1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright (c) 2021 NVIDIA Corporation & Affiliates 3 */ 4 5 #include <rte_eal.h> 6 #include <rte_tailq.h> 7 #include <rte_rwlock.h> 8 #include <rte_string_fns.h> 9 #include <rte_memzone.h> 10 #include <rte_malloc.h> 11 #include <rte_errno.h> 12 #include <rte_log.h> 13 14 #include "rte_gpudev.h" 15 #include "gpudev_driver.h" 16 17 /* Logging */ 18 RTE_LOG_REGISTER_DEFAULT(gpu_logtype, NOTICE); 19 #define GPU_LOG(level, ...) \ 20 rte_log(RTE_LOG_ ## level, gpu_logtype, RTE_FMT("gpu: " \ 21 RTE_FMT_HEAD(__VA_ARGS__, ) "\n", RTE_FMT_TAIL(__VA_ARGS__, ))) 22 23 /* Set any driver error as EPERM */ 24 #define GPU_DRV_RET(function) \ 25 ((function != 0) ? -(rte_errno = EPERM) : (rte_errno = 0)) 26 27 /* Array of devices */ 28 static struct rte_gpu *gpus; 29 /* Number of currently valid devices */ 30 static int16_t gpu_max; 31 /* Number of currently valid devices */ 32 static int16_t gpu_count; 33 34 /* Shared memory between processes. */ 35 static const char *GPU_MEMZONE = "rte_gpu_shared"; 36 static struct { 37 __extension__ struct rte_gpu_mpshared gpus[0]; 38 } *gpu_shared_mem; 39 40 /* Event callback object */ 41 struct rte_gpu_callback { 42 TAILQ_ENTRY(rte_gpu_callback) next; 43 rte_gpu_callback_t *function; 44 void *user_data; 45 enum rte_gpu_event event; 46 }; 47 static rte_rwlock_t gpu_callback_lock = RTE_RWLOCK_INITIALIZER; 48 static void gpu_free_callbacks(struct rte_gpu *dev); 49 50 int 51 rte_gpu_init(size_t dev_max) 52 { 53 if (dev_max == 0 || dev_max > INT16_MAX) { 54 GPU_LOG(ERR, "invalid array size"); 55 rte_errno = EINVAL; 56 return -rte_errno; 57 } 58 59 /* No lock, it must be called before or during first probing. */ 60 if (gpus != NULL) { 61 GPU_LOG(ERR, "already initialized"); 62 rte_errno = EBUSY; 63 return -rte_errno; 64 } 65 66 gpus = calloc(dev_max, sizeof(struct rte_gpu)); 67 if (gpus == NULL) { 68 GPU_LOG(ERR, "cannot initialize library"); 69 rte_errno = ENOMEM; 70 return -rte_errno; 71 } 72 73 gpu_max = dev_max; 74 return 0; 75 } 76 77 uint16_t 78 rte_gpu_count_avail(void) 79 { 80 return gpu_count; 81 } 82 83 bool 84 rte_gpu_is_valid(int16_t dev_id) 85 { 86 if (dev_id >= 0 && dev_id < gpu_max && 87 gpus[dev_id].process_state == RTE_GPU_STATE_INITIALIZED) 88 return true; 89 return false; 90 } 91 92 static bool 93 gpu_match_parent(int16_t dev_id, int16_t parent) 94 { 95 if (parent == RTE_GPU_ID_ANY) 96 return true; 97 return gpus[dev_id].mpshared->info.parent == parent; 98 } 99 100 int16_t 101 rte_gpu_find_next(int16_t dev_id, int16_t parent) 102 { 103 if (dev_id < 0) 104 dev_id = 0; 105 while (dev_id < gpu_max && 106 (gpus[dev_id].process_state == RTE_GPU_STATE_UNUSED || 107 !gpu_match_parent(dev_id, parent))) 108 dev_id++; 109 110 if (dev_id >= gpu_max) 111 return RTE_GPU_ID_NONE; 112 return