1 /* SPDX-License-Identifier: BSD-3-Clause 2 * Copyright (C) 2017 Intel Corporation. 3 * All rights reserved. 4 */ 5 6 #include "spdk/stdinc.h" 7 8 #include "spdk/blobfs.h" 9 #include "cache_tree.h" 10 11 #include "spdk/queue.h" 12 #include "spdk/thread.h" 13 #include "spdk/assert.h" 14 #include "spdk/env.h" 15 #include "spdk/util.h" 16 #include "spdk/log.h" 17 #include "spdk/trace.h" 18 19 #include "spdk_internal/trace_defs.h" 20 21 #define BLOBFS_TRACE(file, str, args...) \ 22 SPDK_DEBUGLOG(blobfs, "file=%s " str, file->name, ##args) 23 24 #define BLOBFS_TRACE_RW(file, str, args...) \ 25 SPDK_DEBUGLOG(blobfs_rw, "file=%s " str, file->name, ##args) 26 27 #define BLOBFS_DEFAULT_CACHE_SIZE (4ULL * 1024 * 1024 * 1024) 28 #define SPDK_BLOBFS_DEFAULT_OPTS_CLUSTER_SZ (1024 * 1024) 29 30 #define SPDK_BLOBFS_SIGNATURE "BLOBFS" 31 32 static uint64_t g_fs_cache_size = BLOBFS_DEFAULT_CACHE_SIZE; 33 static struct spdk_mempool *g_cache_pool; 34 static TAILQ_HEAD(, spdk_file) g_caches = TAILQ_HEAD_INITIALIZER(g_caches); 35 static struct spdk_poller *g_cache_pool_mgmt_poller; 36 static struct spdk_thread *g_cache_pool_thread; 37 #define BLOBFS_CACHE_POOL_POLL_PERIOD_IN_US 1000ULL 38 static int g_fs_count = 0; 39 static pthread_mutex_t g_cache_init_lock = PTHREAD_MUTEX_INITIALIZER; 40 41 SPDK_TRACE_REGISTER_FN(blobfs_trace, "blobfs", TRACE_GROUP_BLOBFS) 42 { 43 struct spdk_trace_tpoint_opts opts[] = { 44 { 45 "BLOBFS_XATTR_START", TRACE_BLOBFS_XATTR_START, 46 OWNER_NONE, OBJECT_NONE, 0, 47 {{ "file", SPDK_TRACE_ARG_TYPE_STR, 40 }}, 48 }, 49 { 50 "BLOBFS_XATTR_END", TRACE_BLOBFS_XATTR_END, 51 OWNER_NONE, OBJECT_NONE, 0, 52 {{ "file", SPDK_TRACE_ARG_TYPE_STR, 40 }}, 53 }, 54 { 55 "BLOBFS_OPEN", TRACE_BLOBFS_OPEN, 56 OWNER_NONE, OBJECT_NONE, 0, 57 {{ "file", SPDK_TRACE_ARG_TYPE_STR, 40 }}, 58 }, 59 { 60 "BLOBFS_CLOSE", TRACE_BLOBFS_CLOSE, 61 OWNER_NONE, OBJECT_NONE, 0, 62 {{ "file", SPDK_TRACE_ARG_TYPE_STR, 40 }}, 63 }, 64 { 65 "BLOBFS_DELETE_START", TRACE_BLOBFS_DELETE_START, 66 OWNER_NONE, OBJECT_NONE, 0, 67 {{ "file", SPDK_TRACE_ARG_TYPE_STR, 40 }}, 68 }, 69 { 70 "BLOBFS_DELETE_DONE", TRACE_BLOBFS_DELETE_DONE, 71 OWNER_NONE, OBJECT_NONE, 0, 72 {{ "file", SPDK_TRACE_ARG_TYPE_STR, 40 }}, 73 } 74 }; 75 76 spdk_trace_register_description_ext(opts, SPDK_COUNTOF(opts)); 77 } 78 79 void 80 cache_buffer_free(struct cache_buffer *cache_buffer) 81 { 82 spdk_mempool_put(g_cache_pool, cache_buffer->buf); 83 free(cache_buffer); 84 } 85 86 #define CACHE_READAHEAD_THRESHOLD (128 * 1024) 87 88 struct spdk_file { 89 struct spdk_filesystem *fs; 90 struct spdk_blob *blob; 91 char *name; 92 uint64_t length; 93 bool is_deleted; 94 bool open_for_writing; 95 uint64_t length_flushed; 96 uint64_t length_xattr; 97 uint64_t append_pos; 98 uint64_t seq_byte_count; 99 uint64_t next_seq_offset; 100 uint32_t priority; 101 TAILQ_ENTRY(spdk_file) tailq; 102 spdk_blob_id blobid; 103 uint32_t ref_count; 104 pthread_spinlock_t lock; 105 struct cache_buffer *last; 106 struct cache_tree *tree; 107 TAILQ_HEAD(open_requests_head, spdk_fs_request) open_requests; 108 TAILQ_HEAD(sync_requests_head, spdk_fs_request) sync_requests; 109 TAILQ_ENTRY(spdk_file) cache_tailq; 110 }; 111 112 struct spdk_deleted_file { 113 spdk_blob_id id; 114 TAILQ_ENTRY(spdk_deleted_file) tailq; 115 }; 116 117 struct spdk_filesystem { 118 struct spdk_blob_store *bs; 119 TAILQ_HEAD(, spdk_file) files; 120 struct spdk_bs_opts bs_opts; 121 struct spdk_bs_dev *bdev; 122 fs_send_request_fn send_request; 123 124 struct { 125 uint32_t max_ops; 126 struct spdk_io_channel *sync_io_channel; 127 struct spdk_fs_channel *sync_fs_channel; 128 } sync_target; 129 130 struct { 131 uint32_t max_ops; 132 struct spdk_io_channel *md_io_channel; 133 struct spdk_fs_channel *md_fs_channel; 134 } md_target; 135 136 struct { 137 uint32_t max_ops; 138 } io_target; 139 }; 140 141 struct spdk_fs_cb_args { 142 union { 143 spdk_fs_op_with_handle_complete fs_op_with_handle; 144 spdk_fs_op_complete fs_op; 145 spdk_file_op_with_handle_complete file_op_with_handle; 146 spdk_file_op_complete file_op; 147 spdk_file_stat_op_complete stat_op; 148 } fn; 149 void *arg; 150 sem_t *sem; 151 struct spdk_filesystem *fs; 152 struct spdk_file *file; 153 int rc; 154 int *rwerrno; 155 struct iovec *iovs; 156 uint32_t iovcnt; 157 struct iovec iov; 158 union { 159 struct { 160 TAILQ_HEAD(, spdk_deleted_file) deleted_files; 161 } fs_load; 162 struct { 163 uint64_t length; 164 } truncate; 165 struct { 166 struct spdk_io_channel *channel; 167 void *pin_buf; 168 int is_read; 169 off_t offset; 170 size_t length; 171 uint64_t start_lba; 172 uint64_t num_lba; 173 uint32_t blocklen; 174 } rw; 175 struct { 176 const char *old_name; 177 const char *new_name; 178 } rename; 179 struct { 180 struct cache_buffer *cache_buffer; 181 uint64_t length; 182 } flush; 183 struct { 184 struct cache_buffer *cache_buffer; 185 uint64_t length; 186 uint64_t offset; 187 } readahead; 188 struct { 189 /* offset of the file when the sync request was made */ 190 uint64_t offset; 191 TAILQ_ENTRY(spdk_fs_request) tailq; 192 bool xattr_in_progress; 193 /* length written to the xattr for this file - this should 194 * always be the same as the offset if only one thread is 195 * writing to the file, but could differ if multiple threads 196 * are appending 197 */ 198 uint64_t length; 199 } sync; 200 struct { 201 uint32_t num_clusters; 202 } resize; 203 struct { 204 const char *name; 205 uint32_t flags; 206 TAILQ_ENTRY(spdk_fs_request) tailq; 207 } open; 208 struct { 209 const char *name; 210 struct spdk_blob *blob; 211 } create; 212 struct { 213 const char *name; 214 } delete; 215 struct { 216 const char *name; 217 } stat; 218 } op; 219 }; 220 221 static void file_free(struct spdk_file *file); 222 static void fs_io_device_unregister(struct spdk_filesystem *fs); 223 static void fs_free_io_channels(struct spdk_filesystem *fs); 224 225 void 226 spdk_fs_opts_init(struct spdk_blobfs_opts *opts) 227 { 228 opts->cluster_sz = SPDK_BLOBFS_DEFAULT_OPTS_CLUSTER_SZ; 229 } 230 231 static int _blobfs_cache_pool_reclaim(void *arg); 232 233 static bool 234 blobfs_cache_pool_need_reclaim(void) 235 { 236 size_t count; 237 238 count = spdk_mempool_count(g_cache_pool); 239 /* We define a aggressive policy here as the requirements from db_bench are batched, so start the poller 240 * when the number of available cache buffer is less than 1/5 of total buffers. 241 */ 242 if (count > (size_t)g_fs_cache_size / CACHE_BUFFER_SIZE / 5) { 243 return false; 244 } 245 246 return true; 247 } 248 249 static void 250 __start_cache_pool_mgmt(void *ctx) 251 { 252 assert(g_cache_pool == NULL); 253 254 g_cache_pool = spdk_mempool_create("spdk_fs_cache", 255 g_fs_cache_size / CACHE_BUFFER_SIZE, 256 CACHE_BUFFER_SIZE, 257 SPDK_MEMPOOL_DEFAULT_CACHE_SIZE, 258 SPDK_ENV_SOCKET_ID_ANY); 259 if (!g_cache_pool) { 260 if (spdk_mempool_lookup("spdk_fs_cache") != NULL) { 261 SPDK_ERRLOG("Unable to allocate mempool: already exists\n"); 262 SPDK_ERRLOG("Probably running in multiprocess environment, which is " 263 "unsupported by the blobfs library\n"); 264 } else { 265 SPDK_ERRLOG("Create mempool failed, you may " 266 "increase the memory and try again\n"); 267 } 268 assert(false); 269 } 270 271 assert(g_cache_pool_mgmt_poller == NULL); 272 g_cache_pool_mgmt_poller = SPDK_POLLER_REGISTER(_blobfs_cache_pool_reclaim, NULL, 273 BLOBFS_CACHE_POOL_POLL_PERIOD_IN_US); 274 } 275 276 static void 277 __stop_cache_pool_mgmt(void *ctx) 278 { 279 spdk_poller_unregister(&g_cache_pool_mgmt_poller); 280 281 assert(g_cache_pool != NULL); 282 assert(spdk_mempool_count(g_cache_pool) == g_fs_cache_size / CACHE_BUFFER_SIZE); 283 spdk_mempool_free(g_cache_pool); 284 g_cache_pool = NULL; 285 286 spdk_thread_exit(g_cache_pool_thread); 287 } 288 289 static void 290 initialize_global_cache(void) 291 { 292 pthread_mutex_lock(&g_cache_init_lock); 293 if (g_fs_count == 0) { 294 g_cache_pool_thread = spdk_thread_create("cache_pool_mgmt", NULL); 295 assert(g_cache_pool_thread != NULL); 296 spdk_thread_send_msg(g_cache_pool_thread, __start_cache_pool_mgmt, NULL); 297 } 298 g_fs_count++; 299 pthread_mutex_unlock(&g_cache_init_lock); 300 } 301 302 static void 303 free_global_cache(void) 304 { 305 pthread_mutex_lock(&g_cache_init_lock); 306 g_fs_count--; 307 if (g_fs_count == 0) { 308 spdk_thread_send_msg(g_cache_pool_thread, __stop_cache_pool_mgmt, NULL); 309 } 310 pthread_mutex_unlock(&g_cache_init_lock); 311 } 312 313 static uint64_t 314 __file_get_blob_size(struct spdk_file *file) 315 { 316 uint64_t cluster_sz; 317 318 cluster_sz = file->fs->bs_opts.cluster_sz; 319 return cluster_sz * spdk_blob_get_num_clusters(file->blob); 320 } 321 322 struct spdk_fs_request { 323 struct spdk_fs_cb_args args; 324 TAILQ_ENTRY(spdk_fs_request) link; 325 struct spdk_fs_channel *channel; 326 }; 327 328 struct spdk_fs_channel { 329 struct spdk_fs_request *req_mem; 330 TAILQ_HEAD(, spdk_fs_request) reqs; 331 sem_t sem; 332 struct spdk_filesystem *fs; 333 struct spdk_io_channel *bs_channel; 334 fs_send_request_fn send_request; 335 bool sync; 336 uint32_t outstanding_reqs; 337 pthread_spinlock_t lock; 338 }; 339 340 /* For now, this is effectively an alias. But eventually we'll shift 341 * some data members over. */ 342 struct spdk_fs_thread_ctx { 343 struct spdk_fs_channel ch; 344 }; 345 346 static struct spdk_fs_request * 347 alloc_fs_request_with_iov(struct spdk_fs_channel *channel, uint32_t iovcnt) 348 { 349 struct spdk_fs_request *req; 350 struct iovec *iovs = NULL; 351 352 if (iovcnt > 1) { 353 iovs = calloc(iovcnt, sizeof(struct iovec)); 354 if (!iovs) { 355 return NULL; 356 } 357 } 358 359 if (channel->sync) { 360 pthread_spin_lock(&channel->lock); 361 } 362 363 req = TAILQ_FIRST(&channel->reqs); 364 if (req) { 365 channel->outstanding_reqs++; 366 TAILQ_REMOVE(&channel->reqs, req, link); 367 } 368 369 if (channel->sync) { 370 pthread_spin_unlock(&channel->lock); 371 } 372 373 if (req == NULL) { 374 SPDK_ERRLOG("Cannot allocate req on spdk_fs_channel =%p\n", channel); 375 free(iovs); 376 return NULL; 377 } 378 memset(req, 0, sizeof(*req)); 379 req->channel = channel; 380 if (iovcnt > 1) { 381 req->args.iovs = iovs; 382 } else { 383 req->args.iovs = &req->args.iov; 384 } 385 req->args.iovcnt = iovcnt; 386 387 return req; 388 } 389 390 static struct spdk_fs_request * 391 alloc_fs_request(struct spdk_fs_channel *channel) 392 { 393 return alloc_fs_request_with_iov(channel, 0); 394 } 395 396 static void 397 free_fs_request(struct spdk_fs_request *req) 398 { 399 struct spdk_fs_channel *channel = req->channel; 400 401 if (req->args.iovcnt > 1) { 402 free(req->args.iovs); 403 } 404 405 if (channel->sync) { 406 pthread_spin_lock(&channel->lock); 407 } 408 409 TAILQ_INSERT_HEAD(&req->channel->reqs, req, link); 410 channel->outstanding_reqs--; 411 412 if (channel->sync) { 413 pthread_spin_unlock(&channel->lock); 414 } 415 } 416 417 static int 418 fs_channel_create(struct spdk_filesystem *fs, struct spdk_fs_channel *channel, 419 uint32_t max_ops) 420 { 421 uint32_t i; 422 423 channel->req_mem = calloc(max_ops, sizeof(struct spdk_fs_request)); 424 if (!channel->req_mem) { 425 return -1; 426 } 427 428 channel->outstanding_reqs = 0; 429 TAILQ_INIT(&channel->reqs); 430 sem_init(&channel->sem, 0, 0); 431 432 for (i = 0; i < max_ops; i++) { 433 TAILQ_INSERT_TAIL(&channel->reqs, &channel->req_mem[i], link); 434 } 435 436 channel->fs = fs; 437 438 return 0; 439 } 440 441 static int 442 fs_md_channel_create(void *io_device, void *ctx_buf) 443 { 444 struct spdk_filesystem *fs; 445 struct spdk_fs_channel *channel = ctx_buf; 446 447 fs = SPDK_CONTAINEROF(io_device, struct spdk_filesystem, md_target); 448 449 return fs_channel_create(fs, channel, fs->md_target.max_ops); 450 } 451 452 static int 453 fs_sync_channel_create(void *io_device, void *ctx_buf) 454 { 455 struct spdk_filesystem *fs; 456 struct spdk_fs_channel *channel = ctx_buf; 457 458 fs = SPDK_CONTAINEROF(io_device, struct spdk_filesystem, sync_target); 459 460 return fs_channel_create(fs, channel, fs->sync_target.max_ops); 461 } 462 463 static int 464 fs_io_channel_create(void *io_device, void *ctx_buf) 465 { 466 struct spdk_filesystem *fs; 467 struct spdk_fs_channel *channel = ctx_buf; 468 469 fs = SPDK_CONTAINEROF(io_device, struct spdk_filesystem, io_target); 470 471 return fs_channel_create(fs, channel, fs->io_target.max_ops); 472 } 473 474 static void 475 fs_channel_destroy(void *io_device, void *ctx_buf) 476 { 477 struct spdk_fs_channel *channel = ctx_buf; 478 479 if (channel->outstanding_reqs > 0) { 480 SPDK_ERRLOG("channel freed with %" PRIu32 " outstanding requests!\n", 481 channel->outstanding_reqs); 482 } 483 484 free(channel->req_mem); 485 if (channel->bs_channel != NULL) { 486 spdk_bs_free_io_channel(channel->bs_channel); 487 } 488 } 489 490 static void 491 __send_request_direct(fs_request_fn fn, void *arg) 492 { 493 fn(arg); 494 } 495 496 static void 497 common_fs_bs_init(struct spdk_filesystem *fs, struct spdk_blob_store *bs) 498 { 499 fs->bs = bs; 500 fs->bs_opts.cluster_sz = spdk_bs_get_cluster_size(bs); 501 fs->md_target.md_fs_channel->bs_channel = spdk_bs_alloc_io_channel(fs->bs); 502 fs->md_target.md_fs_channel->send_request = __send_request_direct; 503 fs->sync_target.sync_fs_channel->bs_channel = spdk_bs_alloc_io_channel(fs->bs); 504 fs->sync_target.sync_fs_channel->send_request = __send_request_direct; 505 506 initialize_global_cache(); 507 } 508 509 static void 510 init_cb(void *ctx, struct spdk_blob_store *bs, int bserrno) 511 { 512 struct spdk_fs_request *req = ctx; 513 struct spdk_fs_cb_args *args = &req->args; 514 struct spdk_filesystem *fs = args->fs; 515 516 if (bserrno == 0) { 517 common_fs_bs_init(fs, bs); 518 } else { 519 free(fs); 520 fs = NULL; 521 } 522 523 args->fn.fs_op_with_handle(args->arg, fs, bserrno); 524 free_fs_request(req); 525 } 526 527 static struct spdk_filesystem * 528 fs_alloc(struct spdk_bs_dev *dev, fs_send_request_fn send_request_fn) 529 { 530 struct spdk_filesystem *fs; 531 532 fs = calloc(1, sizeof(*fs)); 533 if (fs == NULL) { 534 return NULL; 535 } 536 537 fs->bdev = dev; 538 fs->send_request = send_request_fn; 539 TAILQ_INIT(&fs->files); 540 541 fs->md_target.max_ops = 512; 542 spdk_io_device_register(&fs->md_target, fs_md_channel_create, fs_channel_destroy, 543 sizeof(struct spdk_fs_channel), "blobfs_md"); 544 fs->md_target.md_io_channel = spdk_get_io_channel(&fs->md_target); 545 fs->md_target.md_fs_channel = spdk_io_channel_get_ctx(fs->md_target.md_io_channel); 546 547 fs->sync_target.max_ops = 512; 548 spdk_io_device_register(&fs->sync_target, fs_sync_channel_create, fs_channel_destroy, 549 sizeof(struct spdk_fs_channel), "blobfs_sync"); 550 fs->sync_target.sync_io_channel = spdk_get_io_channel(&fs->sync_target); 551 fs->sync_target.sync_fs_channel = spdk_io_channel_get_ctx(fs->sync_target.sync_io_channel); 552 553 fs->io_target.max_ops = 512; 554 spdk_io_device_register(&fs->io_target, fs_io_channel_create, fs_channel_destroy, 555 sizeof(struct spdk_fs_channel), "blobfs_io"); 556 557 return fs; 558 } 559 560 static void 561 __wake_caller(void *arg, int fserrno) 562 { 563 struct spdk_fs_cb_args *args = arg; 564 565 if ((args->rwerrno != NULL) && (*(args->rwerrno) == 0) && fserrno) { 566 *(args->rwerrno) = fserrno; 567 } 568 args->rc = fserrno; 569 sem_post(args->sem); 570 } 571 572 void 573 spdk_fs_init(struct spdk_bs_dev *dev, struct spdk_blobfs_opts *opt, 574 fs_send_request_fn send_request_fn, 575 spdk_fs_op_with_handle_complete cb_fn, void *cb_arg) 576 { 577 struct spdk_filesystem *fs; 578 struct spdk_fs_request *req; 579 struct spdk_fs_cb_args *args; 580 struct spdk_bs_opts opts = {}; 581 582 fs = fs_alloc(dev, send_request_fn); 583 if (fs == NULL) { 584 cb_fn(cb_arg, NULL, -ENOMEM); 585 return; 586 } 587 588 req = alloc_fs_request(fs->md_target.md_fs_channel); 589 if (req == NULL) { 590 fs_free_io_channels(fs); 591 fs_io_device_unregister(fs); 592 cb_fn(cb_arg, NULL, -ENOMEM); 593 return; 594 } 595 596 args = &req->args; 597 args->fn.fs_op_with_handle = cb_fn; 598 args->arg = cb_arg; 599 args->fs = fs; 600 601 spdk_bs_opts_init(&opts, sizeof(opts)); 602 snprintf(opts.bstype.bstype, sizeof(opts.bstype.bstype), SPDK_BLOBFS_SIGNATURE); 603 if (opt) { 604 opts.cluster_sz = opt->cluster_sz; 605 } 606 spdk_bs_init(dev, &opts, init_cb, req); 607 } 608 609 static struct spdk_file * 610 file_alloc(struct spdk_filesystem *fs) 611 { 612 struct spdk_file *file; 613 614 file = calloc(1, sizeof(*file)); 615 if (file == NULL) { 616 return NULL; 617 } 618 619 file->tree = calloc(1, sizeof(*file->tree)); 620 if (file->tree == NULL) { 621 free(file); 622 return NULL; 623 } 624 625 if (pthread_spin_init(&file->lock, 0)) { 626 free(file->tree); 627 free(file); 628 return NULL; 629 } 630 631 file->fs = fs; 632 TAILQ_INIT(&file->open_requests); 633 TAILQ_INIT(&file->sync_requests); 634 TAILQ_INSERT_TAIL(&fs->files, file, tailq); 635 file->priority = SPDK_FILE_PRIORITY_LOW; 636 return file; 637 } 638 639 static void fs_load_done(void *ctx, int bserrno); 640 641 static int 642 _handle_deleted_files(struct spdk_fs_request *req) 643 { 644 struct spdk_fs_cb_args *args = &req->args; 645 struct spdk_filesystem *fs = args->fs; 646 647 if (!TAILQ_EMPTY(&args->op.fs_load.deleted_files)) { 648 struct spdk_deleted_file *deleted_file; 649 650 deleted_file = TAILQ_FIRST(&args->op.fs_load.deleted_files); 651 TAILQ_REMOVE(&args->op.fs_load.deleted_files, deleted_file, tailq); 652 spdk_bs_delete_blob(fs->bs, deleted_file->id, fs_load_done, req); 653 free(deleted_file); 654 return 0; 655 } 656 657 return 1; 658 } 659 660 static void 661 fs_load_done(void *ctx, int bserrno) 662 { 663 struct spdk_fs_request *req = ctx; 664 struct spdk_fs_cb_args *args = &req->args; 665 struct spdk_filesystem *fs = args->fs; 666 667 /* The filesystem has been loaded. Now check if there are any files that 668 * were marked for deletion before last unload. Do not complete the 669 * fs_load callback until all of them have been deleted on disk. 670 */ 671 if (_handle_deleted_files(req) == 0) { 672 /* We found a file that's been marked for deleting but not actually 673 * deleted yet. This function will get called again once the delete 674 * operation is completed. 675 */ 676 return; 677 } 678 679 args->fn.fs_op_with_handle(args->arg, fs, 0); 680 free_fs_request(req); 681 682 } 683 684 static void 685 iter_cb(void *ctx, struct spdk_blob *blob, int rc) 686 { 687 struct spdk_fs_request *req = ctx; 688 struct spdk_fs_cb_args *args = &req->args; 689 struct spdk_filesystem *fs = args->fs; 690 uint64_t *length; 691 const char *name; 692 uint32_t *is_deleted; 693 size_t value_len; 694 695 if (rc < 0) { 696 args->fn.fs_op_with_handle(args->arg, fs, rc); 697 free_fs_request(req); 698 return; 699 } 700 701 rc = spdk_blob_get_xattr_value(blob, "name", (const void **)&name, &value_len); 702 if (rc < 0) { 703 args->fn.fs_op_with_handle(args->arg, fs, rc); 704 free_fs_request(req); 705 return; 706 } 707 708 rc = spdk_blob_get_xattr_value(blob, "length", (const void **)&length, &value_len); 709 if (rc < 0) { 710 args->fn.fs_op_with_handle(args->arg, fs, rc); 711 free_fs_request(req); 712 return; 713 } 714 715 assert(value_len == 8); 716 717 /* This file could be deleted last time without close it, then app crashed, so we delete it now */ 718 rc = spdk_blob_get_xattr_value(blob, "is_deleted", (const void **)&is_deleted, &value_len); 719 if (rc < 0) { 720 struct spdk_file *f; 721 722 f = file_alloc(fs); 723 if (f == NULL) { 724 SPDK_ERRLOG("Cannot allocate file to handle deleted file on disk\n"); 725 args->fn.fs_op_with_handle(args->arg, fs, -ENOMEM); 726 free_fs_request(req); 727 return; 728 } 729 730 f->name = strdup(name); 731 if (!f->name) { 732 SPDK_ERRLOG("Cannot allocate memory for file name\n"); 733 args->fn.fs_op_with_handle(args->arg, fs, -ENOMEM); 734 free_fs_request(req); 735 file_free(f); 736 return; 737 } 738 739 f->blobid = spdk_blob_get_id(blob); 740 f->length = *length; 741 f->length_flushed = *length; 742 f->length_xattr = *length; 743 f->append_pos = *length; 744 SPDK_DEBUGLOG(blobfs, "added file %s length=%ju\n", f->name, f->length); 745 } else { 746 struct spdk_deleted_file *deleted_file; 747 748 deleted_file = calloc(1, sizeof(*deleted_file)); 749 if (deleted_file == NULL) { 750 args->fn.fs_op_with_handle(args->arg, fs, -ENOMEM); 751 free_fs_request(req); 752 return; 753 } 754 