lfs.h 25 KB

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  1. /*
  2. * The little filesystem
  3. *
  4. * Copyright (c) 2022, The littlefs authors.
  5. * Copyright (c) 2017, Arm Limited. All rights reserved.
  6. * SPDX-License-Identifier: BSD-3-Clause
  7. */
  8. #ifndef LFS_H
  9. #define LFS_H
  10. #include "lfs_util.h"
  11. #ifdef __cplusplus
  12. extern "C"
  13. {
  14. #endif
  15. /// Version info ///
  16. // Software library version
  17. // Major (top-nibble), incremented on backwards incompatible changes
  18. // Minor (bottom-nibble), incremented on feature additions
  19. #define LFS_VERSION 0x00020008
  20. #define LFS_VERSION_MAJOR (0xffff & (LFS_VERSION >> 16))
  21. #define LFS_VERSION_MINOR (0xffff & (LFS_VERSION >> 0))
  22. // Version of On-disk data structures
  23. // Major (top-nibble), incremented on backwards incompatible changes
  24. // Minor (bottom-nibble), incremented on feature additions
  25. #define LFS_DISK_VERSION 0x00020001
  26. #define LFS_DISK_VERSION_MAJOR (0xffff & (LFS_DISK_VERSION >> 16))
  27. #define LFS_DISK_VERSION_MINOR (0xffff & (LFS_DISK_VERSION >> 0))
  28. /// Definitions ///
  29. // Type definitions
  30. typedef uint32_t lfs_size_t;
  31. typedef uint32_t lfs_off_t;
  32. typedef int32_t lfs_ssize_t;
  33. typedef int32_t lfs_soff_t;
  34. typedef uint32_t lfs_block_t;
  35. // Maximum name size in bytes, may be redefined to reduce the size of the
  36. // info struct. Limited to <= 1022. Stored in superblock and must be
  37. // respected by other littlefs drivers.
  38. #ifndef LFS_NAME_MAX
  39. #define LFS_NAME_MAX 255
  40. #endif
  41. // Maximum size of a file in bytes, may be redefined to limit to support other
  42. // drivers. Limited on disk to <= 4294967296. However, above 2147483647 the
  43. // functions lfs_file_seek, lfs_file_size, and lfs_file_tell will return
  44. // incorrect values due to using signed integers. Stored in superblock and
  45. // must be respected by other littlefs drivers.
  46. #ifndef LFS_FILE_MAX
  47. #define LFS_FILE_MAX 2147483647
  48. #endif
  49. // Maximum size of custom attributes in bytes, may be redefined, but there is
  50. // no real benefit to using a smaller LFS_ATTR_MAX. Limited to <= 1022.
  51. #ifndef LFS_ATTR_MAX
  52. #define LFS_ATTR_MAX 1022
  53. #endif
  54. // Possible error codes, these are negative to allow
  55. // valid positive return values
  56. enum lfs_error {
  57. LFS_ERR_OK = 0, // No error
  58. LFS_ERR_IO = -5, // Error during device operation
  59. LFS_ERR_CORRUPT = -84, // Corrupted
  60. LFS_ERR_NOENT = -2, // No directory entry
  61. LFS_ERR_EXIST = -17, // Entry already exists
  62. LFS_ERR_NOTDIR = -20, // Entry is not a dir
  63. LFS_ERR_ISDIR = -21, // Entry is a dir
  64. LFS_ERR_NOTEMPTY = -39, // Dir is not empty
  65. LFS_ERR_BADF = -9, // Bad file number
  66. LFS_ERR_FBIG = -27, // File too large
  67. LFS_ERR_INVAL = -22, // Invalid parameter
  68. LFS_ERR_NOSPC = -28, // No space left on device
  69. LFS_ERR_NOMEM = -12, // No more memory available
  70. LFS_ERR_NOATTR = -61, // No data/attr available
