blob: 0acd10d3b7bff8ab0477895469ab3aed88cf3929 [file] [log] [blame]
rjw1f884582022-01-06 17:20:42 +08001/*
2 * Copyright (C) 2012 Red Hat, Inc.
3 *
4 * This file is released under the GPL.
5 */
6
7#include "dm-cache-metadata.h"
8
9#include "persistent-data/dm-array.h"
10#include "persistent-data/dm-bitset.h"
11#include "persistent-data/dm-space-map.h"
12#include "persistent-data/dm-space-map-disk.h"
13#include "persistent-data/dm-transaction-manager.h"
14
15#include <linux/device-mapper.h>
16
17/*----------------------------------------------------------------*/
18
19#define DM_MSG_PREFIX "cache metadata"
20
21#define CACHE_SUPERBLOCK_MAGIC 06142003
22#define CACHE_SUPERBLOCK_LOCATION 0
23
24/*
25 * defines a range of metadata versions that this module can handle.
26 */
27#define MIN_CACHE_VERSION 1
28#define MAX_CACHE_VERSION 2
29
30/*
31 * 3 for btree insert +
32 * 2 for btree lookup used within space map
33 */
34#define CACHE_MAX_CONCURRENT_LOCKS 5
35#define SPACE_MAP_ROOT_SIZE 128
36
37enum superblock_flag_bits {
38 /* for spotting crashes that would invalidate the dirty bitset */
39 CLEAN_SHUTDOWN,
40 /* metadata must be checked using the tools */
41 NEEDS_CHECK,
42};
43
44/*
45 * Each mapping from cache block -> origin block carries a set of flags.
46 */
47enum mapping_bits {
48 /*
49 * A valid mapping. Because we're using an array we clear this
50 * flag for an non existant mapping.
51 */
52 M_VALID = 1,
53
54 /*
55 * The data on the cache is different from that on the origin.
56 * This flag is only used by metadata format 1.
57 */
58 M_DIRTY = 2
59};
60
61struct cache_disk_superblock {
62 __le32 csum;
63 __le32 flags;
64 __le64 blocknr;
65
66 __u8 uuid[16];
67 __le64 magic;
68 __le32 version;
69
70 __u8 policy_name[CACHE_POLICY_NAME_SIZE];
71 __le32 policy_hint_size;
72
73 __u8 metadata_space_map_root[SPACE_MAP_ROOT_SIZE];
74 __le64 mapping_root;
75 __le64 hint_root;
76
77 __le64 discard_root;
78 __le64 discard_block_size;
79 __le64 discard_nr_blocks;
80
81 __le32 data_block_size;
82 __le32 metadata_block_size;
83 __le32 cache_blocks;
84
85 __le32 compat_flags;
86 __le32 compat_ro_flags;
87 __le32 incompat_flags;
88
89 __le32 read_hits;
90 __le32 read_misses;
91 __le32 write_hits;
92 __le32 write_misses;
93
94 __le32 policy_version[CACHE_POLICY_VERSION_SIZE];
95
96 /*
97 * Metadata format 2 fields.
98 */
99 __le64 dirty_root;
100} __packed;
101
102struct dm_cache_metadata {
103 atomic_t ref_count;
104 struct list_head list;
105
106 unsigned version;
107 struct block_device *bdev;
108 struct dm_block_manager *bm;
109 struct dm_space_map *metadata_sm;
110 struct dm_transaction_manager *tm;
111
112 struct dm_array_info info;
113 struct dm_array_info hint_info;
114 struct dm_disk_bitset discard_info;
115
116 struct rw_semaphore root_lock;
117 unsigned long flags;
118 dm_block_t root;
119 dm_block_t hint_root;
120 dm_block_t discard_root;
121
122 sector_t discard_block_size;
123 dm_dblock_t discard_nr_blocks;
124
125 sector_t data_block_size;
126 dm_cblock_t cache_blocks;
127 bool changed:1;
128 bool clean_when_opened:1;
129
130 char policy_name[CACHE_POLICY_NAME_SIZE];
131 unsigned policy_version[CACHE_POLICY_VERSION_SIZE];
132 size_t policy_hint_size;
133 struct dm_cache_statistics stats;
134
135 /*
136 * Reading the space map root can fail, so we read it into this
137 * buffer before the superblock is locked and updated.
138 */
139 __u8 metadata_space_map_root[SPACE_MAP_ROOT_SIZE];
140
141 /*
142 * Set if a transaction has to be aborted but the attempt to roll
143 * back to the previous (good) transaction failed. The only
144 * metadata operation permissible in this state is the closing of
145 * the device.
146 */
147 bool fail_io:1;
148
149 /*
150 * Metadata format 2 fields.
151 */
152 dm_block_t dirty_root;
153 struct dm_disk_bitset dirty_info;
154
155 /*
156 * These structures are used when loading metadata. They're too
157 * big to put on the stack.
158 */
159 struct dm_array_cursor mapping_cursor;
160 struct dm_array_cursor hint_cursor;
161 struct dm_bitset_cursor dirty_cursor;
162};
163
164/*-------------------------------------------------------------------
165 * superblock validator
166 *-----------------------------------------------------------------*/
167
168#define SUPERBLOCK_CSUM_XOR 9031977
169
170static void sb_prepare_for_write(struct dm_block_validator *v,
171 struct dm_block *b,
172 size_t sb_block_size)
173{
174 struct cache_disk_superblock *disk_super = dm_block_data(b);
175
176 disk_super->blocknr = cpu_to_le64(dm_block_location(b));
177 disk_super->csum = cpu_to_le32(dm_bm_checksum(&disk_super->flags,
178 sb_block_size - sizeof(__le32),
179 SUPERBLOCK_CSUM_XOR));
180}
181
182static int check_metadata_version(struct cache_disk_superblock *disk_super)
183{
184 uint32_t metadata_version = le32_to_cpu(disk_super->version);
185
186 if (metadata_version < MIN_CACHE_VERSION || metadata_version > MAX_CACHE_VERSION) {
187 DMERR("Cache metadata version %u found, but only versions between %u and %u supported.",
188 metadata_version, MIN_CACHE_VERSION, MAX_CACHE_VERSION);
189 return -EINVAL;
190 }
191
192 return 0;
193}
194
195static int sb_check(struct dm_block_validator *v,
196 struct dm_block *b,
197 size_t sb_block_size)
198{
199 struct cache_disk_superblock *disk_super = dm_block_data(b);
200 __le32 csum_le;
201
202 if (dm_block_location(b) != le64_to_cpu(disk_super->blocknr)) {
203 DMERR("sb_check failed: blocknr %llu: wanted %llu",
204 le64_to_cpu(disk_super->blocknr),
205 (unsigned long long)dm_block_location(b));
206 return -ENOTBLK;
207 }
208
209 if (le64_to_cpu(disk_super->magic) != CACHE_SUPERBLOCK_MAGIC) {
210 DMERR("sb_check failed: magic %llu: wanted %llu",
211 le64_to_cpu(disk_super->magic),
212 (unsigned long long)CACHE_SUPERBLOCK_MAGIC);
213 return -EILSEQ;
214 }
215
216 csum_le = cpu_to_le32(dm_bm_checksum(&disk_super->flags,
217 sb_block_size - sizeof(__le32),
218 SUPERBLOCK_CSUM_XOR));
219 if (csum_le != disk_super->csum) {
220 DMERR("sb_check failed: csum %u: wanted %u",
221 le32_to_cpu(csum_le), le32_to_cpu(disk_super->csum));
222 return -EILSEQ;
223 }
224
225 return check_metadata_version(disk_super);
226}
227
228static struct dm_block_validator sb_validator = {
229 .name = "superblock",
230 .prepare_for_write = sb_prepare_for_write,
231 .check = sb_check
232};
233
234/*----------------------------------------------------------------*/
235
236static int superblock_read_lock(struct dm_cache_metadata *cmd,
237 struct dm_block **sblock)
238{
239 return dm_bm_read_lock(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
240 &sb_validator, sblock);
241}
242
243static int superblock_lock_zero(struct dm_cache_metadata *cmd,
244 struct dm_block **sblock)
245{
246 return dm_bm_write_lock_zero(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
247 &sb_validator, sblock);
248}
249
250static int superblock_lock(struct dm_cache_metadata *cmd,
251 struct dm_block **sblock)
252{
253 return dm_bm_write_lock(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
254 &sb_validator, sblock);
255}
256
257/*----------------------------------------------------------------*/
258
259static int __superblock_all_zeroes(struct dm_block_manager *bm, bool *result)
260{
261 int r;
262 unsigned i;
263 struct dm_block *b;
264 __le64 *data_le, zero = cpu_to_le64(0);
265 unsigned sb_block_size = dm_bm_block_size(bm) / sizeof(__le64);
266
267 /*
268 * We can't use a validator here - it may be all zeroes.
