1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright (c) Intel Corporation. 3 * All rights reserved. 4 */ 5 6 #include "spdk/likely.h" 7 #include "spdk/stdinc.h" 8 #include "spdk/nvme.h" 9 #include "spdk/thread.h" 10 #include "spdk/bdev_module.h" 11 #include "spdk/string.h" 12 #include "spdk/ftl.h" 13 #include "spdk/crc32.h" 14 15 #include "ftl_core.h" 16 #include "ftl_band.h" 17 #include "ftl_io.h" 18 #include "ftl_debug.h" 19 #include "ftl_internal.h" 20 #include "mngt/ftl_mngt.h" 21 22 23 size_t 24 spdk_ftl_io_size(void) 25 { 26 return sizeof(struct ftl_io); 27 } 28 29 static void 30 ftl_io_cmpl_cb(struct spdk_bdev_io *bdev_io, bool success, void *cb_arg) 31 { 32 struct ftl_io *io = cb_arg; 33 struct spdk_ftl_dev *dev = io->dev; 34 35 ftl_stats_bdev_io_completed(dev, FTL_STATS_TYPE_USER, bdev_io); 36 37 if (spdk_unlikely(!success)) { 38 io->status = -EIO; 39 } 40 41 ftl_trace_completion(dev, io, FTL_TRACE_COMPLETION_DISK); 42 43 ftl_io_dec_req(io); 44 if (ftl_io_done(io)) { 45 ftl_io_complete(io); 46 } 47 48 spdk_bdev_free_io(bdev_io); 49 } 50 51 static void 52 ftl_band_erase(struct ftl_band *band) 53 { 54 assert(band->md->state == FTL_BAND_STATE_CLOSED || 55 band->md->state == FTL_BAND_STATE_FREE); 56 57 ftl_band_set_state(band, FTL_BAND_STATE_PREP); 58 } 59 60 static size_t 61 ftl_get_limit(const struct spdk_ftl_dev *dev, int type) 62 { 63 assert(type < SPDK_FTL_LIMIT_MAX); 64 return dev->conf.limits[type]; 65 } 66 67 static bool 68 ftl_shutdown_complete(struct spdk_ftl_dev *dev) 69 { 70 uint64_t i; 71 72 if (dev->num_inflight) { 73 return false; 74 } 75 76 if (!ftl_nv_cache_is_halted(&dev->nv_cache)) { 77 ftl_nv_cache_halt(&dev->nv_cache); 78 return false; 79 } 80 81 if (!ftl_writer_is_halted(&dev->writer_user)) { 82 ftl_writer_halt(&dev->writer_user); 83 return false; 84 } 85 86 if (!ftl_reloc_is_halted(dev->reloc)) { 87 ftl_reloc_halt(dev->reloc); 88 return false; 89 } 90 91 if (!ftl_writer_is_halted(&dev->writer_gc)) { 92 ftl_writer_halt(&dev->writer_gc); 93 return false; 94 } 95 96 if (!ftl_nv_cache_chunks_busy(&dev->nv_cache)) { 97 return false; 98 } 99 100 for (i = 0; i < ftl_get_num_bands(dev); ++i) { 101 if (dev->bands[i].queue_depth || 102 dev->bands[i].md->state == FTL_BAND_STATE_CLOSING) { 103 return false; 104 } 105 } 106 107 if (!ftl_l2p_is_halted(dev)) { 108 ftl_l2p_halt(dev); 109 return false; 110 } 111 112 return true; 113 } 114 115 void 116 ftl_apply_limits(struct spdk_ftl_dev *dev) 117 { 118 size_t limit; 119 struct ftl_stats *stats = &dev->stats; 120 int i; 121 122 /* Clear existing limit */ 123 dev->limit = SPDK_FTL_LIMIT_MAX; 124 125 for (i = SPDK_FTL_LIMIT_CRIT; i < SPDK_FTL_LIMIT_MAX; ++i) { 126 