ubifs.h 58 KB

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  1. /*
  2. * This file is part of UBIFS.
  3. *
  4. * Copyright (C) 2006-2008 Nokia Corporation
  5. *
  6. * This program is free software; you can redistribute it and/or modify it
  7. * under the terms of the GNU General Public License version 2 as published by
  8. * the Free Software Foundation.
  9. *
  10. * This program is distributed in the hope that it will be useful, but WITHOUT
  11. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  12. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  13. * more details.
  14. *
  15. * You should have received a copy of the GNU General Public License along with
  16. * this program; if not, write to the Free Software Foundation, Inc., 51
  17. * Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  18. *
  19. * Authors: Artem Bityutskiy (Битюцкий Артём)
  20. * Adrian Hunter
  21. */
  22. #ifndef __UBIFS_H__
  23. #define __UBIFS_H__
  24. #include <asm/div64.h>
  25. #include <linux/statfs.h>
  26. #include <linux/fs.h>
  27. #include <linux/err.h>
  28. #include <linux/sched.h>
  29. #include <linux/vmalloc.h>
  30. #include <linux/spinlock.h>
  31. #include <linux/mutex.h>
  32. #include <linux/rwsem.h>
  33. #include <linux/mtd/ubi.h>
  34. #include <linux/pagemap.h>
  35. #include <linux/backing-dev.h>
  36. #include "ubifs-media.h"
  37. /* Version of this UBIFS implementation */
  38. #define UBIFS_VERSION 1
  39. /* Normal UBIFS messages */
  40. #define ubifs_msg(fmt, ...) \
  41. printk(KERN_NOTICE "UBIFS: " fmt "\n", ##__VA_ARGS__)
  42. /* UBIFS error messages */
  43. #define ubifs_err(fmt, ...) \
  44. printk(KERN_ERR "UBIFS error (pid %d): %s: " fmt "\n", current->pid, \
  45. __func__, ##__VA_ARGS__)
  46. /* UBIFS warning messages */
  47. #define ubifs_warn(fmt, ...) \
  48. printk(KERN_WARNING "UBIFS warning (pid %d): %s: " fmt "\n", \
  49. current->pid, __func__, ##__VA_ARGS__)
  50. /* UBIFS file system VFS magic number */
  51. #define UBIFS_SUPER_MAGIC 0x24051905
  52. /* Number of UBIFS blocks per VFS page */
  53. #define UBIFS_BLOCKS_PER_PAGE (PAGE_CACHE_SIZE / UBIFS_BLOCK_SIZE)
  54. #define UBIFS_BLOCKS_PER_PAGE_SHIFT (PAGE_CACHE_SHIFT - UBIFS_BLOCK_SHIFT)
  55. /* "File system end of life" sequence number watermark */
  56. #define SQNUM_WARN_WATERMARK 0xFFFFFFFF00000000ULL
  57. #define SQNUM_WATERMARK 0xFFFFFFFFFF000000ULL
  58. /* Minimum amount of data UBIFS writes to the flash */
  59. #define MIN_WRITE_SZ (UBIFS_DATA_NODE_SZ + 8)
  60. /*
  61. * Currently we do not support inode number overlapping and re-using, so this
  62. * watermark defines dangerous inode number level. This should be fixed later,
  63. * although it is difficult to exceed current limit. Another option is to use
  64. * 64-bit inode numbers, but this means more overhead.
  65. */
  66. #define INUM_WARN_WATERMARK 0xFFF00000
  67. #define INUM_WATERMARK 0xFFFFFF00
  68. /* Largest key size supported in this implementation */
  69. #define CUR_MAX_KEY_LEN UBIFS_SK_LEN
  70. /* Maximum number of entries in each LPT (LEB category) heap */
  71. #define LPT_HEAP_SZ 256
  72. /*
  73. * Background thread name pattern. The numbers are UBI device and volume
  74. * numbers.
  75. */
  76. #define BGT_NAME_PATTERN "ubifs_bgt%d_%d"
  77. /* Default write-buffer synchronization timeout (5 secs) */
  78. #define DEFAULT_WBUF_TIMEOUT (5 * HZ)
  79. /* Maximum possible inode number (only 32-bit inodes are supported now) */
  80. #define MAX_INUM 0xFFFFFFFF
  81. /* Number of non-data journal heads */
  82. #define NONDATA_JHEADS_CNT 2
  83. /* Garbage collector head */
  84. #define GCHD 0
  85. /* Base journal head number */
  86. #define BASEHD 1
  87. /* First "general purpose" journal head */
  88. #define DATAHD 2
  89. /* 'No change' value for 'ubifs_change_lp()' */
  90. #define LPROPS_NC 0x80000001
  91. /*
  92. * There is no notion of truncation key because truncation nodes do not exist
  93. * in TNC. However, when replaying, it is handy to introduce fake "truncation"
  94. * keys for truncation nodes because the code becomes simpler. So we define
  95. * %UBIFS_TRUN_KEY type.
  96. */
  97. #define UBIFS_TRUN_KEY UBIFS_KEY_TYPES_CNT
  98. /*
  99. * How much a directory entry/extended attribute entry adds to the parent/host
  100. * inode.
  101. */
  102. #define CALC_DENT_SIZE(name_len) ALIGN(UBIFS_DENT_NODE_SZ + (name_len) + 1, 8)
  103. /* How much an extended attribute adds to the host inode */
  104. #define CALC_XATTR_BYTES(data_len) ALIGN(UBIFS_INO_NODE_SZ + (data_len) + 1, 8)
  105. /*
  106. * Znodes which were not touched for 'OLD_ZNODE_AGE' seconds are considered
  107. * "old", and znode which were touched last 'YOUNG_ZNODE_AGE' seconds ago are
  108. * considered "young". This is used by shrinker when selecting znode to trim
  109. * off.
  110. */
  111. #define OLD_ZNODE_AGE 20
  112. #define YOUNG_ZNODE_AGE 5
  113. /*
  114. * Some compressors, like LZO, may end up with more data then the input buffer.
  115. * So UBIFS always allocates larger output buffer, to be sure the compressor
  116. * will not corrupt memory in case of worst case compression.
  117. */
  118. #define WORST_COMPR_FACTOR 2
  119. /* Maximum expected tree height for use by bottom_up_buf */
  120. #define BOTTOM_UP_HEIGHT 64
  121. /* Maximum number of data nodes to bulk-read */
  122. #define UBIFS_MAX_BULK_READ 32
  123. /*
  124. * Lockdep classes for UBIFS inode @ui_mutex.
  125. */
  126. enum {
  127. WB_MUTEX_1 = 0,
  128. WB_MUTEX_2 = 1,
  129. WB_MUTEX_3 = 2,
  130. };
  131. /*
  132. * Znode flags (actually, bit numbers which store the flags).
  133. *
  134. * DIRTY_ZNODE: znode is dirty
  135. * COW_ZNODE: znode is being committed and a new instance of this znode has to
  136. * be created before changing this znode
  137. * OBSOLETE_ZNODE: znode is obsolete, which means it was deleted, but it is
  138. * still in the commit list and the ongoing commit operation
  139. * will commit it, and delete this znode after it is done
  140. */
  141. enum {
  142. DIRTY_ZNODE = 0,
  143. COW_ZNODE = 1,
  144. OBSOLETE_ZNODE = 2,
  145. };
  146. /*
  147. * Commit states.
  148. *
  149. * COMMIT_RESTING: commit is not wanted
  150. * COMMIT_BACKGROUND: background commit has been requested
  151. * COMMIT_REQUIRED: commit is required
  152. * COMMIT_RUNNING_BACKGROUND: background commit is running
  153. * COMMIT_RUNNING_REQUIRED: commit is running and it is required
  154. * COMMIT_BROKEN: commit failed
  155. */
  156. enum {
  157. COMMIT_RESTING = 0,
  158. COMMIT_BACKGROUND,
  159. COMMIT_REQUIRED,
  160. COMMIT_RUNNING_BACKGROUND,
  161. COMMIT_RUNNING_REQUIRED,
  162. COMMIT_BROKEN,
  163. };
  164. /*
  165. * 'ubifs_scan_a_node()' return values.
  166. *
  167. * SCANNED_GARBAGE: scanned garbage
  168. * SCANNED_EMPTY_SPACE: scanned empty space
  169. * SCANNED_A_NODE: scanned a valid node
  170. * SCANNED_A_CORRUPT_NODE: scanned a corrupted node
  171. * SCANNED_A_BAD_PAD_NODE: scanned a padding node with invalid pad length
  172. *
  173. * Greater than zero means: 'scanned that number of padding bytes'
  174. */
  175. enum {
  176. SCANNED_GARBAGE = 0,
  177. SCANNED_EMPTY_SPACE = -1,
  178. SCANNED_A_NODE = -2,
  179. SCANNED_A_CORRUPT_NODE = -3,
  180. SCANNED_A_BAD_PAD_NODE = -4,
  181. };
  182. /*
  183. * LPT cnode flag bits.
  184. *
  185. * DIRTY_CNODE: cnode is dirty
  186. * COW_CNODE: cnode is being committed and must be copied before writing
  187. * OBSOLETE_CNODE: cnode is being committed and has been copied (or deleted),
  188. * so it can (and must) be freed when the commit is finished
  189. */
  190. enum {
  191. DIRTY_CNODE = 0,
  192. COW_CNODE = 1,
  193. OBSOLETE_CNODE = 2,
  194. };
  195. /*
  196. * Dirty flag bits (lpt_drty_flgs) for LPT special nodes.
  197. *
  198. * LTAB_DIRTY: ltab node is dirty
  199. * LSAVE_DIRTY: lsave node is dirty
  200. */
  201. enum {
  202. LTAB_DIRTY = 1,
  203. LSAVE_DIRTY = 2,
  204. };
  205. /*
  206. * Return codes used by the garbage collector.
