1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright(C) 2020 Marvell International Ltd. 3 */ 4 5 #include <arpa/inet.h> 6 #include <errno.h> 7 #include <getopt.h> 8 #include <inttypes.h> 9 #include <signal.h> 10 #include <stdarg.h> 11 #include <stdbool.h> 12 #include <stdint.h> 13 #include <stdio.h> 14 #include <stdlib.h> 15 #include <string.h> 16 #include <sys/socket.h> 17 #include <sys/types.h> 18 #include <sys/queue.h> 19 #include <unistd.h> 20 21 #include <rte_branch_prediction.h> 22 #include <rte_common.h> 23 #include <rte_cycles.h> 24 #include <rte_eal.h> 25 #include <rte_ethdev.h> 26 #include <rte_graph_worker.h> 27 #include <rte_launch.h> 28 #include <rte_lcore.h> 29 #include <rte_log.h> 30 #include <rte_mempool.h> 31 #include <rte_node_eth_api.h> 32 #include <rte_node_ip4_api.h> 33 #include <rte_per_lcore.h> 34 #include <rte_string_fns.h> 35 #include <rte_vect.h> 36 37 #include <cmdline_parse.h> 38 #include <cmdline_parse_etheraddr.h> 39 40 /* Log type */ 41 #define RTE_LOGTYPE_L3FWD_GRAPH RTE_LOGTYPE_USER1 42 43 /* 44 * Configurable number of RX/TX ring descriptors 45 */ 46 #define RTE_TEST_RX_DESC_DEFAULT 1024 47 #define RTE_TEST_TX_DESC_DEFAULT 1024 48 49 #define MAX_TX_QUEUE_PER_PORT RTE_MAX_ETHPORTS 50 #define MAX_RX_QUEUE_PER_PORT 128 51 52 #define MAX_RX_QUEUE_PER_LCORE 16 53 54 #define MAX_LCORE_PARAMS 1024 55 56 #define NB_SOCKETS 8 57 58 /* Static global variables used within this file. */ 59 static uint16_t nb_rxd = RTE_TEST_RX_DESC_DEFAULT; 60 static uint16_t nb_txd = RTE_TEST_TX_DESC_DEFAULT; 61 62 /**< Ports set in promiscuous mode off by default. */ 63 static int promiscuous_on; 64 65 static int numa_on = 1; /**< NUMA is enabled by default. */ 66 static int per_port_pool; /**< Use separate buffer pools per port; disabled */ 67 /**< by default */ 68 69 static volatile bool force_quit; 70 71 /* Ethernet addresses of ports */ 72 static uint64_t dest_eth_addr[RTE_MAX_ETHPORTS]; 73 static struct rte_ether_addr ports_eth_addr[RTE_MAX_ETHPORTS]; 74 xmm_t val_eth[RTE_MAX_ETHPORTS]; 75 76 /* Mask of enabled ports */ 77 static uint32_t enabled_port_mask; 78 79 struct lcore_rx_queue { 80 uint16_t port_id; 81 uint8_t queue_id; 82 char node_name[RTE_NODE_NAMESIZE]; 83 }; 84 85 /* Lcore conf */ 86 struct lcore_conf { 87 uint16_t n_rx_queue; 88 struct lcore_rx_queue rx_queue_list[MAX_RX_QUEUE_PER_LCORE]; 89 90 struct rte_graph *graph; 91 char name[RTE_GRAPH_NAMESIZE]; 92 rte_graph_t graph_id; 93 } __rte_cache_aligned; 94 95 static struct lcore_conf lcore_conf[RTE_MAX_LCORE]; 96 97 struct lcore_params { 98 uint16_t port_id; 99 uint8_t queue_id; 100 uint8_t lcore_id; 101 } __rte_cache_aligned; 102 103 static struct lcore_params lcore_params_array[MAX_LCORE_PARAMS]; 104 static struct lcore_params lcore_params_array_default[] = { 105 {0, 0, 2}, {0, 1, 2}, {0, 2, 2}, {1, 0, 2}, {1, 1, 2}, 106 {1, 2, 2}, {2, 0, 2}, {3, 0, 3}, {3, 1, 3}, 107 }; 108 109 static struct lcore_params *lcore_params = lcore_params_array_default; 110 static uint16_t nb_lcore_params = RTE_DIM(lcore_params_array_default); 111 112 static struct rte_eth_conf port_conf = { 113 .rxmode = { 114 .mq_mode = ETH_MQ_RX_RSS, 115 .max_rx_pkt_len = RTE_ETHER_MAX_LEN, 116 .split_hdr_size = 0, 117 }, 118 .rx_adv_conf = { 119 .rss_conf = { 120 .rss_key = NULL, 121 .rss_hf = ETH_RSS_IP, 122 }, 123 }, 124 .txmode = { 125 .mq_mode = ETH_MQ_TX_NONE, 126 }, 127 }; 128 129 static struct rte_mempool *pktmbuf_pool[RTE_MAX_ETHPORTS][NB_SOCKETS]; 130 131 static struct rte_node_ethdev_config ethdev_conf[RTE_MAX_ETHPORTS]; 132 133 struct ipv4_l3fwd_lpm_route { 134 uint32_t ip; 135 uint8_t depth; 136 uint8_t if_out; 137 }; 138 139 #define IPV4_L3FWD_LPM_NUM_ROUTES \ 140 (sizeof(ipv4_l3fwd_lpm_route_array) / \ 141 sizeof(ipv4_l3fwd_lpm_route_array[0])) 142 /* 198.18.0.0/16 are set aside for RFC2544 benchmarking. */ 143 static struct