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 <unistd.h> 37 #include <stdint.h> 38 #include <stdio.h> 39 #include <string.h> 40 #include <stdlib.h> 41 #include <errno.h> 42 #include <dirent.h> 43 #include <net/if.h> 44 #include <sys/ioctl.h> 45 #include <sys/socket.h> 46 #include <netinet/in.h> 47 #include <linux/ethtool.h> 48 #include <linux/sockios.h> 49 #include <fcntl.h> 50 51 /* DPDK headers don't like -pedantic. */ 52 #ifdef PEDANTIC 53 #pragma GCC diagnostic ignored "-pedantic" 54 #endif 55 #include <rte_atomic.h> 56 #include <rte_ethdev.h> 57 #include <rte_mbuf.h> 58 #include <rte_common.h> 59 #include <rte_interrupts.h> 60 #include <rte_alarm.h> 61 #include <rte_malloc.h> 62 #ifdef PEDANTIC 63 #pragma GCC diagnostic error "-pedantic" 64 #endif 65 66 #include "mlx5.h" 67 #include "mlx5_rxtx.h" 68 #include "mlx5_utils.h" 69 70 /** 71 * Return private structure associated with an Ethernet device. 72 * 73 * @param dev 74 * Pointer to Ethernet device structure. 75 * 76 * @return 77 * Pointer to private structure. 78 */ 79 struct priv * 80 mlx5_get_priv(struct rte_eth_dev *dev) 81 { 82 struct mlx5_secondary_data *sd; 83 84 if (!mlx5_is_secondary()) 85 return dev->data->dev_private; 86 sd = &mlx5_secondary_data[dev->data->port_id]; 87 return sd->data.dev_private; 88 } 89 90 /** 91 * Check if running as a secondary process. 92 * 93 * @return 94 * Nonzero if running as a secondary process. 95 */ 96 inline int 97 mlx5_is_secondary(void) 98 { 99 return rte_eal_process_type() != RTE_PROC_PRIMARY; 100 } 101 102 /** 103 * Get interface name from private structure. 104 * 105 * @param[in] priv 106 * Pointer to private structure. 107 * @param[out] ifname 108 * Interface name output buffer. 109 * 110 * @return 111 * 0 on success, -1 on failure and errno is set. 112 */ 113 int 114 priv_get_ifname(const struct priv *priv, char (*ifname)[IF_NAMESIZE]) 115 { 116 DIR *dir; 117 struct dirent *dent; 118 unsigned int dev_type = 0; 119 unsigned int dev_port_prev = ~0u; 120 char match[IF_NAMESIZE] = ""; 121 122 { 123 MKSTR(path, "%s/device/net", priv->ctx->device->ibdev_path); 124 125 dir = opendir(path); 126 if (dir == NULL) 127 return -1; 128 } 129 while ((dent = readdir(dir)) != NULL) { 130 char *name = dent->d_name; 131 FILE *file; 132 unsigned int dev_port; 133 int r; 134 135 if ((name[0] == '.') && 136 ((name[1] == '\0') || 137 ((name[1] == '.') && (name[2] == '\0')))) 138 continue; 139 140 MKSTR(path, "%s/device/net/%s/%s", 141 priv->ctx->device->ibdev_path, name, 142 (dev_type ? "dev_id" : "dev_port")); 143 144 file = fopen(path, "rb"); 145 if (file == NULL) { 146 if (errno != ENOENT) 147 continue; 148 /* 149 * Switch to dev_id when dev_port does not exist as 150 * is the case with Linux kernel versions < 3.15. 151 */ 152 try_dev_id: 153 match[0] = '\0'; 154 if (dev_type) 155 break; 156 dev_type = 1; 157 dev_port_prev = ~0u; 158 rewinddir(dir); 159 continue; 160 } 161 r = fscanf(file, (dev_type ? "%x" : "%u"), &dev_port); 162 fclose(file); 163 if (r != 1) 164 continue; 165 /* 166 * Switch to dev_id when dev_port returns the same value for 167 * all ports. May happen when using a MOFED release older than 168 * 3.0 with a Linux kernel >= 3.15. 169 */ 170 if (dev_port == dev_port_prev) 171 goto try_dev_id; 172 dev_port_prev = dev_port; 173 if (dev_port == (priv->port - 1u)) 174 snprintf(match, sizeof(match), "%s", name); 175 } 176 closedir(dir); 177 if (match[0] == '\0') 178 return -1; 179 strncpy(*ifname, match, sizeof(*ifname)); 180 return 0; 181 } 182 183 /** 184 * Read from sysfs entry. 185 * 186 * @param[in] priv 187 * Pointer to private structure. 188 * @param[in] entry 189 * Entry name relative to sysfs path. 190 * @param[out] buf 191 * Data output buffer. 192 * @param size 193 * Buffer size. 194 * 195 * @return 196 * 0 on success, -1 on failure and errno is set. 197 */ 198 static int 199 priv_sysfs_read(const struct priv *priv, const char *entry, 200 char *buf, size_t size) 201 { 202 char ifname[IF_NAMESIZE]; 203 FILE *file; 204 int ret; 205 int err; 206 207 if (priv_get_ifname(priv, &ifname)) 208 return -1; 209 210 MKSTR(path, "%s/device/net/%s/%s", priv->ctx->device->ibdev_path, 211 ifname, entry); 212 213 file = fopen(path, "rb"); 214 if (file == NULL) 215 return -1; 216 ret = fread(buf, 1, size, file); 217 err = errno; 218 if (((size_t)ret < size) && (ferror(file))) 219 ret = -1; 220 else 221 ret = size; 222 fclose(file); 223 errno = err; 224 return ret; 225 } 226 227 /** 228 * Write to sysfs entry. 