  207. * @LEB_FREED: the logical eraseblock was freed and is ready to use
  208. * @LEB_FREED_IDX: indexing LEB was freed and can be used only after the commit
  209. * @LEB_RETAINED: the logical eraseblock was freed and retained for GC purposes
  210. */
  211. enum {
  212. LEB_FREED,
  213. LEB_FREED_IDX,
  214. LEB_RETAINED,
  215. };
  216. /**
  217. * struct ubifs_old_idx - index node obsoleted since last commit start.
  218. * @rb: rb-tree node
  219. * @lnum: LEB number of obsoleted index node
  220. * @offs: offset of obsoleted index node
  221. */
  222. struct ubifs_old_idx {
  223. struct rb_node rb;
  224. int lnum;
  225. int offs;
  226. };
  227. /* The below union makes it easier to deal with keys */
  228. union ubifs_key {
  229. uint8_t u8[CUR_MAX_KEY_LEN];
  230. uint32_t u32[CUR_MAX_KEY_LEN/4];
  231. uint64_t u64[CUR_MAX_KEY_LEN/8];
  232. __le32 j32[CUR_MAX_KEY_LEN/4];
  233. };
  234. /**
  235. * struct ubifs_scan_node - UBIFS scanned node information.
  236. * @list: list of scanned nodes
  237. * @key: key of node scanned (if it has one)
  238. * @sqnum: sequence number
  239. * @type: type of node scanned
  240. * @offs: offset with LEB of node scanned
  241. * @len: length of node scanned
  242. * @node: raw node
  243. */
  244. struct ubifs_scan_node {
  245. struct list_head list;
  246. union ubifs_key key;
  247. unsigned long long sqnum;
  248. int type;
  249. int offs;
  250. int len;
  251. void *node;
  252. };
  253. /**
  254. * struct ubifs_scan_leb - UBIFS scanned LEB information.
  255. * @lnum: logical eraseblock number
  256. * @nodes_cnt: number of nodes scanned
  257. * @nodes: list of struct ubifs_scan_node
  258. * @endpt: end point (and therefore the start of empty space)
  259. * @ecc: read returned -EBADMSG
  260. * @buf: buffer containing entire LEB scanned
  261. */
  262. struct ubifs_scan_leb {
  263. int lnum;
  264. int nodes_cnt;
  265. struct list_head nodes;
  266. int endpt;
  267. int ecc;
  268. void *buf;
  269. };
  270. /**
  271. * struct ubifs_gced_idx_leb - garbage-collected indexing LEB.
  272. * @list: list
  273. * @lnum: LEB number
  274. * @unmap: OK to unmap this LEB
  275. *
  276. * This data structure is used to temporary store garbage-collected indexing
  277. * LEBs - they are not released immediately, but only after the next commit.
  278. * This is needed to guarantee recoverability.
  279. */
  280. struct ubifs_gced_idx_leb {
  281. struct list_head list;
  282. int lnum;
  283. int unmap;
  284. };
  285. /**
  286. * struct ubifs_inode - UBIFS in-memory inode description.
  287. * @vfs_inode: VFS inode description object
  288. * @creat_sqnum: sequence number at time of creation
  289. * @del_cmtno: commit number corresponding to the time the inode was deleted,
  290. * protected by @c->commit_sem;
  291. * @xattr_size: summarized size of all extended attributes in bytes
  292. * @xattr_cnt: count of extended attributes this inode has
  293. * @xattr_names: sum of lengths of all extended attribute names belonging to
  294. * this inode
  295. * @dirty: non-zero if the inode is dirty
  296. * @xattr: non-zero if this is an extended attribute inode
  297. * @bulk_read: non-zero if bulk-read should be used
  298. * @ui_mutex: serializes inode write-back with the rest of VFS operations,
  299. * serializes "clean <-> dirty" state changes, serializes bulk-read,
  300. * protects @dirty, @bulk_read, @ui_size, and @xattr_size
  301. * @ui_lock: protects @synced_i_size
  302. * @synced_i_size: synchronized size of inode, i.e. the value of inode size
  303. * currently stored on the flash; used only for regular file
  304. * inodes
  305. * @ui_size: inode size used by UBIFS when writing to flash
  306. * @flags: inode flags (@UBIFS_COMPR_FL, etc)
  307. * @compr_type: default compression type used for this inode
  308. * @last_page_read: page number of last page read (for bulk read)
  309. * @read_in_a_row: number of consecutive pages read in a row (for bulk read)
  310. * @data_len: length of the data attached to the inode
  311. * @data: inode's data
  312. *
  313. * @ui_mutex exists for two main reasons. At first it prevents inodes from
  314. * being written back while UBIFS changing them, being in the middle of an VFS
  315. * operation. This way UBIFS makes sure the inode fields are consistent. For
  316. * example, in 'ubifs_rename()' we change 3 inodes simultaneously, and
  317. * write-back must not write any of them before we have finished.
  318. *
  319. * The second reason is budgeting - UBIFS has to budget all operations. If an
  320. * operation is going to mark an inode dirty, it has to allocate budget for
  321. * this. It cannot just mark it dirty because there is no guarantee there will
  322. * be enough flash space to write the inode back later. This means UBIFS has
  323. * to have full control over inode "clean <-> dirty" transitions (and pages
  324. * actually). But unfortunately, VFS marks inodes dirty in many places, and it
  325. * does not ask the file-system if it is allowed to do so (there is a notifier,
  326. * but it is not enough), i.e., there is no mechanism to synchronize with this.
  327. * So UBIFS has its own inode dirty flag and its own mutex to serialize
  328. * "clean <-> dirty" transitions.
  329. *
  330. * The @synced_i_size field is used to make sure we never write pages which are
  331. * beyond last synchronized inode size. See 'ubifs_writepage()' for more
  332. * information.
  333. *
  334. * The @ui_size is a "shadow" variable for @inode->i_size and UBIFS uses
  335. * @ui_size instead of @inode->i_size. The reason for this is that UBIFS cannot
  336. * make sure @inode->i_size is always changed under @ui_mutex, because it
  337. * cannot call 'vmtruncate()' with @ui_mutex locked, because it would deadlock
  338. * with 'ubifs_writepage()' (see file.c). All the other inode fields are
  339. * changed under @ui_mutex, so they do not need "shadow" fields. Note, one
  340. * could consider to rework locking and base it on "shadow" fields.
  341. */
  342. struct ubifs_inode {
  343. struct inode vfs_inode;
  344. unsigned long long creat_sqnum;
  345. unsigned long long del_cmtno;
  346. unsigned int xattr_size;
  347. unsigned int xattr_cnt;
  348. unsigned int xattr_names;
  349. unsigned int dirty:1;
  350. unsigned int xattr:1;
  351. unsigned int bulk_read:1;
  352. struct mutex ui_mutex;
  353. spinlock_t ui_lock;
  354. loff_t synced_i_size;
  355. loff_t ui_size;
  356. int flags;
  357. int compr_type;
  358. pgoff_t last_page_read;
  359. pgoff_t read_in_a_row;
  360. int data_len;
  361. void *data;
  362. };
  363. /**
  364. * struct ubifs_unclean_leb - records a LEB recovered under read-only mode.
  365. * @list: list
  366. * @lnum: LEB number of recovered LEB
  367. * @endpt: offset where recovery ended
  368. *
  369. * This structure records a LEB identified during recovery that needs to be
  370. * cleaned but was not because UBIFS was mounted read-only. The information
  371. * is used to clean the LEB when remounting to read-write mode.
  372. */
  373. struct ubifs_unclean_leb {
  374. struct list_head list;
  375. int lnum;
  376. int endpt;
  377. };
  378. /*
  379. * LEB properties flags.
  380. *
  381. * LPROPS_UNCAT: not categorized
  382. * LPROPS_DIRTY: dirty > 0, not index
  383. * LPROPS_DIRTY_IDX: dirty + free > UBIFS_CH_SZ and index
  384. * LPROPS_FREE: free > 0, not empty, not index
  385. * LPROPS_HEAP_CNT: number of heaps used for storing categorized LEBs
  386. * LPROPS_EMPTY: LEB is empty, not taken
  387. * LPROPS_FREEABLE: free + dirty == leb_size, not index, not taken
  388. * LPROPS_FRDI_IDX: free + dirty == leb_size and index, may be taken
  389. * LPROPS_CAT_MASK: mask for the LEB categories above
  390. * LPROPS_TAKEN: LEB was taken (this flag is not saved on the media)
  391. * LPROPS_INDEX: LEB contains indexing nodes (this flag also exists on flash)
  392. */
  393. enum {
  394. LPROPS_UNCAT = 0,
  395. LPROPS_DIRTY = 1,
  396. LPROPS_DIRTY_IDX = 2,
  397. LPROPS_FREE = 3,
  398. LPROPS_HEAP_CNT = 3,
  399. LPROPS_EMPTY = 4,
  400. LPROPS_FREEABLE = 5,
  401. LPROPS_FRDI_IDX = 6,
  402. LPROPS_CAT_MASK = 15,
  403. LPROPS_TAKEN = 16,
  404. LPROPS_INDEX = 32,
  405. };
  406. /**
  407. * struct ubifs_lprops - logical eraseblock properties.
  408. * @free: amount of free space in bytes
  409. * @dirty: amount of dirty space in bytes
  410. * @flags: LEB properties flags (see above)
  411. * @lnum: LEB number
  412. * @list: list of same-category lprops (for LPROPS_EMPTY and LPROPS_FREEABLE)
  413. * @hpos: heap position in heap of same-category lprops (other categories)
  414. */
  415. struct ubifs_lprops {
  416. int free;
  417. int dirty;
  418. int flags;
  419. int lnum;
  420. union {
  421. struct list_head list;
  422. int hpos;
  423. };
  424. };
  425. /**
  426. * struct ubifs_lpt_lprops - LPT logical eraseblock properties.
  427. * @free: amount of free space in bytes
  428. * @dirty: amount of dirty space in bytes
  429. * @tgc: trivial GC flag (1 => unmap after commit end)
  430. * @cmt: commit flag (1 => reserved for commit)
  431. */
  432. struct ubifs_lpt_lprops {
  433. int free;
  434. int dirty;
  435. unsigned tgc : 1;
  436. unsigned cmt : 1;
  437. };
  438. /**
  439. * struct ubifs_lp_stats - statistics of eraseblocks in the main area.