limit = ftl_get_limit(dev, i); 127 128 if (dev->num_free <= limit) { 129 stats->limits[i]++; 130 dev->limit = i; 131 break; 132 } 133 } 134 135 ftl_trace_limits(dev, dev->limit, dev->num_free); 136 } 137 138 void 139 ftl_invalidate_addr(struct spdk_ftl_dev *dev, ftl_addr addr) 140 { 141 struct ftl_band *band; 142 struct ftl_p2l_map *p2l_map; 143 144 if (ftl_addr_in_nvc(dev, addr)) { 145 ftl_bitmap_clear(dev->valid_map, addr); 146 return; 147 } 148 149 band = ftl_band_from_addr(dev, addr); 150 p2l_map = &band->p2l_map; 151 152 /* The bit might be already cleared if two writes are scheduled to the */ 153 /* same LBA at the same time */ 154 if (ftl_bitmap_get(dev->valid_map, addr)) { 155 assert(p2l_map->num_valid > 0); 156 ftl_bitmap_clear(dev->valid_map, addr); 157 p2l_map->num_valid--; 158 } 159 160 /* Invalidate open/full band p2l_map entry to keep p2l and l2p 161 * consistency when band is going to close state */ 162 if (FTL_BAND_STATE_OPEN == band->md->state || FTL_BAND_STATE_FULL == band->md->state) { 163 p2l_map->band_map[ftl_band_block_offset_from_addr(band, addr)].lba = FTL_LBA_INVALID; 164 p2l_map->band_map[ftl_band_block_offset_from_addr(band, addr)].seq_id = 0; 165 } 166 } 167 168 static int 169 ftl_read_canceled(int rc) 170 { 171 return rc == -EFAULT; 172 } 173 174 static int 175 ftl_get_next_read_addr(struct ftl_io *io, ftl_addr *addr) 176 { 177 struct spdk_ftl_dev *dev = io->dev; 178 ftl_addr next_addr; 179 size_t i; 180 bool addr_cached = false; 181 182 *addr = ftl_l2p_get(dev, ftl_io_current_lba(io)); 183 io->map[io->pos] = *addr; 184 185 /* If the address is invalid, skip it */ 186 if (*addr == FTL_ADDR_INVALID) { 187 return -EFAULT; 188 } 189 190 addr_cached = ftl_addr_in_nvc(dev, *addr); 191 192 for (i = 1; i < ftl_io_iovec_len_left(io); ++i) { 193 next_addr = ftl_l2p_get(dev, ftl_io_get_lba(io, io->pos + i)); 194 195 if (next_addr == FTL_ADDR_INVALID) { 196 break; 197 } 198 199 /* It's not enough to check for contiguity, if user data is on the last block 200 * of base device and first nvc, then they're 'contiguous', but can't be handled 201 * with one read request. 202 */ 203 if (addr_cached != ftl_addr_in_nvc(dev, next_addr)) { 204 break; 205 } 206 207 if (*addr + i != next_addr) { 208 break; 209 } 210 211 io->map[io->pos + i] = next_addr; 212 } 213 214 return i; 215 } 216 217 static void ftl_submit_read(struct ftl_io *io); 218 219 static void 220 _ftl_submit_read(void *_io) 221 { 222 struct ftl_io *io = _io; 223 224 ftl_submit_read(io); 225 } 226 227 static void 228 ftl_submit_read(struct ftl_io *io) 229 { 230 struct spdk_ftl_dev *dev = io->dev; 231 ftl_addr addr; 232 int rc = 0, num_blocks; 233 234 while (io->pos < io->num_blocks) { 235 num_blocks = ftl_get_next_read_addr(io, &addr); 236 rc = num_blocks; 237 238 /* User LBA doesn't hold valid data (trimmed or never written to), fill with 0 and skip this block */ 239 if (ftl_read_canceled(rc)) { 240 memset(ftl_io_iovec_addr(io), 0, FTL_BLOCK_SIZE); 241 ftl_io_advance(io, 1); 242 continue; 243 } 244 245 assert(num_blocks > 0); 246 247 ftl_trace_submission(dev, io, addr, num_blocks); 248 249 if (ftl_addr_in_nvc(dev, addr)) { 250 rc = ftl_nv_cache_read(io, addr, num_blocks, ftl_io_cmpl_cb, io); 251 } else { 252 rc = spdk_bdev_read_blocks(dev->base_bdev_desc, dev->base_ioch, 253 ftl_io_iovec_addr(io), 254 addr, num_blocks, ftl_io_cmpl_cb, io); 255 } 256 257 if (spdk_unlikely(rc)) { 258 if (rc == -ENOMEM) { 259 struct spdk_bdev *bdev; 260 struct spdk_io_channel *ch; 261 262 if (ftl_addr_in_nvc(dev, addr)) { 263 bdev = spdk_bdev_desc_get_bdev(dev->nv_cache.bdev_desc); 264 ch = dev->nv_cache.cache_ioch; 265 } else { 266 bdev = spdk_bdev_desc_get_bdev(dev->base_bdev_desc); 267 ch = dev->base_ioch; 268 } 269 io->bdev_io_wait.bdev = bdev; 270 io->bdev_io_wait.cb_fn = _ftl_submit_read; 271 io->bdev_io_wait.cb_arg = io; 272 spdk_bdev_queue_io_wait(bdev, ch, &io->bdev_io_wait); 273 return; 274 } else { 275 ftl_abort(); 276 } 277 } 278 279 ftl_io_inc_req(io); 280 ftl_io_advance(io, num_blocks); 281 } 282 283 /* If we didn't have to read anything from the device, */ 284 /* complete the request right away */ 285 if (ftl_io_done(io)) { 286 ftl_io_complete(io); 287 } 288 } 289 290 bool 291 ftl_needs_reloc(struct spdk_ftl_dev *dev) 292 { 293 size_t limit = ftl_get_limit(dev, SPDK_FTL_LIMIT_START); 294 295 if (dev->num_free <= limit) { 296 return true; 297 } 298 299 return false; 300 } 301 302 void 303 spdk_ftl_dev_get_attrs(const struct spdk_ftl_dev *dev, struct spdk_ftl_attrs *attrs, 304 size_t attrs_size) 305 { 306 attrs->num_blocks = dev->num_lbas; 307 attrs->block_size = FTL_BLOCK_SIZE; 308 attrs->optimum_io_size = dev->xfer_size; 309 /* NOTE: check any new fields in attrs against attrs_size */ 310 } 311 312 static void 313 ftl_io_pin_cb(struct spdk_ftl_dev *dev, int status, struct ftl_l2p_pin_ctx *pin_ctx) 314 { 315 struct ftl_io *io = pin_ctx->cb_ctx; 316 317 if (spdk_unlikely(status != 0)) { 318 /* Retry on the internal L2P fault */ 319 io->status = -EAGAIN; 320 ftl_io_complete(io); 321 return; 322 } 323 324 io->flags |= FTL_IO_PINNED; 325 ftl_submit_read(io); 326 } 327 328 static void 329 ftl_io_pin(struct ftl_io *io) 330 { 331 if (spdk_unlikely(io->flags & FTL_IO_PINNED)) { 332 /* 333 * The IO is in a retry path and it had been pinned already. 334 * Continue with further processing. 