1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright 2012 6WIND S.A. 3 * Copyright 2012 Mellanox Technologies, Ltd 4 */ 5 6 /** 7 * @file 8 * mlx4 driver initialization. 9 */ 10 11 #include <assert.h> 12 #include <dlfcn.h> 13 #include <errno.h> 14 #include <inttypes.h> 15 #include <stddef.h> 16 #include <stdint.h> 17 #include <stdio.h> 18 #include <stdlib.h> 19 #include <string.h> 20 #include <unistd.h> 21 22 /* Verbs headers do not support -pedantic. */ 23 #ifdef PEDANTIC 24 #pragma GCC diagnostic ignored "-Wpedantic" 25 #endif 26 #include <infiniband/verbs.h> 27 #ifdef PEDANTIC 28 #pragma GCC diagnostic error "-Wpedantic" 29 #endif 30 31 #include <rte_common.h> 32 #include <rte_config.h> 33 #include <rte_dev.h> 34 #include <rte_errno.h> 35 #include <rte_ethdev_driver.h> 36 #include <rte_ethdev_pci.h> 37 #include <rte_ether.h> 38 #include <rte_flow.h> 39 #include <rte_interrupts.h> 40 #include <rte_kvargs.h> 41 #include <rte_malloc.h> 42 #include <rte_mbuf.h> 43 44 #include "mlx4.h" 45 #include "mlx4_glue.h" 46 #include "mlx4_flow.h" 47 #include "mlx4_mr.h" 48 #include "mlx4_rxtx.h" 49 #include "mlx4_utils.h" 50 51 struct mlx4_dev_list mlx4_mem_event_cb_list = 52 LIST_HEAD_INITIALIZER(mlx4_mem_event_cb_list); 53 54 rte_rwlock_t mlx4_mem_event_rwlock = RTE_RWLOCK_INITIALIZER; 55 56 /** Configuration structure for device arguments. */ 57 struct mlx4_conf { 58 struct { 59 uint32_t present; /**< Bit-field for existing ports. */ 60 uint32_t enabled; /**< Bit-field for user-enabled ports. */ 61 } ports; 62 }; 63 64 /* Available parameters list. */ 65 const char *pmd_mlx4_init_params[] = { 66 MLX4_PMD_PORT_KVARG, 67 NULL, 68 }; 69 70 static void mlx4_dev_stop(struct rte_eth_dev *dev); 71 72 /** 73 * DPDK callback for Ethernet device configuration. 74 * 75 * @param dev 76 * Pointer to Ethernet device structure. 77 * 78 * @return 79 * 0 on success, negative errno value otherwise and rte_errno is set. 80 */ 81 static int 82 mlx4_dev_configure(struct rte_eth_dev *dev) 83 { 84 struct mlx4_priv *priv = dev->data->dev_private; 85 struct rte_flow_error error; 86 int ret; 87 88 /* Prepare internal flow rules. */ 89 ret = mlx4_flow_sync(priv, &error); 90 if (ret) { 91 ERROR("cannot set up internal flow rules (code %d, \"%s\")," 92 " flow error type %d, cause %p, message: %s", 93 -ret, strerror(-ret), error.type, error.cause, 94 error.message ? error.message : "(unspecified)"); 95 goto exit; 96 } 97 ret = mlx4_intr_install(priv); 98 if (ret) 99 ERROR("%p: interrupt handler installation failed", 100 (void *)dev); 101 exit: 102 return ret; 103 } 104 105 /** 106 * DPDK callback to start the device. 107 * 108 * Simulate device start by initializing common RSS resources and attaching 109 * all configured flows. 110 * 111 * @param dev 112 * Pointer to Ethernet device structure. 113 * 114 * @return 115 * 0 on success, negative errno value otherwise and rte_errno is set. 116 */ 117 static int 118 mlx4_dev_start(struct rte_eth_dev *dev) 119 { 120 struct mlx4_priv *priv = dev->data->dev_private; 121 struct rte_flow_error error; 122 int ret; 123 124 if (priv->started) 125 return 0; 126 DEBUG("%p: attaching configured flows to all RX queues", (void *)dev); 127 priv->started = 1; 128 ret = mlx4_rss_init(priv); 129 if (ret) { 130 ERROR("%p: cannot initialize RSS resources: %s", 131 (void *)dev, strerror(-ret)); 132 goto err; 133 } 134 #ifndef NDEBUG 135 mlx4_mr_dump_dev(dev); 136 #endif 137 ret = mlx4_rxq_intr_enable(priv); 138 if (ret) { 139 ERROR("%p: interrupt handler installation failed", 140 (void *)dev); 141 goto err; 142 } 143 ret = mlx4_flow_sync(priv, &error); 144 if (ret) { 145 ERROR("%p: cannot attach flow rules (code %d, \"%s\")," 146 " flow error type %d, cause %p, message: %s", 147 (void *)dev, 148 -ret, strerror(-ret), error.type, error.cause, 149 error.message ? error.message : "(unspecified)"); 150 goto err; 151 } 152 rte_wmb(); 153 dev->tx_pkt_burst = mlx4_tx_burst; 154 dev->rx_pkt_burst = mlx4_rx_burst; 155 return 0; 156 err: 157 mlx4_dev_stop(dev); 158 return ret; 159 } 160 161 /** 162 * DPDK callback to stop the device. 