sd-filesystem-api.c 20 KB

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  1. #include "fatfs.h"
  2. #include "filesystem-api.h"
  3. #include "sd-filesystem.h"
  4. /******************* Global vars for api *******************/
  5. static SdFsInfo* fs_info;
  6. /******************* Core Functions *******************/
  7. bool _fs_init(SdFsInfo* _fs_info) {
  8. bool result = true;
  9. _fs_info->mutex = osMutexNew(NULL);
  10. if(_fs_info->mutex == NULL) result = false;
  11. for(uint8_t i = 0; i < SD_FS_MAX_FILES; i++) {
  12. _fs_info->files[i].thread_id = NULL;
  13. }
  14. _fs_info->path = "0:/";
  15. _fs_info->status = SD_NO_CARD;
  16. // store pointer for api fns
  17. fs_info = _fs_info;
  18. return result;
  19. }
  20. bool _fs_lock(SdFsInfo* fs_info) {
  21. return (osMutexAcquire(fs_info->mutex, osWaitForever) == osOK);
  22. }
  23. bool _fs_unlock(SdFsInfo* fs_info) {
  24. return (osMutexRelease(fs_info->mutex) == osOK);
  25. }
  26. SDError _get_filedata(SdFsInfo* fs_info, File* file, FileData** filedata, FiledataFilter filter) {
  27. SDError error = SD_OK;
  28. _fs_lock(fs_info);
  29. if(fs_info->status == SD_OK) {
  30. if(file != NULL && file->file_id < SD_FS_MAX_FILES) {
  31. if(fs_info->files[file->file_id].thread_id == osThreadGetId()) {
  32. if(filter == FDF_ANY) {
  33. // any type
  34. *filedata = &fs_info->files[file->file_id];
  35. } else if(filter == FDF_FILE) {
  36. // file type
  37. if(!fs_info->files[file->file_id].is_dir) {
  38. *filedata = &fs_info->files[file->file_id];
  39. } else {
  40. error = SD_NOT_A_FILE;
  41. }
  42. } else if(filter == FDF_DIR) {
  43. // dir type
  44. if(fs_info->files[file->file_id].is_dir) {
  45. *filedata = &fs_info->files[file->file_id];
  46. } else {
  47. error = SD_NOT_A_DIR;
  48. }
  49. }
  50. } else {
  51. error = SD_OTHER_APP;
  52. }
  53. } else {
  54. error = SD_INVALID_PARAMETER;
  55. }
  56. } else {
  57. error = SD_NO_CARD;
  58. }
  59. _fs_unlock(fs_info);
  60. return error;
  61. }
  62. SDError _get_file(SdFsInfo* fs_info, File* file, FileData** filedata) {
  63. return _get_filedata(fs_info, file, filedata, FDF_FILE);
  64. }
  65. SDError _get_dir(SdFsInfo* fs_info, File* file, FileData** filedata) {
  66. return _get_filedata(fs_info, file, filedata, FDF_DIR);
  67. }
  68. SDError _get_any(SdFsInfo* fs_info, File* file, FileData** filedata) {
  69. return _get_filedata(fs_info, file, filedata, FDF_ANY);
  70. }
  71. SDError _fs_status(SdFsInfo* fs_info) {
  72. SDError result;
  73. _fs_lock(fs_info);
  74. result = fs_info->status;
  75. _fs_unlock(fs_info);
  76. return result;
  77. }
  78. void _fs_on_client_app_exit(SdFsInfo* fs_info) {
  79. _fs_lock(fs_info);
  80. for(uint8_t i = 0; i < SD_FS_MAX_FILES; i++) {
  81. if(fs_info->files[i].thread_id == osThreadGetId()) {
  82. if(fs_info->files[i].is_dir) {
  83. // TODO close dir
  84. } else {
  85. // TODO close file
  86. }
  87. }
  88. }
  89. _fs_unlock(fs_info);
  90. }
  91. FS_Error _fs_parse_error(SDError error) {
  92. FS_Error result;
  93. switch(error) {
  94. case SD_OK:
  95. result = FSE_OK;
  96. break;
  97. case SD_INT_ERR:
  98. result = FSE_INTERNAL;
  99. break;
  100. case SD_NO_FILE:
  101. result = FSE_NOT_EXIST;
  102. break;
  103. case SD_NO_PATH:
  104. result = FSE_NOT_EXIST;
  105. break;
  106. case SD_INVALID_NAME:
  107. result = FSE_INVALID_NAME;
  108. break;