deleted_file->id = spdk_blob_get_id(blob); 755 TAILQ_INSERT_TAIL(&args->op.fs_load.deleted_files, deleted_file, tailq); 756 } 757 } 758 759 static void 760 load_cb(void *ctx, struct spdk_blob_store *bs, int bserrno) 761 { 762 struct spdk_fs_request *req = ctx; 763 struct spdk_fs_cb_args *args = &req->args; 764 struct spdk_filesystem *fs = args->fs; 765 struct spdk_bs_type bstype; 766 static const struct spdk_bs_type blobfs_type = {SPDK_BLOBFS_SIGNATURE}; 767 static const struct spdk_bs_type zeros; 768 769 if (bserrno != 0) { 770 args->fn.fs_op_with_handle(args->arg, NULL, bserrno); 771 free_fs_request(req); 772 fs_free_io_channels(fs); 773 fs_io_device_unregister(fs); 774 return; 775 } 776 777 bstype = spdk_bs_get_bstype(bs); 778 779 if (!memcmp(&bstype, &zeros, sizeof(bstype))) { 780 SPDK_DEBUGLOG(blobfs, "assigning bstype\n"); 781 spdk_bs_set_bstype(bs, blobfs_type); 782 } else if (memcmp(&bstype, &blobfs_type, sizeof(bstype))) { 783 SPDK_ERRLOG("not blobfs\n"); 784 SPDK_LOGDUMP(blobfs, "bstype", &bstype, sizeof(bstype)); 785 args->fn.fs_op_with_handle(args->arg, NULL, -EINVAL); 786 free_fs_request(req); 787 fs_free_io_channels(fs); 788 fs_io_device_unregister(fs); 789 return; 790 } 791 792 common_fs_bs_init(fs, bs); 793 fs_load_done(req, 0); 794 } 795 796 static void 797 fs_io_device_unregister(struct spdk_filesystem *fs) 798 { 799 assert(fs != NULL); 800 spdk_io_device_unregister(&fs->md_target, NULL); 801 spdk_io_device_unregister(&fs->sync_target, NULL); 802 spdk_io_device_unregister(&fs->io_target, NULL); 803 free(fs); 804 } 805 806 static void 807 fs_free_io_channels(struct spdk_filesystem *fs) 808 { 809 assert(fs != NULL); 810 spdk_fs_free_io_channel(fs->md_target.md_io_channel); 811 spdk_fs_free_io_channel(fs->sync_target.sync_io_channel); 812 } 813 814 void 815 spdk_fs_load(struct spdk_bs_dev *dev, fs_send_request_fn send_request_fn, 816 spdk_fs_op_with_handle_complete cb_fn, void *cb_arg) 817 { 818 struct spdk_filesystem *fs; 819 struct spdk_fs_cb_args *args; 820 struct spdk_fs_request *req; 821 struct spdk_bs_opts bs_opts; 822 823 fs = fs_alloc(dev, send_request_fn); 824 if (fs == NULL) { 825 cb_fn(cb_arg, NULL, -ENOMEM); 826 return; 827 } 828 829 req = alloc_fs_request(fs->md_target.md_fs_channel); 830 if (req == NULL) { 831 fs_free_io_channels(fs); 832 fs_io_device_unregister(fs); 833 cb_fn(cb_arg, NULL, -ENOMEM); 834 return; 835 } 836 837 args = &req->args; 838 args->fn.fs_op_with_handle = cb_fn; 839 args->arg = cb_arg; 840 args->fs = fs; 841 TAILQ_INIT(&args->op.fs_load.deleted_files); 842 spdk_bs_opts_init(&bs_opts, sizeof(bs_opts)); 843 bs_opts.iter_cb_fn = iter_cb; 844 bs_opts.iter_cb_arg = req; 845 spdk_bs_load(dev, &bs_opts, load_cb, req); 846 } 847 848 static void 849 unload_cb(void *ctx, int bserrno) 850 { 851 struct spdk_fs_request *req = ctx; 852 struct spdk_fs_cb_args *args = &req->args; 853 struct spdk_filesystem *fs = args->fs; 854 struct spdk_file *file, *tmp; 855 856 TAILQ_FOREACH_SAFE(file, &fs->files, tailq, tmp) { 857 TAILQ_REMOVE(&fs->files, file, tailq); 858 file_free(file); 859 } 860 861 free_global_cache(); 862 863 args->fn.fs_op(args->arg, bserrno); 864 free(req); 865 866 fs_io_device_unregister(fs); 867 } 868 869 void 870 spdk_fs_unload(struct spdk_filesystem *fs, spdk_fs_op_complete cb_fn, void *cb_arg) 871 { 872 struct spdk_fs_request *req; 873 struct spdk_fs_cb_args *args; 874 875 /* 876 * We must free the md_channel before unloading the blobstore, so just 877 * allocate this request from the general heap. 878 */ 879 req = calloc(1, sizeof(*req)); 880 if (req == NULL) { 881 cb_fn(cb_arg, -ENOMEM); 882 return; 883 } 884 885 args = &req->args; 886 args->fn.fs_op = cb_fn; 887 args->arg = cb_arg; 888 args->fs = fs; 889 890 fs_free_io_channels(fs); 891 spdk_bs_unload(fs->bs, unload_cb, req); 892 } 893 894 static struct spdk_file * 895 fs_find_file(struct spdk_filesystem *fs, const char *name) 896 { 897 struct spdk_file *file; 898 899 TAILQ_FOREACH(file, &fs->files, tailq) { 900 if (!strncmp(name, file->name, SPDK_FILE_NAME_MAX)) { 901 return file; 902 } 903 } 904 905 return NULL; 906 } 907 908 void 909 spdk_fs_file_stat_async(struct spdk_filesystem *fs, const char *name, 910 spdk_file_stat_op_complete cb_fn, void *cb_arg) 911 { 912 struct spdk_file_stat stat; 913 struct spdk_file *f = NULL; 914 915 if (strnlen(name, SPDK_FILE_NAME_MAX + 1) == SPDK_FILE_NAME_MAX + 1) { 916 cb_fn(cb_arg, NULL, -ENAMETOOLONG); 917 return; 918 } 919 920 f = fs_find_file(fs, name); 921 if (f != NULL) { 922 stat.blobid = f->blobid; 923 stat.size = f->append_pos >= f->length ? f->append_pos : f->length; 924 cb_fn(cb_arg, &stat, 0); 925 return; 926 } 927 928 cb_fn(cb_arg, NULL, -ENOENT); 929 } 930 931 static void 932 __copy_stat(void *arg, struct spdk_file_stat *stat, int fserrno) 933 { 934 struct spdk_fs_request *req = arg; 935 struct spdk_fs_cb_args *args = &req->args; 936 937 args->rc = fserrno; 938 if (fserrno == 0) { 939 memcpy(args->arg, stat, sizeof(*stat)); 940 } 941 sem_post(args->sem); 942 } 943 944 static void 945 __file_stat(void *arg) 946 { 947 struct spdk_fs_request *req = arg; 948 struct spdk_fs_cb_args *args = &req->args; 949 950 spdk_fs_file_stat_async(args->fs, args->op.stat.name, 951 args->fn.stat_op, req); 952 } 953 954 int 955 spdk_fs_file_stat(struct spdk_filesystem *fs, struct spdk_fs_thread_ctx *ctx, 956 const char *name, struct spdk_file_stat *stat) 957 { 958 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 959 struct spdk_fs_request *req; 960 int rc; 961 962 req = alloc_fs_request(channel); 963 if (req == NULL) { 964 SPDK_ERRLOG("Cannot allocate stat req on file=%s\n", name); 965 return -ENOMEM; 966 } 967 968 req->args.fs = fs; 969 req->args.op.stat.name = name; 970 req->args.fn.stat_op = __copy_stat; 971 req->args.arg = stat; 972 req->args.sem = &channel->sem; 973 channel->send_request(__file_stat, req); 974 sem_wait(&channel->sem); 975 976 rc = req->args.rc; 977 free_fs_request(req); 978 979 return rc; 980 } 981 982 static void 983 fs_create_blob_close_cb(void *ctx, int bserrno) 984 { 985 int rc; 986 struct spdk_fs_request *req = ctx; 987 struct spdk_fs_cb_args *args = &req->args; 988 989 rc = args->rc ? args->rc : bserrno; 990 args->fn.file_op(args->arg, rc); 991 free_fs_request(req); 992 } 993 994 static void 995 fs_create_blob_resize_cb(void *ctx, int bserrno) 996 { 997 struct spdk_fs_request *req = ctx; 998 struct spdk_fs_cb_args *args = &req->args; 999 struct spdk_file *f = args->file; 1000 struct spdk_blob *blob = args->op.create.blob; 1001 uint64_t length = 0; 1002 1003 args->rc = bserrno; 1004 if (bserrno) { 1005 spdk_blob_close(blob, fs_create_blob_close_cb, args); 1006 return; 1007 } 1008 1009 spdk_blob_set_xattr(blob, "name", f->name, strlen(f->name) + 1); 1010 spdk_blob_set_xattr(blob, "length", &length, sizeof(length)); 1011 1012 spdk_blob_close(blob, fs_create_blob_close_cb, args); 1013 } 1014 1015 static void 1016 fs_create_blob_open_cb(void *ctx, struct spdk_blob *blob, int bserrno) 1017 { 1018 struct spdk_fs_request *req = ctx; 1019 struct spdk_fs_cb_args *args = &req->args; 1020 1021 if (bserrno) { 1022 args->fn.file_op(args->arg, bserrno); 1023 free_fs_request(req); 1024 return; 1025 } 1026 1027 args->op.create.blob = blob; 1028 spdk_blob_resize(blob, 1, fs_create_blob_resize_cb, req); 1029 } 1030 1031 static void 1032 fs_create_blob_create_cb(void *ctx, spdk_blob_id blobid, int bserrno) 1033 { 1034 struct spdk_fs_request *req = ctx; 1035 struct spdk_fs_cb_args *args = &req->args; 1036 struct spdk_file *f = args->file; 1037 1038 if (bserrno) { 1039 args->fn.file_op(args->arg, bserrno); 1040 free_fs_request(req); 1041 return; 1042 } 1043 1044 f->blobid = blobid; 1045 spdk_bs_open_blob(f->fs->bs, blobid, fs_create_blob_open_cb, req); 1046 } 1047 1048 void 1049 spdk_fs_create_file_async(struct spdk_filesystem *fs, const char *name, 1050 spdk_file_op_complete cb_fn, void *cb_arg) 1051 { 1052 struct spdk_file *file; 1053 struct spdk_fs_request *req; 1054 struct spdk_fs_cb_args *args; 1055 1056 if (strnlen(name, SPDK_FILE_NAME_MAX + 1) == SPDK_FILE_NAME_MAX + 1) { 1057 cb_fn(cb_arg, -ENAMETOOLONG); 1058 return; 1059 } 1060 1061 file = fs_find_file(fs, name); 1062 if (file != NULL) { 1063 cb_fn(cb_arg, -EEXIST); 1064 return; 1065 } 1066 1067 file = file_alloc(fs); 1068 if (file == NULL) { 1069 SPDK_ERRLOG("Cannot allocate new file for creation\n"); 1070 cb_fn(cb_arg, -ENOMEM); 1071 return; 1072 } 1073 1074 req = alloc_fs_request(fs->md_target.md_fs_channel); 1075 if (req == NULL) { 1076 SPDK_ERRLOG("Cannot allocate create async req for file=%s\n", name); 1077 TAILQ_REMOVE(&fs->files, file, tailq); 1078 file_free(file); 1079 cb_fn(cb_arg, -ENOMEM); 1080 return; 1081 } 1082 1083 args = &req->args; 1084 args->file = file; 1085 args->fn.file_op = cb_fn; 1086 args->arg = cb_arg; 1087 1088 file->name = strdup(name); 1089 if (!file->name) { 1090 SPDK_ERRLOG("Cannot allocate file->name for file=%s\n", name); 1091 free_fs_request(req); 1092 TAILQ_REMOVE(&fs->files, file, tailq); 1093 file_free(file); 1094 cb_fn(cb_arg, -ENOMEM); 1095 return; 1096 } 1097 spdk_bs_create_blob(fs->bs, fs_create_blob_create_cb, args); 1098 } 1099 1100 static void 1101 __fs_create_file_done(void *arg, int fserrno) 1102 { 1103 struct spdk_fs_request *req = arg; 1104 struct spdk_fs_cb_args *args = &req->args; 1105 1106 __wake_caller(args, fserrno); 1107 SPDK_DEBUGLOG(blobfs, "file=%s\n", args->op.create.name); 1108 } 1109 1110 static void 1111 __fs_create_file(void *arg) 1112 { 1113 struct spdk_fs_request *req = arg; 1114 struct spdk_fs_cb_args *args = &req->args; 1115 1116 SPDK_DEBUGLOG(blobfs, "file=%s\n", args->op.create.name); 1117 spdk_fs_create_file_async(args->fs, args->op.create.name, __fs_create_file_done, req); 1118 } 1119 1120 int 1121 spdk_fs_create_file(struct spdk_filesystem *fs, struct spdk_fs_thread_ctx *ctx, const char *name) 1122 { 1123 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 1124 struct spdk_fs_request *req; 1125 struct spdk_fs_cb_args *args; 1126 int rc; 1127 1128 SPDK_DEBUGLOG(blobfs, "file=%s\n", name); 1129 1130 req = alloc_fs_request(channel); 1131 if (req == NULL) { 1132 SPDK_ERRLOG("Cannot allocate req to create file=%s\n", name); 1133 return -ENOMEM; 1134 } 1135 1136 args = &req->args; 1137 args->fs = fs; 1138 args->op.create.name = name; 1139 args->sem = &channel->sem; 1140 fs->send_request(__fs_create_file, req); 1141 sem_wait(&channel->sem); 1142 rc = args->rc; 1143 free_fs_request(req); 1144 1145 return rc; 1146 } 1147 1148 static void 1149 fs_open_blob_done(void *ctx, struct spdk_blob *blob, int bserrno) 1150 { 1151 struct spdk_fs_request *req = ctx; 1152 struct spdk_fs_cb_args *args = &req->args; 1153 struct spdk_file *f = args->file; 1154 1155 f->blob = blob; 1156 while (!TAILQ_EMPTY(&f->open_requests)) { 1157 req = TAILQ_FIRST(&f->open_requests); 1158 args = &req->args; 1159 TAILQ_REMOVE(&f->open_requests, req, args.op.open.tailq); 1160 spdk_trace_record(TRACE_BLOBFS_OPEN, 0, 0, 0, f->name); 1161 args->fn.file_op_with_handle(args->arg, f, bserrno); 1162 free_fs_request(req); 1163 } 1164 } 1165 1166 static void 1167 fs_open_blob_create_cb(void *ctx, int bserrno) 1168 { 1169 struct spdk_fs_request *req = ctx; 1170 struct spdk_fs_cb_args *args = &req->args; 1171 struct spdk_file *file = args->file; 1172 struct spdk_filesystem *fs = args->fs; 1173 1174 if (file == NULL) { 1175 /* 1176 * This is from an open with CREATE flag - the file 1177 * is now created so look it up in the file list for this 1178 * filesystem. 