229 * 230 * @param[in] priv 231 * Pointer to private structure. 232 * @param[in] entry 233 * Entry name relative to sysfs path. 234 * @param[in] buf 235 * Data buffer. 236 * @param size 237 * Buffer size. 238 * 239 * @return 240 * 0 on success, -1 on failure and errno is set. 241 */ 242 static int 243 priv_sysfs_write(const struct priv *priv, const char *entry, 244 char *buf, size_t size) 245 { 246 char ifname[IF_NAMESIZE]; 247 FILE *file; 248 int ret; 249 int err; 250 251 if (priv_get_ifname(priv, &ifname)) 252 return -1; 253 254 MKSTR(path, "%s/device/net/%s/%s", priv->ctx->device->ibdev_path, 255 ifname, entry); 256 257 file = fopen(path, "wb"); 258 if (file == NULL) 259 return -1; 260 ret = fwrite(buf, 1, size, file); 261 err = errno; 262 if (((size_t)ret < size) || (ferror(file))) 263 ret = -1; 264 else 265 ret = size; 266 fclose(file); 267 errno = err; 268 return ret; 269 } 270 271 /** 272 * Get unsigned long sysfs property. 273 * 274 * @param priv 275 * Pointer to private structure. 276 * @param[in] name 277 * Entry name relative to sysfs path. 278 * @param[out] value 279 * Value output buffer. 280 * 281 * @return 282 * 0 on success, -1 on failure and errno is set. 283 */ 284 static int 285 priv_get_sysfs_ulong(struct priv *priv, const char *name, unsigned long *value) 286 { 287 int ret; 288 unsigned long value_ret; 289 char value_str[32]; 290 291 ret = priv_sysfs_read(priv, name, value_str, (sizeof(value_str) - 1)); 292 if (ret == -1) { 293 DEBUG("cannot read %s value from sysfs: %s", 294 name, strerror(errno)); 295 return -1; 296 } 297 value_str[ret] = '\0'; 298 errno = 0; 299 value_ret = strtoul(value_str, NULL, 0); 300 if (errno) { 301 DEBUG("invalid %s value `%s': %s", name, value_str, 302 strerror(errno)); 303 return -1; 304 } 305 *value = value_ret; 306 return 0; 307 } 308 309 /** 310 * Set unsigned long sysfs property. 311 * 312 * @param priv 313 * Pointer to private structure. 314 * @param[in] name 315 * Entry name relative to sysfs path. 316 * @param value 317 * Value to set. 318 * 319 * @return 320 * 0 on success, -1 on failure and errno is set. 321 */ 322 static int 323 priv_set_sysfs_ulong(struct priv *priv, const char *name, unsigned long value) 324 { 325 int ret; 326 MKSTR(value_str, "%lu", value); 327 328 ret = priv_sysfs_write(priv, name, value_str, (sizeof(value_str) - 1)); 329 if (ret == -1) { 330 DEBUG("cannot write %s `%s' (%lu) to sysfs: %s", 331 name, value_str, value, strerror(errno)); 332 return -1; 333 } 334 return 0; 335 } 336 337 /** 338 * Perform ifreq ioctl() on associated Ethernet device. 339 * 340 * @param[in] priv 341 * Pointer to private structure. 342 * @param req 343 * Request number to pass to ioctl(). 344 * @param[out] ifr 345 * Interface request structure output buffer. 346 * 347 * @return 348 * 0 on success, -1 on failure and errno is set. 349 */ 350 int 351 priv_ifreq(const struct priv *priv, int req, struct ifreq *ifr) 352 { 353 int sock = socket(PF_INET, SOCK_DGRAM, IPPROTO_IP); 354 int ret = -1; 355 356 if (sock == -1) 357 return ret; 358 if (priv_get_ifname(priv, &ifr->ifr_name) == 0) 359 ret = ioctl(sock, req, ifr); 360 close(sock); 361 return ret; 362 } 363 364 /** 365 * Return the number of active VFs for the current device. 366 * 367 * @param[in] priv 368 * Pointer to private structure. 369 * @param[out] num_vfs 370 * Number of active VFs. 371 * 372 * @return 373 * 0 on success, -1 on failure and errno is set. 374 */ 375 int 376 priv_get_num_vfs(struct priv *priv, uint16_t *num_vfs) 377 { 378 /* The sysfs entry name depends on the operating system. */ 379 const char **name = (const char *[]){ 380 "device/sriov_numvfs", 381 "device/mlx5_num_vfs", 382 NULL, 383 }; 384 int ret; 385 386 do { 387 unsigned long ulong_num_vfs; 388 389 ret = priv_get_sysfs_ulong(priv, *name, &ulong_num_vfs); 390 if (!ret) 391 *num_vfs = ulong_num_vfs; 392 } while (*(++name) && ret); 393 return ret; 394 } 395 396 /** 397 * Get device MTU. 398 * 399 * @param priv 400 * Pointer to private structure. 401 * @param[out] mtu 402 * MTU value output buffer. 