335 */ 336 ftl_l2p_pin_skip(io->dev, ftl_io_pin_cb, io, &io->l2p_pin_ctx); 337 } else { 338 /* First time when pinning the IO */ 339 ftl_l2p_pin(io->dev, io->lba, io->num_blocks, 340 ftl_io_pin_cb, io, &io->l2p_pin_ctx); 341 } 342 } 343 344 static void 345 start_io(struct ftl_io *io) 346 { 347 struct ftl_io_channel *ioch = ftl_io_channel_get_ctx(io->ioch); 348 struct spdk_ftl_dev *dev = io->dev; 349 350 io->map = ftl_mempool_get(ioch->map_pool); 351 if (spdk_unlikely(!io->map)) { 352 io->status = -ENOMEM; 353 ftl_io_complete(io); 354 return; 355 } 356 357 switch (io->type) { 358 case FTL_IO_READ: 359 TAILQ_INSERT_TAIL(&dev->rd_sq, io, queue_entry); 360 break; 361 case FTL_IO_WRITE: 362 TAILQ_INSERT_TAIL(&dev->wr_sq, io, queue_entry); 363 break; 364 case FTL_IO_UNMAP: 365 TAILQ_INSERT_TAIL(&dev->unmap_sq, io, queue_entry); 366 break; 367 default: 368 io->status = -EOPNOTSUPP; 369 ftl_io_complete(io); 370 } 371 } 372 373 static int 374 queue_io(struct spdk_ftl_dev *dev, struct ftl_io *io) 375 { 376 size_t result; 377 struct ftl_io_channel *ioch = ftl_io_channel_get_ctx(io->ioch); 378 379 result = spdk_ring_enqueue(ioch->sq, (void **)&io, 1, NULL); 380 if (spdk_unlikely(0 == result)) { 381 return -EAGAIN; 382 } 383 384 return 0; 385 } 386 387 int 388 spdk_ftl_writev(struct spdk_ftl_dev *dev, struct ftl_io *io, struct spdk_io_channel *ch, 389 uint64_t lba, uint64_t lba_cnt, struct iovec *iov, size_t iov_cnt, spdk_ftl_fn cb_fn, 390 void *cb_arg) 391 { 392 int rc; 393 394 if (iov_cnt == 0) { 395 return -EINVAL; 396 } 397 398 if (lba_cnt == 0) { 399 return -EINVAL; 400 } 401 402 if (lba_cnt != ftl_iovec_num_blocks(iov, iov_cnt)) { 403 FTL_ERRLOG(dev, "Invalid IO vector to handle, device %s, LBA %"PRIu64"\n", 404 dev->conf.name, lba); 405 return -EINVAL; 406 } 407 408 if (!dev->initialized) { 409 return -EBUSY; 410 } 411 412 rc = ftl_io_init(ch, io, lba, lba_cnt, iov, iov_cnt, cb_fn, cb_arg, FTL_IO_WRITE); 413 if (rc) { 414 return rc; 415 } 416 417 return queue_io(dev, io); 418 } 419 420 int 421 spdk_ftl_readv(struct spdk_ftl_dev *dev, struct ftl_io *io, struct spdk_io_channel *ch, 422 uint64_t lba, uint64_t lba_cnt, struct iovec *iov, size_t iov_cnt, spdk_ftl_fn cb_fn, void *cb_arg) 423 { 424 int rc; 425 426 if (iov_cnt == 0) { 427 return -EINVAL; 428 } 429 430 if (lba_cnt == 0) { 431 return -EINVAL; 432 } 433 434 if (lba_cnt != ftl_iovec_num_blocks(iov, iov_cnt)) { 435 FTL_ERRLOG(dev, "Invalid IO vector to handle, device %s, LBA %"PRIu64"\n", 436 dev->conf.name, lba); 437 return -EINVAL; 438 } 439 440 if (!dev->initialized) { 441 return -EBUSY; 442 } 443 444 rc = ftl_io_init(ch, io, lba, lba_cnt, iov, iov_cnt, cb_fn, cb_arg, FTL_IO_READ); 445 if (rc) { 446 