1179 */ 1180 file = fs_find_file(fs, args->op.open.name); 1181 assert(file != NULL); 1182 args->file = file; 1183 } 1184 1185 file->ref_count++; 1186 TAILQ_INSERT_TAIL(&file->open_requests, req, args.op.open.tailq); 1187 if (file->ref_count == 1) { 1188 assert(file->blob == NULL); 1189 spdk_bs_open_blob(fs->bs, file->blobid, fs_open_blob_done, req); 1190 } else if (file->blob != NULL) { 1191 fs_open_blob_done(req, file->blob, 0); 1192 } else { 1193 /* 1194 * The blob open for this file is in progress due to a previous 1195 * open request. When that open completes, it will invoke the 1196 * open callback for this request. 1197 */ 1198 } 1199 } 1200 1201 void 1202 spdk_fs_open_file_async(struct spdk_filesystem *fs, const char *name, uint32_t flags, 1203 spdk_file_op_with_handle_complete cb_fn, void *cb_arg) 1204 { 1205 struct spdk_file *f = NULL; 1206 struct spdk_fs_request *req; 1207 struct spdk_fs_cb_args *args; 1208 1209 if (strnlen(name, SPDK_FILE_NAME_MAX + 1) == SPDK_FILE_NAME_MAX + 1) { 1210 cb_fn(cb_arg, NULL, -ENAMETOOLONG); 1211 return; 1212 } 1213 1214 f = fs_find_file(fs, name); 1215 if (f == NULL && !(flags & SPDK_BLOBFS_OPEN_CREATE)) { 1216 cb_fn(cb_arg, NULL, -ENOENT); 1217 return; 1218 } 1219 1220 if (f != NULL && f->is_deleted == true) { 1221 cb_fn(cb_arg, NULL, -ENOENT); 1222 return; 1223 } 1224 1225 req = alloc_fs_request(fs->md_target.md_fs_channel); 1226 if (req == NULL) { 1227 SPDK_ERRLOG("Cannot allocate async open req for file=%s\n", name); 1228 cb_fn(cb_arg, NULL, -ENOMEM); 1229 return; 1230 } 1231 1232 args = &req->args; 1233 args->fn.file_op_with_handle = cb_fn; 1234 args->arg = cb_arg; 1235 args->file = f; 1236 args->fs = fs; 1237 args->op.open.name = name; 1238 1239 if (f == NULL) { 1240 spdk_fs_create_file_async(fs, name, fs_open_blob_create_cb, req); 1241 } else { 1242 fs_open_blob_create_cb(req, 0); 1243 } 1244 } 1245 1246 static void 1247 __fs_open_file_done(void *arg, struct spdk_file *file, int bserrno) 1248 { 1249 struct spdk_fs_request *req = arg; 1250 struct spdk_fs_cb_args *args = &req->args; 1251 1252 args->file = file; 1253 __wake_caller(args, bserrno); 1254 SPDK_DEBUGLOG(blobfs, "file=%s\n", args->op.open.name); 1255 } 1256 1257 static void 1258 __fs_open_file(void *arg) 1259 { 1260 struct spdk_fs_request *req = arg; 1261 struct spdk_fs_cb_args *args = &req->args; 1262 1263 SPDK_DEBUGLOG(blobfs, "file=%s\n", args->op.open.name); 1264 spdk_fs_open_file_async(args->fs, args->op.open.name, args->op.open.flags, 1265 __fs_open_file_done, req); 1266 } 1267 1268 int 1269 spdk_fs_open_file(struct spdk_filesystem *fs, struct spdk_fs_thread_ctx *ctx, 1270 const char *name, uint32_t flags, struct spdk_file **file) 1271 { 1272 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 1273 struct spdk_fs_request *req; 1274 struct spdk_fs_cb_args *args; 1275 int rc; 1276 1277 SPDK_DEBUGLOG(blobfs, "file=%s\n", name); 1278 1279 req = alloc_fs_request(channel); 1280 if (req == NULL) { 1281 SPDK_ERRLOG("Cannot allocate req for opening file=%s\n", name); 1282 return -ENOMEM; 1283 } 1284 1285 args = &req->args; 1286 args->fs = fs; 1287 args->op.open.name = name; 1288 args->op.open.flags = flags; 1289 args->sem = &channel->sem; 1290 fs->send_request(__fs_open_file, req); 1291 sem_wait(&channel->sem); 1292 rc = args->rc; 1293 if (rc == 0) { 1294 *file = args->file; 1295 } else { 1296 *file = NULL; 1297 } 1298 free_fs_request(req); 1299 1300 return rc; 1301 } 1302 1303 static void 1304 fs_rename_blob_close_cb(void *ctx, int bserrno) 1305 { 1306 struct spdk_fs_request *req = ctx; 1307 struct spdk_fs_cb_args *args = &req->args; 1308 1309 args->fn.fs_op(args->arg, bserrno); 1310 free_fs_request(req); 1311 } 1312 1313 static void 1314 fs_rename_blob_open_cb(void *ctx, struct spdk_blob *blob, int bserrno) 1315 { 1316 struct spdk_fs_request *req = ctx; 1317 struct spdk_fs_cb_args *args = &req->args; 1318 const char *new_name = args->op.rename.new_name; 1319 1320 spdk_blob_set_xattr(blob, "name", new_name, strlen(new_name) + 1); 1321 spdk_blob_close(blob, fs_rename_blob_close_cb, req); 1322 } 1323 1324 static void 1325 _fs_md_rename_file(struct spdk_fs_request *req) 1326 { 1327 struct spdk_fs_cb_args *args = &req->args; 1328 struct spdk_file *f; 1329 1330 f = fs_find_file(args->fs, args->op.rename.old_name); 1331 if (f == NULL) { 1332 args->fn.fs_op(args->arg, -ENOENT); 1333 free_fs_request(req); 1334 return; 1335 } 1336 1337 free(f->name); 1338 f->name = strdup(args->op.rename.new_name); 1339 if (!f->name) { 1340 SPDK_ERRLOG("Cannot allocate memory for file name\n"); 1341 args->fn.fs_op(args->arg, -ENOMEM); 1342 free_fs_request(req); 1343 return; 1344 } 1345 1346 args->file = f; 1347 spdk_bs_open_blob(args->fs->bs, f->blobid, fs_rename_blob_open_cb, req); 1348 } 1349 1350 static void 1351 fs_rename_delete_done(void *arg, int fserrno) 1352 { 1353 _fs_md_rename_file(arg); 1354 } 1355 1356 void 1357 spdk_fs_rename_file_async(struct spdk_filesystem *fs, 1358 const char *old_name, const char *new_name, 1359 spdk_file_op_complete cb_fn, void *cb_arg) 1360 { 1361 struct spdk_file *f; 1362 struct spdk_fs_request *req; 1363 struct spdk_fs_cb_args *args; 1364 1365 SPDK_DEBUGLOG(blobfs, "old=%s new=%s\n", old_name, new_name); 1366 if (strnlen(new_name, SPDK_FILE_NAME_MAX + 1) == SPDK_FILE_NAME_MAX + 1) { 1367 cb_fn(cb_arg, -ENAMETOOLONG); 1368 return; 1369 } 1370 1371 req = alloc_fs_request(fs->md_target.md_fs_channel); 1372 if (req == NULL) { 1373 SPDK_ERRLOG("Cannot allocate rename async req for renaming file from %s to %s\n", old_name, 1374 new_name); 1375 cb_fn(cb_arg, -ENOMEM); 1376 return; 1377 } 1378 1379 args = &req->args; 1380 args->fn.fs_op = cb_fn; 1381 args->fs = fs; 1382 args->arg = cb_arg; 1383 args->op.rename.old_name = old_name; 1384 args->op.rename.new_name = new_name; 1385 1386 f = fs_find_file(fs, new_name); 1387 if (f == NULL) { 1388 _fs_md_rename_file(req); 1389 return; 1390 } 1391 1392 /* 1393 * The rename overwrites an existing file. So delete the existing file, then 1394 * do the actual rename. 1395 */ 1396 spdk_fs_delete_file_async(fs, new_name, fs_rename_delete_done, req); 1397 } 1398 1399 static void 1400 __fs_rename_file_done(void *arg, int fserrno) 1401 { 1402 struct spdk_fs_request *req = arg; 1403 struct spdk_fs_cb_args *args = &req->args; 1404 1405 __wake_caller(args, fserrno); 1406 } 1407 1408 static void 1409 __fs_rename_file(void *arg) 1410 { 1411 struct spdk_fs_request *req = arg; 1412 struct spdk_fs_cb_args *args = &req->args; 1413 1414 spdk_fs_rename_file_async(args->fs, args->op.rename.old_name, args->op.rename.new_name, 1415 __fs_rename_file_done, req); 1416 } 1417 1418 int 1419 spdk_fs_rename_file(struct spdk_filesystem *fs, struct spdk_fs_thread_ctx *ctx, 1420 const char *old_name, const char *new_name) 1421 { 1422 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 1423 struct spdk_fs_request *req; 1424 struct spdk_fs_cb_args *args; 1425 int rc; 1426 1427 req = alloc_fs_request(channel); 1428 if (req == NULL) { 1429 SPDK_ERRLOG("Cannot allocate rename req for file=%s\n", old_name); 1430 return -ENOMEM; 1431 } 1432 1433 args = &req->args; 1434 1435 args->fs = fs; 1436 args->op.rename.old_name = old_name; 1437 args->op.rename.new_name = new_name; 1438 args->sem = &channel->sem; 1439 fs->send_request(__fs_rename_file, req); 1440 sem_wait(&channel->sem); 1441 rc = args->rc; 1442 free_fs_request(req); 1443 return rc; 1444 } 1445 1446 static void 1447 blob_delete_cb(void *ctx, int bserrno) 1448 { 1449 struct spdk_fs_request *req = ctx; 1450 struct spdk_fs_cb_args *args = &req->args; 1451 1452 args->fn.file_op(args->arg, bserrno); 1453 free_fs_request(req); 1454 } 1455 1456 void 1457 spdk_fs_delete_file_async(struct spdk_filesystem *fs, const char *name, 1458 spdk_file_op_complete cb_fn, void *cb_arg) 1459 { 1460 struct spdk_file *f; 1461 spdk_blob_id blobid; 1462 struct spdk_fs_request *req; 1463 struct spdk_fs_cb_args *args; 1464 1465 SPDK_DEBUGLOG(blobfs, "file=%s\n", name); 1466 1467 if (strnlen(name, SPDK_FILE_NAME_MAX + 1) == SPDK_FILE_NAME_MAX + 1) { 1468 cb_fn(cb_arg, -ENAMETOOLONG); 1469 return; 1470 } 1471 1472 f = fs_find_file(fs, name); 1473 if (f == NULL) { 1474 SPDK_ERRLOG("Cannot find the file=%s to deleted\n", name); 1475 cb_fn(cb_arg, -ENOENT); 1476 return; 1477 } 1478 1479 req = alloc_fs_request(fs->md_target.md_fs_channel); 1480 if (req == NULL) { 1481 SPDK_ERRLOG("Cannot allocate the req for the file=%s to deleted\n", name); 1482 cb_fn(cb_arg, -ENOMEM); 1483 return; 1484 } 1485 1486 args = &req->args; 1487 args->fn.file_op = cb_fn; 1488 args->arg = cb_arg; 1489 1490 if (f->ref_count > 0) { 1491 /* If the ref > 0, we mark the file as deleted and delete it when we close it. */ 1492 f->is_deleted = true; 1493 spdk_blob_set_xattr(f->blob, "is_deleted", &f->is_deleted, sizeof(bool)); 1494 spdk_blob_sync_md(f->blob, blob_delete_cb, req); 