1 /*- 2 * BSD LICENSE 3 * 4 * Copyright(c) 2010-2014 Intel Corporation. All rights reserved. 5 * Copyright(c) 2014 6WIND S.A. 6 * All rights reserved. 7 * 8 * Redistribution and use in source and binary forms, with or without 9 * modification, are permitted provided that the following conditions 10 * are met: 11 * 12 * * Redistributions of source code must retain the above copyright 13 * notice, this list of conditions and the following disclaimer. 14 * * Redistributions in binary form must reproduce the above copyright 15 * notice, this list of conditions and the following disclaimer in 16 * the documentation and/or other materials provided with the 17 * distribution. 18 * * Neither the name of Intel Corporation nor the names of its 19 * contributors may be used to endorse or promote products derived 20 * from this software without specific prior written permission. 21 * 22 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 23 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 24 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 25 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 26 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 27 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 28 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 29 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 30 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 31 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 32 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 33 */ 34 35 #include <stdarg.h> 36 #include <errno.h> 37 #include <stdio.h> 38 #include <stdint.h> 39 #include <stdarg.h> 40 #include <string.h> 41 #include <termios.h> 42 #include <unistd.h> 43 #include <inttypes.h> 44 #ifndef __linux__ 45 #ifndef __FreeBSD__ 46 #include <net/socket.h> 47 #else 48 #include <sys/socket.h> 49 #endif 50 #endif 51 #include <netinet/in.h> 52 53 #include <sys/queue.h> 54 55 #include <rte_common.h> 56 #include <rte_byteorder.h> 57 #include <rte_log.h> 58 #include <rte_debug.h> 59 #include <rte_cycles.h> 60 #include <rte_memory.h> 61 #include <rte_memzone.h> 62 #include <rte_malloc.h> 63 #include <rte_launch.h> 64 #include <rte_tailq.h> 65 #include <rte_eal.h> 66 #include <rte_per_lcore.h> 67 #include <rte_lcore.h> 68 #include <rte_atomic.h> 69 #include <rte_branch_prediction.h> 70 #include <rte_ring.h> 71 #include <rte_mempool.h> 72 #include <rte_interrupts.h> 73 #include <rte_pci.h> 74 #include <rte_ether.h> 75 #include <rte_ethdev.h> 76 #include <rte_string_fns.h> 77 #include <rte_devargs.h> 78 #include <rte_eth_ctrl.h> 79 80 #include <cmdline_rdline.h> 81 #include <cmdline_parse.h> 82 #include <cmdline_parse_num.h> 83 #include <cmdline_parse_string.h> 84 #include <cmdline_parse_ipaddr.h> 85 #include <cmdline_parse_etheraddr.h> 86 #include <cmdline_socket.h> 87 #include <cmdline.h> 88 #include <rte_pci_dev_ids.h> 89 #ifdef RTE_LIBRTE_PMD_BOND 90 #include <rte_eth_bond.h> 91 #endif 92 93 #include "testpmd.h" 94 95 static void cmd_reconfig_device_queue(portid_t id, uint8_t dev, uint8_t queue); 96 97 #ifdef RTE_NIC_BYPASS 98 uint8_t bypass_is_supported(portid_t port_id); 99 #endif 100 101 /* *** Help command with introduction. *** */ 102 struct cmd_help_brief_result { 103 cmdline_fixed_string_t help; 104 }; 105 106 static void cmd_help_brief_parsed(__attribute__((unused)) void *parsed_result, 107 struct cmdline *cl, 108 __attribute__((unused)) void *data) 109 { 110 cmdline_printf( 111 cl, 112 "\n" 113 "Help is available for the following sections:\n\n" 114 " help control : Start and stop forwarding.\n" 115 " help display : Displaying port, stats and config " 116 "information.\n" 117 " help config : Configuration information.\n" 118 " help ports : Configuring ports.\n" 119 " help registers : Reading and setting port registers.\n" 120 " help filters : Filters configuration help.\n" 121 " help all : All of the above sections.\n\n" 122 ); 123 124 } 125 126 cmdline_parse_token_string_t cmd_help_brief_help = 127 TOKEN_STRING_INITIALIZER(struct cmd_help_brief_result, help, "help"); 128 129 cmdline_parse_inst_t cmd_help_brief = { 130 .f = cmd_help_brief_parsed, 131 .data = NULL, 132 .help_str = "show help", 133 .tokens = { 134 (void *)&cmd_help_brief_help, 135 NULL, 136 }, 137 }; 138 139 /* *** Help command with help sections. *** */ 140 struct cmd_help_long_result { 141 cmdline_fixed_string_t help; 142 cmdline_fixed_string_t section; 143 }; 144 145 static void cmd_help_long_parsed(void *parsed_result, 146 struct cmdline *cl, 147 __attribute__((unused)) void *data) 148 { 149 int show_all = 0; 150 struct cmd_help_long_result *res = parsed_result; 151 152 if (!strcmp(res->section, "all")) 153 show_all = 1; 154 155 if (show_all || !strcmp(res->section, "control")) { 156 157 cmdline_printf( 158 cl, 159 "\n" 160 "Control forwarding:\n" 161 "-------------------\n\n" 162 163 "start\n" 164 " Start packet forwarding with current configuration.\n\n" 165 166 "start tx_first\n" 167 " Start packet forwarding with current config" 168 " after sending one burst of packets.\n\n" 169 170 "stop\n" 171 " Stop packet forwarding, and display accumulated" 172 " statistics.\n\n" 173 174 "quit\n" 175 " Quit to prompt.\n\n" 176 ); 177 } 178 179 if (show_all || !strcmp(res->section, "display")) { 180 181 cmdline_printf( 182 cl, 183 "\n" 184 "Display:\n" 185 "--------\n\n" 186 187 "show port (info|stats|xstats|fdir|stat_qmap) (port_id|all)\n" 188 " Display information for port_id, or all.\n\n" 189 190 "show port X rss reta (size) (mask0,mask1,...)\n" 191 " Display the rss redirection table entry indicated" 192 " by masks on port X. size is used to indicate the" 193 " hardware supported reta size\n\n" 194 195 "show port rss-hash [key]\n" 196 " Display the RSS hash functions and RSS hash key" 197 " of port X\n\n" 198 199 "clear port (info|stats|xstats|fdir|stat_qmap) (port_id|all)\n" 200 " Clear information for port_id, or all.\n\n" 201 202 "show config (rxtx|cores|fwd)\n" 203 " Display the given configuration.\n\n" 204 205 "read rxd (port_id) (queue_id) (rxd_id)\n" 206 " Display an RX descriptor of a port RX queue.\n\n" 207 208 "read txd (port_id) (queue_id) (txd_id)\n" 209 " Display a TX descriptor of a port TX queue.\n\n" 210 ); 211 } 212 213 if (show_all || !strcmp(res->section, "config")) { 214 cmdline_printf( 215 cl, 216 "\n" 217 "Configuration:\n" 218 "--------------\n" 219 "Configuration changes only become active when" 220 " forwarding is started/restarted.\n\n" 221 222 "set default\n" 223 " Reset forwarding to the default configuration.\n\n" 224 225 "set verbose (level)\n" 226 " Set the debug verbosity level X.\n\n" 227 228 "set nbport (num)\n" 229 " Set number of ports.\n\n" 230 231 "set nbcore (num)\n" 232 " Set number of cores.\n\n" 233 234 "set coremask (mask)\n" 235 " Set the forwarding cores hexadecimal mask.\n\n" 236 237 "set portmask (mask)\n" 238 " Set the forwarding ports hexadecimal mask.\n\n" 239 240 "set burst (num)\n" 241 " Set number of packets per burst.\n\n" 242 243 "set burst tx delay (microseconds) retry (num)\n" 244 " Set the transmit delay time and number of retries" 245 " in mac_retry forwarding mode.\n\n" 246 247 "set txpkts (x[,y]*)\n" 248 " Set the length of each segment of TXONLY" 249 " packets.\n\n" 250 251 "set corelist (x[,y]*)\n" 252 " Set the list of forwarding cores.\n\n" 253 254 "set portlist (x[,y]*)\n" 255 " Set the list of forwarding ports.\n\n" 256 257 "vlan set strip (on|off) (port_id)\n" 258 " Set the VLAN strip on a port.\n\n" 259 260 "vlan set stripq (on|off) (port_id,queue_id)\n" 261 " Set the VLAN strip for a queue on a port.\n\n" 262 263 "vlan set filter (on|off) (port_id)\n" 264 " Set the VLAN filter on a port.\n\n" 265 266 "vlan set qinq (on|off) (port_id)\n" 267 " Set the VLAN QinQ (extended queue in queue)" 268 " on a port.\n\n" 269 270 "vlan set tpid (value) (port_id)\n" 271 " Set the outer VLAN TPID for Packet Filtering on" 272 " a port\n\n" 273 274 "rx_vlan add (vlan_id|all) (port_id)\n" 275 " Add a vlan_id, or all identifiers, to the set" 276 " of VLAN identifiers filtered by port_id.\n\n" 277 278 "rx_vlan rm (vlan_id|all) (port_id)\n" 279 " Remove a vlan_id, or all identifiers, from the set" 280 " of VLAN identifiers filtered by port_id.\n\n" 281 282 "rx_vlan add (vlan_id) port (port_id) vf (vf_mask)\n" 283 " Add a vlan_id, to the set of VLAN identifiers" 284 "filtered for VF(s) from port_id.\n\n" 285 286 "rx_vlan rm (vlan_id) port (port_id) vf (vf_mask)\n" 287 " Remove a vlan_id, to the set of VLAN identifiers" 288 "filtered for VF(s) from port_id.\n\n" 289 290 "rx_vlan set tpid (value) (port_id)\n" 291 " Set the outer VLAN TPID for Packet Filtering on" 292 " a port\n\n" 293 294 "tunnel_filter add (port_id) (outer_mac) (inner_mac) (ip_addr) " 295 "(inner_vlan) (vxlan|nvgre) (filter_type) (tenant_id) (queue_id)\n" 296 " add a tunnel filter of a port.\n\n" 297 298 "tunnel_filter rm (port_id) (outer_mac) (inner_mac) (ip_addr) " 299 "(inner_vlan) (vxlan|nvgre) (filter_type) (tenant_id) (queue_id)\n" 300 " remove a tunnel filter of a port.\n\n" 301 302 "rx_vxlan_port add (udp_port) (port_id)\n" 303 " Add an UDP port for VXLAN packet filter on a port\n\n" 304 305 "rx_vxlan_port rm (udp_port) (port_id)\n" 306 " Remove an UDP port for VXLAN packet filter on a port\n\n" 307 308 "tx_vlan set vlan_id (port_id)\n" 309 " Set hardware insertion of VLAN ID in packets sent" 310 " on a port.\n\n" 311 312 "tx_vlan set pvid port_id vlan_id (on|off)\n" 313 " Set port based TX VLAN insertion.\n\n" 314 315 "tx_vlan reset (port_id)\n" 316 " Disable hardware insertion of a VLAN header in" 317 " packets sent on a port.\n\n" 318 319 "csum set (ip|udp|tcp|sctp|outer-ip) (hw|sw) (port_id)\n" 320 " Select hardware or software calculation of the" 321 " checksum with when transmitting a packet using the" 322 " csum forward engine.\n" 323 " ip|udp|tcp|sctp always concern the inner layer.\n" 324 " outer-ip concerns the outer IP layer in" 325 " case the packet is recognized as a tunnel packet by" 326 " the forward engine (vxlan, gre and ipip are supported)\n" 327 " Please check the NIC datasheet for HW limits.\n\n" 328 329 "csum parse-tunnel (on|off) (tx_port_id)\n" 330 " If disabled, treat tunnel packets as non-tunneled" 331 " packets (treat inner headers as payload). The port\n" 332 " argument is the port used for TX in csum forward" 333 " engine.\n\n" 334 335 "csum show (port_id)\n" 336 " Display tx checksum offload configuration\n\n" 337 338 "tso set (segsize) (portid)\n" 339 " Enable TCP Segmentation Offload in csum forward" 340 " engine.\n" 341 " Please check the NIC datasheet for HW limits.\n\n" 342 343 "tso show (portid)" 344 " Display the status of TCP Segmentation Offload.\n\n" 345 346 "set fwd (%s)\n" 347 " Set packet forwarding mode.\n\n" 348 349 "mac_addr add (port_id) (XX:XX:XX:XX:XX:XX)\n" 350 " Add a MAC address on port_id.\n\n" 351 352 "mac_addr remove (port_id) (XX:XX:XX:XX:XX:XX)\n" 353 " Remove a MAC address from port_id.\n\n" 354 355 "mac_addr add port (port_id) vf (vf_id) (mac_address)\n" 356 " Add a MAC address for a VF on the port.\n\n" 357 358 "set port (port_id) uta (mac_address|all) (on|off)\n" 359 " Add/Remove a or all unicast hash filter(s)" 360 "from port X.\n\n" 361 362 "set promisc (port_id|all) (on|off)\n" 363 " Set the promiscuous mode on port_id, or all.\n\n" 364 365 "set allmulti (port_id|all) (on|off)\n" 366 " Set the allmulti mode on port_id, or all.\n\n" 367 368 "set flow_ctrl rx (on|off) tx (on|off) (high_water)" 369 " (low_water) (pause_time) (send_xon) mac_ctrl_frame_fwd" 370 " (on|off) autoneg (on|off) (port_id)\n" 371 "set flow_ctrl rx (on|off) (portid)\n" 372 "set flow_ctrl tx (on|off) (portid)\n" 373 "set flow_ctrl high_water (high_water) (portid)\n" 374 "set flow_ctrl low_water (low_water) (portid)\n" 375 "set flow_ctrl pause_time (pause_time) (portid)\n" 376 "set flow_ctrl send_xon (send_xon) (portid)\n" 377 "set flow_ctrl mac_ctrl_frame_fwd (on|off) (portid)\n" 378 "set flow_ctrl autoneg (on|off) (port_id)\n" 379 " Set the link flow control parameter on a port.\n\n" 380 381 "set pfc_ctrl rx (on|off) tx (on|off) (high_water)" 382 " (low_water) (pause_time) (priority) (port_id)\n" 383 " Set the priority flow control parameter on a" 384 " port.\n\n" 385 386 "set stat_qmap (tx|rx) (port_id) (queue_id) (qmapping)\n" 387 " Set statistics mapping (qmapping 0..15) for RX/TX" 388 " queue on port.\n" 389 " e.g., 'set stat_qmap rx 0 2 5' sets rx queue 2" 390 " on port 0 to mapping 5.\n\n" 391 392 "set port (port_id) vf (vf_id) rx|tx on|off\n" 393 " Enable/Disable a VF receive/tranmit from a port\n\n" 394 395 "set port (port_id) vf (vf_id) (mac_addr)" 396 " (exact-mac#exact-mac-vlan#hashmac|hashmac-vlan) on|off\n" 397 " Add/Remove unicast or multicast MAC addr filter" 398 " for a VF.\n\n" 399 400 "set port (port_id) vf (vf_id) rxmode (AUPE|ROPE|BAM" 401 "|MPE) (on|off)\n" 402 " AUPE:accepts untagged VLAN;" 403 "ROPE:accept unicast hash\n\n" 404 " BAM:accepts broadcast packets;" 405 "MPE:accepts all multicast packets\n\n" 406 " Enable/Disable a VF receive mode of a port\n\n" 407 408 "set port (port_id) queue (queue_id) rate (rate_num)\n" 409 " Set rate limit for a queue of a port\n\n" 410 411 "set port (port_id) vf (vf_id) rate (rate_num) " 412 "queue_mask (queue_mask_value)\n" 413 " Set rate limit for queues in VF of a port\n\n" 414 415 "set port (port_id) mirror-rule (rule_id)" 416 "(pool-mirror|vlan-mirror)\n" 417 " (poolmask|vlanid[,vlanid]*) dst-pool (pool_id) (on|off)\n" 418 " Set pool or vlan type mirror rule on a port.\n" 419 " e.g., 'set port 0 mirror-rule 0 vlan-mirror 0,1" 420 " dst-pool 0 on' enable mirror traffic with vlan 0,1" 421 " to pool 0.\n\n" 422 423 "set port (port_id) mirror-rule (rule_id)" 424 " (uplink-mirror|downlink-mirror) dst-pool" 425 " (pool_id) (on|off)\n" 426 " Set uplink or downlink type mirror rule on a port.\n" 427 " e.g., 'set port 0 mirror-rule 0 uplink-mirror dst-pool" 428 " 0 on' enable mirror income traffic to pool 0.\n\n" 429 430 "reset port (port_id) mirror-rule (rule_id)\n" 431 " Reset a mirror rule.\n\n" 432 433 "set flush_rx (on|off)\n" 434 " Flush (default) or don't flush RX streams before" 435 " forwarding. Mainly used with PCAP drivers.\n\n" 436 437 #ifdef RTE_NIC_BYPASS 438 "set bypass mode (normal|bypass|isolate) (port_id)\n" 439 " Set the bypass mode for the lowest port on bypass enabled" 440 " NIC.\n\n" 441 442 "set bypass event (timeout|os_on|os_off|power_on|power_off) " 443 "mode (normal|bypass|isolate) (port_id)\n" 444 " Set the event required to initiate specified bypass mode for" 445 " the lowest port on a bypass enabled NIC where:\n" 446 " timeout = enable bypass after watchdog timeout.\n" 447 " os_on = enable bypass when OS/board is powered on.\n" 448 " os_off = enable bypass when OS/board is powered off.\n" 449 " power_on = enable bypass when power supply is turned on.\n" 450 " power_off = enable bypass when power supply is turned off." 451 "\n\n" 452 453 "set bypass timeout (0|1.5|2|3|4|8|16|32)\n" 454 " Set the bypass watchdog timeout to 'n' seconds" 455 " where 0 = instant.\n\n" 456 457 "show bypass config (port_id)\n" 458 " Show the bypass configuration for a bypass enabled NIC" 459 " using the lowest port on the NIC.\n\n" 460 #endif 461 #ifdef RTE_LIBRTE_PMD_BOND 462 "create bonded device (mode) (socket)\n" 463 " Create a new bonded device with specific bonding mode and socket.\n\n" 464 465 "add bonding slave (slave_id) (port_id)\n" 466 " Add a slave device to a bonded device.\n\n" 467 468 "remove bonding slave (slave_id) (port_id)\n" 469 " Remove a slave device from a bonded device.\n\n" 470 471 "set bonding mode (value) (port_id)\n" 472 " Set the bonding mode on a bonded device.\n\n" 473 474 "set bonding primary (slave_id) (port_id)\n" 475 " Set the primary slave for a bonded device.\n\n" 476 477 "show bonding config (port_id)\n" 478 " Show the bonding config for port_id.\n\n" 479 480 "set bonding mac_addr (port_id) (address)\n" 481 " Set the MAC address of a bonded device.\n\n" 482 483 "set bonding xmit_balance_policy (port_id) (l2|l23|l34)\n" 484 " Set the transmit balance policy for bonded device running in balance mode.\n\n" 485 486 "set bonding mon_period (port_id) (value)\n" 487 " Set the bonding link status monitoring polling period in ms.\n\n" 488 #endif 489 "set link-up port (port_id)\n" 490 " Set link up for a port.\n\n" 491 492 "set link-down port (port_id)\n" 493 " Set link down for a port.\n\n" 494 495 , list_pkt_forwarding_modes() 496 ); 497 } 498 499 if (show_all || !strcmp(res->section, "ports")) { 500 501 cmdline_printf( 502 cl, 503 "\n" 504 "Port Operations:\n" 505 "----------------\n\n" 506 507 "port start (port_id|all)\n" 508 " Start all ports or port_id.\n\n" 509 510 "port stop (port_id|all)\n" 511 " Stop all ports or port_id.\n\n" 512 513 "port close (port_id|all)\n" 514 " Close all ports or port_id.\n\n" 515 516 "port attach (ident)\n" 517 " Attach physical or virtual dev by pci address or virtual device name\n\n" 518 519 "port detach (port_id)\n" 520 " Detach physical or virtual dev by port_id\n\n" 521 522 "port config (port_id|all)" 523 " speed (10|100|1000|10000|40000|auto)" 524 " duplex (half|full|auto)\n" 525 " Set speed and duplex for all ports or port_id\n\n" 526 527 "port config all (rxq|txq|rxd|txd) (value)\n" 528 " Set number for rxq/txq/rxd/txd.\n\n" 529 530 "port config all max-pkt-len (value)\n" 531 " Set the max packet length.\n\n" 532 533 "port config all (crc-strip|rx-cksum|hw-vlan|hw-vlan-filter|" 534 "hw-vlan-strip|hw-vlan-extend|drop-en)" 535 " (on|off)\n" 536 " Set crc-strip/rx-checksum/hardware-vlan/drop_en" 537 " for ports.\n\n" 538 539 "port config all rss (all|ip|tcp|udp|sctp|ether|none)\n" 540 " Set the RSS mode.\n\n" 541 542 "port config port-id rss reta (hash,queue)[,(hash,queue)]\n" 543 " Set the RSS redirection table.\n\n" 544 545 "port config (port_id) dcb vt (on|off) (traffic_class)" 546 " pfc (on|off)\n" 547 " Set the DCB mode.\n\n" 548 549 "port config all burst (value)\n" 550 " Set the number of packets per burst.\n\n" 551 552 "port config all (txpt|txht|txwt|rxpt|rxht|rxwt)" 553 " (value)\n" 554 " Set the ring prefetch/host/writeback threshold" 555 " for tx/rx queue.\n\n" 556 557 "port config all (txfreet|txrst|rxfreet) (value)\n" 558 " Set free threshold for rx/tx, or set" 559 " tx rs bit threshold.\n\n" 560 "port config mtu X value\n" 561 " Set the MTU of port X to a given value\n\n" 562 563 "port (port_id) (rxq|txq) (queue_id) (start|stop)\n" 564 " Start/stop a rx/tx queue of port X. Only take effect" 565 " when port X is started\n" 566 ); 567 } 568 569 if (show_all || !strcmp(res->section, "registers")) { 570 571 cmdline_printf( 572 cl, 573 "\n" 574 "Registers:\n" 575 "----------\n\n" 576 577 "read reg (port_id) (address)\n" 578 " Display value of a port register.\n\n" 579 580 "read regfield (port_id) (address) (bit_x) (bit_y)\n" 581 " Display a port register bit field.\n\n" 582 583 "read regbit (port_id) (address) (bit_x)\n" 584 " Display a single port register bit.\n\n" 585 586 "write reg (port_id) (address) (value)\n" 587 " Set value of a port register.\n\n" 588 589 "write regfield (port_id) (address) (bit_x) (bit_y)" 590 " (value)\n" 591 " Set bit field of a port register.\n\n" 592 593 "write regbit (port_id) (address) (bit_x) (value)\n" 594 " Set single bit value of a port register.\n\n" 595 ); 596 } 597 if (show_all || !strcmp(res->section, "filters")) { 598 599 cmdline_printf( 600 cl, 601 "\n" 602 "filters:\n" 603 "--------\n\n" 604 605 "ethertype_filter (port_id) (add|del)" 606 " (mac_addr|mac_ignr) (mac_address) ethertype" 607 " (ether_type) (drop|fwd) queue (queue_id)\n" 608 " Add/Del an ethertype filter.\n\n" 609 610 "2tuple_filter (port_id) (add|del)" 611 " dst_port (dst_port_value) protocol (protocol_value)" 612 " mask (mask_value) tcp_flags (tcp_flags_value)" 613 " priority (prio_value) queue (queue_id)\n" 614 " Add/Del a 2tuple filter.\n\n" 615 616 "5tuple_filter (port_id) (add|del)" 617 " dst_ip (dst_address) src_ip (src_address)" 618 " dst_port (dst_port_value) src_port (src_port_value)" 619 " protocol (protocol_value)" 620 " mask (mask_value) tcp_flags (tcp_flags_value)" 621 " priority (prio_value) queue (queue_id)\n" 622 " Add/Del a 5tuple filter.\n\n" 623 624 "syn_filter (port_id) (add|del) priority (high|low) queue (queue_id)" 625 " Add/Del syn filter.\n\n" 626 627 "flex_filter (port_id) (add|del) len (len_value)" 628 " bytes (bytes_value) mask (mask_value)" 629 " priority (prio_value) queue (queue_id)\n" 630 " Add/Del a flex filter.\n\n" 631 632 "flow_director_filter (port_id) (add|del|update)" 633 " flow (ipv4-other|ipv4-frag|ipv6-other|ipv6-frag)" 634 " src (src_ip_address) dst (dst_ip_address)" 635 " vlan (vlan_value) flexbytes (flexbytes_value)" 636 " (drop|fwd) queue (queue_id) fd_id (fd_id_value)\n" 637 " Add/Del an IP type flow director filter.\n\n" 638 639 "flow_director_filter (port_id) (add|del|update)" 640 " flow (ipv4-tcp|ipv4-udp|ipv6-tcp|ipv6-udp)" 641 " src (src_ip_address) (src_port)" 642 " dst (dst_ip_address) (dst_port)" 643 " vlan (vlan_value) flexbytes (flexbytes_value)" 644 " (drop|fwd) queue (queue_id) fd_id (fd_id_value)\n" 645 " Add/Del an UDP/TCP type flow director filter.\n\n" 646 647 "flow_director_filter (port_id) (add|del|update)" 648 " flow (ipv4-sctp|ipv6-sctp)" 649 " src (src_ip_address) (src_port)" 650 " dst (dst_ip_address) (dst_port)" 651 " tag (verification_tag) vlan (vlan_value)" 652 " flexbytes (flexbytes_value) (drop|fwd)" 653 " queue (queue_id) fd_id (fd_id_value)\n" 654 " Add/Del a SCTP type flow director filter.\n\n" 655 656 "flush_flow_director (port_id)\n" 657 " Flush all flow director entries of a device.\n\n" 658 659 "flow_director_mask (port_id) vlan (vlan_value)" 660 " src_mask (ipv4_src) (ipv6_src) (src_port)" 661 " dst_mask (ipv4_dst) (ipv6_dst) (dst_port)\n" 662 " Set flow director mask.\n\n" 663 664 "flow_director_flex_mask (port_id)" 665 " flow (raw|ip4|ip4-frag|tcp4|udp4|sctp4|ip6|ip6-frag|tcp6|udp6|sctp6|all)" 666 " flow (raw|ipv4-other|ipv4-frag|ipv4-tcp|ipv4-udp|ipv4-sctp|" 667 "ipv6-other|ipv6-frag|ipv6-tcp|ipv6-udp|ipv6-sctp|all)" 668 " (mask)\n" 669 " Configure mask of flex payload.\n\n" 670 671 "flow_director_flex_payload (port_id)" 672 " (raw|l2|l3|l4) (config)\n" 673 " Configure flex payload selection.\n\n" 674 675 "get_sym_hash_ena_per_port (port_id)\n" 676 " get symmetric hash enable configuration per port.\n\n" 677 678 "set_sym_hash_ena_per_port (port_id) (enable|disable)\n" 679 " set symmetric hash enable configuration per port" 680 " to enable or disable.\n\n" 681 682 "get_hash_global_config (port_id)\n" 683 " Get the global configurations of hash filters.\n\n" 684 685 "set_hash_global_config (port_id) (toeplitz|simple_xor|default)" 686 " (ipv4|ipv4-frag|ipv4-tcp|ipv4-udp|ipv4-sctp|ipv4-other|ipv6|" 687 "ipv6-frag|ipv6-tcp|ipv6-udp|ipv6-sctp|ipv6-other|l2_payload)" 688 " (enable|disable)\n" 689 " Set the global configurations of hash filters.\n\n" 690 ); 691 } 692 } 693 694 cmdline_parse_token_string_t cmd_help_long_help = 695 TOKEN_STRING_INITIALIZER(struct cmd_help_long_result, help, "help"); 696 697 cmdline_parse_token_string_t cmd_help_long_section = 698 TOKEN_STRING_INITIALIZER(struct cmd_help_long_result, section, 699 "all#control#display#config#" 700 "ports#registers#filters"); 701 702 cmdline_parse_inst_t cmd_help_long = { 703 .f = cmd_help_long_parsed, 704 .data = NULL, 705 .help_str = "show help", 706 .tokens = { 707 (void *)&cmd_help_long_help, 708 (void *)&cmd_help_long_section, 709 NULL, 710 }, 711 }; 712 713 714 /* *** start/stop/close all ports *** */ 715 struct cmd_operate_port_result { 716 cmdline_fixed_string_t keyword; 717 cmdline_fixed_string_t name; 718 cmdline_fixed_string_t value; 719 }; 720 721 static void cmd_operate_port_parsed(void *parsed_result, 722 __attribute__((unused)) struct cmdline *cl, 723 __attribute__((unused)) void *data) 724 { 725 struct cmd_operate_port_result *res = parsed_result; 726 727 if (!strcmp(res->name, "start")) 728 start_port(RTE_PORT_ALL); 729 else if (!strcmp(res->name, "stop")) 730 stop_port(RTE_PORT_ALL); 731 else if (!strcmp(res->name, "close")) 732 close_port(RTE_PORT_ALL); 733 else 734 printf("Unknown parameter\n"); 735 } 736 737 cmdline_parse_token_string_t cmd_operate_port_all_cmd = 738 TOKEN_STRING_INITIALIZER(struct cmd_operate_port_result, keyword, 739 "port"); 740 cmdline_parse_token_string_t cmd_operate_port_all_port = 741 TOKEN_STRING_INITIALIZER(struct cmd_operate_port_result, name, 742 "start#stop#close"); 743 cmdline_parse_token_string_t cmd_operate_port_all_all = 744 TOKEN_STRING_INITIALIZER(struct cmd_operate_port_result, value, "all"); 745 746 cmdline_parse_inst_t cmd_operate_port = { 747 .f = cmd_operate_port_parsed, 748 .data = NULL, 749 .help_str = "port start|stop|close all: start/stop/close all ports", 750 .tokens = { 751 (void *)&cmd_operate_port_all_cmd, 752 (void *)&cmd_operate_port_all_port, 753 (void *)&cmd_operate_port_all_all, 754 NULL, 755 }, 756 }; 757 758 /* *** start/stop/close specific port *** */ 759 struct cmd_operate_specific_port_result { 760 cmdline_fixed_string_t keyword; 761 cmdline_fixed_string_t name; 762 uint8_t value; 763 }; 764 765 static void cmd_operate_specific_port_parsed(void *parsed_result, 766 __attribute__((unused)) struct cmdline *cl, 767 __attribute__((unused)) void *data) 768 { 769 struct cmd_operate_specific_port_result *res = parsed_result; 770 771 if (!strcmp(res->name, "start")) 772 start_port(res->value); 773 else if (!strcmp(res->name, "stop")) 774 stop_port(res->value); 775 else if (!strcmp(res->name, "close")) 776 close_port(res->value); 777 else 778 printf("Unknown parameter\n"); 779 } 780 781 cmdline_parse_token_string_t cmd_operate_specific_port_cmd = 782 TOKEN_STRING_INITIALIZER(struct cmd_operate_specific_port_result, 783 keyword, "port"); 784 cmdline_parse_token_string_t cmd_operate_specific_port_port = 785 TOKEN_STRING_INITIALIZER(struct cmd_operate_specific_port_result, 786 name, "start#stop#close"); 787 cmdline_parse_token_num_t cmd_operate_specific_port_id = 788 TOKEN_NUM_INITIALIZER(struct cmd_operate_specific_port_result, 789 value, UINT8); 790 791 cmdline_parse_inst_t cmd_operate_specific_port = { 792 .f = cmd_operate_specific_port_parsed, 793 .data = NULL, 794 .help_str = "port start|stop|close X: start/stop/close port X", 795 .tokens = { 796 (void *)&cmd_operate_specific_port_cmd, 797 (void *)&cmd_operate_specific_port_port, 798 (void *)&cmd_operate_specific_port_id, 799 NULL, 800 }, 801 }; 802 803 /* *** attach a specified port *** */ 804 struct cmd_operate_attach_port_result { 805 cmdline_fixed_string_t port; 806 cmdline_fixed_string_t keyword; 807 cmdline_fixed_string_t identifier; 808 }; 809 810 static void cmd_operate_attach_port_parsed(void *parsed_result, 811 __attribute__((unused)) struct cmdline *cl, 812 __attribute__((unused)) void *data) 813 { 814 struct cmd_operate_attach_port_result *res = parsed_result; 815 816 if (!strcmp(res->keyword, "attach")) 817 attach_port(res->identifier); 818 else 819 printf("Unknown parameter\n"); 820 } 821 822 cmdline_parse_token_string_t cmd_operate_attach_port_port = 823 TOKEN_STRING_INITIALIZER(struct cmd_operate_attach_port_result, 824 port, "port"); 825 cmdline_parse_token_string_t cmd_operate_attach_port_keyword = 826 TOKEN_STRING_INITIALIZER(struct cmd_operate_attach_port_result, 827 keyword, "attach"); 828 cmdline_parse_token_string_t cmd_operate_attach_port_identifier = 829 TOKEN_STRING_INITIALIZER(struct cmd_operate_attach_port_result, 830 identifier, NULL); 831 832 cmdline_parse_inst_t cmd_operate_attach_port = { 833 .f = cmd_operate_attach_port_parsed, 834 .data = NULL, 835 .help_str = "port attach identifier, " 836 "identifier: pci address or virtual dev name", 837 .tokens = { 838 (void *)&cmd_operate_attach_port_port, 839 (void *)&cmd_operate_attach_port_keyword, 840 (void *)&cmd_operate_attach_port_identifier, 841 NULL, 842 }, 843 }; 844 845 /* *** detach a specified port *** */ 846 struct cmd_operate_detach_port_result { 847 cmdline_fixed_string_t port; 848 cmdline_fixed_string_t keyword; 849 uint8_t port_id; 850 }; 851 852 static void cmd_operate_detach_port_parsed(void *parsed_result, 853 __attribute__((unused)) struct cmdline *cl, 854 __attribute__((unused)) void *data) 855 { 856 struct cmd_operate_detach_port_result *res = parsed_result; 857 858 if (!strcmp(res->keyword, "detach")) 859 detach_port(res->port_id); 860 else 861 printf("Unknown parameter\n"); 862 } 863 864 cmdline_parse_token_string_t cmd_operate_detach_port_port = 865 TOKEN_STRING_INITIALIZER(struct cmd_operate_detach_port_result, 866 port, "port"); 867 cmdline_parse_token_string_t cmd_operate_detach_port_keyword = 868 TOKEN_STRING_INITIALIZER(struct cmd_operate_detach_port_result, 869 keyword, "detach"); 870 cmdline_parse_token_num_t cmd_operate_detach_port_port_id = 871 TOKEN_NUM_INITIALIZER(struct cmd_operate_detach_port_result, 872 port_id, UINT8); 873 874 cmdline_parse_inst_t cmd_operate_detach_port = { 875 .f = cmd_operate_detach_port_parsed, 876 .data = NULL, 877 .help_str = "port detach port_id", 878 .tokens = { 879 (void *)&cmd_operate_detach_port_port, 880 (void *)&cmd_operate_detach_port_keyword, 881 (void *)&cmd_operate_detach_port_port_id, 882 NULL, 883 }, 884 }; 885 886 /* *** configure speed for all ports *** */ 887 struct cmd_config_speed_all { 888 cmdline_fixed_string_t port; 889 cmdline_fixed_string_t keyword; 890 cmdline_fixed_string_t all; 891 cmdline_fixed_string_t item1; 892 cmdline_fixed_string_t item2; 893 cmdline_fixed_string_t value1; 894 cmdline_fixed_string_t value2; 895 }; 896 897 static void 898 cmd_config_speed_all_parsed(void *parsed_result, 899 __attribute__((unused)) struct cmdline *cl, 900 __attribute__((unused)) void *data) 901 { 902 struct cmd_config_speed_all *res = parsed_result; 903 uint16_t link_speed = ETH_LINK_SPEED_AUTONEG; 904 uint16_t link_duplex = 0; 905 portid_t pid; 906 907 if (!all_ports_stopped()) { 908 printf("Please stop all ports first\n"); 909 return; 910 } 911 912 if (!strcmp(res->value1, "10")) 913 link_speed = ETH_LINK_SPEED_10; 914 else if (!strcmp(res->value1, "100")) 915 link_speed = ETH_LINK_SPEED_100; 916 else if (!strcmp(res->value1, "1000")) 917 link_speed = ETH_LINK_SPEED_1000; 918 else if (!strcmp(res->value1, "10000")) 919 link_speed = ETH_LINK_SPEED_10G; 920 else if (!strcmp(res->value1, "40000")) 921 link_speed = ETH_LINK_SPEED_40G; 922 else if (!strcmp(res->value1, "auto")) 923 link_speed = ETH_LINK_SPEED_AUTONEG; 924 else { 925 printf("Unknown parameter\n"); 926 return; 927 } 928 929 if (!strcmp(res->value2, "half")) 930 link_duplex = ETH_LINK_HALF_DUPLEX; 931 else if (!strcmp(res->value2, "full")) 932 link_duplex = ETH_LINK_FULL_DUPLEX; 933 else if (!strcmp(res->value2, "auto")) 934 link_duplex = ETH_LINK_AUTONEG_DUPLEX; 935 else { 936 printf("Unknown parameter\n"); 937 return; 938 } 939 940 FOREACH_PORT(pid, ports) { 941 ports[pid].dev_conf.link_speed = link_speed; 942 ports[pid].dev_conf.link_duplex = link_duplex; 943 } 944 945 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 946 } 947 948 cmdline_parse_token_string_t cmd_config_speed_all_port = 949 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, port, "port"); 950 cmdline_parse_token_string_t cmd_config_speed_all_keyword = 951 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, keyword, 952 "config"); 953 cmdline_parse_token_string_t cmd_config_speed_all_all = 954 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, all, "all"); 955 cmdline_parse_token_string_t cmd_config_speed_all_item1 = 956 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, item1, "speed"); 957 cmdline_parse_token_string_t cmd_config_speed_all_value1 = 958 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, value1, 959 "10#100#1000#10000#40000#auto"); 960 cmdline_parse_token_string_t cmd_config_speed_all_item2 = 961 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, item2, "duplex"); 962 cmdline_parse_token_string_t cmd_config_speed_all_value2 = 963 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_all, value2, 964 "half#full#auto"); 965 966 cmdline_parse_inst_t cmd_config_speed_all = { 967 .f = cmd_config_speed_all_parsed, 968 .data = NULL, 969 .help_str = "port config all speed 10|100|1000|10000|40000|auto duplex " 970 "half|full|auto", 971 .tokens = { 972 (void *)&cmd_config_speed_all_port, 973 (void *)&cmd_config_speed_all_keyword, 974 (void *)&cmd_config_speed_all_all, 975 (void *)&cmd_config_speed_all_item1, 976 (void *)&cmd_config_speed_all_value1, 977 (void *)&cmd_config_speed_all_item2, 978 (void *)&cmd_config_speed_all_value2, 979 NULL, 980 }, 981 }; 982 983 /* *** configure speed for specific port *** */ 984 struct cmd_config_speed_specific { 985 cmdline_fixed_string_t port; 986 cmdline_fixed_string_t keyword; 987 uint8_t id; 988 cmdline_fixed_string_t item1; 989 cmdline_fixed_string_t item2; 990 cmdline_fixed_string_t value1; 991 cmdline_fixed_string_t value2; 992 }; 993 994 static void 995 cmd_config_speed_specific_parsed(void *parsed_result, 996 __attribute__((unused)) struct cmdline *cl, 997 __attribute__((unused)) void *data) 998 { 999 struct cmd_config_speed_specific *res = parsed_result; 1000 uint16_t link_speed = ETH_LINK_SPEED_AUTONEG; 1001 uint16_t link_duplex = 0; 1002 1003 if (!all_ports_stopped()) { 1004 printf("Please stop all ports first\n"); 1005 return; 1006 } 1007 1008 if (port_id_is_invalid(res->id, ENABLED_WARN)) 1009 return; 1010 1011 if (!strcmp(res->value1, "10")) 1012 link_speed = ETH_LINK_SPEED_10; 1013 else if (!strcmp(res->value1, "100")) 1014 link_speed = ETH_LINK_SPEED_100; 1015 else if (!strcmp(res->value1, "1000")) 1016 link_speed = ETH_LINK_SPEED_1000; 1017 else if (!strcmp(res->value1, "10000")) 1018 link_speed = ETH_LINK_SPEED_10000; 1019 else if (!strcmp(res->value1, "40000")) 1020 link_speed = ETH_LINK_SPEED_40G; 1021 else if (!strcmp(res->value1, "auto")) 1022 link_speed = ETH_LINK_SPEED_AUTONEG; 1023 else { 1024 printf("Unknown parameter\n"); 1025 return; 1026 } 1027 1028 if (!strcmp(res->value2, "half")) 1029 link_duplex = ETH_LINK_HALF_DUPLEX; 1030 else if (!strcmp(res->value2, "full")) 1031 link_duplex = ETH_LINK_FULL_DUPLEX; 1032 else if (!strcmp(res->value2, "auto")) 1033 link_duplex = ETH_LINK_AUTONEG_DUPLEX; 1034 else { 1035 printf("Unknown parameter\n"); 1036 return; 1037 } 1038 1039 ports[res->id].dev_conf.link_speed = link_speed; 1040 ports[res->id].dev_conf.link_duplex = link_duplex; 1041 1042 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 1043 } 1044 1045 1046 cmdline_parse_token_string_t cmd_config_speed_specific_port = 1047 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_specific, port, 1048 "port"); 1049 cmdline_parse_token_string_t cmd_config_speed_specific_keyword = 1050 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_specific, keyword, 1051 "config"); 1052 cmdline_parse_token_num_t cmd_config_speed_specific_id = 1053 TOKEN_NUM_INITIALIZER(struct cmd_config_speed_specific, id, UINT8); 1054 cmdline_parse_token_string_t cmd_config_speed_specific_item1 = 1055 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_specific, item1, 1056 "speed"); 1057 cmdline_parse_token_string_t cmd_config_speed_specific_value1 = 1058 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_specific, value1, 1059 "10#100#1000#10000#40000#auto"); 1060 cmdline_parse_token_string_t cmd_config_speed_specific_item2 = 1061 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_specific, item2, 1062 "duplex"); 1063 cmdline_parse_token_string_t cmd_config_speed_specific_value2 = 1064 TOKEN_STRING_INITIALIZER(struct cmd_config_speed_specific, value2, 1065 "half#full#auto"); 1066 1067 cmdline_parse_inst_t cmd_config_speed_specific = { 1068 .f = cmd_config_speed_specific_parsed, 1069 .data = NULL, 1070 .help_str = "port config X speed 10|100|1000|10000|40000|auto duplex " 1071 "half|full|auto", 1072 .tokens = { 1073 (void *)&cmd_config_speed_specific_port, 1074 (void *)&cmd_config_speed_specific_keyword, 1075 (void *)&cmd_config_speed_specific_id, 1076 (void *)&cmd_config_speed_specific_item1, 1077 (void *)&cmd_config_speed_specific_value1, 1078 (void *)&cmd_config_speed_specific_item2, 1079 (void *)&cmd_config_speed_specific_value2, 1080 NULL, 1081 }, 1082 }; 1083 1084 /* *** configure txq/rxq, txd/rxd *** */ 1085 struct cmd_config_rx_tx { 1086 cmdline_fixed_string_t port; 1087 cmdline_fixed_string_t keyword; 1088 cmdline_fixed_string_t all; 1089 cmdline_fixed_string_t name; 1090 uint16_t value; 1091 }; 1092 1093 static void 1094 cmd_config_rx_tx_parsed(void *parsed_result, 1095 __attribute__((unused)) struct cmdline *cl, 1096 __attribute__((unused)) void *data) 1097 { 1098 struct cmd_config_rx_tx *res = parsed_result; 1099 1100 if (!all_ports_stopped()) { 1101 printf("Please stop all ports first\n"); 1102 return; 1103 } 1104 1105 if (!strcmp(res->name, "rxq")) { 1106 if (res->value <= 0) { 1107 printf("rxq %d invalid - must be > 0\n", res->value); 1108 return; 1109 } 1110 nb_rxq = res->value; 1111 } 1112 else if (!strcmp(res->name, "txq")) { 1113 if (res->value <= 0) { 1114 printf("txq %d invalid - must be > 0\n", res->value); 1115 return; 1116 } 1117 nb_txq = res->value; 1118 } 1119 else if (!strcmp(res->name, "rxd")) { 1120 if (res->value <= 0 || res->value > RTE_TEST_RX_DESC_MAX) { 1121 printf("rxd %d invalid - must be > 0 && <= %d\n", 1122 res->value, RTE_TEST_RX_DESC_MAX); 1123 return; 1124 } 1125 nb_rxd = res->value; 1126 } else if (!strcmp(res->name, "txd")) { 1127 if (res->value <= 0 || res->value > RTE_TEST_TX_DESC_MAX) { 1128 printf("txd %d invalid - must be > 0 && <= %d\n", 1129 res->value, RTE_TEST_TX_DESC_MAX); 1130 return; 1131 } 1132 nb_txd = res->value; 1133 } else { 1134 printf("Unknown parameter\n"); 1135 return; 1136 } 1137 1138 init_port_config(); 1139 1140 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 1141 } 1142 1143 cmdline_parse_token_string_t cmd_config_rx_tx_port = 1144 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_tx, port, "port"); 1145 cmdline_parse_token_string_t cmd_config_rx_tx_keyword = 1146 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_tx, keyword, "config"); 1147 cmdline_parse_token_string_t cmd_config_rx_tx_all = 1148 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_tx, all, "all"); 1149 cmdline_parse_token_string_t cmd_config_rx_tx_name = 1150 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_tx, name, 1151 "rxq#txq#rxd#txd"); 1152 cmdline_parse_token_num_t cmd_config_rx_tx_value = 1153 TOKEN_NUM_INITIALIZER(struct cmd_config_rx_tx, value, UINT16); 1154 1155 cmdline_parse_inst_t cmd_config_rx_tx = { 1156 .f = cmd_config_rx_tx_parsed, 1157 .data = NULL, 1158 .help_str = "port config all rxq|txq|rxd|txd value", 1159 .tokens = { 1160 (void *)&cmd_config_rx_tx_port, 