dev_id; 113 } 114 115 static int16_t 116 gpu_find_free_id(void) 117 { 118 int16_t dev_id; 119 120 for (dev_id = 0; dev_id < gpu_max; dev_id++) { 121 if (gpus[dev_id].process_state == RTE_GPU_STATE_UNUSED) 122 return dev_id; 123 } 124 return RTE_GPU_ID_NONE; 125 } 126 127 static struct rte_gpu * 128 gpu_get_by_id(int16_t dev_id) 129 { 130 if (!rte_gpu_is_valid(dev_id)) 131 return NULL; 132 return &gpus[dev_id]; 133 } 134 135 struct rte_gpu * 136 rte_gpu_get_by_name(const char *name) 137 { 138 int16_t dev_id; 139 struct rte_gpu *dev; 140 141 if (name == NULL) { 142 rte_errno = EINVAL; 143 return NULL; 144 } 145 146 RTE_GPU_FOREACH(dev_id) { 147 dev = &gpus[dev_id]; 148 if (strncmp(name, dev->mpshared->name, RTE_DEV_NAME_MAX_LEN) == 0) 149 return dev; 150 } 151 return NULL; 152 } 153 154 static int 155 gpu_shared_mem_init(void) 156 { 157 const struct rte_memzone *memzone; 158 159 if (rte_eal_process_type() == RTE_PROC_PRIMARY) { 160 memzone = rte_memzone_reserve(GPU_MEMZONE, 161 sizeof(*gpu_shared_mem) + 162 sizeof(*gpu_shared_mem->gpus) * gpu_max, 163 SOCKET_ID_ANY, 0); 164 } else { 165 memzone = rte_memzone_lookup(GPU_MEMZONE); 166 } 167 if (memzone == NULL) { 168 GPU_LOG(ERR, "cannot initialize shared memory"); 169 rte_errno = ENOMEM; 170 return -rte_errno; 171 } 172 173 gpu_shared_mem = memzone->addr; 174 return 0; 175 } 176 177 struct rte_gpu * 178 rte_gpu_allocate(const char *name) 179 { 180 int16_t dev_id; 181 struct rte_gpu *dev; 182 183 if (rte_eal_process_type() != RTE_PROC_PRIMARY) { 184 GPU_LOG(ERR, "only primary process can allocate device"); 185 rte_errno = EPERM; 186 return NULL; 187 } 188 if (name == NULL) { 189 GPU_LOG(ERR, "allocate device without a name"); 190 rte_errno = EINVAL; 191 return NULL; 192 } 193 194 /* implicit initialization of library before adding first device */ 195 if (gpus == NULL && rte_gpu_init(RTE_GPU_DEFAULT_MAX) < 0) 196 return NULL; 197 198 /* initialize shared memory before adding first device */ 199 if (gpu_shared_mem == NULL && gpu_shared_mem_init() < 0) 200 return NULL; 201 202 if (rte_gpu_get_by_name(name) != NULL) { 203 GPU_LOG(ERR, "device with name %s already exists", name); 204 rte_errno = EEXIST; 205 return NULL; 206 } 207 dev_id = gpu_find_free_id(); 208 if (dev_id == RTE_GPU_ID_NONE) { 209 GPU_LOG(ERR, "reached maximum number of devices"); 210 rte_errno = ENOENT; 211 return NULL; 212 } 213 214 dev = &gpus[dev_id]; 215 memset(dev, 0, sizeof(*dev)); 216 217 dev->mpshared = &gpu_shared_mem->gpus[dev_id]; 218 memset(dev->mpshared, 0, sizeof(*dev->mpshared)); 219 220 if (rte_strscpy(dev->mpshared->name, name, RTE_DEV_NAME_MAX_LEN) < 0) { 221 GPU_LOG(ERR, "device name too long: %s", name); 222 rte_errno = ENAMETOOLONG; 223 return NULL; 224 } 225 dev->mpshared->info.name = dev->mpshared->name; 226 dev->mpshared->info.dev_id = dev_id; 227 dev->mpshared->info.numa_node = -1; 228 dev->mpshared->info.parent = RTE_GPU_ID_NONE; 229 TAILQ_INIT(&dev->callbacks); 230 __atomic_fetch_add(&dev->mpshared->process_refcnt, 1, __ATOMIC_RELAXED); 231 232 gpu_count++; 233 GPU_LOG(DEBUG, "new device %s (id %d) of total %d", 234 name, dev_id, gpu_count); 235 return dev; 236 } 237 238 struct rte_gpu * 239 rte_gpu_attach(const char *name) 240 { 241 int16_t dev_id; 242 struct rte_gpu *dev; 243 struct rte_gpu_mpshared *shared_dev; 244 245 if (rte_eal_process_type() != RTE_PROC_SECONDARY) { 246 GPU_LOG(ERR, "only secondary process can attach device"); 247 rte_errno = EPERM; 248 return NULL; 249 } 250 if (name == NULL) { 251 GPU_LOG(ERR, "attach device without a name"); 252 rte_errno = EINVAL; 253 return NULL; 254 } 255 256 /* implicit initialization of library before adding first device */ 257 if (gpus == NULL && rte_gpu_init(RTE_GPU_DEFAULT_MAX) < 0) 258 return NULL; 259 260 /* initialize shared memory before adding first device */ 261 if (gpu_shared_mem == NULL && gpu_shared_mem_init() < 0) 262 return NULL; 263 264 for (dev_id = 0; dev_id < gpu_max; dev_id++) { 265 shared_dev = &gpu_shared_mem->gpus[dev_id]; 266 if (strncmp(name, shared_dev->name, RTE_DEV_NAME_MAX_LEN) == 0) 267 break; 268 } 269 if (dev_id >= gpu_max) { 270 GPU_LOG(ERR, "device with name %s not found", name); 271 rte_errno = ENOENT; 272 return NULL; 273 } 274 dev = &gpus[dev_id]; 275 memset(dev, 0, sizeof(*dev)); 276 277 TAILQ_INIT(&dev->callbacks); 278 dev->mpshared = shared_dev; 279 __atomic_fetch_add(&dev->mpshared->process_refcnt, 1, __ATOMIC_RELAXED); 280 281 gpu_count++; 282 GPU_LOG(DEBUG, "attached device %s (id %d) of total %d", 283 name, dev_id, gpu_count); 284 return dev; 285 } 286 287 int16_t 288 rte_gpu_add_child(const char *name, int16_t parent, uint64_t child_context) 289 { 290 struct rte_gpu *dev; 291 292 if (!rte_gpu_is_valid(parent)) { 293 GPU_LOG(ERR, "add child to invalid parent ID %d", parent); 294 rte_errno = ENODEV; 295 return -rte_errno; 296 } 297 298 dev = rte_gpu_allocate(name); 299 if (dev == NULL) 300 return -rte_errno; 301 302 dev->mpshared->info.parent = parent; 303 dev->mpshared->info.context = child_context; 304 305 rte_gpu_complete_new(dev); 306 return dev->mpshared->info.dev_id; 307 } 308 309 void 310 rte_gpu_complete_new(struct rte_gpu *dev) 311 { 312 if (dev == NULL) 313 return; 314 315 dev->process_state = RTE_GPU_STATE_INITIALIZED; 316 rte_gpu_notify(dev, RTE_GPU_EVENT_NEW); 317 } 318 319 int 320 rte_gpu_release(struct rte_gpu *dev) 321 { 322 int16_t dev_id, child; 323 324 if (dev == NULL) { 325 rte_errno = ENODEV; 326 return -rte_errno; 327 } 328 dev_id = dev->mpshared->info.dev_id; 329 RTE_GPU_FOREACH_CHILD(child, dev_id) { 330 GPU_LOG(ERR, "cannot release device %d with child %d", 331 dev_id, child); 