 * Use aligned address to avoid duplicate mmap. 249 * Ref to libmlx5 function: mlx5_init_context() 250 */ 251 for (i = 0; i != priv->txqs_n; ++i) { 252 if (!(*priv->txqs)[i]) 253 continue; 254 txq = (*priv->txqs)[i]; 255 txq_ctrl = container_of(txq, struct mlx5_txq_ctrl, txq); 256 assert(txq_ctrl->idx == (uint16_t)i); 257 /* UAR addr form verbs used to find dup and offset in page. */ 258 uar_va = (uintptr_t)txq_ctrl->bf_reg_orig; 259 off = uar_va & (page_size - 1); /* offset in page. */ 260 uar_va = RTE_ALIGN_FLOOR(uar_va, page_size); /* page addr. */ 261 already_mapped = 0; 262 for (j = 0; j != pages_n; ++j) { 263 if (pages[j] == uar_va) { 264 already_mapped = 1; 265 break; 266 } 267 } 268 /* new address in reserved UAR address space. */ 269 addr = RTE_PTR_ADD(priv->uar_base, 270 uar_va & (MLX5_UAR_SIZE - 1)); 271 if (!already_mapped) { 272 pages[pages_n++] = uar_va; 273 /* fixed mmap to specified address in reserved 274 * address space. 275 */ 276 ret = mmap(addr, page_size, 277 PROT_WRITE, MAP_FIXED | MAP_SHARED, fd, 278 txq_ctrl->uar_mmap_offset); 279 if (ret != addr) { 280 /* fixed mmap have to return same address */ 281 DRV_LOG(ERR, 282 "port %u call to mmap failed on UAR" 283 " for txq %u", 284 dev->data->port_id, txq_ctrl->idx); 285 rte_errno = ENXIO; 286 return -rte_errno; 287 } 288 } 289 if (rte_eal_process_type() == RTE_PROC_PRIMARY) /* save once */ 290 txq_ctrl->txq.bf_reg = RTE_PTR_ADD((void *)addr, off); 291 else 292 assert(txq_ctrl->txq.bf_reg == 293 RTE_PTR_ADD((void *)addr, off)); 294 } 295 return 0; 296 } 297 298 /** 299 * Create the Tx queue Verbs object. 300 * 301 * @param dev 302 * Pointer to Ethernet device. 303 * @param idx 304 * Queue index in DPDK Rx queue array 305 * 306 * @return 307 * The Verbs object initialised, NULL otherwise and rte_errno is set. 308 */ 309 struct mlx5_txq_ibv * 310 mlx5_txq_ibv_new(struct rte_eth_dev *dev, uint16_t idx) 311 { 312 struct priv *priv = dev->data->dev_private; 313 struct mlx5_txq_data *txq_data = (*priv->txqs)[idx]; 314 struct mlx5_txq_ctrl *txq_ctrl = 315 container_of(txq_data, struct mlx5_txq_ctrl, txq); 316 struct mlx5_txq_ibv tmpl; 317 struct mlx5_txq_ibv *txq_ibv; 318 union { 319 struct ibv_qp_init_attr_ex init; 320 struct ibv_cq_init_attr_ex cq; 321 struct ibv_qp_attr mod; 322 struct ibv_cq_ex cq_attr; 323 } attr; 324 unsigned int cqe_n; 325 struct mlx5dv_qp qp = { .comp_mask = MLX5DV_QP_MASK_UAR_MMAP_OFFSET }; 326 struct mlx5dv_cq cq_info; 327 struct mlx5dv_obj obj; 328 const int desc = 1 << txq_data->elts_n; 329 int ret = 0; 330 331 assert(txq_data); 332 priv->verbs_alloc_ctx.type = MLX5_VERBS_ALLOC_TYPE_TX_QUEUE; 333 priv->verbs_alloc_ctx.obj = txq_ctrl; 334 if (mlx5_getenv_int("MLX5_ENABLE_CQE_COMPRESSION")) { 335 DRV_LOG(ERR, 336 "port %u MLX5_ENABLE_CQE_COMPRESSION must never be set", 337 dev->data->port_id); 338 rte_errno = EINVAL; 339 return NULL; 340 } 341 memset(&tmpl, 0, sizeof(struct mlx5_txq_ibv)); 342 /* MRs will be registered in mp2mr[] later. */ 343 attr.cq = (struct ibv_cq_init_attr_ex){ 344 .comp_mask = 0, 345 }; 346 cqe_n = ((desc / MLX5_TX_COMP_THRESH) - 1) ? 