1161 (void *)&cmd_config_rx_tx_keyword, 1162 (void *)&cmd_config_rx_tx_all, 1163 (void *)&cmd_config_rx_tx_name, 1164 (void *)&cmd_config_rx_tx_value, 1165 NULL, 1166 }, 1167 }; 1168 1169 /* *** config max packet length *** */ 1170 struct cmd_config_max_pkt_len_result { 1171 cmdline_fixed_string_t port; 1172 cmdline_fixed_string_t keyword; 1173 cmdline_fixed_string_t all; 1174 cmdline_fixed_string_t name; 1175 uint32_t value; 1176 }; 1177 1178 static void 1179 cmd_config_max_pkt_len_parsed(void *parsed_result, 1180 __attribute__((unused)) struct cmdline *cl, 1181 __attribute__((unused)) void *data) 1182 { 1183 struct cmd_config_max_pkt_len_result *res = parsed_result; 1184 1185 if (!all_ports_stopped()) { 1186 printf("Please stop all ports first\n"); 1187 return; 1188 } 1189 1190 if (!strcmp(res->name, "max-pkt-len")) { 1191 if (res->value < ETHER_MIN_LEN) { 1192 printf("max-pkt-len can not be less than %d\n", 1193 ETHER_MIN_LEN); 1194 return; 1195 } 1196 if (res->value == rx_mode.max_rx_pkt_len) 1197 return; 1198 1199 rx_mode.max_rx_pkt_len = res->value; 1200 if (res->value > ETHER_MAX_LEN) 1201 rx_mode.jumbo_frame = 1; 1202 else 1203 rx_mode.jumbo_frame = 0; 1204 } else { 1205 printf("Unknown parameter\n"); 1206 return; 1207 } 1208 1209 init_port_config(); 1210 1211 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 1212 } 1213 1214 cmdline_parse_token_string_t cmd_config_max_pkt_len_port = 1215 TOKEN_STRING_INITIALIZER(struct cmd_config_max_pkt_len_result, port, 1216 "port"); 1217 cmdline_parse_token_string_t cmd_config_max_pkt_len_keyword = 1218 TOKEN_STRING_INITIALIZER(struct cmd_config_max_pkt_len_result, keyword, 1219 "config"); 1220 cmdline_parse_token_string_t cmd_config_max_pkt_len_all = 1221 TOKEN_STRING_INITIALIZER(struct cmd_config_max_pkt_len_result, all, 1222 "all"); 1223 cmdline_parse_token_string_t cmd_config_max_pkt_len_name = 1224 TOKEN_STRING_INITIALIZER(struct cmd_config_max_pkt_len_result, name, 1225 "max-pkt-len"); 1226 cmdline_parse_token_num_t cmd_config_max_pkt_len_value = 1227 TOKEN_NUM_INITIALIZER(struct cmd_config_max_pkt_len_result, value, 1228 UINT32); 1229 1230 cmdline_parse_inst_t cmd_config_max_pkt_len = { 1231 .f = cmd_config_max_pkt_len_parsed, 1232 .data = NULL, 1233 .help_str = "port config all max-pkt-len value", 1234 .tokens = { 1235 (void *)&cmd_config_max_pkt_len_port, 1236 (void *)&cmd_config_max_pkt_len_keyword, 1237 (void *)&cmd_config_max_pkt_len_all, 1238 (void *)&cmd_config_max_pkt_len_name, 1239 (void *)&cmd_config_max_pkt_len_value, 1240 NULL, 1241 }, 1242 }; 1243 1244 /* *** configure port MTU *** */ 1245 struct cmd_config_mtu_result { 1246 cmdline_fixed_string_t port; 1247 cmdline_fixed_string_t keyword; 1248 cmdline_fixed_string_t mtu; 1249 uint8_t port_id; 1250 uint16_t value; 1251 }; 1252 1253 static void 1254 cmd_config_mtu_parsed(void *parsed_result, 1255 __attribute__((unused)) struct cmdline *cl, 1256 __attribute__((unused)) void *data) 1257 { 1258 struct cmd_config_mtu_result *res = parsed_result; 1259 1260 if (res->value < ETHER_MIN_LEN) { 1261 printf("mtu cannot be less than %d\n", ETHER_MIN_LEN); 1262 return; 1263 } 1264 port_mtu_set(res->port_id, res->value); 1265 } 1266 1267 cmdline_parse_token_string_t cmd_config_mtu_port = 1268 TOKEN_STRING_INITIALIZER(struct cmd_config_mtu_result, port, 1269 "port"); 1270 cmdline_parse_token_string_t cmd_config_mtu_keyword = 1271 TOKEN_STRING_INITIALIZER(struct cmd_config_mtu_result, keyword, 1272 "config"); 1273 cmdline_parse_token_string_t cmd_config_mtu_mtu = 1274 TOKEN_STRING_INITIALIZER(struct cmd_config_mtu_result, keyword, 1275 "mtu"); 1276 cmdline_parse_token_num_t cmd_config_mtu_port_id = 1277 TOKEN_NUM_INITIALIZER(struct cmd_config_mtu_result, port_id, UINT8); 1278 cmdline_parse_token_num_t cmd_config_mtu_value = 1279 TOKEN_NUM_INITIALIZER(struct cmd_config_mtu_result, value, UINT16); 1280 1281 cmdline_parse_inst_t cmd_config_mtu = { 1282 .f = cmd_config_mtu_parsed, 1283 .data = NULL, 1284 .help_str = "port config mtu value", 1285 .tokens = { 1286 (void *)&cmd_config_mtu_port, 1287 (void *)&cmd_config_mtu_keyword, 1288 (void *)&cmd_config_mtu_mtu, 1289 (void *)&cmd_config_mtu_port_id, 1290 (void *)&cmd_config_mtu_value, 1291 NULL, 1292 }, 1293 }; 1294 1295 /* *** configure rx mode *** */ 1296 struct cmd_config_rx_mode_flag { 1297 cmdline_fixed_string_t port; 1298 cmdline_fixed_string_t keyword; 1299 cmdline_fixed_string_t all; 1300 cmdline_fixed_string_t name; 1301 cmdline_fixed_string_t value; 1302 }; 1303 1304 static void 1305 cmd_config_rx_mode_flag_parsed(void *parsed_result, 1306 __attribute__((unused)) struct cmdline *cl, 1307 __attribute__((unused)) void *data) 1308 { 1309 struct cmd_config_rx_mode_flag *res = parsed_result; 1310 1311 if (!all_ports_stopped()) { 1312 printf("Please stop all ports first\n"); 1313 return; 1314 } 1315 1316 if (!strcmp(res->name, "crc-strip")) { 1317 if (!strcmp(res->value, "on")) 1318 rx_mode.hw_strip_crc = 1; 1319 else if (!strcmp(res->value, "off")) 1320 rx_mode.hw_strip_crc = 0; 1321 else { 1322 printf("Unknown parameter\n"); 1323 return; 1324 } 1325 } else if (!strcmp(res->name, "rx-cksum")) { 1326 if (!strcmp(res->value, "on")) 1327 rx_mode.hw_ip_checksum = 1; 1328 else if (!strcmp(res->value, "off")) 1329 rx_mode.hw_ip_checksum = 0; 1330 else { 1331 printf("Unknown parameter\n"); 1332 return; 1333 } 1334 } else if (!strcmp(res->name, "hw-vlan")) { 1335 if (!strcmp(res->value, "on")) { 1336 rx_mode.hw_vlan_filter = 1; 1337 rx_mode.hw_vlan_strip = 1; 1338 } 1339 else if (!strcmp(res->value, "off")) { 1340 rx_mode.hw_vlan_filter = 0; 1341 rx_mode.hw_vlan_strip = 0; 1342 } 1343 else { 1344 printf("Unknown parameter\n"); 1345 return; 1346 } 1347 } else if (!strcmp(res->name, "hw-vlan-filter")) { 1348 if (!strcmp(res->value, "on")) 1349 rx_mode.hw_vlan_filter = 1; 1350 else if (!strcmp(res->value, "off")) 1351 rx_mode.hw_vlan_filter = 0; 1352 else { 1353 printf("Unknown parameter\n"); 1354 return; 1355 } 1356 } else if (!strcmp(res->name, "hw-vlan-strip")) { 1357 if (!strcmp(res->value, "on")) 1358 rx_mode.hw_vlan_strip = 1; 1359 else if (!strcmp(res->value, "off")) 1360 rx_mode.hw_vlan_strip = 0; 1361 else { 1362 printf("Unknown parameter\n"); 1363 return; 1364 } 1365 } else if (!strcmp(res->name, "hw-vlan-extend")) { 1366 if (!strcmp(res->value, "on")) 1367 rx_mode.hw_vlan_extend = 1; 1368 else if (!strcmp(res->value, "off")) 1369 rx_mode.hw_vlan_extend = 0; 1370 else { 1371 printf("Unknown parameter\n"); 1372 return; 1373 } 1374 } else if (!strcmp(res->name, "drop-en")) { 1375 if (!strcmp(res->value, "on")) 1376 rx_drop_en = 1; 1377 else if (!strcmp(res->value, "off")) 1378 rx_drop_en = 0; 1379 else { 1380 printf("Unknown parameter\n"); 1381 return; 1382 } 1383 } else { 1384 printf("Unknown parameter\n"); 1385 return; 1386 } 1387 1388 init_port_config(); 1389 1390 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 1391 } 1392 1393 cmdline_parse_token_string_t cmd_config_rx_mode_flag_port = 1394 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_mode_flag, port, "port"); 1395 cmdline_parse_token_string_t cmd_config_rx_mode_flag_keyword = 1396 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_mode_flag, keyword, 1397 "config"); 1398 cmdline_parse_token_string_t cmd_config_rx_mode_flag_all = 1399 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_mode_flag, all, "all"); 1400 cmdline_parse_token_string_t cmd_config_rx_mode_flag_name = 1401 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_mode_flag, name, 1402 "crc-strip#rx-cksum#hw-vlan#" 1403 "hw-vlan-filter#hw-vlan-strip#hw-vlan-extend"); 1404 cmdline_parse_token_string_t cmd_config_rx_mode_flag_value = 1405 TOKEN_STRING_INITIALIZER(struct cmd_config_rx_mode_flag, value, 1406 "on#off"); 1407 1408 cmdline_parse_inst_t cmd_config_rx_mode_flag = { 1409 .f = cmd_config_rx_mode_flag_parsed, 1410 .data = NULL, 1411 .help_str = "port config all crc-strip|rx-cksum|hw-vlan|" 1412 "hw-vlan-filter|hw-vlan-strip|hw-vlan-extend on|off", 1413 .tokens = { 1414 (void *)&cmd_config_rx_mode_flag_port, 1415 (void *)&cmd_config_rx_mode_flag_keyword, 1416 (void *)&cmd_config_rx_mode_flag_all, 1417 (void *)&cmd_config_rx_mode_flag_name, 1418 (void *)&cmd_config_rx_mode_flag_value, 1419 NULL, 1420 }, 1421 }; 1422 1423 /* *** configure rss *** */ 1424 struct cmd_config_rss { 1425 cmdline_fixed_string_t port; 1426 cmdline_fixed_string_t keyword; 1427 cmdline_fixed_string_t all; 1428 cmdline_fixed_string_t name; 1429 cmdline_fixed_string_t value; 1430 }; 1431 1432 static void 1433 cmd_config_rss_parsed(void *parsed_result, 1434 __attribute__((unused)) struct cmdline *cl, 1435 __attribute__((unused)) void *data) 1436 { 1437 struct cmd_config_rss *res = parsed_result; 1438 struct rte_eth_rss_conf rss_conf; 1439 uint8_t i; 1440 1441 if (!strcmp(res->value, "all")) 1442 rss_conf.rss_hf = ETH_RSS_IP | ETH_RSS_TCP | 1443 ETH_RSS_UDP | ETH_RSS_SCTP | 1444 ETH_RSS_L2_PAYLOAD; 1445 else if (!strcmp(res->value, "ip")) 1446 rss_conf.rss_hf = ETH_RSS_IP; 1447 else if (!strcmp(res->value, "udp")) 1448 rss_conf.rss_hf = ETH_RSS_UDP; 1449 else if (!strcmp(res->value, "tcp")) 1450 rss_conf.rss_hf = ETH_RSS_TCP; 1451 else if (!strcmp(res->value, "sctp")) 1452 rss_conf.rss_hf = ETH_RSS_SCTP; 1453 else if (!strcmp(res->value, "ether")) 1454 rss_conf.rss_hf = ETH_RSS_L2_PAYLOAD; 1455 else if (!strcmp(res->value, "none")) 1456 rss_conf.rss_hf = 0; 1457 else { 1458 printf("Unknown parameter\n"); 1459 return; 1460 } 1461 rss_conf.rss_key = NULL; 1462 for (i = 0; i < rte_eth_dev_count(); i++) 1463 rte_eth_dev_rss_hash_update(i, &rss_conf); 1464 } 1465 1466 cmdline_parse_token_string_t cmd_config_rss_port = 1467 TOKEN_STRING_INITIALIZER(struct cmd_config_rss, port, "port"); 1468 cmdline_parse_token_string_t cmd_config_rss_keyword = 1469 TOKEN_STRING_INITIALIZER(struct cmd_config_rss, keyword, "config"); 1470 cmdline_parse_token_string_t cmd_config_rss_all = 1471 TOKEN_STRING_INITIALIZER(struct cmd_config_rss, all, "all"); 1472 cmdline_parse_token_string_t cmd_config_rss_name = 1473 TOKEN_STRING_INITIALIZER(struct cmd_config_rss, name, "rss"); 1474 cmdline_parse_token_string_t cmd_config_rss_value = 1475 TOKEN_STRING_INITIALIZER(struct cmd_config_rss, value, 1476 "all#ip#tcp#udp#sctp#ether#none"); 1477 1478 cmdline_parse_inst_t cmd_config_rss = { 1479 .f = cmd_config_rss_parsed, 1480 .data = NULL, 1481 .help_str = "port config all rss all|ip|tcp|udp|sctp|ether|none", 1482 .tokens = { 1483 (void *)&cmd_config_rss_port, 1484 (void *)&cmd_config_rss_keyword, 1485 (void *)&cmd_config_rss_all, 1486 (void *)&cmd_config_rss_name, 1487 (void *)&cmd_config_rss_value, 1488 NULL, 1489 }, 1490 }; 1491 1492 /* *** configure rss hash key *** */ 1493 struct cmd_config_rss_hash_key { 1494 cmdline_fixed_string_t port; 1495 cmdline_fixed_string_t config; 1496 uint8_t port_id; 1497 cmdline_fixed_string_t rss_hash_key; 1498 cmdline_fixed_string_t key; 1499 }; 1500 1501 #define RSS_HASH_KEY_LENGTH 40 1502 static uint8_t 1503 hexa_digit_to_value(char hexa_digit) 1504 { 1505 if ((hexa_digit >= '0') && (hexa_digit <= '9')) 1506 return (uint8_t) (hexa_digit - '0'); 1507 if ((hexa_digit >= 'a') && (hexa_digit <= 'f')) 1508 return (uint8_t) ((hexa_digit - 'a') + 10); 1509 if ((hexa_digit >= 'A') && (hexa_digit <= 'F')) 1510 return (uint8_t) ((hexa_digit - 'A') + 10); 1511 /* Invalid hexa digit */ 1512 return 0xFF; 1513 } 1514 1515 static uint8_t 1516 parse_and_check_key_hexa_digit(char *key, int idx) 1517 { 1518 uint8_t hexa_v; 1519 1520 hexa_v = hexa_digit_to_value(key[idx]); 1521 if (hexa_v == 0xFF) 1522 printf("invalid key: character %c at position %d is not a " 1523 "valid hexa digit\n", key[idx], idx); 1524 return hexa_v; 1525 } 1526 1527 static void 1528 cmd_config_rss_hash_key_parsed(void *parsed_result, 1529 __attribute__((unused)) struct cmdline *cl, 1530 __attribute__((unused)) void *data) 1531 { 1532 struct cmd_config_rss_hash_key *res = parsed_result; 1533 uint8_t hash_key[RSS_HASH_KEY_LENGTH]; 1534 uint8_t xdgt0; 1535 uint8_t xdgt1; 1536 int i; 1537 1538 /* Check the length of the RSS hash key */ 1539 if (strlen(res->key) != (RSS_HASH_KEY_LENGTH * 2)) { 1540 printf("key length: %d invalid - key must be a string of %d" 1541 "hexa-decimal numbers\n", (int) strlen(res->key), 1542 RSS_HASH_KEY_LENGTH * 2); 1543 return; 1544 } 1545 /* Translate RSS hash key into binary representation */ 1546 for (i = 0; i < RSS_HASH_KEY_LENGTH; i++) { 1547 xdgt0 = parse_and_check_key_hexa_digit(res->key, (i * 2)); 1548 if (xdgt0 == 0xFF) 1549 return; 1550 xdgt1 = parse_and_check_key_hexa_digit(res->key, (i * 2) + 1); 1551 if (xdgt1 == 0xFF) 1552 return; 1553 hash_key[i] = (uint8_t) ((xdgt0 * 16) + xdgt1); 1554 } 1555 port_rss_hash_key_update(res->port_id, hash_key); 1556 } 1557 1558 cmdline_parse_token_string_t cmd_config_rss_hash_key_port = 1559 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_hash_key, port, "port"); 1560 cmdline_parse_token_string_t cmd_config_rss_hash_key_config = 1561 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_hash_key, config, 1562 "config"); 1563 cmdline_parse_token_num_t cmd_config_rss_hash_key_port_id = 1564 TOKEN_NUM_INITIALIZER(struct cmd_config_rss_hash_key, port_id, UINT8); 1565 cmdline_parse_token_string_t cmd_config_rss_hash_key_rss_hash_key = 1566 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_hash_key, 1567 rss_hash_key, "rss-hash-key"); 1568 cmdline_parse_token_string_t cmd_config_rss_hash_key_value = 1569 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_hash_key, key, NULL); 1570 1571 cmdline_parse_inst_t cmd_config_rss_hash_key = { 1572 .f = cmd_config_rss_hash_key_parsed, 1573 .data = NULL, 1574 .help_str = "port config X rss-hash-key 80 hexa digits", 1575 .tokens = { 1576 (void *)&cmd_config_rss_hash_key_port, 1577 (void *)&cmd_config_rss_hash_key_config, 1578 (void *)&cmd_config_rss_hash_key_port_id, 1579 (void *)&cmd_config_rss_hash_key_rss_hash_key, 1580 (void *)&cmd_config_rss_hash_key_value, 1581 NULL, 1582 }, 1583 }; 1584 1585 /* *** configure port rxq/txq start/stop *** */ 1586 struct cmd_config_rxtx_queue { 1587 cmdline_fixed_string_t port; 1588 uint8_t portid; 1589 cmdline_fixed_string_t rxtxq; 1590 uint16_t qid; 1591 cmdline_fixed_string_t opname; 1592 }; 1593 1594 static void 1595 cmd_config_rxtx_queue_parsed(void *parsed_result, 1596 __attribute__((unused)) struct cmdline *cl, 1597 __attribute__((unused)) void *data) 1598 { 1599 struct cmd_config_rxtx_queue *res = parsed_result; 1600 uint8_t isrx; 1601 uint8_t isstart; 1602 int ret = 0; 1603 1604 if (test_done == 0) { 1605 printf("Please stop forwarding first\n"); 1606 return; 1607 } 1608 1609 if (port_id_is_invalid(res->portid, ENABLED_WARN)) 1610 return; 1611 1612 if (port_is_started(res->portid) != 1) { 1613 printf("Please start port %u first\n", res->portid); 1614 return; 1615 } 1616 1617 if (!strcmp(res->rxtxq, "rxq")) 1618 isrx = 1; 1619 else if (!strcmp(res->rxtxq, "txq")) 1620 isrx = 0; 1621 else { 1622 printf("Unknown parameter\n"); 1623 return; 1624 } 1625 1626 if (isrx && rx_queue_id_is_invalid(res->qid)) 1627 return; 1628 else if (!isrx && tx_queue_id_is_invalid(res->qid)) 1629 return; 1630 1631 if (!strcmp(res->opname, "start")) 1632 isstart = 1; 1633 else if (!strcmp(res->opname, "stop")) 1634 isstart = 0; 1635 else { 1636 printf("Unknown parameter\n"); 1637 return; 1638 } 1639 1640 if (isstart && isrx) 1641 ret = rte_eth_dev_rx_queue_start(res->portid, res->qid); 1642 else if (!isstart && isrx) 1643 ret = rte_eth_dev_rx_queue_stop(res->portid, res->qid); 1644 else if (isstart && !isrx) 1645 ret = rte_eth_dev_tx_queue_start(res->portid, res->qid); 1646 else 1647 ret = rte_eth_dev_tx_queue_stop(res->portid, res->qid); 1648 1649 if (ret == -ENOTSUP) 1650 printf("Function not supported in PMD driver\n"); 1651 } 1652 1653 cmdline_parse_token_string_t cmd_config_rxtx_queue_port = 1654 TOKEN_STRING_INITIALIZER(struct cmd_config_rxtx_queue, port, "port"); 1655 cmdline_parse_token_num_t cmd_config_rxtx_queue_portid = 1656 TOKEN_NUM_INITIALIZER(struct cmd_config_rxtx_queue, portid, UINT8); 1657 cmdline_parse_token_string_t cmd_config_rxtx_queue_rxtxq = 1658 TOKEN_STRING_INITIALIZER(struct cmd_config_rxtx_queue, rxtxq, "rxq#txq"); 1659 cmdline_parse_token_num_t cmd_config_rxtx_queue_qid = 1660 TOKEN_NUM_INITIALIZER(struct cmd_config_rxtx_queue, qid, UINT16); 1661 cmdline_parse_token_string_t cmd_config_rxtx_queue_opname = 1662 TOKEN_STRING_INITIALIZER(struct cmd_config_rxtx_queue, opname, 1663 "start#stop"); 1664 1665 cmdline_parse_inst_t cmd_config_rxtx_queue = { 1666 .f = cmd_config_rxtx_queue_parsed, 1667 .data = NULL, 1668 .help_str = "port X rxq|txq ID start|stop", 1669 .tokens = { 1670 (void *)&cmd_config_speed_all_port, 1671 (void *)&cmd_config_rxtx_queue_portid, 1672 (void *)&cmd_config_rxtx_queue_rxtxq, 1673 (void *)&cmd_config_rxtx_queue_qid, 1674 (void *)&cmd_config_rxtx_queue_opname, 1675 NULL, 1676 }, 1677 }; 1678 1679 /* *** Configure RSS RETA *** */ 1680 struct cmd_config_rss_reta { 1681 cmdline_fixed_string_t port; 1682 cmdline_fixed_string_t keyword; 1683 uint8_t port_id; 1684 cmdline_fixed_string_t name; 1685 cmdline_fixed_string_t list_name; 1686 cmdline_fixed_string_t list_of_items; 1687 }; 1688 1689 static int 1690 parse_reta_config(const char *str, 1691 struct rte_eth_rss_reta_entry64 *reta_conf, 1692 uint16_t nb_entries) 1693 { 1694 int i; 1695 unsigned size; 1696 uint16_t hash_index, idx, shift; 1697 uint8_t nb_queue; 1698 char s[256]; 1699 const char *p, *p0 = str; 1700 char *end; 1701 enum fieldnames { 1702 FLD_HASH_INDEX = 0, 1703 FLD_QUEUE, 1704 _NUM_FLD 1705 }; 1706 unsigned long int_fld[_NUM_FLD]; 1707 char *str_fld[_NUM_FLD]; 1708 1709 while ((p = strchr(p0,'(')) != NULL) { 1710 ++p; 1711 if((p0 = strchr(p,')')) == NULL) 1712 return -1; 1713 1714 size = p0 - p; 1715 if(size >= sizeof(s)) 1716 return -1; 1717 1718 snprintf(s, sizeof(s), "%.*s", size, p); 1719 if (rte_strsplit(s, sizeof(s), str_fld, _NUM_FLD, ',') != _NUM_FLD) 1720 return -1; 1721 for (i = 0; i < _NUM_FLD; i++) { 1722 errno = 0; 1723 int_fld[i] = strtoul(str_fld[i], &end, 0); 1724 if (errno != 0 || end == str_fld[i] || 1725 int_fld[i] > 65535) 1726 return -1; 1727 } 1728 1729 hash_index = (uint16_t)int_fld[FLD_HASH_INDEX]; 1730 nb_queue = (uint8_t)int_fld[FLD_QUEUE]; 1731 1732 if (hash_index >= nb_entries) { 1733 printf("Invalid RETA hash index=%d\n", hash_index); 1734 return -1; 1735 } 1736 1737 idx = hash_index / RTE_RETA_GROUP_SIZE; 1738 shift = hash_index % RTE_RETA_GROUP_SIZE; 1739 reta_conf[idx].mask |= (1ULL << shift); 1740 reta_conf[idx].reta[shift] = nb_queue; 1741 } 1742 1743 return 0; 1744 } 1745 1746 static void 1747 cmd_set_rss_reta_parsed(void *parsed_result, 1748 __attribute__((unused)) struct cmdline *cl, 1749 __attribute__((unused)) void *data) 1750 { 1751 int ret; 1752 struct rte_eth_dev_info dev_info; 1753 struct rte_eth_rss_reta_entry64 reta_conf[8]; 1754 struct cmd_config_rss_reta *res = parsed_result; 1755 1756 memset(&dev_info, 0, sizeof(dev_info)); 1757 rte_eth_dev_info_get(res->port_id, &dev_info); 1758 if (dev_info.reta_size == 0) { 1759 printf("Redirection table size is 0 which is " 1760 "invalid for RSS\n"); 1761 return; 1762 } else 1763 printf("The reta size of port %d is %u\n", 1764 res->port_id, dev_info.reta_size); 1765 if (dev_info.reta_size > ETH_RSS_RETA_SIZE_512) { 1766 printf("Currently do not support more than %u entries of " 1767 "redirection table\n", ETH_RSS_RETA_SIZE_512); 1768 return; 1769 } 1770 1771 memset(reta_conf, 0, sizeof(reta_conf)); 1772 if (!strcmp(res->list_name, "reta")) { 1773 if (parse_reta_config(res->list_of_items, reta_conf, 1774 dev_info.reta_size)) { 1775 printf("Invalid RSS Redirection Table " 1776 "config entered\n"); 1777 return; 1778 } 1779 ret = rte_eth_dev_rss_reta_update(res->port_id, 1780 reta_conf, dev_info.reta_size); 1781 if (ret != 0) 1782 printf("Bad redirection table parameter, " 1783 "return code = %d \n", ret); 1784 } 1785 } 1786 1787 cmdline_parse_token_string_t cmd_config_rss_reta_port = 1788 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_reta, port, "port"); 1789 cmdline_parse_token_string_t cmd_config_rss_reta_keyword = 1790 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_reta, keyword, "config"); 1791 cmdline_parse_token_num_t cmd_config_rss_reta_port_id = 1792 TOKEN_NUM_INITIALIZER(struct cmd_config_rss_reta, port_id, UINT8); 1793 cmdline_parse_token_string_t cmd_config_rss_reta_name = 1794 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_reta, name, "rss"); 1795 cmdline_parse_token_string_t cmd_config_rss_reta_list_name = 1796 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_reta, list_name, "reta"); 1797 cmdline_parse_token_string_t cmd_config_rss_reta_list_of_items = 1798 TOKEN_STRING_INITIALIZER(struct cmd_config_rss_reta, list_of_items, 1799 NULL); 1800 cmdline_parse_inst_t cmd_config_rss_reta = { 1801 .f = cmd_set_rss_reta_parsed, 1802 .data = NULL, 1803 .help_str = "port config X rss reta (hash,queue)[,(hash,queue)]", 1804 .tokens = { 1805 (void *)&cmd_config_rss_reta_port, 1806 (void *)&cmd_config_rss_reta_keyword, 1807 (void *)&cmd_config_rss_reta_port_id, 1808 (void *)&cmd_config_rss_reta_name, 1809 (void *)&cmd_config_rss_reta_list_name, 1810 (void *)&cmd_config_rss_reta_list_of_items, 1811 NULL, 1812 }, 1813 }; 1814 1815 /* *** SHOW PORT RETA INFO *** */ 1816 struct cmd_showport_reta { 1817 cmdline_fixed_string_t show; 1818 cmdline_fixed_string_t port; 1819 uint8_t port_id; 1820 cmdline_fixed_string_t rss; 1821 cmdline_fixed_string_t reta; 1822 uint16_t size; 1823 cmdline_fixed_string_t list_of_items; 1824 }; 1825 1826 static int 1827 showport_parse_reta_config(struct rte_eth_rss_reta_entry64 *conf, 1828 uint16_t nb_entries, 1829 char *str) 1830 { 1831 uint32_t size; 1832 const char *p, *p0 = str; 1833 char s[256]; 1834 char *end; 1835 char *str_fld[8]; 1836 uint16_t i, num = nb_entries / RTE_RETA_GROUP_SIZE; 1837 int ret; 1838 1839 p = strchr(p0, '('); 1840 if (p == NULL) 1841 return -1; 1842 p++; 1843 p0 = strchr(p, ')'); 1844 if (p0 == NULL) 1845 return -1; 1846 size = p0 - p; 1847 if (size >= sizeof(s)) { 1848 printf("The string size exceeds the internal buffer size\n"); 1849 return -1; 1850 } 1851 snprintf(s, sizeof(s), "%.*s", size, p); 1852 ret = rte_strsplit(s, sizeof(s), str_fld, num, ','); 1853 if (ret <= 0 || ret != num) { 1854 printf("The bits of masks do not match the number of " 1855 "reta entries: %u\n", num); 1856 return -1; 1857 } 1858 for (i = 0; i < ret; i++) 1859 conf[i].mask = (uint64_t)strtoul(str_fld[i], &end, 0); 1860 1861 return 0; 1862 } 1863 1864 static void 1865 cmd_showport_reta_parsed(void *parsed_result, 1866 __attribute__((unused)) struct cmdline *cl, 1867 __attribute__((unused)) void *data) 1868 { 1869 struct cmd_showport_reta *res = parsed_result; 1870 struct rte_eth_rss_reta_entry64 reta_conf[8]; 1871 struct rte_eth_dev_info dev_info; 1872 1873 memset(&dev_info, 0, sizeof(dev_info)); 1874 rte_eth_dev_info_get(res->port_id, &dev_info); 1875 if (dev_info.reta_size == 0 || res->size != dev_info.reta_size || 1876 res->size > ETH_RSS_RETA_SIZE_512) { 1877 printf("Invalid redirection table size: %u\n", res->size); 1878 return; 1879 } 1880 1881 memset(reta_conf, 0, sizeof(reta_conf)); 1882 if (showport_parse_reta_config(reta_conf, res->size, 1883 res->list_of_items) < 0) { 1884 printf("Invalid string: %s for reta masks\n", 1885 res->list_of_items); 1886 return; 1887 } 1888 port_rss_reta_info(res->port_id, reta_conf, res->size); 1889 } 1890 1891 cmdline_parse_token_string_t cmd_showport_reta_show = 1892 TOKEN_STRING_INITIALIZER(struct cmd_showport_reta, show, "show"); 1893 cmdline_parse_token_string_t cmd_showport_reta_port = 1894 TOKEN_STRING_INITIALIZER(struct cmd_showport_reta, port, "port"); 1895 cmdline_parse_token_num_t cmd_showport_reta_port_id = 1896 TOKEN_NUM_INITIALIZER(struct cmd_showport_reta, port_id, UINT8); 1897 cmdline_parse_token_string_t cmd_showport_reta_rss = 1898 TOKEN_STRING_INITIALIZER(struct cmd_showport_reta, rss, "rss"); 1899 cmdline_parse_token_string_t cmd_showport_reta_reta = 1900 TOKEN_STRING_INITIALIZER(struct cmd_showport_reta, reta, "reta"); 1901 cmdline_parse_token_num_t cmd_showport_reta_size = 1902 TOKEN_NUM_INITIALIZER(struct cmd_showport_reta, size, UINT16); 1903 cmdline_parse_token_string_t cmd_showport_reta_list_of_items = 1904 TOKEN_STRING_INITIALIZER(struct cmd_showport_reta, 1905 list_of_items, NULL); 1906 1907 cmdline_parse_inst_t cmd_showport_reta = { 1908 .f = cmd_showport_reta_parsed, 1909 .data = NULL, 1910 .help_str = "show port X rss reta (size) (mask0,mask1,...)", 1911 .tokens = { 1912 (void *)&cmd_showport_reta_show, 1913 (void *)&cmd_showport_reta_port, 1914 (void *)&cmd_showport_reta_port_id, 1915 (void *)&cmd_showport_reta_rss, 1916 (void *)&cmd_showport_reta_reta, 1917 (void *)&cmd_showport_reta_size, 1918 (void *)&cmd_showport_reta_list_of_items, 1919 NULL, 1920 }, 1921 }; 1922 1923 /* *** Show RSS hash configuration *** */ 1924 struct cmd_showport_rss_hash { 1925 cmdline_fixed_string_t show; 1926 cmdline_fixed_string_t port; 1927 uint8_t port_id; 1928 cmdline_fixed_string_t rss_hash; 1929 cmdline_fixed_string_t key; /* optional argument */ 1930 }; 1931 1932 static void cmd_showport_rss_hash_parsed(void *parsed_result, 1933 __attribute__((unused)) struct cmdline *cl, 1934 void *show_rss_key) 1935 { 1936 struct cmd_showport_rss_hash *res = parsed_result; 1937 1938 port_rss_hash_conf_show(res->port_id, show_rss_key != NULL); 1939 } 1940 1941 cmdline_parse_token_string_t cmd_showport_rss_hash_show = 1942 TOKEN_STRING_INITIALIZER(struct cmd_showport_rss_hash, show, "show"); 1943 cmdline_parse_token_string_t cmd_showport_rss_hash_port = 1944 TOKEN_STRING_INITIALIZER(struct cmd_showport_rss_hash, port, "port"); 1945 cmdline_parse_token_num_t cmd_showport_rss_hash_port_id = 1946 TOKEN_NUM_INITIALIZER(struct cmd_showport_rss_hash, port_id, UINT8); 1947 cmdline_parse_token_string_t cmd_showport_rss_hash_rss_hash = 1948 TOKEN_STRING_INITIALIZER(struct cmd_showport_rss_hash, rss_hash, 1949 "rss-hash"); 1950 cmdline_parse_token_string_t cmd_showport_rss_hash_rss_key = 1951 TOKEN_STRING_INITIALIZER(struct cmd_showport_rss_hash, key, "key"); 1952 1953 cmdline_parse_inst_t cmd_showport_rss_hash = { 1954 .f = cmd_showport_rss_hash_parsed, 1955 .data = NULL, 1956 .help_str = "show port X rss-hash (X = port number)\n", 1957 .tokens = { 1958 (void *)&cmd_showport_rss_hash_show, 1959 (void *)&cmd_showport_rss_hash_port, 1960 (void *)&cmd_showport_rss_hash_port_id, 1961 (void *)&cmd_showport_rss_hash_rss_hash, 1962 NULL, 1963 }, 1964 }; 1965 1966 cmdline_parse_inst_t cmd_showport_rss_hash_key = { 1967 .f = cmd_showport_rss_hash_parsed, 1968 .data = (void *)1, 1969 .help_str = "show port X rss-hash key (X = port number)\n", 1970 .tokens = { 1971 (void *)&cmd_showport_rss_hash_show, 1972 (void *)&cmd_showport_rss_hash_port, 1973 (void *)&cmd_showport_rss_hash_port_id, 1974 (void *)&cmd_showport_rss_hash_rss_hash, 1975 (void *)&cmd_showport_rss_hash_rss_key, 1976 NULL, 1977 }, 1978 }; 1979 1980 /* *** Configure DCB *** */ 1981 struct cmd_config_dcb { 1982 cmdline_fixed_string_t port; 1983 cmdline_fixed_string_t config; 1984 uint8_t port_id; 1985 cmdline_fixed_string_t dcb; 1986 cmdline_fixed_string_t vt; 1987 cmdline_fixed_string_t vt_en; 1988 uint8_t num_tcs; 1989 cmdline_fixed_string_t pfc; 1990 cmdline_fixed_string_t pfc_en; 1991 }; 1992 1993 static void 1994 cmd_config_dcb_parsed(void *parsed_result, 1995 __attribute__((unused)) struct cmdline *cl, 1996 __attribute__((unused)) void *data) 1997 { 1998 struct cmd_config_dcb *res = parsed_result; 1999 struct dcb_config dcb_conf; 2000 portid_t port_id = res->port_id; 2001 struct rte_port *port; 2002 2003 port = &ports[port_id]; 2004 /** Check if the port is not started **/ 2005 if (port->port_status != RTE_PORT_STOPPED) { 2006 printf("Please stop port %d first\n",port_id); 2007 return; 2008 } 2009 2010 dcb_conf.num_tcs = (enum rte_eth_nb_tcs) res->num_tcs; 2011 if ((dcb_conf.num_tcs != ETH_4_TCS) && (dcb_conf.num_tcs != ETH_8_TCS)){ 2012 printf("The invalid number of traffic class,only 4 or 8 allowed\n"); 2013 return; 2014 } 2015 2016 /* DCB in VT mode */ 2017 if (!strncmp(res->vt_en, "on",2)) 2018 dcb_conf.dcb_mode = DCB_VT_ENABLED; 2019 else 2020 dcb_conf.dcb_mode = DCB_ENABLED; 2021 2022 if (!strncmp(res->pfc_en, "on",2)) { 2023 dcb_conf.pfc_en = 1; 2024 } 2025 else 2026 dcb_conf.pfc_en = 0; 2027 2028 if (init_port_dcb_config(port_id,&dcb_conf) != 0) { 2029 printf("Cannot initialize network ports\n"); 2030 return; 2031 } 2032 2033 cmd_reconfig_device_queue(port_id, 1, 1); 2034 } 2035 2036 cmdline_parse_token_string_t cmd_config_dcb_port = 2037 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, port, "port"); 2038 cmdline_parse_token_string_t cmd_config_dcb_config = 2039 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, config, "config"); 2040 cmdline_parse_token_num_t cmd_config_dcb_port_id = 2041 TOKEN_NUM_INITIALIZER(struct cmd_config_dcb, port_id, UINT8); 2042 cmdline_parse_token_string_t cmd_config_dcb_dcb = 2043 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, dcb, "dcb"); 2044 cmdline_parse_token_string_t cmd_config_dcb_vt = 2045 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, vt, "vt"); 2046 cmdline_parse_token_string_t cmd_config_dcb_vt_en = 2047 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, vt_en, "on#off"); 2048 cmdline_parse_token_num_t cmd_config_dcb_num_tcs = 2049 TOKEN_NUM_INITIALIZER(struct cmd_config_dcb, num_tcs, UINT8); 2050 cmdline_parse_token_string_t cmd_config_dcb_pfc= 2051 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, pfc, "pfc"); 2052 cmdline_parse_token_string_t cmd_config_dcb_pfc_en = 2053 TOKEN_STRING_INITIALIZER(struct cmd_config_dcb, pfc_en, "on#off"); 2054 2055 cmdline_parse_inst_t cmd_config_dcb = { 2056 .f = cmd_config_dcb_parsed, 2057 .data = NULL, 2058 .help_str = "port config port-id dcb vt on|off nb-tcs pfc on|off", 2059 .tokens = { 2060 (void *)&cmd_config_dcb_port, 2061 (void *)&cmd_config_dcb_config, 2062 (void *)&cmd_config_dcb_port_id, 2063 (void *)&cmd_config_dcb_dcb, 2064 (void *)&cmd_config_dcb_vt, 2065 (void *)&cmd_config_dcb_vt_en, 2066 (void *)&cmd_config_dcb_num_tcs, 2067 (void *)&cmd_config_dcb_pfc, 2068 (void *)&cmd_config_dcb_pfc_en, 2069 NULL, 2070 }, 2071 }; 2072 2073 /* *** configure number of packets per burst *** */ 2074 struct cmd_config_burst { 2075 cmdline_fixed_string_t port; 2076 cmdline_fixed_string_t keyword; 2077 cmdline_fixed_string_t all; 2078 cmdline_fixed_string_t name; 2079 uint16_t value; 2080 }; 2081 2082 static void 2083 cmd_config_burst_parsed(void *parsed_result, 2084 __attribute__((unused)) struct cmdline *cl, 2085 __attribute__((unused)) void *data) 2086 { 2087 struct cmd_config_burst *res = parsed_result; 2088 2089 if (!all_ports_stopped()) { 2090 printf("Please stop all ports first\n"); 2091 return; 2092 } 2093 2094 if (!strcmp(res->name, "burst")) { 2095 if (res->value < 1 || res->value > MAX_PKT_BURST) { 2096 printf("burst must be >= 1 && <= %d\n", MAX_PKT_BURST); 2097 return; 2098 } 2099 nb_pkt_per_burst = res->value; 2100 } else { 2101 printf("Unknown parameter\n"); 2102 return; 2103 } 2104 2105 init_port_config(); 2106 2107 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 2108 } 2109 2110 cmdline_parse_token_string_t cmd_config_burst_port = 2111 TOKEN_STRING_INITIALIZER(struct cmd_config_burst, port, "port"); 2112 cmdline_parse_token_string_t cmd_config_burst_keyword = 2113 TOKEN_STRING_INITIALIZER(struct cmd_config_burst, keyword, "config"); 2114 cmdline_parse_token_string_t cmd_config_burst_all = 2115 TOKEN_STRING_INITIALIZER(struct cmd_config_burst, all, "all"); 2116 cmdline_parse_token_string_t cmd_config_burst_name = 2117 TOKEN_STRING_INITIALIZER(struct cmd_config_burst, name, "burst"); 2118 cmdline_parse_token_num_t cmd_config_burst_value = 2119 TOKEN_NUM_INITIALIZER(struct cmd_config_burst, value, UINT16); 2120 2121 cmdline_parse_inst_t cmd_config_burst = { 2122 .f = cmd_config_burst_parsed, 2123 .data = NULL, 2124 .help_str = "port config all burst value", 2125 .tokens = { 2126 (void *)&cmd_config_burst_port, 2127 (void *)&cmd_config_burst_keyword, 2128 (void *)&cmd_config_burst_all, 2129 (void *)&cmd_config_burst_name, 2130 (void *)&cmd_config_burst_value, 2131 NULL, 2132 }, 2133 }; 2134 2135 /* *** configure rx/tx queues *** */ 2136 struct cmd_config_thresh { 2137 cmdline_fixed_string_t port; 2138 cmdline_fixed_string_t keyword; 2139 cmdline_fixed_string_t all; 2140 cmdline_fixed_string_t name; 2141 uint8_t value; 2142 }; 2143 2144 static void 2145 cmd_config_thresh_parsed(void *parsed_result, 2146 __attribute__((unused)) struct cmdline *cl, 2147 __attribute__((unused)) void *data) 2148 { 2149 struct cmd_config_thresh *res = parsed_result; 2150 2151 if (!all_ports_stopped()) { 2152 printf("Please stop all ports first\n"); 2153 return; 2154 } 2155 2156 if (!strcmp(res->name, "txpt")) 2157 tx_pthresh = res->value; 2158 else if(!strcmp(res->name, "txht")) 2159 tx_hthresh = res->value; 2160 else if(!strcmp(res->name, "txwt")) 2161 tx_wthresh = res->value; 2162 else if(!strcmp(res->name, "rxpt")) 2163 rx_pthresh = res->value; 2164 else if(!strcmp(res->name, "rxht")) 2165 rx_hthresh = res->value; 2166 else if(!strcmp(res->name, "rxwt")) 2167 rx_wthresh = res->value; 2168 else { 2169 printf("Unknown parameter\n"); 2170 return; 2171 } 2172 2173 init_port_config(); 2174 2175 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 2176 } 2177 2178 cmdline_parse_token_string_t cmd_config_thresh_port = 2179 TOKEN_STRING_INITIALIZER(struct cmd_config_thresh, port, "port"); 2180 cmdline_parse_token_string_t cmd_config_thresh_keyword = 2181 TOKEN_STRING_INITIALIZER(struct cmd_config_thresh, keyword, "config"); 2182 cmdline_parse_token_string_t cmd_config_thresh_all = 2183 TOKEN_STRING_INITIALIZER(struct cmd_config_thresh, all, "all"); 2184 cmdline_parse_token_string_t cmd_config_thresh_name = 2185 TOKEN_STRING_INITIALIZER(struct cmd_config_thresh, name, 2186 "txpt#txht#txwt#rxpt#rxht#rxwt"); 2187 cmdline_parse_token_num_t cmd_config_thresh_value = 2188 TOKEN_NUM_INITIALIZER(struct cmd_config_thresh, value, UINT8); 2189 2190 cmdline_parse_inst_t cmd_config_thresh = { 2191 .f = cmd_config_thresh_parsed, 2192 .data = NULL, 2193 .help_str = "port config all txpt|txht|txwt|rxpt|rxht|rxwt value", 2194 .tokens = { 2195 (void *)&cmd_config_thresh_port, 2196 (void *)&cmd_config_thresh_keyword, 2197 (void *)&cmd_config_thresh_all, 2198 (void *)&cmd_config_thresh_name, 2199 (void *)&cmd_config_thresh_value, 2200 NULL, 2201 }, 2202 }; 2203 2204 /* *** configure free/rs threshold *** */ 2205 struct cmd_config_threshold { 2206 cmdline_fixed_string_t port; 2207 cmdline_fixed_string_t keyword; 2208 cmdline_fixed_string_t all; 2209 cmdline_fixed_string_t name; 2210 uint16_t value; 2211 }; 2212 2213 static void 2214 cmd_config_threshold_parsed(void *parsed_result, 2215 __attribute__((unused)) struct cmdline *cl, 2216 __attribute__((unused)) void *data) 2217 { 2218 struct cmd_config_threshold *res = parsed_result; 2219 2220 if (!all_ports_stopped()) { 2221 printf("Please stop all ports first\n"); 2222 return; 2223 } 2224 2225 if (!strcmp(res->name, "txfreet")) 2226 tx_free_thresh = res->value; 2227 else if (!strcmp(res->name, "txrst")) 2228 tx_rs_thresh = res->value; 2229 else if (!strcmp(res->name, "rxfreet")) 2230 rx_free_thresh = res->value; 2231 else { 2232 printf("Unknown parameter\n"); 2233 return; 2234 } 2235 2236 init_port_config(); 2237 2238 cmd_reconfig_device_queue(RTE_PORT_ALL, 1, 1); 2239 } 2240 2241 cmdline_parse_token_string_t cmd_config_threshold_port = 2242 TOKEN_STRING_INITIALIZER(struct cmd_config_threshold, port, "port"); 2243 cmdline_parse_token_string_t cmd_config_threshold_keyword = 2244 TOKEN_STRING_INITIALIZER(struct cmd_config_threshold, keyword, 2245 "config"); 2246 cmdline_parse_token_string_t cmd_config_threshold_all = 2247 TOKEN_STRING_INITIALIZER(struct cmd_config_threshold, all, "all"); 2248 cmdline_parse_token_string_t cmd_config_threshold_name = 2249 TOKEN_STRING_INITIALIZER(struct cmd_config_threshold, name, 2250 "txfreet#txrst#rxfreet"); 2251 cmdline_parse_token_num_t cmd_config_threshold_value = 2252 TOKEN_NUM_INITIALIZER(struct cmd_config_threshold, value, UINT16); 2253 2254 cmdline_parse_inst_t cmd_config_threshold = { 2255 .f = cmd_config_threshold_parsed, 2256 .data = NULL, 2257 .help_str = "port config all txfreet|txrst|rxfreet value", 2258 .tokens = { 2259 (void *)&cmd_config_threshold_port, 2260 (void *)&cmd_config_threshold_keyword, 2261 (void *)&cmd_config_threshold_all, 2262 (void *)&cmd_config_threshold_name, 2263 (void *)&cmd_config_threshold_value, 2264 NULL, 2265 }, 2266 }; 2267 2268 /* *** stop *** */ 2269 struct cmd_stop_result { 2270 cmdline_fixed_string_t stop; 2271 }; 2272 2273 static void cmd_stop_parsed(__attribute__((unused)) void *parsed_result, 2274 __attribute__((unused)) struct cmdline *cl, 2275 __attribute__((unused)) void *data) 2276 { 2277 stop_packet_forwarding(); 2278 } 2279 2280 cmdline_parse_token_string_t cmd_stop_stop = 2281 TOKEN_STRING_INITIALIZER(struct cmd_stop_result, stop, "stop"); 2282 2283 cmdline_parse_inst_t cmd_stop = { 2284 .f = cmd_stop_parsed, 2285 .data = NULL, 2286 .help_str = "stop - stop packet forwarding", 2287 .tokens = { 2288 (void *)&cmd_stop_stop, 2289 NULL, 2290 }, 2291 }; 2292 2293 /* *** SET CORELIST and PORTLIST CONFIGURATION *** */ 2294 2295 unsigned int 2296 parse_item_list(char* str, const char* item_name, unsigned int max_items, 2297 unsigned int *parsed_items, int check_unique_values) 2298 { 2299 unsigned int nb_item; 2300 unsigned int value; 2301 unsigned int i; 2302 unsigned int j; 2303 int value_ok; 2304 char c; 2305 2306 /* 2307 * First parse all items in the list and store their value. 2308 */ 2309 value = 0; 2310 nb_item = 0; 2311 value_ok = 0; 2312 for (i = 0; i < strnlen(str, STR_TOKEN_SIZE); i++) { 2313 c = str[i]; 2314 if ((c >= '0') && (c <= '9')) { 2315 value = (unsigned int) (value * 10 + (c - '0')); 2316 value_ok = 1; 2317 continue; 2318 } 2319 if (c != ',') { 2320 printf("character %c is not a decimal digit\n", c); 2321 return (0); 2322 } 2323 if (! value_ok) { 2324 printf("No valid value before comma\n"); 2325 return (0); 2326 } 2327 if (nb_item < max_items) { 2328 parsed_items[nb_item] = value; 2329 value_ok = 0; 2330 value = 0; 2331 } 2332 nb_item++; 2333 } 2334 if (nb_item >= max_items) { 2335 printf("Number of %s = %u > %u (maximum items)\n", 2336 item_name, nb_item + 1, max_items); 2337 return (0); 2338 } 2339 parsed_items[nb_item++] = value; 2340 if (! check_unique_values) 2341 return (nb_item); 2342 2343 /* 2344 * Then, check that all values in the list are differents. 