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