dm-cache-metadata.c 30 KB

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  1. /*
  2. * Copyright (C) 2012 Red Hat, Inc.
  3. *
  4. * This file is released under the GPL.
  5. */
  6. #include "dm-cache-metadata.h"
  7. #include "persistent-data/dm-array.h"
  8. #include "persistent-data/dm-bitset.h"
  9. #include "persistent-data/dm-space-map.h"
  10. #include "persistent-data/dm-space-map-disk.h"
  11. #include "persistent-data/dm-transaction-manager.h"
  12. #include <linux/device-mapper.h>
  13. /*----------------------------------------------------------------*/
  14. #define DM_MSG_PREFIX "cache metadata"
  15. #define CACHE_SUPERBLOCK_MAGIC 06142003
  16. #define CACHE_SUPERBLOCK_LOCATION 0
  17. /*
  18. * defines a range of metadata versions that this module can handle.
  19. */
  20. #define MIN_CACHE_VERSION 1
  21. #define MAX_CACHE_VERSION 1
  22. #define CACHE_METADATA_CACHE_SIZE 64
  23. /*
  24. * 3 for btree insert +
  25. * 2 for btree lookup used within space map
  26. */
  27. #define CACHE_MAX_CONCURRENT_LOCKS 5
  28. #define SPACE_MAP_ROOT_SIZE 128
  29. enum superblock_flag_bits {
  30. /* for spotting crashes that would invalidate the dirty bitset */
  31. CLEAN_SHUTDOWN,
  32. };
  33. /*
  34. * Each mapping from cache block -> origin block carries a set of flags.
  35. */
  36. enum mapping_bits {
  37. /*
  38. * A valid mapping. Because we're using an array we clear this
  39. * flag for an non existant mapping.
  40. */
  41. M_VALID = 1,
  42. /*
  43. * The data on the cache is different from that on the origin.
  44. */
  45. M_DIRTY = 2
  46. };
  47. struct cache_disk_superblock {
  48. __le32 csum;
  49. __le32 flags;
  50. __le64 blocknr;
  51. __u8 uuid[16];
  52. __le64 magic;
  53. __le32 version;
  54. __u8 policy_name[CACHE_POLICY_NAME_SIZE];
  55. __le32 policy_hint_size;
  56. __u8 metadata_space_map_root[SPACE_MAP_ROOT_SIZE];
  57. __le64 mapping_root;
  58. __le64 hint_root;
  59. __le64 discard_root;
  60. __le64 discard_block_size;
  61. __le64 discard_nr_blocks;
  62. __le32 data_block_size;
  63. __le32 metadata_block_size;
  64. __le32 cache_blocks;
  65. __le32 compat_flags;
  66. __le32 compat_ro_flags;
  67. __le32 incompat_flags;
  68. __le32 read_hits;
  69. __le32 read_misses;
  70. __le32 write_hits;
  71. __le32 write_misses;
  72. __le32 policy_version[CACHE_POLICY_VERSION_SIZE];
  73. } __packed;
  74. struct dm_cache_metadata {
  75. struct block_device *bdev;
  76. struct dm_block_manager *bm;
  77. struct dm_space_map *metadata_sm;
  78. struct dm_transaction_manager *tm;
  79. struct dm_array_info info;
  80. struct dm_array_info hint_info;
  81. struct dm_disk_bitset discard_info;
  82. struct rw_semaphore root_lock;
  83. dm_block_t root;
  84. dm_block_t hint_root;
  85. dm_block_t discard_root;
  86. sector_t discard_block_size;
  87. dm_dblock_t discard_nr_blocks;
  88. sector_t data_block_size;
  89. dm_cblock_t cache_blocks;
  90. bool changed:1;
  91. bool clean_when_opened:1;
  92. char policy_name[CACHE_POLICY_NAME_SIZE];
  93. unsigned policy_version[CACHE_POLICY_VERSION_SIZE];
  94. size_t policy_hint_size;
  95. struct dm_cache_statistics stats;
  96. };
  97. /*-------------------------------------------------------------------
  98. * superblock validator
  99. *-----------------------------------------------------------------*/
  100. #define SUPERBLOCK_CSUM_XOR 9031977
  101. static void sb_prepare_for_write(struct dm_block_validator *v,
  102. struct dm_block *b,
  103. size_t sb_block_size)
  104. {
  105. struct cache_disk_superblock *disk_super = dm_block_data(b);
  106. disk_super->blocknr = cpu_to_le64(dm_block_location(b));
  107. disk_super->csum = cpu_to_le32(dm_bm_checksum(&disk_super->flags,
  108. sb_block_size - sizeof(__le32),
  109. SUPERBLOCK_CSUM_XOR));
  110. }
  111. static int check_metadata_version(struct cache_disk_superblock *disk_super)
  112. {
  113. uint32_t metadata_version = le32_to_cpu(disk_super->version);
  114. if (metadata_version < MIN_CACHE_VERSION || metadata_version > MAX_CACHE_VERSION) {
  115. DMERR("Cache metadata version %u found, but only versions between %u and %u supported.",
  116. metadata_version, MIN_CACHE_VERSION, MAX_CACHE_VERSION);
  117. return -EINVAL;
