1 /*- 2 * BSD LICENSE 3 * 4 * Copyright (c) 2015-2016 Amazon.com, Inc. or its affiliates. 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 11 * * Redistributions of source code must retain the above copyright 12 * notice, this list of conditions and the following disclaimer. 13 * * Redistributions in binary form must reproduce the above copyright 14 * notice, this list of conditions and the following disclaimer in 15 * the documentation and/or other materials provided with the 16 * distribution. 17 * * Neither the name of copyright holder nor the names of its 18 * contributors may be used to endorse or promote products derived 19 * from this software without specific prior written permission. 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 22 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 23 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 24 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 25 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 26 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 27 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 31 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 32 */ 33 34 #ifndef ENA_COM 35 #define ENA_COM 36 37 #include "ena_plat.h" 38 #include "ena_common_defs.h" 39 #include "ena_admin_defs.h" 40 #include "ena_eth_io_defs.h" 41 #include "ena_regs_defs.h" 42 #if defined(__linux__) && !defined(__KERNEL__) 43 #include <rte_lcore.h> 44 #include <rte_spinlock.h> 45 #define __iomem 46 #endif 47 48 #define ENA_MAX_NUM_IO_QUEUES 128U 49 /* We need to queues for each IO (on for Tx and one for Rx) */ 50 #define ENA_TOTAL_NUM_QUEUES (2 * (ENA_MAX_NUM_IO_QUEUES)) 51 52 #define ENA_MAX_HANDLERS 256 53 54 #define ENA_MAX_PHYS_ADDR_SIZE_BITS 48 55 56 /* Unit in usec */ 57 #define ENA_REG_READ_TIMEOUT 200000 58 59 #define ADMIN_SQ_SIZE(depth) ((depth) * sizeof(struct ena_admin_aq_entry)) 60 #define ADMIN_CQ_SIZE(depth) ((depth) * sizeof(struct ena_admin_acq_entry)) 61 #define ADMIN_AENQ_SIZE(depth) ((depth) * sizeof(struct ena_admin_aenq_entry)) 62 63 /*****************************************************************************/ 64 /*****************************************************************************/ 65 /* ENA adaptive interrupt moderation settings */ 66 67 #define ENA_INTR_LOWEST_USECS (0) 68 #define ENA_INTR_LOWEST_PKTS (3) 69 #define ENA_INTR_LOWEST_BYTES (2 * 1524) 70 71 #define ENA_INTR_LOW_USECS (32) 72 #define ENA_INTR_LOW_PKTS (12) 73 #define ENA_INTR_LOW_BYTES (16 * 1024) 74 75 #define ENA_INTR_MID_USECS (80) 76 #define ENA_INTR_MID_PKTS (48) 77 #define ENA_INTR_MID_BYTES (64 * 1024) 78 79 #define ENA_INTR_HIGH_USECS (128) 80 #define ENA_INTR_HIGH_PKTS (96) 81 #define ENA_INTR_HIGH_BYTES (128 * 1024) 82 83 #define ENA_INTR_HIGHEST_USECS (192) 84 #define ENA_INTR_HIGHEST_PKTS (128) 85 #define ENA_INTR_HIGHEST_BYTES (192 * 1024) 86 87 #define ENA_INTR_INITIAL_TX_INTERVAL_USECS 196 88 #define ENA_INTR_INITIAL_RX_INTERVAL_USECS 4 89 #define ENA_INTR_DELAY_OLD_VALUE_WEIGHT 6 90 #define ENA_INTR_DELAY_NEW_VALUE_WEIGHT 4 91 92 enum ena_intr_moder_level { 93 ENA_INTR_MODER_LOWEST = 0, 94 ENA_INTR_MODER_LOW, 95 ENA_INTR_MODER_MID, 96 ENA_INTR_MODER_HIGH, 97 ENA_INTR_MODER_HIGHEST, 98 ENA_INTR_MAX_NUM_OF_LEVELS, 99 }; 100 101 struct ena_intr_moder_entry { 102 unsigned int intr_moder_interval; 103 unsigned int pkts_per_interval; 104 unsigned int bytes_per_interval; 105 }; 106 107 enum queue_direction { 108 ENA_COM_IO_QUEUE_DIRECTION_TX, 109 ENA_COM_IO_QUEUE_DIRECTION_RX 110 }; 111 112 struct ena_com_buf { 113 dma_addr_t paddr; /**< Buffer physical address */ 114 u16 len; /**< Buffer length in bytes */ 115 }; 116 117 struct ena_com_rx_buf_info { 118 u16 len; 119 u16 req_id; 120 }; 121 122 struct ena_com_io_desc_addr { 123 u8 __iomem *pbuf_dev_addr; /* LLQ address */ 124 u8 *virt_addr; 125 dma_addr_t phys_addr; 126 ena_mem_handle_t mem_handle; 127 }; 128 129 struct ena_com_tx_meta { 130 u16 mss; 131 u16 l3_hdr_len; 132 u16 l3_hdr_offset; 133 u16 l3_outer_hdr_len; /* In words */ 134 u16 l3_outer_hdr_offset; 135 u16 l4_hdr_len; /* In words */ 136 }; 137 138 struct ena_com_io_cq { 139 struct ena_com_io_desc_addr cdesc_addr; 140 141 /* Interrupt unmask register */ 142 u32 __iomem *unmask_reg; 143 144 /* The completion queue head doorbell register */ 145 u32 __iomem *cq_head_db_reg; 146 147 /* numa configuration register (for TPH) */ 148 u32 __iomem *numa_node_cfg_reg; 149 150 /* The value to write to the above register to unmask 151 * the interrupt of this queue 