Merge branch 'akpm/master'
[deliverable/linux.git] / drivers / md / dm.c
CommitLineData
1da177e4
LT
1/*
2 * Copyright (C) 2001, 2002 Sistina Software (UK) Limited.
784aae73 3 * Copyright (C) 2004-2008 Red Hat, Inc. All rights reserved.
1da177e4
LT
4 *
5 * This file is released under the GPL.
6 */
7
4cc96131
MS
8#include "dm-core.h"
9#include "dm-rq.h"
51e5b2bd 10#include "dm-uevent.h"
1da177e4
LT
11
12#include <linux/init.h>
13#include <linux/module.h>
48c9c27b 14#include <linux/mutex.h>
1da177e4
LT
15#include <linux/blkpg.h>
16#include <linux/bio.h>
1da177e4
LT
17#include <linux/mempool.h>
18#include <linux/slab.h>
19#include <linux/idr.h>
3ac51e74 20#include <linux/hdreg.h>
3f77316d 21#include <linux/delay.h>
ffcc3936 22#include <linux/wait.h>
71cdb697 23#include <linux/pr.h>
55782138 24
72d94861
AK
25#define DM_MSG_PREFIX "core"
26
71a16736
NK
27#ifdef CONFIG_PRINTK
28/*
29 * ratelimit state to be used in DMXXX_LIMIT().
30 */
31DEFINE_RATELIMIT_STATE(dm_ratelimit_state,
32 DEFAULT_RATELIMIT_INTERVAL,
33 DEFAULT_RATELIMIT_BURST);
34EXPORT_SYMBOL(dm_ratelimit_state);
35#endif
36
60935eb2
MB
37/*
38 * Cookies are numeric values sent with CHANGE and REMOVE
39 * uevents while resuming, removing or renaming the device.
40 */
41#define DM_COOKIE_ENV_VAR_NAME "DM_COOKIE"
42#define DM_COOKIE_LENGTH 24
43
1da177e4
LT
44static const char *_name = DM_NAME;
45
46static unsigned int major = 0;
47static unsigned int _major = 0;
48
d15b774c
AK
49static DEFINE_IDR(_minor_idr);
50
f32c10b0 51static DEFINE_SPINLOCK(_minor_lock);
2c140a24
MP
52
53static void do_deferred_remove(struct work_struct *w);
54
55static DECLARE_WORK(deferred_remove_work, do_deferred_remove);
56
acfe0ad7
MP
57static struct workqueue_struct *deferred_remove_workqueue;
58
1da177e4
LT
59/*
60 * One of these is allocated per bio.
61 */
62struct dm_io {
63 struct mapped_device *md;
64 int error;
1da177e4 65 atomic_t io_count;
6ae2fa67 66 struct bio *bio;
3eaf840e 67 unsigned long start_time;
f88fb981 68 spinlock_t endio_lock;
fd2ed4d2 69 struct dm_stats_aux stats_aux;
1da177e4
LT
70};
71
ba61fdd1
JM
72#define MINOR_ALLOCED ((void *)-1)
73
1da177e4
LT
74/*
75 * Bits for the md->flags field.
76 */
1eb787ec 77#define DMF_BLOCK_IO_FOR_SUSPEND 0
1da177e4 78#define DMF_SUSPENDED 1
aa8d7c2f 79#define DMF_FROZEN 2
fba9f90e 80#define DMF_FREEING 3
5c6bd75d 81#define DMF_DELETING 4
2e93ccc1 82#define DMF_NOFLUSH_SUSPENDING 5
8ae12666
KO
83#define DMF_DEFERRED_REMOVE 6
84#define DMF_SUSPENDED_INTERNALLY 7
1da177e4 85
115485e8 86#define DM_NUMA_NODE NUMA_NO_NODE
115485e8 87static int dm_numa_node = DM_NUMA_NODE;
faad87df 88
e6ee8c0b
KU
89/*
90 * For mempools pre-allocation at the table loading time.
91 */
92struct dm_md_mempools {
93 mempool_t *io_pool;
1ae49ea2 94 mempool_t *rq_pool;
e6ee8c0b
KU
95 struct bio_set *bs;
96};
97
86f1152b
BM
98struct table_device {
99 struct list_head list;
100 atomic_t count;
101 struct dm_dev dm_dev;
102};
103
e18b890b 104static struct kmem_cache *_io_cache;
8fbf26ad 105static struct kmem_cache *_rq_tio_cache;
1ae49ea2 106static struct kmem_cache *_rq_cache;
94818742 107
e8603136
MS
108/*
109 * Bio-based DM's mempools' reserved IOs set by the user.
110 */
4cc96131 111#define RESERVED_BIO_BASED_IOS 16
e8603136
MS
112static unsigned reserved_bio_based_ios = RESERVED_BIO_BASED_IOS;
113
115485e8
MS
114static int __dm_get_module_param_int(int *module_param, int min, int max)
115{
116 int param = ACCESS_ONCE(*module_param);
117 int modified_param = 0;
118 bool modified = true;
119
120 if (param < min)
121 modified_param = min;
122 else if (param > max)
123 modified_param = max;
124 else
125 modified = false;
126
127 if (modified) {
128 (void)cmpxchg(module_param, param, modified_param);
129 param = modified_param;
130 }
131
132 return param;
133}
134
4cc96131
MS
135unsigned __dm_get_module_param(unsigned *module_param,
136 unsigned def, unsigned max)
f4790826 137{
09c2d531
MS
138 unsigned param = ACCESS_ONCE(*module_param);
139 unsigned modified_param = 0;
f4790826 140
09c2d531
MS
141 if (!param)
142 modified_param = def;
143 else if (param > max)
144 modified_param = max;
f4790826 145
09c2d531
MS
146 if (modified_param) {
147 (void)cmpxchg(module_param, param, modified_param);
148 param = modified_param;
f4790826
MS
149 }
150
09c2d531 151 return param;
f4790826
MS
152}
153
e8603136
MS
154unsigned dm_get_reserved_bio_based_ios(void)
155{
09c2d531 156 return __dm_get_module_param(&reserved_bio_based_ios,
4cc96131 157 RESERVED_BIO_BASED_IOS, DM_RESERVED_MAX_IOS);
e8603136
MS
158}
159EXPORT_SYMBOL_GPL(dm_get_reserved_bio_based_ios);
160
115485e8
MS
161static unsigned dm_get_numa_node(void)
162{
163 return __dm_get_module_param_int(&dm_numa_node,
164 DM_NUMA_NODE, num_online_nodes() - 1);
165}
166
1da177e4
LT
167static int __init local_init(void)
168{
51157b4a 169 int r = -ENOMEM;
1da177e4 170
1da177e4 171 /* allocate a slab for the dm_ios */
028867ac 172 _io_cache = KMEM_CACHE(dm_io, 0);
1da177e4 173 if (!_io_cache)
51157b4a 174 return r;
1da177e4 175
8fbf26ad
KU
176 _rq_tio_cache = KMEM_CACHE(dm_rq_target_io, 0);
177 if (!_rq_tio_cache)
dba14160 178 goto out_free_io_cache;
8fbf26ad 179
eca7ee6d 180 _rq_cache = kmem_cache_create("dm_old_clone_request", sizeof(struct request),
1ae49ea2
MS
181 __alignof__(struct request), 0, NULL);
182 if (!_rq_cache)
183 goto out_free_rq_tio_cache;
184
51e5b2bd 185 r = dm_uevent_init();
51157b4a 186 if (r)
1ae49ea2 187 goto out_free_rq_cache;
51e5b2bd 188
acfe0ad7
MP
189 deferred_remove_workqueue = alloc_workqueue("kdmremove", WQ_UNBOUND, 1);
190 if (!deferred_remove_workqueue) {
191 r = -ENOMEM;
192 goto out_uevent_exit;
193 }
194
1da177e4
LT
195 _major = major;
196 r = register_blkdev(_major, _name);
51157b4a 197 if (r < 0)
acfe0ad7 198 goto out_free_workqueue;
1da177e4
LT
199
200 if (!_major)
201 _major = r;
202
203 return 0;
51157b4a 204
acfe0ad7
MP
205out_free_workqueue:
206 destroy_workqueue(deferred_remove_workqueue);
51157b4a
KU
207out_uevent_exit:
208 dm_uevent_exit();
1ae49ea2
MS
209out_free_rq_cache:
210 kmem_cache_destroy(_rq_cache);
8fbf26ad
KU
211out_free_rq_tio_cache:
212 kmem_cache_destroy(_rq_tio_cache);
51157b4a
KU
213out_free_io_cache:
214 kmem_cache_destroy(_io_cache);
215
216 return r;
1da177e4
LT
217}
218
219static void local_exit(void)
220{
2c140a24 221 flush_scheduled_work();
acfe0ad7 222 destroy_workqueue(deferred_remove_workqueue);
2c140a24 223
1ae49ea2 224 kmem_cache_destroy(_rq_cache);
8fbf26ad 225 kmem_cache_destroy(_rq_tio_cache);
1da177e4 226 kmem_cache_destroy(_io_cache);
00d59405 227 unregister_blkdev(_major, _name);
51e5b2bd 228 dm_uevent_exit();
1da177e4
LT
229
230 _major = 0;
231
232 DMINFO("cleaned up");
233}
234
b9249e55 235static int (*_inits[])(void) __initdata = {
1da177e4
LT
236 local_init,
237 dm_target_init,
238 dm_linear_init,
239 dm_stripe_init,
952b3557 240 dm_io_init,
945fa4d2 241 dm_kcopyd_init,
1da177e4 242 dm_interface_init,
fd2ed4d2 243 dm_statistics_init,
1da177e4
LT
244};
245
b9249e55 246static void (*_exits[])(void) = {
1da177e4
LT
247 local_exit,
248 dm_target_exit,
249 dm_linear_exit,
250 dm_stripe_exit,
952b3557 251 dm_io_exit,
945fa4d2 252 dm_kcopyd_exit,
1da177e4 253 dm_interface_exit,
fd2ed4d2 254 dm_statistics_exit,
1da177e4
LT
255};
256
257static int __init dm_init(void)
258{
259 const int count = ARRAY_SIZE(_inits);
260
261 int r, i;
262
263 for (i = 0; i < count; i++) {
264 r = _inits[i]();
265 if (r)
266 goto bad;
267 }
268
269 return 0;
270
271 bad:
272 while (i--)
273 _exits[i]();
274
275 return r;
276}
277
278static void __exit dm_exit(void)
279{
280 int i = ARRAY_SIZE(_exits);
281
282 while (i--)
283 _exits[i]();
d15b774c
AK
284
285 /*
286 * Should be empty by this point.
287 */
d15b774c 288 idr_destroy(&_minor_idr);
1da177e4
LT
289}
290
291/*
292 * Block device functions
293 */
432a212c
MA
294int dm_deleting_md(struct mapped_device *md)
295{
296 return test_bit(DMF_DELETING, &md->flags);
297}
298
fe5f9f2c 299static int dm_blk_open(struct block_device *bdev, fmode_t mode)
1da177e4
LT
300{
301 struct mapped_device *md;
302
fba9f90e
JM
303 spin_lock(&_minor_lock);
304
fe5f9f2c 305 md = bdev->bd_disk->private_data;
fba9f90e
JM
306 if (!md)
307 goto out;
308
5c6bd75d 309 if (test_bit(DMF_FREEING, &md->flags) ||
432a212c 310 dm_deleting_md(md)) {
fba9f90e
JM
311 md = NULL;
312 goto out;
313 }
314
1da177e4 315 dm_get(md);
5c6bd75d 316 atomic_inc(&md->open_count);
fba9f90e
JM
317out:
318 spin_unlock(&_minor_lock);
319
320 return md ? 0 : -ENXIO;
1da177e4
LT
321}
322
db2a144b 323static void dm_blk_close(struct gendisk *disk, fmode_t mode)
1da177e4 324{
63a4f065 325 struct mapped_device *md;
6e9624b8 326
4a1aeb98
MB
327 spin_lock(&_minor_lock);
328
63a4f065
MS
329 md = disk->private_data;
330 if (WARN_ON(!md))
331 goto out;
332
2c140a24
MP
333 if (atomic_dec_and_test(&md->open_count) &&
334 (test_bit(DMF_DEFERRED_REMOVE, &md->flags)))
acfe0ad7 335 queue_work(deferred_remove_workqueue, &deferred_remove_work);
2c140a24 336
1da177e4 337 dm_put(md);
63a4f065 338out:
4a1aeb98 339 spin_unlock(&_minor_lock);
1da177e4
LT
340}
341
5c6bd75d
AK
342int dm_open_count(struct mapped_device *md)
343{
344 return atomic_read(&md->open_count);
345}
346
347/*
348 * Guarantees nothing is using the device before it's deleted.