ipv4_l3fwd_lpm_route ipv4_l3fwd_lpm_route_array[] = { 144 {RTE_IPV4(198, 18, 0, 0), 24, 0}, {RTE_IPV4(198, 18, 1, 0), 24, 1}, 145 {RTE_IPV4(198, 18, 2, 0), 24, 2}, {RTE_IPV4(198, 18, 3, 0), 24, 3}, 146 {RTE_IPV4(198, 18, 4, 0), 24, 4}, {RTE_IPV4(198, 18, 5, 0), 24, 5}, 147 {RTE_IPV4(198, 18, 6, 0), 24, 6}, {RTE_IPV4(198, 18, 7, 0), 24, 7}, 148 }; 149 150 static int 151 check_lcore_params(void) 152 { 153 uint8_t queue, lcore; 154 int socketid; 155 uint16_t i; 156 157 for (i = 0; i < nb_lcore_params; ++i) { 158 queue = lcore_params[i].queue_id; 159 if (queue >= MAX_RX_QUEUE_PER_PORT) { 160 printf("Invalid queue number: %hhu\n", queue); 161 return -1; 162 } 163 lcore = lcore_params[i].lcore_id; 164 if (!rte_lcore_is_enabled(lcore)) { 165 printf("Error: lcore %hhu is not enabled in lcore mask\n", 166 lcore); 167 return -1; 168 } 169 170 if (lcore == rte_get_master_lcore()) { 171 printf("Error: lcore %u is master lcore\n", lcore); 172 return -1; 173 } 174 socketid = rte_lcore_to_socket_id(lcore); 175 if ((socketid != 0) && (numa_on == 0)) { 176 printf("Warning: lcore %hhu is on socket %d with numa off\n", 177 lcore, socketid); 178 } 179 } 180 181 return 0; 182 } 183 184 static int 185 check_port_config(void) 186 { 187 uint16_t portid; 188 uint16_t i; 189 190 for (i = 0; i < nb_lcore_params; ++i) { 191 portid = lcore_params[i].port_id; 192 if ((enabled_port_mask & (1 << portid)) == 0) { 193 printf("Port %u is not enabled in port mask\n", portid); 194 return -1; 195 } 196 if (!rte_eth_dev_is_valid_port(portid)) { 197 printf("Port %u is not present on the board\n", portid); 198 return -1; 199 } 200 } 201 202 return 0; 203 } 204 205 static uint8_t 206 get_port_n_rx_queues(const uint16_t port) 207 { 208 int queue = -1; 209 uint16_t i; 210 211 for (i = 0; i < nb_lcore_params; ++i) { 212 if (lcore_params[i].port_id == port) { 213 if (lcore_params[i].queue_id == queue + 1) 214 queue = lcore_params[i].queue_id; 215 else 216 rte_exit(EXIT_FAILURE, 217 "Queue ids of the port %d must be" 218 " in sequence and must start with 0\n", 219 lcore_params[i].port_id); 220 } 221 } 222 223 return (uint8_t)(++queue); 224 } 225 226 static int 227 init_lcore_rx_queues(void) 228 { 229 uint16_t i, nb_rx_queue; 230 uint8_t lcore; 231 232 for (i = 0; i < nb_lcore_params; ++i) { 233 lcore = lcore_params[i].lcore_id; 234 nb_rx_queue = lcore_conf[lcore].n_rx_queue; 235 if (nb_rx_queue >= MAX_RX_QUEUE_PER_LCORE) { 236 printf("Error: too many queues (%u) for lcore: %u\n", 237 (unsigned int)nb_rx_queue + 1, 238 (unsigned int)lcore); 239 return -1; 240 } 241 242 lcore_conf[lcore].rx_queue_list[nb_rx_queue].port_id = 243 lcore_params[i].port_id; 244 lcore_conf[lcore].rx_queue_list[nb_rx_queue].queue_id = 245 lcore_params[i].queue_id; 246 lcore_conf[lcore].n_rx_queue++; 247 } 248 249 return 0; 250 } 251 252 /* Display usage */ 253 static void 254 print_usage(const char *prgname) 255 { 256 fprintf(stderr, 257 "%s [EAL options] --" 258 " -p PORTMASK" 259 " [-P]" 260 " --config (port,queue,lcore)[,(port,queue,lcore)]" 261 " [--eth-dest=X,MM:MM:MM:MM:MM:MM]" 262 " [--enable-jumbo [--max-pkt-len PKTLEN]]" 263 " [--no-numa]" 264 " [--per-port-pool]\n\n" 265 266 " -p PORTMASK: Hexadecimal bitmask of ports to configure\n" 267 " -P : Enable promiscuous mode\n" 268 " --config (port,queue,lcore): Rx queue configuration\n" 269 " --eth-dest=X,MM:MM:MM:MM:MM:MM: Ethernet destination for " 270 "port X\n" 271 " --enable-jumbo: Enable jumbo frames\n" 272 " --max-pkt-len: Under the premise of enabling jumbo,\n" 273 " maximum packet length in decimal (64-9600)\n" 274 " --no-numa: Disable numa awareness\n" 275 " --per-port-pool: Use separate buffer pool per port\n\n", 276 prgname); 277 } 278 279 static int 280 parse_max_pkt_len(const char *pktlen) 281 { 282 unsigned long len; 283 char *end = NULL; 284 285 /* Parse decimal string */ 286 len = strtoul(pktlen, &end, 10); 287 if ((pktlen[0] == '\0') || (end == NULL) || (*end != '\0')) 288 return -1; 289 290 if (len == 0) 291 return -1; 292 293 return len; 294 } 295 296 static int 297 parse_portmask(const char *portmask) 298 { 299 char *end = NULL; 300 unsigned long pm; 301 302 /* Parse hexadecimal string */ 303 pm = strtoul(portmask, &end, 16); 304 if ((portmask[0] == '\0') || (end == NULL) || (*end != '\0')) 305 return 0; 306 307 return pm; 308 } 309 310 static int 311 parse_config(const char *q_arg) 312 { 313 enum fieldnames { FLD_PORT = 0, FLD_QUEUE, FLD_LCORE, _NUM_FLD }; 314 unsigned long int_fld[_NUM_FLD]; 315 const char *p, *p0 = q_arg; 316 char *str_fld[_NUM_FLD]; 317 uint32_t size; 318 char s[256]; 319 char *end; 320 int i; 321 322 nb_lcore_params = 0; 323 324 while ((p = strchr(p0, '(')) != NULL) { 325 ++p; 326 p0 = strchr(p, ')'); 327 if (p0 == NULL) 328 return -1; 329 330 size = p0 - p; 331 if (size >= sizeof(s)) 332 return -1; 333 334 memcpy(s, p, size); 335 s[size] = '\0'; 336 if (rte_strsplit(s, sizeof(s), str_fld, _NUM_FLD, ',') != 337 _NUM_FLD) 338 return -1; 339 for (i = 0; i < _NUM_FLD; i++) { 340 errno = 0; 341 int_fld[i] = strtoul(str_fld[i], &end, 0); 342 if (errno != 0 || end == str_fld[i]) 343 return -1; 344 } 345 346 if (nb_lcore_params >= MAX_LCORE_PARAMS) { 347 printf("Exceeded max number of lcore params: %hu\n", 348 nb_lcore_params); 349 return -1; 350 } 351 352 if (int_fld[FLD_PORT] >= RTE_MAX_ETHPORTS || 353 int_fld[FLD_LCORE] >= RTE_MAX_LCORE) { 354 printf("Invalid port/lcore id\n"); 355 return -1; 356 } 357 358 lcore_params_array[nb_lcore_params].port_id = 359 (uint8_t)int_fld[FLD_PORT]; 360 lcore_params_array[nb_lcore_params].queue_id = 361 (uint8_t)int_fld[FLD_QUEUE]; 362 lcore_params_array[nb_lcore_params].lcore_id = 363 (uint8_t)int_fld[FLD_LCORE]; 364 ++nb_lcore_params; 365 } 366 lcore_params = lcore_params_array; 367 368 return 0; 369 } 370 371 static void 372 parse_eth_dest(const char *optarg) 373 { 374 uint8_t c, *dest, peer_addr[6]; 375 uint16_t portid; 376 char *port_end; 377 378 errno = 0; 379 portid = strtoul(optarg, &port_end, 10); 380 if (errno != 0 || port_end == optarg || *port_end++ != ',') 381 rte_exit(EXIT_FAILURE, "Invalid eth-dest: %s", optarg); 382 if (portid >= RTE_MAX_ETHPORTS) 383 rte_exit(EXIT_FAILURE, 384 "eth-dest: port %d >= RTE_MAX_ETHPORTS(%d)\n", portid, 385 RTE_MAX_ETHPORTS); 386 387 if (cmdline_parse_etheraddr(NULL, port_end, &peer_addr, 388 sizeof(peer_addr)) < 0) 389 rte_exit(EXIT_FAILURE, "Invalid ethernet address: %s\n", 390 port_end); 391 dest = (uint8_t *)&dest_eth_addr[portid]; 392 for (c = 0; c < 6; c++) 393 dest[c] = peer_addr[c]; 394 *(uint64_t *)(val_eth + portid) = dest_eth_addr[portid]; 395 } 396 397 #define MAX_JUMBO_PKT_LEN 9600 398 #define MEMPOOL_CACHE_SIZE 256 399 400 static const char short_options[] = "p:" /* portmask */ 401 "P" /* promiscuous */ 402 ; 403 404 #define CMD_LINE_OPT_CONFIG "config" 405 #define CMD_LINE_OPT_ETH_DEST "eth-dest" 406 #define CMD_LINE_OPT_NO_NUMA "no-numa" 407 #define CMD_LINE_OPT_ENABLE_JUMBO "enable-jumbo" 408 #define CMD_LINE_OPT_PER_PORT_POOL "per-port-pool" 409 enum { 410 /* Long options mapped to a short option */ 411 412 /* First long only option value must be >= 256, so that we won't 413 * conflict with short options 414 */ 415 CMD_LINE_OPT_MIN_NUM = 256, 416 CMD_LINE_OPT_CONFIG_NUM, 417 CMD_LINE_OPT_ETH_DEST_NUM, 418 CMD_LINE_OPT_NO_NUMA_NUM, 419 CMD_LINE_OPT_ENABLE_JUMBO_NUM, 420 CMD_LINE_OPT_PARSE_PER_PORT_POOL, 421 }; 422 423 static const struct option lgopts[] = { 424 {CMD_LINE_OPT_CONFIG, 1, 0, CMD_LINE_OPT_CONFIG_NUM}, 425 {CMD_LINE_OPT_ETH_DEST, 1, 0, CMD_LINE_OPT_ETH_DEST_NUM}, 426 {CMD_LINE_OPT_NO_NUMA, 0, 0, CMD_LINE_OPT_NO_NUMA_NUM}, 427 {CMD_LINE_OPT_ENABLE_JUMBO, 0, 0, CMD_LINE_OPT_ENABLE_JUMBO_NUM}, 428 {CMD_LINE_OPT_PER_PORT_POOL, 0, 0, CMD_LINE_OPT_PARSE_PER_PORT_POOL}, 429 {NULL, 0, 0, 0}, 430 }; 431 432 /* 433 * This expression is used to calculate the number of mbufs needed 434 * depending on user input, taking into account memory for rx and 435 * tx hardware rings, cache per lcore and mtable per port per lcore. 