1495 return; 1496 } 1497 1498 blobid = f->blobid; 1499 TAILQ_REMOVE(&fs->files, f, tailq); 1500 1501 file_free(f); 1502 1503 spdk_bs_delete_blob(fs->bs, blobid, blob_delete_cb, req); 1504 } 1505 1506 static void 1507 __fs_delete_file_done(void *arg, int fserrno) 1508 { 1509 struct spdk_fs_request *req = arg; 1510 struct spdk_fs_cb_args *args = &req->args; 1511 1512 spdk_trace_record(TRACE_BLOBFS_DELETE_DONE, 0, 0, 0, args->op.delete.name); 1513 __wake_caller(args, fserrno); 1514 } 1515 1516 static void 1517 __fs_delete_file(void *arg) 1518 { 1519 struct spdk_fs_request *req = arg; 1520 struct spdk_fs_cb_args *args = &req->args; 1521 1522 spdk_trace_record(TRACE_BLOBFS_DELETE_START, 0, 0, 0, args->op.delete.name); 1523 spdk_fs_delete_file_async(args->fs, args->op.delete.name, __fs_delete_file_done, req); 1524 } 1525 1526 int 1527 spdk_fs_delete_file(struct spdk_filesystem *fs, struct spdk_fs_thread_ctx *ctx, 1528 const char *name) 1529 { 1530 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 1531 struct spdk_fs_request *req; 1532 struct spdk_fs_cb_args *args; 1533 int rc; 1534 1535 req = alloc_fs_request(channel); 1536 if (req == NULL) { 1537 SPDK_DEBUGLOG(blobfs, "Cannot allocate req to delete file=%s\n", name); 1538 return -ENOMEM; 1539 } 1540 1541 args = &req->args; 1542 args->fs = fs; 1543 args->op.delete.name = name; 1544 args->sem = &channel->sem; 1545 fs->send_request(__fs_delete_file, req); 1546 sem_wait(&channel->sem); 1547 rc = args->rc; 1548 free_fs_request(req); 1549 1550 return rc; 1551 } 1552 1553 spdk_fs_iter 1554 spdk_fs_iter_first(struct spdk_filesystem *fs) 1555 { 1556 struct spdk_file *f; 1557 1558 f = TAILQ_FIRST(&fs->files); 1559 return f; 1560 } 1561 1562 spdk_fs_iter 1563 spdk_fs_iter_next(spdk_fs_iter iter) 1564 { 1565 struct spdk_file *f = iter; 1566 1567 if (f == NULL) { 1568 return NULL; 1569 } 1570 1571 f = TAILQ_NEXT(f, tailq); 1572 return f; 1573 } 1574 1575 const char * 1576 spdk_file_get_name(struct spdk_file *file) 1577 { 1578 return file->name; 1579 } 1580 1581 uint64_t 1582 spdk_file_get_length(struct spdk_file *file) 1583 { 1584 uint64_t length; 1585 1586 assert(file != NULL); 1587 1588 length = file->append_pos >= file->length ? file->append_pos : file->length; 1589 SPDK_DEBUGLOG(blobfs, "file=%s length=0x%jx\n", file->name, length); 1590 return length; 1591 } 1592 1593 static void 1594 fs_truncate_complete_cb(void *ctx, int bserrno) 1595 { 1596 struct spdk_fs_request *req = ctx; 1597 struct spdk_fs_cb_args *args = &req->args; 1598 1599 args->fn.file_op(args->arg, bserrno); 1600 free_fs_request(req); 1601 } 1602 1603 static void 1604 fs_truncate_resize_cb(void *ctx, int bserrno) 1605 { 1606 struct spdk_fs_request *req = ctx; 1607 struct spdk_fs_cb_args *args = &req->args; 1608 struct spdk_file *file = args->file; 1609 uint64_t *length = &args->op.truncate.length; 1610 1611 if (bserrno) { 1612 args->fn.file_op(args->arg, bserrno); 1613 free_fs_request(req); 1614 return; 1615 } 1616 1617 spdk_blob_set_xattr(file->blob, "length", length, sizeof(*length)); 1618 1619 file->length = *length; 1620 if (file->append_pos > file->length) { 1621 file->append_pos = file->length; 1622 } 1623 1624 spdk_blob_sync_md(file->blob, fs_truncate_complete_cb, req); 1625 } 1626 1627 static uint64_t 1628 __bytes_to_clusters(uint64_t length, uint64_t cluster_sz) 1629 { 1630 return (length + cluster_sz - 1) / cluster_sz; 1631 } 1632 1633 void 1634 spdk_file_truncate_async(struct spdk_file *file, uint64_t length, 1635 spdk_file_op_complete cb_fn, void *cb_arg) 1636 { 1637 struct spdk_filesystem *fs; 1638 size_t num_clusters; 1639 struct spdk_fs_request *req; 1640 struct spdk_fs_cb_args *args; 1641 1642 SPDK_DEBUGLOG(blobfs, "file=%s old=0x%jx new=0x%jx\n", file->name, file->length, length); 1643 if (length == file->length) { 1644 cb_fn(cb_arg, 0); 1645 return; 1646 } 1647 1648 req = alloc_fs_request(file->fs->md_target.md_fs_channel); 1649 if (req == NULL) { 1650 cb_fn(cb_arg, -ENOMEM); 1651 return; 1652 } 1653 1654 args = &req->args; 1655 args->fn.file_op = cb_fn; 1656 args->arg = cb_arg; 1657 args->file = file; 1658 args->op.truncate.length = length; 1659 fs = file->fs; 1660 1661 num_clusters = __bytes_to_clusters(length, fs->bs_opts.cluster_sz); 1662 1663 spdk_blob_resize(file->blob, num_clusters, fs_truncate_resize_cb, req); 1664 } 1665 1666 static void 1667 __truncate(void *arg) 1668 { 1669 struct spdk_fs_request *req = arg; 1670 struct spdk_fs_cb_args *args = &req->args; 1671 1672 spdk_file_truncate_async(args->file, args->op.truncate.length, 1673 args->fn.file_op, args); 1674 } 1675 1676 int 1677 spdk_file_truncate(struct spdk_file *file, struct spdk_fs_thread_ctx *ctx, 1678 uint64_t length) 1679 { 1680 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 1681 struct spdk_fs_request *req; 1682 struct spdk_fs_cb_args *args; 1683 int rc; 1684 1685 req = alloc_fs_request(channel); 1686 if (req == NULL) { 1687 return -ENOMEM; 1688 } 1689 1690 args = &req->args; 1691 1692 args->file = file; 1693 args->op.truncate.length = length; 1694 args->fn.file_op = __wake_caller; 1695 args->sem = &channel->sem; 1696 1697 channel->send_request(__truncate, req); 1698 sem_wait(&channel->sem); 1699 rc = args->rc; 1700 free_fs_request(req); 1701 1702 return rc; 1703 } 1704 1705 static void 1706 __rw_done(void *ctx, int bserrno) 1707 { 1708 struct spdk_fs_request *req = ctx; 1709 struct spdk_fs_cb_args *args = &req->args; 1710 1711 spdk_free(args->op.rw.pin_buf); 1712 args->fn.file_op(args->arg, bserrno); 1713 free_fs_request(req); 1714 } 1715 1716 static void 1717 __read_done(void *ctx, int bserrno) 1718 { 1719 struct spdk_fs_request *req = ctx; 1720 struct spdk_fs_cb_args *args = &req->args; 1721 void *buf; 1722 1723 assert(req != NULL); 1724 buf = (void *)((uintptr_t)args->op.rw.pin_buf + (args->op.rw.offset & (args->op.rw.blocklen - 1))); 1725 if (args->op.rw.is_read) { 1726 spdk_copy_buf_to_iovs(args->iovs, args->iovcnt, buf, args->op.rw.length); 1727 __rw_done(req, 0); 1728 } else { 1729 spdk_copy_iovs_to_buf(buf, args->op.rw.length, args->iovs, args->iovcnt); 1730 spdk_blob_io_write(args->file->blob, args->op.rw.channel, 1731 args->op.rw.pin_buf, 1732 args->op.rw.start_lba, args->op.rw.num_lba, 1733 __rw_done, req); 1734 } 1735 } 1736 1737 static void 1738 __do_blob_read(void *ctx, int fserrno) 1739 { 1740 struct spdk_fs_request *req = ctx; 1741 struct spdk_fs_cb_args *args = &req->args; 1742 1743 if (fserrno) { 1744 __rw_done(req, fserrno); 1745 return; 1746 } 1747 spdk_blob_io_read(args->file->blob, args->op.rw.channel, 1748 args->op.rw.pin_buf, 1749 args->op.rw.start_lba, args->op.rw.num_lba, 1750 __read_done, req); 1751 } 1752 1753 static void 1754 __get_page_parameters(struct spdk_file *file, uint64_t offset, uint64_t length, 1755 uint64_t *start_lba, uint32_t *lba_size, uint64_t *num_lba) 1756 { 1757 uint64_t end_lba; 1758 1759 *lba_size = spdk_bs_get_io_unit_size(file->fs->bs); 1760 *start_lba = offset / *lba_size; 1761 end_lba = (offset + length - 1) / *lba_size; 1762 *num_lba = (end_lba - *start_lba + 1); 1763 } 1764 1765 static bool 1766 __is_lba_aligned(struct spdk_file *file, uint64_t offset, uint64_t length) 1767 { 1768 uint32_t lba_size = spdk_bs_get_io_unit_size(file->fs->bs); 1769 1770 if ((offset % lba_size == 0) && (length % lba_size == 0)) { 1771 return true; 1772 } 1773 1774 return false; 1775 } 1776 1777 static void 1778 _fs_request_setup_iovs(struct spdk_fs_request *req, struct iovec *iovs, uint32_t iovcnt) 1779 { 1780 uint32_t i; 1781 1782 for (i = 0; i < iovcnt; i++) { 1783 req->args.iovs[i].iov_base = iovs[i].iov_base; 1784 req->args.iovs[i].iov_len = iovs[i].iov_len; 1785 } 1786 } 1787 1788 static void 1789 __readvwritev(struct spdk_file *file, struct spdk_io_channel *_channel, 1790 struct iovec *iovs, uint32_t iovcnt, uint64_t offset, uint64_t length, 1791 spdk_file_op_complete cb_fn, void *cb_arg, int is_read) 1792 { 1793 struct spdk_fs_request *req; 1794 struct spdk_fs_cb_args *args; 1795 struct spdk_fs_channel *channel = spdk_io_channel_get_ctx(_channel); 1796 uint64_t start_lba, num_lba, pin_buf_length; 1797 uint32_t lba_size; 1798 1799 if (is_read && offset + length > file->length) { 1800 cb_fn(cb_arg, -EINVAL); 1801 return; 1802 } 1803 1804 req = alloc_fs_request_with_iov(channel, iovcnt); 1805 if (req == NULL) { 1806 cb_fn(cb_arg, -ENOMEM); 1807 return; 1808 } 1809 1810 __get_page_parameters(file, offset, length, &start_lba, &lba_size, &num_lba); 1811 1812 args = &req->args; 1813 args->fn.file_op = cb_fn; 1814 args->arg = cb_arg; 1815 args->file = file; 1816 args->op.rw.channel = channel->bs_channel; 1817 _fs_request_setup_iovs(req, iovs, iovcnt); 1818 args->op.rw.is_read = is_read; 1819 args->op.rw.offset = offset; 1820 args->op.rw.blocklen = lba_size; 1821 1822 pin_buf_length = num_lba * lba_size; 1823 args->op.rw.length = pin_buf_length; 1824 args->op.rw.pin_buf = spdk_malloc(pin_buf_length, lba_size, NULL, 1825 SPDK_ENV_SOCKET_ID_ANY, SPDK_MALLOC_DMA); 1826 if (args->op.rw.pin_buf == NULL) { 1827 SPDK_DEBUGLOG(blobfs, "Failed to allocate buf for: file=%s offset=%jx length=%jx\n", 1828 file->name, offset, length); 1829 free_fs_request(req); 1830 cb_fn(cb_arg, -ENOMEM); 1831 return; 1832 } 1833 1834 args->op.rw.start_lba = start_lba; 1835 args->op.rw.num_lba = num_lba; 1836 1837 if (!is_read && file->length < offset + length) { 1838 spdk_file_truncate_async(file, offset + length, __do_blob_read, req); 1839 } else if (!is_read && __is_lba_aligned(file, offset, length)) { 1840 spdk_copy_iovs_to_buf(args->op.rw.pin_buf, args->op.rw.length, args->iovs, args->iovcnt); 1841 spdk_blob_io_write(args->file->blob, args->op.rw.channel, 1842 args->op.rw.pin_buf, 1843 args->op.rw.start_lba, args->op.rw.num_lba, 1844 __rw_done, req); 1845 } else { 1846 __do_blob_read(req, 0); 1847 } 1848 } 1849 1850 static void 1851 __readwrite(struct spdk_file *file, struct spdk_io_channel *channel, 1852 void *payload, uint64_t offset, uint64_t length, 1853 spdk_file_op_complete cb_fn, void *cb_arg, int is_read) 1854 { 1855 struct iovec iov; 1856 1857 iov.iov_base = payload; 1858 iov.iov_len = (size_t)length; 1859 1860 __readvwritev(file, channel, &iov, 