1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright(c) 2010-2017 Intel Corporation 3 */ 4 5 #ifndef _RTE_ETHDEV_H_ 6 #define _RTE_ETHDEV_H_ 7 8 /** 9 * @file 10 * 11 * RTE Ethernet Device API 12 * 13 * The Ethernet Device API is composed of two parts: 14 * 15 * - The application-oriented Ethernet API that includes functions to setup 16 * an Ethernet device (configure it, setup its RX and TX queues and start it), 17 * to get its MAC address, the speed and the status of its physical link, 18 * to receive and to transmit packets, and so on. 19 * 20 * - The driver-oriented Ethernet API that exports functions allowing 21 * an Ethernet Poll Mode Driver (PMD) to allocate an Ethernet device instance, 22 * create memzone for HW rings and process registered callbacks, and so on. 23 * PMDs should include ethdev_driver.h instead of this header. 24 * 25 * By default, all the functions of the Ethernet Device API exported by a PMD 26 * are lock-free functions which assume to not be invoked in parallel on 27 * different logical cores to work on the same target object. For instance, 28 * the receive function of a PMD cannot be invoked in parallel on two logical 29 * cores to poll the same RX queue [of the same port]. Of course, this function 30 * can be invoked in parallel by different logical cores on different RX queues. 31 * It is the responsibility of the upper level application to enforce this rule. 32 * 33 * If needed, parallel accesses by multiple logical cores to shared queues 34 * shall be explicitly protected by dedicated inline lock-aware functions 35 * built on top of their corresponding lock-free functions of the PMD API. 36 * 37 * In all functions of the Ethernet API, the Ethernet device is 38 * designated by an integer >= 0 named the device port identifier. 39 * 40 * At the Ethernet driver level, Ethernet devices are represented by a generic 41 * data structure of type *rte_eth_dev*. 42 * 43 * Ethernet devices are dynamically registered during the PCI probing phase 44 * performed at EAL initialization time. 45 * When an Ethernet device is being probed, an *rte_eth_dev* structure and 46 * a new port identifier are allocated for that device. Then, the eth_dev_init() 47 * function supplied by the Ethernet driver matching the probed PCI 48 * device is invoked to properly initialize the device. 49 * 50 * The role of the device init function consists of resetting the hardware, 51 * checking access to Non-volatile Memory (NVM), reading the MAC address 52 * from NVM etc. 53 * 54 * If the device init operation is successful, the correspondence between 55 * the port identifier assigned to the new device and its associated 56 * *rte_eth_dev* structure is effectively registered. 57 * Otherwise, both the *rte_eth_dev* structure and the port identifier are 58 * freed. 59 * 60 * The functions exported by the application Ethernet API to setup a device 61 * designated by its port identifier must be invoked in the following order: 62 * - rte_eth_dev_configure() 63 * - rte_eth_tx_queue_setup() 64 * - rte_eth_rx_queue_setup() 65 * - rte_eth_dev_start() 66 * 67 * Then, the network application can invoke, in any order, the functions 68 * exported by the Ethernet API to get the MAC address of a given device, to 69 * get the speed and the status of a device physical link, to receive/transmit 70 * [burst of] packets, and so on. 71 * 72 * If the application wants to change the configuration (i.e. call 73 * rte_eth_dev_configure(), rte_eth_tx_queue_setup(), or 74 * rte_eth_rx_queue_setup()), it must call rte_eth_dev_stop() first to stop the 75 * device and then do the reconfiguration before calling rte_eth_dev_start() 76 * again. The transmit and receive functions should not be invoked when the 77 * device is stopped. 78 * 79 * Please note that some configuration is not stored between calls to 80 * rte_eth_dev_stop()/rte_eth_dev_start(). The following configuration will 81 * be retained: 82 * 83 * - MTU 84 * - flow control settings 85 * - receive mode configuration (promiscuous mode, all-multicast mode, 86 * hardware checksum mode, RSS/VMDQ settings etc.) 87 * - VLAN filtering configuration 88 * - default MAC address 89 * - MAC addresses supplied to MAC address array 90 * - flow director filtering mode (but not filtering rules) 91 * - NIC queue statistics mappings 92 * 93 * Any other configuration will not be stored and will need to be re-entered 94 * before a call to rte_eth_dev_start(). 95 * 96 * Finally, a network application can close an Ethernet device by invoking the 97 * rte_eth_dev_close() function. 98 * 99 * Each function of the application Ethernet API invokes a specific function 100 * of the PMD that controls the target device designated by its port 101 * identifier. 102 * For this purpose, all device-specific functions of an Ethernet driver are 103 * supplied through a set of pointers contained in a generic structure of type 104 * *eth_dev_ops*. 105 * The address of the *eth_dev_ops* structure is stored in the *rte_eth_dev* 106 * structure by the device init function of the Ethernet driver, which is 107 * invoked during the PCI probing phase, as explained earlier. 108 * 109 * In other words, each function of the Ethernet API simply retrieves the 110 * *rte_eth_dev* structure associated with the device port identifier and 111 * performs an indirect invocation of the corresponding driver function 112 * supplied in the *eth_dev_ops* structure of the *rte_eth_dev* structure. 113 * 114 * For performance reasons, the address of the burst-oriented RX and TX 115 * functions of the Ethernet driver are not contained in the *eth_dev_ops* 116 * structure. Instead, they are directly stored at the beginning of the 117 * *rte_eth_dev* structure to avoid an extra indirect memory access during 118 * their invocation. 119 * 120 * RTE ethernet device drivers do not use interrupts for transmitting or 121 * receiving. Instead, Ethernet drivers export Poll-Mode receive and transmit 122 * functions to applications. 123 * Both receive and transmit functions are packet-burst oriented to minimize 124 * their cost per packet through the following optimizations: 125 * 126 * - Sharing among multiple packets the incompressible cost of the 127 * invocation of receive/transmit functions. 128 * 129 * - Enabling receive/transmit functions to take advantage of burst-oriented 130 * hardware features (L1 cache, prefetch instructions, NIC head/tail 131 * registers) to minimize the number of CPU cycles per packet, for instance, 132 * by avoiding useless read memory accesses to ring descriptors, or by 133 * systematically using arrays of pointers that exactly fit L1 cache line 134 * boundaries and sizes. 135 * 136 * The burst-oriented receive function does not provide any error notification, 137 * to avoid the corresponding overhead. As a hint, the upper-level application 138 * might check the status of the device link once being systematically returned 139 * a 0 value by the receive function of the driver for a given number of tries. 140 */ 141 142 #ifdef __cplusplus 143 extern "C" { 144 #endif 145 146 #include <stdint.h> 147 148 /* Use this macro to check if LRO API is supported */ 149 #define RTE_ETHDEV_HAS_LRO_SUPPORT 150 151 /* Alias RTE_LIBRTE_ETHDEV_DEBUG for backward compatibility. */ 152 #ifdef RTE_LIBRTE_ETHDEV_DEBUG 153 #define RTE_ETHDEV_DEBUG_RX 154 #define RTE_ETHDEV_DEBUG_TX 155 #endif 156 157 #include <rte_compat.h> 158 #include <rte_log.h> 159 #include <rte_interrupts.h> 160 #include <rte_dev.h> 161 #include <rte_devargs.h> 162 #include <rte_errno.h> 163 #include <rte_common.h> 164 #include <rte_config.h> 165 #include <rte_ether.h> 166 #include <rte_power_intrinsics.h> 167 168 #include "rte_ethdev_trace_fp.h" 169 #include "rte_dev_info.h" 170 171 extern int rte_eth_dev_logtype; 172 173 #define RTE_ETHDEV_LOG(level, ...) \ 174 rte_log(RTE_LOG_ ## level, rte_eth_dev_logtype, "" __VA_ARGS__) 175 176 struct rte_mbuf; 177 178 /** 179 * Initializes a device iterator. 180 * 181 * This iterator allows accessing a list of devices matching some devargs. 182 * 183 * @param iter 184 * Device iterator handle initialized by the function. 185 * The fields bus_str and cls_str might be dynamically allocated, 186 * and could be freed by calling rte_eth_iterator_cleanup(). 187 * 188 * @param devargs 189 * Device description string. 190 * 191 * @return 192 * 0 on successful initialization, negative otherwise. 193 */ 194 int rte_eth_iterator_init(struct rte_dev_iterator *iter, const char *devargs); 195 196 /** 197 * Iterates on devices with devargs filter. 198 * The ownership is not checked. 199 * 200 * The next port id is returned, and the iterator is updated. 201 * 202 * @param iter 203 * Device iterator handle initialized by rte_eth_iterator_init(). 204 * Some fields bus_str and cls_str might be freed when no more port is found, 205 * by calling rte_eth_iterator_cleanup(). 206 * 207 * @return 208 * A port id if found, RTE_MAX_ETHPORTS otherwise. 209 */ 210 uint16_t rte_eth_iterator_next(struct rte_dev_iterator *iter); 211 212 /** 213 * Free some allocated fields of the iterator. 214 * 215 * This function is automatically called by rte_eth_iterator_next() 216 * on the last iteration (i.e. when no more matching port is found). 217 * 218 * It is safe to call this function twice; it will do nothing more. 219 * 220 * @param iter 221 * Device iterator handle initialized by rte_eth_iterator_init(). 222 * The fields bus_str and cls_str are freed if needed. 223 */ 224 void rte_eth_iterator_cleanup(struct rte_dev_iterator *iter); 225 226 /** 227 * Macro to iterate over all ethdev ports matching some devargs. 228 * 229 * If a break is done before the end of the loop, 230 * the function rte_eth_iterator_cleanup() must be called. 231 * 232 * @param id 233 * Iterated port id of type uint16_t. 234 * @param devargs 235 * Device parameters input as string of type char*. 236 * @param iter 237 * Iterator handle of type struct rte_dev_iterator, used internally. 238 */ 239 #define RTE_ETH_FOREACH_MATCHING_DEV(id, devargs, iter) \ 240 for (rte_eth_iterator_init(iter, devargs), \ 241 id = rte_eth_iterator_next(iter); \ 242 id != RTE_MAX_ETHPORTS; \ 243 id = rte_eth_iterator_next(iter)) 244 245 /** 246 * A structure used to retrieve statistics for an Ethernet port. 247 * Not all statistics fields in struct rte_eth_stats are supported 248 * by any type of network interface card (NIC). If any statistics 249 * field is not supported, its value is 0. 250 * All byte-related statistics do not include Ethernet FCS regardless 251 * of whether these bytes have been delivered to the application 252 * (see DEV_RX_OFFLOAD_KEEP_CRC). 253 */ 254 struct rte_eth_stats { 255 uint64_t ipackets; /**< Total number of successfully received packets. */ 256 uint64_t opackets; /**< Total number of successfully transmitted packets.*/ 257 uint64_t ibytes; /**< Total number of successfully received bytes. */ 258 uint64_t obytes; /**< Total number of successfully transmitted bytes. */ 259 uint64_t imissed; 260 /**< Total of RX packets dropped by the HW, 261 * because there are no available buffer (i.e. RX queues are full). 262 */ 263 uint64_t ierrors; /**< Total number of erroneous received packets. */ 264 uint64_t oerrors; /**< Total number of failed transmitted packets. */ 265 uint64_t rx_nombuf; /**< Total number of RX mbuf allocation failures. */ 266 /* Queue stats are limited to max 256 queues */ 267 uint64_t q_ipackets[RTE_ETHDEV_QUEUE_STAT_CNTRS]; 268 /**< Total number of queue RX packets. */ 269 uint64_t q_opackets[RTE_ETHDEV_QUEUE_STAT_CNTRS]; 270 /**< Total number of queue TX packets. */ 271 uint64_t q_ibytes[RTE_ETHDEV_QUEUE_STAT_CNTRS]; 272 /**< Total number of successfully received queue bytes. */ 273 uint64_t q_obytes[RTE_ETHDEV_QUEUE_STAT_CNTRS]; 274 /**< Total number of successfully transmitted queue bytes. */ 275 uint64_t q_errors[RTE_ETHDEV_QUEUE_STAT_CNTRS]; 276 /**< Total number of queue packets received that are dropped. */ 277 }; 278 279 /** 280 * Device supported speeds bitmap flags 281 */ 282 #define ETH_LINK_SPEED_AUTONEG (0 << 0) /**< Autonegotiate (all speeds) */ 283 #define ETH_LINK_SPEED_FIXED (1 << 0) /**< Disable autoneg (fixed speed) */ 284 #define ETH_LINK_SPEED_10M_HD (1 << 1) /**< 10 Mbps half-duplex */ 285 #define ETH_LINK_SPEED_10M (1 << 2) /**< 10 Mbps full-duplex */ 286 #define ETH_LINK_SPEED_100M_HD (1 << 3) /**< 100 Mbps half-duplex */ 287 #define ETH_LINK_SPEED_100M (1 << 4) /**< 100 Mbps full-duplex */ 288 #define ETH_LINK_SPEED_1G (1 << 5) /**< 1 Gbps */ 289 #define ETH_LINK_SPEED_2_5G (1 << 6) /**< 2.5 Gbps */ 290 #define ETH_LINK_SPEED_5G (1 << 7) /**< 5 Gbps */ 291 #define ETH_LINK_SPEED_10G (1 << 8) /**< 10 Gbps */ 292 #define ETH_LINK_SPEED_20G (1 << 9) /**< 20 Gbps */ 293 #define ETH_LINK_SPEED_25G (1 << 10) /**< 25 Gbps */ 294 #define ETH_LINK_SPEED_40G (1 << 11) /**< 40 Gbps */ 295 #define ETH_LINK_SPEED_50G (1 << 12) /**< 50 Gbps */ 296 #define ETH_LINK_SPEED_56G (1 << 13) /**< 56 Gbps */ 297 #define ETH_LINK_SPEED_100G (1 << 14) /**< 100 Gbps */ 298 #define ETH_LINK_SPEED_200G (1 << 15) /**< 200 Gbps */ 299 300 /** 301 * Ethernet numeric link speeds in Mbps 302 */ 303 #define ETH_SPEED_NUM_NONE 0 /**< Not defined */ 304 #define ETH_SPEED_NUM_10M 10 /**< 10 Mbps */ 305 #define ETH_SPEED_NUM_100M 100 /**< 100 Mbps */ 306 #define ETH_SPEED_NUM_1G 1000 /**< 1 Gbps */ 307 #define ETH_SPEED_NUM_2_5G 2500 /**< 2.5 Gbps */ 308 #define ETH_SPEED_NUM_5G 5000 /**< 5 Gbps */ 309 #define ETH_SPEED_NUM_10G 10000 /**< 10 Gbps */ 310 #define ETH_SPEED_NUM_20G 20000 /**< 20 Gbps */ 311 #define ETH_SPEED_NUM_25G 25000 /**< 25 Gbps */ 312 #define ETH_SPEED_NUM_40G 40000 /**< 40 Gbps */ 313 #define ETH_SPEED_NUM_50G 50000 /**< 50 Gbps */ 314 #define ETH_SPEED_NUM_56G 56000 /**< 56 Gbps */ 315 #define ETH_SPEED_NUM_100G 100000 /**< 100 Gbps */ 316 #define ETH_SPEED_NUM_200G 200000 /**< 200 Gbps */ 317 #define ETH_SPEED_NUM_UNKNOWN UINT32_MAX /**< Unknown */ 318 319 /** 320 * A structure used to retrieve link-level information of an Ethernet port. 321 */ 322 __extension__ 323 struct rte_eth_link { 324 uint32_t link_speed; /**< ETH_SPEED_NUM_ */ 325 uint16_t link_duplex : 1; /**< ETH_LINK_[HALF/FULL]_DUPLEX */ 326 uint16_t link_autoneg : 1; /**< ETH_LINK_[AUTONEG/FIXED] */ 327 uint16_t link_status : 1; /**< ETH_LINK_[DOWN/UP] */ 328 } __rte_aligned(8); /**< aligned for atomic64 read/write */ 329 330 /* Utility constants */ 331 #define ETH_LINK_HALF_DUPLEX 0 /**< Half-duplex connection (see link_duplex). */ 332 #define ETH_LINK_FULL_DUPLEX 1 /**< Full-duplex connection (see link_duplex). */ 333 #define ETH_LINK_DOWN 0 /**< Link is down (see link_status). */ 334 #define ETH_LINK_UP 1 /**< Link is up (see link_status). */ 335 #define ETH_LINK_FIXED 0 /**< No autonegotiation (see link_autoneg). */ 336 #define ETH_LINK_AUTONEG 1 /**< Autonegotiated (see link_autoneg). */ 337 #define RTE_ETH_LINK_MAX_STR_LEN 40 /**< Max length of default link string. */ 338 339 /** 340 * A structure used to configure the ring threshold registers of an RX/TX 341 * queue for an Ethernet port. 342 */ 343 struct rte_eth_thresh { 344 uint8_t pthresh; /**< Ring prefetch threshold. */ 345 uint8_t hthresh; /**< Ring host threshold. */ 346 uint8_t wthresh; /**< Ring writeback threshold. */ 347 }; 348 349 /** 350 * Simple flags are used for rte_eth_conf.rxmode.mq_mode. 351 */ 352 #define ETH_MQ_RX_RSS_FLAG 0x1 353 #define ETH_MQ_RX_DCB_FLAG 0x2 354 #define ETH_MQ_RX_VMDQ_FLAG 0x4 355 356 /** 357 * A set of values to identify what method is to be used to route 358 * packets to multiple queues. 359 */ 360 enum rte_eth_rx_mq_mode { 361 /** None of DCB,RSS or VMDQ mode */ 362 ETH_MQ_RX_NONE = 0, 363 364 /** For RX side, only RSS is on */ 365 ETH_MQ_RX_RSS = ETH_MQ_RX_RSS_FLAG, 366 /** For RX side,only DCB is on. */ 367 ETH_MQ_RX_DCB = ETH_MQ_RX_DCB_FLAG, 368 /** Both DCB and RSS enable */ 369 ETH_MQ_RX_DCB_RSS = ETH_MQ_RX_RSS_FLAG | ETH_MQ_RX_DCB_FLAG, 370 371 /** Only VMDQ, no RSS nor DCB */ 372 ETH_MQ_RX_VMDQ_ONLY = ETH_MQ_RX_VMDQ_FLAG, 373 /** RSS mode with VMDQ */ 374 ETH_MQ_RX_VMDQ_RSS = ETH_MQ_RX_RSS_FLAG | ETH_MQ_RX_VMDQ_FLAG, 375 /** Use VMDQ+DCB to route traffic to queues */ 376 ETH_MQ_RX_VMDQ_DCB = ETH_MQ_RX_VMDQ_FLAG | ETH_MQ_RX_DCB_FLAG, 377 /** Enable both VMDQ and DCB in VMDq */ 378 ETH_MQ_RX_VMDQ_DCB_RSS = ETH_MQ_RX_RSS_FLAG | ETH_MQ_RX_DCB_FLAG | 379 ETH_MQ_RX_VMDQ_FLAG, 380 }; 381 382 /** 383 * for rx mq mode backward compatible 384 */ 385 #define ETH_RSS ETH_MQ_RX_RSS 386 #define VMDQ_DCB ETH_MQ_RX_VMDQ_DCB 387 #define ETH_DCB_RX ETH_MQ_RX_DCB 388 389 /** 390 * A set of values to identify what method is to be used to transmit 391 * packets using multi-TCs. 392 */ 393 enum rte_eth_tx_mq_mode { 394 ETH_MQ_TX_NONE = 0, /**< It is in neither DCB nor VT mode. */ 395 ETH_MQ_TX_DCB, /**< For TX side,only DCB is on. */ 396 ETH_MQ_TX_VMDQ_DCB, /**< For TX side,both DCB and VT is on. */ 397 ETH_MQ_TX_VMDQ_ONLY, /**< Only VT on, no DCB */ 398 }; 399 400 /** 401 * for tx mq mode backward compatible 402 */ 403 #define ETH_DCB_NONE ETH_MQ_TX_NONE 404 #define ETH_VMDQ_DCB_TX ETH_MQ_TX_VMDQ_DCB 405 #define ETH_DCB_TX ETH_MQ_TX_DCB 406 407 /** 408 * A structure used to configure the RX features of an Ethernet port. 409 */ 410 struct rte_eth_rxmode { 411 /** The multi-queue packet distribution mode to be used, e.g. RSS. */ 412 enum rte_eth_rx_mq_mode mq_mode; 413 uint32_t max_rx_pkt_len; /**< Only used if JUMBO_FRAME enabled. */ 414 /** Maximum allowed size of LRO aggregated packet. */ 415 uint32_t max_lro_pkt_size; 416 uint16_t split_hdr_size; /**< hdr buf size (header_split enabled).*/ 417 /** 418 * Per-port Rx offloads to be set using DEV_RX_OFFLOAD_* flags. 419 * Only offloads set on rx_offload_capa field on rte_eth_dev_info 420 * structure are allowed to be set. 421 */ 422 uint64_t offloads; 423 424 uint64_t reserved_64s[2]; /**< Reserved for future fields */ 425 void *reserved_ptrs[2]; /**< Reserved for future fields */ 426 }; 427 428 /** 429 * VLAN types to indicate if it is for single VLAN, inner VLAN or outer VLAN. 430 * Note that single VLAN is treated the same as inner VLAN. 431 */ 432 enum rte_vlan_type { 433 ETH_VLAN_TYPE_UNKNOWN = 0, 434 ETH_VLAN_TYPE_INNER, /**< Inner VLAN. */ 435 ETH_VLAN_TYPE_OUTER, /**< Single VLAN, or outer VLAN. */ 436 ETH_VLAN_TYPE_MAX, 437 }; 438 439 /** 440 * A structure used to describe a vlan filter. 441 * If the bit corresponding to a VID is set, such VID is on. 442 */ 443 struct rte_vlan_filter_conf { 444 uint64_t ids[64]; 445 }; 446 447 /** 448 * A structure used to configure the Receive Side Scaling (RSS) feature 449 * of an Ethernet port. 450 * If not NULL, the *rss_key* pointer of the *rss_conf* structure points 451 * to an array holding the RSS key to use for hashing specific header 452 * fields of received packets. The length of this array should be indicated 453 * by *rss_key_len* below. Otherwise, a default random hash key is used by 454 * the device driver. 455 * 456 * The *rss_key_len* field of the *rss_conf* structure indicates the length 457 * in bytes of the array pointed by *rss_key*. To be compatible, this length 458 * will be checked in i40e only. Others assume 40 bytes to be used as before. 459 * 460 * The *rss_hf* field of the *rss_conf* structure indicates the different 461 * types of IPv4/IPv6 packets to which the RSS hashing must be applied. 462 * Supplying an *rss_hf* equal to zero disables the RSS feature. 463 */ 464 struct rte_eth_rss_conf { 465 uint8_t *rss_key; /**< If not NULL, 40-byte hash key. */ 466 uint8_t rss_key_len; /**< hash key length in bytes. */ 467 uint64_t rss_hf; /**< Hash functions to apply - see below. */ 468 }; 469 470 /* 471 * A packet can be identified by hardware as different flow types. Different 472 * NIC hardware may support different flow types. 473 * Basically, the NIC hardware identifies the flow type as deep protocol as 474 * possible, and exclusively. For example, if a packet is identified as 475 * 'RTE_ETH_FLOW_NONFRAG_IPV4_TCP', it will not be any of other flow types, 476 * though it is an actual IPV4 packet. 477 */ 478 #define RTE_ETH_FLOW_UNKNOWN 0 479 #define RTE_ETH_FLOW_RAW 1 480 #define RTE_ETH_FLOW_IPV4 2 481 #define RTE_ETH_FLOW_FRAG_IPV4 3 482 #define RTE_ETH_FLOW_NONFRAG_IPV4_TCP 4 483 #define RTE_ETH_FLOW_NONFRAG_IPV4_UDP 5 484 #define RTE_ETH_FLOW_NONFRAG_IPV4_SCTP 6 485 #define RTE_ETH_FLOW_NONFRAG_IPV4_OTHER 7 486 #define RTE_ETH_FLOW_IPV6 8 487 #define RTE_ETH_FLOW_FRAG_IPV6 9 488 #define RTE_ETH_FLOW_NONFRAG_IPV6_TCP 10 489 #define RTE_ETH_FLOW_NONFRAG_IPV6_UDP 11 490 #define RTE_ETH_FLOW_NONFRAG_IPV6_SCTP 12 491 #define RTE_ETH_FLOW_NONFRAG_IPV6_OTHER 13 492 #define RTE_ETH_FLOW_L2_PAYLOAD 14 493 #define RTE_ETH_FLOW_IPV6_EX 15 494 #define RTE_ETH_FLOW_IPV6_TCP_EX 16 495 #define RTE_ETH_FLOW_IPV6_UDP_EX 17 496 #define RTE_ETH_FLOW_PORT 18 497 /**< Consider device port number as a flow differentiator */ 498 #define RTE_ETH_FLOW_VXLAN 19 /**< VXLAN protocol based flow */ 499 #define RTE_ETH_FLOW_GENEVE 20 /**< GENEVE protocol based flow */ 500 #define RTE_ETH_FLOW_NVGRE 21 /**< NVGRE protocol based flow */ 501 #define RTE_ETH_FLOW_VXLAN_GPE 22 /**< VXLAN-GPE protocol based flow */ 502 #define RTE_ETH_FLOW_GTPU 23 /**< GTPU protocol based flow */ 503 #define RTE_ETH_FLOW_MAX 24 504 505 /* 506 * Below macros are defined for RSS offload types, they can be used to 507 * fill rte_eth_rss_conf.rss_hf or rte_flow_action_rss.types. 508 */ 509 #define ETH_RSS_IPV4 (1ULL << 2) 510 #define ETH_RSS_FRAG_IPV4 (1ULL << 3) 511 #define ETH_RSS_NONFRAG_IPV4_TCP (1ULL << 4) 512 #define ETH_RSS_NONFRAG_IPV4_UDP (1ULL << 5) 513 #define ETH_RSS_NONFRAG_IPV4_SCTP (1ULL << 6) 514 #define ETH_RSS_NONFRAG_IPV4_OTHER (1ULL << 7) 515 #define ETH_RSS_IPV6 (1ULL << 8) 516 #define ETH_RSS_FRAG_IPV6 (1ULL << 9) 517 #define ETH_RSS_NONFRAG_IPV6_TCP (1ULL << 10) 518 #define ETH_RSS_NONFRAG_IPV6_UDP (1ULL << 11) 519 #define ETH_RSS_NONFRAG_IPV6_SCTP (1ULL << 12) 520 #define ETH_RSS_NONFRAG_IPV6_OTHER (1ULL << 13) 521 #define ETH_RSS_L2_PAYLOAD (1ULL << 14) 522 #define ETH_RSS_IPV6_EX (1ULL << 15) 523 #define ETH_RSS_IPV6_TCP_EX (1ULL << 16) 524 #define ETH_RSS_IPV6_UDP_EX (1ULL << 17) 525 #define ETH_RSS_PORT (1ULL << 18) 526 #define ETH_RSS_VXLAN (1ULL << 19) 527 #define ETH_RSS_GENEVE (1ULL << 20) 528 #define ETH_RSS_NVGRE (1ULL << 21) 529 #define ETH_RSS_GTPU (1ULL << 23) 530 #define ETH_RSS_ETH (1ULL << 24) 531 #define ETH_RSS_S_VLAN (1ULL << 25) 532 #define ETH_RSS_C_VLAN (1ULL << 26) 533 #define ETH_RSS_ESP (1ULL << 27) 534 #define ETH_RSS_AH (1ULL << 28) 535 #define ETH_RSS_L2TPV3 (1ULL << 29) 536 #define ETH_RSS_PFCP (1ULL << 30) 537 #define ETH_RSS_PPPOE (1ULL << 31) 538 #define ETH_RSS_ECPRI (1ULL << 32) 539 #define ETH_RSS_MPLS (1ULL << 33) 540 #define ETH_RSS_IPV4_CHKSUM (1ULL << 34) 541 542 /** 543 * The ETH_RSS_L4_CHKSUM works on checksum field of any L4 header. 544 * It is similar to ETH_RSS_PORT that they don't specify the specific type of 545 * L4 header. This macro is defined to replace some specific L4 (TCP/UDP/SCTP) 546 * checksum type for constructing the use of RSS offload bits. 547 * 548 * Due to above reason, some old APIs (and configuration) don't support 549 * ETH_RSS_L4_CHKSUM. The rte_flow RSS API supports it. 550 * 551 * For the case that checksum is not used in an UDP header, 552 * it takes the reserved value 0 as input for the hash function. 553 */ 554 #define ETH_RSS_L4_CHKSUM (1ULL << 35) 555 556 /* 557 * We use the following macros to combine with above ETH_RSS_* for 558 * more specific input set selection. These bits are defined starting 559 * from the high end of the 64 bits. 560 * Note: If we use above ETH_RSS_* without SRC/DST_ONLY, it represents 561 * both SRC and DST are taken into account. If SRC_ONLY and DST_ONLY of 562 * the same level are used simultaneously, it is the same case as none of 563 * them are added. 564 */ 565 #define ETH_RSS_L3_SRC_ONLY (1ULL << 63) 566 #define ETH_RSS_L3_DST_ONLY (1ULL << 62) 567 #define ETH_RSS_L4_SRC_ONLY (1ULL << 61) 568 #define ETH_RSS_L4_DST_ONLY (1ULL << 60) 569 #define ETH_RSS_L2_SRC_ONLY (1ULL << 59) 570 #define ETH_RSS_L2_DST_ONLY (1ULL << 58) 571 572 /* 573 * Only select IPV6 address prefix as RSS input set according to 574 * https://tools.ietf.org/html/rfc6052 575 * Must be combined with ETH_RSS_IPV6, ETH_RSS_NONFRAG_IPV6_UDP, 576 * ETH_RSS_NONFRAG_IPV6_TCP, ETH_RSS_NONFRAG_IPV6_SCTP. 577 */ 578 #define RTE_ETH_RSS_L3_PRE32 (1ULL << 57) 579 #define RTE_ETH_RSS_L3_PRE40 (1ULL << 56) 580 #define RTE_ETH_RSS_L3_PRE48 (1ULL << 55) 581 #define RTE_ETH_RSS_L3_PRE56 (1ULL << 54) 582 #define RTE_ETH_RSS_L3_PRE64 (1ULL << 53) 583 #define RTE_ETH_RSS_L3_PRE96 (1ULL << 52) 584 585 /* 586 * Use the following macros to combine with the above layers 587 * to choose inner and outer layers or both for RSS computation. 588 * Bits 50 and 51 are reserved for this. 589 */ 590 591 /** 592 * level 0, requests the default behavior. 593 * Depending on the packet type, it can mean outermost, innermost, 594 * anything in between or even no RSS. 595 * It basically stands for the innermost encapsulation level RSS 596 * can be performed on according to PMD and device capabilities. 597 */ 598 #define ETH_RSS_LEVEL_PMD_DEFAULT (0ULL << 50) 599 600 /** 601 * level 1, requests RSS to be performed on the outermost packet 602 * encapsulation level. 603 */ 604 #define ETH_RSS_LEVEL_OUTERMOST (1ULL << 50) 605 606 /** 607 * level 2, requests RSS to be performed on the specified inner packet 608 * encapsulation level, from outermost to innermost (lower to higher values). 609 */ 610 #define ETH_RSS_LEVEL_INNERMOST (2ULL << 50) 611 #define ETH_RSS_LEVEL_MASK (3ULL << 50) 612 613 #define ETH_RSS_LEVEL(rss_hf) ((rss_hf & ETH_RSS_LEVEL_MASK) >> 50) 614 615 /** 616 * For input set change of hash filter, if SRC_ONLY and DST_ONLY of 617 * the same level are used simultaneously, it is the same case as 618 * none of them are added. 619 * 620 * @param rss_hf 621 * RSS types with SRC/DST_ONLY. 622 * @return 623 * RSS types. 