347 ((desc / MLX5_TX_COMP_THRESH) - 1) : 1; 348 if (priv->mps == MLX5_MPW_ENHANCED) 349 cqe_n += MLX5_TX_COMP_THRESH_INLINE_DIV; 350 tmpl.cq = ibv_create_cq(priv->ctx, cqe_n, NULL, NULL, 0); 351 if (tmpl.cq == NULL) { 352 DRV_LOG(ERR, "port %u Tx queue %u CQ creation failure", 353 dev->data->port_id, idx); 354 rte_errno = errno; 355 goto error; 356 } 357 attr.init = (struct ibv_qp_init_attr_ex){ 358 /* CQ to be associated with the send queue. */ 359 .send_cq = tmpl.cq, 360 /* CQ to be associated with the receive queue. */ 361 .recv_cq = tmpl.cq, 362 .cap = { 363 /* Max number of outstanding WRs. */ 364 .max_send_wr = 365 ((priv->device_attr.orig_attr.max_qp_wr < 366 desc) ? 367 priv->device_attr.orig_attr.max_qp_wr : 368 desc), 369 /* 370 * Max number of scatter/gather elements in a WR, 371 * must be 1 to prevent libmlx5 from trying to affect 372 * too much memory. TX gather is not impacted by the 373 * priv->device_attr.max_sge limit and will still work 374 * properly. 375 */ 376 .max_send_sge = 1, 377 }, 378 .qp_type = IBV_QPT_RAW_PACKET, 379 /* 380 * Do *NOT* enable this, completions events are managed per 381 * Tx burst. 382 */ 383 .sq_sig_all = 0, 384 .pd = priv->pd, 385 .comp_mask = IBV_QP_INIT_ATTR_PD, 386 }; 387 if (txq_data->inline_en) 388 attr.init.cap.max_inline_data = txq_ctrl->max_inline_data; 389 if (txq_data->tso_en) { 390 attr.init.max_tso_header = txq_ctrl->max_tso_header; 391 attr.init.comp_mask |= IBV_QP_INIT_ATTR_MAX_TSO_HEADER; 392 } 393 tmpl.qp = ibv_create_qp_ex(priv->ctx, &attr.init); 394 if (tmpl.qp == NULL) { 395 DRV_LOG(ERR, "port %u Tx queue %u QP creation failure", 396 dev->data->port_id, idx); 397 rte_errno = errno; 398 goto error; 399 } 400 attr.mod = (struct ibv_qp_attr){ 401 /* Move the QP to this state. */ 402 .qp_state = IBV_QPS_INIT, 403 /* Primary port number. */ 404 .port_num = priv->port 405 }; 406 ret = ibv_modify_qp(tmpl.qp, &attr.mod, (IBV_QP_STATE | IBV_QP_PORT)); 407 if (ret) { 408 DRV_LOG(ERR, 409 "port %u Tx queue %u QP state to IBV_QPS_INIT failed", 410 dev->data->port_id, idx); 411 rte_errno = errno; 412 goto error; 413 } 414 attr.mod = (struct ibv_qp_attr){ 415 .qp_state = IBV_QPS_RTR 416 }; 417 ret = ibv_modify_qp(tmpl.qp, &attr.mod, IBV_QP_STATE); 418 if (ret) { 419 DRV_LOG(ERR, 420 "port %u Tx queue %u QP state to IBV_QPS_RTR failed", 421 dev->data->port_id, idx); 422 rte_errno = errno; 423 goto error; 424 } 425 attr.mod.qp_state = IBV_QPS_RTS; 426 ret = ibv_modify_qp(tmpl.qp, &attr.mod, IBV_QP_STATE); 427 if (ret) { 428 DRV_LOG(ERR, 429 "port %u Tx queue %u QP state to IBV_QPS_RTS failed", 430 dev->data->port_id, idx); 431 