  71. LFS_ERR_NAMETOOLONG = -36, // File name too long
  72. };
  73. // File types
  74. enum lfs_type {
  75. // file types
  76. LFS_TYPE_REG = 0x001,
  77. LFS_TYPE_DIR = 0x002,
  78. // internally used types
  79. LFS_TYPE_SPLICE = 0x400,
  80. LFS_TYPE_NAME = 0x000,
  81. LFS_TYPE_STRUCT = 0x200,
  82. LFS_TYPE_USERATTR = 0x300,
  83. LFS_TYPE_FROM = 0x100,
  84. LFS_TYPE_TAIL = 0x600,
  85. LFS_TYPE_GLOBALS = 0x700,
  86. LFS_TYPE_CRC = 0x500,
  87. // internally used type specializations
  88. LFS_TYPE_CREATE = 0x401,
  89. LFS_TYPE_DELETE = 0x4ff,
  90. LFS_TYPE_SUPERBLOCK = 0x0ff,
  91. LFS_TYPE_DIRSTRUCT = 0x200,
  92. LFS_TYPE_CTZSTRUCT = 0x202,
  93. LFS_TYPE_INLINESTRUCT = 0x201,
  94. LFS_TYPE_SOFTTAIL = 0x600,
  95. LFS_TYPE_HARDTAIL = 0x601,
  96. LFS_TYPE_MOVESTATE = 0x7ff,
  97. LFS_TYPE_CCRC = 0x500,
  98. LFS_TYPE_FCRC = 0x5ff,
  99. // internal chip sources
  100. LFS_FROM_NOOP = 0x000,
  101. LFS_FROM_MOVE = 0x101,
  102. LFS_FROM_USERATTRS = 0x102,
  103. };
  104. // File open flags
  105. enum lfs_open_flags {
  106. // open flags
  107. LFS_O_RDONLY = 1, // Open a file as read only
  108. #ifndef LFS_READONLY
  109. LFS_O_WRONLY = 2, // Open a file as write only
  110. LFS_O_RDWR = 3, // Open a file as read and write
  111. LFS_O_CREAT = 0x0100, // Create a file if it does not exist
  112. LFS_O_EXCL = 0x0200, // Fail if a file already exists
  113. LFS_O_TRUNC = 0x0400, // Truncate the existing file to zero size
  114. LFS_O_APPEND = 0x0800, // Move to end of file on every write
  115. #endif
  116. // internally used flags
  117. #ifndef LFS_READONLY
  118. LFS_F_DIRTY = 0x010000, // File does not match storage
  119. LFS_F_WRITING = 0x020000, // File has been written since last flush
  120. #endif
  121. LFS_F_READING = 0x040000, // File has been read since last flush
  122. #ifndef LFS_READONLY
  123. LFS_F_ERRED = 0x080000, // An error occurred during write
  124. #endif
  125. LFS_F_INLINE = 0x100000, // Currently inlined in directory entry
  126. };
  127. // File seek flags
  128. enum lfs_whence_flags {
  129. LFS_SEEK_SET = 0, // Seek relative to an absolute position
  130. LFS_SEEK_CUR = 1, // Seek relative to the current file position
  131. LFS_SEEK_END = 2, // Seek relative to the end of the file
  132. };
  133. // Configuration provided during initialization of the littlefs
  134. struct lfs_config {
  135. // Opaque user provided context that can be used to pass
  136. // information to the block device operations
  137. void *context;
  138. // Read a region in a block. Negative error codes are propagated
  139. // to the user.
  140. int (*read)(const struct lfs_config *c, lfs_block_t block,
  141. lfs_off_t off, void *buffer, lfs_size_t size);
  142. // Program a region in a block. The block must have previously
  143. // been erased. Negative error codes are propagated to the user.
  144. // May return LFS_ERR_CORRUPT if the block should be considered bad.
  145. int (*prog)(const struct lfs_config *c, lfs_block_t block,
  146. lfs_off_t off, const void *buffer, lfs_size_t size);
  147. // Erase a block. A block must be erased before being programmed.