  109. case SD_DENIED:
  110. result = FSE_DENIED;
  111. break;
  112. case SD_EXIST:
  113. result = FSE_EXIST;
  114. break;
  115. case SD_INVALID_OBJECT:
  116. result = FSE_INTERNAL;
  117. break;
  118. case SD_WRITE_PROTECTED:
  119. result = FSE_INTERNAL;
  120. break;
  121. case SD_INVALID_DRIVE:
  122. result = FSE_INTERNAL;
  123. break;
  124. case SD_NOT_ENABLED:
  125. result = FSE_INTERNAL;
  126. break;
  127. case SD_NO_FILESYSTEM:
  128. result = FSE_NOT_READY;
  129. break;
  130. case SD_MKFS_ABORTED:
  131. result = FSE_INTERNAL;
  132. break;
  133. case SD_TIMEOUT:
  134. result = FSE_INTERNAL;
  135. break;
  136. case SD_LOCKED:
  137. result = FSE_INTERNAL;
  138. break;
  139. case SD_NOT_ENOUGH_CORE:
  140. result = FSE_INTERNAL;
  141. break;
  142. case SD_TOO_MANY_OPEN_FILES:
  143. result = FSE_INTERNAL;
  144. break;
  145. case SD_INVALID_PARAMETER:
  146. result = FSE_INVALID_PARAMETER;
  147. break;
  148. case SD_NO_CARD:
  149. result = FSE_NOT_READY;
  150. break;
  151. case SD_NOT_A_FILE:
  152. result = FSE_INVALID_PARAMETER;
  153. break;
  154. case SD_NOT_A_DIR:
  155. result = FSE_INVALID_PARAMETER;
  156. break;
  157. case SD_OTHER_APP:
  158. result = FSE_INTERNAL;
  159. break;
  160. default:
  161. result = FSE_INTERNAL;
  162. break;
  163. }
  164. return result;
  165. }
  166. /******************* File Functions *******************/
  167. // Open/Create a file
  168. bool fs_file_open(File* file, const char* path, FS_AccessMode access_mode, FS_OpenMode open_mode) {
  169. SDFile* sd_file = NULL;
  170. _fs_lock(fs_info);
  171. for(uint8_t index = 0; index < SD_FS_MAX_FILES; index++) {
  172. FileData* filedata = &fs_info->files[index];
  173. if(filedata->thread_id == NULL) {
  174. file->file_id = index;
  175. memset(&(filedata->data), 0, sizeof(SDFileDirStorage));
  176. filedata->thread_id = osThreadGetId();
  177. filedata->is_dir = false;
  178. sd_file = &(filedata->data.file);
  179. break;
  180. }
  181. }
  182. _fs_unlock(fs_info);
  183. if(sd_file == NULL) {
  184. file->internal_error_id = SD_TOO_MANY_OPEN_FILES;
  185. } else {
  186. uint8_t _mode = 0;
  187. if(access_mode & FSAM_READ) _mode |= FA_READ;
  188. if(access_mode & FSAM_WRITE) _mode |= FA_WRITE;
  189. if(open_mode & FSOM_OPEN_EXISTING) _mode |= FA_OPEN_EXISTING;
  190. if(open_mode & FSOM_OPEN_ALWAYS) _mode |= FA_OPEN_ALWAYS;
  191. if(open_mode & FSOM_OPEN_APPEND) _mode |= FA_OPEN_APPEND;
  192. if(open_mode & FSOM_CREATE_NEW) _mode |= FA_CREATE_NEW;
  193. if(open_mode & FSOM_CREATE_ALWAYS) _mode |= FA_CREATE_ALWAYS;
  194. file->internal_error_id = f_open(sd_file, path, _mode);
  195. }
  196. // TODO on exit
  197. //furiac_onexit(_fs_on_client_app_exit, fs_info);
  198. file->error_id = _fs_parse_error(file->internal_error_id);
  199. return (file->internal_error_id == SD_OK);
  200. }
  201. // Close an opened file
  202. bool fs_file_close(File* file) {
  203. FileData* filedata = NULL;
  204. file->internal_error_id = _get_file(fs_info, file, &filedata);
  205. if(file->internal_error_id == SD_OK) {
  206. file->internal_error_id = f_close(&filedata->data.file);
  207. _fs_lock(fs_info);
  208. filedata->thread_id = NULL;
  209. _fs_unlock(fs_info);
  210. }
  211. file->error_id = _fs_parse_error(file->internal_error_id);
  212. return (file->internal_error_id == SD_OK);
  213. }
  214. // Read data from the file