rte_errno = errno; 432 goto error; 433 } 434 txq_ibv = rte_calloc_socket(__func__, 1, sizeof(struct mlx5_txq_ibv), 0, 435 txq_ctrl->socket); 436 if (!txq_ibv) { 437 DRV_LOG(ERR, "port %u Tx queue %u cannot allocate memory", 438 dev->data->port_id, idx); 439 rte_errno = ENOMEM; 440 goto error; 441 } 442 obj.cq.in = tmpl.cq; 443 obj.cq.out = &cq_info; 444 obj.qp.in = tmpl.qp; 445 obj.qp.out = &qp; 446 ret = mlx5dv_init_obj(&obj, MLX5DV_OBJ_CQ | MLX5DV_OBJ_QP); 447 if (ret != 0) { 448 rte_errno = errno; 449 goto error; 450 } 451 if (cq_info.cqe_size != RTE_CACHE_LINE_SIZE) { 452 DRV_LOG(ERR, 453 "port %u wrong MLX5_CQE_SIZE environment variable" 454 " value: it should be set to %u", 455 dev->data->port_id, RTE_CACHE_LINE_SIZE); 456 rte_errno = EINVAL; 457 goto error; 458 } 459 txq_data->cqe_n = log2above(cq_info.cqe_cnt); 460 txq_data->qp_num_8s = tmpl.qp->qp_num << 8; 461 txq_data->wqes = qp.sq.buf; 462 txq_data->wqe_n = log2above(qp.sq.wqe_cnt); 463 txq_data->qp_db = &qp.dbrec[MLX5_SND_DBR]; 464 txq_ctrl->bf_reg_orig = qp.bf.reg; 465 txq_data->cq_db = cq_info.dbrec; 466 txq_data->cqes = 467 (volatile struct mlx5_cqe (*)[]) 468 (uintptr_t)cq_info.buf; 469 txq_data->cq_ci = 0; 470 #ifndef NDEBUG 471 txq_data->cq_pi = 0; 472 #endif 473 txq_data->wqe_ci = 0; 474 txq_data->wqe_pi = 0; 475 txq_ibv->qp = tmpl.qp; 476 txq_ibv->cq = tmpl.cq; 477 rte_atomic32_inc(&txq_ibv->refcnt); 478 if (qp.comp_mask & MLX5DV_QP_MASK_UAR_MMAP_OFFSET) { 479 txq_ctrl->uar_mmap_offset = qp.uar_mmap_offset; 480 } else { 481 DRV_LOG(ERR, 482 "port %u failed to retrieve UAR info, invalid" 483 " libmlx5.so", 484 dev->data->port_id); 485 rte_errno = EINVAL; 486 goto error; 487 } 488 DRV_LOG(DEBUG, "port %u Verbs Tx queue %u: refcnt %d", 489 dev->data->port_id, idx, rte_atomic32_read(&txq_ibv->refcnt)); 490 LIST_INSERT_HEAD(&priv->txqsibv, txq_ibv, next); 491 txq_ibv->txq_ctrl = txq_ctrl; 492 priv->verbs_alloc_ctx.type = MLX5_VERBS_ALLOC_TYPE_NONE; 493 return txq_ibv; 494 error: 495 ret = rte_errno; /* Save rte_errno before cleanup. */ 496 if (tmpl.cq) 497 claim_zero(ibv_destroy_cq(tmpl.cq)); 498 if (tmpl.qp) 499 claim_zero(ibv_destroy_qp(tmpl.qp)); 500 priv->verbs_alloc_ctx.type = MLX5_VERBS_ALLOC_TYPE_NONE; 501 rte_errno = ret; /* Restore rte_errno. */ 502 return NULL; 503 } 504 505 /** 506 * Get an Tx queue Verbs object. 507 * 508 * @param dev 509 * Pointer to Ethernet device. 510 * @param idx 511 * Queue index in DPDK Rx queue array 512 * 513 * @return 514 * The Verbs object if it exists. 515 */ 516 struct mlx5_txq_ibv * 517 mlx5_txq_ibv_get(struct rte_eth_dev *dev, uint16_t idx) 518 { 519 struct priv *priv = dev->data->dev_private; 520 struct mlx5_txq_ctrl *txq_ctrl; 521 522 if (idx >= priv->txqs_n) 523 return NULL; 524 if (!