  148. // The state of an erased block is undefined. Negative error codes
  149. // are propagated to the user.
  150. // May return LFS_ERR_CORRUPT if the block should be considered bad.
  151. int (*erase)(const struct lfs_config *c, lfs_block_t block);
  152. // Sync the state of the underlying block device. Negative error codes
  153. // are propagated to the user.
  154. int (*sync)(const struct lfs_config *c);
  155. #ifdef LFS_THREADSAFE
  156. // Lock the underlying block device. Negative error codes
  157. // are propagated to the user.
  158. int (*lock)(const struct lfs_config *c);
  159. // Unlock the underlying block device. Negative error codes
  160. // are propagated to the user.
  161. int (*unlock)(const struct lfs_config *c);
  162. #endif
  163. // Minimum size of a block read in bytes. All read operations will be a
  164. // multiple of this value.
  165. lfs_size_t read_size;
  166. // Minimum size of a block program in bytes. All program operations will be
  167. // a multiple of this value.
  168. lfs_size_t prog_size;
  169. // Size of an erasable block in bytes. This does not impact ram consumption
  170. // and may be larger than the physical erase size. However, non-inlined
  171. // files take up at minimum one block. Must be a multiple of the read and
  172. // program sizes.
  173. lfs_size_t block_size;
  174. // Number of erasable blocks on the device.
  175. lfs_size_t block_count;
  176. // Number of erase cycles before littlefs evicts metadata logs and moves
  177. // the metadata to another block. Suggested values are in the
  178. // range 100-1000, with large values having better performance at the cost
  179. // of less consistent wear distribution.
  180. //
  181. // Set to -1 to disable block-level wear-leveling.
  182. int32_t block_cycles;
  183. // Size of block caches in bytes. Each cache buffers a portion of a block in
  184. // RAM. The littlefs needs a read cache, a program cache, and one additional
  185. // cache per file. Larger caches can improve performance by storing more
  186. // data and reducing the number of disk accesses. Must be a multiple of the
  187. // read and program sizes, and a factor of the block size.
  188. lfs_size_t cache_size;
  189. // Size of the lookahead buffer in bytes. A larger lookahead buffer
  190. // increases the number of blocks found during an allocation pass. The
  191. // lookahead buffer is stored as a compact bitmap, so each byte of RAM
  192. // can track 8 blocks.
  193. lfs_size_t lookahead_size;
  194. // Threshold for metadata compaction during lfs_fs_gc in bytes. Metadata
  195. // pairs that exceed this threshold will be compacted during lfs_fs_gc.
  196. // Defaults to ~88% block_size when zero, though the default may change
  197. // in the future.
  198. //
  199. // Note this only affects lfs_fs_gc. Normal compactions still only occur
  200. // when full.
  201. //
  202. // Set to -1 to disable metadata compaction during lfs_fs_gc.
  203. lfs_size_t compact_thresh;
  204. // Optional statically allocated read buffer. Must be cache_size.
  205. // By default lfs_malloc is used to allocate this buffer.
  206. void *read_buffer;
  207. // Optional statically allocated program buffer. Must be cache_size.
  208. // By default lfs_malloc is used to allocate this buffer.
  209. void *prog_buffer;
  210. // Optional statically allocated lookahead buffer. Must be lookahead_size.
  211. // By default lfs_malloc is used to allocate this buffer.
  212. void *lookahead_buffer;
  213. // Optional upper limit on length of file names in bytes. No downside for
  214. // larger names except the size of the info struct which is controlled by
  215. // the LFS_NAME_MAX define. Defaults to LFS_NAME_MAX when zero. Stored in
  216. // superblock and must be respected by other littlefs drivers.
  217. lfs_size_t name_max;
  218. // Optional upper limit on files in bytes. No downside for larger files
  219. // but must be <= LFS_FILE_MAX. Defaults to LFS_FILE_MAX when zero. Stored
  220. // in superblock and must be respected by other littlefs drivers.