349 */
2c140a24 350int dm_lock_for_deletion(struct mapped_device *md, bool mark_deferred, bool only_deferred)
5c6bd75d
AK
351{
352 int r = 0;
353
354 spin_lock(&_minor_lock);
355
2c140a24 356 if (dm_open_count(md)) {
5c6bd75d 357 r = -EBUSY;
2c140a24
MP
358 if (mark_deferred)
359 set_bit(DMF_DEFERRED_REMOVE, &md->flags);
360 } else if (only_deferred && !test_bit(DMF_DEFERRED_REMOVE, &md->flags))
361 r = -EEXIST;
5c6bd75d
AK
362 else
363 set_bit(DMF_DELETING, &md->flags);
364
365 spin_unlock(&_minor_lock);
366
367 return r;
368}
369
2c140a24
MP
370int dm_cancel_deferred_remove(struct mapped_device *md)
371{
372 int r = 0;
373
374 spin_lock(&_minor_lock);
375
376 if (test_bit(DMF_DELETING, &md->flags))
377 r = -EBUSY;
378 else
379 clear_bit(DMF_DEFERRED_REMOVE, &md->flags);
380
381 spin_unlock(&_minor_lock);
382
383 return r;
384}
385
386static void do_deferred_remove(struct work_struct *w)
387{
388 dm_deferred_remove();
389}
390
fd2ed4d2
MP
391sector_t dm_get_size(struct mapped_device *md)
392{
393 return get_capacity(md->disk);
394}
395
9974fa2c
MS
396struct request_queue *dm_get_md_queue(struct mapped_device *md)
397{
398 return md->queue;
399}
400
fd2ed4d2
MP
401struct dm_stats *dm_get_stats(struct mapped_device *md)
402{
403 return &md->stats;
404}
405
3ac51e74
DW
406static int dm_blk_getgeo(struct block_device *bdev, struct hd_geometry *geo)
407{
408 struct mapped_device *md = bdev->bd_disk->private_data;
409
410 return dm_get_geometry(md, geo);
411}
412
956a4025
MS
413static int dm_grab_bdev_for_ioctl(struct mapped_device *md,
414 struct block_device **bdev,
415 fmode_t *mode)
aa129a22 416{
66482026 417 struct dm_target *tgt;
6c182cd8 418 struct dm_table *map;
956a4025 419 int srcu_idx, r;
aa129a22 420
6c182cd8 421retry:
e56f81e0 422 r = -ENOTTY;
956a4025 423 map = dm_get_live_table(md, &srcu_idx);
aa129a22
MB
424 if (!map || !dm_table_get_size(map))
425 goto out;
426
427 /* We only support devices that have a single target */
428 if (dm_table_get_num_targets(map) != 1)
429 goto out;
430
66482026
MS
431 tgt = dm_table_get_target(map, 0);
432 if (!tgt->type->prepare_ioctl)
4d341d82 433 goto out;
aa129a22 434
4f186f8b 435 if (dm_suspended_md(md)) {
aa129a22
MB
436 r = -EAGAIN;
437 goto out;
438 }
439
66482026 440 r = tgt->type->prepare_ioctl(tgt, bdev, mode);
e56f81e0
CH
441 if (r < 0)
442 goto out;
aa129a22 443
956a4025
MS
444 bdgrab(*bdev);
445 dm_put_live_table(md, srcu_idx);
e56f81e0 446 return r;
aa129a22 447
aa129a22 448out:
956a4025 449 dm_put_live_table(md, srcu_idx);
5bbbfdf6 450 if (r == -ENOTCONN && !fatal_signal_pending(current)) {
6c182cd8
HR
451 msleep(10);
452 goto retry;
453 }
e56f81e0
CH
454 return r;
455}
456
457static int dm_blk_ioctl(struct block_device *bdev, fmode_t mode,
458 unsigned int cmd, unsigned long arg)
459{
460 struct mapped_device *md = bdev->bd_disk->private_data;
956a4025 461 int r;
e56f81e0 462
956a4025 463 r = dm_grab_bdev_for_ioctl(md, &bdev, &mode);
e56f81e0
CH
464 if (r < 0)
465 return r;
6c182cd8 466
e56f81e0
CH
467 if (r > 0) {
468 /*
469 * Target determined this ioctl is being issued against
470 * a logical partition of the parent bdev; so extra
471 * validation is needed.
472 */
473 r = scsi_verify_blk_ioctl(NULL, cmd);
474 if (r)
475 goto out;
476 }
6c182cd8 477
66482026 478 r = __blkdev_driver_ioctl(bdev, mode, cmd, arg);
e56f81e0 479out:
956a4025 480 bdput(bdev);
aa129a22
MB
481 return r;
482}
483
028867ac 484static struct dm_io *alloc_io(struct mapped_device *md)
1da177e4
LT
485{
486 return mempool_alloc(md->io_pool, GFP_NOIO);
487}
488
028867ac 489static void free_io(struct mapped_device *md, struct dm_io *io)
1da177e4
LT
490{
491 mempool_free(io, md->io_pool);
492}
493
cfae7529 494static void free_tio(struct dm_target_io *tio)
1da177e4 495{
dba14160 496 bio_put(&tio->clone);
1da177e4
LT
497}
498
4cc96131 499int md_in_flight(struct mapped_device *md)
90abb8c4
KU
500{
501 return atomic_read(&md->pending[READ]) +
502 atomic_read(&md->pending[WRITE]);
503}
504
3eaf840e
JNN
505static void start_io_acct(struct dm_io *io)
506{
507 struct mapped_device *md = io->md;
fd2ed4d2 508 struct bio *bio = io->bio;
c9959059 509 int cpu;
fd2ed4d2 510 int rw = bio_data_dir(bio);
3eaf840e
JNN
511
512 io->start_time = jiffies;
513
074a7aca
TH
514 cpu = part_stat_lock();
515 part_round_stats(cpu, &dm_disk(md)->part0);
516 part_stat_unlock();
1e9bb880
SL
517 atomic_set(&dm_disk(md)->part0.in_flight[rw],
518 atomic_inc_return(&md->pending[rw]));
fd2ed4d2
MP
519
520 if (unlikely(dm_stats_used(&md->stats)))
528ec5ab
MC
521 dm_stats_account_io(&md->stats, bio_data_dir(bio),
522 bio->bi_iter.bi_sector, bio_sectors(bio),
523 false, 0, &io->stats_aux);
3eaf840e
JNN
524}
525
d221d2e7 526static void end_io_acct(struct dm_io *io)
3eaf840e
JNN
527{
528 struct mapped_device *md = io->md;
529 struct bio *bio = io->bio;
530 unsigned long duration = jiffies - io->start_time;
18c0b223 531 int pending;
3eaf840e
JNN
532 int rw = bio_data_dir(bio);
533
18c0b223 534 generic_end_io_acct(rw, &dm_disk(md)->part0, io->start_time);
3eaf840e 535
fd2ed4d2 536 if (unlikely(dm_stats_used(&md->stats)))
528ec5ab
MC
537 dm_stats_account_io(&md->stats, bio_data_dir(bio),
538 bio->bi_iter.bi_sector, bio_sectors(bio),
539 true, duration, &io->stats_aux);
fd2ed4d2 540
af7e466a
MP
541 /*
542 * After this is decremented the bio must not be touched if it is
d87f4c14 543 * a flush.
af7e466a 544 */
1e9bb880
SL
545 pending = atomic_dec_return(&md->pending[rw]);
546 atomic_set(&dm_disk(md)->part0.in_flight[rw], pending);
316d315b 547 pending += atomic_read(&md->pending[rw^0x1]);
3eaf840e 548
d221d2e7
MP
549 /* nudge anyone waiting on suspend queue */
550 if (!pending)
551 wake_up(&md->wait);
3eaf840e
JNN
552}
553
1da177e4
LT
554/*
555 * Add the bio to the list of deferred io.
556 */
92c63902 557static void queue_io(struct mapped_device *md, struct bio *bio)
1da177e4 558{
05447420 559 unsigned long flags;
1da177e4 560
05447420 561 spin_lock_irqsave(&md->deferred_lock, flags);
1da177e4 562 bio_list_add(&md->deferred, bio);
05447420 563 spin_unlock_irqrestore(&md->deferred_lock, flags);
6a8736d1 564 queue_work(md->wq, &md->work);
1da177e4
LT
565}
566
567/*
568 * Everyone (including functions in this file), should use this
569 * function to access the md->map field, and make sure they call
83d5e5b0 570 * dm_put_live_table() when finished.
1da177e4 571 */
83d5e5b0 572struct dm_table *dm_get_live_table(struct mapped_device *md, int *srcu_idx) __acquires(md->io_barrier)
1da177e4 573{
83d5e5b0
MP
574 *srcu_idx = srcu_read_lock(&md->io_barrier);
575
576 return srcu_dereference(md->map, &md->io_barrier);
577}
1da177e4 578
83d5e5b0
MP
579void dm_put_live_table(struct mapped_device *md, int srcu_idx) __releases(md->io_barrier)
580{
581 srcu_read_unlock(&md->io_barrier, srcu_idx);
582}
583
584void dm_sync_table(struct mapped_device *md)
585{
586 synchronize_srcu(&md->io_barrier);
587 synchronize_rcu_expedited();
588}
589
590/*
591 * A fast alternative to dm_get_live_table/dm_put_live_table.
592 * The caller must not block between these two functions.
593 */
594static struct dm_table *dm_get_live_table_fast(struct mapped_device *md) __acquires(RCU)
595{
596 rcu_read_lock();
597 return rcu_dereference(md->map);
598}
1da177e4 599
83d5e5b0
MP
600static void dm_put_live_table_fast(struct mapped_device *md) __releases(RCU)
601{
602 rcu_read_unlock();
1da177e4
LT
603}
604
86f1152b
BM
605/*
606 * Open a table device so we can use it as a map destination.
607 */
608static int open_table_device(struct table_device *td, dev_t dev,
609 struct mapped_device *md)
610{
611 static char *_claim_ptr = "I belong to device-mapper";
612 struct block_device *bdev;
613
614 int r;
615
616 BUG_ON(td->dm_dev.bdev);
617
618 bdev = blkdev_get_by_dev(dev, td->dm_dev.mode | FMODE_EXCL, _claim_ptr);
619 if (IS_ERR(bdev))
620 return PTR_ERR(bdev);
621
622 r = bd_link_disk_holder(bdev, dm_disk(md));
623 if (r) {
624 blkdev_put(bdev, td->dm_dev.mode | FMODE_EXCL);
625 return r;
626 }
627
628 td->dm_dev.bdev = bdev;
629 return 0;
630}
631
632/*
633 * Close a table device that we've been using.
634 */
635static void close_table_device(struct table_device *td, struct mapped_device *md)
636{
637 if (!td->dm_dev.bdev)
638 return;
639
640 bd_unlink_disk_holder(td->dm_dev.bdev, dm_disk(md));
641 blkdev_put(td->dm_dev.bdev, td->dm_dev.mode | FMODE_EXCL);
642 td->dm_dev.bdev = NULL;
643}
644
645static struct table_device *find_table_device(struct list_head *l, dev_t dev,
646 fmode_t mode) {
647 struct table_device *td;
648
649 list_for_each_entry(td, l, list)
650 if (td->dm_dev.bdev->bd_dev == dev && td->dm_dev.mode == mode)
651 return td;
652
653 return NULL;
654}
655
656int dm_get_table_device(struct mapped_device *md, dev_t dev, fmode_t mode,
657 struct dm_dev **result) {
658 int r;
659 struct table_device *td;
660
661 mutex_lock(&md->table_devices_lock);
662 td = find_table_device(&md->table_devices, dev, mode);
663 if (!td) {
115485e8 664 td = kmalloc_node(sizeof(*td), GFP_KERNEL, md->numa_node_id);
86f1152b
BM
665 if (!td) {
666 mutex_unlock(&md->table_devices_lock);
667 return -ENOMEM;
668 }
669
670 td->dm_dev.mode = mode;
671 td->dm_dev.bdev = NULL;
672
673 if ((r = open_table_device(td, dev, md))) {
674 mutex_unlock(&md->table_devices_lock);
675 kfree(td);
676 return r;
677 }
678
679 format_dev_t(td->dm_dev.name, dev);
680
681 atomic_set(&td->count, 0);
682 list_add(&td->list, &md->table_devices);
683 }
684 atomic_inc(&td->count);
685 mutex_unlock(&md->table_devices_lock);
686
687 *result = &td->dm_dev;
688 return 0;
689}
690EXPORT_SYMBOL_GPL(dm_get_table_device);
691
692void dm_put_table_device(struct mapped_device *md, struct dm_dev *d)
693{
694 struct table_device *td = container_of(d, struct table_device, dm_dev);
695
696 mutex_lock(&md->table_devices_lock);
697 if (atomic_dec_and_test(&td->count)) {
698 close_table_device(td, md);
699 list_del(&td->list);
700 kfree(td);
701 }
702 mutex_unlock(&md->table_devices_lock);
703}
704EXPORT_SYMBOL(dm_put_table_device);
705
706static void free_table_devices(struct list_head *devices)
707{
708 struct list_head *tmp, *next;
709
710 list_for_each_safe(tmp, next, devices) {
711 struct table_device *td = list_entry(tmp, struct table_device, list);
712
713 DMWARN("dm_destroy: %s still exists with %d references",
714 td->dm_dev.name, atomic_read(&td->count));
715 kfree(td);
716 }
717}
718
3ac51e74
DW
719/*
720 * Get the geometry associated with a dm device
721 */
722int dm_get_geometry(struct mapped_device *md, struct hd_geometry *geo)
723{
724 *geo = md->geometry;
725
726 return 0;
727}
728
729/*
730 * Set the geometry of a device.
731 */
732int dm_set_geometry(struct mapped_device *md, struct hd_geometry *geo)
733{
734 sector_t sz = (sector_t)geo->cylinders * geo->heads * geo->sectors;
735
736 if (geo->start > sz) {
737 DMWARN("Start sector is beyond the geometry limits.");
738 return -EINVAL;
739 }
740
741 md->geometry = *geo;
742
743 return 0;
744}
745
1da177e4
LT
746/*-----------------------------------------------------------------
747 * CRUD START:
748 * A more elegant soln is in the works that uses the queue
749 * merge fn, unfortunately there are a couple of changes to
750 * the block layer that I want to make for this. So in the
751 * interests of getting something for people to use I give
752 * you this clearly demarcated crap.
753 *---------------------------------------------------------------*/
754
2e93ccc1
KU
755static int __noflush_suspending(struct mapped_device *md)
756{
757 return test_bit(DMF_NOFLUSH_SUSPENDING, &md->flags);
758}
759
1da177e4
LT
760/*
761 * Decrements the number of outstanding ios that a bio has been
762 * cloned into, completing the original io if necc.
763 */
858119e1 764static void dec_pending(struct dm_io *io, int error)
1da177e4 765{
2e93ccc1 766 unsigned long flags;
b35f8caa
MB
767 int io_error;
768 struct bio *bio;
769 struct mapped_device *md = io->md;
2e93ccc1
KU
770
771 /* Push-back supersedes any I/O errors */
f88fb981
KU
772 if (unlikely(error)) {
773 spin_lock_irqsave(&io->endio_lock, flags);
774 if (!(io->error > 0 && __noflush_suspending(md)))
775 io->error = error;
776 spin_unlock_irqrestore(&io->endio_lock, flags);
777 }
1da177e4
LT
778
779 if (atomic_dec_and_test(&io->io_count)) {
2e93ccc1
KU
780 if (io->error == DM_ENDIO_REQUEUE) {
781 /*
782 * Target requested pushing back the I/O.