403 * 404 * @return 405 * 0 on success, -1 on failure and errno is set. 406 */ 407 int 408 priv_get_mtu(struct priv *priv, uint16_t *mtu) 409 { 410 unsigned long ulong_mtu; 411 412 if (priv_get_sysfs_ulong(priv, "mtu", &ulong_mtu) == -1) 413 return -1; 414 *mtu = ulong_mtu; 415 return 0; 416 } 417 418 /** 419 * Set device MTU. 420 * 421 * @param priv 422 * Pointer to private structure. 423 * @param mtu 424 * MTU value to set. 425 * 426 * @return 427 * 0 on success, -1 on failure and errno is set. 428 */ 429 static int 430 priv_set_mtu(struct priv *priv, uint16_t mtu) 431 { 432 uint16_t new_mtu; 433 434 if (priv_set_sysfs_ulong(priv, "mtu", mtu) || 435 priv_get_mtu(priv, &new_mtu)) 436 return -1; 437 if (new_mtu == mtu) 438 return 0; 439 errno = EINVAL; 440 return -1; 441 } 442 443 /** 444 * Set device flags. 445 * 446 * @param priv 447 * Pointer to private structure. 448 * @param keep 449 * Bitmask for flags that must remain untouched. 450 * @param flags 451 * Bitmask for flags to modify. 452 * 453 * @return 454 * 0 on success, -1 on failure and errno is set. 455 */ 456 int 457 priv_set_flags(struct priv *priv, unsigned int keep, unsigned int flags) 458 { 459 unsigned long tmp; 460 461 if (priv_get_sysfs_ulong(priv, "flags", &tmp) == -1) 462 return -1; 463 tmp &= keep; 464 tmp |= flags; 465 return priv_set_sysfs_ulong(priv, "flags", tmp); 466 } 467 468 /** 469 * Ethernet device configuration. 470 * 471 * Prepare the driver for a given number of TX and RX queues. 472 * 473 * @param dev 474 * Pointer to Ethernet device structure. 475 * 476 * @return 477 * 0 on success, errno value on failure. 478 */ 479 static int 480 dev_configure(struct rte_eth_dev *dev) 481 { 482 struct priv *priv = dev->data->dev_private; 483 unsigned int rxqs_n = dev->data->nb_rx_queues; 484 unsigned int txqs_n = dev->data->nb_tx_queues; 485 unsigned int i; 486 unsigned int j; 487 unsigned int reta_idx_n; 488 489 priv->rss_hf = dev->data->dev_conf.rx_adv_conf.rss_conf.rss_hf; 490 priv->rxqs = (void *)dev->data->rx_queues; 491 priv->txqs = (void *)dev->data->tx_queues; 492 if (txqs_n != priv->txqs_n) { 493 INFO("%p: TX queues number update: %u -> %u", 494 (void *)dev, priv->txqs_n, txqs_n); 495 priv->txqs_n = txqs_n; 496 } 497 if (rxqs_n > priv->ind_table_max_size) { 498 ERROR("cannot handle this many RX queues (%u)", rxqs_n); 499 return EINVAL; 500 } 501 if (rxqs_n == priv->rxqs_n) 502 return 0; 503 INFO("%p: RX queues number update: %u -> %u", 504 (void *)dev, priv->rxqs_n, rxqs_n); 505 priv->rxqs_n = rxqs_n; 506 /* If the requested number of RX queues is not a power of two, use the 507 * maximum indirection table size for better balancing. 508 * The result is always rounded to the next power of two. */ 509 reta_idx_n = (1 << log2above((rxqs_n & (rxqs_n - 1)) ? 510 priv->ind_table_max_size : 511 rxqs_n)); 512 if (priv_rss_reta_index_resize(priv, reta_idx_n)) 513 return ENOMEM; 514 /* When the number of RX queues is not a power of two, the remaining 515 * table entries are padded with reused WQs and hashes are not spread 516 * uniformly. */ 517 for (i = 0, j = 0; (i != reta_idx_n); ++i) { 518 (*priv->reta_idx)[i] = j; 519 if (++j == rxqs_n) 520 j = 0; 521 } 522 return 0; 523 } 524 525 /** 526 * DPDK callback for Ethernet device configuration. 527 * 528 * @param dev 529 * Pointer to Ethernet device structure. 530 * 531 * @return 532 * 0 on success, negative errno value on failure. 533 */ 534 int 535 mlx5_dev_configure(struct rte_eth_dev *dev) 536 { 537 struct priv *priv = dev->data->dev_private; 538 int ret; 539 540 if (mlx5_is_secondary()) 541 return -E_RTE_SECONDARY; 542 543 priv_lock(priv); 544 ret = dev_configure(dev); 545 assert(ret >= 0); 546 priv_unlock(priv); 547 return -ret; 548 } 549 550 /** 551 * DPDK callback to get information about the device. 552 * 553 * @param dev 554 * Pointer to Ethernet device structure. 555 * @param[out] info 556 * Info structure output buffer. 557 */ 558 void 559 mlx5_dev_infos_get(struct rte_eth_dev *dev, struct rte_eth_dev_info *info) 560 { 561 struct priv *priv = mlx5_get_priv(dev); 562 unsigned int max; 563 char ifname[IF_NAMESIZE]; 564 565 priv_lock(priv); 566 /* FIXME: we should ask the device for these values. */ 567 info->min_rx_bufsize = 32; 568 info->max_rx_pktlen = 65536; 569 /* 570 * Since we need one CQ per QP, the limit is the minimum number 571 * between the two values. 