  440. * @empty_lebs: number of empty LEBs
  441. * @taken_empty_lebs: number of taken LEBs
  442. * @idx_lebs: number of indexing LEBs
  443. * @total_free: total free space in bytes
  444. * @total_dirty: total dirty space in bytes
  445. * @total_used: total used space in bytes (includes only data LEBs)
  446. * @total_dead: total dead space in bytes (includes only data LEBs)
  447. * @total_dark: total dark space in bytes (includes only data LEBs)
  448. *
  449. * N.B. total_dirty and total_used are different to other total_* fields,
  450. * because they account _all_ LEBs, not just data LEBs.
  451. *
  452. * 'taken_empty_lebs' counts the LEBs that are in the transient state of having
  453. * been 'taken' for use but not yet written to. 'taken_empty_lebs' is needed
  454. * to account correctly for gc_lnum, otherwise 'empty_lebs' could be used
  455. * by itself (in which case 'unused_lebs' would be a better name). In the case
  456. * of gc_lnum, it is 'taken' at mount time or whenever a LEB is retained by GC,
  457. * but unlike other empty LEBs that are 'taken', it may not be written straight
  458. * away (i.e. before the next commit start or unmount), so either gc_lnum must
  459. * be specially accounted for, or the current approach followed i.e. count it
  460. * under 'taken_empty_lebs'.
  461. */
  462. struct ubifs_lp_stats {
  463. int empty_lebs;
  464. int taken_empty_lebs;
  465. int idx_lebs;
  466. long long total_free;
  467. long long total_dirty;
  468. long long total_used;
  469. long long total_dead;
  470. long long total_dark;
  471. };
  472. struct ubifs_nnode;
  473. /**
  474. * struct ubifs_cnode - LEB Properties Tree common node.
  475. * @parent: parent nnode
  476. * @cnext: next cnode to commit
  477. * @flags: flags (%DIRTY_LPT_NODE or %OBSOLETE_LPT_NODE)
  478. * @iip: index in parent
  479. * @level: level in the tree (zero for pnodes, greater than zero for nnodes)
  480. * @num: node number
  481. */
  482. struct ubifs_cnode {
  483. struct ubifs_nnode *parent;
  484. struct ubifs_cnode *cnext;
  485. unsigned long flags;
  486. int iip;
  487. int level;
  488. int num;
  489. };
  490. /**
  491. * struct ubifs_pnode - LEB Properties Tree leaf node.
  492. * @parent: parent nnode
  493. * @cnext: next cnode to commit
  494. * @flags: flags (%DIRTY_LPT_NODE or %OBSOLETE_LPT_NODE)
  495. * @iip: index in parent
  496. * @level: level in the tree (always zero for pnodes)
  497. * @num: node number
  498. * @lprops: LEB properties array
  499. */
  500. struct ubifs_pnode {
  501. struct ubifs_nnode *parent;
  502. struct ubifs_cnode *cnext;
  503. unsigned long flags;
  504. int iip;
  505. int level;
  506. int num;
  507. struct ubifs_lprops lprops[UBIFS_LPT_FANOUT];
  508. };
  509. /**
  510. * struct ubifs_nbranch - LEB Properties Tree internal node branch.
  511. * @lnum: LEB number of child
  512. * @offs: offset of child
  513. * @nnode: nnode child
  514. * @pnode: pnode child
  515. * @cnode: cnode child
  516. */
  517. struct ubifs_nbranch {
  518. int lnum;
  519. int offs;
  520. union {
  521. struct ubifs_nnode *nnode;
  522. struct ubifs_pnode *pnode;
  523. struct ubifs_cnode *cnode;
  524. };
  525. };
  526. /**
  527. * struct ubifs_nnode - LEB Properties Tree internal node.
  528. * @parent: parent nnode
  529. * @cnext: next cnode to commit
  530. * @flags: flags (%DIRTY_LPT_NODE or %OBSOLETE_LPT_NODE)
  531. * @iip: index in parent
  532. * @level: level in the tree (always greater than zero for nnodes)
  533. * @num: node number
  534. * @nbranch: branches to child nodes
  535. */
  536. struct ubifs_nnode {
  537. struct ubifs_nnode *parent;
  538. struct ubifs_cnode *cnext;
  539. unsigned long flags;
  540. int iip;
  541. int level;
  542. int num;
  543. struct ubifs_nbranch nbranch[UBIFS_LPT_FANOUT];
  544. };
  545. /**
  546. * struct ubifs_lpt_heap - heap of categorized lprops.
  547. * @arr: heap array
  548. * @cnt: number in heap
  549. * @max_cnt: maximum number allowed in heap
  550. *
  551. * There are %LPROPS_HEAP_CNT heaps.
  552. */
  553. struct ubifs_lpt_heap {
  554. struct ubifs_lprops **arr;
  555. int cnt;
  556. int max_cnt;
  557. };
  558. /*
  559. * Return codes for LPT scan callback function.
  560. *
  561. * LPT_SCAN_CONTINUE: continue scanning
  562. * LPT_SCAN_ADD: add the LEB properties scanned to the tree in memory
  563. * LPT_SCAN_STOP: stop scanning
  564. */
  565. enum {
  566. LPT_SCAN_CONTINUE = 0,
  567. LPT_SCAN_ADD = 1,
  568. LPT_SCAN_STOP = 2,
  569. };
  570. struct ubifs_info;
  571. /* Callback used by the 'ubifs_lpt_scan_nolock()' function */
  572. typedef int (*ubifs_lpt_scan_callback)(struct ubifs_info *c,
  573. const struct ubifs_lprops *lprops,
  574. int in_tree, void *data);
  575. /**
  576. * struct ubifs_wbuf - UBIFS write-buffer.
  577. * @c: UBIFS file-system description object
  578. * @buf: write-buffer (of min. flash I/O unit size)
  579. * @lnum: logical eraseblock number the write-buffer points to
  580. * @offs: write-buffer offset in this logical eraseblock
  581. * @avail: number of bytes available in the write-buffer
  582. * @used: number of used bytes in the write-buffer
  583. * @dtype: type of data stored in this LEB (%UBI_LONGTERM, %UBI_SHORTTERM,
  584. * %UBI_UNKNOWN)
  585. * @jhead: journal head the mutex belongs to (note, needed only to shut lockdep
  586. * up by 'mutex_lock_nested()).
  587. * @sync_callback: write-buffer synchronization callback
  588. * @io_mutex: serializes write-buffer I/O
  589. * @lock: serializes @buf, @lnum, @offs, @avail, @used, @next_ino and @inodes
  590. * fields
  591. * @timer: write-buffer timer
  592. * @timeout: timer expire interval in jiffies
  593. * @need_sync: it is set if its timer expired and needs sync
  594. * @next_ino: points to the next position of the following inode number
  595. * @inodes: stores the inode numbers of the nodes which are in wbuf
  596. *
  597. * The write-buffer synchronization callback is called when the write-buffer is
  598. * synchronized in order to notify how much space was wasted due to
  599. * write-buffer padding and how much free space is left in the LEB.
  600. *
  601. * Note: the fields @buf, @lnum, @offs, @avail and @used can be read under
  602. * spin-lock or mutex because they are written under both mutex and spin-lock.
  603. * @buf is appended to under mutex but overwritten under both mutex and
  604. * spin-lock. Thus the data between @buf and @buf + @used can be read under
  605. * spinlock.
  606. */
  607. struct ubifs_wbuf {
  608. struct ubifs_info *c;
  609. void *buf;
  610. int lnum;
  611. int offs;
  612. int avail;
  613. int used;
  614. int dtype;
  615. int jhead;
  616. int (*sync_callback)(struct ubifs_info *c, int lnum, int free, int pad);
  617. struct mutex io_mutex;
  618. spinlock_t lock;
  619. struct timer_list timer;
  620. int timeout;
  621. int need_sync;
  622. int next_ino;
  623. ino_t *inodes;
  624. };
  625. /**
  626. * struct ubifs_bud - bud logical eraseblock.
  627. * @lnum: logical eraseblock number
  628. * @start: where the (uncommitted) bud data starts
  629. * @jhead: journal head number this bud belongs to
  630. * @list: link in the list buds belonging to the same journal head
  631. * @rb: link in the tree of all buds
  632. */
  633. struct ubifs_bud {
  634. int lnum;
  635. int start;
  636. int jhead;
  637. struct list_head list;
  638. struct rb_node rb;
  639. };
  640. /**
  641. * struct ubifs_jhead - journal head.
  642. * @wbuf: head's write-buffer
  643. * @buds_list: list of bud LEBs belonging to this journal head
  644. *
  645. * Note, the @buds list is protected by the @c->buds_lock.
  646. */
  647. struct ubifs_jhead {
  648. struct ubifs_wbuf wbuf;
  649. struct list_head buds_list;
  650. };
  651. /**
  652. * struct ubifs_zbranch - key/coordinate/length branch stored in znodes.
  653. * @key: key
  654. * @znode: znode address in memory
  655. * @lnum: LEB number of the target node (indexing node or data node)
  656. * @offs: target node offset within @lnum
  657. * @len: target node length
  658. */
  659. struct ubifs_zbranch {
  660. union ubifs_key key;
  661. union {
  662. struct ubifs_znode *znode;
  663. void *leaf;
  664. };
  665. int lnum;
  666. int offs;
  667. int len;
  668. };
  669. /**
  670. * struct ubifs_znode - in-memory representation of an indexing node.