2345 * No optimization here... 2346 */ 2347 for (i = 0; i < nb_item; i++) { 2348 for (j = i + 1; j < nb_item; j++) { 2349 if (parsed_items[j] == parsed_items[i]) { 2350 printf("duplicated %s %u at index %u and %u\n", 2351 item_name, parsed_items[i], i, j); 2352 return (0); 2353 } 2354 } 2355 } 2356 return (nb_item); 2357 } 2358 2359 struct cmd_set_list_result { 2360 cmdline_fixed_string_t cmd_keyword; 2361 cmdline_fixed_string_t list_name; 2362 cmdline_fixed_string_t list_of_items; 2363 }; 2364 2365 static void cmd_set_list_parsed(void *parsed_result, 2366 __attribute__((unused)) struct cmdline *cl, 2367 __attribute__((unused)) void *data) 2368 { 2369 struct cmd_set_list_result *res; 2370 union { 2371 unsigned int lcorelist[RTE_MAX_LCORE]; 2372 unsigned int portlist[RTE_MAX_ETHPORTS]; 2373 } parsed_items; 2374 unsigned int nb_item; 2375 2376 if (test_done == 0) { 2377 printf("Please stop forwarding first\n"); 2378 return; 2379 } 2380 2381 res = parsed_result; 2382 if (!strcmp(res->list_name, "corelist")) { 2383 nb_item = parse_item_list(res->list_of_items, "core", 2384 RTE_MAX_LCORE, 2385 parsed_items.lcorelist, 1); 2386 if (nb_item > 0) 2387 set_fwd_lcores_list(parsed_items.lcorelist, nb_item); 2388 return; 2389 } 2390 if (!strcmp(res->list_name, "portlist")) { 2391 nb_item = parse_item_list(res->list_of_items, "port", 2392 RTE_MAX_ETHPORTS, 2393 parsed_items.portlist, 1); 2394 if (nb_item > 0) 2395 set_fwd_ports_list(parsed_items.portlist, nb_item); 2396 } 2397 } 2398 2399 cmdline_parse_token_string_t cmd_set_list_keyword = 2400 TOKEN_STRING_INITIALIZER(struct cmd_set_list_result, cmd_keyword, 2401 "set"); 2402 cmdline_parse_token_string_t cmd_set_list_name = 2403 TOKEN_STRING_INITIALIZER(struct cmd_set_list_result, list_name, 2404 "corelist#portlist"); 2405 cmdline_parse_token_string_t cmd_set_list_of_items = 2406 TOKEN_STRING_INITIALIZER(struct cmd_set_list_result, list_of_items, 2407 NULL); 2408 2409 cmdline_parse_inst_t cmd_set_fwd_list = { 2410 .f = cmd_set_list_parsed, 2411 .data = NULL, 2412 .help_str = "set corelist|portlist x[,y]*", 2413 .tokens = { 2414 (void *)&cmd_set_list_keyword, 2415 (void *)&cmd_set_list_name, 2416 (void *)&cmd_set_list_of_items, 2417 NULL, 2418 }, 2419 }; 2420 2421 /* *** SET COREMASK and PORTMASK CONFIGURATION *** */ 2422 2423 struct cmd_setmask_result { 2424 cmdline_fixed_string_t set; 2425 cmdline_fixed_string_t mask; 2426 uint64_t hexavalue; 2427 }; 2428 2429 static void cmd_set_mask_parsed(void *parsed_result, 2430 __attribute__((unused)) struct cmdline *cl, 2431 __attribute__((unused)) void *data) 2432 { 2433 struct cmd_setmask_result *res = parsed_result; 2434 2435 if (test_done == 0) { 2436 printf("Please stop forwarding first\n"); 2437 return; 2438 } 2439 if (!strcmp(res->mask, "coremask")) 2440 set_fwd_lcores_mask(res->hexavalue); 2441 else if (!strcmp(res->mask, "portmask")) 2442 set_fwd_ports_mask(res->hexavalue); 2443 } 2444 2445 cmdline_parse_token_string_t cmd_setmask_set = 2446 TOKEN_STRING_INITIALIZER(struct cmd_setmask_result, set, "set"); 2447 cmdline_parse_token_string_t cmd_setmask_mask = 2448 TOKEN_STRING_INITIALIZER(struct cmd_setmask_result, mask, 2449 "coremask#portmask"); 2450 cmdline_parse_token_num_t cmd_setmask_value = 2451 TOKEN_NUM_INITIALIZER(struct cmd_setmask_result, hexavalue, UINT64); 2452 2453 cmdline_parse_inst_t cmd_set_fwd_mask = { 2454 .f = cmd_set_mask_parsed, 2455 .data = NULL, 2456 .help_str = "set coremask|portmask hexadecimal value", 2457 .tokens = { 2458 (void *)&cmd_setmask_set, 2459 (void *)&cmd_setmask_mask, 2460 (void *)&cmd_setmask_value, 2461 NULL, 2462 }, 2463 }; 2464 2465 /* 2466 * SET NBPORT, NBCORE, PACKET BURST, and VERBOSE LEVEL CONFIGURATION 2467 */ 2468 struct cmd_set_result { 2469 cmdline_fixed_string_t set; 2470 cmdline_fixed_string_t what; 2471 uint16_t value; 2472 }; 2473 2474 static void cmd_set_parsed(void *parsed_result, 2475 __attribute__((unused)) struct cmdline *cl, 2476 __attribute__((unused)) void *data) 2477 { 2478 struct cmd_set_result *res = parsed_result; 2479 if (!strcmp(res->what, "nbport")) 2480 set_fwd_ports_number(res->value); 2481 else if (!strcmp(res->what, "nbcore")) 2482 set_fwd_lcores_number(res->value); 2483 else if (!strcmp(res->what, "burst")) 2484 set_nb_pkt_per_burst(res->value); 2485 else if (!strcmp(res->what, "verbose")) 2486 set_verbose_level(res->value); 2487 } 2488 2489 cmdline_parse_token_string_t cmd_set_set = 2490 TOKEN_STRING_INITIALIZER(struct cmd_set_result, set, "set"); 2491 cmdline_parse_token_string_t cmd_set_what = 2492 TOKEN_STRING_INITIALIZER(struct cmd_set_result, what, 2493 "nbport#nbcore#burst#verbose"); 2494 cmdline_parse_token_num_t cmd_set_value = 2495 TOKEN_NUM_INITIALIZER(struct cmd_set_result, value, UINT16); 2496 2497 cmdline_parse_inst_t cmd_set_numbers = { 2498 .f = cmd_set_parsed, 2499 .data = NULL, 2500 .help_str = "set nbport|nbcore|burst|verbose value", 2501 .tokens = { 2502 (void *)&cmd_set_set, 2503 (void *)&cmd_set_what, 2504 (void *)&cmd_set_value, 2505 NULL, 2506 }, 2507 }; 2508 2509 /* *** SET SEGMENT LENGTHS OF TXONLY PACKETS *** */ 2510 2511 struct cmd_set_txpkts_result { 2512 cmdline_fixed_string_t cmd_keyword; 2513 cmdline_fixed_string_t txpkts; 2514 cmdline_fixed_string_t seg_lengths; 2515 }; 2516 2517 static void 2518 cmd_set_txpkts_parsed(void *parsed_result, 2519 __attribute__((unused)) struct cmdline *cl, 2520 __attribute__((unused)) void *data) 2521 { 2522 struct cmd_set_txpkts_result *res; 2523 unsigned seg_lengths[RTE_MAX_SEGS_PER_PKT]; 2524 unsigned int nb_segs; 2525 2526 res = parsed_result; 2527 nb_segs = parse_item_list(res->seg_lengths, "segment lengths", 2528 RTE_MAX_SEGS_PER_PKT, seg_lengths, 0); 2529 if (nb_segs > 0) 2530 set_tx_pkt_segments(seg_lengths, nb_segs); 2531 } 2532 2533 cmdline_parse_token_string_t cmd_set_txpkts_keyword = 2534 TOKEN_STRING_INITIALIZER(struct cmd_set_txpkts_result, 2535 cmd_keyword, "set"); 2536 cmdline_parse_token_string_t cmd_set_txpkts_name = 2537 TOKEN_STRING_INITIALIZER(struct cmd_set_txpkts_result, 2538 txpkts, "txpkts"); 2539 cmdline_parse_token_string_t cmd_set_txpkts_lengths = 2540 TOKEN_STRING_INITIALIZER(struct cmd_set_txpkts_result, 2541 seg_lengths, NULL); 2542 2543 cmdline_parse_inst_t cmd_set_txpkts = { 2544 .f = cmd_set_txpkts_parsed, 2545 .data = NULL, 2546 .help_str = "set txpkts x[,y]*", 2547 .tokens = { 2548 (void *)&cmd_set_txpkts_keyword, 2549 (void *)&cmd_set_txpkts_name, 2550 (void *)&cmd_set_txpkts_lengths, 2551 NULL, 2552 }, 2553 }; 2554 2555 /* *** ADD/REMOVE ALL VLAN IDENTIFIERS TO/FROM A PORT VLAN RX FILTER *** */ 2556 struct cmd_rx_vlan_filter_all_result { 2557 cmdline_fixed_string_t rx_vlan; 2558 cmdline_fixed_string_t what; 2559 cmdline_fixed_string_t all; 2560 uint8_t port_id; 2561 }; 2562 2563 static void 2564 cmd_rx_vlan_filter_all_parsed(void *parsed_result, 2565 __attribute__((unused)) struct cmdline *cl, 2566 __attribute__((unused)) void *data) 2567 { 2568 struct cmd_rx_vlan_filter_all_result *res = parsed_result; 2569 2570 if (!strcmp(res->what, "add")) 2571 rx_vlan_all_filter_set(res->port_id, 1); 2572 else 2573 rx_vlan_all_filter_set(res->port_id, 0); 2574 } 2575 2576 cmdline_parse_token_string_t cmd_rx_vlan_filter_all_rx_vlan = 2577 TOKEN_STRING_INITIALIZER(struct cmd_rx_vlan_filter_all_result, 2578 rx_vlan, "rx_vlan"); 2579 cmdline_parse_token_string_t cmd_rx_vlan_filter_all_what = 2580 TOKEN_STRING_INITIALIZER(struct cmd_rx_vlan_filter_all_result, 2581 what, "add#rm"); 2582 cmdline_parse_token_string_t cmd_rx_vlan_filter_all_all = 2583 TOKEN_STRING_INITIALIZER(struct cmd_rx_vlan_filter_all_result, 2584 all, "all"); 2585 cmdline_parse_token_num_t cmd_rx_vlan_filter_all_portid = 2586 TOKEN_NUM_INITIALIZER(struct cmd_rx_vlan_filter_all_result, 2587 port_id, UINT8); 2588 2589 cmdline_parse_inst_t cmd_rx_vlan_filter_all = { 2590 .f = cmd_rx_vlan_filter_all_parsed, 2591 .data = NULL, 2592 .help_str = "add/remove all identifiers to/from the set of VLAN " 2593 "Identifiers filtered by a port", 2594 .tokens = { 2595 (void *)&cmd_rx_vlan_filter_all_rx_vlan, 2596 (void *)&cmd_rx_vlan_filter_all_what, 2597 (void *)&cmd_rx_vlan_filter_all_all, 2598 (void *)&cmd_rx_vlan_filter_all_portid, 2599 NULL, 2600 }, 2601 }; 2602 2603 /* *** VLAN OFFLOAD SET ON A PORT *** */ 2604 struct cmd_vlan_offload_result { 2605 cmdline_fixed_string_t vlan; 2606 cmdline_fixed_string_t set; 2607 cmdline_fixed_string_t what; 2608 cmdline_fixed_string_t on; 2609 cmdline_fixed_string_t port_id; 2610 }; 2611 2612 static void 2613 cmd_vlan_offload_parsed(void *parsed_result, 2614 __attribute__((unused)) struct cmdline *cl, 2615 __attribute__((unused)) void *data) 2616 { 2617 int on; 2618 struct cmd_vlan_offload_result *res = parsed_result; 2619 char *str; 2620 int i, len = 0; 2621 portid_t port_id = 0; 2622 unsigned int tmp; 2623 2624 str = res->port_id; 2625 len = strnlen(str, STR_TOKEN_SIZE); 2626 i = 0; 2627 /* Get port_id first */ 2628 while(i < len){ 2629 if(str[i] == ',') 2630 break; 2631 2632 i++; 2633 } 2634 str[i]='\0'; 2635 tmp = strtoul(str, NULL, 0); 2636 /* If port_id greater that what portid_t can represent, return */ 2637 if(tmp >= RTE_MAX_ETHPORTS) 2638 return; 2639 port_id = (portid_t)tmp; 2640 2641 if (!strcmp(res->on, "on")) 2642 on = 1; 2643 else 2644 on = 0; 2645 2646 if (!strcmp(res->what, "strip")) 2647 rx_vlan_strip_set(port_id, on); 2648 else if(!strcmp(res->what, "stripq")){ 2649 uint16_t queue_id = 0; 2650 2651 /* No queue_id, return */ 2652 if(i + 1 >= len) { 2653 printf("must specify (port,queue_id)\n"); 2654 return; 2655 } 2656 tmp = strtoul(str + i + 1, NULL, 0); 2657 /* If queue_id greater that what 16-bits can represent, return */ 2658 if(tmp > 0xffff) 2659 return; 2660 2661 queue_id = (uint16_t)tmp; 2662 rx_vlan_strip_set_on_queue(port_id, queue_id, on); 2663 } 2664 else if (!strcmp(res->what, "filter")) 2665 rx_vlan_filter_set(port_id, on); 2666 else 2667 vlan_extend_set(port_id, on); 2668 2669 return; 2670 } 2671 2672 cmdline_parse_token_string_t cmd_vlan_offload_vlan = 2673 TOKEN_STRING_INITIALIZER(struct cmd_vlan_offload_result, 2674 vlan, "vlan"); 2675 cmdline_parse_token_string_t cmd_vlan_offload_set = 2676 TOKEN_STRING_INITIALIZER(struct cmd_vlan_offload_result, 2677 set, "set"); 2678 cmdline_parse_token_string_t cmd_vlan_offload_what = 2679 TOKEN_STRING_INITIALIZER(struct cmd_vlan_offload_result, 2680 what, "strip#filter#qinq#stripq"); 2681 cmdline_parse_token_string_t cmd_vlan_offload_on = 2682 TOKEN_STRING_INITIALIZER(struct cmd_vlan_offload_result, 2683 on, "on#off"); 2684 cmdline_parse_token_string_t cmd_vlan_offload_portid = 2685 TOKEN_STRING_INITIALIZER(struct cmd_vlan_offload_result, 2686 port_id, NULL); 2687 2688 cmdline_parse_inst_t cmd_vlan_offload = { 2689 .f = cmd_vlan_offload_parsed, 2690 .data = NULL, 2691 .help_str = "set strip|filter|qinq|stripq on|off port_id[,queue_id], filter/strip for rx side" 2692 " qinq(extended) for both rx/tx sides ", 2693 .tokens = { 2694 (void *)&cmd_vlan_offload_vlan, 2695 (void *)&cmd_vlan_offload_set, 2696 (void *)&cmd_vlan_offload_what, 2697 (void *)&cmd_vlan_offload_on, 2698 (void *)&cmd_vlan_offload_portid, 2699 NULL, 2700 }, 2701 }; 2702 2703 /* *** VLAN TPID SET ON A PORT *** */ 2704 struct cmd_vlan_tpid_result { 2705 cmdline_fixed_string_t vlan; 2706 cmdline_fixed_string_t set; 2707 cmdline_fixed_string_t what; 2708 uint16_t tp_id; 2709 uint8_t port_id; 2710 }; 2711 2712 static void 2713 cmd_vlan_tpid_parsed(void *parsed_result, 2714 __attribute__((unused)) struct cmdline *cl, 2715 __attribute__((unused)) void *data) 2716 { 2717 struct cmd_vlan_tpid_result *res = parsed_result; 2718 vlan_tpid_set(res->port_id, res->tp_id); 2719 return; 2720 } 2721 2722 cmdline_parse_token_string_t cmd_vlan_tpid_vlan = 2723 TOKEN_STRING_INITIALIZER(struct cmd_vlan_tpid_result, 2724 vlan, "vlan"); 2725 cmdline_parse_token_string_t cmd_vlan_tpid_set = 2726 TOKEN_STRING_INITIALIZER(struct cmd_vlan_tpid_result, 2727 set, "set"); 2728 cmdline_parse_token_string_t cmd_vlan_tpid_what = 2729 TOKEN_STRING_INITIALIZER(struct cmd_vlan_tpid_result, 2730 what, "tpid"); 2731 cmdline_parse_token_num_t cmd_vlan_tpid_tpid = 2732 TOKEN_NUM_INITIALIZER(struct cmd_vlan_tpid_result, 2733 tp_id, UINT16); 2734 cmdline_parse_token_num_t cmd_vlan_tpid_portid = 2735 TOKEN_NUM_INITIALIZER(struct cmd_vlan_tpid_result, 2736 port_id, UINT8); 2737 2738 cmdline_parse_inst_t cmd_vlan_tpid = { 2739 .f = cmd_vlan_tpid_parsed, 2740 .data = NULL, 2741 .help_str = "set tpid tp_id port_id, set the Outer VLAN Ether type", 2742 .tokens = { 2743 (void *)&cmd_vlan_tpid_vlan, 2744 (void *)&cmd_vlan_tpid_set, 2745 (void *)&cmd_vlan_tpid_what, 2746 (void *)&cmd_vlan_tpid_tpid, 2747 (void *)&cmd_vlan_tpid_portid, 2748 NULL, 2749 }, 2750 }; 2751 2752 /* *** ADD/REMOVE A VLAN IDENTIFIER TO/FROM A PORT VLAN RX FILTER *** */ 2753 struct cmd_rx_vlan_filter_result { 2754 cmdline_fixed_string_t rx_vlan; 2755 cmdline_fixed_string_t what; 2756 uint16_t vlan_id; 2757 uint8_t port_id; 2758 }; 2759 2760 static void 2761 cmd_rx_vlan_filter_parsed(void *parsed_result, 2762 __attribute__((unused)) struct cmdline *cl, 2763 __attribute__((unused)) void *data) 2764 { 2765 struct cmd_rx_vlan_filter_result *res = parsed_result; 2766 2767 if (!strcmp(res->what, "add")) 2768 rx_vft_set(res->port_id, res->vlan_id, 1); 2769 else 2770 rx_vft_set(res->port_id, res->vlan_id, 0); 2771 } 2772 2773 cmdline_parse_token_string_t cmd_rx_vlan_filter_rx_vlan = 2774 TOKEN_STRING_INITIALIZER(struct cmd_rx_vlan_filter_result, 2775 rx_vlan, "rx_vlan"); 2776 cmdline_parse_token_string_t cmd_rx_vlan_filter_what = 2777 TOKEN_STRING_INITIALIZER(struct cmd_rx_vlan_filter_result, 2778 what, "add#rm"); 2779 cmdline_parse_token_num_t cmd_rx_vlan_filter_vlanid = 2780 TOKEN_NUM_INITIALIZER(struct cmd_rx_vlan_filter_result, 2781 vlan_id, UINT16); 2782 cmdline_parse_token_num_t cmd_rx_vlan_filter_portid = 2783 TOKEN_NUM_INITIALIZER(struct cmd_rx_vlan_filter_result, 2784 port_id, UINT8); 2785 2786 cmdline_parse_inst_t cmd_rx_vlan_filter = { 2787 .f = cmd_rx_vlan_filter_parsed, 2788 .data = NULL, 2789 .help_str = "add/remove a VLAN identifier to/from the set of VLAN " 2790 "Identifiers filtered by a port", 2791 .tokens = { 2792 (void *)&cmd_rx_vlan_filter_rx_vlan, 2793 (void *)&cmd_rx_vlan_filter_what, 2794 (void *)&cmd_rx_vlan_filter_vlanid, 2795 (void *)&cmd_rx_vlan_filter_portid, 2796 NULL, 2797 }, 2798 }; 2799 2800 /* *** ENABLE HARDWARE INSERTION OF VLAN HEADER IN TX PACKETS *** */ 2801 struct cmd_tx_vlan_set_result { 2802 cmdline_fixed_string_t tx_vlan; 2803 cmdline_fixed_string_t set; 2804 uint16_t vlan_id; 2805 uint8_t port_id; 2806 }; 2807 2808 static void 2809 cmd_tx_vlan_set_parsed(void *parsed_result, 2810 __attribute__((unused)) struct cmdline *cl, 2811 __attribute__((unused)) void *data) 2812 { 2813 struct cmd_tx_vlan_set_result *res = parsed_result; 2814 tx_vlan_set(res->port_id, res->vlan_id); 2815 } 2816 2817 cmdline_parse_token_string_t cmd_tx_vlan_set_tx_vlan = 2818 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_set_result, 2819 tx_vlan, "tx_vlan"); 2820 cmdline_parse_token_string_t cmd_tx_vlan_set_set = 2821 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_set_result, 2822 set, "set"); 2823 cmdline_parse_token_num_t cmd_tx_vlan_set_vlanid = 2824 TOKEN_NUM_INITIALIZER(struct cmd_tx_vlan_set_result, 2825 vlan_id, UINT16); 2826 cmdline_parse_token_num_t cmd_tx_vlan_set_portid = 2827 TOKEN_NUM_INITIALIZER(struct cmd_tx_vlan_set_result, 2828 port_id, UINT8); 2829 2830 cmdline_parse_inst_t cmd_tx_vlan_set = { 2831 .f = cmd_tx_vlan_set_parsed, 2832 .data = NULL, 2833 .help_str = "enable hardware insertion of a VLAN header with a given " 2834 "TAG Identifier in packets sent on a port", 2835 .tokens = { 2836 (void *)&cmd_tx_vlan_set_tx_vlan, 2837 (void *)&cmd_tx_vlan_set_set, 2838 (void *)&cmd_tx_vlan_set_vlanid, 2839 (void *)&cmd_tx_vlan_set_portid, 2840 NULL, 2841 }, 2842 }; 2843 2844 /* *** ENABLE/DISABLE PORT BASED TX VLAN INSERTION *** */ 2845 struct cmd_tx_vlan_set_pvid_result { 2846 cmdline_fixed_string_t tx_vlan; 2847 cmdline_fixed_string_t set; 2848 cmdline_fixed_string_t pvid; 2849 uint8_t port_id; 2850 uint16_t vlan_id; 2851 cmdline_fixed_string_t mode; 2852 }; 2853 2854 static void 2855 cmd_tx_vlan_set_pvid_parsed(void *parsed_result, 2856 __attribute__((unused)) struct cmdline *cl, 2857 __attribute__((unused)) void *data) 2858 { 2859 struct cmd_tx_vlan_set_pvid_result *res = parsed_result; 2860 2861 if (strcmp(res->mode, "on") == 0) 2862 tx_vlan_pvid_set(res->port_id, res->vlan_id, 1); 2863 else 2864 tx_vlan_pvid_set(res->port_id, res->vlan_id, 0); 2865 } 2866 2867 cmdline_parse_token_string_t cmd_tx_vlan_set_pvid_tx_vlan = 2868 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_set_pvid_result, 2869 tx_vlan, "tx_vlan"); 2870 cmdline_parse_token_string_t cmd_tx_vlan_set_pvid_set = 2871 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_set_pvid_result, 2872 set, "set"); 2873 cmdline_parse_token_string_t cmd_tx_vlan_set_pvid_pvid = 2874 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_set_pvid_result, 2875 pvid, "pvid"); 2876 cmdline_parse_token_num_t cmd_tx_vlan_set_pvid_port_id = 2877 TOKEN_NUM_INITIALIZER(struct cmd_tx_vlan_set_pvid_result, 2878 port_id, UINT8); 2879 cmdline_parse_token_num_t cmd_tx_vlan_set_pvid_vlan_id = 2880 TOKEN_NUM_INITIALIZER(struct cmd_tx_vlan_set_pvid_result, 2881 vlan_id, UINT16); 2882 cmdline_parse_token_string_t cmd_tx_vlan_set_pvid_mode = 2883 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_set_pvid_result, 2884 mode, "on#off"); 2885 2886 cmdline_parse_inst_t cmd_tx_vlan_set_pvid = { 2887 .f = cmd_tx_vlan_set_pvid_parsed, 2888 .data = NULL, 2889 .help_str = "tx_vlan set pvid port_id vlan_id (on|off)", 2890 .tokens = { 2891 (void *)&cmd_tx_vlan_set_pvid_tx_vlan, 2892 (void *)&cmd_tx_vlan_set_pvid_set, 2893 (void *)&cmd_tx_vlan_set_pvid_pvid, 2894 (void *)&cmd_tx_vlan_set_pvid_port_id, 2895 (void *)&cmd_tx_vlan_set_pvid_vlan_id, 2896 (void *)&cmd_tx_vlan_set_pvid_mode, 2897 NULL, 2898 }, 2899 }; 2900 2901 /* *** DISABLE HARDWARE INSERTION OF VLAN HEADER IN TX PACKETS *** */ 2902 struct cmd_tx_vlan_reset_result { 2903 cmdline_fixed_string_t tx_vlan; 2904 cmdline_fixed_string_t reset; 2905 uint8_t port_id; 2906 }; 2907 2908 static void 2909 cmd_tx_vlan_reset_parsed(void *parsed_result, 2910 __attribute__((unused)) struct cmdline *cl, 2911 __attribute__((unused)) void *data) 2912 { 2913 struct cmd_tx_vlan_reset_result *res = parsed_result; 2914 2915 tx_vlan_reset(res->port_id); 2916 } 2917 2918 cmdline_parse_token_string_t cmd_tx_vlan_reset_tx_vlan = 2919 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_reset_result, 2920 tx_vlan, "tx_vlan"); 2921 cmdline_parse_token_string_t cmd_tx_vlan_reset_reset = 2922 TOKEN_STRING_INITIALIZER(struct cmd_tx_vlan_reset_result, 2923 reset, "reset"); 2924 cmdline_parse_token_num_t cmd_tx_vlan_reset_portid = 2925 TOKEN_NUM_INITIALIZER(struct cmd_tx_vlan_reset_result, 2926 port_id, UINT8); 2927 2928 cmdline_parse_inst_t cmd_tx_vlan_reset = { 2929 .f = cmd_tx_vlan_reset_parsed, 2930 .data = NULL, 2931 .help_str = "disable hardware insertion of a VLAN header in packets " 2932 "sent on a port", 2933 .tokens = { 2934 (void *)&cmd_tx_vlan_reset_tx_vlan, 2935 (void *)&cmd_tx_vlan_reset_reset, 2936 (void *)&cmd_tx_vlan_reset_portid, 2937 NULL, 2938 }, 2939 }; 2940 2941 2942 /* *** ENABLE HARDWARE INSERTION OF CHECKSUM IN TX PACKETS *** */ 2943 struct cmd_csum_result { 2944 cmdline_fixed_string_t csum; 2945 cmdline_fixed_string_t mode; 2946 cmdline_fixed_string_t proto; 2947 cmdline_fixed_string_t hwsw; 2948 uint8_t port_id; 2949 }; 2950 2951 static void 2952 csum_show(int port_id) 2953 { 2954 struct rte_eth_dev_info dev_info; 2955 uint16_t ol_flags; 2956 2957 ol_flags = ports[port_id].tx_ol_flags; 2958 printf("Parse tunnel is %s\n", 2959 (ol_flags & TESTPMD_TX_OFFLOAD_PARSE_TUNNEL) ? "on" : "off"); 2960 printf("IP checksum offload is %s\n", 2961 (ol_flags & TESTPMD_TX_OFFLOAD_IP_CKSUM) ? "hw" : "sw"); 2962 printf("UDP checksum offload is %s\n", 2963 (ol_flags & TESTPMD_TX_OFFLOAD_UDP_CKSUM) ? "hw" : "sw"); 2964 printf("TCP checksum offload is %s\n", 2965 (ol_flags & TESTPMD_TX_OFFLOAD_TCP_CKSUM) ? "hw" : "sw"); 2966 printf("SCTP checksum offload is %s\n", 2967 (ol_flags & TESTPMD_TX_OFFLOAD_SCTP_CKSUM) ? "hw" : "sw"); 2968 printf("Outer-Ip checksum offload is %s\n", 2969 (ol_flags & TESTPMD_TX_OFFLOAD_OUTER_IP_CKSUM) ? "hw" : "sw"); 2970 2971 /* display warnings if configuration is not supported by the NIC */ 2972 rte_eth_dev_info_get(port_id, &dev_info); 2973 if ((ol_flags & TESTPMD_TX_OFFLOAD_IP_CKSUM) && 2974 (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_IPV4_CKSUM) == 0) { 2975 printf("Warning: hardware IP checksum enabled but not " 2976 "supported by port %d\n", port_id); 2977 } 2978 if ((ol_flags & TESTPMD_TX_OFFLOAD_UDP_CKSUM) && 2979 (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_UDP_CKSUM) == 0) { 2980 printf("Warning: hardware UDP checksum enabled but not " 2981 "supported by port %d\n", port_id); 2982 } 2983 if ((ol_flags & TESTPMD_TX_OFFLOAD_TCP_CKSUM) && 2984 (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_TCP_CKSUM) == 0) { 2985 printf("Warning: hardware TCP checksum enabled but not " 2986 "supported by port %d\n", port_id); 2987 } 2988 if ((ol_flags & TESTPMD_TX_OFFLOAD_SCTP_CKSUM) && 2989 (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_SCTP_CKSUM) == 0) { 2990 printf("Warning: hardware SCTP checksum enabled but not " 2991 "supported by port %d\n", port_id); 2992 } 2993 if ((ol_flags & TESTPMD_TX_OFFLOAD_OUTER_IP_CKSUM) && 2994 (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_OUTER_IPV4_CKSUM) == 0) { 2995 printf("Warning: hardware outer IP checksum enabled but not " 2996 "supported by port %d\n", port_id); 2997 } 2998 } 2999 3000 static void 3001 cmd_csum_parsed(void *parsed_result, 3002 __attribute__((unused)) struct cmdline *cl, 3003 __attribute__((unused)) void *data) 3004 { 3005 struct cmd_csum_result *res = parsed_result; 3006 int hw = 0; 3007 uint16_t mask = 0; 3008 3009 if (port_id_is_invalid(res->port_id, ENABLED_WARN)) { 3010 printf("invalid port %d\n", res->port_id); 3011 return; 3012 } 3013 3014 if (!strcmp(res->mode, "set")) { 3015 3016 if (!strcmp(res->hwsw, "hw")) 3017 hw = 1; 3018 3019 if (!strcmp(res->proto, "ip")) { 3020 mask = TESTPMD_TX_OFFLOAD_IP_CKSUM; 3021 } else if (!strcmp(res->proto, "udp")) { 3022 mask = TESTPMD_TX_OFFLOAD_UDP_CKSUM; 3023 } else if (!strcmp(res->proto, "tcp")) { 3024 mask = TESTPMD_TX_OFFLOAD_TCP_CKSUM; 3025 } else if (!strcmp(res->proto, "sctp")) { 3026 mask = TESTPMD_TX_OFFLOAD_SCTP_CKSUM; 3027 } else if (!strcmp(res->proto, "outer-ip")) { 3028 mask = TESTPMD_TX_OFFLOAD_OUTER_IP_CKSUM; 3029 } 3030 3031 if (hw) 3032 ports[res->port_id].tx_ol_flags |= mask; 3033 else 3034 ports[res->port_id].tx_ol_flags &= (~mask); 3035 } 3036 csum_show(res->port_id); 3037 } 3038 3039 cmdline_parse_token_string_t cmd_csum_csum = 3040 TOKEN_STRING_INITIALIZER(struct cmd_csum_result, 3041 csum, "csum"); 3042 cmdline_parse_token_string_t cmd_csum_mode = 3043 TOKEN_STRING_INITIALIZER(struct cmd_csum_result, 3044 mode, "set"); 3045 cmdline_parse_token_string_t cmd_csum_proto = 3046 TOKEN_STRING_INITIALIZER(struct cmd_csum_result, 3047 proto, "ip#tcp#udp#sctp#outer-ip"); 3048 cmdline_parse_token_string_t cmd_csum_hwsw = 3049 TOKEN_STRING_INITIALIZER(struct cmd_csum_result, 3050 hwsw, "hw#sw"); 3051 cmdline_parse_token_num_t cmd_csum_portid = 3052 TOKEN_NUM_INITIALIZER(struct cmd_csum_result, 3053 port_id, UINT8); 3054 3055 cmdline_parse_inst_t cmd_csum_set = { 3056 .f = cmd_csum_parsed, 3057 .data = NULL, 3058 .help_str = "enable/disable hardware calculation of L3/L4 checksum when " 3059 "using csum forward engine: csum set ip|tcp|udp|sctp|outer-ip hw|sw <port>", 3060 .tokens = { 3061 (void *)&cmd_csum_csum, 3062 (void *)&cmd_csum_mode, 3063 (void *)&cmd_csum_proto, 3064 (void *)&cmd_csum_hwsw, 3065 (void *)&cmd_csum_portid, 3066 NULL, 3067 }, 3068 }; 3069 3070 cmdline_parse_token_string_t cmd_csum_mode_show = 3071 TOKEN_STRING_INITIALIZER(struct cmd_csum_result, 3072 mode, "show"); 3073 3074 cmdline_parse_inst_t cmd_csum_show = { 3075 .f = cmd_csum_parsed, 3076 .data = NULL, 3077 .help_str = "show checksum offload configuration: csum show <port>", 3078 .tokens = { 3079 (void *)&cmd_csum_csum, 3080 (void *)&cmd_csum_mode_show, 3081 (void *)&cmd_csum_portid, 3082 NULL, 3083 }, 3084 }; 3085 3086 /* Enable/disable tunnel parsing */ 3087 struct cmd_csum_tunnel_result { 3088 cmdline_fixed_string_t csum; 3089 cmdline_fixed_string_t parse; 3090 cmdline_fixed_string_t onoff; 3091 uint8_t port_id; 3092 }; 3093 3094 static void 3095 cmd_csum_tunnel_parsed(void *parsed_result, 3096 __attribute__((unused)) struct cmdline *cl, 3097 __attribute__((unused)) void *data) 3098 { 3099 struct cmd_csum_tunnel_result *res = parsed_result; 3100 3101 if (port_id_is_invalid(res->port_id, ENABLED_WARN)) 3102 return; 3103 3104 if (!strcmp(res->onoff, "on")) 3105 ports[res->port_id].tx_ol_flags |= 3106 TESTPMD_TX_OFFLOAD_PARSE_TUNNEL; 3107 else 3108 ports[res->port_id].tx_ol_flags &= 3109 (~TESTPMD_TX_OFFLOAD_PARSE_TUNNEL); 3110 3111 csum_show(res->port_id); 3112 } 3113 3114 cmdline_parse_token_string_t cmd_csum_tunnel_csum = 3115 TOKEN_STRING_INITIALIZER(struct cmd_csum_tunnel_result, 3116 csum, "csum"); 3117 cmdline_parse_token_string_t cmd_csum_tunnel_parse = 3118 TOKEN_STRING_INITIALIZER(struct cmd_csum_tunnel_result, 3119 parse, "parse_tunnel"); 3120 cmdline_parse_token_string_t cmd_csum_tunnel_onoff = 3121 TOKEN_STRING_INITIALIZER(struct cmd_csum_tunnel_result, 3122 onoff, "on#off"); 3123 cmdline_parse_token_num_t cmd_csum_tunnel_portid = 3124 TOKEN_NUM_INITIALIZER(struct cmd_csum_tunnel_result, 3125 port_id, UINT8); 3126 3127 cmdline_parse_inst_t cmd_csum_tunnel = { 3128 .f = cmd_csum_tunnel_parsed, 3129 .data = NULL, 3130 .help_str = "enable/disable parsing of tunnels for csum engine: " 3131 "csum parse_tunnel on|off <tx-port>", 3132 .tokens = { 3133 (void *)&cmd_csum_tunnel_csum, 3134 (void *)&cmd_csum_tunnel_parse, 3135 (void *)&cmd_csum_tunnel_onoff, 3136 (void *)&cmd_csum_tunnel_portid, 3137 NULL, 3138 }, 3139 }; 3140 3141 /* *** ENABLE HARDWARE SEGMENTATION IN TX PACKETS *** */ 3142 struct cmd_tso_set_result { 3143 cmdline_fixed_string_t tso; 3144 cmdline_fixed_string_t mode; 3145 uint16_t tso_segsz; 3146 uint8_t port_id; 3147 }; 3148 3149 static void 3150 cmd_tso_set_parsed(void *parsed_result, 3151 __attribute__((unused)) struct cmdline *cl, 3152 __attribute__((unused)) void *data) 3153 { 3154 struct cmd_tso_set_result *res = parsed_result; 3155 struct rte_eth_dev_info dev_info; 3156 3157 if (port_id_is_invalid(res->port_id, ENABLED_WARN)) 3158 return; 3159 3160 if (!strcmp(res->mode, "set")) 3161 ports[res->port_id].tso_segsz = res->tso_segsz; 3162 3163 if (ports[res->port_id].tso_segsz == 0) 3164 printf("TSO is disabled\n"); 3165 else 3166 printf("TSO segment size is %d\n", 3167 ports[res->port_id].tso_segsz); 3168 3169 /* display warnings if configuration is not supported by the NIC */ 3170 rte_eth_dev_info_get(res->port_id, &dev_info); 3171 if ((ports[res->port_id].tso_segsz != 0) && 3172 (dev_info.tx_offload_capa & DEV_TX_OFFLOAD_TCP_TSO) == 0) { 3173 printf("Warning: TSO enabled but not " 3174 "supported by port %d\n", res->port_id); 3175 } 3176 } 3177 3178 cmdline_parse_token_string_t cmd_tso_set_tso = 3179 TOKEN_STRING_INITIALIZER(struct cmd_tso_set_result, 3180 tso, "tso"); 3181 cmdline_parse_token_string_t cmd_tso_set_mode = 3182 TOKEN_STRING_INITIALIZER(struct cmd_tso_set_result, 3183 mode, "set"); 3184 cmdline_parse_token_num_t cmd_tso_set_tso_segsz = 3185 TOKEN_NUM_INITIALIZER(struct cmd_tso_set_result, 3186 tso_segsz, UINT16); 3187 cmdline_parse_token_num_t cmd_tso_set_portid = 3188 TOKEN_NUM_INITIALIZER(struct cmd_tso_set_result, 3189 port_id, UINT8); 3190 3191 cmdline_parse_inst_t cmd_tso_set = { 3192 .f = cmd_tso_set_parsed, 3193 .data = NULL, 3194 .help_str = "Set TSO segment size for csum engine (0 to disable): " 3195 "tso set <tso_segsz> <port>", 3196 .tokens = { 3197 (void *)&cmd_tso_set_tso, 3198 (void *)&cmd_tso_set_mode, 3199 (void *)&cmd_tso_set_tso_segsz, 3200 (void *)&cmd_tso_set_portid, 3201 NULL, 3202 }, 3203 }; 3204 3205 cmdline_parse_token_string_t cmd_tso_show_mode = 3206 TOKEN_STRING_INITIALIZER(struct cmd_tso_set_result, 3207 mode, "show"); 3208 3209 3210 cmdline_parse_inst_t cmd_tso_show = { 3211 .f = cmd_tso_set_parsed, 3212 .data = NULL, 3213 .help_str = "Show TSO segment size for csum engine: " 3214 "tso show <port>", 3215 .tokens = { 3216 (void *)&cmd_tso_set_tso, 3217 (void *)&cmd_tso_show_mode, 3218 (void *)&cmd_tso_set_portid, 3219 NULL, 3220 }, 3221 }; 3222 3223 /* *** ENABLE/DISABLE FLUSH ON RX STREAMS *** */ 3224 struct cmd_set_flush_rx { 3225 cmdline_fixed_string_t set; 3226 cmdline_fixed_string_t flush_rx; 3227 cmdline_fixed_string_t mode; 3228 }; 3229 3230 static void 3231 cmd_set_flush_rx_parsed(void *parsed_result, 3232 __attribute__((unused)) struct cmdline *cl, 3233 __attribute__((unused)) void *data) 3234 { 3235 struct cmd_set_flush_rx *res = parsed_result; 3236 no_flush_rx = (uint8_t)((strcmp(res->mode, "on") == 0) ? 0 : 1); 3237 } 3238 3239 cmdline_parse_token_string_t cmd_setflushrx_set = 3240 TOKEN_STRING_INITIALIZER(struct cmd_set_flush_rx, 3241 set, "set"); 3242 cmdline_parse_token_string_t cmd_setflushrx_flush_rx = 3243 TOKEN_STRING_INITIALIZER(struct cmd_set_flush_rx, 3244 flush_rx, "flush_rx"); 3245 cmdline_parse_token_string_t cmd_setflushrx_mode = 3246 TOKEN_STRING_INITIALIZER(struct cmd_set_flush_rx, 3247 mode, "on#off"); 3248 3249 3250 cmdline_parse_inst_t cmd_set_flush_rx = { 3251 .f = cmd_set_flush_rx_parsed, 3252 .help_str = "set flush_rx on|off: enable/disable flush on rx streams", 3253 .data = NULL, 3254 .tokens = { 3255 (void *)&cmd_setflushrx_set, 3256 (void *)&cmd_setflushrx_flush_rx, 3257 (void *)&cmd_setflushrx_mode, 3258 NULL, 3259 }, 3260 }; 3261 3262 /* *** ENABLE/DISABLE LINK STATUS CHECK *** */ 3263 struct cmd_set_link_check { 3264 cmdline_fixed_string_t set; 3265 cmdline_fixed_string_t link_check; 3266 cmdline_fixed_string_t mode; 3267 }; 3268 3269 static void 3270 cmd_set_link_check_parsed(void *parsed_result, 3271 __attribute__((unused)) struct cmdline *cl, 3272 __attribute__((unused)) void *data) 3273 { 3274 struct cmd_set_link_check *res = parsed_result; 3275 no_link_check = (uint8_t)((strcmp(res->mode, "on") == 0) ? 0 : 1); 3276 } 3277 3278 cmdline_parse_token_string_t cmd_setlinkcheck_set = 3279 TOKEN_STRING_INITIALIZER(struct cmd_set_link_check, 3280 set, "set"); 3281 cmdline_parse_token_string_t cmd_setlinkcheck_link_check = 3282 TOKEN_STRING_INITIALIZER(struct cmd_set_link_check, 3283 link_check, "link_check"); 3284 cmdline_parse_token_string_t cmd_setlinkcheck_mode = 3285 TOKEN_STRING_INITIALIZER(struct cmd_set_link_check, 3286 mode, "on#off"); 3287 3288 3289 cmdline_parse_inst_t cmd_set_link_check = { 3290 .f = cmd_set_link_check_parsed, 3291 .help_str = "set link_check on|off: enable/disable link status check " 3292 "when starting/stopping a port", 3293 .data = NULL, 3294 .tokens = { 3295 (void *)&cmd_setlinkcheck_set, 3296 (void *)&cmd_setlinkcheck_link_check, 3297 (void *)&cmd_setlinkcheck_mode, 3298 NULL, 3299 }, 3300 }; 3301 3302 #ifdef RTE_NIC_BYPASS 3303 /* *** SET NIC BYPASS MODE *** */ 3304 struct cmd_set_bypass_mode_result { 3305 cmdline_fixed_string_t set; 3306 cmdline_fixed_string_t bypass; 3307 cmdline_fixed_string_t mode; 3308 cmdline_fixed_string_t value; 3309 uint8_t port_id; 3310 }; 3311 3312 static void 3313 cmd_set_bypass_mode_parsed(void *parsed_result, 3314 __attribute__((unused)) struct cmdline *cl, 3315 __attribute__((unused)) void *data) 3316 { 3317 struct cmd_set_bypass_mode_result *res = parsed_result; 3318 portid_t port_id = res->port_id; 3319 uint32_t bypass_mode = RTE_BYPASS_MODE_NORMAL; 3320 3321 if (!bypass_is_supported(port_id)) 3322 return; 3323 3324 if (!strcmp(res->value, "bypass")) 3325 bypass_mode = RTE_BYPASS_MODE_BYPASS; 3326 else if (!strcmp(res->value, "isolate")) 3327 bypass_mode = RTE_BYPASS_MODE_ISOLATE; 3328 else 3329 bypass_mode = RTE_BYPASS_MODE_NORMAL; 3330 3331 /* Set the bypass mode for the relevant port. */ 3332 if (0 != rte_eth_dev_bypass_state_set(port_id, &bypass_mode)) { 3333 printf("\t Failed to set bypass mode for port = %d.\n", port_id); 3334 } 3335 } 3336 3337 cmdline_parse_token_string_t cmd_setbypass_mode_set = 3338 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_mode_result, 3339 set, "set"); 3340 cmdline_parse_token_string_t cmd_setbypass_mode_bypass = 3341 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_mode_result, 3342 bypass, "bypass"); 3343 cmdline_parse_token_string_t cmd_setbypass_mode_mode = 3344 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_mode_result, 3345 mode, "mode"); 3346 cmdline_parse_token_string_t cmd_setbypass_mode_value = 3347 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_mode_result, 3348 value, "normal#bypass#isolate"); 3349 cmdline_parse_token_num_t cmd_setbypass_mode_port = 3350 TOKEN_NUM_INITIALIZER(struct cmd_set_bypass_mode_result, 3351 port_id, UINT8); 3352 3353 cmdline_parse_inst_t cmd_set_bypass_mode = { 3354 .f = cmd_set_bypass_mode_parsed, 3355 .help_str = "set bypass mode (normal|bypass|isolate) (port_id): " 3356 "Set the NIC bypass mode for port_id", 3357 .data = NULL, 3358 .tokens = { 3359 (void *)&cmd_setbypass_mode_set, 3360 (void *)&cmd_setbypass_mode_bypass, 3361 (void *)&cmd_setbypass_mode_mode, 3362 (void *)&cmd_setbypass_mode_value, 3363 (void *)&cmd_setbypass_mode_port, 3364 NULL, 3365 }, 3366 }; 3367 3368 /* *** SET NIC BYPASS EVENT *** */ 3369 struct cmd_set_bypass_event_result { 3370 cmdline_fixed_string_t set; 3371 cmdline_fixed_string_t bypass; 3372 cmdline_fixed_string_t event; 3373 cmdline_fixed_string_t event_value; 3374 cmdline_fixed_string_t mode; 3375 cmdline_fixed_string_t mode_value; 3376 uint8_t port_id; 3377 }; 3378 3379 static void 3380 cmd_set_bypass_event_parsed(void *parsed_result, 3381 __attribute__((unused)) struct cmdline *cl, 3382 __attribute__((unused)) void *data) 3383 { 3384 int32_t rc; 3385 struct cmd_set_bypass_event_result *res = parsed_result; 3386 portid_t port_id = res->port_id; 3387 uint32_t bypass_event = RTE_BYPASS_EVENT_NONE; 3388 uint32_t bypass_mode = RTE_BYPASS_MODE_NORMAL; 3389 3390 if (!bypass_is_supported(port_id)) 3391 return; 3392 3393 if (!strcmp(res->event_value, "timeout")) 3394 bypass_event = RTE_BYPASS_EVENT_TIMEOUT; 3395 else if (!strcmp(res->event_value, "os_on")) 3396 bypass_event = RTE_BYPASS_EVENT_OS_ON; 3397 else if (!strcmp(res->event_value, "os_off")) 3398 bypass_event = RTE_BYPASS_EVENT_OS_OFF; 3399 else if (!strcmp(res->event_value, "power_on")) 3400 bypass_event = RTE_BYPASS_EVENT_POWER_ON; 3401 else if (!strcmp(res->event_value, "power_off")) 3402 bypass_event = RTE_BYPASS_EVENT_POWER_OFF; 3403 else 3404 bypass_event = RTE_BYPASS_EVENT_NONE; 3405 3406 if (!strcmp(res->mode_value, "bypass")) 3407 bypass_mode = RTE_BYPASS_MODE_BYPASS; 3408 else if (!strcmp(res->mode_value, "isolate")) 3409 bypass_mode = RTE_BYPASS_MODE_ISOLATE; 3410 else 3411 bypass_mode = RTE_BYPASS_MODE_NORMAL; 3412 3413 /* Set the watchdog timeout. */ 3414 if (bypass_event == RTE_BYPASS_EVENT_TIMEOUT) { 3415 3416 rc = -EINVAL; 3417 if (!RTE_BYPASS_TMT_VALID(bypass_timeout) || 3418 (rc = rte_eth_dev_wd_timeout_store(port_id, 3419 bypass_timeout)) != 0) { 3420 printf("Failed to set timeout value %u " 3421 "for port %d, errto code: %d.\n", 3422 bypass_timeout, port_id, rc); 3423 } 3424 } 3425 3426 /* Set the bypass event to transition to bypass mode. */ 3427 if (0 != rte_eth_dev_bypass_event_store(port_id, 3428 bypass_event, bypass_mode)) { 3429 printf("\t Failed to set bypass event for port = %d.\n", port_id); 3430 } 3431 3432 } 3433 3434 cmdline_parse_token_string_t cmd_setbypass_event_set = 3435 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_event_result, 3436 set, "set"); 3437 cmdline_parse_token_string_t cmd_setbypass_event_bypass = 3438 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_event_result, 3439 bypass, "bypass"); 3440 cmdline_parse_token_string_t cmd_setbypass_event_event = 3441 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_event_result, 3442 event, "event"); 3443 cmdline_parse_token_string_t cmd_setbypass_event_event_value = 3444 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_event_result, 3445 event_value, "none#timeout#os_off#os_on#power_on#power_off"); 3446 cmdline_parse_token_string_t cmd_setbypass_event_mode = 3447 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_event_result, 3448 mode, "mode"); 3449 cmdline_parse_token_string_t cmd_setbypass_event_mode_value = 3450 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_event_result, 3451 mode_value, "normal#bypass#isolate"); 3452 cmdline_parse_token_num_t cmd_setbypass_event_port = 3453 TOKEN_NUM_INITIALIZER(struct cmd_set_bypass_event_result, 3454 port_id, UINT8); 3455 3456 cmdline_parse_inst_t cmd_set_bypass_event = { 3457 .f = cmd_set_bypass_event_parsed, 3458 .help_str = "set bypass event (timeout|os_on|os_off|power_on|power_off) " 3459 "mode (normal|bypass|isolate) (port_id): " 3460 "Set the NIC bypass event mode for port_id", 3461 .data = NULL, 3462 .tokens = { 3463 (void *)&cmd_setbypass_event_set, 3464 (void *)&cmd_setbypass_event_bypass, 3465 (void *)&cmd_setbypass_event_event, 3466 (void *)&cmd_setbypass_event_event_value, 3467 (void *)&cmd_setbypass_event_mode, 3468 (void *)&cmd_setbypass_event_mode_value, 3469 (void *)&cmd_setbypass_event_port, 3470 NULL, 3471 }, 3472 }; 3473 3474 3475 /* *** SET NIC BYPASS TIMEOUT *** */ 3476 struct cmd_set_bypass_timeout_result { 3477 cmdline_fixed_string_t set; 3478 cmdline_fixed_string_t bypass; 3479 cmdline_fixed_string_t timeout; 3480 cmdline_fixed_string_t value; 3481 }; 3482 3483 static void 3484 cmd_set_bypass_timeout_parsed(void *parsed_result, 3485 __attribute__((unused)) struct cmdline *cl, 3486 __attribute__((unused)) void *data) 3487 { 3488 struct cmd_set_bypass_timeout_result *res = parsed_result; 3489 3490 if (!strcmp(res->value, "1.5")) 3491 bypass_timeout = RTE_BYPASS_TMT_1_5_SEC; 3492 else if (!strcmp(res->value, "2")) 3493 bypass_timeout = RTE_BYPASS_TMT_2_SEC; 3494 else if (!strcmp(res->value, "3")) 3495 bypass_timeout = RTE_BYPASS_TMT_3_SEC; 3496 else if (!strcmp(res->value, "4")) 3497 bypass_timeout = RTE_BYPASS_TMT_4_SEC; 3498 else if (!strcmp(res->value, "8")) 3499 bypass_timeout = RTE_BYPASS_TMT_8_SEC; 3500 else if (!strcmp(res->value, "16")) 3501 bypass_timeout = RTE_BYPASS_TMT_16_SEC; 3502 else if (!strcmp(res->value, "32")) 3503 bypass_timeout = RTE_BYPASS_TMT_32_SEC; 3504 else 3505 bypass_timeout = RTE_BYPASS_TMT_OFF; 3506 } 3507 3508 cmdline_parse_token_string_t cmd_setbypass_timeout_set = 3509 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_timeout_result, 3510 set, "set"); 3511 cmdline_parse_token_string_t cmd_setbypass_timeout_bypass = 3512 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_timeout_result, 3513 bypass, "bypass"); 3514 cmdline_parse_token_string_t cmd_setbypass_timeout_timeout = 3515 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_timeout_result, 3516 timeout, "timeout"); 3517 cmdline_parse_token_string_t cmd_setbypass_timeout_value = 3518 TOKEN_STRING_INITIALIZER(struct cmd_set_bypass_timeout_result, 3519 value, "0#1.5#2#3#4#8#16#32"); 3520 3521 cmdline_parse_inst_t cmd_set_bypass_timeout = { 3522 .f = cmd_set_bypass_timeout_parsed, 3523 .help_str = "set bypass timeout (0|1.5|2|3|4|8|16|32) seconds: " 3524 "Set the NIC bypass watchdog timeout", 3525 .data = NULL, 3526 .tokens = { 3527 (void *)&cmd_setbypass_timeout_set, 3528 (void *)&cmd_setbypass_timeout_bypass, 3529 (void *)&cmd_setbypass_timeout_timeout, 3530 (void *)&cmd_setbypass_timeout_value, 3531 NULL, 3532 }, 3533 }; 3534 3535 /* *** SHOW NIC BYPASS MODE *** */ 3536 struct cmd_show_bypass_config_result { 3537 cmdline_fixed_string_t show; 3538 cmdline_fixed_string_t bypass; 3539 cmdline_fixed_string_t config; 3540 uint8_t port_id; 3541 }; 3542 3543 static void 3544 cmd_show_bypass_config_parsed(void *parsed_result, 3545 __attribute__((unused)) struct cmdline *cl, 3546 __attribute__((unused)) void *data) 3547 { 3548 struct cmd_show_bypass_config_result *res = parsed_result; 3549 uint32_t event_mode; 3550 uint32_t bypass_mode; 3551 portid_t port_id = res->port_id; 3552 uint32_t timeout = bypass_timeout; 3553 int i; 3554 3555 static const char * const timeouts[RTE_BYPASS_TMT_NUM] = 3556 {"off", "1.5", "2", "3", "4", "8", "16", "32"}; 3557 static const char * const modes[RTE_BYPASS_MODE_NUM] = 3558 {"UNKNOWN", "normal", "bypass", "isolate"}; 3559 static const char * const events[RTE_BYPASS_EVENT_NUM] = { 3560 "NONE", 3561 "OS/board on", 3562 "power supply on", 3563 "OS/board off", 3564 "power supply off", 3565 "timeout"}; 3566 int num_events = (sizeof events) / (sizeof events[0]); 3567 3568 if (!bypass_is_supported(port_id)) 3569 return; 3570 3571 /* Display the bypass mode.