269 */
270 r = dm_bm_read_lock(bm, CACHE_SUPERBLOCK_LOCATION, NULL, &b);
271 if (r)
272 return r;
273
274 data_le = dm_block_data(b);
275 *result = true;
276 for (i = 0; i < sb_block_size; i++) {
277 if (data_le[i] != zero) {
278 *result = false;
279 break;
280 }
281 }
282
283 dm_bm_unlock(b);
284
285 return 0;
286}
287
288static void __setup_mapping_info(struct dm_cache_metadata *cmd)
289{
290 struct dm_btree_value_type vt;
291
292 vt.context = NULL;
293 vt.size = sizeof(__le64);
294 vt.inc = NULL;
295 vt.dec = NULL;
296 vt.equal = NULL;
297 dm_array_info_init(&cmd->info, cmd->tm, &vt);
298
299 if (cmd->policy_hint_size) {
300 vt.size = sizeof(__le32);
301 dm_array_info_init(&cmd->hint_info, cmd->tm, &vt);
302 }
303}
304
305static int __save_sm_root(struct dm_cache_metadata *cmd)
306{
307 int r;
308 size_t metadata_len;
309
310 r = dm_sm_root_size(cmd->metadata_sm, &metadata_len);
311 if (r < 0)
312 return r;
313
314 return dm_sm_copy_root(cmd->metadata_sm, &cmd->metadata_space_map_root,
315 metadata_len);
316}
317
318static void __copy_sm_root(struct dm_cache_metadata *cmd,
319 struct cache_disk_superblock *disk_super)
320{
321 memcpy(&disk_super->metadata_space_map_root,
322 &cmd->metadata_space_map_root,
323 sizeof(cmd->metadata_space_map_root));
324}
325
326static bool separate_dirty_bits(struct dm_cache_metadata *cmd)
327{
328 return cmd->version >= 2;
329}
330
331static int __write_initial_superblock(struct dm_cache_metadata *cmd)
332{
333 int r;
334 struct dm_block *sblock;
335 struct cache_disk_superblock *disk_super;
336 sector_t bdev_size = i_size_read(cmd->bdev->bd_inode) >> SECTOR_SHIFT;
337
338 /* FIXME: see if we can lose the max sectors limit */
339 if (bdev_size > DM_CACHE_METADATA_MAX_SECTORS)
340 bdev_size = DM_CACHE_METADATA_MAX_SECTORS;
341
342 r = dm_tm_pre_commit(cmd->tm);
343 if (r < 0)
344 return r;
345
346 /*
347 * dm_sm_copy_root() can fail. So we need to do it before we start
348 * updating the superblock.
349 */
350 r = __save_sm_root(cmd);
351 if (r)
352 return r;
353
354 r = superblock_lock_zero(cmd, &sblock);
355 if (r)
356 return r;
357
358 disk_super = dm_block_data(sblock);
359 disk_super->flags = 0;
360 memset(disk_super->uuid, 0, sizeof(disk_super->uuid));
361 disk_super->magic = cpu_to_le64(CACHE_SUPERBLOCK_MAGIC);
362 disk_super->version = cpu_to_le32(cmd->version);
363 memset(disk_super->policy_name, 0, sizeof(disk_super->policy_name));
364 memset(disk_super->policy_version, 0, sizeof(disk_super->policy_version));
365 disk_super->policy_hint_size = cpu_to_le32(0);
366
367 __copy_sm_root(cmd, disk_super);
368
369 disk_super->mapping_root = cpu_to_le64(cmd->root);
370 disk_super->hint_root = cpu_to_le64(cmd->hint_root);
371 disk_super->discard_root = cpu_to_le64(cmd->discard_root);
372 disk_super->discard_block_size = cpu_to_le64(cmd->discard_block_size);
373 disk_super->discard_nr_blocks = cpu_to_le64(from_dblock(cmd->discard_nr_blocks));
374 disk_super->metadata_block_size = cpu_to_le32(DM_CACHE_METADATA_BLOCK_SIZE);
375 disk_super->data_block_size = cpu_to_le32(cmd->data_block_size);
376 disk_super->cache_blocks = cpu_to_le32(0);
377
378 disk_super->read_hits = cpu_to_le32(0);
379 disk_super->read_misses = cpu_to_le32(0);
380 disk_super->write_hits = cpu_to_le32(0);
381 disk_super->write_misses = cpu_to_le32(0);
382
383 if (separate_dirty_bits(cmd))
384 disk_super->dirty_root = cpu_to_le64(cmd->dirty_root);
385
386 return dm_tm_commit(cmd->tm, sblock);
387}
388
389static int __format_metadata(struct dm_cache_metadata *cmd)
390{
391 int r;
392
393 r = dm_tm_create_with_sm(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
394 &cmd->tm, &cmd->metadata_sm);
395 if (r < 0) {
396 DMERR("tm_create_with_sm failed");
397 return r;
398 }
399
400 __setup_mapping_info(cmd);
401
402 r = dm_array_empty(&cmd->info, &cmd->root);
403 if (r < 0)
404 goto bad;
405
406 if (separate_dirty_bits(cmd)) {
407 dm_disk_bitset_init(cmd->tm, &cmd->dirty_info);
408 r = dm_bitset_empty(&cmd->dirty_info, &cmd->dirty_root);
409 if (r < 0)
410 goto bad;
411 }
412
413 dm_disk_bitset_init(cmd->tm, &cmd->discard_info);
414 r = dm_bitset_empty(&cmd->discard_info, &cmd->discard_root);
415 if (r < 0)
416 goto bad;
417
418 cmd->discard_block_size = 0;
419 cmd->discard_nr_blocks = 0;
420
421 r = __write_initial_superblock(cmd);
422 if (r)
423 goto bad;
424
425 cmd->clean_when_opened = true;
426 return 0;
427
428bad:
429 dm_tm_destroy(cmd->tm);
430 dm_sm_destroy(cmd->metadata_sm);
431
432 return r;
433}
434
435static int __check_incompat_features(struct cache_disk_superblock *disk_super,
436 struct dm_cache_metadata *cmd)
437{
438 uint32_t incompat_flags, features;
439
440 incompat_flags = le32_to_cpu(disk_super->incompat_flags);
441 features = incompat_flags & ~DM_CACHE_FEATURE_INCOMPAT_SUPP;
442 if (features) {
443 DMERR("could not access metadata due to unsupported optional features (%lx).",
444 (unsigned long)features);
445 return -EINVAL;
446 }
447
448 /*
449 * Check for read-only metadata to skip the following RDWR checks.