2e93ccc1 783 */
022c2611 784 spin_lock_irqsave(&md->deferred_lock, flags);
6a8736d1
TH
785 if (__noflush_suspending(md))
786 bio_list_add_head(&md->deferred, io->bio);
787 else
2e93ccc1
KU
788 /* noflush suspend was interrupted. */
789 io->error = -EIO;
022c2611 790 spin_unlock_irqrestore(&md->deferred_lock, flags);
2e93ccc1
KU
791 }
792
b35f8caa
MB
793 io_error = io->error;
794 bio = io->bio;
6a8736d1
TH
795 end_io_acct(io);
796 free_io(md, io);
797
798 if (io_error == DM_ENDIO_REQUEUE)
799 return;
2e93ccc1 800
1eff9d32 801 if ((bio->bi_opf & REQ_PREFLUSH) && bio->bi_iter.bi_size) {
af7e466a 802 /*
6a8736d1 803 * Preflush done for flush with data, reissue
28a8f0d3 804 * without REQ_PREFLUSH.
af7e466a 805 */
1eff9d32 806 bio->bi_opf &= ~REQ_PREFLUSH;
6a8736d1 807 queue_io(md, bio);
af7e466a 808 } else {
b372d360 809 /* done with normal IO or empty flush */
0a82a8d1 810 trace_block_bio_complete(md->queue, bio, io_error);
4246a0b6
CH
811 bio->bi_error = io_error;
812 bio_endio(bio);
b35f8caa 813 }
1da177e4
LT
814 }
815}
816
4cc96131 817void disable_write_same(struct mapped_device *md)
7eee4ae2
MS
818{
819 struct queue_limits *limits = dm_get_queue_limits(md);
820
821 /* device doesn't really support WRITE SAME, disable it */
822 limits->max_write_same_sectors = 0;
823}
824
4246a0b6 825static void clone_endio(struct bio *bio)
1da177e4 826{
4246a0b6 827 int error = bio->bi_error;
5164bece 828 int r = error;
bfc6d41c 829 struct dm_target_io *tio = container_of(bio, struct dm_target_io, clone);
b35f8caa 830 struct dm_io *io = tio->io;
9faf400f 831 struct mapped_device *md = tio->io->md;
1da177e4
LT
832 dm_endio_fn endio = tio->ti->type->end_io;
833
1da177e4 834 if (endio) {
7de3ee57 835 r = endio(tio->ti, bio, error);
2e93ccc1
KU
836 if (r < 0 || r == DM_ENDIO_REQUEUE)
837 /*
838 * error and requeue request are handled
839 * in dec_pending().
840 */
1da177e4 841 error = r;
45cbcd79
KU
842 else if (r == DM_ENDIO_INCOMPLETE)
843 /* The target will handle the io */
6712ecf8 844 return;
45cbcd79
KU
845 else if (r) {
846 DMWARN("unimplemented target endio return value: %d", r);
847 BUG();
848 }
1da177e4
LT
849 }
850
e6047149 851 if (unlikely(r == -EREMOTEIO && (bio_op(bio) == REQ_OP_WRITE_SAME) &&
7eee4ae2
MS
852 !bdev_get_queue(bio->bi_bdev)->limits.max_write_same_sectors))
853 disable_write_same(md);
854
cfae7529 855 free_tio(tio);
b35f8caa 856 dec_pending(io, error);
1da177e4
LT
857}
858
56a67df7
MS
859/*
860 * Return maximum size of I/O possible at the supplied sector up to the current
861 * target boundary.
862 */
863static sector_t max_io_len_target_boundary(sector_t sector, struct dm_target *ti)
864{
865 sector_t target_offset = dm_target_offset(ti, sector);
866
867 return ti->len - target_offset;
868}
869
870static sector_t max_io_len(sector_t sector, struct dm_target *ti)
1da177e4 871{
56a67df7 872 sector_t len = max_io_len_target_boundary(sector, ti);
542f9038 873 sector_t offset, max_len;
1da177e4
LT
874
875 /*
542f9038 876 * Does the target need to split even further?
1da177e4 877 */
542f9038
MS
878 if (ti->max_io_len) {
879 offset = dm_target_offset(ti, sector);
880 if (unlikely(ti->max_io_len & (ti->max_io_len - 1)))
881 max_len = sector_div(offset, ti->max_io_len);
882 else
883 max_len = offset & (ti->max_io_len - 1);
884 max_len = ti->max_io_len - max_len;
885
886 if (len > max_len)
887 len = max_len;
1da177e4
LT
888 }
889
890 return len;
891}
892
542f9038
MS
893int dm_set_target_max_io_len(struct dm_target *ti, sector_t len)
894{
895 if (len > UINT_MAX) {
896 DMERR("Specified maximum size of target IO (%llu) exceeds limit (%u)",
897 (unsigned long long)len, UINT_MAX);
898 ti->error = "Maximum size of target IO is too large";
899 return -EINVAL;
900 }
901
902 ti->max_io_len = (uint32_t) len;
903
904 return 0;
905}
906EXPORT_SYMBOL_GPL(dm_set_target_max_io_len);
907
545ed20e 908static long dm_blk_direct_access(struct block_device *bdev, sector_t sector,
f0c98ebc 909 void **kaddr, pfn_t *pfn, long size)
545ed20e
TK
910{
911 struct mapped_device *md = bdev->bd_disk->private_data;
912 struct dm_table *map;
913 struct dm_target *ti;
914 int srcu_idx;
915 long len, ret = -EIO;
916
917 map = dm_get_live_table(md, &srcu_idx);
918 if (!map)
919 goto out;
920
921 ti = dm_table_find_target(map, sector);
922 if (!dm_target_is_valid(ti))
923 goto out;
924
925 len = max_io_len(sector, ti) << SECTOR_SHIFT;
926 size = min(len, size);
927
928 if (ti->type->direct_access)
929 ret = ti->type->direct_access(ti, sector, kaddr, pfn, size);
930out:
931 dm_put_live_table(md, srcu_idx);
932 return min(ret, size);
933}
934
1dd40c3e
MP
935/*
936 * A target may call dm_accept_partial_bio only from the map routine. It is
28a8f0d3 937 * allowed for all bio types except REQ_PREFLUSH.
1dd40c3e
MP
938 *
939 * dm_accept_partial_bio informs the dm that the target only wants to process
940 * additional n_sectors sectors of the bio and the rest of the data should be
941 * sent in a next bio.
942 *
943 * A diagram that explains the arithmetics:
944 * +--------------------+---------------+-------+
945 * | 1 | 2 | 3 |
946 * +--------------------+---------------+-------+
947 *
948 * <-------------- *tio->len_ptr --------------->
949 * <------- bi_size ------->
950 * <-- n_sectors -->
951 *
952 * Region 1 was already iterated over with bio_advance or similar function.
953 * (it may be empty if the target doesn't use bio_advance)
954 * Region 2 is the remaining bio size that the target wants to process.
955 * (it may be empty if region 1 is non-empty, although there is no reason
956 * to make it empty)
957 * The target requires that region 3 is to be sent in the next bio.
958 *
959 * If the target wants to receive multiple copies of the bio (via num_*bios, etc),
960 * the partially processed part (the sum of regions 1+2) must be the same for all
961 * copies of the bio.
962 */
963void dm_accept_partial_bio(struct bio *bio, unsigned n_sectors)
964{
965 struct dm_target_io *tio = container_of(bio, struct dm_target_io, clone);
966 unsigned bi_size = bio->bi_iter.bi_size >> SECTOR_SHIFT;
1eff9d32 967 BUG_ON(bio->bi_opf & REQ_PREFLUSH);
1dd40c3e
MP
968 BUG_ON(bi_size > *tio->len_ptr);
969 BUG_ON(n_sectors > bi_size);
970 *tio->len_ptr -= bi_size - n_sectors;
971 bio->bi_iter.bi_size = n_sectors << SECTOR_SHIFT;
972}
973EXPORT_SYMBOL_GPL(dm_accept_partial_bio);
974
bd2a49b8 975static void __map_bio(struct dm_target_io *tio)
1da177e4
LT
976{
977 int r;
2056a782 978 sector_t sector;
dba14160 979 struct bio *clone = &tio->clone;
bd2a49b8 980 struct dm_target *ti = tio->ti;
1da177e4 981
1da177e4 982 clone->bi_end_io = clone_endio;
1da177e4
LT
983
984 /*
985 * Map the clone. If r == 0 we don't need to do
986 * anything, the target has assumed ownership of
987 * this io.
988 */
989 atomic_inc(&tio->io->io_count);
4f024f37 990 sector = clone->bi_iter.bi_sector;
7de3ee57 991 r = ti->type->map(ti, clone);
45cbcd79 992 if (r == DM_MAPIO_REMAPPED) {
1da177e4 993 /* the bio has been remapped so dispatch it */
2056a782 994
d07335e5
MS
995 trace_block_bio_remap(bdev_get_queue(clone->bi_bdev), clone,
996 tio->io->bio->bi_bdev->bd_dev, sector);
2056a782 997
1da177e4 998 generic_make_request(clone);
2e93ccc1
KU
999 } else if (r < 0 || r == DM_MAPIO_REQUEUE) {
1000 /* error the io and bail out, or requeue it if needed */
9faf400f 1001 dec_pending(tio->io, r);
cfae7529 1002 free_tio(tio);
ab37844d 1003 } else if (r != DM_MAPIO_SUBMITTED) {
45cbcd79
KU
1004 DMWARN("unimplemented target map return value: %d", r);
1005 BUG();
1da177e4
LT
1006 }
1007}
1008
1009struct clone_info {
1010 struct mapped_device *md;
1011 struct dm_table *map;
1012 struct bio *bio;
1013 struct dm_io *io;
1014 sector_t sector;
e0d6609a 1015 unsigned sector_count;
1da177e4
LT
1016};
1017
e0d6609a 1018static void bio_setup_sector(struct bio *bio, sector_t sector, unsigned len)
bd2a49b8 1019{
4f024f37
KO
1020 bio->bi_iter.bi_sector = sector;
1021 bio->bi_iter.bi_size = to_bytes(len);
1da177e4
LT
1022}
1023
1024/*
1025 * Creates a bio that consists of range of complete bvecs.
1026 */
c80914e8
MS
1027static int clone_bio(struct dm_target_io *tio, struct bio *bio,
1028 sector_t sector, unsigned len)
1da177e4 1029{
dba14160 1030 struct bio *clone = &tio->clone;
1da177e4 1031
1c3b13e6
KO
1032 __bio_clone_fast(clone, bio);
1033
c80914e8
MS
1034 if (bio_integrity(bio)) {
1035 int r = bio_integrity_clone(clone, bio, GFP_NOIO);
1036 if (r < 0)
1037 return r;
1038 }
bd2a49b8 1039
1c3b13e6
KO
1040 bio_advance(clone, to_bytes(sector - clone->bi_iter.bi_sector));
1041 clone->bi_iter.bi_size = to_bytes(len);
1042
1043 if (bio_integrity(bio))
1044 bio_integrity_trim(clone, 0, len);
c80914e8
MS
1045
1046 return 0;
1da177e4
LT
1047}
1048
9015df24 1049static struct dm_target_io *alloc_tio(struct clone_info *ci,
99778273 1050 struct dm_target *ti,
55a62eef 1051 unsigned target_bio_nr)
f9ab94ce 1052{
dba14160
MP
1053 struct dm_target_io *tio;
1054 struct bio *clone;
1055
99778273 1056 clone = bio_alloc_bioset(GFP_NOIO, 0, ci->md->bs);
dba14160 1057 tio = container_of(clone, struct dm_target_io, clone);
f9ab94ce
MP
1058
1059 tio->io = ci->io;
1060 tio->ti = ti;
55a62eef 1061 tio->target_bio_nr = target_bio_nr;
9015df24
AK
1062
1063 return tio;
1064}
1065
14fe594d
AK
1066static void __clone_and_map_simple_bio(struct clone_info *ci,
1067 struct dm_target *ti,
1dd40c3e 1068 unsigned target_bio_nr, unsigned *len)
9015df24 1069{
99778273 1070 struct dm_target_io *tio = alloc_tio(ci, ti, target_bio_nr);
dba14160 1071 struct bio *clone = &tio->clone;
9015df24 1072
1dd40c3e
MP
1073 tio->len_ptr = len;
1074
99778273 1075 __bio_clone_fast(clone, ci->bio);
bd2a49b8 1076 if (len)
1dd40c3e 1077 bio_setup_sector(clone, ci->sector, *len);
f9ab94ce 1078
bd2a49b8 1079 __map_bio(tio);
f9ab94ce
MP
1080}
1081
14fe594d 1082static void __send_duplicate_bios(struct clone_info *ci, struct dm_target *ti,
1dd40c3e 1083 unsigned num_bios, unsigned *len)
06a426ce 1084{
55a62eef 1085 unsigned target_bio_nr;
06a426ce 1086
55a62eef 1087 for (target_bio_nr = 0; target_bio_nr < num_bios; target_bio_nr++)
14fe594d 1088 __clone_and_map_simple_bio(ci, ti, target_bio_nr, len);
06a426ce
MS
1089}
1090
14fe594d 1091static int __send_empty_flush(struct clone_info *ci)
f9ab94ce 1092{
06a426ce 1093 unsigned target_nr = 0;
f9ab94ce
MP
1094 struct dm_target *ti;
1095
b372d360 1096 BUG_ON(bio_has_data(ci->bio));
f9ab94ce 1097 while ((ti = dm_table_get_target(ci->map, target_nr++)))
1dd40c3e 1098 __send_duplicate_bios(ci, ti, ti->num_flush_bios, NULL);
f9ab94ce 1099
f9ab94ce
MP
1100 return 0;
1101}
1102
c80914e8 1103static int __clone_and_map_data_bio(struct clone_info *ci, struct dm_target *ti,
1dd40c3e 1104 sector_t sector, unsigned *len)
5ae89a87 1105{
dba14160 1106 struct bio *bio = ci->bio;
5ae89a87 1107 struct dm_target_io *tio;
b0d8ed4d
AK
1108 unsigned target_bio_nr;
1109 unsigned num_target_bios = 1;
c80914e8 1110 int r = 0;
5ae89a87 1111
b0d8ed4d
AK
1112 /*
1113 * Does the target want to receive duplicate copies of the bio?