  671. * @parent: parent znode or NULL if it is the root
  672. * @cnext: next znode to commit
  673. * @flags: znode flags (%DIRTY_ZNODE, %COW_ZNODE or %OBSOLETE_ZNODE)
  674. * @time: last access time (seconds)
  675. * @level: level of the entry in the TNC tree
  676. * @child_cnt: count of child znodes
  677. * @iip: index in parent's zbranch array
  678. * @alt: lower bound of key range has altered i.e. child inserted at slot 0
  679. * @lnum: LEB number of the corresponding indexing node
  680. * @offs: offset of the corresponding indexing node
  681. * @len: length of the corresponding indexing node
  682. * @zbranch: array of znode branches (@c->fanout elements)
  683. */
  684. struct ubifs_znode {
  685. struct ubifs_znode *parent;
  686. struct ubifs_znode *cnext;
  687. unsigned long flags;
  688. unsigned long time;
  689. int level;
  690. int child_cnt;
  691. int iip;
  692. int alt;
  693. #ifdef CONFIG_UBIFS_FS_DEBUG
  694. int lnum, offs, len;
  695. #endif
  696. struct ubifs_zbranch zbranch[];
  697. };
  698. /**
  699. * struct bu_info - bulk-read information
  700. * @key: first data node key
  701. * @zbranch: zbranches of data nodes to bulk read
  702. * @buf: buffer to read into
  703. * @buf_len: buffer length
  704. * @gc_seq: GC sequence number to detect races with GC
  705. * @cnt: number of data nodes for bulk read
  706. * @blk_cnt: number of data blocks including holes
  707. * @oef: end of file reached
  708. */
  709. struct bu_info {
  710. union ubifs_key key;
  711. struct ubifs_zbranch zbranch[UBIFS_MAX_BULK_READ];
  712. void *buf;
  713. int buf_len;
  714. int gc_seq;
  715. int cnt;
  716. int blk_cnt;
  717. int eof;
  718. };
  719. /**
  720. * struct ubifs_node_range - node length range description data structure.
  721. * @len: fixed node length
  722. * @min_len: minimum possible node length
  723. * @max_len: maximum possible node length
  724. *
  725. * If @max_len is %0, the node has fixed length @len.
  726. */
  727. struct ubifs_node_range {
  728. union {
  729. int len;
  730. int min_len;
  731. };
  732. int max_len;
  733. };
  734. /**
  735. * struct ubifs_compressor - UBIFS compressor description structure.
  736. * @compr_type: compressor type (%UBIFS_COMPR_LZO, etc)
  737. * @cc: cryptoapi compressor handle
  738. * @comp_mutex: mutex used during compression
  739. * @decomp_mutex: mutex used during decompression
  740. * @name: compressor name
  741. * @capi_name: cryptoapi compressor name
  742. */
  743. struct ubifs_compressor {
  744. int compr_type;
  745. struct crypto_comp *cc;
  746. struct mutex *comp_mutex;
  747. struct mutex *decomp_mutex;
  748. const char *name;
  749. const char *capi_name;
  750. };
  751. /**
  752. * struct ubifs_budget_req - budget requirements of an operation.
  753. *
  754. * @fast: non-zero if the budgeting should try to acquire budget quickly and
  755. * should not try to call write-back
  756. * @recalculate: non-zero if @idx_growth, @data_growth, and @dd_growth fields
  757. * have to be re-calculated
  758. * @new_page: non-zero if the operation adds a new page
  759. * @dirtied_page: non-zero if the operation makes a page dirty
  760. * @new_dent: non-zero if the operation adds a new directory entry
  761. * @mod_dent: non-zero if the operation removes or modifies an existing
  762. * directory entry
  763. * @new_ino: non-zero if the operation adds a new inode
  764. * @new_ino_d: now much data newly created inode contains
  765. * @dirtied_ino: how many inodes the operation makes dirty
  766. * @dirtied_ino_d: now much data dirtied inode contains
  767. * @idx_growth: how much the index will supposedly grow
  768. * @data_growth: how much new data the operation will supposedly add
  769. * @dd_growth: how much data that makes other data dirty the operation will
  770. * supposedly add
  771. *
  772. * @idx_growth, @data_growth and @dd_growth are not used in budget request. The
  773. * budgeting subsystem caches index and data growth values there to avoid
  774. * re-calculating them when the budget is released. However, if @idx_growth is
  775. * %-1, it is calculated by the release function using other fields.
  776. *
  777. * An inode may contain 4KiB of data at max., thus the widths of @new_ino_d
  778. * is 13 bits, and @dirtied_ino_d - 15, because up to 4 inodes may be made
  779. * dirty by the re-name operation.
  780. *
  781. * Note, UBIFS aligns node lengths to 8-bytes boundary, so the requester has to
  782. * make sure the amount of inode data which contribute to @new_ino_d and
  783. * @dirtied_ino_d fields are aligned.
  784. */
  785. struct ubifs_budget_req {
  786. unsigned int fast:1;
  787. unsigned int recalculate:1;
  788. #ifndef UBIFS_DEBUG
  789. unsigned int new_page:1;
  790. unsigned int dirtied_page:1;
  791. unsigned int new_dent:1;
  792. unsigned int mod_dent:1;
  793. unsigned int new_ino:1;
  794. unsigned int new_ino_d:13;
  795. unsigned int dirtied_ino:4;
  796. unsigned int dirtied_ino_d:15;
  797. #else
  798. /* Not bit-fields to check for overflows */
  799. unsigned int new_page;
  800. unsigned int dirtied_page;
  801. unsigned int new_dent;
  802. unsigned int mod_dent;
  803. unsigned int new_ino;
  804. unsigned int new_ino_d;
  805. unsigned int dirtied_ino;
  806. unsigned int dirtied_ino_d;
  807. #endif
  808. int idx_growth;
  809. int data_growth;
  810. int dd_growth;
  811. };
  812. /**
  813. * struct ubifs_orphan - stores the inode number of an orphan.
  814. * @rb: rb-tree node of rb-tree of orphans sorted by inode number
  815. * @list: list head of list of orphans in order added
  816. * @new_list: list head of list of orphans added since the last commit
  817. * @cnext: next orphan to commit
  818. * @dnext: next orphan to delete
  819. * @inum: inode number
  820. * @new: %1 => added since the last commit, otherwise %0
  821. */
  822. struct ubifs_orphan {
  823. struct rb_node rb;
  824. struct list_head list;
  825. struct list_head new_list;
  826. struct ubifs_orphan *cnext;
  827. struct ubifs_orphan *dnext;
  828. ino_t inum;
  829. int new;
  830. };
  831. /**
  832. * struct ubifs_mount_opts - UBIFS-specific mount options information.
  833. * @unmount_mode: selected unmount mode (%0 default, %1 normal, %2 fast)
  834. * @bulk_read: enable bulk-reads
  835. * @chk_data_crc: check CRCs when reading data nodes
  836. */
  837. struct ubifs_mount_opts {
  838. unsigned int unmount_mode:2;
  839. unsigned int bulk_read:2;
  840. unsigned int chk_data_crc:2;
  841. };
  842. /**
  843. * struct ubifs_info - UBIFS file-system description data structure
  844. * (per-superblock).
  845. * @vfs_sb: VFS @struct super_block object
  846. * @bdi: backing device info object to make VFS happy and disable read-ahead
  847. *
  848. * @highest_inum: highest used inode number
  849. * @max_sqnum: current global sequence number
  850. * @cmt_no: commit number of the last successfully completed commit, protected
  851. * by @commit_sem
  852. * @cnt_lock: protects @highest_inum and @max_sqnum counters
  853. * @fmt_version: UBIFS on-flash format version
  854. * @uuid: UUID from super block
  855. *
  856. * @lhead_lnum: log head logical eraseblock number
  857. * @lhead_offs: log head offset
  858. * @ltail_lnum: log tail logical eraseblock number (offset is always 0)
  859. * @log_mutex: protects the log, @lhead_lnum, @lhead_offs, @ltail_lnum, and
  860. * @bud_bytes
  861. * @min_log_bytes: minimum required number of bytes in the log
  862. * @cmt_bud_bytes: used during commit to temporarily amount of bytes in
  863. * committed buds
  864. *
  865. * @buds: tree of all buds indexed by bud LEB number
  866. * @bud_bytes: how many bytes of flash is used by buds
  867. * @buds_lock: protects the @buds tree, @bud_bytes, and per-journal head bud
  868. * lists
  869. * @jhead_cnt: count of journal heads
  870. * @jheads: journal heads (head zero is base head)
  871. * @max_bud_bytes: maximum number of bytes allowed in buds
  872. * @bg_bud_bytes: number of bud bytes when background commit is initiated
  873. * @old_buds: buds to be released after commit ends
  874. * @max_bud_cnt: maximum number of buds
  875. *
  876. * @commit_sem: synchronizes committer with other processes
  877. * @cmt_state: commit state
  878. * @cs_lock: commit state lock
  879. * @cmt_wq: wait queue to sleep on if the log is full and a commit is running
  880. *
  881. * @fast_unmount: do not run journal commit before un-mounting