450 */
451 if (get_disk_ro(cmd->bdev->bd_disk))
452 return 0;
453
454 features = le32_to_cpu(disk_super->compat_ro_flags) & ~DM_CACHE_FEATURE_COMPAT_RO_SUPP;
455 if (features) {
456 DMERR("could not access metadata RDWR due to unsupported optional features (%lx).",
457 (unsigned long)features);
458 return -EINVAL;
459 }
460
461 return 0;
462}
463
464static int __open_metadata(struct dm_cache_metadata *cmd)
465{
466 int r;
467 struct dm_block *sblock;
468 struct cache_disk_superblock *disk_super;
469 unsigned long sb_flags;
470
471 r = superblock_read_lock(cmd, &sblock);
472 if (r < 0) {
473 DMERR("couldn't read lock superblock");
474 return r;
475 }
476
477 disk_super = dm_block_data(sblock);
478
479 /* Verify the data block size hasn't changed */
480 if (le32_to_cpu(disk_super->data_block_size) != cmd->data_block_size) {
481 DMERR("changing the data block size (from %u to %llu) is not supported",
482 le32_to_cpu(disk_super->data_block_size),
483 (unsigned long long)cmd->data_block_size);
484 r = -EINVAL;
485 goto bad;
486 }
487
488 r = __check_incompat_features(disk_super, cmd);
489 if (r < 0)
490 goto bad;
491
492 r = dm_tm_open_with_sm(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
493 disk_super->metadata_space_map_root,
494 sizeof(disk_super->metadata_space_map_root),
495 &cmd->tm, &cmd->metadata_sm);
496 if (r < 0) {
497 DMERR("tm_open_with_sm failed");
498 goto bad;
499 }
500
501 __setup_mapping_info(cmd);
502 dm_disk_bitset_init(cmd->tm, &cmd->dirty_info);
503 dm_disk_bitset_init(cmd->tm, &cmd->discard_info);
504 sb_flags = le32_to_cpu(disk_super->flags);
505 cmd->clean_when_opened = test_bit(CLEAN_SHUTDOWN, &sb_flags);
506 dm_bm_unlock(sblock);
507
508 return 0;
509
510bad:
511 dm_bm_unlock(sblock);
512 return r;
513}
514
515static int __open_or_format_metadata(struct dm_cache_metadata *cmd,
516 bool format_device)
517{
518 int r;
519 bool unformatted = false;
520
521 r = __superblock_all_zeroes(cmd->bm, &unformatted);
522 if (r)
523 return r;
524
525 if (unformatted)
526 return format_device ? __format_metadata(cmd) : -EPERM;
527
528 return __open_metadata(cmd);
529}
530
531static int __create_persistent_data_objects(struct dm_cache_metadata *cmd,
532 bool may_format_device)
533{
534 int r;
535 cmd->bm = dm_block_manager_create(cmd->bdev, DM_CACHE_METADATA_BLOCK_SIZE << SECTOR_SHIFT,
536 CACHE_MAX_CONCURRENT_LOCKS);
537 if (IS_ERR(cmd->bm)) {
538 DMERR("could not create block manager");
539 r = PTR_ERR(cmd->bm);
540 cmd->bm = NULL;
541 return r;
542 }
543
544 r = __open_or_format_metadata(cmd, may_format_device);
545 if (r) {
546 dm_block_manager_destroy(cmd->bm);
547 cmd->bm = NULL;
548 }
549
550 return r;
551}
552
553static void __destroy_persistent_data_objects(struct dm_cache_metadata *cmd)
554{
555 dm_sm_destroy(cmd->metadata_sm);
556 dm_tm_destroy(cmd->tm);
557 dm_block_manager_destroy(cmd->bm);
558}
559
560typedef unsigned long (*flags_mutator)(unsigned long);
561
562static void update_flags(struct cache_disk_superblock *disk_super,
563 flags_mutator mutator)
564{
565 uint32_t sb_flags = mutator(le32_to_cpu(disk_super->flags));
566 disk_super->flags = cpu_to_le32(sb_flags);
567}
568
569static unsigned long set_clean_shutdown(unsigned long flags)
570{
571 set_bit(CLEAN_SHUTDOWN, &flags);
572 return flags;
573}
574
575static unsigned long clear_clean_shutdown(unsigned long flags)
576{
577 clear_bit(CLEAN_SHUTDOWN, &flags);
578 return flags;
579}
580
581static void read_superblock_fields(struct dm_cache_metadata *cmd,
582 struct cache_disk_superblock *disk_super)
583{
584 cmd->version = le32_to_cpu(disk_super->version);
585 cmd->flags = le32_to_cpu(disk_super->flags);
586 cmd->root = le64_to_cpu(disk_super->mapping_root);
587 cmd->hint_root = le64_to_cpu(disk_super->hint_root);
588 cmd->discard_root = le64_to_cpu(disk_super->discard_root);
589 cmd->discard_block_size = le64_to_cpu(disk_super->discard_block_size);
590 cmd->discard_nr_blocks = to_dblock(le64_to_cpu(disk_super->discard_nr_blocks));
591 cmd->data_block_size = le32_to_cpu(disk_super->data_block_size);
592 cmd->cache_blocks = to_cblock(le32_to_cpu(disk_super->cache_blocks));
593 strncpy(cmd->policy_name, disk_super->policy_name, sizeof(cmd->policy_name));
594 cmd->policy_version[0] = le32_to_cpu(disk_super->policy_version[0]);
595 cmd->policy_version[1] = le32_to_cpu(disk_super->policy_version[1]);
596 cmd->policy_version[2] = le32_to_cpu(disk_super->policy_version[2]);
597 cmd->policy_hint_size = le32_to_cpu(disk_super->policy_hint_size);
598
599 cmd->stats.read_hits = le32_to_cpu(disk_super->read_hits);
600 cmd->stats.read_misses = le32_to_cpu(disk_super->read_misses);
601 cmd->stats.write_hits = le32_to_cpu(disk_super->write_hits);
602 cmd->stats.write_misses = le32_to_cpu(disk_super->write_misses);
603
604 if (separate_dirty_bits(cmd))
605 cmd->dirty_root = le64_to_cpu(disk_super->dirty_root);
606
607 cmd->changed = false;
608}
609
610/*
611 * The mutator updates the superblock flags.
612 */
613static int __begin_transaction_flags(struct dm_cache_metadata *cmd,
614 flags_mutator mutator)
615{
616 int r;
617 struct cache_disk_superblock *disk_super;
618 struct dm_block *sblock;
619
620 r = superblock_lock(cmd, &sblock);
621 if (r)
622 return r;
623
624 disk_super = dm_block_data(sblock);
625 update_flags(disk_super, mutator);
626 read_superblock_fields(cmd, disk_super);
627 dm_bm_unlock(sblock);
628
629 return dm_bm_flush(cmd->bm);
630}
631
632static int __begin_transaction(struct dm_cache_metadata *cmd)
633{
634 int r;
635 struct cache_disk_superblock *disk_super;
636 struct dm_block *sblock;
637
638 /*
639 * We re-read the superblock every time. Shouldn't need to do this
640 * really.
641 */
642 r = superblock_read_lock(cmd, &sblock);
643 if (r)
644 return r;
645
646 disk_super = dm_block_data(sblock);
647 read_superblock_fields(cmd, disk_super);
648 dm_bm_unlock(sblock);
649
650 return 0;
651}
652
653static int __commit_transaction(struct dm_cache_metadata *cmd,
654 flags_mutator mutator)
655{
656 int r;
657 struct cache_disk_superblock *disk_super;
658 struct dm_block *sblock;
659
660 /*
661 * We need to know if the cache_disk_superblock exceeds a 512-byte sector.