436 * RTE_MAX is used to ensure that NB_MBUF never goes below a minimum 437 * value of 8192 438 */ 439 #define NB_MBUF(nports) \ 440 RTE_MAX((nports * nb_rx_queue * nb_rxd + \ 441 nports * nb_lcores * RTE_GRAPH_BURST_SIZE + \ 442 nports * n_tx_queue * nb_txd + \ 443 nb_lcores * MEMPOOL_CACHE_SIZE), 8192u) 444 445 /* Parse the argument given in the command line of the application */ 446 static int 447 parse_args(int argc, char **argv) 448 { 449 char *prgname = argv[0]; 450 int option_index; 451 char **argvopt; 452 int opt, ret; 453 454 argvopt = argv; 455 456 /* Error or normal output strings. */ 457 while ((opt = getopt_long(argc, argvopt, short_options, lgopts, 458 &option_index)) != EOF) { 459 460 switch (opt) { 461 /* Portmask */ 462 case 'p': 463 enabled_port_mask = parse_portmask(optarg); 464 if (enabled_port_mask == 0) { 465 fprintf(stderr, "Invalid portmask\n"); 466 print_usage(prgname); 467 return -1; 468 } 469 break; 470 471 case 'P': 472 promiscuous_on = 1; 473 break; 474 475 /* Long options */ 476 case CMD_LINE_OPT_CONFIG_NUM: 477 ret = parse_config(optarg); 478 if (ret) { 479 fprintf(stderr, "Invalid config\n"); 480 print_usage(prgname); 481 return -1; 482 } 483 break; 484 485 case CMD_LINE_OPT_ETH_DEST_NUM: 486 parse_eth_dest(optarg); 487 break; 488 489 case CMD_LINE_OPT_NO_NUMA_NUM: 490 numa_on = 0; 491 break; 492 493 case CMD_LINE_OPT_ENABLE_JUMBO_NUM: { 494 const struct option lenopts = {"max-pkt-len", 495 required_argument, 0, 0}; 496 497 port_conf.rxmode.offloads |= DEV_RX_OFFLOAD_JUMBO_FRAME; 498 port_conf.txmode.offloads |= DEV_TX_OFFLOAD_MULTI_SEGS; 499 500 /* 501 * if no max-pkt-len set, use the default 502 * value RTE_ETHER_MAX_LEN. 503 */ 504 if (getopt_long(argc, argvopt, "", &lenopts, 505 &option_index) == 0) { 506 ret = parse_max_pkt_len(optarg); 507 if (ret < 64 || ret > MAX_JUMBO_PKT_LEN) { 508 fprintf(stderr, "Invalid maximum " 509 "packet length\n"); 510 print_usage(prgname); 511 return -1; 512 } 513 port_conf.rxmode.max_rx_pkt_len = ret; 514 } 515 break; 516 } 517 518 case CMD_LINE_OPT_PARSE_PER_PORT_POOL: 519 printf("Per port buffer pool is enabled\n"); 520 per_port_pool = 1; 521 break; 522 523 default: 524 print_usage(prgname); 525 return -1; 526 } 527 } 528 529 if (optind >= 0) 530 argv[optind - 1] = prgname; 531 ret = optind - 1; 532 optind = 1; /* Reset getopt lib */ 533 534 return ret; 535 } 536 537 static void 538 print_ethaddr(const char *name, const struct rte_ether_addr *eth_addr) 539 { 540 char buf[RTE_ETHER_ADDR_FMT_SIZE]; 541 rte_ether_format_addr(buf, RTE_ETHER_ADDR_FMT_SIZE, eth_addr); 542 printf("%s%s", name, buf); 543 } 544 545 static int 546 init_mem(uint16_t portid, uint32_t nb_mbuf) 547 { 548 uint32_t lcore_id; 549 int socketid; 550 char s[64]; 551 552 for (lcore_id = 0; lcore_id < RTE_MAX_LCORE; lcore_id++) { 553 if (rte_lcore_is_enabled(lcore_id) == 0) 554 continue; 555 556 if (numa_on) 557 socketid = rte_lcore_to_socket_id(lcore_id); 558 else 559 socketid = 0; 560 561 if (socketid >= NB_SOCKETS) { 562 rte_exit(EXIT_FAILURE, 563 "Socket %d of lcore %u is out of range %d\n", 564 socketid, lcore_id, NB_SOCKETS); 565 } 566 567 if (pktmbuf_pool[portid][socketid] == NULL) { 568 snprintf(s, sizeof(s), "mbuf_pool_%d:%d", portid, 569 socketid); 570 /* Create a pool with priv size of a cacheline */ 571 pktmbuf_pool[portid][socketid] = 572 rte_pktmbuf_pool_create( 573 s, nb_mbuf, MEMPOOL_CACHE_SIZE, 574 RTE_CACHE_LINE_SIZE, 575 RTE_MBUF_DEFAULT_BUF_SIZE, socketid); 576 if (pktmbuf_pool[portid][socketid] == NULL) 577 rte_exit(EXIT_FAILURE, 578 "Cannot init mbuf pool on