  118. }
  119. return 0;
  120. }
  121. static int sb_check(struct dm_block_validator *v,
  122. struct dm_block *b,
  123. size_t sb_block_size)
  124. {
  125. struct cache_disk_superblock *disk_super = dm_block_data(b);
  126. __le32 csum_le;
  127. if (dm_block_location(b) != le64_to_cpu(disk_super->blocknr)) {
  128. DMERR("sb_check failed: blocknr %llu: wanted %llu",
  129. le64_to_cpu(disk_super->blocknr),
  130. (unsigned long long)dm_block_location(b));
  131. return -ENOTBLK;
  132. }
  133. if (le64_to_cpu(disk_super->magic) != CACHE_SUPERBLOCK_MAGIC) {
  134. DMERR("sb_check failed: magic %llu: wanted %llu",
  135. le64_to_cpu(disk_super->magic),
  136. (unsigned long long)CACHE_SUPERBLOCK_MAGIC);
  137. return -EILSEQ;
  138. }
  139. csum_le = cpu_to_le32(dm_bm_checksum(&disk_super->flags,
  140. sb_block_size - sizeof(__le32),
  141. SUPERBLOCK_CSUM_XOR));
  142. if (csum_le != disk_super->csum) {
  143. DMERR("sb_check failed: csum %u: wanted %u",
  144. le32_to_cpu(csum_le), le32_to_cpu(disk_super->csum));
  145. return -EILSEQ;
  146. }
  147. return check_metadata_version(disk_super);
  148. }
  149. static struct dm_block_validator sb_validator = {
  150. .name = "superblock",
  151. .prepare_for_write = sb_prepare_for_write,
  152. .check = sb_check
  153. };
  154. /*----------------------------------------------------------------*/
  155. static int superblock_read_lock(struct dm_cache_metadata *cmd,
  156. struct dm_block **sblock)
  157. {
  158. return dm_bm_read_lock(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
  159. &sb_validator, sblock);
  160. }
  161. static int superblock_lock_zero(struct dm_cache_metadata *cmd,
  162. struct dm_block **sblock)
  163. {
  164. return dm_bm_write_lock_zero(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
  165. &sb_validator, sblock);
  166. }
  167. static int superblock_lock(struct dm_cache_metadata *cmd,
  168. struct dm_block **sblock)
  169. {
  170. return dm_bm_write_lock(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
  171. &sb_validator, sblock);
  172. }
  173. /*----------------------------------------------------------------*/
  174. static int __superblock_all_zeroes(struct dm_block_manager *bm, bool *result)
  175. {
  176. int r;
  177. unsigned i;
  178. struct dm_block *b;
  179. __le64 *data_le, zero = cpu_to_le64(0);
  180. unsigned sb_block_size = dm_bm_block_size(bm) / sizeof(__le64);
  181. /*
  182. * We can't use a validator here - it may be all zeroes.
  183. */
  184. r = dm_bm_read_lock(bm, CACHE_SUPERBLOCK_LOCATION, NULL, &b);
  185. if (r)
  186. return r;
  187. data_le = dm_block_data(b);
  188. *result = true;
  189. for (i = 0; i < sb_block_size; i++) {
  190. if (data_le[i] != zero) {
  191. *result = false;
  192. break;
  193. }
  194. }
  195. return dm_bm_unlock(b);
  196. }
  197. static void __setup_mapping_info(struct dm_cache_metadata *cmd)
  198. {
  199. struct dm_btree_value_type vt;
  200. vt.context = NULL;
  201. vt.size = sizeof(__le64);
  202. vt.inc = NULL;
  203. vt.dec = NULL;
  204. vt.equal = NULL;
  205. dm_array_info_init(&cmd->info, cmd->tm, &vt);
  206. if (cmd->policy_hint_size) {
  207. vt.size = sizeof(__le32);
  208. dm_array_info_init(&cmd->hint_info, cmd->tm, &vt);
  209. }
  210. }
  211. static int __write_initial_superblock(struct dm_cache_metadata *cmd)
  212. {
  213. int r;
  214. struct dm_block *sblock;
  215. size_t metadata_len;
  216. struct cache_disk_superblock *disk_super;
  217. sector_t bdev_size = i_size_read(cmd->bdev->bd_inode) >> SECTOR_SHIFT;
  218. /* FIXME: see if we can lose the max sectors limit */
  219. if (bdev_size > DM_CACHE_METADATA_MAX_SECTORS)
  220. bdev_size = DM_CACHE_METADATA_MAX_SECTORS;
  221. r = dm_sm_root_size(cmd->metadata_sm, &metadata_len);
  222. if (r < 0)
  223. return r;
  224. r = dm_tm_pre_commit(cmd->tm);
  225. if (r < 0)
  226. return r;
  227. r = superblock_lock_zero(cmd, &sblock);
  228. if (r)
  229. return r;
  230. disk_super = dm_block_data(sblock);
  231. disk_super->flags = 0;
  232. memset(disk_super->uuid, 0, sizeof(disk_super->uuid));
  233. disk_super->magic = cpu_to_le64(CACHE_SUPERBLOCK_MAGIC);
  234. disk_super->version = cpu_to_le32(MAX_CACHE_VERSION);
