1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * Copyright (C) 2001-2002 Sistina Software (UK) Limited. 4 * 5 * This file is released under the GPL. 6 */ 7 8 #include <linux/blkdev.h> 9 #include <linux/device-mapper.h> 10 #include <linux/delay.h> 11 #include <linux/fs.h> 12 #include <linux/init.h> 13 #include <linux/kdev_t.h> 14 #include <linux/list.h> 15 #include <linux/list_bl.h> 16 #include <linux/mempool.h> 17 #include <linux/module.h> 18 #include <linux/slab.h> 19 #include <linux/vmalloc.h> 20 #include <linux/log2.h> 21 #include <linux/dm-kcopyd.h> 22 23 #include "dm.h" 24 25 #include "dm-exception-store.h" 26 27 #define DM_MSG_PREFIX "snapshots" 28 29 static const char dm_snapshot_merge_target_name[] = "snapshot-merge"; 30 31 #define dm_target_is_snapshot_merge(ti) \ 32 ((ti)->type->name == dm_snapshot_merge_target_name) 33 34 /* 35 * The size of the mempool used to track chunks in use. 36 */ 37 #define MIN_IOS 256 38 39 #define DM_TRACKED_CHUNK_HASH_SIZE 16 40 #define DM_TRACKED_CHUNK_HASH(x) ((unsigned long)(x) & \ 41 (DM_TRACKED_CHUNK_HASH_SIZE - 1)) 42 43 struct dm_hlist_head { 44 struct hlist_head head; 45 spinlock_t lock; 46 }; 47 48 struct dm_exception_table { 49 uint32_t hash_mask; 50 unsigned int hash_shift; 51 struct dm_hlist_head *table; 52 }; 53 54 struct dm_snapshot { 55 struct rw_semaphore lock; 56 57 struct dm_dev *origin; 58 struct dm_dev *cow; 59 60 struct dm_target *ti; 61 62 /* List of snapshots per Origin */ 63 struct list_head list; 64 65 /* 66 * You can't use a snapshot if this is 0 (e.g. if full). 67 * A snapshot-merge target never clears this. 68 */ 69 int valid; 70 71 /* 72 * The snapshot overflowed because of a write to the snapshot device. 73 * We don't have to invalidate the snapshot in this case, but we need 74 * to prevent further writes. 75 */ 76 int snapshot_overflowed; 77 78 /* Origin writes don't trigger exceptions until this is set */ 79 int active; 80 81 atomic_t pending_exceptions_count; 82 83 spinlock_t pe_allocation_lock; 84 85 /* Protected by "pe_allocation_lock" */ 86 sector_t exception_start_sequence; 87 88 /* Protected by kcopyd single-threaded callback */ 89 sector_t exception_complete_sequence; 90 91 /* 92 * A list of pending exceptions that completed out of order. 93 * Protected by kcopyd single-threaded callback. 94 */ 95 struct rb_root out_of_order_tree; 96 97 mempool_t pending_pool; 98 99 struct dm_exception_table pending; 100 struct dm_exception_table complete; 101 102 /* 103 * pe_lock protects all pending_exception operations and access 104 * as well as the snapshot_bios list. 105 */ 106 spinlock_t pe_lock; 107 108 /* Chunks with outstanding reads */ 109 spinlock_t tracked_chunk_lock; 110 struct hlist_head tracked_chunk_hash[DM_TRACKED_CHUNK_HASH_SIZE]; 111 112 /* The on disk metadata handler */ 113 struct dm_exception_store *store; 114 115 unsigned int in_progress; 116 struct wait_queue_head in_progress_wait; 117 118 struct dm_kcopyd_client *kcopyd_client; 119 120 /* Wait for events based on state_bits */ 121 unsigned long state_bits; 122 123 /* Range of chunks currently being merged. */ 124 chunk_t first_merging_chunk; 125 int num_merging_chunks; 126 127 /* 128 * The merge operation failed if this flag is set. 129 * Failure modes are handled as follows: 130 * - I/O error reading the header 131 * => don't load the target; abort. 132 * - Header does not have "valid" flag set 133 * => use the origin; forget about the snapshot. 134 * - I/O error when reading exceptions 135 * => don't load the target; abort. 136 * (We can't use the intermediate origin state.) 137 * - I/O error while merging 138 * => stop merging; set merge_failed; process I/O normally. 139 */ 140 bool merge_failed:1; 141 142 bool discard_zeroes_cow:1; 143 bool discard_passdown_origin:1; 144 145 /* 146 * Incoming bios that overlap with chunks being merged must wait 147 * for them to be committed. 148 */ 149 struct bio_list bios_queued_during_merge; 150 }; 151 152 /* 153 * state_bits: 154 * RUNNING_MERGE - Merge operation is in progress. 155 * SHUTDOWN_MERGE - Set to signal that merge needs to be stopped; 156 * cleared afterwards. 157 */ 158 #define RUNNING_MERGE 0 159 #define SHUTDOWN_MERGE 1 160 161 /* 162 * Maximum number of chunks being copied on write. 163 * 164 * The value was decided experimentally as a trade-off between memory 165 * consumption, stalling the kernel's workqueues and maintaining a high enough 166 * throughput. 167 */ 168 #define DEFAULT_COW_THRESHOLD 2048 169 170 static unsigned int cow_threshold = DEFAULT_COW_THRESHOLD; 171 module_param_named(snapshot_cow_threshold, cow_threshold, uint, 0644); 172 MODULE_PARM_DESC(snapshot_cow_threshold, "Maximum number of chunks being copied on write"); 173 174 DECLARE_DM_KCOPYD_THROTTLE_WITH_MODULE_PARM(snapshot_copy_throttle, 175 "A percentage of time allocated for copy on write"); 176 177 struct dm_dev *dm_snap_origin(struct dm_snapshot *s) 178 { 179 return s->origin; 180 } 181 EXPORT_SYMBOL(dm_snap_origin); 182 183 struct dm_dev *dm_snap_cow(struct dm_snapshot *s) 184 { 185 return s->cow; 186 } 187 EXPORT_SYMBOL(dm_snap_cow); 188 189 static sector_t chunk_to_sector(struct dm_exception_store *store, 190 chunk_t chunk) 191 { 192 return chunk << store->chunk_shift; 193 } 194 195 static int bdev_equal(struct block_device *lhs, struct block_device *rhs) 196 { 197 /* 198 * There is only ever one instance of a particular block 199 * device so we can compare pointers safely. 200 */ 201 return lhs == rhs; 202 } 203 204 struct dm_snap_pending_exception { 205 struct dm_exception e; 206 207 /* 208 * Origin buffers waiting for this to complete are held 209 * in a bio list 210 */ 211 struct bio_list origin_bios; 212 struct bio_list snapshot_bios; 213 214 /* Pointer back to snapshot context */ 215 struct dm_snapshot *snap; 216 217 /* 218 * 1 indicates the exception has already been sent to 219 * kcopyd. 220 */ 221 int started; 222 223 /* There was copying error. */ 224 int copy_error; 225 226 /* A sequence number, it is used for in-order completion. */ 227 sector_t exception_sequence; 228 229 struct rb_node out_of_order_node; 230 231 /* 232 * For writing a complete chunk, bypassing the copy. 233 */ 234 struct bio *full_bio; 235 bio_end_io_t *full_bio_end_io; 236 }; 237 238 /* 239 * Hash table mapping origin volumes to lists of snapshots and 240 * a lock to protect it 241 */ 242 static struct kmem_cache *exception_cache; 243 static struct kmem_cache *pending_cache; 244 245 struct dm_snap_tracked_chunk { 246 struct hlist_node node; 247 chunk_t chunk; 248 }; 249 250 static void init_tracked_chunk(struct bio *bio) 251 { 252 struct dm_snap_tracked_chunk *c = dm_per_bio_data(bio, sizeof(struct dm_snap_tracked_chunk)); 253 254 INIT_HLIST_NODE(&c->node); 255 } 256 257 static bool is_bio_tracked(struct bio *bio) 258 { 259 struct dm_snap_tracked_chunk *c = dm_per_bio_data(bio, sizeof(struct dm_snap_tracked_chunk)); 260 261 return !hlist_unhashed(&c->node); 262 } 263 264 static void track_chunk(struct dm_snapshot *s, struct bio *bio, chunk_t chunk) 265 { 266 struct dm_snap_tracked_chunk *c = dm_per_bio_data(bio, sizeof(struct dm_snap_tracked_chunk)); 267 268 c->chunk = chunk; 269 270 spin_lock_irq(&s->tracked_chunk_lock); 271 hlist_add_head(&c->node, 272 &s->tracked_chunk_hash[DM_TRACKED_CHUNK_HASH(chunk)]); 273 spin_unlock_irq(&s->tracked_chunk_lock); 274 } 275 276 static void stop_tracking_chunk(struct dm_snapshot *s, struct bio *bio) 277 { 278 struct dm_snap_tracked_chunk *c = dm_per_bio_data(bio, sizeof(struct dm_snap_tracked_chunk)); 279 unsigned long flags; 280 281 spin_lock_irqsave(&s->tracked_chunk_lock, flags); 282 hlist_del(&c->node); 283 spin_unlock_irqrestore(&s->tracked_chunk_lock, flags); 284 } 285 286 static int __chunk_is_tracked(struct dm_snapshot *s, chunk_t chunk) 287 { 288 struct dm_snap_tracked_chunk *c; 289 int found = 0; 290 291 spin_lock_irq(&s->tracked_chunk_lock); 292 293 hlist_for_each_entry(c, 294 &s->tracked_chunk_hash[DM_TRACKED_CHUNK_HASH(chunk)], node) { 295 if (c->chunk == chunk) { 296 found = 1; 297 break; 298 } 299 } 300 301 spin_unlock_irq(&s->tracked_chunk_lock); 302 303 return found; 304 } 305 306 /* 307 * This conflicting I/O is extremely improbable in the caller, 308 * so fsleep(1000) is sufficient and there is no need for a wait queue. 309 */ 310 static void __check_for_conflicting_io(struct dm_snapshot *s, chunk_t chunk) 311 { 312 while (__chunk_is_tracked(s, chunk)) 313 fsleep(1000); 314 } 315 316 /* 317 * One of these per registered origin, held in the snapshot_origins hash 318 */ 319 struct origin { 320 /* The origin device */ 321 struct block_device *bdev; 322 323 struct list_head hash_list; 324 325 /* List of snapshots for this origin */ 326 struct list_head snapshots; 327 }; 328 329 /* 330 * This structure is allocated for each origin target 331 */ 332 struct dm_origin { 333 struct dm_dev *dev; 334 struct dm_target *ti; 335 unsigned int split_boundary; 336 struct list_head hash_list; 337 }; 338 339 /* 340 * Size of the hash table for origin volumes. If we make this 341 * the size of the minors list then it should be nearly perfect 342 */ 343 #define ORIGIN_HASH_SIZE 256 344 #define ORIGIN_MASK 0xFF 345 static struct list_head *_origins; 346 static struct list_head *_dm_origins; 347 static struct rw_semaphore _origins_lock; 348 349 static DECLARE_WAIT_QUEUE_HEAD(_pending_exceptions_done); 350 static DEFINE_SPINLOCK(_pending_exceptions_done_spinlock); 351 static uint64_t _pending_exceptions_done_count; 352 353 static int init_origin_hash(void) 354 { 355 int i; 356 357 _origins = kmalloc_objs(struct list_head, ORIGIN_HASH_SIZE, GFP_KERNEL); 358 if (!_origins) { 359 DMERR("unable to allocate memory for _origins"); 360 return -ENOMEM; 361 } 362 for (i = 0; i < ORIGIN_HASH_SIZE; i++) 363 INIT_LIST_HEAD(_origins + i); 364 365 _dm_origins = kmalloc_objs(struct list_head, ORIGIN_HASH_SIZE, 366 GFP_KERNEL); 367 if (!