624 */ 625 static inline uint64_t 626 rte_eth_rss_hf_refine(uint64_t rss_hf) 627 { 628 if ((rss_hf & ETH_RSS_L3_SRC_ONLY) && (rss_hf & ETH_RSS_L3_DST_ONLY)) 629 rss_hf &= ~(ETH_RSS_L3_SRC_ONLY | ETH_RSS_L3_DST_ONLY); 630 631 if ((rss_hf & ETH_RSS_L4_SRC_ONLY) && (rss_hf & ETH_RSS_L4_DST_ONLY)) 632 rss_hf &= ~(ETH_RSS_L4_SRC_ONLY | ETH_RSS_L4_DST_ONLY); 633 634 return rss_hf; 635 } 636 637 #define ETH_RSS_IPV6_PRE32 ( \ 638 ETH_RSS_IPV6 | \ 639 RTE_ETH_RSS_L3_PRE32) 640 641 #define ETH_RSS_IPV6_PRE40 ( \ 642 ETH_RSS_IPV6 | \ 643 RTE_ETH_RSS_L3_PRE40) 644 645 #define ETH_RSS_IPV6_PRE48 ( \ 646 ETH_RSS_IPV6 | \ 647 RTE_ETH_RSS_L3_PRE48) 648 649 #define ETH_RSS_IPV6_PRE56 ( \ 650 ETH_RSS_IPV6 | \ 651 RTE_ETH_RSS_L3_PRE56) 652 653 #define ETH_RSS_IPV6_PRE64 ( \ 654 ETH_RSS_IPV6 | \ 655 RTE_ETH_RSS_L3_PRE64) 656 657 #define ETH_RSS_IPV6_PRE96 ( \ 658 ETH_RSS_IPV6 | \ 659 RTE_ETH_RSS_L3_PRE96) 660 661 #define ETH_RSS_IPV6_PRE32_UDP ( \ 662 ETH_RSS_NONFRAG_IPV6_UDP | \ 663 RTE_ETH_RSS_L3_PRE32) 664 665 #define ETH_RSS_IPV6_PRE40_UDP ( \ 666 ETH_RSS_NONFRAG_IPV6_UDP | \ 667 RTE_ETH_RSS_L3_PRE40) 668 669 #define ETH_RSS_IPV6_PRE48_UDP ( \ 670 ETH_RSS_NONFRAG_IPV6_UDP | \ 671 RTE_ETH_RSS_L3_PRE48) 672 673 #define ETH_RSS_IPV6_PRE56_UDP ( \ 674 ETH_RSS_NONFRAG_IPV6_UDP | \ 675 RTE_ETH_RSS_L3_PRE56) 676 677 #define ETH_RSS_IPV6_PRE64_UDP ( \ 678 ETH_RSS_NONFRAG_IPV6_UDP | \ 679 RTE_ETH_RSS_L3_PRE64) 680 681 #define ETH_RSS_IPV6_PRE96_UDP ( \ 682 ETH_RSS_NONFRAG_IPV6_UDP | \ 683 RTE_ETH_RSS_L3_PRE96) 684 685 #define ETH_RSS_IPV6_PRE32_TCP ( \ 686 ETH_RSS_NONFRAG_IPV6_TCP | \ 687 RTE_ETH_RSS_L3_PRE32) 688 689 #define ETH_RSS_IPV6_PRE40_TCP ( \ 690 ETH_RSS_NONFRAG_IPV6_TCP | \ 691 RTE_ETH_RSS_L3_PRE40) 692 693 #define ETH_RSS_IPV6_PRE48_TCP ( \ 694 ETH_RSS_NONFRAG_IPV6_TCP | \ 695 RTE_ETH_RSS_L3_PRE48) 696 697 #define ETH_RSS_IPV6_PRE56_TCP ( \ 698 ETH_RSS_NONFRAG_IPV6_TCP | \ 699 RTE_ETH_RSS_L3_PRE56) 700 701 #define ETH_RSS_IPV6_PRE64_TCP ( \ 702 ETH_RSS_NONFRAG_IPV6_TCP | \ 703 RTE_ETH_RSS_L3_PRE64) 704 705 #define ETH_RSS_IPV6_PRE96_TCP ( \ 706 ETH_RSS_NONFRAG_IPV6_TCP | \ 707 RTE_ETH_RSS_L3_PRE96) 708 709 #define ETH_RSS_IPV6_PRE32_SCTP ( \ 710 ETH_RSS_NONFRAG_IPV6_SCTP | \ 711 RTE_ETH_RSS_L3_PRE32) 712 713 #define ETH_RSS_IPV6_PRE40_SCTP ( \ 714 ETH_RSS_NONFRAG_IPV6_SCTP | \ 715 RTE_ETH_RSS_L3_PRE40) 716 717 #define ETH_RSS_IPV6_PRE48_SCTP ( \ 718 ETH_RSS_NONFRAG_IPV6_SCTP | \ 719 RTE_ETH_RSS_L3_PRE48) 720 721 #define ETH_RSS_IPV6_PRE56_SCTP ( \ 722 ETH_RSS_NONFRAG_IPV6_SCTP | \ 723 RTE_ETH_RSS_L3_PRE56) 724 725 #define ETH_RSS_IPV6_PRE64_SCTP ( \ 726 ETH_RSS_NONFRAG_IPV6_SCTP | \ 727 RTE_ETH_RSS_L3_PRE64) 728 729 #define ETH_RSS_IPV6_PRE96_SCTP ( \ 730 ETH_RSS_NONFRAG_IPV6_SCTP | \ 731 RTE_ETH_RSS_L3_PRE96) 732 733 #define ETH_RSS_IP ( \ 734 ETH_RSS_IPV4 | \ 735 ETH_RSS_FRAG_IPV4 | \ 736 ETH_RSS_NONFRAG_IPV4_OTHER | \ 737 ETH_RSS_IPV6 | \ 738 ETH_RSS_FRAG_IPV6 | \ 739 ETH_RSS_NONFRAG_IPV6_OTHER | \ 740 ETH_RSS_IPV6_EX) 741 742 #define ETH_RSS_UDP ( \ 743 ETH_RSS_NONFRAG_IPV4_UDP | \ 744 ETH_RSS_NONFRAG_IPV6_UDP | \ 745 ETH_RSS_IPV6_UDP_EX) 746 747 #define ETH_RSS_TCP ( \ 748 ETH_RSS_NONFRAG_IPV4_TCP | \ 749 ETH_RSS_NONFRAG_IPV6_TCP | \ 750 ETH_RSS_IPV6_TCP_EX) 751 752 #define ETH_RSS_SCTP ( \ 753 ETH_RSS_NONFRAG_IPV4_SCTP | \ 754 ETH_RSS_NONFRAG_IPV6_SCTP) 755 756 #define ETH_RSS_TUNNEL ( \ 757 ETH_RSS_VXLAN | \ 758 ETH_RSS_GENEVE | \ 759 ETH_RSS_NVGRE) 760 761 #define ETH_RSS_VLAN ( \ 762 ETH_RSS_S_VLAN | \ 763 ETH_RSS_C_VLAN) 764 765 /**< Mask of valid RSS hash protocols */ 766 #define ETH_RSS_PROTO_MASK ( \ 767 ETH_RSS_IPV4 | \ 768 ETH_RSS_FRAG_IPV4 | \ 769 ETH_RSS_NONFRAG_IPV4_TCP | \ 770 ETH_RSS_NONFRAG_IPV4_UDP | \ 771 ETH_RSS_NONFRAG_IPV4_SCTP | \ 772 ETH_RSS_NONFRAG_IPV4_OTHER | \ 773 ETH_RSS_IPV6 | \ 774 ETH_RSS_FRAG_IPV6 | \ 775 ETH_RSS_NONFRAG_IPV6_TCP | \ 776 ETH_RSS_NONFRAG_IPV6_UDP | \ 777 ETH_RSS_NONFRAG_IPV6_SCTP | \ 778 ETH_RSS_NONFRAG_IPV6_OTHER | \ 779 ETH_RSS_L2_PAYLOAD | \ 780 ETH_RSS_IPV6_EX | \ 781 ETH_RSS_IPV6_TCP_EX | \ 782 ETH_RSS_IPV6_UDP_EX | \ 783 ETH_RSS_PORT | \ 784 ETH_RSS_VXLAN | \ 785 ETH_RSS_GENEVE | \ 786 ETH_RSS_NVGRE | \ 787 ETH_RSS_MPLS) 788 789 /* 790 * Definitions used for redirection table entry size. 791 * Some RSS RETA sizes may not be supported by some drivers, check the 792 * documentation or the description of relevant functions for more details. 793 */ 794 #define ETH_RSS_RETA_SIZE_64 64 795 #define ETH_RSS_RETA_SIZE_128 128 796 #define ETH_RSS_RETA_SIZE_256 256 797 #define ETH_RSS_RETA_SIZE_512 512 798 #define RTE_RETA_GROUP_SIZE 64 799 800 /* Definitions used for VMDQ and DCB functionality */ 801 #define ETH_VMDQ_MAX_VLAN_FILTERS 64 /**< Maximum nb. of VMDQ vlan filters. */ 802 #define ETH_DCB_NUM_USER_PRIORITIES 8 /**< Maximum nb. of DCB priorities. */ 803 #define ETH_VMDQ_DCB_NUM_QUEUES 128 /**< Maximum nb. of VMDQ DCB queues. */ 804 #define ETH_DCB_NUM_QUEUES 128 /**< Maximum nb. of DCB queues. */ 805 806 /* DCB capability defines */ 807 #define ETH_DCB_PG_SUPPORT 0x00000001 /**< Priority Group(ETS) support. */ 808 #define ETH_DCB_PFC_SUPPORT 0x00000002 /**< Priority Flow Control support. */ 809 810 /* Definitions used for VLAN Offload functionality */ 811 #define ETH_VLAN_STRIP_OFFLOAD 0x0001 /**< VLAN Strip On/Off */ 812 #define ETH_VLAN_FILTER_OFFLOAD 0x0002 /**< VLAN Filter On/Off */ 813 #define ETH_VLAN_EXTEND_OFFLOAD 0x0004 /**< VLAN Extend On/Off */ 814 #define ETH_QINQ_STRIP_OFFLOAD 0x0008 /**< QINQ Strip On/Off */ 815 816 /* Definitions used for mask VLAN setting */ 817 #define ETH_VLAN_STRIP_MASK 0x0001 /**< VLAN Strip setting mask */ 818 #define ETH_VLAN_FILTER_MASK 0x0002 /**< VLAN Filter setting mask*/ 819 #define ETH_VLAN_EXTEND_MASK 0x0004 /**< VLAN Extend setting mask*/ 820 #define ETH_QINQ_STRIP_MASK 0x0008 /**< QINQ Strip setting mask */ 821 #define ETH_VLAN_ID_MAX 0x0FFF /**< VLAN ID is in lower 12 bits*/ 822 823 /* Definitions used for receive MAC address */ 824 #define ETH_NUM_RECEIVE_MAC_ADDR 128 /**< Maximum nb. of receive mac addr. */ 825 826 /* Definitions used for unicast hash */ 827 #define ETH_VMDQ_NUM_UC_HASH_ARRAY 128 /**< Maximum nb. of UC hash array. */ 828 829 /* Definitions used for VMDQ pool rx mode setting */ 830 #define ETH_VMDQ_ACCEPT_UNTAG 0x0001 /**< accept untagged packets. */ 831 #define ETH_VMDQ_ACCEPT_HASH_MC 0x0002 /**< accept packets in multicast table . */ 832 #define ETH_VMDQ_ACCEPT_HASH_UC 0x0004 /**< accept packets in unicast table. */ 833 #define ETH_VMDQ_ACCEPT_BROADCAST 0x0008 /**< accept broadcast packets. */ 834 #define ETH_VMDQ_ACCEPT_MULTICAST 0x0010 /**< multicast promiscuous. */ 835 836 /** Maximum nb. of vlan per mirror rule */ 837 #define ETH_MIRROR_MAX_VLANS 64 838 839 #define ETH_MIRROR_VIRTUAL_POOL_UP 0x01 /**< Virtual Pool uplink Mirroring. */ 840 #define ETH_MIRROR_UPLINK_PORT 0x02 /**< Uplink Port Mirroring. */ 841 #define ETH_MIRROR_DOWNLINK_PORT 0x04 /**< Downlink Port Mirroring. */ 842 #define ETH_MIRROR_VLAN 0x08 /**< VLAN Mirroring. */ 843 #define ETH_MIRROR_VIRTUAL_POOL_DOWN 0x10 /**< Virtual Pool downlink Mirroring. */ 844 845 /** 846 * A structure used to configure VLAN traffic mirror of an Ethernet port. 847 */ 848 struct rte_eth_vlan_mirror { 849 uint64_t vlan_mask; /**< mask for valid VLAN ID. */ 850 /** VLAN ID list for vlan mirroring. */ 851 uint16_t vlan_id[ETH_MIRROR_MAX_VLANS]; 852 }; 853 854 /** 855 * A structure used to configure traffic mirror of an Ethernet port. 856 */ 857 struct rte_eth_mirror_conf { 858 uint8_t rule_type; /**< Mirroring rule type */ 859 uint8_t dst_pool; /**< Destination pool for this mirror rule. */ 860 uint64_t pool_mask; /**< Bitmap of pool for pool mirroring */ 861 /** VLAN ID setting for VLAN mirroring. */ 862 struct rte_eth_vlan_mirror vlan; 863 }; 864 865 /** 866 * A structure used to configure 64 entries of Redirection Table of the 867 * Receive Side Scaling (RSS) feature of an Ethernet port. To configure 868 * more than 64 entries supported by hardware, an array of this structure 869 * is needed. 870 */ 871 struct rte_eth_rss_reta_entry64 { 872 uint64_t mask; 873 /**< Mask bits indicate which entries need to be updated/queried. */ 874 uint16_t reta[RTE_RETA_GROUP_SIZE]; 875 /**< Group of 64 redirection table entries. */ 876 }; 877 878 /** 879 * This enum indicates the possible number of traffic classes 880 * in DCB configurations 881 */ 882 enum rte_eth_nb_tcs { 883 ETH_4_TCS = 4, /**< 4 TCs with DCB. */ 884 ETH_8_TCS = 8 /**< 8 TCs with DCB. */ 885 }; 886 887 /** 888 * This enum indicates the possible number of queue pools 889 * in VMDQ configurations. 890 */ 891 enum rte_eth_nb_pools { 892 ETH_8_POOLS = 8, /**< 8 VMDq pools. */ 893 ETH_16_POOLS = 16, /**< 16 VMDq pools. */ 894 ETH_32_POOLS = 32, /**< 32 VMDq pools. */ 895 ETH_64_POOLS = 64 /**< 64 VMDq pools. */ 896 }; 897 898 /* This structure may be extended in future. */ 899 struct rte_eth_dcb_rx_conf { 900 enum rte_eth_nb_tcs nb_tcs; /**< Possible DCB TCs, 4 or 8 TCs */ 901 /** Traffic class each UP mapped to. */ 902 uint8_t dcb_tc[ETH_DCB_NUM_USER_PRIORITIES]; 903 }; 904 905 struct rte_eth_vmdq_dcb_tx_conf { 906 enum rte_eth_nb_pools nb_queue_pools; /**< With DCB, 16 or 32 pools. */ 907 /** Traffic class each UP mapped to. */ 908 uint8_t dcb_tc[ETH_DCB_NUM_USER_PRIORITIES]; 909 }; 910 911 struct rte_eth_dcb_tx_conf { 912 enum rte_eth_nb_tcs nb_tcs; /**< Possible DCB TCs, 4 or 8 TCs. */ 913 /** Traffic class each UP mapped to. */ 914 uint8_t dcb_tc[ETH_DCB_NUM_USER_PRIORITIES]; 915 }; 916 917 struct rte_eth_vmdq_tx_conf { 918 enum rte_eth_nb_pools nb_queue_pools; /**< VMDq mode, 64 pools. */ 919 }; 920 921 /** 922 * A structure used to configure the VMDQ+DCB feature 923 * of an Ethernet port. 924 * 925 * Using this feature, packets are routed to a pool of queues, based 926 * on the vlan id in the vlan tag, and then to a specific queue within 927 * that pool, using the user priority vlan tag field. 928 * 929 * A default pool may be used, if desired, to route all traffic which 930 * does not match the vlan filter rules. 931 */ 932 struct rte_eth_vmdq_dcb_conf { 933 enum rte_eth_nb_pools nb_queue_pools; /**< With DCB, 16 or 32 pools */ 934 uint8_t enable_default_pool; /**< If non-zero, use a default pool */ 935 uint8_t default_pool; /**< The default pool, if applicable */ 936 uint8_t nb_pool_maps; /**< We can have up to 64 filters/mappings */ 937 struct { 938 uint16_t vlan_id; /**< The vlan id of the received frame */ 939 uint64_t pools; /**< Bitmask of pools for packet rx */ 940 } pool_map[ETH_VMDQ_MAX_VLAN_FILTERS]; /**< VMDq vlan pool maps. */ 941 uint8_t dcb_tc[ETH_DCB_NUM_USER_PRIORITIES]; 942 /**< Selects a queue in a pool */ 943 }; 944 945 /** 946 * A structure used to configure the VMDQ feature of an Ethernet port when 947 * not combined with the DCB feature. 948 * 949 * Using this feature, packets are routed to a pool of queues. By default, 950 * the pool selection is based on the MAC address, the vlan id in the 951 * vlan tag as specified in the pool_map array. 952 * Passing the ETH_VMDQ_ACCEPT_UNTAG in the rx_mode field allows pool 953 * selection using only the MAC address. MAC address to pool mapping is done 954 * using the rte_eth_dev_mac_addr_add function, with the pool parameter 955 * corresponding to the pool id. 956 * 957 * Queue selection within the selected pool will be done using RSS when 958 * it is enabled or revert to the first queue of the pool if not. 959 * 960 * A default pool may be used, if desired, to route all traffic which 961 * does not match the vlan filter rules or any pool MAC address. 962 */ 963 struct rte_eth_vmdq_rx_conf { 964 enum rte_eth_nb_pools nb_queue_pools; /**< VMDq only mode, 8 or 64 pools */ 965 uint8_t enable_default_pool; /**< If non-zero, use a default pool */ 966 uint8_t default_pool; /**< The default pool, if applicable */ 967 uint8_t enable_loop_back; /**< Enable VT loop back */ 968 uint8_t nb_pool_maps; /**< We can have up to 64 filters/mappings */ 969 uint32_t rx_mode; /**< Flags from ETH_VMDQ_ACCEPT_* */ 970 struct { 971 uint16_t vlan_id; /**< The vlan id of the received frame */ 972 uint64_t pools; /**< Bitmask of pools for packet rx */ 973 } pool_map[ETH_VMDQ_MAX_VLAN_FILTERS]; /**< VMDq vlan pool maps. */ 974 }; 975 976 /** 977 * A structure used to configure the TX features of an Ethernet port. 978 */ 979 struct rte_eth_txmode { 980 enum rte_eth_tx_mq_mode mq_mode; /**< TX multi-queues mode. */ 981 /** 982 * Per-port Tx offloads to be set using DEV_TX_OFFLOAD_* flags. 983 * Only offloads set on tx_offload_capa field on rte_eth_dev_info 984 * structure are allowed to be set. 985 */ 986 uint64_t offloads; 987 988 uint16_t pvid; 989 __extension__ 990 uint8_t hw_vlan_reject_tagged : 1, 991 /**< If set, reject sending out tagged pkts */ 992 hw_vlan_reject_untagged : 1, 993 /**< If set, reject sending out untagged pkts */ 994 hw_vlan_insert_pvid : 1; 995 /**< If set, enable port based VLAN insertion */ 996 997 uint64_t reserved_64s[2]; /**< Reserved for future fields */ 998 void *reserved_ptrs[2]; /**< Reserved for future fields */ 999 }; 1000 1001 /** 1002 * @warning 1003 * @b EXPERIMENTAL: this structure may change without prior notice. 1004 * 1005 * A structure used to configure an Rx packet segment to split. 1006 * 1007 * If RTE_ETH_RX_OFFLOAD_BUFFER_SPLIT flag is set in offloads field, 1008 * the PMD will split the received packets into multiple segments 1009 * according to the specification in the description array: 1010 * 1011 * - The first network buffer will be allocated from the memory pool, 1012 * specified in the first array element, the second buffer, from the 1013 * pool in the second element, and so on. 1014 * 1015 * - The offsets from the segment description elements specify 1016 * the data offset from the buffer beginning except the first mbuf. 1017 * The first segment offset is added with RTE_PKTMBUF_HEADROOM. 1018 * 1019 * - The lengths in the elements define the maximal data amount 1020 * being received to each segment. The receiving starts with filling 1021 * up the first mbuf data buffer up to specified length. If the 1022 * there are data remaining (packet is longer than buffer in the first 1023 * mbuf) the following data will be pushed to the next segment 1024 * up to its own length, and so on. 1025 * 1026 * - If the length in the segment description element is zero 1027 * the actual buffer size will be deduced from the appropriate 1028 * memory pool properties. 1029 * 1030 * - If there is not enough elements to describe the buffer for entire 1031 * packet of maximal length the following parameters will be used 1032 * for the all remaining segments: 1033 * - pool from the last valid element 1034 * - the buffer size from this pool 1035 * - zero offset 1036 */ 1037 struct rte_eth_rxseg_split { 1038 struct rte_mempool *mp; /**< Memory pool to allocate segment from. */ 1039 uint16_t length; /**< Segment data length, configures split point. */ 1040 uint16_t offset; /**< Data offset from beginning of mbuf data buffer. */ 1041 uint32_t reserved; /**< Reserved field. */ 1042 }; 1043 1044 /** 1045 * @warning 1046 * @b EXPERIMENTAL: this structure may change without prior notice. 1047 * 1048 * A common structure used to describe Rx packet segment properties. 1049 */ 1050 union rte_eth_rxseg { 1051 /* The settings for buffer split offload. */ 1052 struct rte_eth_rxseg_split split; 1053 /* The other features settings should be added here. */ 1054 }; 1055 1056 /** 1057 * A structure used to configure an RX ring of an Ethernet port. 1058 */ 1059 struct rte_eth_rxconf { 1060 struct rte_eth_thresh rx_thresh; /**< RX ring threshold registers. */ 1061 uint16_t rx_free_thresh; /**< Drives the freeing of RX descriptors. */ 1062 uint8_t rx_drop_en; /**< Drop packets if no descriptors are available. */ 1063 uint8_t rx_deferred_start; /**< Do not start queue with rte_eth_dev_start(). */ 1064 uint16_t rx_nseg; /**< Number of descriptions in rx_seg array. */ 1065 /** 1066 * Per-queue Rx offloads to be set using DEV_RX_OFFLOAD_* flags. 1067 * Only offloads set on rx_queue_offload_capa or rx_offload_capa 1068 * fields on rte_eth_dev_info structure are allowed to be set. 1069 */ 1070 uint64_t offloads; 1071 /** 1072 * Points to the array of segment descriptions for an entire packet. 1073 * Array elements are properties for consecutive Rx segments. 1074 * 1075 * The supported capabilities of receiving segmentation is reported 1076 * in rte_eth_dev_info.rx_seg_capa field. 1077 */ 1078 union rte_eth_rxseg *rx_seg; 1079 1080 uint64_t reserved_64s[2]; /**< Reserved for future fields */ 1081 void *reserved_ptrs[2]; /**< Reserved for future fields */ 1082 }; 1083 1084 /** 1085 * A structure used to configure a TX ring of an Ethernet port. 1086 */ 1087 struct rte_eth_txconf { 1088 struct rte_eth_thresh tx_thresh; /**< TX ring threshold registers. */ 1089 uint16_t tx_rs_thresh; /**< Drives the setting of RS bit on TXDs. */ 1090 uint16_t tx_free_thresh; /**< Start freeing TX buffers if there are 1091 less free descriptors than this value. */ 1092 1093 uint8_t tx_deferred_start; /**< Do not start queue with rte_eth_dev_start(). */ 1094 /** 1095 * Per-queue Tx offloads to be set using DEV_TX_OFFLOAD_* flags. 1096 * Only offloads set on tx_queue_offload_capa or tx_offload_capa 1097 * fields on rte_eth_dev_info structure are allowed to be set. 1098 */ 1099 uint64_t offloads; 1100 1101 uint64_t reserved_64s[2]; /**< Reserved for future fields */ 1102 void *reserved_ptrs[2]; /**< Reserved for future fields */ 1103 }; 1104 1105 /** 1106 * @warning 1107 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 1108 * 1109 * A structure used to return the hairpin capabilities that are supported. 1110 */ 1111 struct rte_eth_hairpin_cap { 1112 /** The max number of hairpin queues (different bindings). */ 1113 uint16_t max_nb_queues; 1114 /** Max number of Rx queues to be connected to one Tx queue. */ 1115 uint16_t max_rx_2_tx; 1116 /** Max number of Tx queues to be connected to one Rx queue. */ 1117 uint16_t max_tx_2_rx; 1118 uint16_t max_nb_desc; /**< The max num of descriptors. */ 1119 }; 1120 1121 #define RTE_ETH_MAX_HAIRPIN_PEERS 32 1122 1123 /** 1124 * @warning 1125 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 1126 * 1127 * A structure used to hold hairpin peer data. 1128 */ 1129 struct rte_eth_hairpin_peer { 1130 uint16_t port; /**< Peer port. */ 1131 uint16_t queue; /**< Peer queue. */ 1132 }; 1133 1134 /** 1135 * @warning 1136 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 1137 * 1138 * A structure used to configure hairpin binding. 1139 */ 1140 struct rte_eth_hairpin_conf { 1141 uint32_t peer_count:16; /**< The number of peers. */ 1142 1143 /** 1144 * Explicit Tx flow rule mode. 1145 * One hairpin pair of queues should have the same attribute. 1146 * 1147 * - When set, the user should be responsible for inserting the hairpin 1148 * Tx part flows and removing them. 1149 * - When clear, the PMD will try to handle the Tx part of the flows, 1150 * e.g., by splitting one flow into two parts. 1151 */ 1152 uint32_t tx_explicit:1; 1153 1154 /** 1155 * Manually bind hairpin queues. 1156 * One hairpin pair of queues should have the same attribute. 1157 * 1158 * - When set, to enable hairpin, the user should call the hairpin bind 1159 * function after all the queues are set up properly and the ports are 1160 * started. Also, the hairpin unbind function should be called 1161 * accordingly before stopping a port that with hairpin configured. 1162 * - When clear, the PMD will try to enable the hairpin with the queues 1163 * configured automatically during port start. 1164 */ 1165 uint32_t manual_bind:1; 1166 uint32_t reserved:14; /**< Reserved bits. */ 1167 struct rte_eth_hairpin_peer peers[RTE_ETH_MAX_HAIRPIN_PEERS]; 1168 }; 1169 1170 /** 1171 * A structure contains information about HW descriptor ring limitations. 1172 */ 1173 struct rte_eth_desc_lim { 1174 uint16_t nb_max; /**< Max allowed number of descriptors. */ 1175 uint16_t nb_min; /**< Min allowed number of descriptors. */ 1176 uint16_t nb_align; /**< Number of descriptors should be aligned to. */ 1177 1178 /** 1179 * Max allowed number of segments per whole packet. 1180 * 1181 * - For TSO packet this is the total number of data descriptors allowed 1182 * by device. 1183 * 1184 * @see nb_mtu_seg_max 1185 */ 1186 uint16_t nb_seg_max; 1187 1188 /** 1189 * Max number of segments per one MTU. 1190 * 1191 * - For non-TSO packet, this is the maximum allowed number of segments 1192 * in a single transmit packet. 1193 * 1194 * - For TSO packet each segment within the TSO may span up to this 1195 * value. 1196 * 1197 * @see nb_seg_max 1198 */ 1199 uint16_t nb_mtu_seg_max; 1200 }; 1201 1202 /** 1203 * This enum indicates the flow control mode 1204 */ 1205 enum rte_eth_fc_mode { 1206 RTE_FC_NONE = 0, /**< Disable flow control. */ 1207 RTE_FC_RX_PAUSE, /**< RX pause frame, enable flowctrl on TX side. */ 1208 RTE_FC_TX_PAUSE, /**< TX pause frame, enable flowctrl on RX side. */ 1209 RTE_FC_FULL /**< Enable flow control on both side. */ 1210 }; 1211 1212 /** 1213 * A structure used to configure Ethernet flow control parameter. 1214 * These parameters will be configured into the register of the NIC. 1215 * Please refer to the corresponding data sheet for proper value. 1216 */ 1217 struct rte_eth_fc_conf { 1218 uint32_t high_water; /**< High threshold value to trigger XOFF */ 1219 uint32_t low_water; /**< Low threshold value to trigger XON */ 1220 uint16_t pause_time; /**< Pause quota in the Pause frame */ 1221 uint16_t send_xon; /**< Is XON frame need be sent */ 1222 enum rte_eth_fc_mode mode; /**< Link flow control mode */ 1223 uint8_t mac_ctrl_frame_fwd; /**< Forward MAC control frames */ 1224 uint8_t autoneg; /**< Use Pause autoneg */ 1225 }; 1226 1227 /** 1228 * A structure used to configure Ethernet priority flow control parameter. 1229 * These parameters will be configured into the register of the NIC. 1230 * Please refer to the corresponding data sheet for proper value. 1231 */ 1232 struct rte_eth_pfc_conf { 1233 struct rte_eth_fc_conf fc; /**< General flow control parameter. */ 1234 uint8_t priority; /**< VLAN User Priority. */ 1235 }; 1236 1237 /** 1238 * Tunnel type for device-specific classifier configuration. 1239 * @see rte_eth_udp_tunnel 1240 */ 1241 enum rte_eth_tunnel_type { 1242 RTE_TUNNEL_TYPE_NONE = 0, 1243 RTE_TUNNEL_TYPE_VXLAN, 1244 RTE_TUNNEL_TYPE_GENEVE, 1245 RTE_TUNNEL_TYPE_TEREDO, 1246 RTE_TUNNEL_TYPE_NVGRE, 1247 RTE_TUNNEL_TYPE_IP_IN_GRE, 1248 RTE_L2_TUNNEL_TYPE_E_TAG, 1249 RTE_TUNNEL_TYPE_VXLAN_GPE, 1250 RTE_TUNNEL_TYPE_ECPRI, 1251 RTE_TUNNEL_TYPE_MAX, 1252 }; 1253 1254 /* Deprecated API file for rte_eth_dev_filter_* functions */ 1255 #include "rte_eth_ctrl.h" 1256 1257 /** 1258 * Memory space that can be configured to store Flow Director filters 1259 * in the board memory. 1260 */ 1261 enum rte_fdir_pballoc_type { 1262 RTE_FDIR_PBALLOC_64K = 0, /**< 64k. */ 1263 RTE_FDIR_PBALLOC_128K, /**< 128k. */ 1264 RTE_FDIR_PBALLOC_256K, /**< 256k. */ 1265 }; 1266 1267 /** 1268 * Select report mode of FDIR hash information in RX descriptors. 1269 */ 1270 enum rte_fdir_status_mode { 1271 RTE_FDIR_NO_REPORT_STATUS = 0, /**< Never report FDIR hash. */ 1272 RTE_FDIR_REPORT_STATUS, /**< Only report FDIR hash for matching pkts. */ 1273 RTE_FDIR_REPORT_STATUS_ALWAYS, /**< Always report FDIR hash. */ 1274 }; 1275 1276 /** 1277 * A structure used to configure the Flow Director (FDIR) feature 1278 * of an Ethernet port. 1279 * 1280 * If mode is RTE_FDIR_MODE_NONE, the pballoc value is ignored. 1281 */ 1282 struct rte_fdir_conf { 1283 enum rte_fdir_mode mode; /**< Flow Director mode. */ 1284 enum rte_fdir_pballoc_type pballoc; /**< Space for FDIR filters. */ 1285 enum rte_fdir_status_mode status; /**< How to report FDIR hash. */ 1286 /** RX queue of packets matching a "drop" filter in perfect mode. */ 1287 uint8_t drop_queue; 1288 struct rte_eth_fdir_masks mask; 1289 struct rte_eth_fdir_flex_conf flex_conf; 1290 /**< Flex payload configuration. */ 1291 }; 1292 1293 /** 1294 * UDP tunneling configuration. 1295 * 1296 * Used to configure the classifier of a device, 1297 * associating an UDP port with a type of tunnel. 1298 * 1299 * Some NICs may need such configuration to properly parse a tunnel 1300 * with any standard or custom UDP port. 1301 */ 1302 struct rte_eth_udp_tunnel { 1303 uint16_t udp_port; /**< UDP port used for the tunnel. */ 1304 uint8_t prot_type; /**< Tunnel type. @see rte_eth_tunnel_type */ 1305 }; 1306 1307 /** 1308 * A structure used to enable/disable specific device interrupts. 1309 */ 1310 struct rte_intr_conf { 1311 /** enable/disable lsc interrupt. 0 (default) - disable, 1 enable */ 1312 uint32_t lsc:1; 1313 /** enable/disable rxq interrupt. 0 (default) - disable, 1 enable */ 1314 uint32_t rxq:1; 1315 /** enable/disable rmv interrupt. 0 (default) - disable, 1 enable */ 1316 uint32_t rmv:1; 1317 }; 1318 1319 /** 1320 * A structure used to configure an Ethernet port. 1321 * Depending upon the RX multi-queue mode, extra advanced 1322 * configuration settings may be needed. 1323 */ 1324 struct rte_eth_conf { 1325 uint32_t link_speeds; /**< bitmap of ETH_LINK_SPEED_XXX of speeds to be 1326 used. ETH_LINK_SPEED_FIXED disables link 1327 autonegotiation, and a unique speed shall be 1328 set. Otherwise, the bitmap defines the set of 1329 speeds to be advertised. If the special value 1330 ETH_LINK_SPEED_AUTONEG (0) is used, all speeds 1331 supported are advertised. */ 1332 struct rte_eth_rxmode rxmode; /**< Port RX configuration. */ 1333 struct rte_eth_txmode txmode; /**< Port TX configuration. */ 1334 uint32_t lpbk_mode; /**< Loopback operation mode. By default the value 1335 is 0, meaning the loopback mode is disabled. 