  235. memset(disk_super->policy_name, 0, sizeof(disk_super->policy_name));
  236. memset(disk_super->policy_version, 0, sizeof(disk_super->policy_version));
  237. disk_super->policy_hint_size = 0;
  238. r = dm_sm_copy_root(cmd->metadata_sm, &disk_super->metadata_space_map_root,
  239. metadata_len);
  240. if (r < 0)
  241. goto bad_locked;
  242. disk_super->mapping_root = cpu_to_le64(cmd->root);
  243. disk_super->hint_root = cpu_to_le64(cmd->hint_root);
  244. disk_super->discard_root = cpu_to_le64(cmd->discard_root);
  245. disk_super->discard_block_size = cpu_to_le64(cmd->discard_block_size);
  246. disk_super->discard_nr_blocks = cpu_to_le64(from_dblock(cmd->discard_nr_blocks));
  247. disk_super->metadata_block_size = cpu_to_le32(DM_CACHE_METADATA_BLOCK_SIZE >> SECTOR_SHIFT);
  248. disk_super->data_block_size = cpu_to_le32(cmd->data_block_size);
  249. disk_super->cache_blocks = cpu_to_le32(0);
  250. disk_super->read_hits = cpu_to_le32(0);
  251. disk_super->read_misses = cpu_to_le32(0);
  252. disk_super->write_hits = cpu_to_le32(0);
  253. disk_super->write_misses = cpu_to_le32(0);
  254. return dm_tm_commit(cmd->tm, sblock);
  255. bad_locked:
  256. dm_bm_unlock(sblock);
  257. return r;
  258. }
  259. static int __format_metadata(struct dm_cache_metadata *cmd)
  260. {
  261. int r;
  262. r = dm_tm_create_with_sm(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
  263. &cmd->tm, &cmd->metadata_sm);
  264. if (r < 0) {
  265. DMERR("tm_create_with_sm failed");
  266. return r;
  267. }
  268. __setup_mapping_info(cmd);
  269. r = dm_array_empty(&cmd->info, &cmd->root);
  270. if (r < 0)
  271. goto bad;
  272. dm_disk_bitset_init(cmd->tm, &cmd->discard_info);
  273. r = dm_bitset_empty(&cmd->discard_info, &cmd->discard_root);
  274. if (r < 0)
  275. goto bad;
  276. cmd->discard_block_size = 0;
  277. cmd->discard_nr_blocks = 0;
  278. r = __write_initial_superblock(cmd);
  279. if (r)
  280. goto bad;
  281. cmd->clean_when_opened = true;
  282. return 0;
  283. bad:
  284. dm_tm_destroy(cmd->tm);
  285. dm_sm_destroy(cmd->metadata_sm);
  286. return r;
  287. }
  288. static int __check_incompat_features(struct cache_disk_superblock *disk_super,
  289. struct dm_cache_metadata *cmd)
  290. {
  291. uint32_t features;
  292. features = le32_to_cpu(disk_super->incompat_flags) & ~DM_CACHE_FEATURE_INCOMPAT_SUPP;
  293. if (features) {
  294. DMERR("could not access metadata due to unsupported optional features (%lx).",
  295. (unsigned long)features);
  296. return -EINVAL;
  297. }
  298. /*
  299. * Check for read-only metadata to skip the following RDWR checks.
  300. */
  301. if (get_disk_ro(cmd->bdev->bd_disk))
  302. return 0;
  303. features = le32_to_cpu(disk_super->compat_ro_flags) & ~DM_CACHE_FEATURE_COMPAT_RO_SUPP;
  304. if (features) {
  305. DMERR("could not access metadata RDWR due to unsupported optional features (%lx).",
  306. (unsigned long)features);
  307. return -EINVAL;
  308. }
  309. return 0;
  310. }
  311. static int __open_metadata(struct dm_cache_metadata *cmd)
  312. {
  313. int r;
  314. struct dm_block *sblock;
  315. struct cache_disk_superblock *disk_super;
  316. unsigned long sb_flags;
  317. r = superblock_read_lock(cmd, &sblock);
  318. if (r < 0) {
  319. DMERR("couldn't read lock superblock");
  320. return r;
  321. }
  322. disk_super = dm_block_data(sblock);
  323. r = __check_incompat_features(disk_super, cmd);
  324. if (r < 0)
  325. goto bad;
  326. r = dm_tm_open_with_sm(cmd->bm, CACHE_SUPERBLOCK_LOCATION,
  327. disk_super->metadata_space_map_root,
  328. sizeof(disk_super->metadata_space_map_root),
  329. &cmd->tm, &cmd->metadata_sm);
  330. if (r < 0) {
  331. DMERR("tm_open_with_sm failed");
  332. goto bad;
  333. }
  334. __setup_mapping_info(cmd);
  335. dm_disk_bitset_init(cmd->tm, &cmd->discard_info);
  336. sb_flags = le32_to_cpu(disk_super->flags);
  337. cmd->clean_when_opened = test_bit(CLEAN_SHUTDOWN, &sb_flags);
  338. return dm_bm_unlock(sblock);
  339. bad:
  340. dm_bm_unlock(sblock);
  341. return r;
  342. }
  343. static int __open_or_format_metadata(struct dm_cache_metadata *cmd,
  344. bool format_device)
  345. {
  346. int r;
  347. bool unformatted = false;
  348. r = __superblock_all_zeroes(cmd->bm, &unformatted);