  882. * @big_lpt: flag that LPT is too big to write whole during commit
  883. * @no_chk_data_crc: do not check CRCs when reading data nodes (except during
  884. * recovery)
  885. * @bulk_read: enable bulk-reads
  886. *
  887. * @tnc_mutex: protects the Tree Node Cache (TNC), @zroot, @cnext, @enext, and
  888. * @calc_idx_sz
  889. * @zroot: zbranch which points to the root index node and znode
  890. * @cnext: next znode to commit
  891. * @enext: next znode to commit to empty space
  892. * @gap_lebs: array of LEBs used by the in-gaps commit method
  893. * @cbuf: commit buffer
  894. * @ileb_buf: buffer for commit in-the-gaps method
  895. * @ileb_len: length of data in ileb_buf
  896. * @ihead_lnum: LEB number of index head
  897. * @ihead_offs: offset of index head
  898. * @ilebs: pre-allocated index LEBs
  899. * @ileb_cnt: number of pre-allocated index LEBs
  900. * @ileb_nxt: next pre-allocated index LEBs
  901. * @old_idx: tree of index nodes obsoleted since the last commit start
  902. * @bottom_up_buf: a buffer which is used by 'dirty_cow_bottom_up()' in tnc.c
  903. * @new_ihead_lnum: used by debugging to check ihead_lnum
  904. * @new_ihead_offs: used by debugging to check ihead_offs
  905. *
  906. * @mst_node: master node
  907. * @mst_offs: offset of valid master node
  908. * @mst_mutex: protects the master node area, @mst_node, and @mst_offs
  909. * @bulk_read_buf_size: buffer size for bulk-reads
  910. *
  911. * @log_lebs: number of logical eraseblocks in the log
  912. * @log_bytes: log size in bytes
  913. * @log_last: last LEB of the log
  914. * @lpt_lebs: number of LEBs used for lprops table
  915. * @lpt_first: first LEB of the lprops table area
  916. * @lpt_last: last LEB of the lprops table area
  917. * @orph_lebs: number of LEBs used for the orphan area
  918. * @orph_first: first LEB of the orphan area
  919. * @orph_last: last LEB of the orphan area
  920. * @main_lebs: count of LEBs in the main area
  921. * @main_first: first LEB of the main area
  922. * @main_bytes: main area size in bytes
  923. * @default_compr: default compression algorithm (%UBIFS_COMPR_LZO, etc)
  924. *
  925. * @key_hash_type: type of the key hash
  926. * @key_hash: direntry key hash function
  927. * @key_fmt: key format
  928. * @key_len: key length
  929. * @fanout: fanout of the index tree (number of links per indexing node)
  930. *
  931. * @min_io_size: minimal input/output unit size
  932. * @min_io_shift: number of bits in @min_io_size minus one
  933. * @leb_size: logical eraseblock size in bytes
  934. * @half_leb_size: half LEB size
  935. * @leb_cnt: count of logical eraseblocks
  936. * @max_leb_cnt: maximum count of logical eraseblocks
  937. * @old_leb_cnt: count of logical eraseblocks before re-size
  938. * @ro_media: the underlying UBI volume is read-only
  939. *
  940. * @dirty_pg_cnt: number of dirty pages (not used)
  941. * @dirty_zn_cnt: number of dirty znodes
  942. * @clean_zn_cnt: number of clean znodes
  943. *
  944. * @budg_idx_growth: amount of bytes budgeted for index growth
  945. * @budg_data_growth: amount of bytes budgeted for cached data
  946. * @budg_dd_growth: amount of bytes budgeted for cached data that will make
  947. * other data dirty
  948. * @budg_uncommitted_idx: amount of bytes were budgeted for growth of the index,
  949. * but which still have to be taken into account because
  950. * the index has not been committed so far
  951. * @space_lock: protects @budg_idx_growth, @budg_data_growth, @budg_dd_growth,
  952. * @budg_uncommited_idx, @min_idx_lebs, @old_idx_sz, @lst,
  953. * @nospace, and @nospace_rp;
  954. * @min_idx_lebs: minimum number of LEBs required for the index
  955. * @old_idx_sz: size of index on flash
  956. * @calc_idx_sz: temporary variable which is used to calculate new index size
  957. * (contains accurate new index size at end of TNC commit start)
  958. * @lst: lprops statistics
  959. * @nospace: non-zero if the file-system does not have flash space (used as
  960. * optimization)
  961. * @nospace_rp: the same as @nospace, but additionally means that even reserved
  962. * pool is full
  963. *
  964. * @page_budget: budget for a page
  965. * @inode_budget: budget for an inode
  966. * @dent_budget: budget for a directory entry
  967. *
  968. * @ref_node_alsz: size of the LEB reference node aligned to the min. flash
  969. * I/O unit
  970. * @mst_node_alsz: master node aligned size
  971. * @min_idx_node_sz: minimum indexing node aligned on 8-bytes boundary
  972. * @max_idx_node_sz: maximum indexing node aligned on 8-bytes boundary
  973. * @max_inode_sz: maximum possible inode size in bytes
  974. * @max_znode_sz: size of znode in bytes
  975. *
  976. * @leb_overhead: how many bytes are wasted in an LEB when it is filled with
  977. * data nodes of maximum size - used in free space reporting
  978. * @dead_wm: LEB dead space watermark
  979. * @dark_wm: LEB dark space watermark
  980. * @block_cnt: count of 4KiB blocks on the FS
  981. *
  982. * @ranges: UBIFS node length ranges
  983. * @ubi: UBI volume descriptor
  984. * @di: UBI device information
  985. * @vi: UBI volume information
  986. *
  987. * @orph_tree: rb-tree of orphan inode numbers
  988. * @orph_list: list of orphan inode numbers in order added
  989. * @orph_new: list of orphan inode numbers added since last commit
  990. * @orph_cnext: next orphan to commit
  991. * @orph_dnext: next orphan to delete
  992. * @orphan_lock: lock for orph_tree and orph_new
  993. * @orph_buf: buffer for orphan nodes
  994. * @new_orphans: number of orphans since last commit
  995. * @cmt_orphans: number of orphans being committed
  996. * @tot_orphans: number of orphans in the rb_tree
  997. * @max_orphans: maximum number of orphans allowed
  998. * @ohead_lnum: orphan head LEB number
  999. * @ohead_offs: orphan head offset
  1000. * @no_orphs: non-zero if there are no orphans
  1001. *
  1002. * @bgt: UBIFS background thread
  1003. * @bgt_name: background thread name
  1004. * @need_bgt: if background thread should run
  1005. * @need_wbuf_sync: if write-buffers have to be synchronized
  1006. *
  1007. * @gc_lnum: LEB number used for garbage collection
  1008. * @sbuf: a buffer of LEB size used by GC and replay for scanning
  1009. * @idx_gc: list of index LEBs that have been garbage collected
  1010. * @idx_gc_cnt: number of elements on the idx_gc list
  1011. * @gc_seq: incremented for every non-index LEB garbage collected
  1012. * @gced_lnum: last non-index LEB that was garbage collected
  1013. *
  1014. * @infos_list: links all 'ubifs_info' objects
  1015. * @umount_mutex: serializes shrinker and un-mount
  1016. * @shrinker_run_no: shrinker run number
  1017. *
  1018. * @space_bits: number of bits needed to record free or dirty space
  1019. * @lpt_lnum_bits: number of bits needed to record a LEB number in the LPT
  1020. * @lpt_offs_bits: number of bits needed to record an offset in the LPT
  1021. * @lpt_spc_bits: number of bits needed to space in the LPT
  1022. * @pcnt_bits: number of bits needed to record pnode or nnode number
  1023. * @lnum_bits: number of bits needed to record LEB number
  1024. * @nnode_sz: size of on-flash nnode
  1025. * @pnode_sz: size of on-flash pnode
  1026. * @ltab_sz: size of on-flash LPT lprops table
  1027. * @lsave_sz: size of on-flash LPT save table
  1028. * @pnode_cnt: number of pnodes
  1029. * @nnode_cnt: number of nnodes
  1030. * @lpt_hght: height of the LPT
  1031. * @pnodes_have: number of pnodes in memory
  1032. *
  1033. * @lp_mutex: protects lprops table and all the other lprops-related fields
  1034. * @lpt_lnum: LEB number of the root nnode of the LPT
  1035. * @lpt_offs: offset of the root nnode of the LPT
  1036. * @nhead_lnum: LEB number of LPT head
  1037. * @nhead_offs: offset of LPT head
  1038. * @lpt_drty_flgs: dirty flags for LPT special nodes e.g. ltab
  1039. * @dirty_nn_cnt: number of dirty nnodes
  1040. * @dirty_pn_cnt: number of dirty pnodes
  1041. * @check_lpt_free: flag that indicates LPT GC may be needed
  1042. * @lpt_sz: LPT size
  1043. * @lpt_nod_buf: buffer for an on-flash nnode or pnode
  1044. * @lpt_buf: buffer of LEB size used by LPT
  1045. * @nroot: address in memory of the root nnode of the LPT
  1046. * @lpt_cnext: next LPT node to commit
  1047. * @lpt_heap: array of heaps of categorized lprops
  1048. * @dirty_idx: a (reverse sorted) copy of the LPROPS_DIRTY_IDX heap as at
  1049. * previous commit start
  1050. * @uncat_list: list of un-categorized LEBs
  1051. * @empty_list: list of empty LEBs