662 */
663 BUILD_BUG_ON(sizeof(struct cache_disk_superblock) > 512);
664
665 if (separate_dirty_bits(cmd)) {
666 r = dm_bitset_flush(&cmd->dirty_info, cmd->dirty_root,
667 &cmd->dirty_root);
668 if (r)
669 return r;
670 }
671
672 r = dm_bitset_flush(&cmd->discard_info, cmd->discard_root,
673 &cmd->discard_root);
674 if (r)
675 return r;
676
677 r = dm_tm_pre_commit(cmd->tm);
678 if (r < 0)
679 return r;
680
681 r = __save_sm_root(cmd);
682 if (r)
683 return r;
684
685 r = superblock_lock(cmd, &sblock);
686 if (r)
687 return r;
688
689 disk_super = dm_block_data(sblock);
690
691 disk_super->flags = cpu_to_le32(cmd->flags);
692 if (mutator)
693 update_flags(disk_super, mutator);
694
695 disk_super->mapping_root = cpu_to_le64(cmd->root);
696 if (separate_dirty_bits(cmd))
697 disk_super->dirty_root = cpu_to_le64(cmd->dirty_root);
698 disk_super->hint_root = cpu_to_le64(cmd->hint_root);
699 disk_super->discard_root = cpu_to_le64(cmd->discard_root);
700 disk_super->discard_block_size = cpu_to_le64(cmd->discard_block_size);
701 disk_super->discard_nr_blocks = cpu_to_le64(from_dblock(cmd->discard_nr_blocks));
702 disk_super->cache_blocks = cpu_to_le32(from_cblock(cmd->cache_blocks));
703 strncpy(disk_super->policy_name, cmd->policy_name, sizeof(disk_super->policy_name));
704 disk_super->policy_version[0] = cpu_to_le32(cmd->policy_version[0]);
705 disk_super->policy_version[1] = cpu_to_le32(cmd->policy_version[1]);
706 disk_super->policy_version[2] = cpu_to_le32(cmd->policy_version[2]);
707 disk_super->policy_hint_size = cpu_to_le32(cmd->policy_hint_size);
708
709 disk_super->read_hits = cpu_to_le32(cmd->stats.read_hits);
710 disk_super->read_misses = cpu_to_le32(cmd->stats.read_misses);
711 disk_super->write_hits = cpu_to_le32(cmd->stats.write_hits);
712 disk_super->write_misses = cpu_to_le32(cmd->stats.write_misses);
713 __copy_sm_root(cmd, disk_super);
714
715 return dm_tm_commit(cmd->tm, sblock);
716}
717
718/*----------------------------------------------------------------*/
719
720/*
721 * The mappings are held in a dm-array that has 64-bit values stored in
722 * little-endian format. The index is the cblock, the high 48bits of the
723 * value are the oblock and the low 16 bit the flags.
724 */
725#define FLAGS_MASK ((1 << 16) - 1)
726
727static __le64 pack_value(dm_oblock_t block, unsigned flags)
728{
729 uint64_t value = from_oblock(block);
730 value <<= 16;
731 value = value | (flags & FLAGS_MASK);
732 return cpu_to_le64(value);
733}
734
735static void unpack_value(__le64 value_le, dm_oblock_t *block, unsigned *flags)
736{
737 uint64_t value = le64_to_cpu(value_le);
738 uint64_t b = value >> 16;
739 *block = to_oblock(b);
740 *flags = value & FLAGS_MASK;
741}
742
743/*----------------------------------------------------------------*/
744
745static struct dm_cache_metadata *metadata_open(struct block_device *bdev,
746 sector_t data_block_size,
747 bool may_format_device,
748 size_t policy_hint_size,
749 unsigned metadata_version)
750{
751 int r;
752 struct dm_cache_metadata *cmd;
753
754 cmd = kzalloc(sizeof(*cmd), GFP_KERNEL);
755 if (!cmd) {
756 DMERR("could not allocate metadata struct");
757 return ERR_PTR(-ENOMEM);
758 }
759
760 cmd->version = metadata_version;
761 atomic_set(&cmd->ref_count, 1);
762 init_rwsem(&cmd->root_lock);
763 cmd->bdev = bdev;
764 cmd->data_block_size = data_block_size;
765 cmd->cache_blocks = 0;
766 cmd->policy_hint_size = policy_hint_size;
767 cmd->changed = true;
768 cmd->fail_io = false;
769
770 r = __create_persistent_data_objects(cmd, may_format_device);
771 if (r) {
772 kfree(cmd);
773 return ERR_PTR(r);
774 }
775
776 r = __begin_transaction_flags(cmd, clear_clean_shutdown);
777 if (r < 0) {
778 dm_cache_metadata_close(cmd);
779 return ERR_PTR(r);
780 }
781
782 return cmd;
783}
784
785/*
786 * We keep a little list of ref counted metadata objects to prevent two
787 * different target instances creating separate bufio instances. This is
788 * an issue if a table is reloaded before the suspend.
789 */
790static DEFINE_MUTEX(table_lock);
791static LIST_HEAD(table);
792
793static struct dm_cache_metadata *lookup(struct block_device *bdev)
794{
795 struct dm_cache_metadata *cmd;
796
797 list_for_each_entry(cmd, &table, list)
798 if (cmd->bdev == bdev) {
799 atomic_inc(&cmd->ref_count);
800 return cmd;
801 }
802
803 return NULL;
804}
805
806static struct dm_cache_metadata *lookup_or_open(struct block_device *bdev,
807 sector_t data_block_size,
808 bool may_format_device,
809 size_t policy_hint_size,
810 unsigned metadata_version)
811{
812 struct dm_cache_metadata *cmd, *cmd2;
813
814 mutex_lock(&table_lock);
815 cmd = lookup(bdev);
816 mutex_unlock(&table_lock);
817
818 if (cmd)
819 return cmd;
820
821 cmd = metadata_open(bdev, data_block_size, may_format_device,
822 policy_hint_size, metadata_version);
823 if (!IS_ERR(cmd)) {
824 mutex_lock(&table_lock);
825 cmd2 = lookup(bdev);
826 if (cmd2) {
827 mutex_unlock(&table_lock);
828 __destroy_persistent_data_objects(cmd);
829 kfree(cmd);
830 return cmd2;
831 }
832 list_add(&cmd->list, &table);
833 mutex_unlock(&table_lock);
834 }
835
836 return cmd;
837}
838
839static bool same_params(struct dm_cache_metadata *cmd, sector_t data_block_size)
840{
841 if (cmd->data_block_size != data_block_size) {
842 DMERR("data_block_size (%llu) different from that in metadata (%llu)",
843 (unsigned long long) data_block_size,
844 (unsigned long long) cmd->data_block_size);
845 return false;
846 }
847
848 return true;
849}
850
851struct dm_cache_metadata *dm_cache_metadata_open(struct block_device *bdev,
852 sector_t data_block_size,
853 bool may_format_device,
854 size_t policy_hint_size,
855 unsigned metadata_version)
856{
857 struct dm_cache_metadata *cmd = lookup_or_open(bdev, data_block_size, may_format_device,
858 policy_hint_size, metadata_version);
859
860 if (!IS_ERR(cmd) && !same_params(cmd, data_block_size)) {
861 dm_cache_metadata_close(cmd);
862 return ERR_PTR(-EINVAL);
863 }
864
865 return cmd;
866}
867
868void dm_cache_metadata_close(struct dm_cache_metadata *cmd)
869{
870 if (atomic_dec_and_test(&cmd->ref_count)) {
871 mutex_lock(&table_lock);
872 list_del(&cmd->list);
873 mutex_unlock(&table_lock);
874
875 if (!cmd->fail_io)
876 __destroy_persistent_data_objects(cmd);
877 kfree(cmd);
878 }
879}
880
881/*
882 * Checks that the given cache block is either unmapped or clean.