  215. uint16_t fs_file_read(File* file, void* buff, uint16_t const bytes_to_read) {
  216. FileData* filedata = NULL;
  217. uint16_t bytes_readed = 0;
  218. file->internal_error_id = _get_file(fs_info, file, &filedata);
  219. if(file->internal_error_id == SD_OK) {
  220. file->internal_error_id = f_read(&filedata->data.file, buff, bytes_to_read, &bytes_readed);
  221. }
  222. file->error_id = _fs_parse_error(file->internal_error_id);
  223. return bytes_readed;
  224. }
  225. // Write data to the file
  226. uint16_t fs_file_write(File* file, void* buff, uint16_t const bytes_to_write) {
  227. FileData* filedata = NULL;
  228. uint16_t bytes_written = 0;
  229. file->internal_error_id = _get_file(fs_info, file, &filedata);
  230. if(file->internal_error_id == SD_OK) {
  231. file->internal_error_id =
  232. f_write(&filedata->data.file, buff, bytes_to_write, &bytes_written);
  233. }
  234. file->error_id = _fs_parse_error(file->internal_error_id);
  235. return bytes_written;
  236. }
  237. // Move read/write pointer, expand size
  238. bool fs_file_seek(File* file, const uint32_t offset, const bool from_start) {
  239. FileData* filedata = NULL;
  240. file->internal_error_id = _get_file(fs_info, file, &filedata);
  241. if(file->internal_error_id == SD_OK) {
  242. if(from_start) {
  243. file->internal_error_id = f_lseek(&filedata->data.file, offset);
  244. } else {
  245. uint64_t position = f_tell(&filedata->data.file);
  246. position += offset;
  247. file->internal_error_id = f_lseek(&filedata->data.file, position);
  248. }
  249. }
  250. file->error_id = _fs_parse_error(file->internal_error_id);
  251. return (file->internal_error_id == SD_OK);
  252. }
  253. // Tell pointer position
  254. uint64_t fs_file_tell(File* file) {
  255. FileData* filedata = NULL;
  256. uint64_t position = 0;
  257. file->internal_error_id = _get_file(fs_info, file, &filedata);
  258. if(file->internal_error_id == SD_OK) {
  259. position = f_tell(&filedata->data.file);
  260. }
  261. file->error_id = _fs_parse_error(file->internal_error_id);
  262. return position;
  263. }
  264. // Truncate file size to current pointer value
  265. bool fs_file_truncate(File* file) {
  266. FileData* filedata = NULL;
  267. uint64_t position = 0;
  268. file->internal_error_id = _get_file(fs_info, file, &filedata);
  269. if(file->internal_error_id == SD_OK) {
  270. file->internal_error_id = f_truncate(&filedata->data.file);
  271. }
  272. file->error_id = _fs_parse_error(file->internal_error_id);
  273. return (file->internal_error_id == SD_OK);
  274. }
  275. // Flush cached data
  276. bool fs_file_sync(File* file) {
  277. FileData* filedata = NULL;
  278. file->internal_error_id = _get_file(fs_info, file, &filedata);
  279. if(file->internal_error_id == SD_OK) {
  280. file->internal_error_id = f_sync(&filedata->data.file);
  281. }
  282. file->error_id = _fs_parse_error(file->internal_error_id);
  283. return (file->internal_error_id == SD_OK);
  284. }
  285. // Get size
  286. uint64_t fs_file_size(File* file) {
  287. FileData* filedata = NULL;
  288. uint64_t size = 0;
  289. file->internal_error_id = _get_file(fs_info, file, &filedata);
  290. if(file->internal_error_id == SD_OK) {
  291. size = f_size(&filedata->data.file);
  292. }
  293. file->error_id = _fs_parse_error(file->internal_error_id);
  294. return size;
  295. }
  296. // Test EOF
  297. bool fs_file_eof(File* file) {
  298. FileData* filedata = NULL;