(*priv->txqs)[idx]) 525 return NULL; 526 txq_ctrl = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, txq); 527 if (txq_ctrl->ibv) { 528 rte_atomic32_inc(&txq_ctrl->ibv->refcnt); 529 DRV_LOG(DEBUG, "port %u Verbs Tx queue %u: refcnt %d", 530 dev->data->port_id, txq_ctrl->idx, 531 rte_atomic32_read(&txq_ctrl->ibv->refcnt)); 532 } 533 return txq_ctrl->ibv; 534 } 535 536 /** 537 * Release an Tx verbs queue object. 538 * 539 * @param txq_ibv 540 * Verbs Tx queue object. 541 * 542 * @return 543 * 1 while a reference on it exists, 0 when freed. 544 */ 545 int 546 mlx5_txq_ibv_release(struct mlx5_txq_ibv *txq_ibv) 547 { 548 assert(txq_ibv); 549 DRV_LOG(DEBUG, "port %u Verbs Tx queue %u: refcnt %d", 550 PORT_ID(txq_ibv->txq_ctrl->priv), 551 txq_ibv->txq_ctrl->idx, rte_atomic32_read(&txq_ibv->refcnt)); 552 if (rte_atomic32_dec_and_test(&txq_ibv->refcnt)) { 553 claim_zero(ibv_destroy_qp(txq_ibv->qp)); 554 claim_zero(ibv_destroy_cq(txq_ibv->cq)); 555 LIST_REMOVE(txq_ibv, next); 556 rte_free(txq_ibv); 557 return 0; 558 } 559 return 1; 560 } 561 562 /** 563 * Return true if a single reference exists on the object. 564 * 565 * @param txq_ibv 566 * Verbs Tx queue object. 567 */ 568 int 569 mlx5_txq_ibv_releasable(struct mlx5_txq_ibv *txq_ibv) 570 { 571 assert(txq_ibv); 572 return (rte_atomic32_read(&txq_ibv->refcnt) == 1); 573 } 574 575 /** 576 * Verify the Verbs Tx queue list is empty 577 * 578 * @param dev 579 * Pointer to Ethernet device. 580 * 581 * @return 582 * The number of object not released. 583 */ 584 int 585 mlx5_txq_ibv_verify(struct rte_eth_dev *dev) 586 { 587 struct priv *priv = dev->data->dev_private; 588 int ret = 0; 589 struct mlx5_txq_ibv *txq_ibv; 590 591 LIST_FOREACH(txq_ibv, &priv->txqsibv, next) { 592 DRV_LOG(DEBUG, "port %u Verbs Tx queue %u still referenced", 593 dev->data->port_id, txq_ibv->txq_ctrl->idx); 594 ++ret; 595 } 596 return ret; 597 } 598 599 /** 600 * Create a DPDK Tx queue. 601 * 602 * @param dev 603 * Pointer to Ethernet device. 604 * @param idx 605 * TX queue index. 606 * @param desc 607 * Number of descriptors to configure in queue. 608 * @param socket 609 * NUMA socket on which memory must be allocated. 610 * @param[in] conf 611 * Thresholds parameters. 612 * 613 * @return 614 * A DPDK queue object on success, NULL otherwise and rte_errno is set. 615 */ 616 struct mlx5_txq_ctrl * 617 mlx5_txq_new(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc, 618 unsigned int socket, const struct rte_eth_txconf *conf) 619 { 620 struct priv *priv = dev->data->dev_private; 621 const unsigned int max_tso_inline = 622 ((MLX5_MAX_TSO_HEADER + (RTE_CACHE_LINE_SIZE - 1)) / 623 RTE_CACHE_LINE_SIZE); 624 struct mlx5_txq_ctrl *tmpl; 625 626 tmpl = rte_calloc_socket("TXQ", 1, 627 sizeof(*tmpl) + 628 desc * sizeof(struct rte_mbuf *), 629 0, socket); 630 if (!tmpl) { 631 rte_errno = ENOMEM; 632 return NULL; 633 } 634 assert(desc > MLX5_TX_COMP_THRESH); 635 tmpl->txq.flags = conf->txq_flags; 636 tmpl->priv = priv; 