332 rte_errno = EBUSY; 333 return -rte_errno; 334 } 335 336 GPU_LOG(DEBUG, "free device %s (id %d)", 337 dev->mpshared->info.name, dev->mpshared->info.dev_id); 338 rte_gpu_notify(dev, RTE_GPU_EVENT_DEL); 339 340 gpu_free_callbacks(dev); 341 dev->process_state = RTE_GPU_STATE_UNUSED; 342 __atomic_fetch_sub(&dev->mpshared->process_refcnt, 1, __ATOMIC_RELAXED); 343 gpu_count--; 344 345 return 0; 346 } 347 348 int 349 rte_gpu_close(int16_t dev_id) 350 { 351 int firsterr, binerr; 352 int *lasterr = &firsterr; 353 struct rte_gpu *dev; 354 355 dev = gpu_get_by_id(dev_id); 356 if (dev == NULL) { 357 GPU_LOG(ERR, "close invalid device ID %d", dev_id); 358 rte_errno = ENODEV; 359 return -rte_errno; 360 } 361 362 if (dev->ops.dev_close != NULL) { 363 *lasterr = GPU_DRV_RET(dev->ops.dev_close(dev)); 364 if (*lasterr != 0) 365 lasterr = &binerr; 366 } 367 368 *lasterr = rte_gpu_release(dev); 369 370 rte_errno = -firsterr; 371 return firsterr; 372 } 373 374 int 375 rte_gpu_callback_register(int16_t dev_id, enum rte_gpu_event event, 376 rte_gpu_callback_t *function, void *user_data) 377 { 378 int16_t next_dev, last_dev; 379 struct rte_gpu_callback_list *callbacks; 380 struct rte_gpu_callback *callback; 381 382 if (!rte_gpu_is_valid(dev_id) && dev_id != RTE_GPU_ID_ANY) { 383 GPU_LOG(ERR, "register callback of invalid ID %d", dev_id); 384 rte_errno = ENODEV; 385 return -rte_errno; 386 } 387 if (function == NULL) { 388 GPU_LOG(ERR, "cannot register callback without function"); 389 rte_errno = EINVAL; 390 return -rte_errno; 391 } 392 393 if (dev_id == RTE_GPU_ID_ANY) { 394 next_dev = 0; 395 last_dev = gpu_max - 1; 396 } else { 397 next_dev = last_dev = dev_id; 398 } 399 400 rte_rwlock_write_lock(&gpu_callback_lock); 401 do { 402 callbacks = &gpus[next_dev].callbacks; 403 404 /* check if not already registered */ 405 TAILQ_FOREACH(callback, callbacks, next) { 406 if (callback->event == event && 407 callback->function == function && 408 callback->user_data == user_data) { 409 GPU_LOG(INFO, "callback already registered"); 410 return 0; 411 } 412 } 413 414 callback = malloc(sizeof(*callback)); 415 if (callback == NULL) { 416 GPU_LOG(ERR, "cannot allocate callback"); 417 return -ENOMEM; 418 } 419 callback->function = function; 420 callback->user_data = user_data; 421 callback->event = event; 422 TAILQ_INSERT_TAIL(callbacks, callback, next); 423 424 } while (++next_dev <= last_dev); 425 rte_rwlock_write_unlock(&gpu_callback_lock); 426 427 return 0; 428 } 429 430 int 431 rte_gpu_callback_unregister(int16_t dev_id, enum rte_gpu_event event, 432 rte_gpu_callback_t *function, void *user_data) 433 { 434 int16_t next_dev, last_dev; 435 struct rte_gpu_callback_list *callbacks; 436 struct rte_gpu_callback *callback, *nextcb; 437 438 if (!rte_gpu_is_valid(dev_id) && dev_id != RTE_GPU_ID_ANY) { 