4 * Copyright (C) 2001-2002 Sistina Software (UK) Limited.
6 * This file is released under the GPL.
9 #include <linux/blkdev.h>
10 #include <linux/ctype.h>
11 #include <linux/device-mapper.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>
23 #include "dm-bio-list.h"
26 #define DM_MSG_PREFIX "snapshots"
29 * The percentage increment we will wake up users at
31 #define WAKE_UP_PERCENT 5
34 * kcopyd priority of snapshot operations
36 #define SNAPSHOT_COPY_PRIORITY 2
39 * Each snapshot reserves this many pages for io
41 #define SNAPSHOT_PAGES 256
43 static struct workqueue_struct *ksnapd;
44 static void flush_queued_bios(struct work_struct *work);
46 struct dm_snap_pending_exception {
47 struct dm_snap_exception e;
50 * Origin buffers waiting for this to complete are held
53 struct bio_list origin_bios;
54 struct bio_list snapshot_bios;
57 * Short-term queue of pending exceptions prior to submission.
59 struct list_head list;
62 * The primary pending_exception is the one that holds
63 * the ref_count and the list of origin_bios for a
64 * group of pending_exceptions. It is always last to get freed.
65 * These fields get set up when writing to the origin.
67 struct dm_snap_pending_exception *primary_pe;
70 * Number of pending_exceptions processing this chunk.
71 * When this drops to zero we must complete the origin bios.
72 * If incrementing or decrementing this, hold pe->snap->lock for
73 * the sibling concerned and not pe->primary_pe->snap->lock unless
78 /* Pointer back to snapshot context */
79 struct dm_snapshot *snap;
82 * 1 indicates the exception has already been sent to
89 * Hash table mapping origin volumes to lists of snapshots and
90 * a lock to protect it
92 static struct kmem_cache *exception_cache;
93 static struct kmem_cache *pending_cache;
94 static mempool_t *pending_pool;
97 * One of these per registered origin, held in the snapshot_origins hash
100 /* The origin device */
101 struct block_device *bdev;
103 struct list_head hash_list;
105 /* List of snapshots for this origin */
106 struct list_head snapshots;
110 * Size of the hash table for origin volumes. If we make this
111 * the size of the minors list then it should be nearly perfect
113 #define ORIGIN_HASH_SIZE 256
114 #define ORIGIN_MASK 0xFF
115 static struct list_head *_origins;
116 static struct rw_semaphore _origins_lock;
118 static int init_origin_hash(void)
122 _origins = kmalloc(ORIGIN_HASH_SIZE * sizeof(struct list_head),
125 DMERR("unable to allocate memory");
129 for (i = 0; i < ORIGIN_HASH_SIZE; i++)
130 INIT_LIST_HEAD(_origins + i);
131 init_rwsem(&_origins_lock);
136 static void exit_origin_hash(void)
141 static unsigned origin_hash(struct block_device *bdev)
143 return bdev->bd_dev & ORIGIN_MASK;
146 static struct origin *__lookup_origin(struct block_device *origin)
148 struct list_head *ol;
151 ol = &_origins[origin_hash(origin)];
152 list_for_each_entry (o, ol, hash_list)
153 if (bdev_equal(o->bdev, origin))
159 static void __insert_origin(struct origin *o)
161 struct list_head *sl = &_origins[origin_hash(o->bdev)];
162 list_add_tail(&o->hash_list, sl);
166 * Make a note of the snapshot and its origin so we can look it
167 * up when the origin has a write on it.
169 static int register_snapshot(struct dm_snapshot *snap)
172 struct block_device *bdev = snap->origin->bdev;
174 down_write(&_origins_lock);
175 o = __lookup_origin(bdev);
179 o = kmalloc(sizeof(*o), GFP_KERNEL);
181 up_write(&_origins_lock);
185 /* Initialise the struct */
186 INIT_LIST_HEAD(&o->snapshots);
192 list_add_tail(&snap->list, &o->snapshots);
194 up_write(&_origins_lock);
198 static void unregister_snapshot(struct dm_snapshot *s)
202 down_write(&_origins_lock);
203 o = __lookup_origin(s->origin->bdev);
206 if (list_empty(&o->snapshots)) {
207 list_del(&o->hash_list);
211 up_write(&_origins_lock);
215 * Implementation of the exception hash tables.