1, offset, length, cb_fn, cb_arg, is_read); 1861 } 1862 1863 void 1864 spdk_file_write_async(struct spdk_file *file, struct spdk_io_channel *channel, 1865 void *payload, uint64_t offset, uint64_t length, 1866 spdk_file_op_complete cb_fn, void *cb_arg) 1867 { 1868 __readwrite(file, channel, payload, offset, length, cb_fn, cb_arg, 0); 1869 } 1870 1871 void 1872 spdk_file_writev_async(struct spdk_file *file, struct spdk_io_channel *channel, 1873 struct iovec *iovs, uint32_t iovcnt, uint64_t offset, uint64_t length, 1874 spdk_file_op_complete cb_fn, void *cb_arg) 1875 { 1876 SPDK_DEBUGLOG(blobfs, "file=%s offset=%jx length=%jx\n", 1877 file->name, offset, length); 1878 1879 __readvwritev(file, channel, iovs, iovcnt, offset, length, cb_fn, cb_arg, 0); 1880 } 1881 1882 void 1883 spdk_file_read_async(struct spdk_file *file, struct spdk_io_channel *channel, 1884 void *payload, uint64_t offset, uint64_t length, 1885 spdk_file_op_complete cb_fn, void *cb_arg) 1886 { 1887 SPDK_DEBUGLOG(blobfs, "file=%s offset=%jx length=%jx\n", 1888 file->name, offset, length); 1889 __readwrite(file, channel, payload, offset, length, cb_fn, cb_arg, 1); 1890 } 1891 1892 void 1893 spdk_file_readv_async(struct spdk_file *file, struct spdk_io_channel *channel, 1894 struct iovec *iovs, uint32_t iovcnt, uint64_t offset, uint64_t length, 1895 spdk_file_op_complete cb_fn, void *cb_arg) 1896 { 1897 SPDK_DEBUGLOG(blobfs, "file=%s offset=%jx length=%jx\n", 1898 file->name, offset, length); 1899 1900 __readvwritev(file, channel, iovs, iovcnt, offset, length, cb_fn, cb_arg, 1); 1901 } 1902 1903 struct spdk_io_channel * 1904 spdk_fs_alloc_io_channel(struct spdk_filesystem *fs) 1905 { 1906 struct spdk_io_channel *io_channel; 1907 struct spdk_fs_channel *fs_channel; 1908 1909 io_channel = spdk_get_io_channel(&fs->io_target); 1910 fs_channel = spdk_io_channel_get_ctx(io_channel); 1911 fs_channel->bs_channel = spdk_bs_alloc_io_channel(fs->bs); 1912 fs_channel->send_request = __send_request_direct; 1913 1914 return io_channel; 1915 } 1916 1917 void 1918 spdk_fs_free_io_channel(struct spdk_io_channel *channel) 1919 { 1920 spdk_put_io_channel(channel); 1921 } 1922 1923 struct spdk_fs_thread_ctx * 1924 spdk_fs_alloc_thread_ctx(struct spdk_filesystem *fs) 1925 { 1926 struct spdk_fs_thread_ctx *ctx; 1927 1928 ctx = calloc(1, sizeof(*ctx)); 1929 if (!ctx) { 1930 return NULL; 1931 } 1932 1933 if (pthread_spin_init(&ctx->ch.lock, 0)) { 1934 free(ctx); 1935 return NULL; 1936 } 1937 1938 fs_channel_create(fs, &ctx->ch, 512); 1939 1940 ctx->ch.send_request = fs->send_request; 1941 ctx->ch.sync = 1; 1942 1943 return ctx; 1944 } 1945 1946 1947 void 1948 spdk_fs_free_thread_ctx(struct spdk_fs_thread_ctx *ctx) 1949 { 1950 assert(ctx->ch.sync == 1); 1951 1952 while (true) { 1953 pthread_spin_lock(&ctx->ch.lock); 1954 if (ctx->ch.outstanding_reqs == 0) { 1955 pthread_spin_unlock(&ctx->ch.lock); 1956 break; 1957 } 1958 pthread_spin_unlock(&ctx->ch.lock); 1959 usleep(1000); 1960 } 1961 1962 fs_channel_destroy(NULL, &ctx->ch); 1963 free(ctx); 1964 } 1965 1966 int 1967 spdk_fs_set_cache_size(uint64_t size_in_mb) 1968 { 1969 /* setting g_fs_cache_size is only permitted if cache pool 1970 * is already freed or hasn't been initialized 1971 */ 1972 if (g_cache_pool != NULL) { 1973 return -EPERM; 1974 } 1975 1976 g_fs_cache_size = size_in_mb * 1024 * 1024; 1977 1978 return 0; 1979 } 1980 1981 uint64_t 1982 spdk_fs_get_cache_size(void) 1983 { 1984 return g_fs_cache_size / (1024 * 1024); 1985 } 1986 1987 static void __file_flush(void *ctx); 1988 1989 /* Try to free some cache buffers from this file. 1990 */ 1991 static int 1992 reclaim_cache_buffers(struct spdk_file *file) 1993 { 1994 int rc; 1995 1996 BLOBFS_TRACE(file, "free=%s\n", file->name); 1997 1998 /* The function is safe to be called with any threads, while the file 1999 * lock maybe locked by other thread for now, so try to get the file 2000 * lock here. 2001 */ 2002 rc = pthread_spin_trylock(&file->lock); 2003 if (rc != 0) { 2004 return -1; 2005 } 2006 2007 if (file->tree->present_mask == 0) { 2008 pthread_spin_unlock(&file->lock); 2009 return -1; 2010 } 2011 tree_free_buffers(file->tree); 2012 2013 TAILQ_REMOVE(&g_caches, file, cache_tailq); 2014 /* If not freed, put it in the end of the queue */ 2015 if (file->tree->present_mask != 0) { 2016 TAILQ_INSERT_TAIL(&g_caches, file, cache_tailq); 2017 } else { 2018 file->last = NULL; 2019 } 2020 pthread_spin_unlock(&file->lock); 2021 2022 return 0; 2023 } 2024 2025 static int 2026 _blobfs_cache_pool_reclaim(void *arg) 2027 { 2028 struct spdk_file *file, *tmp; 2029 int rc; 2030 2031 if (!blobfs_cache_pool_need_reclaim()) { 2032 return SPDK_POLLER_IDLE; 2033 } 2034 2035 TAILQ_FOREACH_SAFE(file, &g_caches, cache_tailq, tmp) { 2036 if (!file->open_for_writing && 2037 file->priority == SPDK_FILE_PRIORITY_LOW) { 2038 rc = reclaim_cache_buffers(file); 2039 if (rc < 0) { 2040 continue; 2041 } 2042 if (!blobfs_cache_pool_need_reclaim()) { 2043 return SPDK_POLLER_BUSY; 2044 } 2045 break; 2046 } 2047 } 2048 2049 TAILQ_FOREACH_SAFE(file, &g_caches, cache_tailq, tmp) { 2050 if (!file->open_for_writing) { 2051 rc = reclaim_cache_buffers(file); 2052 if (rc < 0) { 2053 continue; 2054 } 2055 if (!blobfs_cache_pool_need_reclaim()) { 2056 return SPDK_POLLER_BUSY; 2057 } 2058 break; 2059 } 2060 } 2061 2062 TAILQ_FOREACH_SAFE(file, &g_caches, cache_tailq, tmp) { 2063 rc = reclaim_cache_buffers(file); 2064 if (rc < 0) { 2065 continue; 2066 } 2067 break; 2068 } 2069 2070 return SPDK_POLLER_BUSY; 2071 } 2072 2073 static void 2074 _add_file_to_cache_pool(void *ctx) 2075 { 2076 struct spdk_file *file = ctx; 2077 2078 TAILQ_INSERT_TAIL(&g_caches, file, cache_tailq); 2079 } 2080 2081 static void 2082 _remove_file_from_cache_pool(void *ctx) 2083 { 2084 struct spdk_file *file = ctx; 2085 2086 TAILQ_REMOVE(&g_caches, file, cache_tailq); 2087 } 2088 2089 static struct cache_buffer * 2090 cache_insert_buffer(struct spdk_file *file, uint64_t offset) 2091 { 2092 struct cache_buffer *buf; 2093 int count = 0; 2094 bool need_update = false; 2095 2096 buf = calloc(1, sizeof(*buf)); 2097 if (buf == NULL) { 2098 SPDK_DEBUGLOG(blobfs, "calloc failed\n"); 2099 return NULL; 2100 } 2101 2102 do { 2103 buf->buf = spdk_mempool_get(g_cache_pool); 2104 if (buf->buf) { 2105 break; 2106 } 2107 if (count++ == 100) { 2108 SPDK_ERRLOG("Could not allocate cache buffer for file=%p on offset=%jx\n", 2109 file, offset); 2110 free(buf); 2111 return NULL; 2112 } 2113 usleep(BLOBFS_CACHE_POOL_POLL_PERIOD_IN_US); 2114 } while (true); 2115 2116 buf->buf_size = CACHE_BUFFER_SIZE; 2117 buf->offset = offset; 2118 2119 if (file->tree->present_mask == 0) { 2120 need_update = true; 2121 } 2122 file->tree = tree_insert_buffer(file->tree, buf); 2123 2124 if (need_update) { 2125 spdk_thread_send_msg(g_cache_pool_thread, _add_file_to_cache_pool, file); 2126 } 2127 2128 return buf; 2129 } 2130 2131 static struct cache_buffer * 2132 cache_append_buffer(struct spdk_file *file) 2133 { 2134 struct cache_buffer *last; 2135 2136 assert(file->last == NULL || file->last->bytes_filled == file->last->buf_size); 2137 assert((file->append_pos % CACHE_BUFFER_SIZE) == 0); 2138 2139 last = cache_insert_buffer(file, file->append_pos); 2140 if (last == NULL) { 2141 SPDK_DEBUGLOG(blobfs, "cache_insert_buffer failed\n"); 2142 return NULL; 2143 } 2144 2145 file->last = last; 2146 2147 return last; 2148 } 2149 2150 static void __check_sync_reqs(struct spdk_file *file); 2151 2152 static void 2153 __file_cache_finish_sync(void *ctx, int bserrno) 2154 { 2155 struct spdk_file *file; 2156 struct spdk_fs_request *sync_req = ctx; 2157 struct spdk_fs_cb_args *sync_args; 2158 2159 sync_args = &sync_req->args; 2160 file = sync_args->file; 2161 pthread_spin_lock(&file->lock); 2162 file->length_xattr = sync_args->op.sync.length; 2163 assert(sync_args->op.sync.offset <= file->length_flushed); 2164 spdk_trace_record(TRACE_BLOBFS_XATTR_END, 0, sync_args->op.sync.offset, 2165 0, file->name); 2166 BLOBFS_TRACE(file, "sync done offset=%jx\n", sync_args->op.sync.offset); 2167 TAILQ_REMOVE(&file->sync_requests, sync_req, args.op.sync.tailq); 2168 pthread_spin_unlock(&file->lock); 2169 2170 sync_args->fn.file_op(sync_args->arg, bserrno); 2171 2172 free_fs_request(sync_req); 2173 __check_sync_reqs(file); 2174 } 2175 2176 static void 2177 __check_sync_reqs(struct spdk_file *file) 2178 { 2179 struct spdk_fs_request *sync_req; 2180 2181 pthread_spin_lock(&file->lock); 2182 2183 TAILQ_FOREACH(sync_req, &file->sync_requests, args.op.sync.tailq) { 2184 if (sync_req->args.op.sync.offset <= file->length_flushed) { 2185 break; 2186 } 2187 } 2188 2189 if (sync_req != NULL && !sync_req->args.op.sync.xattr_in_progress) { 2190 BLOBFS_TRACE(file, "set xattr length 0x%jx\n", file->length_flushed); 2191 sync_req->args.op.sync.xattr_in_progress = true; 2192 sync_req->args.op.sync.length = file->length_flushed; 2193 spdk_blob_set_xattr(file->blob, "length", &file->length_flushed, 2194 sizeof(file->length_flushed)); 2195 2196 pthread_spin_unlock(&file->lock); 2197 spdk_trace_record(TRACE_BLOBFS_XATTR_START, 0, file->length_flushed, 2198 0, file->name); 2199 spdk_blob_sync_md(file->blob, __file_cache_finish_sync, sync_req); 2200 } else { 2201 pthread_spin_unlock(&file->lock); 2202 } 2203 } 2204 2205 static void 2206 __file_flush_done(void *ctx, int bserrno) 2207 { 2208 struct spdk_fs_request *req = ctx; 2209 struct spdk_fs_cb_args *args = &req->args; 2210 struct spdk_file *file = args->file; 2211 struct cache_buffer *next = args->op.flush.cache_buffer; 2212 2213 BLOBFS_TRACE(file, "length=%jx\n", args->op.flush.length); 2214 2215 pthread_spin_lock(&file->lock); 2216 next->in_progress = false; 2217 next->bytes_flushed += args->op.flush.length; 2218 file->length_flushed += args->op.flush.length; 2219 if (file->length_flushed > file->length) { 2220 file->length = file->length_flushed; 2221 } 2222 if (next->bytes_flushed == next->buf_size) { 2223 BLOBFS_TRACE(file, "write buffer fully flushed 0x%jx\n", file->length_flushed); 2224 next = tree_find_buffer(file->tree, file->length_flushed); 2225 } 2226 2227 /* 2228 * Assert that there is no cached data that extends past the end of the underlying 2229 * blob. 2230 */ 2231 assert(next == NULL || next->offset < __file_get_blob_size(file) || 2232 next->bytes_filled == 0); 2233 2234 pthread_spin_unlock(&file->lock); 2235 2236 __check_sync_reqs(file); 2237 2238 __file_flush(req); 2239 } 2240 2241 static void 2242 __file_flush(void *ctx) 2243 { 2244 struct spdk_fs_request *req = ctx; 2245 struct spdk_fs_cb_args *args = &req->args; 2246 struct spdk_file *file = args->file; 2247 struct cache_buffer *next; 2248 uint64_t offset, length, start_lba, num_lba; 2249 uint32_t lba_size; 2250 2251 pthread_spin_lock(&file->lock); 2252 next = tree_find_buffer(file->tree, file->length_flushed); 2253 if (next == NULL || next->in_progress || 2254 ((next->bytes_filled < next->buf_size) && TAILQ_EMPTY(&file->sync_requests))) { 2255 /* 2256 * There is either no data to flush, a flush I/O is already in 2257 * progress, or the next buffer is partially filled but there's no 2258 * outstanding request to sync it. 2259 * So return immediately - if a flush I/O is in progress we will flush 2260 * more data after that is completed, or a partial buffer will get flushed 2261 * when it is either filled or the file is synced. 