1114 */
1115 if (bio_data_dir(bio) == WRITE && ti->num_write_bios)
1116 num_target_bios = ti->num_write_bios(ti, bio);
e4c93811 1117
b0d8ed4d 1118 for (target_bio_nr = 0; target_bio_nr < num_target_bios; target_bio_nr++) {
99778273 1119 tio = alloc_tio(ci, ti, target_bio_nr);
1dd40c3e 1120 tio->len_ptr = len;
c80914e8 1121 r = clone_bio(tio, bio, sector, *len);
072623de 1122 if (r < 0) {
cfae7529 1123 free_tio(tio);
c80914e8 1124 break;
072623de 1125 }
b0d8ed4d
AK
1126 __map_bio(tio);
1127 }
c80914e8
MS
1128
1129 return r;
5ae89a87
MS
1130}
1131
55a62eef 1132typedef unsigned (*get_num_bios_fn)(struct dm_target *ti);
23508a96 1133
55a62eef 1134static unsigned get_num_discard_bios(struct dm_target *ti)
23508a96 1135{
55a62eef 1136 return ti->num_discard_bios;
23508a96
MS
1137}
1138
55a62eef 1139static unsigned get_num_write_same_bios(struct dm_target *ti)
23508a96 1140{
55a62eef 1141 return ti->num_write_same_bios;
23508a96
MS
1142}
1143
1144typedef bool (*is_split_required_fn)(struct dm_target *ti);
9eef87da 1145
23508a96
MS
1146static bool is_split_required_for_discard(struct dm_target *ti)
1147{
55a62eef 1148 return ti->split_discard_bios;
cec47e3d
KU
1149}
1150
14fe594d
AK
1151static int __send_changing_extent_only(struct clone_info *ci,
1152 get_num_bios_fn get_num_bios,
1153 is_split_required_fn is_split_required)
ba1cbad9 1154{
5ae89a87 1155 struct dm_target *ti;
e0d6609a 1156 unsigned len;
55a62eef 1157 unsigned num_bios;
ba1cbad9 1158
a79245b3
MS
1159 do {
1160 ti = dm_table_find_target(ci->map, ci->sector);
1161 if (!dm_target_is_valid(ti))
1162 return -EIO;
2eb6e1e3 1163
5ae89a87 1164 /*
23508a96
MS
1165 * Even though the device advertised support for this type of
1166 * request, that does not mean every target supports it, and
936688d7 1167 * reconfiguration might also have changed that since the
a79245b3 1168 * check was performed.
5ae89a87 1169 */
55a62eef
AK
1170 num_bios = get_num_bios ? get_num_bios(ti) : 0;
1171 if (!num_bios)
a79245b3 1172 return -EOPNOTSUPP;
ba1cbad9 1173
23508a96 1174 if (is_split_required && !is_split_required(ti))
e0d6609a 1175 len = min((sector_t)ci->sector_count, max_io_len_target_boundary(ci->sector, ti));
7acf0277 1176 else
e0d6609a 1177 len = min((sector_t)ci->sector_count, max_io_len(ci->sector, ti));
de3ec86d 1178
1dd40c3e 1179 __send_duplicate_bios(ci, ti, num_bios, &len);
e262f347 1180
a79245b3
MS
1181 ci->sector += len;
1182 } while (ci->sector_count -= len);
5ae89a87
MS
1183
1184 return 0;
ba1cbad9
MS
1185}
1186
14fe594d 1187static int __send_discard(struct clone_info *ci)
23508a96 1188{
14fe594d
AK
1189 return __send_changing_extent_only(ci, get_num_discard_bios,
1190 is_split_required_for_discard);
23508a96 1191}
0ce65797 1192
14fe594d 1193static int __send_write_same(struct clone_info *ci)
0ce65797 1194{
14fe594d 1195 return __send_changing_extent_only(ci, get_num_write_same_bios, NULL);
0ce65797
MS
1196}
1197
e4c93811
AK
1198/*
1199 * Select the correct strategy for processing a non-flush bio.
1200 */
14fe594d 1201static int __split_and_process_non_flush(struct clone_info *ci)
0ce65797 1202{
dba14160 1203 struct bio *bio = ci->bio;
512875bd 1204 struct dm_target *ti;
1c3b13e6 1205 unsigned len;
c80914e8 1206 int r;
0ce65797 1207
e6047149 1208 if (unlikely(bio_op(bio) == REQ_OP_DISCARD))
14fe594d 1209 return __send_discard(ci);
e6047149 1210 else if (unlikely(bio_op(bio) == REQ_OP_WRITE_SAME))
14fe594d 1211 return __send_write_same(ci);
0ce65797 1212
512875bd
JN
1213 ti = dm_table_find_target(ci->map, ci->sector);
1214 if (!dm_target_is_valid(ti))
1215 return -EIO;
1216
1c3b13e6 1217 len = min_t(sector_t, max_io_len(ci->sector, ti), ci->sector_count);
0ce65797 1218
c80914e8
MS
1219 r = __clone_and_map_data_bio(ci, ti, ci->sector, &len);
1220 if (r < 0)
1221 return r;
0ce65797 1222
1c3b13e6
KO
1223 ci->sector += len;
1224 ci->sector_count -= len;
0ce65797 1225
1c3b13e6 1226 return 0;
0ce65797
MS
1227}
1228
1da177e4 1229/*
14fe594d 1230 * Entry point to split a bio into clones and submit them to the targets.
1da177e4 1231 */
83d5e5b0
MP
1232static void __split_and_process_bio(struct mapped_device *md,
1233 struct dm_table *map, struct bio *bio)
0ce65797 1234{
1da177e4 1235 struct clone_info ci;
512875bd 1236 int error = 0;
1da177e4 1237
83d5e5b0 1238 if (unlikely(!map)) {
6a8736d1 1239 bio_io_error(bio);
f0b9a450
MP
1240 return;
1241 }
692d0eb9 1242
83d5e5b0 1243 ci.map = map;
1da177e4 1244 ci.md = md;
1da177e4
LT
1245 ci.io = alloc_io(md);
1246 ci.io->error = 0;
1247 atomic_set(&ci.io->io_count, 1);
1248 ci.io->bio = bio;
1249 ci.io->md = md;
f88fb981 1250 spin_lock_init(&ci.io->endio_lock);
4f024f37 1251 ci.sector = bio->bi_iter.bi_sector;
0ce65797 1252
3eaf840e 1253 start_io_acct(ci.io);
0ce65797 1254
1eff9d32 1255 if (bio->bi_opf & REQ_PREFLUSH) {
b372d360
MS
1256 ci.bio = &ci.md->flush_bio;
1257 ci.sector_count = 0;
14fe594d 1258 error = __send_empty_flush(&ci);
b372d360
MS
1259 /* dec_pending submits any data associated with flush */
1260 } else {
6a8736d1 1261 ci.bio = bio;
d87f4c14 1262 ci.sector_count = bio_sectors(bio);
b372d360 1263 while (ci.sector_count && !error)
14fe594d 1264 error = __split_and_process_non_flush(&ci);
d87f4c14 1265 }
0ce65797 1266
1da177e4 1267 /* drop the extra reference count */
512875bd 1268 dec_pending(ci.io, error);
0ce65797 1269}
1da177e4
LT
1270/*-----------------------------------------------------------------
1271 * CRUD END
1272 *---------------------------------------------------------------*/
0ce65797 1273
cec47e3d 1274/*
1da177e4
LT
1275 * The request function that just remaps the bio built up by
1276 * dm_merge_bvec.
cec47e3d 1277 */
dece1635 1278static blk_qc_t dm_make_request(struct request_queue *q, struct bio *bio)
cec47e3d 1279{
12f03a49 1280 int rw = bio_data_dir(bio);
cec47e3d 1281 struct mapped_device *md = q->queuedata;
83d5e5b0
MP
1282 int srcu_idx;
1283 struct dm_table *map;
cec47e3d 1284
83d5e5b0 1285 map = dm_get_live_table(md, &srcu_idx);
29e4013d 1286
18c0b223 1287 generic_start_io_acct(rw, bio_sectors(bio), &dm_disk(md)->part0);
d0bcb878 1288
6a8736d1
TH
1289 /* if we're suspended, we have to queue this io for later */
1290 if (unlikely(test_bit(DMF_BLOCK_IO_FOR_SUSPEND, &md->flags))) {
83d5e5b0 1291 dm_put_live_table(md, srcu_idx);
9eef87da 1292
1eff9d32 1293 if (!(bio->bi_opf & REQ_RAHEAD))
6a8736d1
TH
1294 queue_io(md, bio);
1295 else
54d9a1b4 1296 bio_io_error(bio);
dece1635 1297 return BLK_QC_T_NONE;
cec47e3d 1298 }
1da177e4 1299
83d5e5b0
MP
1300 __split_and_process_bio(md, map, bio);
1301 dm_put_live_table(md, srcu_idx);
dece1635 1302 return BLK_QC_T_NONE;
cec47e3d
KU
1303}
1304
1da177e4
LT
1305static int dm_any_congested(void *congested_data, int bdi_bits)
1306{
8a57dfc6
CS
1307 int r = bdi_bits;
1308 struct mapped_device *md = congested_data;
1309 struct dm_table *map;
1da177e4 1310
1eb787ec 1311 if (!test_bit(DMF_BLOCK_IO_FOR_SUSPEND, &md->flags)) {
e522c039 1312 if (dm_request_based(md)) {
cec47e3d 1313 /*
e522c039
MS
1314 * With request-based DM we only need to check the
1315 * top-level queue for congestion.
cec47e3d 1316 */
e522c039
MS
1317 r = md->queue->backing_dev_info.wb.state & bdi_bits;
1318 } else {
1319 map = dm_get_live_table_fast(md);
1320 if (map)
cec47e3d 1321 r = dm_table_any_congested(map, bdi_bits);
e522c039 1322 dm_put_live_table_fast(md);
8a57dfc6
CS
1323 }
1324 }
1325
1da177e4
LT
1326 return r;
1327}
1328
1329/*-----------------------------------------------------------------
1330 * An IDR is used to keep track of allocated minor numbers.
1331 *---------------------------------------------------------------*/
2b06cfff 1332static void free_minor(int minor)
1da177e4 1333{
f32c10b0 1334 spin_lock(&_minor_lock);
1da177e4 1335 idr_remove(&_minor_idr, minor);
f32c10b0 1336 spin_unlock(&_minor_lock);
1da177e4
LT
1337}
1338
1339/*
1340 * See if the device with a specific minor # is free.
1341 */
cf13ab8e 1342static int specific_minor(int minor)
1da177e4 1343{
c9d76be6 1344 int r;
1da177e4
LT
1345
1346 if (minor >= (1 << MINORBITS))
1347 return -EINVAL;
1348
c9d76be6 1349 idr_preload(GFP_KERNEL);
f32c10b0 1350 spin_lock(&_minor_lock);
1da177e4 1351
c9d76be6 1352 r = idr_alloc(&_minor_idr, MINOR_ALLOCED, minor, minor + 1, GFP_NOWAIT);
1da177e4 1353
f32c10b0 1354 spin_unlock(&_minor_lock);
c9d76be6
TH
1355 idr_preload_end();
1356 if (r < 0)
1357 return r == -ENOSPC ? -EBUSY : r;
1358 return 0;
1da177e4
LT
1359}
1360
cf13ab8e 1361static int next_free_minor(int *minor)
1da177e4 1362{
c9d76be6 1363 int r;
62f75c2f 1364
c9d76be6 1365 idr_preload(GFP_KERNEL);
f32c10b0 1366 spin_lock(&_minor_lock);
1da177e4 1367
c9d76be6 1368 r = idr_alloc(&_minor_idr, MINOR_ALLOCED, 0, 1 << MINORBITS, GFP_NOWAIT);
1da177e4 1369
f32c10b0 1370 spin_unlock(&_minor_lock);
c9d76be6
TH
1371 idr_preload_end();
1372 if (r < 0)
1373 return r;
1374 *minor = r;
1375 return 0;
1da177e4
LT
1376}
1377
83d5cde4 1378static const struct block_device_operations dm_blk_dops;
1da177e4 1379
53d5914f
MP
1380static void dm_wq_work(struct work_struct *work);
1381
4cc96131 1382void dm_init_md_queue(struct mapped_device *md)
4a0b4ddf
MS
1383{
1384 /*
1385 * Request-based dm devices cannot be stacked on top of bio-based dm
bfebd1cd 1386 * devices. The type of this dm device may not have been decided yet.
4a0b4ddf
MS
1387 * The type is decided at the first table loading time.
1388 * To prevent problematic device stacking, clear the queue flag
1389 * for request stacking support until then.
1390 *
1391 * This queue is new, so no concurrency on the queue_flags.