217 static int init_exception_table(struct exception_table *et, uint32_t size)
221 et->hash_mask = size - 1;
222 et->table = dm_vcalloc(size, sizeof(struct list_head));
226 for (i = 0; i < size; i++)
227 INIT_LIST_HEAD(et->table + i);
232 static void exit_exception_table(struct exception_table *et, struct kmem_cache *mem)
234 struct list_head *slot;
235 struct dm_snap_exception *ex, *next;
238 size = et->hash_mask + 1;
239 for (i = 0; i < size; i++) {
240 slot = et->table + i;
242 list_for_each_entry_safe (ex, next, slot, hash_list)
243 kmem_cache_free(mem, ex);
249 static uint32_t exception_hash(struct exception_table *et, chunk_t chunk)
251 return chunk & et->hash_mask;
254 static void insert_exception(struct exception_table *eh,
255 struct dm_snap_exception *e)
257 struct list_head *l = &eh->table[exception_hash(eh, e->old_chunk)];
258 list_add(&e->hash_list, l);
261 static void remove_exception(struct dm_snap_exception *e)
263 list_del(&e->hash_list);
267 * Return the exception data for a sector, or NULL if not
270 static struct dm_snap_exception *lookup_exception(struct exception_table *et,
273 struct list_head *slot;
274 struct dm_snap_exception *e;
276 slot = &et->table[exception_hash(et, chunk)];
277 list_for_each_entry (e, slot, hash_list)
278 if (e->old_chunk == chunk)
284 static struct dm_snap_exception *alloc_exception(void)
286 struct dm_snap_exception *e;
288 e = kmem_cache_alloc(exception_cache, GFP_NOIO);
290 e = kmem_cache_alloc(exception_cache, GFP_ATOMIC);
295 static void free_exception(struct dm_snap_exception *e)
297 kmem_cache_free(exception_cache, e);
300 static struct dm_snap_pending_exception *alloc_pending_exception(void)
302 return mempool_alloc(pending_pool, GFP_NOIO);
305 static void free_pending_exception(struct dm_snap_pending_exception *pe)
307 mempool_free(pe, pending_pool);
310 int dm_add_exception(struct dm_snapshot *s, chunk_t old, chunk_t new)
312 struct dm_snap_exception *e;
314 e = alloc_exception();
320 insert_exception(&s->complete, e);
327 static int calc_max_buckets(void)
329 /* use a fixed size of 2MB */
330 unsigned long mem = 2 * 1024 * 1024;
331 mem /= sizeof(struct list_head);
337 * Allocate room for a suitable hash table.
339 static int init_hash_tables(struct dm_snapshot *s)
341 sector_t hash_size, cow_dev_size, origin_dev_size, max_buckets;
344 * Calculate based on the size of the original volume or
347 cow_dev_size = get_dev_size(s->cow->bdev);
348 origin_dev_size = get_dev_size(s->origin->bdev);
349 max_buckets = calc_max_buckets();
351 hash_size = min(origin_dev_size, cow_dev_size) >> s->chunk_shift;
352 hash_size = min(hash_size, max_buckets);
354 hash_size = rounddown_pow_of_two(hash_size);
355 if (init_exception_table(&s->complete, hash_size))
359 * Allocate hash table for in-flight exceptions
360 * Make this smaller than the real hash table
366 if (init_exception_table(&s->pending, hash_size)) {
367 exit_exception_table(&s->complete, exception_cache);
375 * Round a number up to the nearest 'size' boundary. size must
378 static ulong round_up(ulong n, ulong size)
381 return (n + size) & ~size;
384 static int set_chunk_size(struct dm_snapshot *s, const char *chunk_size_arg,
387 unsigned long chunk_size;
390 chunk_size = simple_strtoul(chunk_size_arg, &value, 10);
391 if (*chunk_size_arg == '\0' || *value != '\0') {
392 *error = "Invalid chunk size";
397 s->chunk_size = s->chunk_mask = s->chunk_shift = 0;
402 * Chunk size must be multiple of page size. Silently
403 * round up if it's not.