_dm_origins) { 368 DMERR("unable to allocate memory for _dm_origins"); 369 kfree(_origins); 370 return -ENOMEM; 371 } 372 for (i = 0; i < ORIGIN_HASH_SIZE; i++) 373 INIT_LIST_HEAD(_dm_origins + i); 374 375 init_rwsem(&_origins_lock); 376 377 return 0; 378 } 379 380 static void exit_origin_hash(void) 381 { 382 kfree(_origins); 383 kfree(_dm_origins); 384 } 385 386 static unsigned int origin_hash(struct block_device *bdev) 387 { 388 return bdev->bd_dev & ORIGIN_MASK; 389 } 390 391 static struct origin *__lookup_origin(struct block_device *origin) 392 { 393 struct list_head *ol; 394 struct origin *o; 395 396 ol = &_origins[origin_hash(origin)]; 397 list_for_each_entry(o, ol, hash_list) 398 if (bdev_equal(o->bdev, origin)) 399 return o; 400 401 return NULL; 402 } 403 404 static void __insert_origin(struct origin *o) 405 { 406 struct list_head *sl = &_origins[origin_hash(o->bdev)]; 407 408 list_add_tail(&o->hash_list, sl); 409 } 410 411 static struct dm_origin *__lookup_dm_origin(struct block_device *origin) 412 { 413 struct list_head *ol; 414 struct dm_origin *o; 415 416 ol = &_dm_origins[origin_hash(origin)]; 417 list_for_each_entry(o, ol, hash_list) 418 if (bdev_equal(o->dev->bdev, origin)) 419 return o; 420 421 return NULL; 422 } 423 424 static void __insert_dm_origin(struct dm_origin *o) 425 { 426 struct list_head *sl = &_dm_origins[origin_hash(o->dev->bdev)]; 427 428 list_add_tail(&o->hash_list, sl); 429 } 430 431 static void __remove_dm_origin(struct dm_origin *o) 432 { 433 list_del(&o->hash_list); 434 } 435 436 /* 437 * _origins_lock must be held when calling this function. 438 * Returns number of snapshots registered using the supplied cow device, plus: 439 * snap_src - a snapshot suitable for use as a source of exception handover 440 * snap_dest - a snapshot capable of receiving exception handover. 441 * snap_merge - an existing snapshot-merge target linked to the same origin. 442 * There can be at most one snapshot-merge target. The parameter is optional. 443 * 444 * Possible return values and states of snap_src and snap_dest. 445 * 0: NULL, NULL - first new snapshot 446 * 1: snap_src, NULL - normal snapshot 447 * 2: snap_src, snap_dest - waiting for handover 448 * 2: snap_src, NULL - handed over, waiting for old to be deleted 449 * 1: NULL, snap_dest - source got destroyed without handover 450 */ 451 static int __find_snapshots_sharing_cow(struct dm_snapshot *snap, 452 struct dm_snapshot **snap_src, 453 struct dm_snapshot **snap_dest, 454 struct dm_snapshot **snap_merge) 455 { 456 struct dm_snapshot *s; 457 struct origin *o; 458 int count = 0; 459 int active; 460 461 o = __lookup_origin(snap->origin->bdev); 462 if (!o) 463 goto out; 464 465 list_for_each_entry(s, &o->snapshots, list) { 466 if (dm_target_is_snapshot_merge(s->ti) && snap_merge) 467 *snap_merge = s; 468 if (!bdev_equal(s->cow->bdev, snap->cow->bdev)) 469 continue; 470 471 down_read(&s->lock); 472 active = s->active; 473 up_read(&s->lock); 474 475 if (active) { 476 if (snap_src) 477 *snap_src = s; 478 } else if (snap_dest) 479 *snap_dest = s; 480 481 count++; 482 } 483 484 out: 485 return count; 486 } 487 488 /* 489 * On success, returns 1 if this snapshot is a handover destination, 490 * otherwise returns 0. 491 */ 492 static int __validate_exception_handover(struct dm_snapshot *snap) 493 { 494 struct dm_snapshot *snap_src = NULL, *snap_dest = NULL; 495 struct dm_snapshot *snap_merge = NULL; 496 497 /* Does snapshot need exceptions handed over to it? */ 498 if ((__find_snapshots_sharing_cow(snap, &snap_src, &snap_dest, 499 &snap_merge) == 2) || 500 snap_dest) { 501 snap->ti->error = "Snapshot cow pairing for exception table handover failed"; 502 return -EINVAL; 503 } 504 505 /* 506 * If no snap_src was found, snap cannot become a handover 507 * destination. 508 */ 509 if (!snap_src) 510 return 0; 511 512 /* 513 * Non-snapshot-merge handover? 514 */ 515 if (!dm_target_is_snapshot_merge(snap->ti)) 516 return 1; 517 518 /* 519 * Do not allow more than one merging snapshot. 520 */ 521 if (snap_merge) { 522 snap->ti->error = "A snapshot is already merging."; 523 return -EINVAL; 524 } 525 526 if (!snap_src->store->type->prepare_merge || 527 !snap_src->store->type->commit_merge) { 528 snap->ti->error = "Snapshot exception store does not support snapshot-merge."; 529 return -EINVAL; 530 } 531 532 return 1; 533 } 534 535 static void __insert_snapshot(struct origin *o, struct dm_snapshot *s) 536 { 537 struct dm_snapshot *l; 538 539 /* Sort the list according to chunk size, largest-first smallest-last */ 540 list_for_each_entry(l, &o->snapshots, list) 541 if (l->store->chunk_size < s->store->chunk_size) 542 break; 543 list_add_tail(&s->list, &l->list); 544 } 545 546 /* 547 * Make a note of the snapshot and its origin so we can look it 548 * up when the origin has a write on it. 549 * 550 * Also validate snapshot exception store handovers. 551 * On success, returns 1 if this registration is a handover destination, 552 * otherwise returns 0. 553 */ 554 static int register_snapshot(struct dm_snapshot *snap) 555 { 556 struct origin *o, *new_o = NULL; 557 struct block_device *bdev = snap->origin->bdev; 558 int r = 0; 559 560 new_o = kmalloc_obj(*new_o, GFP_KERNEL); 561 if (!new_o) 562 return -ENOMEM; 563 564 down_write(&_origins_lock); 565 566 r = __validate_exception_handover(snap); 567 if (r < 0) { 568 kfree(new_o); 569 goto out; 570 } 571 572 o = __lookup_origin(bdev); 573 if (o) 574 kfree(new_o); 575 else { 576 /* New origin */ 577 o = new_o; 578 579 /* Initialise the struct */ 580 INIT_LIST_HEAD(&o->snapshots); 581 o->bdev = bdev; 582 583 __insert_origin(o); 584 } 585 586 __insert_snapshot(o, snap); 587 588 out: 589 up_write(&_origins_lock); 590 591 return r; 592 } 593 594 /* 595 * Move snapshot to correct place in list according to chunk size. 596 */ 597 static void reregister_snapshot(struct dm_snapshot *s) 598 { 599 struct block_device *bdev = s->origin->bdev; 600 601 down_write(&_origins_lock); 602 603 list_del(&s->list); 604 __insert_snapshot(__lookup_origin(bdev), s); 605 606 up_write(&_origins_lock); 607 } 608 609 static void unregister_snapshot(struct dm_snapshot *s) 610 { 611 struct origin *o; 612 613 down_write(&_origins_lock); 614 o = __lookup_origin(s->origin->bdev); 615 616 list_del(&s->list); 617 if (o && list_empty(&o->snapshots)) { 618 list_del(&o->hash_list); 619 kfree(o); 620 } 621 622 up_write(&_origins_lock); 623 } 624 625 /* 626 * Implementation of the exception hash tables. 627 * The lowest hash_shift bits of the chunk number are ignored, allowing 628 * some consecutive chunks to be grouped together. 629 */ 630 static uint32_t exception_hash(struct dm_exception_table *et, chunk_t chunk); 631 632 /* Lock to protect access to the completed and pending exception hash tables. */ 633 struct dm_exception_table_lock { 634 spinlock_t *complete_slot; 635 spinlock_t *pending_slot; 636 }; 637 638 static void dm_exception_table_lock_init(struct dm_snapshot *s, chunk_t chunk, 639 struct dm_exception_table_lock *lock) 640 { 641 struct dm_exception_table *complete = &s->complete; 642 struct dm_exception_table *pending = &s->pending; 643 644 lock->complete_slot = &complete->table[exception_hash(complete, chunk)].lock; 645 lock->pending_slot = &pending->table[exception_hash(pending, chunk)].lock; 646 } 647 648 static void dm_exception_table_lock(struct dm_exception_table_lock *lock) 649 { 650 spin_lock_nested(lock->complete_slot, 1); 651 spin_lock_nested(lock->pending_slot, 2); 652 } 653 654 static void dm_exception_table_unlock(struct dm_exception_table_lock *lock) 655 { 656 spin_unlock(lock->pending_slot); 657 spin_unlock(lock->complete_slot); 658 } 659 660 static int dm_exception_table_init(struct dm_exception_table *et, 661 uint32_t size, unsigned int hash_shift) 662 { 663 unsigned int i; 664 665 et->hash_shift = hash_shift; 666 et->hash_mask = size - 1; 667 et->table = kvmalloc_objs(struct dm_hlist_head, size, GFP_KERNEL); 668 if (!et->table) 669 return -ENOMEM; 670 671 for (i = 0; i < size; i++) { 672 INIT_HLIST_HEAD(&et->table[i].head); 673 spin_lock_init(&et->table[i].lock); 674 } 675 676 return 0; 677 } 678 679 static void dm_exception_table_exit(struct dm_exception_table *et, 680 struct kmem_cache *mem) 681 { 682 struct dm_hlist_head *slot; 683 struct dm_exception *ex; 684 struct hlist_node *pos; 685 int i, size; 686 687 size = et->hash_mask + 1; 688 for (i = 0; i < size; i++) { 689 slot = et->table + i; 690 691 hlist_for_each_entry_safe(ex, pos, &slot->head, hash_list) { 692 hlist_del(&ex->hash_list); 693 kmem_cache_free(mem, ex); 694 cond_resched(); 695 } 696 } 697 698 kvfree(et->table); 699 } 700 701 static uint32_t exception_hash(struct dm_exception_table *et, chunk_t chunk) 702 { 703 return (chunk >> et->hash_shift) & et->hash_mask; 704 } 705 706 static void dm_remove_exception(struct dm_exception *e) 707 { 708 hlist_del(&e->hash_list); 709 } 710 711 /* 712 * Return the exception data for a sector, or NULL if not 713 * remapped. 