  221. lfs_size_t file_max;
  222. // Optional upper limit on custom attributes in bytes. No downside for
  223. // larger attributes size but must be <= LFS_ATTR_MAX. Defaults to
  224. // LFS_ATTR_MAX when zero.
  225. lfs_size_t attr_max;
  226. // Optional upper limit on total space given to metadata pairs in bytes. On
  227. // devices with large blocks (e.g. 128kB) setting this to a low size (2-8kB)
  228. // can help bound the metadata compaction time. Must be <= block_size.
  229. // Defaults to block_size when zero.
  230. lfs_size_t metadata_max;
  231. #ifdef LFS_MULTIVERSION
  232. // On-disk version to use when writing in the form of 16-bit major version
  233. // + 16-bit minor version. This limiting metadata to what is supported by
  234. // older minor versions. Note that some features will be lost. Defaults to
  235. // to the most recent minor version when zero.
  236. uint32_t disk_version;
  237. #endif
  238. };
  239. // File info structure
  240. struct lfs_info {
  241. // Type of the file, either LFS_TYPE_REG or LFS_TYPE_DIR
  242. uint8_t type;
  243. // Size of the file, only valid for REG files. Limited to 32-bits.
  244. lfs_size_t size;
  245. // Name of the file stored as a null-terminated string. Limited to
  246. // LFS_NAME_MAX+1, which can be changed by redefining LFS_NAME_MAX to
  247. // reduce RAM. LFS_NAME_MAX is stored in superblock and must be
  248. // respected by other littlefs drivers.
  249. char name[LFS_NAME_MAX+1];
  250. };
  251. // Filesystem info structure
  252. struct lfs_fsinfo {
  253. // On-disk version.
  254. uint32_t disk_version;
  255. // Size of a logical block in bytes.
  256. lfs_size_t block_size;
  257. // Number of logical blocks in filesystem.
  258. lfs_size_t block_count;
  259. // Upper limit on the length of file names in bytes.
  260. lfs_size_t name_max;
  261. // Upper limit on the size of files in bytes.
  262. lfs_size_t file_max;
  263. // Upper limit on the size of custom attributes in bytes.
  264. lfs_size_t attr_max;
  265. };
  266. // Custom attribute structure, used to describe custom attributes
  267. // committed atomically during file writes.
  268. struct lfs_attr {
  269. // 8-bit type of attribute, provided by user and used to
  270. // identify the attribute
  271. uint8_t type;
  272. // Pointer to buffer containing the attribute
  273. void *buffer;
  274. // Size of attribute in bytes, limited to LFS_ATTR_MAX
  275. lfs_size_t size;
  276. };
  277. // Optional configuration provided during lfs_file_opencfg
  278. struct lfs_file_config {
  279. // Optional statically allocated file buffer. Must be cache_size.
  280. // By default lfs_malloc is used to allocate this buffer.
  281. void *buffer;
  282. // Optional list of custom attributes related to the file. If the file
  283. // is opened with read access, these attributes will be read from disk
  284. // during the open call. If the file is opened with write access, the
  285. // attributes will be written to disk every file sync or close. This
  286. // write occurs atomically with update to the file's contents.
  287. //
  288. // Custom attributes are uniquely identified by an 8-bit type and limited
  289. // to LFS_ATTR_MAX bytes. When read, if the stored attribute is smaller
  290. // than the buffer, it will be padded with zeros. If the stored attribute
  291. // is larger, then it will be silently truncated. If the attribute is not
  292. // found, it will be created implicitly.