405 chunk_size = round_up(chunk_size, PAGE_SIZE >> 9);
407 /* Check chunk_size is a power of 2 */
408 if (!is_power_of_2(chunk_size)) {
409 *error = "Chunk size is not a power of 2";
413 /* Validate the chunk size against the device block size */
414 if (chunk_size % (bdev_hardsect_size(s->cow->bdev) >> 9)) {
415 *error = "Chunk size is not a multiple of device blocksize";
419 s->chunk_size = chunk_size;
420 s->chunk_mask = chunk_size - 1;
421 s->chunk_shift = ffs(chunk_size) - 1;
427 * Construct a snapshot mapping: <origin_dev> <COW-dev> <p/n> <chunk-size>
429 static int snapshot_ctr(struct dm_target *ti, unsigned int argc, char **argv)
431 struct dm_snapshot *s;
438 ti->error = "requires exactly 4 arguments";
443 origin_path = argv[0];
445 persistent = toupper(*argv[2]);
447 if (persistent != 'P' && persistent != 'N') {
448 ti->error = "Persistent flag is not P or N";
453 s = kmalloc(sizeof(*s), GFP_KERNEL);
455 ti->error = "Cannot allocate snapshot context private "
461 r = dm_get_device(ti, origin_path, 0, ti->len, FMODE_READ, &s->origin);
463 ti->error = "Cannot get origin device";
467 r = dm_get_device(ti, cow_path, 0, 0,
468 FMODE_READ | FMODE_WRITE, &s->cow);
470 dm_put_device(ti, s->origin);
471 ti->error = "Cannot get COW device";
475 r = set_chunk_size(s, argv[3], &ti->error);
479 s->type = persistent;
484 init_rwsem(&s->lock);
485 spin_lock_init(&s->pe_lock);
486 s->table = ti->table;
488 /* Allocate hash table for COW data */
489 if (init_hash_tables(s)) {
490 ti->error = "Unable to allocate hash table space";
497 if (persistent == 'P')
498 r = dm_create_persistent(&s->store);
500 r = dm_create_transient(&s->store);
503 ti->error = "Couldn't create exception store";
508 r = kcopyd_client_create(SNAPSHOT_PAGES, &s->kcopyd_client);
510 ti->error = "Could not create kcopyd client";
514 /* Metadata must only be loaded into one table at once */
515 r = s->store.read_metadata(&s->store);
517 ti->error = "Failed to read snapshot metadata";
521 DMWARN("Snapshot is marked invalid.");
524 bio_list_init(&s->queued_bios);
525 INIT_WORK(&s->queued_bios_work, flush_queued_bios);
527 /* Add snapshot to the list of snapshots for this origin */
528 /* Exceptions aren't triggered till snapshot_resume() is called */
529 if (register_snapshot(s)) {
531 ti->error = "Cannot register snapshot origin";
536 ti->split_io = s->chunk_size;
541 kcopyd_client_destroy(s->kcopyd_client);
544 s->store.destroy(&s->store);
547 exit_exception_table(&s->pending, pending_cache);
548 exit_exception_table(&s->complete, exception_cache);
551 dm_put_device(ti, s->cow);
552 dm_put_device(ti, s->origin);
561 static void __free_exceptions(struct dm_snapshot *s)
563 kcopyd_client_destroy(s->kcopyd_client);
564 s->kcopyd_client = NULL;
566 exit_exception_table(&s->pending, pending_cache);
567 exit_exception_table(&s->complete, exception_cache);
569 s->store.destroy(&s->store);
572 static void snapshot_dtr(struct dm_target *ti)
574 struct dm_snapshot *s = ti->private;
576 flush_workqueue(ksnapd);
578 /* Prevent further origin writes from using this snapshot. */
579 /* After this returns there can be no new kcopyd jobs. */
580 unregister_snapshot(s);
582 __free_exceptions(s);
584 dm_put_device(ti, s->origin);
585 dm_put_device(ti, s->cow);
591 * Flush a list of buffers.