714 */ 715 static struct dm_exception *dm_lookup_exception(struct dm_exception_table *et, 716 chunk_t chunk) 717 { 718 struct hlist_head *slot; 719 struct dm_exception *e; 720 721 slot = &et->table[exception_hash(et, chunk)].head; 722 hlist_for_each_entry(e, slot, hash_list) 723 if (chunk >= e->old_chunk && 724 chunk <= e->old_chunk + dm_consecutive_chunk_count(e)) 725 return e; 726 727 return NULL; 728 } 729 730 static struct dm_exception *alloc_completed_exception(gfp_t gfp) 731 { 732 struct dm_exception *e; 733 734 e = kmem_cache_alloc(exception_cache, gfp); 735 if (!e && gfp == GFP_NOIO) 736 e = kmem_cache_alloc(exception_cache, GFP_ATOMIC); 737 738 return e; 739 } 740 741 static void free_completed_exception(struct dm_exception *e) 742 { 743 kmem_cache_free(exception_cache, e); 744 } 745 746 static struct dm_snap_pending_exception *alloc_pending_exception(struct dm_snapshot *s) 747 { 748 struct dm_snap_pending_exception *pe = mempool_alloc(&s->pending_pool, 749 GFP_NOIO); 750 751 atomic_inc(&s->pending_exceptions_count); 752 pe->snap = s; 753 754 return pe; 755 } 756 757 static void free_pending_exception(struct dm_snap_pending_exception *pe) 758 { 759 struct dm_snapshot *s = pe->snap; 760 761 mempool_free(pe, &s->pending_pool); 762 smp_mb__before_atomic(); 763 atomic_dec(&s->pending_exceptions_count); 764 } 765 766 static void dm_insert_exception(struct dm_exception_table *eh, 767 struct dm_exception *new_e) 768 { 769 struct hlist_head *l; 770 struct dm_exception *e = NULL; 771 772 l = &eh->table[exception_hash(eh, new_e->old_chunk)].head; 773 774 /* Add immediately if this table doesn't support consecutive chunks */ 775 if (!eh->hash_shift) 776 goto out; 777 778 /* List is ordered by old_chunk */ 779 hlist_for_each_entry(e, l, hash_list) { 780 /* Insert after an existing chunk? */ 781 if (new_e->old_chunk == (e->old_chunk + 782 dm_consecutive_chunk_count(e) + 1) && 783 new_e->new_chunk == (dm_chunk_number(e->new_chunk) + 784 dm_consecutive_chunk_count(e) + 1)) { 785 dm_consecutive_chunk_count_inc(e); 786 free_completed_exception(new_e); 787 return; 788 } 789 790 /* Insert before an existing chunk? */ 791 if (new_e->old_chunk == (e->old_chunk - 1) && 792 new_e->new_chunk == (dm_chunk_number(e->new_chunk) - 1)) { 793 dm_consecutive_chunk_count_inc(e); 794 e->old_chunk--; 795 e->new_chunk--; 796 free_completed_exception(new_e); 797 return; 798 } 799 800 if (new_e->old_chunk < e->old_chunk) 801 break; 802 } 803 804 out: 805 if (!e) { 806 /* 807 * Either the table doesn't support consecutive chunks or slot 808 * l is empty. 809 */ 810 hlist_add_head(&new_e->hash_list, l); 811 } else if (new_e->old_chunk < e->old_chunk) { 812 /* Add before an existing exception */ 813 hlist_add_before(&new_e->hash_list, &e->hash_list); 814 } else { 815 /* Add to l's tail: e is the last exception in this slot */ 816 hlist_add_behind(&new_e->hash_list, &e->hash_list); 817 } 818 } 819 820 /* 821 * Callback used by the exception stores to load exceptions when 822 * initialising. 823 */ 824 static int dm_add_exception(void *context, chunk_t old, chunk_t new) 825 { 826 struct dm_snapshot *s = context; 827 struct dm_exception *e; 828 829 e = alloc_completed_exception(GFP_KERNEL); 830 if (!e) 831 return -ENOMEM; 832 833 e->old_chunk = old; 834 835 /* Consecutive_count is implicitly initialised to zero */ 836 e->new_chunk = new; 837 838 dm_insert_exception(&s->complete, e); 839 840 return 0; 841 } 842 843 /* 844 * Return a minimum chunk size of all snapshots that have the specified origin. 845 * Return zero if the origin has no snapshots. 846 */ 847 static uint32_t __minimum_chunk_size(struct origin *o) 848 { 849 struct dm_snapshot *snap; 850 unsigned int chunk_size = rounddown_pow_of_two(UINT_MAX); 851 852 if (o) 853 list_for_each_entry(snap, &o->snapshots, list) 854 chunk_size = min_not_zero(chunk_size, 855 snap->store->chunk_size); 856 857 return (uint32_t) chunk_size; 858 } 859 860 /* 861 * Hard coded magic. 862 */ 863 static int calc_max_buckets(void) 864 { 865 /* use a fixed size of 2MB */ 866 unsigned long mem = 2 * 1024 * 1024; 867 868 mem /= sizeof(struct dm_hlist_head); 869 870 return mem; 871 } 872 873 /* 874 * Allocate room for a suitable hash table. 875 */ 876 static int init_hash_tables(struct dm_snapshot *s) 877 { 878 sector_t hash_size, cow_dev_size, max_buckets; 879 880 /* 881 * Calculate based on the size of the original volume or 882 * the COW volume... 883 */ 884 cow_dev_size = get_dev_size(s->cow->bdev); 885 max_buckets = calc_max_buckets(); 886 887 hash_size = cow_dev_size >> s->store->chunk_shift; 888 hash_size = min(hash_size, max_buckets); 889 890 if (hash_size < 64) 891 hash_size = 64; 892 hash_size = rounddown_pow_of_two(hash_size); 893 if (dm_exception_table_init(&s->complete, hash_size, 894 DM_CHUNK_CONSECUTIVE_BITS)) 895 return -ENOMEM; 896 897 /* 898 * Allocate hash table for in-flight exceptions 899 * Make this smaller than the real hash table 900 */ 901 hash_size >>= 3; 902 if (hash_size < 64) 903 hash_size = 64; 904 905 if (dm_exception_table_init(&s->pending, hash_size, 0)) { 906 dm_exception_table_exit(&s->complete, exception_cache); 907 return -ENOMEM; 908 } 909 910 return 0; 911 } 912 913 static void merge_shutdown(struct dm_snapshot *s) 914 { 915 clear_bit_unlock(RUNNING_MERGE, &s->state_bits); 916 smp_mb__after_atomic(); 917 wake_up_bit(&s->state_bits, RUNNING_MERGE); 918 } 919 920 static struct bio *__release_queued_bios_after_merge(struct dm_snapshot *s) 921 { 922 s->first_merging_chunk = 0; 923 s->num_merging_chunks = 0; 924 925 return bio_list_get(&s->bios_queued_during_merge); 926 } 927 928 /* 929 * Remove one chunk from the index of completed exceptions. 930 */ 931 static int __remove_single_exception_chunk(struct dm_snapshot *s, 932 chunk_t old_chunk) 933 { 934 struct dm_exception *e; 935 936 e = dm_lookup_exception(&s->complete, old_chunk); 937 if (!e) { 938 DMERR("Corruption detected: exception for block %llu is on disk but not in memory", 939 (unsigned long long)old_chunk); 940 return -EINVAL; 941 } 942 943 /* 944 * If this is the only chunk using this exception, remove exception. 945 */ 946 if (!dm_consecutive_chunk_count(e)) { 947 dm_remove_exception(e); 948 free_completed_exception(e); 949 return 0; 950 } 951 952 /* 953 * The chunk may be either at the beginning or the end of a 954 * group of consecutive chunks - never in the middle. We are 955 * removing chunks in the opposite order to that in which they 956 * were added, so this should always be true. 957 * Decrement the consecutive chunk counter and adjust the 958 * starting point if necessary. 959 */ 960 if (old_chunk == e->old_chunk) { 961 e->old_chunk++; 962 e->new_chunk++; 963 } else if (old_chunk != e->old_chunk + 964 dm_consecutive_chunk_count(e)) { 965 DMERR("Attempt to merge block %llu from the middle of a chunk range [%llu - %llu]", 966 (unsigned long long)old_chunk, 967 (unsigned long long)e->old_chunk, 968 (unsigned long long) 969 e->old_chunk + dm_consecutive_chunk_count(e)); 970 return -EINVAL; 971 } 972 973 dm_consecutive_chunk_count_dec(e); 974 975 return 0; 976 } 977 978 static void flush_bios(struct bio *bio); 979 980 static int remove_single_exception_chunk(struct dm_snapshot *s) 981 { 982 struct bio *b = NULL; 983 int r; 984 chunk_t old_chunk = s->first_merging_chunk + s->num_merging_chunks - 1; 985 986 down_write(&s->lock); 987 988 /* 989 * Process chunks (and associated exceptions) in reverse order 990 * so that dm_consecutive_chunk_count_dec() accounting works. 991 */ 992 do { 993 r = __remove_single_exception_chunk(s, old_chunk); 994 if (r) 995 goto out; 996 } while (old_chunk-- > s->first_merging_chunk); 997 998 b = __release_queued_bios_after_merge(s); 999 1000 out: 1001 up_write(&s->lock); 1002 if (b) 1003 flush_bios(b); 1004 1005 return r; 1006 } 1007 1008 static int origin_write_extent(struct dm_snapshot *merging_snap, 1009 sector_t sector, unsigned int chunk_size); 1010 1011 static void merge_callback(int read_err, unsigned long write_err, 1012 void *context); 1013 1014 static uint64_t read_pending_exceptions_done_count(void) 1015 { 1016 uint64_t pending_exceptions_done; 1017 1018 spin_lock(&_pending_exceptions_done_spinlock); 1019 pending_exceptions_done = _pending_exceptions_done_count; 1020 spin_unlock(&_pending_exceptions_done_spinlock); 1021 1022 return pending_exceptions_done; 1023 } 1024 1025 static void increment_pending_exceptions_done_count(void) 1026 { 1027 spin_lock(&_pending_exceptions_done_spinlock); 1028 _pending_exceptions_done_count++; 1029 spin_unlock(&_pending_exceptions_done_spinlock); 1030 1031 wake_up_all(&_pending_exceptions_done); 1032 } 1033 1034 static void snapshot_merge_next_chunks(struct dm_snapshot *s) 1035 { 1036 int i, linear_chunks; 1037 chunk_t old_chunk, new_chunk; 1038 struct dm_io_region src, dest; 1039 sector_t io_size; 1040 uint64_t previous_count; 1041 1042 BUG_ON(!test_bit(RUNNING_MERGE, &s->state_bits)); 1043 if (unlikely(test_bit(SHUTDOWN_MERGE, &s->state_bits))) 1044 goto shut; 1045 1046 /* 1047 * valid flag never changes during merge, so no lock required. 1048 */ 1049 if (!s->valid) { 1050 DMERR("Snapshot is invalid: can't merge"); 1051 goto shut; 1052 } 1053 1054 linear_chunks = s->store->type->prepare_merge(s->store, &old_chunk, 1055 &new_chunk); 1056 if (linear_chunks <= 0) { 1057 if (linear_chunks < 0) { 1058 DMERR("Read error in exception store: shutting down merge"); 1059 down_write(&s->lock); 1060 s->merge_failed = true; 1061 up_write(&s->lock); 1062 } 1063 goto shut; 1064 } 1065 1066 /* Adjust old_chunk and new_chunk to reflect start of linear region */ 1067 old_chunk = old_chunk + 1 - linear_chunks; 1068 new_chunk = new_chunk + 1 - linear_chunks; 1069 1070 /* 1071 * Use one (potentially large) I/O to copy all 'linear_chunks' 1072 * from the exception store to the origin 1073 */ 1074 io_size = linear_chunks * s->store->chunk_size; 1075 1076 dest.bdev = s->origin->bdev; 1077 dest.sector = chunk_to_sector(s->store, old_chunk); 1078 dest.count = min(io_size, get_dev_size(dest.bdev) - dest.sector); 1079 1080 src.bdev = s->cow->bdev; 1081 src.sector = chunk_to_sector(s->store, new_chunk); 1082 src.count = dest.count; 1083 1084 /* 1085 * Reallocate any exceptions needed in other snapshots then 1086 * wait for the pending exceptions to complete. 1087 * Each time any pending exception (globally on the system) 1088 * completes we are woken and repeat the process to find out 1089 * if we can proceed. While this may not seem a particularly 1090 * efficient algorithm, it is not expected to have any 1091 * significant impact on performance. 