socket %d\n", 579 socketid); 580 else 581 printf("Allocated mbuf pool on socket %d\n", 582 socketid); 583 } 584 } 585 586 return 0; 587 } 588 589 /* Check the link status of all ports in up to 9s, and print them finally */ 590 static void 591 check_all_ports_link_status(uint32_t port_mask) 592 { 593 #define CHECK_INTERVAL 100 /* 100ms */ 594 #define MAX_CHECK_TIME 90 /* 9s (90 * 100ms) in total */ 595 uint8_t count, all_ports_up, print_flag = 0; 596 struct rte_eth_link link; 597 uint16_t portid; 598 int ret; 599 600 printf("\nChecking link status"); 601 fflush(stdout); 602 for (count = 0; count <= MAX_CHECK_TIME; count++) { 603 if (force_quit) 604 return; 605 all_ports_up = 1; 606 RTE_ETH_FOREACH_DEV(portid) 607 { 608 if (force_quit) 609 return; 610 if ((port_mask & (1 << portid)) == 0) 611 continue; 612 memset(&link, 0, sizeof(link)); 613 ret = rte_eth_link_get_nowait(portid, &link); 614 if (ret < 0) { 615 all_ports_up = 0; 616 if (print_flag == 1) 617 printf("Port %u link get failed: %s\n", 618 portid, rte_strerror(-ret)); 619 continue; 620 } 621 /* Print link status if flag set */ 622 if (print_flag == 1) { 623 if (link.link_status) 624 printf("Port%d Link Up. Speed %u Mbps " 625 "-%s\n", 626 portid, link.link_speed, 627 (link.link_duplex == 628 ETH_LINK_FULL_DUPLEX) 629 ? ("full-duplex") 630 : ("half-duplex\n")); 631 else 632 printf("Port %d Link Down\n", portid); 633 continue; 634 } 635 /* Clear all_ports_up flag if any link down */ 636 if (link.link_status == ETH_LINK_DOWN) { 637 all_ports_up = 0; 638 break; 639 } 640 } 641 /* After finally printing all link status, get out */ 642 if (print_flag == 1) 643 break; 644 645 if (all_ports_up == 0) { 646 printf("."); 647 fflush(stdout); 648 rte_delay_ms(CHECK_INTERVAL); 649 } 650 651 /* Set the print_flag if all ports up or timeout */ 652 if (all_ports_up == 1 || count == (MAX_CHECK_TIME - 1)) { 653 print_flag = 1; 654 printf("Done\n"); 655 } 656 } 657 } 658 659 static void 660 signal_handler(int signum) 661 { 662 if (signum == SIGINT || signum == SIGTERM) { 663 printf("\n\nSignal %d received, preparing to exit...\n", 664 signum); 665 force_quit = true; 666 } 667 } 668 669 static void 670 print_stats(void) 671 { 672 const char topLeft[] = {27, '[', '1', ';', '1', 'H', '\0'}; 673 const char clr[] = {27, '[', '2', 'J', '\0'}; 674 struct rte_graph_cluster_stats_param s_param; 675 struct rte_graph_cluster_stats *stats; 676 const char *pattern = "worker_*"; 677 678 /* Prepare stats object */ 679 memset(&s_param, 0, sizeof(s_param)); 680 s_param.f = stdout; 681 s_param.socket_id = SOCKET_ID_ANY; 682 s_param.graph_patterns = &pattern; 683 s_param.nb_graph_patterns = 1; 684 685 stats = rte_graph_cluster_stats_create(&s_param); 686 if (stats == NULL) 687 rte_exit(EXIT_FAILURE, "Unable to create stats object\n"); 688 689 while (!force_quit) { 690 /* Clear screen and move to top left */ 691 printf("%s%s", clr, topLeft); 692 rte_graph_cluster_stats_get(stats, 0); 693 rte_delay_ms(1E3); 694 } 695 696 rte_graph_cluster_stats_destroy(stats); 697 } 698 699 /* Main processing loop */ 700 static int 701 graph_main_loop(void *conf) 702 { 703 struct lcore_conf *qconf; 704 struct rte_graph *graph; 705 uint32_t lcore_id; 706 707 RTE_SET_USED(conf); 708 709 lcore_id = rte_lcore_id(); 710 qconf = &lcore_conf[lcore_id]; 711 graph = qconf->graph; 712 713 if (!graph) { 714 RTE_LOG(INFO, L3FWD_GRAPH, "Lcore %u has nothing to do\n", 715 lcore_id); 716 return 0; 717 } 718 719 RTE_LOG(INFO, L3FWD_GRAPH, 720 "Entering main loop on lcore %u, graph %s(%p)\n", lcore_id, 721 qconf->name, graph); 722 723 while (likely(!force_quit)) 724 rte_graph_walk(graph); 725 726 return 0; 727 } 728 729 int 730 main(int argc, char **argv) 731 { 732 /* Rewrite data of src and dst ether addr */ 733 uint8_t rewrite_data[2 * sizeof(struct rte_ether_addr)]; 734 static const char * const