  299. bool eof = true;
  300. file->internal_error_id = _get_file(fs_info, file, &filedata);
  301. if(file->internal_error_id == SD_OK) {
  302. eof = f_eof(&filedata->data.file);
  303. }
  304. file->error_id = _fs_parse_error(file->internal_error_id);
  305. return eof;
  306. }
  307. /******************* Dir Functions *******************/
  308. // Open directory
  309. bool fs_dir_open(File* file, const char* path) {
  310. SDDir* sd_dir = NULL;
  311. _fs_lock(fs_info);
  312. for(uint8_t index = 0; index < SD_FS_MAX_FILES; index++) {
  313. FileData* filedata = &fs_info->files[index];
  314. if(filedata->thread_id == NULL) {
  315. file->file_id = index;
  316. memset(&(filedata->data), 0, sizeof(SDFileDirStorage));
  317. filedata->thread_id = osThreadGetId();
  318. filedata->is_dir = true;
  319. sd_dir = &(filedata->data.dir);
  320. break;
  321. }
  322. }
  323. _fs_unlock(fs_info);
  324. if(sd_dir == NULL) {
  325. file->internal_error_id = SD_TOO_MANY_OPEN_FILES;
  326. } else {
  327. if(file->internal_error_id == SD_OK) file->internal_error_id = f_opendir(sd_dir, path);
  328. }
  329. // TODO on exit
  330. //furiac_onexit(_fs_on_client_app_exit, fs_info);
  331. file->error_id = _fs_parse_error(file->internal_error_id);
  332. return (file->internal_error_id == SD_OK);
  333. }
  334. // Close directory
  335. bool fs_dir_close(File* file) {
  336. FileData* filedata = NULL;
  337. file->internal_error_id = _get_dir(fs_info, file, &filedata);
  338. if(file->internal_error_id == SD_OK) {
  339. file->internal_error_id = f_closedir(&filedata->data.dir);
  340. _fs_lock(fs_info);
  341. filedata->thread_id = NULL;
  342. _fs_unlock(fs_info);
  343. }
  344. file->error_id = _fs_parse_error(file->internal_error_id);
  345. return (file->internal_error_id == SD_OK);
  346. }
  347. // Read next file info and name from directory
  348. bool fs_dir_read(File* file, FileInfo* fileinfo, char* name, const uint16_t name_length) {
  349. FileData* filedata = NULL;
  350. file->internal_error_id = _get_dir(fs_info, file, &filedata);
  351. if(file->internal_error_id == SD_OK) {
  352. SDFileInfo _fileinfo;
  353. file->internal_error_id = f_readdir(&filedata->data.dir, &_fileinfo);
  354. if(fileinfo != NULL) {
  355. fileinfo->date.value = _fileinfo.fdate;
  356. fileinfo->time.value = _fileinfo.ftime;
  357. fileinfo->size = _fileinfo.fsize;
  358. fileinfo->flags = 0;
  359. if(_fileinfo.fattrib & AM_RDO) fileinfo->flags |= FSF_READ_ONLY;
  360. if(_fileinfo.fattrib & AM_HID) fileinfo->flags |= FSF_HIDDEN;
  361. if(_fileinfo.fattrib & AM_SYS) fileinfo->flags |= FSF_SYSTEM;
  362. if(_fileinfo.fattrib & AM_DIR) fileinfo->flags |= FSF_DIRECTORY;
  363. if(_fileinfo.fattrib & AM_ARC) fileinfo->flags |= FSF_ARCHIVE;
  364. }
  365. if(name != NULL && name_length > 0) {
  366. strncpy(name, _fileinfo.fname, name_length);
  367. }
  368. }
  369. file->error_id = _fs_parse_error(file->internal_error_id);
  370. return (file->internal_error_id == SD_OK);
  371. }
  372. bool fs_dir_rewind(File* file) {
  373. FileData* filedata = NULL;
  374. file->internal_error_id = _get_dir(fs_info, file, &filedata);
  375. if(file->internal_error_id == SD_OK) {
  376. file->internal_error_id = f_readdir(&filedata->data.dir, NULL);
  377. }
  378. file->error_id = _fs_parse_error(file->internal_error_id);
  379. return (file->internal_error_id == SD_OK);
  380. }