883 */
884static int block_clean_combined_dirty(struct dm_cache_metadata *cmd, dm_cblock_t b,
885 bool *result)
886{
887 int r;
888 __le64 value;
889 dm_oblock_t ob;
890 unsigned flags;
891
892 r = dm_array_get_value(&cmd->info, cmd->root, from_cblock(b), &value);
893 if (r)
894 return r;
895
896 unpack_value(value, &ob, &flags);
897 *result = !((flags & M_VALID) && (flags & M_DIRTY));
898
899 return 0;
900}
901
902static int blocks_are_clean_combined_dirty(struct dm_cache_metadata *cmd,
903 dm_cblock_t begin, dm_cblock_t end,
904 bool *result)
905{
906 int r;
907 *result = true;
908
909 while (begin != end) {
910 r = block_clean_combined_dirty(cmd, begin, result);
911 if (r) {
912 DMERR("block_clean_combined_dirty failed");
913 return r;
914 }
915
916 if (!*result) {
917 DMERR("cache block %llu is dirty",
918 (unsigned long long) from_cblock(begin));
919 return 0;
920 }
921
922 begin = to_cblock(from_cblock(begin) + 1);
923 }
924
925 return 0;
926}
927
928static int blocks_are_clean_separate_dirty(struct dm_cache_metadata *cmd,
929 dm_cblock_t begin, dm_cblock_t end,
930 bool *result)
931{
932 int r;
933 bool dirty_flag;
934 *result = true;
935
936 if (from_cblock(cmd->cache_blocks) == 0)
937 /* Nothing to do */
938 return 0;
939
940 r = dm_bitset_cursor_begin(&cmd->dirty_info, cmd->dirty_root,
941 from_cblock(cmd->cache_blocks), &cmd->dirty_cursor);
942 if (r) {
943 DMERR("%s: dm_bitset_cursor_begin for dirty failed", __func__);
944 return r;
945 }
946
947 r = dm_bitset_cursor_skip(&cmd->dirty_cursor, from_cblock(begin));
948 if (r) {
949 DMERR("%s: dm_bitset_cursor_skip for dirty failed", __func__);
950 dm_bitset_cursor_end(&cmd->dirty_cursor);
951 return r;
952 }
953
954 while (begin != end) {
955 /*
956 * We assume that unmapped blocks have their dirty bit
957 * cleared.
958 */
959 dirty_flag = dm_bitset_cursor_get_value(&cmd->dirty_cursor);
960 if (dirty_flag) {
961 DMERR("%s: cache block %llu is dirty", __func__,
962 (unsigned long long) from_cblock(begin));
963 dm_bitset_cursor_end(&cmd->dirty_cursor);
964 *result = false;
965 return 0;
966 }
967
968 begin = to_cblock(from_cblock(begin) + 1);
969 if (begin == end)
970 break;
971
972 r = dm_bitset_cursor_next(&cmd->dirty_cursor);
973 if (r) {
974 DMERR("%s: dm_bitset_cursor_next for dirty failed", __func__);
975 dm_bitset_cursor_end(&cmd->dirty_cursor);
976 return r;
977 }
978 }
979
980 dm_bitset_cursor_end(&cmd->dirty_cursor);
981
982 return 0;
983}
984
985static int blocks_are_unmapped_or_clean(struct dm_cache_metadata *cmd,
986 dm_cblock_t begin, dm_cblock_t end,
987 bool *result)
988{
989 if (separate_dirty_bits(cmd))
990 return blocks_are_clean_separate_dirty(cmd, begin, end, result);
991 else
992 return blocks_are_clean_combined_dirty(cmd, begin, end, result);
993}
994
995static bool cmd_write_lock(struct dm_cache_metadata *cmd)
996{
997 down_write(&cmd->root_lock);
998 if (cmd->fail_io || dm_bm_is_read_only(cmd->bm)) {
999 up_write(&cmd->root_lock);
1000 return false;
1001 }
1002 return true;
1003}
1004
1005#define WRITE_LOCK(cmd) \
1006 do { \
1007 if (!cmd_write_lock((cmd))) \
1008 return -EINVAL; \
1009 } while(0)
1010
1011#define WRITE_LOCK_VOID(cmd) \
1012 do { \
1013 if (!cmd_write_lock((cmd))) \
1014 return; \
1015 } while(0)
1016
1017#define WRITE_UNLOCK(cmd) \
1018 up_write(&(cmd)->root_lock)
1019
1020static bool cmd_read_lock(struct dm_cache_metadata *cmd)
1021{
1022 down_read(&cmd->root_lock);
1023 if (cmd->fail_io) {
1024 up_read(&cmd->root_lock);
1025 return false;
1026 }
1027 return true;
1028}
1029
1030#define READ_LOCK(cmd) \
1031 do { \
1032 if (!cmd_read_lock((cmd))) \
1033 return -EINVAL; \
1034 } while(0)
1035
1036#define READ_LOCK_VOID(cmd) \
1037 do { \
1038 if (!cmd_read_lock((cmd))) \
1039 return; \
1040 } while(0)
1041
1042#define READ_UNLOCK(cmd) \
1043 up_read(&(cmd)->root_lock)
1044
1045int dm_cache_resize(struct dm_cache_metadata *cmd, dm_cblock_t new_cache_size)
1046{
1047 int r;
1048 bool clean;
1049 __le64 null_mapping = pack_value(0, 0);
1050
1051 WRITE_LOCK(cmd);
1052 __dm_bless_for_disk(&null_mapping);
1053
1054 if (from_cblock(new_cache_size) < from_cblock(cmd->cache_blocks)) {
1055 r = blocks_are_unmapped_or_clean(cmd, new_cache_size, cmd->cache_blocks, &clean);
1056 if (r) {
1057 __dm_unbless_for_disk(&null_mapping);
1058 goto out;
1059 }
1060
1061 if (!clean) {
1062 DMERR("unable to shrink cache due to dirty blocks");
1063 r = -EINVAL;
1064 __dm_unbless_for_disk(&null_mapping);
1065 goto out;
1066 }
1067 }
1068
1069 r = dm_array_resize(&cmd->info, cmd->root, from_cblock(cmd->cache_blocks),
1070 from_cblock(new_cache_size),
1071 &null_mapping, &cmd->root);
1072 if (r)
1073 goto out;
1074
1075 if (separate_dirty_bits(cmd)) {
1076 r = dm_bitset_resize(&cmd->dirty_info, cmd->dirty_root,
1077 from_cblock(cmd->cache_blocks), from_cblock(new_cache_size),
1078 false, &cmd->dirty_root);
1079 if (r)
1080 goto out;
1081 }
1082
1083 cmd->cache_blocks = new_cache_size;
1084 cmd->changed = true;
1085
1086out:
1087 WRITE_UNLOCK(cmd);
1088
1089 return r;
1090}
1091