  349. if (r)
  350. return r;
  351. if (unformatted)
  352. return format_device ? __format_metadata(cmd) : -EPERM;
  353. return __open_metadata(cmd);
  354. }
  355. static int __create_persistent_data_objects(struct dm_cache_metadata *cmd,
  356. bool may_format_device)
  357. {
  358. int r;
  359. cmd->bm = dm_block_manager_create(cmd->bdev, DM_CACHE_METADATA_BLOCK_SIZE,
  360. CACHE_METADATA_CACHE_SIZE,
  361. CACHE_MAX_CONCURRENT_LOCKS);
  362. if (IS_ERR(cmd->bm)) {
  363. DMERR("could not create block manager");
  364. return PTR_ERR(cmd->bm);
  365. }
  366. r = __open_or_format_metadata(cmd, may_format_device);
  367. if (r)
  368. dm_block_manager_destroy(cmd->bm);
  369. return r;
  370. }
  371. static void __destroy_persistent_data_objects(struct dm_cache_metadata *cmd)
  372. {
  373. dm_sm_destroy(cmd->metadata_sm);
  374. dm_tm_destroy(cmd->tm);
  375. dm_block_manager_destroy(cmd->bm);
  376. }
  377. typedef unsigned long (*flags_mutator)(unsigned long);
  378. static void update_flags(struct cache_disk_superblock *disk_super,
  379. flags_mutator mutator)
  380. {
  381. uint32_t sb_flags = mutator(le32_to_cpu(disk_super->flags));
  382. disk_super->flags = cpu_to_le32(sb_flags);
  383. }
  384. static unsigned long set_clean_shutdown(unsigned long flags)
  385. {
  386. set_bit(CLEAN_SHUTDOWN, &flags);
  387. return flags;
  388. }
  389. static unsigned long clear_clean_shutdown(unsigned long flags)
  390. {
  391. clear_bit(CLEAN_SHUTDOWN, &flags);
  392. return flags;
  393. }
  394. static void read_superblock_fields(struct dm_cache_metadata *cmd,
  395. struct cache_disk_superblock *disk_super)
  396. {
  397. cmd->root = le64_to_cpu(disk_super->mapping_root);
  398. cmd->hint_root = le64_to_cpu(disk_super->hint_root);
  399. cmd->discard_root = le64_to_cpu(disk_super->discard_root);
  400. cmd->discard_block_size = le64_to_cpu(disk_super->discard_block_size);
  401. cmd->discard_nr_blocks = to_dblock(le64_to_cpu(disk_super->discard_nr_blocks));
  402. cmd->data_block_size = le32_to_cpu(disk_super->data_block_size);
  403. cmd->cache_blocks = to_cblock(le32_to_cpu(disk_super->cache_blocks));
  404. strncpy(cmd->policy_name, disk_super->policy_name, sizeof(cmd->policy_name));
  405. cmd->policy_version[0] = le32_to_cpu(disk_super->policy_version[0]);
  406. cmd->policy_version[1] = le32_to_cpu(disk_super->policy_version[1]);
  407. cmd->policy_version[2] = le32_to_cpu(disk_super->policy_version[2]);
  408. cmd->policy_hint_size = le32_to_cpu(disk_super->policy_hint_size);
  409. cmd->stats.read_hits = le32_to_cpu(disk_super->read_hits);
  410. cmd->stats.read_misses = le32_to_cpu(disk_super->read_misses);
  411. cmd->stats.write_hits = le32_to_cpu(disk_super->write_hits);
  412. cmd->stats.write_misses = le32_to_cpu(disk_super->write_misses);
  413. cmd->changed = false;
  414. }
  415. /*
  416. * The mutator updates the superblock flags.
  417. */
  418. static int __begin_transaction_flags(struct dm_cache_metadata *cmd,
  419. flags_mutator mutator)
  420. {
  421. int r;
  422. struct cache_disk_superblock *disk_super;
  423. struct dm_block *sblock;
  424. r = superblock_lock(cmd, &sblock);
  425. if (r)
  426. return r;
  427. disk_super = dm_block_data(sblock);
  428. update_flags(disk_super, mutator);
  429. read_superblock_fields(cmd, disk_super);
  430. return dm_bm_flush_and_unlock(cmd->bm, sblock);
  431. }
  432. static int __begin_transaction(struct dm_cache_metadata *cmd)
  433. {
  434. int r;
  435. struct cache_disk_superblock *disk_super;
  436. struct dm_block *sblock;
  437. /*
  438. * We re-read the superblock every time. Shouldn't need to do this
  439. * really.
  440. */
  441. r = superblock_read_lock(cmd, &sblock);
  442. if (r)
  443. return r;
  444. disk_super = dm_block_data(sblock);
  445. read_superblock_fields(cmd, disk_super);
  446. dm_bm_unlock(sblock);
  447. return 0;
  448. }
  449. static int __commit_transaction(struct dm_cache_metadata *cmd,
  450. flags_mutator mutator)
  451. {
  452. int r;
  453. size_t metadata_len;
  454. struct cache_disk_superblock *disk_super;
  455. struct dm_block *sblock;
  456. /*
  457. * We need to know if the cache_disk_superblock exceeds a 512-byte sector.