593 static void flush_bios(struct bio *bio)
600 generic_make_request(bio);
605 static void flush_queued_bios(struct work_struct *work)
607 struct dm_snapshot *s =
608 container_of(work, struct dm_snapshot, queued_bios_work);
609 struct bio *queued_bios;
612 spin_lock_irqsave(&s->pe_lock, flags);
613 queued_bios = bio_list_get(&s->queued_bios);
614 spin_unlock_irqrestore(&s->pe_lock, flags);
616 flush_bios(queued_bios);
620 * Error a list of buffers.
622 static void error_bios(struct bio *bio)
634 static void __invalidate_snapshot(struct dm_snapshot *s, int err)
640 DMERR("Invalidating snapshot: Error reading/writing.");
641 else if (err == -ENOMEM)
642 DMERR("Invalidating snapshot: Unable to allocate exception.");
644 if (s->store.drop_snapshot)
645 s->store.drop_snapshot(&s->store);
649 dm_table_event(s->table);
652 static void get_pending_exception(struct dm_snap_pending_exception *pe)
654 atomic_inc(&pe->ref_count);
657 static struct bio *put_pending_exception(struct dm_snap_pending_exception *pe)
659 struct dm_snap_pending_exception *primary_pe;
660 struct bio *origin_bios = NULL;
662 primary_pe = pe->primary_pe;
665 * If this pe is involved in a write to the origin and
666 * it is the last sibling to complete then release
667 * the bios for the original write to the origin.
670 atomic_dec_and_test(&primary_pe->ref_count))
671 origin_bios = bio_list_get(&primary_pe->origin_bios);
674 * Free the pe if it's not linked to an origin write or if
675 * it's not itself a primary pe.
677 if (!primary_pe || primary_pe != pe)
678 free_pending_exception(pe);
681 * Free the primary pe if nothing references it.
683 if (primary_pe && !atomic_read(&primary_pe->ref_count))
684 free_pending_exception(primary_pe);
689 static void pending_complete(struct dm_snap_pending_exception *pe, int success)
691 struct dm_snap_exception *e;
692 struct dm_snapshot *s = pe->snap;
693 struct bio *origin_bios = NULL;
694 struct bio *snapshot_bios = NULL;
698 /* Read/write error - snapshot is unusable */
699 down_write(&s->lock);
700 __invalidate_snapshot(s, -EIO);
705 e = alloc_exception();
707 down_write(&s->lock);
708 __invalidate_snapshot(s, -ENOMEM);
714 down_write(&s->lock);
722 * Add a proper exception, and remove the
723 * in-flight exception from the list.
725 insert_exception(&s->complete, e);
728 remove_exception(&pe->e);
729 snapshot_bios = bio_list_get(&pe->snapshot_bios);
730 origin_bios = put_pending_exception(pe);
734 /* Submit any pending write bios */
736 error_bios(snapshot_bios);
738 flush_bios(snapshot_bios);
740 flush_bios(origin_bios);
743 static void commit_callback(void *context, int success)
745 struct dm_snap_pending_exception *pe = context;
747 pending_complete(pe, success);
751 * Called when the copy I/O has finished. kcopyd actually runs
752 * this code so don't block.
754 static void copy_callback(int read_err, unsigned int write_err, void *context)
756 struct dm_snap_pending_exception *pe = context;
757 struct dm_snapshot *s = pe->snap;
759 if (read_err || write_err)
760 pending_complete(pe, 0);
763 /* Update the metadata if we are persistent */
764 s->store.commit_exception(&s->store, &pe->e, commit_callback,
769 * Dispatches the copy operation to kcopyd.