default_patterns[] = { 735 "ip4*", 736 "ethdev_tx-*", 737 "pkt_drop", 738 }; 739 uint8_t nb_rx_queue, queue, socketid; 740 struct rte_graph_param graph_conf; 741 struct rte_eth_dev_info dev_info; 742 uint32_t nb_ports, nb_conf = 0; 743 uint32_t n_tx_queue, nb_lcores; 744 struct rte_eth_txconf *txconf; 745 uint16_t queueid, portid, i; 746 const char **node_patterns; 747 struct lcore_conf *qconf; 748 uint16_t nb_graphs = 0; 749 uint16_t nb_patterns; 750 uint8_t rewrite_len; 751 uint32_t lcore_id; 752 int ret; 753 754 /* Init EAL */ 755 ret = rte_eal_init(argc, argv); 756 if (ret < 0) 757 rte_exit(EXIT_FAILURE, "Invalid EAL parameters\n"); 758 argc -= ret; 759 argv += ret; 760 761 force_quit = false; 762 signal(SIGINT, signal_handler); 763 signal(SIGTERM, signal_handler); 764 765 /* Pre-init dst MACs for all ports to 02:00:00:00:00:xx */ 766 for (portid = 0; portid < RTE_MAX_ETHPORTS; portid++) { 767 dest_eth_addr[portid] = 768 RTE_ETHER_LOCAL_ADMIN_ADDR + ((uint64_t)portid << 40); 769 *(uint64_t *)(val_eth + portid) = dest_eth_addr[portid]; 770 } 771 772 /* Parse application arguments (after the EAL ones) */ 773 ret = parse_args(argc, argv); 774 if (ret < 0) 775 rte_exit(EXIT_FAILURE, "Invalid L3FWD_GRAPH parameters\n"); 776 777 if (check_lcore_params() < 0) 778 rte_exit(EXIT_FAILURE, "check_lcore_params() failed\n"); 779 780 ret = init_lcore_rx_queues(); 781 if (ret < 0) 782 rte_exit(EXIT_FAILURE, "init_lcore_rx_queues() failed\n"); 783 784 if (check_port_config() < 0) 785 rte_exit(EXIT_FAILURE, "check_port_config() failed\n"); 786 787 nb_ports = rte_eth_dev_count_avail(); 788 nb_lcores = rte_lcore_count(); 789 790 /* Initialize all ports */ 791 RTE_ETH_FOREACH_DEV(portid) 792 { 793 struct rte_eth_conf local_port_conf = port_conf; 794 795 /* Skip ports that are not enabled */ 796 if ((enabled_port_mask & (1 << portid)) == 0) { 797 printf("\nSkipping disabled port %d\n", portid); 798 continue; 799 } 800 801 /* Init port */ 802 printf("Initializing port %d ... ", portid); 803 fflush(stdout); 804 805 nb_rx_queue = get_port_n_rx_queues(portid); 806 n_tx_queue = nb_lcores; 807 if (n_tx_queue > MAX_TX_QUEUE_PER_PORT) 808 n_tx_queue = MAX_TX_QUEUE_PER_PORT; 809 printf("Creating queues: nb_rxq=%d nb_txq=%u... ", 810 nb_rx_queue, n_tx_queue); 811 812 rte_eth_dev_info_get(portid, &dev_info); 813 if (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_MBUF_FAST_FREE) 814 local_port_conf.txmode.offloads |= 815 DEV_TX_OFFLOAD_MBUF_FAST_FREE; 816 817 local_port_conf.rx_adv_conf.rss_conf.rss_hf &= 818 dev_info.flow_type_rss_offloads; 819 if (local_port_conf.rx_adv_conf.rss_conf.rss_hf != 820 port_conf.rx_adv_conf.rss_conf.rss_hf) { 821 printf("Port %u modified RSS hash function based on " 822 "hardware support," 823 "requested:%#" PRIx64 " configured:%#" PRIx64 824 "\n", 825 portid, port_conf.rx_adv_conf.rss_conf.rss_hf, 826 local_port_conf.rx_adv_conf.rss_conf.rss_hf); 827 } 828 829 ret = rte_eth_dev_configure(portid, nb_rx_queue, 830 n_tx_queue, &local_port_conf); 831 if (ret < 0) 832 rte_exit(EXIT_FAILURE, 833 "Cannot configure device: err=%d, port=%d\n", 834 ret, portid); 835 836 ret = rte_eth_dev_adjust_nb_rx_tx_desc(portid, &nb_rxd, 837 &nb_txd); 838 if (ret < 0) 839 rte_exit(EXIT_FAILURE, 840 "Cannot adjust number of descriptors: err=%d, " 841 "port=%d\n", 842 ret, portid); 843 844 rte_eth_macaddr_get(portid, &ports_eth_addr[portid]); 845 print_ethaddr(" Address:", &ports_eth_addr[portid]); 846 printf(", "); 847 print_ethaddr( 848 "Destination:", 849 (const struct rte_ether_addr *)&dest_eth_addr[portid]); 850 printf(", "); 851 852 /* 853 * prepare src MACs for each port. 854 */ 855 rte_ether_addr_copy( 856 &ports_eth_addr[portid], 857 (struct rte_ether_addr *)(val_eth + portid) + 1); 858 859 /* Init memory */ 860 if (!per_port_pool) { 861 /* portid = 0; this is *not* signifying the first port, 862 * rather, it signifies that portid is ignored. 