*/ 3572 if (0 != rte_eth_dev_bypass_state_show(port_id, &bypass_mode)) { 3573 printf("\tFailed to get bypass mode for port = %d\n", port_id); 3574 return; 3575 } 3576 else { 3577 if (!RTE_BYPASS_MODE_VALID(bypass_mode)) 3578 bypass_mode = RTE_BYPASS_MODE_NONE; 3579 3580 printf("\tbypass mode = %s\n", modes[bypass_mode]); 3581 } 3582 3583 /* Display the bypass timeout.*/ 3584 if (!RTE_BYPASS_TMT_VALID(timeout)) 3585 timeout = RTE_BYPASS_TMT_OFF; 3586 3587 printf("\tbypass timeout = %s\n", timeouts[timeout]); 3588 3589 /* Display the bypass events and associated modes. */ 3590 for (i = RTE_BYPASS_EVENT_START; i < num_events; i++) { 3591 3592 if (0 != rte_eth_dev_bypass_event_show(port_id, i, &event_mode)) { 3593 printf("\tFailed to get bypass mode for event = %s\n", 3594 events[i]); 3595 } else { 3596 if (!RTE_BYPASS_MODE_VALID(event_mode)) 3597 event_mode = RTE_BYPASS_MODE_NONE; 3598 3599 printf("\tbypass event: %-16s = %s\n", events[i], 3600 modes[event_mode]); 3601 } 3602 } 3603 } 3604 3605 cmdline_parse_token_string_t cmd_showbypass_config_show = 3606 TOKEN_STRING_INITIALIZER(struct cmd_show_bypass_config_result, 3607 show, "show"); 3608 cmdline_parse_token_string_t cmd_showbypass_config_bypass = 3609 TOKEN_STRING_INITIALIZER(struct cmd_show_bypass_config_result, 3610 bypass, "bypass"); 3611 cmdline_parse_token_string_t cmd_showbypass_config_config = 3612 TOKEN_STRING_INITIALIZER(struct cmd_show_bypass_config_result, 3613 config, "config"); 3614 cmdline_parse_token_num_t cmd_showbypass_config_port = 3615 TOKEN_NUM_INITIALIZER(struct cmd_show_bypass_config_result, 3616 port_id, UINT8); 3617 3618 cmdline_parse_inst_t cmd_show_bypass_config = { 3619 .f = cmd_show_bypass_config_parsed, 3620 .help_str = "show bypass config (port_id): " 3621 "Show the NIC bypass config for port_id", 3622 .data = NULL, 3623 .tokens = { 3624 (void *)&cmd_showbypass_config_show, 3625 (void *)&cmd_showbypass_config_bypass, 3626 (void *)&cmd_showbypass_config_config, 3627 (void *)&cmd_showbypass_config_port, 3628 NULL, 3629 }, 3630 }; 3631 #endif 3632 3633 #ifdef RTE_LIBRTE_PMD_BOND 3634 /* *** SET BONDING MODE *** */ 3635 struct cmd_set_bonding_mode_result { 3636 cmdline_fixed_string_t set; 3637 cmdline_fixed_string_t bonding; 3638 cmdline_fixed_string_t mode; 3639 uint8_t value; 3640 uint8_t port_id; 3641 }; 3642 3643 static void cmd_set_bonding_mode_parsed(void *parsed_result, 3644 __attribute__((unused)) struct cmdline *cl, 3645 __attribute__((unused)) void *data) 3646 { 3647 struct cmd_set_bonding_mode_result *res = parsed_result; 3648 portid_t port_id = res->port_id; 3649 3650 /* Set the bonding mode for the relevant port. */ 3651 if (0 != rte_eth_bond_mode_set(port_id, res->value)) 3652 printf("\t Failed to set bonding mode for port = %d.\n", port_id); 3653 } 3654 3655 cmdline_parse_token_string_t cmd_setbonding_mode_set = 3656 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_mode_result, 3657 set, "set"); 3658 cmdline_parse_token_string_t cmd_setbonding_mode_bonding = 3659 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_mode_result, 3660 bonding, "bonding"); 3661 cmdline_parse_token_string_t cmd_setbonding_mode_mode = 3662 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_mode_result, 3663 mode, "mode"); 3664 cmdline_parse_token_num_t cmd_setbonding_mode_value = 3665 TOKEN_NUM_INITIALIZER(struct cmd_set_bonding_mode_result, 3666 value, UINT8); 3667 cmdline_parse_token_num_t cmd_setbonding_mode_port = 3668 TOKEN_NUM_INITIALIZER(struct cmd_set_bonding_mode_result, 3669 port_id, UINT8); 3670 3671 cmdline_parse_inst_t cmd_set_bonding_mode = { 3672 .f = cmd_set_bonding_mode_parsed, 3673 .help_str = "set bonding mode (mode_value) (port_id): Set the bonding mode for port_id", 3674 .data = NULL, 3675 .tokens = { 3676 (void *) &cmd_setbonding_mode_set, 3677 (void *) &cmd_setbonding_mode_bonding, 3678 (void *) &cmd_setbonding_mode_mode, 3679 (void *) &cmd_setbonding_mode_value, 3680 (void *) &cmd_setbonding_mode_port, 3681 NULL 3682 } 3683 }; 3684 3685 /* *** SET BALANCE XMIT POLICY *** */ 3686 struct cmd_set_bonding_balance_xmit_policy_result { 3687 cmdline_fixed_string_t set; 3688 cmdline_fixed_string_t bonding; 3689 cmdline_fixed_string_t balance_xmit_policy; 3690 uint8_t port_id; 3691 cmdline_fixed_string_t policy; 3692 }; 3693 3694 static void cmd_set_bonding_balance_xmit_policy_parsed(void *parsed_result, 3695 __attribute__((unused)) struct cmdline *cl, 3696 __attribute__((unused)) void *data) 3697 { 3698 struct cmd_set_bonding_balance_xmit_policy_result *res = parsed_result; 3699 portid_t port_id = res->port_id; 3700 uint8_t policy; 3701 3702 if (!strcmp(res->policy, "l2")) { 3703 policy = BALANCE_XMIT_POLICY_LAYER2; 3704 } else if (!strcmp(res->policy, "l23")) { 3705 policy = BALANCE_XMIT_POLICY_LAYER23; 3706 } else if (!strcmp(res->policy, "l34")) { 3707 policy = BALANCE_XMIT_POLICY_LAYER34; 3708 } else { 3709 printf("\t Invalid xmit policy selection"); 3710 return; 3711 } 3712 3713 /* Set the bonding mode for the relevant port. */ 3714 if (0 != rte_eth_bond_xmit_policy_set(port_id, policy)) { 3715 printf("\t Failed to set bonding balance xmit policy for port = %d.\n", 3716 port_id); 3717 } 3718 } 3719 3720 cmdline_parse_token_string_t cmd_setbonding_balance_xmit_policy_set = 3721 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_balance_xmit_policy_result, 3722 set, "set"); 3723 cmdline_parse_token_string_t cmd_setbonding_balance_xmit_policy_bonding = 3724 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_balance_xmit_policy_result, 3725 bonding, "bonding"); 3726 cmdline_parse_token_string_t cmd_setbonding_balance_xmit_policy_balance_xmit_policy = 3727 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_balance_xmit_policy_result, 3728 balance_xmit_policy, "balance_xmit_policy"); 3729 cmdline_parse_token_num_t cmd_setbonding_balance_xmit_policy_port = 3730 TOKEN_NUM_INITIALIZER(struct cmd_set_bonding_balance_xmit_policy_result, 3731 port_id, UINT8); 3732 cmdline_parse_token_string_t cmd_setbonding_balance_xmit_policy_policy = 3733 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_balance_xmit_policy_result, 3734 policy, "l2#l23#l34"); 3735 3736 cmdline_parse_inst_t cmd_set_balance_xmit_policy = { 3737 .f = cmd_set_bonding_balance_xmit_policy_parsed, 3738 .help_str = "set bonding balance_xmit_policy (port_id) (policy_value): Set the bonding balance_xmit_policy for port_id", 3739 .data = NULL, 3740 .tokens = { 3741 (void *)&cmd_setbonding_balance_xmit_policy_set, 3742 (void *)&cmd_setbonding_balance_xmit_policy_bonding, 3743 (void *)&cmd_setbonding_balance_xmit_policy_balance_xmit_policy, 3744 (void *)&cmd_setbonding_balance_xmit_policy_port, 3745 (void *)&cmd_setbonding_balance_xmit_policy_policy, 3746 NULL 3747 } 3748 }; 3749 3750 /* *** SHOW NIC BONDING CONFIGURATION *** */ 3751 struct cmd_show_bonding_config_result { 3752 cmdline_fixed_string_t show; 3753 cmdline_fixed_string_t bonding; 3754 cmdline_fixed_string_t config; 3755 uint8_t port_id; 3756 }; 3757 3758 static void cmd_show_bonding_config_parsed(void *parsed_result, 3759 __attribute__((unused)) struct cmdline *cl, 3760 __attribute__((unused)) void *data) 3761 { 3762 struct cmd_show_bonding_config_result *res = parsed_result; 3763 int bonding_mode; 3764 uint8_t slaves[RTE_MAX_ETHPORTS]; 3765 int num_slaves, num_active_slaves; 3766 int primary_id; 3767 int i; 3768 portid_t port_id = res->port_id; 3769 3770 /* Display the bonding mode.*/ 3771 bonding_mode = rte_eth_bond_mode_get(port_id); 3772 if (bonding_mode < 0) { 3773 printf("\tFailed to get bonding mode for port = %d\n", port_id); 3774 return; 3775 } else 3776 printf("\tBonding mode: %d\n", bonding_mode); 3777 3778 if (bonding_mode == BONDING_MODE_BALANCE) { 3779 int balance_xmit_policy; 3780 3781 balance_xmit_policy = rte_eth_bond_xmit_policy_get(port_id); 3782 if (balance_xmit_policy < 0) { 3783 printf("\tFailed to get balance xmit policy for port = %d\n", 3784 port_id); 3785 return; 3786 } else { 3787 printf("\tBalance Xmit Policy: "); 3788 3789 switch (balance_xmit_policy) { 3790 case BALANCE_XMIT_POLICY_LAYER2: 3791 printf("BALANCE_XMIT_POLICY_LAYER2"); 3792 break; 3793 case BALANCE_XMIT_POLICY_LAYER23: 3794 printf("BALANCE_XMIT_POLICY_LAYER23"); 3795 break; 3796 case BALANCE_XMIT_POLICY_LAYER34: 3797 printf("BALANCE_XMIT_POLICY_LAYER34"); 3798 break; 3799 } 3800 printf("\n"); 3801 } 3802 } 3803 3804 num_slaves = rte_eth_bond_slaves_get(port_id, slaves, RTE_MAX_ETHPORTS); 3805 3806 if (num_slaves < 0) { 3807 printf("\tFailed to get slave list for port = %d\n", port_id); 3808 return; 3809 } 3810 if (num_slaves > 0) { 3811 printf("\tSlaves (%d): [", num_slaves); 3812 for (i = 0; i < num_slaves - 1; i++) 3813 printf("%d ", slaves[i]); 3814 3815 printf("%d]\n", slaves[num_slaves - 1]); 3816 } else { 3817 printf("\tSlaves: []\n"); 3818 3819 } 3820 3821 num_active_slaves = rte_eth_bond_active_slaves_get(port_id, slaves, 3822 RTE_MAX_ETHPORTS); 3823 3824 if (num_active_slaves < 0) { 3825 printf("\tFailed to get active slave list for port = %d\n", port_id); 3826 return; 3827 } 3828 if (num_active_slaves > 0) { 3829 printf("\tActive Slaves (%d): [", num_active_slaves); 3830 for (i = 0; i < num_active_slaves - 1; i++) 3831 printf("%d ", slaves[i]); 3832 3833 printf("%d]\n", slaves[num_active_slaves - 1]); 3834 3835 } else { 3836 printf("\tActive Slaves: []\n"); 3837 3838 } 3839 3840 primary_id = rte_eth_bond_primary_get(port_id); 3841 if (primary_id < 0) { 3842 printf("\tFailed to get primary slave for port = %d\n", port_id); 3843 return; 3844 } else 3845 printf("\tPrimary: [%d]\n", primary_id); 3846 3847 } 3848 3849 cmdline_parse_token_string_t cmd_showbonding_config_show = 3850 TOKEN_STRING_INITIALIZER(struct cmd_show_bonding_config_result, 3851 show, "show"); 3852 cmdline_parse_token_string_t cmd_showbonding_config_bonding = 3853 TOKEN_STRING_INITIALIZER(struct cmd_show_bonding_config_result, 3854 bonding, "bonding"); 3855 cmdline_parse_token_string_t cmd_showbonding_config_config = 3856 TOKEN_STRING_INITIALIZER(struct cmd_show_bonding_config_result, 3857 config, "config"); 3858 cmdline_parse_token_num_t cmd_showbonding_config_port = 3859 TOKEN_NUM_INITIALIZER(struct cmd_show_bonding_config_result, 3860 port_id, UINT8); 3861 3862 cmdline_parse_inst_t cmd_show_bonding_config = { 3863 .f = cmd_show_bonding_config_parsed, 3864 .help_str = "show bonding config (port_id): Show the bonding config for port_id", 3865 .data = NULL, 3866 .tokens = { 3867 (void *)&cmd_showbonding_config_show, 3868 (void *)&cmd_showbonding_config_bonding, 3869 (void *)&cmd_showbonding_config_config, 3870 (void *)&cmd_showbonding_config_port, 3871 NULL 3872 } 3873 }; 3874 3875 /* *** SET BONDING PRIMARY *** */ 3876 struct cmd_set_bonding_primary_result { 3877 cmdline_fixed_string_t set; 3878 cmdline_fixed_string_t bonding; 3879 cmdline_fixed_string_t primary; 3880 uint8_t slave_id; 3881 uint8_t port_id; 3882 }; 3883 3884 static void cmd_set_bonding_primary_parsed(void *parsed_result, 3885 __attribute__((unused)) struct cmdline *cl, 3886 __attribute__((unused)) void *data) 3887 { 3888 struct cmd_set_bonding_primary_result *res = parsed_result; 3889 portid_t master_port_id = res->port_id; 3890 portid_t slave_port_id = res->slave_id; 3891 3892 /* Set the primary slave for a bonded device. */ 3893 if (0 != rte_eth_bond_primary_set(master_port_id, slave_port_id)) { 3894 printf("\t Failed to set primary slave for port = %d.\n", 3895 master_port_id); 3896 return; 3897 } 3898 init_port_config(); 3899 } 3900 3901 cmdline_parse_token_string_t cmd_setbonding_primary_set = 3902 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_primary_result, 3903 set, "set"); 3904 cmdline_parse_token_string_t cmd_setbonding_primary_bonding = 3905 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_primary_result, 3906 bonding, "bonding"); 3907 cmdline_parse_token_string_t cmd_setbonding_primary_primary = 3908 TOKEN_STRING_INITIALIZER(struct cmd_set_bonding_primary_result, 3909 primary, "primary"); 3910 cmdline_parse_token_num_t cmd_setbonding_primary_slave = 3911 TOKEN_NUM_INITIALIZER(struct cmd_set_bonding_primary_result, 3912 slave_id, UINT8); 3913 cmdline_parse_token_num_t cmd_setbonding_primary_port = 3914 TOKEN_NUM_INITIALIZER(struct cmd_set_bonding_primary_result, 3915 port_id, UINT8); 3916 3917 cmdline_parse_inst_t cmd_set_bonding_primary = { 3918 .f = cmd_set_bonding_primary_parsed, 3919 .help_str = "set bonding primary (slave_id) (port_id): Set the primary slave for port_id", 3920 .data = NULL, 3921 .tokens = { 3922 (void *)&cmd_setbonding_primary_set, 3923 (void *)&cmd_setbonding_primary_bonding, 3924 (void *)&cmd_setbonding_primary_primary, 3925 (void *)&cmd_setbonding_primary_slave, 3926 (void *)&cmd_setbonding_primary_port, 3927 NULL 3928 } 3929 }; 3930 3931 /* *** ADD SLAVE *** */ 3932 struct cmd_add_bonding_slave_result { 3933 cmdline_fixed_string_t add; 3934 cmdline_fixed_string_t bonding; 3935 cmdline_fixed_string_t slave; 3936 uint8_t slave_id; 3937 uint8_t port_id; 3938 }; 3939 3940 static void cmd_add_bonding_slave_parsed(void *parsed_result, 3941 __attribute__((unused)) struct cmdline *cl, 3942 __attribute__((unused)) void *data) 3943 { 3944 struct cmd_add_bonding_slave_result *res = parsed_result; 3945 portid_t master_port_id = res->port_id; 3946 portid_t slave_port_id = res->slave_id; 3947 3948 /* Set the primary slave for a bonded device. */ 3949 if (0 != rte_eth_bond_slave_add(master_port_id, slave_port_id)) { 3950 printf("\t Failed to add slave %d to master port = %d.\n", 3951 slave_port_id, master_port_id); 3952 return; 3953 } 3954 init_port_config(); 3955 } 3956 3957 cmdline_parse_token_string_t cmd_addbonding_slave_add = 3958 TOKEN_STRING_INITIALIZER(struct cmd_add_bonding_slave_result, 3959 add, "add"); 3960 cmdline_parse_token_string_t cmd_addbonding_slave_bonding = 3961 TOKEN_STRING_INITIALIZER(struct cmd_add_bonding_slave_result, 3962 bonding, "bonding"); 3963 cmdline_parse_token_string_t cmd_addbonding_slave_slave = 3964 TOKEN_STRING_INITIALIZER(struct cmd_add_bonding_slave_result, 3965 slave, "slave"); 3966 cmdline_parse_token_num_t cmd_addbonding_slave_slaveid = 3967 TOKEN_NUM_INITIALIZER(struct cmd_add_bonding_slave_result, 3968 slave_id, UINT8); 3969 cmdline_parse_token_num_t cmd_addbonding_slave_port = 3970 TOKEN_NUM_INITIALIZER(struct cmd_add_bonding_slave_result, 3971 port_id, UINT8); 3972 3973 cmdline_parse_inst_t cmd_add_bonding_slave = { 3974 .f = cmd_add_bonding_slave_parsed, 3975 .help_str = "add bonding slave (slave_id) (port_id): Add a slave device to a bonded device", 3976 .data = NULL, 3977 .tokens = { 3978 (void *)&cmd_addbonding_slave_add, 3979 (void *)&cmd_addbonding_slave_bonding, 3980 (void *)&cmd_addbonding_slave_slave, 3981 (void *)&cmd_addbonding_slave_slaveid, 3982 (void *)&cmd_addbonding_slave_port, 3983 NULL 3984 } 3985 }; 3986 3987 /* *** REMOVE SLAVE *** */ 3988 struct cmd_remove_bonding_slave_result { 3989 cmdline_fixed_string_t remove; 3990 cmdline_fixed_string_t bonding; 3991 cmdline_fixed_string_t slave; 3992 uint8_t slave_id; 3993 uint8_t port_id; 3994 }; 3995 3996 static void cmd_remove_bonding_slave_parsed(void *parsed_result, 3997 __attribute__((unused)) struct cmdline *cl, 3998 __attribute__((unused)) void *data) 3999 { 4000 struct cmd_remove_bonding_slave_result *res = parsed_result; 4001 portid_t master_port_id = res->port_id; 4002 portid_t slave_port_id = res->slave_id; 4003 4004 /* Set the primary slave for a bonded device. */ 4005 if (0 != rte_eth_bond_slave_remove(master_port_id, slave_port_id)) { 4006 printf("\t Failed to remove slave %d from master port = %d.\n", 4007 slave_port_id, master_port_id); 4008 return; 4009 } 4010 init_port_config(); 4011 } 4012 4013 cmdline_parse_token_string_t cmd_removebonding_slave_remove = 4014 TOKEN_STRING_INITIALIZER(struct cmd_remove_bonding_slave_result, 4015 remove, "remove"); 4016 cmdline_parse_token_string_t cmd_removebonding_slave_bonding = 4017 TOKEN_STRING_INITIALIZER(struct cmd_remove_bonding_slave_result, 4018 bonding, "bonding"); 4019 cmdline_parse_token_string_t cmd_removebonding_slave_slave = 4020 TOKEN_STRING_INITIALIZER(struct cmd_remove_bonding_slave_result, 4021 slave, "slave"); 4022 cmdline_parse_token_num_t cmd_removebonding_slave_slaveid = 4023 TOKEN_NUM_INITIALIZER(struct cmd_remove_bonding_slave_result, 4024 slave_id, UINT8); 4025 cmdline_parse_token_num_t cmd_removebonding_slave_port = 4026 TOKEN_NUM_INITIALIZER(struct cmd_remove_bonding_slave_result, 4027 port_id, UINT8); 4028 4029 cmdline_parse_inst_t cmd_remove_bonding_slave = { 4030 .f = cmd_remove_bonding_slave_parsed, 4031 .help_str = "remove bonding slave (slave_id) (port_id): Remove a slave device from a bonded device", 4032 .data = NULL, 4033 .tokens = { 4034 (void *)&cmd_removebonding_slave_remove, 4035 (void *)&cmd_removebonding_slave_bonding, 4036 (void *)&cmd_removebonding_slave_slave, 4037 (void *)&cmd_removebonding_slave_slaveid, 4038 (void *)&cmd_removebonding_slave_port, 4039 NULL 4040 } 4041 }; 4042 4043 /* *** CREATE BONDED DEVICE *** */ 4044 struct cmd_create_bonded_device_result { 4045 cmdline_fixed_string_t create; 4046 cmdline_fixed_string_t bonded; 4047 cmdline_fixed_string_t device; 4048 uint8_t mode; 4049 uint8_t socket; 4050 }; 4051 4052 static int bond_dev_num = 0; 4053 4054 static void cmd_create_bonded_device_parsed(void *parsed_result, 4055 __attribute__((unused)) struct cmdline *cl, 4056 __attribute__((unused)) void *data) 4057 { 4058 struct cmd_create_bonded_device_result *res = parsed_result; 4059 char ethdev_name[RTE_ETH_NAME_MAX_LEN]; 4060 int port_id; 4061 4062 if (test_done == 0) { 4063 printf("Please stop forwarding first\n"); 4064 return; 4065 } 4066 4067 snprintf(ethdev_name, RTE_ETH_NAME_MAX_LEN, "eth_bond_testpmd_%d", 4068 bond_dev_num++); 4069 4070 /* Create a new bonded device. */ 4071 port_id = rte_eth_bond_create(ethdev_name, res->mode, res->socket); 4072 if (port_id < 0) { 4073 printf("\t Failed to create bonded device.\n"); 4074 return; 4075 } else { 4076 printf("Created new bonded device %s on (port %d).\n", ethdev_name, 4077 port_id); 4078 4079 /* Update number of ports */ 4080 nb_ports = rte_eth_dev_count(); 4081 reconfig(port_id, res->socket); 4082 rte_eth_promiscuous_enable(port_id); 4083 ports[port_id].enabled = 1; 4084 } 4085 4086 } 4087 4088 cmdline_parse_token_string_t cmd_createbonded_device_create = 4089 TOKEN_STRING_INITIALIZER(struct cmd_create_bonded_device_result, 4090 create, "create"); 4091 cmdline_parse_token_string_t cmd_createbonded_device_bonded = 4092 TOKEN_STRING_INITIALIZER(struct cmd_create_bonded_device_result, 4093 bonded, "bonded"); 4094 cmdline_parse_token_string_t cmd_createbonded_device_device = 4095 TOKEN_STRING_INITIALIZER(struct cmd_create_bonded_device_result, 4096 device, "device"); 4097 cmdline_parse_token_num_t cmd_createbonded_device_mode = 4098 TOKEN_NUM_INITIALIZER(struct cmd_create_bonded_device_result, 4099 mode, UINT8); 4100 cmdline_parse_token_num_t cmd_createbonded_device_socket = 4101 TOKEN_NUM_INITIALIZER(struct cmd_create_bonded_device_result, 4102 socket, UINT8); 4103 4104 cmdline_parse_inst_t cmd_create_bonded_device = { 4105 .f = cmd_create_bonded_device_parsed, 4106 .help_str = "create bonded device (mode) (socket): Create a new bonded device with specific bonding mode and socket", 4107 .data = NULL, 4108 .tokens = { 4109 (void *)&cmd_createbonded_device_create, 4110 (void *)&cmd_createbonded_device_bonded, 4111 (void *)&cmd_createbonded_device_device, 4112 (void *)&cmd_createbonded_device_mode, 4113 (void *)&cmd_createbonded_device_socket, 4114 NULL 4115 } 4116 }; 4117 4118 /* *** SET MAC ADDRESS IN BONDED DEVICE *** */ 4119 struct cmd_set_bond_mac_addr_result { 4120 cmdline_fixed_string_t set; 4121 cmdline_fixed_string_t bonding; 4122 cmdline_fixed_string_t mac_addr; 4123 uint8_t port_num; 4124 struct ether_addr address; 4125 }; 4126 4127 static void cmd_set_bond_mac_addr_parsed(void *parsed_result, 4128 __attribute__((unused)) struct cmdline *cl, 4129 __attribute__((unused)) void *data) 4130 { 4131 struct cmd_set_bond_mac_addr_result *res = parsed_result; 4132 int ret; 4133 4134 if (port_id_is_invalid(res->port_num, ENABLED_WARN)) 4135 return; 4136 4137 ret = rte_eth_bond_mac_address_set(res->port_num, &res->address); 4138 4139 /* check the return value and print it if is < 0 */ 4140 if (ret < 0) 4141 printf("set_bond_mac_addr error: (%s)\n", strerror(-ret)); 4142 } 4143 4144 cmdline_parse_token_string_t cmd_set_bond_mac_addr_set = 4145 TOKEN_STRING_INITIALIZER(struct cmd_set_bond_mac_addr_result, set, "set"); 4146 cmdline_parse_token_string_t cmd_set_bond_mac_addr_bonding = 4147 TOKEN_STRING_INITIALIZER(struct cmd_set_bond_mac_addr_result, bonding, 4148 "bonding"); 4149 cmdline_parse_token_string_t cmd_set_bond_mac_addr_mac = 4150 TOKEN_STRING_INITIALIZER(struct cmd_set_bond_mac_addr_result, mac_addr, 4151 "mac_addr"); 4152 cmdline_parse_token_num_t cmd_set_bond_mac_addr_portnum = 4153 TOKEN_NUM_INITIALIZER(struct cmd_set_bond_mac_addr_result, port_num, UINT8); 4154 cmdline_parse_token_etheraddr_t cmd_set_bond_mac_addr_addr = 4155 TOKEN_ETHERADDR_INITIALIZER(struct cmd_set_bond_mac_addr_result, address); 4156 4157 cmdline_parse_inst_t cmd_set_bond_mac_addr = { 4158 .f = cmd_set_bond_mac_addr_parsed, 4159 .data = (void *) 0, 4160 .help_str = "set bonding mac_addr (port_id) (address): ", 4161 .tokens = { 4162 (void *)&cmd_set_bond_mac_addr_set, 4163 (void *)&cmd_set_bond_mac_addr_bonding, 4164 (void *)&cmd_set_bond_mac_addr_mac, 4165 (void *)&cmd_set_bond_mac_addr_portnum, 4166 (void *)&cmd_set_bond_mac_addr_addr, 4167 NULL 4168 } 4169 }; 4170 4171 4172 /* *** SET LINK STATUS MONITORING POLLING PERIOD ON BONDED DEVICE *** */ 4173 struct cmd_set_bond_mon_period_result { 4174 cmdline_fixed_string_t set; 4175 cmdline_fixed_string_t bonding; 4176 cmdline_fixed_string_t mon_period; 4177 uint8_t port_num; 4178 uint32_t period_ms; 4179 }; 4180 4181 static void cmd_set_bond_mon_period_parsed(void *parsed_result, 4182 __attribute__((unused)) struct cmdline *cl, 4183 __attribute__((unused)) void *data) 4184 { 4185 struct cmd_set_bond_mon_period_result *res = parsed_result; 4186 int ret; 4187 4188 if (res->port_num >= nb_ports) { 4189 printf("Port id %d must be less than %d\n", res->port_num, nb_ports); 4190 return; 4191 } 4192 4193 ret = rte_eth_bond_link_monitoring_set(res->port_num, res->period_ms); 4194 4195 /* check the return value and print it if is < 0 */ 4196 if (ret < 0) 4197 printf("set_bond_mac_addr error: (%s)\n", strerror(-ret)); 4198 } 4199 4200 cmdline_parse_token_string_t cmd_set_bond_mon_period_set = 4201 TOKEN_STRING_INITIALIZER(struct cmd_set_bond_mon_period_result, 4202 set, "set"); 4203 cmdline_parse_token_string_t cmd_set_bond_mon_period_bonding = 4204 TOKEN_STRING_INITIALIZER(struct cmd_set_bond_mon_period_result, 4205 bonding, "bonding"); 4206 cmdline_parse_token_string_t cmd_set_bond_mon_period_mon_period = 4207 TOKEN_STRING_INITIALIZER(struct cmd_set_bond_mon_period_result, 4208 mon_period, "mon_period"); 4209 cmdline_parse_token_num_t cmd_set_bond_mon_period_portnum = 4210 TOKEN_NUM_INITIALIZER(struct cmd_set_bond_mon_period_result, 4211 port_num, UINT8); 4212 cmdline_parse_token_num_t cmd_set_bond_mon_period_period_ms = 4213 TOKEN_NUM_INITIALIZER(struct cmd_set_bond_mon_period_result, 4214 period_ms, UINT32); 4215 4216 cmdline_parse_inst_t cmd_set_bond_mon_period = { 4217 .f = cmd_set_bond_mon_period_parsed, 4218 .data = (void *) 0, 4219 .help_str = "set bonding mon_period (port_id) (period_ms): ", 4220 .tokens = { 4221 (void *)&cmd_set_bond_mon_period_set, 4222 (void *)&cmd_set_bond_mon_period_bonding, 4223 (void *)&cmd_set_bond_mon_period_mon_period, 4224 (void *)&cmd_set_bond_mon_period_portnum, 4225 (void *)&cmd_set_bond_mon_period_period_ms, 4226 NULL 4227 } 4228 }; 4229 4230 #endif /* RTE_LIBRTE_PMD_BOND */ 4231 4232 /* *** SET FORWARDING MODE *** */ 4233 struct cmd_set_fwd_mode_result { 4234 cmdline_fixed_string_t set; 4235 cmdline_fixed_string_t fwd; 4236 cmdline_fixed_string_t mode; 4237 }; 4238 4239 static void cmd_set_fwd_mode_parsed(void *parsed_result, 4240 __attribute__((unused)) struct cmdline *cl, 4241 __attribute__((unused)) void *data) 4242 { 4243 struct cmd_set_fwd_mode_result *res = parsed_result; 4244 4245 set_pkt_forwarding_mode(res->mode); 4246 } 4247 4248 cmdline_parse_token_string_t cmd_setfwd_set = 4249 TOKEN_STRING_INITIALIZER(struct cmd_set_fwd_mode_result, set, "set"); 4250 cmdline_parse_token_string_t cmd_setfwd_fwd = 4251 TOKEN_STRING_INITIALIZER(struct cmd_set_fwd_mode_result, fwd, "fwd"); 4252 cmdline_parse_token_string_t cmd_setfwd_mode = 4253 TOKEN_STRING_INITIALIZER(struct cmd_set_fwd_mode_result, mode, 4254 "" /* defined at init */); 4255 4256 cmdline_parse_inst_t cmd_set_fwd_mode = { 4257 .f = cmd_set_fwd_mode_parsed, 4258 .data = NULL, 4259 .help_str = NULL, /* defined at init */ 4260 .tokens = { 4261 (void *)&cmd_setfwd_set, 4262 (void *)&cmd_setfwd_fwd, 4263 (void *)&cmd_setfwd_mode, 4264 NULL, 4265 }, 4266 }; 4267 4268 static void cmd_set_fwd_mode_init(void) 4269 { 4270 char *modes, *c; 4271 static char token[128]; 4272 static char help[256]; 4273 cmdline_parse_token_string_t *token_struct; 4274 4275 modes = list_pkt_forwarding_modes(); 4276 snprintf(help, sizeof help, "set fwd %s - " 4277 "set packet forwarding mode", modes); 4278 cmd_set_fwd_mode.help_str = help; 4279 4280 /* string token separator is # */ 4281 for (c = token; *modes != '\0'; modes++) 4282 if (*modes == '|') 4283 *c++ = '#'; 4284 else 4285 *c++ = *modes; 4286 token_struct = (cmdline_parse_token_string_t*)cmd_set_fwd_mode.tokens[2]; 4287 token_struct->string_data.str = token; 4288 } 4289 4290 /* *** SET BURST TX DELAY TIME RETRY NUMBER *** */ 4291 struct cmd_set_burst_tx_retry_result { 4292 cmdline_fixed_string_t set; 4293 cmdline_fixed_string_t burst; 4294 cmdline_fixed_string_t tx; 4295 cmdline_fixed_string_t delay; 4296 uint32_t time; 4297 cmdline_fixed_string_t retry; 4298 uint32_t retry_num; 4299 }; 4300 4301 static void cmd_set_burst_tx_retry_parsed(void *parsed_result, 4302 __attribute__((unused)) struct cmdline *cl, 4303 __attribute__((unused)) void *data) 4304 { 4305 struct cmd_set_burst_tx_retry_result *res = parsed_result; 4306 4307 if (!strcmp(res->set, "set") && !strcmp(res->burst, "burst") 4308 && !strcmp(res->tx, "tx")) { 4309 if (!strcmp(res->delay, "delay")) 4310 burst_tx_delay_time = res->time; 4311 if (!strcmp(res->retry, "retry")) 4312 burst_tx_retry_num = res->retry_num; 4313 } 4314 4315 } 4316 4317 cmdline_parse_token_string_t cmd_set_burst_tx_retry_set = 4318 TOKEN_STRING_INITIALIZER(struct cmd_set_burst_tx_retry_result, set, "set"); 4319 cmdline_parse_token_string_t cmd_set_burst_tx_retry_burst = 4320 TOKEN_STRING_INITIALIZER(struct cmd_set_burst_tx_retry_result, burst, 4321 "burst"); 4322 cmdline_parse_token_string_t cmd_set_burst_tx_retry_tx = 4323 TOKEN_STRING_INITIALIZER(struct cmd_set_burst_tx_retry_result, tx, "tx"); 4324 cmdline_parse_token_string_t cmd_set_burst_tx_retry_delay = 4325 TOKEN_STRING_INITIALIZER(struct cmd_set_burst_tx_retry_result, delay, "delay"); 4326 cmdline_parse_token_num_t cmd_set_burst_tx_retry_time = 4327 TOKEN_NUM_INITIALIZER(struct cmd_set_burst_tx_retry_result, time, UINT32); 4328 cmdline_parse_token_string_t cmd_set_burst_tx_retry_retry = 4329 TOKEN_STRING_INITIALIZER(struct cmd_set_burst_tx_retry_result, retry, "retry"); 4330 cmdline_parse_token_num_t cmd_set_burst_tx_retry_retry_num = 4331 TOKEN_NUM_INITIALIZER(struct cmd_set_burst_tx_retry_result, retry_num, UINT32); 4332 4333 cmdline_parse_inst_t cmd_set_burst_tx_retry = { 4334 .f = cmd_set_burst_tx_retry_parsed, 4335 .help_str = "set burst tx delay (time_by_useconds) retry (retry_num)", 4336 .tokens = { 4337 (void *)&cmd_set_burst_tx_retry_set, 4338 (void *)&cmd_set_burst_tx_retry_burst, 4339 (void *)&cmd_set_burst_tx_retry_tx, 4340 (void *)&cmd_set_burst_tx_retry_delay, 4341 (void *)&cmd_set_burst_tx_retry_time, 4342 (void *)&cmd_set_burst_tx_retry_retry, 4343 (void *)&cmd_set_burst_tx_retry_retry_num, 4344 NULL, 4345 }, 4346 }; 4347 4348 /* *** SET PROMISC MODE *** */ 4349 struct cmd_set_promisc_mode_result { 4350 cmdline_fixed_string_t set; 4351 cmdline_fixed_string_t promisc; 4352 cmdline_fixed_string_t port_all; /* valid if "allports" argument == 1 */ 4353 uint8_t port_num; /* valid if "allports" argument == 0 */ 4354 cmdline_fixed_string_t mode; 4355 }; 4356 4357 static void cmd_set_promisc_mode_parsed(void *parsed_result, 4358 __attribute__((unused)) struct cmdline *cl, 4359 void *allports) 4360 { 4361 struct cmd_set_promisc_mode_result *res = parsed_result; 4362 int enable; 4363 portid_t i; 4364 4365 if (!strcmp(res->mode, "on")) 4366 enable = 1; 4367 else 4368 enable = 0; 4369 4370 /* all ports */ 4371 if (allports) { 4372 FOREACH_PORT(i, ports) { 4373 if (enable) 4374 rte_eth_promiscuous_enable(i); 4375 else 4376 rte_eth_promiscuous_disable(i); 4377 } 4378 } 4379 else { 4380 if (enable) 4381 rte_eth_promiscuous_enable(res->port_num); 4382 else 4383 rte_eth_promiscuous_disable(res->port_num); 4384 } 4385 } 4386 4387 cmdline_parse_token_string_t cmd_setpromisc_set = 4388 TOKEN_STRING_INITIALIZER(struct cmd_set_promisc_mode_result, set, "set"); 4389 cmdline_parse_token_string_t cmd_setpromisc_promisc = 4390 TOKEN_STRING_INITIALIZER(struct cmd_set_promisc_mode_result, promisc, 4391 "promisc"); 4392 cmdline_parse_token_string_t cmd_setpromisc_portall = 4393 TOKEN_STRING_INITIALIZER(struct cmd_set_promisc_mode_result, port_all, 4394 "all"); 4395 cmdline_parse_token_num_t cmd_setpromisc_portnum = 4396 TOKEN_NUM_INITIALIZER(struct cmd_set_promisc_mode_result, port_num, 4397 UINT8); 4398 cmdline_parse_token_string_t cmd_setpromisc_mode = 4399 TOKEN_STRING_INITIALIZER(struct cmd_set_promisc_mode_result, mode, 4400 "on#off"); 4401 4402 cmdline_parse_inst_t cmd_set_promisc_mode_all = { 4403 .f = cmd_set_promisc_mode_parsed, 4404 .data = (void *)1, 4405 .help_str = "set promisc all on|off: set promisc mode for all ports", 4406 .tokens = { 4407 (void *)&cmd_setpromisc_set, 4408 (void *)&cmd_setpromisc_promisc, 4409 (void *)&cmd_setpromisc_portall, 4410 (void *)&cmd_setpromisc_mode, 4411 NULL, 4412 }, 4413 }; 4414 4415 cmdline_parse_inst_t cmd_set_promisc_mode_one = { 4416 .f = cmd_set_promisc_mode_parsed, 4417 .data = (void *)0, 4418 .help_str = "set promisc X on|off: set promisc mode on port X", 4419 .tokens = { 4420 (void *)&cmd_setpromisc_set, 4421 (void *)&cmd_setpromisc_promisc, 4422 (void *)&cmd_setpromisc_portnum, 4423 (void *)&cmd_setpromisc_mode, 4424 NULL, 4425 }, 4426 }; 4427 4428 /* *** SET ALLMULTI MODE *** */ 4429 struct cmd_set_allmulti_mode_result { 4430 cmdline_fixed_string_t set; 4431 cmdline_fixed_string_t allmulti; 4432 cmdline_fixed_string_t port_all; /* valid if "allports" argument == 1 */ 4433 uint8_t port_num; /* valid if "allports" argument == 0 */ 4434 cmdline_fixed_string_t mode; 4435 }; 4436 4437 static void cmd_set_allmulti_mode_parsed(void *parsed_result, 4438 __attribute__((unused)) struct cmdline *cl, 4439 void *allports) 4440 { 4441 struct cmd_set_allmulti_mode_result *res = parsed_result; 4442 int enable; 4443 portid_t i; 4444 4445 if (!strcmp(res->mode, "on")) 4446 enable = 1; 4447 else 4448 enable = 0; 4449 4450 /* all ports */ 4451 if (allports) { 4452 FOREACH_PORT(i, ports) { 4453 if (enable) 4454 rte_eth_allmulticast_enable(i); 4455 else 4456 rte_eth_allmulticast_disable(i); 4457 } 4458 } 4459 else { 4460 if (enable) 4461 rte_eth_allmulticast_enable(res->port_num); 4462 else 4463 rte_eth_allmulticast_disable(res->port_num); 4464 } 4465 } 4466 4467 cmdline_parse_token_string_t cmd_setallmulti_set = 4468 TOKEN_STRING_INITIALIZER(struct cmd_set_allmulti_mode_result, set, "set"); 4469 cmdline_parse_token_string_t cmd_setallmulti_allmulti = 4470 TOKEN_STRING_INITIALIZER(struct cmd_set_allmulti_mode_result, allmulti, 4471 "allmulti"); 4472 cmdline_parse_token_string_t cmd_setallmulti_portall = 4473 TOKEN_STRING_INITIALIZER(struct cmd_set_allmulti_mode_result, port_all, 4474 "all"); 4475 cmdline_parse_token_num_t cmd_setallmulti_portnum = 4476 TOKEN_NUM_INITIALIZER(struct cmd_set_allmulti_mode_result, port_num, 4477 UINT8); 4478 cmdline_parse_token_string_t cmd_setallmulti_mode = 4479 TOKEN_STRING_INITIALIZER(struct cmd_set_allmulti_mode_result, mode, 4480 "on#off"); 4481 4482 cmdline_parse_inst_t cmd_set_allmulti_mode_all = { 4483 .f = cmd_set_allmulti_mode_parsed, 4484 .data = (void *)1, 4485 .help_str = "set allmulti all on|off: set allmulti mode for all ports", 4486 .tokens = { 4487 (void *)&cmd_setallmulti_set, 4488 (void *)&cmd_setallmulti_allmulti, 4489 (void *)&cmd_setallmulti_portall, 4490 (void *)&cmd_setallmulti_mode, 4491 NULL, 4492 }, 4493 }; 4494 4495 cmdline_parse_inst_t cmd_set_allmulti_mode_one = { 4496 .f = cmd_set_allmulti_mode_parsed, 4497 .data = (void *)0, 4498 .help_str = "set allmulti X on|off: set allmulti mode on port X", 4499 .tokens = { 4500 (void *)&cmd_setallmulti_set, 4501 (void *)&cmd_setallmulti_allmulti, 4502 (void *)&cmd_setallmulti_portnum, 4503 (void *)&cmd_setallmulti_mode, 4504 NULL, 4505 }, 4506 }; 4507 4508 /* *** SETUP ETHERNET LINK FLOW CONTROL *** */ 4509 struct cmd_link_flow_ctrl_set_result { 4510 cmdline_fixed_string_t set; 4511 cmdline_fixed_string_t flow_ctrl; 4512 cmdline_fixed_string_t rx; 4513 cmdline_fixed_string_t rx_lfc_mode; 4514 cmdline_fixed_string_t tx; 4515 cmdline_fixed_string_t tx_lfc_mode; 4516 cmdline_fixed_string_t mac_ctrl_frame_fwd; 4517 cmdline_fixed_string_t mac_ctrl_frame_fwd_mode; 4518 cmdline_fixed_string_t autoneg_str; 4519 cmdline_fixed_string_t autoneg; 4520 cmdline_fixed_string_t hw_str; 4521 uint32_t high_water; 4522 cmdline_fixed_string_t lw_str; 4523 uint32_t low_water; 4524 cmdline_fixed_string_t pt_str; 4525 uint16_t pause_time; 4526 cmdline_fixed_string_t xon_str; 4527 uint16_t send_xon; 4528 uint8_t port_id; 4529 }; 4530 4531 cmdline_parse_token_string_t cmd_lfc_set_set = 4532 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4533 set, "set"); 4534 cmdline_parse_token_string_t cmd_lfc_set_flow_ctrl = 4535 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4536 flow_ctrl, "flow_ctrl"); 4537 cmdline_parse_token_string_t cmd_lfc_set_rx = 4538 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4539 rx, "rx"); 4540 cmdline_parse_token_string_t cmd_lfc_set_rx_mode = 4541 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4542 rx_lfc_mode, "on#off"); 4543 cmdline_parse_token_string_t cmd_lfc_set_tx = 4544 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4545 tx, "tx"); 4546 cmdline_parse_token_string_t cmd_lfc_set_tx_mode = 4547 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4548 tx_lfc_mode, "on#off"); 4549 cmdline_parse_token_string_t cmd_lfc_set_high_water_str = 4550 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4551 hw_str, "high_water"); 4552 cmdline_parse_token_num_t cmd_lfc_set_high_water = 4553 TOKEN_NUM_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4554 high_water, UINT32); 4555 cmdline_parse_token_string_t cmd_lfc_set_low_water_str = 4556 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4557 lw_str, "low_water"); 4558 cmdline_parse_token_num_t cmd_lfc_set_low_water = 4559 TOKEN_NUM_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4560 low_water, UINT32); 4561 cmdline_parse_token_string_t cmd_lfc_set_pause_time_str = 4562 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4563 pt_str, "pause_time"); 4564 cmdline_parse_token_num_t cmd_lfc_set_pause_time = 4565 TOKEN_NUM_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4566 pause_time, UINT16); 4567 cmdline_parse_token_string_t cmd_lfc_set_send_xon_str = 4568 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4569 xon_str, "send_xon"); 4570 cmdline_parse_token_num_t cmd_lfc_set_send_xon = 4571 TOKEN_NUM_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4572 send_xon, UINT16); 4573 cmdline_parse_token_string_t cmd_lfc_set_mac_ctrl_frame_fwd_mode = 4574 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4575 mac_ctrl_frame_fwd, "mac_ctrl_frame_fwd"); 4576 cmdline_parse_token_string_t cmd_lfc_set_mac_ctrl_frame_fwd = 4577 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4578 mac_ctrl_frame_fwd_mode, "on#off"); 4579 cmdline_parse_token_string_t cmd_lfc_set_autoneg_str = 4580 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4581 autoneg_str, "autoneg"); 4582 cmdline_parse_token_string_t cmd_lfc_set_autoneg = 4583 TOKEN_STRING_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4584 autoneg, "on#off"); 4585 