572 */ 573 max = ((priv->device_attr.max_cq > priv->device_attr.max_qp) ? 574 priv->device_attr.max_qp : priv->device_attr.max_cq); 575 /* If max >= 65535 then max = 0, max_rx_queues is uint16_t. */ 576 if (max >= 65535) 577 max = 65535; 578 info->max_rx_queues = max; 579 info->max_tx_queues = max; 580 info->max_mac_addrs = RTE_DIM(priv->mac); 581 info->rx_offload_capa = 582 (priv->hw_csum ? 583 (DEV_RX_OFFLOAD_IPV4_CKSUM | 584 DEV_RX_OFFLOAD_UDP_CKSUM | 585 DEV_RX_OFFLOAD_TCP_CKSUM) : 586 0); 587 info->tx_offload_capa = DEV_TX_OFFLOAD_VLAN_INSERT; 588 if (priv->hw_csum) 589 info->tx_offload_capa |= 590 (DEV_TX_OFFLOAD_IPV4_CKSUM | 591 DEV_TX_OFFLOAD_UDP_CKSUM | 592 DEV_TX_OFFLOAD_TCP_CKSUM); 593 if (priv_get_ifname(priv, &ifname) == 0) 594 info->if_index = if_nametoindex(ifname); 595 /* FIXME: RETA update/query API expects the callee to know the size of 596 * the indirection table, for this PMD the size varies depending on 597 * the number of RX queues, it becomes impossible to find the correct 598 * size if it is not fixed. 599 * The API should be updated to solve this problem. */ 600 info->reta_size = priv->ind_table_max_size; 601 info->speed_capa = 602 ETH_LINK_SPEED_1G | 603 ETH_LINK_SPEED_10G | 604 ETH_LINK_SPEED_20G | 605 ETH_LINK_SPEED_25G | 606 ETH_LINK_SPEED_40G | 607 ETH_LINK_SPEED_50G | 608 ETH_LINK_SPEED_56G | 609 ETH_LINK_SPEED_100G; 610 priv_unlock(priv); 611 } 612 613 const uint32_t * 614 mlx5_dev_supported_ptypes_get(struct rte_eth_dev *dev) 615 { 616 static const uint32_t ptypes[] = { 617 /* refers to rxq_cq_to_pkt_type() */ 618 RTE_PTYPE_L3_IPV4, 619 RTE_PTYPE_L3_IPV6, 620 RTE_PTYPE_INNER_L3_IPV4, 621 RTE_PTYPE_INNER_L3_IPV6, 622 RTE_PTYPE_UNKNOWN 623 624 }; 625 626 if (dev->rx_pkt_burst == mlx5_rx_burst || 627 dev->rx_pkt_burst == mlx5_rx_burst_sp) 628 return ptypes; 629 return NULL; 630 } 631 632 /** 633 * DPDK callback to retrieve physical link information (unlocked version). 634 * 635 * @param dev 636 * Pointer to Ethernet device structure. 637 * @param wait_to_complete 638 * Wait for request completion (ignored). 639 */ 640 static int 641 mlx5_link_update_unlocked(struct rte_eth_dev *dev, int wait_to_complete) 642 { 643 struct priv *priv = mlx5_get_priv(dev); 644 struct ethtool_cmd edata = { 645 .cmd = ETHTOOL_GSET 646 }; 647 struct ifreq ifr; 648 struct rte_eth_link dev_link; 649 int link_speed = 0; 650 651 (void)wait_to_complete; 652 if (priv_ifreq(priv, SIOCGIFFLAGS, &ifr)) { 653 WARN("ioctl(SIOCGIFFLAGS) failed: %s", strerror(errno)); 654 return -1; 655 } 656 memset(&dev_link, 0, sizeof(dev_link)); 657 dev_link.link_status = ((ifr.ifr_flags & IFF_UP) && 658 (ifr.ifr_flags & IFF_RUNNING)); 659 ifr.ifr_data = (void *)&edata; 660 if (priv_ifreq(priv, SIOCETHTOOL, &ifr)) { 661 WARN("ioctl(SIOCETHTOOL, ETHTOOL_GSET) failed: %s", 662 strerror(errno)); 663 return -1; 664 } 665 link_speed = ethtool_cmd_speed(&edata); 666 if (link_speed == -1) 667 dev_link.link_speed = 0; 668 else 669 dev_link.link_speed = link_speed; 670 dev_link.link_duplex = ((edata.duplex == DUPLEX_HALF) ? 671 ETH_LINK_HALF_DUPLEX : ETH_LINK_FULL_DUPLEX); 672 dev_link.link_autoneg = !(dev->data->dev_conf.link_speeds & 673 ETH_LINK_SPEED_FIXED); 674 if (memcmp(&dev_link, &dev->data->dev_link, sizeof(dev_link))) { 675 /* Link status changed. */ 676 dev->data->dev_link = dev_link; 677 return 0; 678 } 679 /* Link status is still the same. */ 680 return -1; 681 } 682 683 /** 684 * DPDK callback to retrieve physical link information. 685 * 686 * @param dev 687 * Pointer to Ethernet device structure. 688 * @param wait_to_complete 689 * Wait for request completion (ignored). 690 */ 691 int 692 mlx5_link_update(struct rte_eth_dev *dev, int wait_to_complete) 693 { 694 struct priv *priv = mlx5_get_priv(dev); 695 int ret; 696 697 priv_lock(priv); 698 ret = mlx5_link_update_unlocked(dev, wait_to_complete); 699 priv_unlock(priv); 700 return ret; 701 } 702 703 /** 704 * DPDK callback to change the MTU. 705 * 706 * Setting the MTU affects hardware MRU (packets larger than the MTU cannot be 707 * received). Use this as a hint to enable/disable scattered packets support 708 * and improve performance when not needed. 