771 static void start_copy(struct dm_snap_pending_exception *pe)
773 struct dm_snapshot *s = pe->snap;
774 struct io_region src, dest;
775 struct block_device *bdev = s->origin->bdev;
778 dev_size = get_dev_size(bdev);
781 src.sector = chunk_to_sector(s, pe->e.old_chunk);
782 src.count = min(s->chunk_size, dev_size - src.sector);
784 dest.bdev = s->cow->bdev;
785 dest.sector = chunk_to_sector(s, pe->e.new_chunk);
786 dest.count = src.count;
788 /* Hand over to kcopyd */
789 kcopyd_copy(s->kcopyd_client,
790 &src, 1, &dest, 0, copy_callback, pe);
794 * Looks to see if this snapshot already has a pending exception
795 * for this chunk, otherwise it allocates a new one and inserts
796 * it into the pending table.
798 * NOTE: a write lock must be held on snap->lock before calling
801 static struct dm_snap_pending_exception *
802 __find_pending_exception(struct dm_snapshot *s, struct bio *bio)
804 struct dm_snap_exception *e;
805 struct dm_snap_pending_exception *pe;
806 chunk_t chunk = sector_to_chunk(s, bio->bi_sector);
809 * Is there a pending exception for this already ?
811 e = lookup_exception(&s->pending, chunk);
813 /* cast the exception to a pending exception */
814 pe = container_of(e, struct dm_snap_pending_exception, e);
819 * Create a new pending exception, we don't want
820 * to hold the lock while we do this.
823 pe = alloc_pending_exception();
824 down_write(&s->lock);
827 free_pending_exception(pe);
831 e = lookup_exception(&s->pending, chunk);
833 free_pending_exception(pe);
834 pe = container_of(e, struct dm_snap_pending_exception, e);
838 pe->e.old_chunk = chunk;
839 bio_list_init(&pe->origin_bios);
840 bio_list_init(&pe->snapshot_bios);
841 pe->primary_pe = NULL;
842 atomic_set(&pe->ref_count, 0);
846 if (s->store.prepare_exception(&s->store, &pe->e)) {
847 free_pending_exception(pe);
851 get_pending_exception(pe);
852 insert_exception(&s->pending, &pe->e);
858 static void remap_exception(struct dm_snapshot *s, struct dm_snap_exception *e,
861 bio->bi_bdev = s->cow->bdev;
862 bio->bi_sector = chunk_to_sector(s, e->new_chunk) +
863 (bio->bi_sector & s->chunk_mask);
866 static int snapshot_map(struct dm_target *ti, struct bio *bio,
867 union map_info *map_context)
869 struct dm_snap_exception *e;
870 struct dm_snapshot *s = ti->private;
871 int r = DM_MAPIO_REMAPPED;
873 struct dm_snap_pending_exception *pe = NULL;
875 chunk = sector_to_chunk(s, bio->bi_sector);
877 /* Full snapshots are not usable */
878 /* To get here the table must be live so s->active is always set. */
882 /* FIXME: should only take write lock if we need
883 * to copy an exception */
884 down_write(&s->lock);
891 /* If the block is already remapped - use that, else remap it */
892 e = lookup_exception(&s->complete, chunk);
894 remap_exception(s, e, bio);
899 * Write to snapshot - higher level takes care of RW/RO
900 * flags so we should only get this if we are
903 if (bio_rw(bio) == WRITE) {
904 pe = __find_pending_exception(s, bio);
906 __invalidate_snapshot(s, -ENOMEM);
911 remap_exception(s, &pe->e, bio);
912 bio_list_add(&pe->snapshot_bios, bio);
914 r = DM_MAPIO_SUBMITTED;
917 /* this is protected by snap->lock */
925 * FIXME: this read path scares me because we
926 * always use the origin when we have a pending
927 * exception. However I can't think of a
928 * situation where this is wrong - ejt.