163 * 164 * Simulate device stop by detaching all configured flows. 165 * 166 * @param dev 167 * Pointer to Ethernet device structure. 168 */ 169 static void 170 mlx4_dev_stop(struct rte_eth_dev *dev) 171 { 172 struct mlx4_priv *priv = dev->data->dev_private; 173 174 if (!priv->started) 175 return; 176 DEBUG("%p: detaching flows from all RX queues", (void *)dev); 177 priv->started = 0; 178 dev->tx_pkt_burst = mlx4_tx_burst_removed; 179 dev->rx_pkt_burst = mlx4_rx_burst_removed; 180 rte_wmb(); 181 mlx4_flow_sync(priv, NULL); 182 mlx4_rxq_intr_disable(priv); 183 mlx4_rss_deinit(priv); 184 } 185 186 /** 187 * DPDK callback to close the device. 188 * 189 * Destroy all queues and objects, free memory. 190 * 191 * @param dev 192 * Pointer to Ethernet device structure. 193 */ 194 static void 195 mlx4_dev_close(struct rte_eth_dev *dev) 196 { 197 struct mlx4_priv *priv = dev->data->dev_private; 198 unsigned int i; 199 200 DEBUG("%p: closing device \"%s\"", 201 (void *)dev, 202 ((priv->ctx != NULL) ? priv->ctx->device->name : "")); 203 dev->rx_pkt_burst = mlx4_rx_burst_removed; 204 dev->tx_pkt_burst = mlx4_tx_burst_removed; 205 rte_wmb(); 206 mlx4_flow_clean(priv); 207 mlx4_rss_deinit(priv); 208 for (i = 0; i != dev->data->nb_rx_queues; ++i) 209 mlx4_rx_queue_release(dev->data->rx_queues[i]); 210 for (i = 0; i != dev->data->nb_tx_queues; ++i) 211 mlx4_tx_queue_release(dev->data->tx_queues[i]); 212 mlx4_mr_release(dev); 213 if (priv->pd != NULL) { 214 assert(priv->ctx != NULL); 215 claim_zero(mlx4_glue->dealloc_pd(priv->pd)); 216 claim_zero(mlx4_glue->close_device(priv->ctx)); 217 } else 218 assert(priv->ctx == NULL); 219 mlx4_intr_uninstall(priv); 220 memset(priv, 0, sizeof(*priv)); 221 } 222 223 static const struct eth_dev_ops mlx4_dev_ops = { 224 .dev_configure = mlx4_dev_configure, 225 .dev_start = mlx4_dev_start, 226 .dev_stop = mlx4_dev_stop, 227 .dev_set_link_down = mlx4_dev_set_link_down, 228 .dev_set_link_up = mlx4_dev_set_link_up, 229 .dev_close = mlx4_dev_close, 230 .link_update = mlx4_link_update, 231 .promiscuous_enable = mlx4_promiscuous_enable, 232 .promiscuous_disable = mlx4_promiscuous_disable, 233 .allmulticast_enable = mlx4_allmulticast_enable, 234 .allmulticast_disable = mlx4_allmulticast_disable, 235 .mac_addr_remove = mlx4_mac_addr_remove, 236 .mac_addr_add = mlx4_mac_addr_add, 237 .mac_addr_set = mlx4_mac_addr_set, 238 .stats_get = mlx4_stats_get, 239 .stats_reset = mlx4_stats_reset, 240 .dev_infos_get = mlx4_dev_infos_get, 241 .dev_supported_ptypes_get = mlx4_dev_supported_ptypes_get, 242 .vlan_filter_set = mlx4_vlan_filter_set, 243 .rx_queue_setup = mlx4_rx_queue_setup, 244 .tx_queue_setup = mlx4_tx_queue_setup, 245 .rx_queue_release = mlx4_rx_queue_release, 246 .tx_queue_release = mlx4_tx_queue_release, 247 .flow_ctrl_get = mlx4_flow_ctrl_get, 248 .flow_ctrl_set = mlx4_flow_ctrl_set, 249 .mtu_set = mlx4_mtu_set, 250 .filter_ctrl = mlx4_filter_ctrl, 251 .rx_queue_intr_enable = mlx4_rx_intr_enable, 252 .rx_queue_intr_disable = mlx4_rx_intr_disable, 253 .is_removed = mlx4_is_removed, 254 }; 255 256 /** 257 * Get PCI information from struct ibv_device. 258 * 259 * @param device 260 * Pointer to Ethernet device structure. 