1392 */
1393 queue_flag_clear_unlocked(QUEUE_FLAG_STACKABLE, md->queue);
ad5f498f
MP
1394
1395 /*
1396 * Initialize data that will only be used by a non-blk-mq DM queue
1397 * - must do so here (in alloc_dev callchain) before queue is used
1398 */
1399 md->queue->queuedata = md;
1400 md->queue->backing_dev_info.congested_data = md;
bfebd1cd 1401}
4a0b4ddf 1402
4cc96131 1403void dm_init_normal_md_queue(struct mapped_device *md)
bfebd1cd 1404{
17e149b8 1405 md->use_blk_mq = false;
bfebd1cd
MS
1406 dm_init_md_queue(md);
1407
1408 /*
1409 * Initialize aspects of queue that aren't relevant for blk-mq
1410 */
4a0b4ddf 1411 md->queue->backing_dev_info.congested_fn = dm_any_congested;
4a0b4ddf 1412 blk_queue_bounce_limit(md->queue, BLK_BOUNCE_ANY);
4a0b4ddf
MS
1413}
1414
0f20972f
MS
1415static void cleanup_mapped_device(struct mapped_device *md)
1416{
0f20972f
MS
1417 if (md->wq)
1418 destroy_workqueue(md->wq);
1419 if (md->kworker_task)
1420 kthread_stop(md->kworker_task);
6f65985e
JL
1421 mempool_destroy(md->io_pool);
1422 mempool_destroy(md->rq_pool);
0f20972f
MS
1423 if (md->bs)
1424 bioset_free(md->bs);
1425
b06075a9
MP
1426 cleanup_srcu_struct(&md->io_barrier);
1427
0f20972f
MS
1428 if (md->disk) {
1429 spin_lock(&_minor_lock);
1430 md->disk->private_data = NULL;
1431 spin_unlock(&_minor_lock);
0f20972f
MS
1432 del_gendisk(md->disk);
1433 put_disk(md->disk);
1434 }
1435
1436 if (md->queue)
1437 blk_cleanup_queue(md->queue);
1438
1439 if (md->bdev) {
1440 bdput(md->bdev);
1441 md->bdev = NULL;
1442 }
4cc96131
MS
1443
1444 dm_mq_cleanup_mapped_device(md);
0f20972f
MS
1445}
1446
1da177e4
LT
1447/*
1448 * Allocate and initialise a blank device with a given minor.
1449 */
2b06cfff 1450static struct mapped_device *alloc_dev(int minor)
1da177e4 1451{
115485e8
MS
1452 int r, numa_node_id = dm_get_numa_node();
1453 struct mapped_device *md;
ba61fdd1 1454 void *old_md;
1da177e4 1455
115485e8 1456 md = kzalloc_node(sizeof(*md), GFP_KERNEL, numa_node_id);
1da177e4
LT
1457 if (!md) {
1458 DMWARN("unable to allocate device, out of memory.");
1459 return NULL;
1460 }
1461
10da4f79 1462 if (!try_module_get(THIS_MODULE))
6ed7ade8 1463 goto bad_module_get;
10da4f79 1464
1da177e4 1465 /* get a minor number for the dev */
2b06cfff 1466 if (minor == DM_ANY_MINOR)
cf13ab8e 1467 r = next_free_minor(&minor);
2b06cfff 1468 else
cf13ab8e 1469 r = specific_minor(minor);
1da177e4 1470 if (r < 0)
6ed7ade8 1471 goto bad_minor;
1da177e4 1472
83d5e5b0
MP
1473 r = init_srcu_struct(&md->io_barrier);
1474 if (r < 0)
1475 goto bad_io_barrier;
1476
115485e8 1477 md->numa_node_id = numa_node_id;
4cc96131 1478 md->use_blk_mq = dm_use_blk_mq_default();
591ddcfc 1479 md->init_tio_pdu = false;
a5664dad 1480 md->type = DM_TYPE_NONE;
e61290a4 1481 mutex_init(&md->suspend_lock);
a5664dad 1482 mutex_init(&md->type_lock);
86f1152b 1483 mutex_init(&md->table_devices_lock);
022c2611 1484 spin_lock_init(&md->deferred_lock);
1da177e4 1485 atomic_set(&md->holders, 1);
5c6bd75d 1486 atomic_set(&md->open_count, 0);
1da177e4 1487 atomic_set(&md->event_nr, 0);
7a8c3d3b
MA
1488 atomic_set(&md->uevent_seq, 0);
1489 INIT_LIST_HEAD(&md->uevent_list);
86f1152b 1490 INIT_LIST_HEAD(&md->table_devices);
7a8c3d3b 1491 spin_lock_init(&md->uevent_lock);
1da177e4 1492
115485e8 1493 md->queue = blk_alloc_queue_node(GFP_KERNEL, numa_node_id);
1da177e4 1494 if (!md->queue)
0f20972f 1495 goto bad;
1da177e4 1496
4a0b4ddf 1497 dm_init_md_queue(md);
9faf400f 1498
115485e8 1499 md->disk = alloc_disk_node(1, numa_node_id);
1da177e4 1500 if (!md->disk)
0f20972f 1501 goto bad;
1da177e4 1502
316d315b
NK
1503 atomic_set(&md->pending[0], 0);
1504 atomic_set(&md->pending[1], 0);
f0b04115 1505 init_waitqueue_head(&md->wait);
53d5914f 1506 INIT_WORK(&md->work, dm_wq_work);
f0b04115 1507 init_waitqueue_head(&md->eventq);
2995fa78 1508 init_completion(&md->kobj_holder.completion);
2eb6e1e3 1509 md->kworker_task = NULL;
f0b04115 1510
1da177e4
LT
1511 md->disk->major = _major;
1512 md->disk->first_minor = minor;
1513 md->disk->fops = &dm_blk_dops;
1514 md->disk->queue = md->queue;
1515 md->disk->private_data = md;
1516 sprintf(md->disk->disk_name, "dm-%d", minor);
1517 add_disk(md->disk);
7e51f257 1518 format_dev_t(md->name, MKDEV(_major, minor));
1da177e4 1519
670368a8 1520 md->wq = alloc_workqueue("kdmflush", WQ_MEM_RECLAIM, 0);
304f3f6a 1521 if (!md->wq)
0f20972f 1522 goto bad;
304f3f6a 1523
32a926da
MP
1524 md->bdev = bdget_disk(md->disk, 0);
1525 if (!md->bdev)
0f20972f 1526 goto bad;
32a926da 1527
6a8736d1
TH
1528 bio_init(&md->flush_bio);
1529 md->flush_bio.bi_bdev = md->bdev;
e6047149 1530 bio_set_op_attrs(&md->flush_bio, REQ_OP_WRITE, WRITE_FLUSH);
6a8736d1 1531
fd2ed4d2
MP
1532 dm_stats_init(&md->stats);
1533
ba61fdd1 1534 /* Populate the mapping, nobody knows we exist yet */
f32c10b0 1535 spin_lock(&_minor_lock);
ba61fdd1 1536 old_md = idr_replace(&_minor_idr, md, minor);
f32c10b0 1537 spin_unlock(&_minor_lock);
ba61fdd1
JM
1538
1539 BUG_ON(old_md != MINOR_ALLOCED);
1540
1da177e4
LT
1541 return md;
1542
0f20972f
MS
1543bad:
1544 cleanup_mapped_device(md);
83d5e5b0 1545bad_io_barrier:
1da177e4 1546 free_minor(minor);
6ed7ade8 1547bad_minor:
10da4f79 1548 module_put(THIS_MODULE);
6ed7ade8 1549bad_module_get:
1da177e4
LT
1550 kfree(md);
1551 return NULL;
1552}
1553
ae9da83f
JN
1554static void unlock_fs(struct mapped_device *md);
1555
1da177e4
LT
1556static void free_dev(struct mapped_device *md)
1557{
f331c029 1558 int minor = MINOR(disk_devt(md->disk));
63d94e48 1559
32a926da 1560 unlock_fs(md);
2eb6e1e3 1561
0f20972f 1562 cleanup_mapped_device(md);
63a4f065 1563
86f1152b 1564 free_table_devices(&md->table_devices);
63a4f065 1565 dm_stats_cleanup(&md->stats);
63a4f065
MS
1566 free_minor(minor);
1567
10da4f79 1568 module_put(THIS_MODULE);
1da177e4
LT
1569 kfree(md);
1570}
1571
e6ee8c0b
KU
1572static void __bind_mempools(struct mapped_device *md, struct dm_table *t)
1573{
c0820cf5 1574 struct dm_md_mempools *p = dm_table_get_md_mempools(t);
e6ee8c0b 1575
4e6e36c3
MS
1576 if (md->bs) {
1577 /* The md already has necessary mempools. */
545ed20e 1578 if (dm_table_bio_based(t)) {
16245bdc
JN
1579 /*
1580 * Reload bioset because front_pad may have changed
1581 * because a different table was loaded.
1582 */
1583 bioset_free(md->bs);
1584 md->bs = p->bs;
1585 p->bs = NULL;
16245bdc 1586 }
4e6e36c3
MS
1587 /*
1588 * There's no need to reload with request-based dm
1589 * because the size of front_pad doesn't change.
1590 * Note for future: If you are to reload bioset,
1591 * prep-ed requests in the queue may refer
1592 * to bio from the old bioset, so you must walk
1593 * through the queue to unprep.
1594 */
1595 goto out;
c0820cf5 1596 }
e6ee8c0b 1597
cbc4e3c1
MS
1598 BUG_ON(!p || md->io_pool || md->rq_pool || md->bs);
1599
e6ee8c0b
KU
1600 md->io_pool = p->io_pool;
1601 p->io_pool = NULL;
1ae49ea2
MS
1602 md->rq_pool = p->rq_pool;
1603 p->rq_pool = NULL;
e6ee8c0b
KU
1604 md->bs = p->bs;
1605 p->bs = NULL;
4e6e36c3 1606
e6ee8c0b 1607out:
02233342 1608 /* mempool bind completed, no longer need any mempools in the table */
e6ee8c0b
KU
1609 dm_table_free_md_mempools(t);
1610}
1611
1da177e4
LT
1612/*
1613 * Bind a table to the device.
1614 */
1615static void event_callback(void *context)
1616{
7a8c3d3b
MA
1617 unsigned long flags;
1618 LIST_HEAD(uevents);
1da177e4
LT
1619 struct mapped_device *md = (struct mapped_device *) context;
1620
7a8c3d3b
MA
1621 spin_lock_irqsave(&md->uevent_lock, flags);
1622 list_splice_init(&md->uevent_list, &uevents);
1623 spin_unlock_irqrestore(&md->uevent_lock, flags);
1624
ed9e1982 1625 dm_send_uevents(&uevents, &disk_to_dev(md->disk)->kobj);
7a8c3d3b 1626
1da177e4
LT
1627 atomic_inc(&md->event_nr);
1628 wake_up(&md->eventq);
1629}
1630
c217649b
MS
1631/*
1632 * Protected by md->suspend_lock obtained by dm_swap_table().
1633 */
4e90188b 1634static void __set_size(struct mapped_device *md, sector_t size)
1da177e4 1635{
4e90188b 1636 set_capacity(md->disk, size);
1da177e4 1637
db8fef4f 1638 i_size_write(md->bdev->bd_inode, (loff_t)size << SECTOR_SHIFT);
1da177e4
LT
1639}
1640
042d2a9b
AK
1641/*
1642 * Returns old map, which caller must destroy.
1643 */
1644static struct dm_table *__bind(struct mapped_device *md, struct dm_table *t,
1645 struct queue_limits *limits)
1da177e4 1646{
042d2a9b 1647 struct dm_table *old_map;
165125e1 1648 struct request_queue *q = md->queue;
1da177e4
LT
1649 sector_t size;
1650
1651 size = dm_table_get_size(t);
3ac51e74
DW
1652
1653 /*
1654 * Wipe any geometry if the size of the table changed.
1655 */
fd2ed4d2 1656 if (size != dm_get_size(md))
3ac51e74
DW
1657 memset(&md->geometry, 0, sizeof(md->geometry));
1658
32a926da 1659 __set_size(md, size);
d5816876 1660
2ca3310e
AK
1661 dm_table_event_callback(t, event_callback, md);
1662
e6ee8c0b
KU
1663 /*
1664 * The queue hasn't been stopped yet, if the old table type wasn't
1665 * for request-based during suspension. So stop it to prevent
1666 * I/O mapping before resume.
1667 * This must be done before setting the queue restrictions,
1668 * because request-based dm may be run just after the setting.
1669 */
16f12266 1670 if (dm_table_request_based(t)) {
eca7ee6d 1671 dm_stop_queue(q);
16f12266
MS
1672 /*
1673 * Leverage the fact that request-based DM targets are
1674 * immutable singletons and establish md->immutable_target
1675 * - used to optimize both dm_request_fn and dm_mq_queue_rq
1676 */
1677 md->immutable_target = dm_table_get_immutable_target(t);
1678 }
e6ee8c0b
KU
1679
1680 __bind_mempools(md, t);
1681
a12f5d48 1682 old_map = rcu_dereference_protected(md->map, lockdep_is_held(&md->suspend_lock));
1d3aa6f6 1683 rcu_assign_pointer(md->map, (void *)t);
36a0456f
AK
1684 md->immutable_target_type = dm_table_get_immutable_target_type(t);
1685
754c5fc7 1686 dm_table_set_restrictions(t, q, limits);
41abc4e1
HR
1687 if (old_map)
1688 dm_sync_table(md);
1da177e4 1689
042d2a9b 1690 return old_map;
1da177e4
LT
1691}
1692
a7940155
AK
1693/*
1694 * Returns unbound table for the caller to free.
1695 */
1696static struct dm_table *__unbind(struct mapped_device *md)
1da177e4 1697{
a12f5d48 1698 struct dm_table *map = rcu_dereference_protected(md->map, 1);
1da177e4
LT
1699
1700 if (!map)
a7940155 1701 return NULL;
1da177e4
LT
1702
1703 dm_table_event_callback(map, NULL, NULL);
9cdb8520 1704 RCU_INIT_POINTER(md->map, NULL);
83d5e5b0 1705 dm_sync_table(md);
a7940155
AK
1706
1707 return map;
1da177e4
LT
1708}
1709
1710/*
1711 * Constructor for a new device.
1712 */
2b06cfff 1713int dm_create(int minor, struct mapped_device **result)
1da177e4
LT
1714{
1715 struct mapped_device *md;
1716
2b06cfff 1717 md = alloc_dev(minor);
1da177e4
LT
1718 if (!md)
1719 return -ENXIO;
1720
784aae73
MB
1721 dm_sysfs_init(md);
1722
1da177e4
LT
1723 *result = md;
1724 return 0;
1725}
1726
a5664dad
MS
1727/*
1728 * Functions to manage md->type.
1729 * All are required to hold md->type_lock.