152 */ 153 u32 msix_vector; 154 155 enum queue_direction direction; 156 157 /* holds the number of cdesc of the current packet */ 158 u16 cur_rx_pkt_cdesc_count; 159 /* save the firt cdesc idx of the current packet */ 160 u16 cur_rx_pkt_cdesc_start_idx; 161 162 u16 q_depth; 163 /* Caller qid */ 164 u16 qid; 165 166 /* Device queue index */ 167 u16 idx; 168 u16 head; 169 u16 last_head_update; 170 u8 phase; 171 u8 cdesc_entry_size_in_bytes; 172 173 } ____cacheline_aligned; 174 175 struct ena_com_io_sq { 176 struct ena_com_io_desc_addr desc_addr; 177 178 u32 __iomem *db_addr; 179 u8 __iomem *header_addr; 180 181 enum queue_direction direction; 182 enum ena_admin_placement_policy_type mem_queue_type; 183 184 u32 msix_vector; 185 struct ena_com_tx_meta cached_tx_meta; 186 187 u16 q_depth; 188 u16 qid; 189 190 u16 idx; 191 u16 tail; 192 u16 next_to_comp; 193 u32 tx_max_header_size; 194 u8 phase; 195 u8 desc_entry_size; 196 u8 dma_addr_bits; 197 } ____cacheline_aligned; 198 199 struct ena_com_admin_cq { 200 struct ena_admin_acq_entry *entries; 201 ena_mem_handle_t mem_handle; 202 dma_addr_t dma_addr; 203 204 u16 head; 205 u8 phase; 206 }; 207 208 struct ena_com_admin_sq { 209 struct ena_admin_aq_entry *entries; 210 ena_mem_handle_t mem_handle; 211 dma_addr_t dma_addr; 212 213 u32 __iomem *db_addr; 214 215 u16 head; 216 u16 tail; 217 u8 phase; 218 219 }; 220 221 struct ena_com_stats_admin { 222 u32 aborted_cmd; 223 u32 submitted_cmd; 224 u32 completed_cmd; 225 u32 out_of_space; 226 u32 no_completion; 227 }; 228 229 struct ena_com_admin_queue { 230 void *q_dmadev; 231 ena_spinlock_t q_lock; /* spinlock for the admin queue */ 232 struct ena_comp_ctx *comp_ctx; 233 u16 q_depth; 234 struct ena_com_admin_cq cq; 235 struct ena_com_admin_sq sq; 236 237 /* Indicate if the admin queue should poll for completion */ 238 bool polling; 239 240 u16 curr_cmd_id; 241 242 /* Indicate that the ena was initialized and can 243 * process new admin commands 244 */ 245 bool running_state; 246 247 /* Count the number of outstanding admin commands */ 248 ena_atomic32_t outstanding_cmds; 249 250 struct ena_com_stats_admin stats; 251 }; 252 253 struct ena_aenq_handlers; 254 255 struct ena_com_aenq { 256 u16 head; 257 u8 phase; 258 struct ena_admin_aenq_entry *entries; 259 dma_addr_t dma_addr; 260 ena_mem_handle_t mem_handle; 261 u16 q_depth; 262 struct ena_aenq_handlers *aenq_handlers; 263 }; 264 265 struct ena_com_mmio_read { 266 struct ena_admin_ena_mmio_req_read_less_resp *read_resp; 267 dma_addr_t read_resp_dma_addr; 268 ena_mem_handle_t read_resp_mem_handle; 269 u16 seq_num; 270 bool readless_supported; 271 /* spin lock to ensure a single outstanding read */ 272 ena_spinlock_t lock; 273 }; 274 275 struct ena_rss { 276 /* Indirect table */ 277 u16 *host_rss_ind_tbl; 278 struct ena_admin_rss_ind_table_entry *rss_ind_tbl; 279 dma_addr_t rss_ind_tbl_dma_addr; 280 ena_mem_handle_t rss_ind_tbl_mem_handle; 281 u16 tbl_log_size; 282 283 /* Hash key */ 284 enum ena_admin_hash_functions hash_func; 285 struct ena_admin_feature_rss_flow_hash_control *hash_key; 286 dma_addr_t hash_key_dma_addr; 287 ena_mem_handle_t hash_key_mem_handle; 288 u32 hash_init_val; 289 290 /* Flow Control */ 291 struct ena_admin_feature_rss_hash_control *hash_ctrl; 292 dma_addr_t hash_ctrl_dma_addr; 293 ena_mem_handle_t hash_ctrl_mem_handle; 294 295 }; 296 297 struct ena_host_attribute { 298 /* Debug area */ 299 u8 *debug_area_virt_addr; 300 dma_addr_t debug_area_dma_addr; 301 ena_mem_handle_t debug_area_dma_handle; 302 u32 debug_area_size; 303 304 /* Host information */ 305 struct ena_admin_host_info *host_info; 306 dma_addr_t host_info_dma_addr; 307 ena_mem_handle_t host_info_dma_handle; 308 }; 309 310 /* Each ena_dev is a PCI function. */ 311 struct ena_com_dev { 312 struct ena_com_admin_queue admin_queue; 313 struct ena_com_aenq aenq; 314 struct ena_com_io_cq io_cq_queues[ENA_TOTAL_NUM_QUEUES]; 315 struct ena_com_io_sq io_sq_queues[ENA_TOTAL_NUM_QUEUES]; 316 u8 __iomem *reg_bar; 317 void __iomem *mem_bar; 318 void *dmadev; 319 320 enum ena_admin_placement_policy_type tx_mem_queue_type; 321 u32 tx_max_header_size; 322 u16 stats_func; /* Selected function for extended statistic dump */ 323 u16 stats_queue; /* Selected queue for extended statistic dump */ 324 325 struct ena_com_mmio_read mmio_read; 326 327 struct ena_rss rss; 328 u32 supported_features; 329 u32 dma_addr_bits; 330 331 struct ena_host_attribute host_attr; 332 bool adaptive_coalescing; 333 u16 intr_delay_resolution; 334 u32 