1092 */ 1093 previous_count = read_pending_exceptions_done_count(); 1094 while (origin_write_extent(s, dest.sector, io_size)) { 1095 wait_event(_pending_exceptions_done, 1096 (read_pending_exceptions_done_count() != 1097 previous_count)); 1098 /* Retry after the wait, until all exceptions are done. */ 1099 previous_count = read_pending_exceptions_done_count(); 1100 } 1101 1102 down_write(&s->lock); 1103 s->first_merging_chunk = old_chunk; 1104 s->num_merging_chunks = linear_chunks; 1105 up_write(&s->lock); 1106 1107 /* Wait until writes to all 'linear_chunks' drain */ 1108 for (i = 0; i < linear_chunks; i++) 1109 __check_for_conflicting_io(s, old_chunk + i); 1110 1111 dm_kcopyd_copy(s->kcopyd_client, &src, 1, &dest, 0, merge_callback, s); 1112 return; 1113 1114 shut: 1115 merge_shutdown(s); 1116 } 1117 1118 static void error_bios(struct bio *bio); 1119 1120 static void merge_callback(int read_err, unsigned long write_err, void *context) 1121 { 1122 struct dm_snapshot *s = context; 1123 struct bio *b = NULL; 1124 1125 if (read_err || write_err) { 1126 if (read_err) 1127 DMERR("Read error: shutting down merge."); 1128 else 1129 DMERR("Write error: shutting down merge."); 1130 goto shut; 1131 } 1132 1133 if (blkdev_issue_flush(s->origin->bdev) < 0) { 1134 DMERR("Flush after merge failed: shutting down merge"); 1135 goto shut; 1136 } 1137 1138 if (s->store->type->commit_merge(s->store, 1139 s->num_merging_chunks) < 0) { 1140 DMERR("Write error in exception store: shutting down merge"); 1141 goto shut; 1142 } 1143 1144 if (remove_single_exception_chunk(s) < 0) 1145 goto shut; 1146 1147 snapshot_merge_next_chunks(s); 1148 1149 return; 1150 1151 shut: 1152 down_write(&s->lock); 1153 s->merge_failed = true; 1154 b = __release_queued_bios_after_merge(s); 1155 up_write(&s->lock); 1156 error_bios(b); 1157 1158 merge_shutdown(s); 1159 } 1160 1161 static void start_merge(struct dm_snapshot *s) 1162 { 1163 if (!test_and_set_bit(RUNNING_MERGE, &s->state_bits)) 1164 snapshot_merge_next_chunks(s); 1165 } 1166 1167 /* 1168 * Stop the merging process and wait until it finishes. 1169 */ 1170 static void stop_merge(struct dm_snapshot *s) 1171 { 1172 set_bit(SHUTDOWN_MERGE, &s->state_bits); 1173 wait_on_bit(&s->state_bits, RUNNING_MERGE, TASK_UNINTERRUPTIBLE); 1174 clear_bit(SHUTDOWN_MERGE, &s->state_bits); 1175 } 1176 1177 static int parse_snapshot_features(struct dm_arg_set *as, struct dm_snapshot *s, 1178 struct dm_target *ti) 1179 { 1180 int r; 1181 unsigned int argc; 1182 const char *arg_name; 1183 1184 static const struct dm_arg _args[] = { 1185 {0, 2, "Invalid number of feature arguments"}, 1186 }; 1187 1188 /* 1189 * No feature arguments supplied. 1190 */ 1191 if (!as->argc) 1192 return 0; 1193 1194 r = dm_read_arg_group(_args, as, &argc, &ti->error); 1195 if (r) 1196 return -EINVAL; 1197 1198 while (argc && !r) { 1199 arg_name = dm_shift_arg(as); 1200 argc--; 1201 1202 if (!strcasecmp(arg_name, "discard_zeroes_cow")) 1203 s->discard_zeroes_cow = true; 1204 1205 else if (!strcasecmp(arg_name, "discard_passdown_origin")) 1206 s->discard_passdown_origin = true; 1207 1208 else { 1209 ti->error = "Unrecognised feature requested"; 1210 r = -EINVAL; 1211 break; 1212 } 1213 } 1214 1215 if (!s->discard_zeroes_cow && s->discard_passdown_origin) { 1216 /* 1217 * TODO: really these are disjoint.. but ti->num_discard_bios 1218 * and dm_bio_get_target_bio_nr() require rigid constraints. 1219 */ 1220 ti->error = "discard_passdown_origin feature depends on discard_zeroes_cow"; 1221 r = -EINVAL; 1222 } 1223 1224 return r; 1225 } 1226 1227 /* 1228 * Construct a snapshot mapping: 1229 * <origin_dev> <COW-dev> <p|po|n> <chunk-size> [<# feature args> [<arg>]*] 1230 */ 1231 static int snapshot_ctr(struct dm_target *ti, unsigned int argc, char **argv) 1232 { 1233 struct dm_snapshot *s; 1234 struct dm_arg_set as; 1235 int i; 1236 int r = -EINVAL; 1237 char *origin_path, *cow_path; 1238 unsigned int args_used, num_flush_bios = 1; 1239 blk_mode_t origin_mode = BLK_OPEN_READ; 1240 1241 if (argc < 4) { 1242 ti->error = "requires 4 or more arguments"; 1243 r = -EINVAL; 1244 goto bad; 1245 } 1246 1247 if (dm_target_is_snapshot_merge(ti)) { 1248 num_flush_bios = 2; 1249 origin_mode = BLK_OPEN_WRITE; 1250 } 1251 1252 s = kzalloc_obj(*s, GFP_KERNEL); 1253 if (!s) { 1254 ti->error = "Cannot allocate private snapshot structure"; 1255 r = -ENOMEM; 1256 goto bad; 1257 } 1258 1259 as.argc = argc; 1260 as.argv = argv; 1261 dm_consume_args(&as, 4); 1262 r = parse_snapshot_features(&as, s, ti); 1263 if (r) 1264 goto bad_features; 1265 1266 origin_path = argv[0]; 1267 argv++; 1268 argc--; 1269 1270 r = dm_get_device(ti, origin_path, origin_mode, &s->origin); 1271 if (r) { 1272 ti->error = "Cannot get origin device"; 1273 goto bad_origin; 1274 } 1275 1276 cow_path = argv[0]; 1277 argv++; 1278 argc--; 1279 1280 r = dm_get_device(ti, cow_path, dm_table_get_mode(ti->table), &s->cow); 1281 if (r) { 1282 ti->error = "Cannot get COW device"; 1283 goto bad_cow; 1284 } 1285 if (s->cow->bdev && s->cow->bdev == s->origin->bdev) { 1286 ti->error = "COW device cannot be the same as origin device"; 1287 r = -EINVAL; 1288 goto bad_store; 1289 } 1290 1291 r = dm_exception_store_create(ti, argc, argv, s, &args_used, &s->store); 1292 if (r) { 1293 ti->error = "Couldn't create exception store"; 1294 r = -EINVAL; 1295 goto bad_store; 1296 } 1297 1298 argv += args_used; 1299 argc -= args_used; 1300 1301 s->ti = ti; 1302 s->valid = 1; 1303 s->snapshot_overflowed = 0; 1304 s->active = 0; 1305 atomic_set(&s->pending_exceptions_count, 0); 1306 spin_lock_init(&s->pe_allocation_lock); 1307 s->exception_start_sequence = 0; 1308 s->exception_complete_sequence = 0; 1309 s->out_of_order_tree = RB_ROOT; 1310 init_rwsem(&s->lock); 1311 INIT_LIST_HEAD(&s->list); 1312 spin_lock_init(&s->pe_lock); 1313 s->state_bits = 0; 1314 s->merge_failed = false; 1315 s->first_merging_chunk = 0; 1316 s->num_merging_chunks = 0; 1317 bio_list_init(&s->bios_queued_during_merge); 1318 1319 /* Allocate hash table for COW data */ 1320 if (init_hash_tables(s)) { 1321 ti->error = "Unable to allocate hash table space"; 1322 r = -ENOMEM; 1323 goto bad_hash_tables; 1324 } 1325 1326 init_waitqueue_head(&s->in_progress_wait); 1327 1328 s->kcopyd_client = dm_kcopyd_client_create(&dm_kcopyd_throttle); 1329 if (IS_ERR(s->kcopyd_client)) { 1330 r = PTR_ERR(s->kcopyd_client); 1331 ti->error = "Could not create kcopyd client"; 1332 goto bad_kcopyd; 1333 } 1334 1335 r = mempool_init_slab_pool(&s->pending_pool, MIN_IOS, pending_cache); 1336 if (r) { 1337 ti->error = "Could not allocate mempool for pending exceptions"; 1338 goto bad_pending_pool; 1339 } 1340 1341 for (i = 0; i < DM_TRACKED_CHUNK_HASH_SIZE; i++) 1342 INIT_HLIST_HEAD(&s->tracked_chunk_hash[i]); 1343 1344 spin_lock_init(&s->tracked_chunk_lock); 1345 1346 ti->private = s; 1347 ti->num_flush_bios = num_flush_bios; 1348 if (s->discard_zeroes_cow) 1349 ti->num_discard_bios = (s->discard_passdown_origin ? 2 : 1); 1350 ti->per_io_data_size = sizeof(struct dm_snap_tracked_chunk); 1351 1352 /* Add snapshot to the list of snapshots for this origin */ 1353 /* Exceptions aren't triggered till snapshot_resume() is called */ 1354 r = register_snapshot(s); 1355 if (r == -ENOMEM) { 1356 ti->error = "Snapshot origin struct allocation failed"; 1357 goto bad_load_and_register; 1358 } else if (r < 0) { 1359 /* invalid handover, register_snapshot has set ti->error */ 1360 goto bad_load_and_register; 1361 } 1362 1363 /* 1364 * Metadata must only be loaded into one table at once, so skip this 1365 * if metadata will be handed over during resume. 1366 * Chunk size will be set during the handover - set it to zero to 1367 * ensure it's ignored. 1368 */ 1369 if (r > 0) { 1370 s->store->chunk_size = 0; 1371 return 0; 1372 } 1373 1374 r = s->store->type->read_metadata(s->store, dm_add_exception, 1375 (void *)s); 1376 if (r < 0) { 1377 ti->error = "Failed to read snapshot metadata"; 1378 goto bad_read_metadata; 1379 } else if (r > 0) { 1380 s->valid = 0; 1381 DMWARN("Snapshot is marked invalid."); 1382 } 1383 1384 if (!s->store->chunk_size) { 1385 ti->error = "Chunk size not set"; 1386 r = -EINVAL; 1387 goto bad_read_metadata; 1388 } 1389 1390 r = dm_set_target_max_io_len(ti, s->store->chunk_size); 1391 if (r) 1392 goto bad_read_metadata; 1393 1394 return 0; 1395 1396 bad_read_metadata: 1397 unregister_snapshot(s); 1398 bad_load_and_register: 1399 mempool_exit(&s->pending_pool); 1400 bad_pending_pool: 1401 dm_kcopyd_client_destroy(s->kcopyd_client); 1402 bad_kcopyd: 1403 dm_exception_table_exit(&s->pending, pending_cache); 1404 dm_exception_table_exit(&s->complete, exception_cache); 1405 bad_hash_tables: 1406 dm_exception_store_destroy(s->store); 1407 bad_store: 1408 dm_put_device(ti, s->cow); 1409 bad_cow: 1410 dm_put_device(ti, s->origin); 1411 bad_origin: 1412 bad_features: 1413 kfree(s); 1414 bad: 1415 return r; 1416 } 1417 1418 static void __free_exceptions(struct dm_snapshot *s) 1419 { 1420 dm_kcopyd_client_destroy(s->kcopyd_client); 1421 s->kcopyd_client = NULL; 1422 1423 dm_exception_table_exit(&s->pending, pending_cache); 1424 dm_exception_table_exit(&s->complete, exception_cache); 1425 } 1426 1427 static void __handover_exceptions(struct dm_snapshot *snap_src, 1428 struct dm_snapshot *snap_dest) 1429 { 1430 union { 1431 struct dm_exception_table table_swap; 1432 struct dm_exception_store *store_swap; 1433 } u; 1434 1435 /* 1436 * Swap all snapshot context information between the two instances. 