1092int dm_cache_discard_bitset_resize(struct dm_cache_metadata *cmd,
1093 sector_t discard_block_size,
1094 dm_dblock_t new_nr_entries)
1095{
1096 int r;
1097
1098 WRITE_LOCK(cmd);
1099 r = dm_bitset_resize(&cmd->discard_info,
1100 cmd->discard_root,
1101 from_dblock(cmd->discard_nr_blocks),
1102 from_dblock(new_nr_entries),
1103 false, &cmd->discard_root);
1104 if (!r) {
1105 cmd->discard_block_size = discard_block_size;
1106 cmd->discard_nr_blocks = new_nr_entries;
1107 }
1108
1109 cmd->changed = true;
1110 WRITE_UNLOCK(cmd);
1111
1112 return r;
1113}
1114
1115static int __set_discard(struct dm_cache_metadata *cmd, dm_dblock_t b)
1116{
1117 return dm_bitset_set_bit(&cmd->discard_info, cmd->discard_root,
1118 from_dblock(b), &cmd->discard_root);
1119}
1120
1121static int __clear_discard(struct dm_cache_metadata *cmd, dm_dblock_t b)
1122{
1123 return dm_bitset_clear_bit(&cmd->discard_info, cmd->discard_root,
1124 from_dblock(b), &cmd->discard_root);
1125}
1126
1127static int __discard(struct dm_cache_metadata *cmd,
1128 dm_dblock_t dblock, bool discard)
1129{
1130 int r;
1131
1132 r = (discard ? __set_discard : __clear_discard)(cmd, dblock);
1133 if (r)
1134 return r;
1135
1136 cmd->changed = true;
1137 return 0;
1138}
1139
1140int dm_cache_set_discard(struct dm_cache_metadata *cmd,
1141 dm_dblock_t dblock, bool discard)
1142{
1143 int r;
1144
1145 WRITE_LOCK(cmd);
1146 r = __discard(cmd, dblock, discard);
1147 WRITE_UNLOCK(cmd);
1148
1149 return r;
1150}
1151
1152static int __load_discards(struct dm_cache_metadata *cmd,
1153 load_discard_fn fn, void *context)
1154{
1155 int r = 0;
1156 uint32_t b;
1157 struct dm_bitset_cursor c;
1158
1159 if (from_dblock(cmd->discard_nr_blocks) == 0)
1160 /* nothing to do */
1161 return 0;
1162
1163 if (cmd->clean_when_opened) {
1164 r = dm_bitset_flush(&cmd->discard_info, cmd->discard_root, &cmd->discard_root);
1165 if (r)
1166 return r;
1167
1168 r = dm_bitset_cursor_begin(&cmd->discard_info, cmd->discard_root,
1169 from_dblock(cmd->discard_nr_blocks), &c);
1170 if (r)
1171 return r;
1172
1173 for (b = 0; ; b++) {
1174 r = fn(context, cmd->discard_block_size, to_dblock(b),
1175 dm_bitset_cursor_get_value(&c));
1176 if (r)
1177 break;
1178
1179 if (b >= (from_dblock(cmd->discard_nr_blocks) - 1))
1180 break;
1181
1182 r = dm_bitset_cursor_next(&c);
1183 if (r)
1184 break;
1185 }
1186
1187 dm_bitset_cursor_end(&c);
1188
1189 } else {
1190 for (b = 0; b < from_dblock(cmd->discard_nr_blocks); b++) {
1191 r = fn(context, cmd->discard_block_size, to_dblock(b), false);
1192 if (r)
1193 return r;
1194 }
1195 }
1196
1197 return r;
1198}
1199
1200int dm_cache_load_discards(struct dm_cache_metadata *cmd,
1201 load_discard_fn fn, void *context)
1202{
1203 int r;
1204
1205 READ_LOCK(cmd);
1206 r = __load_discards(cmd, fn, context);
1207 READ_UNLOCK(cmd);
1208
1209 return r;
1210}
1211
1212int dm_cache_size(struct dm_cache_metadata *cmd, dm_cblock_t *result)
1213{
1214 READ_LOCK(cmd);
1215 *result = cmd->cache_blocks;
1216 READ_UNLOCK(cmd);
1217
1218 return 0;
1219}
1220
1221static int __remove(struct dm_cache_metadata *cmd, dm_cblock_t cblock)
1222{
1223 int r;
1224 __le64 value = pack_value(0, 0);
1225
1226 __dm_bless_for_disk(&value);
1227 r = dm_array_set_value(&cmd->info, cmd->root, from_cblock(cblock),
1228 &value, &cmd->root);
1229 if (r)
1230 return r;
1231
1232 cmd->changed = true;
1233 return 0;
1234}
1235
1236int dm_cache_remove_mapping(struct dm_cache_metadata *cmd, dm_cblock_t cblock)
1237{
1238 int r;
1239
1240 WRITE_LOCK(cmd);
1241 r = __remove(cmd, cblock);
1242 WRITE_UNLOCK(cmd);
1243
1244 return r;
1245}
1246
1247static int __insert(struct dm_cache_metadata *cmd,
1248 dm_cblock_t cblock, dm_oblock_t oblock)
1249{
1250 int r;
1251 __le64 value = pack_value(oblock, M_VALID);
1252 __dm_bless_for_disk(&value);
1253
1254 r = dm_array_set_value(&cmd->info, cmd->root, from_cblock(cblock),
1255 &value, &cmd->root);
1256 if (r)
1257 return r;
1258
1259 cmd->changed = true;
1260 return 0;
1261}
1262
1263int dm_cache_insert_mapping(struct dm_cache_metadata *cmd,
1264 dm_cblock_t cblock, dm_oblock_t oblock)
1265{
1266 int r;
1267
1268 WRITE_LOCK(cmd);
1269 r = __insert(cmd, cblock, oblock);
1270 WRITE_UNLOCK(cmd);
1271
1272 return r;
1273}
1274
1275struct thunk {
1276 load_mapping_fn fn;
1277 void *context;
1278
1279 struct dm_cache_metadata *cmd;
1280 bool respect_dirty_flags;
1281 bool hints_valid;
1282};
1283
1284static bool policy_unchanged(struct dm_cache_metadata *cmd,
1285 struct dm_cache_policy *policy)
1286{
1287 const char *policy_name = dm_cache_policy_get_name(policy);
1288 const unsigned *policy_version = dm_cache_policy_get_version(policy);
1289 size_t policy_hint_size = dm_cache_policy_get_hint_size(policy);
1290
1291 /*
1292 * Ensure policy names match.
1293 */
1294 if (strncmp(cmd->policy_name, policy_name, sizeof(cmd->policy_name)))
1295 return false;
1296
1297 /*
1298 * Ensure policy major versions match.
1299 */
1300 if (cmd->policy_version[0] != policy_version[0])
1301 return false;
1302
1303 /*
1304 * Ensure policy hint sizes match.