intr_moder_tx_interval; 335 struct ena_intr_moder_entry *intr_moder_tbl; 336 }; 337 338 struct ena_com_dev_get_features_ctx { 339 struct ena_admin_queue_feature_desc max_queues; 340 struct ena_admin_device_attr_feature_desc dev_attr; 341 struct ena_admin_feature_aenq_desc aenq; 342 struct ena_admin_feature_offload_desc offload; 343 }; 344 345 struct ena_com_create_io_ctx { 346 enum ena_admin_placement_policy_type mem_queue_type; 347 enum queue_direction direction; 348 int numa_node; 349 u32 msix_vector; 350 u16 queue_size; 351 u16 qid; 352 }; 353 354 typedef void (*ena_aenq_handler)(void *data, 355 struct ena_admin_aenq_entry *aenq_e); 356 357 /* Holds aenq handlers. Indexed by AENQ event group */ 358 struct ena_aenq_handlers { 359 ena_aenq_handler handlers[ENA_MAX_HANDLERS]; 360 ena_aenq_handler unimplemented_handler; 361 }; 362 363 /*****************************************************************************/ 364 /*****************************************************************************/ 365 #if defined(__cplusplus) 366 extern "C" { 367 #endif 368 369 /* ena_com_mmio_reg_read_request_init - Init the mmio reg read mechanism 370 * @ena_dev: ENA communication layer struct 371 * 372 * Initialize the register read mechanism. 373 * 374 * @note: This method must be the first stage in the initialization sequence. 375 * 376 * @return - 0 on success, negative value on failure. 377 */ 378 int ena_com_mmio_reg_read_request_init(struct ena_com_dev *ena_dev); 379 380 /* ena_com_set_mmio_read_mode - Enable/disable the mmio reg read mechanism 381 * @ena_dev: ENA communication layer struct 382 * @realess_supported: readless mode (enable/disable) 383 */ 384 void ena_com_set_mmio_read_mode(struct ena_com_dev *ena_dev, 385 bool readless_supported); 386 387 /* ena_com_mmio_reg_read_request_write_dev_addr - Write the mmio reg read return 388 * value physical address. 389 * @ena_dev: ENA communication layer struct 390 */ 391 void ena_com_mmio_reg_read_request_write_dev_addr(struct ena_com_dev *ena_dev); 392 393 /* ena_com_mmio_reg_read_request_destroy - Destroy the mmio reg read mechanism 394 * @ena_dev: ENA communication layer struct 395 */ 396 void ena_com_mmio_reg_read_request_destroy(struct ena_com_dev *ena_dev); 397 398 /* ena_com_admin_init - Init the admin and the async queues 399 * @ena_dev: ENA communication layer struct 400 * @aenq_handlers: Those handlers to be called upon event. 401 * @init_spinlock: Indicate if this method should init the admin spinlock or 402 * the spinlock was init before (for example, in a case of FLR). 403 * 404 * Initialize the admin submission and completion queues. 405 * Initialize the asynchronous events notification queues. 406 * 407 * @return - 0 on success, negative value on failure. 408 */ 409 int ena_com_admin_init(struct ena_com_dev *ena_dev, 410 struct ena_aenq_handlers *aenq_handlers, 411 bool init_spinlock); 412 413 /* ena_com_admin_destroy - Destroy the admin and the async events queues. 414 * @ena_dev: ENA communication layer struct 415 * 416 * @note: Before calling this method, the caller must validate that the device 417 * won't send any additional admin completions/aenq. 418 * To achieve that, a FLR is recommended. 419 */ 420 void ena_com_admin_destroy(struct ena_com_dev *ena_dev); 421 422 /* ena_com_dev_reset - Perform device FLR to the device. 423 * @ena_dev: ENA communication layer struct 424 * 425 * @return - 0 on success, negative value on failure. 426 */ 427 int ena_com_dev_reset(struct ena_com_dev *ena_dev); 428 429 /* ena_com_create_io_queue - Create io queue. 430 * @ena_dev: ENA communication layer struct 431 * ena_com_create_io_ctx - create context structure 432 * 433 * Create the submission and the completion queues. 434 * 435 * @return - 0 on success, negative value on failure. 436 */ 437 int ena_com_create_io_queue(struct ena_com_dev *ena_dev, 438 struct ena_com_create_io_ctx *ctx); 439 440 /* ena_com_admin_destroy - Destroy IO queue with the queue id - qid. 441 * @ena_dev: ENA communication layer struct 442 */ 443 void ena_com_destroy_io_queue(struct ena_com_dev *ena_dev, u16 qid); 444 445 /* ena_com_get_io_handlers - Return the io queue handlers 446 * @ena_dev: ENA communication layer struct 447 * @qid - the caller virtual queue id. 448 * @io_sq - IO submission queue handler 449 * @io_cq - IO completion queue handler. 450 * 451 * @return - 0 on success, negative value on failure. 