930 bio->bi_bdev = s->origin->bdev;
938 static void snapshot_resume(struct dm_target *ti)
940 struct dm_snapshot *s = ti->private;
942 down_write(&s->lock);
947 static int snapshot_status(struct dm_target *ti, status_type_t type,
948 char *result, unsigned int maxlen)
950 struct dm_snapshot *snap = ti->private;
953 case STATUSTYPE_INFO:
955 snprintf(result, maxlen, "Invalid");
957 if (snap->store.fraction_full) {
958 sector_t numerator, denominator;
959 snap->store.fraction_full(&snap->store,
962 snprintf(result, maxlen, "%llu/%llu",
963 (unsigned long long)numerator,
964 (unsigned long long)denominator);
967 snprintf(result, maxlen, "Unknown");
971 case STATUSTYPE_TABLE:
973 * kdevname returns a static pointer so we need
974 * to make private copies if the output is to
977 snprintf(result, maxlen, "%s %s %c %llu",
978 snap->origin->name, snap->cow->name,
980 (unsigned long long)snap->chunk_size);
987 /*-----------------------------------------------------------------
989 *---------------------------------------------------------------*/
990 static int __origin_write(struct list_head *snapshots, struct bio *bio)
992 int r = DM_MAPIO_REMAPPED, first = 0;
993 struct dm_snapshot *snap;
994 struct dm_snap_exception *e;
995 struct dm_snap_pending_exception *pe, *next_pe, *primary_pe = NULL;
999 /* Do all the snapshots on this origin */
1000 list_for_each_entry (snap, snapshots, list) {
1002 down_write(&snap->lock);
1004 /* Only deal with valid and active snapshots */
1005 if (!snap->valid || !snap->active)
1008 /* Nothing to do if writing beyond end of snapshot */
1009 if (bio->bi_sector >= dm_table_get_size(snap->table))
1013 * Remember, different snapshots can have
1014 * different chunk sizes.
1016 chunk = sector_to_chunk(snap, bio->bi_sector);
1019 * Check exception table to see if block
1020 * is already remapped in this snapshot
1021 * and trigger an exception if not.
1023 * ref_count is initialised to 1 so pending_complete()
1024 * won't destroy the primary_pe while we're inside this loop.
1026 e = lookup_exception(&snap->complete, chunk);
1030 pe = __find_pending_exception(snap, bio);
1032 __invalidate_snapshot(snap, -ENOMEM);
1038 * Either every pe here has same
1039 * primary_pe or none has one yet.
1042 primary_pe = pe->primary_pe;
1048 bio_list_add(&primary_pe->origin_bios, bio);
1050 r = DM_MAPIO_SUBMITTED;
1053 if (!pe->primary_pe) {
1054 pe->primary_pe = primary_pe;
1055 get_pending_exception(primary_pe);
1060 list_add_tail(&pe->list, &pe_queue);
1064 up_write(&snap->lock);
1071 * If this is the first time we're processing this chunk and
1072 * ref_count is now 1 it means all the pending exceptions
1073 * got completed while we were in the loop above, so it falls to
1074 * us here to remove the primary_pe and submit any origin_bios.
1077 if (first && atomic_dec_and_test(&primary_pe->ref_count)) {
1078 flush_bios(bio_list_get(&primary_pe->origin_bios));
1079 free_pending_exception(primary_pe);
1080 /* If we got here, pe_queue is necessarily empty. */
1085 * Now that we have a complete pe list we can start the copying.
1087 list_for_each_entry_safe(pe, next_pe, &pe_queue, list)
1094 * Called on a write from the origin driver.
1096 static int do_origin(struct dm_dev *origin, struct bio *bio)
1099 int r = DM_MAPIO_REMAPPED;
1101 down_read(&_origins_lock);
1102 o = __lookup_origin(origin->bdev);
1104 r = __origin_write(&o->snapshots, bio);
1105 up_read(&_origins_lock);
1111 * Origin: maps a linear range of a device, with hooks for snapshotting.
1115 * Construct an origin mapping: <dev_path>
1116 * The context for an origin is merely a 'struct dm_dev *'
1117 * pointing to the real device.