1730 */
1731void dm_lock_md_type(struct mapped_device *md)
1732{
1733 mutex_lock(&md->type_lock);
1734}
1735
1736void dm_unlock_md_type(struct mapped_device *md)
1737{
1738 mutex_unlock(&md->type_lock);
1739}
1740
1741void dm_set_md_type(struct mapped_device *md, unsigned type)
1742{
00c4fc3b 1743 BUG_ON(!mutex_is_locked(&md->type_lock));
a5664dad
MS
1744 md->type = type;
1745}
1746
1747unsigned dm_get_md_type(struct mapped_device *md)
1748{
1749 return md->type;
1750}
1751
36a0456f
AK
1752struct target_type *dm_get_immutable_target_type(struct mapped_device *md)
1753{
1754 return md->immutable_target_type;
1755}
1756
f84cb8a4
MS
1757/*
1758 * The queue_limits are only valid as long as you have a reference
1759 * count on 'md'.
1760 */
1761struct queue_limits *dm_get_queue_limits(struct mapped_device *md)
1762{
1763 BUG_ON(!atomic_read(&md->holders));
1764 return &md->queue->limits;
1765}
1766EXPORT_SYMBOL_GPL(dm_get_queue_limits);
1767
4a0b4ddf
MS
1768/*
1769 * Setup the DM device's queue based on md's type
1770 */
591ddcfc 1771int dm_setup_md_queue(struct mapped_device *md, struct dm_table *t)
4a0b4ddf 1772{
bfebd1cd 1773 int r;
545ed20e 1774 unsigned type = dm_get_md_type(md);
bfebd1cd 1775
545ed20e 1776 switch (type) {
bfebd1cd 1777 case DM_TYPE_REQUEST_BASED:
eca7ee6d 1778 r = dm_old_init_request_queue(md);
bfebd1cd 1779 if (r) {
eca7ee6d 1780 DMERR("Cannot initialize queue for request-based mapped device");
bfebd1cd 1781 return r;
ff36ab34 1782 }
bfebd1cd
MS
1783 break;
1784 case DM_TYPE_MQ_REQUEST_BASED:
e83068a5 1785 r = dm_mq_init_request_queue(md, t);
bfebd1cd 1786 if (r) {
eca7ee6d 1787 DMERR("Cannot initialize queue for request-based dm-mq mapped device");
bfebd1cd
MS
1788 return r;
1789 }
1790 break;
1791 case DM_TYPE_BIO_BASED:
545ed20e 1792 case DM_TYPE_DAX_BIO_BASED:
eca7ee6d 1793 dm_init_normal_md_queue(md);
ff36ab34 1794 blk_queue_make_request(md->queue, dm_make_request);
dbba42d8
MP
1795 /*
1796 * DM handles splitting bios as needed. Free the bio_split bioset
1797 * since it won't be used (saves 1 process per bio-based DM device).
1798 */
1799 bioset_free(md->queue->bio_split);
1800 md->queue->bio_split = NULL;
545ed20e
TK
1801
1802 if (type == DM_TYPE_DAX_BIO_BASED)
1803 queue_flag_set_unlocked(QUEUE_FLAG_DAX, md->queue);
bfebd1cd 1804 break;
4a0b4ddf
MS
1805 }
1806
1807 return 0;
1808}
1809
2bec1f4a 1810struct mapped_device *dm_get_md(dev_t dev)
1da177e4
LT
1811{
1812 struct mapped_device *md;
1da177e4
LT
1813 unsigned minor = MINOR(dev);
1814
1815 if (MAJOR(dev) != _major || minor >= (1 << MINORBITS))
1816 return NULL;
1817
f32c10b0 1818 spin_lock(&_minor_lock);
1da177e4
LT
1819
1820 md = idr_find(&_minor_idr, minor);
2bec1f4a
MP
1821 if (md) {
1822 if ((md == MINOR_ALLOCED ||
1823 (MINOR(disk_devt(dm_disk(md))) != minor) ||
1824 dm_deleting_md(md) ||
1825 test_bit(DMF_FREEING, &md->flags))) {
1826 md = NULL;
1827 goto out;
1828 }
1829 dm_get(md);
fba9f90e 1830 }
1da177e4 1831
fba9f90e 1832out:
f32c10b0 1833 spin_unlock(&_minor_lock);
1da177e4 1834
637842cf
DT
1835 return md;
1836}
3cf2e4ba 1837EXPORT_SYMBOL_GPL(dm_get_md);
d229a958 1838
9ade92a9 1839void *dm_get_mdptr(struct mapped_device *md)
637842cf 1840{
9ade92a9 1841 return md->interface_ptr;
1da177e4
LT
1842}
1843
1844void dm_set_mdptr(struct mapped_device *md, void *ptr)
1845{
1846 md->interface_ptr = ptr;
1847}
1848
1849void dm_get(struct mapped_device *md)
1850{
1851 atomic_inc(&md->holders);
3f77316d 1852 BUG_ON(test_bit(DMF_FREEING, &md->flags));
1da177e4
LT
1853}
1854
09ee96b2
MP
1855int dm_hold(struct mapped_device *md)
1856{
1857 spin_lock(&_minor_lock);
1858 if (test_bit(DMF_FREEING, &md->flags)) {
1859 spin_unlock(&_minor_lock);
1860 return -EBUSY;
1861 }
1862 dm_get(md);
1863 spin_unlock(&_minor_lock);
1864 return 0;
1865}
1866EXPORT_SYMBOL_GPL(dm_hold);
1867
72d94861
AK
1868const char *dm_device_name(struct mapped_device *md)
1869{
1870 return md->name;
1871}
1872EXPORT_SYMBOL_GPL(dm_device_name);
1873
3f77316d 1874static void __dm_destroy(struct mapped_device *md, bool wait)
1da177e4 1875{
1134e5ae 1876 struct dm_table *map;
83d5e5b0 1877 int srcu_idx;
1da177e4 1878
3f77316d 1879 might_sleep();
fba9f90e 1880
63a4f065 1881 spin_lock(&_minor_lock);
3f77316d
KU
1882 idr_replace(&_minor_idr, MINOR_ALLOCED, MINOR(disk_devt(dm_disk(md))));
1883 set_bit(DMF_FREEING, &md->flags);
1884 spin_unlock(&_minor_lock);
1885
02233342 1886 if (dm_request_based(md) && md->kworker_task)
8c03cbe6 1887 kthread_flush_worker(&md->kworker);
2eb6e1e3 1888
ab7c7bb6
MP
1889 /*
1890 * Take suspend_lock so that presuspend and postsuspend methods
1891 * do not race with internal suspend.
1892 */
1893 mutex_lock(&md->suspend_lock);
2a708cff 1894 map = dm_get_live_table(md, &srcu_idx);
3f77316d
KU
1895 if (!dm_suspended_md(md)) {
1896 dm_table_presuspend_targets(map);
1897 dm_table_postsuspend_targets(map);
1da177e4 1898 }
83d5e5b0
MP
1899 /* dm_put_live_table must be before msleep, otherwise deadlock is possible */
1900 dm_put_live_table(md, srcu_idx);
2a708cff 1901 mutex_unlock(&md->suspend_lock);
83d5e5b0 1902
3f77316d
KU
1903 /*
1904 * Rare, but there may be I/O requests still going to complete,
1905 * for example. Wait for all references to disappear.
1906 * No one should increment the reference count of the mapped_device,
1907 * after the mapped_device state becomes DMF_FREEING.
1908 */
1909 if (wait)
1910 while (atomic_read(&md->holders))
1911 msleep(1);
1912 else if (atomic_read(&md->holders))
1913 DMWARN("%s: Forcibly removing mapped_device still in use! (%d users)",
1914 dm_device_name(md), atomic_read(&md->holders));
1915
1916 dm_sysfs_exit(md);
3f77316d
KU
1917 dm_table_destroy(__unbind(md));
1918 free_dev(md);
1919}
1920
1921void dm_destroy(struct mapped_device *md)
1922{
1923 __dm_destroy(md, true);
1924}
1925
1926void dm_destroy_immediate(struct mapped_device *md)
1927{
1928 __dm_destroy(md, false);
1929}
1930
1931void dm_put(struct mapped_device *md)
1932{
1933 atomic_dec(&md->holders);
1da177e4 1934}
79eb885c 1935EXPORT_SYMBOL_GPL(dm_put);
1da177e4 1936
401600df 1937static int dm_wait_for_completion(struct mapped_device *md, int interruptible)
46125c1c
MB
1938{
1939 int r = 0;
b44ebeb0
MP
1940 DECLARE_WAITQUEUE(wait, current);
1941
b44ebeb0 1942 add_wait_queue(&md->wait, &wait);
46125c1c
MB
1943
1944 while (1) {
401600df 1945 set_current_state(interruptible);
46125c1c 1946
b4324fee 1947 if (!md_in_flight(md))
46125c1c
MB
1948 break;
1949
401600df
MP
1950 if (interruptible == TASK_INTERRUPTIBLE &&
1951 signal_pending(current)) {
46125c1c
MB
1952 r = -EINTR;
1953 break;
1954 }
1955
1956 io_schedule();
1957 }
1958 set_current_state(TASK_RUNNING);
1959
b44ebeb0
MP
1960 remove_wait_queue(&md->wait, &wait);
1961
46125c1c
MB
1962 return r;
1963}
1964
1da177e4
LT
1965/*
1966 * Process the deferred bios
1967 */
ef208587 1968static void dm_wq_work(struct work_struct *work)
1da177e4 1969{
ef208587
MP
1970 struct mapped_device *md = container_of(work, struct mapped_device,
1971 work);
6d6f10df 1972 struct bio *c;
83d5e5b0
MP
1973 int srcu_idx;
1974 struct dm_table *map;
1da177e4 1975
83d5e5b0 1976 map = dm_get_live_table(md, &srcu_idx);
ef208587 1977
3b00b203 1978 while (!test_bit(DMF_BLOCK_IO_FOR_SUSPEND, &md->flags)) {
df12ee99
AK
1979 spin_lock_irq(&md->deferred_lock);
1980 c = bio_list_pop(&md->deferred);
1981 spin_unlock_irq(&md->deferred_lock);
1982
6a8736d1 1983 if (!c)
df12ee99 1984 break;
022c2611 1985
e6ee8c0b
KU
1986 if (dm_request_based(md))
1987 generic_make_request(c);
6a8736d1 1988 else
83d5e5b0 1989 __split_and_process_bio(md, map, c);
022c2611 1990 }
73d410c0 1991
83d5e5b0 1992 dm_put_live_table(md, srcu_idx);
1da177e4
LT
1993}
1994
9a1fb464 1995static void dm_queue_flush(struct mapped_device *md)
304f3f6a 1996{
3b00b203 1997 clear_bit(DMF_BLOCK_IO_FOR_SUSPEND, &md->flags);
4e857c58 1998 smp_mb__after_atomic();
53d5914f 1999 queue_work(md->wq, &md->work);
304f3f6a
MB
2000}
2001
1da177e4 2002/*
042d2a9b 2003 * Swap in a new table, returning the old one for the caller to destroy.
1da177e4 2004 */
042d2a9b 2005struct dm_table *dm_swap_table(struct mapped_device *md, struct dm_table *table)
1da177e4 2006{
87eb5b21 2007 struct dm_table *live_map = NULL, *map = ERR_PTR(-EINVAL);
754c5fc7 2008 struct queue_limits limits;
042d2a9b 2009 int r;
1da177e4 2010
e61290a4 2011 mutex_lock(&md->suspend_lock);
1da177e4
LT
2012
2013 /* device must be suspended */
4f186f8b 2014 if (!dm_suspended_md(md))
93c534ae 2015 goto out;
1da177e4 2016
3ae70656
MS
2017 /*
2018 * If the new table has no data devices, retain the existing limits.
2019 * This helps multipath with queue_if_no_path if all paths disappear,
2020 * then new I/O is queued based on these limits, and then some paths
2021 * reappear.
2022 */
2023 if (dm_table_has_no_data_devices(table)) {
83d5e5b0 2024 live_map = dm_get_live_table_fast(md);
3ae70656
MS
2025 if (live_map)
2026 limits = md->queue->limits;
83d5e5b0 2027 dm_put_live_table_fast(md);
3ae70656
MS
2028 }
2029
87eb5b21
MC
2030 if (!live_map) {
2031 r = dm_calculate_queue_limits(table, &limits);
2032 if (r) {
2033 map = ERR_PTR(r);
2034 goto out;
2035 }
042d2a9b 2036 }
754c5fc7 2037
042d2a9b 2038 map = __bind(md, table, &limits);
1da177e4 2039
93c534ae 2040out:
e61290a4 2041 mutex_unlock(&md->suspend_lock);
042d2a9b 2042 return map;
1da177e4
LT
2043}
2044
2045/*
2046 * Functions to lock and unlock any filesystem running on the
2047 * device.
2048 */
2ca3310e 2049static int lock_fs(struct mapped_device *md)
1da177e4 2050{
e39e2e95 2051 int r;
1da177e4
LT
2052
2053 WARN_ON(md->frozen_sb);
dfbe03f6 2054
db8fef4f 2055 md->frozen_sb = freeze_bdev(md->bdev);
dfbe03f6 2056 if (IS_ERR(md->frozen_sb)) {
cf222b37 2057 r = PTR_ERR(md->frozen_sb);
e39e2e95
AK
2058 md->frozen_sb = NULL;
2059 return r;
dfbe03f6
AK
2060 }
2061
aa8d7c2f
AK
2062 set_bit(DMF_FROZEN, &md->flags);
2063
1da177e4
LT
2064 return 0;
2065}
2066
2ca3310e 2067static void unlock_fs(struct mapped_device *md)
1da177e4 2068{
aa8d7c2f
AK
2069 if (!test_bit(DMF_FROZEN, &md->flags))
2070 return;
2071
db8fef4f 2072 thaw_bdev(md->bdev, md->frozen_sb);
1da177e4 2073 md->frozen_sb = NULL;
aa8d7c2f 2074 clear_bit(DMF_FROZEN, &md->flags);
1da177e4
LT
2075}
2076
2077/*
ffcc3936
MS
2078 * If __dm_suspend returns 0, the device is completely quiescent
2079 * now. There is no request-processing activity. All new requests
2080 * are being added to md->deferred list.
cec47e3d 2081 *
ffcc3936 2082 * Caller must hold md->suspend_lock
cec47e3d 2083 */
ffcc3936 2084static int __dm_suspend(struct mapped_device *md, struct dm_table *map,
eaf9a736
MS
2085 unsigned suspend_flags, int interruptible,
2086 int dmf_suspended_flag)
1da177e4 2087{
ffcc3936
MS
2088 bool do_lockfs = suspend_flags & DM_SUSPEND_LOCKFS_FLAG;
2089 bool noflush = suspend_flags & DM_SUSPEND_NOFLUSH_FLAG;
2090 int r;
1da177e4 2091
2e93ccc1
KU
2092 /*
2093 * DMF_NOFLUSH_SUSPENDING must be set before presuspend.