cmdline_parse_token_num_t cmd_lfc_set_portid = 4586 TOKEN_NUM_INITIALIZER(struct cmd_link_flow_ctrl_set_result, 4587 port_id, UINT8); 4588 4589 /* forward declaration */ 4590 static void 4591 cmd_link_flow_ctrl_set_parsed(void *parsed_result, struct cmdline *cl, 4592 void *data); 4593 4594 cmdline_parse_inst_t cmd_link_flow_control_set = { 4595 .f = cmd_link_flow_ctrl_set_parsed, 4596 .data = NULL, 4597 .help_str = "Configure the Ethernet flow control: set flow_ctrl rx on|off \ 4598 tx on|off high_water low_water pause_time send_xon mac_ctrl_frame_fwd on|off \ 4599 autoneg on|off port_id", 4600 .tokens = { 4601 (void *)&cmd_lfc_set_set, 4602 (void *)&cmd_lfc_set_flow_ctrl, 4603 (void *)&cmd_lfc_set_rx, 4604 (void *)&cmd_lfc_set_rx_mode, 4605 (void *)&cmd_lfc_set_tx, 4606 (void *)&cmd_lfc_set_tx_mode, 4607 (void *)&cmd_lfc_set_high_water, 4608 (void *)&cmd_lfc_set_low_water, 4609 (void *)&cmd_lfc_set_pause_time, 4610 (void *)&cmd_lfc_set_send_xon, 4611 (void *)&cmd_lfc_set_mac_ctrl_frame_fwd_mode, 4612 (void *)&cmd_lfc_set_mac_ctrl_frame_fwd, 4613 (void *)&cmd_lfc_set_autoneg_str, 4614 (void *)&cmd_lfc_set_autoneg, 4615 (void *)&cmd_lfc_set_portid, 4616 NULL, 4617 }, 4618 }; 4619 4620 cmdline_parse_inst_t cmd_link_flow_control_set_rx = { 4621 .f = cmd_link_flow_ctrl_set_parsed, 4622 .data = (void *)&cmd_link_flow_control_set_rx, 4623 .help_str = "Change rx flow control parameter: set flow_ctrl " 4624 "rx on|off port_id", 4625 .tokens = { 4626 (void *)&cmd_lfc_set_set, 4627 (void *)&cmd_lfc_set_flow_ctrl, 4628 (void *)&cmd_lfc_set_rx, 4629 (void *)&cmd_lfc_set_rx_mode, 4630 (void *)&cmd_lfc_set_portid, 4631 NULL, 4632 }, 4633 }; 4634 4635 cmdline_parse_inst_t cmd_link_flow_control_set_tx = { 4636 .f = cmd_link_flow_ctrl_set_parsed, 4637 .data = (void *)&cmd_link_flow_control_set_tx, 4638 .help_str = "Change tx flow control parameter: set flow_ctrl " 4639 "tx on|off port_id", 4640 .tokens = { 4641 (void *)&cmd_lfc_set_set, 4642 (void *)&cmd_lfc_set_flow_ctrl, 4643 (void *)&cmd_lfc_set_tx, 4644 (void *)&cmd_lfc_set_tx_mode, 4645 (void *)&cmd_lfc_set_portid, 4646 NULL, 4647 }, 4648 }; 4649 4650 cmdline_parse_inst_t cmd_link_flow_control_set_hw = { 4651 .f = cmd_link_flow_ctrl_set_parsed, 4652 .data = (void *)&cmd_link_flow_control_set_hw, 4653 .help_str = "Change high water flow control parameter: set flow_ctrl " 4654 "high_water value port_id", 4655 .tokens = { 4656 (void *)&cmd_lfc_set_set, 4657 (void *)&cmd_lfc_set_flow_ctrl, 4658 (void *)&cmd_lfc_set_high_water_str, 4659 (void *)&cmd_lfc_set_high_water, 4660 (void *)&cmd_lfc_set_portid, 4661 NULL, 4662 }, 4663 }; 4664 4665 cmdline_parse_inst_t cmd_link_flow_control_set_lw = { 4666 .f = cmd_link_flow_ctrl_set_parsed, 4667 .data = (void *)&cmd_link_flow_control_set_lw, 4668 .help_str = "Change low water flow control parameter: set flow_ctrl " 4669 "low_water value port_id", 4670 .tokens = { 4671 (void *)&cmd_lfc_set_set, 4672 (void *)&cmd_lfc_set_flow_ctrl, 4673 (void *)&cmd_lfc_set_low_water_str, 4674 (void *)&cmd_lfc_set_low_water, 4675 (void *)&cmd_lfc_set_portid, 4676 NULL, 4677 }, 4678 }; 4679 4680 cmdline_parse_inst_t cmd_link_flow_control_set_pt = { 4681 .f = cmd_link_flow_ctrl_set_parsed, 4682 .data = (void *)&cmd_link_flow_control_set_pt, 4683 .help_str = "Change pause time flow control parameter: set flow_ctrl " 4684 "pause_time value port_id", 4685 .tokens = { 4686 (void *)&cmd_lfc_set_set, 4687 (void *)&cmd_lfc_set_flow_ctrl, 4688 (void *)&cmd_lfc_set_pause_time_str, 4689 (void *)&cmd_lfc_set_pause_time, 4690 (void *)&cmd_lfc_set_portid, 4691 NULL, 4692 }, 4693 }; 4694 4695 cmdline_parse_inst_t cmd_link_flow_control_set_xon = { 4696 .f = cmd_link_flow_ctrl_set_parsed, 4697 .data = (void *)&cmd_link_flow_control_set_xon, 4698 .help_str = "Change send_xon flow control parameter: set flow_ctrl " 4699 "send_xon value port_id", 4700 .tokens = { 4701 (void *)&cmd_lfc_set_set, 4702 (void *)&cmd_lfc_set_flow_ctrl, 4703 (void *)&cmd_lfc_set_send_xon_str, 4704 (void *)&cmd_lfc_set_send_xon, 4705 (void *)&cmd_lfc_set_portid, 4706 NULL, 4707 }, 4708 }; 4709 4710 cmdline_parse_inst_t cmd_link_flow_control_set_macfwd = { 4711 .f = cmd_link_flow_ctrl_set_parsed, 4712 .data = (void *)&cmd_link_flow_control_set_macfwd, 4713 .help_str = "Change mac ctrl fwd flow control parameter: set flow_ctrl " 4714 "mac_ctrl_frame_fwd on|off port_id", 4715 .tokens = { 4716 (void *)&cmd_lfc_set_set, 4717 (void *)&cmd_lfc_set_flow_ctrl, 4718 (void *)&cmd_lfc_set_mac_ctrl_frame_fwd_mode, 4719 (void *)&cmd_lfc_set_mac_ctrl_frame_fwd, 4720 (void *)&cmd_lfc_set_portid, 4721 NULL, 4722 }, 4723 }; 4724 4725 cmdline_parse_inst_t cmd_link_flow_control_set_autoneg = { 4726 .f = cmd_link_flow_ctrl_set_parsed, 4727 .data = (void *)&cmd_link_flow_control_set_autoneg, 4728 .help_str = "Change autoneg flow control parameter: set flow_ctrl " 4729 "autoneg on|off port_id", 4730 .tokens = { 4731 (void *)&cmd_lfc_set_set, 4732 (void *)&cmd_lfc_set_flow_ctrl, 4733 (void *)&cmd_lfc_set_autoneg_str, 4734 (void *)&cmd_lfc_set_autoneg, 4735 (void *)&cmd_lfc_set_portid, 4736 NULL, 4737 }, 4738 }; 4739 4740 static void 4741 cmd_link_flow_ctrl_set_parsed(void *parsed_result, 4742 __attribute__((unused)) struct cmdline *cl, 4743 void *data) 4744 { 4745 struct cmd_link_flow_ctrl_set_result *res = parsed_result; 4746 cmdline_parse_inst_t *cmd = data; 4747 struct rte_eth_fc_conf fc_conf; 4748 int rx_fc_en, tx_fc_en = 0; 4749 int ret; 4750 4751 /* 4752 * Rx on/off, flow control is enabled/disabled on RX side. This can indicate 4753 * the RTE_FC_TX_PAUSE, Transmit pause frame at the Rx side. 4754 * Tx on/off, flow control is enabled/disabled on TX side. This can indicate 4755 * the RTE_FC_RX_PAUSE, Respond to the pause frame at the Tx side. 4756 */ 4757 static enum rte_eth_fc_mode rx_tx_onoff_2_lfc_mode[2][2] = { 4758 {RTE_FC_NONE, RTE_FC_TX_PAUSE}, {RTE_FC_RX_PAUSE, RTE_FC_FULL} 4759 }; 4760 4761 /* Partial command line, retrieve current configuration */ 4762 if (cmd) { 4763 ret = rte_eth_dev_flow_ctrl_get(res->port_id, &fc_conf); 4764 if (ret != 0) { 4765 printf("cannot get current flow ctrl parameters, return" 4766 "code = %d\n", ret); 4767 return; 4768 } 4769 4770 if ((fc_conf.mode == RTE_FC_RX_PAUSE) || 4771 (fc_conf.mode == RTE_FC_FULL)) 4772 rx_fc_en = 1; 4773 if ((fc_conf.mode == RTE_FC_TX_PAUSE) || 4774 (fc_conf.mode == RTE_FC_FULL)) 4775 tx_fc_en = 1; 4776 } 4777 4778 if (!cmd || cmd == &cmd_link_flow_control_set_rx) 4779 rx_fc_en = (!strcmp(res->rx_lfc_mode, "on")) ? 1 : 0; 4780 4781 if (!cmd || cmd == &cmd_link_flow_control_set_tx) 4782 tx_fc_en = (!strcmp(res->tx_lfc_mode, "on")) ? 1 : 0; 4783 4784 fc_conf.mode = rx_tx_onoff_2_lfc_mode[rx_fc_en][tx_fc_en]; 4785 4786 if (!cmd || cmd == &cmd_link_flow_control_set_hw) 4787 fc_conf.high_water = res->high_water; 4788 4789 if (!cmd || cmd == &cmd_link_flow_control_set_lw) 4790 fc_conf.low_water = res->low_water; 4791 4792 if (!cmd || cmd == &cmd_link_flow_control_set_pt) 4793 fc_conf.pause_time = res->pause_time; 4794 4795 if (!cmd || cmd == &cmd_link_flow_control_set_xon) 4796 fc_conf.send_xon = res->send_xon; 4797 4798 if (!cmd || cmd == &cmd_link_flow_control_set_macfwd) { 4799 if (!strcmp(res->mac_ctrl_frame_fwd_mode, "on")) 4800 fc_conf.mac_ctrl_frame_fwd = 1; 4801 else 4802 fc_conf.mac_ctrl_frame_fwd = 0; 4803 } 4804 4805 if (!cmd || cmd == &cmd_link_flow_control_set_autoneg) 4806 fc_conf.autoneg = (!strcmp(res->autoneg, "on")) ? 1 : 0; 4807 4808 ret = rte_eth_dev_flow_ctrl_set(res->port_id, &fc_conf); 4809 if (ret != 0) 4810 printf("bad flow contrl parameter, return code = %d \n", ret); 4811 } 4812 4813 /* *** SETUP ETHERNET PIRORITY FLOW CONTROL *** */ 4814 struct cmd_priority_flow_ctrl_set_result { 4815 cmdline_fixed_string_t set; 4816 cmdline_fixed_string_t pfc_ctrl; 4817 cmdline_fixed_string_t rx; 4818 cmdline_fixed_string_t rx_pfc_mode; 4819 cmdline_fixed_string_t tx; 4820 cmdline_fixed_string_t tx_pfc_mode; 4821 uint32_t high_water; 4822 uint32_t low_water; 4823 uint16_t pause_time; 4824 uint8_t priority; 4825 uint8_t port_id; 4826 }; 4827 4828 static void 4829 cmd_priority_flow_ctrl_set_parsed(void *parsed_result, 4830 __attribute__((unused)) struct cmdline *cl, 4831 __attribute__((unused)) void *data) 4832 { 4833 struct cmd_priority_flow_ctrl_set_result *res = parsed_result; 4834 struct rte_eth_pfc_conf pfc_conf; 4835 int rx_fc_enable, tx_fc_enable; 4836 int ret; 4837 4838 /* 4839 * Rx on/off, flow control is enabled/disabled on RX side. This can indicate 4840 * the RTE_FC_TX_PAUSE, Transmit pause frame at the Rx side. 4841 * Tx on/off, flow control is enabled/disabled on TX side. This can indicate 4842 * the RTE_FC_RX_PAUSE, Respond to the pause frame at the Tx side. 4843 */ 4844 static enum rte_eth_fc_mode rx_tx_onoff_2_pfc_mode[2][2] = { 4845 {RTE_FC_NONE, RTE_FC_RX_PAUSE}, {RTE_FC_TX_PAUSE, RTE_FC_FULL} 4846 }; 4847 4848 rx_fc_enable = (!strncmp(res->rx_pfc_mode, "on",2)) ? 1 : 0; 4849 tx_fc_enable = (!strncmp(res->tx_pfc_mode, "on",2)) ? 1 : 0; 4850 pfc_conf.fc.mode = rx_tx_onoff_2_pfc_mode[rx_fc_enable][tx_fc_enable]; 4851 pfc_conf.fc.high_water = res->high_water; 4852 pfc_conf.fc.low_water = res->low_water; 4853 pfc_conf.fc.pause_time = res->pause_time; 4854 pfc_conf.priority = res->priority; 4855 4856 ret = rte_eth_dev_priority_flow_ctrl_set(res->port_id, &pfc_conf); 4857 if (ret != 0) 4858 printf("bad priority flow contrl parameter, return code = %d \n", ret); 4859 } 4860 4861 cmdline_parse_token_string_t cmd_pfc_set_set = 4862 TOKEN_STRING_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4863 set, "set"); 4864 cmdline_parse_token_string_t cmd_pfc_set_flow_ctrl = 4865 TOKEN_STRING_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4866 pfc_ctrl, "pfc_ctrl"); 4867 cmdline_parse_token_string_t cmd_pfc_set_rx = 4868 TOKEN_STRING_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4869 rx, "rx"); 4870 cmdline_parse_token_string_t cmd_pfc_set_rx_mode = 4871 TOKEN_STRING_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4872 rx_pfc_mode, "on#off"); 4873 cmdline_parse_token_string_t cmd_pfc_set_tx = 4874 TOKEN_STRING_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4875 tx, "tx"); 4876 cmdline_parse_token_string_t cmd_pfc_set_tx_mode = 4877 TOKEN_STRING_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4878 tx_pfc_mode, "on#off"); 4879 cmdline_parse_token_num_t cmd_pfc_set_high_water = 4880 TOKEN_NUM_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4881 high_water, UINT32); 4882 cmdline_parse_token_num_t cmd_pfc_set_low_water = 4883 TOKEN_NUM_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4884 low_water, UINT32); 4885 cmdline_parse_token_num_t cmd_pfc_set_pause_time = 4886 TOKEN_NUM_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4887 pause_time, UINT16); 4888 cmdline_parse_token_num_t cmd_pfc_set_priority = 4889 TOKEN_NUM_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4890 priority, UINT8); 4891 cmdline_parse_token_num_t cmd_pfc_set_portid = 4892 TOKEN_NUM_INITIALIZER(struct cmd_priority_flow_ctrl_set_result, 4893 port_id, UINT8); 4894 4895 cmdline_parse_inst_t cmd_priority_flow_control_set = { 4896 .f = cmd_priority_flow_ctrl_set_parsed, 4897 .data = NULL, 4898 .help_str = "Configure the Ethernet priority flow control: set pfc_ctrl rx on|off\n\ 4899 tx on|off high_water low_water pause_time priority port_id", 4900 .tokens = { 4901 (void *)&cmd_pfc_set_set, 4902 (void *)&cmd_pfc_set_flow_ctrl, 4903 (void *)&cmd_pfc_set_rx, 4904 (void *)&cmd_pfc_set_rx_mode, 4905 (void *)&cmd_pfc_set_tx, 4906 (void *)&cmd_pfc_set_tx_mode, 4907 (void *)&cmd_pfc_set_high_water, 4908 (void *)&cmd_pfc_set_low_water, 4909 (void *)&cmd_pfc_set_pause_time, 4910 (void *)&cmd_pfc_set_priority, 4911 (void *)&cmd_pfc_set_portid, 4912 NULL, 4913 }, 4914 }; 4915 4916 /* *** RESET CONFIGURATION *** */ 4917 struct cmd_reset_result { 4918 cmdline_fixed_string_t reset; 4919 cmdline_fixed_string_t def; 4920 }; 4921 4922 static void cmd_reset_parsed(__attribute__((unused)) void *parsed_result, 4923 struct cmdline *cl, 4924 __attribute__((unused)) void *data) 4925 { 4926 cmdline_printf(cl, "Reset to default forwarding configuration...\n"); 4927 set_def_fwd_config(); 4928 } 4929 4930 cmdline_parse_token_string_t cmd_reset_set = 4931 TOKEN_STRING_INITIALIZER(struct cmd_reset_result, reset, "set"); 4932 cmdline_parse_token_string_t cmd_reset_def = 4933 TOKEN_STRING_INITIALIZER(struct cmd_reset_result, def, 4934 "default"); 4935 4936 cmdline_parse_inst_t cmd_reset = { 4937 .f = cmd_reset_parsed, 4938 .data = NULL, 4939 .help_str = "set default: reset default forwarding configuration", 4940 .tokens = { 4941 (void *)&cmd_reset_set, 4942 (void *)&cmd_reset_def, 4943 NULL, 4944 }, 4945 }; 4946 4947 /* *** START FORWARDING *** */ 4948 struct cmd_start_result { 4949 cmdline_fixed_string_t start; 4950 }; 4951 4952 cmdline_parse_token_string_t cmd_start_start = 4953 TOKEN_STRING_INITIALIZER(struct cmd_start_result, start, "start"); 4954 4955 static void cmd_start_parsed(__attribute__((unused)) void *parsed_result, 4956 __attribute__((unused)) struct cmdline *cl, 4957 __attribute__((unused)) void *data) 4958 { 4959 start_packet_forwarding(0); 4960 } 4961 4962 cmdline_parse_inst_t cmd_start = { 4963 .f = cmd_start_parsed, 4964 .data = NULL, 4965 .help_str = "start packet forwarding", 4966 .tokens = { 4967 (void *)&cmd_start_start, 4968 NULL, 4969 }, 4970 }; 4971 4972 /* *** START FORWARDING WITH ONE TX BURST FIRST *** */ 4973 struct cmd_start_tx_first_result { 4974 cmdline_fixed_string_t start; 4975 cmdline_fixed_string_t tx_first; 4976 }; 4977 4978 static void 4979 cmd_start_tx_first_parsed(__attribute__((unused)) void *parsed_result, 4980 __attribute__((unused)) struct cmdline *cl, 4981 __attribute__((unused)) void *data) 4982 { 4983 start_packet_forwarding(1); 4984 } 4985 4986 cmdline_parse_token_string_t cmd_start_tx_first_start = 4987 TOKEN_STRING_INITIALIZER(struct cmd_start_tx_first_result, start, 4988 "start"); 4989 cmdline_parse_token_string_t cmd_start_tx_first_tx_first = 4990 TOKEN_STRING_INITIALIZER(struct cmd_start_tx_first_result, 4991 tx_first, "tx_first"); 4992 4993 cmdline_parse_inst_t cmd_start_tx_first = { 4994 .f = cmd_start_tx_first_parsed, 4995 .data = NULL, 4996 .help_str = "start packet forwarding, after sending 1 burst of packets", 4997 .tokens = { 4998 (void *)&cmd_start_tx_first_start, 4999 (void *)&cmd_start_tx_first_tx_first, 5000 NULL, 5001 }, 5002 }; 5003 5004 /* *** SET LINK UP *** */ 5005 struct cmd_set_link_up_result { 5006 cmdline_fixed_string_t set; 5007 cmdline_fixed_string_t link_up; 5008 cmdline_fixed_string_t port; 5009 uint8_t port_id; 5010 }; 5011 5012 cmdline_parse_token_string_t cmd_set_link_up_set = 5013 TOKEN_STRING_INITIALIZER(struct cmd_set_link_up_result, set, "set"); 5014 cmdline_parse_token_string_t cmd_set_link_up_link_up = 5015 TOKEN_STRING_INITIALIZER(struct cmd_set_link_up_result, link_up, 5016 "link-up"); 5017 cmdline_parse_token_string_t cmd_set_link_up_port = 5018 TOKEN_STRING_INITIALIZER(struct cmd_set_link_up_result, port, "port"); 5019 cmdline_parse_token_num_t cmd_set_link_up_port_id = 5020 TOKEN_NUM_INITIALIZER(struct cmd_set_link_up_result, port_id, UINT8); 5021 5022 static void cmd_set_link_up_parsed(__attribute__((unused)) void *parsed_result, 5023 __attribute__((unused)) struct cmdline *cl, 5024 __attribute__((unused)) void *data) 5025 { 5026 struct cmd_set_link_up_result *res = parsed_result; 5027 dev_set_link_up(res->port_id); 5028 } 5029 5030 cmdline_parse_inst_t cmd_set_link_up = { 5031 .f = cmd_set_link_up_parsed, 5032 .data = NULL, 5033 .help_str = "set link-up port (port id)", 5034 .tokens = { 5035 (void *)&cmd_set_link_up_set, 5036 (void *)&cmd_set_link_up_link_up, 5037 (void *)&cmd_set_link_up_port, 5038 (void *)&cmd_set_link_up_port_id, 5039 NULL, 5040 }, 5041 }; 5042 5043 /* *** SET LINK DOWN *** */ 5044 struct cmd_set_link_down_result { 5045 cmdline_fixed_string_t set; 5046 cmdline_fixed_string_t link_down; 5047 cmdline_fixed_string_t port; 5048 uint8_t port_id; 5049 }; 5050 5051 cmdline_parse_token_string_t cmd_set_link_down_set = 5052 TOKEN_STRING_INITIALIZER(struct cmd_set_link_down_result, set, "set"); 5053 cmdline_parse_token_string_t cmd_set_link_down_link_down = 5054 TOKEN_STRING_INITIALIZER(struct cmd_set_link_down_result, link_down, 5055 "link-down"); 5056 cmdline_parse_token_string_t cmd_set_link_down_port = 5057 TOKEN_STRING_INITIALIZER(struct cmd_set_link_down_result, port, "port"); 5058 cmdline_parse_token_num_t cmd_set_link_down_port_id = 5059 TOKEN_NUM_INITIALIZER(struct cmd_set_link_down_result, port_id, UINT8); 5060 5061 static void cmd_set_link_down_parsed( 5062 __attribute__((unused)) void *parsed_result, 5063 __attribute__((unused)) struct cmdline *cl, 5064 __attribute__((unused)) void *data) 5065 { 5066 struct cmd_set_link_down_result *res = parsed_result; 5067 dev_set_link_down(res->port_id); 5068 } 5069 5070 cmdline_parse_inst_t cmd_set_link_down = { 5071 .f = cmd_set_link_down_parsed, 5072 .data = NULL, 5073 .help_str = "set link-down port (port id)", 5074 .tokens = { 5075 (void *)&cmd_set_link_down_set, 5076 (void *)&cmd_set_link_down_link_down, 5077 (void *)&cmd_set_link_down_port, 5078 (void *)&cmd_set_link_down_port_id, 5079 NULL, 5080 }, 5081 }; 5082 5083 /* *** SHOW CFG *** */ 5084 struct cmd_showcfg_result { 5085 cmdline_fixed_string_t show; 5086 cmdline_fixed_string_t cfg; 5087 cmdline_fixed_string_t what; 5088 }; 5089 5090 static void cmd_showcfg_parsed(void *parsed_result, 5091 __attribute__((unused)) struct cmdline *cl, 5092 __attribute__((unused)) void *data) 5093 { 5094 struct cmd_showcfg_result *res = parsed_result; 5095 if (!strcmp(res->what, "rxtx")) 5096 rxtx_config_display(); 5097 else if (!strcmp(res->what, "cores")) 5098 fwd_lcores_config_display(); 5099 else if (!strcmp(res->what, "fwd")) 5100 fwd_config_display(); 5101 } 5102 5103 cmdline_parse_token_string_t cmd_showcfg_show = 5104 TOKEN_STRING_INITIALIZER(struct cmd_showcfg_result, show, "show"); 5105 cmdline_parse_token_string_t cmd_showcfg_port = 5106 TOKEN_STRING_INITIALIZER(struct cmd_showcfg_result, cfg, "config"); 5107 cmdline_parse_token_string_t cmd_showcfg_what = 5108 TOKEN_STRING_INITIALIZER(struct cmd_showcfg_result, what, 5109 "rxtx#cores#fwd"); 5110 5111 cmdline_parse_inst_t cmd_showcfg = { 5112 .f = cmd_showcfg_parsed, 5113 .data = NULL, 5114 .help_str = "show config rxtx|cores|fwd", 5115 .tokens = { 5116 (void *)&cmd_showcfg_show, 5117 (void *)&cmd_showcfg_port, 5118 (void *)&cmd_showcfg_what, 5119 NULL, 5120 }, 5121 }; 5122 5123 /* *** SHOW ALL PORT INFO *** */ 5124 struct cmd_showportall_result { 5125 cmdline_fixed_string_t show; 5126 cmdline_fixed_string_t port; 5127 cmdline_fixed_string_t what; 5128 cmdline_fixed_string_t all; 5129 }; 5130 5131 static void cmd_showportall_parsed(void *parsed_result, 5132 __attribute__((unused)) struct cmdline *cl, 5133 __attribute__((unused)) void *data) 5134 { 5135 portid_t i; 5136 5137 struct cmd_showportall_result *res = parsed_result; 5138 if (!strcmp(res->show, "clear")) { 5139 if (!strcmp(res->what, "stats")) 5140 FOREACH_PORT(i, ports) 5141 nic_stats_clear(i); 5142 else if (!strcmp(res->what, "xstats")) 5143 FOREACH_PORT(i, ports) 5144 nic_xstats_clear(i); 5145 } else if (!strcmp(res->what, "info")) 5146 FOREACH_PORT(i, ports) 5147 port_infos_display(i); 5148 else if (!strcmp(res->what, "stats")) 5149 FOREACH_PORT(i, ports) 5150 nic_stats_display(i); 5151 else if (!strcmp(res->what, "xstats")) 5152 FOREACH_PORT(i, ports) 5153 nic_xstats_display(i); 5154 else if (!strcmp(res->what, "fdir")) 5155 FOREACH_PORT(i, ports) 5156 fdir_get_infos(i); 5157 else if (!strcmp(res->what, "stat_qmap")) 5158 FOREACH_PORT(i, ports) 5159 nic_stats_mapping_display(i); 5160 } 5161 5162 cmdline_parse_token_string_t cmd_showportall_show = 5163 TOKEN_STRING_INITIALIZER(struct cmd_showportall_result, show, 5164 "show#clear"); 5165 cmdline_parse_token_string_t cmd_showportall_port = 5166 TOKEN_STRING_INITIALIZER(struct cmd_showportall_result, port, "port"); 5167 cmdline_parse_token_string_t cmd_showportall_what = 5168 TOKEN_STRING_INITIALIZER(struct cmd_showportall_result, what, 5169 "info#stats#xstats#fdir#stat_qmap"); 5170 cmdline_parse_token_string_t cmd_showportall_all = 5171 TOKEN_STRING_INITIALIZER(struct cmd_showportall_result, all, "all"); 5172 cmdline_parse_inst_t cmd_showportall = { 5173 .f = cmd_showportall_parsed, 5174 .data = NULL, 5175 .help_str = "show|clear port info|stats|xstats|fdir|stat_qmap all", 5176 .tokens = { 5177 (void *)&cmd_showportall_show, 5178 (void *)&cmd_showportall_port, 5179 (void *)&cmd_showportall_what, 5180 (void *)&cmd_showportall_all, 5181 NULL, 5182 }, 5183 }; 5184 5185 /* *** SHOW PORT INFO *** */ 5186 struct cmd_showport_result { 5187 cmdline_fixed_string_t show; 5188 cmdline_fixed_string_t port; 5189 cmdline_fixed_string_t what; 5190 uint8_t portnum; 5191 }; 5192 5193 static void cmd_showport_parsed(void *parsed_result, 5194 __attribute__((unused)) struct cmdline *cl, 5195 __attribute__((unused)) void *data) 5196 { 5197 struct cmd_showport_result *res = parsed_result; 5198 if (!strcmp(res->show, "clear")) { 5199 if (!strcmp(res->what, "stats")) 5200 nic_stats_clear(res->portnum); 5201 else if (!strcmp(res->what, "xstats")) 5202 nic_xstats_clear(res->portnum); 5203 } else if (!strcmp(res->what, "info")) 5204 port_infos_display(res->portnum); 5205 else if (!strcmp(res->what, "stats")) 5206 nic_stats_display(res->portnum); 5207 else if (!strcmp(res->what, "xstats")) 5208 nic_xstats_display(res->portnum); 5209 else if (!strcmp(res->what, "fdir")) 5210 fdir_get_infos(res->portnum); 5211 else if (!strcmp(res->what, "stat_qmap")) 5212 nic_stats_mapping_display(res->portnum); 5213 } 5214 5215 cmdline_parse_token_string_t cmd_showport_show = 5216 TOKEN_STRING_INITIALIZER(struct cmd_showport_result, show, 5217 "show#clear"); 5218 cmdline_parse_token_string_t cmd_showport_port = 5219 TOKEN_STRING_INITIALIZER(struct cmd_showport_result, port, "port"); 5220 cmdline_parse_token_string_t cmd_showport_what = 5221 TOKEN_STRING_INITIALIZER(struct cmd_showport_result, what, 5222 "info#stats#xstats#fdir#stat_qmap"); 5223 cmdline_parse_token_num_t cmd_showport_portnum = 5224 TOKEN_NUM_INITIALIZER(struct cmd_showport_result, portnum, UINT8); 5225 5226 cmdline_parse_inst_t cmd_showport = { 5227 .f = cmd_showport_parsed, 5228 .data = NULL, 5229 .help_str = "show|clear port info|stats|xstats|fdir|stat_qmap X (X = port number)", 5230 .tokens = { 5231 (void *)&cmd_showport_show, 5232 (void *)&cmd_showport_port, 5233 (void *)&cmd_showport_what, 5234 (void *)&cmd_showport_portnum, 5235 NULL, 5236 }, 5237 }; 5238 5239 /* *** READ PORT REGISTER *** */ 5240 struct cmd_read_reg_result { 5241 cmdline_fixed_string_t read; 5242 cmdline_fixed_string_t reg; 5243 uint8_t port_id; 5244 uint32_t reg_off; 5245 }; 5246 5247 static void 5248 cmd_read_reg_parsed(void *parsed_result, 5249 __attribute__((unused)) struct cmdline *cl, 5250 __attribute__((unused)) void *data) 5251 { 5252 struct cmd_read_reg_result *res = parsed_result; 5253 port_reg_display(res->port_id, res->reg_off); 5254 } 5255 5256 cmdline_parse_token_string_t cmd_read_reg_read = 5257 TOKEN_STRING_INITIALIZER(struct cmd_read_reg_result, read, "read"); 5258 cmdline_parse_token_string_t cmd_read_reg_reg = 5259 TOKEN_STRING_INITIALIZER(struct cmd_read_reg_result, reg, "reg"); 5260 cmdline_parse_token_num_t cmd_read_reg_port_id = 5261 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_result, port_id, UINT8); 5262 cmdline_parse_token_num_t cmd_read_reg_reg_off = 5263 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_result, reg_off, UINT32); 5264 5265 cmdline_parse_inst_t cmd_read_reg = { 5266 .f = cmd_read_reg_parsed, 5267 .data = NULL, 5268 .help_str = "read reg port_id reg_off", 5269 .tokens = { 5270 (void *)&cmd_read_reg_read, 5271 (void *)&cmd_read_reg_reg, 5272 (void *)&cmd_read_reg_port_id, 5273 (void *)&cmd_read_reg_reg_off, 5274 NULL, 5275 }, 5276 }; 5277 5278 /* *** READ PORT REGISTER BIT FIELD *** */ 5279 struct cmd_read_reg_bit_field_result { 5280 cmdline_fixed_string_t read; 5281 cmdline_fixed_string_t regfield; 5282 uint8_t port_id; 5283 uint32_t reg_off; 5284 uint8_t bit1_pos; 5285 uint8_t bit2_pos; 5286 }; 5287 5288 static void 5289 cmd_read_reg_bit_field_parsed(void *parsed_result, 5290 __attribute__((unused)) struct cmdline *cl, 5291 __attribute__((unused)) void *data) 5292 { 5293 struct cmd_read_reg_bit_field_result *res = parsed_result; 5294 port_reg_bit_field_display(res->port_id, res->reg_off, 5295 res->bit1_pos, res->bit2_pos); 5296 } 5297 5298 cmdline_parse_token_string_t cmd_read_reg_bit_field_read = 5299 TOKEN_STRING_INITIALIZER(struct cmd_read_reg_bit_field_result, read, 5300 "read"); 5301 cmdline_parse_token_string_t cmd_read_reg_bit_field_regfield = 5302 TOKEN_STRING_INITIALIZER(struct cmd_read_reg_bit_field_result, 5303 regfield, "regfield"); 5304 cmdline_parse_token_num_t cmd_read_reg_bit_field_port_id = 5305 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_field_result, port_id, 5306 UINT8); 5307 cmdline_parse_token_num_t cmd_read_reg_bit_field_reg_off = 5308 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_field_result, reg_off, 5309 UINT32); 5310 cmdline_parse_token_num_t cmd_read_reg_bit_field_bit1_pos = 5311 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_field_result, bit1_pos, 5312 UINT8); 5313 cmdline_parse_token_num_t cmd_read_reg_bit_field_bit2_pos = 5314 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_field_result, bit2_pos, 5315 UINT8); 5316 5317 cmdline_parse_inst_t cmd_read_reg_bit_field = { 5318 .f = cmd_read_reg_bit_field_parsed, 5319 .data = NULL, 5320 .help_str = "read regfield port_id reg_off bit_x bit_y " 5321 "(read register bit field between bit_x and bit_y included)", 5322 .tokens = { 5323 (void *)&cmd_read_reg_bit_field_read, 5324 (void *)&cmd_read_reg_bit_field_regfield, 5325 (void *)&cmd_read_reg_bit_field_port_id, 5326 (void *)&cmd_read_reg_bit_field_reg_off, 5327 (void *)&cmd_read_reg_bit_field_bit1_pos, 5328 (void *)&cmd_read_reg_bit_field_bit2_pos, 5329 NULL, 5330 }, 5331 }; 5332 5333 /* *** READ PORT REGISTER BIT *** */ 5334 struct cmd_read_reg_bit_result { 5335 cmdline_fixed_string_t read; 5336 cmdline_fixed_string_t regbit; 5337 uint8_t port_id; 5338 uint32_t reg_off; 5339 uint8_t bit_pos; 5340 }; 5341 5342 static void 5343 cmd_read_reg_bit_parsed(void *parsed_result, 5344 __attribute__((unused)) struct cmdline *cl, 5345 __attribute__((unused)) void *data) 5346 { 5347 struct cmd_read_reg_bit_result *res = parsed_result; 5348 port_reg_bit_display(res->port_id, res->reg_off, res->bit_pos); 5349 } 5350 5351 cmdline_parse_token_string_t cmd_read_reg_bit_read = 5352 TOKEN_STRING_INITIALIZER(struct cmd_read_reg_bit_result, read, "read"); 5353 cmdline_parse_token_string_t cmd_read_reg_bit_regbit = 5354 TOKEN_STRING_INITIALIZER(struct cmd_read_reg_bit_result, 5355 regbit, "regbit"); 5356 cmdline_parse_token_num_t cmd_read_reg_bit_port_id = 5357 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_result, port_id, UINT8); 5358 cmdline_parse_token_num_t cmd_read_reg_bit_reg_off = 5359 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_result, reg_off, UINT32); 5360 cmdline_parse_token_num_t cmd_read_reg_bit_bit_pos = 5361 TOKEN_NUM_INITIALIZER(struct cmd_read_reg_bit_result, bit_pos, UINT8); 5362 5363 cmdline_parse_inst_t cmd_read_reg_bit = { 5364 .f = cmd_read_reg_bit_parsed, 5365 .data = NULL, 5366 .help_str = "read regbit port_id reg_off bit_x (0 <= bit_x <= 31)", 5367 .tokens = { 5368 (void *)&cmd_read_reg_bit_read, 5369 (void *)&cmd_read_reg_bit_regbit, 5370 (void *)&cmd_read_reg_bit_port_id, 5371 (void *)&cmd_read_reg_bit_reg_off, 5372 (void *)&cmd_read_reg_bit_bit_pos, 5373 NULL, 5374 }, 5375 }; 5376 5377 /* *** WRITE PORT REGISTER *** */ 5378 struct cmd_write_reg_result { 5379 cmdline_fixed_string_t write; 5380 cmdline_fixed_string_t reg; 5381 uint8_t port_id; 5382 uint32_t reg_off; 5383 uint32_t value; 5384 }; 5385 5386 static void 5387 cmd_write_reg_parsed(void *parsed_result, 5388 __attribute__((unused)) struct cmdline *cl, 5389 __attribute__((unused)) void *data) 5390 { 5391 struct cmd_write_reg_result *res = parsed_result; 5392 port_reg_set(res->port_id, res->reg_off, res->value); 5393 } 5394 5395 cmdline_parse_token_string_t cmd_write_reg_write = 5396 TOKEN_STRING_INITIALIZER(struct cmd_write_reg_result, write, "write"); 5397 cmdline_parse_token_string_t cmd_write_reg_reg = 5398 TOKEN_STRING_INITIALIZER(struct cmd_write_reg_result, reg, "reg"); 5399 cmdline_parse_token_num_t cmd_write_reg_port_id = 5400 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_result, port_id, UINT8); 5401 cmdline_parse_token_num_t cmd_write_reg_reg_off = 5402 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_result, reg_off, UINT32); 5403 cmdline_parse_token_num_t cmd_write_reg_value = 5404 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_result, value, UINT32); 5405 5406 cmdline_parse_inst_t cmd_write_reg = { 5407 .f = cmd_write_reg_parsed, 5408 .data = NULL, 5409 .help_str = "write reg port_id reg_off reg_value", 5410 .tokens = { 5411 (void *)&cmd_write_reg_write, 5412 (void *)&cmd_write_reg_reg, 5413 (void *)&cmd_write_reg_port_id, 5414 (void *)&cmd_write_reg_reg_off, 5415 (void *)&cmd_write_reg_value, 5416 NULL, 5417 }, 5418 }; 5419 5420 /* *** WRITE PORT REGISTER BIT FIELD *** */ 5421 struct cmd_write_reg_bit_field_result { 5422 cmdline_fixed_string_t write; 5423 cmdline_fixed_string_t regfield; 5424 uint8_t port_id; 5425 uint32_t reg_off; 5426 uint8_t bit1_pos; 5427 uint8_t bit2_pos; 5428 uint32_t value; 5429 }; 5430 5431 static void 5432 cmd_write_reg_bit_field_parsed(void *parsed_result, 5433 __attribute__((unused)) struct cmdline *cl, 5434 __attribute__((unused)) void *data) 5435 { 5436 struct cmd_write_reg_bit_field_result *res = parsed_result; 5437 port_reg_bit_field_set(res->port_id, res->reg_off, 5438 res->bit1_pos, res->bit2_pos, res->value); 5439 } 5440 5441 cmdline_parse_token_string_t cmd_write_reg_bit_field_write = 5442 TOKEN_STRING_INITIALIZER(struct cmd_write_reg_bit_field_result, write, 5443 "write"); 5444 cmdline_parse_token_string_t cmd_write_reg_bit_field_regfield = 5445 TOKEN_STRING_INITIALIZER(struct cmd_write_reg_bit_field_result, 5446 regfield, "regfield"); 5447 cmdline_parse_token_num_t cmd_write_reg_bit_field_port_id = 5448 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_field_result, port_id, 5449 UINT8); 5450 cmdline_parse_token_num_t cmd_write_reg_bit_field_reg_off = 5451 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_field_result, reg_off, 5452 UINT32); 5453 cmdline_parse_token_num_t cmd_write_reg_bit_field_bit1_pos = 5454 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_field_result, bit1_pos, 5455 UINT8); 5456 cmdline_parse_token_num_t cmd_write_reg_bit_field_bit2_pos = 5457 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_field_result, bit2_pos, 5458 UINT8); 5459 cmdline_parse_token_num_t cmd_write_reg_bit_field_value = 5460 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_field_result, value, 5461 UINT32); 5462 5463 cmdline_parse_inst_t cmd_write_reg_bit_field = { 5464 .f = cmd_write_reg_bit_field_parsed, 5465 .data = NULL, 5466 .help_str = "write regfield port_id reg_off bit_x bit_y reg_value" 5467 "(set register bit field between bit_x and bit_y included)", 5468 .tokens = { 5469 (void *)&cmd_write_reg_bit_field_write, 5470 (void *)&cmd_write_reg_bit_field_regfield, 5471 (void *)&cmd_write_reg_bit_field_port_id, 5472 (void *)&cmd_write_reg_bit_field_reg_off, 5473 (void *)&cmd_write_reg_bit_field_bit1_pos, 5474 (void *)&cmd_write_reg_bit_field_bit2_pos, 5475 (void *)&cmd_write_reg_bit_field_value, 5476 NULL, 5477 }, 5478 }; 5479 5480 /* *** WRITE PORT REGISTER BIT *** */ 5481 struct cmd_write_reg_bit_result { 5482 cmdline_fixed_string_t write; 5483 cmdline_fixed_string_t regbit; 5484 uint8_t port_id; 5485 uint32_t reg_off; 5486 uint8_t bit_pos; 5487 uint8_t value; 5488 }; 5489 5490 static void 5491 cmd_write_reg_bit_parsed(void *parsed_result, 5492 __attribute__((unused)) struct cmdline *cl, 5493 __attribute__((unused)) void *data) 5494 { 5495 struct cmd_write_reg_bit_result *res = parsed_result; 5496 port_reg_bit_set(res->port_id, res->reg_off, res->bit_pos, res->value); 5497 } 5498 5499 cmdline_parse_token_string_t cmd_write_reg_bit_write = 5500 TOKEN_STRING_INITIALIZER(struct cmd_write_reg_bit_result, write, 5501 "write"); 5502 cmdline_parse_token_string_t cmd_write_reg_bit_regbit = 5503 TOKEN_STRING_INITIALIZER(struct cmd_write_reg_bit_result, 5504 regbit, "regbit"); 5505 cmdline_parse_token_num_t cmd_write_reg_bit_port_id = 5506 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_result, port_id, UINT8); 5507 cmdline_parse_token_num_t cmd_write_reg_bit_reg_off = 5508 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_result, reg_off, UINT32); 5509 cmdline_parse_token_num_t cmd_write_reg_bit_bit_pos = 5510 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_result, bit_pos, UINT8); 5511 cmdline_parse_token_num_t cmd_write_reg_bit_value = 5512 TOKEN_NUM_INITIALIZER(struct cmd_write_reg_bit_result, value, UINT8); 5513 5514 cmdline_parse_inst_t cmd_write_reg_bit = { 5515 .f = cmd_write_reg_bit_parsed, 5516 .data = NULL, 5517 .help_str = "write regbit port_id reg_off bit_x 0/1 (0 <= bit_x <= 31)", 5518 .tokens = { 5519 (void *)&cmd_write_reg_bit_write, 5520 (void *)&cmd_write_reg_bit_regbit, 5521 (void *)&cmd_write_reg_bit_port_id, 5522 (void *)&cmd_write_reg_bit_reg_off, 5523 (void *)&cmd_write_reg_bit_bit_pos, 5524 (void *)&cmd_write_reg_bit_value, 5525 NULL, 5526 }, 5527 }; 5528 5529 /* *** READ A RING DESCRIPTOR OF A PORT RX/TX QUEUE *** */ 5530 struct cmd_read_rxd_txd_result { 5531 cmdline_fixed_string_t read; 5532 cmdline_fixed_string_t rxd_txd; 5533 uint8_t port_id; 5534 uint16_t queue_id; 5535 uint16_t desc_id; 5536 }; 5537 5538 static void 5539 cmd_read_rxd_txd_parsed(void *parsed_result, 5540 __attribute__((unused)) struct cmdline *cl, 5541 __attribute__((unused)) void *data) 5542 { 5543 struct cmd_read_rxd_txd_result *res = parsed_result; 5544 5545 if (!strcmp(res->rxd_txd, "rxd")) 5546 rx_ring_desc_display(res->port_id, res->queue_id, res->desc_id); 5547 else if (!strcmp(res->rxd_txd, "txd")) 5548 tx_ring_desc_display(res->port_id, res->queue_id, res->desc_id); 5549 } 5550 5551 cmdline_parse_token_string_t cmd_read_rxd_txd_read = 5552 TOKEN_STRING_INITIALIZER(struct cmd_read_rxd_txd_result, read, "read"); 5553 cmdline_parse_token_string_t cmd_read_rxd_txd_rxd_txd = 5554 TOKEN_STRING_INITIALIZER(struct cmd_read_rxd_txd_result, rxd_txd, 5555 "rxd#txd"); 5556 cmdline_parse_token_num_t cmd_read_rxd_txd_port_id = 5557 TOKEN_NUM_INITIALIZER(struct cmd_read_rxd_txd_result, port_id, UINT8); 5558 cmdline_parse_token_num_t cmd_read_rxd_txd_queue_id = 5559 TOKEN_NUM_INITIALIZER(struct cmd_read_rxd_txd_result, queue_id, UINT16); 5560 cmdline_parse_token_num_t cmd_read_rxd_txd_desc_id = 5561 TOKEN_NUM_INITIALIZER(struct cmd_read_rxd_txd_result, desc_id, UINT16); 5562 5563 cmdline_parse_inst_t cmd_read_rxd_txd = { 5564 .f = cmd_read_rxd_txd_parsed, 5565 .data = NULL, 5566 .help_str = "read rxd|txd port_id queue_id rxd_id", 5567 .tokens = { 5568 (void *)&cmd_read_rxd_txd_read, 5569 (void *)&cmd_read_rxd_txd_rxd_txd, 5570 (void *)&cmd_read_rxd_txd_port_id, 5571 (void *)&cmd_read_rxd_txd_queue_id, 5572 (void *)&cmd_read_rxd_txd_desc_id, 5573 NULL, 5574 }, 5575 }; 5576 5577 /* *** QUIT *** */ 5578 struct cmd_quit_result { 5579 cmdline_fixed_string_t quit; 5580 }; 5581 5582 static void cmd_quit_parsed(__attribute__((unused)) void *parsed_result, 5583 struct cmdline *cl, 5584 __attribute__((unused)) void *data) 5585 { 5586 pmd_test_exit(); 5587 cmdline_quit(cl); 5588 } 5589 5590 cmdline_parse_token_string_t cmd_quit_quit = 5591 TOKEN_STRING_INITIALIZER(struct cmd_quit_result, quit, "quit"); 5592 5593 cmdline_parse_inst_t cmd_quit = { 5594 .f = cmd_quit_parsed, 5595 .data = NULL, 5596 .help_str = "exit application", 5597 .tokens = { 5598 (void *)&cmd_quit_quit, 5599 NULL, 5600 }, 5601 }; 5602 5603 /* *** ADD/REMOVE MAC ADDRESS FROM A PORT *** */ 5604 struct cmd_mac_addr_result { 5605 cmdline_fixed_string_t mac_addr_cmd; 5606 cmdline_fixed_string_t what; 5607 uint8_t port_num; 5608 struct ether_addr address; 5609 }; 5610 5611 static void cmd_mac_addr_parsed(void *parsed_result, 5612 __attribute__((unused)) struct cmdline *cl, 5613 __attribute__((unused)) void *data) 5614 { 5615 struct cmd_mac_addr_result *res = parsed_result; 5616 int ret; 5617 5618 if (strcmp(res->what, "add") == 0) 5619 ret = rte_eth_dev_mac_addr_add(res->port_num, &res->address, 0); 5620 else 5621 ret = rte_eth_dev_mac_addr_remove(res->port_num, &res->address); 5622 5623 /* check the return value and print it if is < 0 */ 5624 if(ret < 0) 5625 printf("mac_addr_cmd error: (%s)\n", strerror(-ret)); 5626 5627 } 5628 5629 cmdline_parse_token_string_t cmd_mac_addr_cmd = 5630 TOKEN_STRING_INITIALIZER(struct cmd_mac_addr_result, mac_addr_cmd, 5631 "mac_addr"); 5632 cmdline_parse_token_string_t cmd_mac_addr_what = 5633 TOKEN_STRING_INITIALIZER(struct cmd_mac_addr_result, what, 5634 "add#remove"); 5635 cmdline_parse_token_num_t cmd_mac_addr_portnum = 5636 TOKEN_NUM_INITIALIZER(struct cmd_mac_addr_result, port_num, UINT8); 5637 cmdline_parse_token_etheraddr_t cmd_mac_addr_addr = 5638 TOKEN_ETHERADDR_INITIALIZER(struct cmd_mac_addr_result, address); 5639 5640 cmdline_parse_inst_t cmd_mac_addr = { 5641 .f = cmd_mac_addr_parsed, 5642 .data = (void *)0, 5643 .help_str = "mac_addr add|remove X <address>: " 5644 "add/remove MAC address on port X", 5645 .tokens = { 5646 (void *)&cmd_mac_addr_cmd, 5647 (void *)&cmd_mac_addr_what, 5648 (void *)&cmd_mac_addr_portnum, 5649 (void *)&cmd_mac_addr_addr, 5650 NULL, 5651 }, 5652 }; 5653 5654 5655 /* *** CONFIGURE QUEUE STATS COUNTER MAPPINGS *** */ 5656 struct cmd_set_qmap_result { 5657 cmdline_fixed_string_t set; 5658 cmdline_fixed_string_t qmap; 5659 cmdline_fixed_string_t what; 5660 uint8_t port_id; 5661 uint16_t queue_id; 5662 uint8_t map_value; 5663 }; 5664 5665 static void 5666 cmd_set_qmap_parsed(void *parsed_result, 5667 __attribute__((unused)) struct cmdline *cl, 5668 __attribute__((unused)) void *data) 5669 { 5670 struct cmd_set_qmap_result *res = parsed_result; 5671 int is_rx = (strcmp(res->what, "tx") == 0) ? 