1336 Read the datasheet of given ethernet controller 1337 for details. The possible values of this field 1338 are defined in implementation of each driver. */ 1339 struct { 1340 struct rte_eth_rss_conf rss_conf; /**< Port RSS configuration */ 1341 struct rte_eth_vmdq_dcb_conf vmdq_dcb_conf; 1342 /**< Port vmdq+dcb configuration. */ 1343 struct rte_eth_dcb_rx_conf dcb_rx_conf; 1344 /**< Port dcb RX configuration. */ 1345 struct rte_eth_vmdq_rx_conf vmdq_rx_conf; 1346 /**< Port vmdq RX configuration. */ 1347 } rx_adv_conf; /**< Port RX filtering configuration. */ 1348 union { 1349 struct rte_eth_vmdq_dcb_tx_conf vmdq_dcb_tx_conf; 1350 /**< Port vmdq+dcb TX configuration. */ 1351 struct rte_eth_dcb_tx_conf dcb_tx_conf; 1352 /**< Port dcb TX configuration. */ 1353 struct rte_eth_vmdq_tx_conf vmdq_tx_conf; 1354 /**< Port vmdq TX configuration. */ 1355 } tx_adv_conf; /**< Port TX DCB configuration (union). */ 1356 /** Currently,Priority Flow Control(PFC) are supported,if DCB with PFC 1357 is needed,and the variable must be set ETH_DCB_PFC_SUPPORT. */ 1358 uint32_t dcb_capability_en; 1359 struct rte_fdir_conf fdir_conf; /**< FDIR configuration. DEPRECATED */ 1360 struct rte_intr_conf intr_conf; /**< Interrupt mode configuration. */ 1361 }; 1362 1363 /** 1364 * RX offload capabilities of a device. 1365 */ 1366 #define DEV_RX_OFFLOAD_VLAN_STRIP 0x00000001 1367 #define DEV_RX_OFFLOAD_IPV4_CKSUM 0x00000002 1368 #define DEV_RX_OFFLOAD_UDP_CKSUM 0x00000004 1369 #define DEV_RX_OFFLOAD_TCP_CKSUM 0x00000008 1370 #define DEV_RX_OFFLOAD_TCP_LRO 0x00000010 1371 #define DEV_RX_OFFLOAD_QINQ_STRIP 0x00000020 1372 #define DEV_RX_OFFLOAD_OUTER_IPV4_CKSUM 0x00000040 1373 #define DEV_RX_OFFLOAD_MACSEC_STRIP 0x00000080 1374 #define DEV_RX_OFFLOAD_HEADER_SPLIT 0x00000100 1375 #define DEV_RX_OFFLOAD_VLAN_FILTER 0x00000200 1376 #define DEV_RX_OFFLOAD_VLAN_EXTEND 0x00000400 1377 #define DEV_RX_OFFLOAD_JUMBO_FRAME 0x00000800 1378 #define DEV_RX_OFFLOAD_SCATTER 0x00002000 1379 /** 1380 * Timestamp is set by the driver in RTE_MBUF_DYNFIELD_TIMESTAMP_NAME 1381 * and RTE_MBUF_DYNFLAG_RX_TIMESTAMP_NAME is set in ol_flags. 1382 * The mbuf field and flag are registered when the offload is configured. 1383 */ 1384 #define DEV_RX_OFFLOAD_TIMESTAMP 0x00004000 1385 #define DEV_RX_OFFLOAD_SECURITY 0x00008000 1386 #define DEV_RX_OFFLOAD_KEEP_CRC 0x00010000 1387 #define DEV_RX_OFFLOAD_SCTP_CKSUM 0x00020000 1388 #define DEV_RX_OFFLOAD_OUTER_UDP_CKSUM 0x00040000 1389 #define DEV_RX_OFFLOAD_RSS_HASH 0x00080000 1390 #define RTE_ETH_RX_OFFLOAD_BUFFER_SPLIT 0x00100000 1391 1392 #define DEV_RX_OFFLOAD_CHECKSUM (DEV_RX_OFFLOAD_IPV4_CKSUM | \ 1393 DEV_RX_OFFLOAD_UDP_CKSUM | \ 1394 DEV_RX_OFFLOAD_TCP_CKSUM) 1395 #define DEV_RX_OFFLOAD_VLAN (DEV_RX_OFFLOAD_VLAN_STRIP | \ 1396 DEV_RX_OFFLOAD_VLAN_FILTER | \ 1397 DEV_RX_OFFLOAD_VLAN_EXTEND | \ 1398 DEV_RX_OFFLOAD_QINQ_STRIP) 1399 1400 /* 1401 * If new Rx offload capabilities are defined, they also must be 1402 * mentioned in rte_rx_offload_names in rte_ethdev.c file. 1403 */ 1404 1405 /** 1406 * TX offload capabilities of a device. 1407 */ 1408 #define DEV_TX_OFFLOAD_VLAN_INSERT 0x00000001 1409 #define DEV_TX_OFFLOAD_IPV4_CKSUM 0x00000002 1410 #define DEV_TX_OFFLOAD_UDP_CKSUM 0x00000004 1411 #define DEV_TX_OFFLOAD_TCP_CKSUM 0x00000008 1412 #define DEV_TX_OFFLOAD_SCTP_CKSUM 0x00000010 1413 #define DEV_TX_OFFLOAD_TCP_TSO 0x00000020 1414 #define DEV_TX_OFFLOAD_UDP_TSO 0x00000040 1415 #define DEV_TX_OFFLOAD_OUTER_IPV4_CKSUM 0x00000080 /**< Used for tunneling packet. */ 1416 #define DEV_TX_OFFLOAD_QINQ_INSERT 0x00000100 1417 #define DEV_TX_OFFLOAD_VXLAN_TNL_TSO 0x00000200 /**< Used for tunneling packet. */ 1418 #define DEV_TX_OFFLOAD_GRE_TNL_TSO 0x00000400 /**< Used for tunneling packet. */ 1419 #define DEV_TX_OFFLOAD_IPIP_TNL_TSO 0x00000800 /**< Used for tunneling packet. */ 1420 #define DEV_TX_OFFLOAD_GENEVE_TNL_TSO 0x00001000 /**< Used for tunneling packet. */ 1421 #define DEV_TX_OFFLOAD_MACSEC_INSERT 0x00002000 1422 #define DEV_TX_OFFLOAD_MT_LOCKFREE 0x00004000 1423 /**< Multiple threads can invoke rte_eth_tx_burst() concurrently on the same 1424 * tx queue without SW lock. 1425 */ 1426 #define DEV_TX_OFFLOAD_MULTI_SEGS 0x00008000 1427 /**< Device supports multi segment send. */ 1428 #define DEV_TX_OFFLOAD_MBUF_FAST_FREE 0x00010000 1429 /**< Device supports optimization for fast release of mbufs. 1430 * When set application must guarantee that per-queue all mbufs comes from 1431 * the same mempool and has refcnt = 1. 1432 */ 1433 #define DEV_TX_OFFLOAD_SECURITY 0x00020000 1434 /** 1435 * Device supports generic UDP tunneled packet TSO. 1436 * Application must set PKT_TX_TUNNEL_UDP and other mbuf fields required 1437 * for tunnel TSO. 1438 */ 1439 #define DEV_TX_OFFLOAD_UDP_TNL_TSO 0x00040000 1440 /** 1441 * Device supports generic IP tunneled packet TSO. 1442 * Application must set PKT_TX_TUNNEL_IP and other mbuf fields required 1443 * for tunnel TSO. 1444 */ 1445 #define DEV_TX_OFFLOAD_IP_TNL_TSO 0x00080000 1446 /** Device supports outer UDP checksum */ 1447 #define DEV_TX_OFFLOAD_OUTER_UDP_CKSUM 0x00100000 1448 /** 1449 * Device sends on time read from RTE_MBUF_DYNFIELD_TIMESTAMP_NAME 1450 * if RTE_MBUF_DYNFLAG_TX_TIMESTAMP_NAME is set in ol_flags. 1451 * The mbuf field and flag are registered when the offload is configured. 1452 */ 1453 #define DEV_TX_OFFLOAD_SEND_ON_TIMESTAMP 0x00200000 1454 /* 1455 * If new Tx offload capabilities are defined, they also must be 1456 * mentioned in rte_tx_offload_names in rte_ethdev.c file. 1457 */ 1458 1459 /**@{@name Device capabilities 1460 * Non-offload capabilities reported in rte_eth_dev_info.dev_capa. 1461 */ 1462 /** Device supports Rx queue setup after device started. */ 1463 #define RTE_ETH_DEV_CAPA_RUNTIME_RX_QUEUE_SETUP 0x00000001 1464 /** Device supports Tx queue setup after device started. */ 1465 #define RTE_ETH_DEV_CAPA_RUNTIME_TX_QUEUE_SETUP 0x00000002 1466 /**@}*/ 1467 1468 /* 1469 * Fallback default preferred Rx/Tx port parameters. 1470 * These are used if an application requests default parameters 1471 * but the PMD does not provide preferred values. 1472 */ 1473 #define RTE_ETH_DEV_FALLBACK_RX_RINGSIZE 512 1474 #define RTE_ETH_DEV_FALLBACK_TX_RINGSIZE 512 1475 #define RTE_ETH_DEV_FALLBACK_RX_NBQUEUES 1 1476 #define RTE_ETH_DEV_FALLBACK_TX_NBQUEUES 1 1477 1478 /** 1479 * Preferred Rx/Tx port parameters. 1480 * There are separate instances of this structure for transmission 1481 * and reception respectively. 1482 */ 1483 struct rte_eth_dev_portconf { 1484 uint16_t burst_size; /**< Device-preferred burst size */ 1485 uint16_t ring_size; /**< Device-preferred size of queue rings */ 1486 uint16_t nb_queues; /**< Device-preferred number of queues */ 1487 }; 1488 1489 /** 1490 * Default values for switch domain id when ethdev does not support switch 1491 * domain definitions. 1492 */ 1493 #define RTE_ETH_DEV_SWITCH_DOMAIN_ID_INVALID (UINT16_MAX) 1494 1495 /** 1496 * Ethernet device associated switch information 1497 */ 1498 struct rte_eth_switch_info { 1499 const char *name; /**< switch name */ 1500 uint16_t domain_id; /**< switch domain id */ 1501 uint16_t port_id; 1502 /**< 1503 * mapping to the devices physical switch port as enumerated from the 1504 * perspective of the embedded interconnect/switch. For SR-IOV enabled 1505 * device this may correspond to the VF_ID of each virtual function, 1506 * but each driver should explicitly define the mapping of switch 1507 * port identifier to that physical interconnect/switch 1508 */ 1509 }; 1510 1511 /** 1512 * @warning 1513 * @b EXPERIMENTAL: this structure may change without prior notice. 1514 * 1515 * Ethernet device Rx buffer segmentation capabilities. 1516 */ 1517 struct rte_eth_rxseg_capa { 1518 __extension__ 1519 uint32_t multi_pools:1; /**< Supports receiving to multiple pools.*/ 1520 uint32_t offset_allowed:1; /**< Supports buffer offsets. */ 1521 uint32_t offset_align_log2:4; /**< Required offset alignment. */ 1522 uint16_t max_nseg; /**< Maximum amount of segments to split. */ 1523 uint16_t reserved; /**< Reserved field. */ 1524 }; 1525 1526 /** 1527 * Ethernet device information 1528 */ 1529 1530 /** 1531 * Ethernet device representor port type. 1532 */ 1533 enum rte_eth_representor_type { 1534 RTE_ETH_REPRESENTOR_NONE, /**< not a representor. */ 1535 RTE_ETH_REPRESENTOR_VF, /**< representor of Virtual Function. */ 1536 RTE_ETH_REPRESENTOR_SF, /**< representor of Sub Function. */ 1537 RTE_ETH_REPRESENTOR_PF, /**< representor of Physical Function. */ 1538 }; 1539 1540 /** 1541 * A structure used to retrieve the contextual information of 1542 * an Ethernet device, such as the controlling driver of the 1543 * device, etc... 1544 */ 1545 struct rte_eth_dev_info { 1546 struct rte_device *device; /** Generic device information */ 1547 const char *driver_name; /**< Device Driver name. */ 1548 unsigned int if_index; /**< Index to bound host interface, or 0 if none. 1549 Use if_indextoname() to translate into an interface name. */ 1550 uint16_t min_mtu; /**< Minimum MTU allowed */ 1551 uint16_t max_mtu; /**< Maximum MTU allowed */ 1552 const uint32_t *dev_flags; /**< Device flags */ 1553 uint32_t min_rx_bufsize; /**< Minimum size of RX buffer. */ 1554 uint32_t max_rx_pktlen; /**< Maximum configurable length of RX pkt. */ 1555 /** Maximum configurable size of LRO aggregated packet. */ 1556 uint32_t max_lro_pkt_size; 1557 uint16_t max_rx_queues; /**< Maximum number of RX queues. */ 1558 uint16_t max_tx_queues; /**< Maximum number of TX queues. */ 1559 uint32_t max_mac_addrs; /**< Maximum number of MAC addresses. */ 1560 uint32_t max_hash_mac_addrs; 1561 /** Maximum number of hash MAC addresses for MTA and UTA. */ 1562 uint16_t max_vfs; /**< Maximum number of VFs. */ 1563 uint16_t max_vmdq_pools; /**< Maximum number of VMDq pools. */ 1564 struct rte_eth_rxseg_capa rx_seg_capa; /**< Segmentation capability.*/ 1565 uint64_t rx_offload_capa; 1566 /**< All RX offload capabilities including all per-queue ones */ 1567 uint64_t tx_offload_capa; 1568 /**< All TX offload capabilities including all per-queue ones */ 1569 uint64_t rx_queue_offload_capa; 1570 /**< Device per-queue RX offload capabilities. */ 1571 uint64_t tx_queue_offload_capa; 1572 /**< Device per-queue TX offload capabilities. */ 1573 uint16_t reta_size; 1574 /**< Device redirection table size, the total number of entries. */ 1575 uint8_t hash_key_size; /**< Hash key size in bytes */ 1576 /** Bit mask of RSS offloads, the bit offset also means flow type */ 1577 uint64_t flow_type_rss_offloads; 1578 struct rte_eth_rxconf default_rxconf; /**< Default RX configuration */ 1579 struct rte_eth_txconf default_txconf; /**< Default TX configuration */ 1580 uint16_t vmdq_queue_base; /**< First queue ID for VMDQ pools. */ 1581 uint16_t vmdq_queue_num; /**< Queue number for VMDQ pools. */ 1582 uint16_t vmdq_pool_base; /**< First ID of VMDQ pools. */ 1583 struct rte_eth_desc_lim rx_desc_lim; /**< RX descriptors limits */ 1584 struct rte_eth_desc_lim tx_desc_lim; /**< TX descriptors limits */ 1585 uint32_t speed_capa; /**< Supported speeds bitmap (ETH_LINK_SPEED_). */ 1586 /** Configured number of rx/tx queues */ 1587 uint16_t nb_rx_queues; /**< Number of RX queues. */ 1588 uint16_t nb_tx_queues; /**< Number of TX queues. */ 1589 /** Rx parameter recommendations */ 1590 struct rte_eth_dev_portconf default_rxportconf; 1591 /** Tx parameter recommendations */ 1592 struct rte_eth_dev_portconf default_txportconf; 1593 /** Generic device capabilities (RTE_ETH_DEV_CAPA_). */ 1594 uint64_t dev_capa; 1595 /** 1596 * Switching information for ports on a device with a 1597 * embedded managed interconnect/switch. 1598 */ 1599 struct rte_eth_switch_info switch_info; 1600 1601 uint64_t reserved_64s[2]; /**< Reserved for future fields */ 1602 void *reserved_ptrs[2]; /**< Reserved for future fields */ 1603 }; 1604 1605 /** 1606 * RX/TX queue states 1607 */ 1608 #define RTE_ETH_QUEUE_STATE_STOPPED 0 1609 #define RTE_ETH_QUEUE_STATE_STARTED 1 1610 #define RTE_ETH_QUEUE_STATE_HAIRPIN 2 1611 1612 /** 1613 * Ethernet device RX queue information structure. 1614 * Used to retrieve information about configured queue. 1615 */ 1616 struct rte_eth_rxq_info { 1617 struct rte_mempool *mp; /**< mempool used by that queue. */ 1618 struct rte_eth_rxconf conf; /**< queue config parameters. */ 1619 uint8_t scattered_rx; /**< scattered packets RX supported. */ 1620 uint8_t queue_state; /**< one of RTE_ETH_QUEUE_STATE_*. */ 1621 uint16_t nb_desc; /**< configured number of RXDs. */ 1622 uint16_t rx_buf_size; /**< hardware receive buffer size. */ 1623 } __rte_cache_min_aligned; 1624 1625 /** 1626 * Ethernet device TX queue information structure. 1627 * Used to retrieve information about configured queue. 1628 */ 1629 struct rte_eth_txq_info { 1630 struct rte_eth_txconf conf; /**< queue config parameters. */ 1631 uint16_t nb_desc; /**< configured number of TXDs. */ 1632 uint8_t queue_state; /**< one of RTE_ETH_QUEUE_STATE_*. */ 1633 } __rte_cache_min_aligned; 1634 1635 /* Generic Burst mode flag definition, values can be ORed. */ 1636 1637 /** 1638 * If the queues have different burst mode description, this bit will be set 1639 * by PMD, then the application can iterate to retrieve burst description for 1640 * all other queues. 1641 */ 1642 #define RTE_ETH_BURST_FLAG_PER_QUEUE (1ULL << 0) 1643 1644 /** 1645 * Ethernet device RX/TX queue packet burst mode information structure. 1646 * Used to retrieve information about packet burst mode setting. 1647 */ 1648 struct rte_eth_burst_mode { 1649 uint64_t flags; /**< The ORed values of RTE_ETH_BURST_FLAG_xxx */ 1650 1651 #define RTE_ETH_BURST_MODE_INFO_SIZE 1024 /**< Maximum size for information */ 1652 char info[RTE_ETH_BURST_MODE_INFO_SIZE]; /**< burst mode information */ 1653 }; 1654 1655 /** Maximum name length for extended statistics counters */ 1656 #define RTE_ETH_XSTATS_NAME_SIZE 64 1657 1658 /** 1659 * An Ethernet device extended statistic structure 1660 * 1661 * This structure is used by rte_eth_xstats_get() to provide 1662 * statistics that are not provided in the generic *rte_eth_stats* 1663 * structure. 1664 * It maps a name id, corresponding to an index in the array returned 1665 * by rte_eth_xstats_get_names(), to a statistic value. 1666 */ 1667 struct rte_eth_xstat { 1668 uint64_t id; /**< The index in xstats name array. */ 1669 uint64_t value; /**< The statistic counter value. */ 1670 }; 1671 1672 /** 1673 * A name element for extended statistics. 1674 * 1675 * An array of this structure is returned by rte_eth_xstats_get_names(). 1676 * It lists the names of extended statistics for a PMD. The *rte_eth_xstat* 1677 * structure references these names by their array index. 1678 * 1679 * The xstats should follow a common naming scheme. 1680 * Some names are standardized in rte_stats_strings. 1681 * Examples: 1682 * - rx_missed_errors 1683 * - tx_q3_bytes 1684 * - tx_size_128_to_255_packets 1685 */ 1686 struct rte_eth_xstat_name { 1687 char name[RTE_ETH_XSTATS_NAME_SIZE]; /**< The statistic name. */ 1688 }; 1689 1690 #define ETH_DCB_NUM_TCS 8 1691 #define ETH_MAX_VMDQ_POOL 64 1692 1693 /** 1694 * A structure used to get the information of queue and 1695 * TC mapping on both TX and RX paths. 1696 */ 1697 struct rte_eth_dcb_tc_queue_mapping { 1698 /** rx queues assigned to tc per Pool */ 1699 struct { 1700 uint16_t base; 1701 uint16_t nb_queue; 1702 } tc_rxq[ETH_MAX_VMDQ_POOL][ETH_DCB_NUM_TCS]; 1703 /** rx queues assigned to tc per Pool */ 1704 struct { 1705 uint16_t base; 1706 uint16_t nb_queue; 1707 } tc_txq[ETH_MAX_VMDQ_POOL][ETH_DCB_NUM_TCS]; 1708 }; 1709 1710 /** 1711 * A structure used to get the information of DCB. 1712 * It includes TC UP mapping and queue TC mapping. 1713 */ 1714 struct rte_eth_dcb_info { 1715 uint8_t nb_tcs; /**< number of TCs */ 1716 uint8_t prio_tc[ETH_DCB_NUM_USER_PRIORITIES]; /**< Priority to tc */ 1717 uint8_t tc_bws[ETH_DCB_NUM_TCS]; /**< TX BW percentage for each TC */ 1718 /** rx queues assigned to tc */ 1719 struct rte_eth_dcb_tc_queue_mapping tc_queue; 1720 }; 1721 1722 /** 1723 * This enum indicates the possible Forward Error Correction (FEC) modes 1724 * of an ethdev port. 1725 */ 1726 enum rte_eth_fec_mode { 1727 RTE_ETH_FEC_NOFEC = 0, /**< FEC is off */ 1728 RTE_ETH_FEC_AUTO, /**< FEC autonegotiation modes */ 1729 RTE_ETH_FEC_BASER, /**< FEC using common algorithm */ 1730 RTE_ETH_FEC_RS, /**< FEC using RS algorithm */ 1731 }; 1732 1733 /* Translate from FEC mode to FEC capa */ 1734 #define RTE_ETH_FEC_MODE_TO_CAPA(x) (1U << (x)) 1735 1736 /* This macro indicates FEC capa mask */ 1737 #define RTE_ETH_FEC_MODE_CAPA_MASK(x) (1U << (RTE_ETH_FEC_ ## x)) 1738 1739 /* A structure used to get capabilities per link speed */ 1740 struct rte_eth_fec_capa { 1741 uint32_t speed; /**< Link speed (see ETH_SPEED_NUM_*) */ 1742 uint32_t capa; /**< FEC capabilities bitmask */ 1743 }; 1744 1745 #define RTE_ETH_ALL RTE_MAX_ETHPORTS 1746 1747 /* Macros to check for valid port */ 1748 #define RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, retval) do { \ 1749 if (!rte_eth_dev_is_valid_port(port_id)) { \ 1750 RTE_ETHDEV_LOG(ERR, "Invalid port_id=%u\n", port_id); \ 1751 return retval; \ 1752 } \ 1753 } while (0) 1754 1755 #define RTE_ETH_VALID_PORTID_OR_RET(port_id) do { \ 1756 if (!rte_eth_dev_is_valid_port(port_id)) { \ 1757 RTE_ETHDEV_LOG(ERR, "Invalid port_id=%u\n", port_id); \ 1758 return; \ 1759 } \ 1760 } while (0) 1761 1762 /** 1763 * l2 tunnel configuration. 1764 */ 1765 1766 /**< l2 tunnel enable mask */ 1767 #define ETH_L2_TUNNEL_ENABLE_MASK 0x00000001 1768 /**< l2 tunnel insertion mask */ 1769 #define ETH_L2_TUNNEL_INSERTION_MASK 0x00000002 1770 /**< l2 tunnel stripping mask */ 1771 #define ETH_L2_TUNNEL_STRIPPING_MASK 0x00000004 1772 /**< l2 tunnel forwarding mask */ 1773 #define ETH_L2_TUNNEL_FORWARDING_MASK 0x00000008 1774 1775 /** 1776 * Function type used for RX packet processing packet callbacks. 1777 * 1778 * The callback function is called on RX with a burst of packets that have 1779 * been received on the given port and queue. 1780 * 1781 * @param port_id 1782 * The Ethernet port on which RX is being performed. 1783 * @param queue 1784 * The queue on the Ethernet port which is being used to receive the packets. 1785 * @param pkts 1786 * The burst of packets that have just been received. 1787 * @param nb_pkts 1788 * The number of packets in the burst pointed to by "pkts". 1789 * @param max_pkts 1790 * The max number of packets that can be stored in the "pkts" array. 1791 * @param user_param 1792 * The arbitrary user parameter passed in by the application when the callback 1793 * was originally configured. 1794 * @return 1795 * The number of packets returned to the user. 1796 */ 1797 typedef uint16_t (*rte_rx_callback_fn)(uint16_t port_id, uint16_t queue, 1798 struct rte_mbuf *pkts[], uint16_t nb_pkts, uint16_t max_pkts, 1799 void *user_param); 1800 1801 /** 1802 * Function type used for TX packet processing packet callbacks. 1803 * 1804 * The callback function is called on TX with a burst of packets immediately 1805 * before the packets are put onto the hardware queue for transmission. 1806 * 1807 * @param port_id 1808 * The Ethernet port on which TX is being performed. 1809 * @param queue 1810 * The queue on the Ethernet port which is being used to transmit the packets. 1811 * @param pkts 1812 * The burst of packets that are about to be transmitted. 1813 * @param nb_pkts 1814 * The number of packets in the burst pointed to by "pkts". 1815 * @param user_param 1816 * The arbitrary user parameter passed in by the application when the callback 1817 * was originally configured. 1818 * @return 1819 * The number of packets to be written to the NIC. 1820 */ 1821 typedef uint16_t (*rte_tx_callback_fn)(uint16_t port_id, uint16_t queue, 1822 struct rte_mbuf *pkts[], uint16_t nb_pkts, void *user_param); 1823 1824 /** 1825 * Possible states of an ethdev port. 1826 */ 1827 enum rte_eth_dev_state { 1828 /** Device is unused before being probed. */ 1829 RTE_ETH_DEV_UNUSED = 0, 1830 /** Device is attached when allocated in probing. */ 1831 RTE_ETH_DEV_ATTACHED, 1832 /** Device is in removed state when plug-out is detected. */ 1833 RTE_ETH_DEV_REMOVED, 1834 }; 1835 1836 struct rte_eth_dev_sriov { 1837 uint8_t active; /**< SRIOV is active with 16, 32 or 64 pools */ 1838 uint8_t nb_q_per_pool; /**< rx queue number per pool */ 1839 uint16_t def_vmdq_idx; /**< Default pool num used for PF */ 1840 uint16_t def_pool_q_idx; /**< Default pool queue start reg index */ 1841 }; 1842 #define RTE_ETH_DEV_SRIOV(dev) ((dev)->data->sriov) 1843 1844 #define RTE_ETH_NAME_MAX_LEN RTE_DEV_NAME_MAX_LEN 1845 1846 #define RTE_ETH_DEV_NO_OWNER 0 1847 1848 #define RTE_ETH_MAX_OWNER_NAME_LEN 64 1849 1850 struct rte_eth_dev_owner { 1851 uint64_t id; /**< The owner unique identifier. */ 1852 char name[RTE_ETH_MAX_OWNER_NAME_LEN]; /**< The owner name. */ 1853 }; 1854 1855 /** PMD supports thread-safe flow operations */ 1856 #define RTE_ETH_DEV_FLOW_OPS_THREAD_SAFE 0x0001 1857 /** Device supports link state interrupt */ 1858 #define RTE_ETH_DEV_INTR_LSC 0x0002 1859 /** Device is a bonded slave */ 1860 #define RTE_ETH_DEV_BONDED_SLAVE 0x0004 1861 /** Device supports device removal interrupt */ 1862 #define RTE_ETH_DEV_INTR_RMV 0x0008 1863 /** Device is port representor */ 1864 #define RTE_ETH_DEV_REPRESENTOR 0x0010 1865 /** Device does not support MAC change after started */ 1866 #define RTE_ETH_DEV_NOLIVE_MAC_ADDR 0x0020 1867 /** 1868 * Queue xstats filled automatically by ethdev layer. 1869 * PMDs filling the queue xstats themselves should not set this flag 1870 */ 1871 #define RTE_ETH_DEV_AUTOFILL_QUEUE_XSTATS 0x0040 1872 1873 /** 1874 * Iterates over valid ethdev ports owned by a specific owner. 1875 * 1876 * @param port_id 1877 * The id of the next possible valid owned port. 1878 * @param owner_id 1879 * The owner identifier. 1880 * RTE_ETH_DEV_NO_OWNER means iterate over all valid ownerless ports. 1881 * @return 1882 * Next valid port id owned by owner_id, RTE_MAX_ETHPORTS if there is none. 1883 */ 1884 uint64_t rte_eth_find_next_owned_by(uint16_t port_id, 1885 const uint64_t owner_id); 1886 1887 /** 1888 * Macro to iterate over all enabled ethdev ports owned by a specific owner. 1889 */ 1890 #define RTE_ETH_FOREACH_DEV_OWNED_BY(p, o) \ 1891 for (p = rte_eth_find_next_owned_by(0, o); \ 1892 (unsigned int)p < (unsigned int)RTE_MAX_ETHPORTS; \ 1893 p = rte_eth_find_next_owned_by(p + 1, o)) 1894 1895 /** 1896 * Iterates over valid ethdev ports. 1897 * 1898 * @param port_id 1899 * The id of the next possible valid port. 1900 * @return 1901 * Next valid port id, RTE_MAX_ETHPORTS if there is none. 1902 */ 1903 uint16_t rte_eth_find_next(uint16_t port_id); 1904 1905 /** 1906 * Macro to iterate over all enabled and ownerless ethdev ports. 1907 */ 1908 #define RTE_ETH_FOREACH_DEV(p) \ 1909 RTE_ETH_FOREACH_DEV_OWNED_BY(p, RTE_ETH_DEV_NO_OWNER) 1910 1911 /** 1912 * Iterates over ethdev ports of a specified device. 1913 * 1914 * @param port_id_start 1915 * The id of the next possible valid port. 1916 * @param parent 1917 * The generic device behind the ports to iterate. 1918 * @return 1919 * Next port id of the device, possibly port_id_start, 1920 * RTE_MAX_ETHPORTS if there is none. 1921 */ 1922 uint16_t 1923 rte_eth_find_next_of(uint16_t port_id_start, 1924 const struct rte_device *parent); 1925 1926 /** 1927 * Macro to iterate over all ethdev ports of a specified device. 1928 * 1929 * @param port_id 1930 * The id of the matching port being iterated. 1931 * @param parent 1932 * The rte_device pointer matching the iterated ports. 1933 */ 1934 #define RTE_ETH_FOREACH_DEV_OF(port_id, parent) \ 1935 for (port_id = rte_eth_find_next_of(0, parent); \ 1936 port_id < RTE_MAX_ETHPORTS; \ 1937 port_id = rte_eth_find_next_of(port_id + 1, parent)) 1938 1939 /** 1940 * Iterates over sibling ethdev ports (i.e. sharing the same rte_device). 1941 * 1942 * @param port_id_start 1943 * The id of the next possible valid sibling port. 1944 * @param ref_port_id 1945 * The id of a reference port to compare rte_device with. 1946 * @return 1947 * Next sibling port id, possibly port_id_start or ref_port_id itself, 1948 * RTE_MAX_ETHPORTS if there is none. 1949 */ 1950 uint16_t 1951 rte_eth_find_next_sibling(uint16_t port_id_start, uint16_t ref_port_id); 1952 1953 /** 1954 * Macro to iterate over all ethdev ports sharing the same rte_device 1955 * as the specified port. 1956 * Note: the specified reference port is part of the loop iterations. 1957 * 1958 * @param port_id 1959 * The id of the matching port being iterated. 1960 * @param ref_port_id 1961 * The id of the port being compared. 1962 */ 1963 #define RTE_ETH_FOREACH_DEV_SIBLING(port_id, ref_port_id) \ 1964 for (port_id = rte_eth_find_next_sibling(0, ref_port_id); \ 1965 port_id < RTE_MAX_ETHPORTS; \ 1966 port_id = rte_eth_find_next_sibling(port_id + 1, ref_port_id)) 1967 1968 /** 1969 * @warning 1970 * @b EXPERIMENTAL: this API may change without prior notice. 1971 * 1972 * Get a new unique owner identifier. 1973 * An owner identifier is used to owns Ethernet devices by only one DPDK entity 1974 * to avoid multiple management of device by different entities. 1975 * 1976 * @param owner_id 1977 * Owner identifier pointer. 1978 * @return 1979 * Negative errno value on error, 0 on success. 1980 */ 1981 __rte_experimental 1982 int rte_eth_dev_owner_new(uint64_t *owner_id); 1983 1984 /** 1985 * @warning 1986 * @b EXPERIMENTAL: this API may change without prior notice. 1987 * 1988 * Set an Ethernet device owner. 1989 * 1990 * @param port_id 1991 * The identifier of the port to own. 1992 * @param owner 1993 * The owner pointer. 1994 * @return 1995 * Negative errno value on error, 0 on success. 1996 */ 1997 __rte_experimental 1998 int rte_eth_dev_owner_set(const uint16_t port_id, 1999 const struct rte_eth_dev_owner *owner); 2000 2001 /** 2002 * @warning 2003 * @b EXPERIMENTAL: this API may change without prior notice. 2004 * 2005 * Unset Ethernet device owner to make the device ownerless. 2006 * 2007 * @param port_id 2008 * The identifier of port to make ownerless. 2009 * @param owner_id 2010 * The owner identifier. 2011 * @return 2012 * 0 on success, negative errno value on error. 2013 */ 2014 __rte_experimental 2015 int rte_eth_dev_owner_unset(const uint16_t port_id, 2016 const uint64_t owner_id); 2017 2018 /** 2019 * @warning 2020 * @b EXPERIMENTAL: this API may change without prior notice. 2021 * 2022 * Remove owner from all Ethernet devices owned by a specific owner. 2023 * 2024 * @param owner_id 2025 * The owner identifier. 2026 * @return 2027 * 0 on success, negative errno value on error. 