  1052. * @freeable_list: list of freeable non-index LEBs (free + dirty == leb_size)
  1053. * @frdi_idx_list: list of freeable index LEBs (free + dirty == leb_size)
  1054. * @freeable_cnt: number of freeable LEBs in @freeable_list
  1055. *
  1056. * @ltab_lnum: LEB number of LPT's own lprops table
  1057. * @ltab_offs: offset of LPT's own lprops table
  1058. * @ltab: LPT's own lprops table
  1059. * @ltab_cmt: LPT's own lprops table (commit copy)
  1060. * @lsave_cnt: number of LEB numbers in LPT's save table
  1061. * @lsave_lnum: LEB number of LPT's save table
  1062. * @lsave_offs: offset of LPT's save table
  1063. * @lsave: LPT's save table
  1064. * @lscan_lnum: LEB number of last LPT scan
  1065. *
  1066. * @rp_size: size of the reserved pool in bytes
  1067. * @report_rp_size: size of the reserved pool reported to user-space
  1068. * @rp_uid: reserved pool user ID
  1069. * @rp_gid: reserved pool group ID
  1070. *
  1071. * @empty: if the UBI device is empty
  1072. * @replay_tree: temporary tree used during journal replay
  1073. * @replay_list: temporary list used during journal replay
  1074. * @replay_buds: list of buds to replay
  1075. * @cs_sqnum: sequence number of first node in the log (commit start node)
  1076. * @replay_sqnum: sequence number of node currently being replayed
  1077. * @need_recovery: file-system needs recovery
  1078. * @replaying: set to %1 during journal replay
  1079. * @unclean_leb_list: LEBs to recover when mounting ro to rw
  1080. * @rcvrd_mst_node: recovered master node to write when mounting ro to rw
  1081. * @size_tree: inode size information for recovery
  1082. * @remounting_rw: set while remounting from ro to rw (sb flags have MS_RDONLY)
  1083. * @always_chk_crc: always check CRCs (while mounting and remounting rw)
  1084. * @mount_opts: UBIFS-specific mount options
  1085. *
  1086. * @dbg_buf: a buffer of LEB size used for debugging purposes
  1087. * @old_zroot: old index root - used by 'dbg_check_old_index()'
  1088. * @old_zroot_level: old index root level - used by 'dbg_check_old_index()'
  1089. * @old_zroot_sqnum: old index root sqnum - used by 'dbg_check_old_index()'
  1090. * @failure_mode: failure mode for recovery testing
  1091. * @fail_delay: 0=>don't delay, 1=>delay a time, 2=>delay a number of calls
  1092. * @fail_timeout: time in jiffies when delay of failure mode expires
  1093. * @fail_cnt: current number of calls to failure mode I/O functions
  1094. * @fail_cnt_max: number of calls by which to delay failure mode
  1095. */
  1096. struct ubifs_info {
  1097. struct super_block *vfs_sb;
  1098. struct backing_dev_info bdi;
  1099. ino_t highest_inum;
  1100. unsigned long long max_sqnum;
  1101. unsigned long long cmt_no;
  1102. spinlock_t cnt_lock;
  1103. int fmt_version;
  1104. unsigned char uuid[16];
  1105. int lhead_lnum;
  1106. int lhead_offs;
  1107. int ltail_lnum;
  1108. struct mutex log_mutex;
  1109. int min_log_bytes;
  1110. long long cmt_bud_bytes;
  1111. struct rb_root buds;
  1112. long long bud_bytes;
  1113. spinlock_t buds_lock;
  1114. int jhead_cnt;
  1115. struct ubifs_jhead *jheads;
  1116. long long max_bud_bytes;
  1117. long long bg_bud_bytes;
  1118. struct list_head old_buds;
  1119. int max_bud_cnt;
  1120. struct rw_semaphore commit_sem;
  1121. int cmt_state;
  1122. spinlock_t cs_lock;
  1123. wait_queue_head_t cmt_wq;
  1124. unsigned int fast_unmount:1;
  1125. unsigned int big_lpt:1;
  1126. unsigned int no_chk_data_crc:1;
  1127. unsigned int bulk_read:1;
  1128. struct mutex tnc_mutex;
  1129. struct ubifs_zbranch zroot;
  1130. struct ubifs_znode *cnext;
  1131. struct ubifs_znode *enext;
  1132. int *gap_lebs;
  1133. void *cbuf;
  1134. void *ileb_buf;
  1135. int ileb_len;
  1136. int ihead_lnum;
  1137. int ihead_offs;
  1138. int *ilebs;
  1139. int ileb_cnt;
  1140. int ileb_nxt;
  1141. struct rb_root old_idx;
  1142. int *bottom_up_buf;
  1143. #ifdef CONFIG_UBIFS_FS_DEBUG
  1144. int new_ihead_lnum;
  1145. int new_ihead_offs;
  1146. #endif
  1147. struct ubifs_mst_node *mst_node;
  1148. int mst_offs;
  1149. struct mutex mst_mutex;
  1150. int bulk_read_buf_size;
  1151. int log_lebs;
  1152. long long log_bytes;
  1153. int log_last;
  1154. int lpt_lebs;
  1155. int lpt_first;
  1156. int lpt_last;
  1157. int orph_lebs;
  1158. int orph_first;
  1159. int orph_last;
  1160. int main_lebs;
  1161. int main_first;
  1162. long long main_bytes;
  1163. int default_compr;
  1164. uint8_t key_hash_type;
  1165. uint32_t (*key_hash)(const char *str, int len);
  1166. int key_fmt;
  1167. int key_len;
  1168. int fanout;
  1169. int min_io_size;
  1170. int min_io_shift;
  1171. int leb_size;
  1172. int half_leb_size;
  1173. int leb_cnt;
  1174. int max_leb_cnt;
  1175. int old_leb_cnt;
  1176. int ro_media;
  1177. atomic_long_t dirty_pg_cnt;
  1178. atomic_long_t dirty_zn_cnt;
  1179. atomic_long_t clean_zn_cnt;
  1180. long long budg_idx_growth;
  1181. long long budg_data_growth;
  1182. long long budg_dd_growth;
  1183. long long budg_uncommitted_idx;
  1184. spinlock_t space_lock;
  1185. int min_idx_lebs;
  1186. unsigned long long old_idx_sz;
  1187. unsigned long long calc_idx_sz;
  1188. struct ubifs_lp_stats lst;
  1189. unsigned int nospace:1;
  1190. unsigned int nospace_rp:1;
  1191. int page_budget;
  1192. int inode_budget;
  1193. int dent_budget;
  1194. int ref_node_alsz;
  1195. int mst_node_alsz;
  1196. int min_idx_node_sz;
  1197. int max_idx_node_sz;
  1198. long long max_inode_sz;
  1199. int max_znode_sz;
  1200. int leb_overhead;
  1201. int dead_wm;
  1202. int dark_wm;
  1203. int block_cnt;
  1204. struct ubifs_node_range ranges[UBIFS_NODE_TYPES_CNT];
  1205. struct ubi_volume_desc *ubi;
  1206. struct ubi_device_info di;
  1207. struct ubi_volume_info vi;
  1208. struct rb_root orph_tree;
  1209. struct list_head orph_list;
  1210. struct list_head orph_new;
  1211. struct ubifs_orphan *orph_cnext;
  1212. struct ubifs_orphan *orph_dnext;
  1213. spinlock_t orphan_lock;
  1214. void *orph_buf;
  1215. int new_orphans;
  1216. int cmt_orphans;
  1217. int tot_orphans;
  1218. int max_orphans;
  1219. int ohead_lnum;
  1220. int ohead_offs;
  1221. int no_orphs;
  1222. struct task_struct *bgt;
  1223. char bgt_name[sizeof(BGT_NAME_PATTERN) + 9];
  1224. int need_bgt;
  1225. int need_wbuf_sync;
  1226. int gc_lnum;
  1227. void *sbuf;
  1228. struct list_head idx_gc;
  1229. int idx_gc_cnt;
  1230. volatile int gc_seq;
  1231. volatile int gced_lnum;
  1232. struct list_head infos_list;
  1233. struct mutex umount_mutex;
  1234. unsigned int shrinker_run_no;
  1235. int space_bits;
  1236. int lpt_lnum_bits;
  1237. int lpt_offs_bits;
  1238. int lpt_spc_bits;
  1239. int pcnt_bits;
  1240. int lnum_bits;
  1241. int nnode_sz;
  1242. int pnode_sz;
  1243. int ltab_sz;
  1244. int lsave_sz;
  1245. int pnode_cnt;
  1246. int nnode_cnt;
  1247. int lpt_hght;
  1248. int pnodes_have;
  1249. struct mutex lp_mutex;
  1250. int lpt_lnum;
  1251. int lpt_offs;
  1252. int nhead_lnum;
  1253. int nhead_offs;
  1254. int lpt_drty_flgs;
  1255. int dirty_nn_cnt;
  1256. int dirty_pn_cnt;
  1257. int check_lpt_free;
  1258. long long lpt_sz;
  1259. void *lpt_nod_buf;
  1260. void *lpt_buf;
  1261. struct ubifs_nnode *nroot;
  1262. struct ubifs_cnode *lpt_cnext;
  1263. struct ubifs_lpt_heap lpt_heap[LPROPS_HEAP_CNT];
  1264. struct ubifs_lpt_heap dirty_idx;
  1265. struct list_head uncat_list;
  1266. struct list_head empty_list;
  1267. struct list_head freeable_list;
  1268. struct list_head frdi_idx_list;
  1269. int freeable_cnt;
  1270. int ltab_lnum;
  1271. int ltab_offs;
  1272. struct ubifs_lpt_lprops *ltab;
  1273. struct ubifs_lpt_lprops *ltab_cmt;
  1274. int lsave_cnt;
  1275. int lsave_lnum;
  1276. int lsave_offs;
  1277. int *lsave;
  1278. int lscan_lnum;
  1279. long long rp_size;
  1280. long long report_rp_size;
  1281. uid_t rp_uid;
  1282. gid_t rp_gid;
  1283. /* The below fields are used only during mounting and re-mounting */
  1284. int empty;
  1285. struct rb_root replay_tree;
  1286. struct list_head replay_list;
  1287. struct list_head replay_buds;
  1288. unsigned long long cs_sqnum;
  1289. unsigned long long replay_sqnum;
  1290. int need_recovery;
  1291. int replaying;
  1292. struct list_head unclean_leb_list;
  1293. struct ubifs_mst_node *rcvrd_mst_node;
  1294. struct rb_root size_tree;
  1295. int remounting_rw;
  1296. int always_chk_crc;
  1297. struct ubifs_mount_opts mount_opts;
  1298. #ifdef CONFIG_UBIFS_FS_DEBUG