  293. struct lfs_attr *attrs;
  294. // Number of custom attributes in the list
  295. lfs_size_t attr_count;
  296. };
  297. /// internal littlefs data structures ///
  298. typedef struct lfs_cache {
  299. lfs_block_t block;
  300. lfs_off_t off;
  301. lfs_size_t size;
  302. uint8_t *buffer;
  303. } lfs_cache_t;
  304. typedef struct lfs_mdir {
  305. lfs_block_t pair[2];
  306. uint32_t rev;
  307. lfs_off_t off;
  308. uint32_t etag;
  309. uint16_t count;
  310. bool erased;
  311. bool split;
  312. lfs_block_t tail[2];
  313. } lfs_mdir_t;
  314. // littlefs directory type
  315. typedef struct lfs_dir {
  316. struct lfs_dir *next;
  317. uint16_t id;
  318. uint8_t type;
  319. lfs_mdir_t m;
  320. lfs_off_t pos;
  321. lfs_block_t head[2];
  322. } lfs_dir_t;
  323. // littlefs file type
  324. typedef struct lfs_file {
  325. struct lfs_file *next;
  326. uint16_t id;
  327. uint8_t type;
  328. lfs_mdir_t m;
  329. struct lfs_ctz {
  330. lfs_block_t head;
  331. lfs_size_t size;
  332. } ctz;
  333. uint32_t flags;
  334. lfs_off_t pos;
  335. lfs_block_t block;
  336. lfs_off_t off;
  337. lfs_cache_t cache;
  338. const struct lfs_file_config *cfg;
  339. } lfs_file_t;
  340. typedef struct lfs_superblock {
  341. uint32_t version;
  342. lfs_size_t block_size;
  343. lfs_size_t block_count;
  344. lfs_size_t name_max;
  345. lfs_size_t file_max;
  346. lfs_size_t attr_max;
  347. } lfs_superblock_t;
  348. typedef struct lfs_gstate {
  349. uint32_t tag;
  350. lfs_block_t pair[2];
  351. } lfs_gstate_t;
  352. // The littlefs filesystem type
  353. typedef struct lfs {
  354. lfs_cache_t rcache;
  355. lfs_cache_t pcache;
  356. lfs_block_t root[2];
  357. struct lfs_mlist {
  358. struct lfs_mlist *next;
  359. uint16_t id;
  360. uint8_t type;
  361. lfs_mdir_t m;
  362. } *mlist;
  363. uint32_t seed;
  364. lfs_gstate_t gstate;
  365. lfs_gstate_t gdisk;
  366. lfs_gstate_t gdelta;
  367. struct lfs_lookahead {
  368. lfs_block_t start;
  369. lfs_block_t size;
  370. lfs_block_t next;
  371. lfs_block_t ckpoint;
  372. uint8_t *buffer;
  373. } lookahead;
  374. const struct lfs_config *cfg;
  375. lfs_size_t block_count;
  376. lfs_size_t name_max;
  377. lfs_size_t file_max;
  378. lfs_size_t attr_max;
  379. #ifdef LFS_MIGRATE
  380. struct lfs1 *lfs1;
  381. #endif
  382. } lfs_t;
  383. /// Filesystem functions ///
  384. #ifndef LFS_READONLY
  385. // Format a block device with the littlefs
  386. //
  387. // Requires a littlefs object and config struct. This clobbers the littlefs
  388. // object, and does not leave the filesystem mounted. The config struct must
  389. // be zeroed for defaults and backwards compatibility.
  390. //
  391. // Returns a negative error code on failure.
  392. int lfs_format(lfs_t *lfs, const struct lfs_config *config);
  393. #endif
  394. // Mounts a littlefs
  395. //
  396. // Requires a littlefs object and config struct. Multiple filesystems
  397. // may be mounted simultaneously with multiple littlefs objects. Both
  398. // lfs and config must be allocated while mounted. The config struct must
  399. // be zeroed for defaults and backwards compatibility.
  400. //
  401. // Returns a negative error code on failure.
  402. int lfs_mount(lfs_t *lfs, const struct lfs_config *config);
  403. // Unmounts a littlefs
  404. //
  405. // Does nothing besides releasing any allocated resources.
  406. // Returns a negative error code on failure.