261 * @param[out] pci_addr 262 * PCI bus address output buffer. 263 * 264 * @return 265 * 0 on success, negative errno value otherwise and rte_errno is set. 266 */ 267 static int 268 mlx4_ibv_device_to_pci_addr(const struct ibv_device *device, 269 struct rte_pci_addr *pci_addr) 270 { 271 FILE *file; 272 char line[32]; 273 MKSTR(path, "%s/device/uevent", device->ibdev_path); 274 275 file = fopen(path, "rb"); 276 if (file == NULL) { 277 rte_errno = errno; 278 return -rte_errno; 279 } 280 while (fgets(line, sizeof(line), file) == line) { 281 size_t len = strlen(line); 282 int ret; 283 284 /* Truncate long lines. */ 285 if (len == (sizeof(line) - 1)) 286 while (line[(len - 1)] != '\n') { 287 ret = fgetc(file); 288 if (ret == EOF) 289 break; 290 line[(len - 1)] = ret; 291 } 292 /* Extract information. */ 293 if (sscanf(line, 294 "PCI_SLOT_NAME=" 295 "%" SCNx32 ":%" SCNx8 ":%" SCNx8 ".%" SCNx8 "\n", 296 &pci_addr->domain, 297 &pci_addr->bus, 298 &pci_addr->devid, 299 &pci_addr->function) == 4) { 300 ret = 0; 301 break; 302 } 303 } 304 fclose(file); 305 return 0; 306 } 307 308 /** 309 * Verify and store value for device argument. 310 * 311 * @param[in] key 312 * Key argument to verify. 313 * @param[in] val 314 * Value associated with key. 315 * @param[in, out] conf 316 * Shared configuration data. 317 * 318 * @return 319 * 0 on success, negative errno value otherwise and rte_errno is set. 320 */ 321 static int 322 mlx4_arg_parse(const char *key, const char *val, struct mlx4_conf *conf) 323 { 324 unsigned long tmp; 325 326 errno = 0; 327 tmp = strtoul(val, NULL, 0); 328 if (errno) { 329 rte_errno = errno; 330 WARN("%s: \"%s\" is not a valid integer", key, val); 331 return -rte_errno; 332 } 333 if (strcmp(MLX4_PMD_PORT_KVARG, key) == 0) { 334 uint32_t ports = rte_log2_u32(conf->ports.present + 1); 335 336 if (tmp >= ports) { 337 ERROR("port index %lu outside range [0,%" PRIu32 ")", 338 tmp, ports); 339 return -EINVAL; 340 } 341 if (!(conf->ports.present & (1 << tmp))) { 342 rte_errno = EINVAL; 343 ERROR("invalid port index %lu", tmp); 344 return -rte_errno; 345 } 346 conf->ports.enabled |= 1 << tmp; 347 } else { 348 rte_errno = EINVAL; 349 WARN("%s: unknown parameter", key); 350 return -rte_errno; 351 } 352 return 0; 353 } 354 355 /** 356 * Parse device parameters. 357 * 358 * @param devargs 359 * Device arguments structure. 360 * 361 * @return 362 * 0 on success, negative errno value otherwise and rte_errno is set. 363 */ 364 static int 365 mlx4_args(struct rte_devargs *devargs, struct mlx4_conf *conf) 366 { 367 struct rte_kvargs *kvlist; 368 unsigned int arg_count; 369 int ret = 0; 370 int i; 371 372 if (devargs == NULL) 373 return 0; 374 kvlist = rte_kvargs_parse(devargs->args, pmd_mlx4_init_params); 375 if (kvlist == NULL) { 376 rte_errno = EINVAL; 377 ERROR("failed to parse kvargs"); 378 return -rte_errno; 379 } 380 /* Process parameters. */ 381 for (i = 0; pmd_mlx4_init_params[i]; ++i) { 382 arg_count = rte_kvargs_count(kvlist, MLX4_PMD_PORT_KVARG); 383 while (arg_count-- > 0) { 384 ret = rte_kvargs_process(kvlist, 385 MLX4_PMD_PORT_KVARG, 386 (int (*)(const char *, 387 const char *, 388 void *)) 389 mlx4_arg_parse, 390 conf); 391 if (ret != 0) 392 goto free_kvlist; 393 } 394 } 395 free_kvlist: 396 rte_kvargs_free(kvlist); 397 return ret; 398 } 399 400 /** 401 * Interpret RSS capabilities reported by device. 402 * 403 * This function returns the set of usable Verbs RSS hash fields, kernel 404 * quirks taken into account. 405 * 406 * @param ctx 407 * Verbs context. 408 * @param pd 409 * Verbs protection domain. 410 * @param device_attr_ex 411 * Extended device attributes to interpret. 