452 */ 453 int ena_com_get_io_handlers(struct ena_com_dev *ena_dev, u16 qid, 454 struct ena_com_io_sq **io_sq, 455 struct ena_com_io_cq **io_cq); 456 457 /* ena_com_admin_aenq_enable - ENAble asynchronous event notifications 458 * @ena_dev: ENA communication layer struct 459 * 460 * After this method, aenq event can be received via AENQ. 461 */ 462 void ena_com_admin_aenq_enable(struct ena_com_dev *ena_dev); 463 464 /* ena_com_set_admin_running_state - Set the state of the admin queue 465 * @ena_dev: ENA communication layer struct 466 * 467 * Change the state of the admin queue (enable/disable) 468 */ 469 void ena_com_set_admin_running_state(struct ena_com_dev *ena_dev, bool state); 470 471 /* ena_com_get_admin_running_state - Get the admin queue state 472 * @ena_dev: ENA communication layer struct 473 * 474 * Retrieve the state of the admin queue (enable/disable) 475 * 476 * @return - current polling mode (enable/disable) 477 */ 478 bool ena_com_get_admin_running_state(struct ena_com_dev *ena_dev); 479 480 /* ena_com_set_admin_polling_mode - Set the admin completion queue polling mode 481 * @ena_dev: ENA communication layer struct 482 * @polling: ENAble/Disable polling mode 483 * 484 * Set the admin completion mode. 485 */ 486 void ena_com_set_admin_polling_mode(struct ena_com_dev *ena_dev, bool polling); 487 488 /* ena_com_set_admin_polling_mode - Get the admin completion queue polling mode 489 * @ena_dev: ENA communication layer struct 490 * 491 * Get the admin completion mode. 492 * If polling mode is on, ena_com_execute_admin_command will perform a 493 * polling on the admin completion queue for the commands completion, 494 * otherwise it will wait on wait event. 495 * 496 * @return state 497 */ 498 bool ena_com_get_ena_admin_polling_mode(struct ena_com_dev *ena_dev); 499 500 /* ena_com_admin_q_comp_intr_handler - admin queue interrupt handler 501 * @ena_dev: ENA communication layer struct 502 * 503 * This method go over the admin completion queue and wake up all the pending 504 * threads that wait on the commands wait event. 505 * 506 * @note: Should be called after MSI-X interrupt. 507 */ 508 void ena_com_admin_q_comp_intr_handler(struct ena_com_dev *ena_dev); 509 510 /* ena_com_aenq_intr_handler - AENQ interrupt handler 511 * @ena_dev: ENA communication layer struct 512 * 513 * This method go over the async event notification queue and call the proper 514 * aenq handler. 515 */ 516 void ena_com_aenq_intr_handler(struct ena_com_dev *dev, void *data); 517 518 /* ena_com_abort_admin_commands - Abort all the outstanding admin commands. 519 * @ena_dev: ENA communication layer struct 520 * 521 * This method aborts all the outstanding admin commands. 522 * The caller should then call ena_com_wait_for_abort_completion to make sure 523 * all the commands were completed. 524 */ 525 void ena_com_abort_admin_commands(struct ena_com_dev *ena_dev); 526 527 /* ena_com_wait_for_abort_completion - Wait for admin commands abort. 528 * @ena_dev: ENA communication layer struct 529 * 530 * This method wait until all the outstanding admin commands will be completed. 531 */ 532 void ena_com_wait_for_abort_completion(struct ena_com_dev *ena_dev); 533 534 /* ena_com_validate_version - Validate the device parameters 535 * @ena_dev: ENA communication layer struct 536 * 537 * This method validate the device parameters are the same as the saved 538 * parameters in ena_dev. 539 * This method is useful after device reset, to validate the device mac address 540 * and the device offloads are the same as before the reset. 541 * 542 * @return - 0 on success negative value otherwise. 543 */ 544 int ena_com_validate_version(struct ena_com_dev *ena_dev); 545 546 /* ena_com_get_link_params - Retrieve physical link parameters. 547 * @ena_dev: ENA communication layer struct 548 * @resp: Link parameters 549 * 550 * Retrieve the physical link parameters, 551 * like speed, auto-negotiation and full duplex support. 552 * 553 * @return - 0 on Success negative value otherwise. 554 */ 555 int ena_com_get_link_params(struct ena_com_dev *ena_dev, 556 struct ena_admin_get_feat_resp *resp); 557 558 /* ena_com_get_dma_width - Retrieve physical dma address width the device 559 * supports. 560 * @ena_dev: ENA communication layer struct 561 * 562 * Retrieve the maximum physical address bits the device can handle. 563 * 564 * @return: > 0 on Success and negative value otherwise. 565 */ 566 int ena_com_get_dma_width(struct ena_com_dev *ena_dev); 567 568 /* ena_com_set_aenq_config - Set aenq groups configurations 569 * @ena_dev: ENA communication layer struct 570 * @groups flag: bit fields flags of enum ena_admin_aenq_group. 