2094 * This flag is cleared before dm_suspend returns.
2095 */
2096 if (noflush)
2097 set_bit(DMF_NOFLUSH_SUSPENDING, &md->flags);
2098
d67ee213
MS
2099 /*
2100 * This gets reverted if there's an error later and the targets
2101 * provide the .presuspend_undo hook.
2102 */
cf222b37
AK
2103 dm_table_presuspend_targets(map);
2104
32a926da 2105 /*
9f518b27
KU
2106 * Flush I/O to the device.
2107 * Any I/O submitted after lock_fs() may not be flushed.
2108 * noflush takes precedence over do_lockfs.
2109 * (lock_fs() flushes I/Os and waits for them to complete.)
32a926da
MP
2110 */
2111 if (!noflush && do_lockfs) {
2112 r = lock_fs(md);
d67ee213
MS
2113 if (r) {
2114 dm_table_presuspend_undo_targets(map);
ffcc3936 2115 return r;
d67ee213 2116 }
aa8d7c2f 2117 }
1da177e4
LT
2118
2119 /*
3b00b203
MP
2120 * Here we must make sure that no processes are submitting requests
2121 * to target drivers i.e. no one may be executing
2122 * __split_and_process_bio. This is called from dm_request and
2123 * dm_wq_work.
2124 *
2125 * To get all processes out of __split_and_process_bio in dm_request,
2126 * we take the write lock. To prevent any process from reentering
6a8736d1
TH
2127 * __split_and_process_bio from dm_request and quiesce the thread
2128 * (dm_wq_work), we set BMF_BLOCK_IO_FOR_SUSPEND and call
2129 * flush_workqueue(md->wq).
1da177e4 2130 */
1eb787ec 2131 set_bit(DMF_BLOCK_IO_FOR_SUSPEND, &md->flags);
41abc4e1
HR
2132 if (map)
2133 synchronize_srcu(&md->io_barrier);
1da177e4 2134
d0bcb878 2135 /*
29e4013d
TH
2136 * Stop md->queue before flushing md->wq in case request-based
2137 * dm defers requests to md->wq from md->queue.
d0bcb878 2138 */
2eb6e1e3 2139 if (dm_request_based(md)) {
eca7ee6d 2140 dm_stop_queue(md->queue);
02233342 2141 if (md->kworker_task)
8c03cbe6 2142 kthread_flush_worker(&md->kworker);
2eb6e1e3 2143 }
cec47e3d 2144
d0bcb878
KU
2145 flush_workqueue(md->wq);
2146
1da177e4 2147 /*
3b00b203
MP
2148 * At this point no more requests are entering target request routines.
2149 * We call dm_wait_for_completion to wait for all existing requests
2150 * to finish.
1da177e4 2151 */
ffcc3936 2152 r = dm_wait_for_completion(md, interruptible);
eaf9a736
MS
2153 if (!r)
2154 set_bit(dmf_suspended_flag, &md->flags);
1da177e4 2155
6d6f10df 2156 if (noflush)
022c2611 2157 clear_bit(DMF_NOFLUSH_SUSPENDING, &md->flags);
41abc4e1
HR
2158 if (map)
2159 synchronize_srcu(&md->io_barrier);
2e93ccc1 2160
1da177e4 2161 /* were we interrupted ? */
46125c1c 2162 if (r < 0) {
9a1fb464 2163 dm_queue_flush(md);
73d410c0 2164
cec47e3d 2165 if (dm_request_based(md))
eca7ee6d 2166 dm_start_queue(md->queue);
cec47e3d 2167
2ca3310e 2168 unlock_fs(md);
d67ee213 2169 dm_table_presuspend_undo_targets(map);
ffcc3936 2170 /* pushback list is already flushed, so skip flush */
2ca3310e 2171 }
1da177e4 2172
ffcc3936
MS
2173 return r;
2174}
2175
2176/*
2177 * We need to be able to change a mapping table under a mounted
2178 * filesystem. For example we might want to move some data in
2179 * the background. Before the table can be swapped with
2180 * dm_bind_table, dm_suspend must be called to flush any in
2181 * flight bios and ensure that any further io gets deferred.
2182 */
2183/*
2184 * Suspend mechanism in request-based dm.
2185 *
2186 * 1. Flush all I/Os by lock_fs() if needed.
2187 * 2. Stop dispatching any I/O by stopping the request_queue.
2188 * 3. Wait for all in-flight I/Os to be completed or requeued.
2189 *
2190 * To abort suspend, start the request_queue.
2191 */
2192int dm_suspend(struct mapped_device *md, unsigned suspend_flags)
2193{
2194 struct dm_table *map = NULL;
2195 int r = 0;
2196
2197retry:
2198 mutex_lock_nested(&md->suspend_lock, SINGLE_DEPTH_NESTING);
2199
2200 if (dm_suspended_md(md)) {
2201 r = -EINVAL;
2202 goto out_unlock;
2203 }
2204
2205 if (dm_suspended_internally_md(md)) {
2206 /* already internally suspended, wait for internal resume */
2207 mutex_unlock(&md->suspend_lock);
2208 r = wait_on_bit(&md->flags, DMF_SUSPENDED_INTERNALLY, TASK_INTERRUPTIBLE);
2209 if (r)
2210 return r;
2211 goto retry;
2212 }
2213
a12f5d48 2214 map = rcu_dereference_protected(md->map, lockdep_is_held(&md->suspend_lock));
ffcc3936 2215
eaf9a736 2216 r = __dm_suspend(md, map, suspend_flags, TASK_INTERRUPTIBLE, DMF_SUSPENDED);
ffcc3936
MS
2217 if (r)
2218 goto out_unlock;
3b00b203 2219
4d4471cb
KU
2220 dm_table_postsuspend_targets(map);
2221
d287483d 2222out_unlock:
e61290a4 2223 mutex_unlock(&md->suspend_lock);
cf222b37 2224 return r;
1da177e4
LT
2225}
2226
ffcc3936
MS
2227static int __dm_resume(struct mapped_device *md, struct dm_table *map)
2228{
2229 if (map) {
2230 int r = dm_table_resume_targets(map);
2231 if (r)
2232 return r;
2233 }
2234
2235 dm_queue_flush(md);
2236
2237 /*
2238 * Flushing deferred I/Os must be done after targets are resumed
2239 * so that mapping of targets can work correctly.
2240 * Request-based dm is queueing the deferred I/Os in its request_queue.
2241 */
2242 if (dm_request_based(md))
eca7ee6d 2243 dm_start_queue(md->queue);
ffcc3936
MS
2244
2245 unlock_fs(md);
2246
2247 return 0;
2248}
2249
1da177e4
LT
2250int dm_resume(struct mapped_device *md)
2251{
cf222b37 2252 int r = -EINVAL;
cf222b37 2253 struct dm_table *map = NULL;
1da177e4 2254
ffcc3936
MS
2255retry:
2256 mutex_lock_nested(&md->suspend_lock, SINGLE_DEPTH_NESTING);
2257
4f186f8b 2258 if (!dm_suspended_md(md))
cf222b37 2259 goto out;
cf222b37 2260
ffcc3936
MS
2261 if (dm_suspended_internally_md(md)) {
2262 /* already internally suspended, wait for internal resume */
2263 mutex_unlock(&md->suspend_lock);
2264 r = wait_on_bit(&md->flags, DMF_SUSPENDED_INTERNALLY, TASK_INTERRUPTIBLE);
2265 if (r)
2266 return r;
2267 goto retry;
2268 }
2269
a12f5d48 2270 map = rcu_dereference_protected(md->map, lockdep_is_held(&md->suspend_lock));
2ca3310e 2271 if (!map || !dm_table_get_size(map))
cf222b37 2272 goto out;
1da177e4 2273
ffcc3936 2274 r = __dm_resume(md, map);
8757b776
MB
2275 if (r)
2276 goto out;
2ca3310e 2277
2ca3310e
AK
2278 clear_bit(DMF_SUSPENDED, &md->flags);
2279
cf222b37
AK
2280 r = 0;
2281out:
e61290a4 2282 mutex_unlock(&md->suspend_lock);
2ca3310e 2283
cf222b37 2284 return r;
1da177e4
LT
2285}
2286
fd2ed4d2
MP
2287/*
2288 * Internal suspend/resume works like userspace-driven suspend. It waits
2289 * until all bios finish and prevents issuing new bios to the target drivers.
2290 * It may be used only from the kernel.
fd2ed4d2
MP
2291 */
2292
ffcc3936 2293static void __dm_internal_suspend(struct mapped_device *md, unsigned suspend_flags)
fd2ed4d2 2294{
ffcc3936
MS
2295 struct dm_table *map = NULL;
2296
96b26c8c 2297 if (md->internal_suspend_count++)
ffcc3936
MS
2298 return; /* nested internal suspend */
2299
2300 if (dm_suspended_md(md)) {
2301 set_bit(DMF_SUSPENDED_INTERNALLY, &md->flags);
2302 return; /* nest suspend */
2303 }
2304
a12f5d48 2305 map = rcu_dereference_protected(md->map, lockdep_is_held(&md->suspend_lock));
ffcc3936
MS
2306
2307 /*
2308 * Using TASK_UNINTERRUPTIBLE because only NOFLUSH internal suspend is
2309 * supported. Properly supporting a TASK_INTERRUPTIBLE internal suspend
2310 * would require changing .presuspend to return an error -- avoid this
2311 * until there is a need for more elaborate variants of internal suspend.
2312 */
eaf9a736
MS
2313 (void) __dm_suspend(md, map, suspend_flags, TASK_UNINTERRUPTIBLE,
2314 DMF_SUSPENDED_INTERNALLY);
ffcc3936
MS
2315
2316 dm_table_postsuspend_targets(map);
2317}
2318
2319static void __dm_internal_resume(struct mapped_device *md)
2320{
96b26c8c
MP
2321 BUG_ON(!md->internal_suspend_count);
2322
2323 if (--md->internal_suspend_count)
ffcc3936
MS
2324 return; /* resume from nested internal suspend */
2325
fd2ed4d2 2326 if (dm_suspended_md(md))
ffcc3936
MS
2327 goto done; /* resume from nested suspend */
2328
2329 /*
2330 * NOTE: existing callers don't need to call dm_table_resume_targets
2331 * (which may fail -- so best to avoid it for now by passing NULL map)
2332 */
2333 (void) __dm_resume(md, NULL);
2334
2335done:
2336 clear_bit(DMF_SUSPENDED_INTERNALLY, &md->flags);
2337 smp_mb__after_atomic();
2338 wake_up_bit(&md->flags, DMF_SUSPENDED_INTERNALLY);
2339}
2340
2341void dm_internal_suspend_noflush(struct mapped_device *md)
2342{
2343 mutex_lock(&md->suspend_lock);
2344 __dm_internal_suspend(md, DM_SUSPEND_NOFLUSH_FLAG);
2345 mutex_unlock(&md->suspend_lock);
2346}
2347EXPORT_SYMBOL_GPL(dm_internal_suspend_noflush);
2348
2349void dm_internal_resume(struct mapped_device *md)
2350{
2351 mutex_lock(&md->suspend_lock);
2352 __dm_internal_resume(md);
2353 mutex_unlock(&md->suspend_lock);
2354}
2355EXPORT_SYMBOL_GPL(dm_internal_resume);
2356
2357/*
2358 * Fast variants of internal suspend/resume hold md->suspend_lock,
2359 * which prevents interaction with userspace-driven suspend.
2360 */
2361
2362void dm_internal_suspend_fast(struct mapped_device *md)
2363{
2364 mutex_lock(&md->suspend_lock);
2365 if (dm_suspended_md(md) || dm_suspended_internally_md(md))
fd2ed4d2
MP
2366 return;
2367
2368 set_bit(DMF_BLOCK_IO_FOR_SUSPEND, &md->flags);
2369 synchronize_srcu(&md->io_barrier);
2370 flush_workqueue(md->wq);
2371 dm_wait_for_completion(md, TASK_UNINTERRUPTIBLE);
2372}
b735fede 2373EXPORT_SYMBOL_GPL(dm_internal_suspend_fast);
fd2ed4d2 2374
ffcc3936 2375void dm_internal_resume_fast(struct mapped_device *md)
fd2ed4d2 2376{
ffcc3936 2377 if (dm_suspended_md(md) || dm_suspended_internally_md(md))
fd2ed4d2
MP
2378 goto done;
2379
2380 dm_queue_flush(md);
2381
2382done:
2383 mutex_unlock(&md->suspend_lock);
2384}
b735fede 2385EXPORT_SYMBOL_GPL(dm_internal_resume_fast);
fd2ed4d2 2386
1da177e4
LT
2387/*-----------------------------------------------------------------
2388 * Event notification.