2028 */ 2029 __rte_experimental 2030 int rte_eth_dev_owner_delete(const uint64_t owner_id); 2031 2032 /** 2033 * @warning 2034 * @b EXPERIMENTAL: this API may change without prior notice. 2035 * 2036 * Get the owner of an Ethernet device. 2037 * 2038 * @param port_id 2039 * The port identifier. 2040 * @param owner 2041 * The owner structure pointer to fill. 2042 * @return 2043 * 0 on success, negative errno value on error.. 2044 */ 2045 __rte_experimental 2046 int rte_eth_dev_owner_get(const uint16_t port_id, 2047 struct rte_eth_dev_owner *owner); 2048 2049 /** 2050 * Get the number of ports which are usable for the application. 2051 * 2052 * These devices must be iterated by using the macro 2053 * ``RTE_ETH_FOREACH_DEV`` or ``RTE_ETH_FOREACH_DEV_OWNED_BY`` 2054 * to deal with non-contiguous ranges of devices. 2055 * 2056 * @return 2057 * The count of available Ethernet devices. 2058 */ 2059 uint16_t rte_eth_dev_count_avail(void); 2060 2061 /** 2062 * Get the total number of ports which are allocated. 2063 * 2064 * Some devices may not be available for the application. 2065 * 2066 * @return 2067 * The total count of Ethernet devices. 2068 */ 2069 uint16_t rte_eth_dev_count_total(void); 2070 2071 /** 2072 * Convert a numerical speed in Mbps to a bitmap flag that can be used in 2073 * the bitmap link_speeds of the struct rte_eth_conf 2074 * 2075 * @param speed 2076 * Numerical speed value in Mbps 2077 * @param duplex 2078 * ETH_LINK_[HALF/FULL]_DUPLEX (only for 10/100M speeds) 2079 * @return 2080 * 0 if the speed cannot be mapped 2081 */ 2082 uint32_t rte_eth_speed_bitflag(uint32_t speed, int duplex); 2083 2084 /** 2085 * Get DEV_RX_OFFLOAD_* flag name. 2086 * 2087 * @param offload 2088 * Offload flag. 2089 * @return 2090 * Offload name or 'UNKNOWN' if the flag cannot be recognised. 2091 */ 2092 const char *rte_eth_dev_rx_offload_name(uint64_t offload); 2093 2094 /** 2095 * Get DEV_TX_OFFLOAD_* flag name. 2096 * 2097 * @param offload 2098 * Offload flag. 2099 * @return 2100 * Offload name or 'UNKNOWN' if the flag cannot be recognised. 2101 */ 2102 const char *rte_eth_dev_tx_offload_name(uint64_t offload); 2103 2104 /** 2105 * Configure an Ethernet device. 2106 * This function must be invoked first before any other function in the 2107 * Ethernet API. This function can also be re-invoked when a device is in the 2108 * stopped state. 2109 * 2110 * @param port_id 2111 * The port identifier of the Ethernet device to configure. 2112 * @param nb_rx_queue 2113 * The number of receive queues to set up for the Ethernet device. 2114 * @param nb_tx_queue 2115 * The number of transmit queues to set up for the Ethernet device. 2116 * @param eth_conf 2117 * The pointer to the configuration data to be used for the Ethernet device. 2118 * The *rte_eth_conf* structure includes: 2119 * - the hardware offload features to activate, with dedicated fields for 2120 * each statically configurable offload hardware feature provided by 2121 * Ethernet devices, such as IP checksum or VLAN tag stripping for 2122 * example. 2123 * The Rx offload bitfield API is obsolete and will be deprecated. 2124 * Applications should set the ignore_bitfield_offloads bit on *rxmode* 2125 * structure and use offloads field to set per-port offloads instead. 2126 * - Any offloading set in eth_conf->[rt]xmode.offloads must be within 2127 * the [rt]x_offload_capa returned from rte_eth_dev_info_get(). 2128 * Any type of device supported offloading set in the input argument 2129 * eth_conf->[rt]xmode.offloads to rte_eth_dev_configure() is enabled 2130 * on all queues and it can't be disabled in rte_eth_[rt]x_queue_setup() 2131 * - the Receive Side Scaling (RSS) configuration when using multiple RX 2132 * queues per port. Any RSS hash function set in eth_conf->rss_conf.rss_hf 2133 * must be within the flow_type_rss_offloads provided by drivers via 2134 * rte_eth_dev_info_get() API. 2135 * 2136 * Embedding all configuration information in a single data structure 2137 * is the more flexible method that allows the addition of new features 2138 * without changing the syntax of the API. 2139 * @return 2140 * - 0: Success, device configured. 2141 * - <0: Error code returned by the driver configuration function. 2142 */ 2143 int rte_eth_dev_configure(uint16_t port_id, uint16_t nb_rx_queue, 2144 uint16_t nb_tx_queue, const struct rte_eth_conf *eth_conf); 2145 2146 /** 2147 * @warning 2148 * @b EXPERIMENTAL: this API may change without prior notice. 2149 * 2150 * Check if an Ethernet device was physically removed. 2151 * 2152 * @param port_id 2153 * The port identifier of the Ethernet device. 2154 * @return 2155 * 1 when the Ethernet device is removed, otherwise 0. 2156 */ 2157 __rte_experimental 2158 int 2159 rte_eth_dev_is_removed(uint16_t port_id); 2160 2161 /** 2162 * Allocate and set up a receive queue for an Ethernet device. 2163 * 2164 * The function allocates a contiguous block of memory for *nb_rx_desc* 2165 * receive descriptors from a memory zone associated with *socket_id* 2166 * and initializes each receive descriptor with a network buffer allocated 2167 * from the memory pool *mb_pool*. 2168 * 2169 * @param port_id 2170 * The port identifier of the Ethernet device. 2171 * @param rx_queue_id 2172 * The index of the receive queue to set up. 2173 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 2174 * to rte_eth_dev_configure(). 2175 * @param nb_rx_desc 2176 * The number of receive descriptors to allocate for the receive ring. 2177 * @param socket_id 2178 * The *socket_id* argument is the socket identifier in case of NUMA. 2179 * The value can be *SOCKET_ID_ANY* if there is no NUMA constraint for 2180 * the DMA memory allocated for the receive descriptors of the ring. 2181 * @param rx_conf 2182 * The pointer to the configuration data to be used for the receive queue. 2183 * NULL value is allowed, in which case default RX configuration 2184 * will be used. 2185 * The *rx_conf* structure contains an *rx_thresh* structure with the values 2186 * of the Prefetch, Host, and Write-Back threshold registers of the receive 2187 * ring. 2188 * In addition it contains the hardware offloads features to activate using 2189 * the DEV_RX_OFFLOAD_* flags. 2190 * If an offloading set in rx_conf->offloads 2191 * hasn't been set in the input argument eth_conf->rxmode.offloads 2192 * to rte_eth_dev_configure(), it is a new added offloading, it must be 2193 * per-queue type and it is enabled for the queue. 2194 * No need to repeat any bit in rx_conf->offloads which has already been 2195 * enabled in rte_eth_dev_configure() at port level. An offloading enabled 2196 * at port level can't be disabled at queue level. 2197 * The configuration structure also contains the pointer to the array 2198 * of the receiving buffer segment descriptions, see rx_seg and rx_nseg 2199 * fields, this extended configuration might be used by split offloads like 2200 * RTE_ETH_RX_OFFLOAD_BUFFER_SPLIT. If mb_pool is not NULL, 2201 * the extended configuration fields must be set to NULL and zero. 2202 * @param mb_pool 2203 * The pointer to the memory pool from which to allocate *rte_mbuf* network 2204 * memory buffers to populate each descriptor of the receive ring. There are 2205 * two options to provide Rx buffer configuration: 2206 * - single pool: 2207 * mb_pool is not NULL, rx_conf.rx_nseg is 0. 2208 * - multiple segments description: 2209 * mb_pool is NULL, rx_conf.rx_seg is not NULL, rx_conf.rx_nseg is not 0. 2210 * Taken only if flag RTE_ETH_RX_OFFLOAD_BUFFER_SPLIT is set in offloads. 2211 * 2212 * @return 2213 * - 0: Success, receive queue correctly set up. 2214 * - -EIO: if device is removed. 2215 * - -ENODEV: if *port_id* is invalid. 2216 * - -EINVAL: The memory pool pointer is null or the size of network buffers 2217 * which can be allocated from this memory pool does not fit the various 2218 * buffer sizes allowed by the device controller. 2219 * - -ENOMEM: Unable to allocate the receive ring descriptors or to 2220 * allocate network memory buffers from the memory pool when 2221 * initializing receive descriptors. 2222 */ 2223 int rte_eth_rx_queue_setup(uint16_t port_id, uint16_t rx_queue_id, 2224 uint16_t nb_rx_desc, unsigned int socket_id, 2225 const struct rte_eth_rxconf *rx_conf, 2226 struct rte_mempool *mb_pool); 2227 2228 /** 2229 * @warning 2230 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 2231 * 2232 * Allocate and set up a hairpin receive queue for an Ethernet device. 2233 * 2234 * The function set up the selected queue to be used in hairpin. 2235 * 2236 * @param port_id 2237 * The port identifier of the Ethernet device. 2238 * @param rx_queue_id 2239 * The index of the receive queue to set up. 2240 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 2241 * to rte_eth_dev_configure(). 2242 * @param nb_rx_desc 2243 * The number of receive descriptors to allocate for the receive ring. 2244 * 0 means the PMD will use default value. 2245 * @param conf 2246 * The pointer to the hairpin configuration. 2247 * 2248 * @return 2249 * - (0) if successful. 2250 * - (-ENODEV) if *port_id* is invalid. 2251 * - (-ENOTSUP) if hardware doesn't support. 2252 * - (-EINVAL) if bad parameter. 2253 * - (-ENOMEM) if unable to allocate the resources. 2254 */ 2255 __rte_experimental 2256 int rte_eth_rx_hairpin_queue_setup 2257 (uint16_t port_id, uint16_t rx_queue_id, uint16_t nb_rx_desc, 2258 const struct rte_eth_hairpin_conf *conf); 2259 2260 /** 2261 * Allocate and set up a transmit queue for an Ethernet device. 2262 * 2263 * @param port_id 2264 * The port identifier of the Ethernet device. 2265 * @param tx_queue_id 2266 * The index of the transmit queue to set up. 2267 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 2268 * to rte_eth_dev_configure(). 2269 * @param nb_tx_desc 2270 * The number of transmit descriptors to allocate for the transmit ring. 2271 * @param socket_id 2272 * The *socket_id* argument is the socket identifier in case of NUMA. 2273 * Its value can be *SOCKET_ID_ANY* if there is no NUMA constraint for 2274 * the DMA memory allocated for the transmit descriptors of the ring. 2275 * @param tx_conf 2276 * The pointer to the configuration data to be used for the transmit queue. 2277 * NULL value is allowed, in which case default TX configuration 2278 * will be used. 2279 * The *tx_conf* structure contains the following data: 2280 * - The *tx_thresh* structure with the values of the Prefetch, Host, and 2281 * Write-Back threshold registers of the transmit ring. 2282 * When setting Write-Back threshold to the value greater then zero, 2283 * *tx_rs_thresh* value should be explicitly set to one. 2284 * - The *tx_free_thresh* value indicates the [minimum] number of network 2285 * buffers that must be pending in the transmit ring to trigger their 2286 * [implicit] freeing by the driver transmit function. 2287 * - The *tx_rs_thresh* value indicates the [minimum] number of transmit 2288 * descriptors that must be pending in the transmit ring before setting the 2289 * RS bit on a descriptor by the driver transmit function. 2290 * The *tx_rs_thresh* value should be less or equal then 2291 * *tx_free_thresh* value, and both of them should be less then 2292 * *nb_tx_desc* - 3. 2293 * - The *offloads* member contains Tx offloads to be enabled. 2294 * If an offloading set in tx_conf->offloads 2295 * hasn't been set in the input argument eth_conf->txmode.offloads 2296 * to rte_eth_dev_configure(), it is a new added offloading, it must be 2297 * per-queue type and it is enabled for the queue. 2298 * No need to repeat any bit in tx_conf->offloads which has already been 2299 * enabled in rte_eth_dev_configure() at port level. An offloading enabled 2300 * at port level can't be disabled at queue level. 2301 * 2302 * Note that setting *tx_free_thresh* or *tx_rs_thresh* value to 0 forces 2303 * the transmit function to use default values. 2304 * @return 2305 * - 0: Success, the transmit queue is correctly set up. 2306 * - -ENOMEM: Unable to allocate the transmit ring descriptors. 2307 */ 2308 int rte_eth_tx_queue_setup(uint16_t port_id, uint16_t tx_queue_id, 2309 uint16_t nb_tx_desc, unsigned int socket_id, 2310 const struct rte_eth_txconf *tx_conf); 2311 2312 /** 2313 * @warning 2314 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 2315 * 2316 * Allocate and set up a transmit hairpin queue for an Ethernet device. 2317 * 2318 * @param port_id 2319 * The port identifier of the Ethernet device. 2320 * @param tx_queue_id 2321 * The index of the transmit queue to set up. 2322 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 2323 * to rte_eth_dev_configure(). 2324 * @param nb_tx_desc 2325 * The number of transmit descriptors to allocate for the transmit ring. 2326 * 0 to set default PMD value. 2327 * @param conf 2328 * The hairpin configuration. 2329 * 2330 * @return 2331 * - (0) if successful. 2332 * - (-ENODEV) if *port_id* is invalid. 2333 * - (-ENOTSUP) if hardware doesn't support. 2334 * - (-EINVAL) if bad parameter. 2335 * - (-ENOMEM) if unable to allocate the resources. 2336 */ 2337 __rte_experimental 2338 int rte_eth_tx_hairpin_queue_setup 2339 (uint16_t port_id, uint16_t tx_queue_id, uint16_t nb_tx_desc, 2340 const struct rte_eth_hairpin_conf *conf); 2341 2342 /** 2343 * @warning 2344 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 2345 * 2346 * Get all the hairpin peer Rx / Tx ports of the current port. 2347 * The caller should ensure that the array is large enough to save the ports 2348 * list. 2349 * 2350 * @param port_id 2351 * The port identifier of the Ethernet device. 2352 * @param peer_ports 2353 * Pointer to the array to store the peer ports list. 2354 * @param len 2355 * Length of the array to store the port identifiers. 2356 * @param direction 2357 * Current port to peer port direction 2358 * positive - current used as Tx to get all peer Rx ports. 2359 * zero - current used as Rx to get all peer Tx ports. 2360 * 2361 * @return 2362 * - (0 or positive) actual peer ports number. 2363 * - (-EINVAL) if bad parameter. 2364 * - (-ENODEV) if *port_id* invalid 2365 * - (-ENOTSUP) if hardware doesn't support. 2366 * - Others detailed errors from PMD drivers. 2367 */ 2368 __rte_experimental 2369 int rte_eth_hairpin_get_peer_ports(uint16_t port_id, uint16_t *peer_ports, 2370 size_t len, uint32_t direction); 2371 2372 /** 2373 * @warning 2374 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 2375 * 2376 * Bind all hairpin Tx queues of one port to the Rx queues of the peer port. 2377 * It is only allowed to call this function after all hairpin queues are 2378 * configured properly and the devices are in started state. 2379 * 2380 * @param tx_port 2381 * The identifier of the Tx port. 2382 * @param rx_port 2383 * The identifier of peer Rx port. 2384 * RTE_MAX_ETHPORTS is allowed for the traversal of all devices. 2385 * Rx port ID could have the same value as Tx port ID. 2386 * 2387 * @return 2388 * - (0) if successful. 2389 * - (-ENODEV) if Tx port ID is invalid. 2390 * - (-EBUSY) if device is not in started state. 2391 * - (-ENOTSUP) if hardware doesn't support. 2392 * - Others detailed errors from PMD drivers. 2393 */ 2394 __rte_experimental 2395 int rte_eth_hairpin_bind(uint16_t tx_port, uint16_t rx_port); 2396 2397 /** 2398 * @warning 2399 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 2400 * 2401 * Unbind all hairpin Tx queues of one port from the Rx queues of the peer port. 2402 * This should be called before closing the Tx or Rx devices, if the bind 2403 * function is called before. 2404 * After unbinding the hairpin ports pair, it is allowed to bind them again. 2405 * Changing queues configuration should be after stopping the device(s). 2406 * 2407 * @param tx_port 2408 * The identifier of the Tx port. 2409 * @param rx_port 2410 * The identifier of peer Rx port. 2411 * RTE_MAX_ETHPORTS is allowed for traversal of all devices. 2412 * Rx port ID could have the same value as Tx port ID. 2413 * 2414 * @return 2415 * - (0) if successful. 2416 * - (-ENODEV) if Tx port ID is invalid. 2417 * - (-EBUSY) if device is in stopped state. 2418 * - (-ENOTSUP) if hardware doesn't support. 2419 * - Others detailed errors from PMD drivers. 2420 */ 2421 __rte_experimental 2422 int rte_eth_hairpin_unbind(uint16_t tx_port, uint16_t rx_port); 2423 2424 /** 2425 * Return the NUMA socket to which an Ethernet device is connected 2426 * 2427 * @param port_id 2428 * The port identifier of the Ethernet device 2429 * @return 2430 * The NUMA socket id to which the Ethernet device is connected or 2431 * a default of zero if the socket could not be determined. 2432 * -1 is returned is the port_id value is out of range. 2433 */ 2434 int rte_eth_dev_socket_id(uint16_t port_id); 2435 2436 /** 2437 * Check if port_id of device is attached 2438 * 2439 * @param port_id 2440 * The port identifier of the Ethernet device 2441 * @return 2442 * - 0 if port is out of range or not attached 2443 * - 1 if device is attached 2444 */ 2445 int rte_eth_dev_is_valid_port(uint16_t port_id); 2446 2447 /** 2448 * Start specified RX queue of a port. It is used when rx_deferred_start 2449 * flag of the specified queue is true. 2450 * 2451 * @param port_id 2452 * The port identifier of the Ethernet device 2453 * @param rx_queue_id 2454 * The index of the rx queue to update the ring. 2455 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 2456 * to rte_eth_dev_configure(). 2457 * @return 2458 * - 0: Success, the receive queue is started. 2459 * - -ENODEV: if *port_id* is invalid. 2460 * - -EINVAL: The queue_id out of range or belong to hairpin. 2461 * - -EIO: if device is removed. 2462 * - -ENOTSUP: The function not supported in PMD driver. 2463 */ 2464 int rte_eth_dev_rx_queue_start(uint16_t port_id, uint16_t rx_queue_id); 2465 2466 /** 2467 * Stop specified RX queue of a port 2468 * 2469 * @param port_id 2470 * The port identifier of the Ethernet device 2471 * @param rx_queue_id 2472 * The index of the rx queue to update the ring. 2473 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 2474 * to rte_eth_dev_configure(). 2475 * @return 2476 * - 0: Success, the receive queue is stopped. 2477 * - -ENODEV: if *port_id* is invalid. 2478 * - -EINVAL: The queue_id out of range or belong to hairpin. 2479 * - -EIO: if device is removed. 2480 * - -ENOTSUP: The function not supported in PMD driver. 2481 */ 2482 int rte_eth_dev_rx_queue_stop(uint16_t port_id, uint16_t rx_queue_id); 2483 2484 /** 2485 * Start TX for specified queue of a port. It is used when tx_deferred_start 2486 * flag of the specified queue is true. 2487 * 2488 * @param port_id 2489 * The port identifier of the Ethernet device 2490 * @param tx_queue_id 2491 * The index of the tx queue to update the ring. 2492 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 2493 * to rte_eth_dev_configure(). 2494 * @return 2495 * - 0: Success, the transmit queue is started. 2496 * - -ENODEV: if *port_id* is invalid. 2497 * - -EINVAL: The queue_id out of range or belong to hairpin. 2498 * - -EIO: if device is removed. 2499 * - -ENOTSUP: The function not supported in PMD driver. 2500 */ 2501 int rte_eth_dev_tx_queue_start(uint16_t port_id, uint16_t tx_queue_id); 2502 2503 /** 2504 * Stop specified TX queue of a port 2505 * 2506 * @param port_id 2507 * The port identifier of the Ethernet device 2508 * @param tx_queue_id 2509 * The index of the tx queue to update the ring. 2510 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 2511 * to rte_eth_dev_configure(). 2512 * @return 2513 * - 0: Success, the transmit queue is stopped. 2514 * - -ENODEV: if *port_id* is invalid. 2515 * - -EINVAL: The queue_id out of range or belong to hairpin. 2516 * - -EIO: if device is removed. 2517 * - -ENOTSUP: The function not supported in PMD driver. 2518 */ 2519 int rte_eth_dev_tx_queue_stop(uint16_t port_id, uint16_t tx_queue_id); 2520 2521 /** 2522 * Start an Ethernet device. 2523 * 2524 * The device start step is the last one and consists of setting the configured 2525 * offload features and in starting the transmit and the receive units of the 2526 * device. 2527 * 2528 * Device RTE_ETH_DEV_NOLIVE_MAC_ADDR flag causes MAC address to be set before 2529 * PMD port start callback function is invoked. 2530 * 2531 * On success, all basic functions exported by the Ethernet API (link status, 2532 * receive/transmit, and so on) can be invoked. 2533 * 2534 * @param port_id 2535 * The port identifier of the Ethernet device. 2536 * @return 2537 * - 0: Success, Ethernet device started. 2538 * - <0: Error code of the driver device start function. 2539 */ 2540 int rte_eth_dev_start(uint16_t port_id); 2541 2542 /** 2543 * Stop an Ethernet device. The device can be restarted with a call to 2544 * rte_eth_dev_start() 2545 * 2546 * @param port_id 2547 * The port identifier of the Ethernet device. 2548 * @return 2549 * - 0: Success, Ethernet device stopped. 2550 * - <0: Error code of the driver device stop function. 2551 */ 2552 int rte_eth_dev_stop(uint16_t port_id); 2553 2554 /** 2555 * Link up an Ethernet device. 2556 * 2557 * Set device link up will re-enable the device rx/tx 2558 * functionality after it is previously set device linked down. 2559 * 2560 * @param port_id 2561 * The port identifier of the Ethernet device. 2562 * @return 2563 * - 0: Success, Ethernet device linked up. 2564 * - <0: Error code of the driver device link up function. 2565 */ 2566 int rte_eth_dev_set_link_up(uint16_t port_id); 2567 2568 /** 2569 * Link down an Ethernet device. 2570 * The device rx/tx functionality will be disabled if success, 2571 * and it can be re-enabled with a call to 2572 * rte_eth_dev_set_link_up() 2573 * 2574 * @param port_id 2575 * The port identifier of the Ethernet device. 2576 */ 2577 int rte_eth_dev_set_link_down(uint16_t port_id); 2578 2579 /** 2580 * Close a stopped Ethernet device. The device cannot be restarted! 2581 * The function frees all port resources. 2582 * 2583 * @param port_id 2584 * The port identifier of the Ethernet device. 2585 * @return 2586 * - Zero if the port is closed successfully. 2587 * - Negative if something went wrong. 2588 */ 2589 int rte_eth_dev_close(uint16_t port_id); 2590 2591 /** 2592 * Reset a Ethernet device and keep its port id. 2593 * 2594 * When a port has to be reset passively, the DPDK application can invoke 2595 * this function. For example when a PF is reset, all its VFs should also 2596 * be reset. Normally a DPDK application can invoke this function when 2597 * RTE_ETH_EVENT_INTR_RESET event is detected, but can also use it to start 2598 * a port reset in other circumstances. 2599 * 2600 * When this function is called, it first stops the port and then calls the 2601 * PMD specific dev_uninit( ) and dev_init( ) to return the port to initial 2602 * state, in which no Tx and Rx queues are setup, as if the port has been 2603 * reset and not started. The port keeps the port id it had before the 2604 * function call. 2605 * 2606 * After calling rte_eth_dev_reset( ), the application should use 2607 * rte_eth_dev_configure( ), rte_eth_rx_queue_setup( ), 2608 * rte_eth_tx_queue_setup( ), and rte_eth_dev_start( ) 2609 * to reconfigure the device as appropriate. 2610 * 2611 * Note: To avoid unexpected behavior, the application should stop calling 2612 * Tx and Rx functions before calling rte_eth_dev_reset( ). For thread 2613 * safety, all these controlling functions should be called from the same 2614 * thread. 2615 * 2616 * @param port_id 2617 * The port identifier of the Ethernet device. 2618 * 2619 * @return 2620 * - (0) if successful. 2621 * - (-ENODEV) if *port_id* is invalid. 2622 * - (-ENOTSUP) if hardware doesn't support this function. 2623 * - (-EPERM) if not ran from the primary process. 2624 * - (-EIO) if re-initialisation failed or device is removed. 2625 * - (-ENOMEM) if the reset failed due to OOM. 2626 * - (-EAGAIN) if the reset temporarily failed and should be retried later. 2627 */ 2628 int rte_eth_dev_reset(uint16_t port_id); 2629 2630 /** 2631 * Enable receipt in promiscuous mode for an Ethernet device. 2632 * 2633 * @param port_id 2634 * The port identifier of the Ethernet device. 2635 * @return 2636 * - (0) if successful. 2637 * - (-ENOTSUP) if support for promiscuous_enable() does not exist 2638 * for the device. 2639 * - (-ENODEV) if *port_id* invalid. 2640 */ 2641 int rte_eth_promiscuous_enable(uint16_t port_id); 2642 2643 /** 2644 * Disable receipt in promiscuous mode for an Ethernet device. 2645 * 2646 * @param port_id 2647 * The port identifier of the Ethernet device. 2648 * @return 2649 * - (0) if successful. 2650 * - (-ENOTSUP) if support for promiscuous_disable() does not exist 2651 * for the device. 2652 * - (-ENODEV) if *port_id* invalid. 2653 */ 2654 int rte_eth_promiscuous_disable(uint16_t port_id); 2655 2656 /** 2657 * Return the value of promiscuous mode for an Ethernet device. 2658 * 2659 * @param port_id 2660 * The port identifier of the Ethernet device. 2661 * @return 2662 * - (1) if promiscuous is enabled 2663 * - (0) if promiscuous is disabled. 2664 * - (-1) on error 2665 */ 2666 int rte_eth_promiscuous_get(uint16_t port_id); 2667 2668 /** 2669 * Enable the receipt of any multicast frame by an Ethernet device. 2670 * 2671 * @param port_id 2672 * The port identifier of the Ethernet device. 2673 * @return 2674 * - (0) if successful. 2675 * - (-ENOTSUP) if support for allmulticast_enable() does not exist 2676 * for the device. 2677 * - (-ENODEV) if *port_id* invalid. 2678 */ 2679 int rte_eth_allmulticast_enable(uint16_t port_id); 2680 2681 /** 2682 * Disable the receipt of all multicast frames by an Ethernet device. 2683 * 2684 * @param port_id 2685 * The port identifier of the Ethernet device. 2686 * @return 2687 * - (0) if successful. 2688 * - (-ENOTSUP) if support for allmulticast_disable() does not exist 2689 * for the device. 2690 * - (-ENODEV) if *port_id* invalid. 2691 */ 2692 int rte_eth_allmulticast_disable(uint16_t port_id); 2693 2694 /** 2695 * Return the value of allmulticast mode for an Ethernet device. 2696 * 2697 * @param port_id 2698 * The port identifier of the Ethernet device. 2699 * @return 2700 * - (1) if allmulticast is enabled 2701 * - (0) if allmulticast is disabled. 