return rc; 447 } 448 449 return queue_io(dev, io); 450 } 451 452 int 453 ftl_unmap(struct spdk_ftl_dev *dev, struct ftl_io *io, struct spdk_io_channel *ch, 454 uint64_t lba, uint64_t lba_cnt, spdk_ftl_fn cb_fn, void *cb_arg) 455 { 456 int rc; 457 458 rc = ftl_io_init(ch, io, lba, lba_cnt, NULL, 0, cb_fn, cb_arg, FTL_IO_UNMAP); 459 if (rc) { 460 return rc; 461 } 462 463 return queue_io(dev, io); 464 } 465 466 int 467 spdk_ftl_unmap(struct spdk_ftl_dev *dev, struct ftl_io *io, struct spdk_io_channel *ch, 468 uint64_t lba, uint64_t lba_cnt, spdk_ftl_fn cb_fn, void *cb_arg) 469 { 470 int rc; 471 uint64_t aligment = dev->layout.l2p.lbas_in_page; 472 473 if (lba_cnt == 0) { 474 return -EINVAL; 475 } 476 477 if (lba + lba_cnt < lba_cnt) { 478 return -EINVAL; 479 } 480 481 if (lba + lba_cnt > dev->num_lbas) { 482 return -EINVAL; 483 } 484 485 if (!dev->initialized) { 486 return -EBUSY; 487 } 488 489 if (lba % aligment || lba_cnt % aligment) { 490 if (!io) { 491 /* This is management/RPC path, its parameters must be aligned to 1MiB. */ 492 return -EINVAL; 493 } 494 495 /* Otherwise unaligned IO requests are NOPs */ 496 rc = ftl_io_init(ch, io, lba, lba_cnt, NULL, 0, cb_fn, cb_arg, FTL_IO_UNMAP); 497 if (rc) { 498 return rc; 499 } 500 501 io->status = 0; 502 ftl_io_complete(io); 503 return 0; 504 } 505 506 if (io) { 507 rc = ftl_unmap(dev, io, ch, lba, lba_cnt, cb_fn, cb_arg); 508 } else { 509 rc = ftl_mngt_unmap(dev, lba, lba_cnt, cb_fn, cb_arg); 510 } 511 512 return rc; 513 } 514 515 #define FTL_IO_QUEUE_BATCH 16 516 int 517 ftl_io_channel_poll(void *arg) 518 { 519 struct ftl_io_channel *ch = arg; 520 void *ios[FTL_IO_QUEUE_BATCH]; 521 uint64_t i, count; 522 523 count = spdk_ring_dequeue(ch->cq, ios, FTL_IO_QUEUE_BATCH); 524 if (count == 0) { 525 return SPDK_POLLER_IDLE; 526 } 527 528 for (i = 0; i < count; i++) { 529 struct ftl_io *io = ios[i]; 530 io->user_fn(io->cb_ctx, io->status); 531 } 532 533 return SPDK_POLLER_BUSY; 534 } 535 536 static void 537 ftl_process_io_channel(struct spdk_ftl_dev *dev, struct ftl_io_channel *ioch) 538 { 539 void *ios[FTL_IO_QUEUE_BATCH]; 540 size_t count, i; 541 542 count = spdk_ring_dequeue(ioch->sq, ios, FTL_IO_QUEUE_BATCH); 543 if (count == 0) { 544 return; 545 } 546 547 for (i = 0; i < count; i++) { 548 struct ftl_io *io = ios[i]; 549 start_io(io); 550 } 551 } 552 553 static void 554 ftl_process_unmap_cb(struct spdk_ftl_dev *dev, struct ftl_md *md, int status) 555 { 556 struct ftl_io *io = md->owner.cb_ctx; 557 558 io->dev->unmap_qd--; 559 560 if (spdk_unlikely(status)) { 561 #ifdef SPDK_FTL_RETRY_ON_ERROR 562 TAILQ_INSERT_HEAD(&io->dev->unmap_sq, io, queue_entry); 563 return; 564 #else 565 io->status = status; 566 #endif 567 } 568 569 ftl_io_complete(io); 570 } 571 572 void 573 ftl_set_unmap_map(struct spdk_ftl_dev *dev, uint64_t lba, uint64_t num_blocks, uint64_t seq_id) 574 { 575 uint64_t first_page, num_pages; 576 uint64_t first_md_block, num_md_blocks, num_pages_in_block; 577 uint32_t lbas_in_page = dev->layout.l2p.lbas_in_page; 578 struct ftl_md *md = dev->layout.md[FTL_LAYOUT_REGION_TYPE_TRIM_MD]; 579 uint64_t *page = ftl_md_get_buffer(md); 580 union ftl_md_vss *page_vss; 581 size_t i; 582 583 first_page = lba / lbas_in_page; 584 num_pages = num_blocks / lbas_in_page; 585 586 for (i = first_page; i < first_page + num_pages; ++i) { 587 ftl_bitmap_set(dev->unmap_map, i); 588 page[i] = seq_id; 589 } 590 591 num_pages_in_block = FTL_BLOCK_SIZE / sizeof(*page); 592 first_md_block = first_page / num_pages_in_block; 593 num_md_blocks = spdk_divide_round_up(num_pages, num_pages_in_block); 594 page_vss = ftl_md_get_vss_buffer(md) + first_md_block; 595 for (i = first_md_block; i < num_md_blocks; ++i, page_vss++) { 596 page_vss->unmap.start_lba = lba; 597 page_vss->unmap.num_blocks = num_blocks; 598 page_vss->unmap.seq_id = seq_id; 599 } 600 } 601 602 static bool 603 ftl_process_unmap(struct ftl_io *io) 604 { 605 struct spdk_ftl_dev *dev = io->dev; 606 struct ftl_md *md = dev->layout.md[FTL_LAYOUT_REGION_TYPE_TRIM_MD]; 607 uint64_t seq_id; 608 609 seq_id = ftl_nv_cache_acquire_trim_seq_id(&dev->nv_cache); 610 if (seq_id == 0) { 611 return false; 612 } 613 614 dev->unmap_in_progress = true; 615 dev->unmap_qd++; 616 617 dev->sb_shm->trim.start_lba = io->lba; 618 dev->sb_shm->trim.num_blocks = io->num_blocks; 619 dev->sb_shm->trim.seq_id = seq_id; 620 dev->sb_shm->trim.in_progress = true; 621 ftl_set_unmap_map(dev, io->lba, io->num_blocks, seq_id); 622 ftl_debug_inject_unmap_error(); 623 dev->sb_shm->trim.in_progress = false; 624 625 md->owner.cb_ctx = io; 626 md->cb = ftl_process_unmap_cb; 627 628 ftl_md_persist(md); 629 630 return true; 631 } 632 633 static void 634 ftl_process_io_queue(struct spdk_ftl_dev *dev) 635 { 636 struct ftl_io_channel *ioch; 637 struct ftl_io *io; 638 639 /* TODO: Try to figure out a mechanism to batch more requests at the same time, 640 * with keeping enough resources (pinned pages), between reads, writes and gc/compaction 641 */ 642 if (!TAILQ_EMPTY(&dev->rd_sq)) { 643 io = TAILQ_FIRST(&dev->rd_sq); 644 TAILQ_REMOVE(&dev->rd_sq, io, queue_entry); 645 assert(io->type == FTL_IO_READ); 646 ftl_io_pin(io); 647 } 648 649 while (!TAILQ_EMPTY(&dev->wr_sq) && !ftl_nv_cache_throttle(dev)) { 650 io = TAILQ_FIRST(&dev->wr_sq); 651 TAILQ_REMOVE(&dev->wr_sq, io, queue_entry); 652 assert(io->type == FTL_IO_WRITE); 653 if (!ftl_nv_cache_write(io)) { 654 TAILQ_INSERT_HEAD(&dev->wr_sq, io, queue_entry); 655 break; 656 } 657 } 658 659 if (!TAILQ_EMPTY(&dev->unmap_sq) && dev->unmap_qd == 0) { 660 io = TAILQ_FIRST(&dev->unmap_sq); 661 TAILQ_REMOVE(&dev->unmap_sq, io, queue_entry); 662 assert(io->type == FTL_IO_UNMAP); 663 664 /* 665 * Unmap operation requires generating a sequence id for itself, which it gets based on the open chunk 666 * in nv cache. If there are no open chunks (because we're in the middle of state transistion or compaction 667 * lagged behind), then we need to wait for the nv cache to resolve the situation - it's fine to just put the 668 * unmap and try again later. 669 */ 670 if (!ftl_process_unmap(io)) { 671 TAILQ_INSERT_HEAD(&dev->unmap_sq, io, queue_entry); 672 } 673 } 674 675 TAILQ_FOREACH(ioch, &dev->ioch_queue, entry) { 676 ftl_process_io_channel(dev, ioch); 677 } 678 } 679 680 int 681 ftl_core_poller(void *ctx) 682 { 683 struct spdk_ftl_dev *dev = ctx; 684 uint64_t io_activity_total_old = dev->stats.io_activity_total; 685 686 if (dev->halt && ftl_shutdown_complete(dev)) { 687 spdk_poller_unregister(&dev->core_poller); 688 return SPDK_POLLER_IDLE; 689 } 690 691 ftl_process_io_queue(dev); 692 ftl_writer_run(&dev->writer_user); 693 ftl_writer_run(&dev->writer_gc); 694 ftl_reloc(dev->reloc); 695 ftl_nv_cache_process(dev); 696 ftl_l2p_process(dev); 697 698 if (io_activity_total_old != dev->stats.io_activity_total) { 699 return SPDK_POLLER_BUSY; 700 } 701 702 return SPDK_POLLER_IDLE; 703 } 704 705 struct ftl_band * 706 ftl_band_get_next_free(struct spdk_ftl_dev *dev) 707 { 708 struct ftl_band *band = NULL; 709 710 if (!TAILQ_EMPTY(&dev->free_bands)) { 711 band = TAILQ_FIRST(&dev->free_bands); 712 TAILQ_REMOVE(&dev->free_bands, band, queue_entry); 713 ftl_band_erase(band); 714 } 715 716 return band; 717 } 718 719 void *g_ftl_write_buf; 720 void *g_ftl_read_buf; 721 722 int 723 spdk_ftl_init(void) 724 { 725 g_ftl_write_buf = spdk_zmalloc(FTL_ZERO_BUFFER_SIZE, FTL_ZERO_BUFFER_SIZE, NULL, 726 SPDK_ENV_LCORE_ID_ANY, SPDK_MALLOC_DMA); 727 if (!g_ftl_write_buf) { 728 return -ENOMEM; 729 } 730 731 g_ftl_read_buf = spdk_zmalloc(FTL_ZERO_BUFFER_SIZE, FTL_ZERO_BUFFER_SIZE, NULL, 732 SPDK_ENV_LCORE_ID_ANY, SPDK_MALLOC_DMA); 733 if (!g_ftl_read_buf) { 734 spdk_free(g_ftl_write_buf); 735 g_ftl_write_buf = NULL; 736 return -ENOMEM; 737 } 738 return 0; 739 } 740 741 void 742 spdk_ftl_fini(void) 743 { 744 spdk_free(g_ftl_write_buf); 745 spdk_free(g_ftl_read_buf); 746 } 747 748 void 749 spdk_ftl_dev_set_fast_shutdown(struct spdk_ftl_dev *dev, bool fast_shutdown) 750 { 751 assert(dev); 752 dev->conf.fast_shutdown = fast_shutdown; 753 } 754 755 void 756 