  458. */
  459. BUILD_BUG_ON(sizeof(struct cache_disk_superblock) > 512);
  460. r = dm_bitset_flush(&cmd->discard_info, cmd->discard_root,
  461. &cmd->discard_root);
  462. if (r)
  463. return r;
  464. r = dm_tm_pre_commit(cmd->tm);
  465. if (r < 0)
  466. return r;
  467. r = dm_sm_root_size(cmd->metadata_sm, &metadata_len);
  468. if (r < 0)
  469. return r;
  470. r = superblock_lock(cmd, &sblock);
  471. if (r)
  472. return r;
  473. disk_super = dm_block_data(sblock);
  474. if (mutator)
  475. update_flags(disk_super, mutator);
  476. disk_super->mapping_root = cpu_to_le64(cmd->root);
  477. disk_super->hint_root = cpu_to_le64(cmd->hint_root);
  478. disk_super->discard_root = cpu_to_le64(cmd->discard_root);
  479. disk_super->discard_block_size = cpu_to_le64(cmd->discard_block_size);
  480. disk_super->discard_nr_blocks = cpu_to_le64(from_dblock(cmd->discard_nr_blocks));
  481. disk_super->cache_blocks = cpu_to_le32(from_cblock(cmd->cache_blocks));
  482. strncpy(disk_super->policy_name, cmd->policy_name, sizeof(disk_super->policy_name));
  483. disk_super->policy_version[0] = cpu_to_le32(cmd->policy_version[0]);
  484. disk_super->policy_version[1] = cpu_to_le32(cmd->policy_version[1]);
  485. disk_super->policy_version[2] = cpu_to_le32(cmd->policy_version[2]);
  486. disk_super->read_hits = cpu_to_le32(cmd->stats.read_hits);
  487. disk_super->read_misses = cpu_to_le32(cmd->stats.read_misses);
  488. disk_super->write_hits = cpu_to_le32(cmd->stats.write_hits);
  489. disk_super->write_misses = cpu_to_le32(cmd->stats.write_misses);
  490. r = dm_sm_copy_root(cmd->metadata_sm, &disk_super->metadata_space_map_root,
  491. metadata_len);
  492. if (r < 0) {
  493. dm_bm_unlock(sblock);
  494. return r;
  495. }
  496. return dm_tm_commit(cmd->tm, sblock);
  497. }
  498. /*----------------------------------------------------------------*/
  499. /*
  500. * The mappings are held in a dm-array that has 64-bit values stored in
  501. * little-endian format. The index is the cblock, the high 48bits of the
  502. * value are the oblock and the low 16 bit the flags.
  503. */
  504. #define FLAGS_MASK ((1 << 16) - 1)
  505. static __le64 pack_value(dm_oblock_t block, unsigned flags)
  506. {
  507. uint64_t value = from_oblock(block);
  508. value <<= 16;
  509. value = value | (flags & FLAGS_MASK);
  510. return cpu_to_le64(value);
  511. }
  512. static void unpack_value(__le64 value_le, dm_oblock_t *block, unsigned *flags)
  513. {
  514. uint64_t value = le64_to_cpu(value_le);
  515. uint64_t b = value >> 16;
  516. *block = to_oblock(b);
  517. *flags = value & FLAGS_MASK;
  518. }
  519. /*----------------------------------------------------------------*/
  520. struct dm_cache_metadata *dm_cache_metadata_open(struct block_device *bdev,
  521. sector_t data_block_size,
  522. bool may_format_device,
  523. size_t policy_hint_size)
  524. {
  525. int r;
  526. struct dm_cache_metadata *cmd;
  527. cmd = kzalloc(sizeof(*cmd), GFP_KERNEL);
  528. if (!cmd) {
  529. DMERR("could not allocate metadata struct");
  530. return NULL;
  531. }
  532. init_rwsem(&cmd->root_lock);
  533. cmd->bdev = bdev;
  534. cmd->data_block_size = data_block_size;
  535. cmd->cache_blocks = 0;
  536. cmd->policy_hint_size = policy_hint_size;
  537. cmd->changed = true;
  538. r = __create_persistent_data_objects(cmd, may_format_device);
  539. if (r) {
  540. kfree(cmd);
  541. return ERR_PTR(r);
  542. }
  543. r = __begin_transaction_flags(cmd, clear_clean_shutdown);
  544. if (r < 0) {
  545. dm_cache_metadata_close(cmd);
  546. return ERR_PTR(r);
  547. }
  548. return cmd;
  549. }
  550. void dm_cache_metadata_close(struct dm_cache_metadata *cmd)
  551. {
  552. __destroy_persistent_data_objects(cmd);
  553. kfree(cmd);
  554. }
  555. /*
  556. * Checks that the given cache block is either unmapped or clean.
  557. */
  558. static int block_unmapped_or_clean(struct dm_cache_metadata *cmd, dm_cblock_t b,
  559. bool *result)
  560. {
  561. int r;
  562. __le64 value;
  563. dm_oblock_t ob;
  564. unsigned flags;
  565. r = dm_array_get_value(&cmd->info, cmd->root, from_cblock(b), &value);
  566. if (r) {
  567. DMERR("block_unmapped_or_clean failed");
  568. return r;
  569. }
  570. unpack_value(value, &ob, &flags);
  571. *result = !((flags & M_VALID) && (flags & M_DIRTY));
  572. return 0;
  573. }
  574. static int blocks_are_unmapped_or_clean(struct dm_cache_metadata *cmd,
  575. dm_cblock_t begin, dm_cblock_t end,
  576. bool *result)
  577. {
  578. int r;
  579. *result = true;
  580. while (begin != end) {
  581. r = block_unmapped_or_clean(cmd, begin, result);
  582. if (r)
  583. return r;
  584. if (!*result) {
  585. DMERR("cache block %llu is dirty",
  586. (unsigned long long) from_cblock(begin));
  587. return 0;
  588. }
  589. begin = to_cblock(from_cblock(begin) + 1);
  590. }
  591. return 0;
  592. }
  593. int dm_cache_resize(struct dm_cache_metadata *cmd, dm_cblock_t new_cache_size)
  594. {
  595. int r;
  596. bool clean;
  597. __le64 null_mapping = pack_value(0, 0);
  598. down_write(&cmd->root_lock);
  599. __dm_bless_for_disk(&null_mapping);
  600. if (from_cblock(new_cache_size) < from_cblock(cmd->cache_blocks)) {
  601. r = blocks_are_unmapped_or_clean(cmd, new_cache_size, cmd->cache_blocks, &clean);