2702 * - (-1) on error 2703 */ 2704 int rte_eth_allmulticast_get(uint16_t port_id); 2705 2706 /** 2707 * Retrieve the link status (up/down), the duplex mode (half/full), 2708 * the negotiation (auto/fixed), and if available, the speed (Mbps). 2709 * 2710 * It might need to wait up to 9 seconds. 2711 * @see rte_eth_link_get_nowait. 2712 * 2713 * @param port_id 2714 * The port identifier of the Ethernet device. 2715 * @param link 2716 * Link information written back. 2717 * @return 2718 * - (0) if successful. 2719 * - (-ENOTSUP) if the function is not supported in PMD driver. 2720 * - (-ENODEV) if *port_id* invalid. 2721 * - (-EINVAL) if bad parameter. 2722 */ 2723 int rte_eth_link_get(uint16_t port_id, struct rte_eth_link *link); 2724 2725 /** 2726 * Retrieve the link status (up/down), the duplex mode (half/full), 2727 * the negotiation (auto/fixed), and if available, the speed (Mbps). 2728 * 2729 * @param port_id 2730 * The port identifier of the Ethernet device. 2731 * @param link 2732 * Link information written back. 2733 * @return 2734 * - (0) if successful. 2735 * - (-ENOTSUP) if the function is not supported in PMD driver. 2736 * - (-ENODEV) if *port_id* invalid. 2737 * - (-EINVAL) if bad parameter. 2738 */ 2739 int rte_eth_link_get_nowait(uint16_t port_id, struct rte_eth_link *link); 2740 2741 /** 2742 * @warning 2743 * @b EXPERIMENTAL: this API may change without prior notice. 2744 * 2745 * The function converts a link_speed to a string. It handles all special 2746 * values like unknown or none speed. 2747 * 2748 * @param link_speed 2749 * link_speed of rte_eth_link struct 2750 * @return 2751 * Link speed in textual format. It's pointer to immutable memory. 2752 * No free is required. 2753 */ 2754 __rte_experimental 2755 const char *rte_eth_link_speed_to_str(uint32_t link_speed); 2756 2757 /** 2758 * @warning 2759 * @b EXPERIMENTAL: this API may change without prior notice. 2760 * 2761 * The function converts a rte_eth_link struct representing a link status to 2762 * a string. 2763 * 2764 * @param str 2765 * A pointer to a string to be filled with textual representation of 2766 * device status. At least ETH_LINK_MAX_STR_LEN bytes should be allocated to 2767 * store default link status text. 2768 * @param len 2769 * Length of available memory at 'str' string. 2770 * @param eth_link 2771 * Link status returned by rte_eth_link_get function 2772 * @return 2773 * Number of bytes written to str array or -EINVAL if bad parameter. 2774 */ 2775 __rte_experimental 2776 int rte_eth_link_to_str(char *str, size_t len, 2777 const struct rte_eth_link *eth_link); 2778 2779 /** 2780 * Retrieve the general I/O statistics of an Ethernet device. 2781 * 2782 * @param port_id 2783 * The port identifier of the Ethernet device. 2784 * @param stats 2785 * A pointer to a structure of type *rte_eth_stats* to be filled with 2786 * the values of device counters for the following set of statistics: 2787 * - *ipackets* with the total of successfully received packets. 2788 * - *opackets* with the total of successfully transmitted packets. 2789 * - *ibytes* with the total of successfully received bytes. 2790 * - *obytes* with the total of successfully transmitted bytes. 2791 * - *ierrors* with the total of erroneous received packets. 2792 * - *oerrors* with the total of failed transmitted packets. 2793 * @return 2794 * Zero if successful. Non-zero otherwise. 2795 */ 2796 int rte_eth_stats_get(uint16_t port_id, struct rte_eth_stats *stats); 2797 2798 /** 2799 * Reset the general I/O statistics of an Ethernet device. 2800 * 2801 * @param port_id 2802 * The port identifier of the Ethernet device. 2803 * @return 2804 * - (0) if device notified to reset stats. 2805 * - (-ENOTSUP) if hardware doesn't support. 2806 * - (-ENODEV) if *port_id* invalid. 2807 * - (<0): Error code of the driver stats reset function. 2808 */ 2809 int rte_eth_stats_reset(uint16_t port_id); 2810 2811 /** 2812 * Retrieve names of extended statistics of an Ethernet device. 2813 * 2814 * There is an assumption that 'xstat_names' and 'xstats' arrays are matched 2815 * by array index: 2816 * xstats_names[i].name => xstats[i].value 2817 * 2818 * And the array index is same with id field of 'struct rte_eth_xstat': 2819 * xstats[i].id == i 2820 * 2821 * This assumption makes key-value pair matching less flexible but simpler. 2822 * 2823 * @param port_id 2824 * The port identifier of the Ethernet device. 2825 * @param xstats_names 2826 * An rte_eth_xstat_name array of at least *size* elements to 2827 * be filled. If set to NULL, the function returns the required number 2828 * of elements. 2829 * @param size 2830 * The size of the xstats_names array (number of elements). 2831 * @return 2832 * - A positive value lower or equal to size: success. The return value 2833 * is the number of entries filled in the stats table. 2834 * - A positive value higher than size: error, the given statistics table 2835 * is too small. The return value corresponds to the size that should 2836 * be given to succeed. The entries in the table are not valid and 2837 * shall not be used by the caller. 2838 * - A negative value on error (invalid port id). 2839 */ 2840 int rte_eth_xstats_get_names(uint16_t port_id, 2841 struct rte_eth_xstat_name *xstats_names, 2842 unsigned int size); 2843 2844 /** 2845 * Retrieve extended statistics of an Ethernet device. 2846 * 2847 * There is an assumption that 'xstat_names' and 'xstats' arrays are matched 2848 * by array index: 2849 * xstats_names[i].name => xstats[i].value 2850 * 2851 * And the array index is same with id field of 'struct rte_eth_xstat': 2852 * xstats[i].id == i 2853 * 2854 * This assumption makes key-value pair matching less flexible but simpler. 2855 * 2856 * @param port_id 2857 * The port identifier of the Ethernet device. 2858 * @param xstats 2859 * A pointer to a table of structure of type *rte_eth_xstat* 2860 * to be filled with device statistics ids and values. 2861 * This parameter can be set to NULL if n is 0. 2862 * @param n 2863 * The size of the xstats array (number of elements). 2864 * @return 2865 * - A positive value lower or equal to n: success. The return value 2866 * is the number of entries filled in the stats table. 2867 * - A positive value higher than n: error, the given statistics table 2868 * is too small. The return value corresponds to the size that should 2869 * be given to succeed. The entries in the table are not valid and 2870 * shall not be used by the caller. 2871 * - A negative value on error (invalid port id). 2872 */ 2873 int rte_eth_xstats_get(uint16_t port_id, struct rte_eth_xstat *xstats, 2874 unsigned int n); 2875 2876 /** 2877 * Retrieve names of extended statistics of an Ethernet device. 2878 * 2879 * @param port_id 2880 * The port identifier of the Ethernet device. 2881 * @param xstats_names 2882 * An rte_eth_xstat_name array of at least *size* elements to 2883 * be filled. If set to NULL, the function returns the required number 2884 * of elements. 2885 * @param ids 2886 * IDs array given by app to retrieve specific statistics 2887 * @param size 2888 * The size of the xstats_names array (number of elements). 2889 * @return 2890 * - A positive value lower or equal to size: success. The return value 2891 * is the number of entries filled in the stats table. 2892 * - A positive value higher than size: error, the given statistics table 2893 * is too small. The return value corresponds to the size that should 2894 * be given to succeed. The entries in the table are not valid and 2895 * shall not be used by the caller. 2896 * - A negative value on error (invalid port id). 2897 */ 2898 int 2899 rte_eth_xstats_get_names_by_id(uint16_t port_id, 2900 struct rte_eth_xstat_name *xstats_names, unsigned int size, 2901 uint64_t *ids); 2902 2903 /** 2904 * Retrieve extended statistics of an Ethernet device. 2905 * 2906 * @param port_id 2907 * The port identifier of the Ethernet device. 2908 * @param ids 2909 * A pointer to an ids array passed by application. This tells which 2910 * statistics values function should retrieve. This parameter 2911 * can be set to NULL if size is 0. In this case function will retrieve 2912 * all available statistics. 2913 * @param values 2914 * A pointer to a table to be filled with device statistics values. 2915 * @param size 2916 * The size of the ids array (number of elements). 2917 * @return 2918 * - A positive value lower or equal to size: success. The return value 2919 * is the number of entries filled in the stats table. 2920 * - A positive value higher than size: error, the given statistics table 2921 * is too small. The return value corresponds to the size that should 2922 * be given to succeed. The entries in the table are not valid and 2923 * shall not be used by the caller. 2924 * - A negative value on error (invalid port id). 2925 */ 2926 int rte_eth_xstats_get_by_id(uint16_t port_id, const uint64_t *ids, 2927 uint64_t *values, unsigned int size); 2928 2929 /** 2930 * Gets the ID of a statistic from its name. 2931 * 2932 * This function searches for the statistics using string compares, and 2933 * as such should not be used on the fast-path. For fast-path retrieval of 2934 * specific statistics, store the ID as provided in *id* from this function, 2935 * and pass the ID to rte_eth_xstats_get() 2936 * 2937 * @param port_id The port to look up statistics from 2938 * @param xstat_name The name of the statistic to return 2939 * @param[out] id A pointer to an app-supplied uint64_t which should be 2940 * set to the ID of the stat if the stat exists. 2941 * @return 2942 * 0 on success 2943 * -ENODEV for invalid port_id, 2944 * -EIO if device is removed, 2945 * -EINVAL if the xstat_name doesn't exist in port_id 2946 * -ENOMEM if bad parameter. 2947 */ 2948 int rte_eth_xstats_get_id_by_name(uint16_t port_id, const char *xstat_name, 2949 uint64_t *id); 2950 2951 /** 2952 * Reset extended statistics of an Ethernet device. 2953 * 2954 * @param port_id 2955 * The port identifier of the Ethernet device. 2956 * @return 2957 * - (0) if device notified to reset extended stats. 2958 * - (-ENOTSUP) if pmd doesn't support both 2959 * extended stats and basic stats reset. 2960 * - (-ENODEV) if *port_id* invalid. 2961 * - (<0): Error code of the driver xstats reset function. 2962 */ 2963 int rte_eth_xstats_reset(uint16_t port_id); 2964 2965 /** 2966 * Set a mapping for the specified transmit queue to the specified per-queue 2967 * statistics counter. 2968 * 2969 * @param port_id 2970 * The port identifier of the Ethernet device. 2971 * @param tx_queue_id 2972 * The index of the transmit queue for which a queue stats mapping is required. 2973 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 2974 * to rte_eth_dev_configure(). 2975 * @param stat_idx 2976 * The per-queue packet statistics functionality number that the transmit 2977 * queue is to be assigned. 2978 * The value must be in the range [0, RTE_ETHDEV_QUEUE_STAT_CNTRS - 1]. 2979 * Max RTE_ETHDEV_QUEUE_STAT_CNTRS being 256. 2980 * @return 2981 * Zero if successful. Non-zero otherwise. 2982 */ 2983 int rte_eth_dev_set_tx_queue_stats_mapping(uint16_t port_id, 2984 uint16_t tx_queue_id, uint8_t stat_idx); 2985 2986 /** 2987 * Set a mapping for the specified receive queue to the specified per-queue 2988 * statistics counter. 2989 * 2990 * @param port_id 2991 * The port identifier of the Ethernet device. 2992 * @param rx_queue_id 2993 * The index of the receive queue for which a queue stats mapping is required. 2994 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 2995 * to rte_eth_dev_configure(). 2996 * @param stat_idx 2997 * The per-queue packet statistics functionality number that the receive 2998 * queue is to be assigned. 2999 * The value must be in the range [0, RTE_ETHDEV_QUEUE_STAT_CNTRS - 1]. 3000 * Max RTE_ETHDEV_QUEUE_STAT_CNTRS being 256. 3001 * @return 3002 * Zero if successful. Non-zero otherwise. 3003 */ 3004 int rte_eth_dev_set_rx_queue_stats_mapping(uint16_t port_id, 3005 uint16_t rx_queue_id, 3006 uint8_t stat_idx); 3007 3008 /** 3009 * Retrieve the Ethernet address of an Ethernet device. 3010 * 3011 * @param port_id 3012 * The port identifier of the Ethernet device. 3013 * @param mac_addr 3014 * A pointer to a structure of type *ether_addr* to be filled with 3015 * the Ethernet address of the Ethernet device. 3016 * @return 3017 * - (0) if successful 3018 * - (-ENODEV) if *port_id* invalid. 3019 * - (-EINVAL) if bad parameter. 3020 */ 3021 int rte_eth_macaddr_get(uint16_t port_id, struct rte_ether_addr *mac_addr); 3022 3023 /** 3024 * Retrieve the contextual information of an Ethernet device. 3025 * 3026 * As part of this function, a number of of fields in dev_info will be 3027 * initialized as follows: 3028 * 3029 * rx_desc_lim = lim 3030 * tx_desc_lim = lim 3031 * 3032 * Where lim is defined within the rte_eth_dev_info_get as 3033 * 3034 * const struct rte_eth_desc_lim lim = { 3035 * .nb_max = UINT16_MAX, 3036 * .nb_min = 0, 3037 * .nb_align = 1, 3038 * .nb_seg_max = UINT16_MAX, 3039 * .nb_mtu_seg_max = UINT16_MAX, 3040 * }; 3041 * 3042 * device = dev->device 3043 * min_mtu = RTE_ETHER_MIN_MTU 3044 * max_mtu = UINT16_MAX 3045 * 3046 * The following fields will be populated if support for dev_infos_get() 3047 * exists for the device and the rte_eth_dev 'dev' has been populated 3048 * successfully with a call to it: 3049 * 3050 * driver_name = dev->device->driver->name 3051 * nb_rx_queues = dev->data->nb_rx_queues 3052 * nb_tx_queues = dev->data->nb_tx_queues 3053 * dev_flags = &dev->data->dev_flags 3054 * 3055 * @param port_id 3056 * The port identifier of the Ethernet device. 3057 * @param dev_info 3058 * A pointer to a structure of type *rte_eth_dev_info* to be filled with 3059 * the contextual information of the Ethernet device. 3060 * @return 3061 * - (0) if successful. 3062 * - (-ENOTSUP) if support for dev_infos_get() does not exist for the device. 3063 * - (-ENODEV) if *port_id* invalid. 3064 * - (-EINVAL) if bad parameter. 3065 */ 3066 int rte_eth_dev_info_get(uint16_t port_id, struct rte_eth_dev_info *dev_info); 3067 3068 /** 3069 * Retrieve the firmware version of a device. 3070 * 3071 * @param port_id 3072 * The port identifier of the device. 3073 * @param fw_version 3074 * A pointer to a string array storing the firmware version of a device, 3075 * the string includes terminating null. This pointer is allocated by caller. 3076 * @param fw_size 3077 * The size of the string array pointed by fw_version, which should be 3078 * large enough to store firmware version of the device. 3079 * @return 3080 * - (0) if successful. 3081 * - (-ENOTSUP) if operation is not supported. 3082 * - (-ENODEV) if *port_id* invalid. 3083 * - (-EIO) if device is removed. 3084 * - (-EINVAL) if bad parameter. 3085 * - (>0) if *fw_size* is not enough to store firmware version, return 3086 * the size of the non truncated string. 3087 */ 3088 int rte_eth_dev_fw_version_get(uint16_t port_id, 3089 char *fw_version, size_t fw_size); 3090 3091 /** 3092 * Retrieve the supported packet types of an Ethernet device. 3093 * 3094 * When a packet type is announced as supported, it *must* be recognized by 3095 * the PMD. For instance, if RTE_PTYPE_L2_ETHER, RTE_PTYPE_L2_ETHER_VLAN 3096 * and RTE_PTYPE_L3_IPV4 are announced, the PMD must return the following 3097 * packet types for these packets: 3098 * - Ether/IPv4 -> RTE_PTYPE_L2_ETHER | RTE_PTYPE_L3_IPV4 3099 * - Ether/Vlan/IPv4 -> RTE_PTYPE_L2_ETHER_VLAN | RTE_PTYPE_L3_IPV4 3100 * - Ether/[anything else] -> RTE_PTYPE_L2_ETHER 3101 * - Ether/Vlan/[anything else] -> RTE_PTYPE_L2_ETHER_VLAN 3102 * 3103 * When a packet is received by a PMD, the most precise type must be 3104 * returned among the ones supported. However a PMD is allowed to set 3105 * packet type that is not in the supported list, at the condition that it 3106 * is more precise. Therefore, a PMD announcing no supported packet types 3107 * can still set a matching packet type in a received packet. 3108 * 3109 * @note 3110 * Better to invoke this API after the device is already started or rx burst 3111 * function is decided, to obtain correct supported ptypes. 3112 * @note 3113 * if a given PMD does not report what ptypes it supports, then the supported 3114 * ptype count is reported as 0. 3115 * @param port_id 3116 * The port identifier of the Ethernet device. 3117 * @param ptype_mask 3118 * A hint of what kind of packet type which the caller is interested in. 3119 * @param ptypes 3120 * An array pointer to store adequate packet types, allocated by caller. 3121 * @param num 3122 * Size of the array pointed by param ptypes. 3123 * @return 3124 * - (>=0) Number of supported ptypes. If the number of types exceeds num, 3125 * only num entries will be filled into the ptypes array, but the full 3126 * count of supported ptypes will be returned. 3127 * - (-ENODEV) if *port_id* invalid. 3128 * - (-EINVAL) if bad parameter. 3129 */ 3130 int rte_eth_dev_get_supported_ptypes(uint16_t port_id, uint32_t ptype_mask, 3131 uint32_t *ptypes, int num); 3132 /** 3133 * Inform Ethernet device about reduced range of packet types to handle. 3134 * 3135 * Application can use this function to set only specific ptypes that it's 3136 * interested. This information can be used by the PMD to optimize Rx path. 3137 * 3138 * The function accepts an array `set_ptypes` allocated by the caller to 3139 * store the packet types set by the driver, the last element of the array 3140 * is set to RTE_PTYPE_UNKNOWN. The size of the `set_ptype` array should be 3141 * `rte_eth_dev_get_supported_ptypes() + 1` else it might only be filled 3142 * partially. 3143 * 3144 * @param port_id 3145 * The port identifier of the Ethernet device. 3146 * @param ptype_mask 3147 * The ptype family that application is interested in should be bitwise OR of 3148 * RTE_PTYPE_*_MASK or 0. 3149 * @param set_ptypes 3150 * An array pointer to store set packet types, allocated by caller. The 3151 * function marks the end of array with RTE_PTYPE_UNKNOWN. 3152 * @param num 3153 * Size of the array pointed by param ptypes. 3154 * Should be rte_eth_dev_get_supported_ptypes() + 1 to accommodate the 3155 * set ptypes. 3156 * @return 3157 * - (0) if Success. 3158 * - (-ENODEV) if *port_id* invalid. 3159 * - (-EINVAL) if *ptype_mask* is invalid (or) set_ptypes is NULL and 3160 * num > 0. 3161 */ 3162 int rte_eth_dev_set_ptypes(uint16_t port_id, uint32_t ptype_mask, 3163 uint32_t *set_ptypes, unsigned int num); 3164 3165 /** 3166 * Retrieve the MTU of an Ethernet device. 3167 * 3168 * @param port_id 3169 * The port identifier of the Ethernet device. 3170 * @param mtu 3171 * A pointer to a uint16_t where the retrieved MTU is to be stored. 3172 * @return 3173 * - (0) if successful. 3174 * - (-ENODEV) if *port_id* invalid. 3175 * - (-EINVAL) if bad parameter. 3176 */ 3177 int rte_eth_dev_get_mtu(uint16_t port_id, uint16_t *mtu); 3178 3179 /** 3180 * Change the MTU of an Ethernet device. 3181 * 3182 * @param port_id 3183 * The port identifier of the Ethernet device. 3184 * @param mtu 3185 * A uint16_t for the MTU to be applied. 3186 * @return 3187 * - (0) if successful. 3188 * - (-ENOTSUP) if operation is not supported. 3189 * - (-ENODEV) if *port_id* invalid. 3190 * - (-EIO) if device is removed. 3191 * - (-EINVAL) if *mtu* invalid, validation of mtu can occur within 3192 * rte_eth_dev_set_mtu if dev_infos_get is supported by the device or 3193 * when the mtu is set using dev->dev_ops->mtu_set. 3194 * - (-EBUSY) if operation is not allowed when the port is running 3195 */ 3196 int rte_eth_dev_set_mtu(uint16_t port_id, uint16_t mtu); 3197 3198 /** 3199 * Enable/Disable hardware filtering by an Ethernet device of received 3200 * VLAN packets tagged with a given VLAN Tag Identifier. 3201 * 3202 * @param port_id 3203 * The port identifier of the Ethernet device. 3204 * @param vlan_id 3205 * The VLAN Tag Identifier whose filtering must be enabled or disabled. 3206 * @param on 3207 * If > 0, enable VLAN filtering of VLAN packets tagged with *vlan_id*. 3208 * Otherwise, disable VLAN filtering of VLAN packets tagged with *vlan_id*. 3209 * @return 3210 * - (0) if successful. 3211 * - (-ENOTSUP) if hardware-assisted VLAN filtering not configured. 3212 * - (-ENODEV) if *port_id* invalid. 3213 * - (-EIO) if device is removed. 3214 * - (-ENOSYS) if VLAN filtering on *port_id* disabled. 3215 * - (-EINVAL) if *vlan_id* > 4095. 3216 */ 3217 int rte_eth_dev_vlan_filter(uint16_t port_id, uint16_t vlan_id, int on); 3218 3219 /** 3220 * Enable/Disable hardware VLAN Strip by a rx queue of an Ethernet device. 3221 * 3222 * @param port_id 3223 * The port identifier of the Ethernet device. 3224 * @param rx_queue_id 3225 * The index of the receive queue for which a queue stats mapping is required. 3226 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 3227 * to rte_eth_dev_configure(). 3228 * @param on 3229 * If 1, Enable VLAN Stripping of the receive queue of the Ethernet port. 3230 * If 0, Disable VLAN Stripping of the receive queue of the Ethernet port. 3231 * @return 3232 * - (0) if successful. 3233 * - (-ENOTSUP) if hardware-assisted VLAN stripping not configured. 3234 * - (-ENODEV) if *port_id* invalid. 3235 * - (-EINVAL) if *rx_queue_id* invalid. 3236 */ 3237 int rte_eth_dev_set_vlan_strip_on_queue(uint16_t port_id, uint16_t rx_queue_id, 3238 int on); 3239 3240 /** 3241 * Set the Outer VLAN Ether Type by an Ethernet device, it can be inserted to 3242 * the VLAN header. 3243 * 3244 * @param port_id 3245 * The port identifier of the Ethernet device. 3246 * @param vlan_type 3247 * The vlan type. 3248 * @param tag_type 3249 * The Tag Protocol ID 3250 * @return 3251 * - (0) if successful. 3252 * - (-ENOTSUP) if hardware-assisted VLAN TPID setup is not supported. 3253 * - (-ENODEV) if *port_id* invalid. 3254 * - (-EIO) if device is removed. 3255 */ 3256 int rte_eth_dev_set_vlan_ether_type(uint16_t port_id, 3257 enum rte_vlan_type vlan_type, 3258 uint16_t tag_type); 3259 3260 /** 3261 * Set VLAN offload configuration on an Ethernet device. 3262 * 3263 * @param port_id 3264 * The port identifier of the Ethernet device. 3265 * @param offload_mask 3266 * The VLAN Offload bit mask can be mixed use with "OR" 3267 * ETH_VLAN_STRIP_OFFLOAD 3268 * ETH_VLAN_FILTER_OFFLOAD 3269 * ETH_VLAN_EXTEND_OFFLOAD 3270 * ETH_QINQ_STRIP_OFFLOAD 3271 * @return 3272 * - (0) if successful. 3273 * - (-ENOTSUP) if hardware-assisted VLAN filtering not configured. 3274 * - (-ENODEV) if *port_id* invalid. 3275 * - (-EIO) if device is removed. 3276 */ 3277 int rte_eth_dev_set_vlan_offload(uint16_t port_id, int offload_mask); 3278 3279 /** 3280 * Read VLAN Offload configuration from an Ethernet device 3281 * 3282 * @param port_id 3283 * The port identifier of the Ethernet device. 3284 * @return 3285 * - (>0) if successful. Bit mask to indicate 3286 * ETH_VLAN_STRIP_OFFLOAD 3287 * ETH_VLAN_FILTER_OFFLOAD 3288 * ETH_VLAN_EXTEND_OFFLOAD 3289 * ETH_QINQ_STRIP_OFFLOAD 3290 * - (-ENODEV) if *port_id* invalid. 3291 */ 3292 int rte_eth_dev_get_vlan_offload(uint16_t port_id); 3293 3294 /** 3295 * Set port based TX VLAN insertion on or off. 3296 * 3297 * @param port_id 3298 * The port identifier of the Ethernet device. 3299 * @param pvid 3300 * Port based TX VLAN identifier together with user priority. 3301 * @param on 3302 * Turn on or off the port based TX VLAN insertion. 3303 * 3304 * @return 3305 * - (0) if successful. 3306 * - negative if failed. 3307 */ 3308 int rte_eth_dev_set_vlan_pvid(uint16_t port_id, uint16_t pvid, int on); 3309 3310 typedef void (*buffer_tx_error_fn)(struct rte_mbuf **unsent, uint16_t count, 3311 void *userdata); 3312 3313 /** 3314 * Structure used to buffer packets for future TX 3315 * Used by APIs rte_eth_tx_buffer and rte_eth_tx_buffer_flush 3316 */ 3317 struct rte_eth_dev_tx_buffer { 3318 buffer_tx_error_fn error_callback; 3319 void *error_userdata; 3320 uint16_t size; /**< Size of buffer for buffered tx */ 3321 uint16_t length; /**< Number of packets in the array */ 3322 struct rte_mbuf *pkts[]; 3323 /**< Pending packets to be sent on explicit flush or when full */ 3324 }; 3325 3326 /** 3327 * Calculate the size of the tx buffer. 3328 * 3329 * @param sz 3330 * Number of stored packets. 3331 */ 3332 #define RTE_ETH_TX_BUFFER_SIZE(sz) \ 3333 (sizeof(struct rte_eth_dev_tx_buffer) + (sz) * sizeof(struct rte_mbuf *)) 3334 3335 /** 3336 * Initialize default values for buffered transmitting 3337 * 3338 * @param buffer 3339 * Tx buffer to be initialized. 3340 * @param size 3341 * Buffer size 3342 * @return 3343 * 0 if no error 3344 */ 3345 int 3346 rte_eth_tx_buffer_init(struct rte_eth_dev_tx_buffer *buffer, uint16_t size); 3347 3348 /** 3349 * Configure a callback for buffered packets which cannot be sent 3350 * 3351 * Register a specific callback to be called when an attempt is made to send 3352 * all packets buffered on an ethernet port, but not all packets can 3353 * successfully be sent. The callback registered here will be called only 3354 * from calls to rte_eth_tx_buffer() and rte_eth_tx_buffer_flush() APIs. 3355 * The default callback configured for each queue by default just frees the 3356 * packets back to the calling mempool. If additional behaviour is required, 3357 * for example, to count dropped packets, or to retry transmission of packets 3358 * which cannot be sent, this function should be used to register a suitable 3359 * callback function to implement the desired behaviour. 3360 * The example callback "rte_eth_count_unsent_packet_callback()" is also 3361 * provided as reference. 3362 * 3363 * @param buffer 3364 * The port identifier of the Ethernet device. 3365 * @param callback 3366 * The function to be used as the callback. 3367 * @param userdata 3368 * Arbitrary parameter to be passed to the callback function 3369 * @return 3370 * 0 on success, or -EINVAL if bad parameter 3371 */ 3372 int 3373 rte_eth_tx_buffer_set_err_callback(struct rte_eth_dev_tx_buffer *buffer, 3374 buffer_tx_error_fn callback, void *userdata); 3375 3376 /** 3377 * Callback function for silently dropping unsent buffered packets. 