571 * 572 * Configure which aenq event group the driver would like to receive. 573 * 574 * @return: 0 on Success and negative value otherwise. 575 */ 576 int ena_com_set_aenq_config(struct ena_com_dev *ena_dev, u32 groups_flag); 577 578 /* ena_com_get_dev_attr_feat - Get device features 579 * @ena_dev: ENA communication layer struct 580 * @get_feat_ctx: returned context that contain the get features. 581 * 582 * @return: 0 on Success and negative value otherwise. 583 */ 584 int 585 ena_com_get_dev_attr_feat(struct ena_com_dev *ena_dev, 586 struct ena_com_dev_get_features_ctx *get_feat_ctx); 587 588 /* ena_com_get_dev_basic_stats - Get device basic statistics 589 * @ena_dev: ENA communication layer struct 590 * @stats: stats return value 591 * 592 * @return: 0 on Success and negative value otherwise. 593 */ 594 int ena_com_get_dev_basic_stats(struct ena_com_dev *ena_dev, 595 struct ena_admin_basic_stats *stats); 596 597 /* ena_com_set_dev_mtu - Configure the device mtu. 598 * @ena_dev: ENA communication layer struct 599 * @mtu: mtu value 600 * 601 * @return: 0 on Success and negative value otherwise. 602 */ 603 int ena_com_set_dev_mtu(struct ena_com_dev *ena_dev, int mtu); 604 605 /* ena_com_get_offload_settings - Retrieve the device offloads capabilities 606 * @ena_dev: ENA communication layer struct 607 * @offlad: offload return value 608 * 609 * @return: 0 on Success and negative value otherwise. 610 */ 611 int 612 ena_com_get_offload_settings(struct ena_com_dev *ena_dev, 613 struct ena_admin_feature_offload_desc *offload); 614 615 /* ena_com_rss_init - Init RSS 616 * @ena_dev: ENA communication layer struct 617 * @log_size: indirection log size 618 * 619 * Allocate RSS/RFS resources. 620 * The caller then can configure rss using ena_com_set_hash_function, 621 * ena_com_set_hash_ctrl and ena_com_indirect_table_set. 622 * 623 * @return: 0 on Success and negative value otherwise. 624 */ 625 int ena_com_rss_init(struct ena_com_dev *ena_dev, u16 log_size); 626 627 /* ena_com_rss_destroy - Destroy rss 628 * @ena_dev: ENA communication layer struct 629 * 630 * Free all the RSS/RFS resources. 631 */ 632 void ena_com_rss_destroy(struct ena_com_dev *ena_dev); 633 634 /* ena_com_fill_hash_function - Fill RSS hash function 635 * @ena_dev: ENA communication layer struct 636 * @func: The hash function (Toeplitz or crc) 637 * @key: Hash key (for toeplitz hash) 638 * @key_len: key length (max length 10 DW) 639 * @init_val: initial value for the hash function 640 * 641 * Fill the ena_dev resources with the desire hash function, hash key, key_len 642 * and key initial value (if needed by the hash function). 643 * To flush the key into the device the caller should call 644 * ena_com_set_hash_function. 645 * 646 * @return: 0 on Success and negative value otherwise. 647 */ 648 int ena_com_fill_hash_function(struct ena_com_dev *ena_dev, 649 enum ena_admin_hash_functions func, 650 const u8 *key, u16 key_len, u32 init_val); 651 652 /* ena_com_set_hash_function - Flush the hash function and it dependencies to 653 * the device. 654 * @ena_dev: ENA communication layer struct 655 * 656 * Flush the hash function and it dependencies (key, key length and 657 * initial value) if needed. 658 * 659 * @note: Prior to this method the caller should call ena_com_fill_hash_function 660 * 661 * @return: 0 on Success and negative value otherwise. 662 */ 663 int ena_com_set_hash_function(struct ena_com_dev *ena_dev); 664 665 /* ena_com_get_hash_function - Retrieve the hash function and the hash key 666 * from the device. 667 * @ena_dev: ENA communication layer struct 668 * @func: hash function 669 * @key: hash key 670 * 671 * Retrieve the hash function and the hash key from the device. 672 * 673 * @note: If the caller called ena_com_fill_hash_function but didn't flash 674 * it to the device, the new configuration will be lost. 675 * 676 * @return: 0 on Success and negative value otherwise. 677 */ 678 int ena_com_get_hash_function(struct ena_com_dev *ena_dev, 679 enum ena_admin_hash_functions *func, 680 u8 *key); 681 682 /* ena_com_fill_hash_ctrl - Fill RSS hash control 683 * @ena_dev: ENA communication layer struct. 684 * @proto: The protocol to configure. 685 * @hash_fields: bit mask of ena_admin_flow_hash_fields 686 * 687 * Fill the ena_dev resources with the desire hash control (the ethernet 688 * fields that take part of the hash) for a specific protocol. 