  407. int lfs_unmount(lfs_t *lfs);
  408. /// General operations ///
  409. #ifndef LFS_READONLY
  410. // Removes a file or directory
  411. //
  412. // If removing a directory, the directory must be empty.
  413. // Returns a negative error code on failure.
  414. int lfs_remove(lfs_t *lfs, const char *path);
  415. #endif
  416. #ifndef LFS_READONLY
  417. // Rename or move a file or directory
  418. //
  419. // If the destination exists, it must match the source in type.
  420. // If the destination is a directory, the directory must be empty.
  421. //
  422. // Returns a negative error code on failure.
  423. int lfs_rename(lfs_t *lfs, const char *oldpath, const char *newpath);
  424. #endif
  425. // Find info about a file or directory
  426. //
  427. // Fills out the info structure, based on the specified file or directory.
  428. // Returns a negative error code on failure.
  429. int lfs_stat(lfs_t *lfs, const char *path, struct lfs_info *info);
  430. // Get a custom attribute
  431. //
  432. // Custom attributes are uniquely identified by an 8-bit type and limited
  433. // to LFS_ATTR_MAX bytes. When read, if the stored attribute is smaller than
  434. // the buffer, it will be padded with zeros. If the stored attribute is larger,
  435. // then it will be silently truncated. If no attribute is found, the error
  436. // LFS_ERR_NOATTR is returned and the buffer is filled with zeros.
  437. //
  438. // Returns the size of the attribute, or a negative error code on failure.
  439. // Note, the returned size is the size of the attribute on disk, irrespective
  440. // of the size of the buffer. This can be used to dynamically allocate a buffer
  441. // or check for existence.
  442. lfs_ssize_t lfs_getattr(lfs_t *lfs, const char *path,
  443. uint8_t type, void *buffer, lfs_size_t size);
  444. #ifndef LFS_READONLY
  445. // Set custom attributes
  446. //
  447. // Custom attributes are uniquely identified by an 8-bit type and limited
  448. // to LFS_ATTR_MAX bytes. If an attribute is not found, it will be
  449. // implicitly created.
  450. //
  451. // Returns a negative error code on failure.
  452. int lfs_setattr(lfs_t *lfs, const char *path,
  453. uint8_t type, const void *buffer, lfs_size_t size);
  454. #endif
  455. #ifndef LFS_READONLY
  456. // Removes a custom attribute
  457. //
  458. // If an attribute is not found, nothing happens.
  459. //
  460. // Returns a negative error code on failure.
  461. int lfs_removeattr(lfs_t *lfs, const char *path, uint8_t type);
  462. #endif
  463. /// File operations ///
  464. #ifndef LFS_NO_MALLOC
  465. // Open a file
  466. //
  467. // The mode that the file is opened in is determined by the flags, which
  468. // are values from the enum lfs_open_flags that are bitwise-ored together.
  469. //
  470. // Returns a negative error code on failure.
  471. int lfs_file_open(lfs_t *lfs, lfs_file_t *file,
  472. const char *path, int flags);
  473. // if LFS_NO_MALLOC is defined, lfs_file_open() will fail with LFS_ERR_NOMEM
  474. // thus use lfs_file_opencfg() with config.buffer set.
  475. #endif
  476. // Open a file with extra configuration
  477. //
  478. // The mode that the file is opened in is determined by the flags, which
  479. // are values from the enum lfs_open_flags that are bitwise-ored together.
  480. //
  481. // The config struct provides additional config options per file as described
  482. // above. The config struct must remain allocated while the file is open, and
  483. // the config struct must be zeroed for defaults and backwards compatibility.
  484. //
  485. // Returns a negative error code on failure.
  486. int lfs_file_opencfg(lfs_t *lfs, lfs_file_t *file,
  487. const char *path, int flags,
  488. const struct lfs_file_config *config);
  489. // Close a file
  490. //
  491. // Any pending writes are written out to storage as though
  492. // sync had been called and releases any allocated resources.
  493. //
  494. // Returns a negative error code on failure.