709 * Since failure is not an option, reconfiguring queues on the fly is not 710 * recommended. 711 * 712 * @param dev 713 * Pointer to Ethernet device structure. 714 * @param in_mtu 715 * New MTU. 716 * 717 * @return 718 * 0 on success, negative errno value on failure. 719 */ 720 int 721 mlx5_dev_set_mtu(struct rte_eth_dev *dev, uint16_t mtu) 722 { 723 struct priv *priv = dev->data->dev_private; 724 int ret = 0; 725 unsigned int i; 726 uint16_t (*rx_func)(void *, struct rte_mbuf **, uint16_t) = 727 mlx5_rx_burst; 728 729 if (mlx5_is_secondary()) 730 return -E_RTE_SECONDARY; 731 732 priv_lock(priv); 733 /* Set kernel interface MTU first. */ 734 if (priv_set_mtu(priv, mtu)) { 735 ret = errno; 736 WARN("cannot set port %u MTU to %u: %s", priv->port, mtu, 737 strerror(ret)); 738 goto out; 739 } else 740 DEBUG("adapter port %u MTU set to %u", priv->port, mtu); 741 priv->mtu = mtu; 742 /* Temporarily replace RX handler with a fake one, assuming it has not 743 * been copied elsewhere. */ 744 dev->rx_pkt_burst = removed_rx_burst; 745 /* Make sure everyone has left mlx5_rx_burst() and uses 746 * removed_rx_burst() instead. */ 747 rte_wmb(); 748 usleep(1000); 749 /* Reconfigure each RX queue. */ 750 for (i = 0; (i != priv->rxqs_n); ++i) { 751 struct rxq *rxq = (*priv->rxqs)[i]; 752 unsigned int mb_len; 753 unsigned int max_frame_len; 754 int sp; 755 756 if (rxq == NULL) 757 continue; 758 /* Calculate new maximum frame length according to MTU and 759 * toggle scattered support (sp) if necessary. */ 760 max_frame_len = (priv->mtu + ETHER_HDR_LEN + 761 (ETHER_MAX_VLAN_FRAME_LEN - ETHER_MAX_LEN)); 762 mb_len = rte_pktmbuf_data_room_size(rxq->mp); 763 assert(mb_len >= RTE_PKTMBUF_HEADROOM); 764 sp = (max_frame_len > (mb_len - RTE_PKTMBUF_HEADROOM)); 765 /* Provide new values to rxq_setup(). */ 766 dev->data->dev_conf.rxmode.jumbo_frame = sp; 767 dev->data->dev_conf.rxmode.max_rx_pkt_len = max_frame_len; 768 ret = rxq_rehash(dev, rxq); 769 if (ret) { 770 /* Force SP RX if that queue requires it and abort. */ 771 if (rxq->sp) 772 rx_func = mlx5_rx_burst_sp; 773 break; 774 } 775 /* Scattered burst function takes priority. */ 776 if (rxq->sp) 777 rx_func = mlx5_rx_burst_sp; 778 } 779 /* Burst functions can now be called again. */ 780 rte_wmb(); 781 dev->rx_pkt_burst = rx_func; 782 out: 783 priv_unlock(priv); 784 assert(ret >= 0); 785 return -ret; 786 } 787 788 /** 789 * DPDK callback to get flow control status. 790 * 791 * @param dev 792 * Pointer to Ethernet device structure. 793 * @param[out] fc_conf 794 * Flow control output buffer. 795 * 796 * @return 797 * 0 on success, negative errno value on failure. 798 */ 799 int 800 mlx5_dev_get_flow_ctrl(struct rte_eth_dev *dev, struct rte_eth_fc_conf *fc_conf) 801 { 802 struct priv *priv = dev->data->dev_private; 803 struct ifreq ifr; 804 struct ethtool_pauseparam ethpause = { 805 .cmd = ETHTOOL_GPAUSEPARAM 806 }; 807 int ret; 808 809 if (mlx5_is_secondary()) 810 return -E_RTE_SECONDARY; 811 812 ifr.ifr_data = (void *)ðpause; 813 priv_lock(priv); 814 if (priv_ifreq(priv, SIOCETHTOOL, &ifr)) { 815 ret = errno; 816 WARN("ioctl(SIOCETHTOOL, ETHTOOL_GPAUSEPARAM)" 817 " failed: %s", 818 strerror(ret)); 819 goto out; 820 } 821 822 fc_conf->autoneg = ethpause.autoneg; 823 if (ethpause.rx_pause && ethpause.tx_pause) 824 fc_conf->mode = RTE_FC_FULL; 825 else if (ethpause.rx_pause) 826 fc_conf->mode = RTE_FC_RX_PAUSE; 827 else if (ethpause.tx_pause) 828 fc_conf->mode = RTE_FC_TX_PAUSE; 829 else 830 fc_conf->mode = RTE_FC_NONE; 831 ret = 0; 832 833 out: 834 priv_unlock(priv); 835 assert(ret >= 0); 836 return -ret; 837 } 838 839 /** 840 * DPDK callback to modify flow control parameters. 841 * 842 * @param dev 843 * Pointer to Ethernet device structure. 844 * @param[in] fc_conf 845 * Flow control parameters. 846 * 847 * @return 848 * 0 on success, negative errno value on failure. 