  381. /******************* Common FS Functions *******************/
  382. // Get info about file/dir
  383. FS_Error
  384. fs_common_info(const char* path, FileInfo* fileinfo, char* name, const uint16_t name_length) {
  385. SDFileInfo _fileinfo;
  386. SDError fresult = _fs_status(fs_info);
  387. if(fresult == SD_OK) {
  388. fresult = f_stat(path, &_fileinfo);
  389. if(fresult == FR_OK) {
  390. if(fileinfo != NULL) {
  391. fileinfo->date.value = _fileinfo.fdate;
  392. fileinfo->time.value = _fileinfo.ftime;
  393. fileinfo->size = _fileinfo.fsize;
  394. fileinfo->flags = 0;
  395. if(_fileinfo.fattrib & AM_RDO) fileinfo->flags |= FSF_READ_ONLY;
  396. if(_fileinfo.fattrib & AM_HID) fileinfo->flags |= FSF_HIDDEN;
  397. if(_fileinfo.fattrib & AM_SYS) fileinfo->flags |= FSF_SYSTEM;
  398. if(_fileinfo.fattrib & AM_DIR) fileinfo->flags |= FSF_DIRECTORY;
  399. if(_fileinfo.fattrib & AM_ARC) fileinfo->flags |= FSF_ARCHIVE;
  400. }
  401. if(name != NULL && name_length > 0) {
  402. strncpy(name, _fileinfo.fname, name_length);
  403. }
  404. }
  405. }
  406. return _fs_parse_error(fresult);
  407. }
  408. // Delete file/dir
  409. // File/dir must not have read-only attribute.
  410. // File/dir must be empty.
  411. // File/dir must not be opened, or the FAT volume can be collapsed. FF_FS_LOCK fix that.
  412. FS_Error fs_common_remove(const char* path) {
  413. SDError fresult = _fs_status(fs_info);
  414. if(fresult == SD_OK) {
  415. fresult = f_unlink(path);
  416. }
  417. return _fs_parse_error(fresult);
  418. }
  419. // Rename file/dir
  420. // File/dir must not be opened, or the FAT volume can be collapsed. FF_FS_LOCK fix that.
  421. FS_Error fs_common_rename(const char* old_path, const char* new_path) {
  422. SDError fresult = _fs_status(fs_info);
  423. if(fresult == SD_OK) {
  424. fresult = f_rename(old_path, new_path);
  425. }
  426. return _fs_parse_error(fresult);
  427. }
  428. // Set attributes of file/dir
  429. // For example:
  430. // set "read only" flag and remove "hidden" flag
  431. // fs_common_set_attr("file.txt", FSF_READ_ONLY, FSF_READ_ONLY | FSF_HIDDEN);
  432. FS_Error fs_common_set_attr(const char* path, uint8_t attr, uint8_t mask) {
  433. SDError fresult = _fs_status(fs_info);
  434. if(fresult == SD_OK) {
  435. uint8_t _mask = 0;
  436. uint8_t _attr = 0;
  437. if(mask & FSF_READ_ONLY) _mask |= AM_RDO;
  438. if(mask & FSF_HIDDEN) _mask |= AM_HID;
  439. if(mask & FSF_SYSTEM) _mask |= AM_SYS;
  440. if(mask & FSF_DIRECTORY) _mask |= AM_DIR;
  441. if(mask & FSF_ARCHIVE) _mask |= AM_ARC;
  442. if(attr & FSF_READ_ONLY) _attr |= AM_RDO;
  443. if(attr & FSF_HIDDEN) _attr |= AM_HID;
  444. if(attr & FSF_SYSTEM) _attr |= AM_SYS;
  445. if(attr & FSF_DIRECTORY) _attr |= AM_DIR;
  446. if(attr & FSF_ARCHIVE) _attr |= AM_ARC;
  447. fresult = f_chmod(path, attr, mask);
  448. }
  449. return _fs_parse_error(fresult);
  450. }
  451. // Set time of file/dir
  452. FS_Error fs_common_set_time(const char* path, FileDateUnion date, FileTimeUnion time) {
  453. SDError fresult = _fs_status(fs_info);
  454. if(fresult == SD_OK) {
  455. SDFileInfo _fileinfo;
  456. _fileinfo.fdate = date.value;
  457. _fileinfo.ftime = time.value;
  458. fresult = f_utime(path, &_fileinfo);
  459. }
  460. return _fs_parse_error(fresult);
  461. }
  462. // Create new directory
  463. FS_Error fs_common_mkdir(const char* path) {
  464. SDError fresult = _fs_status(fs_info);