0 : 1; 5672 5673 set_qmap(res->port_id, (uint8_t)is_rx, res->queue_id, res->map_value); 5674 } 5675 5676 cmdline_parse_token_string_t cmd_setqmap_set = 5677 TOKEN_STRING_INITIALIZER(struct cmd_set_qmap_result, 5678 set, "set"); 5679 cmdline_parse_token_string_t cmd_setqmap_qmap = 5680 TOKEN_STRING_INITIALIZER(struct cmd_set_qmap_result, 5681 qmap, "stat_qmap"); 5682 cmdline_parse_token_string_t cmd_setqmap_what = 5683 TOKEN_STRING_INITIALIZER(struct cmd_set_qmap_result, 5684 what, "tx#rx"); 5685 cmdline_parse_token_num_t cmd_setqmap_portid = 5686 TOKEN_NUM_INITIALIZER(struct cmd_set_qmap_result, 5687 port_id, UINT8); 5688 cmdline_parse_token_num_t cmd_setqmap_queueid = 5689 TOKEN_NUM_INITIALIZER(struct cmd_set_qmap_result, 5690 queue_id, UINT16); 5691 cmdline_parse_token_num_t cmd_setqmap_mapvalue = 5692 TOKEN_NUM_INITIALIZER(struct cmd_set_qmap_result, 5693 map_value, UINT8); 5694 5695 cmdline_parse_inst_t cmd_set_qmap = { 5696 .f = cmd_set_qmap_parsed, 5697 .data = NULL, 5698 .help_str = "Set statistics mapping value on tx|rx queue_id of port_id", 5699 .tokens = { 5700 (void *)&cmd_setqmap_set, 5701 (void *)&cmd_setqmap_qmap, 5702 (void *)&cmd_setqmap_what, 5703 (void *)&cmd_setqmap_portid, 5704 (void *)&cmd_setqmap_queueid, 5705 (void *)&cmd_setqmap_mapvalue, 5706 NULL, 5707 }, 5708 }; 5709 5710 /* *** CONFIGURE UNICAST HASH TABLE *** */ 5711 struct cmd_set_uc_hash_table { 5712 cmdline_fixed_string_t set; 5713 cmdline_fixed_string_t port; 5714 uint8_t port_id; 5715 cmdline_fixed_string_t what; 5716 struct ether_addr address; 5717 cmdline_fixed_string_t mode; 5718 }; 5719 5720 static void 5721 cmd_set_uc_hash_parsed(void *parsed_result, 5722 __attribute__((unused)) struct cmdline *cl, 5723 __attribute__((unused)) void *data) 5724 { 5725 int ret=0; 5726 struct cmd_set_uc_hash_table *res = parsed_result; 5727 5728 int is_on = (strcmp(res->mode, "on") == 0) ? 1 : 0; 5729 5730 if (strcmp(res->what, "uta") == 0) 5731 ret = rte_eth_dev_uc_hash_table_set(res->port_id, 5732 &res->address,(uint8_t)is_on); 5733 if (ret < 0) 5734 printf("bad unicast hash table parameter, return code = %d \n", ret); 5735 5736 } 5737 5738 cmdline_parse_token_string_t cmd_set_uc_hash_set = 5739 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_hash_table, 5740 set, "set"); 5741 cmdline_parse_token_string_t cmd_set_uc_hash_port = 5742 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_hash_table, 5743 port, "port"); 5744 cmdline_parse_token_num_t cmd_set_uc_hash_portid = 5745 TOKEN_NUM_INITIALIZER(struct cmd_set_uc_hash_table, 5746 port_id, UINT8); 5747 cmdline_parse_token_string_t cmd_set_uc_hash_what = 5748 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_hash_table, 5749 what, "uta"); 5750 cmdline_parse_token_etheraddr_t cmd_set_uc_hash_mac = 5751 TOKEN_ETHERADDR_INITIALIZER(struct cmd_set_uc_hash_table, 5752 address); 5753 cmdline_parse_token_string_t cmd_set_uc_hash_mode = 5754 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_hash_table, 5755 mode, "on#off"); 5756 5757 cmdline_parse_inst_t cmd_set_uc_hash_filter = { 5758 .f = cmd_set_uc_hash_parsed, 5759 .data = NULL, 5760 .help_str = "set port X uta Y on|off(X = port number,Y = MAC address)", 5761 .tokens = { 5762 (void *)&cmd_set_uc_hash_set, 5763 (void *)&cmd_set_uc_hash_port, 5764 (void *)&cmd_set_uc_hash_portid, 5765 (void *)&cmd_set_uc_hash_what, 5766 (void *)&cmd_set_uc_hash_mac, 5767 (void *)&cmd_set_uc_hash_mode, 5768 NULL, 5769 }, 5770 }; 5771 5772 struct cmd_set_uc_all_hash_table { 5773 cmdline_fixed_string_t set; 5774 cmdline_fixed_string_t port; 5775 uint8_t port_id; 5776 cmdline_fixed_string_t what; 5777 cmdline_fixed_string_t value; 5778 cmdline_fixed_string_t mode; 5779 }; 5780 5781 static void 5782 cmd_set_uc_all_hash_parsed(void *parsed_result, 5783 __attribute__((unused)) struct cmdline *cl, 5784 __attribute__((unused)) void *data) 5785 { 5786 int ret=0; 5787 struct cmd_set_uc_all_hash_table *res = parsed_result; 5788 5789 int is_on = (strcmp(res->mode, "on") == 0) ? 1 : 0; 5790 5791 if ((strcmp(res->what, "uta") == 0) && 5792 (strcmp(res->value, "all") == 0)) 5793 ret = rte_eth_dev_uc_all_hash_table_set(res->port_id,(uint8_t) is_on); 5794 if (ret < 0) 5795 printf("bad unicast hash table parameter," 5796 "return code = %d \n", ret); 5797 } 5798 5799 cmdline_parse_token_string_t cmd_set_uc_all_hash_set = 5800 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_all_hash_table, 5801 set, "set"); 5802 cmdline_parse_token_string_t cmd_set_uc_all_hash_port = 5803 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_all_hash_table, 5804 port, "port"); 5805 cmdline_parse_token_num_t cmd_set_uc_all_hash_portid = 5806 TOKEN_NUM_INITIALIZER(struct cmd_set_uc_all_hash_table, 5807 port_id, UINT8); 5808 cmdline_parse_token_string_t cmd_set_uc_all_hash_what = 5809 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_all_hash_table, 5810 what, "uta"); 5811 cmdline_parse_token_string_t cmd_set_uc_all_hash_value = 5812 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_all_hash_table, 5813 value,"all"); 5814 cmdline_parse_token_string_t cmd_set_uc_all_hash_mode = 5815 TOKEN_STRING_INITIALIZER(struct cmd_set_uc_all_hash_table, 5816 mode, "on#off"); 5817 5818 cmdline_parse_inst_t cmd_set_uc_all_hash_filter = { 5819 .f = cmd_set_uc_all_hash_parsed, 5820 .data = NULL, 5821 .help_str = "set port X uta all on|off (X = port number)", 5822 .tokens = { 5823 (void *)&cmd_set_uc_all_hash_set, 5824 (void *)&cmd_set_uc_all_hash_port, 5825 (void *)&cmd_set_uc_all_hash_portid, 5826 (void *)&cmd_set_uc_all_hash_what, 5827 (void *)&cmd_set_uc_all_hash_value, 5828 (void *)&cmd_set_uc_all_hash_mode, 5829 NULL, 5830 }, 5831 }; 5832 5833 /* *** CONFIGURE MACVLAN FILTER FOR VF(s) *** */ 5834 struct cmd_set_vf_macvlan_filter { 5835 cmdline_fixed_string_t set; 5836 cmdline_fixed_string_t port; 5837 uint8_t port_id; 5838 cmdline_fixed_string_t vf; 5839 uint8_t vf_id; 5840 struct ether_addr address; 5841 cmdline_fixed_string_t filter_type; 5842 cmdline_fixed_string_t mode; 5843 }; 5844 5845 static void 5846 cmd_set_vf_macvlan_parsed(void *parsed_result, 5847 __attribute__((unused)) struct cmdline *cl, 5848 __attribute__((unused)) void *data) 5849 { 5850 int is_on, ret = 0; 5851 struct cmd_set_vf_macvlan_filter *res = parsed_result; 5852 struct rte_eth_mac_filter filter; 5853 5854 memset(&filter, 0, sizeof(struct rte_eth_mac_filter)); 5855 5856 (void)rte_memcpy(&filter.mac_addr, &res->address, ETHER_ADDR_LEN); 5857 5858 /* set VF MAC filter */ 5859 filter.is_vf = 1; 5860 5861 /* set VF ID */ 5862 filter.dst_id = res->vf_id; 5863 5864 if (!strcmp(res->filter_type, "exact-mac")) 5865 filter.filter_type = RTE_MAC_PERFECT_MATCH; 5866 else if (!strcmp(res->filter_type, "exact-mac-vlan")) 5867 filter.filter_type = RTE_MACVLAN_PERFECT_MATCH; 5868 else if (!strcmp(res->filter_type, "hashmac")) 5869 filter.filter_type = RTE_MAC_HASH_MATCH; 5870 else if (!strcmp(res->filter_type, "hashmac-vlan")) 5871 filter.filter_type = RTE_MACVLAN_HASH_MATCH; 5872 5873 is_on = (strcmp(res->mode, "on") == 0) ? 1 : 0; 5874 5875 if (is_on) 5876 ret = rte_eth_dev_filter_ctrl(res->port_id, 5877 RTE_ETH_FILTER_MACVLAN, 5878 RTE_ETH_FILTER_ADD, 5879 &filter); 5880 else 5881 ret = rte_eth_dev_filter_ctrl(res->port_id, 5882 RTE_ETH_FILTER_MACVLAN, 5883 RTE_ETH_FILTER_DELETE, 5884 &filter); 5885 5886 if (ret < 0) 5887 printf("bad set MAC hash parameter, return code = %d\n", ret); 5888 5889 } 5890 5891 cmdline_parse_token_string_t cmd_set_vf_macvlan_set = 5892 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5893 set, "set"); 5894 cmdline_parse_token_string_t cmd_set_vf_macvlan_port = 5895 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5896 port, "port"); 5897 cmdline_parse_token_num_t cmd_set_vf_macvlan_portid = 5898 TOKEN_NUM_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5899 port_id, UINT8); 5900 cmdline_parse_token_string_t cmd_set_vf_macvlan_vf = 5901 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5902 vf, "vf"); 5903 cmdline_parse_token_num_t cmd_set_vf_macvlan_vf_id = 5904 TOKEN_NUM_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5905 vf_id, UINT8); 5906 cmdline_parse_token_etheraddr_t cmd_set_vf_macvlan_mac = 5907 TOKEN_ETHERADDR_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5908 address); 5909 cmdline_parse_token_string_t cmd_set_vf_macvlan_filter_type = 5910 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5911 filter_type, "exact-mac#exact-mac-vlan" 5912 "#hashmac#hashmac-vlan"); 5913 cmdline_parse_token_string_t cmd_set_vf_macvlan_mode = 5914 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_macvlan_filter, 5915 mode, "on#off"); 5916 5917 cmdline_parse_inst_t cmd_set_vf_macvlan_filter = { 5918 .f = cmd_set_vf_macvlan_parsed, 5919 .data = NULL, 5920 .help_str = "set port (portid) vf (vfid) (mac-addr) " 5921 "(exact-mac|exact-mac-vlan|hashmac|hashmac-vlan) " 5922 "on|off\n" 5923 "exact match rule:exact match of MAC or MAC and VLAN; " 5924 "hash match rule: hash match of MAC and exact match " 5925 "of VLAN", 5926 .tokens = { 5927 (void *)&cmd_set_vf_macvlan_set, 5928 (void *)&cmd_set_vf_macvlan_port, 5929 (void *)&cmd_set_vf_macvlan_portid, 5930 (void *)&cmd_set_vf_macvlan_vf, 5931 (void *)&cmd_set_vf_macvlan_vf_id, 5932 (void *)&cmd_set_vf_macvlan_mac, 5933 (void *)&cmd_set_vf_macvlan_filter_type, 5934 (void *)&cmd_set_vf_macvlan_mode, 5935 NULL, 5936 }, 5937 }; 5938 5939 /* *** CONFIGURE VF TRAFFIC CONTROL *** */ 5940 struct cmd_set_vf_traffic { 5941 cmdline_fixed_string_t set; 5942 cmdline_fixed_string_t port; 5943 uint8_t port_id; 5944 cmdline_fixed_string_t vf; 5945 uint8_t vf_id; 5946 cmdline_fixed_string_t what; 5947 cmdline_fixed_string_t mode; 5948 }; 5949 5950 static void 5951 cmd_set_vf_traffic_parsed(void *parsed_result, 5952 __attribute__((unused)) struct cmdline *cl, 5953 __attribute__((unused)) void *data) 5954 { 5955 struct cmd_set_vf_traffic *res = parsed_result; 5956 int is_rx = (strcmp(res->what, "rx") == 0) ? 1 : 0; 5957 int is_on = (strcmp(res->mode, "on") == 0) ? 1 : 0; 5958 5959 set_vf_traffic(res->port_id, (uint8_t)is_rx, res->vf_id,(uint8_t) is_on); 5960 } 5961 5962 cmdline_parse_token_string_t cmd_setvf_traffic_set = 5963 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_traffic, 5964 set, "set"); 5965 cmdline_parse_token_string_t cmd_setvf_traffic_port = 5966 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_traffic, 5967 port, "port"); 5968 cmdline_parse_token_num_t cmd_setvf_traffic_portid = 5969 TOKEN_NUM_INITIALIZER(struct cmd_set_vf_traffic, 5970 port_id, UINT8); 5971 cmdline_parse_token_string_t cmd_setvf_traffic_vf = 5972 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_traffic, 5973 vf, "vf"); 5974 cmdline_parse_token_num_t cmd_setvf_traffic_vfid = 5975 TOKEN_NUM_INITIALIZER(struct cmd_set_vf_traffic, 5976 vf_id, UINT8); 5977 cmdline_parse_token_string_t cmd_setvf_traffic_what = 5978 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_traffic, 5979 what, "tx#rx"); 5980 cmdline_parse_token_string_t cmd_setvf_traffic_mode = 5981 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_traffic, 5982 mode, "on#off"); 5983 5984 cmdline_parse_inst_t cmd_set_vf_traffic = { 5985 .f = cmd_set_vf_traffic_parsed, 5986 .data = NULL, 5987 .help_str = "set port X vf Y rx|tx on|off" 5988 "(X = port number,Y = vf id)", 5989 .tokens = { 5990 (void *)&cmd_setvf_traffic_set, 5991 (void *)&cmd_setvf_traffic_port, 5992 (void *)&cmd_setvf_traffic_portid, 5993 (void *)&cmd_setvf_traffic_vf, 5994 (void *)&cmd_setvf_traffic_vfid, 5995 (void *)&cmd_setvf_traffic_what, 5996 (void *)&cmd_setvf_traffic_mode, 5997 NULL, 5998 }, 5999 }; 6000 6001 /* *** CONFIGURE VF RECEIVE MODE *** */ 6002 struct cmd_set_vf_rxmode { 6003 cmdline_fixed_string_t set; 6004 cmdline_fixed_string_t port; 6005 uint8_t port_id; 6006 cmdline_fixed_string_t vf; 6007 uint8_t vf_id; 6008 cmdline_fixed_string_t what; 6009 cmdline_fixed_string_t mode; 6010 cmdline_fixed_string_t on; 6011 }; 6012 6013 static void 6014 cmd_set_vf_rxmode_parsed(void *parsed_result, 6015 __attribute__((unused)) struct cmdline *cl, 6016 __attribute__((unused)) void *data) 6017 { 6018 int ret; 6019 uint16_t rx_mode = 0; 6020 struct cmd_set_vf_rxmode *res = parsed_result; 6021 6022 int is_on = (strcmp(res->on, "on") == 0) ? 1 : 0; 6023 if (!strcmp(res->what,"rxmode")) { 6024 if (!strcmp(res->mode, "AUPE")) 6025 rx_mode |= ETH_VMDQ_ACCEPT_UNTAG; 6026 else if (!strcmp(res->mode, "ROPE")) 6027 rx_mode |= ETH_VMDQ_ACCEPT_HASH_UC; 6028 else if (!strcmp(res->mode, "BAM")) 6029 rx_mode |= ETH_VMDQ_ACCEPT_BROADCAST; 6030 else if (!strncmp(res->mode, "MPE",3)) 6031 rx_mode |= ETH_VMDQ_ACCEPT_MULTICAST; 6032 } 6033 6034 ret = rte_eth_dev_set_vf_rxmode(res->port_id,res->vf_id,rx_mode,(uint8_t)is_on); 6035 if (ret < 0) 6036 printf("bad VF receive mode parameter, return code = %d \n", 6037 ret); 6038 } 6039 6040 cmdline_parse_token_string_t cmd_set_vf_rxmode_set = 6041 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_rxmode, 6042 set, "set"); 6043 cmdline_parse_token_string_t cmd_set_vf_rxmode_port = 6044 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_rxmode, 6045 port, "port"); 6046 cmdline_parse_token_num_t cmd_set_vf_rxmode_portid = 6047 TOKEN_NUM_INITIALIZER(struct cmd_set_vf_rxmode, 6048 port_id, UINT8); 6049 cmdline_parse_token_string_t cmd_set_vf_rxmode_vf = 6050 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_rxmode, 6051 vf, "vf"); 6052 cmdline_parse_token_num_t cmd_set_vf_rxmode_vfid = 6053 TOKEN_NUM_INITIALIZER(struct cmd_set_vf_rxmode, 6054 vf_id, UINT8); 6055 cmdline_parse_token_string_t cmd_set_vf_rxmode_what = 6056 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_rxmode, 6057 what, "rxmode"); 6058 cmdline_parse_token_string_t cmd_set_vf_rxmode_mode = 6059 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_rxmode, 6060 mode, "AUPE#ROPE#BAM#MPE"); 6061 cmdline_parse_token_string_t cmd_set_vf_rxmode_on = 6062 TOKEN_STRING_INITIALIZER(struct cmd_set_vf_rxmode, 6063 on, "on#off"); 6064 6065 cmdline_parse_inst_t cmd_set_vf_rxmode = { 6066 .f = cmd_set_vf_rxmode_parsed, 6067 .data = NULL, 6068 .help_str = "set port X vf Y rxmode AUPE|ROPE|BAM|MPE on|off", 6069 .tokens = { 6070 (void *)&cmd_set_vf_rxmode_set, 6071 (void *)&cmd_set_vf_rxmode_port, 6072 (void *)&cmd_set_vf_rxmode_portid, 6073 (void *)&cmd_set_vf_rxmode_vf, 6074 (void *)&cmd_set_vf_rxmode_vfid, 6075 (void *)&cmd_set_vf_rxmode_what, 6076 (void *)&cmd_set_vf_rxmode_mode, 6077 (void *)&cmd_set_vf_rxmode_on, 6078 NULL, 6079 }, 6080 }; 6081 6082 /* *** ADD MAC ADDRESS FILTER FOR A VF OF A PORT *** */ 6083 struct cmd_vf_mac_addr_result { 6084 cmdline_fixed_string_t mac_addr_cmd; 6085 cmdline_fixed_string_t what; 6086 cmdline_fixed_string_t port; 6087 uint8_t port_num; 6088 cmdline_fixed_string_t vf; 6089 uint8_t vf_num; 6090 struct ether_addr address; 6091 }; 6092 6093 static void cmd_vf_mac_addr_parsed(void *parsed_result, 6094 __attribute__((unused)) struct cmdline *cl, 6095 __attribute__((unused)) void *data) 6096 { 6097 struct cmd_vf_mac_addr_result *res = parsed_result; 6098 int ret = 0; 6099 6100 if (strcmp(res->what, "add") == 0) 6101 ret = rte_eth_dev_mac_addr_add(res->port_num, 6102 &res->address, res->vf_num); 6103 if(ret < 0) 6104 printf("vf_mac_addr_cmd error: (%s)\n", strerror(-ret)); 6105 6106 } 6107 6108 cmdline_parse_token_string_t cmd_vf_mac_addr_cmd = 6109 TOKEN_STRING_INITIALIZER(struct cmd_vf_mac_addr_result, 6110 mac_addr_cmd,"mac_addr"); 6111 cmdline_parse_token_string_t cmd_vf_mac_addr_what = 6112 TOKEN_STRING_INITIALIZER(struct cmd_vf_mac_addr_result, 6113 what,"add"); 6114 cmdline_parse_token_string_t cmd_vf_mac_addr_port = 6115 TOKEN_STRING_INITIALIZER(struct cmd_vf_mac_addr_result, 6116 port,"port"); 6117 cmdline_parse_token_num_t cmd_vf_mac_addr_portnum = 6118 TOKEN_NUM_INITIALIZER(struct cmd_vf_mac_addr_result, 6119 port_num, UINT8); 6120 cmdline_parse_token_string_t cmd_vf_mac_addr_vf = 6121 TOKEN_STRING_INITIALIZER(struct cmd_vf_mac_addr_result, 6122 vf,"vf"); 6123 cmdline_parse_token_num_t cmd_vf_mac_addr_vfnum = 6124 TOKEN_NUM_INITIALIZER(struct cmd_vf_mac_addr_result, 6125 vf_num, UINT8); 6126 cmdline_parse_token_etheraddr_t cmd_vf_mac_addr_addr = 6127 TOKEN_ETHERADDR_INITIALIZER(struct cmd_vf_mac_addr_result, 6128 address); 6129 6130 cmdline_parse_inst_t cmd_vf_mac_addr_filter = { 6131 .f = cmd_vf_mac_addr_parsed, 6132 .data = (void *)0, 6133 .help_str = "mac_addr add port X vf Y ethaddr:(X = port number," 6134 "Y = VF number)add MAC address filtering for a VF on port X", 6135 .tokens = { 6136 (void *)&cmd_vf_mac_addr_cmd, 6137 (void *)&cmd_vf_mac_addr_what, 6138 (void *)&cmd_vf_mac_addr_port, 6139 (void *)&cmd_vf_mac_addr_portnum, 6140 (void *)&cmd_vf_mac_addr_vf, 6141 (void *)&cmd_vf_mac_addr_vfnum, 6142 (void *)&cmd_vf_mac_addr_addr, 6143 NULL, 6144 }, 6145 }; 6146 6147 /* *** ADD/REMOVE A VLAN IDENTIFIER TO/FROM A PORT VLAN RX FILTER *** */ 6148 struct cmd_vf_rx_vlan_filter { 6149 cmdline_fixed_string_t rx_vlan; 6150 cmdline_fixed_string_t what; 6151 uint16_t vlan_id; 6152 cmdline_fixed_string_t port; 6153 uint8_t port_id; 6154 cmdline_fixed_string_t vf; 6155 uint64_t vf_mask; 6156 }; 6157 6158 static void 6159 cmd_vf_rx_vlan_filter_parsed(void *parsed_result, 6160 __attribute__((unused)) struct cmdline *cl, 6161 __attribute__((unused)) void *data) 6162 { 6163 struct cmd_vf_rx_vlan_filter *res = parsed_result; 6164 6165 if (!strcmp(res->what, "add")) 6166 set_vf_rx_vlan(res->port_id, res->vlan_id,res->vf_mask, 1); 6167 else 6168 set_vf_rx_vlan(res->port_id, res->vlan_id,res->vf_mask, 0); 6169 } 6170 6171 cmdline_parse_token_string_t cmd_vf_rx_vlan_filter_rx_vlan = 6172 TOKEN_STRING_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6173 rx_vlan, "rx_vlan"); 6174 cmdline_parse_token_string_t cmd_vf_rx_vlan_filter_what = 6175 TOKEN_STRING_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6176 what, "add#rm"); 6177 cmdline_parse_token_num_t cmd_vf_rx_vlan_filter_vlanid = 6178 TOKEN_NUM_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6179 vlan_id, UINT16); 6180 cmdline_parse_token_string_t cmd_vf_rx_vlan_filter_port = 6181 TOKEN_STRING_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6182 port, "port"); 6183 cmdline_parse_token_num_t cmd_vf_rx_vlan_filter_portid = 6184 TOKEN_NUM_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6185 port_id, UINT8); 6186 cmdline_parse_token_string_t cmd_vf_rx_vlan_filter_vf = 6187 TOKEN_STRING_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6188 vf, "vf"); 6189 cmdline_parse_token_num_t cmd_vf_rx_vlan_filter_vf_mask = 6190 TOKEN_NUM_INITIALIZER(struct cmd_vf_rx_vlan_filter, 6191 vf_mask, UINT64); 6192 6193 cmdline_parse_inst_t cmd_vf_rxvlan_filter = { 6194 .f = cmd_vf_rx_vlan_filter_parsed, 6195 .data = NULL, 6196 .help_str = "rx_vlan add|rm X port Y vf Z (X = VLAN ID," 6197 "Y = port number,Z = hexadecimal VF mask)", 6198 .tokens = { 6199 (void *)&cmd_vf_rx_vlan_filter_rx_vlan, 6200 (void *)&cmd_vf_rx_vlan_filter_what, 6201 (void *)&cmd_vf_rx_vlan_filter_vlanid, 6202 (void *)&cmd_vf_rx_vlan_filter_port, 6203 (void *)&cmd_vf_rx_vlan_filter_portid, 6204 (void *)&cmd_vf_rx_vlan_filter_vf, 6205 (void *)&cmd_vf_rx_vlan_filter_vf_mask, 6206 NULL, 6207 }, 6208 }; 6209 6210 /* *** SET RATE LIMIT FOR A QUEUE OF A PORT *** */ 6211 struct cmd_queue_rate_limit_result { 6212 cmdline_fixed_string_t set; 6213 cmdline_fixed_string_t port; 6214 uint8_t port_num; 6215 cmdline_fixed_string_t queue; 6216 uint8_t queue_num; 6217 cmdline_fixed_string_t rate; 6218 uint16_t rate_num; 6219 }; 6220 6221 static void cmd_queue_rate_limit_parsed(void *parsed_result, 6222 __attribute__((unused)) struct cmdline *cl, 6223 __attribute__((unused)) void *data) 6224 { 6225 struct cmd_queue_rate_limit_result *res = parsed_result; 6226 int ret = 0; 6227 6228 if ((strcmp(res->set, "set") == 0) && (strcmp(res->port, "port") == 0) 6229 && (strcmp(res->queue, "queue") == 0) 6230 && (strcmp(res->rate, "rate") == 0)) 6231 ret = set_queue_rate_limit(res->port_num, res->queue_num, 6232 res->rate_num); 6233 if (ret < 0) 6234 printf("queue_rate_limit_cmd error: (%s)\n", strerror(-ret)); 6235 6236 } 6237 6238 cmdline_parse_token_string_t cmd_queue_rate_limit_set = 6239 TOKEN_STRING_INITIALIZER(struct cmd_queue_rate_limit_result, 6240 set, "set"); 6241 cmdline_parse_token_string_t cmd_queue_rate_limit_port = 6242 TOKEN_STRING_INITIALIZER(struct cmd_queue_rate_limit_result, 6243 port, "port"); 6244 cmdline_parse_token_num_t cmd_queue_rate_limit_portnum = 6245 TOKEN_NUM_INITIALIZER(struct cmd_queue_rate_limit_result, 6246 port_num, UINT8); 6247 cmdline_parse_token_string_t cmd_queue_rate_limit_queue = 6248 TOKEN_STRING_INITIALIZER(struct cmd_queue_rate_limit_result, 6249 queue, "queue"); 6250 cmdline_parse_token_num_t cmd_queue_rate_limit_queuenum = 6251 TOKEN_NUM_INITIALIZER(struct cmd_queue_rate_limit_result, 6252 queue_num, UINT8); 6253 cmdline_parse_token_string_t cmd_queue_rate_limit_rate = 6254 TOKEN_STRING_INITIALIZER(struct cmd_queue_rate_limit_result, 6255 rate, "rate"); 6256 cmdline_parse_token_num_t cmd_queue_rate_limit_ratenum = 6257 TOKEN_NUM_INITIALIZER(struct cmd_queue_rate_limit_result, 6258 rate_num, UINT16); 6259 6260 cmdline_parse_inst_t cmd_queue_rate_limit = { 6261 .f = cmd_queue_rate_limit_parsed, 6262 .data = (void *)0, 6263 .help_str = "set port X queue Y rate Z:(X = port number," 6264 "Y = queue number,Z = rate number)set rate limit for a queue on port X", 6265 .tokens = { 6266 (void *)&cmd_queue_rate_limit_set, 6267 (void *)&cmd_queue_rate_limit_port, 6268 (void *)&cmd_queue_rate_limit_portnum, 6269 (void *)&cmd_queue_rate_limit_queue, 6270 (void *)&cmd_queue_rate_limit_queuenum, 6271 (void *)&cmd_queue_rate_limit_rate, 6272 (void *)&cmd_queue_rate_limit_ratenum, 6273 NULL, 6274 }, 6275 }; 6276 6277 /* *** SET RATE LIMIT FOR A VF OF A PORT *** */ 6278 struct cmd_vf_rate_limit_result { 6279 cmdline_fixed_string_t set; 6280 cmdline_fixed_string_t port; 6281 uint8_t port_num; 6282 cmdline_fixed_string_t vf; 6283 uint8_t vf_num; 6284 cmdline_fixed_string_t rate; 6285 uint16_t rate_num; 6286 cmdline_fixed_string_t q_msk; 6287 uint64_t q_msk_val; 6288 }; 6289 6290 static void cmd_vf_rate_limit_parsed(void *parsed_result, 6291 __attribute__((unused)) struct cmdline *cl, 6292 __attribute__((unused)) void *data) 6293 { 6294 struct cmd_vf_rate_limit_result *res = parsed_result; 6295 int ret = 0; 6296 6297 if ((strcmp(res->set, "set") == 0) && (strcmp(res->port, "port") == 0) 6298 && (strcmp(res->vf, "vf") == 0) 6299 && (strcmp(res->rate, "rate") == 0) 6300 && (strcmp(res->q_msk, "queue_mask") == 0)) 6301 ret = set_vf_rate_limit(res->port_num, res->vf_num, 6302 res->rate_num, res->q_msk_val); 6303 if (ret < 0) 6304 printf("vf_rate_limit_cmd error: (%s)\n", strerror(-ret)); 6305 6306 } 6307 6308 cmdline_parse_token_string_t cmd_vf_rate_limit_set = 6309 TOKEN_STRING_INITIALIZER(struct cmd_vf_rate_limit_result, 6310 set, "set"); 6311 cmdline_parse_token_string_t cmd_vf_rate_limit_port = 6312 TOKEN_STRING_INITIALIZER(struct cmd_vf_rate_limit_result, 6313 port, "port"); 6314 cmdline_parse_token_num_t cmd_vf_rate_limit_portnum = 6315 TOKEN_NUM_INITIALIZER(struct cmd_vf_rate_limit_result, 6316 port_num, UINT8); 6317 cmdline_parse_token_string_t cmd_vf_rate_limit_vf = 6318 TOKEN_STRING_INITIALIZER(struct cmd_vf_rate_limit_result, 6319 vf, "vf"); 6320 cmdline_parse_token_num_t cmd_vf_rate_limit_vfnum = 6321 TOKEN_NUM_INITIALIZER(struct cmd_vf_rate_limit_result, 6322 vf_num, UINT8); 6323 cmdline_parse_token_string_t cmd_vf_rate_limit_rate = 6324 TOKEN_STRING_INITIALIZER(struct cmd_vf_rate_limit_result, 6325 rate, "rate"); 6326 cmdline_parse_token_num_t cmd_vf_rate_limit_ratenum = 6327 TOKEN_NUM_INITIALIZER(struct cmd_vf_rate_limit_result, 6328 rate_num, UINT16); 6329 cmdline_parse_token_string_t cmd_vf_rate_limit_q_msk = 6330 TOKEN_STRING_INITIALIZER(struct cmd_vf_rate_limit_result, 6331 q_msk, "queue_mask"); 6332 cmdline_parse_token_num_t cmd_vf_rate_limit_q_msk_val = 6333 TOKEN_NUM_INITIALIZER(struct cmd_vf_rate_limit_result, 6334 q_msk_val, UINT64); 6335 6336 cmdline_parse_inst_t cmd_vf_rate_limit = { 6337 .f = cmd_vf_rate_limit_parsed, 6338 .data = (void *)0, 6339 .help_str = "set port X vf Y rate Z queue_mask V:(X = port number," 6340 "Y = VF number,Z = rate number, V = queue mask value)set rate limit " 6341 "for queues of VF on port X", 6342 .tokens = { 6343 (void *)&cmd_vf_rate_limit_set, 6344 (void *)&cmd_vf_rate_limit_port, 6345 (void *)&cmd_vf_rate_limit_portnum, 6346 (void *)&cmd_vf_rate_limit_vf, 6347 (void *)&cmd_vf_rate_limit_vfnum, 6348 (void *)&cmd_vf_rate_limit_rate, 6349 (void *)&cmd_vf_rate_limit_ratenum, 6350 (void *)&cmd_vf_rate_limit_q_msk, 6351 (void *)&cmd_vf_rate_limit_q_msk_val, 6352 NULL, 6353 }, 6354 }; 6355 6356 /* *** ADD TUNNEL FILTER OF A PORT *** */ 6357 struct cmd_tunnel_filter_result { 6358 cmdline_fixed_string_t cmd; 6359 cmdline_fixed_string_t what; 6360 uint8_t port_id; 6361 struct ether_addr outer_mac; 6362 struct ether_addr inner_mac; 6363 cmdline_ipaddr_t ip_value; 6364 uint16_t inner_vlan; 6365 cmdline_fixed_string_t tunnel_type; 6366 cmdline_fixed_string_t filter_type; 6367 uint32_t tenant_id; 6368 uint16_t queue_num; 6369 }; 6370 6371 static void 6372 cmd_tunnel_filter_parsed(void *parsed_result, 6373 __attribute__((unused)) struct cmdline *cl, 6374 __attribute__((unused)) void *data) 6375 { 6376 struct cmd_tunnel_filter_result *res = parsed_result; 6377 struct rte_eth_tunnel_filter_conf tunnel_filter_conf; 6378 int ret = 0; 6379 6380 tunnel_filter_conf.outer_mac = &res->outer_mac; 6381 tunnel_filter_conf.inner_mac = &res->inner_mac; 6382 tunnel_filter_conf.inner_vlan = res->inner_vlan; 6383 6384 if (res->ip_value.family == AF_INET) { 6385 tunnel_filter_conf.ip_addr.ipv4_addr = 6386 res->ip_value.addr.ipv4.s_addr; 6387 tunnel_filter_conf.ip_type = RTE_TUNNEL_IPTYPE_IPV4; 6388 } else { 6389 memcpy(&(tunnel_filter_conf.ip_addr.ipv6_addr), 6390 &(res->ip_value.addr.ipv6), 6391 sizeof(struct in6_addr)); 6392 tunnel_filter_conf.ip_type = RTE_TUNNEL_IPTYPE_IPV6; 6393 } 6394 6395 if (!strcmp(res->filter_type, "imac-ivlan")) 6396 tunnel_filter_conf.filter_type = RTE_TUNNEL_FILTER_IMAC_IVLAN; 6397 else if (!strcmp(res->filter_type, "imac-ivlan-tenid")) 6398 tunnel_filter_conf.filter_type = 6399 RTE_TUNNEL_FILTER_IMAC_IVLAN_TENID; 6400 else if (!strcmp(res->filter_type, "imac-tenid")) 6401 tunnel_filter_conf.filter_type = RTE_TUNNEL_FILTER_IMAC_TENID; 6402 else if (!strcmp(res->filter_type, "imac")) 6403 tunnel_filter_conf.filter_type = ETH_TUNNEL_FILTER_IMAC; 6404 else if (!strcmp(res->filter_type, "omac-imac-tenid")) 6405 tunnel_filter_conf.filter_type = 6406 RTE_TUNNEL_FILTER_OMAC_TENID_IMAC; 6407 else { 6408 printf("The filter type is not supported"); 6409 return; 6410 } 6411 6412 if (!strcmp(res->tunnel_type, "vxlan")) 6413 tunnel_filter_conf.tunnel_type = RTE_TUNNEL_TYPE_VXLAN; 6414 else if (!strcmp(res->tunnel_type, "nvgre")) 6415 tunnel_filter_conf.tunnel_type = RTE_TUNNEL_TYPE_NVGRE; 6416 else { 6417 printf("The tunnel type %s not supported.\n", res->tunnel_type); 6418 return; 6419 } 6420 6421 tunnel_filter_conf.tenant_id = res->tenant_id; 6422 tunnel_filter_conf.queue_id = res->queue_num; 6423 if (!strcmp(res->what, "add")) 6424 ret = rte_eth_dev_filter_ctrl(res->port_id, 6425 RTE_ETH_FILTER_TUNNEL, 6426 RTE_ETH_FILTER_ADD, 6427 &tunnel_filter_conf); 6428 else 6429 ret = rte_eth_dev_filter_ctrl(res->port_id, 6430 RTE_ETH_FILTER_TUNNEL, 6431 RTE_ETH_FILTER_DELETE, 6432 &tunnel_filter_conf); 6433 if (ret < 0) 6434 printf("cmd_tunnel_filter_parsed error: (%s)\n", 6435 strerror(-ret)); 6436 6437 } 6438 cmdline_parse_token_string_t cmd_tunnel_filter_cmd = 6439 TOKEN_STRING_INITIALIZER(struct cmd_tunnel_filter_result, 6440 cmd, "tunnel_filter"); 6441 cmdline_parse_token_string_t cmd_tunnel_filter_what = 6442 TOKEN_STRING_INITIALIZER(struct cmd_tunnel_filter_result, 6443 what, "add#rm"); 6444 cmdline_parse_token_num_t cmd_tunnel_filter_port_id = 6445 TOKEN_NUM_INITIALIZER(struct cmd_tunnel_filter_result, 6446 port_id, UINT8); 6447 cmdline_parse_token_etheraddr_t cmd_tunnel_filter_outer_mac = 6448 TOKEN_ETHERADDR_INITIALIZER(struct cmd_tunnel_filter_result, 6449 outer_mac); 6450 cmdline_parse_token_etheraddr_t cmd_tunnel_filter_inner_mac = 6451 TOKEN_ETHERADDR_INITIALIZER(struct cmd_tunnel_filter_result, 6452 inner_mac); 6453 cmdline_parse_token_num_t cmd_tunnel_filter_innner_vlan = 6454 TOKEN_NUM_INITIALIZER(struct cmd_tunnel_filter_result, 6455 inner_vlan, UINT16); 6456 cmdline_parse_token_ipaddr_t cmd_tunnel_filter_ip_value = 6457 TOKEN_IPADDR_INITIALIZER(struct cmd_tunnel_filter_result, 6458 ip_value); 6459 cmdline_parse_token_string_t cmd_tunnel_filter_tunnel_type = 6460 TOKEN_STRING_INITIALIZER(struct cmd_tunnel_filter_result, 6461 tunnel_type, "vxlan#nvgre"); 6462 6463 cmdline_parse_token_string_t cmd_tunnel_filter_filter_type = 6464 TOKEN_STRING_INITIALIZER(struct cmd_tunnel_filter_result, 6465 filter_type, "imac-ivlan#imac-ivlan-tenid#imac-tenid#" 6466 "imac#omac-imac-tenid"); 6467 cmdline_parse_token_num_t cmd_tunnel_filter_tenant_id = 6468 TOKEN_NUM_INITIALIZER(struct cmd_tunnel_filter_result, 6469 tenant_id, UINT32); 6470 cmdline_parse_token_num_t cmd_tunnel_filter_queue_num = 6471 TOKEN_NUM_INITIALIZER(struct cmd_tunnel_filter_result, 6472 queue_num, UINT16); 6473 6474 cmdline_parse_inst_t cmd_tunnel_filter = { 6475 .f = cmd_tunnel_filter_parsed, 6476 .data = (void *)0, 6477 .help_str = "add/rm tunnel filter of a port: " 6478 "tunnel_filter add port_id outer_mac inner_mac ip " 6479 "inner_vlan tunnel_type(vxlan|nvgre) filter_type " 6480 "(imac-ivlan|imac-ivlan-tenid|imac-tenid|" 6481 "imac|omac-imac-tenid) " 6482 "tenant_id queue_num", 6483 .tokens = { 6484 (void *)&cmd_tunnel_filter_cmd, 6485 (void *)&cmd_tunnel_filter_what, 6486 (void *)&cmd_tunnel_filter_port_id, 6487 (void *)&cmd_tunnel_filter_outer_mac, 6488 (void *)&cmd_tunnel_filter_inner_mac, 6489 (void *)&cmd_tunnel_filter_ip_value, 6490 (void *)&cmd_tunnel_filter_innner_vlan, 6491 (void *)&cmd_tunnel_filter_tunnel_type, 6492 (void *)&cmd_tunnel_filter_filter_type, 6493 (void *)&cmd_tunnel_filter_tenant_id, 6494 (void *)&cmd_tunnel_filter_queue_num, 6495 NULL, 6496 }, 6497 }; 6498 6499 /* *** CONFIGURE TUNNEL UDP PORT *** */ 6500 struct cmd_tunnel_udp_config { 6501 cmdline_fixed_string_t cmd; 6502 cmdline_fixed_string_t what; 6503 uint16_t udp_port; 6504 uint8_t port_id; 6505 }; 6506 6507 static void 6508 cmd_tunnel_udp_config_parsed(void *parsed_result, 6509 __attribute__((unused)) struct cmdline *cl, 6510 __attribute__((unused)) void *data) 6511 { 6512 struct cmd_tunnel_udp_config *res = parsed_result; 6513 struct rte_eth_udp_tunnel tunnel_udp; 6514 int ret; 6515 6516 tunnel_udp.udp_port = res->udp_port; 6517 6518 if (!strcmp(res->cmd, "rx_vxlan_port")) 6519 tunnel_udp.prot_type = RTE_TUNNEL_TYPE_VXLAN; 6520 6521 if (!strcmp(res->what, "add")) 6522 ret = rte_eth_dev_udp_tunnel_add(res->port_id, &tunnel_udp); 6523 else 6524 ret = rte_eth_dev_udp_tunnel_delete(res->port_id, &tunnel_udp); 6525 6526 if (ret < 0) 6527 printf("udp tunneling add error: (%s)\n", strerror(-ret)); 6528 } 6529 6530 cmdline_parse_token_string_t cmd_tunnel_udp_config_cmd = 6531 TOKEN_STRING_INITIALIZER(struct cmd_tunnel_udp_config, 6532 cmd, "rx_vxlan_port"); 6533 cmdline_parse_token_string_t cmd_tunnel_udp_config_what = 6534 TOKEN_STRING_INITIALIZER(struct cmd_tunnel_udp_config, 6535 what, "add#rm"); 6536 cmdline_parse_token_num_t cmd_tunnel_udp_config_udp_port = 6537 TOKEN_NUM_INITIALIZER(struct cmd_tunnel_udp_config, 6538 udp_port, UINT16); 6539 cmdline_parse_token_num_t cmd_tunnel_udp_config_port_id = 6540 TOKEN_NUM_INITIALIZER(struct cmd_tunnel_udp_config, 6541 port_id, UINT8); 6542 6543 cmdline_parse_inst_t cmd_tunnel_udp_config = { 6544 .f = cmd_tunnel_udp_config_parsed, 6545 .data = (void *)0, 6546 .help_str = "add/rm an tunneling UDP port filter: " 6547 "rx_vxlan_port add udp_port port_id", 6548 .tokens = { 6549 (void *)&cmd_tunnel_udp_config_cmd, 6550 (void *)&cmd_tunnel_udp_config_what, 6551 (void *)&cmd_tunnel_udp_config_udp_port, 6552 (void *)&cmd_tunnel_udp_config_port_id, 6553 NULL, 6554 }, 6555 }; 6556 6557 /* *** CONFIGURE VM MIRROR VLAN/POOL RULE *** */ 6558 struct cmd_set_mirror_mask_result { 6559 cmdline_fixed_string_t set; 6560 cmdline_fixed_string_t port; 6561 uint8_t port_id; 6562 cmdline_fixed_string_t mirror; 6563 uint8_t rule_id; 6564 cmdline_fixed_string_t what; 6565 cmdline_fixed_string_t value; 6566 cmdline_fixed_string_t dstpool; 6567 uint8_t dstpool_id; 6568 cmdline_fixed_string_t on; 6569 }; 6570 6571 cmdline_parse_token_string_t cmd_mirror_mask_set = 6572 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6573 set, "set"); 6574 cmdline_parse_token_string_t cmd_mirror_mask_port = 6575 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6576 port, "port"); 6577 cmdline_parse_token_num_t cmd_mirror_mask_portid = 6578 TOKEN_NUM_INITIALIZER(struct cmd_set_mirror_mask_result, 6579 port_id, UINT8); 6580 cmdline_parse_token_string_t cmd_mirror_mask_mirror = 6581 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6582 mirror, "mirror-rule"); 6583 cmdline_parse_token_num_t cmd_mirror_mask_ruleid = 6584 TOKEN_NUM_INITIALIZER(struct cmd_set_mirror_mask_result, 6585 rule_id, UINT8); 6586 cmdline_parse_token_string_t cmd_mirror_mask_what = 6587 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6588 what, "pool-mirror#vlan-mirror"); 6589 cmdline_parse_token_string_t cmd_mirror_mask_value = 6590 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6591 value, NULL); 6592 cmdline_parse_token_string_t cmd_mirror_mask_dstpool = 6593 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6594 dstpool, "dst-pool"); 6595 cmdline_parse_token_num_t cmd_mirror_mask_poolid = 6596 TOKEN_NUM_INITIALIZER(struct cmd_set_mirror_mask_result, 6597 dstpool_id, UINT8); 6598 cmdline_parse_token_string_t cmd_mirror_mask_on = 6599 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_mask_result, 6600 on, "on#off"); 6601 6602 static void 6603 cmd_set_mirror_mask_parsed(void *parsed_result, 6604 __attribute__((unused)) struct cmdline *cl, 6605 __attribute__((unused)) void *data) 6606 { 6607 int ret,nb_item,i; 6608 struct cmd_set_mirror_mask_result *res = parsed_result; 6609 struct rte_eth_vmdq_mirror_conf mr_conf; 6610 6611 memset(&mr_conf,0,sizeof(struct rte_eth_vmdq_mirror_conf)); 6612 6613 unsigned int vlan_list[ETH_VMDQ_MAX_VLAN_FILTERS]; 6614 6615 mr_conf.dst_pool = res->dstpool_id; 6616 6617 if (!strcmp(res->what, "pool-mirror")) { 6618 mr_conf.pool_mask = strtoull(res->value,NULL,16); 6619 mr_conf.rule_type_mask = ETH_VMDQ_POOL_MIRROR; 6620 } else if(!strcmp(res->what, "vlan-mirror")) { 6621 mr_conf.rule_type_mask = ETH_VMDQ_VLAN_MIRROR; 6622 nb_item = parse_item_list(res->value, "core", 6623 ETH_VMDQ_MAX_VLAN_FILTERS,vlan_list,1); 6624 if (nb_item <= 0) 6625 return; 6626 6627 for(i=0; i < nb_item; i++) { 6628 if (vlan_list[i] > ETHER_MAX_VLAN_ID) { 6629 printf("Invalid vlan_id: must be < 4096\n"); 6630 return; 6631 } 6632 6633 mr_conf.vlan.vlan_id[i] = (uint16_t)vlan_list[i]; 6634 mr_conf.vlan.vlan_mask |= 1ULL << i; 6635 } 6636 } 6637 6638 if(!strcmp(res->on, "on")) 6639 ret = rte_eth_mirror_rule_set(res->port_id,&mr_conf, 6640 res->rule_id, 1); 6641 else 6642 ret = rte_eth_mirror_rule_set(res->port_id,&mr_conf, 6643 res->rule_id, 0); 6644 if(ret < 0) 6645 printf("mirror rule add error: (%s)\n", strerror(-ret)); 6646 } 6647 6648 cmdline_parse_inst_t cmd_set_mirror_mask = { 6649 .f = cmd_set_mirror_mask_parsed, 6650 .data = NULL, 6651 .help_str = "set port X mirror-rule Y pool-mirror|vlan-mirror " 6652 "pool_mask|vlan_id[,vlan_id]* dst-pool Z on|off", 6653 .tokens = { 6654 (void *)&cmd_mirror_mask_set, 6655 (void *)&cmd_mirror_mask_port, 6656 (void *)&cmd_mirror_mask_portid, 6657 (void *)&cmd_mirror_mask_mirror, 6658 (void *)&cmd_mirror_mask_ruleid, 6659 (void *)&cmd_mirror_mask_what, 6660 (void *)&cmd_mirror_mask_value, 6661 (void *)&cmd_mirror_mask_dstpool, 6662 (void *)&cmd_mirror_mask_poolid, 6663 (void *)&cmd_mirror_mask_on, 6664 NULL, 6665 }, 6666 }; 6667 6668 /* *** CONFIGURE VM MIRROR UDLINK/DOWNLINK RULE *** */ 6669 struct cmd_set_mirror_link_result { 6670 cmdline_fixed_string_t set; 6671 cmdline_fixed_string_t port; 6672 uint8_t port_id; 6673 cmdline_fixed_string_t mirror; 6674 uint8_t rule_id; 6675 cmdline_fixed_string_t what; 6676 cmdline_fixed_string_t dstpool; 6677 uint8_t dstpool_id; 6678 cmdline_fixed_string_t on; 6679 }; 6680 6681 cmdline_parse_token_string_t cmd_mirror_link_set = 6682 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_link_result, 6683 set, "set"); 6684 cmdline_parse_token_string_t cmd_mirror_link_port = 6685 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_link_result, 6686 port, "port"); 6687 cmdline_parse_token_num_t cmd_mirror_link_portid = 6688 TOKEN_NUM_INITIALIZER(struct cmd_set_mirror_link_result, 6689 port_id, UINT8); 6690 cmdline_parse_token_string_t cmd_mirror_link_mirror = 6691 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_link_result, 6692 mirror, "mirror-rule"); 6693 cmdline_parse_token_num_t cmd_mirror_link_ruleid = 6694 TOKEN_NUM_INITIALIZER(struct cmd_set_mirror_link_result, 6695 rule_id, UINT8); 6696 cmdline_parse_token_string_t cmd_mirror_link_what = 6697 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_link_result, 6698 what, "uplink-mirror#downlink-mirror"); 6699 cmdline_parse_token_string_t cmd_mirror_link_dstpool = 6700 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_link_result, 6701 dstpool, "dst-pool"); 6702 cmdline_parse_token_num_t cmd_mirror_link_poolid = 6703 TOKEN_NUM_INITIALIZER(struct cmd_set_mirror_link_result, 6704 dstpool_id, UINT8); 6705 cmdline_parse_token_string_t cmd_mirror_link_on = 6706 TOKEN_STRING_INITIALIZER(struct cmd_set_mirror_link_result, 6707 on, "on#off"); 6708 6709 static void 6710 cmd_set_mirror_link_parsed(void *parsed_result, 6711 __attribute__((unused)) struct cmdline *cl, 6712 __attribute__((unused)) void *data) 6713 { 6714 int ret; 6715 struct cmd_set_mirror_link_result *res = parsed_result; 6716 struct rte_eth_vmdq_mirror_conf mr_conf; 6717 6718 memset(&mr_conf,0,sizeof(struct rte_eth_vmdq_mirror_conf)); 6719 if(!strcmp(res->what, "uplink-mirror")) { 6720 mr_conf.rule_type_mask = ETH_VMDQ_UPLINK_MIRROR; 6721 }else if(!strcmp(res->what, "downlink-mirror")) 6722 mr_conf.rule_type_mask = ETH_VMDQ_DOWNLIN_MIRROR; 6723 6724 mr_conf.dst_pool = res->dstpool_id; 6725 6726 if(!strcmp(res->on, "on")) 6727 ret = rte_eth_mirror_rule_set(res->port_id,&mr_conf, 6728 res->rule_id, 1); 6729 else 6730 ret = rte_eth_mirror_rule_set(res->port_id,&mr_conf, 6731 res->rule_id, 0); 6732 6733 /* check the return value and print it if is < 0 */ 6734 if(ret < 0) 6735 printf("mirror rule add error: (%s)\n", strerror(-ret)); 6736 6737 } 6738 6739 cmdline_parse_inst_t cmd_set_mirror_link = { 6740 .f = cmd_set_mirror_link_parsed, 6741 .data = NULL, 6742 .help_str = "set port X mirror-rule Y uplink-mirror|" 6743 "downlink-mirror dst-pool Z on|off", 6744 .tokens = { 6745 (void *)&cmd_mirror_link_set, 6746 (void *)&cmd_mirror_link_port, 6747 (void *)&cmd_mirror_link_portid, 6748 (void *)&cmd_mirror_link_mirror, 6749 (void *)&cmd_mirror_link_ruleid, 