  1299. void *dbg_buf;
  1300. struct ubifs_zbranch old_zroot;
  1301. int old_zroot_level;
  1302. unsigned long long old_zroot_sqnum;
  1303. int failure_mode;
  1304. int fail_delay;
  1305. unsigned long fail_timeout;
  1306. unsigned int fail_cnt;
  1307. unsigned int fail_cnt_max;
  1308. long long chk_lpt_sz;
  1309. long long chk_lpt_sz2;
  1310. long long chk_lpt_wastage;
  1311. int chk_lpt_lebs;
  1312. int new_nhead_lnum;
  1313. int new_nhead_offs;
  1314. #endif
  1315. };
  1316. extern struct list_head ubifs_infos;
  1317. extern spinlock_t ubifs_infos_lock;
  1318. extern atomic_long_t ubifs_clean_zn_cnt;
  1319. extern struct kmem_cache *ubifs_inode_slab;
  1320. extern struct super_operations ubifs_super_operations;
  1321. extern struct address_space_operations ubifs_file_address_operations;
  1322. extern struct file_operations ubifs_file_operations;
  1323. extern struct inode_operations ubifs_file_inode_operations;
  1324. extern struct file_operations ubifs_dir_operations;
  1325. extern struct inode_operations ubifs_dir_inode_operations;
  1326. extern struct inode_operations ubifs_symlink_inode_operations;
  1327. extern struct backing_dev_info ubifs_backing_dev_info;
  1328. extern struct ubifs_compressor *ubifs_compressors[UBIFS_COMPR_TYPES_CNT];
  1329. /* io.c */
  1330. void ubifs_ro_mode(struct ubifs_info *c, int err);
  1331. int ubifs_wbuf_write_nolock(struct ubifs_wbuf *wbuf, void *buf, int len);
  1332. int ubifs_wbuf_seek_nolock(struct ubifs_wbuf *wbuf, int lnum, int offs,
  1333. int dtype);
  1334. int ubifs_wbuf_init(struct ubifs_info *c, struct ubifs_wbuf *wbuf);
  1335. int ubifs_read_node(const struct ubifs_info *c, void *buf, int type, int len,
  1336. int lnum, int offs);
  1337. int ubifs_read_node_wbuf(struct ubifs_wbuf *wbuf, void *buf, int type, int len,
  1338. int lnum, int offs);
  1339. int ubifs_write_node(struct ubifs_info *c, void *node, int len, int lnum,
  1340. int offs, int dtype);
  1341. int ubifs_check_node(const struct ubifs_info *c, const void *buf, int lnum,
  1342. int offs, int quiet, int chk_crc);
  1343. void ubifs_prepare_node(struct ubifs_info *c, void *buf, int len, int pad);
  1344. void ubifs_prep_grp_node(struct ubifs_info *c, void *node, int len, int last);
  1345. int ubifs_io_init(struct ubifs_info *c);
  1346. void ubifs_pad(const struct ubifs_info *c, void *buf, int pad);
  1347. int ubifs_wbuf_sync_nolock(struct ubifs_wbuf *wbuf);
  1348. int ubifs_bg_wbufs_sync(struct ubifs_info *c);
  1349. void ubifs_wbuf_add_ino_nolock(struct ubifs_wbuf *wbuf, ino_t inum);
  1350. int ubifs_sync_wbufs_by_inode(struct ubifs_info *c, struct inode *inode);
  1351. /* scan.c */
  1352. struct ubifs_scan_leb *ubifs_scan(const struct ubifs_info *c, int lnum,
  1353. int offs, void *sbuf);
  1354. void ubifs_scan_destroy(struct ubifs_scan_leb *sleb);
  1355. int ubifs_scan_a_node(const struct ubifs_info *c, void *buf, int len, int lnum,
  1356. int offs, int quiet);
  1357. struct ubifs_scan_leb *ubifs_start_scan(const struct ubifs_info *c, int lnum,
  1358. int offs, void *sbuf);
  1359. void ubifs_end_scan(const struct ubifs_info *c, struct ubifs_scan_leb *sleb,
  1360. int lnum, int offs);
  1361. int ubifs_add_snod(const struct ubifs_info *c, struct ubifs_scan_leb *sleb,
  1362. void *buf, int offs);
  1363. void ubifs_scanned_corruption(const struct ubifs_info *c, int lnum, int offs,
  1364. void *buf);
  1365. /* log.c */
  1366. void ubifs_add_bud(struct ubifs_info *c, struct ubifs_bud *bud);
  1367. void ubifs_create_buds_lists(struct ubifs_info *c);
  1368. int ubifs_add_bud_to_log(struct ubifs_info *c, int jhead, int lnum, int offs);
  1369. struct ubifs_bud *ubifs_search_bud(struct ubifs_info *c, int lnum);
  1370. struct ubifs_wbuf *ubifs_get_wbuf(struct ubifs_info *c, int lnum);
  1371. int ubifs_log_start_commit(struct ubifs_info *c, int *ltail_lnum);
  1372. int ubifs_log_end_commit(struct ubifs_info *c, int new_ltail_lnum);
  1373. int ubifs_log_post_commit(struct ubifs_info *c, int old_ltail_lnum);
  1374. int ubifs_consolidate_log(struct ubifs_info *c);
  1375. /* journal.c */
  1376. int ubifs_jnl_update(struct ubifs_info *c, const struct inode *dir,
  1377. const struct qstr *nm, const struct inode *inode,
  1378. int deletion, int xent);
  1379. int ubifs_jnl_write_data(struct ubifs_info *c, const struct inode *inode,
  1380. const union ubifs_key *key, const void *buf, int len);
  1381. int ubifs_jnl_write_inode(struct ubifs_info *c, const struct inode *inode);
  1382. int ubifs_jnl_delete_inode(struct ubifs_info *c, const struct inode *inode);
  1383. int ubifs_jnl_rename(struct ubifs_info *c, const struct inode *old_dir,
  1384. const struct dentry *old_dentry,
  1385. const struct inode *new_dir,
  1386. const struct dentry *new_dentry, int sync);
  1387. int ubifs_jnl_truncate(struct ubifs_info *c, const struct inode *inode,
  1388. loff_t old_size, loff_t new_size);
  1389. int ubifs_jnl_delete_xattr(struct ubifs_info *c, const struct inode *host,
  1390. const struct inode *inode, const struct qstr *nm);
  1391. int ubifs_jnl_change_xattr(struct ubifs_info *c, const struct inode *inode1,
  1392. const struct inode *inode2);
  1393. /* budget.c */
  1394. int ubifs_budget_space(struct ubifs_info *c, struct ubifs_budget_req *req);
  1395. void ubifs_release_budget(struct ubifs_info *c, struct ubifs_budget_req *req);
  1396. void ubifs_release_dirty_inode_budget(struct ubifs_info *c,
  1397. struct ubifs_inode *ui);
  1398. int ubifs_budget_inode_op(struct ubifs_info *c, struct inode *inode,
  1399. struct ubifs_budget_req *req);
  1400. void ubifs_release_ino_dirty(struct ubifs_info *c, struct inode *inode,
  1401. struct ubifs_budget_req *req);
  1402. void ubifs_cancel_ino_op(struct ubifs_info *c, struct inode *inode,
  1403. struct ubifs_budget_req *req);
  1404. long long ubifs_get_free_space(struct ubifs_info *c);
  1405. int ubifs_calc_min_idx_lebs(struct ubifs_info *c);
  1406. void ubifs_convert_page_budget(struct ubifs_info *c);
  1407. long long ubifs_reported_space(const struct ubifs_info *c, uint64_t free);
  1408. long long ubifs_calc_available(const struct ubifs_info *c, int min_idx_lebs);
  1409. /* find.c */
  1410. int ubifs_find_free_space(struct ubifs_info *c, int min_space, int *free,
  1411. int squeeze);
  1412. int ubifs_find_free_leb_for_idx(struct ubifs_info *c);
  1413. int ubifs_find_dirty_leb(struct ubifs_info *c, struct ubifs_lprops *ret_lp,
  1414. int min_space, int pick_free);
  1415. int ubifs_find_dirty_idx_leb(struct ubifs_info *c);
  1416. int ubifs_save_dirty_idx_lnums(struct ubifs_info *c);
  1417. /* tnc.c */
  1418. int ubifs_lookup_level0(struct ubifs_info *c, const union ubifs_key *key,
  1419. struct ubifs_znode **zn, int *n);
  1420. int ubifs_tnc_lookup_nm(struct ubifs_info *c, const union ubifs_key *key,
  1421. void *node, const struct qstr *nm);
  1422. int ubifs_tnc_locate(struct ubifs_info *c, const union ubifs_key *key,
  1423. void *node, int *lnum, int *offs);
  1424. int ubifs_tnc_add(struct ubifs_info *c, const union ubifs_key *key, int lnum,
  1425. int offs, int len);
  1426. int ubifs_tnc_replace(struct ubifs_info *c, const union ubifs_key *key,
  1427. int old_lnum, int old_offs, int lnum, int offs, int len);
  1428. int ubifs_tnc_add_nm(struct ubifs_info *c, const union ubifs_key *key,
  1429. int lnum, int offs, int len, const struct qstr *nm);
  1430. int ubifs_tnc_remove(struct ubifs_info *c, const union ubifs_key *key);
  1431. int ubifs_tnc_remove_nm(struct ubifs_info *c, const union ubifs_key *key,
  1432. const struct qstr *nm);
  1433. int ubifs_tnc_remove_range(struct ubifs_info *c, union ubifs_key *from_key,
  1434. union ubifs_key *to_key);
  1435. int ubifs_tnc_remove_ino(struct ubifs_info *c, ino_t inum);
  1436. struct ubifs_dent_node *ubifs_tnc_next_ent(struct ubifs_info *c,
  1437. union ubifs_key *key,
  1438. const struct qstr *nm);
  1439. void ubifs_tnc_close(struct ubifs_info *c);
  1440. int ubifs_tnc_has_node(struct ubifs_info *c, union ubifs_key *key, int level,
  1441. int lnum, int offs, int is_idx);
  1442. int ubifs_dirty_idx_node(struct ubifs_info *c, union ubifs_key *key, int level,
  1443. int lnum, int offs);
  1444. /* Shared by tnc.c for tnc_commit.c */
  1445. void destroy_old_idx(struct ubifs_info *c);
  1446. int is_idx_node_in_tnc(struct ubifs_info *c, union ubifs_key *key, int level,
  1447. int lnum, int offs);
  1448. int insert_old_idx_znode(struct ubifs_info *c, struct ubifs_znode *znode);