689 * To flush the hash control to the device, the caller should call 690 * ena_com_set_hash_ctrl. 691 * 692 * @return: 0 on Success and negative value otherwise. 693 */ 694 int ena_com_fill_hash_ctrl(struct ena_com_dev *ena_dev, 695 enum ena_admin_flow_hash_proto proto, 696 u16 hash_fields); 697 698 /* ena_com_set_hash_ctrl - Flush the hash control resources to the device. 699 * @ena_dev: ENA communication layer struct 700 * 701 * Flush the hash control (the ethernet fields that take part of the hash) 702 * 703 * @note: Prior to this method the caller should call ena_com_fill_hash_ctrl. 704 * 705 * @return: 0 on Success and negative value otherwise. 706 */ 707 int ena_com_set_hash_ctrl(struct ena_com_dev *ena_dev); 708 709 /* ena_com_get_hash_ctrl - Retrieve the hash control from the device. 710 * @ena_dev: ENA communication layer struct 711 * @proto: The protocol to retrieve. 712 * @fields: bit mask of ena_admin_flow_hash_fields. 713 * 714 * Retrieve the hash control from the device. 715 * 716 * @note, If the caller called ena_com_fill_hash_ctrl but didn't flash 717 * it to the device, the new configuration will be lost. 718 * 719 * @return: 0 on Success and negative value otherwise. 720 */ 721 int ena_com_get_hash_ctrl(struct ena_com_dev *ena_dev, 722 enum ena_admin_flow_hash_proto proto, 723 u16 *fields); 724 725 /* ena_com_set_default_hash_ctrl - Set the hash control to a default 726 * configuration. 727 * @ena_dev: ENA communication layer struct 728 * 729 * Fill the ena_dev resources with the default hash control configuration. 730 * To flush the hash control to the device, the caller should call 731 * ena_com_set_hash_ctrl. 732 * 733 * @return: 0 on Success and negative value otherwise. 734 */ 735 int ena_com_set_default_hash_ctrl(struct ena_com_dev *ena_dev); 736 737 /* ena_com_indirect_table_fill_entry - Fill a single entry in the RSS 738 * indirection table 739 * @ena_dev: ENA communication layer struct. 740 * @entry_idx - indirection table entry. 741 * @entry_value - redirection value 742 * 743 * Fill a single entry of the RSS indirection table in the ena_dev resources. 744 * To flush the indirection table to the device, the called should call 745 * ena_com_indirect_table_set. 746 * 747 * @return: 0 on Success and negative value otherwise. 748 */ 749 int ena_com_indirect_table_fill_entry(struct ena_com_dev *ena_dev, 750 u16 entry_idx, u16 entry_value); 751 752 /* ena_com_indirect_table_set - Flush the indirection table to the device. 753 * @ena_dev: ENA communication layer struct 754 * 755 * Flush the indirection hash control to the device. 756 * Prior to this method the caller should call ena_com_indirect_table_fill_entry 757 * 758 * @return: 0 on Success and negative value otherwise. 759 */ 760 int ena_com_indirect_table_set(struct ena_com_dev *ena_dev); 761 762 /* ena_com_indirect_table_get - Retrieve the indirection table from the device. 763 * @ena_dev: ENA communication layer struct 764 * @ind_tbl: indirection table 765 * 766 * Retrieve the RSS indirection table from the device. 767 * 768 * @note: If the caller called ena_com_indirect_table_fill_entry but didn't 769 * flash it to the device, the new configuration will be lost. 770 * 771 * @return: 0 on Success and negative value otherwise. 772 */ 773 int ena_com_indirect_table_get(struct ena_com_dev *ena_dev, u32 *ind_tbl); 774 775 /* ena_com_allocate_host_info - Allocate host info resources. 776 * @ena_dev: ENA communication layer struct 777 * 778 * @return: 0 on Success and negative value otherwise. 779 */ 780 int ena_com_allocate_host_info(struct ena_com_dev *ena_dev); 781 782 /* ena_com_allocate_debug_area - Allocate debug area. 783 * @ena_dev: ENA communication layer struct 784 * @debug_area_size - debug area size. 785 * 786 * @return: 0 on Success and negative value otherwise. 787 */ 788 int ena_com_allocate_debug_area(struct ena_com_dev *ena_dev, 789 u32 debug_area_size); 790 791 /* ena_com_delete_debug_area - Free the debug area resources. 792 * @ena_dev: ENA communication layer struct 793 * 794 * Free the allocate debug area. 795 */ 796 void ena_com_delete_debug_area(struct ena_com_dev *ena_dev); 797 798 /* ena_com_delete_host_info - Free the host info resources. 799 * @ena_dev: ENA communication layer struct 800 * 801 * Free the allocate host info. 802 */ 803 void ena_com_delete_host_info(struct ena_com_dev *ena_dev); 804 805 /* ena_com_set_host_attributes - Update the device with the host 806 * attributes (debug area and host info) base address. 807 * @ena_dev: ENA communication layer struct 808 * 809 * @return: 0 on Success and negative value otherwise. 