6750 (void *)&cmd_mirror_link_what, 6751 (void *)&cmd_mirror_link_dstpool, 6752 (void *)&cmd_mirror_link_poolid, 6753 (void *)&cmd_mirror_link_on, 6754 NULL, 6755 }, 6756 }; 6757 6758 /* *** RESET VM MIRROR RULE *** */ 6759 struct cmd_rm_mirror_rule_result { 6760 cmdline_fixed_string_t reset; 6761 cmdline_fixed_string_t port; 6762 uint8_t port_id; 6763 cmdline_fixed_string_t mirror; 6764 uint8_t rule_id; 6765 }; 6766 6767 cmdline_parse_token_string_t cmd_rm_mirror_rule_reset = 6768 TOKEN_STRING_INITIALIZER(struct cmd_rm_mirror_rule_result, 6769 reset, "reset"); 6770 cmdline_parse_token_string_t cmd_rm_mirror_rule_port = 6771 TOKEN_STRING_INITIALIZER(struct cmd_rm_mirror_rule_result, 6772 port, "port"); 6773 cmdline_parse_token_num_t cmd_rm_mirror_rule_portid = 6774 TOKEN_NUM_INITIALIZER(struct cmd_rm_mirror_rule_result, 6775 port_id, UINT8); 6776 cmdline_parse_token_string_t cmd_rm_mirror_rule_mirror = 6777 TOKEN_STRING_INITIALIZER(struct cmd_rm_mirror_rule_result, 6778 mirror, "mirror-rule"); 6779 cmdline_parse_token_num_t cmd_rm_mirror_rule_ruleid = 6780 TOKEN_NUM_INITIALIZER(struct cmd_rm_mirror_rule_result, 6781 rule_id, UINT8); 6782 6783 static void 6784 cmd_reset_mirror_rule_parsed(void *parsed_result, 6785 __attribute__((unused)) struct cmdline *cl, 6786 __attribute__((unused)) void *data) 6787 { 6788 int ret; 6789 struct cmd_set_mirror_link_result *res = parsed_result; 6790 /* check rule_id */ 6791 ret = rte_eth_mirror_rule_reset(res->port_id,res->rule_id); 6792 if(ret < 0) 6793 printf("mirror rule remove error: (%s)\n", strerror(-ret)); 6794 } 6795 6796 cmdline_parse_inst_t cmd_reset_mirror_rule = { 6797 .f = cmd_reset_mirror_rule_parsed, 6798 .data = NULL, 6799 .help_str = "reset port X mirror-rule Y", 6800 .tokens = { 6801 (void *)&cmd_rm_mirror_rule_reset, 6802 (void *)&cmd_rm_mirror_rule_port, 6803 (void *)&cmd_rm_mirror_rule_portid, 6804 (void *)&cmd_rm_mirror_rule_mirror, 6805 (void *)&cmd_rm_mirror_rule_ruleid, 6806 NULL, 6807 }, 6808 }; 6809 6810 /* ******************************************************************************** */ 6811 6812 struct cmd_dump_result { 6813 cmdline_fixed_string_t dump; 6814 }; 6815 6816 static void 6817 dump_struct_sizes(void) 6818 { 6819 #define DUMP_SIZE(t) printf("sizeof(" #t ") = %u\n", (unsigned)sizeof(t)); 6820 DUMP_SIZE(struct rte_mbuf); 6821 DUMP_SIZE(struct rte_mempool); 6822 DUMP_SIZE(struct rte_ring); 6823 #undef DUMP_SIZE 6824 } 6825 6826 static void cmd_dump_parsed(void *parsed_result, 6827 __attribute__((unused)) struct cmdline *cl, 6828 __attribute__((unused)) void *data) 6829 { 6830 struct cmd_dump_result *res = parsed_result; 6831 6832 if (!strcmp(res->dump, "dump_physmem")) 6833 rte_dump_physmem_layout(stdout); 6834 else if (!strcmp(res->dump, "dump_memzone")) 6835 rte_memzone_dump(stdout); 6836 else if (!strcmp(res->dump, "dump_log_history")) 6837 rte_log_dump_history(stdout); 6838 else if (!strcmp(res->dump, "dump_struct_sizes")) 6839 dump_struct_sizes(); 6840 else if (!strcmp(res->dump, "dump_ring")) 6841 rte_ring_list_dump(stdout); 6842 else if (!strcmp(res->dump, "dump_mempool")) 6843 rte_mempool_list_dump(stdout); 6844 else if (!strcmp(res->dump, "dump_devargs")) 6845 rte_eal_devargs_dump(stdout); 6846 } 6847 6848 cmdline_parse_token_string_t cmd_dump_dump = 6849 TOKEN_STRING_INITIALIZER(struct cmd_dump_result, dump, 6850 "dump_physmem#" 6851 "dump_memzone#" 6852 "dump_log_history#" 6853 "dump_struct_sizes#" 6854 "dump_ring#" 6855 "dump_mempool#" 6856 "dump_devargs"); 6857 6858 cmdline_parse_inst_t cmd_dump = { 6859 .f = cmd_dump_parsed, /* function to call */ 6860 .data = NULL, /* 2nd arg of func */ 6861 .help_str = "dump status", 6862 .tokens = { /* token list, NULL terminated */ 6863 (void *)&cmd_dump_dump, 6864 NULL, 6865 }, 6866 }; 6867 6868 /* ******************************************************************************** */ 6869 6870 struct cmd_dump_one_result { 6871 cmdline_fixed_string_t dump; 6872 cmdline_fixed_string_t name; 6873 }; 6874 6875 static void cmd_dump_one_parsed(void *parsed_result, struct cmdline *cl, 6876 __attribute__((unused)) void *data) 6877 { 6878 struct cmd_dump_one_result *res = parsed_result; 6879 6880 if (!strcmp(res->dump, "dump_ring")) { 6881 struct rte_ring *r; 6882 r = rte_ring_lookup(res->name); 6883 if (r == NULL) { 6884 cmdline_printf(cl, "Cannot find ring\n"); 6885 return; 6886 } 6887 rte_ring_dump(stdout, r); 6888 } else if (!strcmp(res->dump, "dump_mempool")) { 6889 struct rte_mempool *mp; 6890 mp = rte_mempool_lookup(res->name); 6891 if (mp == NULL) { 6892 cmdline_printf(cl, "Cannot find mempool\n"); 6893 return; 6894 } 6895 rte_mempool_dump(stdout, mp); 6896 } 6897 } 6898 6899 cmdline_parse_token_string_t cmd_dump_one_dump = 6900 TOKEN_STRING_INITIALIZER(struct cmd_dump_one_result, dump, 6901 "dump_ring#dump_mempool"); 6902 6903 cmdline_parse_token_string_t cmd_dump_one_name = 6904 TOKEN_STRING_INITIALIZER(struct cmd_dump_one_result, name, NULL); 6905 6906 cmdline_parse_inst_t cmd_dump_one = { 6907 .f = cmd_dump_one_parsed, /* function to call */ 6908 .data = NULL, /* 2nd arg of func */ 6909 .help_str = "dump one ring/mempool: dump_ring|dump_mempool <name>", 6910 .tokens = { /* token list, NULL terminated */ 6911 (void *)&cmd_dump_one_dump, 6912 (void *)&cmd_dump_one_name, 6913 NULL, 6914 }, 6915 }; 6916 6917 /* *** Add/Del syn filter *** */ 6918 struct cmd_syn_filter_result { 6919 cmdline_fixed_string_t filter; 6920 uint8_t port_id; 6921 cmdline_fixed_string_t ops; 6922 cmdline_fixed_string_t priority; 6923 cmdline_fixed_string_t high; 6924 cmdline_fixed_string_t queue; 6925 uint16_t queue_id; 6926 }; 6927 6928 static void 6929 cmd_syn_filter_parsed(void *parsed_result, 6930 __attribute__((unused)) struct cmdline *cl, 6931 __attribute__((unused)) void *data) 6932 { 6933 struct cmd_syn_filter_result *res = parsed_result; 6934 struct rte_eth_syn_filter syn_filter; 6935 int ret = 0; 6936 6937 ret = rte_eth_dev_filter_supported(res->port_id, 6938 RTE_ETH_FILTER_SYN); 6939 if (ret < 0) { 6940 printf("syn filter is not supported on port %u.\n", 6941 res->port_id); 6942 return; 6943 } 6944 6945 memset(&syn_filter, 0, sizeof(syn_filter)); 6946 6947 if (!strcmp(res->ops, "add")) { 6948 if (!strcmp(res->high, "high")) 6949 syn_filter.hig_pri = 1; 6950 else 6951 syn_filter.hig_pri = 0; 6952 6953 syn_filter.queue = res->queue_id; 6954 ret = rte_eth_dev_filter_ctrl(res->port_id, 6955 RTE_ETH_FILTER_SYN, 6956 RTE_ETH_FILTER_ADD, 6957 &syn_filter); 6958 } else 6959 ret = rte_eth_dev_filter_ctrl(res->port_id, 6960 RTE_ETH_FILTER_SYN, 6961 RTE_ETH_FILTER_DELETE, 6962 &syn_filter); 6963 6964 if (ret < 0) 6965 printf("syn filter programming error: (%s)\n", 6966 strerror(-ret)); 6967 } 6968 6969 cmdline_parse_token_string_t cmd_syn_filter_filter = 6970 TOKEN_STRING_INITIALIZER(struct cmd_syn_filter_result, 6971 filter, "syn_filter"); 6972 cmdline_parse_token_num_t cmd_syn_filter_port_id = 6973 TOKEN_NUM_INITIALIZER(struct cmd_syn_filter_result, 6974 port_id, UINT8); 6975 cmdline_parse_token_string_t cmd_syn_filter_ops = 6976 TOKEN_STRING_INITIALIZER(struct cmd_syn_filter_result, 6977 ops, "add#del"); 6978 cmdline_parse_token_string_t cmd_syn_filter_priority = 6979 TOKEN_STRING_INITIALIZER(struct cmd_syn_filter_result, 6980 priority, "priority"); 6981 cmdline_parse_token_string_t cmd_syn_filter_high = 6982 TOKEN_STRING_INITIALIZER(struct cmd_syn_filter_result, 6983 high, "high#low"); 6984 cmdline_parse_token_string_t cmd_syn_filter_queue = 6985 TOKEN_STRING_INITIALIZER(struct cmd_syn_filter_result, 6986 queue, "queue"); 6987 cmdline_parse_token_num_t cmd_syn_filter_queue_id = 6988 TOKEN_NUM_INITIALIZER(struct cmd_syn_filter_result, 6989 queue_id, UINT16); 6990 6991 cmdline_parse_inst_t cmd_syn_filter = { 6992 .f = cmd_syn_filter_parsed, 6993 .data = NULL, 6994 .help_str = "add/delete syn filter", 6995 .tokens = { 6996 (void *)&cmd_syn_filter_filter, 6997 (void *)&cmd_syn_filter_port_id, 6998 (void *)&cmd_syn_filter_ops, 6999 (void *)&cmd_syn_filter_priority, 7000 (void *)&cmd_syn_filter_high, 7001 (void *)&cmd_syn_filter_queue, 7002 (void *)&cmd_syn_filter_queue_id, 7003 NULL, 7004 }, 7005 }; 7006 7007 /* *** ADD/REMOVE A 2tuple FILTER *** */ 7008 struct cmd_2tuple_filter_result { 7009 cmdline_fixed_string_t filter; 7010 uint8_t port_id; 7011 cmdline_fixed_string_t ops; 7012 cmdline_fixed_string_t dst_port; 7013 uint16_t dst_port_value; 7014 cmdline_fixed_string_t protocol; 7015 uint8_t protocol_value; 7016 cmdline_fixed_string_t mask; 7017 uint8_t mask_value; 7018 cmdline_fixed_string_t tcp_flags; 7019 uint8_t tcp_flags_value; 7020 cmdline_fixed_string_t priority; 7021 uint8_t priority_value; 7022 cmdline_fixed_string_t queue; 7023 uint16_t queue_id; 7024 }; 7025 7026 static void 7027 cmd_2tuple_filter_parsed(void *parsed_result, 7028 __attribute__((unused)) struct cmdline *cl, 7029 __attribute__((unused)) void *data) 7030 { 7031 struct rte_eth_ntuple_filter filter; 7032 struct cmd_2tuple_filter_result *res = parsed_result; 7033 int ret = 0; 7034 7035 ret = rte_eth_dev_filter_supported(res->port_id, RTE_ETH_FILTER_NTUPLE); 7036 if (ret < 0) { 7037 printf("ntuple filter is not supported on port %u.\n", 7038 res->port_id); 7039 return; 7040 } 7041 7042 memset(&filter, 0, sizeof(struct rte_eth_ntuple_filter)); 7043 7044 filter.flags = RTE_2TUPLE_FLAGS; 7045 filter.dst_port_mask = (res->mask_value & 0x02) ? UINT16_MAX : 0; 7046 filter.proto_mask = (res->mask_value & 0x01) ? UINT8_MAX : 0; 7047 filter.proto = res->protocol_value; 7048 filter.priority = res->priority_value; 7049 if (res->tcp_flags_value != 0 && filter.proto != IPPROTO_TCP) { 7050 printf("nonzero tcp_flags is only meaningful" 7051 " when protocol is TCP.\n"); 7052 return; 7053 } 7054 if (res->tcp_flags_value > TCP_FLAG_ALL) { 7055 printf("invalid TCP flags.\n"); 7056 return; 7057 } 7058 7059 if (res->tcp_flags_value != 0) { 7060 filter.flags |= RTE_NTUPLE_FLAGS_TCP_FLAG; 7061 filter.tcp_flags = res->tcp_flags_value; 7062 } 7063 7064 /* need convert to big endian. */ 7065 filter.dst_port = rte_cpu_to_be_16(res->dst_port_value); 7066 filter.queue = res->queue_id; 7067 7068 if (!strcmp(res->ops, "add")) 7069 ret = rte_eth_dev_filter_ctrl(res->port_id, 7070 RTE_ETH_FILTER_NTUPLE, 7071 RTE_ETH_FILTER_ADD, 7072 &filter); 7073 else 7074 ret = rte_eth_dev_filter_ctrl(res->port_id, 7075 RTE_ETH_FILTER_NTUPLE, 7076 RTE_ETH_FILTER_DELETE, 7077 &filter); 7078 if (ret < 0) 7079 printf("2tuple filter programming error: (%s)\n", 7080 strerror(-ret)); 7081 7082 } 7083 7084 cmdline_parse_token_string_t cmd_2tuple_filter_filter = 7085 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7086 filter, "2tuple_filter"); 7087 cmdline_parse_token_num_t cmd_2tuple_filter_port_id = 7088 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7089 port_id, UINT8); 7090 cmdline_parse_token_string_t cmd_2tuple_filter_ops = 7091 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7092 ops, "add#del"); 7093 cmdline_parse_token_string_t cmd_2tuple_filter_dst_port = 7094 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7095 dst_port, "dst_port"); 7096 cmdline_parse_token_num_t cmd_2tuple_filter_dst_port_value = 7097 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7098 dst_port_value, UINT16); 7099 cmdline_parse_token_string_t cmd_2tuple_filter_protocol = 7100 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7101 protocol, "protocol"); 7102 cmdline_parse_token_num_t cmd_2tuple_filter_protocol_value = 7103 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7104 protocol_value, UINT8); 7105 cmdline_parse_token_string_t cmd_2tuple_filter_mask = 7106 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7107 mask, "mask"); 7108 cmdline_parse_token_num_t cmd_2tuple_filter_mask_value = 7109 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7110 mask_value, INT8); 7111 cmdline_parse_token_string_t cmd_2tuple_filter_tcp_flags = 7112 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7113 tcp_flags, "tcp_flags"); 7114 cmdline_parse_token_num_t cmd_2tuple_filter_tcp_flags_value = 7115 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7116 tcp_flags_value, UINT8); 7117 cmdline_parse_token_string_t cmd_2tuple_filter_priority = 7118 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7119 priority, "priority"); 7120 cmdline_parse_token_num_t cmd_2tuple_filter_priority_value = 7121 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7122 priority_value, UINT8); 7123 cmdline_parse_token_string_t cmd_2tuple_filter_queue = 7124 TOKEN_STRING_INITIALIZER(struct cmd_2tuple_filter_result, 7125 queue, "queue"); 7126 cmdline_parse_token_num_t cmd_2tuple_filter_queue_id = 7127 TOKEN_NUM_INITIALIZER(struct cmd_2tuple_filter_result, 7128 queue_id, UINT16); 7129 7130 cmdline_parse_inst_t cmd_2tuple_filter = { 7131 .f = cmd_2tuple_filter_parsed, 7132 .data = NULL, 7133 .help_str = "add a 2tuple filter", 7134 .tokens = { 7135 (void *)&cmd_2tuple_filter_filter, 7136 (void *)&cmd_2tuple_filter_port_id, 7137 (void *)&cmd_2tuple_filter_ops, 7138 (void *)&cmd_2tuple_filter_dst_port, 7139 (void *)&cmd_2tuple_filter_dst_port_value, 7140 (void *)&cmd_2tuple_filter_protocol, 7141 (void *)&cmd_2tuple_filter_protocol_value, 7142 (void *)&cmd_2tuple_filter_mask, 7143 (void *)&cmd_2tuple_filter_mask_value, 7144 (void *)&cmd_2tuple_filter_tcp_flags, 7145 (void *)&cmd_2tuple_filter_tcp_flags_value, 7146 (void *)&cmd_2tuple_filter_priority, 7147 (void *)&cmd_2tuple_filter_priority_value, 7148 (void *)&cmd_2tuple_filter_queue, 7149 (void *)&cmd_2tuple_filter_queue_id, 7150 NULL, 7151 }, 7152 }; 7153 7154 /* *** ADD/REMOVE A 5tuple FILTER *** */ 7155 struct cmd_5tuple_filter_result { 7156 cmdline_fixed_string_t filter; 7157 uint8_t port_id; 7158 cmdline_fixed_string_t ops; 7159 cmdline_fixed_string_t dst_ip; 7160 cmdline_ipaddr_t dst_ip_value; 7161 cmdline_fixed_string_t src_ip; 7162 cmdline_ipaddr_t src_ip_value; 7163 cmdline_fixed_string_t dst_port; 7164 uint16_t dst_port_value; 7165 cmdline_fixed_string_t src_port; 7166 uint16_t src_port_value; 7167 cmdline_fixed_string_t protocol; 7168 uint8_t protocol_value; 7169 cmdline_fixed_string_t mask; 7170 uint8_t mask_value; 7171 cmdline_fixed_string_t tcp_flags; 7172 uint8_t tcp_flags_value; 7173 cmdline_fixed_string_t priority; 7174 uint8_t priority_value; 7175 cmdline_fixed_string_t queue; 7176 uint16_t queue_id; 7177 }; 7178 7179 static void 7180 cmd_5tuple_filter_parsed(void *parsed_result, 7181 __attribute__((unused)) struct cmdline *cl, 7182 __attribute__((unused)) void *data) 7183 { 7184 struct rte_eth_ntuple_filter filter; 7185 struct cmd_5tuple_filter_result *res = parsed_result; 7186 int ret = 0; 7187 7188 ret = rte_eth_dev_filter_supported(res->port_id, RTE_ETH_FILTER_NTUPLE); 7189 if (ret < 0) { 7190 printf("ntuple filter is not supported on port %u.\n", 7191 res->port_id); 7192 return; 7193 } 7194 7195 memset(&filter, 0, sizeof(struct rte_eth_ntuple_filter)); 7196 7197 filter.flags = RTE_5TUPLE_FLAGS; 7198 filter.dst_ip_mask = (res->mask_value & 0x10) ? UINT32_MAX : 0; 7199 filter.src_ip_mask = (res->mask_value & 0x08) ? UINT32_MAX : 0; 7200 filter.dst_port_mask = (res->mask_value & 0x04) ? UINT16_MAX : 0; 7201 filter.src_port_mask = (res->mask_value & 0x02) ? UINT16_MAX : 0; 7202 filter.proto_mask = (res->mask_value & 0x01) ? UINT8_MAX : 0; 7203 filter.proto = res->protocol_value; 7204 filter.priority = res->priority_value; 7205 if (res->tcp_flags_value != 0 && filter.proto != IPPROTO_TCP) { 7206 printf("nonzero tcp_flags is only meaningful" 7207 " when protocol is TCP.\n"); 7208 return; 7209 } 7210 if (res->tcp_flags_value > TCP_FLAG_ALL) { 7211 printf("invalid TCP flags.\n"); 7212 return; 7213 } 7214 7215 if (res->tcp_flags_value != 0) { 7216 filter.flags |= RTE_NTUPLE_FLAGS_TCP_FLAG; 7217 filter.tcp_flags = res->tcp_flags_value; 7218 } 7219 7220 if (res->dst_ip_value.family == AF_INET) 7221 /* no need to convert, already big endian. */ 7222 filter.dst_ip = res->dst_ip_value.addr.ipv4.s_addr; 7223 else { 7224 if (filter.dst_ip_mask == 0) { 7225 printf("can not support ipv6 involved compare.\n"); 7226 return; 7227 } 7228 filter.dst_ip = 0; 7229 } 7230 7231 if (res->src_ip_value.family == AF_INET) 7232 /* no need to convert, already big endian. */ 7233 filter.src_ip = res->src_ip_value.addr.ipv4.s_addr; 7234 else { 7235 if (filter.src_ip_mask == 0) { 7236 printf("can not support ipv6 involved compare.\n"); 7237 return; 7238 } 7239 filter.src_ip = 0; 7240 } 7241 /* need convert to big endian. */ 7242 filter.dst_port = rte_cpu_to_be_16(res->dst_port_value); 7243 filter.src_port = rte_cpu_to_be_16(res->src_port_value); 7244 filter.queue = res->queue_id; 7245 7246 if (!strcmp(res->ops, "add")) 7247 ret = rte_eth_dev_filter_ctrl(res->port_id, 7248 RTE_ETH_FILTER_NTUPLE, 7249 RTE_ETH_FILTER_ADD, 7250 &filter); 7251 else 7252 ret = rte_eth_dev_filter_ctrl(res->port_id, 7253 RTE_ETH_FILTER_NTUPLE, 7254 RTE_ETH_FILTER_DELETE, 7255 &filter); 7256 if (ret < 0) 7257 printf("5tuple filter programming error: (%s)\n", 7258 strerror(-ret)); 7259 } 7260 7261 cmdline_parse_token_string_t cmd_5tuple_filter_filter = 7262 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7263 filter, "5tuple_filter"); 7264 cmdline_parse_token_num_t cmd_5tuple_filter_port_id = 7265 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7266 port_id, UINT8); 7267 cmdline_parse_token_string_t cmd_5tuple_filter_ops = 7268 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7269 ops, "add#del"); 7270 cmdline_parse_token_string_t cmd_5tuple_filter_dst_ip = 7271 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7272 dst_ip, "dst_ip"); 7273 cmdline_parse_token_ipaddr_t cmd_5tuple_filter_dst_ip_value = 7274 TOKEN_IPADDR_INITIALIZER(struct cmd_5tuple_filter_result, 7275 dst_ip_value); 7276 cmdline_parse_token_string_t cmd_5tuple_filter_src_ip = 7277 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7278 src_ip, "src_ip"); 7279 cmdline_parse_token_ipaddr_t cmd_5tuple_filter_src_ip_value = 7280 TOKEN_IPADDR_INITIALIZER(struct cmd_5tuple_filter_result, 7281 src_ip_value); 7282 cmdline_parse_token_string_t cmd_5tuple_filter_dst_port = 7283 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7284 dst_port, "dst_port"); 7285 cmdline_parse_token_num_t cmd_5tuple_filter_dst_port_value = 7286 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7287 dst_port_value, UINT16); 7288 cmdline_parse_token_string_t cmd_5tuple_filter_src_port = 7289 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7290 src_port, "src_port"); 7291 cmdline_parse_token_num_t cmd_5tuple_filter_src_port_value = 7292 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7293 src_port_value, UINT16); 7294 cmdline_parse_token_string_t cmd_5tuple_filter_protocol = 7295 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7296 protocol, "protocol"); 7297 cmdline_parse_token_num_t cmd_5tuple_filter_protocol_value = 7298 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7299 protocol_value, UINT8); 7300 cmdline_parse_token_string_t cmd_5tuple_filter_mask = 7301 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7302 mask, "mask"); 7303 cmdline_parse_token_num_t cmd_5tuple_filter_mask_value = 7304 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7305 mask_value, INT8); 7306 cmdline_parse_token_string_t cmd_5tuple_filter_tcp_flags = 7307 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7308 tcp_flags, "tcp_flags"); 7309 cmdline_parse_token_num_t cmd_5tuple_filter_tcp_flags_value = 7310 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7311 tcp_flags_value, UINT8); 7312 cmdline_parse_token_string_t cmd_5tuple_filter_priority = 7313 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7314 priority, "priority"); 7315 cmdline_parse_token_num_t cmd_5tuple_filter_priority_value = 7316 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7317 priority_value, UINT8); 7318 cmdline_parse_token_string_t cmd_5tuple_filter_queue = 7319 TOKEN_STRING_INITIALIZER(struct cmd_5tuple_filter_result, 7320 queue, "queue"); 7321 cmdline_parse_token_num_t cmd_5tuple_filter_queue_id = 7322 TOKEN_NUM_INITIALIZER(struct cmd_5tuple_filter_result, 7323 queue_id, UINT16); 7324 7325 cmdline_parse_inst_t cmd_5tuple_filter = { 7326 .f = cmd_5tuple_filter_parsed, 7327 .data = NULL, 7328 .help_str = "add/del a 5tuple filter", 7329 .tokens = { 7330 (void *)&cmd_5tuple_filter_filter, 7331 (void *)&cmd_5tuple_filter_port_id, 7332 (void *)&cmd_5tuple_filter_ops, 7333 (void *)&cmd_5tuple_filter_dst_ip, 7334 (void *)&cmd_5tuple_filter_dst_ip_value, 7335 (void *)&cmd_5tuple_filter_src_ip, 7336 (void *)&cmd_5tuple_filter_src_ip_value, 7337 (void *)&cmd_5tuple_filter_dst_port, 7338 (void *)&cmd_5tuple_filter_dst_port_value, 7339 (void *)&cmd_5tuple_filter_src_port, 7340 (void *)&cmd_5tuple_filter_src_port_value, 7341 (void *)&cmd_5tuple_filter_protocol, 7342 (void *)&cmd_5tuple_filter_protocol_value, 7343 (void *)&cmd_5tuple_filter_mask, 7344 (void *)&cmd_5tuple_filter_mask_value, 7345 (void *)&cmd_5tuple_filter_tcp_flags, 7346 (void *)&cmd_5tuple_filter_tcp_flags_value, 7347 (void *)&cmd_5tuple_filter_priority, 7348 (void *)&cmd_5tuple_filter_priority_value, 7349 (void *)&cmd_5tuple_filter_queue, 7350 (void *)&cmd_5tuple_filter_queue_id, 7351 NULL, 7352 }, 7353 }; 7354 7355 /* *** ADD/REMOVE A flex FILTER *** */ 7356 struct cmd_flex_filter_result { 7357 cmdline_fixed_string_t filter; 7358 cmdline_fixed_string_t ops; 7359 uint8_t port_id; 7360 cmdline_fixed_string_t len; 7361 uint8_t len_value; 7362 cmdline_fixed_string_t bytes; 7363 cmdline_fixed_string_t bytes_value; 7364 cmdline_fixed_string_t mask; 7365 cmdline_fixed_string_t mask_value; 7366 cmdline_fixed_string_t priority; 7367 uint8_t priority_value; 7368 cmdline_fixed_string_t queue; 7369 uint16_t queue_id; 7370 }; 7371 7372 static int xdigit2val(unsigned char c) 7373 { 7374 int val; 7375 if (isdigit(c)) 7376 val = c - '0'; 7377 else if (isupper(c)) 7378 val = c - 'A' + 10; 7379 else 7380 val = c - 'a' + 10; 7381 return val; 7382 } 7383 7384 static void 7385 cmd_flex_filter_parsed(void *parsed_result, 7386 __attribute__((unused)) struct cmdline *cl, 7387 __attribute__((unused)) void *data) 7388 { 7389 int ret = 0; 7390 struct rte_eth_flex_filter filter; 7391 struct cmd_flex_filter_result *res = parsed_result; 7392 char *bytes_ptr, *mask_ptr; 7393 uint16_t len, i, j = 0; 7394 char c; 7395 int val; 7396 uint8_t byte = 0; 7397 7398 if (res->len_value > RTE_FLEX_FILTER_MAXLEN) { 7399 printf("the len exceed the max length 128\n"); 7400 return; 7401 } 7402 memset(&filter, 0, sizeof(struct rte_eth_flex_filter)); 7403 filter.len = res->len_value; 7404 filter.priority = res->priority_value; 7405 filter.queue = res->queue_id; 7406 bytes_ptr = res->bytes_value; 7407 mask_ptr = res->mask_value; 7408 7409 /* translate bytes string to array. */ 7410 if (bytes_ptr[0] == '0' && ((bytes_ptr[1] == 'x') || 7411 (bytes_ptr[1] == 'X'))) 7412 bytes_ptr += 2; 7413 len = strnlen(bytes_ptr, res->len_value * 2); 7414 if (len == 0 || (len % 8 != 0)) { 7415 printf("please check len and bytes input\n"); 7416 return; 7417 } 7418 for (i = 0; i < len; i++) { 7419 c = bytes_ptr[i]; 7420 if (isxdigit(c) == 0) { 7421 /* invalid characters. */ 7422 printf("invalid input\n"); 7423 return; 7424 } 7425 val = xdigit2val(c); 7426 if (i % 2) { 7427 byte |= val; 7428 filter.bytes[j] = byte; 7429 printf("bytes[%d]:%02x ", j, filter.bytes[j]); 7430 j++; 7431 byte = 0; 7432 } else 7433 byte |= val << 4; 7434 } 7435 printf("\n"); 7436 /* translate mask string to uint8_t array. */ 7437 if (mask_ptr[0] == '0' && ((mask_ptr[1] == 'x') || 7438 (mask_ptr[1] == 'X'))) 7439 mask_ptr += 2; 7440 len = strnlen(mask_ptr, (res->len_value + 3) / 4); 7441 if (len == 0) { 7442 printf("invalid input\n"); 7443 return; 7444 } 7445 j = 0; 7446 byte = 0; 7447 for (i = 0; i < len; i++) { 7448 c = mask_ptr[i]; 7449 if (isxdigit(c) == 0) { 7450 /* invalid characters. */ 7451 printf("invalid input\n"); 7452 return; 7453 } 7454 val = xdigit2val(c); 7455 if (i % 2) { 7456 byte |= val; 7457 filter.mask[j] = byte; 7458 printf("mask[%d]:%02x ", j, filter.mask[j]); 7459 j++; 7460 byte = 0; 7461 } else 7462 byte |= val << 4; 7463 } 7464 printf("\n"); 7465 7466 if (!strcmp(res->ops, "add")) 7467 ret = rte_eth_dev_filter_ctrl(res->port_id, 7468 RTE_ETH_FILTER_FLEXIBLE, 7469 RTE_ETH_FILTER_ADD, 7470 &filter); 7471 else 7472 ret = rte_eth_dev_filter_ctrl(res->port_id, 7473 RTE_ETH_FILTER_FLEXIBLE, 7474 RTE_ETH_FILTER_DELETE, 7475 &filter); 7476 7477 if (ret < 0) 7478 printf("flex filter setting error: (%s)\n", strerror(-ret)); 7479 } 7480 7481 cmdline_parse_token_string_t cmd_flex_filter_filter = 7482 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7483 filter, "flex_filter"); 7484 cmdline_parse_token_num_t cmd_flex_filter_port_id = 7485 TOKEN_NUM_INITIALIZER(struct cmd_flex_filter_result, 7486 port_id, UINT8); 7487 cmdline_parse_token_string_t cmd_flex_filter_ops = 7488 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7489 ops, "add#del"); 7490 cmdline_parse_token_string_t cmd_flex_filter_len = 7491 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7492 len, "len"); 7493 cmdline_parse_token_num_t cmd_flex_filter_len_value = 7494 TOKEN_NUM_INITIALIZER(struct cmd_flex_filter_result, 7495 len_value, UINT8); 7496 cmdline_parse_token_string_t cmd_flex_filter_bytes = 7497 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7498 bytes, "bytes"); 7499 cmdline_parse_token_string_t cmd_flex_filter_bytes_value = 7500 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7501 bytes_value, NULL); 7502 cmdline_parse_token_string_t cmd_flex_filter_mask = 7503 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7504 mask, "mask"); 7505 cmdline_parse_token_string_t cmd_flex_filter_mask_value = 7506 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7507 mask_value, NULL); 7508 cmdline_parse_token_string_t cmd_flex_filter_priority = 7509 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7510 priority, "priority"); 7511 cmdline_parse_token_num_t cmd_flex_filter_priority_value = 7512 TOKEN_NUM_INITIALIZER(struct cmd_flex_filter_result, 7513 priority_value, UINT8); 7514 cmdline_parse_token_string_t cmd_flex_filter_queue = 7515 TOKEN_STRING_INITIALIZER(struct cmd_flex_filter_result, 7516 queue, "queue"); 7517 cmdline_parse_token_num_t cmd_flex_filter_queue_id = 7518 TOKEN_NUM_INITIALIZER(struct cmd_flex_filter_result, 7519 queue_id, UINT16); 7520 cmdline_parse_inst_t cmd_flex_filter = { 7521 .f = cmd_flex_filter_parsed, 7522 .data = NULL, 7523 .help_str = "add/del a flex filter", 7524 .tokens = { 7525 (void *)&cmd_flex_filter_filter, 7526 (void *)&cmd_flex_filter_port_id, 7527 (void *)&cmd_flex_filter_ops, 7528 (void *)&cmd_flex_filter_len, 7529 (void *)&cmd_flex_filter_len_value, 7530 (void *)&cmd_flex_filter_bytes, 7531 (void *)&cmd_flex_filter_bytes_value, 7532 (void *)&cmd_flex_filter_mask, 7533 (void *)&cmd_flex_filter_mask_value, 7534 (void *)&cmd_flex_filter_priority, 7535 (void *)&cmd_flex_filter_priority_value, 7536 (void *)&cmd_flex_filter_queue, 7537 (void *)&cmd_flex_filter_queue_id, 7538 NULL, 7539 }, 7540 }; 7541 7542 /* *** Filters Control *** */ 7543 7544 /* *** deal with ethertype filter *** */ 7545 struct cmd_ethertype_filter_result { 7546 cmdline_fixed_string_t filter; 7547 uint8_t port_id; 7548 cmdline_fixed_string_t ops; 7549 cmdline_fixed_string_t mac; 7550 struct ether_addr mac_addr; 7551 cmdline_fixed_string_t ethertype; 7552 uint16_t ethertype_value; 7553 cmdline_fixed_string_t drop; 7554 cmdline_fixed_string_t queue; 7555 uint16_t queue_id; 7556 }; 7557 7558 cmdline_parse_token_string_t cmd_ethertype_filter_filter = 7559 TOKEN_STRING_INITIALIZER(struct cmd_ethertype_filter_result, 7560 filter, "ethertype_filter"); 7561 cmdline_parse_token_num_t cmd_ethertype_filter_port_id = 7562 TOKEN_NUM_INITIALIZER(struct cmd_ethertype_filter_result, 7563 port_id, UINT8); 7564 cmdline_parse_token_string_t cmd_ethertype_filter_ops = 7565 TOKEN_STRING_INITIALIZER(struct cmd_ethertype_filter_result, 7566 ops, "add#del"); 7567 cmdline_parse_token_string_t cmd_ethertype_filter_mac = 7568 TOKEN_STRING_INITIALIZER(struct cmd_ethertype_filter_result, 7569 mac, "mac_addr#mac_ignr"); 7570 cmdline_parse_token_etheraddr_t cmd_ethertype_filter_mac_addr = 7571 TOKEN_ETHERADDR_INITIALIZER(struct cmd_ethertype_filter_result, 7572 mac_addr); 7573 cmdline_parse_token_string_t cmd_ethertype_filter_ethertype = 7574 TOKEN_STRING_INITIALIZER(struct cmd_ethertype_filter_result, 7575 ethertype, "ethertype"); 7576 cmdline_parse_token_num_t cmd_ethertype_filter_ethertype_value = 7577 TOKEN_NUM_INITIALIZER(struct cmd_ethertype_filter_result, 7578 ethertype_value, UINT16); 7579 cmdline_parse_token_string_t cmd_ethertype_filter_drop = 7580 TOKEN_STRING_INITIALIZER(struct cmd_ethertype_filter_result, 7581 drop, "drop#fwd"); 7582 cmdline_parse_token_string_t cmd_ethertype_filter_queue = 7583 TOKEN_STRING_INITIALIZER(struct cmd_ethertype_filter_result, 7584 queue, "queue"); 7585 cmdline_parse_token_num_t cmd_ethertype_filter_queue_id = 7586 TOKEN_NUM_INITIALIZER(struct cmd_ethertype_filter_result, 7587 queue_id, UINT16); 7588 7589 static void 7590 cmd_ethertype_filter_parsed(void *parsed_result, 7591 __attribute__((unused)) struct cmdline *cl, 7592 __attribute__((unused)) void *data) 7593 { 7594 struct cmd_ethertype_filter_result *res = parsed_result; 7595 struct rte_eth_ethertype_filter filter; 7596 int ret = 0; 7597 7598 ret = rte_eth_dev_filter_supported(res->port_id, 7599 RTE_ETH_FILTER_ETHERTYPE); 7600 if (ret < 0) { 7601 printf("ethertype filter is not supported on port %u.\n", 7602 res->port_id); 7603 return; 7604 } 7605 7606 memset(&filter, 0, sizeof(filter)); 7607 if (!strcmp(res->mac, "mac_addr")) { 7608 filter.flags |= RTE_ETHTYPE_FLAGS_MAC; 7609 (void)rte_memcpy(&filter.mac_addr, &res->mac_addr, 7610 sizeof(struct ether_addr)); 7611 } 7612 if (!strcmp(res->drop, "drop")) 7613 filter.flags |= RTE_ETHTYPE_FLAGS_DROP; 7614 filter.ether_type = res->ethertype_value; 7615 filter.queue = res->queue_id; 7616 7617 if (!strcmp(res->ops, "add")) 7618 ret = rte_eth_dev_filter_ctrl(res->port_id, 7619 RTE_ETH_FILTER_ETHERTYPE, 7620 RTE_ETH_FILTER_ADD, 7621 &filter); 7622 else 7623 ret = rte_eth_dev_filter_ctrl(res->port_id, 7624 RTE_ETH_FILTER_ETHERTYPE, 7625 RTE_ETH_FILTER_DELETE, 7626 &filter); 7627 if (ret < 0) 7628 printf("ethertype filter programming error: (%s)\n", 7629 strerror(-ret)); 7630 } 7631 7632 cmdline_parse_inst_t cmd_ethertype_filter = { 7633 .f = cmd_ethertype_filter_parsed, 7634 .data = NULL, 7635 .help_str = "add or delete an ethertype filter entry", 7636 .tokens = { 7637 (void *)&cmd_ethertype_filter_filter, 7638 (void *)&cmd_ethertype_filter_port_id, 7639 (void *)&cmd_ethertype_filter_ops, 7640 (void *)&cmd_ethertype_filter_mac, 7641 (void *)&cmd_ethertype_filter_mac_addr, 7642 (void *)&cmd_ethertype_filter_ethertype, 7643 (void *)&cmd_ethertype_filter_ethertype_value, 7644 (void *)&cmd_ethertype_filter_drop, 7645 (void *)&cmd_ethertype_filter_queue, 7646 (void *)&cmd_ethertype_filter_queue_id, 7647 NULL, 7648 }, 7649 }; 7650 7651 /* *** deal with flow director filter *** */ 7652 struct cmd_flow_director_result { 7653 cmdline_fixed_string_t flow_director_filter; 7654 uint8_t port_id; 7655 cmdline_fixed_string_t ops; 7656 cmdline_fixed_string_t flow; 7657 cmdline_fixed_string_t flow_type; 7658 cmdline_fixed_string_t src; 7659 cmdline_ipaddr_t ip_src; 7660 uint16_t port_src; 7661 cmdline_fixed_string_t dst; 7662 cmdline_ipaddr_t ip_dst; 7663 uint16_t port_dst; 7664 cmdline_fixed_string_t verify_tag; 7665 uint32_t verify_tag_value; 7666 cmdline_fixed_string_t vlan; 7667 uint16_t vlan_value; 7668 cmdline_fixed_string_t flexbytes; 7669 cmdline_fixed_string_t flexbytes_value; 7670 cmdline_fixed_string_t drop; 7671 cmdline_fixed_string_t queue; 7672 uint16_t queue_id; 7673 cmdline_fixed_string_t fd_id; 7674 uint32_t fd_id_value; 7675 }; 7676 7677 static inline int 7678 parse_flexbytes(const char *q_arg, uint8_t *flexbytes, uint16_t max_num) 7679 { 7680 char s[256]; 7681 const char *p, *p0 = q_arg; 7682 char *end; 7683 unsigned long int_fld; 7684 char *str_fld[max_num]; 7685 int i; 7686 unsigned size; 7687 int ret = -1; 7688 7689 p = strchr(p0, '('); 7690 if (p == NULL) 7691 return -1; 7692 ++p; 7693 p0 = strchr(p, ')'); 7694 if (p0 == NULL) 7695 return -1; 7696 7697 size = p0 - p; 7698 if (size >= sizeof(s)) 7699 return -1; 7700 7701 snprintf(s, sizeof(s), "%.*s", size, p); 7702 ret = rte_strsplit(s, sizeof(s), str_fld, max_num, ','); 7703 if (ret < 0 || ret > max_num) 7704 return -1; 7705 for (i = 0; i < ret; i++) { 7706 errno = 0; 7707 int_fld = strtoul(str_fld[i], &end, 0); 7708 if (errno != 0 || *end != '\0' || int_fld > UINT8_MAX) 7709 return -1; 7710 flexbytes[i] = (uint8_t)int_fld; 7711 } 7712 return ret; 7713 } 7714 7715 static uint16_t 7716 str2flowtype(char *string) 7717 { 7718 uint8_t i = 0; 7719 static const struct { 7720 char str[32]; 7721 uint16_t type; 7722 } flowtype_str[] = { 7723 {"raw", RTE_ETH_FLOW_RAW}, 7724 {"ipv4", RTE_ETH_FLOW_IPV4}, 7725 {"ipv4-frag", RTE_ETH_FLOW_FRAG_IPV4}, 7726 {"ipv4-tcp", RTE_ETH_FLOW_NONFRAG_IPV4_TCP}, 7727 {"ipv4-udp", RTE_ETH_FLOW_NONFRAG_IPV4_UDP}, 7728 {"ipv4-sctp", RTE_ETH_FLOW_NONFRAG_IPV4_SCTP}, 7729 {"ipv4-other", RTE_ETH_FLOW_NONFRAG_IPV4_OTHER}, 7730 {"ipv6", RTE_ETH_FLOW_IPV6}, 7731 {"ipv6-frag", RTE_ETH_FLOW_FRAG_IPV6}, 7732 {"ipv6-tcp", RTE_ETH_FLOW_NONFRAG_IPV6_TCP}, 7733 {"ipv6-udp", RTE_ETH_FLOW_NONFRAG_IPV6_UDP}, 7734 {"ipv6-sctp", RTE_ETH_FLOW_NONFRAG_IPV6_SCTP}, 7735 {"ipv6-other", RTE_ETH_FLOW_NONFRAG_IPV6_OTHER}, 7736 {"l2_payload", RTE_ETH_FLOW_L2_PAYLOAD}, 7737 }; 7738 7739 for (i = 0; i < RTE_DIM(flowtype_str); i++) { 7740 if (!strcmp(flowtype_str[i].str, string)) 7741 return flowtype_str[i].type; 7742 } 7743 return RTE_ETH_FLOW_UNKNOWN; 7744 } 7745 7746 #define IPV4_ADDR_TO_UINT(ip_addr, ip) \ 7747 do { \ 7748 if ((ip_addr).family == AF_INET) \ 7749 (ip) = (ip_addr).addr.ipv4.s_addr; \ 7750 else { \ 7751 printf("invalid parameter.\n"); \ 7752 return; \ 7753 } \ 7754 } while (0) 7755 7756 #define IPV6_ADDR_TO_ARRAY(ip_addr, ip) \ 7757 do { \ 7758 if ((ip_addr).family == AF_INET6) \ 7759 (void)rte_memcpy(&(ip), \ 7760 &((ip_addr).addr.ipv6), \ 7761 sizeof(struct in6_addr)); \ 7762 else { \ 7763 printf("invalid parameter.\n"); \ 7764 return; \ 7765 } \ 7766 } while (0) 7767 7768 static void 7769 cmd_flow_director_filter_parsed(void *parsed_result, 7770 __attribute__((unused)) struct cmdline *cl, 7771 __attribute__((unused)) void *data) 7772 { 7773 struct cmd_flow_director_result *res = parsed_result; 7774 struct rte_eth_fdir_filter entry; 7775 uint8_t flexbytes[RTE_ETH_FDIR_MAX_FLEXLEN]; 7776 int ret = 0; 7777 7778 ret = rte_eth_dev_filter_supported(res->port_id, RTE_ETH_FILTER_FDIR); 7779 if (ret < 0) { 7780 printf("flow director is not supported on port %u.\n", 7781 res->port_id); 7782 return; 7783 } 7784 memset(flexbytes, 0, sizeof(flexbytes)); 7785 memset(&entry, 0, sizeof(struct rte_eth_fdir_filter)); 7786 ret = parse_flexbytes(res->flexbytes_value, 7787 flexbytes, 7788 RTE_ETH_FDIR_MAX_FLEXLEN); 7789 if (ret < 0) { 7790 printf("error: Cannot parse flexbytes input.\n"); 7791 return; 7792 } 7793 7794 entry.input.flow_type = str2flowtype(res->flow_type); 7795 switch (entry.input.flow_type) { 7796 case RTE_ETH_FLOW_FRAG_IPV4: 7797 case RTE_ETH_FLOW_NONFRAG_IPV4_OTHER: 7798 case RTE_ETH_FLOW_NONFRAG_IPV4_UDP: 7799 case RTE_ETH_FLOW_NONFRAG_IPV4_TCP: 7800 IPV4_ADDR_TO_UINT(res->ip_dst, 7801 entry.input.flow.ip4_flow.dst_ip); 7802 IPV4_ADDR_TO_UINT(res->ip_src, 7803 entry.input.flow.ip4_flow.src_ip); 7804 /* need convert to big endian. */ 7805 entry.input.flow.udp4_flow.dst_port = 7806 rte_cpu_to_be_16(res->port_dst); 7807 entry.input.flow.udp4_flow.src_port = 7808 rte_cpu_to_be_16(res->port_src); 7809 break; 7810 case RTE_ETH_FLOW_NONFRAG_IPV4_SCTP: 7811 IPV4_ADDR_TO_UINT(res->ip_dst, 7812 entry.input.flow.sctp4_flow.ip.dst_ip); 7813 IPV4_ADDR_TO_UINT(res->ip_src, 7814 entry.input.flow.sctp4_flow.ip.src_ip); 7815 /* need convert to big endian. */ 7816 entry.input.flow.sctp4_flow.verify_tag = 7817 rte_cpu_to_be_32(res->verify_tag_value); 7818 break; 7819 case RTE_ETH_FLOW_FRAG_IPV6: 7820 case RTE_ETH_FLOW_NONFRAG_IPV6_OTHER: 7821 case RTE_ETH_FLOW_NONFRAG_IPV6_UDP: 7822 case RTE_ETH_FLOW_NONFRAG_IPV6_TCP: 7823 IPV6_ADDR_TO_ARRAY(res->ip_dst, 7824 entry.input.flow.ipv6_flow.dst_ip); 7825 IPV6_ADDR_TO_ARRAY(res->ip_src, 7826 entry.input.flow.ipv6_flow.src_ip); 7827 /* need convert to big endian. */ 7828 entry.input.flow.udp6_flow.dst_port = 7829 rte_cpu_to_be_16(res->port_dst); 7830 entry.input.flow.udp6_flow.src_port = 7831 rte_cpu_to_be_16(res->port_src); 7832 break; 7833 case RTE_ETH_FLOW_NONFRAG_IPV6_SCTP: 7834 IPV6_ADDR_TO_ARRAY(res->ip_dst, 7835 entry.input.flow.sctp6_flow.ip.dst_ip); 7836 IPV6_ADDR_TO_ARRAY(res->ip_src, 7837 entry.input.flow.sctp6_flow.ip.src_ip); 7838 /* need convert to big endian. */ 7839 entry.input.flow.sctp6_flow.verify_tag = 7840 rte_cpu_to_be_32(res->verify_tag_value); 7841 break; 7842 default: 7843 printf("invalid parameter.