412 * 413 * @return 414 * Usable RSS hash fields mask in Verbs format. 415 */ 416 static uint64_t 417 mlx4_hw_rss_sup(struct ibv_context *ctx, struct ibv_pd *pd, 418 struct ibv_device_attr_ex *device_attr_ex) 419 { 420 uint64_t hw_rss_sup = device_attr_ex->rss_caps.rx_hash_fields_mask; 421 struct ibv_cq *cq = NULL; 422 struct ibv_wq *wq = NULL; 423 struct ibv_rwq_ind_table *ind = NULL; 424 struct ibv_qp *qp = NULL; 425 426 if (!hw_rss_sup) { 427 WARN("no RSS capabilities reported; disabling support for UDP" 428 " RSS and inner VXLAN RSS"); 429 return IBV_RX_HASH_SRC_IPV4 | IBV_RX_HASH_DST_IPV4 | 430 IBV_RX_HASH_SRC_IPV6 | IBV_RX_HASH_DST_IPV6 | 431 IBV_RX_HASH_SRC_PORT_TCP | IBV_RX_HASH_DST_PORT_TCP; 432 } 433 if (!(hw_rss_sup & IBV_RX_HASH_INNER)) 434 return hw_rss_sup; 435 /* 436 * Although reported as supported, missing code in some Linux 437 * versions (v4.15, v4.16) prevents the creation of hash QPs with 438 * inner capability. 439 * 440 * There is no choice but to attempt to instantiate a temporary RSS 441 * context in order to confirm its support. 442 */ 443 cq = mlx4_glue->create_cq(ctx, 1, NULL, NULL, 0); 444 wq = cq ? mlx4_glue->create_wq 445 (ctx, 446 &(struct ibv_wq_init_attr){ 447 .wq_type = IBV_WQT_RQ, 448 .max_wr = 1, 449 .max_sge = 1, 450 .pd = pd, 451 .cq = cq, 452 }) : NULL; 453 ind = wq ? mlx4_glue->create_rwq_ind_table 454 (ctx, 455 &(struct ibv_rwq_ind_table_init_attr){ 456 .log_ind_tbl_size = 0, 457 .ind_tbl = &wq, 458 .comp_mask = 0, 459 }) : NULL; 460 qp = ind ? mlx4_glue->create_qp_ex 461 (ctx, 462 &(struct ibv_qp_init_attr_ex){ 463 .comp_mask = 464 (IBV_QP_INIT_ATTR_PD | 465 IBV_QP_INIT_ATTR_RX_HASH | 466 IBV_QP_INIT_ATTR_IND_TABLE), 467 .qp_type = IBV_QPT_RAW_PACKET, 468 .pd = pd, 469 .rwq_ind_tbl = ind, 470 .rx_hash_conf = { 471 .rx_hash_function = IBV_RX_HASH_FUNC_TOEPLITZ, 472 .rx_hash_key_len = MLX4_RSS_HASH_KEY_SIZE, 473 .rx_hash_key = mlx4_rss_hash_key_default, 474 .rx_hash_fields_mask = hw_rss_sup, 475 }, 476 }) : NULL; 477 if (!qp) { 478 WARN("disabling unusable inner RSS capability due to kernel" 479 " quirk"); 480 hw_rss_sup &= ~IBV_RX_HASH_INNER; 481 } else { 482 claim_zero(mlx4_glue->destroy_qp(qp)); 483 } 484 if (ind) 485 claim_zero(mlx4_glue->destroy_rwq_ind_table(ind)); 486 if (wq) 487 claim_zero(mlx4_glue->destroy_wq(wq)); 488 if (cq) 489 claim_zero(mlx4_glue->destroy_cq(cq)); 490 return hw_rss_sup; 491 } 492 493 static struct rte_pci_driver mlx4_driver; 494 495 /** 496 * DPDK callback to register a PCI device. 497 * 498 * This function creates an Ethernet device for each port of a given 499 * PCI device. 500 * 501 * @param[in] pci_drv 502 * PCI driver structure (mlx4_driver). 503 * @param[in] pci_dev 504 * PCI device information. 505 * 506 * @return 507 * 0 on success, negative errno value otherwise and rte_errno is set. 508 */ 509 static int 510 mlx4_pci_probe(struct rte_pci_driver *pci_drv, struct rte_pci_device *pci_dev) 511 { 512 struct ibv_device **list; 513 struct ibv_device *ibv_dev; 514 int err = 0; 515 struct ibv_context *attr_ctx = NULL; 516 struct ibv_device_attr device_attr; 517 struct ibv_device_attr_ex device_attr_ex; 518 struct mlx4_conf conf = { 519 .ports.present = 0, 520 }; 521 unsigned int vf; 522 int i; 523 524 (void)pci_drv; 525 assert(pci_drv == &mlx4_driver); 526 list = mlx4_glue->get_device_list(&i); 527 if (list == NULL) { 528 rte_errno = errno; 529 assert(rte_errno); 530 if (rte_errno == ENOSYS) 531 ERROR("cannot list devices, is ib_uverbs loaded?"); 532 return -rte_errno; 533 } 534 assert(i >= 0); 535 /* 536 * For each listed device, check related sysfs entry against 537 * the provided PCI ID. 538 */ 539 while (i != 0) { 540 struct rte_pci_addr pci_addr; 541 542 --i; 543 DEBUG("checking device \"%s\"", list[i]->name); 544 if (mlx4_ibv_device_to_pci_addr(list[i], &pci_addr)) 545 continue; 546 if ((pci_dev->addr.domain != pci_addr.domain) || 547 (pci_dev->addr.bus != pci_addr.bus) || 548 (pci_dev->addr.devid != pci_addr.devid) || 549 (pci_dev->addr.function != pci_addr.function)) 550 continue; 551 vf = (pci_dev->id.device_id == 552 PCI_DEVICE_ID_MELLANOX_CONNECTX3VF); 553 INFO("PCI information matches, using device \"%s\" (VF: %s)", 554 list[i]->name, (vf ? "true" : "false")); 555 attr_ctx = mlx4_glue->open_device(list[i]); 556 err = errno; 557 break; 558 } 559 if (attr_ctx == NULL) { 560 mlx4_glue->free_device_list(list); 561 switch (err) { 562 case 0: 563 rte_errno = ENODEV; 564 ERROR("cannot access device, is mlx4_ib loaded?"); 565 return -rte_errno; 566 case EINVAL: 567 rte_errno = EINVAL; 568 ERROR("cannot use device, are drivers up to date?"); 569 return -rte_errno; 570 } 571 assert(err > 0); 572 rte_errno = err; 573 return -rte_errno; 574 } 575 ibv_dev = list[i]; 576 DEBUG("device opened"); 577 if (mlx4_glue->query_device(attr_ctx, &device_attr)) { 578 err = ENODEV; 579 goto error; 580 } 581 INFO("%u port(s) detected", device_attr.phys_port_cnt); 582 conf.ports.present |= (UINT64_C(1) << device_attr.phys_port_cnt) - 1; 583 if (mlx4_args(pci_dev->device.devargs, &conf)) { 584 ERROR("failed to process device arguments"); 585 err = EINVAL; 586 goto error; 587 } 588 /* Use all ports when none are defined */ 589 if (!conf.ports.enabled) 590 conf.ports.enabled = conf.ports.present; 591 /* Retrieve extended device attributes. */ 592 if (mlx4_glue->query_device_ex(attr_ctx, NULL, &device_attr_ex)) { 593 err = ENODEV; 594 goto error; 595 } 596 assert(device_attr.max_sge >= MLX4_MAX_SGE); 597 for (i = 0; i < device_attr.phys_port_cnt; i++) { 598 uint32_t port = i + 1; /* ports are indexed from one */ 599 struct ibv_context *ctx = NULL; 600 struct ibv_port_attr port_attr; 601 struct ibv_pd *pd = NULL; 602 struct mlx4_priv *priv = NULL; 603 struct rte_eth_dev *eth_dev = NULL; 604 struct ether_addr mac; 605 606 /* If port is not enabled, skip. */ 607 if (!(conf.ports.enabled & (1 << i))) 608 continue; 609 DEBUG("using port %u", port); 610 ctx = mlx4_glue->open_device(ibv_dev); 611 if (ctx == NULL) { 612 err = ENODEV; 613 goto port_error; 614 } 615 /* Check port status. */ 616 err = mlx4_glue->query_port(ctx, port, &port_attr); 617 if (err) { 618 err = ENODEV; 619 ERROR("port query failed: %s", strerror(err)); 620 goto port_error; 621 } 622 if (port_attr.link_layer != IBV_LINK_LAYER_ETHERNET) { 623 err = ENOTSUP; 624 ERROR("port %d is not configured in Ethernet mode", 625 port); 626 goto port_error; 627 } 628 if (port_attr.state != IBV_PORT_ACTIVE) 629 DEBUG("port %d is not active: \"%s\" (%d)", 630 port, mlx4_glue->port_state_str(port_attr.state), 631 port_attr.state); 632 /* Make asynchronous FD non-blocking to handle interrupts. */ 633 err = mlx4_fd_set_non_blocking(ctx->async_fd); 634 if (err) { 635 ERROR("cannot make asynchronous FD non-blocking: %s", 636 strerror(err)); 637 goto port_error; 638 } 639 /* Allocate protection domain. */ 640 pd = mlx4_glue->alloc_pd(ctx); 641 if (pd == NULL) { 642 err = ENOMEM; 643 ERROR("PD allocation failure"); 644 goto port_error; 645 } 646 /* from rte_ethdev.c */ 647 priv = rte_zmalloc("ethdev private structure", 648 sizeof(*priv), 649 RTE_CACHE_LINE_SIZE); 650 if (priv == NULL) { 651 err = ENOMEM; 652 ERROR("priv allocation failure"); 653 goto port_error; 654 } 655 priv->ctx = ctx; 656 priv->device_attr = device_attr; 657 priv->port = port; 658 priv->pd = pd; 659 priv->mtu = ETHER_MTU; 660 priv->vf = vf; 661 priv->hw_csum = !!