ftl_stats_bdev_io_completed(struct spdk_ftl_dev *dev, enum ftl_stats_type type, 757 struct spdk_bdev_io *bdev_io) 758 { 759 struct ftl_stats_entry *stats_entry = &dev->stats.entries[type]; 760 struct ftl_stats_group *stats_group; 761 uint32_t cdw0; 762 int sct; 763 int sc; 764 765 switch (bdev_io->type) { 766 case SPDK_BDEV_IO_TYPE_READ: 767 stats_group = &stats_entry->read; 768 break; 769 case SPDK_BDEV_IO_TYPE_WRITE: 770 case SPDK_BDEV_IO_TYPE_WRITE_ZEROES: 771 stats_group = &stats_entry->write; 772 break; 773 default: 774 return; 775 } 776 777 spdk_bdev_io_get_nvme_status(bdev_io, &cdw0, &sct, &sc); 778 779 if (sct == SPDK_NVME_SCT_GENERIC && sc == SPDK_NVME_SC_SUCCESS) { 780 stats_group->ios++; 781 stats_group->blocks += bdev_io->u.bdev.num_blocks; 782 } else if (sct == SPDK_NVME_SCT_MEDIA_ERROR) { 783 stats_group->errors.media++; 784 } else { 785 stats_group->errors.other++; 786 } 787 } 788 789 struct spdk_io_channel * 790 spdk_ftl_get_io_channel(struct spdk_ftl_dev *dev) 791 { 792 return spdk_get_io_channel(dev); 793 } 794 795 void 796 ftl_stats_crc_error(struct spdk_ftl_dev *dev, enum ftl_stats_type type) 797 { 798 799 struct ftl_stats_entry *stats_entry = &dev->stats.entries[type]; 800 struct ftl_stats_group *stats_group = &stats_entry->read; 801 802 stats_group->errors.crc++; 803 } 804 805 struct ftl_get_stats_ctx { 806 struct spdk_ftl_dev *dev; 807 struct ftl_stats *stats; 808 struct spdk_thread *thread; 809 spdk_ftl_stats_fn cb_fn; 810 void *cb_arg; 811 }; 812 813 static void 814 _ftl_get_stats_cb(void *_ctx) 815 { 816 struct ftl_get_stats_ctx *stats_ctx = _ctx; 817 818 stats_ctx->cb_fn(stats_ctx->stats, stats_ctx->cb_arg); 819 free(stats_ctx); 820 } 821 822 static void 823 _ftl_get_stats(void *_ctx) 824 { 825 struct ftl_get_stats_ctx *stats_ctx = _ctx; 826 827 *stats_ctx->stats = stats_ctx->dev->stats; 828 829 if (spdk_thread_send_msg(stats_ctx->thread, _ftl_get_stats_cb, stats_ctx)) { 830 ftl_abort(); 831 } 832 } 833 834 int 835 spdk_ftl_get_stats(struct spdk_ftl_dev *dev, struct ftl_stats *stats, spdk_ftl_stats_fn cb_fn, 836 void *cb_arg) 837 { 838 struct ftl_get_stats_ctx *stats_ctx; 839 int rc; 840 841 stats_ctx = calloc(1, sizeof(struct ftl_get_stats_ctx)); 842 if (!stats_ctx) { 843 return -ENOMEM; 844 } 845 846 stats_ctx->dev = dev; 847 stats_ctx->stats = stats; 848 stats_ctx->cb_fn = cb_fn; 849 stats_ctx->cb_arg = cb_arg; 850 stats_ctx->thread = spdk_get_thread(); 851 852 rc = spdk_thread_send_msg(dev->core_thread, _ftl_get_stats, stats_ctx); 853 if (rc) { 854 goto stats_allocated; 855 } 856 857 return 0; 858 859 stats_allocated: 860 free(stats_ctx); 861 return rc; 862 } 863 864 SPDK_LOG_REGISTER_COMPONENT(ftl_core) 865