  1449. int ubifs_tnc_get_bu_keys(struct ubifs_info *c, struct bu_info *bu);
  1450. int ubifs_tnc_bulk_read(struct ubifs_info *c, struct bu_info *bu);
  1451. /* tnc_misc.c */
  1452. struct ubifs_znode *ubifs_tnc_levelorder_next(struct ubifs_znode *zr,
  1453. struct ubifs_znode *znode);
  1454. int ubifs_search_zbranch(const struct ubifs_info *c,
  1455. const struct ubifs_znode *znode,
  1456. const union ubifs_key *key, int *n);
  1457. struct ubifs_znode *ubifs_tnc_postorder_first(struct ubifs_znode *znode);
  1458. struct ubifs_znode *ubifs_tnc_postorder_next(struct ubifs_znode *znode);
  1459. long ubifs_destroy_tnc_subtree(struct ubifs_znode *zr);
  1460. struct ubifs_znode *ubifs_load_znode(struct ubifs_info *c,
  1461. struct ubifs_zbranch *zbr,
  1462. struct ubifs_znode *parent, int iip);
  1463. int ubifs_tnc_read_node(struct ubifs_info *c, struct ubifs_zbranch *zbr,
  1464. void *node);
  1465. /* tnc_commit.c */
  1466. int ubifs_tnc_start_commit(struct ubifs_info *c, struct ubifs_zbranch *zroot);
  1467. int ubifs_tnc_end_commit(struct ubifs_info *c);
  1468. /* shrinker.c */
  1469. int ubifs_shrinker(int nr_to_scan, gfp_t gfp_mask);
  1470. /* commit.c */
  1471. int ubifs_bg_thread(void *info);
  1472. void ubifs_commit_required(struct ubifs_info *c);
  1473. void ubifs_request_bg_commit(struct ubifs_info *c);
  1474. int ubifs_run_commit(struct ubifs_info *c);
  1475. void ubifs_recovery_commit(struct ubifs_info *c);
  1476. int ubifs_gc_should_commit(struct ubifs_info *c);
  1477. void ubifs_wait_for_commit(struct ubifs_info *c);
  1478. /* master.c */
  1479. int ubifs_read_master(struct ubifs_info *c);
  1480. int ubifs_write_master(struct ubifs_info *c);
  1481. /* sb.c */
  1482. int ubifs_read_superblock(struct ubifs_info *c);
  1483. struct ubifs_sb_node *ubifs_read_sb_node(struct ubifs_info *c);
  1484. int ubifs_write_sb_node(struct ubifs_info *c, struct ubifs_sb_node *sup);
  1485. /* replay.c */
  1486. int ubifs_validate_entry(struct ubifs_info *c,
  1487. const struct ubifs_dent_node *dent);
  1488. int ubifs_replay_journal(struct ubifs_info *c);
  1489. /* gc.c */
  1490. int ubifs_garbage_collect(struct ubifs_info *c, int anyway);
  1491. int ubifs_gc_start_commit(struct ubifs_info *c);
  1492. int ubifs_gc_end_commit(struct ubifs_info *c);
  1493. void ubifs_destroy_idx_gc(struct ubifs_info *c);
  1494. int ubifs_get_idx_gc_leb(struct ubifs_info *c);
  1495. int ubifs_garbage_collect_leb(struct ubifs_info *c, struct ubifs_lprops *lp);
  1496. /* orphan.c */
  1497. int ubifs_add_orphan(struct ubifs_info *c, ino_t inum);
  1498. void ubifs_delete_orphan(struct ubifs_info *c, ino_t inum);
  1499. int ubifs_orphan_start_commit(struct ubifs_info *c);
  1500. int ubifs_orphan_end_commit(struct ubifs_info *c);
  1501. int ubifs_mount_orphans(struct ubifs_info *c, int unclean, int read_only);
  1502. /* lpt.c */
  1503. int ubifs_calc_lpt_geom(struct ubifs_info *c);
  1504. int ubifs_create_dflt_lpt(struct ubifs_info *c, int *main_lebs, int lpt_first,
  1505. int *lpt_lebs, int *big_lpt);
  1506. int ubifs_lpt_init(struct ubifs_info *c, int rd, int wr);
  1507. struct ubifs_lprops *ubifs_lpt_lookup(struct ubifs_info *c, int lnum);
  1508. struct ubifs_lprops *ubifs_lpt_lookup_dirty(struct ubifs_info *c, int lnum);
  1509. int ubifs_lpt_scan_nolock(struct ubifs_info *c, int start_lnum, int end_lnum,
  1510. ubifs_lpt_scan_callback scan_cb, void *data);
  1511. /* Shared by lpt.c for lpt_commit.c */
  1512. void ubifs_pack_lsave(struct ubifs_info *c, void *buf, int *lsave);
  1513. void ubifs_pack_ltab(struct ubifs_info *c, void *buf,
  1514. struct ubifs_lpt_lprops *ltab);
  1515. void ubifs_pack_pnode(struct ubifs_info *c, void *buf,
  1516. struct ubifs_pnode *pnode);
  1517. void ubifs_pack_nnode(struct ubifs_info *c, void *buf,
  1518. struct ubifs_nnode *nnode);
  1519. struct ubifs_pnode *ubifs_get_pnode(struct ubifs_info *c,
  1520. struct ubifs_nnode *parent, int iip);
  1521. struct ubifs_nnode *ubifs_get_nnode(struct ubifs_info *c,
  1522. struct ubifs_nnode *parent, int iip);
  1523. int ubifs_read_nnode(struct ubifs_info *c, struct ubifs_nnode *parent, int iip);
  1524. void ubifs_add_lpt_dirt(struct ubifs_info *c, int lnum, int dirty);
  1525. void ubifs_add_nnode_dirt(struct ubifs_info *c, struct ubifs_nnode *nnode);
  1526. uint32_t ubifs_unpack_bits(uint8_t **addr, int *pos, int nrbits);
  1527. struct ubifs_nnode *ubifs_first_nnode(struct ubifs_info *c, int *hght);
  1528. /* lpt_commit.c */
  1529. int ubifs_lpt_start_commit(struct ubifs_info *c);
  1530. int ubifs_lpt_end_commit(struct ubifs_info *c);
  1531. int ubifs_lpt_post_commit(struct ubifs_info *c);
  1532. void ubifs_lpt_free(struct ubifs_info *c, int wr_only);
  1533. /* lprops.c */
  1534. const struct ubifs_lprops *ubifs_change_lp(struct ubifs_info *c,
  1535. const struct ubifs_lprops *lp,
  1536. int free, int dirty, int flags,
  1537. int idx_gc_cnt);
  1538. void ubifs_get_lp_stats(struct ubifs_info *c, struct ubifs_lp_stats *stats);
  1539. void ubifs_add_to_cat(struct ubifs_info *c, struct ubifs_lprops *lprops,
  1540. int cat);
  1541. void ubifs_replace_cat(struct ubifs_info *c, struct ubifs_lprops *old_lprops,
  1542. struct ubifs_lprops *new_lprops);
  1543. void ubifs_ensure_cat(struct ubifs_info *c, struct ubifs_lprops *lprops);
  1544. int ubifs_categorize_lprops(const struct ubifs_info *c,
  1545. const struct ubifs_lprops *lprops);
  1546. int ubifs_change_one_lp(struct ubifs_info *c, int lnum, int free, int dirty,
  1547. int flags_set, int flags_clean, int idx_gc_cnt);
  1548. int ubifs_update_one_lp(struct ubifs_info *c, int lnum, int free, int dirty,
  1549. int flags_set, int flags_clean);
  1550. int ubifs_read_one_lp(struct ubifs_info *c, int lnum, struct ubifs_lprops *lp);
  1551. const struct ubifs_lprops *ubifs_fast_find_free(struct ubifs_info *c);
  1552. const struct ubifs_lprops *ubifs_fast_find_empty(struct ubifs_info *c);
  1553. const struct ubifs_lprops *ubifs_fast_find_freeable(struct ubifs_info *c);
  1554. const struct ubifs_lprops *ubifs_fast_find_frdi_idx(struct ubifs_info *c);
  1555. /* file.c */
  1556. int ubifs_fsync(struct file *file, struct dentry *dentry, int datasync);
  1557. int ubifs_setattr(struct dentry *dentry, struct iattr *attr);
  1558. /* dir.c */
  1559. struct inode *ubifs_new_inode(struct ubifs_info *c, const struct inode *dir,
  1560. int mode);
  1561. int ubifs_getattr(struct vfsmount *mnt, struct dentry *dentry,
  1562. struct kstat *stat);
  1563. /* xattr.c */
  1564. int ubifs_setxattr(struct dentry *dentry, const char *name,
  1565. const void *value, size_t size, int flags);
  1566. ssize_t ubifs_getxattr(struct dentry *dentry, const char *name, void *buf,
  1567. size_t size);
  1568. ssize_t ubifs_listxattr(struct dentry *dentry, char *buffer, size_t size);
  1569. int ubifs_removexattr(struct dentry *dentry, const char *name);
  1570. /* super.c */
  1571. struct inode *ubifs_iget(struct super_block *sb, unsigned long inum);
  1572. /* recovery.c */
  1573. int ubifs_recover_master_node(struct ubifs_info *c);
  1574. int ubifs_write_rcvrd_mst_node(struct ubifs_info *c);
  1575. struct ubifs_scan_leb *ubifs_recover_leb(struct ubifs_info *c, int lnum,
  1576. int offs, void *sbuf, int grouped);
  1577. struct ubifs_scan_leb *ubifs_recover_log_leb(struct ubifs_info *c, int lnum,
  1578. int offs, void *sbuf);
  1579. int ubifs_recover_inl_heads(const struct ubifs_info *c, void *sbuf);
  1580. int ubifs_clean_lebs(const struct ubifs_info *c, void *sbuf);
  1581. int ubifs_rcvry_gc_commit(struct ubifs_info *c);
  1582. int ubifs_recover_size_accum(struct ubifs_info *c, union ubifs_key *key,
  1583. int deletion, loff_t new_size);
  1584. int ubifs_recover_size(struct ubifs_info *c);
  1585. void ubifs_destroy_size_tree(struct ubifs_info *c);
  1586. /* ioctl.c */
  1587. long ubifs_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
  1588. void ubifs_set_inode_flags(struct inode *inode);
  1589. #ifdef CONFIG_COMPAT
  1590. long ubifs_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
  1591. #endif
  1592. /* compressor.c */
  1593. int __init ubifs_compressors_init(void);
  1594. void __exit ubifs_compressors_exit(void);
  1595. void ubifs_compress(const void *in_buf, int in_len, void *out_buf, int *out_len,
  1596. int *compr_type);
  1597. int ubifs_decompress(const void *buf, int len, void *out, int *out_len,
  1598. int compr_type);
  1599. #include "debug.h"
  1600. #include "misc.h"
  1601. #include "key.h"
  1602. #endif /* !__UBIFS_H__ */