(device_attr.device_cap_flags & 662 IBV_DEVICE_RAW_IP_CSUM); 663 DEBUG("checksum offloading is %ssupported", 664 (priv->hw_csum ? "" : "not ")); 665 /* Only ConnectX-3 Pro supports tunneling. */ 666 priv->hw_csum_l2tun = 667 priv->hw_csum && 668 (device_attr.vendor_part_id == 669 PCI_DEVICE_ID_MELLANOX_CONNECTX3PRO); 670 DEBUG("L2 tunnel checksum offloads are %ssupported", 671 priv->hw_csum_l2tun ? "" : "not "); 672 priv->hw_rss_sup = mlx4_hw_rss_sup(priv->ctx, priv->pd, 673 &device_attr_ex); 674 DEBUG("supported RSS hash fields mask: %016" PRIx64, 675 priv->hw_rss_sup); 676 priv->hw_rss_max_qps = 677 device_attr_ex.rss_caps.max_rwq_indirection_table_size; 678 DEBUG("MAX RSS queues %d", priv->hw_rss_max_qps); 679 priv->hw_fcs_strip = !!(device_attr_ex.raw_packet_caps & 680 IBV_RAW_PACKET_CAP_SCATTER_FCS); 681 DEBUG("FCS stripping toggling is %ssupported", 682 priv->hw_fcs_strip ? "" : "not "); 683 priv->tso = 684 ((device_attr_ex.tso_caps.max_tso > 0) && 685 (device_attr_ex.tso_caps.supported_qpts & 686 (1 << IBV_QPT_RAW_PACKET))); 687 if (priv->tso) 688 priv->tso_max_payload_sz = 689 device_attr_ex.tso_caps.max_tso; 690 DEBUG("TSO is %ssupported", 691 priv->tso ? "" : "not "); 692 /* Configure the first MAC address by default. */ 693 err = mlx4_get_mac(priv, &mac.addr_bytes); 694 if (err) { 695 ERROR("cannot get MAC address, is mlx4_en loaded?" 696 " (error: %s)", strerror(err)); 697 goto port_error; 698 } 699 INFO("port %u MAC address is %02x:%02x:%02x:%02x:%02x:%02x", 700 priv->port, 701 mac.addr_bytes[0], mac.addr_bytes[1], 702 mac.addr_bytes[2], mac.addr_bytes[3], 703 mac.addr_bytes[4], mac.addr_bytes[5]); 704 /* Register MAC address. */ 705 priv->mac[0] = mac; 706 #ifndef NDEBUG 707 { 708 char ifname[IF_NAMESIZE]; 709 710 if (mlx4_get_ifname(priv, &ifname) == 0) 711 DEBUG("port %u ifname is \"%s\"", 712 priv->port, ifname); 713 else 714 DEBUG("port %u ifname is unknown", priv->port); 715 } 716 #endif 717 /* Get actual MTU if possible. */ 718 mlx4_mtu_get(priv, &priv->mtu); 719 DEBUG("port %u MTU is %u", priv->port, priv->mtu); 720 /* from rte_ethdev.c */ 721 { 722 char name[RTE_ETH_NAME_MAX_LEN]; 723 724 snprintf(name, sizeof(name), "%s port %u", 725 mlx4_glue->get_device_name(ibv_dev), port); 726 eth_dev = rte_eth_dev_allocate(name); 727 } 728 if (eth_dev == NULL) { 729 err = ENOMEM; 730 ERROR("can not allocate rte ethdev"); 731 goto port_error; 732 } 733 eth_dev->data->dev_private = priv; 734 eth_dev->data->mac_addrs = priv->mac; 735 eth_dev->device = &pci_dev->device; 736 rte_eth_copy_pci_info(eth_dev, pci_dev); 737 /* Initialize local interrupt handle for current port. */ 738 priv->intr_handle = (struct rte_intr_handle){ 739 .fd = -1, 740 .type = RTE_INTR_HANDLE_EXT, 741 }; 742 /* 743 * Override ethdev interrupt handle pointer with private 744 * handle instead of that of the parent PCI device used by 745 * default. This prevents it from being shared between all 746 * ports of the same PCI device since each of them is 747 * associated its own Verbs context. 748 * 749 * Rx interrupts in particular require this as the PMD has 750 * no control over the registration of queue interrupts 751 * besides setting up eth_dev->intr_handle, the rest is 752 * handled by rte_intr_rx_ctl(). 