2389 *---------------------------------------------------------------*/
3abf85b5 2390int dm_kobject_uevent(struct mapped_device *md, enum kobject_action action,
60935eb2 2391 unsigned cookie)
69267a30 2392{
60935eb2
MB
2393 char udev_cookie[DM_COOKIE_LENGTH];
2394 char *envp[] = { udev_cookie, NULL };
2395
2396 if (!cookie)
3abf85b5 2397 return kobject_uevent(&disk_to_dev(md->disk)->kobj, action);
60935eb2
MB
2398 else {
2399 snprintf(udev_cookie, DM_COOKIE_LENGTH, "%s=%u",
2400 DM_COOKIE_ENV_VAR_NAME, cookie);
3abf85b5
PR
2401 return kobject_uevent_env(&disk_to_dev(md->disk)->kobj,
2402 action, envp);
60935eb2 2403 }
69267a30
AK
2404}
2405
7a8c3d3b
MA
2406uint32_t dm_next_uevent_seq(struct mapped_device *md)
2407{
2408 return atomic_add_return(1, &md->uevent_seq);
2409}
2410
1da177e4
LT
2411uint32_t dm_get_event_nr(struct mapped_device *md)
2412{
2413 return atomic_read(&md->event_nr);
2414}
2415
2416int dm_wait_event(struct mapped_device *md, int event_nr)
2417{
2418 return wait_event_interruptible(md->eventq,
2419 (event_nr != atomic_read(&md->event_nr)));
2420}
2421
7a8c3d3b
MA
2422void dm_uevent_add(struct mapped_device *md, struct list_head *elist)
2423{
2424 unsigned long flags;
2425
2426 spin_lock_irqsave(&md->uevent_lock, flags);
2427 list_add(elist, &md->uevent_list);
2428 spin_unlock_irqrestore(&md->uevent_lock, flags);
2429}
2430
1da177e4
LT
2431/*
2432 * The gendisk is only valid as long as you have a reference
2433 * count on 'md'.
2434 */
2435struct gendisk *dm_disk(struct mapped_device *md)
2436{
2437 return md->disk;
2438}
65ff5b7d 2439EXPORT_SYMBOL_GPL(dm_disk);
1da177e4 2440
784aae73
MB
2441struct kobject *dm_kobject(struct mapped_device *md)
2442{
2995fa78 2443 return &md->kobj_holder.kobj;
784aae73
MB
2444}
2445
784aae73
MB
2446struct mapped_device *dm_get_from_kobject(struct kobject *kobj)
2447{
2448 struct mapped_device *md;
2449
2995fa78 2450 md = container_of(kobj, struct mapped_device, kobj_holder.kobj);
784aae73 2451
4d89b7b4 2452 if (test_bit(DMF_FREEING, &md->flags) ||
432a212c 2453 dm_deleting_md(md))
4d89b7b4
MB
2454 return NULL;
2455
784aae73
MB
2456 dm_get(md);
2457 return md;
2458}
2459
4f186f8b 2460int dm_suspended_md(struct mapped_device *md)
1da177e4
LT
2461{
2462 return test_bit(DMF_SUSPENDED, &md->flags);
2463}
2464
ffcc3936
MS
2465int dm_suspended_internally_md(struct mapped_device *md)
2466{
2467 return test_bit(DMF_SUSPENDED_INTERNALLY, &md->flags);
2468}
2469
2c140a24
MP
2470int dm_test_deferred_remove_flag(struct mapped_device *md)
2471{
2472 return test_bit(DMF_DEFERRED_REMOVE, &md->flags);
2473}
2474
64dbce58
KU
2475int dm_suspended(struct dm_target *ti)
2476{
ecdb2e25 2477 return dm_suspended_md(dm_table_get_md(ti->table));
64dbce58
KU
2478}
2479EXPORT_SYMBOL_GPL(dm_suspended);
2480
2e93ccc1
KU
2481int dm_noflush_suspending(struct dm_target *ti)
2482{
ecdb2e25 2483 return __noflush_suspending(dm_table_get_md(ti->table));
2e93ccc1
KU
2484}
2485EXPORT_SYMBOL_GPL(dm_noflush_suspending);
2486
78d8e58a 2487struct dm_md_mempools *dm_alloc_md_mempools(struct mapped_device *md, unsigned type,
30187e1d 2488 unsigned integrity, unsigned per_io_data_size)
e6ee8c0b 2489{
115485e8 2490 struct dm_md_mempools *pools = kzalloc_node(sizeof(*pools), GFP_KERNEL, md->numa_node_id);
78d8e58a
MS
2491 struct kmem_cache *cachep = NULL;
2492 unsigned int pool_size = 0;
5f015204 2493 unsigned int front_pad;
e6ee8c0b
KU
2494
2495 if (!pools)
4e6e36c3 2496 return NULL;
e6ee8c0b 2497
78d8e58a
MS
2498 switch (type) {
2499 case DM_TYPE_BIO_BASED:
545ed20e 2500 case DM_TYPE_DAX_BIO_BASED:
78d8e58a
MS
2501 cachep = _io_cache;
2502 pool_size = dm_get_reserved_bio_based_ios();
30187e1d 2503 front_pad = roundup(per_io_data_size, __alignof__(struct dm_target_io)) + offsetof(struct dm_target_io, clone);
78d8e58a
MS
2504 break;
2505 case DM_TYPE_REQUEST_BASED:
2506 cachep = _rq_tio_cache;
2507 pool_size = dm_get_reserved_rq_based_ios();
2508 pools->rq_pool = mempool_create_slab_pool(pool_size, _rq_cache);
2509 if (!pools->rq_pool)
2510 goto out;
2511 /* fall through to setup remaining rq-based pools */
2512 case DM_TYPE_MQ_REQUEST_BASED:
2513 if (!pool_size)
2514 pool_size = dm_get_reserved_rq_based_ios();
2515 front_pad = offsetof(struct dm_rq_clone_bio_info, clone);
591ddcfc 2516 /* per_io_data_size is used for blk-mq pdu at queue allocation */
78d8e58a
MS
2517 break;
2518 default:
2519 BUG();
2520 }
2521
2522 if (cachep) {
2523 pools->io_pool = mempool_create_slab_pool(pool_size, cachep);
2524 if (!pools->io_pool)
2525 goto out;
2526 }
e6ee8c0b 2527
3d8aab2d 2528 pools->bs = bioset_create_nobvec(pool_size, front_pad);
e6ee8c0b 2529 if (!pools->bs)
5f015204 2530 goto out;
e6ee8c0b 2531
a91a2785 2532 if (integrity && bioset_integrity_create(pools->bs, pool_size))
5f015204 2533 goto out;
a91a2785 2534
e6ee8c0b 2535 return pools;
5f1b670d 2536
5f1b670d
CH
2537out:
2538 dm_free_md_mempools(pools);
78d8e58a 2539
4e6e36c3 2540 return NULL;
e6ee8c0b
KU
2541}
2542
2543void dm_free_md_mempools(struct dm_md_mempools *pools)
2544{
2545 if (!pools)
2546 return;
2547
6f65985e
JL
2548 mempool_destroy(pools->io_pool);
2549 mempool_destroy(pools->rq_pool);
1ae49ea2 2550
e6ee8c0b
KU
2551 if (pools->bs)
2552 bioset_free(pools->bs);
2553
2554 kfree(pools);
2555}
2556
9c72bad1
CH
2557struct dm_pr {
2558 u64 old_key;
2559 u64 new_key;
2560 u32 flags;
2561 bool fail_early;
2562};
2563
2564static int dm_call_pr(struct block_device *bdev, iterate_devices_callout_fn fn,
2565 void *data)
71cdb697
CH
2566{
2567 struct mapped_device *md = bdev->bd_disk->private_data;
9c72bad1
CH
2568 struct dm_table *table;
2569 struct dm_target *ti;
2570 int ret = -ENOTTY, srcu_idx;
71cdb697 2571
9c72bad1
CH
2572 table = dm_get_live_table(md, &srcu_idx);
2573 if (!table || !dm_table_get_size(table))
2574 goto out;
71cdb697 2575
9c72bad1
CH
2576 /* We only support devices that have a single target */
2577 if (dm_table_get_num_targets(table) != 1)
2578 goto out;
2579 ti = dm_table_get_target(table, 0);
71cdb697 2580
9c72bad1
CH
2581 ret = -EINVAL;
2582 if (!ti->type->iterate_devices)
2583 goto out;
2584
2585 ret = ti->type->iterate_devices(ti, fn, data);
2586out:
2587 dm_put_live_table(md, srcu_idx);
2588 return ret;
2589}
2590
2591/*
2592 * For register / unregister we need to manually call out to every path.
2593 */
2594static int __dm_pr_register(struct dm_target *ti, struct dm_dev *dev,
2595 sector_t start, sector_t len, void *data)
2596{
2597 struct dm_pr *pr = data;
2598 const struct pr_ops *ops = dev->bdev->bd_disk->fops->pr_ops;
2599
2600 if (!ops || !ops->pr_register)
2601 return -EOPNOTSUPP;
2602 return ops->pr_register(dev->bdev, pr->old_key, pr->new_key, pr->flags);
2603}
2604
2605static int dm_pr_register(struct block_device *bdev, u64 old_key, u64 new_key,
2606 u32 flags)
2607{
2608 struct dm_pr pr = {
2609 .old_key = old_key,
2610 .new_key = new_key,
2611 .flags = flags,
2612 .fail_early = true,
2613 };
2614 int ret;
2615
2616 ret = dm_call_pr(bdev, __dm_pr_register, &pr);
2617 if (ret && new_key) {
2618 /* unregister all paths if we failed to register any path */
2619 pr.old_key = new_key;
2620 pr.new_key = 0;
2621 pr.flags = 0;
2622 pr.fail_early = false;
2623 dm_call_pr(bdev, __dm_pr_register, &pr);
2624 }
2625
2626 return ret;
71cdb697
CH
2627}
2628
2629static int dm_pr_reserve(struct block_device *bdev, u64 key, enum pr_type type,
956a4025 2630 u32 flags)
71cdb697
CH
2631{
2632 struct mapped_device *md = bdev->bd_disk->private_data;
2633 const struct pr_ops *ops;
71cdb697 2634 fmode_t mode;
956a4025 2635 int r;
71cdb697 2636
956a4025 2637 r = dm_grab_bdev_for_ioctl(md, &bdev, &mode);
71cdb697
CH
2638 if (r < 0)
2639 return r;
2640
2641 ops = bdev->bd_disk->fops->pr_ops;
2642 if (ops && ops->pr_reserve)
2643 r = ops->pr_reserve(bdev, key, type, flags);
2644 else
2645 r = -EOPNOTSUPP;
2646
956a4025 2647 bdput(bdev);
71cdb697
CH
2648 return r;
2649}
2650
2651static int dm_pr_release(struct block_device *bdev, u64 key, enum pr_type type)
2652{
2653 struct mapped_device *md = bdev->bd_disk->private_data;
2654 const struct pr_ops *ops;
71cdb697 2655 fmode_t mode;
956a4025 2656 int r;
71cdb697 2657
956a4025 2658 r = dm_grab_bdev_for_ioctl(md, &bdev, &mode);
71cdb697
CH
2659 if (r < 0)
2660 return r;
2661
2662 ops = bdev->bd_disk->fops->pr_ops;
2663 if (ops && ops->pr_release)
2664 r = ops->pr_release(bdev, key, type);
2665 else
2666 r = -EOPNOTSUPP;
2667
956a4025 2668 bdput(bdev);
71cdb697
CH
2669 return r;
2670}
2671
2672static int dm_pr_preempt(struct block_device *bdev, u64 old_key, u64 new_key,
956a4025 2673 enum pr_type type, bool abort)
71cdb697
CH
2674{
2675 struct mapped_device *md = bdev->bd_disk->private_data;
2676 const struct pr_ops *ops;
71cdb697 2677 fmode_t mode;
956a4025 2678 int r;
71cdb697 2679
956a4025 2680 r = dm_grab_bdev_for_ioctl(md, &bdev, &mode);
71cdb697
CH
2681 if (r < 0)
2682 return r;
2683
2684 ops = bdev->bd_disk->fops->pr_ops;
2685 if (ops && ops->pr_preempt)
2686 r = ops->pr_preempt(bdev, old_key, new_key, type, abort);
2687 else
2688 r = -EOPNOTSUPP;
2689
956a4025 2690 bdput(bdev);
71cdb697
CH
2691 return r;
2692}
2693
2694static int dm_pr_clear(struct block_device *bdev, u64 key)
2695{
2696 struct mapped_device *md = bdev->bd_disk->private_data;
2697 const struct pr_ops *ops;
71cdb697 2698 fmode_t mode;
956a4025 2699 int r;
71cdb697 2700
956a4025 2701 r = dm_grab_bdev_for_ioctl(md, &bdev, &mode);
71cdb697
CH
2702 if (r < 0)
2703 return r;
2704
2705 ops = bdev->bd_disk->fops->pr_ops;
2706 if (ops && ops->pr_clear)
2707 r = ops->pr_clear(bdev, key);
2708 else
2709 r = -EOPNOTSUPP;
2710
956a4025 2711 bdput(bdev);
71cdb697
CH
2712 return r;
2713}
2714
2715static const struct pr_ops dm_pr_ops = {
2716 .pr_register = dm_pr_register,
2717 .pr_reserve = dm_pr_reserve,
2718 .pr_release = dm_pr_release,
2719 .pr_preempt = dm_pr_preempt,
2720 .pr_clear = dm_pr_clear,
2721};
2722
83d5cde4 2723static const struct block_device_operations dm_blk_dops = {
1da177e4
LT
2724 .open = dm_blk_open,
2725 .release = dm_blk_close,
aa129a22 2726 .ioctl = dm_blk_ioctl,
545ed20e 2727 .direct_access = dm_blk_direct_access,
3ac51e74 2728 .getgeo = dm_blk_getgeo,
71cdb697 2729 .pr_ops = &dm_pr_ops,
1da177e4
LT
2730 .owner = THIS_MODULE
2731};
2732
1da177e4
LT
2733/*
2734 * module hooks
2735 */
2736module_init(dm_init);
2737module_exit(dm_exit);
2738
2739module_param(major, uint, 0);
2740MODULE_PARM_DESC(major, "The major number of the device mapper");
f4790826 2741
e8603136
MS
2742module_param(reserved_bio_based_ios, uint, S_IRUGO | S_IWUSR);
2743MODULE_PARM_DESC(reserved_bio_based_ios, "Reserved IOs in bio-based mempools");
2744
115485e8
MS
2745module_param(dm_numa_node, int, S_IRUGO | S_IWUSR);
2746MODULE_PARM_DESC(dm_numa_node, "NUMA node for DM device memory allocations");
2747
1da177e4
LT
2748MODULE_DESCRIPTION(DM_NAME " driver");
2749MODULE_AUTHOR("Joe Thornber <dm-devel@redhat.com>");
2750MODULE_LICENSE("GPL");
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