3378 * 3379 * This function can be passed to rte_eth_tx_buffer_set_err_callback() to 3380 * adjust the default behavior when buffered packets cannot be sent. This 3381 * function drops any unsent packets silently and is used by tx buffered 3382 * operations as default behavior. 3383 * 3384 * NOTE: this function should not be called directly, instead it should be used 3385 * as a callback for packet buffering. 3386 * 3387 * NOTE: when configuring this function as a callback with 3388 * rte_eth_tx_buffer_set_err_callback(), the final, userdata parameter 3389 * should point to an uint64_t value. 3390 * 3391 * @param pkts 3392 * The previously buffered packets which could not be sent 3393 * @param unsent 3394 * The number of unsent packets in the pkts array 3395 * @param userdata 3396 * Not used 3397 */ 3398 void 3399 rte_eth_tx_buffer_drop_callback(struct rte_mbuf **pkts, uint16_t unsent, 3400 void *userdata); 3401 3402 /** 3403 * Callback function for tracking unsent buffered packets. 3404 * 3405 * This function can be passed to rte_eth_tx_buffer_set_err_callback() to 3406 * adjust the default behavior when buffered packets cannot be sent. This 3407 * function drops any unsent packets, but also updates a user-supplied counter 3408 * to track the overall number of packets dropped. The counter should be an 3409 * uint64_t variable. 3410 * 3411 * NOTE: this function should not be called directly, instead it should be used 3412 * as a callback for packet buffering. 3413 * 3414 * NOTE: when configuring this function as a callback with 3415 * rte_eth_tx_buffer_set_err_callback(), the final, userdata parameter 3416 * should point to an uint64_t value. 3417 * 3418 * @param pkts 3419 * The previously buffered packets which could not be sent 3420 * @param unsent 3421 * The number of unsent packets in the pkts array 3422 * @param userdata 3423 * Pointer to an uint64_t value, which will be incremented by unsent 3424 */ 3425 void 3426 rte_eth_tx_buffer_count_callback(struct rte_mbuf **pkts, uint16_t unsent, 3427 void *userdata); 3428 3429 /** 3430 * Request the driver to free mbufs currently cached by the driver. The 3431 * driver will only free the mbuf if it is no longer in use. It is the 3432 * application's responsibility to ensure rte_eth_tx_buffer_flush(..) is 3433 * called if needed. 3434 * 3435 * @param port_id 3436 * The port identifier of the Ethernet device. 3437 * @param queue_id 3438 * The index of the transmit queue through which output packets must be 3439 * sent. 3440 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 3441 * to rte_eth_dev_configure(). 3442 * @param free_cnt 3443 * Maximum number of packets to free. Use 0 to indicate all possible packets 3444 * should be freed. Note that a packet may be using multiple mbufs. 3445 * @return 3446 * Failure: < 0 3447 * -ENODEV: Invalid interface 3448 * -EIO: device is removed 3449 * -ENOTSUP: Driver does not support function 3450 * Success: >= 0 3451 * 0-n: Number of packets freed. More packets may still remain in ring that 3452 * are in use. 3453 */ 3454 int 3455 rte_eth_tx_done_cleanup(uint16_t port_id, uint16_t queue_id, uint32_t free_cnt); 3456 3457 /** 3458 * Subtypes for IPsec offload event(@ref RTE_ETH_EVENT_IPSEC) raised by 3459 * eth device. 3460 */ 3461 enum rte_eth_event_ipsec_subtype { 3462 RTE_ETH_EVENT_IPSEC_UNKNOWN = 0, 3463 /**< Unknown event type */ 3464 RTE_ETH_EVENT_IPSEC_ESN_OVERFLOW, 3465 /**< Sequence number overflow */ 3466 RTE_ETH_EVENT_IPSEC_SA_TIME_EXPIRY, 3467 /**< Soft time expiry of SA */ 3468 RTE_ETH_EVENT_IPSEC_SA_BYTE_EXPIRY, 3469 /**< Soft byte expiry of SA */ 3470 RTE_ETH_EVENT_IPSEC_MAX 3471 /**< Max value of this enum */ 3472 }; 3473 3474 /** 3475 * Descriptor for @ref RTE_ETH_EVENT_IPSEC event. Used by eth dev to send extra 3476 * information of the IPsec offload event. 3477 */ 3478 struct rte_eth_event_ipsec_desc { 3479 enum rte_eth_event_ipsec_subtype subtype; 3480 /**< Type of RTE_ETH_EVENT_IPSEC_* event */ 3481 uint64_t metadata; 3482 /**< Event specific metadata 3483 * 3484 * For the following events, *userdata* registered 3485 * with the *rte_security_session* would be returned 3486 * as metadata, 3487 * 3488 * - @ref RTE_ETH_EVENT_IPSEC_ESN_OVERFLOW 3489 * - @ref RTE_ETH_EVENT_IPSEC_SA_TIME_EXPIRY 3490 * - @ref RTE_ETH_EVENT_IPSEC_SA_BYTE_EXPIRY 3491 * 3492 * @see struct rte_security_session_conf 3493 * 3494 */ 3495 }; 3496 3497 /** 3498 * The eth device event type for interrupt, and maybe others in the future. 3499 */ 3500 enum rte_eth_event_type { 3501 RTE_ETH_EVENT_UNKNOWN, /**< unknown event type */ 3502 RTE_ETH_EVENT_INTR_LSC, /**< lsc interrupt event */ 3503 RTE_ETH_EVENT_QUEUE_STATE, 3504 /**< queue state event (enabled/disabled) */ 3505 RTE_ETH_EVENT_INTR_RESET, 3506 /**< reset interrupt event, sent to VF on PF reset */ 3507 RTE_ETH_EVENT_VF_MBOX, /**< message from the VF received by PF */ 3508 RTE_ETH_EVENT_MACSEC, /**< MACsec offload related event */ 3509 RTE_ETH_EVENT_INTR_RMV, /**< device removal event */ 3510 RTE_ETH_EVENT_NEW, /**< port is probed */ 3511 RTE_ETH_EVENT_DESTROY, /**< port is released */ 3512 RTE_ETH_EVENT_IPSEC, /**< IPsec offload related event */ 3513 RTE_ETH_EVENT_FLOW_AGED,/**< New aged-out flows is detected */ 3514 RTE_ETH_EVENT_MAX /**< max value of this enum */ 3515 }; 3516 3517 typedef int (*rte_eth_dev_cb_fn)(uint16_t port_id, 3518 enum rte_eth_event_type event, void *cb_arg, void *ret_param); 3519 /**< user application callback to be registered for interrupts */ 3520 3521 /** 3522 * Register a callback function for port event. 3523 * 3524 * @param port_id 3525 * Port id. 3526 * RTE_ETH_ALL means register the event for all port ids. 3527 * @param event 3528 * Event interested. 3529 * @param cb_fn 3530 * User supplied callback function to be called. 3531 * @param cb_arg 3532 * Pointer to the parameters for the registered callback. 3533 * 3534 * @return 3535 * - On success, zero. 3536 * - On failure, a negative value. 3537 */ 3538 int rte_eth_dev_callback_register(uint16_t port_id, 3539 enum rte_eth_event_type event, 3540 rte_eth_dev_cb_fn cb_fn, void *cb_arg); 3541 3542 /** 3543 * Unregister a callback function for port event. 3544 * 3545 * @param port_id 3546 * Port id. 3547 * RTE_ETH_ALL means unregister the event for all port ids. 3548 * @param event 3549 * Event interested. 3550 * @param cb_fn 3551 * User supplied callback function to be called. 3552 * @param cb_arg 3553 * Pointer to the parameters for the registered callback. -1 means to 3554 * remove all for the same callback address and same event. 3555 * 3556 * @return 3557 * - On success, zero. 3558 * - On failure, a negative value. 3559 */ 3560 int rte_eth_dev_callback_unregister(uint16_t port_id, 3561 enum rte_eth_event_type event, 3562 rte_eth_dev_cb_fn cb_fn, void *cb_arg); 3563 3564 /** 3565 * When there is no rx packet coming in Rx Queue for a long time, we can 3566 * sleep lcore related to RX Queue for power saving, and enable rx interrupt 3567 * to be triggered when Rx packet arrives. 3568 * 3569 * The rte_eth_dev_rx_intr_enable() function enables rx queue 3570 * interrupt on specific rx queue of a port. 3571 * 3572 * @param port_id 3573 * The port identifier of the Ethernet device. 3574 * @param queue_id 3575 * The index of the receive queue from which to retrieve input packets. 3576 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 3577 * to rte_eth_dev_configure(). 3578 * @return 3579 * - (0) if successful. 3580 * - (-ENOTSUP) if underlying hardware OR driver doesn't support 3581 * that operation. 3582 * - (-ENODEV) if *port_id* invalid. 3583 * - (-EIO) if device is removed. 3584 */ 3585 int rte_eth_dev_rx_intr_enable(uint16_t port_id, uint16_t queue_id); 3586 3587 /** 3588 * When lcore wakes up from rx interrupt indicating packet coming, disable rx 3589 * interrupt and returns to polling mode. 3590 * 3591 * The rte_eth_dev_rx_intr_disable() function disables rx queue 3592 * interrupt on specific rx queue of a port. 3593 * 3594 * @param port_id 3595 * The port identifier of the Ethernet device. 3596 * @param queue_id 3597 * The index of the receive queue from which to retrieve input packets. 3598 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 3599 * to rte_eth_dev_configure(). 3600 * @return 3601 * - (0) if successful. 3602 * - (-ENOTSUP) if underlying hardware OR driver doesn't support 3603 * that operation. 3604 * - (-ENODEV) if *port_id* invalid. 3605 * - (-EIO) if device is removed. 3606 */ 3607 int rte_eth_dev_rx_intr_disable(uint16_t port_id, uint16_t queue_id); 3608 3609 /** 3610 * RX Interrupt control per port. 3611 * 3612 * @param port_id 3613 * The port identifier of the Ethernet device. 3614 * @param epfd 3615 * Epoll instance fd which the intr vector associated to. 3616 * Using RTE_EPOLL_PER_THREAD allows to use per thread epoll instance. 3617 * @param op 3618 * The operation be performed for the vector. 3619 * Operation type of {RTE_INTR_EVENT_ADD, RTE_INTR_EVENT_DEL}. 3620 * @param data 3621 * User raw data. 3622 * @return 3623 * - On success, zero. 3624 * - On failure, a negative value. 3625 */ 3626 int rte_eth_dev_rx_intr_ctl(uint16_t port_id, int epfd, int op, void *data); 3627 3628 /** 3629 * RX Interrupt control per queue. 3630 * 3631 * @param port_id 3632 * The port identifier of the Ethernet device. 3633 * @param queue_id 3634 * The index of the receive queue from which to retrieve input packets. 3635 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 3636 * to rte_eth_dev_configure(). 3637 * @param epfd 3638 * Epoll instance fd which the intr vector associated to. 3639 * Using RTE_EPOLL_PER_THREAD allows to use per thread epoll instance. 3640 * @param op 3641 * The operation be performed for the vector. 3642 * Operation type of {RTE_INTR_EVENT_ADD, RTE_INTR_EVENT_DEL}. 3643 * @param data 3644 * User raw data. 3645 * @return 3646 * - On success, zero. 3647 * - On failure, a negative value. 3648 */ 3649 int rte_eth_dev_rx_intr_ctl_q(uint16_t port_id, uint16_t queue_id, 3650 int epfd, int op, void *data); 3651 3652 /** 3653 * Get interrupt fd per Rx queue. 3654 * 3655 * @param port_id 3656 * The port identifier of the Ethernet device. 3657 * @param queue_id 3658 * The index of the receive queue from which to retrieve input packets. 3659 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 3660 * to rte_eth_dev_configure(). 3661 * @return 3662 * - (>=0) the interrupt fd associated to the requested Rx queue if 3663 * successful. 3664 * - (-1) on error. 3665 */ 3666 int 3667 rte_eth_dev_rx_intr_ctl_q_get_fd(uint16_t port_id, uint16_t queue_id); 3668 3669 /** 3670 * Turn on the LED on the Ethernet device. 3671 * This function turns on the LED on the Ethernet device. 3672 * 3673 * @param port_id 3674 * The port identifier of the Ethernet device. 3675 * @return 3676 * - (0) if successful. 3677 * - (-ENOTSUP) if underlying hardware OR driver doesn't support 3678 * that operation. 3679 * - (-ENODEV) if *port_id* invalid. 3680 * - (-EIO) if device is removed. 3681 */ 3682 int rte_eth_led_on(uint16_t port_id); 3683 3684 /** 3685 * Turn off the LED on the Ethernet device. 3686 * This function turns off the LED on the Ethernet device. 3687 * 3688 * @param port_id 3689 * The port identifier of the Ethernet device. 3690 * @return 3691 * - (0) if successful. 3692 * - (-ENOTSUP) if underlying hardware OR driver doesn't support 3693 * that operation. 3694 * - (-ENODEV) if *port_id* invalid. 3695 * - (-EIO) if device is removed. 3696 */ 3697 int rte_eth_led_off(uint16_t port_id); 3698 3699 /** 3700 * @warning 3701 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 3702 * 3703 * Get Forward Error Correction(FEC) capability. 3704 * 3705 * @param port_id 3706 * The port identifier of the Ethernet device. 3707 * @param speed_fec_capa 3708 * speed_fec_capa is out only with per-speed capabilities. 3709 * If set to NULL, the function returns the required number 3710 * of required array entries. 3711 * @param num 3712 * a number of elements in an speed_fec_capa array. 3713 * 3714 * @return 3715 * - A non-negative value lower or equal to num: success. The return value 3716 * is the number of entries filled in the fec capa array. 3717 * - A non-negative value higher than num: error, the given fec capa array 3718 * is too small. The return value corresponds to the num that should 3719 * be given to succeed. The entries in fec capa array are not valid and 3720 * shall not be used by the caller. 3721 * - (-ENOTSUP) if underlying hardware OR driver doesn't support. 3722 * that operation. 3723 * - (-EIO) if device is removed. 3724 * - (-ENODEV) if *port_id* invalid. 3725 * - (-EINVAL) if *num* or *speed_fec_capa* invalid 3726 */ 3727 __rte_experimental 3728 int rte_eth_fec_get_capability(uint16_t port_id, 3729 struct rte_eth_fec_capa *speed_fec_capa, 3730 unsigned int num); 3731 3732 /** 3733 * @warning 3734 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 3735 * 3736 * Get current Forward Error Correction(FEC) mode. 3737 * If link is down and AUTO is enabled, AUTO is returned, otherwise, 3738 * configured FEC mode is returned. 3739 * If link is up, current FEC mode is returned. 3740 * 3741 * @param port_id 3742 * The port identifier of the Ethernet device. 3743 * @param fec_capa 3744 * A bitmask of enabled FEC modes. If AUTO bit is set, other 3745 * bits specify FEC modes which may be negotiated. If AUTO 3746 * bit is clear, specify FEC modes to be used (only one valid 3747 * mode per speed may be set). 3748 * @return 3749 * - (0) if successful. 3750 * - (-ENOTSUP) if underlying hardware OR driver doesn't support. 3751 * that operation. 3752 * - (-EIO) if device is removed. 3753 * - (-ENODEV) if *port_id* invalid. 3754 */ 3755 __rte_experimental 3756 int rte_eth_fec_get(uint16_t port_id, uint32_t *fec_capa); 3757 3758 /** 3759 * @warning 3760 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 3761 * 3762 * Set Forward Error Correction(FEC) mode. 3763 * 3764 * @param port_id 3765 * The port identifier of the Ethernet device. 3766 * @param fec_capa 3767 * A bitmask of allowed FEC modes. If AUTO bit is set, other 3768 * bits specify FEC modes which may be negotiated. If AUTO 3769 * bit is clear, specify FEC modes to be used (only one valid 3770 * mode per speed may be set). 3771 * @return 3772 * - (0) if successful. 3773 * - (-EINVAL) if the FEC mode is not valid. 3774 * - (-ENOTSUP) if underlying hardware OR driver doesn't support. 3775 * - (-EIO) if device is removed. 3776 * - (-ENODEV) if *port_id* invalid. 3777 */ 3778 __rte_experimental 3779 int rte_eth_fec_set(uint16_t port_id, uint32_t fec_capa); 3780 3781 /** 3782 * Get current status of the Ethernet link flow control for Ethernet device 3783 * 3784 * @param port_id 3785 * The port identifier of the Ethernet device. 3786 * @param fc_conf 3787 * The pointer to the structure where to store the flow control parameters. 3788 * @return 3789 * - (0) if successful. 3790 * - (-ENOTSUP) if hardware doesn't support flow control. 3791 * - (-ENODEV) if *port_id* invalid. 3792 * - (-EIO) if device is removed. 3793 * - (-EINVAL) if bad parameter. 3794 */ 3795 int rte_eth_dev_flow_ctrl_get(uint16_t port_id, 3796 struct rte_eth_fc_conf *fc_conf); 3797 3798 /** 3799 * Configure the Ethernet link flow control for Ethernet device 3800 * 3801 * @param port_id 3802 * The port identifier of the Ethernet device. 3803 * @param fc_conf 3804 * The pointer to the structure of the flow control parameters. 3805 * @return 3806 * - (0) if successful. 3807 * - (-ENOTSUP) if hardware doesn't support flow control mode. 3808 * - (-ENODEV) if *port_id* invalid. 3809 * - (-EINVAL) if bad parameter 3810 * - (-EIO) if flow control setup failure or device is removed. 3811 */ 3812 int rte_eth_dev_flow_ctrl_set(uint16_t port_id, 3813 struct rte_eth_fc_conf *fc_conf); 3814 3815 /** 3816 * Configure the Ethernet priority flow control under DCB environment 3817 * for Ethernet device. 3818 * 3819 * @param port_id 3820 * The port identifier of the Ethernet device. 3821 * @param pfc_conf 3822 * The pointer to the structure of the priority flow control parameters. 3823 * @return 3824 * - (0) if successful. 3825 * - (-ENOTSUP) if hardware doesn't support priority flow control mode. 3826 * - (-ENODEV) if *port_id* invalid. 3827 * - (-EINVAL) if bad parameter 3828 * - (-EIO) if flow control setup failure or device is removed. 3829 */ 3830 int rte_eth_dev_priority_flow_ctrl_set(uint16_t port_id, 3831 struct rte_eth_pfc_conf *pfc_conf); 3832 3833 /** 3834 * Add a MAC address to the set used for filtering incoming packets. 3835 * 3836 * @param port_id 3837 * The port identifier of the Ethernet device. 3838 * @param mac_addr 3839 * The MAC address to add. 3840 * @param pool 3841 * VMDq pool index to associate address with (if VMDq is enabled). If VMDq is 3842 * not enabled, this should be set to 0. 3843 * @return 3844 * - (0) if successfully added or *mac_addr* was already added. 3845 * - (-ENOTSUP) if hardware doesn't support this feature. 3846 * - (-ENODEV) if *port* is invalid. 3847 * - (-EIO) if device is removed. 3848 * - (-ENOSPC) if no more MAC addresses can be added. 3849 * - (-EINVAL) if MAC address is invalid. 3850 */ 3851 int rte_eth_dev_mac_addr_add(uint16_t port_id, struct rte_ether_addr *mac_addr, 3852 uint32_t pool); 3853 3854 /** 3855 * Remove a MAC address from the internal array of addresses. 3856 * 3857 * @param port_id 3858 * The port identifier of the Ethernet device. 3859 * @param mac_addr 3860 * MAC address to remove. 3861 * @return 3862 * - (0) if successful, or *mac_addr* didn't exist. 3863 * - (-ENOTSUP) if hardware doesn't support. 3864 * - (-ENODEV) if *port* invalid. 3865 * - (-EADDRINUSE) if attempting to remove the default MAC address. 3866 * - (-EINVAL) if MAC address is invalid. 3867 */ 3868 int rte_eth_dev_mac_addr_remove(uint16_t port_id, 3869 struct rte_ether_addr *mac_addr); 3870 3871 /** 3872 * Set the default MAC address. 3873 * 3874 * @param port_id 3875 * The port identifier of the Ethernet device. 3876 * @param mac_addr 3877 * New default MAC address. 3878 * @return 3879 * - (0) if successful, or *mac_addr* didn't exist. 3880 * - (-ENOTSUP) if hardware doesn't support. 3881 * - (-ENODEV) if *port* invalid. 3882 * - (-EINVAL) if MAC address is invalid. 3883 */ 3884 int rte_eth_dev_default_mac_addr_set(uint16_t port_id, 3885 struct rte_ether_addr *mac_addr); 3886 3887 /** 3888 * Update Redirection Table(RETA) of Receive Side Scaling of Ethernet device. 3889 * 3890 * @param port_id 3891 * The port identifier of the Ethernet device. 3892 * @param reta_conf 3893 * RETA to update. 3894 * @param reta_size 3895 * Redirection table size. The table size can be queried by 3896 * rte_eth_dev_info_get(). 3897 * @return 3898 * - (0) if successful. 3899 * - (-ENODEV) if *port_id* is invalid. 3900 * - (-ENOTSUP) if hardware doesn't support. 3901 * - (-EINVAL) if bad parameter. 3902 * - (-EIO) if device is removed. 3903 */ 3904 int rte_eth_dev_rss_reta_update(uint16_t port_id, 3905 struct rte_eth_rss_reta_entry64 *reta_conf, 3906 uint16_t reta_size); 3907 3908 /** 3909 * Query Redirection Table(RETA) of Receive Side Scaling of Ethernet device. 3910 * 3911 * @param port_id 3912 * The port identifier of the Ethernet device. 3913 * @param reta_conf 3914 * RETA to query. For each requested reta entry, corresponding bit 3915 * in mask must be set. 3916 * @param reta_size 3917 * Redirection table size. The table size can be queried by 3918 * rte_eth_dev_info_get(). 3919 * @return 3920 * - (0) if successful. 3921 * - (-ENODEV) if *port_id* is invalid. 3922 * - (-ENOTSUP) if hardware doesn't support. 3923 * - (-EINVAL) if bad parameter. 3924 * - (-EIO) if device is removed. 3925 */ 3926 int rte_eth_dev_rss_reta_query(uint16_t port_id, 3927 struct rte_eth_rss_reta_entry64 *reta_conf, 3928 uint16_t reta_size); 3929 3930 /** 3931 * Updates unicast hash table for receiving packet with the given destination 3932 * MAC address, and the packet is routed to all VFs for which the RX mode is 3933 * accept packets that match the unicast hash table. 3934 * 3935 * @param port_id 3936 * The port identifier of the Ethernet device. 3937 * @param addr 3938 * Unicast MAC address. 3939 * @param on 3940 * 1 - Set an unicast hash bit for receiving packets with the MAC address. 3941 * 0 - Clear an unicast hash bit. 3942 * @return 3943 * - (0) if successful. 3944 * - (-ENOTSUP) if hardware doesn't support. 3945 * - (-ENODEV) if *port_id* invalid. 3946 * - (-EIO) if device is removed. 3947 * - (-EINVAL) if bad parameter. 3948 */ 3949 int rte_eth_dev_uc_hash_table_set(uint16_t port_id, struct rte_ether_addr *addr, 3950 uint8_t on); 3951 3952 /** 3953 * Updates all unicast hash bitmaps for receiving packet with any Unicast 3954 * Ethernet MAC addresses,the packet is routed to all VFs for which the RX 3955 * mode is accept packets that match the unicast hash table. 3956 * 3957 * @param port_id 3958 * The port identifier of the Ethernet device. 3959 * @param on 3960 * 1 - Set all unicast hash bitmaps for receiving all the Ethernet 3961 * MAC addresses 3962 * 0 - Clear all unicast hash bitmaps 3963 * @return 3964 * - (0) if successful. 3965 * - (-ENOTSUP) if hardware doesn't support. 3966 * - (-ENODEV) if *port_id* invalid. 3967 * - (-EIO) if device is removed. 3968 * - (-EINVAL) if bad parameter. 3969 */ 3970 int rte_eth_dev_uc_all_hash_table_set(uint16_t port_id, uint8_t on); 3971 3972 /** 3973 * Set a traffic mirroring rule on an Ethernet device 3974 * 3975 * @param port_id 3976 * The port identifier of the Ethernet device. 3977 * @param mirror_conf 3978 * The pointer to the traffic mirroring structure describing the mirroring rule. 3979 * The *rte_eth_vm_mirror_conf* structure includes the type of mirroring rule, 3980 * destination pool and the value of rule if enable vlan or pool mirroring. 3981 * 3982 * @param rule_id 3983 * The index of traffic mirroring rule, we support four separated rules. 3984 * @param on 3985 * 1 - Enable a mirroring rule. 3986 * 0 - Disable a mirroring rule. 3987 * @return 3988 * - (0) if successful. 3989 * - (-ENOTSUP) if hardware doesn't support this feature. 3990 * - (-ENODEV) if *port_id* invalid. 3991 * - (-EIO) if device is removed. 3992 * - (-EINVAL) if the mr_conf information is not correct. 3993 */ 3994 int rte_eth_mirror_rule_set(uint16_t port_id, 3995 struct rte_eth_mirror_conf *mirror_conf, 3996 uint8_t rule_id, 3997 uint8_t on); 3998 3999 /** 4000 * Reset a traffic mirroring rule on an Ethernet device. 4001 * 4002 * @param port_id 4003 * The port identifier of the Ethernet device. 4004 * @param rule_id 4005 * The index of traffic mirroring rule, we support four separated rules. 4006 * @return 4007 * - (0) if successful. 4008 * - (-ENOTSUP) if hardware doesn't support this feature. 4009 * - (-ENODEV) if *port_id* invalid. 4010 * - (-EIO) if device is removed. 4011 * - (-EINVAL) if bad parameter. 4012 */ 4013 int rte_eth_mirror_rule_reset(uint16_t port_id, 4014 uint8_t rule_id); 4015 4016 /** 4017 * Set the rate limitation for a queue on an Ethernet device. 4018 * 4019 * @param port_id 4020 * The port identifier of the Ethernet device. 4021 * @param queue_idx 4022 * The queue id. 4023 * @param tx_rate 4024 * The tx rate in Mbps. Allocated from the total port link speed. 4025 * @return 4026 * - (0) if successful. 4027 * - (-ENOTSUP) if hardware doesn't support this feature. 4028 * - (-ENODEV) if *port_id* invalid. 4029 * - (-EIO) if device is removed. 4030 * - (-EINVAL) if bad parameter. 4031 */ 4032 int rte_eth_set_queue_rate_limit(uint16_t port_id, uint16_t queue_idx, 4033 uint16_t tx_rate); 4034 4035 /** 4036 * Configuration of Receive Side Scaling hash computation of Ethernet device. 4037 * 4038 * @param port_id 4039 * The port identifier of the Ethernet device. 4040 * @param rss_conf 4041 * The new configuration to use for RSS hash computation on the port. 4042 * @return 4043 * - (0) if successful. 4044 * - (-ENODEV) if port identifier is invalid. 4045 * - (-EIO) if device is removed. 4046 * - (-ENOTSUP) if hardware doesn't support. 4047 * - (-EINVAL) if bad parameter. 4048 */ 4049 int rte_eth_dev_rss_hash_update(uint16_t port_id, 4050 struct rte_eth_rss_conf *rss_conf); 4051 4052 /** 4053 * Retrieve current configuration of Receive Side Scaling hash computation 4054 * of Ethernet device. 4055 * 4056 * @param port_id 4057 * The port identifier of the Ethernet device. 4058 * @param rss_conf 4059 * Where to store the current RSS hash configuration of the Ethernet device. 4060 * @return 4061 * - (0) if successful. 4062 * - (-ENODEV) if port identifier is invalid. 4063 * - (-EIO) if device is removed. 4064 * - (-ENOTSUP) if hardware doesn't support RSS. 4065 * - (-EINVAL) if bad parameter. 4066 */ 4067 int 4068 rte_eth_dev_rss_hash_conf_get(uint16_t port_id, 4069 struct rte_eth_rss_conf *rss_conf); 4070 4071 /** 4072 * Add UDP tunneling port for a type of tunnel. 4073 * 4074 * Some NICs may require such configuration to properly parse a tunnel 4075 * with any standard or custom UDP port. 4076 * The packets with this UDP port will be parsed for this type of tunnel. 4077 * The device parser will also check the rest of the tunnel headers 4078 * before classifying the packet. 4079 * 4080 * With some devices, this API will affect packet classification, i.e.: 4081 * - mbuf.packet_type reported on Rx 4082 * - rte_flow rules with tunnel items 4083 * 4084 * @param port_id 4085 * The port identifier of the Ethernet device. 4086 * @param tunnel_udp 4087 * UDP tunneling configuration. 4088 * 4089 * @return 4090 * - (0) if successful. 4091 * - (-ENODEV) if port identifier is invalid. 4092 * - (-EIO) if device is removed. 4093 * - (-ENOTSUP) if hardware doesn't support tunnel type. 4094 */ 4095 int 4096 rte_eth_dev_udp_tunnel_port_add(uint16_t port_id, 4097 struct rte_eth_udp_tunnel *tunnel_udp); 4098 4099 /** 4100 * Delete UDP tunneling port for a type of tunnel. 4101 * 4102 * The packets with this UDP port will not be classified as this type of tunnel 4103 * anymore if the device use such mapping for tunnel packet classification. 4104 * 4105 * @see rte_eth_dev_udp_tunnel_port_add 4106 * 4107 * @param port_id 4108 * The port identifier of the Ethernet device. 