753 */ 754 eth_dev->intr_handle = &priv->intr_handle; 755 priv->dev_data = eth_dev->data; 756 eth_dev->dev_ops = &mlx4_dev_ops; 757 /* Bring Ethernet device up. */ 758 DEBUG("forcing Ethernet interface up"); 759 mlx4_dev_set_link_up(eth_dev); 760 /* Update link status once if waiting for LSC. */ 761 if (eth_dev->data->dev_flags & RTE_ETH_DEV_INTR_LSC) 762 mlx4_link_update(eth_dev, 0); 763 /* 764 * Once the device is added to the list of memory event 765 * callback, its global MR cache table cannot be expanded 766 * on the fly because of deadlock. If it overflows, lookup 767 * should be done by searching MR list linearly, which is slow. 768 */ 769 err = mlx4_mr_btree_init(&priv->mr.cache, 770 MLX4_MR_BTREE_CACHE_N * 2, 771 eth_dev->device->numa_node); 772 if (err) { 773 /* rte_errno is already set. */ 774 goto port_error; 775 } 776 /* Add device to memory callback list. */ 777 rte_rwlock_write_lock(&mlx4_mem_event_rwlock); 778 LIST_INSERT_HEAD(&mlx4_mem_event_cb_list, priv, mem_event_cb); 779 rte_rwlock_write_unlock(&mlx4_mem_event_rwlock); 780 rte_eth_dev_probing_finish(eth_dev); 781 continue; 782 port_error: 783 rte_free(priv); 784 if (eth_dev != NULL) 785 eth_dev->data->dev_private = NULL; 786 if (pd) 787 claim_zero(mlx4_glue->dealloc_pd(pd)); 788 if (ctx) 789 claim_zero(mlx4_glue->close_device(ctx)); 790 if (eth_dev != NULL) { 791 /* mac_addrs must not be freed because part of dev_private */ 792 eth_dev->data->mac_addrs = NULL; 793 rte_eth_dev_release_port(eth_dev); 794 } 795 break; 796 } 797 /* 798 * XXX if something went wrong in the loop above, there is a resource 799 * leak (ctx, pd, priv, dpdk ethdev) but we can do nothing about it as 800 * long as the dpdk does not provide a way to deallocate a ethdev and a 801 * way to enumerate the registered ethdevs to free the previous ones. 802 */ 803 error: 804 if (attr_ctx) 805 claim_zero(mlx4_glue->close_device(attr_ctx)); 806 if (list) 807 mlx4_glue->free_device_list(list); 808 if (err) 809 rte_errno = err; 810 return -err; 811 } 812 813 static const struct rte_pci_id mlx4_pci_id_map[] = { 814 { 815 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX, 816 PCI_DEVICE_ID_MELLANOX_CONNECTX3) 817 }, 818 { 819 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX, 820 PCI_DEVICE_ID_MELLANOX_CONNECTX3PRO) 821 }, 822 { 823 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX, 824 PCI_DEVICE_ID_MELLANOX_CONNECTX3VF) 825 }, 826 { 827 .vendor_id = 0 828 } 829 }; 830 831 static struct rte_pci_driver mlx4_driver = { 832 .driver = { 833 .name = MLX4_DRIVER_NAME 834 }, 835 .id_table = mlx4_pci_id_map, 836 .probe = mlx4_pci_probe, 837 .drv_flags = RTE_PCI_DRV_INTR_LSC | 838 RTE_PCI_DRV_INTR_RMV, 839 }; 840 841 #ifdef RTE_LIBRTE_MLX4_DLOPEN_DEPS 842 843 /** 844 * Suffix RTE_EAL_PMD_PATH with "-glue". 845 * 846 * This function performs a sanity check on RTE_EAL_PMD_PATH before 847 * suffixing its last component. 848 * 849 * @param buf[out] 850 * Output buffer, should be large enough otherwise NULL is returned. 851 * @param size 852 * Size of @p out. 853 * 854 * @return 855 * Pointer to @p buf or @p NULL in case suffix cannot be appended. 856 */ 857 static char * 858 mlx4_glue_path(char *buf, size_t size) 859 { 860 static const char *const bad[] = { "/", ".", "..", NULL }; 861 const char *path = RTE_EAL_PMD_PATH; 862 size_t len = strlen(path); 863 size_t off; 864 int i; 865 866 while (len && path[len - 1] == '/') 867 --len; 868 for (off = len; off && path[off - 1] != '/'; --off) 869 ; 870 for (i = 0; bad[i]; ++i) 871 if (!strncmp(path + off, bad[i], (int)(len - off))) 872 goto error; 873 i = snprintf(buf, size, "%.