849 */ 850 int 851 mlx5_dev_set_flow_ctrl(struct rte_eth_dev *dev, struct rte_eth_fc_conf *fc_conf) 852 { 853 struct priv *priv = dev->data->dev_private; 854 struct ifreq ifr; 855 struct ethtool_pauseparam ethpause = { 856 .cmd = ETHTOOL_SPAUSEPARAM 857 }; 858 int ret; 859 860 if (mlx5_is_secondary()) 861 return -E_RTE_SECONDARY; 862 863 ifr.ifr_data = (void *)ðpause; 864 ethpause.autoneg = fc_conf->autoneg; 865 if (((fc_conf->mode & RTE_FC_FULL) == RTE_FC_FULL) || 866 (fc_conf->mode & RTE_FC_RX_PAUSE)) 867 ethpause.rx_pause = 1; 868 else 869 ethpause.rx_pause = 0; 870 871 if (((fc_conf->mode & RTE_FC_FULL) == RTE_FC_FULL) || 872 (fc_conf->mode & RTE_FC_TX_PAUSE)) 873 ethpause.tx_pause = 1; 874 else 875 ethpause.tx_pause = 0; 876 877 priv_lock(priv); 878 if (priv_ifreq(priv, SIOCETHTOOL, &ifr)) { 879 ret = errno; 880 WARN("ioctl(SIOCETHTOOL, ETHTOOL_SPAUSEPARAM)" 881 " failed: %s", 882 strerror(ret)); 883 goto out; 884 } 885 ret = 0; 886 887 out: 888 priv_unlock(priv); 889 assert(ret >= 0); 890 return -ret; 891 } 892 893 /** 894 * Get PCI information from struct ibv_device. 895 * 896 * @param device 897 * Pointer to Ethernet device structure. 898 * @param[out] pci_addr 899 * PCI bus address output buffer. 900 * 901 * @return 902 * 0 on success, -1 on failure and errno is set. 903 */ 904 int 905 mlx5_ibv_device_to_pci_addr(const struct ibv_device *device, 906 struct rte_pci_addr *pci_addr) 907 { 908 FILE *file; 909 char line[32]; 910 MKSTR(path, "%s/device/uevent", device->ibdev_path); 911 912 file = fopen(path, "rb"); 913 if (file == NULL) 914 return -1; 915 while (fgets(line, sizeof(line), file) == line) { 916 size_t len = strlen(line); 917 int ret; 918 919 /* Truncate long lines. */ 920 if (len == (sizeof(line) - 1)) 921 while (line[(len - 1)] != '\n') { 922 ret = fgetc(file); 923 if (ret == EOF) 924 break; 925 line[(len - 1)] = ret; 926 } 927 /* Extract information. */ 928 if (sscanf(line, 929 "PCI_SLOT_NAME=" 930 "%" SCNx16 ":%" SCNx8 ":%" SCNx8 ".%" SCNx8 "\n", 931 &pci_addr->domain, 932 &pci_addr->bus, 933 &pci_addr->devid, 934 &pci_addr->function) == 4) { 935 ret = 0; 936 break; 937 } 938 } 939 fclose(file); 940 return 0; 941 } 942 943 /** 944 * Link status handler. 945 * 946 * @param priv 947 * Pointer to private structure. 948 * @param dev 949 * Pointer to the rte_eth_dev structure. 950 * 951 * @return 952 * Nonzero if the callback process can be called immediately. 953 */ 954 static int 955 priv_dev_link_status_handler(struct priv *priv, struct rte_eth_dev *dev) 956 { 957 struct ibv_async_event event; 958 int port_change = 0; 959 int ret = 0; 960 961 /* Read all message and acknowledge them. */ 962 for (;;) { 963 if (ibv_get_async_event(priv->ctx, &event)) 964 break; 965 966 if (event.event_type == IBV_EVENT_PORT_ACTIVE || 967 event.event_type == IBV_EVENT_PORT_ERR) 968 port_change = 1; 969 else 970 DEBUG("event type %d on port %d not handled", 971 event.event_type, event.element.port_num); 972 ibv_ack_async_event(&event); 973 } 974 975 if (port_change ^ priv->pending_alarm) { 976 struct rte_eth_link *link = &dev->data->dev_link; 977 978 priv->pending_alarm = 0; 979 mlx5_link_update_unlocked(dev, 0); 980 if (((link->link_speed == 0) && link->link_status) || 981 ((link->link_speed != 0) && !link->link_status)) { 982 /* Inconsistent status, check again later. */ 983 priv->pending_alarm = 1; 984 rte_eal_alarm_set(MLX5_ALARM_TIMEOUT_US, 985 mlx5_dev_link_status_handler, 986 dev); 987 } else 988 ret = 1; 989 } 990 return ret; 991 } 992 993 /** 994 * Handle delayed link status event. 995 * 996 * @param arg 997 * Registered argument. 998 */ 999 void 1000 mlx5_dev_link_status_handler(void *arg) 1001 { 1002 struct rte_eth_dev *dev = arg; 1003 struct priv *priv = dev->data->dev_private; 1004 int ret; 1005 1006 priv_lock(priv); 1007 assert(priv->pending_alarm == 1); 1008 ret = priv_dev_link_status_handler(priv, dev); 1009 priv_unlock(priv); 1010 if (ret) 1011 _rte_eth_dev_callback_process(dev, RTE_ETH_EVENT_INTR_LSC); 1012 } 1013 1014 /** 1015 * Handle interrupts from the NIC. 1016 * 1017 * @param[in] intr_handle 1018 * Interrupt handler. 1019 * @param cb_arg 1020 * Callback argument. 1021 */ 1022 void 1023 mlx5_dev_interrupt_handler(struct rte_intr_handle *intr_handle, void *cb_arg) 1024 { 1025 struct rte_eth_dev *dev = cb_arg; 1026 struct priv *priv = dev->data->dev_private; 1027 int ret; 1028 1029 (void)intr_handle; 1030 priv_lock(priv); 1031 ret = priv_dev_link_status_handler(priv, dev); 1032 priv_unlock(priv); 1033 if (ret) 1034 _rte_eth_dev_callback_process(dev, RTE_ETH_EVENT_INTR_LSC); 1035 } 1036 1037 /** 1038 * Uninstall interrupt handler. 1039 * 1040 * @param priv 1041 * Pointer to private structure. 