4109 * @param tunnel_udp 4110 * UDP tunneling configuration. 4111 * 4112 * @return 4113 * - (0) if successful. 4114 * - (-ENODEV) if port identifier is invalid. 4115 * - (-EIO) if device is removed. 4116 * - (-ENOTSUP) if hardware doesn't support tunnel type. 4117 */ 4118 int 4119 rte_eth_dev_udp_tunnel_port_delete(uint16_t port_id, 4120 struct rte_eth_udp_tunnel *tunnel_udp); 4121 4122 /** 4123 * Get DCB information on an Ethernet device. 4124 * 4125 * @param port_id 4126 * The port identifier of the Ethernet device. 4127 * @param dcb_info 4128 * dcb information. 4129 * @return 4130 * - (0) if successful. 4131 * - (-ENODEV) if port identifier is invalid. 4132 * - (-EIO) if device is removed. 4133 * - (-ENOTSUP) if hardware doesn't support. 4134 * - (-EINVAL) if bad parameter. 4135 */ 4136 int rte_eth_dev_get_dcb_info(uint16_t port_id, 4137 struct rte_eth_dcb_info *dcb_info); 4138 4139 struct rte_eth_rxtx_callback; 4140 4141 /** 4142 * Add a callback to be called on packet RX on a given port and queue. 4143 * 4144 * This API configures a function to be called for each burst of 4145 * packets received on a given NIC port queue. The return value is a pointer 4146 * that can be used to later remove the callback using 4147 * rte_eth_remove_rx_callback(). 4148 * 4149 * Multiple functions are called in the order that they are added. 4150 * 4151 * @param port_id 4152 * The port identifier of the Ethernet device. 4153 * @param queue_id 4154 * The queue on the Ethernet device on which the callback is to be added. 4155 * @param fn 4156 * The callback function 4157 * @param user_param 4158 * A generic pointer parameter which will be passed to each invocation of the 4159 * callback function on this port and queue. Inter-thread synchronization 4160 * of any user data changes is the responsibility of the user. 4161 * 4162 * @return 4163 * NULL on error. 4164 * On success, a pointer value which can later be used to remove the callback. 4165 */ 4166 const struct rte_eth_rxtx_callback * 4167 rte_eth_add_rx_callback(uint16_t port_id, uint16_t queue_id, 4168 rte_rx_callback_fn fn, void *user_param); 4169 4170 /** 4171 * Add a callback that must be called first on packet RX on a given port 4172 * and queue. 4173 * 4174 * This API configures a first function to be called for each burst of 4175 * packets received on a given NIC port queue. The return value is a pointer 4176 * that can be used to later remove the callback using 4177 * rte_eth_remove_rx_callback(). 4178 * 4179 * Multiple functions are called in the order that they are added. 4180 * 4181 * @param port_id 4182 * The port identifier of the Ethernet device. 4183 * @param queue_id 4184 * The queue on the Ethernet device on which the callback is to be added. 4185 * @param fn 4186 * The callback function 4187 * @param user_param 4188 * A generic pointer parameter which will be passed to each invocation of the 4189 * callback function on this port and queue. Inter-thread synchronization 4190 * of any user data changes is the responsibility of the user. 4191 * 4192 * @return 4193 * NULL on error. 4194 * On success, a pointer value which can later be used to remove the callback. 4195 */ 4196 const struct rte_eth_rxtx_callback * 4197 rte_eth_add_first_rx_callback(uint16_t port_id, uint16_t queue_id, 4198 rte_rx_callback_fn fn, void *user_param); 4199 4200 /** 4201 * Add a callback to be called on packet TX on a given port and queue. 4202 * 4203 * This API configures a function to be called for each burst of 4204 * packets sent on a given NIC port queue. The return value is a pointer 4205 * that can be used to later remove the callback using 4206 * rte_eth_remove_tx_callback(). 4207 * 4208 * Multiple functions are called in the order that they are added. 4209 * 4210 * @param port_id 4211 * The port identifier of the Ethernet device. 4212 * @param queue_id 4213 * The queue on the Ethernet device on which the callback is to be added. 4214 * @param fn 4215 * The callback function 4216 * @param user_param 4217 * A generic pointer parameter which will be passed to each invocation of the 4218 * callback function on this port and queue. Inter-thread synchronization 4219 * of any user data changes is the responsibility of the user. 4220 * 4221 * @return 4222 * NULL on error. 4223 * On success, a pointer value which can later be used to remove the callback. 4224 */ 4225 const struct rte_eth_rxtx_callback * 4226 rte_eth_add_tx_callback(uint16_t port_id, uint16_t queue_id, 4227 rte_tx_callback_fn fn, void *user_param); 4228 4229 /** 4230 * Remove an RX packet callback from a given port and queue. 4231 * 4232 * This function is used to removed callbacks that were added to a NIC port 4233 * queue using rte_eth_add_rx_callback(). 4234 * 4235 * Note: the callback is removed from the callback list but it isn't freed 4236 * since the it may still be in use. The memory for the callback can be 4237 * subsequently freed back by the application by calling rte_free(): 4238 * 4239 * - Immediately - if the port is stopped, or the user knows that no 4240 * callbacks are in flight e.g. if called from the thread doing RX/TX 4241 * on that queue. 4242 * 4243 * - After a short delay - where the delay is sufficient to allow any 4244 * in-flight callbacks to complete. Alternately, the RCU mechanism can be 4245 * used to detect when data plane threads have ceased referencing the 4246 * callback memory. 4247 * 4248 * @param port_id 4249 * The port identifier of the Ethernet device. 4250 * @param queue_id 4251 * The queue on the Ethernet device from which the callback is to be removed. 4252 * @param user_cb 4253 * User supplied callback created via rte_eth_add_rx_callback(). 4254 * 4255 * @return 4256 * - 0: Success. Callback was removed. 4257 * - -ENODEV: If *port_id* is invalid. 4258 * - -ENOTSUP: Callback support is not available. 4259 * - -EINVAL: The queue_id is out of range, or the callback 4260 * is NULL or not found for the port/queue. 4261 */ 4262 int rte_eth_remove_rx_callback(uint16_t port_id, uint16_t queue_id, 4263 const struct rte_eth_rxtx_callback *user_cb); 4264 4265 /** 4266 * Remove a TX packet callback from a given port and queue. 4267 * 4268 * This function is used to removed callbacks that were added to a NIC port 4269 * queue using rte_eth_add_tx_callback(). 4270 * 4271 * Note: the callback is removed from the callback list but it isn't freed 4272 * since the it may still be in use. The memory for the callback can be 4273 * subsequently freed back by the application by calling rte_free(): 4274 * 4275 * - Immediately - if the port is stopped, or the user knows that no 4276 * callbacks are in flight e.g. if called from the thread doing RX/TX 4277 * on that queue. 4278 * 4279 * - After a short delay - where the delay is sufficient to allow any 4280 * in-flight callbacks to complete. Alternately, the RCU mechanism can be 4281 * used to detect when data plane threads have ceased referencing the 4282 * callback memory. 4283 * 4284 * @param port_id 4285 * The port identifier of the Ethernet device. 4286 * @param queue_id 4287 * The queue on the Ethernet device from which the callback is to be removed. 4288 * @param user_cb 4289 * User supplied callback created via rte_eth_add_tx_callback(). 4290 * 4291 * @return 4292 * - 0: Success. Callback was removed. 4293 * - -ENODEV: If *port_id* is invalid. 4294 * - -ENOTSUP: Callback support is not available. 4295 * - -EINVAL: The queue_id is out of range, or the callback 4296 * is NULL or not found for the port/queue. 4297 */ 4298 int rte_eth_remove_tx_callback(uint16_t port_id, uint16_t queue_id, 4299 const struct rte_eth_rxtx_callback *user_cb); 4300 4301 /** 4302 * Retrieve information about given port's RX queue. 4303 * 4304 * @param port_id 4305 * The port identifier of the Ethernet device. 4306 * @param queue_id 4307 * The RX queue on the Ethernet device for which information 4308 * will be retrieved. 4309 * @param qinfo 4310 * A pointer to a structure of type *rte_eth_rxq_info_info* to be filled with 4311 * the information of the Ethernet device. 4312 * 4313 * @return 4314 * - 0: Success 4315 * - -ENODEV: If *port_id* is invalid. 4316 * - -ENOTSUP: routine is not supported by the device PMD. 4317 * - -EINVAL: The queue_id is out of range, or the queue 4318 * is hairpin queue. 4319 */ 4320 int rte_eth_rx_queue_info_get(uint16_t port_id, uint16_t queue_id, 4321 struct rte_eth_rxq_info *qinfo); 4322 4323 /** 4324 * Retrieve information about given port's TX queue. 4325 * 4326 * @param port_id 4327 * The port identifier of the Ethernet device. 4328 * @param queue_id 4329 * The TX queue on the Ethernet device for which information 4330 * will be retrieved. 4331 * @param qinfo 4332 * A pointer to a structure of type *rte_eth_txq_info_info* to be filled with 4333 * the information of the Ethernet device. 4334 * 4335 * @return 4336 * - 0: Success 4337 * - -ENODEV: If *port_id* is invalid. 4338 * - -ENOTSUP: routine is not supported by the device PMD. 4339 * - -EINVAL: The queue_id is out of range, or the queue 4340 * is hairpin queue. 4341 */ 4342 int rte_eth_tx_queue_info_get(uint16_t port_id, uint16_t queue_id, 4343 struct rte_eth_txq_info *qinfo); 4344 4345 /** 4346 * Retrieve information about the Rx packet burst mode. 4347 * 4348 * @param port_id 4349 * The port identifier of the Ethernet device. 4350 * @param queue_id 4351 * The Rx queue on the Ethernet device for which information 4352 * will be retrieved. 4353 * @param mode 4354 * A pointer to a structure of type *rte_eth_burst_mode* to be filled 4355 * with the information of the packet burst mode. 4356 * 4357 * @return 4358 * - 0: Success 4359 * - -ENODEV: If *port_id* is invalid. 4360 * - -ENOTSUP: routine is not supported by the device PMD. 4361 * - -EINVAL: The queue_id is out of range. 4362 */ 4363 int rte_eth_rx_burst_mode_get(uint16_t port_id, uint16_t queue_id, 4364 struct rte_eth_burst_mode *mode); 4365 4366 /** 4367 * Retrieve information about the Tx packet burst mode. 4368 * 4369 * @param port_id 4370 * The port identifier of the Ethernet device. 4371 * @param queue_id 4372 * The Tx queue on the Ethernet device for which information 4373 * will be retrieved. 4374 * @param mode 4375 * A pointer to a structure of type *rte_eth_burst_mode* to be filled 4376 * with the information of the packet burst mode. 4377 * 4378 * @return 4379 * - 0: Success 4380 * - -ENODEV: If *port_id* is invalid. 4381 * - -ENOTSUP: routine is not supported by the device PMD. 4382 * - -EINVAL: The queue_id is out of range. 4383 */ 4384 int rte_eth_tx_burst_mode_get(uint16_t port_id, uint16_t queue_id, 4385 struct rte_eth_burst_mode *mode); 4386 4387 /** 4388 * @warning 4389 * @b EXPERIMENTAL: this API may change without prior notice. 4390 * 4391 * Retrieve the monitor condition for a given receive queue. 4392 * 4393 * @param port_id 4394 * The port identifier of the Ethernet device. 4395 * @param queue_id 4396 * The Rx queue on the Ethernet device for which information 4397 * will be retrieved. 4398 * @param pmc 4399 * The pointer to power-optimized monitoring condition structure. 4400 * 4401 * @return 4402 * - 0: Success. 4403 * -ENOTSUP: Operation not supported. 4404 * -EINVAL: Invalid parameters. 4405 * -ENODEV: Invalid port ID. 4406 */ 4407 __rte_experimental 4408 int rte_eth_get_monitor_addr(uint16_t port_id, uint16_t queue_id, 4409 struct rte_power_monitor_cond *pmc); 4410 4411 /** 4412 * Retrieve device registers and register attributes (number of registers and 4413 * register size) 4414 * 4415 * @param port_id 4416 * The port identifier of the Ethernet device. 4417 * @param info 4418 * Pointer to rte_dev_reg_info structure to fill in. If info->data is 4419 * NULL the function fills in the width and length fields. If non-NULL 4420 * the registers are put into the buffer pointed at by the data field. 4421 * @return 4422 * - (0) if successful. 4423 * - (-ENOTSUP) if hardware doesn't support. 4424 * - (-EINVAL) if bad parameter. 4425 * - (-ENODEV) if *port_id* invalid. 4426 * - (-EIO) if device is removed. 4427 * - others depends on the specific operations implementation. 4428 */ 4429 int rte_eth_dev_get_reg_info(uint16_t port_id, struct rte_dev_reg_info *info); 4430 4431 /** 4432 * Retrieve size of device EEPROM 4433 * 4434 * @param port_id 4435 * The port identifier of the Ethernet device. 4436 * @return 4437 * - (>=0) EEPROM size if successful. 4438 * - (-ENOTSUP) if hardware doesn't support. 4439 * - (-ENODEV) if *port_id* invalid. 4440 * - (-EIO) if device is removed. 4441 * - others depends on the specific operations implementation. 4442 */ 4443 int rte_eth_dev_get_eeprom_length(uint16_t port_id); 4444 4445 /** 4446 * Retrieve EEPROM and EEPROM attribute 4447 * 4448 * @param port_id 4449 * The port identifier of the Ethernet device. 4450 * @param info 4451 * The template includes buffer for return EEPROM data and 4452 * EEPROM attributes to be filled. 4453 * @return 4454 * - (0) if successful. 4455 * - (-ENOTSUP) if hardware doesn't support. 4456 * - (-EINVAL) if bad parameter. 4457 * - (-ENODEV) if *port_id* invalid. 4458 * - (-EIO) if device is removed. 4459 * - others depends on the specific operations implementation. 4460 */ 4461 int rte_eth_dev_get_eeprom(uint16_t port_id, struct rte_dev_eeprom_info *info); 4462 4463 /** 4464 * Program EEPROM with provided data 4465 * 4466 * @param port_id 4467 * The port identifier of the Ethernet device. 4468 * @param info 4469 * The template includes EEPROM data for programming and 4470 * EEPROM attributes to be filled 4471 * @return 4472 * - (0) if successful. 4473 * - (-ENOTSUP) if hardware doesn't support. 4474 * - (-ENODEV) if *port_id* invalid. 4475 * - (-EINVAL) if bad parameter. 4476 * - (-EIO) if device is removed. 4477 * - others depends on the specific operations implementation. 4478 */ 4479 int rte_eth_dev_set_eeprom(uint16_t port_id, struct rte_dev_eeprom_info *info); 4480 4481 /** 4482 * @warning 4483 * @b EXPERIMENTAL: this API may change without prior notice. 4484 * 4485 * Retrieve the type and size of plugin module EEPROM 4486 * 4487 * @param port_id 4488 * The port identifier of the Ethernet device. 4489 * @param modinfo 4490 * The type and size of plugin module EEPROM. 4491 * @return 4492 * - (0) if successful. 4493 * - (-ENOTSUP) if hardware doesn't support. 4494 * - (-ENODEV) if *port_id* invalid. 4495 * - (-EINVAL) if bad parameter. 4496 * - (-EIO) if device is removed. 4497 * - others depends on the specific operations implementation. 4498 */ 4499 __rte_experimental 4500 int 4501 rte_eth_dev_get_module_info(uint16_t port_id, 4502 struct rte_eth_dev_module_info *modinfo); 4503 4504 /** 4505 * @warning 4506 * @b EXPERIMENTAL: this API may change without prior notice. 4507 * 4508 * Retrieve the data of plugin module EEPROM 4509 * 4510 * @param port_id 4511 * The port identifier of the Ethernet device. 4512 * @param info 4513 * The template includes the plugin module EEPROM attributes, and the 4514 * buffer for return plugin module EEPROM data. 4515 * @return 4516 * - (0) if successful. 4517 * - (-ENOTSUP) if hardware doesn't support. 4518 * - (-EINVAL) if bad parameter. 4519 * - (-ENODEV) if *port_id* invalid. 4520 * - (-EIO) if device is removed. 4521 * - others depends on the specific operations implementation. 4522 */ 4523 __rte_experimental 4524 int 4525 rte_eth_dev_get_module_eeprom(uint16_t port_id, 4526 struct rte_dev_eeprom_info *info); 4527 4528 /** 4529 * Set the list of multicast addresses to filter on an Ethernet device. 4530 * 4531 * @param port_id 4532 * The port identifier of the Ethernet device. 4533 * @param mc_addr_set 4534 * The array of multicast addresses to set. Equal to NULL when the function 4535 * is invoked to flush the set of filtered addresses. 4536 * @param nb_mc_addr 4537 * The number of multicast addresses in the *mc_addr_set* array. Equal to 0 4538 * when the function is invoked to flush the set of filtered addresses. 4539 * @return 4540 * - (0) if successful. 4541 * - (-ENODEV) if *port_id* invalid. 4542 * - (-EIO) if device is removed. 4543 * - (-ENOTSUP) if PMD of *port_id* doesn't support multicast filtering. 4544 * - (-ENOSPC) if *port_id* has not enough multicast filtering resources. 4545 * - (-EINVAL) if bad parameter. 4546 */ 4547 int rte_eth_dev_set_mc_addr_list(uint16_t port_id, 4548 struct rte_ether_addr *mc_addr_set, 4549 uint32_t nb_mc_addr); 4550 4551 /** 4552 * Enable IEEE1588/802.1AS timestamping for an Ethernet device. 4553 * 4554 * @param port_id 4555 * The port identifier of the Ethernet device. 4556 * 4557 * @return 4558 * - 0: Success. 4559 * - -ENODEV: The port ID is invalid. 4560 * - -EIO: if device is removed. 4561 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4562 */ 4563 int rte_eth_timesync_enable(uint16_t port_id); 4564 4565 /** 4566 * Disable IEEE1588/802.1AS timestamping for an Ethernet device. 4567 * 4568 * @param port_id 4569 * The port identifier of the Ethernet device. 4570 * 4571 * @return 4572 * - 0: Success. 4573 * - -ENODEV: The port ID is invalid. 4574 * - -EIO: if device is removed. 4575 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4576 */ 4577 int rte_eth_timesync_disable(uint16_t port_id); 4578 4579 /** 4580 * Read an IEEE1588/802.1AS RX timestamp from an Ethernet device. 4581 * 4582 * @param port_id 4583 * The port identifier of the Ethernet device. 4584 * @param timestamp 4585 * Pointer to the timestamp struct. 4586 * @param flags 4587 * Device specific flags. Used to pass the RX timesync register index to 4588 * i40e. Unused in igb/ixgbe, pass 0 instead. 4589 * 4590 * @return 4591 * - 0: Success. 4592 * - -EINVAL: No timestamp is available. 4593 * - -ENODEV: The port ID is invalid. 4594 * - -EIO: if device is removed. 4595 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4596 */ 4597 int rte_eth_timesync_read_rx_timestamp(uint16_t port_id, 4598 struct timespec *timestamp, uint32_t flags); 4599 4600 /** 4601 * Read an IEEE1588/802.1AS TX timestamp from an Ethernet device. 4602 * 4603 * @param port_id 4604 * The port identifier of the Ethernet device. 4605 * @param timestamp 4606 * Pointer to the timestamp struct. 4607 * 4608 * @return 4609 * - 0: Success. 4610 * - -EINVAL: No timestamp is available. 4611 * - -ENODEV: The port ID is invalid. 4612 * - -EIO: if device is removed. 4613 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4614 */ 4615 int rte_eth_timesync_read_tx_timestamp(uint16_t port_id, 4616 struct timespec *timestamp); 4617 4618 /** 4619 * Adjust the timesync clock on an Ethernet device. 4620 * 4621 * This is usually used in conjunction with other Ethdev timesync functions to 4622 * synchronize the device time using the IEEE1588/802.1AS protocol. 4623 * 4624 * @param port_id 4625 * The port identifier of the Ethernet device. 4626 * @param delta 4627 * The adjustment in nanoseconds. 4628 * 4629 * @return 4630 * - 0: Success. 4631 * - -ENODEV: The port ID is invalid. 4632 * - -EIO: if device is removed. 4633 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4634 */ 4635 int rte_eth_timesync_adjust_time(uint16_t port_id, int64_t delta); 4636 4637 /** 4638 * Read the time from the timesync clock on an Ethernet device. 4639 * 4640 * This is usually used in conjunction with other Ethdev timesync functions to 4641 * synchronize the device time using the IEEE1588/802.1AS protocol. 4642 * 4643 * @param port_id 4644 * The port identifier of the Ethernet device. 4645 * @param time 4646 * Pointer to the timespec struct that holds the time. 4647 * 4648 * @return 4649 * - 0: Success. 4650 * - -EINVAL: Bad parameter. 4651 */ 4652 int rte_eth_timesync_read_time(uint16_t port_id, struct timespec *time); 4653 4654 /** 4655 * Set the time of the timesync clock on an Ethernet device. 4656 * 4657 * This is usually used in conjunction with other Ethdev timesync functions to 4658 * synchronize the device time using the IEEE1588/802.1AS protocol. 4659 * 4660 * @param port_id 4661 * The port identifier of the Ethernet device. 4662 * @param time 4663 * Pointer to the timespec struct that holds the time. 4664 * 4665 * @return 4666 * - 0: Success. 4667 * - -EINVAL: No timestamp is available. 4668 * - -ENODEV: The port ID is invalid. 4669 * - -EIO: if device is removed. 4670 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4671 */ 4672 int rte_eth_timesync_write_time(uint16_t port_id, const struct timespec *time); 4673 4674 /** 4675 * @warning 4676 * @b EXPERIMENTAL: this API may change without prior notice. 4677 * 4678 * Read the current clock counter of an Ethernet device 4679 * 4680 * This returns the current raw clock value of an Ethernet device. It is 4681 * a raw amount of ticks, with no given time reference. 4682 * The value returned here is from the same clock than the one 4683 * filling timestamp field of Rx packets when using hardware timestamp 4684 * offload. Therefore it can be used to compute a precise conversion of 4685 * the device clock to the real time. 4686 * 4687 * E.g, a simple heuristic to derivate the frequency would be: 4688 * uint64_t start, end; 4689 * rte_eth_read_clock(port, start); 4690 * rte_delay_ms(100); 4691 * rte_eth_read_clock(port, end); 4692 * double freq = (end - start) * 10; 4693 * 4694 * Compute a common reference with: 4695 * uint64_t base_time_sec = current_time(); 4696 * uint64_t base_clock; 4697 * rte_eth_read_clock(port, base_clock); 4698 * 4699 * Then, convert the raw mbuf timestamp with: 4700 * base_time_sec + (double)(*timestamp_dynfield(mbuf) - base_clock) / freq; 4701 * 4702 * This simple example will not provide a very good accuracy. One must 4703 * at least measure multiple times the frequency and do a regression. 4704 * To avoid deviation from the system time, the common reference can 4705 * be repeated from time to time. The integer division can also be 4706 * converted by a multiplication and a shift for better performance. 4707 * 4708 * @param port_id 4709 * The port identifier of the Ethernet device. 4710 * @param clock 4711 * Pointer to the uint64_t that holds the raw clock value. 4712 * 4713 * @return 4714 * - 0: Success. 4715 * - -ENODEV: The port ID is invalid. 4716 * - -ENOTSUP: The function is not supported by the Ethernet driver. 4717 * - -EINVAL: if bad parameter. 4718 */ 4719 __rte_experimental 4720 int 4721 rte_eth_read_clock(uint16_t port_id, uint64_t *clock); 4722 4723 /** 4724 * Get the port id from device name. The device name should be specified 4725 * as below: 4726 * - PCIe address (Domain:Bus:Device.Function), for example- 0000:2:00.0 4727 * - SoC device name, for example- fsl-gmac0 4728 * - vdev dpdk name, for example- net_[pcap0|null0|tap0] 4729 * 4730 * @param name 4731 * pci address or name of the device 4732 * @param port_id 4733 * pointer to port identifier of the device 4734 * @return 4735 * - (0) if successful and port_id is filled. 4736 * - (-ENODEV or -EINVAL) on failure. 4737 */ 4738 int 4739 rte_eth_dev_get_port_by_name(const char *name, uint16_t *port_id); 4740 4741 /** 4742 * Get the device name from port id. The device name is specified as below: 4743 * - PCIe address (Domain:Bus:Device.Function), for example- 0000:02:00.0 4744 * - SoC device name, for example- fsl-gmac0 4745 * - vdev dpdk name, for example- net_[pcap0|null0|tun0|tap0] 4746 * 4747 * @param port_id 4748 * Port identifier of the device. 4749 * @param name 4750 * Buffer of size RTE_ETH_NAME_MAX_LEN to store the name. 4751 * @return 4752 * - (0) if successful. 4753 * - (-ENODEV) if *port_id* is invalid. 4754 * - (-EINVAL) on failure. 4755 */ 4756 int 4757 rte_eth_dev_get_name_by_port(uint16_t port_id, char *name); 4758 4759 /** 4760 * Check that numbers of Rx and Tx descriptors satisfy descriptors limits from 4761 * the ethernet device information, otherwise adjust them to boundaries. 4762 * 4763 * @param port_id 4764 * The port identifier of the Ethernet device. 4765 * @param nb_rx_desc 4766 * A pointer to a uint16_t where the number of receive 4767 * descriptors stored. 4768 * @param nb_tx_desc 4769 * A pointer to a uint16_t where the number of transmit 4770 * descriptors stored. 4771 * @return 4772 * - (0) if successful. 4773 * - (-ENOTSUP, -ENODEV or -EINVAL) on failure. 4774 */ 4775 int rte_eth_dev_adjust_nb_rx_tx_desc(uint16_t port_id, 4776 uint16_t *nb_rx_desc, 4777 uint16_t *nb_tx_desc); 4778 4779 /** 4780 * Test if a port supports specific mempool ops. 4781 * 4782 * @param port_id 4783 * Port identifier of the Ethernet device. 4784 * @param [in] pool 4785 * The name of the pool operations to test. 4786 * @return 4787 * - 0: best mempool ops choice for this port. 4788 * - 1: mempool ops are supported for this port. 4789 * - -ENOTSUP: mempool ops not supported for this port. 4790 * - -ENODEV: Invalid port Identifier. 4791 * - -EINVAL: Pool param is null. 4792 */ 4793 int 4794 rte_eth_dev_pool_ops_supported(uint16_t port_id, const char *pool); 4795 4796 /** 4797 * Get the security context for the Ethernet device. 4798 * 4799 * @param port_id 4800 * Port identifier of the Ethernet device 4801 * @return 4802 * - NULL on error. 4803 * - pointer to security context on success. 4804 */ 4805 void * 4806 rte_eth_dev_get_sec_ctx(uint16_t port_id); 4807 4808 /** 4809 * @warning 4810 * @b EXPERIMENTAL: this API may change, or be removed, without prior notice 4811 * 4812 * Query the device hairpin capabilities. 4813 * 4814 * @param port_id 4815 * The port identifier of the Ethernet device. 4816 * @param cap 4817 * Pointer to a structure that will hold the hairpin capabilities. 4818 * @return 4819 * - (0) if successful. 4820 * - (-ENOTSUP) if hardware doesn't support. 4821 * - (-EINVAL) if bad parameter. 4822 */ 4823 __rte_experimental 4824 int rte_eth_dev_hairpin_capability_get(uint16_t port_id, 4825 struct rte_eth_hairpin_cap *cap); 4826 4827 /** 4828 * @warning 4829 * @b EXPERIMENTAL: this structure may change without prior notice. 