  602. if (r) {
  603. __dm_unbless_for_disk(&null_mapping);
  604. goto out;
  605. }
  606. if (!clean) {
  607. DMERR("unable to shrink cache due to dirty blocks");
  608. r = -EINVAL;
  609. __dm_unbless_for_disk(&null_mapping);
  610. goto out;
  611. }
  612. }
  613. r = dm_array_resize(&cmd->info, cmd->root, from_cblock(cmd->cache_blocks),
  614. from_cblock(new_cache_size),
  615. &null_mapping, &cmd->root);
  616. if (!r)
  617. cmd->cache_blocks = new_cache_size;
  618. cmd->changed = true;
  619. out:
  620. up_write(&cmd->root_lock);
  621. return r;
  622. }
  623. int dm_cache_discard_bitset_resize(struct dm_cache_metadata *cmd,
  624. sector_t discard_block_size,
  625. dm_dblock_t new_nr_entries)
  626. {
  627. int r;
  628. down_write(&cmd->root_lock);
  629. r = dm_bitset_resize(&cmd->discard_info,
  630. cmd->discard_root,
  631. from_dblock(cmd->discard_nr_blocks),
  632. from_dblock(new_nr_entries),
  633. false, &cmd->discard_root);
  634. if (!r) {
  635. cmd->discard_block_size = discard_block_size;
  636. cmd->discard_nr_blocks = new_nr_entries;
  637. }
  638. cmd->changed = true;
  639. up_write(&cmd->root_lock);
  640. return r;
  641. }
  642. static int __set_discard(struct dm_cache_metadata *cmd, dm_dblock_t b)
  643. {
  644. return dm_bitset_set_bit(&cmd->discard_info, cmd->discard_root,
  645. from_dblock(b), &cmd->discard_root);
  646. }
  647. static int __clear_discard(struct dm_cache_metadata *cmd, dm_dblock_t b)
  648. {
  649. return dm_bitset_clear_bit(&cmd->discard_info, cmd->discard_root,
  650. from_dblock(b), &cmd->discard_root);
  651. }
  652. static int __is_discarded(struct dm_cache_metadata *cmd, dm_dblock_t b,
  653. bool *is_discarded)
  654. {
  655. return dm_bitset_test_bit(&cmd->discard_info, cmd->discard_root,
  656. from_dblock(b), &cmd->discard_root,
  657. is_discarded);
  658. }
  659. static int __discard(struct dm_cache_metadata *cmd,
  660. dm_dblock_t dblock, bool discard)
  661. {
  662. int r;
  663. r = (discard ? __set_discard : __clear_discard)(cmd, dblock);
  664. if (r)
  665. return r;
  666. cmd->changed = true;
  667. return 0;
  668. }
  669. int dm_cache_set_discard(struct dm_cache_metadata *cmd,
  670. dm_dblock_t dblock, bool discard)
  671. {
  672. int r;
  673. down_write(&cmd->root_lock);
  674. r = __discard(cmd, dblock, discard);
  675. up_write(&cmd->root_lock);
  676. return r;
  677. }
  678. static int __load_discards(struct dm_cache_metadata *cmd,
  679. load_discard_fn fn, void *context)
  680. {
  681. int r = 0;
  682. dm_block_t b;
  683. bool discard;
  684. for (b = 0; b < from_dblock(cmd->discard_nr_blocks); b++) {
  685. dm_dblock_t dblock = to_dblock(b);
  686. if (cmd->clean_when_opened) {
  687. r = __is_discarded(cmd, dblock, &discard);
  688. if (r)
  689. return r;
  690. } else
  691. discard = false;
  692. r = fn(context, cmd->discard_block_size, dblock, discard);
  693. if (r)
  694. break;
  695. }
  696. return r;
  697. }
  698. int dm_cache_load_discards(struct dm_cache_metadata *cmd,
  699. load_discard_fn fn, void *context)
  700. {
  701. int r;
  702. down_read(&cmd->root_lock);
  703. r = __load_discards(cmd, fn, context);
  704. up_read(&cmd->root_lock);
  705. return r;
  706. }
  707. dm_cblock_t dm_cache_size(struct dm_cache_metadata *cmd)
  708. {
  709. dm_cblock_t r;
  710. down_read(&cmd->root_lock);
  711. r = cmd->cache_blocks;
  712. up_read(&cmd->root_lock);
  713. return r;
  714. }
  715. static int __remove(struct dm_cache_metadata *cmd, dm_cblock_t cblock)
  716. {
  717. int r;
  718. __le64 value = pack_value(0, 0);
  719. __dm_bless_for_disk(&value);
  720. r = dm_array_set_value(&cmd->info, cmd->root, from_cblock(cblock),
  721. &value, &cmd->root);
  722. if (r)
  723. return r;
  724. cmd->changed = true;
  725. return 0;
  726. }
  727. int dm_cache_remove_mapping(struct dm_cache_metadata *cmd, dm_cblock_t cblock)
  728. {
  729. int r;
  730. down_write(&cmd->root_lock);
  731. r = __remove(cmd, cblock);
  732. up_write(&cmd->root_lock);
  733. return r;
  734. }
  735. static int __insert(struct dm_cache_metadata *cmd,
  736. dm_cblock_t cblock, dm_oblock_t oblock)
  737. {
  738. int r;
  739. __le64 value = pack_value(oblock, M_VALID);
  740. __dm_bless_for_disk(&value);
  741. r = dm_array_set_value(&cmd->info, cmd->root, from_cblock(cblock),
  742. &value, &cmd->root);
  743. if (r)
  744. return r;
  745. cmd->changed = true;
  746. return 0;
  747. }
  748. int dm_cache_insert_mapping(struct dm_cache_metadata *cmd,
  749. dm_cblock_t cblock, dm_oblock_t oblock)
  750. {
  751. int r;
  752. down_write(&cmd->root_lock);
  753. r = __insert(cmd, cblock, oblock);
  754. up_write(&cmd->root_lock);
  755. return r;
  756. }
  757. struct thunk {
  758. load_mapping_fn fn;
  759. void *context;
  760. struct dm_cache_metadata *cmd;
  761. bool respect_dirty_flags;
  762. bool hints_valid;
  763. };
  764. static bool policy_unchanged(struct dm_cache_metadata *cmd,
  765. struct dm_cache_policy *policy)
  766. {
  767. const char *policy_name = dm_cache_policy_get_name(policy);
  768. const unsigned *policy_version = dm_cache_policy_get_version(policy);
  769. size_t policy_hint_size = dm_cache_policy_get_hint_size(policy);
  770. /*
  771. * Ensure policy names match.