1042 * @param dev 1043 * Pointer to the rte_eth_dev structure. 1044 */ 1045 void 1046 priv_dev_interrupt_handler_uninstall(struct priv *priv, struct rte_eth_dev *dev) 1047 { 1048 if (!dev->data->dev_conf.intr_conf.lsc) 1049 return; 1050 rte_intr_callback_unregister(&priv->intr_handle, 1051 mlx5_dev_interrupt_handler, 1052 dev); 1053 if (priv->pending_alarm) 1054 rte_eal_alarm_cancel(mlx5_dev_link_status_handler, dev); 1055 priv->pending_alarm = 0; 1056 priv->intr_handle.fd = 0; 1057 priv->intr_handle.type = 0; 1058 } 1059 1060 /** 1061 * Install interrupt handler. 1062 * 1063 * @param priv 1064 * Pointer to private structure. 1065 * @param dev 1066 * Pointer to the rte_eth_dev structure. 1067 */ 1068 void 1069 priv_dev_interrupt_handler_install(struct priv *priv, struct rte_eth_dev *dev) 1070 { 1071 int rc, flags; 1072 1073 if (!dev->data->dev_conf.intr_conf.lsc) 1074 return; 1075 assert(priv->ctx->async_fd > 0); 1076 flags = fcntl(priv->ctx->async_fd, F_GETFL); 1077 rc = fcntl(priv->ctx->async_fd, F_SETFL, flags | O_NONBLOCK); 1078 if (rc < 0) { 1079 INFO("failed to change file descriptor async event queue"); 1080 dev->data->dev_conf.intr_conf.lsc = 0; 1081 } else { 1082 priv->intr_handle.fd = priv->ctx->async_fd; 1083 priv->intr_handle.type = RTE_INTR_HANDLE_EXT; 1084 rte_intr_callback_register(&priv->intr_handle, 1085 mlx5_dev_interrupt_handler, 1086 dev); 1087 } 1088 } 1089 1090 /** 1091 * Change the link state (UP / DOWN). 1092 * 1093 * @param dev 1094 * Pointer to Ethernet device structure. 1095 * @param up 1096 * Nonzero for link up, otherwise link down. 1097 * 1098 * @return 1099 * 0 on success, errno value on failure. 1100 */ 1101 static int 1102 priv_set_link(struct priv *priv, int up) 1103 { 1104 struct rte_eth_dev *dev = priv->dev; 1105 int err; 1106 unsigned int i; 1107 1108 if (up) { 1109 err = priv_set_flags(priv, ~IFF_UP, IFF_UP); 1110 if (err) 1111 return err; 1112 for (i = 0; i < priv->rxqs_n; i++) 1113 if ((*priv->rxqs)[i]->sp) 1114 break; 1115 /* Check if an sp queue exists. 1116 * Note: Some old frames might be received. 1117 */ 1118 if (i == priv->rxqs_n) 1119 dev->rx_pkt_burst = mlx5_rx_burst; 1120 else 1121 dev->rx_pkt_burst = mlx5_rx_burst_sp; 1122 dev->tx_pkt_burst = mlx5_tx_burst; 1123 } else { 1124 err = priv_set_flags(priv, ~IFF_UP, ~IFF_UP); 1125 if (err) 1126 return err; 1127 dev->rx_pkt_burst = removed_rx_burst; 1128 dev->tx_pkt_burst = removed_tx_burst; 1129 } 1130 return 0; 1131 } 1132 1133 /** 1134 * DPDK callback to bring the link DOWN. 1135 * 1136 * @param dev 1137 * Pointer to Ethernet device structure. 1138 * 1139 * @return 1140 * 0 on success, errno value on failure. 1141 */ 1142 int 1143 mlx5_set_link_down(struct rte_eth_dev *dev) 1144 { 1145 struct priv *priv = dev->data->dev_private; 1146 int err; 1147 1148 priv_lock(priv); 1149 err = priv_set_link(priv, 0); 1150 priv_unlock(priv); 1151 return err; 1152 } 1153 1154 /** 1155 * DPDK callback to bring the link UP. 1156 * 1157 * @param dev 1158 * Pointer to Ethernet device structure. 1159 * 1160 * @return 1161 * 0 on success, errno value on failure. 1162 */ 1163 int 1164 mlx5_set_link_up(struct rte_eth_dev *dev) 1165 { 1166 struct priv *priv = dev->data->dev_private; 1167 int err; 1168 1169 priv_lock(priv); 1170 err = priv_set_link(priv, 1); 1171 priv_unlock(priv); 1172 return err; 1173 } 1174 1175 /** 1176 * Configure secondary process queues from a private data pointer (primary 1177 * or secondary) and update burst callbacks. Can take place only once. 1178 * 1179 * All queues must have been previously created by the primary process to 1180 * avoid undefined behavior. 1181 * 1182 * @param priv 1183 * Private data pointer from either primary or secondary process. 1184 * 1185 * @return 1186 * Private data pointer from secondary process, NULL in case of error. 