1437 */ 1438 u.table_swap = snap_dest->complete; 1439 snap_dest->complete = snap_src->complete; 1440 snap_src->complete = u.table_swap; 1441 1442 u.store_swap = snap_dest->store; 1443 snap_dest->store = snap_src->store; 1444 snap_dest->store->userspace_supports_overflow = u.store_swap->userspace_supports_overflow; 1445 snap_src->store = u.store_swap; 1446 1447 snap_dest->store->snap = snap_dest; 1448 snap_src->store->snap = snap_src; 1449 1450 snap_dest->ti->max_io_len = snap_dest->store->chunk_size; 1451 snap_dest->valid = snap_src->valid; 1452 snap_dest->snapshot_overflowed = snap_src->snapshot_overflowed; 1453 1454 /* 1455 * Set source invalid to ensure it receives no further I/O. 1456 */ 1457 snap_src->valid = 0; 1458 } 1459 1460 static void snapshot_dtr(struct dm_target *ti) 1461 { 1462 #ifdef CONFIG_DM_DEBUG 1463 int i; 1464 #endif 1465 struct dm_snapshot *s = ti->private; 1466 struct dm_snapshot *snap_src = NULL, *snap_dest = NULL; 1467 1468 down_read(&_origins_lock); 1469 /* Check whether exception handover must be cancelled */ 1470 (void) __find_snapshots_sharing_cow(s, &snap_src, &snap_dest, NULL); 1471 if (snap_src && snap_dest && (s == snap_src)) { 1472 down_write(&snap_dest->lock); 1473 snap_dest->valid = 0; 1474 up_write(&snap_dest->lock); 1475 DMERR("Cancelling snapshot handover."); 1476 } 1477 up_read(&_origins_lock); 1478 1479 if (dm_target_is_snapshot_merge(ti)) 1480 stop_merge(s); 1481 1482 /* Prevent further origin writes from using this snapshot. */ 1483 /* After this returns there can be no new kcopyd jobs. */ 1484 unregister_snapshot(s); 1485 1486 while (atomic_read(&s->pending_exceptions_count)) 1487 fsleep(1000); 1488 /* 1489 * Ensure instructions in mempool_exit aren't reordered 1490 * before atomic_read. 1491 */ 1492 smp_mb(); 1493 1494 #ifdef CONFIG_DM_DEBUG 1495 for (i = 0; i < DM_TRACKED_CHUNK_HASH_SIZE; i++) 1496 BUG_ON(!hlist_empty(&s->tracked_chunk_hash[i])); 1497 #endif 1498 1499 __free_exceptions(s); 1500 1501 mempool_exit(&s->pending_pool); 1502 1503 dm_exception_store_destroy(s->store); 1504 1505 dm_put_device(ti, s->cow); 1506 1507 dm_put_device(ti, s->origin); 1508 1509 WARN_ON(s->in_progress); 1510 1511 kfree(s); 1512 } 1513 1514 static void account_start_copy(struct dm_snapshot *s) 1515 { 1516 spin_lock(&s->in_progress_wait.lock); 1517 s->in_progress++; 1518 spin_unlock(&s->in_progress_wait.lock); 1519 } 1520 1521 static void account_end_copy(struct dm_snapshot *s) 1522 { 1523 spin_lock(&s->in_progress_wait.lock); 1524 BUG_ON(!s->in_progress); 1525 s->in_progress--; 1526 if (likely(s->in_progress <= cow_threshold) && 1527 unlikely(waitqueue_active(&s->in_progress_wait))) 1528 wake_up_locked(&s->in_progress_wait); 1529 spin_unlock(&s->in_progress_wait.lock); 1530 } 1531 1532 static bool wait_for_in_progress(struct dm_snapshot *s, bool unlock_origins) 1533 { 1534 if (unlikely(s->in_progress > cow_threshold)) { 1535 spin_lock(&s->in_progress_wait.lock); 1536 if (likely(s->in_progress > cow_threshold)) { 1537 /* 1538 * NOTE: this throttle doesn't account for whether 1539 * the caller is servicing an IO that will trigger a COW 1540 * so excess throttling may result for chunks not required 1541 * to be COW'd. But if cow_threshold was reached, extra 1542 * throttling is unlikely to negatively impact performance. 1543 */ 1544 DECLARE_WAITQUEUE(wait, current); 1545 1546 __add_wait_queue(&s->in_progress_wait, &wait); 1547 __set_current_state(TASK_UNINTERRUPTIBLE); 1548 spin_unlock(&s->in_progress_wait.lock); 1549 if (unlock_origins) 1550 up_read(&_origins_lock); 1551 io_schedule(); 1552 remove_wait_queue(&s->in_progress_wait, &wait); 1553 return false; 1554 } 1555 spin_unlock(&s->in_progress_wait.lock); 1556 } 1557 return true; 1558 } 1559 1560 /* 1561 * Flush a list of buffers. 1562 */ 1563 static void flush_bios(struct bio *bio) 1564 { 1565 struct bio *n; 1566 1567 while (bio) { 1568 n = bio->bi_next; 1569 bio->bi_next = NULL; 1570 submit_bio_noacct(bio); 1571 bio = n; 1572 } 1573 } 1574 1575 static int do_origin(struct dm_dev *origin, struct bio *bio, bool limit); 1576 1577 /* 1578 * Flush a list of buffers. 1579 */ 1580 static void retry_origin_bios(struct dm_snapshot *s, struct bio *bio) 1581 { 1582 struct bio *n; 1583 int r; 1584 1585 while (bio) { 1586 n = bio->bi_next; 1587 bio->bi_next = NULL; 1588 r = do_origin(s->origin, bio, false); 1589 if (r == DM_MAPIO_REMAPPED) 1590 submit_bio_noacct(bio); 1591 bio = n; 1592 } 1593 } 1594 1595 /* 1596 * Error a list of buffers. 1597 */ 1598 static void error_bios(struct bio *bio) 1599 { 1600 struct bio *n; 1601 1602 while (bio) { 1603 n = bio->bi_next; 1604 bio->bi_next = NULL; 1605 bio_io_error(bio); 1606 bio = n; 1607 } 1608 } 1609 1610 static void __invalidate_snapshot(struct dm_snapshot *s, int err) 1611 { 1612 if (!s->valid) 1613 return; 1614 1615 if (err == -EIO) 1616 DMERR("Invalidating snapshot: Error reading/writing."); 1617 else if (err == -ENOMEM) 1618 DMERR("Invalidating snapshot: Unable to allocate exception."); 1619 1620 if (s->store->type->drop_snapshot) 1621 s->store->type->drop_snapshot(s->store); 1622 1623 s->valid = 0; 1624 1625 dm_table_event(s->ti->table); 1626 } 1627 1628 static void invalidate_snapshot(struct dm_snapshot *s, int err) 1629 { 1630 down_write(&s->lock); 1631 __invalidate_snapshot(s, err); 1632 up_write(&s->lock); 1633 } 1634 1635 static void pending_complete(void *context, int success) 1636 { 1637 struct dm_snap_pending_exception *pe = context; 1638 struct dm_exception *e; 1639 struct dm_snapshot *s = pe->snap; 1640 struct bio *origin_bios = NULL; 1641 struct bio *snapshot_bios = NULL; 1642 struct bio *full_bio = NULL; 1643 struct dm_exception_table_lock lock; 1644 int error = 0; 1645 1646 dm_exception_table_lock_init(s, pe->e.old_chunk, &lock); 1647 1648 if (!success) { 1649 /* Read/write error - snapshot is unusable */ 1650 invalidate_snapshot(s, -EIO); 1651 error = 1; 1652 1653 dm_exception_table_lock(&lock); 1654 goto out; 1655 } 1656 1657 e = alloc_completed_exception(GFP_NOIO); 1658 if (!e) { 1659 invalidate_snapshot(s, -ENOMEM); 1660 error = 1; 1661 1662 dm_exception_table_lock(&lock); 1663 goto out; 1664 } 1665 *e = pe->e; 1666 1667 down_read(&s->lock); 1668 dm_exception_table_lock(&lock); 1669 if (!s->valid) { 1670 up_read(&s->lock); 1671 free_completed_exception(e); 1672 error = 1; 1673 1674 goto out; 1675 } 1676 1677 /* 1678 * Add a proper exception. After inserting the completed exception all 1679 * subsequent snapshot reads to this chunk will be redirected to the 1680 * COW device. This ensures that we do not starve. Moreover, as long 1681 * as the pending exception exists, neither origin writes nor snapshot 1682 * merging can overwrite the chunk in origin. 1683 */ 1684 dm_insert_exception(&s->complete, e); 1685 up_read(&s->lock); 1686 1687 /* Wait for conflicting reads to drain */ 1688 if (__chunk_is_tracked(s, pe->e.old_chunk)) { 1689 dm_exception_table_unlock(&lock); 1690 __check_for_conflicting_io(s, pe->e.old_chunk); 1691 dm_exception_table_lock(&lock); 1692 } 1693 1694 out: 1695 /* Remove the in-flight exception from the list */ 1696 dm_remove_exception(&pe->e); 1697 1698 dm_exception_table_unlock(&lock); 1699 1700 snapshot_bios = bio_list_get(&pe->snapshot_bios); 1701 origin_bios = bio_list_get(&pe->origin_bios); 1702 full_bio = pe->full_bio; 1703 if (full_bio) 1704 full_bio->bi_end_io = pe->full_bio_end_io; 1705 increment_pending_exceptions_done_count(); 1706 1707 /* Submit any pending write bios */ 1708 if (error) { 1709 if (full_bio) 1710 bio_io_error(full_bio); 1711 error_bios(snapshot_bios); 1712 } else { 1713 if (full_bio) 1714 bio_endio(full_bio); 1715 flush_bios(snapshot_bios); 1716 } 1717 1718 retry_origin_bios(s, origin_bios); 1719 1720 free_pending_exception(pe); 1721 } 1722 1723 static void complete_exception(struct dm_snap_pending_exception *pe) 1724 { 1725 struct dm_snapshot *s = pe->snap; 1726 1727 /* Update the metadata if we are persistent */ 1728 s->store->type->commit_exception(s->store, &pe->e, !pe->copy_error, 1729 pending_complete, pe); 1730 } 1731 1732 /* 1733 * Called when the copy I/O has finished. kcopyd actually runs 1734 * this code so don't block. 1735 */ 1736 static void copy_callback(int read_err, unsigned long write_err, void *context) 1737 { 1738 struct dm_snap_pending_exception *pe = context; 1739 struct dm_snapshot *s = pe->snap; 1740 1741 pe->copy_error = read_err || write_err; 1742 1743 if (pe->exception_sequence == s->exception_complete_sequence) { 1744 struct rb_node *next; 1745 1746 s->exception_complete_sequence++; 1747 complete_exception(pe); 1748 1749 next = rb_first(&s->out_of_order_tree); 1750 while (next) { 1751 pe = rb_entry(next, struct dm_snap_pending_exception, 1752 out_of_order_node); 1753 if (pe->exception_sequence != s->exception_complete_sequence) 1754 break; 1755 next = rb_next(next); 1756 s->exception_complete_sequence++; 1757 rb_erase(&pe->out_of_order_node, &s->out_of_order_tree); 1758 complete_exception(pe); 1759 cond_resched(); 1760 } 1761 } else { 1762 struct rb_node *parent = NULL; 1763 struct rb_node **p = &s->out_of_order_tree.rb_node; 1764 struct dm_snap_pending_exception *pe2; 1765 1766 while (*p) { 1767 pe2 = rb_entry(*p, struct dm_snap_pending_exception, out_of_order_node); 1768 parent = *p; 1769 1770 BUG_ON(pe->exception_sequence == pe2->exception_sequence); 1771 if (pe->exception_sequence < pe2->exception_sequence) 1772 p = &((*p)->rb_left); 1773 else 1774 p = &((*p)->rb_right); 1775 } 1776 1777 rb_link_node(&pe->out_of_order_node, parent, p); 1778 rb_insert_color(&pe->out_of_order_node, &s->out_of_order_tree); 1779 } 1780 account_end_copy(s); 1781 } 1782 1783 /* 1784 * Dispatches the copy operation to kcopyd. 