1305 */
1306 if (cmd->policy_hint_size != policy_hint_size)
1307 return false;
1308
1309 return true;
1310}
1311
1312static bool hints_array_initialized(struct dm_cache_metadata *cmd)
1313{
1314 return cmd->hint_root && cmd->policy_hint_size;
1315}
1316
1317static bool hints_array_available(struct dm_cache_metadata *cmd,
1318 struct dm_cache_policy *policy)
1319{
1320 return cmd->clean_when_opened && policy_unchanged(cmd, policy) &&
1321 hints_array_initialized(cmd);
1322}
1323
1324static int __load_mapping_v1(struct dm_cache_metadata *cmd,
1325 uint64_t cb, bool hints_valid,
1326 struct dm_array_cursor *mapping_cursor,
1327 struct dm_array_cursor *hint_cursor,
1328 load_mapping_fn fn, void *context)
1329{
1330 int r = 0;
1331
1332 __le64 mapping;
1333 __le32 hint = 0;
1334
1335 __le64 *mapping_value_le;
1336 __le32 *hint_value_le;
1337
1338 dm_oblock_t oblock;
1339 unsigned flags;
1340 bool dirty = true;
1341
1342 dm_array_cursor_get_value(mapping_cursor, (void **) &mapping_value_le);
1343 memcpy(&mapping, mapping_value_le, sizeof(mapping));
1344 unpack_value(mapping, &oblock, &flags);
1345
1346 if (flags & M_VALID) {
1347 if (hints_valid) {
1348 dm_array_cursor_get_value(hint_cursor, (void **) &hint_value_le);
1349 memcpy(&hint, hint_value_le, sizeof(hint));
1350 }
1351 if (cmd->clean_when_opened)
1352 dirty = flags & M_DIRTY;
1353
1354 r = fn(context, oblock, to_cblock(cb), dirty,
1355 le32_to_cpu(hint), hints_valid);
1356 if (r) {
1357 DMERR("policy couldn't load cache block %llu",
1358 (unsigned long long) from_cblock(to_cblock(cb)));
1359 }
1360 }
1361
1362 return r;
1363}
1364
1365static int __load_mapping_v2(struct dm_cache_metadata *cmd,
1366 uint64_t cb, bool hints_valid,
1367 struct dm_array_cursor *mapping_cursor,
1368 struct dm_array_cursor *hint_cursor,
1369 struct dm_bitset_cursor *dirty_cursor,
1370 load_mapping_fn fn, void *context)
1371{
1372 int r = 0;
1373
1374 __le64 mapping;
1375 __le32 hint = 0;
1376
1377 __le64 *mapping_value_le;
1378 __le32 *hint_value_le;
1379
1380 dm_oblock_t oblock;
1381 unsigned flags;
1382 bool dirty = true;
1383
1384 dm_array_cursor_get_value(mapping_cursor, (void **) &mapping_value_le);
1385 memcpy(&mapping, mapping_value_le, sizeof(mapping));
1386 unpack_value(mapping, &oblock, &flags);
1387
1388 if (flags & M_VALID) {
1389 if (hints_valid) {
1390 dm_array_cursor_get_value(hint_cursor, (void **) &hint_value_le);
1391 memcpy(&hint, hint_value_le, sizeof(hint));
1392 }
1393 if (cmd->clean_when_opened)
1394 dirty = dm_bitset_cursor_get_value(dirty_cursor);
1395
1396 r = fn(context, oblock, to_cblock(cb), dirty,
1397 le32_to_cpu(hint), hints_valid);
1398 if (r) {
1399 DMERR("policy couldn't load cache block %llu",
1400 (unsigned long long) from_cblock(to_cblock(cb)));
1401 }
1402 }
1403
1404 return r;
1405}
1406
1407static int __load_mappings(struct dm_cache_metadata *cmd,
1408 struct dm_cache_policy *policy,
1409 load_mapping_fn fn, void *context)
1410{
1411 int r;
1412 uint64_t cb;
1413
1414 bool hints_valid = hints_array_available(cmd, policy);
1415
1416 if (from_cblock(cmd->cache_blocks) == 0)
1417 /* Nothing to do */
1418 return 0;
1419
1420 r = dm_array_cursor_begin(&cmd->info, cmd->root, &cmd->mapping_cursor);
1421 if (r)
1422 return r;
1423
1424 if (hints_valid) {
1425 r = dm_array_cursor_begin(&cmd->hint_info, cmd->hint_root, &cmd->hint_cursor);
1426 if (r) {
1427 dm_array_cursor_end(&cmd->mapping_cursor);
1428 return r;
1429 }
1430 }
1431
1432 if (separate_dirty_bits(cmd)) {
1433 r = dm_bitset_cursor_begin(&cmd->dirty_info, cmd->dirty_root,
1434 from_cblock(cmd->cache_blocks),
1435 &cmd->dirty_cursor);
1436 if (r) {
1437 dm_array_cursor_end(&cmd->hint_cursor);
1438 dm_array_cursor_end(&cmd->mapping_cursor);
1439 return r;
1440 }
1441 }
1442
1443 for (cb = 0; ; cb++) {
1444 if (separate_dirty_bits(cmd))
1445 r = __load_mapping_v2(cmd, cb, hints_valid,
1446 &cmd->mapping_cursor,
1447 &cmd->hint_cursor,
1448 &cmd->dirty_cursor,
1449 fn, context);
1450 else
1451 r = __load_mapping_v1(cmd, cb, hints_valid,
1452 &cmd->mapping_cursor, &cmd->hint_cursor,
1453 fn, context);
1454 if (r)
1455 goto out;
1456
1457 /*
1458 * We need to break out before we move the cursors.
1459 */
1460 if (cb >= (from_cblock(cmd->cache_blocks) - 1))
1461 break;
1462
1463 r = dm_array_cursor_next(&cmd->mapping_cursor);
1464 if (r) {
1465 DMERR("dm_array_cursor_next for mapping failed");
1466 goto out;
1467 }
1468
1469 if (hints_valid) {
1470 r = dm_array_cursor_next(&cmd->hint_cursor);
1471 if (r) {
1472 dm_array_cursor_end(&cmd->hint_cursor);
1473 hints_valid = false;
1474 }
1475 }
1476
1477 if (separate_dirty_bits(cmd)) {
1478 r = dm_bitset_cursor_next(&cmd->dirty_cursor);
1479 if (r) {
1480 DMERR("dm_bitset_cursor_next for dirty failed");
1481 goto out;
1482 }
1483 }
1484 }
1485out:
1486 dm_array_cursor_end(&cmd->mapping_cursor);
1487 if (hints_valid)
1488 dm_array_cursor_end(&cmd->hint_cursor);
1489
1490 if (separate_dirty_bits(cmd))
1491 dm_bitset_cursor_end(&cmd->dirty_cursor);
1492
1493 return r;
1494}
1495
1496int dm_cache_load_mappings(struct dm_cache_metadata *cmd,
1497 struct dm_cache_policy *policy,
1498 load_mapping_fn fn, void *context)
1499{
1500 int r;
1501
1502 READ_LOCK(cmd);
1503 r = __load_mappings(cmd, policy, fn, context);
1504 READ_UNLOCK(cmd);
1505
1506 return r;
1507}
1508
1509static int __dump_mapping(void *context, uint64_t cblock, void *leaf)
1510{
1511 int r = 0;
1512 __le64 value;
1513 dm_oblock_t oblock;
1514 unsigned flags;
1515
1516 memcpy(&value, leaf, sizeof(value));
1517 unpack_value(value, &oblock, &flags);
1518
1519 return r;
1520}
1521
1522static int __dump_mappings(struct dm_cache_metadata *cmd)
1523{
1524 return dm_array_walk(&cmd->info, cmd->root, __dump_mapping, NULL);
1525}
1526
1527void dm_cache_dump(struct dm_cache_metadata *cmd)
1528{
1529 READ_LOCK_VOID(cmd);
1530 __dump_mappings(cmd);
1531 READ_UNLOCK(cmd);
1532}
1533
1534int dm_cache_changed_this_transaction(struct dm_cache_metadata *cmd)
1535{
1536 int r;
1537
1538 READ_LOCK(cmd);
1539 r = cmd->changed;
1540 READ_UNLOCK(cmd);
1541
1542 return r;
1543}
1544
1545static int __dirty(struct dm_cache_metadata *cmd, dm_cblock_t cblock, bool dirty)
1546{
1547 int r;
1548 unsigned flags;
1549 dm_oblock_t oblock;
1550 __le64 value;
1551
1552 r = dm_array_get_value(&cmd->info, cmd->root, from_cblock(cblock), &value);
1553 if (r)
1554 return r;
1555
1556 unpack_value(value, &oblock, &flags);
1557
1558 if (((flags & M_DIRTY) && dirty) || (!(flags & M_DIRTY) && !dirty))