*s-glue", (int)len, path); 874 if (i == -1 || (size_t)i >= size) 875 goto error; 876 return buf; 877 error: 878 ERROR("unable to append \"-glue\" to last component of" 879 " RTE_EAL_PMD_PATH (\"" RTE_EAL_PMD_PATH "\")," 880 " please re-configure DPDK"); 881 return NULL; 882 } 883 884 /** 885 * Initialization routine for run-time dependency on rdma-core. 886 */ 887 static int 888 mlx4_glue_init(void) 889 { 890 char glue_path[sizeof(RTE_EAL_PMD_PATH) - 1 + sizeof("-glue")]; 891 const char *path[] = { 892 /* 893 * A basic security check is necessary before trusting 894 * MLX4_GLUE_PATH, which may override RTE_EAL_PMD_PATH. 895 */ 896 (geteuid() == getuid() && getegid() == getgid() ? 897 getenv("MLX4_GLUE_PATH") : NULL), 898 /* 899 * When RTE_EAL_PMD_PATH is set, use its glue-suffixed 900 * variant, otherwise let dlopen() look up libraries on its 901 * own. 902 */ 903 (*RTE_EAL_PMD_PATH ? 904 mlx4_glue_path(glue_path, sizeof(glue_path)) : ""), 905 }; 906 unsigned int i = 0; 907 void *handle = NULL; 908 void **sym; 909 const char *dlmsg; 910 911 while (!handle && i != RTE_DIM(path)) { 912 const char *end; 913 size_t len; 914 int ret; 915 916 if (!path[i]) { 917 ++i; 918 continue; 919 } 920 end = strpbrk(path[i], ":;"); 921 if (!end) 922 end = path[i] + strlen(path[i]); 923 len = end - path[i]; 924 ret = 0; 925 do { 926 char name[ret + 1]; 927 928 ret = snprintf(name, sizeof(name), "%.*s%s" MLX4_GLUE, 929 (int)len, path[i], 930 (!len || *(end - 1) == '/') ? "" : "/"); 931 if (ret == -1) 932 break; 933 if (sizeof(name) != (size_t)ret + 1) 934 continue; 935 DEBUG("looking for rdma-core glue as \"%s\"", name); 936 handle = dlopen(name, RTLD_LAZY); 937 break; 938 } while (1); 939 path[i] = end + 1; 940 if (!*end) 941 ++i; 942 } 943 if (!handle) { 944 rte_errno = EINVAL; 945 dlmsg = dlerror(); 946 if (dlmsg) 947 WARN("cannot load glue library: %s", dlmsg); 948 goto glue_error; 949 } 950 sym = dlsym(handle, "mlx4_glue"); 951 if (!sym || !*sym) { 952 rte_errno = EINVAL; 953 dlmsg = dlerror(); 954 if (dlmsg) 955 ERROR("cannot resolve glue symbol: %s", dlmsg); 956 goto glue_error; 957 } 958 mlx4_glue = *sym; 959 return 0; 960 glue_error: 961 if (handle) 962 dlclose(handle); 963 WARN("cannot initialize PMD due to missing run-time" 964 " dependency on rdma-core libraries (libibverbs," 965 " libmlx4)"); 966 return -rte_errno; 967 } 968 969 #endif 970 971 /** 972 * Driver initialization routine. 973 */ 974 RTE_INIT(rte_mlx4_pmd_init) 975 { 976 /* 977 * MLX4_DEVICE_FATAL_CLEANUP tells ibv_destroy functions we 978 * want to get success errno value in case of calling them 979 * when the device was removed. 980 */ 981 setenv("MLX4_DEVICE_FATAL_CLEANUP", "1", 1); 982 /* 983 * RDMAV_HUGEPAGES_SAFE tells ibv_fork_init() we intend to use 984 * huge pages. Calling ibv_fork_init() during init allows 985 * applications to use fork() safely for purposes other than 986 * using this PMD, which is not supported in forked processes. 987 */ 988 setenv("RDMAV_HUGEPAGES_SAFE", "1", 1); 989 #ifdef RTE_LIBRTE_MLX4_DLOPEN_DEPS 990 if (mlx4_glue_init()) 991 return; 992 assert(mlx4_glue); 993 #endif 994 #ifndef NDEBUG 995 /* Glue structure must not contain any NULL pointers. */ 996 { 997 unsigned int i; 998 999 for (i = 0; i != sizeof(*mlx4_glue) / sizeof(void *); ++i) 1000 assert(((const void *const *)mlx4_glue)[i]); 1001 } 1002 #endif 1003 if (strcmp(mlx4_glue->version, MLX4_GLUE_VERSION)) { 1004 ERROR("rdma-core glue \"%s\" mismatch: \"%s\" is required", 1005 mlx4_glue->version, MLX4_GLUE_VERSION); 1006 return; 1007 } 1008 mlx4_glue->fork_init(); 1009 rte_pci_register(&mlx4_driver); 1010 rte_mem_event_callback_register("MLX4_MEM_EVENT_CB", 1011 mlx4_mr_mem_event_cb, NULL); 1012 } 1013 1014 RTE_PMD_EXPORT_NAME(net_mlx4, __COUNTER__); 1015 RTE_PMD_REGISTER_PCI_TABLE(net_mlx4, mlx4_pci_id_map); 1016 RTE_PMD_REGISTER_KMOD_DEP(net_mlx4, 1017 "* ib_uverbs & mlx4_en & mlx4_core & mlx4_ib"); 1018