1187 */ 1188 struct priv * 1189 mlx5_secondary_data_setup(struct priv *priv) 1190 { 1191 unsigned int port_id = 0; 1192 struct mlx5_secondary_data *sd; 1193 void **tx_queues; 1194 void **rx_queues; 1195 unsigned int nb_tx_queues; 1196 unsigned int nb_rx_queues; 1197 unsigned int i; 1198 1199 /* priv must be valid at this point. */ 1200 assert(priv != NULL); 1201 /* priv->dev must also be valid but may point to local memory from 1202 * another process, possibly with the same address and must not 1203 * be dereferenced yet. */ 1204 assert(priv->dev != NULL); 1205 /* Determine port ID by finding out where priv comes from. */ 1206 while (1) { 1207 sd = &mlx5_secondary_data[port_id]; 1208 rte_spinlock_lock(&sd->lock); 1209 /* Primary process? */ 1210 if (sd->primary_priv == priv) 1211 break; 1212 /* Secondary process? */ 1213 if (sd->data.dev_private == priv) 1214 break; 1215 rte_spinlock_unlock(&sd->lock); 1216 if (++port_id == RTE_DIM(mlx5_secondary_data)) 1217 port_id = 0; 1218 } 1219 /* Switch to secondary private structure. If private data has already 1220 * been updated by another thread, there is nothing else to do. */ 1221 priv = sd->data.dev_private; 1222 if (priv->dev->data == &sd->data) 1223 goto end; 1224 /* Sanity checks. Secondary private structure is supposed to point 1225 * to local eth_dev, itself still pointing to the shared device data 1226 * structure allocated by the primary process. */ 1227 assert(sd->shared_dev_data != &sd->data); 1228 assert(sd->data.nb_tx_queues == 0); 1229 assert(sd->data.tx_queues == NULL); 1230 assert(sd->data.nb_rx_queues == 0); 1231 assert(sd->data.rx_queues == NULL); 1232 assert(priv != sd->primary_priv); 1233 assert(priv->dev->data == sd->shared_dev_data); 1234 assert(priv->txqs_n == 0); 1235 assert(priv->txqs == NULL); 1236 assert(priv->rxqs_n == 0); 1237 assert(priv->rxqs == NULL); 1238 nb_tx_queues = sd->shared_dev_data->nb_tx_queues; 1239 nb_rx_queues = sd->shared_dev_data->nb_rx_queues; 1240 /* Allocate local storage for queues. */ 1241 tx_queues = rte_zmalloc("secondary ethdev->tx_queues", 1242 sizeof(sd->data.tx_queues[0]) * nb_tx_queues, 1243 RTE_CACHE_LINE_SIZE); 1244 rx_queues = rte_zmalloc("secondary ethdev->rx_queues", 1245 sizeof(sd->data.rx_queues[0]) * nb_rx_queues, 1246 RTE_CACHE_LINE_SIZE); 1247 if (tx_queues == NULL || rx_queues == NULL) 1248 goto error; 1249 /* Lock to prevent control operations during setup. */ 1250 priv_lock(priv); 1251 /* TX queues. */ 1252 for (i = 0; i != nb_tx_queues; ++i) { 1253 struct txq *primary_txq = (*sd->primary_priv->txqs)[i]; 1254 struct txq *txq; 1255 1256 if (primary_txq == NULL) 1257 continue; 1258 txq = rte_calloc_socket("TXQ", 1, sizeof(*txq), 0, 1259 primary_txq->socket); 1260 if (txq != NULL) { 1261 if (txq_setup(priv->dev, 1262 txq, 1263 primary_txq->elts_n * MLX5_PMD_SGE_WR_N, 1264 primary_txq->socket, 1265 NULL) == 0) { 1266 txq->stats.idx = primary_txq->stats.idx; 1267 tx_queues[i] = txq; 1268 continue; 1269 } 1270 rte_free(txq); 1271 } 1272 while (i) { 1273 txq = tx_queues[--i]; 1274 txq_cleanup(txq); 1275 rte_free(txq); 1276 } 1277 goto error; 1278 } 1279 /* RX queues. */ 1280 for (i = 0; i != nb_rx_queues; ++i) { 1281 struct rxq *primary_rxq = (*sd->primary_priv->rxqs)[i]; 1282 1283 if (primary_rxq == NULL) 1284 continue; 1285 /* Not supported yet. */ 1286 rx_queues[i] = NULL; 1287 } 1288 /* Update everything. */ 1289 priv->txqs = (void *)tx_queues; 1290 priv->txqs_n = nb_tx_queues; 1291 priv->rxqs = (void *)rx_queues; 1292 priv->rxqs_n = nb_rx_queues; 1293 sd->data.rx_queues = rx_queues; 1294 sd->data.tx_queues = tx_queues; 1295 sd->data.nb_rx_queues = nb_rx_queues; 1296 sd->data.nb_tx_queues = nb_tx_queues; 1297 sd->data.dev_link = sd->shared_dev_data->dev_link; 1298 sd->data.mtu = sd->shared_dev_data->mtu; 1299 memcpy(sd->data.rx_queue_state, sd->shared_dev_data->rx_queue_state, 1300 sizeof(sd->data.rx_queue_state)); 1301 memcpy(sd->data.tx_queue_state, sd->shared_dev_data->tx_queue_state, 1302 sizeof(sd->data.tx_queue_state)); 1303 sd->data.dev_flags = sd->shared_dev_data->dev_flags; 1304 /* Use local data from now on. */ 1305 rte_mb(); 1306 priv->dev->data = &sd->data; 1307 rte_mb(); 1308 priv->dev->tx_pkt_burst = mlx5_tx_burst; 1309 priv->dev->rx_pkt_burst = removed_rx_burst; 1310 priv_unlock(priv); 1311 end: 1312 /* More sanity checks. */ 1313 assert(priv->dev->tx_pkt_burst == mlx5_tx_burst); 1314 assert(priv->dev->rx_pkt_burst == removed_rx_burst); 1315 assert(priv->dev->data == &sd->data); 1316 rte_spinlock_unlock(&sd->lock); 1317 return priv; 1318 error: 1319 priv_unlock(priv); 1320 rte_free(tx_queues); 1321 rte_free(rx_queues); 1322 rte_spinlock_unlock(&sd->lock); 1323 return NULL; 1324 } 1325