\n"); 7844 return; 7845 } 7846 (void)rte_memcpy(entry.input.flow_ext.flexbytes, 7847 flexbytes, 7848 RTE_ETH_FDIR_MAX_FLEXLEN); 7849 7850 entry.input.flow_ext.vlan_tci = rte_cpu_to_be_16(res->vlan_value); 7851 7852 entry.action.flex_off = 0; /*use 0 by default */ 7853 if (!strcmp(res->drop, "drop")) 7854 entry.action.behavior = RTE_ETH_FDIR_REJECT; 7855 else 7856 entry.action.behavior = RTE_ETH_FDIR_ACCEPT; 7857 /* set to report FD ID by default */ 7858 entry.action.report_status = RTE_ETH_FDIR_REPORT_ID; 7859 entry.action.rx_queue = res->queue_id; 7860 entry.soft_id = res->fd_id_value; 7861 if (!strcmp(res->ops, "add")) 7862 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_FDIR, 7863 RTE_ETH_FILTER_ADD, &entry); 7864 else if (!strcmp(res->ops, "del")) 7865 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_FDIR, 7866 RTE_ETH_FILTER_DELETE, &entry); 7867 else 7868 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_FDIR, 7869 RTE_ETH_FILTER_UPDATE, &entry); 7870 if (ret < 0) 7871 printf("flow director programming error: (%s)\n", 7872 strerror(-ret)); 7873 } 7874 7875 cmdline_parse_token_string_t cmd_flow_director_filter = 7876 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7877 flow_director_filter, "flow_director_filter"); 7878 cmdline_parse_token_num_t cmd_flow_director_port_id = 7879 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7880 port_id, UINT8); 7881 cmdline_parse_token_string_t cmd_flow_director_ops = 7882 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7883 ops, "add#del#update"); 7884 cmdline_parse_token_string_t cmd_flow_director_flow = 7885 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7886 flow, "flow"); 7887 cmdline_parse_token_string_t cmd_flow_director_flow_type = 7888 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7889 flow_type, "ipv4-other#ipv4-frag#ipv4-tcp#ipv4-udp#ipv4-sctp#" 7890 "ipv6-other#ipv6-frag#ipv6-tcp#ipv6-udp#ipv6-sctp"); 7891 cmdline_parse_token_string_t cmd_flow_director_src = 7892 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7893 src, "src"); 7894 cmdline_parse_token_ipaddr_t cmd_flow_director_ip_src = 7895 TOKEN_IPADDR_INITIALIZER(struct cmd_flow_director_result, 7896 ip_src); 7897 cmdline_parse_token_num_t cmd_flow_director_port_src = 7898 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7899 port_src, UINT16); 7900 cmdline_parse_token_string_t cmd_flow_director_dst = 7901 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7902 dst, "dst"); 7903 cmdline_parse_token_ipaddr_t cmd_flow_director_ip_dst = 7904 TOKEN_IPADDR_INITIALIZER(struct cmd_flow_director_result, 7905 ip_dst); 7906 cmdline_parse_token_num_t cmd_flow_director_port_dst = 7907 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7908 port_dst, UINT16); 7909 cmdline_parse_token_string_t cmd_flow_director_verify_tag = 7910 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7911 verify_tag, "verify_tag"); 7912 cmdline_parse_token_num_t cmd_flow_director_verify_tag_value = 7913 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7914 verify_tag_value, UINT32); 7915 cmdline_parse_token_string_t cmd_flow_director_vlan = 7916 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7917 vlan, "vlan"); 7918 cmdline_parse_token_num_t cmd_flow_director_vlan_value = 7919 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7920 vlan_value, UINT16); 7921 cmdline_parse_token_string_t cmd_flow_director_flexbytes = 7922 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7923 flexbytes, "flexbytes"); 7924 cmdline_parse_token_string_t cmd_flow_director_flexbytes_value = 7925 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7926 flexbytes_value, NULL); 7927 cmdline_parse_token_string_t cmd_flow_director_drop = 7928 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7929 drop, "drop#fwd"); 7930 cmdline_parse_token_string_t cmd_flow_director_queue = 7931 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7932 queue, "queue"); 7933 cmdline_parse_token_num_t cmd_flow_director_queue_id = 7934 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7935 queue_id, UINT16); 7936 cmdline_parse_token_string_t cmd_flow_director_fd_id = 7937 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_result, 7938 fd_id, "fd_id"); 7939 cmdline_parse_token_num_t cmd_flow_director_fd_id_value = 7940 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_result, 7941 fd_id_value, UINT32); 7942 7943 cmdline_parse_inst_t cmd_add_del_ip_flow_director = { 7944 .f = cmd_flow_director_filter_parsed, 7945 .data = NULL, 7946 .help_str = "add or delete an ip flow director entry on NIC", 7947 .tokens = { 7948 (void *)&cmd_flow_director_filter, 7949 (void *)&cmd_flow_director_port_id, 7950 (void *)&cmd_flow_director_ops, 7951 (void *)&cmd_flow_director_flow, 7952 (void *)&cmd_flow_director_flow_type, 7953 (void *)&cmd_flow_director_src, 7954 (void *)&cmd_flow_director_ip_src, 7955 (void *)&cmd_flow_director_dst, 7956 (void *)&cmd_flow_director_ip_dst, 7957 (void *)&cmd_flow_director_vlan, 7958 (void *)&cmd_flow_director_vlan_value, 7959 (void *)&cmd_flow_director_flexbytes, 7960 (void *)&cmd_flow_director_flexbytes_value, 7961 (void *)&cmd_flow_director_drop, 7962 (void *)&cmd_flow_director_queue, 7963 (void *)&cmd_flow_director_queue_id, 7964 (void *)&cmd_flow_director_fd_id, 7965 (void *)&cmd_flow_director_fd_id_value, 7966 NULL, 7967 }, 7968 }; 7969 7970 cmdline_parse_inst_t cmd_add_del_udp_flow_director = { 7971 .f = cmd_flow_director_filter_parsed, 7972 .data = NULL, 7973 .help_str = "add or delete an udp/tcp flow director entry on NIC", 7974 .tokens = { 7975 (void *)&cmd_flow_director_filter, 7976 (void *)&cmd_flow_director_port_id, 7977 (void *)&cmd_flow_director_ops, 7978 (void *)&cmd_flow_director_flow, 7979 (void *)&cmd_flow_director_flow_type, 7980 (void *)&cmd_flow_director_src, 7981 (void *)&cmd_flow_director_ip_src, 7982 (void *)&cmd_flow_director_port_src, 7983 (void *)&cmd_flow_director_dst, 7984 (void *)&cmd_flow_director_ip_dst, 7985 (void *)&cmd_flow_director_port_dst, 7986 (void *)&cmd_flow_director_vlan, 7987 (void *)&cmd_flow_director_vlan_value, 7988 (void *)&cmd_flow_director_flexbytes, 7989 (void *)&cmd_flow_director_flexbytes_value, 7990 (void *)&cmd_flow_director_drop, 7991 (void *)&cmd_flow_director_queue, 7992 (void *)&cmd_flow_director_queue_id, 7993 (void *)&cmd_flow_director_fd_id, 7994 (void *)&cmd_flow_director_fd_id_value, 7995 NULL, 7996 }, 7997 }; 7998 7999 cmdline_parse_inst_t cmd_add_del_sctp_flow_director = { 8000 .f = cmd_flow_director_filter_parsed, 8001 .data = NULL, 8002 .help_str = "add or delete a sctp flow director entry on NIC", 8003 .tokens = { 8004 (void *)&cmd_flow_director_filter, 8005 (void *)&cmd_flow_director_port_id, 8006 (void *)&cmd_flow_director_ops, 8007 (void *)&cmd_flow_director_flow, 8008 (void *)&cmd_flow_director_flow_type, 8009 (void *)&cmd_flow_director_src, 8010 (void *)&cmd_flow_director_ip_src, 8011 (void *)&cmd_flow_director_port_dst, 8012 (void *)&cmd_flow_director_dst, 8013 (void *)&cmd_flow_director_ip_dst, 8014 (void *)&cmd_flow_director_port_dst, 8015 (void *)&cmd_flow_director_verify_tag, 8016 (void *)&cmd_flow_director_verify_tag_value, 8017 (void *)&cmd_flow_director_vlan, 8018 (void *)&cmd_flow_director_vlan_value, 8019 (void *)&cmd_flow_director_flexbytes, 8020 (void *)&cmd_flow_director_flexbytes_value, 8021 (void *)&cmd_flow_director_drop, 8022 (void *)&cmd_flow_director_queue, 8023 (void *)&cmd_flow_director_queue_id, 8024 (void *)&cmd_flow_director_fd_id, 8025 (void *)&cmd_flow_director_fd_id_value, 8026 NULL, 8027 }, 8028 }; 8029 8030 struct cmd_flush_flow_director_result { 8031 cmdline_fixed_string_t flush_flow_director; 8032 uint8_t port_id; 8033 }; 8034 8035 cmdline_parse_token_string_t cmd_flush_flow_director_flush = 8036 TOKEN_STRING_INITIALIZER(struct cmd_flush_flow_director_result, 8037 flush_flow_director, "flush_flow_director"); 8038 cmdline_parse_token_num_t cmd_flush_flow_director_port_id = 8039 TOKEN_NUM_INITIALIZER(struct cmd_flush_flow_director_result, 8040 port_id, UINT8); 8041 8042 static void 8043 cmd_flush_flow_director_parsed(void *parsed_result, 8044 __attribute__((unused)) struct cmdline *cl, 8045 __attribute__((unused)) void *data) 8046 { 8047 struct cmd_flow_director_result *res = parsed_result; 8048 int ret = 0; 8049 8050 ret = rte_eth_dev_filter_supported(res->port_id, RTE_ETH_FILTER_FDIR); 8051 if (ret < 0) { 8052 printf("flow director is not supported on port %u.\n", 8053 res->port_id); 8054 return; 8055 } 8056 8057 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_FDIR, 8058 RTE_ETH_FILTER_FLUSH, NULL); 8059 if (ret < 0) 8060 printf("flow director table flushing error: (%s)\n", 8061 strerror(-ret)); 8062 } 8063 8064 cmdline_parse_inst_t cmd_flush_flow_director = { 8065 .f = cmd_flush_flow_director_parsed, 8066 .data = NULL, 8067 .help_str = "flush all flow director entries of a device on NIC", 8068 .tokens = { 8069 (void *)&cmd_flush_flow_director_flush, 8070 (void *)&cmd_flush_flow_director_port_id, 8071 NULL, 8072 }, 8073 }; 8074 8075 /* *** deal with flow director mask *** */ 8076 struct cmd_flow_director_mask_result { 8077 cmdline_fixed_string_t flow_director_mask; 8078 uint8_t port_id; 8079 cmdline_fixed_string_t vlan; 8080 uint16_t vlan_value; 8081 cmdline_fixed_string_t src_mask; 8082 cmdline_ipaddr_t ipv4_src; 8083 cmdline_ipaddr_t ipv6_src; 8084 uint16_t port_src; 8085 cmdline_fixed_string_t dst_mask; 8086 cmdline_ipaddr_t ipv4_dst; 8087 cmdline_ipaddr_t ipv6_dst; 8088 uint16_t port_dst; 8089 }; 8090 8091 static void 8092 cmd_flow_director_mask_parsed(void *parsed_result, 8093 __attribute__((unused)) struct cmdline *cl, 8094 __attribute__((unused)) void *data) 8095 { 8096 struct cmd_flow_director_mask_result *res = parsed_result; 8097 struct rte_eth_fdir_masks *mask; 8098 struct rte_port *port; 8099 8100 if (res->port_id > nb_ports) { 8101 printf("Invalid port, range is [0, %d]\n", nb_ports - 1); 8102 return; 8103 } 8104 8105 port = &ports[res->port_id]; 8106 /** Check if the port is not started **/ 8107 if (port->port_status != RTE_PORT_STOPPED) { 8108 printf("Please stop port %d first\n", res->port_id); 8109 return; 8110 } 8111 mask = &port->dev_conf.fdir_conf.mask; 8112 8113 mask->vlan_tci_mask = res->vlan_value; 8114 IPV4_ADDR_TO_UINT(res->ipv4_src, mask->ipv4_mask.src_ip); 8115 IPV4_ADDR_TO_UINT(res->ipv4_dst, mask->ipv4_mask.dst_ip); 8116 IPV6_ADDR_TO_ARRAY(res->ipv6_src, mask->ipv6_mask.src_ip); 8117 IPV6_ADDR_TO_ARRAY(res->ipv6_dst, mask->ipv6_mask.dst_ip); 8118 mask->src_port_mask = res->port_src; 8119 mask->dst_port_mask = res->port_dst; 8120 8121 cmd_reconfig_device_queue(res->port_id, 1, 1); 8122 } 8123 8124 cmdline_parse_token_string_t cmd_flow_director_mask = 8125 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_mask_result, 8126 flow_director_mask, "flow_director_mask"); 8127 cmdline_parse_token_num_t cmd_flow_director_mask_port_id = 8128 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_mask_result, 8129 port_id, UINT8); 8130 cmdline_parse_token_string_t cmd_flow_director_mask_vlan = 8131 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_mask_result, 8132 vlan, "vlan"); 8133 cmdline_parse_token_num_t cmd_flow_director_mask_vlan_value = 8134 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_mask_result, 8135 vlan_value, UINT16); 8136 cmdline_parse_token_string_t cmd_flow_director_mask_src = 8137 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_mask_result, 8138 src_mask, "src_mask"); 8139 cmdline_parse_token_ipaddr_t cmd_flow_director_mask_ipv4_src = 8140 TOKEN_IPADDR_INITIALIZER(struct cmd_flow_director_mask_result, 8141 ipv4_src); 8142 cmdline_parse_token_ipaddr_t cmd_flow_director_mask_ipv6_src = 8143 TOKEN_IPADDR_INITIALIZER(struct cmd_flow_director_mask_result, 8144 ipv6_src); 8145 cmdline_parse_token_num_t cmd_flow_director_mask_port_src = 8146 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_mask_result, 8147 port_src, UINT16); 8148 cmdline_parse_token_string_t cmd_flow_director_mask_dst = 8149 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_mask_result, 8150 dst_mask, "dst_mask"); 8151 cmdline_parse_token_ipaddr_t cmd_flow_director_mask_ipv4_dst = 8152 TOKEN_IPADDR_INITIALIZER(struct cmd_flow_director_mask_result, 8153 ipv4_dst); 8154 cmdline_parse_token_ipaddr_t cmd_flow_director_mask_ipv6_dst = 8155 TOKEN_IPADDR_INITIALIZER(struct cmd_flow_director_mask_result, 8156 ipv6_dst); 8157 cmdline_parse_token_num_t cmd_flow_director_mask_port_dst = 8158 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_mask_result, 8159 port_dst, UINT16); 8160 cmdline_parse_inst_t cmd_set_flow_director_mask = { 8161 .f = cmd_flow_director_mask_parsed, 8162 .data = NULL, 8163 .help_str = "set flow director's mask on NIC", 8164 .tokens = { 8165 (void *)&cmd_flow_director_mask, 8166 (void *)&cmd_flow_director_mask_port_id, 8167 (void *)&cmd_flow_director_mask_vlan, 8168 (void *)&cmd_flow_director_mask_vlan_value, 8169 (void *)&cmd_flow_director_mask_src, 8170 (void *)&cmd_flow_director_mask_ipv4_src, 8171 (void *)&cmd_flow_director_mask_ipv6_src, 8172 (void *)&cmd_flow_director_mask_port_src, 8173 (void *)&cmd_flow_director_mask_dst, 8174 (void *)&cmd_flow_director_mask_ipv4_dst, 8175 (void *)&cmd_flow_director_mask_ipv6_dst, 8176 (void *)&cmd_flow_director_mask_port_dst, 8177 NULL, 8178 }, 8179 }; 8180 8181 /* *** deal with flow director mask on flexible payload *** */ 8182 struct cmd_flow_director_flex_mask_result { 8183 cmdline_fixed_string_t flow_director_flexmask; 8184 uint8_t port_id; 8185 cmdline_fixed_string_t flow; 8186 cmdline_fixed_string_t flow_type; 8187 cmdline_fixed_string_t mask; 8188 }; 8189 8190 static void 8191 cmd_flow_director_flex_mask_parsed(void *parsed_result, 8192 __attribute__((unused)) struct cmdline *cl, 8193 __attribute__((unused)) void *data) 8194 { 8195 struct cmd_flow_director_flex_mask_result *res = parsed_result; 8196 struct rte_eth_fdir_info fdir_info; 8197 struct rte_eth_fdir_flex_mask flex_mask; 8198 struct rte_port *port; 8199 uint32_t flow_type_mask; 8200 uint16_t i; 8201 int ret; 8202 8203 if (res->port_id > nb_ports) { 8204 printf("Invalid port, range is [0, %d]\n", nb_ports - 1); 8205 return; 8206 } 8207 8208 port = &ports[res->port_id]; 8209 /** Check if the port is not started **/ 8210 if (port->port_status != RTE_PORT_STOPPED) { 8211 printf("Please stop port %d first\n", res->port_id); 8212 return; 8213 } 8214 8215 memset(&flex_mask, 0, sizeof(struct rte_eth_fdir_flex_mask)); 8216 ret = parse_flexbytes(res->mask, 8217 flex_mask.mask, 8218 RTE_ETH_FDIR_MAX_FLEXLEN); 8219 if (ret < 0) { 8220 printf("error: Cannot parse mask input.\n"); 8221 return; 8222 } 8223 8224 memset(&fdir_info, 0, sizeof(fdir_info)); 8225 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_FDIR, 8226 RTE_ETH_FILTER_INFO, &fdir_info); 8227 if (ret < 0) { 8228 printf("Cannot get FDir filter info\n"); 8229 return; 8230 } 8231 8232 flow_type_mask = fdir_info.flow_types_mask[0]; 8233 if (!strcmp(res->flow_type, "all")) { 8234 if (!flow_type_mask) { 8235 printf("No flow type supported\n"); 8236 return; 8237 } 8238 for (i = RTE_ETH_FLOW_UNKNOWN; i < RTE_ETH_FLOW_MAX; i++) { 8239 if (flow_type_mask & (1 << i)) { 8240 flex_mask.flow_type = i; 8241 fdir_set_flex_mask(res->port_id, &flex_mask); 8242 } 8243 } 8244 cmd_reconfig_device_queue(res->port_id, 1, 1); 8245 return; 8246 } 8247 flex_mask.flow_type = str2flowtype(res->flow_type); 8248 if (!(flow_type_mask & (1 << flex_mask.flow_type))) { 8249 printf("Flow type %s not supported on port %d\n", 8250 res->flow_type, res->port_id); 8251 return; 8252 } 8253 fdir_set_flex_mask(res->port_id, &flex_mask); 8254 cmd_reconfig_device_queue(res->port_id, 1, 1); 8255 } 8256 8257 cmdline_parse_token_string_t cmd_flow_director_flexmask = 8258 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flex_mask_result, 8259 flow_director_flexmask, 8260 "flow_director_flex_mask"); 8261 cmdline_parse_token_num_t cmd_flow_director_flexmask_port_id = 8262 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_flex_mask_result, 8263 port_id, UINT8); 8264 cmdline_parse_token_string_t cmd_flow_director_flexmask_flow = 8265 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flex_mask_result, 8266 flow, "flow"); 8267 cmdline_parse_token_string_t cmd_flow_director_flexmask_flow_type = 8268 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flex_mask_result, 8269 flow_type, "raw#ipv4-other#ipv4-frag#ipv4-tcp#ipv4-udp#ipv4-sctp#" 8270 "ipv6-other#ipv6-frag#ipv6-tcp#ipv6-udp#ipv6-sctp#all"); 8271 cmdline_parse_token_string_t cmd_flow_director_flexmask_mask = 8272 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flex_mask_result, 8273 mask, NULL); 8274 8275 cmdline_parse_inst_t cmd_set_flow_director_flex_mask = { 8276 .f = cmd_flow_director_flex_mask_parsed, 8277 .data = NULL, 8278 .help_str = "set flow director's flex mask on NIC", 8279 .tokens = { 8280 (void *)&cmd_flow_director_flexmask, 8281 (void *)&cmd_flow_director_flexmask_port_id, 8282 (void *)&cmd_flow_director_flexmask_flow, 8283 (void *)&cmd_flow_director_flexmask_flow_type, 8284 (void *)&cmd_flow_director_flexmask_mask, 8285 NULL, 8286 }, 8287 }; 8288 8289 /* *** deal with flow director flexible payload configuration *** */ 8290 struct cmd_flow_director_flexpayload_result { 8291 cmdline_fixed_string_t flow_director_flexpayload; 8292 uint8_t port_id; 8293 cmdline_fixed_string_t payload_layer; 8294 cmdline_fixed_string_t payload_cfg; 8295 }; 8296 8297 static inline int 8298 parse_offsets(const char *q_arg, uint16_t *offsets, uint16_t max_num) 8299 { 8300 char s[256]; 8301 const char *p, *p0 = q_arg; 8302 char *end; 8303 unsigned long int_fld; 8304 char *str_fld[max_num]; 8305 int i; 8306 unsigned size; 8307 int ret = -1; 8308 8309 p = strchr(p0, '('); 8310 if (p == NULL) 8311 return -1; 8312 ++p; 8313 p0 = strchr(p, ')'); 8314 if (p0 == NULL) 8315 return -1; 8316 8317 size = p0 - p; 8318 if (size >= sizeof(s)) 8319 return -1; 8320 8321 snprintf(s, sizeof(s), "%.*s", size, p); 8322 ret = rte_strsplit(s, sizeof(s), str_fld, max_num, ','); 8323 if (ret < 0 || ret > max_num) 8324 return -1; 8325 for (i = 0; i < ret; i++) { 8326 errno = 0; 8327 int_fld = strtoul(str_fld[i], &end, 0); 8328 if (errno != 0 || *end != '\0' || int_fld > UINT16_MAX) 8329 return -1; 8330 offsets[i] = (uint16_t)int_fld; 8331 } 8332 return ret; 8333 } 8334 8335 static void 8336 cmd_flow_director_flxpld_parsed(void *parsed_result, 8337 __attribute__((unused)) struct cmdline *cl, 8338 __attribute__((unused)) void *data) 8339 { 8340 struct cmd_flow_director_flexpayload_result *res = parsed_result; 8341 struct rte_eth_flex_payload_cfg flex_cfg; 8342 struct rte_port *port; 8343 int ret = 0; 8344 8345 if (res->port_id > nb_ports) { 8346 printf("Invalid port, range is [0, %d]\n", nb_ports - 1); 8347 return; 8348 } 8349 8350 port = &ports[res->port_id]; 8351 /** Check if the port is not started **/ 8352 if (port->port_status != RTE_PORT_STOPPED) { 8353 printf("Please stop port %d first\n", res->port_id); 8354 return; 8355 } 8356 8357 memset(&flex_cfg, 0, sizeof(struct rte_eth_flex_payload_cfg)); 8358 8359 if (!strcmp(res->payload_layer, "raw")) 8360 flex_cfg.type = RTE_ETH_RAW_PAYLOAD; 8361 else if (!strcmp(res->payload_layer, "l2")) 8362 flex_cfg.type = RTE_ETH_L2_PAYLOAD; 8363 else if (!strcmp(res->payload_layer, "l3")) 8364 flex_cfg.type = RTE_ETH_L3_PAYLOAD; 8365 else if (!strcmp(res->payload_layer, "l4")) 8366 flex_cfg.type = RTE_ETH_L4_PAYLOAD; 8367 8368 ret = parse_offsets(res->payload_cfg, flex_cfg.src_offset, 8369 RTE_ETH_FDIR_MAX_FLEXLEN); 8370 if (ret < 0) { 8371 printf("error: Cannot parse flex payload input.\n"); 8372 return; 8373 } 8374 8375 fdir_set_flex_payload(res->port_id, &flex_cfg); 8376 cmd_reconfig_device_queue(res->port_id, 1, 1); 8377 } 8378 8379 cmdline_parse_token_string_t cmd_flow_director_flexpayload = 8380 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flexpayload_result, 8381 flow_director_flexpayload, 8382 "flow_director_flex_payload"); 8383 cmdline_parse_token_num_t cmd_flow_director_flexpayload_port_id = 8384 TOKEN_NUM_INITIALIZER(struct cmd_flow_director_flexpayload_result, 8385 port_id, UINT8); 8386 cmdline_parse_token_string_t cmd_flow_director_flexpayload_payload_layer = 8387 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flexpayload_result, 8388 payload_layer, "raw#l2#l3#l4"); 8389 cmdline_parse_token_string_t cmd_flow_director_flexpayload_payload_cfg = 8390 TOKEN_STRING_INITIALIZER(struct cmd_flow_director_flexpayload_result, 8391 payload_cfg, NULL); 8392 8393 cmdline_parse_inst_t cmd_set_flow_director_flex_payload = { 8394 .f = cmd_flow_director_flxpld_parsed, 8395 .data = NULL, 8396 .help_str = "set flow director's flex payload on NIC", 8397 .tokens = { 8398 (void *)&cmd_flow_director_flexpayload, 8399 (void *)&cmd_flow_director_flexpayload_port_id, 8400 (void *)&cmd_flow_director_flexpayload_payload_layer, 8401 (void *)&cmd_flow_director_flexpayload_payload_cfg, 8402 NULL, 8403 }, 8404 }; 8405 8406 /* *** Classification Filters Control *** */ 8407 /* *** Get symmetric hash enable per port *** */ 8408 struct cmd_get_sym_hash_ena_per_port_result { 8409 cmdline_fixed_string_t get_sym_hash_ena_per_port; 8410 uint8_t port_id; 8411 }; 8412 8413 static void 8414 cmd_get_sym_hash_per_port_parsed(void *parsed_result, 8415 __rte_unused struct cmdline *cl, 8416 __rte_unused void *data) 8417 { 8418 struct cmd_get_sym_hash_ena_per_port_result *res = parsed_result; 8419 struct rte_eth_hash_filter_info info; 8420 int ret; 8421 8422 if (rte_eth_dev_filter_supported(res->port_id, 8423 RTE_ETH_FILTER_HASH) < 0) { 8424 printf("RTE_ETH_FILTER_HASH not supported on port: %d\n", 8425 res->port_id); 8426 return; 8427 } 8428 8429 memset(&info, 0, sizeof(info)); 8430 info.info_type = RTE_ETH_HASH_FILTER_SYM_HASH_ENA_PER_PORT; 8431 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_HASH, 8432 RTE_ETH_FILTER_GET, &info); 8433 8434 if (ret < 0) { 8435 printf("Cannot get symmetric hash enable per port " 8436 "on port %u\n", res->port_id); 8437 return; 8438 } 8439 8440 printf("Symmetric hash is %s on port %u\n", info.info.enable ? 8441 "enabled" : "disabled", res->port_id); 8442 } 8443 8444 cmdline_parse_token_string_t cmd_get_sym_hash_ena_per_port_all = 8445 TOKEN_STRING_INITIALIZER(struct cmd_get_sym_hash_ena_per_port_result, 8446 get_sym_hash_ena_per_port, "get_sym_hash_ena_per_port"); 8447 cmdline_parse_token_num_t cmd_get_sym_hash_ena_per_port_port_id = 8448 TOKEN_NUM_INITIALIZER(struct cmd_get_sym_hash_ena_per_port_result, 8449 port_id, UINT8); 8450 8451 cmdline_parse_inst_t cmd_get_sym_hash_ena_per_port = { 8452 .f = cmd_get_sym_hash_per_port_parsed, 8453 .data = NULL, 8454 .help_str = "get_sym_hash_ena_per_port port_id", 8455 .tokens = { 8456 (void *)&cmd_get_sym_hash_ena_per_port_all, 8457 (void *)&cmd_get_sym_hash_ena_per_port_port_id, 8458 NULL, 8459 }, 8460 }; 8461 8462 /* *** Set symmetric hash enable per port *** */ 8463 struct cmd_set_sym_hash_ena_per_port_result { 8464 cmdline_fixed_string_t set_sym_hash_ena_per_port; 8465 cmdline_fixed_string_t enable; 8466 uint8_t port_id; 8467 }; 8468 8469 static void 8470 cmd_set_sym_hash_per_port_parsed(void *parsed_result, 8471 __rte_unused struct cmdline *cl, 8472 __rte_unused void *data) 8473 { 8474 struct cmd_set_sym_hash_ena_per_port_result *res = parsed_result; 8475 struct rte_eth_hash_filter_info info; 8476 int ret; 8477 8478 if (rte_eth_dev_filter_supported(res->port_id, 8479 RTE_ETH_FILTER_HASH) < 0) { 8480 printf("RTE_ETH_FILTER_HASH not supported on port: %d\n", 8481 res->port_id); 8482 return; 8483 } 8484 8485 memset(&info, 0, sizeof(info)); 8486 info.info_type = RTE_ETH_HASH_FILTER_SYM_HASH_ENA_PER_PORT; 8487 if (!strcmp(res->enable, "enable")) 8488 info.info.enable = 1; 8489 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_HASH, 8490 RTE_ETH_FILTER_SET, &info); 8491 if (ret < 0) { 8492 printf("Cannot set symmetric hash enable per port on " 8493 "port %u\n", res->port_id); 8494 return; 8495 } 8496 printf("Symmetric hash has been set to %s on port %u\n", 8497 res->enable, res->port_id); 8498 } 8499 8500 cmdline_parse_token_string_t cmd_set_sym_hash_ena_per_port_all = 8501 TOKEN_STRING_INITIALIZER(struct cmd_set_sym_hash_ena_per_port_result, 8502 set_sym_hash_ena_per_port, "set_sym_hash_ena_per_port"); 8503 cmdline_parse_token_num_t cmd_set_sym_hash_ena_per_port_port_id = 8504 TOKEN_NUM_INITIALIZER(struct cmd_set_sym_hash_ena_per_port_result, 8505 port_id, UINT8); 8506 cmdline_parse_token_string_t cmd_set_sym_hash_ena_per_port_enable = 8507 TOKEN_STRING_INITIALIZER(struct cmd_set_sym_hash_ena_per_port_result, 8508 enable, "enable#disable"); 8509 8510 cmdline_parse_inst_t cmd_set_sym_hash_ena_per_port = { 8511 .f = cmd_set_sym_hash_per_port_parsed, 8512 .data = NULL, 8513 .help_str = "set_sym_hash_ena_per_port port_id enable|disable", 8514 .tokens = { 8515 (void *)&cmd_set_sym_hash_ena_per_port_all, 8516 (void *)&cmd_set_sym_hash_ena_per_port_port_id, 8517 (void *)&cmd_set_sym_hash_ena_per_port_enable, 8518 NULL, 8519 }, 8520 }; 8521 8522 /* Get global config of hash function */ 8523 struct cmd_get_hash_global_config_result { 8524 cmdline_fixed_string_t get_hash_global_config; 8525 uint8_t port_id; 8526 }; 8527 8528 static char * 8529 flowtype_to_str(uint16_t ftype) 8530 { 8531 uint16_t i; 8532 static struct { 8533 char str[16]; 8534 uint16_t ftype; 8535 } ftype_table[] = { 8536 {"ipv4", RTE_ETH_FLOW_IPV4}, 8537 {"ipv4-frag", RTE_ETH_FLOW_FRAG_IPV4}, 8538 {"ipv4-tcp", RTE_ETH_FLOW_NONFRAG_IPV4_TCP}, 8539 {"ipv4-udp", RTE_ETH_FLOW_NONFRAG_IPV4_UDP}, 8540 {"ipv4-sctp", RTE_ETH_FLOW_NONFRAG_IPV4_SCTP}, 8541 {"ipv4-other", RTE_ETH_FLOW_NONFRAG_IPV4_OTHER}, 8542 {"ipv6", RTE_ETH_FLOW_IPV6}, 8543 {"ipv6-frag", RTE_ETH_FLOW_FRAG_IPV6}, 8544 {"ipv6-tcp", RTE_ETH_FLOW_NONFRAG_IPV6_TCP}, 8545 {"ipv6-udp", RTE_ETH_FLOW_NONFRAG_IPV6_UDP}, 8546 {"ipv6-sctp", RTE_ETH_FLOW_NONFRAG_IPV6_SCTP}, 8547 {"ipv6-other", RTE_ETH_FLOW_NONFRAG_IPV6_OTHER}, 8548 {"l2_payload", RTE_ETH_FLOW_L2_PAYLOAD}, 8549 }; 8550 8551 for (i = 0; i < RTE_DIM(ftype_table); i++) { 8552 if (ftype_table[i].ftype == ftype) 8553 return ftype_table[i].str; 8554 } 8555 8556 return NULL; 8557 } 8558 8559 static void 8560 cmd_get_hash_global_config_parsed(void *parsed_result, 8561 __rte_unused struct cmdline *cl, 8562 __rte_unused void *data) 8563 { 8564 struct cmd_get_hash_global_config_result *res = parsed_result; 8565 struct rte_eth_hash_filter_info info; 8566 uint32_t idx, offset; 8567 uint16_t i; 8568 char *str; 8569 int ret; 8570 8571 if (rte_eth_dev_filter_supported(res->port_id, 8572 RTE_ETH_FILTER_HASH) < 0) { 8573 printf("RTE_ETH_FILTER_HASH not supported on port %d\n", 8574 res->port_id); 8575 return; 8576 } 8577 8578 memset(&info, 0, sizeof(info)); 8579 info.info_type = RTE_ETH_HASH_FILTER_GLOBAL_CONFIG; 8580 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_HASH, 8581 RTE_ETH_FILTER_GET, &info); 8582 if (ret < 0) { 8583 printf("Cannot get hash global configurations by port %d\n", 8584 res->port_id); 8585 return; 8586 } 8587 8588 switch (info.info.global_conf.hash_func) { 8589 case RTE_ETH_HASH_FUNCTION_TOEPLITZ: 8590 printf("Hash function is Toeplitz\n"); 8591 break; 8592 case RTE_ETH_HASH_FUNCTION_SIMPLE_XOR: 8593 printf("Hash function is Simple XOR\n"); 8594 break; 8595 default: 8596 printf("Unknown hash function\n"); 8597 break; 8598 } 8599 8600 for (i = 0; i < RTE_ETH_FLOW_MAX; i++) { 8601 idx = i / UINT32_BIT; 8602 offset = i % UINT32_BIT; 8603 if (!(info.info.global_conf.valid_bit_mask[idx] & 8604 (1UL << offset))) 8605 continue; 8606 str = flowtype_to_str(i); 8607 if (!str) 8608 continue; 8609 printf("Symmetric hash is %s globally for flow type %s " 8610 "by port %d\n", 8611 ((info.info.global_conf.sym_hash_enable_mask[idx] & 8612 (1UL << offset)) ? "enabled" : "disabled"), str, 8613 res->port_id); 8614 } 8615 } 8616 8617 cmdline_parse_token_string_t cmd_get_hash_global_config_all = 8618 TOKEN_STRING_INITIALIZER(struct cmd_get_hash_global_config_result, 8619 get_hash_global_config, "get_hash_global_config"); 8620 cmdline_parse_token_num_t cmd_get_hash_global_config_port_id = 8621 TOKEN_NUM_INITIALIZER(struct cmd_get_hash_global_config_result, 8622 port_id, UINT8); 8623 8624 cmdline_parse_inst_t cmd_get_hash_global_config = { 8625 .f = cmd_get_hash_global_config_parsed, 8626 .data = NULL, 8627 .help_str = "get_hash_global_config port_id", 8628 .tokens = { 8629 (void *)&cmd_get_hash_global_config_all, 8630 (void *)&cmd_get_hash_global_config_port_id, 8631 NULL, 8632 }, 8633 }; 8634 8635 /* Set global config of hash function */ 8636 struct cmd_set_hash_global_config_result { 8637 cmdline_fixed_string_t set_hash_global_config; 8638 uint8_t port_id; 8639 cmdline_fixed_string_t hash_func; 8640 cmdline_fixed_string_t flow_type; 8641 cmdline_fixed_string_t enable; 8642 }; 8643 8644 static void 8645 cmd_set_hash_global_config_parsed(void *parsed_result, 8646 __rte_unused struct cmdline *cl, 8647 __rte_unused void *data) 8648 { 8649 struct cmd_set_hash_global_config_result *res = parsed_result; 8650 struct rte_eth_hash_filter_info info; 8651 uint32_t ftype, idx, offset; 8652 int ret; 8653 8654 if (rte_eth_dev_filter_supported(res->port_id, 8655 RTE_ETH_FILTER_HASH) < 0) { 8656 printf("RTE_ETH_FILTER_HASH not supported on port %d\n", 8657 res->port_id); 8658 return; 8659 } 8660 memset(&info, 0, sizeof(info)); 8661 info.info_type = RTE_ETH_HASH_FILTER_GLOBAL_CONFIG; 8662 if (!strcmp(res->hash_func, "toeplitz")) 8663 info.info.global_conf.hash_func = 8664 RTE_ETH_HASH_FUNCTION_TOEPLITZ; 8665 else if (!strcmp(res->hash_func, "simple_xor")) 8666 info.info.global_conf.hash_func = 8667 RTE_ETH_HASH_FUNCTION_SIMPLE_XOR; 8668 else if (!strcmp(res->hash_func, "default")) 8669 info.info.global_conf.hash_func = 8670 RTE_ETH_HASH_FUNCTION_DEFAULT; 8671 8672 ftype = str2flowtype(res->flow_type); 8673 idx = ftype / (CHAR_BIT * sizeof(uint32_t)); 8674 offset = ftype % (CHAR_BIT * sizeof(uint32_t)); 8675 info.info.global_conf.valid_bit_mask[idx] |= (1UL << offset); 8676 if (!strcmp(res->enable, "enable")) 8677 info.info.global_conf.sym_hash_enable_mask[idx] |= 8678 (1UL << offset); 8679 ret = rte_eth_dev_filter_ctrl(res->port_id, RTE_ETH_FILTER_HASH, 8680 RTE_ETH_FILTER_SET, &info); 8681 if (ret < 0) 8682 printf("Cannot set global hash configurations by port %d\n", 8683 res->port_id); 8684 else 8685 printf("Global hash configurations have been set " 8686 "succcessfully by port %d\n", res->port_id); 8687 } 8688 8689 cmdline_parse_token_string_t cmd_set_hash_global_config_all = 8690 TOKEN_STRING_INITIALIZER(struct cmd_set_hash_global_config_result, 8691 set_hash_global_config, "set_hash_global_config"); 8692 cmdline_parse_token_num_t cmd_set_hash_global_config_port_id = 8693 TOKEN_NUM_INITIALIZER(struct cmd_set_hash_global_config_result, 8694 port_id, UINT8); 8695 cmdline_parse_token_string_t cmd_set_hash_global_config_hash_func = 8696 TOKEN_STRING_INITIALIZER(struct cmd_set_hash_global_config_result, 8697 hash_func, "toeplitz#simple_xor#default"); 8698 cmdline_parse_token_string_t cmd_set_hash_global_config_flow_type = 8699 TOKEN_STRING_INITIALIZER(struct cmd_set_hash_global_config_result, 8700 flow_type, 8701 "ipv4#ipv4-frag#ipv4-tcp#ipv4-udp#ipv4-sctp#ipv4-other#ipv6#" 8702 "ipv6-frag#ipv6-tcp#ipv6-udp#ipv6-sctp#ipv6-other#l2_payload"); 8703 cmdline_parse_token_string_t cmd_set_hash_global_config_enable = 8704 TOKEN_STRING_INITIALIZER(struct cmd_set_hash_global_config_result, 8705 enable, "enable#disable"); 8706 8707 cmdline_parse_inst_t cmd_set_hash_global_config = { 8708 .f = cmd_set_hash_global_config_parsed, 8709 .data = NULL, 8710 .help_str = "set_hash_global_config port_id " 8711 "toeplitz|simple_xor|default " 8712 "ipv4|ipv4-frag|ipv4-tcp|ipv4-udp|ipv4-sctp|ipv4-other|ipv6|" 8713 "ipv6-frag|ipv6-tcp|ipv6-udp|ipv6-sctp|ipv6-other|l2_payload " 8714 "enable|disable", 8715 .tokens = { 8716 (void *)&cmd_set_hash_global_config_all, 8717 (void *)&cmd_set_hash_global_config_port_id, 8718 (void *)&cmd_set_hash_global_config_hash_func, 8719 (void *)&cmd_set_hash_global_config_flow_type, 8720 (void *)&cmd_set_hash_global_config_enable, 8721 NULL, 8722 }, 8723 }; 8724 8725 /* ******************************************************************************** */ 8726 8727 /* list of instructions */ 8728 cmdline_parse_ctx_t main_ctx[] = { 8729 (cmdline_parse_inst_t *)&cmd_help_brief, 8730 (cmdline_parse_inst_t *)&cmd_help_long, 8731 (cmdline_parse_inst_t *)&cmd_quit, 8732 (cmdline_parse_inst_t *)&cmd_showport, 8733 (cmdline_parse_inst_t *)&cmd_showportall, 8734 (cmdline_parse_inst_t *)&cmd_showcfg, 8735 (cmdline_parse_inst_t *)&cmd_start, 8736 (cmdline_parse_inst_t *)&cmd_start_tx_first, 8737 (cmdline_parse_inst_t *)&cmd_set_link_up, 8738 (cmdline_parse_inst_t *)&cmd_set_link_down, 8739 (cmdline_parse_inst_t *)&cmd_reset, 8740 (cmdline_parse_inst_t *)&cmd_set_numbers, 8741 (cmdline_parse_inst_t *)&cmd_set_txpkts, 8742 (cmdline_parse_inst_t *)&cmd_set_fwd_list, 8743 (cmdline_parse_inst_t *)&cmd_set_fwd_mask, 8744 (cmdline_parse_inst_t *)&cmd_set_fwd_mode, 8745 (cmdline_parse_inst_t *)&cmd_set_burst_tx_retry, 8746 (cmdline_parse_inst_t *)&cmd_set_promisc_mode_one, 8747 (cmdline_parse_inst_t *)&cmd_set_promisc_mode_all, 8748 (cmdline_parse_inst_t *)&cmd_set_allmulti_mode_one, 8749 (cmdline_parse_inst_t *)&cmd_set_allmulti_mode_all, 8750 (cmdline_parse_inst_t *)&cmd_set_flush_rx, 8751 (cmdline_parse_inst_t *)&cmd_set_link_check, 8752 #ifdef RTE_NIC_BYPASS 8753 (cmdline_parse_inst_t *)&cmd_set_bypass_mode, 8754 (cmdline_parse_inst_t *)&cmd_set_bypass_event, 8755 (cmdline_parse_inst_t *)&cmd_set_bypass_timeout, 8756 (cmdline_parse_inst_t *)&cmd_show_bypass_config, 8757 #endif 8758 #ifdef RTE_LIBRTE_PMD_BOND 8759 (cmdline_parse_inst_t *) &cmd_set_bonding_mode, 8760 (cmdline_parse_inst_t *) &cmd_show_bonding_config, 8761 (cmdline_parse_inst_t *) &cmd_set_bonding_primary, 8762 (cmdline_parse_inst_t *) &cmd_add_bonding_slave, 8763 (cmdline_parse_inst_t *) &cmd_remove_bonding_slave, 8764 (cmdline_parse_inst_t *) &cmd_create_bonded_device, 8765 (cmdline_parse_inst_t *) &cmd_set_bond_mac_addr, 8766 (cmdline_parse_inst_t *) &cmd_set_balance_xmit_policy, 8767 (cmdline_parse_inst_t *) &cmd_set_bond_mon_period, 8768 #endif 8769 (cmdline_parse_inst_t *)&cmd_vlan_offload, 8770 (cmdline_parse_inst_t *)&cmd_vlan_tpid, 8771 (cmdline_parse_inst_t *)&cmd_rx_vlan_filter_all, 8772 (cmdline_parse_inst_t *)&cmd_rx_vlan_filter, 8773 (cmdline_parse_inst_t *)&cmd_tx_vlan_set, 8774 (cmdline_parse_inst_t *)&cmd_tx_vlan_reset, 8775 (cmdline_parse_inst_t *)&cmd_tx_vlan_set_pvid, 8776 (cmdline_parse_inst_t *)&cmd_csum_set, 8777 (cmdline_parse_inst_t *)&cmd_csum_show, 8778 (cmdline_parse_inst_t *)&cmd_csum_tunnel, 8779 (cmdline_parse_inst_t *)&cmd_tso_set, 8780 (cmdline_parse_inst_t *)&cmd_tso_show, 8781 (cmdline_parse_inst_t *)&cmd_link_flow_control_set, 8782 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_rx, 8783 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_tx, 8784 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_hw, 8785 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_lw, 8786 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_pt, 8787 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_xon, 8788 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_macfwd, 8789 (cmdline_parse_inst_t *)&cmd_link_flow_control_set_autoneg, 8790 (cmdline_parse_inst_t *)&cmd_priority_flow_control_set, 8791 (cmdline_parse_inst_t *)&cmd_config_dcb, 8792 (cmdline_parse_inst_t *)&cmd_read_reg, 8793 (cmdline_parse_inst_t *)&cmd_read_reg_bit_field, 8794 (cmdline_parse_inst_t *)&cmd_read_reg_bit, 8795 (cmdline_parse_inst_t *)&cmd_write_reg, 8796 (cmdline_parse_inst_t *)&cmd_write_reg_bit_field, 8797 (cmdline_parse_inst_t *)&cmd_write_reg_bit, 8798 (cmdline_parse_inst_t *)&cmd_read_rxd_txd, 8799 (cmdline_parse_inst_t *)&cmd_stop, 8800 (cmdline_parse_inst_t *)&cmd_mac_addr, 8801 (cmdline_parse_inst_t *)&cmd_set_qmap, 8802 (cmdline_parse_inst_t *)&cmd_operate_port, 8803 (cmdline_parse_inst_t *)&cmd_operate_specific_port, 8804 (cmdline_parse_inst_t *)&cmd_operate_attach_port, 8805 (cmdline_parse_inst_t *)&cmd_operate_detach_port, 8806 (cmdline_parse_inst_t *)&cmd_config_speed_all, 8807 (cmdline_parse_inst_t *)&cmd_config_speed_specific, 8808 (cmdline_parse_inst_t *)&cmd_config_rx_tx, 8809 (cmdline_parse_inst_t *)&cmd_config_mtu, 8810 (cmdline_parse_inst_t *)&cmd_config_max_pkt_len, 8811 (cmdline_parse_inst_t *)&cmd_config_rx_mode_flag, 8812 (cmdline_parse_inst_t *)&cmd_config_rss, 8813 (cmdline_parse_inst_t *)&cmd_config_rxtx_queue, 8814 (cmdline_parse_inst_t *)&cmd_config_rss_reta, 8815 (cmdline_parse_inst_t *)&cmd_showport_reta, 8816 (cmdline_parse_inst_t *)&cmd_config_burst, 8817 (cmdline_parse_inst_t *)&cmd_config_thresh, 8818 (cmdline_parse_inst_t *)&cmd_config_threshold, 8819 (cmdline_parse_inst_t *)&cmd_set_vf_rxmode, 8820 (cmdline_parse_inst_t *)&cmd_set_uc_hash_filter, 8821 (cmdline_parse_inst_t *)&cmd_set_uc_all_hash_filter, 8822 (cmdline_parse_inst_t *)&cmd_vf_mac_addr_filter, 8823 (cmdline_parse_inst_t *)&cmd_set_vf_macvlan_filter, 8824 (cmdline_parse_inst_t *)&cmd_set_vf_traffic, 8825 (cmdline_parse_inst_t *)&cmd_vf_rxvlan_filter, 8826 (cmdline_parse_inst_t *)&cmd_queue_rate_limit, 8827 (cmdline_parse_inst_t *)&cmd_vf_rate_limit, 8828 (cmdline_parse_inst_t *)&cmd_tunnel_filter, 8829 (cmdline_parse_inst_t *)&cmd_tunnel_udp_config, 8830 (cmdline_parse_inst_t *)&cmd_set_mirror_mask, 8831 (cmdline_parse_inst_t *)&cmd_set_mirror_link, 8832 (cmdline_parse_inst_t *)&cmd_reset_mirror_rule, 8833 (cmdline_parse_inst_t *)&cmd_showport_rss_hash, 8834 (cmdline_parse_inst_t *)&cmd_showport_rss_hash_key, 8835 (cmdline_parse_inst_t *)&cmd_config_rss_hash_key, 8836 (cmdline_parse_inst_t *)&cmd_dump, 8837 (cmdline_parse_inst_t *)&cmd_dump_one, 8838 (cmdline_parse_inst_t *)&cmd_ethertype_filter, 8839 (cmdline_parse_inst_t *)&cmd_syn_filter, 8840 (cmdline_parse_inst_t *)&cmd_2tuple_filter, 8841 (cmdline_parse_inst_t *)&cmd_5tuple_filter, 8842 (cmdline_parse_inst_t *)&cmd_flex_filter, 8843 (cmdline_parse_inst_t *)&cmd_add_del_ip_flow_director, 8844 (cmdline_parse_inst_t *)&cmd_add_del_udp_flow_director, 8845 (cmdline_parse_inst_t *)&cmd_add_del_sctp_flow_director, 8846 (cmdline_parse_inst_t *)&cmd_flush_flow_director, 8847 (cmdline_parse_inst_t *)&cmd_set_flow_director_mask, 8848 (cmdline_parse_inst_t *)&cmd_set_flow_director_flex_mask, 8849 (cmdline_parse_inst_t *)&cmd_set_flow_director_flex_payload, 8850 (cmdline_parse_inst_t *)&cmd_get_sym_hash_ena_per_port, 8851 (cmdline_parse_inst_t *)&cmd_set_sym_hash_ena_per_port, 8852 (cmdline_parse_inst_t *)&cmd_get_hash_global_config, 8853 (cmdline_parse_inst_t *)&cmd_set_hash_global_config, 8854 NULL, 8855 }; 8856 8857 /* prompt function, called from main on MASTER lcore */ 8858 void 8859 prompt(void) 8860 { 8861 struct cmdline *cl; 8862 8863 /* initialize non-constant commands */ 8864 cmd_set_fwd_mode_init(); 8865 8866 cl = cmdline_stdin_new(main_ctx, "testpmd> "); 8867 if (cl == NULL) { 8868 return; 8869 } 8870 cmdline_interact(cl); 8871 cmdline_stdin_exit(cl); 8872 } 8873 8874 static void 8875 cmd_reconfig_device_queue(portid_t id, uint8_t dev, uint8_t queue) 8876 { 8877 if (!port_id_is_invalid(id, DISABLED_WARN)) { 8878 /* check if need_reconfig has been set to 1 */ 8879 if (ports[id].need_reconfig == 0) 8880 ports[id].need_reconfig = dev; 8881 /* check if need_reconfig_queues has been set to 1 */ 8882 if (ports[id].need_reconfig_queues == 0) 8883 ports[id].need_reconfig_queues = queue; 8884 } else { 8885 portid_t pid; 8886 8887 FOREACH_PORT(pid, ports) { 8888 /* check if need_reconfig has been set to 1 */ 8889 if (ports[pid].need_reconfig == 0) 8890 ports[pid].need_reconfig = dev; 8891 /* check if need_reconfig_queues has been set to 1 */ 8892 if (ports[pid].need_reconfig_queues == 0) 8893 ports[pid].need_reconfig_queues = queue; 8894 } 8895 } 8896 } 8897 8898 #ifdef RTE_NIC_BYPASS 8899 uint8_t 8900 bypass_is_supported(portid_t port_id) 8901 { 8902 struct rte_port *port; 8903 struct rte_pci_id *pci_id; 8904 8905 if (port_id_is_invalid(port_id, ENABLED_WARN)) 8906 return 0; 8907 8908 /* Get the device id. */ 8909 port = &ports[port_id]; 8910 pci_id = &port->dev_info.pci_dev->id; 8911 8912 /* Check if NIC supports bypass. */ 8913 if (pci_id->device_id == IXGBE_DEV_ID_82599_BYPASS) { 8914 return 1; 8915 } 8916 else { 8917 printf("\tBypass not supported for port_id = %d.\n", port_id); 8918 return 0; 8919 } 8920 } 8921 #endif 8922