637 tmpl->socket = socket; 638 tmpl->txq.elts_n = log2above(desc); 639 tmpl->idx = idx; 640 if (priv->mps == MLX5_MPW_ENHANCED) 641 tmpl->txq.mpw_hdr_dseg = priv->mpw_hdr_dseg; 642 /* MRs will be registered in mp2mr[] later. */ 643 DRV_LOG(DEBUG, "port %u priv->device_attr.max_qp_wr is %d", 644 dev->data->port_id, priv->device_attr.orig_attr.max_qp_wr); 645 DRV_LOG(DEBUG, "port %u priv->device_attr.max_sge is %d", 646 dev->data->port_id, priv->device_attr.orig_attr.max_sge); 647 if (priv->txq_inline && (priv->txqs_n >= priv->txqs_inline)) { 648 unsigned int ds_cnt; 649 650 tmpl->txq.max_inline = 651 ((priv->txq_inline + (RTE_CACHE_LINE_SIZE - 1)) / 652 RTE_CACHE_LINE_SIZE); 653 tmpl->txq.inline_en = 1; 654 /* TSO and MPS can't be enabled concurrently. */ 655 assert(!priv->tso || !priv->mps); 656 if (priv->mps == MLX5_MPW_ENHANCED) { 657 tmpl->txq.inline_max_packet_sz = 658 priv->inline_max_packet_sz; 659 /* To minimize the size of data set, avoid requesting 660 * too large WQ. 661 */ 662 tmpl->max_inline_data = 663 ((RTE_MIN(priv->txq_inline, 664 priv->inline_max_packet_sz) + 665 (RTE_CACHE_LINE_SIZE - 1)) / 666 RTE_CACHE_LINE_SIZE) * RTE_CACHE_LINE_SIZE; 667 } else { 668 tmpl->max_inline_data = 669 tmpl->txq.max_inline * RTE_CACHE_LINE_SIZE; 670 } 671 /* 672 * Check if the inline size is too large in a way which 673 * can make the WQE DS to overflow. 674 * Considering in calculation: 675 * WQE CTRL (1 DS) 676 * WQE ETH (1 DS) 677 * Inline part (N DS) 678 */ 679 ds_cnt = 2 + (tmpl->txq.max_inline / MLX5_WQE_DWORD_SIZE); 680 if (ds_cnt > MLX5_DSEG_MAX) { 681 unsigned int max_inline = (MLX5_DSEG_MAX - 2) * 682 MLX5_WQE_DWORD_SIZE; 683 684 max_inline = max_inline - (max_inline % 685 RTE_CACHE_LINE_SIZE); 686 DRV_LOG(WARNING, 687 "port %u txq inline is too large (%d) setting it" 688 " to the maximum possible: %d\n", 689 PORT_ID(priv), priv->txq_inline, max_inline); 690 tmpl->txq.max_inline = max_inline / RTE_CACHE_LINE_SIZE; 691 } 692 } 693 if (priv->tso) { 694 tmpl->max_tso_header = max_tso_inline * RTE_CACHE_LINE_SIZE; 695 tmpl->txq.max_inline = RTE_MAX(tmpl->txq.max_inline, 696 max_tso_inline); 697 tmpl->txq.tso_en = 1; 698 } 699 if (priv->tunnel_en) 700 tmpl->txq.tunnel_en = 1; 701 tmpl->txq.elts = 702 (struct rte_mbuf *(*)[1 << tmpl->txq.elts_n])(tmpl + 1); 703 tmpl->txq.stats.idx = idx; 704 rte_atomic32_inc(&tmpl->refcnt); 705 DRV_LOG(DEBUG, "port %u Tx queue %u: refcnt %d", dev->data->port_id, 706 idx, rte_atomic32_read(&tmpl->refcnt)); 707 LIST_INSERT_HEAD(&priv->txqsctrl, tmpl, next); 708 return tmpl; 709 } 710 711 /** 712 * Get a Tx queue. 713 * 714 * @param dev 715 * Pointer to Ethernet device. 716 * @param idx 717 * TX queue index. 718 * 719 * @return 720 * A pointer to the queue if it exists. 