863 */ 864 ret = init_mem(0, NB_MBUF(nb_ports)); 865 } else { 866 ret = init_mem(portid, NB_MBUF(1)); 867 } 868 if (ret < 0) 869 rte_exit(EXIT_FAILURE, "init_mem() failed\n"); 870 871 /* Init one TX queue per couple (lcore,port) */ 872 queueid = 0; 873 for (lcore_id = 0; lcore_id < RTE_MAX_LCORE; lcore_id++) { 874 if (rte_lcore_is_enabled(lcore_id) == 0) 875 continue; 876 877 qconf = &lcore_conf[lcore_id]; 878 879 if (numa_on) 880 socketid = (uint8_t)rte_lcore_to_socket_id( 881 lcore_id); 882 else 883 socketid = 0; 884 885 printf("txq=%u,%d,%d ", lcore_id, queueid, socketid); 886 fflush(stdout); 887 888 txconf = &dev_info.default_txconf; 889 txconf->offloads = local_port_conf.txmode.offloads; 890 ret = rte_eth_tx_queue_setup(portid, queueid, nb_txd, 891 socketid, txconf); 892 if (ret < 0) 893 rte_exit(EXIT_FAILURE, 894 "rte_eth_tx_queue_setup: err=%d, " 895 "port=%d\n", 896 ret, portid); 897 queueid++; 898 } 899 900 /* Setup ethdev node config */ 901 ethdev_conf[nb_conf].port_id = portid; 902 ethdev_conf[nb_conf].num_rx_queues = nb_rx_queue; 903 ethdev_conf[nb_conf].num_tx_queues = n_tx_queue; 904 if (!per_port_pool) 905 ethdev_conf[nb_conf].mp = pktmbuf_pool[0]; 906 907 else 908 ethdev_conf[nb_conf].mp = pktmbuf_pool[portid]; 909 ethdev_conf[nb_conf].mp_count = NB_SOCKETS; 910 911 nb_conf++; 912 printf("\n"); 913 } 914 915 for (lcore_id = 0; lcore_id < RTE_MAX_LCORE; lcore_id++) { 916 if (rte_lcore_is_enabled(lcore_id) == 0) 917 continue; 918 qconf = &lcore_conf[lcore_id]; 919 printf("\nInitializing rx queues on lcore %u ... ", lcore_id); 920 fflush(stdout); 921 /* Init RX queues */ 922 for (queue = 0; queue < qconf->n_rx_queue; ++queue) { 923 struct rte_eth_rxconf rxq_conf; 924 925 portid = qconf->rx_queue_list[queue].port_id; 926 queueid = qconf->rx_queue_list[queue].queue_id; 927 928 if (numa_on) 929 socketid = (uint8_t)rte_lcore_to_socket_id( 930 lcore_id); 931 else 932 socketid = 0; 933 934 printf("rxq=%d,%d,%d ", portid, queueid, socketid); 935 fflush(stdout); 936 937 rte_eth_dev_info_get(portid, &dev_info); 938 rxq_conf = dev_info.default_rxconf; 939 rxq_conf.offloads = port_conf.rxmode.offloads; 940 if (!per_port_pool) 941 ret = rte_eth_rx_queue_setup( 942 portid, queueid, nb_rxd, socketid, 943 &rxq_conf, pktmbuf_pool[0][socketid]); 944 else 945 ret = rte_eth_rx_queue_setup( 946 portid, queueid, nb_rxd, socketid, 947 &rxq_conf, 948 pktmbuf_pool[portid][socketid]); 949 if (ret < 0) 950 rte_exit(EXIT_FAILURE, 951 "rte_eth_rx_queue_setup: err=%d, " 952 "port=%d\n", 953 ret, portid); 954 955 /* Add this queue node to its graph */ 956 snprintf(qconf->rx_queue_list[queue].node_name, 957 RTE_NODE_NAMESIZE, "ethdev_rx-%u-%u", portid, 958 queueid); 959 } 960 961 /* Alloc a graph to this lcore only if source exists */ 962 if (qconf->n_rx_queue) 963 nb_graphs++; 964 } 965 966 printf("\n"); 967 968 /* Ethdev node config, skip rx queue mapping */ 969 ret = rte_node_eth_config(ethdev_conf, nb_conf, nb_graphs); 970 if (ret) 971 rte_exit(EXIT_FAILURE, "rte_node_eth_config: err=%d\n", ret); 972 973 /* Start ports */ 974 RTE_ETH_FOREACH_DEV(portid) 975 { 976 if ((enabled_port_mask & (1 << portid)) == 0) 977 continue; 978 979 /* Start device */ 980 ret = rte_eth_dev_start(portid); 981 if (ret < 0) 982 rte_exit(EXIT_FAILURE, 983 "rte_eth_dev_start: err=%d, port=%d\n", ret, 984 portid); 985 986 /* 987 * If enabled, put device in promiscuous mode. 988 * This allows IO forwarding mode to forward packets 989 * to itself through 2 cross-connected ports of the 990 * target machine. 