2262 */ 2263 free_fs_request(req); 2264 if (next == NULL) { 2265 /* 2266 * For cases where a file's cache was evicted, and then the 2267 * file was later appended, we will write the data directly 2268 * to disk and bypass cache. So just update length_flushed 2269 * here to reflect that all data was already written to disk. 2270 */ 2271 file->length_flushed = file->append_pos; 2272 } 2273 pthread_spin_unlock(&file->lock); 2274 if (next == NULL) { 2275 /* 2276 * There is no data to flush, but we still need to check for any 2277 * outstanding sync requests to make sure metadata gets updated. 2278 */ 2279 __check_sync_reqs(file); 2280 } 2281 return; 2282 } 2283 2284 offset = next->offset + next->bytes_flushed; 2285 length = next->bytes_filled - next->bytes_flushed; 2286 if (length == 0) { 2287 free_fs_request(req); 2288 pthread_spin_unlock(&file->lock); 2289 /* 2290 * There is no data to flush, but we still need to check for any 2291 * outstanding sync requests to make sure metadata gets updated. 2292 */ 2293 __check_sync_reqs(file); 2294 return; 2295 } 2296 args->op.flush.length = length; 2297 args->op.flush.cache_buffer = next; 2298 2299 __get_page_parameters(file, offset, length, &start_lba, &lba_size, &num_lba); 2300 2301 next->in_progress = true; 2302 BLOBFS_TRACE(file, "offset=0x%jx length=0x%jx page start=0x%jx num=0x%jx\n", 2303 offset, length, start_lba, num_lba); 2304 pthread_spin_unlock(&file->lock); 2305 spdk_blob_io_write(file->blob, file->fs->sync_target.sync_fs_channel->bs_channel, 2306 next->buf + (start_lba * lba_size) - next->offset, 2307 start_lba, num_lba, __file_flush_done, req); 2308 } 2309 2310 static void 2311 __file_extend_done(void *arg, int bserrno) 2312 { 2313 struct spdk_fs_cb_args *args = arg; 2314 2315 __wake_caller(args, bserrno); 2316 } 2317 2318 static void 2319 __file_extend_resize_cb(void *_args, int bserrno) 2320 { 2321 struct spdk_fs_cb_args *args = _args; 2322 struct spdk_file *file = args->file; 2323 2324 if (bserrno) { 2325 __wake_caller(args, bserrno); 2326 return; 2327 } 2328 2329 spdk_blob_sync_md(file->blob, __file_extend_done, args); 2330 } 2331 2332 static void 2333 __file_extend_blob(void *_args) 2334 { 2335 struct spdk_fs_cb_args *args = _args; 2336 struct spdk_file *file = args->file; 2337 2338 spdk_blob_resize(file->blob, args->op.resize.num_clusters, __file_extend_resize_cb, args); 2339 } 2340 2341 static void 2342 __rw_from_file_done(void *ctx, int bserrno) 2343 { 2344 struct spdk_fs_request *req = ctx; 2345 2346 __wake_caller(&req->args, bserrno); 2347 free_fs_request(req); 2348 } 2349 2350 static void 2351 __rw_from_file(void *ctx) 2352 { 2353 struct spdk_fs_request *req = ctx; 2354 struct spdk_fs_cb_args *args = &req->args; 2355 struct spdk_file *file = args->file; 2356 2357 if (args->op.rw.is_read) { 2358 spdk_file_read_async(file, file->fs->sync_target.sync_io_channel, args->iovs[0].iov_base, 2359 args->op.rw.offset, (uint64_t)args->iovs[0].iov_len, 2360 __rw_from_file_done, req); 2361 } else { 2362 spdk_file_write_async(file, file->fs->sync_target.sync_io_channel, args->iovs[0].iov_base, 2363 args->op.rw.offset, (uint64_t)args->iovs[0].iov_len, 2364 __rw_from_file_done, req); 2365 } 2366 } 2367 2368 struct rw_from_file_arg { 2369 struct spdk_fs_channel *channel; 2370 int rwerrno; 2371 }; 2372 2373 static int 2374 __send_rw_from_file(struct spdk_file *file, void *payload, 2375 uint64_t offset, uint64_t length, bool is_read, 2376 struct rw_from_file_arg *arg) 2377 { 2378 struct spdk_fs_request *req; 2379 struct spdk_fs_cb_args *args; 2380 2381 req = alloc_fs_request_with_iov(arg->channel, 1); 2382 if (req == NULL) { 2383 sem_post(&arg->channel->sem); 2384 return -ENOMEM; 2385 } 2386 2387 args = &req->args; 2388 args->file = file; 2389 args->sem = &arg->channel->sem; 2390 args->iovs[0].iov_base = payload; 2391 args->iovs[0].iov_len = (size_t)length; 2392 args->op.rw.offset = offset; 2393 args->op.rw.is_read = is_read; 2394 args->rwerrno = &arg->rwerrno; 2395 file->fs->send_request(__rw_from_file, req); 2396 return 0; 2397 } 2398 2399 int 2400 spdk_file_write(struct spdk_file *file, struct spdk_fs_thread_ctx *ctx, 2401 void *payload, uint64_t offset, uint64_t length) 2402 { 2403 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 2404 struct spdk_fs_request *flush_req; 2405 uint64_t rem_length, copy, blob_size, cluster_sz; 2406 uint32_t cache_buffers_filled = 0; 2407 uint8_t *cur_payload; 2408 struct cache_buffer *last; 2409 2410 BLOBFS_TRACE_RW(file, "offset=%jx length=%jx\n", offset, length); 2411 2412 if (length == 0) { 2413 return 0; 2414 } 2415 2416 if (offset != file->append_pos) { 2417 BLOBFS_TRACE(file, " error offset=%jx append_pos=%jx\n", offset, file->append_pos); 2418 return -EINVAL; 2419 } 2420 2421 pthread_spin_lock(&file->lock); 2422 file->open_for_writing = true; 2423 2424 if ((file->last == NULL) && (file->append_pos % CACHE_BUFFER_SIZE == 0)) { 2425 cache_append_buffer(file); 2426 } 2427 2428 if (file->last == NULL) { 2429 struct rw_from_file_arg arg = {}; 2430 int rc; 2431 2432 arg.channel = channel; 2433 arg.rwerrno = 0; 2434 file->append_pos += length; 2435 pthread_spin_unlock(&file->lock); 2436 rc = __send_rw_from_file(file, payload, offset, length, false, &arg); 2437 if (rc != 0) { 2438 return rc; 2439 } 2440 sem_wait(&channel->sem); 2441 return arg.rwerrno; 2442 } 2443 2444 blob_size = __file_get_blob_size(file); 2445 2446 if ((offset + length) > blob_size) { 2447 struct spdk_fs_cb_args extend_args = {}; 2448 2449 cluster_sz = file->fs->bs_opts.cluster_sz; 2450 extend_args.sem = &channel->sem; 2451 extend_args.op.resize.num_clusters = __bytes_to_clusters((offset + length), cluster_sz); 2452 extend_args.file = file; 2453 BLOBFS_TRACE(file, "start resize to %u clusters\n", extend_args.op.resize.num_clusters); 2454 pthread_spin_unlock(&file->lock); 2455 file->fs->send_request(__file_extend_blob, &extend_args); 2456 sem_wait(&channel->sem); 2457 if (extend_args.rc) { 2458 return extend_args.rc; 2459 } 2460 } 2461 2462 flush_req = alloc_fs_request(channel); 2463 if (flush_req == NULL) { 2464 pthread_spin_unlock(&file->lock); 2465 return -ENOMEM; 2466 } 2467 2468 last = file->last; 2469 rem_length = length; 2470 cur_payload = payload; 2471 while (rem_length > 0) { 2472 copy = last->buf_size - last->bytes_filled; 2473 if (copy > rem_length) { 2474 copy = rem_length; 2475 } 2476 BLOBFS_TRACE_RW(file, " fill offset=%jx length=%jx\n", file->append_pos, copy); 2477 memcpy(&last->buf[last->bytes_filled], cur_payload, copy); 2478 file->append_pos += copy; 2479 if (file->length < file->append_pos) { 2480 file->length = file->append_pos; 2481 } 2482 cur_payload += copy; 2483 last->bytes_filled += copy; 2484 rem_length -= copy; 2485 if (last->bytes_filled == last->buf_size) { 2486 cache_buffers_filled++; 2487 last = cache_append_buffer(file); 2488 if (last == NULL) { 2489 BLOBFS_TRACE(file, "nomem\n"); 2490 free_fs_request(flush_req); 2491 pthread_spin_unlock(&file->lock); 2492 return -ENOMEM; 2493 } 2494 } 2495 } 2496 2497 pthread_spin_unlock(&file->lock); 2498 2499 if (cache_buffers_filled == 0) { 2500 free_fs_request(flush_req); 2501 return 0; 2502 } 2503 2504 flush_req->args.file = file; 2505 file->fs->send_request(__file_flush, flush_req); 2506 return 0; 2507 } 2508 2509 static void 2510 __readahead_done(void *ctx, int bserrno) 2511 { 2512 struct spdk_fs_request *req = ctx; 2513 struct spdk_fs_cb_args *args = &req->args; 2514 struct cache_buffer *cache_buffer = args->op.readahead.cache_buffer; 2515 struct spdk_file *file = args->file; 2516 2517 BLOBFS_TRACE(file, "offset=%jx\n", cache_buffer->offset); 2518 2519 pthread_spin_lock(&file->lock); 2520 cache_buffer->bytes_filled = args->op.readahead.length; 2521 cache_buffer->bytes_flushed = args->op.readahead.length; 2522 cache_buffer->in_progress = false; 2523 pthread_spin_unlock(&file->lock); 2524 2525 free_fs_request(req); 2526 } 2527 2528 static void 2529 __readahead(void *ctx) 2530 { 2531 struct spdk_fs_request *req = ctx; 2532 struct spdk_fs_cb_args *args = &req->args; 2533 struct spdk_file *file = args->file; 2534 uint64_t offset, length, start_lba, num_lba; 2535 uint32_t lba_size; 2536 2537 offset = args->op.readahead.offset; 2538 length = args->op.readahead.length; 2539 assert(length > 0); 2540 2541 __get_page_parameters(file, offset, length, &start_lba, &lba_size, &num_lba); 2542 2543 BLOBFS_TRACE(file, "offset=%jx length=%jx page start=%jx num=%jx\n", 2544 offset, length, start_lba, num_lba); 2545 spdk_blob_io_read(file->blob, file->fs->sync_target.sync_fs_channel->bs_channel, 2546 args->op.readahead.cache_buffer->buf, 2547 start_lba, num_lba, __readahead_done, req); 2548 } 2549 2550 static uint64_t 2551 __next_cache_buffer_offset(uint64_t offset) 2552 { 2553 return (offset + CACHE_BUFFER_SIZE) & ~(CACHE_TREE_LEVEL_MASK(0)); 2554 } 2555 2556 static void 2557 check_readahead(struct spdk_file *file, uint64_t offset, 2558 struct spdk_fs_channel *channel) 2559 { 2560 struct spdk_fs_request *req; 2561 struct spdk_fs_cb_args *args; 2562 2563 offset = __next_cache_buffer_offset(offset); 2564 if (tree_find_buffer(file->tree, offset) != NULL || file->length <= offset) { 2565 return; 2566 } 2567 2568 req = alloc_fs_request(channel); 2569 if (req == NULL) { 2570 return; 2571 } 2572 args = &req->args; 2573 2574 BLOBFS_TRACE(file, "offset=%jx\n", offset); 2575 2576 args->file = file; 2577 args->op.readahead.offset = offset; 2578 args->op.readahead.cache_buffer = cache_insert_buffer(file, offset); 2579 if (!args->op.readahead.cache_buffer) { 2580 BLOBFS_TRACE(file, "Cannot allocate buf for offset=%jx\n", offset); 2581 free_fs_request(req); 2582 return; 2583 } 2584 2585 args->op.readahead.cache_buffer->in_progress = true; 2586 if (file->length < (offset + CACHE_BUFFER_SIZE)) { 2587 args->op.readahead.length = file->length & (CACHE_BUFFER_SIZE - 1); 2588 } else { 2589 args->op.readahead.length = CACHE_BUFFER_SIZE; 2590 } 2591 file->fs->send_request(__readahead, req); 2592 } 2593 2594 int64_t 2595 spdk_file_read(struct spdk_file *file, struct spdk_fs_thread_ctx *ctx, 2596 void *payload, uint64_t offset, uint64_t length) 2597 { 2598 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 2599 uint64_t final_offset, final_length; 2600 uint32_t sub_reads = 0; 2601 struct cache_buffer *buf; 2602 uint64_t read_len; 2603 struct rw_from_file_arg arg = {}; 2604 2605 pthread_spin_lock(&file->lock); 2606 2607 BLOBFS_TRACE_RW(file, "offset=%ju length=%ju\n", offset, length); 2608 2609 file->open_for_writing = false; 2610 2611 if (length == 0 || offset >= file->append_pos) { 2612 pthread_spin_unlock(&file->lock); 2613 return 0; 2614 } 2615 2616 if (offset + length > file->append_pos) { 2617 length = file->append_pos - offset; 2618 } 2619 2620 if (offset != file->next_seq_offset) { 2621 file->seq_byte_count = 0; 2622 } 2623 file->seq_byte_count += length; 2624 file->next_seq_offset = offset + length; 2625 if (file->seq_byte_count >= CACHE_READAHEAD_THRESHOLD) { 2626 check_readahead(file, offset, channel); 2627 check_readahead(file, offset + CACHE_BUFFER_SIZE, channel); 2628 } 2629 2630 arg.channel = channel; 2631 arg.rwerrno = 0; 2632 final_length = 0; 2633 final_offset = offset + length; 2634 while (offset < final_offset) { 2635 int ret = 0; 2636 length = NEXT_CACHE_BUFFER_OFFSET(offset) - offset; 2637 if (length > (final_offset - offset)) { 2638 length = final_offset - offset; 2639 } 2640 2641 buf = tree_find_filled_buffer(file->tree, offset); 2642 if (buf == NULL) { 2643 pthread_spin_unlock(&file->lock); 2644 ret = __send_rw_from_file(file, payload, offset, length, true, &arg); 2645 pthread_spin_lock(&file->lock); 2646 if (ret == 0) { 2647 sub_reads++; 2648 } 2649 } else { 2650 read_len = length; 2651 if ((offset + length) > (buf->offset + buf->bytes_filled)) { 2652 read_len = buf->offset + buf->bytes_filled - offset; 2653 } 2654 BLOBFS_TRACE(file, "read %p offset=%ju length=%ju\n", payload, offset, read_len); 2655 memcpy(payload, &buf->buf[offset - buf->offset], read_len); 2656 if ((offset + read_len) % CACHE_BUFFER_SIZE == 0) { 2657 tree_remove_buffer(file->tree, buf); 2658 if (file->tree->present_mask == 0) { 2659 spdk_thread_send_msg(g_cache_pool_thread, _remove_file_from_cache_pool, file); 2660 } 2661 } 2662 } 2663 2664 if (ret == 0) { 2665 final_length += length; 2666 } else { 2667 arg.rwerrno = ret; 2668 break; 2669 } 2670 payload += length; 2671 offset += length; 2672 } 2673 pthread_spin_unlock(&file->lock); 2674 while (sub_reads > 0) { 2675 sem_wait(&channel->sem); 2676 sub_reads--; 2677 } 2678 if (arg.rwerrno == 0) { 2679 return final_length; 2680 } else { 2681 return arg.rwerrno; 2682 } 2683 } 2684 2685 static void 2686 _file_sync(struct spdk_file *file, struct spdk_fs_channel *channel, 2687 spdk_file_op_complete cb_fn, void *cb_arg) 2688 { 2689 struct spdk_fs_request *sync_req; 2690 struct spdk_fs_request *flush_req; 2691 struct spdk_fs_cb_args *sync_args; 2692 struct spdk_fs_cb_args *flush_args; 2693 2694 BLOBFS_TRACE(file, "offset=%jx\n", file->append_pos); 2695 2696 pthread_spin_lock(&file->lock); 2697 if (file->append_pos <= file->length_xattr) { 2698 BLOBFS_TRACE(file, "done - file already synced\n"); 2699 pthread_spin_unlock(&file->lock); 2700 cb_fn(cb_arg, 0); 2701 return; 2702 } 2703 2704 sync_req = alloc_fs_request(channel); 2705 if (!sync_req) { 2706 SPDK_ERRLOG("Cannot allocate sync req for file=%s\n", file->name); 2707 pthread_spin_unlock(&file->lock); 2708 cb_fn(cb_arg, -ENOMEM); 2709 return; 2710 } 2711 sync_args = &sync_req->args; 2712 2713 flush_req = alloc_fs_request(channel); 2714 if (!flush_req) { 2715 SPDK_ERRLOG("Cannot allocate flush req for file=%s\n", file->name); 2716 free_fs_request(sync_req); 2717 pthread_spin_unlock(&file->lock); 2718 cb_fn(cb_arg, -ENOMEM); 2719 return; 2720 } 2721 flush_args = &flush_req->args; 2722 2723 sync_args->file = file; 2724 sync_args->fn.file_op = cb_fn; 2725 sync_args->arg = cb_arg; 2726 sync_args->op.sync.offset = file->append_pos; 2727 sync_args->op.sync.xattr_in_progress = false; 2728 TAILQ_INSERT_TAIL(&file->sync_requests, sync_req, args.op.sync.tailq); 2729 pthread_spin_unlock(&file->lock); 2730 2731 flush_args->file = file; 2732 channel->send_request(__file_flush, flush_req); 2733 } 2734 2735 int 2736 spdk_file_sync(struct spdk_file *file, struct spdk_fs_thread_ctx *ctx) 2737 { 2738 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 2739 struct spdk_fs_cb_args args = {}; 2740 2741 args.sem = &channel->sem; 2742 _file_sync(file, channel, __wake_caller, &args); 2743 sem_wait(&channel->sem); 2744 2745 return args.rc; 2746 } 2747 2748 void 2749 spdk_file_sync_async(struct spdk_file *file, struct spdk_io_channel *_channel, 2750 spdk_file_op_complete cb_fn, void *cb_arg) 2751 { 2752 struct spdk_fs_channel *channel = spdk_io_channel_get_ctx(_channel); 2753 2754 _file_sync(file, channel, cb_fn, cb_arg); 2755 } 2756 2757 void 2758 spdk_file_set_priority(struct spdk_file *file, uint32_t priority) 2759 { 2760 BLOBFS_TRACE(file, "priority=%u\n", priority); 2761 file->priority = priority; 2762 2763 } 2764 2765 /* 2766 * Close routines 2767 */ 2768 2769 static void 2770 __file_close_async_done(void *ctx, int bserrno) 2771 { 2772 struct spdk_fs_request *req = ctx; 2773 struct spdk_fs_cb_args *args = &req->args; 2774 struct spdk_file *file = args->file; 2775 2776 spdk_trace_record(TRACE_BLOBFS_CLOSE, 0, 0, 0, file->name); 2777 2778 if (file->is_deleted) { 2779 spdk_fs_delete_file_async(file->fs, file->name, blob_delete_cb, ctx); 2780 return; 2781 } 2782 2783 args->fn.file_op(args->arg, bserrno); 2784 free_fs_request(req); 2785 } 2786 2787 static void 2788 __file_close_async(struct spdk_file *file, struct spdk_fs_request *req) 2789 { 2790 struct spdk_blob *blob; 2791 2792 pthread_spin_lock(&file->lock); 2793 if (file->ref_count == 0) { 2794 pthread_spin_unlock(&file->lock); 2795 __file_close_async_done(req, -EBADF); 2796 return; 2797 } 2798 2799 file->ref_count--; 2800 if (file->ref_count > 0) { 2801 pthread_spin_unlock(&file->lock); 2802 req->args.fn.file_op(req->args.arg, 0); 2803 free_fs_request(req); 2804 return; 2805 } 2806 2807 pthread_spin_unlock(&file->lock); 2808 2809 blob = file->blob; 2810 file->blob = NULL; 2811 spdk_blob_close(blob, __file_close_async_done, req); 2812 } 2813 2814 static void 2815 __file_close_async__sync_done(void *arg, int fserrno) 2816 { 2817 struct spdk_fs_request *req = arg; 2818 struct spdk_fs_cb_args *args = &req->args; 2819 2820 __file_close_async(args->file, req); 2821 } 2822 2823 void 2824 spdk_file_close_async(struct spdk_file *file, spdk_file_op_complete cb_fn, void *cb_arg) 2825 { 2826 struct spdk_fs_request *req; 2827 struct spdk_fs_cb_args *args; 2828 2829 req = alloc_fs_request(file->fs->md_target.md_fs_channel); 2830 if (req == NULL) { 2831 SPDK_ERRLOG("Cannot allocate close async req for file=%s\n", file->name); 2832 cb_fn(cb_arg, -ENOMEM); 2833 return; 2834 } 2835 2836 args = &req->args; 2837 args->file = file; 2838 args->fn.file_op = cb_fn; 2839 args->arg = cb_arg; 2840 2841 spdk_file_sync_async(file, file->fs->md_target.md_io_channel, __file_close_async__sync_done, req); 2842 } 2843 2844 static void 2845 __file_close(void *arg) 2846 { 2847 struct spdk_fs_request *req = arg; 2848 struct spdk_fs_cb_args *args = &req->args; 2849 struct spdk_file *file = args->file; 2850 2851 __file_close_async(file, req); 2852 } 2853 2854 int 2855 spdk_file_close(struct spdk_file *file, struct spdk_fs_thread_ctx *ctx) 2856 { 2857 struct spdk_fs_channel *channel = (struct spdk_fs_channel *)ctx; 2858 struct spdk_fs_request *req; 2859 struct spdk_fs_cb_args *args; 2860 2861 req = alloc_fs_request(channel); 2862 if (req == NULL) { 2863 SPDK_ERRLOG("Cannot allocate close req for file=%s\n", file->name); 2864 return -ENOMEM; 2865 } 2866 2867 args = &req->args; 2868 2869 spdk_file_sync(file, ctx); 2870 BLOBFS_TRACE(file, "name=%s\n", file->name); 2871 args->file = file; 2872 args->sem = &channel->sem; 2873 args->fn.file_op = __wake_caller; 2874 args->arg = args; 2875 channel->send_request(__file_close, req); 2876 sem_wait(&channel->sem); 2877 2878 return args->rc; 2879 } 2880 2881 int 2882 spdk_file_get_id(struct spdk_file *file, void *id, size_t size) 2883 { 2884 if (size < sizeof(spdk_blob_id)) { 2885 return -EINVAL; 2886 } 2887 2888 memcpy(id, &file->blobid, sizeof(spdk_blob_id)); 2889 2890 return sizeof(spdk_blob_id); 2891 } 2892 2893 static void 2894 _file_free(void *ctx) 2895 { 2896 struct spdk_file *file = ctx; 2897 2898 TAILQ_REMOVE(&g_caches, file, cache_tailq); 2899 2900 free(file->name); 2901 free(file->tree); 2902 free(file); 2903 } 2904 2905 static void 2906 file_free(struct spdk_file *file) 2907 { 2908 BLOBFS_TRACE(file, "free=%s\n", file->name); 2909 pthread_spin_lock(&file->lock); 2910 if (file->tree->present_mask == 0) { 2911 pthread_spin_unlock(&file->lock); 2912 free(file->name); 2913 free(file->tree); 2914 free(file); 2915 return; 2916 } 2917 2918 tree_free_buffers(file->tree); 2919 assert(file->tree->present_mask == 0); 2920 spdk_thread_send_msg(g_cache_pool_thread, _file_free, file); 2921 pthread_spin_unlock(&file->lock); 2922 } 2923 2924 SPDK_LOG_REGISTER_COMPONENT(blobfs) 2925 SPDK_LOG_REGISTER_COMPONENT(blobfs_rw) 2926