  772. */
  773. if (strncmp(cmd->policy_name, policy_name, sizeof(cmd->policy_name)))
  774. return false;
  775. /*
  776. * Ensure policy major versions match.
  777. */
  778. if (cmd->policy_version[0] != policy_version[0])
  779. return false;
  780. /*
  781. * Ensure policy hint sizes match.
  782. */
  783. if (cmd->policy_hint_size != policy_hint_size)
  784. return false;
  785. return true;
  786. }
  787. static bool hints_array_initialized(struct dm_cache_metadata *cmd)
  788. {
  789. return cmd->hint_root && cmd->policy_hint_size;
  790. }
  791. static bool hints_array_available(struct dm_cache_metadata *cmd,
  792. struct dm_cache_policy *policy)
  793. {
  794. return cmd->clean_when_opened && policy_unchanged(cmd, policy) &&
  795. hints_array_initialized(cmd);
  796. }
  797. static int __load_mapping(void *context, uint64_t cblock, void *leaf)
  798. {
  799. int r = 0;
  800. bool dirty;
  801. __le64 value;
  802. __le32 hint_value = 0;
  803. dm_oblock_t oblock;
  804. unsigned flags;
  805. struct thunk *thunk = context;
  806. struct dm_cache_metadata *cmd = thunk->cmd;
  807. memcpy(&value, leaf, sizeof(value));
  808. unpack_value(value, &oblock, &flags);
  809. if (flags & M_VALID) {
  810. if (thunk->hints_valid) {
  811. r = dm_array_get_value(&cmd->hint_info, cmd->hint_root,
  812. cblock, &hint_value);
  813. if (r && r != -ENODATA)
  814. return r;
  815. }
  816. dirty = thunk->respect_dirty_flags ? (flags & M_DIRTY) : true;
  817. r = thunk->fn(thunk->context, oblock, to_cblock(cblock),
  818. dirty, le32_to_cpu(hint_value), thunk->hints_valid);
  819. }
  820. return r;
  821. }
  822. static int __load_mappings(struct dm_cache_metadata *cmd,
  823. struct dm_cache_policy *policy,
  824. load_mapping_fn fn, void *context)
  825. {
  826. struct thunk thunk;
  827. thunk.fn = fn;
  828. thunk.context = context;
  829. thunk.cmd = cmd;
  830. thunk.respect_dirty_flags = cmd->clean_when_opened;
  831. thunk.hints_valid = hints_array_available(cmd, policy);
  832. return dm_array_walk(&cmd->info, cmd->root, __load_mapping, &thunk);
  833. }
  834. int dm_cache_load_mappings(struct dm_cache_metadata *cmd,
  835. struct dm_cache_policy *policy,
  836. load_mapping_fn fn, void *context)
  837. {
  838. int r;
  839. down_read(&cmd->root_lock);
  840. r = __load_mappings(cmd, policy, fn, context);
  841. up_read(&cmd->root_lock);
  842. return r;
  843. }
  844. static int __dump_mapping(void *context, uint64_t cblock, void *leaf)
  845. {
  846. int r = 0;
  847. __le64 value;
  848. dm_oblock_t oblock;
  849. unsigned flags;
  850. memcpy(&value, leaf, sizeof(value));
  851. unpack_value(value, &oblock, &flags);
  852. return r;
  853. }
  854. static int __dump_mappings(struct dm_cache_metadata *cmd)
  855. {
  856. return dm_array_walk(&cmd->info, cmd->root, __dump_mapping, NULL);
  857. }
  858. void dm_cache_dump(struct dm_cache_metadata *cmd)
  859. {
  860. down_read(&cmd->root_lock);
  861. __dump_mappings(cmd);
  862. up_read(&cmd->root_lock);
  863. }
  864. int dm_cache_changed_this_transaction(struct dm_cache_metadata *cmd)
  865. {
  866. int r;
  867. down_read(&cmd->root_lock);
  868. r = cmd->changed;
  869. up_read(&cmd->root_lock);
  870. return r;
  871. }
  872. static int __dirty(struct dm_cache_metadata *cmd, dm_cblock_t cblock, bool dirty)
  873. {
  874. int r;
  875. unsigned flags;
  876. dm_oblock_t oblock;
  877. __le64 value;
  878. r = dm_array_get_value(&cmd->info, cmd->root, from_cblock(cblock), &value);
  879. if (r)
  880. return r;
  881. unpack_value(value, &oblock, &flags);
  882. if (((flags & M_DIRTY) && dirty) || (!(flags & M_DIRTY) && !dirty))
  883. /* nothing to be done */
  884. return 0;
  885. value = pack_value(oblock, (flags & ~M_DIRTY) | (dirty ? M_DIRTY : 0));
  886. __dm_bless_for_disk(&value);
  887. r = dm_array_set_value(&cmd->info, cmd->root, from_cblock(cblock),
  888. &value, &cmd->root);
  889. if (r)
  890. return r;
  891. cmd->changed = true;
  892. return 0;
  893. }
  894. int dm_cache_set_dirty(struct dm_cache_metadata *cmd,
  895. dm_cblock_t cblock, bool dirty)