4830 * 4831 * ethernet device representor ID range entry 4832 */ 4833 struct rte_eth_representor_range { 4834 enum rte_eth_representor_type type; /**< Representor type */ 4835 int controller; /**< Controller index */ 4836 int pf; /**< Physical function index */ 4837 __extension__ 4838 union { 4839 int vf; /**< VF start index */ 4840 int sf; /**< SF start index */ 4841 }; 4842 uint32_t id_base; /**< Representor ID start index */ 4843 uint32_t id_end; /**< Representor ID end index */ 4844 char name[RTE_DEV_NAME_MAX_LEN]; /**< Representor name */ 4845 }; 4846 4847 /** 4848 * @warning 4849 * @b EXPERIMENTAL: this structure may change without prior notice. 4850 * 4851 * Ethernet device representor information 4852 */ 4853 struct rte_eth_representor_info { 4854 uint16_t controller; /**< Controller ID of caller device. */ 4855 uint16_t pf; /**< Physical function ID of caller device. */ 4856 uint32_t nb_ranges_alloc; /**< Size of the ranges array. */ 4857 uint32_t nb_ranges; /**< Number of initialized ranges. */ 4858 struct rte_eth_representor_range ranges[];/**< Representor ID range. */ 4859 }; 4860 4861 /** 4862 * Retrieve the representor info of the device. 4863 * 4864 * Get device representor info to be able to calculate a unique 4865 * representor ID. @see rte_eth_representor_id_get helper. 4866 * 4867 * @param port_id 4868 * The port identifier of the device. 4869 * @param info 4870 * A pointer to a representor info structure. 4871 * NULL to return number of range entries and allocate memory 4872 * for next call to store detail. 4873 * The number of ranges that were written into this structure 4874 * will be placed into its nb_ranges field. This number cannot be 4875 * larger than the nb_ranges_alloc that by the user before calling 4876 * this function. It can be smaller than the value returned by the 4877 * function, however. 4878 * @return 4879 * - (-ENOTSUP) if operation is not supported. 4880 * - (-ENODEV) if *port_id* invalid. 4881 * - (-EIO) if device is removed. 4882 * - (>=0) number of available representor range entries. 4883 */ 4884 __rte_experimental 4885 int rte_eth_representor_info_get(uint16_t port_id, 4886 struct rte_eth_representor_info *info); 4887 4888 #include <rte_ethdev_core.h> 4889 4890 /** 4891 * 4892 * Retrieve a burst of input packets from a receive queue of an Ethernet 4893 * device. The retrieved packets are stored in *rte_mbuf* structures whose 4894 * pointers are supplied in the *rx_pkts* array. 4895 * 4896 * The rte_eth_rx_burst() function loops, parsing the RX ring of the 4897 * receive queue, up to *nb_pkts* packets, and for each completed RX 4898 * descriptor in the ring, it performs the following operations: 4899 * 4900 * - Initialize the *rte_mbuf* data structure associated with the 4901 * RX descriptor according to the information provided by the NIC into 4902 * that RX descriptor. 4903 * 4904 * - Store the *rte_mbuf* data structure into the next entry of the 4905 * *rx_pkts* array. 4906 * 4907 * - Replenish the RX descriptor with a new *rte_mbuf* buffer 4908 * allocated from the memory pool associated with the receive queue at 4909 * initialization time. 4910 * 4911 * When retrieving an input packet that was scattered by the controller 4912 * into multiple receive descriptors, the rte_eth_rx_burst() function 4913 * appends the associated *rte_mbuf* buffers to the first buffer of the 4914 * packet. 4915 * 4916 * The rte_eth_rx_burst() function returns the number of packets 4917 * actually retrieved, which is the number of *rte_mbuf* data structures 4918 * effectively supplied into the *rx_pkts* array. 4919 * A return value equal to *nb_pkts* indicates that the RX queue contained 4920 * at least *rx_pkts* packets, and this is likely to signify that other 4921 * received packets remain in the input queue. Applications implementing 4922 * a "retrieve as much received packets as possible" policy can check this 4923 * specific case and keep invoking the rte_eth_rx_burst() function until 4924 * a value less than *nb_pkts* is returned. 4925 * 4926 * This receive method has the following advantages: 4927 * 4928 * - It allows a run-to-completion network stack engine to retrieve and 4929 * to immediately process received packets in a fast burst-oriented 4930 * approach, avoiding the overhead of unnecessary intermediate packet 4931 * queue/dequeue operations. 4932 * 4933 * - Conversely, it also allows an asynchronous-oriented processing 4934 * method to retrieve bursts of received packets and to immediately 4935 * queue them for further parallel processing by another logical core, 4936 * for instance. However, instead of having received packets being 4937 * individually queued by the driver, this approach allows the caller 4938 * of the rte_eth_rx_burst() function to queue a burst of retrieved 4939 * packets at a time and therefore dramatically reduce the cost of 4940 * enqueue/dequeue operations per packet. 4941 * 4942 * - It allows the rte_eth_rx_burst() function of the driver to take 4943 * advantage of burst-oriented hardware features (CPU cache, 4944 * prefetch instructions, and so on) to minimize the number of CPU 4945 * cycles per packet. 4946 * 4947 * To summarize, the proposed receive API enables many 4948 * burst-oriented optimizations in both synchronous and asynchronous 4949 * packet processing environments with no overhead in both cases. 4950 * 4951 * @note 4952 * Some drivers using vector instructions require that *nb_pkts* is 4953 * divisible by 4 or 8, depending on the driver implementation. 4954 * 4955 * The rte_eth_rx_burst() function does not provide any error 4956 * notification to avoid the corresponding overhead. As a hint, the 4957 * upper-level application might check the status of the device link once 4958 * being systematically returned a 0 value for a given number of tries. 4959 * 4960 * @param port_id 4961 * The port identifier of the Ethernet device. 4962 * @param queue_id 4963 * The index of the receive queue from which to retrieve input packets. 4964 * The value must be in the range [0, nb_rx_queue - 1] previously supplied 4965 * to rte_eth_dev_configure(). 4966 * @param rx_pkts 4967 * The address of an array of pointers to *rte_mbuf* structures that 4968 * must be large enough to store *nb_pkts* pointers in it. 4969 * @param nb_pkts 4970 * The maximum number of packets to retrieve. 4971 * The value must be divisible by 8 in order to work with any driver. 4972 * @return 4973 * The number of packets actually retrieved, which is the number 4974 * of pointers to *rte_mbuf* structures effectively supplied to the 4975 * *rx_pkts* array. 4976 */ 4977 static inline uint16_t 4978 rte_eth_rx_burst(uint16_t port_id, uint16_t queue_id, 4979 struct rte_mbuf **rx_pkts, const uint16_t nb_pkts) 4980 { 4981 struct rte_eth_dev *dev = &rte_eth_devices[port_id]; 4982 uint16_t nb_rx; 4983 4984 #ifdef RTE_ETHDEV_DEBUG_RX 4985 RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, 0); 4986 RTE_FUNC_PTR_OR_ERR_RET(*dev->rx_pkt_burst, 0); 4987 4988 if (queue_id >= dev->data->nb_rx_queues) { 4989 RTE_ETHDEV_LOG(ERR, "Invalid RX queue_id=%u\n", queue_id); 4990 return 0; 4991 } 4992 #endif 4993 nb_rx = (*dev->rx_pkt_burst)(dev->data->rx_queues[queue_id], 4994 rx_pkts, nb_pkts); 4995 4996 #ifdef RTE_ETHDEV_RXTX_CALLBACKS 4997 struct rte_eth_rxtx_callback *cb; 4998 4999 /* __ATOMIC_RELEASE memory order was used when the 5000 * call back was inserted into the list. 5001 * Since there is a clear dependency between loading 5002 * cb and cb->fn/cb->next, __ATOMIC_ACQUIRE memory order is 5003 * not required. 5004 */ 5005 cb = __atomic_load_n(&dev->post_rx_burst_cbs[queue_id], 5006 __ATOMIC_RELAXED); 5007 5008 if (unlikely(cb != NULL)) { 5009 do { 5010 nb_rx = cb->fn.rx(port_id, queue_id, rx_pkts, nb_rx, 5011 nb_pkts, cb->param); 5012 cb = cb->next; 5013 } while (cb != NULL); 5014 } 5015 #endif 5016 5017 rte_ethdev_trace_rx_burst(port_id, queue_id, (void **)rx_pkts, nb_rx); 5018 return nb_rx; 5019 } 5020 5021 /** 5022 * Get the number of used descriptors of a rx queue 5023 * 5024 * @param port_id 5025 * The port identifier of the Ethernet device. 5026 * @param queue_id 5027 * The queue id on the specific port. 5028 * @return 5029 * The number of used descriptors in the specific queue, or: 5030 * - (-ENODEV) if *port_id* is invalid. 5031 * (-EINVAL) if *queue_id* is invalid 5032 * (-ENOTSUP) if the device does not support this function 5033 */ 5034 static inline int 5035 rte_eth_rx_queue_count(uint16_t port_id, uint16_t queue_id) 5036 { 5037 struct rte_eth_dev *dev; 5038 5039 RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV); 5040 dev = &rte_eth_devices[port_id]; 5041 RTE_FUNC_PTR_OR_ERR_RET(*dev->rx_queue_count, -ENOTSUP); 5042 if (queue_id >= dev->data->nb_rx_queues || 5043 dev->data->rx_queues[queue_id] == NULL) 5044 return -EINVAL; 5045 5046 return (int)(*dev->rx_queue_count)(dev, queue_id); 5047 } 5048 5049 /** 5050 * Check if the DD bit of the specific RX descriptor in the queue has been set 5051 * 5052 * @param port_id 5053 * The port identifier of the Ethernet device. 5054 * @param queue_id 5055 * The queue id on the specific port. 5056 * @param offset 5057 * The offset of the descriptor ID from tail. 5058 * @return 5059 * - (1) if the specific DD bit is set. 5060 * - (0) if the specific DD bit is not set. 5061 * - (-ENODEV) if *port_id* invalid. 5062 * - (-ENOTSUP) if the device does not support this function 5063 */ 5064 __rte_deprecated 5065 static inline int 5066 rte_eth_rx_descriptor_done(uint16_t port_id, uint16_t queue_id, uint16_t offset) 5067 { 5068 struct rte_eth_dev *dev = &rte_eth_devices[port_id]; 5069 RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV); 5070 RTE_FUNC_PTR_OR_ERR_RET(*dev->rx_descriptor_done, -ENOTSUP); 5071 return (*dev->rx_descriptor_done)(dev->data->rx_queues[queue_id], offset); 5072 } 5073 5074 #define RTE_ETH_RX_DESC_AVAIL 0 /**< Desc available for hw. */ 5075 #define RTE_ETH_RX_DESC_DONE 1 /**< Desc done, filled by hw. */ 5076 #define RTE_ETH_RX_DESC_UNAVAIL 2 /**< Desc used by driver or hw. */ 5077 5078 /** 5079 * Check the status of a Rx descriptor in the queue 5080 * 5081 * It should be called in a similar context than the Rx function: 5082 * - on a dataplane core 5083 * - not concurrently on the same queue 5084 * 5085 * Since it's a dataplane function, no check is performed on port_id and 5086 * queue_id. The caller must therefore ensure that the port is enabled 5087 * and the queue is configured and running. 5088 * 5089 * Note: accessing to a random descriptor in the ring may trigger cache 5090 * misses and have a performance impact. 5091 * 5092 * @param port_id 5093 * A valid port identifier of the Ethernet device which. 5094 * @param queue_id 5095 * A valid Rx queue identifier on this port. 5096 * @param offset 5097 * The offset of the descriptor starting from tail (0 is the next 5098 * packet to be received by the driver). 5099 * 5100 * @return 5101 * - (RTE_ETH_RX_DESC_AVAIL): Descriptor is available for the hardware to 5102 * receive a packet. 5103 * - (RTE_ETH_RX_DESC_DONE): Descriptor is done, it is filled by hw, but 5104 * not yet processed by the driver (i.e. in the receive queue). 5105 * - (RTE_ETH_RX_DESC_UNAVAIL): Descriptor is unavailable, either hold by 5106 * the driver and not yet returned to hw, or reserved by the hw. 5107 * - (-EINVAL) bad descriptor offset. 5108 * - (-ENOTSUP) if the device does not support this function. 5109 * - (-ENODEV) bad port or queue (only if compiled with debug). 5110 */ 5111 static inline int 5112 rte_eth_rx_descriptor_status(uint16_t port_id, uint16_t queue_id, 5113 uint16_t offset) 5114 { 5115 struct rte_eth_dev *dev; 5116 void *rxq; 5117 5118 #ifdef RTE_ETHDEV_DEBUG_RX 5119 RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV); 5120 #endif 5121 dev = &rte_eth_devices[port_id]; 5122 #ifdef RTE_ETHDEV_DEBUG_RX 5123 if (queue_id >= dev->data->nb_rx_queues) 5124 return -ENODEV; 5125 #endif 5126 RTE_FUNC_PTR_OR_ERR_RET(*dev->rx_descriptor_status, -ENOTSUP); 5127 rxq = dev->data->rx_queues[queue_id]; 5128 5129 return (*dev->rx_descriptor_status)(rxq, offset); 5130 } 5131 5132 #define RTE_ETH_TX_DESC_FULL 0 /**< Desc filled for hw, waiting xmit. */ 5133 #define RTE_ETH_TX_DESC_DONE 1 /**< Desc done, packet is transmitted. */ 5134 #define RTE_ETH_TX_DESC_UNAVAIL 2 /**< Desc used by driver or hw. */ 5135 5136 /** 5137 * Check the status of a Tx descriptor in the queue. 5138 * 5139 * It should be called in a similar context than the Tx function: 5140 * - on a dataplane core 5141 * - not concurrently on the same queue 5142 * 5143 * Since it's a dataplane function, no check is performed on port_id and 5144 * queue_id. The caller must therefore ensure that the port is enabled 5145 * and the queue is configured and running. 5146 * 5147 * Note: accessing to a random descriptor in the ring may trigger cache 5148 * misses and have a performance impact. 5149 * 5150 * @param port_id 5151 * A valid port identifier of the Ethernet device which. 5152 * @param queue_id 5153 * A valid Tx queue identifier on this port. 5154 * @param offset 5155 * The offset of the descriptor starting from tail (0 is the place where 5156 * the next packet will be send). 5157 * 5158 * @return 5159 * - (RTE_ETH_TX_DESC_FULL) Descriptor is being processed by the hw, i.e. 5160 * in the transmit queue. 5161 * - (RTE_ETH_TX_DESC_DONE) Hardware is done with this descriptor, it can 5162 * be reused by the driver. 5163 * - (RTE_ETH_TX_DESC_UNAVAIL): Descriptor is unavailable, reserved by the 5164 * driver or the hardware. 5165 * - (-EINVAL) bad descriptor offset. 5166 * - (-ENOTSUP) if the device does not support this function. 5167 * - (-ENODEV) bad port or queue (only if compiled with debug). 5168 */ 5169 static inline int rte_eth_tx_descriptor_status(uint16_t port_id, 5170 uint16_t queue_id, uint16_t offset) 5171 { 5172 struct rte_eth_dev *dev; 5173 void *txq; 5174 5175 #ifdef RTE_ETHDEV_DEBUG_TX 5176 RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, -ENODEV); 5177 #endif 5178 dev = &rte_eth_devices[port_id]; 5179 #ifdef RTE_ETHDEV_DEBUG_TX 5180 if (queue_id >= dev->data->nb_tx_queues) 5181 return -ENODEV; 5182 #endif 5183 RTE_FUNC_PTR_OR_ERR_RET(*dev->tx_descriptor_status, -ENOTSUP); 5184 txq = dev->data->tx_queues[queue_id]; 5185 5186 return (*dev->tx_descriptor_status)(txq, offset); 5187 } 5188 5189 /** 5190 * Send a burst of output packets on a transmit queue of an Ethernet device. 5191 * 5192 * The rte_eth_tx_burst() function is invoked to transmit output packets 5193 * on the output queue *queue_id* of the Ethernet device designated by its 5194 * *port_id*. 5195 * The *nb_pkts* parameter is the number of packets to send which are 5196 * supplied in the *tx_pkts* array of *rte_mbuf* structures, each of them 5197 * allocated from a pool created with rte_pktmbuf_pool_create(). 5198 * The rte_eth_tx_burst() function loops, sending *nb_pkts* packets, 5199 * up to the number of transmit descriptors available in the TX ring of the 5200 * transmit queue. 5201 * For each packet to send, the rte_eth_tx_burst() function performs 5202 * the following operations: 5203 * 5204 * - Pick up the next available descriptor in the transmit ring. 5205 * 5206 * - Free the network buffer previously sent with that descriptor, if any. 5207 * 5208 * - Initialize the transmit descriptor with the information provided 5209 * in the *rte_mbuf data structure. 5210 * 5211 * In the case of a segmented packet composed of a list of *rte_mbuf* buffers, 5212 * the rte_eth_tx_burst() function uses several transmit descriptors 5213 * of the ring. 5214 * 5215 * The rte_eth_tx_burst() function returns the number of packets it 5216 * actually sent. A return value equal to *nb_pkts* means that all packets 5217 * have been sent, and this is likely to signify that other output packets 5218 * could be immediately transmitted again. Applications that implement a 5219 * "send as many packets to transmit as possible" policy can check this 5220 * specific case and keep invoking the rte_eth_tx_burst() function until 5221 * a value less than *nb_pkts* is returned. 5222 * 5223 * It is the responsibility of the rte_eth_tx_burst() function to 5224 * transparently free the memory buffers of packets previously sent. 5225 * This feature is driven by the *tx_free_thresh* value supplied to the 5226 * rte_eth_dev_configure() function at device configuration time. 5227 * When the number of free TX descriptors drops below this threshold, the 5228 * rte_eth_tx_burst() function must [attempt to] free the *rte_mbuf* buffers 5229 * of those packets whose transmission was effectively completed. 5230 * 5231 * If the PMD is DEV_TX_OFFLOAD_MT_LOCKFREE capable, multiple threads can 5232 * invoke this function concurrently on the same tx queue without SW lock. 5233 * @see rte_eth_dev_info_get, struct rte_eth_txconf::offloads 5234 * 5235 * @see rte_eth_tx_prepare to perform some prior checks or adjustments 5236 * for offloads. 5237 * 5238 * @param port_id 5239 * The port identifier of the Ethernet device. 5240 * @param queue_id 5241 * The index of the transmit queue through which output packets must be 5242 * sent. 5243 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 5244 * to rte_eth_dev_configure(). 5245 * @param tx_pkts 5246 * The address of an array of *nb_pkts* pointers to *rte_mbuf* structures 5247 * which contain the output packets. 5248 * @param nb_pkts 5249 * The maximum number of packets to transmit. 5250 * @return 5251 * The number of output packets actually stored in transmit descriptors of 5252 * the transmit ring. The return value can be less than the value of the 5253 * *tx_pkts* parameter when the transmit ring is full or has been filled up. 5254 */ 5255 static inline uint16_t 5256 rte_eth_tx_burst(uint16_t port_id, uint16_t queue_id, 5257 struct rte_mbuf **tx_pkts, uint16_t nb_pkts) 5258 { 5259 struct rte_eth_dev *dev = &rte_eth_devices[port_id]; 5260 5261 #ifdef RTE_ETHDEV_DEBUG_TX 5262 RTE_ETH_VALID_PORTID_OR_ERR_RET(port_id, 0); 5263 RTE_FUNC_PTR_OR_ERR_RET(*dev->tx_pkt_burst, 0); 5264 5265 if (queue_id >= dev->data->nb_tx_queues) { 5266 RTE_ETHDEV_LOG(ERR, "Invalid TX queue_id=%u\n", queue_id); 5267 return 0; 5268 } 5269 #endif 5270 5271 #ifdef RTE_ETHDEV_RXTX_CALLBACKS 5272 struct rte_eth_rxtx_callback *cb; 5273 5274 /* __ATOMIC_RELEASE memory order was used when the 5275 * call back was inserted into the list. 5276 * Since there is a clear dependency between loading 5277 * cb and cb->fn/cb->next, __ATOMIC_ACQUIRE memory order is 5278 * not required. 5279 */ 5280 cb = __atomic_load_n(&dev->pre_tx_burst_cbs[queue_id], 5281 __ATOMIC_RELAXED); 5282 5283 if (unlikely(cb != NULL)) { 5284 do { 5285 nb_pkts = cb->fn.tx(port_id, queue_id, tx_pkts, nb_pkts, 5286 cb->param); 5287 cb = cb->next; 5288 } while (cb != NULL); 5289 } 5290 #endif 5291 5292 rte_ethdev_trace_tx_burst(port_id, queue_id, (void **)tx_pkts, 5293 nb_pkts); 5294 return (*dev->tx_pkt_burst)(dev->data->tx_queues[queue_id], tx_pkts, nb_pkts); 5295 } 5296 5297 /** 5298 * Process a burst of output packets on a transmit queue of an Ethernet device. 5299 * 5300 * The rte_eth_tx_prepare() function is invoked to prepare output packets to be 5301 * transmitted on the output queue *queue_id* of the Ethernet device designated 5302 * by its *port_id*. 5303 * The *nb_pkts* parameter is the number of packets to be prepared which are 5304 * supplied in the *tx_pkts* array of *rte_mbuf* structures, each of them 5305 * allocated from a pool created with rte_pktmbuf_pool_create(). 5306 * For each packet to send, the rte_eth_tx_prepare() function performs 5307 * the following operations: 5308 * 5309 * - Check if packet meets devices requirements for tx offloads. 5310 * 5311 * - Check limitations about number of segments. 5312 * 5313 * - Check additional requirements when debug is enabled. 5314 * 5315 * - Update and/or reset required checksums when tx offload is set for packet. 5316 * 5317 * Since this function can modify packet data, provided mbufs must be safely 5318 * writable (e.g. modified data cannot be in shared segment). 5319 * 5320 * The rte_eth_tx_prepare() function returns the number of packets ready to be 5321 * sent. A return value equal to *nb_pkts* means that all packets are valid and 5322 * ready to be sent, otherwise stops processing on the first invalid packet and 5323 * leaves the rest packets untouched. 5324 * 5325 * When this functionality is not implemented in the driver, all packets are 5326 * are returned untouched. 5327 * 5328 * @param port_id 5329 * The port identifier of the Ethernet device. 5330 * The value must be a valid port id. 5331 * @param queue_id 5332 * The index of the transmit queue through which output packets must be 5333 * sent. 5334 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 5335 * to rte_eth_dev_configure(). 5336 * @param tx_pkts 5337 * The address of an array of *nb_pkts* pointers to *rte_mbuf* structures 5338 * which contain the output packets. 5339 * @param nb_pkts 5340 * The maximum number of packets to process. 5341 * @return 5342 * The number of packets correct and ready to be sent. The return value can be 5343 * less than the value of the *tx_pkts* parameter when some packet doesn't 5344 * meet devices requirements with rte_errno set appropriately: 5345 * - EINVAL: offload flags are not correctly set 5346 * - ENOTSUP: the offload feature is not supported by the hardware 5347 * - ENODEV: if *port_id* is invalid (with debug enabled only) 5348 * 5349 */ 5350 5351 #ifndef RTE_ETHDEV_TX_PREPARE_NOOP 5352 5353 static inline uint16_t 5354 rte_eth_tx_prepare(uint16_t port_id, uint16_t queue_id, 5355 struct rte_mbuf **tx_pkts, uint16_t nb_pkts) 5356 { 5357 struct rte_eth_dev *dev; 5358 5359 #ifdef RTE_ETHDEV_DEBUG_TX 5360 if (!rte_eth_dev_is_valid_port(port_id)) { 5361 RTE_ETHDEV_LOG(ERR, "Invalid TX port_id=%u\n", port_id); 5362 rte_errno = ENODEV; 5363 return 0; 5364 } 5365 #endif 5366 5367 dev = &rte_eth_devices[port_id]; 5368 5369 #ifdef RTE_ETHDEV_DEBUG_TX 5370 if (queue_id >= dev->data->nb_tx_queues) { 5371 RTE_ETHDEV_LOG(ERR, "Invalid TX queue_id=%u\n", queue_id); 5372 rte_errno = EINVAL; 5373 return 0; 5374 } 5375 #endif 5376 5377 if (!dev->tx_pkt_prepare) 5378 return nb_pkts; 5379 5380 return (*dev->tx_pkt_prepare)(dev->data->tx_queues[queue_id], 5381 tx_pkts, nb_pkts); 5382 } 5383 5384 #else 5385 5386 /* 5387 * Native NOOP operation for compilation targets which doesn't require any 5388 * preparations steps, and functional NOOP may introduce unnecessary performance 5389 * drop. 5390 * 5391 * Generally this is not a good idea to turn it on globally and didn't should 5392 * be used if behavior of tx_preparation can change. 5393 */ 5394 5395 static inline uint16_t 5396 rte_eth_tx_prepare(__rte_unused uint16_t port_id, 5397 __rte_unused uint16_t queue_id, 5398 __rte_unused struct rte_mbuf **tx_pkts, uint16_t nb_pkts) 5399 { 5400 return nb_pkts; 5401 } 5402 5403 #endif 5404 5405 /** 5406 * Send any packets queued up for transmission on a port and HW queue 5407 * 5408 * This causes an explicit flush of packets previously buffered via the 5409 * rte_eth_tx_buffer() function. It returns the number of packets successfully 5410 * sent to the NIC, and calls the error callback for any unsent packets. Unless 5411 * explicitly set up otherwise, the default callback simply frees the unsent 5412 * packets back to the owning mempool. 5413 * 5414 * @param port_id 5415 * The port identifier of the Ethernet device. 5416 * @param queue_id 5417 * The index of the transmit queue through which output packets must be 5418 * sent. 5419 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 5420 * to rte_eth_dev_configure(). 5421 * @param buffer 5422 * Buffer of packets to be transmit. 5423 * @return 5424 * The number of packets successfully sent to the Ethernet device. The error 5425 * callback is called for any packets which could not be sent. 5426 */ 5427 static inline uint16_t 5428 rte_eth_tx_buffer_flush(uint16_t port_id, uint16_t queue_id, 5429 struct rte_eth_dev_tx_buffer *buffer) 5430 { 5431 uint16_t sent; 5432 uint16_t to_send = buffer->length; 5433 5434 if (to_send == 0) 5435 return 0; 5436 5437 sent = rte_eth_tx_burst(port_id, queue_id, buffer->pkts, to_send); 5438 5439 buffer->length = 0; 5440 5441 /* All packets sent, or to be dealt with by callback below */ 5442 if (unlikely(sent != to_send)) 5443 buffer->error_callback(&buffer->pkts[sent], 5444 (uint16_t)(to_send - sent), 5445 buffer->error_userdata); 5446 5447 return sent; 5448 } 5449 5450 /** 5451 * Buffer a single packet for future transmission on a port and queue 5452 * 5453 * This function takes a single mbuf/packet and buffers it for later 5454 * transmission on the particular port and queue specified. Once the buffer is 5455 * full of packets, an attempt will be made to transmit all the buffered 5456 * packets. In case of error, where not all packets can be transmitted, a 5457 * callback is called with the unsent packets as a parameter. If no callback 5458 * is explicitly set up, the unsent packets are just freed back to the owning 5459 * mempool. The function returns the number of packets actually sent i.e. 5460 * 0 if no buffer flush occurred, otherwise the number of packets successfully 5461 * flushed 5462 * 5463 * @param port_id 5464 * The port identifier of the Ethernet device. 5465 * @param queue_id 5466 * The index of the transmit queue through which output packets must be 5467 * sent. 5468 * The value must be in the range [0, nb_tx_queue - 1] previously supplied 5469 * to rte_eth_dev_configure(). 5470 * @param buffer 5471 * Buffer used to collect packets to be sent. 5472 * @param tx_pkt 5473 * Pointer to the packet mbuf to be sent. 5474 * @return 5475 * 0 = packet has been buffered for later transmission 5476 * N > 0 = packet has been buffered, and the buffer was subsequently flushed, 5477 * causing N packets to be sent, and the error callback to be called for 5478 * the rest. 5479 */ 5480 static __rte_always_inline uint16_t 5481 rte_eth_tx_buffer(uint16_t port_id, uint16_t queue_id, 5482 struct rte_eth_dev_tx_buffer *buffer, struct rte_mbuf *tx_pkt) 5483 { 5484 buffer->pkts[buffer->length++] = tx_pkt; 5485 if (buffer->length < buffer->size) 5486 return 0; 5487 5488 return rte_eth_tx_buffer_flush(port_id, queue_id, buffer); 5489 } 5490 5491 #ifdef __cplusplus 5492 } 5493 #endif 5494 5495 #endif /* _RTE_ETHDEV_H_ */ 5496