721 */ 722 struct mlx5_txq_ctrl * 723 mlx5_txq_get(struct rte_eth_dev *dev, uint16_t idx) 724 { 725 struct priv *priv = dev->data->dev_private; 726 struct mlx5_txq_ctrl *ctrl = NULL; 727 728 if ((*priv->txqs)[idx]) { 729 ctrl = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, 730 txq); 731 unsigned int i; 732 733 mlx5_txq_ibv_get(dev, idx); 734 for (i = 0; i != MLX5_PMD_TX_MP_CACHE; ++i) { 735 if (ctrl->txq.mp2mr[i]) 736 claim_nonzero 737 (mlx5_mr_get(dev, 738 ctrl->txq.mp2mr[i]->mp)); 739 } 740 rte_atomic32_inc(&ctrl->refcnt); 741 DRV_LOG(DEBUG, "port %u Tx queue %u refcnt %d", 742 dev->data->port_id, 743 ctrl->idx, rte_atomic32_read(&ctrl->refcnt)); 744 } 745 return ctrl; 746 } 747 748 /** 749 * Release a Tx queue. 750 * 751 * @param dev 752 * Pointer to Ethernet device. 753 * @param idx 754 * TX queue index. 755 * 756 * @return 757 * 1 while a reference on it exists, 0 when freed. 758 */ 759 int 760 mlx5_txq_release(struct rte_eth_dev *dev, uint16_t idx) 761 { 762 struct priv *priv = dev->data->dev_private; 763 unsigned int i; 764 struct mlx5_txq_ctrl *txq; 765 size_t page_size = sysconf(_SC_PAGESIZE); 766 767 if (!(*priv->txqs)[idx]) 768 return 0; 769 txq = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, txq); 770 DRV_LOG(DEBUG, "port %u Tx queue %u: refcnt %d", dev->data->port_id, 771 txq->idx, rte_atomic32_read(&txq->refcnt)); 772 if (txq->ibv && !mlx5_txq_ibv_release(txq->ibv)) 773 txq->ibv = NULL; 774 for (i = 0; i != MLX5_PMD_TX_MP_CACHE; ++i) { 775 if (txq->txq.mp2mr[i]) { 776 mlx5_mr_release(txq->txq.mp2mr[i]); 777 txq->txq.mp2mr[i] = NULL; 778 } 779 } 780 if (priv->uar_base) 781 munmap((void *)RTE_ALIGN_FLOOR((uintptr_t)txq->txq.bf_reg, 782 page_size), page_size); 783 if (rte_atomic32_dec_and_test(&txq->refcnt)) { 784 txq_free_elts(txq); 785 LIST_REMOVE(txq, next); 786 rte_free(txq); 787 (*priv->txqs)[idx] = NULL; 788 return 0; 789 } 790 return 1; 791 } 792 793 /** 794 * Verify if the queue can be released. 795 * 796 * @param dev 797 * Pointer to Ethernet device. 798 * @param idx 799 * TX queue index. 800 * 801 * @return 802 * 1 if the queue can be released. 803 */ 804 int 805 mlx5_txq_releasable(struct rte_eth_dev *dev, uint16_t idx) 806 { 807 struct priv *priv = dev->data->dev_private; 808 struct mlx5_txq_ctrl *txq; 809 810 if (!(*priv->txqs)[idx]) 811 return -1; 812 txq = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, txq); 813 return (rte_atomic32_read(&txq->refcnt) == 1); 814 } 815 816 /** 817 * Verify the Tx Queue list is empty 818 * 819 * @param dev 820 * Pointer to Ethernet device. 821 * 822 * @return 823 * The number of object not released. 824 */ 825 int 826 mlx5_txq_verify(struct rte_eth_dev *dev) 827 { 828 struct priv *priv = dev->data->dev_private; 829 struct mlx5_txq_ctrl *txq; 830 int ret = 0; 831 832 LIST_FOREACH(txq, &priv->txqsctrl, next) { 833 DRV_LOG(DEBUG, "port %u Tx queue %u still referenced", 834 dev->data->port_id, txq->idx); 835 ++ret; 836 } 837 return ret; 838 } 839