810 */ 811 int ena_com_set_host_attributes(struct ena_com_dev *ena_dev); 812 813 /* ena_com_create_io_cq - Create io completion queue. 814 * @ena_dev: ENA communication layer struct 815 * @io_cq - io completion queue handler 816 817 * Create IO completion queue. 818 * 819 * @return - 0 on success, negative value on failure. 820 */ 821 int ena_com_create_io_cq(struct ena_com_dev *ena_dev, 822 struct ena_com_io_cq *io_cq); 823 824 /* ena_com_destroy_io_cq - Destroy io completion queue. 825 * @ena_dev: ENA communication layer struct 826 * @io_cq - io completion queue handler 827 828 * Destroy IO completion queue. 829 * 830 * @return - 0 on success, negative value on failure. 831 */ 832 int ena_com_destroy_io_cq(struct ena_com_dev *ena_dev, 833 struct ena_com_io_cq *io_cq); 834 835 /* ena_com_execute_admin_command - Execute admin command 836 * @admin_queue: admin queue. 837 * @cmd: the admin command to execute. 838 * @cmd_size: the command size. 839 * @cmd_completion: command completion return value. 840 * @cmd_comp_size: command completion size. 841 842 * Submit an admin command and then wait until the device will return a 843 * completion. 844 * The completion will be copyed into cmd_comp. 845 * 846 * @return - 0 on success, negative value on failure. 847 */ 848 int ena_com_execute_admin_command(struct ena_com_admin_queue *admin_queue, 849 struct ena_admin_aq_entry *cmd, 850 size_t cmd_size, 851 struct ena_admin_acq_entry *cmd_comp, 852 size_t cmd_comp_size); 853 854 /* ena_com_init_interrupt_moderation - Init interrupt moderation 855 * @ena_dev: ENA communication layer struct 856 * 857 * @return - 0 on success, negative value on failure. 858 */ 859 int ena_com_init_interrupt_moderation(struct ena_com_dev *ena_dev); 860 861 /* ena_com_destroy_interrupt_moderation - Destroy interrupt moderation resources 862 * @ena_dev: ENA communication layer struct 863 */ 864 void ena_com_destroy_interrupt_moderation(struct ena_com_dev *ena_dev); 865 866 /* ena_com_interrupt_moderation_supported - Return if interrupt moderation 867 * capability is supported by the device. 868 * 869 * @return - supported or not. 870 */ 871 bool ena_com_interrupt_moderation_supported(struct ena_com_dev *ena_dev); 872 873 /* ena_com_config_default_interrupt_moderation_table - Restore the interrupt 874 * moderation table back to the default parameters. 875 * @ena_dev: ENA communication layer struct 876 */ 877 void 878 ena_com_config_default_interrupt_moderation_table(struct ena_com_dev *ena_dev); 879 880 /* ena_com_update_nonadaptive_moderation_interval_tx - Update the 881 * non-adaptive interval in Tx direction. 882 * @ena_dev: ENA communication layer struct 883 * @tx_coalesce_usecs: Interval in usec. 884 * 885 * @return - 0 on success, negative value on failure. 886 */ 887 int 888 ena_com_update_nonadaptive_moderation_interval_tx(struct ena_com_dev *ena_dev, 889 u32 tx_coalesce_usecs); 890 891 /* ena_com_update_nonadaptive_moderation_interval_rx - Update the 892 * non-adaptive interval in Rx direction. 893 * @ena_dev: ENA communication layer struct 894 * @rx_coalesce_usecs: Interval in usec. 895 * 896 * @return - 0 on success, negative value on failure. 897 */ 898 int 899 ena_com_update_nonadaptive_moderation_interval_rx(struct ena_com_dev *ena_dev, 900 u32 rx_coalesce_usecs); 901 902 /* ena_com_get_nonadaptive_moderation_interval_tx - Retrieve the 903 * non-adaptive interval in Tx direction. 904 * @ena_dev: ENA communication layer struct 905 * 906 * @return - interval in usec 907 */ 908 unsigned int 909 ena_com_get_nonadaptive_moderation_interval_tx(struct ena_com_dev *ena_dev); 910 911 /* ena_com_get_nonadaptive_moderation_interval_rx - Retrieve the 912 * non-adaptive interval in Rx direction. 913 * @ena_dev: ENA communication layer struct 914 * 915 * @return - interval in usec 916 */ 917 unsigned int 918 ena_com_get_nonadaptive_moderation_interval_rx(struct ena_com_dev *ena_dev); 919 920 /* ena_com_init_intr_moderation_entry - Update a single entry in the interrupt 921 * moderation table. 922 * @ena_dev: ENA communication layer struct 923 * @level: Interrupt moderation table level 924 * @entry: Entry value 925 * 926 * Update a single entry in the interrupt moderation table. 927 */ 928 void ena_com_init_intr_moderation_entry(struct ena_com_dev *ena_dev, 929 enum ena_intr_moder_level level, 930 struct ena_intr_moder_entry *entry); 931 932 /* ena_com_get_intr_moderation_entry - Init ena_intr_moder_entry. 