  896. {
  897. int r;
  898. down_write(&cmd->root_lock);
  899. r = __dirty(cmd, cblock, dirty);
  900. up_write(&cmd->root_lock);
  901. return r;
  902. }
  903. void dm_cache_metadata_get_stats(struct dm_cache_metadata *cmd,
  904. struct dm_cache_statistics *stats)
  905. {
  906. down_read(&cmd->root_lock);
  907. *stats = cmd->stats;
  908. up_read(&cmd->root_lock);
  909. }
  910. void dm_cache_metadata_set_stats(struct dm_cache_metadata *cmd,
  911. struct dm_cache_statistics *stats)
  912. {
  913. down_write(&cmd->root_lock);
  914. cmd->stats = *stats;
  915. up_write(&cmd->root_lock);
  916. }
  917. int dm_cache_commit(struct dm_cache_metadata *cmd, bool clean_shutdown)
  918. {
  919. int r;
  920. flags_mutator mutator = (clean_shutdown ? set_clean_shutdown :
  921. clear_clean_shutdown);
  922. down_write(&cmd->root_lock);
  923. r = __commit_transaction(cmd, mutator);
  924. if (r)
  925. goto out;
  926. r = __begin_transaction(cmd);
  927. out:
  928. up_write(&cmd->root_lock);
  929. return r;
  930. }
  931. int dm_cache_get_free_metadata_block_count(struct dm_cache_metadata *cmd,
  932. dm_block_t *result)
  933. {
  934. int r = -EINVAL;
  935. down_read(&cmd->root_lock);
  936. r = dm_sm_get_nr_free(cmd->metadata_sm, result);
  937. up_read(&cmd->root_lock);
  938. return r;
  939. }
  940. int dm_cache_get_metadata_dev_size(struct dm_cache_metadata *cmd,
  941. dm_block_t *result)
  942. {
  943. int r = -EINVAL;
  944. down_read(&cmd->root_lock);
  945. r = dm_sm_get_nr_blocks(cmd->metadata_sm, result);
  946. up_read(&cmd->root_lock);
  947. return r;
  948. }
  949. /*----------------------------------------------------------------*/
  950. static int begin_hints(struct dm_cache_metadata *cmd, struct dm_cache_policy *policy)
  951. {
  952. int r;
  953. __le32 value;
  954. size_t hint_size;
  955. const char *policy_name = dm_cache_policy_get_name(policy);
  956. const unsigned *policy_version = dm_cache_policy_get_version(policy);
  957. if (!policy_name[0] ||
  958. (strlen(policy_name) > sizeof(cmd->policy_name) - 1))
  959. return -EINVAL;
  960. if (!policy_unchanged(cmd, policy)) {
  961. strncpy(cmd->policy_name, policy_name, sizeof(cmd->policy_name));
  962. memcpy(cmd->policy_version, policy_version, sizeof(cmd->policy_version));
  963. hint_size = dm_cache_policy_get_hint_size(policy);
  964. if (!hint_size)
  965. return 0; /* short-circuit hints initialization */
  966. cmd->policy_hint_size = hint_size;
  967. if (cmd->hint_root) {
  968. r = dm_array_del(&cmd->hint_info, cmd->hint_root);
  969. if (r)
  970. return r;
  971. }
  972. r = dm_array_empty(&cmd->hint_info, &cmd->hint_root);
  973. if (r)
  974. return r;
  975. value = cpu_to_le32(0);
  976. __dm_bless_for_disk(&value);
  977. r = dm_array_resize(&cmd->hint_info, cmd->hint_root, 0,
  978. from_cblock(cmd->cache_blocks),
  979. &value, &cmd->hint_root);
  980. if (r)
  981. return r;
  982. }
  983. return 0;
  984. }
  985. int dm_cache_begin_hints(struct dm_cache_metadata *cmd, struct dm_cache_policy *policy)
  986. {
  987. int r;
  988. down_write(&cmd->root_lock);
  989. r = begin_hints(cmd, policy);
  990. up_write(&cmd->root_lock);
  991. return r;
  992. }
  993. static int save_hint(struct dm_cache_metadata *cmd, dm_cblock_t cblock,
  994. uint32_t hint)
  995. {
  996. int r;
  997. __le32 value = cpu_to_le32(hint);
  998. __dm_bless_for_disk(&value);
  999. r = dm_array_set_value(&cmd->hint_info, cmd->hint_root,
  1000. from_cblock(cblock), &value, &cmd->hint_root);
  1001. cmd->changed = true;
  1002. return r;
  1003. }
  1004. int dm_cache_save_hint(struct dm_cache_metadata *cmd, dm_cblock_t cblock,
  1005. uint32_t hint)
  1006. {
  1007. int r;
  1008. if (!hints_array_initialized(cmd))
  1009. return 0;
  1010. down_write(&cmd->root_lock);
  1011. r = save_hint(cmd, cblock, hint);
  1012. up_write(&cmd->root_lock);
  1013. return r;
  1014. }
  1015. int dm_cache_metadata_all_clean(struct dm_cache_metadata *cmd, bool *result)
  1016. {
  1017. return blocks_are_unmapped_or_clean(cmd, 0, cmd->cache_blocks, result);
  1018. }