1559 /* nothing to be done */
1560 return 0;
1561
1562 value = pack_value(oblock, (flags & ~M_DIRTY) | (dirty ? M_DIRTY : 0));
1563 __dm_bless_for_disk(&value);
1564
1565 r = dm_array_set_value(&cmd->info, cmd->root, from_cblock(cblock),
1566 &value, &cmd->root);
1567 if (r)
1568 return r;
1569
1570 cmd->changed = true;
1571 return 0;
1572
1573}
1574
1575static int __set_dirty_bits_v1(struct dm_cache_metadata *cmd, unsigned nr_bits, unsigned long *bits)
1576{
1577 int r;
1578 unsigned i;
1579 for (i = 0; i < nr_bits; i++) {
1580 r = __dirty(cmd, to_cblock(i), test_bit(i, bits));
1581 if (r)
1582 return r;
1583 }
1584
1585 return 0;
1586}
1587
1588static int is_dirty_callback(uint32_t index, bool *value, void *context)
1589{
1590 unsigned long *bits = context;
1591 *value = test_bit(index, bits);
1592 return 0;
1593}
1594
1595static int __set_dirty_bits_v2(struct dm_cache_metadata *cmd, unsigned nr_bits, unsigned long *bits)
1596{
1597 int r = 0;
1598
1599 /* nr_bits is really just a sanity check */
1600 if (nr_bits != from_cblock(cmd->cache_blocks)) {
1601 DMERR("dirty bitset is wrong size");
1602 return -EINVAL;
1603 }
1604
1605 r = dm_bitset_del(&cmd->dirty_info, cmd->dirty_root);
1606 if (r)
1607 return r;
1608
1609 cmd->changed = true;
1610 return dm_bitset_new(&cmd->dirty_info, &cmd->dirty_root, nr_bits, is_dirty_callback, bits);
1611}
1612
1613int dm_cache_set_dirty_bits(struct dm_cache_metadata *cmd,
1614 unsigned nr_bits,
1615 unsigned long *bits)
1616{
1617 int r;
1618
1619 WRITE_LOCK(cmd);
1620 if (separate_dirty_bits(cmd))
1621 r = __set_dirty_bits_v2(cmd, nr_bits, bits);
1622 else
1623 r = __set_dirty_bits_v1(cmd, nr_bits, bits);
1624 WRITE_UNLOCK(cmd);
1625
1626 return r;
1627}
1628
1629void dm_cache_metadata_get_stats(struct dm_cache_metadata *cmd,
1630 struct dm_cache_statistics *stats)
1631{
1632 READ_LOCK_VOID(cmd);
1633 *stats = cmd->stats;
1634 READ_UNLOCK(cmd);
1635}
1636
1637void dm_cache_metadata_set_stats(struct dm_cache_metadata *cmd,
1638 struct dm_cache_statistics *stats)
1639{
1640 WRITE_LOCK_VOID(cmd);
1641 cmd->stats = *stats;
1642 WRITE_UNLOCK(cmd);
1643}
1644
1645int dm_cache_commit(struct dm_cache_metadata *cmd, bool clean_shutdown)
1646{
1647 int r = -EINVAL;
1648 flags_mutator mutator = (clean_shutdown ? set_clean_shutdown :
1649 clear_clean_shutdown);
1650
1651 WRITE_LOCK(cmd);
1652 if (cmd->fail_io)
1653 goto out;
1654
1655 r = __commit_transaction(cmd, mutator);
1656 if (r)
1657 goto out;
1658
1659 r = __begin_transaction(cmd);
1660out:
1661 WRITE_UNLOCK(cmd);
1662 return r;
1663}
1664
1665int dm_cache_get_free_metadata_block_count(struct dm_cache_metadata *cmd,
1666 dm_block_t *result)
1667{
1668 int r = -EINVAL;
1669
1670 READ_LOCK(cmd);
1671 if (!cmd->fail_io)
1672 r = dm_sm_get_nr_free(cmd->metadata_sm, result);
1673 READ_UNLOCK(cmd);
1674
1675 return r;
1676}
1677
1678int dm_cache_get_metadata_dev_size(struct dm_cache_metadata *cmd,
1679 dm_block_t *result)
1680{
1681 int r = -EINVAL;
1682
1683 READ_LOCK(cmd);
1684 if (!cmd->fail_io)
1685 r = dm_sm_get_nr_blocks(cmd->metadata_sm, result);
1686 READ_UNLOCK(cmd);
1687
1688 return r;
1689}
1690
1691/*----------------------------------------------------------------*/
1692
1693static int get_hint(uint32_t index, void *value_le, void *context)
1694{
1695 uint32_t value;
1696 struct dm_cache_policy *policy = context;
1697
1698 value = policy_get_hint(policy, to_cblock(index));
1699 *((__le32 *) value_le) = cpu_to_le32(value);
1700
1701 return 0;
1702}
1703
1704/*
1705 * It's quicker to always delete the hint array, and recreate with
1706 * dm_array_new().
1707 */
1708static int write_hints(struct dm_cache_metadata *cmd, struct dm_cache_policy *policy)
1709{
1710 int r;
1711 size_t hint_size;
1712 const char *policy_name = dm_cache_policy_get_name(policy);
1713 const unsigned *policy_version = dm_cache_policy_get_version(policy);
1714
1715 if (!policy_name[0] ||
1716 (strlen(policy_name) > sizeof(cmd->policy_name) - 1))
1717 return -EINVAL;
1718
1719 strncpy(cmd->policy_name, policy_name, sizeof(cmd->policy_name));
1720 memcpy(cmd->policy_version, policy_version, sizeof(cmd->policy_version));
1721
1722 hint_size = dm_cache_policy_get_hint_size(policy);
1723 if (!hint_size)
1724 return 0; /* short-circuit hints initialization */
1725 cmd->policy_hint_size = hint_size;
1726
1727 if (cmd->hint_root) {
1728 r = dm_array_del(&cmd->hint_info, cmd->hint_root);
1729 if (r)
1730 return r;
1731 }
1732
1733 return dm_array_new(&cmd->hint_info, &cmd->hint_root,
1734 from_cblock(cmd->cache_blocks),
1735 get_hint, policy);
1736}
1737
1738int dm_cache_write_hints(struct dm_cache_metadata *cmd, struct dm_cache_policy *policy)
1739{
1740 int r;
1741
1742 WRITE_LOCK(cmd);
1743 r = write_hints(cmd, policy);
1744 WRITE_UNLOCK(cmd);
1745
1746 return r;
1747}
1748
1749int dm_cache_metadata_all_clean(struct dm_cache_metadata *cmd, bool *result)
1750{
1751 int r;
1752
1753 READ_LOCK(cmd);
1754 r = blocks_are_unmapped_or_clean(cmd, 0, cmd->cache_blocks, result);
1755 READ_UNLOCK(cmd);
1756
1757 return r;
1758}
1759
1760void dm_cache_metadata_set_read_only(struct dm_cache_metadata *cmd)
1761{
1762 WRITE_LOCK_VOID(cmd);
1763 dm_bm_set_read_only(cmd->bm);
1764 WRITE_UNLOCK(cmd);
1765}
1766
1767void dm_cache_metadata_set_read_write(struct dm_cache_metadata *cmd)
1768{
1769 WRITE_LOCK_VOID(cmd);
1770 dm_bm_set_read_write(cmd->bm);
1771 WRITE_UNLOCK(cmd);
1772}
1773
1774int dm_cache_metadata_set_needs_check(struct dm_cache_metadata *cmd)
1775{
1776 int r;
1777 struct dm_block *sblock;
1778 struct cache_disk_superblock *disk_super;
1779
1780 WRITE_LOCK(cmd);
1781 set_bit(NEEDS_CHECK, &cmd->flags);
1782
1783 r = superblock_lock(cmd, &sblock);
1784 if (r) {
1785 DMERR("couldn't read superblock");
1786 goto out;
1787 }
1788
1789 disk_super = dm_block_data(sblock);
1790 disk_super->flags = cpu_to_le32(cmd->flags);
1791
1792 dm_bm_unlock(sblock);
1793
1794out:
1795 WRITE_UNLOCK(cmd);
1796 return r;
1797}
1798
1799int dm_cache_metadata_needs_check(struct dm_cache_metadata *cmd, bool *result)
1800{
1801 READ_LOCK(cmd);
1802 *result = !!test_bit(NEEDS_CHECK, &cmd->flags);
1803 READ_UNLOCK(cmd);
1804
1805 return 0;
1806}
1807
1808int dm_cache_metadata_abort(struct dm_cache_metadata *cmd)
1809{
1810 int r;
1811
1812 WRITE_LOCK(cmd);
1813 __destroy_persistent_data_objects(cmd);
1814 r = __create_persistent_data_objects(cmd, false);
1815 if (r)
1816 cmd->fail_io = true;
1817 WRITE_UNLOCK(cmd);
1818
1819 return r;
1820}