933 * @ena_dev: ENA communication layer struct 934 * @level: Interrupt moderation table level 935 * @entry: Entry to fill. 936 * 937 * Initialize the entry according to the adaptive interrupt moderation table. 938 */ 939 void ena_com_get_intr_moderation_entry(struct ena_com_dev *ena_dev, 940 enum ena_intr_moder_level level, 941 struct ena_intr_moder_entry *entry); 942 943 static inline bool 944 ena_com_get_adaptive_moderation_enabled(struct ena_com_dev *ena_dev) 945 { 946 return ena_dev->adaptive_coalescing; 947 } 948 949 static inline void 950 ena_com_enable_adaptive_moderation(struct ena_com_dev *ena_dev) 951 { 952 ena_dev->adaptive_coalescing = true; 953 } 954 955 static inline void 956 ena_com_disable_adaptive_moderation(struct ena_com_dev *ena_dev) 957 { 958 ena_dev->adaptive_coalescing = false; 959 } 960 961 /* ena_com_calculate_interrupt_delay - Calculate new interrupt delay 962 * @ena_dev: ENA communication layer struct 963 * @pkts: Number of packets since the last update 964 * @bytes: Number of bytes received since the last update. 965 * @smoothed_interval: Returned interval 966 * @moder_tbl_idx: Current table level as input update new level as return 967 * value. 968 */ 969 static inline void 970 ena_com_calculate_interrupt_delay(struct ena_com_dev *ena_dev, 971 unsigned int pkts, 972 unsigned int bytes, 973 unsigned int *smoothed_interval, 974 unsigned int *moder_tbl_idx) 975 { 976 enum ena_intr_moder_level curr_moder_idx, new_moder_idx; 977 struct ena_intr_moder_entry *curr_moder_entry; 978 struct ena_intr_moder_entry *pred_moder_entry; 979 struct ena_intr_moder_entry *new_moder_entry; 980 struct ena_intr_moder_entry *intr_moder_tbl = ena_dev->intr_moder_tbl; 981 unsigned int interval; 982 983 /* We apply adaptive moderation on Rx path only. 984 * Tx uses static interrupt moderation. 985 */ 986 if (!pkts || !bytes) 987 /* Tx interrupt, or spurious interrupt, 988 * in both cases we just use same delay values 989 */ 990 return; 991 992 curr_moder_idx = (enum ena_intr_moder_level)(*moder_tbl_idx); 993 if (unlikely(curr_moder_idx >= ENA_INTR_MAX_NUM_OF_LEVELS)) { 994 ena_trc_err("Wrong moderation index %u\n", curr_moder_idx); 995 return; 996 } 997 998 curr_moder_entry = &intr_moder_tbl[curr_moder_idx]; 999 new_moder_idx = curr_moder_idx; 1000 1001 if (curr_moder_idx == ENA_INTR_MODER_LOWEST) { 1002 if ((pkts > curr_moder_entry->pkts_per_interval) || 1003 (bytes > curr_moder_entry->bytes_per_interval)) 1004 new_moder_idx = (enum ena_intr_moder_level)(curr_moder_idx + 1); 1005 } else { 1006 pred_moder_entry = &intr_moder_tbl[curr_moder_idx - 1]; 1007 1008 if ((pkts <= pred_moder_entry->pkts_per_interval) || 1009 (bytes <= pred_moder_entry->bytes_per_interval)) 1010 new_moder_idx = (enum ena_intr_moder_level)(curr_moder_idx - 1); 1011 else if ((pkts > curr_moder_entry->pkts_per_interval) || 1012 (bytes > curr_moder_entry->bytes_per_interval)) { 1013 if (curr_moder_idx != ENA_INTR_MODER_HIGHEST) 1014 new_moder_idx = (enum ena_intr_moder_level)(curr_moder_idx + 1); 1015 } 1016 } 1017 new_moder_entry = &intr_moder_tbl[new_moder_idx]; 1018 1019 interval = new_moder_entry->intr_moder_interval; 1020 *smoothed_interval = ( 1021 (interval * ENA_INTR_DELAY_NEW_VALUE_WEIGHT + 1022 ENA_INTR_DELAY_OLD_VALUE_WEIGHT * (*smoothed_interval)) + 5) / 1023 10; 1024 1025 *moder_tbl_idx = new_moder_idx; 1026 } 1027 1028 /* ena_com_update_intr_reg - Prepare interrupt register 1029 * @intr_reg: interrupt register to update. 1030 * @rx_delay_interval: Rx interval in usecs 1031 * @tx_delay_interval: Tx interval in usecs 1032 * @unmask: unask enable/disable 1033 * 1034 * Prepare interrupt update register with the supplied parameters. 1035 */ 1036 static inline void ena_com_update_intr_reg(struct ena_eth_io_intr_reg *intr_reg, 1037 u32 rx_delay_interval, 1038 u32 tx_delay_interval, 1039 bool unmask) 1040 { 1041 intr_reg->intr_control = 0; 1042 intr_reg->intr_control |= rx_delay_interval & 1043 ENA_ETH_IO_INTR_REG_RX_INTR_DELAY_MASK; 1044 1045 intr_reg->intr_control |= 1046 (tx_delay_interval << ENA_ETH_IO_INTR_REG_TX_INTR_DELAY_SHIFT) 1047 & ENA_ETH_IO_INTR_REG_RX_INTR_DELAY_MASK; 1048 1049 if (unmask) 1050 intr_reg->intr_control |= ENA_ETH_IO_INTR_REG_INTR_UNMASK_MASK; 1051 } 1052 1053 int ena_com_get_dev_extended_stats(struct ena_com_dev *ena_dev, char *buff, 1054 u32 len); 1055 1056 int ena_com_extended_stats_set_func_queue(struct ena_com_dev *ena_dev, 1057 u32 funct_queue); 1058 1059 #if defined(__cplusplus) 1060 } 1061 #endif /* __cplusplus */ 1062 #endif /* !(ENA_COM) */ 1063