991 */ 992 if (promiscuous_on) 993 rte_eth_promiscuous_enable(portid); 994 } 995 996 printf("\n"); 997 998 check_all_ports_link_status(enabled_port_mask); 999 1000 /* Graph Initialization */ 1001 nb_patterns = RTE_DIM(default_patterns); 1002 node_patterns = malloc((MAX_RX_QUEUE_PER_LCORE + nb_patterns) * 1003 sizeof(*node_patterns)); 1004 if (!node_patterns) 1005 return -ENOMEM; 1006 memcpy(node_patterns, default_patterns, 1007 nb_patterns * sizeof(*node_patterns)); 1008 1009 memset(&graph_conf, 0, sizeof(graph_conf)); 1010 graph_conf.node_patterns = node_patterns; 1011 1012 for (lcore_id = 0; lcore_id < RTE_MAX_LCORE; lcore_id++) { 1013 rte_graph_t graph_id; 1014 rte_edge_t i; 1015 1016 if (rte_lcore_is_enabled(lcore_id) == 0) 1017 continue; 1018 1019 qconf = &lcore_conf[lcore_id]; 1020 1021 /* Skip graph creation if no source exists */ 1022 if (!qconf->n_rx_queue) 1023 continue; 1024 1025 /* Add rx node patterns of this lcore */ 1026 for (i = 0; i < qconf->n_rx_queue; i++) { 1027 graph_conf.node_patterns[nb_patterns + i] = 1028 qconf->rx_queue_list[i].node_name; 1029 } 1030 1031 graph_conf.nb_node_patterns = nb_patterns + i; 1032 graph_conf.socket_id = rte_lcore_to_socket_id(lcore_id); 1033 1034 snprintf(qconf->name, sizeof(qconf->name), "worker_%u", 1035 lcore_id); 1036 1037 graph_id = rte_graph_create(qconf->name, &graph_conf); 1038 if (graph_id == RTE_GRAPH_ID_INVALID) 1039 rte_exit(EXIT_FAILURE, 1040 "rte_graph_create(): graph_id invalid" 1041 " for lcore %u\n", lcore_id); 1042 1043 qconf->graph_id = graph_id; 1044 qconf->graph = rte_graph_lookup(qconf->name); 1045 if (!qconf->graph) 1046 rte_exit(EXIT_FAILURE, 1047 "rte_graph_lookup(): graph %s not found\n", 1048 qconf->name); 1049 } 1050 1051 memset(&rewrite_data, 0, sizeof(rewrite_data)); 1052 rewrite_len = sizeof(rewrite_data); 1053 1054 /* Add route to ip4 graph infra */ 1055 for (i = 0; i < IPV4_L3FWD_LPM_NUM_ROUTES; i++) { 1056 char route_str[INET6_ADDRSTRLEN * 4]; 1057 char abuf[INET6_ADDRSTRLEN]; 1058 struct in_addr in; 1059 uint32_t dst_port; 1060 1061 /* Skip unused ports */ 1062 if ((1 << ipv4_l3fwd_lpm_route_array[i].if_out & 1063 enabled_port_mask) == 0) 1064 continue; 1065 1066 dst_port = ipv4_l3fwd_lpm_route_array[i].if_out; 1067 1068 in.s_addr = htonl(ipv4_l3fwd_lpm_route_array[i].ip); 1069 snprintf(route_str, sizeof(route_str), "%s / %d (%d)", 1070 inet_ntop(AF_INET, &in, abuf, sizeof(abuf)), 1071 ipv4_l3fwd_lpm_route_array[i].depth, 1072 ipv4_l3fwd_lpm_route_array[i].if_out); 1073 1074 /* Use route index 'i' as next hop id */ 1075 ret = rte_node_ip4_route_add( 1076 ipv4_l3fwd_lpm_route_array[i].ip, 1077 ipv4_l3fwd_lpm_route_array[i].depth, i, 1078 RTE_NODE_IP4_LOOKUP_NEXT_REWRITE); 1079 1080 if (ret < 0) 1081 rte_exit(EXIT_FAILURE, 1082 "Unable to add ip4 route %s to graph\n", 1083 route_str); 1084 1085 memcpy(rewrite_data, val_eth + dst_port, rewrite_len); 1086 1087 /* Add next hop rewrite data for id 'i' */ 1088 ret = rte_node_ip4_rewrite_add(i, rewrite_data, 1089 rewrite_len, dst_port); 1090 if (ret < 0) 1091 rte_exit(EXIT_FAILURE, 1092 "Unable to add next hop %u for " 1093 "route %s\n", i, route_str); 1094 1095 RTE_LOG(INFO, L3FWD_GRAPH, "Added route %s, next_hop %u\n", 1096 route_str, i); 1097 } 1098 1099 /* Launch per-lcore init on every slave lcore */ 1100 rte_eal_mp_remote_launch(graph_main_loop, NULL, SKIP_MASTER); 1101 1102 /* Accumulate and print stats on master until exit */ 1103 if (rte_graph_has_stats_feature()) 1104 print_stats(); 1105 1106 /* Wait for slave cores to exit */ 1107 ret = 0; 1108 RTE_LCORE_FOREACH_SLAVE(lcore_id) { 1109 ret = rte_eal_wait_lcore(lcore_id); 1110 /* Destroy graph */ 1111 if (ret < 0 || rte_graph_destroy( 1112 rte_graph_from_name(lcore_conf[lcore_id].name))) { 1113 ret = -1; 1114 break; 1115 } 1116 } 1117 free(node_patterns); 1118 1119 /* Stop ports */ 1120 RTE_ETH_FOREACH_DEV(portid) { 1121 if ((enabled_port_mask & (1 << portid)) == 0) 1122 continue; 1123 printf("Closing port %d...", portid); 1124 rte_eth_dev_stop(portid); 1125 rte_eth_dev_close(portid); 1126 printf(" Done\n"); 1127 } 1128 printf("Bye...\n"); 1129 1130 return ret; 1131 } 1132