439 GPU_LOG(ERR, "unregister callback of invalid ID %d", dev_id); 440 rte_errno = ENODEV; 441 return -rte_errno; 442 } 443 if (function == NULL) { 444 GPU_LOG(ERR, "cannot unregister callback without function"); 445 rte_errno = EINVAL; 446 return -rte_errno; 447 } 448 449 if (dev_id == RTE_GPU_ID_ANY) { 450 next_dev = 0; 451 last_dev = gpu_max - 1; 452 } else { 453 next_dev = last_dev = dev_id; 454 } 455 456 rte_rwlock_write_lock(&gpu_callback_lock); 457 do { 458 callbacks = &gpus[next_dev].callbacks; 459 RTE_TAILQ_FOREACH_SAFE(callback, callbacks, next, nextcb) { 460 if (callback->event != event || 461 callback->function != function || 462 (callback->user_data != user_data && 463 user_data != (void *)-1)) 464 continue; 465 TAILQ_REMOVE(callbacks, callback, next); 466 free(callback); 467 } 468 } while (++next_dev <= last_dev); 469 rte_rwlock_write_unlock(&gpu_callback_lock); 470 471 return 0; 472 } 473 474 static void 475 gpu_free_callbacks(struct rte_gpu *dev) 476 { 477 struct rte_gpu_callback_list *callbacks; 478 struct rte_gpu_callback *callback, *nextcb; 479 480 callbacks = &dev->callbacks; 481 rte_rwlock_write_lock(&gpu_callback_lock); 482 RTE_TAILQ_FOREACH_SAFE(callback, callbacks, next, nextcb) { 483 TAILQ_REMOVE(callbacks, callback, next); 484 free(callback); 485 } 486 rte_rwlock_write_unlock(&gpu_callback_lock); 487 } 488 489 void 490 rte_gpu_notify(struct rte_gpu *dev, enum rte_gpu_event event) 491 { 492 int16_t dev_id; 493 struct rte_gpu_callback *callback; 494 495 dev_id = dev->mpshared->info.dev_id; 496 rte_rwlock_read_lock(&gpu_callback_lock); 497 TAILQ_FOREACH(callback, &dev->callbacks, next) { 498 if (callback->event != event || callback->function == NULL) 499 continue; 500 callback->function(dev_id, event, callback->user_data); 501 } 502 rte_rwlock_read_unlock(&gpu_callback_lock); 503 } 504 505 int 506 rte_gpu_info_get(int16_t dev_id, struct rte_gpu_info *info) 507 { 508 struct rte_gpu *dev; 509 510 dev = gpu_get_by_id(dev_id); 511 if (dev == NULL) { 512 GPU_LOG(ERR, "query invalid device ID %d", dev_id); 513 rte_errno = ENODEV; 514 return -rte_errno; 515 } 516 if (info == NULL) { 517 GPU_LOG(ERR, "query without storage"); 518 rte_errno = EINVAL; 519 return -rte_errno; 520 } 521 522 if (dev->ops.dev_info_get == NULL) { 523 *info = dev->mpshared->info; 524 return 0; 525 } 526 return GPU_DRV_RET(dev->ops.dev_info_get(dev, info)); 527 } 528 529 void * 530 rte_gpu_mem_alloc(int16_t dev_id, size_t size) 531 { 532 struct rte_gpu *dev; 533 void *ptr; 534 int ret; 535 536 dev = gpu_get_by_id(dev_id); 537 if (dev == NULL) { 538 GPU_LOG(ERR, "alloc mem for invalid device ID %d", dev_id); 539 rte_errno = ENODEV; 540 return NULL; 541 } 542 543 if (dev->ops.mem_alloc == NULL) { 544 GPU_LOG(ERR, "mem allocation not supported"); 545 rte_errno = ENOTSUP; 546 return