  495. int lfs_file_close(lfs_t *lfs, lfs_file_t *file);
  496. // Synchronize a file on storage
  497. //
  498. // Any pending writes are written out to storage.
  499. // Returns a negative error code on failure.
  500. int lfs_file_sync(lfs_t *lfs, lfs_file_t *file);
  501. // Read data from file
  502. //
  503. // Takes a buffer and size indicating where to store the read data.
  504. // Returns the number of bytes read, or a negative error code on failure.
  505. lfs_ssize_t lfs_file_read(lfs_t *lfs, lfs_file_t *file,
  506. void *buffer, lfs_size_t size);
  507. #ifndef LFS_READONLY
  508. // Write data to file
  509. //
  510. // Takes a buffer and size indicating the data to write. The file will not
  511. // actually be updated on the storage until either sync or close is called.
  512. //
  513. // Returns the number of bytes written, or a negative error code on failure.
  514. lfs_ssize_t lfs_file_write(lfs_t *lfs, lfs_file_t *file,
  515. const void *buffer, lfs_size_t size);
  516. #endif
  517. // Change the position of the file
  518. //
  519. // The change in position is determined by the offset and whence flag.
  520. // Returns the new position of the file, or a negative error code on failure.
  521. lfs_soff_t lfs_file_seek(lfs_t *lfs, lfs_file_t *file,
  522. lfs_soff_t off, int whence);
  523. #ifndef LFS_READONLY
  524. // Truncates the size of the file to the specified size
  525. //
  526. // Returns a negative error code on failure.
  527. int lfs_file_truncate(lfs_t *lfs, lfs_file_t *file, lfs_off_t size);
  528. #endif
  529. // Return the position of the file
  530. //
  531. // Equivalent to lfs_file_seek(lfs, file, 0, LFS_SEEK_CUR)
  532. // Returns the position of the file, or a negative error code on failure.
  533. lfs_soff_t lfs_file_tell(lfs_t *lfs, lfs_file_t *file);
  534. // Change the position of the file to the beginning of the file
  535. //
  536. // Equivalent to lfs_file_seek(lfs, file, 0, LFS_SEEK_SET)
  537. // Returns a negative error code on failure.
  538. int lfs_file_rewind(lfs_t *lfs, lfs_file_t *file);
  539. // Return the size of the file
  540. //
  541. // Similar to lfs_file_seek(lfs, file, 0, LFS_SEEK_END)
  542. // Returns the size of the file, or a negative error code on failure.
  543. lfs_soff_t lfs_file_size(lfs_t *lfs, lfs_file_t *file);
  544. /// Directory operations ///
  545. #ifndef LFS_READONLY
  546. // Create a directory
  547. //
  548. // Returns a negative error code on failure.
  549. int lfs_mkdir(lfs_t *lfs, const char *path);
  550. #endif
  551. // Open a directory
  552. //
  553. // Once open a directory can be used with read to iterate over files.
  554. // Returns a negative error code on failure.
  555. int lfs_dir_open(lfs_t *lfs, lfs_dir_t *dir, const char *path);
  556. // Close a directory
  557. //
  558. // Releases any allocated resources.
  559. // Returns a negative error code on failure.
  560. int lfs_dir_close(lfs_t *lfs, lfs_dir_t *dir);
  561. // Read an entry in the directory
  562. //
  563. // Fills out the info structure, based on the specified file or directory.
  564. // Returns a positive value on success, 0 at the end of directory,
  565. // or a negative error code on failure.
  566. int lfs_dir_read(lfs_t *lfs, lfs_dir_t *dir, struct lfs_info *info);
  567. // Change the position of the directory
  568. //
  569. // The new off must be a value previous returned from tell and specifies
  570. // an absolute offset in the directory seek.
  571. //
  572. // Returns a negative error code on failure.