1785 */ 1786 static void start_copy(struct dm_snap_pending_exception *pe) 1787 { 1788 struct dm_snapshot *s = pe->snap; 1789 struct dm_io_region src, dest; 1790 struct block_device *bdev = s->origin->bdev; 1791 sector_t dev_size; 1792 1793 dev_size = get_dev_size(bdev); 1794 1795 src.bdev = bdev; 1796 src.sector = chunk_to_sector(s->store, pe->e.old_chunk); 1797 src.count = min((sector_t)s->store->chunk_size, dev_size - src.sector); 1798 1799 dest.bdev = s->cow->bdev; 1800 dest.sector = chunk_to_sector(s->store, pe->e.new_chunk); 1801 dest.count = src.count; 1802 1803 /* Hand over to kcopyd */ 1804 account_start_copy(s); 1805 dm_kcopyd_copy(s->kcopyd_client, &src, 1, &dest, 0, copy_callback, pe); 1806 } 1807 1808 static void full_bio_end_io(struct bio *bio) 1809 { 1810 void *callback_data = bio->bi_private; 1811 1812 dm_kcopyd_do_callback(callback_data, 0, bio->bi_status ? 1 : 0); 1813 } 1814 1815 static void start_full_bio(struct dm_snap_pending_exception *pe, 1816 struct bio *bio) 1817 { 1818 struct dm_snapshot *s = pe->snap; 1819 void *callback_data; 1820 1821 pe->full_bio = bio; 1822 pe->full_bio_end_io = bio->bi_end_io; 1823 1824 account_start_copy(s); 1825 callback_data = dm_kcopyd_prepare_callback(s->kcopyd_client, 1826 copy_callback, pe); 1827 1828 bio->bi_end_io = full_bio_end_io; 1829 bio->bi_private = callback_data; 1830 1831 submit_bio_noacct(bio); 1832 } 1833 1834 static struct dm_snap_pending_exception * 1835 __lookup_pending_exception(struct dm_snapshot *s, chunk_t chunk) 1836 { 1837 struct dm_exception *e = dm_lookup_exception(&s->pending, chunk); 1838 1839 if (!e) 1840 return NULL; 1841 1842 return container_of(e, struct dm_snap_pending_exception, e); 1843 } 1844 1845 /* 1846 * Inserts a pending exception into the pending table. 1847 * 1848 * NOTE: a write lock must be held on the chunk's pending exception table slot 1849 * before calling this. 1850 */ 1851 static struct dm_snap_pending_exception * 1852 __insert_pending_exception(struct dm_snapshot *s, 1853 struct dm_snap_pending_exception *pe, chunk_t chunk) 1854 { 1855 pe->e.old_chunk = chunk; 1856 bio_list_init(&pe->origin_bios); 1857 bio_list_init(&pe->snapshot_bios); 1858 pe->started = 0; 1859 pe->full_bio = NULL; 1860 1861 spin_lock(&s->pe_allocation_lock); 1862 if (s->store->type->prepare_exception(s->store, &pe->e)) { 1863 spin_unlock(&s->pe_allocation_lock); 1864 free_pending_exception(pe); 1865 return NULL; 1866 } 1867 1868 pe->exception_sequence = s->exception_start_sequence++; 1869 spin_unlock(&s->pe_allocation_lock); 1870 1871 dm_insert_exception(&s->pending, &pe->e); 1872 1873 return pe; 1874 } 1875 1876 /* 1877 * Looks to see if this snapshot already has a pending exception 1878 * for this chunk, otherwise it allocates a new one and inserts 1879 * it into the pending table. 1880 * 1881 * NOTE: a write lock must be held on the chunk's pending exception table slot 1882 * before calling this. 1883 */ 1884 static struct dm_snap_pending_exception * 1885 __find_pending_exception(struct dm_snapshot *s, 1886 struct dm_snap_pending_exception *pe, chunk_t chunk) 1887 { 1888 struct dm_snap_pending_exception *pe2; 1889 1890 pe2 = __lookup_pending_exception(s, chunk); 1891 if (pe2) { 1892 free_pending_exception(pe); 1893 return pe2; 1894 } 1895 1896 return __insert_pending_exception(s, pe, chunk); 1897 } 1898 1899 static void remap_exception(struct dm_snapshot *s, struct dm_exception *e, 1900 struct bio *bio, chunk_t chunk) 1901 { 1902 bio_set_dev(bio, s->cow->bdev); 1903 bio->bi_iter.bi_sector = 1904 chunk_to_sector(s->store, dm_chunk_number(e->new_chunk) + 1905 (chunk - e->old_chunk)) + 1906 (bio->bi_iter.bi_sector & s->store->chunk_mask); 1907 } 1908 1909 static void zero_callback(int read_err, unsigned long write_err, void *context) 1910 { 1911 struct bio *bio = context; 1912 struct dm_snapshot *s = bio->bi_private; 1913 1914 account_end_copy(s); 1915 bio->bi_status = write_err ? BLK_STS_IOERR : 0; 1916 bio_endio(bio); 1917 } 1918 1919 static void zero_exception(struct dm_snapshot *s, struct dm_exception *e, 1920 struct bio *bio, chunk_t chunk) 1921 { 1922 struct dm_io_region dest; 1923 1924 dest.bdev = s->cow->bdev; 1925 dest.sector = bio->bi_iter.bi_sector; 1926 dest.count = s->store->chunk_size; 1927 1928 account_start_copy(s); 1929 WARN_ON_ONCE(bio->bi_private); 1930 bio->bi_private = s; 1931 dm_kcopyd_zero(s->kcopyd_client, 1, &dest, 0, zero_callback, bio); 1932 } 1933 1934 static bool io_overlaps_chunk(struct dm_snapshot *s, struct bio *bio) 1935 { 1936 return bio->bi_iter.bi_size == 1937 (s->store->chunk_size << SECTOR_SHIFT); 1938 } 1939 1940 static int snapshot_map(struct dm_target *ti, struct bio *bio) 1941 { 1942 struct dm_exception *e; 1943 struct dm_snapshot *s = ti->private; 1944 int r = DM_MAPIO_REMAPPED; 1945 chunk_t chunk; 1946 struct dm_snap_pending_exception *pe = NULL; 1947 struct dm_exception_table_lock lock; 1948 1949 init_tracked_chunk(bio); 1950 1951 if (bio->bi_opf & REQ_PREFLUSH) { 1952 bio_set_dev(bio, s->cow->bdev); 1953 return DM_MAPIO_REMAPPED; 1954 } 1955 1956 chunk = sector_to_chunk(s->store, bio->bi_iter.bi_sector); 1957 dm_exception_table_lock_init(s, chunk, &lock); 1958 1959 /* Full snapshots are not usable */ 1960 /* To get here the table must be live so s->active is always set. */ 1961 if (!s->valid) 1962 return DM_MAPIO_KILL; 1963 1964 if (bio_data_dir(bio) == WRITE) { 1965 while (unlikely(!wait_for_in_progress(s, false))) 1966 ; /* wait_for_in_progress() has slept */ 1967 } 1968 1969 down_read(&s->lock); 1970 dm_exception_table_lock(&lock); 1971 1972 if (!s->valid || (unlikely(s->snapshot_overflowed) && 1973 bio_data_dir(bio) == WRITE)) { 1974 r = DM_MAPIO_KILL; 1975 goto out_unlock; 1976 } 1977 1978 if (unlikely(bio_op(bio) == REQ_OP_DISCARD)) { 1979 if (s->discard_passdown_origin && dm_bio_get_target_bio_nr(bio)) { 1980 /* 1981 * passdown discard to origin (without triggering 1982 * snapshot exceptions via do_origin; doing so would 1983 * defeat the goal of freeing space in origin that is 1984 * implied by the "discard_passdown_origin" feature) 1985 */ 1986 bio_set_dev(bio, s->origin->bdev); 1987 track_chunk(s, bio, chunk); 1988 goto out_unlock; 1989 } 1990 /* discard to snapshot (target_bio_nr == 0) zeroes exceptions */ 1991 } 1992 1993 /* If the block is already remapped - use that, else remap it */ 1994 e = dm_lookup_exception(&s->complete, chunk); 1995 if (e) { 1996 remap_exception(s, e, bio, chunk); 1997 if (unlikely(bio_op(bio) == REQ_OP_DISCARD) && 1998 io_overlaps_chunk(s, bio)) { 1999 dm_exception_table_unlock(&lock); 2000 up_read(&s->lock); 2001 zero_exception(s, e, bio, chunk); 2002 r = DM_MAPIO_SUBMITTED; /* discard is not issued */ 2003 goto out; 2004 } 2005 goto out_unlock; 2006 } 2007 2008 if (unlikely(bio_op(bio) == REQ_OP_DISCARD)) { 2009 /* 2010 * If no exception exists, complete discard immediately 2011 * otherwise it'll trigger copy-out. 2012 */ 2013 bio_endio(bio); 2014 r = DM_MAPIO_SUBMITTED; 2015 goto out_unlock; 2016 } 2017 2018 /* 2019 * Write to snapshot - higher level takes care of RW/RO 2020 * flags so we should only get this if we are 2021 * writable. 2022 */ 2023 if (bio_data_dir(bio) == WRITE) { 2024 pe = __lookup_pending_exception(s, chunk); 2025 if (!pe) { 2026 dm_exception_table_unlock(&lock); 2027 pe = alloc_pending_exception(s); 2028 dm_exception_table_lock(&lock); 2029 2030 e = dm_lookup_exception(&s->complete, chunk); 2031 if (e) { 2032 free_pending_exception(pe); 2033 remap_exception(s, e, bio, chunk); 2034 goto out_unlock; 2035 } 2036 2037 pe = __find_pending_exception(s, pe, chunk); 2038 if (!pe) { 2039 dm_exception_table_unlock(&lock); 2040 up_read(&s->lock); 2041 2042 down_write(&s->lock); 2043 2044 if (s->store->userspace_supports_overflow) { 2045 if (s->valid && !s->snapshot_overflowed) { 2046 s->snapshot_overflowed = 1; 2047 DMERR("Snapshot overflowed: Unable to allocate exception."); 2048 } 2049 } else 2050 __invalidate_snapshot(s, -ENOMEM); 2051 up_write(&s->lock); 2052 2053 r = DM_MAPIO_KILL; 2054 goto out; 2055 } 2056 } 2057 2058 remap_exception(s, &pe->e, bio, chunk); 2059 2060 r = DM_MAPIO_SUBMITTED; 2061 2062 if (!pe->started && io_overlaps_chunk(s, bio)) { 2063 pe->started = 1; 2064 2065 dm_exception_table_unlock(&lock); 2066 up_read(&s->lock); 2067 2068 start_full_bio(pe, bio); 2069 goto out; 2070 } 2071 2072 bio_list_add(&pe->snapshot_bios, bio); 2073 2074 if (!pe->started) { 2075 /* this is protected by the exception table lock */ 2076 pe->started = 1; 2077 2078 dm_exception_table_unlock(&lock); 2079 up_read(&s->lock); 2080 2081 start_copy(pe); 2082 goto out; 2083 } 2084 } else { 2085 bio_set_dev(bio, s->origin->bdev); 2086 track_chunk(s, bio, chunk); 2087 } 2088 2089 out_unlock: 2090 dm_exception_table_unlock(&lock); 2091 up_read(&s->lock); 2092 out: 2093 return r; 2094 } 2095 2096 /* 2097 * A snapshot-merge target behaves like a combination of a snapshot 2098 * target and a snapshot-origin target. It only generates new 2099 * exceptions in other snapshots and not in the one that is being 2100 * merged. 2101 * 2102 * For each chunk, if there is an existing exception, it is used to 2103 * redirect I/O to the cow device. Otherwise I/O is sent to the origin, 2104 * which in turn might generate exceptions in other snapshots. 2105 * If merging is currently taking place on the chunk in question, the 2106 * I/O is deferred by adding it to s->bios_queued_during_merge. 