NULL; 547 } 548 549 if (size == 0) /* dry-run */ 550 return NULL; 551 552 ret = dev->ops.mem_alloc(dev, size, &ptr); 553 554 switch (ret) { 555 case 0: 556 return ptr; 557 case -ENOMEM: 558 case -E2BIG: 559 rte_errno = -ret; 560 return NULL; 561 default: 562 rte_errno = -EPERM; 563 return NULL; 564 } 565 } 566 567 int 568 rte_gpu_mem_free(int16_t dev_id, void *ptr) 569 { 570 struct rte_gpu *dev; 571 572 dev = gpu_get_by_id(dev_id); 573 if (dev == NULL) { 574 GPU_LOG(ERR, "free mem for invalid device ID %d", dev_id); 575 rte_errno = ENODEV; 576 return -rte_errno; 577 } 578 579 if (dev->ops.mem_free == NULL) { 580 rte_errno = ENOTSUP; 581 return -rte_errno; 582 } 583 584 if (ptr == NULL) /* dry-run */ 585 return 0; 586 587 return GPU_DRV_RET(dev->ops.mem_free(dev, ptr)); 588 } 589 590 int 591 rte_gpu_mem_register(int16_t dev_id, size_t size, void *ptr) 592 { 593 struct rte_gpu *dev; 594 595 dev = gpu_get_by_id(dev_id); 596 if (dev == NULL) { 597 GPU_LOG(ERR, "alloc mem for invalid device ID %d", dev_id); 598 rte_errno = ENODEV; 599 return -rte_errno; 600 } 601 602 if (dev->ops.mem_register == NULL) { 603 GPU_LOG(ERR, "mem registration not supported"); 604 rte_errno = ENOTSUP; 605 return -rte_errno; 606 } 607 608 if (ptr == NULL || size == 0) /* dry-run */ 609 return 0; 610 611 return GPU_DRV_RET(dev->ops.mem_register(dev, size, ptr)); 612 } 613 614 int 615 rte_gpu_mem_unregister(int16_t dev_id, void *ptr) 616 { 617 struct rte_gpu *dev; 618 619 dev = gpu_get_by_id(dev_id); 620 if (dev == NULL) { 621 GPU_LOG(ERR, "unregister mem for invalid device ID %d", dev_id); 622 rte_errno = ENODEV; 623 return -rte_errno; 624 } 625 626 if (dev->ops.mem_unregister == NULL) { 627 rte_errno = ENOTSUP; 628 return -rte_errno; 629 } 630 631 if (ptr == NULL) /* dry-run */ 632 return 0; 633 634 return GPU_DRV_RET(dev->ops.mem_unregister(dev, ptr)); 635 } 636 637 int 638 rte_gpu_wmb(int16_t dev_id) 639 { 640 struct rte_gpu *dev; 641 642 dev = gpu_get_by_id(dev_id); 643 if (dev == NULL) { 644 GPU_LOG(ERR, "memory barrier for invalid device ID %d", dev_id); 645 rte_errno = ENODEV; 646 return -rte_errno; 647 } 648 649 if (dev->ops.wmb == NULL) { 650 rte_errno = ENOTSUP; 651 return -rte_errno; 652 } 653 return GPU_DRV_RET(dev->ops.wmb(dev)); 654 } 655 656 int 657 rte_gpu_comm_create_flag(uint16_t dev_id, struct rte_gpu_comm_flag *devflag, 658 enum rte_gpu_comm_flag_type mtype) 659 { 660 size_t flag_size; 661 int ret; 662 663 if (devflag == NULL) { 664 rte_errno = EINVAL; 665 return -rte_errno; 666 } 667 if (mtype != RTE_GPU_COMM_FLAG_CPU) { 668 rte_errno = EINVAL; 669 return -rte_errno; 670 } 671 672 flag_size = sizeof(uint32_t); 673 674 devflag->ptr = rte_zmalloc(NULL, flag_size, 0); 675 if (devflag->ptr == NULL) { 676 rte_errno = ENOMEM; 677 return -rte_errno; 678 } 679 680 ret = rte_gpu_mem_register(dev_id, flag_size, devflag->ptr); 681 if (ret < 0) { 682 rte_errno = ENOMEM; 683 return -rte_errno; 684 } 685 686 devflag->mtype = mtype; 687 devflag->dev_id = dev_id; 688 689 return 0; 690 } 691 692 int 693 rte_gpu_comm_destroy_flag(struct rte_gpu_comm_flag *devflag) 694 { 695 int ret; 696 697 if (devflag == NULL) { 698 rte_errno = EINVAL; 699 return -rte_errno; 700 } 701 702 ret = rte_gpu_mem_unregister(devflag->dev_id, devflag->ptr); 703 if (ret < 0) { 704 rte_errno = EINVAL; 705 return -1; 706 } 707 708 rte_free(devflag->ptr); 709 710 return 0; 711 } 712 713 int 714 rte_gpu_comm_set_flag(struct rte_gpu_comm_flag *devflag, uint32_t val) 715 { 716 if (devflag == NULL) { 717 rte_errno = EINVAL; 718 return -rte_errno; 719 } 720 721 if (devflag->mtype != RTE_GPU_COMM_FLAG_CPU) { 722 rte_errno = EINVAL; 723 return -rte_errno; 724 } 725 726 RTE_GPU_VOLATILE(*devflag->ptr) = val; 727 728 return 0; 729 } 730 731 int 732 rte_gpu_comm_get_flag_value(struct rte_gpu_comm_flag *devflag, uint32_t *val) 733 { 734 if (devflag == NULL) { 735 rte_errno = EINVAL; 736 return -rte_errno; 737 } 738 if (devflag->mtype != RTE_GPU_COMM_FLAG_CPU) { 739 rte_errno = EINVAL; 740 return -rte_errno; 741 } 742 743 *val = RTE_GPU_VOLATILE(*devflag->ptr); 744 745 return 0; 746 } 747 748 struct rte_gpu_comm_list * 749 rte_gpu_comm_create_list(uint16_t dev_id, 750 uint32_t num_comm_items) 751 { 752 struct rte_gpu_comm_list *comm_list; 753 uint32_t idx_l; 754 int ret; 755 struct rte_gpu *dev; 756 757 if (num_comm_items == 0) { 758 rte_errno = EINVAL; 759 return NULL; 760 } 761 762 dev = gpu_get_by_id(dev_id); 763 if (dev == NULL) { 764 GPU_LOG(ERR, "memory barrier for invalid device ID %d", dev_id); 765 rte_errno = ENODEV; 766 return NULL; 767 } 768 769 comm_list = rte_zmalloc(NULL, 770 sizeof(struct rte_gpu_comm_list) * num_comm_items, 0); 771 if (comm_list == NULL) { 772 rte_errno = ENOMEM; 773 return NULL; 774 } 775 776 ret = rte_gpu_mem_register(dev_id, 777 sizeof(struct rte_gpu_comm_list) * num_comm_items, comm_list); 778 if (ret < 0) { 779 rte_errno = ENOMEM; 780 return NULL; 781 } 782 783 for (idx_l = 0; idx_l < num_comm_items; idx_l++) { 784 comm_list[idx_l].pkt_list = rte_zmalloc(NULL, 785 sizeof(struct rte_gpu_comm_pkt) * RTE_GPU_COMM_LIST_PKTS_MAX, 0); 786 if (comm_list[idx_l].pkt_list == NULL) { 787 rte_errno = ENOMEM; 788 return NULL; 789 } 790 791 ret = rte_gpu_mem_register(dev_id, 792 sizeof(struct rte_gpu_comm_pkt) * RTE_GPU_COMM_LIST_PKTS_MAX, 793 comm_list[idx_l].pkt_list); 794 if (ret < 0) { 795 rte_errno = ENOMEM; 796 return NULL; 797 } 798 799 RTE_GPU_VOLATILE(comm_list[idx_l].status) = RTE_GPU_COMM_LIST_FREE; 800 comm_list[idx_l].num_pkts = 0; 801 comm_list[idx_l].dev_id = dev_id; 802 803 comm_list[idx_l].mbufs = rte_zmalloc(NULL, 804 sizeof(struct rte_mbuf *) * RTE_GPU_COMM_LIST_PKTS_MAX, 0); 805 if (comm_list[idx_l].mbufs == NULL) { 806 rte_errno = ENOMEM; 807 return NULL; 808 } 809 } 810 811 return comm_list; 812 } 813 814 int 815 rte_gpu_comm_destroy_list(struct rte_gpu_comm_list *comm_list, 816 uint32_t num_comm_items) 817 { 818 uint32_t idx_l; 819 int ret; 820 uint16_t dev_id; 821 822 if (comm_list == NULL) { 823 rte_errno = EINVAL; 824 return -rte_errno; 825 } 826 827 dev_id = comm_list[0].dev_id; 828 829 for (idx_l = 0; idx_l < num_comm_items; idx_l++) { 830 ret = rte_gpu_mem_unregister(dev_id, comm_list[idx_l].pkt_list); 831 if (ret < 0) { 832 rte_errno = EINVAL; 833 return -1; 834 } 835 836 rte_free(comm_list[idx_l].pkt_list); 837 rte_free(comm_list[idx_l].mbufs); 838 } 839 840 ret = rte_gpu_mem_unregister(dev_id, comm_list); 841 if (ret < 0) { 842 rte_errno = EINVAL; 843 return -1; 844 } 845 846 rte_free(comm_list); 847 848 return 0; 849 } 850 851 int 852 rte_gpu_comm_populate_list_pkts(struct rte_gpu_comm_list *comm_list_item, 853 struct rte_mbuf **mbufs, uint32_t num_mbufs) 854 { 855 uint32_t idx; 856 857 if (comm_list_item == NULL || comm_list_item->pkt_list == NULL || 858 mbufs == NULL || num_mbufs > RTE_GPU_COMM_LIST_PKTS_MAX) { 859 rte_errno = EINVAL; 860 return -rte_errno; 861 } 862 863 for (idx = 0; idx < num_mbufs; idx++) { 864 /* support only unchained mbufs */ 865 if (unlikely((mbufs[idx]->nb_segs > 1) || 866 (mbufs[idx]->next != NULL) || 867 (mbufs[idx]->data_len != mbufs[idx]->pkt_len))) { 868 rte_errno = ENOTSUP; 869 return -rte_errno; 870 } 871 comm_list_item->pkt_list[idx].addr = 872 rte_pktmbuf_mtod_offset(mbufs[idx], uintptr_t, 0); 873 comm_list_item->pkt_list[idx].size = mbufs[idx]->pkt_len; 874 comm_list_item->mbufs[idx] = mbufs[idx]; 875 } 876 877 RTE_GPU_VOLATILE(comm_list_item->num_pkts) = num_mbufs; 878 rte_gpu_wmb(comm_list_item->dev_id); 879 RTE_GPU_VOLATILE(comm_list_item->status) = RTE_GPU_COMM_LIST_READY; 880 rte_gpu_wmb(comm_list_item->dev_id); 881 882 return 0; 883 } 884 885 int 886 rte_gpu_comm_cleanup_list(struct rte_gpu_comm_list *comm_list_item) 887 { 888 uint32_t idx = 0; 889 890 if (comm_list_item == NULL) { 891 rte_errno = EINVAL; 892 return -rte_errno; 893 } 894 895 if (RTE_GPU_VOLATILE(comm_list_item->status) == 896 RTE_GPU_COMM_LIST_READY) { 897 GPU_LOG(ERR, "packet list is still in progress"); 898 rte_errno = EINVAL; 899 return -rte_errno; 900 } 901 902 for (idx = 0; idx < RTE_GPU_COMM_LIST_PKTS_MAX; idx++) { 903 if (comm_list_item->pkt_list[idx].addr == 0) 904 break; 905 906 comm_list_item->pkt_list[idx].addr = 0; 907 comm_list_item->pkt_list[idx].size = 0; 908 comm_list_item->mbufs[idx] = NULL; 909 } 910 911 RTE_GPU_VOLATILE(comm_list_item->status) = RTE_GPU_COMM_LIST_FREE; 912 RTE_GPU_VOLATILE(comm_list_item->num_pkts) = 0; 913 rte_mb(); 914 915 return 0; 916 } 917