1119 static int origin_ctr(struct dm_target *ti, unsigned int argc, char **argv)
1125 ti->error = "origin: incorrect number of arguments";
1129 r = dm_get_device(ti, argv[0], 0, ti->len,
1130 dm_table_get_mode(ti->table), &dev);
1132 ti->error = "Cannot get target device";
1140 static void origin_dtr(struct dm_target *ti)
1142 struct dm_dev *dev = ti->private;
1143 dm_put_device(ti, dev);
1146 static int origin_map(struct dm_target *ti, struct bio *bio,
1147 union map_info *map_context)
1149 struct dm_dev *dev = ti->private;
1150 bio->bi_bdev = dev->bdev;
1152 /* Only tell snapshots if this is a write */
1153 return (bio_rw(bio) == WRITE) ? do_origin(dev, bio) : DM_MAPIO_REMAPPED;
1156 #define min_not_zero(l, r) (l == 0) ? r : ((r == 0) ? l : min(l, r))
1159 * Set the target "split_io" field to the minimum of all the snapshots'
1162 static void origin_resume(struct dm_target *ti)
1164 struct dm_dev *dev = ti->private;
1165 struct dm_snapshot *snap;
1167 chunk_t chunk_size = 0;
1169 down_read(&_origins_lock);
1170 o = __lookup_origin(dev->bdev);
1172 list_for_each_entry (snap, &o->snapshots, list)
1173 chunk_size = min_not_zero(chunk_size, snap->chunk_size);
1174 up_read(&_origins_lock);
1176 ti->split_io = chunk_size;
1179 static int origin_status(struct dm_target *ti, status_type_t type, char *result,
1180 unsigned int maxlen)
1182 struct dm_dev *dev = ti->private;
1185 case STATUSTYPE_INFO:
1189 case STATUSTYPE_TABLE:
1190 snprintf(result, maxlen, "%s", dev->name);
1197 static struct target_type origin_target = {
1198 .name = "snapshot-origin",
1199 .version = {1, 5, 0},
1200 .module = THIS_MODULE,
1204 .resume = origin_resume,
1205 .status = origin_status,
1208 static struct target_type snapshot_target = {
1210 .version = {1, 5, 0},
1211 .module = THIS_MODULE,
1212 .ctr = snapshot_ctr,
1213 .dtr = snapshot_dtr,
1214 .map = snapshot_map,
1215 .resume = snapshot_resume,
1216 .status = snapshot_status,
1219 static int __init dm_snapshot_init(void)
1223 r = dm_register_target(&snapshot_target);
1225 DMERR("snapshot target register failed %d", r);
1229 r = dm_register_target(&origin_target);
1231 DMERR("Origin target register failed %d", r);
1235 r = init_origin_hash();
1237 DMERR("init_origin_hash failed.");
1241 exception_cache = KMEM_CACHE(dm_snap_exception, 0);
1242 if (!exception_cache) {
1243 DMERR("Couldn't create exception cache.");
1248 pending_cache = KMEM_CACHE(dm_snap_pending_exception, 0);
1249 if (!pending_cache) {
1250 DMERR("Couldn't create pending cache.");
1255 pending_pool = mempool_create_slab_pool(128, pending_cache);
1256 if (!pending_pool) {
1257 DMERR("Couldn't create pending pool.");
1262 ksnapd = create_singlethread_workqueue("ksnapd");
1264 DMERR("Failed to create ksnapd workqueue.");
1272 mempool_destroy(pending_pool);
1274 kmem_cache_destroy(pending_cache);
1276 kmem_cache_destroy(exception_cache);
1280 dm_unregister_target(&origin_target);
1282 dm_unregister_target(&snapshot_target);
1286 static void __exit dm_snapshot_exit(void)
1290 destroy_workqueue(ksnapd);
1292 r = dm_unregister_target(&snapshot_target);
1294 DMERR("snapshot unregister failed %d", r);
1296 r = dm_unregister_target(&origin_target);
1298 DMERR("origin unregister failed %d", r);
1301 mempool_destroy(pending_pool);
1302 kmem_cache_destroy(pending_cache);
1303 kmem_cache_destroy(exception_cache);
1307 module_init(dm_snapshot_init);
1308 module_exit(dm_snapshot_exit);
1310 MODULE_DESCRIPTION(DM_NAME " snapshot target");
1311 MODULE_AUTHOR("Joe Thornber");
1312 MODULE_LICENSE("GPL");