2107 */ 2108 static int snapshot_merge_map(struct dm_target *ti, struct bio *bio) 2109 { 2110 struct dm_exception *e; 2111 struct dm_snapshot *s = ti->private; 2112 int r = DM_MAPIO_REMAPPED; 2113 chunk_t chunk; 2114 2115 init_tracked_chunk(bio); 2116 2117 if (bio->bi_opf & REQ_PREFLUSH) { 2118 if (!dm_bio_get_target_bio_nr(bio)) 2119 bio_set_dev(bio, s->origin->bdev); 2120 else 2121 bio_set_dev(bio, s->cow->bdev); 2122 return DM_MAPIO_REMAPPED; 2123 } 2124 2125 if (unlikely(bio_op(bio) == REQ_OP_DISCARD)) { 2126 /* Once merging, discards no longer effect change */ 2127 bio_endio(bio); 2128 return DM_MAPIO_SUBMITTED; 2129 } 2130 2131 chunk = sector_to_chunk(s->store, bio->bi_iter.bi_sector); 2132 2133 down_write(&s->lock); 2134 2135 /* Full merging snapshots are redirected to the origin */ 2136 if (!s->valid) 2137 goto redirect_to_origin; 2138 2139 /* If the block is already remapped - use that */ 2140 e = dm_lookup_exception(&s->complete, chunk); 2141 if (e) { 2142 /* Queue writes overlapping with chunks being merged */ 2143 if (bio_data_dir(bio) == WRITE && 2144 chunk >= s->first_merging_chunk && 2145 chunk < (s->first_merging_chunk + 2146 s->num_merging_chunks)) { 2147 bio_set_dev(bio, s->origin->bdev); 2148 bio_list_add(&s->bios_queued_during_merge, bio); 2149 r = DM_MAPIO_SUBMITTED; 2150 goto out_unlock; 2151 } 2152 2153 remap_exception(s, e, bio, chunk); 2154 2155 if (bio_data_dir(bio) == WRITE) 2156 track_chunk(s, bio, chunk); 2157 goto out_unlock; 2158 } 2159 2160 redirect_to_origin: 2161 bio_set_dev(bio, s->origin->bdev); 2162 2163 if (bio_data_dir(bio) == WRITE) { 2164 up_write(&s->lock); 2165 return do_origin(s->origin, bio, false); 2166 } 2167 2168 out_unlock: 2169 up_write(&s->lock); 2170 2171 return r; 2172 } 2173 2174 static int snapshot_end_io(struct dm_target *ti, struct bio *bio, 2175 blk_status_t *error) 2176 { 2177 struct dm_snapshot *s = ti->private; 2178 2179 if (is_bio_tracked(bio)) 2180 stop_tracking_chunk(s, bio); 2181 2182 return DM_ENDIO_DONE; 2183 } 2184 2185 static void snapshot_merge_presuspend(struct dm_target *ti) 2186 { 2187 struct dm_snapshot *s = ti->private; 2188 2189 stop_merge(s); 2190 } 2191 2192 static int snapshot_preresume(struct dm_target *ti) 2193 { 2194 int r = 0; 2195 struct dm_snapshot *s = ti->private; 2196 struct dm_snapshot *snap_src = NULL, *snap_dest = NULL; 2197 2198 down_read(&_origins_lock); 2199 (void) __find_snapshots_sharing_cow(s, &snap_src, &snap_dest, NULL); 2200 if (snap_src && snap_dest) { 2201 down_read(&snap_src->lock); 2202 if (s == snap_src) { 2203 DMERR("Unable to resume snapshot source until handover completes."); 2204 r = -EINVAL; 2205 } else if (!dm_suspended(snap_src->ti)) { 2206 DMERR("Unable to perform snapshot handover until source is suspended."); 2207 r = -EINVAL; 2208 } 2209 up_read(&snap_src->lock); 2210 } 2211 up_read(&_origins_lock); 2212 2213 return r; 2214 } 2215 2216 static void snapshot_resume(struct dm_target *ti) 2217 { 2218 struct dm_snapshot *s = ti->private; 2219 struct dm_snapshot *snap_src = NULL, *snap_dest = NULL, *snap_merging = NULL; 2220 struct dm_origin *o; 2221 struct mapped_device *origin_md = NULL; 2222 bool must_restart_merging = false; 2223 2224 down_read(&_origins_lock); 2225 2226 o = __lookup_dm_origin(s->origin->bdev); 2227 if (o) 2228 origin_md = dm_table_get_md(o->ti->table); 2229 if (!origin_md) { 2230 (void) __find_snapshots_sharing_cow(s, NULL, NULL, &snap_merging); 2231 if (snap_merging) 2232 origin_md = dm_table_get_md(snap_merging->ti->table); 2233 } 2234 if (origin_md == dm_table_get_md(ti->table)) 2235 origin_md = NULL; 2236 if (origin_md) { 2237 if (dm_hold(origin_md)) 2238 origin_md = NULL; 2239 } 2240 2241 up_read(&_origins_lock); 2242 2243 if (origin_md) { 2244 dm_internal_suspend_fast(origin_md); 2245 if (snap_merging && test_bit(RUNNING_MERGE, &snap_merging->state_bits)) { 2246 must_restart_merging = true; 2247 stop_merge(snap_merging); 2248 } 2249 } 2250 2251 down_read(&_origins_lock); 2252 2253 (void) __find_snapshots_sharing_cow(s, &snap_src, &snap_dest, NULL); 2254 if (snap_src && snap_dest) { 2255 down_write(&snap_src->lock); 2256 down_write_nested(&snap_dest->lock, SINGLE_DEPTH_NESTING); 2257 __handover_exceptions(snap_src, snap_dest); 2258 up_write(&snap_dest->lock); 2259 up_write(&snap_src->lock); 2260 } 2261 2262 up_read(&_origins_lock); 2263 2264 if (origin_md) { 2265 if (must_restart_merging) 2266 start_merge(snap_merging); 2267 dm_internal_resume_fast(origin_md); 2268 dm_put(origin_md); 2269 } 2270 2271 /* Now we have correct chunk size, reregister */ 2272 reregister_snapshot(s); 2273 2274 down_write(&s->lock); 2275 s->active = 1; 2276 up_write(&s->lock); 2277 } 2278 2279 static uint32_t get_origin_minimum_chunksize(struct block_device *bdev) 2280 { 2281 uint32_t min_chunksize; 2282 2283 down_read(&_origins_lock); 2284 min_chunksize = __minimum_chunk_size(__lookup_origin(bdev)); 2285 up_read(&_origins_lock); 2286 2287 return min_chunksize; 2288 } 2289 2290 static void snapshot_merge_resume(struct dm_target *ti) 2291 { 2292 struct dm_snapshot *s = ti->private; 2293 2294 /* 2295 * Handover exceptions from existing snapshot. 2296 */ 2297 snapshot_resume(ti); 2298 2299 /* 2300 * snapshot-merge acts as an origin, so set ti->max_io_len 2301 */ 2302 ti->max_io_len = get_origin_minimum_chunksize(s->origin->bdev); 2303 2304 start_merge(s); 2305 } 2306 2307 static void snapshot_status(struct dm_target *ti, status_type_t type, 2308 unsigned int status_flags, char *result, unsigned int maxlen) 2309 { 2310 unsigned int sz = 0; 2311 struct dm_snapshot *snap = ti->private; 2312 unsigned int num_features; 2313 2314 switch (type) { 2315 case STATUSTYPE_INFO: 2316 2317 down_write(&snap->lock); 2318 2319 if (!snap->valid) 2320 DMEMIT("Invalid"); 2321 else if (snap->merge_failed) 2322 DMEMIT("Merge failed"); 2323 else if (snap->snapshot_overflowed) 2324 DMEMIT("Overflow"); 2325 else { 2326 if (snap->store->type->usage) { 2327 sector_t total_sectors, sectors_allocated, 2328 metadata_sectors; 2329 snap->store->type->usage(snap->store, 2330 &total_sectors, 2331 §ors_allocated, 2332 &metadata_sectors); 2333 DMEMIT("%llu/%llu %llu", 2334 (unsigned long long)sectors_allocated, 2335 (unsigned long long)total_sectors, 2336 (unsigned long long)metadata_sectors); 2337 } else 2338 DMEMIT("Unknown"); 2339 } 2340 2341 up_write(&snap->lock); 2342 2343 break; 2344 2345 case STATUSTYPE_TABLE: 2346 /* 2347 * kdevname returns a static pointer so we need 2348 * to make private copies if the output is to 2349 * make sense. 2350 */ 2351 DMEMIT("%s %s", snap->origin->name, snap->cow->name); 2352 sz += snap->store->type->status(snap->store, type, result + sz, 2353 maxlen - sz); 2354 num_features = snap->discard_zeroes_cow + snap->discard_passdown_origin; 2355 if (num_features) { 2356 DMEMIT(" %u", num_features); 2357 if (snap->discard_zeroes_cow) 2358 DMEMIT(" discard_zeroes_cow"); 2359 if (snap->discard_passdown_origin) 2360 DMEMIT(" discard_passdown_origin"); 2361 } 2362 break; 2363 2364 case STATUSTYPE_IMA: 2365 DMEMIT_TARGET_NAME_VERSION(ti->type); 2366 DMEMIT(",snap_origin_name=%s", snap->origin->name); 2367 DMEMIT(",snap_cow_name=%s", snap->cow->name); 2368 DMEMIT(",snap_valid=%c", snap->valid ? 'y' : 'n'); 2369 DMEMIT(",snap_merge_failed=%c", snap->merge_failed ? 'y' : 'n'); 2370 DMEMIT(",snapshot_overflowed=%c", snap->snapshot_overflowed ? 'y' : 'n'); 2371 DMEMIT(";"); 2372 break; 2373 } 2374 } 2375 2376 static int snapshot_iterate_devices(struct dm_target *ti, 2377 iterate_devices_callout_fn fn, void *data) 2378 { 2379 struct dm_snapshot *snap = ti->private; 2380 int r; 2381 2382 r = fn(ti, snap->origin, 0, ti->len, data); 2383 2384 if (!r) 2385 r = fn(ti, snap->cow, 0, get_dev_size(snap->cow->bdev), data); 2386 2387 return r; 2388 } 2389 2390 static void snapshot_io_hints(struct dm_target *ti, struct queue_limits *limits) 2391 { 2392 struct dm_snapshot *snap = ti->private; 2393 2394 if (snap->discard_zeroes_cow) { 2395 struct dm_snapshot *snap_src = NULL, *snap_dest = NULL; 2396 2397 down_read(&_origins_lock); 2398 2399 (void) __find_snapshots_sharing_cow(snap, &snap_src, &snap_dest, NULL); 2400 if (snap_src && snap_dest) 2401 snap = snap_src; 2402 2403 /* All discards are split on chunk_size boundary */ 2404 limits->discard_granularity = snap->store->chunk_size; 2405 limits->max_hw_discard_sectors = snap->store->chunk_size; 2406 2407 up_read(&_origins_lock); 2408 } 2409 } 2410 2411 /* 2412 *--------------------------------------------------------------- 2413 * Origin methods 2414 *--------------------------------------------------------------- 2415 */ 2416 /* 2417 * If no exceptions need creating, DM_MAPIO_REMAPPED is returned and any 2418 * supplied bio was ignored. The caller may submit it immediately. 2419 * (No remapping actually occurs as the origin is always a direct linear 2420 * map.) 2421 * 2422 * If further exceptions are required, DM_MAPIO_SUBMITTED is returned 2423 * and any supplied bio is added to a list to be submitted once all 2424 * the necessary exceptions exist. 2425 */ 2426 static int __origin_write(struct list_head *snapshots, sector_t sector, 2427 struct bio *bio) 2428 { 2429 int r = DM_MAPIO_REMAPPED; 2430 struct dm_snapshot *snap; 2431 struct dm_exception *e; 2432 struct dm_snap_pending_exception *pe, *pe2; 2433 struct dm_snap_pending_exception *pe_to_start_now = NULL; 2434 struct dm_snap_pending_exception *pe_to_start_last = NULL; 2435 struct dm_exception_table_lock lock; 2436 chunk_t chunk; 2437 2438 /* Do all the snapshots on this origin */ 2439 list_for_each_entry(snap, snapshots, list) { 2440 /* 2441 * Don't make new exceptions in a merging snapshot 2442 * because it has effectively been deleted 2443 */ 2444 if (dm_target_is_snapshot_merge(snap->ti)) 2445 continue; 2446 2447 /* Nothing to do if writing beyond end of snapshot */ 2448 if (sector >= dm_table_get_size(snap->ti->table)) 2449 continue; 2450 2451 /* 2452 * Remember, different snapshots can have 2453 * different chunk sizes. 