  573. int lfs_dir_seek(lfs_t *lfs, lfs_dir_t *dir, lfs_off_t off);
  574. // Return the position of the directory
  575. //
  576. // The returned offset is only meant to be consumed by seek and may not make
  577. // sense, but does indicate the current position in the directory iteration.
  578. //
  579. // Returns the position of the directory, or a negative error code on failure.
  580. lfs_soff_t lfs_dir_tell(lfs_t *lfs, lfs_dir_t *dir);
  581. // Change the position of the directory to the beginning of the directory
  582. //
  583. // Returns a negative error code on failure.
  584. int lfs_dir_rewind(lfs_t *lfs, lfs_dir_t *dir);
  585. /// Filesystem-level filesystem operations
  586. // Find on-disk info about the filesystem
  587. //
  588. // Fills out the fsinfo structure based on the filesystem found on-disk.
  589. // Returns a negative error code on failure.
  590. int lfs_fs_stat(lfs_t *lfs, struct lfs_fsinfo *fsinfo);
  591. // Finds the current size of the filesystem
  592. //
  593. // Note: Result is best effort. If files share COW structures, the returned
  594. // size may be larger than the filesystem actually is.
  595. //
  596. // Returns the number of allocated blocks, or a negative error code on failure.
  597. lfs_ssize_t lfs_fs_size(lfs_t *lfs);
  598. // Traverse through all blocks in use by the filesystem
  599. //
  600. // The provided callback will be called with each block address that is
  601. // currently in use by the filesystem. This can be used to determine which
  602. // blocks are in use or how much of the storage is available.
  603. //
  604. // Returns a negative error code on failure.
  605. int lfs_fs_traverse(lfs_t *lfs, int (*cb)(void*, lfs_block_t), void *data);
  606. #ifndef LFS_READONLY
  607. // Attempt to make the filesystem consistent and ready for writing
  608. //
  609. // Calling this function is not required, consistency will be implicitly
  610. // enforced on the first operation that writes to the filesystem, but this
  611. // function allows the work to be performed earlier and without other
  612. // filesystem changes.
  613. //
  614. // Returns a negative error code on failure.
  615. int lfs_fs_mkconsistent(lfs_t *lfs);
  616. #endif
  617. #ifndef LFS_READONLY
  618. // Attempt any janitorial work
  619. //
  620. // This currently:
  621. // 1. Calls mkconsistent if not already consistent
  622. // 2. Compacts metadata > compact_thresh
  623. // 3. Populates the block allocator
  624. //
  625. // Though additional janitorial work may be added in the future.
  626. //
  627. // Calling this function is not required, but may allow the offloading of
  628. // expensive janitorial work to a less time-critical code path.
  629. //
  630. // Returns a negative error code on failure. Accomplishing nothing is not
  631. // an error.
  632. int lfs_fs_gc(lfs_t *lfs);
  633. #endif
  634. #ifndef LFS_READONLY
  635. // Grows the filesystem to a new size, updating the superblock with the new
  636. // block count.
  637. //
  638. // Note: This is irreversible.
  639. //
  640. // Returns a negative error code on failure.
  641. int lfs_fs_grow(lfs_t *lfs, lfs_size_t block_count);
  642. #endif
  643. #ifndef LFS_READONLY
  644. #ifdef LFS_MIGRATE
  645. // Attempts to migrate a previous version of littlefs
  646. //
  647. // Behaves similarly to the lfs_format function. Attempts to mount
  648. // the previous version of littlefs and update the filesystem so it can be
  649. // mounted with the current version of littlefs.
  650. //
  651. // Requires a littlefs object and config struct. This clobbers the littlefs
  652. // object, and does not leave the filesystem mounted. The config struct must
  653. // be zeroed for defaults and backwards compatibility.
  654. //
  655. // Returns a negative error code on failure.
  656. int lfs_migrate(lfs_t *lfs, const struct lfs_config *cfg);
  657. #endif
  658. #endif
  659. #ifdef __cplusplus
  660. } /* extern "C" */
  661. #endif
  662. #endif