2454 */ 2455 chunk = sector_to_chunk(snap->store, sector); 2456 dm_exception_table_lock_init(snap, chunk, &lock); 2457 2458 down_read(&snap->lock); 2459 dm_exception_table_lock(&lock); 2460 2461 /* Only deal with valid and active snapshots */ 2462 if (!snap->valid || !snap->active) 2463 goto next_snapshot; 2464 2465 pe = __lookup_pending_exception(snap, chunk); 2466 if (!pe) { 2467 /* 2468 * Check exception table to see if block is already 2469 * remapped in this snapshot and trigger an exception 2470 * if not. 2471 */ 2472 e = dm_lookup_exception(&snap->complete, chunk); 2473 if (e) 2474 goto next_snapshot; 2475 2476 dm_exception_table_unlock(&lock); 2477 pe = alloc_pending_exception(snap); 2478 dm_exception_table_lock(&lock); 2479 2480 pe2 = __lookup_pending_exception(snap, chunk); 2481 2482 if (!pe2) { 2483 e = dm_lookup_exception(&snap->complete, chunk); 2484 if (e) { 2485 free_pending_exception(pe); 2486 goto next_snapshot; 2487 } 2488 2489 pe = __insert_pending_exception(snap, pe, chunk); 2490 if (!pe) { 2491 dm_exception_table_unlock(&lock); 2492 up_read(&snap->lock); 2493 2494 invalidate_snapshot(snap, -ENOMEM); 2495 continue; 2496 } 2497 } else { 2498 free_pending_exception(pe); 2499 pe = pe2; 2500 } 2501 } 2502 2503 r = DM_MAPIO_SUBMITTED; 2504 2505 /* 2506 * If an origin bio was supplied, queue it to wait for the 2507 * completion of this exception, and start this one last, 2508 * at the end of the function. 2509 */ 2510 if (bio) { 2511 bio_list_add(&pe->origin_bios, bio); 2512 bio = NULL; 2513 2514 if (!pe->started) { 2515 pe->started = 1; 2516 pe_to_start_last = pe; 2517 } 2518 } 2519 2520 if (!pe->started) { 2521 pe->started = 1; 2522 pe_to_start_now = pe; 2523 } 2524 2525 next_snapshot: 2526 dm_exception_table_unlock(&lock); 2527 up_read(&snap->lock); 2528 2529 if (pe_to_start_now) { 2530 start_copy(pe_to_start_now); 2531 pe_to_start_now = NULL; 2532 } 2533 } 2534 2535 /* 2536 * Submit the exception against which the bio is queued last, 2537 * to give the other exceptions a head start. 2538 */ 2539 if (pe_to_start_last) 2540 start_copy(pe_to_start_last); 2541 2542 return r; 2543 } 2544 2545 /* 2546 * Called on a write from the origin driver. 2547 */ 2548 static int do_origin(struct dm_dev *origin, struct bio *bio, bool limit) 2549 { 2550 struct origin *o; 2551 int r = DM_MAPIO_REMAPPED; 2552 2553 again: 2554 down_read(&_origins_lock); 2555 o = __lookup_origin(origin->bdev); 2556 if (o) { 2557 if (limit) { 2558 struct dm_snapshot *s; 2559 2560 list_for_each_entry(s, &o->snapshots, list) 2561 if (unlikely(!wait_for_in_progress(s, true))) 2562 goto again; 2563 } 2564 2565 r = __origin_write(&o->snapshots, bio->bi_iter.bi_sector, bio); 2566 } 2567 up_read(&_origins_lock); 2568 2569 return r; 2570 } 2571 2572 /* 2573 * Trigger exceptions in all non-merging snapshots. 2574 * 2575 * The chunk size of the merging snapshot may be larger than the chunk 2576 * size of some other snapshot so we may need to reallocate multiple 2577 * chunks in other snapshots. 2578 * 2579 * We scan all the overlapping exceptions in the other snapshots. 2580 * Returns 1 if anything was reallocated and must be waited for, 2581 * otherwise returns 0. 2582 * 2583 * size must be a multiple of merging_snap's chunk_size. 2584 */ 2585 static int origin_write_extent(struct dm_snapshot *merging_snap, 2586 sector_t sector, unsigned int size) 2587 { 2588 int must_wait = 0; 2589 sector_t n; 2590 struct origin *o; 2591 2592 /* 2593 * The origin's __minimum_chunk_size() got stored in max_io_len 2594 * by snapshot_merge_resume(). 2595 */ 2596 down_read(&_origins_lock); 2597 o = __lookup_origin(merging_snap->origin->bdev); 2598 for (n = 0; n < size; n += merging_snap->ti->max_io_len) 2599 if (__origin_write(&o->snapshots, sector + n, NULL) == 2600 DM_MAPIO_SUBMITTED) 2601 must_wait = 1; 2602 up_read(&_origins_lock); 2603 2604 return must_wait; 2605 } 2606 2607 /* 2608 * Origin: maps a linear range of a device, with hooks for snapshotting. 2609 */ 2610 2611 /* 2612 * Construct an origin mapping: <dev_path> 2613 * The context for an origin is merely a 'struct dm_dev *' 2614 * pointing to the real device. 2615 */ 2616 static int origin_ctr(struct dm_target *ti, unsigned int argc, char **argv) 2617 { 2618 int r; 2619 struct dm_origin *o; 2620 2621 if (argc != 1) { 2622 ti->error = "origin: incorrect number of arguments"; 2623 return -EINVAL; 2624 } 2625 2626 o = kmalloc_obj(struct dm_origin, GFP_KERNEL); 2627 if (!o) { 2628 ti->error = "Cannot allocate private origin structure"; 2629 r = -ENOMEM; 2630 goto bad_alloc; 2631 } 2632 2633 r = dm_get_device(ti, argv[0], dm_table_get_mode(ti->table), &o->dev); 2634 if (r) { 2635 ti->error = "Cannot get target device"; 2636 goto bad_open; 2637 } 2638 2639 o->ti = ti; 2640 ti->private = o; 2641 ti->num_flush_bios = 1; 2642 2643 return 0; 2644 2645 bad_open: 2646 kfree(o); 2647 bad_alloc: 2648 return r; 2649 } 2650 2651 static void origin_dtr(struct dm_target *ti) 2652 { 2653 struct dm_origin *o = ti->private; 2654 2655 dm_put_device(ti, o->dev); 2656 kfree(o); 2657 } 2658 2659 static int origin_map(struct dm_target *ti, struct bio *bio) 2660 { 2661 struct dm_origin *o = ti->private; 2662 unsigned int available_sectors; 2663 2664 bio_set_dev(bio, o->dev->bdev); 2665 2666 if (unlikely(bio->bi_opf & REQ_PREFLUSH)) 2667 return DM_MAPIO_REMAPPED; 2668 2669 if (bio_data_dir(bio) != WRITE) 2670 return DM_MAPIO_REMAPPED; 2671 2672 available_sectors = o->split_boundary - 2673 ((unsigned int)bio->bi_iter.bi_sector & (o->split_boundary - 1)); 2674 2675 if (bio_sectors(bio) > available_sectors) 2676 dm_accept_partial_bio(bio, available_sectors); 2677 2678 /* Only tell snapshots if this is a write */ 2679 return do_origin(o->dev, bio, true); 2680 } 2681 2682 /* 2683 * Set the target "max_io_len" field to the minimum of all the snapshots' 2684 * chunk sizes. 2685 */ 2686 static void origin_resume(struct dm_target *ti) 2687 { 2688 struct dm_origin *o = ti->private; 2689 2690 o->split_boundary = get_origin_minimum_chunksize(o->dev->bdev); 2691 2692 down_write(&_origins_lock); 2693 __insert_dm_origin(o); 2694 up_write(&_origins_lock); 2695 } 2696 2697 static void origin_postsuspend(struct dm_target *ti) 2698 { 2699 struct dm_origin *o = ti->private; 2700 2701 down_write(&_origins_lock); 2702 __remove_dm_origin(o); 2703 up_write(&_origins_lock); 2704 } 2705 2706 static void origin_status(struct dm_target *ti, status_type_t type, 2707 unsigned int status_flags, char *result, unsigned int maxlen) 2708 { 2709 struct dm_origin *o = ti->private; 2710 2711 switch (type) { 2712 case STATUSTYPE_INFO: 2713 result[0] = '\0'; 2714 break; 2715 2716 case STATUSTYPE_TABLE: 2717 snprintf(result, maxlen, "%s", o->dev->name); 2718 break; 2719 case STATUSTYPE_IMA: 2720 result[0] = '\0'; 2721 break; 2722 } 2723 } 2724 2725 static int origin_iterate_devices(struct dm_target *ti, 2726 iterate_devices_callout_fn fn, void *data) 2727 { 2728 struct dm_origin *o = ti->private; 2729 2730 return fn(ti, o->dev, 0, ti->len, data); 2731 } 2732 2733 static struct target_type origin_target = { 2734 .name = "snapshot-origin", 2735 .version = {1, 9, 0}, 2736 .module = THIS_MODULE, 2737 .ctr = origin_ctr, 2738 .dtr = origin_dtr, 2739 .map = origin_map, 2740 .resume = origin_resume, 2741 .postsuspend = origin_postsuspend, 2742 .status = origin_status, 2743 .iterate_devices = origin_iterate_devices, 2744 }; 2745 2746 static struct target_type snapshot_target = { 2747 .name = "snapshot", 2748 .version = {1, 16, 0}, 2749 .module = THIS_MODULE, 2750 .ctr = snapshot_ctr, 2751 .dtr = snapshot_dtr, 2752 .map = snapshot_map, 2753 .end_io = snapshot_end_io, 2754 .preresume = snapshot_preresume, 2755 .resume = snapshot_resume, 2756 .status = snapshot_status, 2757 .iterate_devices = snapshot_iterate_devices, 2758 .io_hints = snapshot_io_hints, 2759 }; 2760 2761 static struct target_type merge_target = { 2762 .name = dm_snapshot_merge_target_name, 2763 .version = {1, 5, 0}, 2764 .module = THIS_MODULE, 2765 .ctr = snapshot_ctr, 2766 .dtr = snapshot_dtr, 2767 .map = snapshot_merge_map, 2768 .end_io = snapshot_end_io, 2769 .presuspend = snapshot_merge_presuspend, 2770 .preresume = snapshot_preresume, 2771 .resume = snapshot_merge_resume, 2772 .status = snapshot_status, 2773 .iterate_devices = snapshot_iterate_devices, 2774 .io_hints = snapshot_io_hints, 2775 }; 2776 2777 static int __init dm_snapshot_init(void) 2778 { 2779 int r; 2780 2781 r = dm_exception_store_init(); 2782 if (r) { 2783 DMERR("Failed to initialize exception stores"); 2784 return r; 2785 } 2786 2787 r = init_origin_hash(); 2788 if (r) { 2789 DMERR("init_origin_hash failed."); 2790 goto bad_origin_hash; 2791 } 2792 2793 exception_cache = KMEM_CACHE(dm_exception, 0); 2794 if (!exception_cache) { 2795 DMERR("Couldn't create exception cache."); 2796 r = -ENOMEM; 2797 goto bad_exception_cache; 2798 } 2799 2800 pending_cache = KMEM_CACHE(dm_snap_pending_exception, 0); 2801 if (!pending_cache) { 2802 DMERR("Couldn't create pending cache."); 2803 r = -ENOMEM; 2804 goto bad_pending_cache; 2805 } 2806 2807 r = dm_register_target(&snapshot_target); 2808 if (r < 0) 2809 goto bad_register_snapshot_target; 2810 2811 r = dm_register_target(&origin_target); 2812 if (r < 0) 2813 goto bad_register_origin_target; 2814 2815 r = dm_register_target(&merge_target); 2816 if (r < 0) 2817 goto bad_register_merge_target; 2818 2819 return 0; 2820 2821 bad_register_merge_target: 2822 dm_unregister_target(&origin_target); 2823 bad_register_origin_target: 2824 dm_unregister_target(&snapshot_target); 2825 bad_register_snapshot_target: 2826 kmem_cache_destroy(pending_cache); 2827 bad_pending_cache: 2828 kmem_cache_destroy(exception_cache); 2829 bad_exception_cache: 2830 exit_origin_hash(); 2831 bad_origin_hash: 2832 dm_exception_store_exit(); 2833 2834 return r; 2835 } 2836 2837 static void __exit dm_snapshot_exit(void) 2838 { 2839 dm_unregister_target(&snapshot_target); 2840 dm_unregister_target(&origin_target); 2841 dm_unregister_target(&merge_target); 2842 2843 exit_origin_hash(); 2844 kmem_cache_destroy(pending_cache); 2845 kmem_cache_destroy(exception_cache); 2846 2847 dm_exception_store_exit(); 2848 } 2849 2850 /* Module hooks */ 2851 module_init(dm_snapshot_init); 2852 module_exit(dm_snapshot_exit); 2853 2854 MODULE_DESCRIPTION(DM_NAME " snapshot target"); 2855 MODULE_AUTHOR("Joe Thornber"); 2856 MODULE_LICENSE("GPL"); 2857 MODULE_ALIAS("dm-snapshot-origin"); 2858 MODULE_ALIAS("dm-snapshot-merge"); 2859