  465. if(fresult == SD_OK) {
  466. fresult = f_mkdir(path);
  467. }
  468. return _fs_parse_error(fresult);
  469. }
  470. // Get common info about FS
  471. FS_Error fs_get_fs_info(uint64_t* total_space, uint64_t* free_space) {
  472. SDError fresult = _fs_status(fs_info);
  473. if(fresult == SD_OK) {
  474. DWORD free_clusters;
  475. FATFS* fs;
  476. fresult = f_getfree("0:/", &free_clusters, &fs);
  477. if(fresult == FR_OK) {
  478. uint32_t total_sectors = (fs->n_fatent - 2) * fs->csize;
  479. uint32_t free_sectors = free_clusters * fs->csize;
  480. uint16_t sector_size = _MAX_SS;
  481. #if _MAX_SS != _MIN_SS
  482. sector_size = fs->ssize;
  483. #endif
  484. if(total_space != NULL) {
  485. *total_space = (uint64_t)total_sectors * (uint64_t)sector_size;
  486. }
  487. if(free_space != NULL) {
  488. *free_space = (uint64_t)free_sectors * (uint64_t)sector_size;
  489. }
  490. }
  491. }
  492. return _fs_parse_error(fresult);
  493. }
  494. /******************* Error Reporting Functions *******************/
  495. // Get common error description
  496. const char* fs_error_get_desc(FS_Error error_id) {
  497. const char* result;
  498. switch(error_id) {
  499. case(FSE_OK):
  500. result = "OK";
  501. break;
  502. case(FSE_NOT_READY):
  503. result = "filesystem not ready";
  504. break;
  505. case(FSE_EXIST):
  506. result = "file/dir already exist";
  507. break;
  508. case(FSE_NOT_EXIST):
  509. result = "file/dir not exist";
  510. break;
  511. case(FSE_INVALID_PARAMETER):
  512. result = "invalid parameter";
  513. break;
  514. case(FSE_DENIED):
  515. result = "access denied";
  516. break;
  517. case(FSE_INVALID_NAME):
  518. result = "invalid name/path";
  519. break;
  520. case(FSE_INTERNAL):
  521. result = "internal error";
  522. break;
  523. case(FSE_NOT_IMPLEMENTED):
  524. result = "function not implemented";
  525. break;
  526. default:
  527. result = "unknown error";
  528. break;
  529. }
  530. return result;
  531. }
  532. // Get internal error description
  533. const char* fs_error_get_internal_desc(uint32_t internal_error_id) {
  534. const char* result;
  535. switch(internal_error_id) {
  536. case(SD_OK):
  537. result = "OK";
  538. break;
  539. case(SD_DISK_ERR):
  540. result = "disk error";
  541. break;
  542. case(SD_INT_ERR):
  543. result = "internal error";
  544. break;
  545. case(SD_NO_FILE):
  546. result = "no file";
  547. break;
  548. case(SD_NO_PATH):
  549. result = "no path";
  550. break;
  551. case(SD_INVALID_NAME):
  552. result = "invalid name";
  553. break;
  554. case(SD_DENIED):
  555. result = "access denied";
  556. break;
  557. case(SD_EXIST):
  558. result = "file/dir exist";
  559. break;
  560. case(SD_INVALID_OBJECT):
  561. result = "invalid object";
  562. break;
  563. case(SD_WRITE_PROTECTED):
  564. result = "write protected";
  565. break;
  566. case(SD_INVALID_DRIVE):
  567. result = "invalid drive";
  568. break;
  569. case(SD_NOT_ENABLED):
  570. result = "not enabled";
  571. break;
  572. case(SD_NO_FILESYSTEM):
  573. result = "no filesystem";
  574. break;
  575. case(SD_MKFS_ABORTED):
  576. result = "aborted";
  577. break;
  578. case(SD_TIMEOUT):
  579. result = "timeout";
  580. break;
  581. case(SD_LOCKED):
  582. result = "file locked";
  583. break;
  584. case(SD_NOT_ENOUGH_CORE):
  585. result = "not enough memory";
  586. break;
  587. case(SD_TOO_MANY_OPEN_FILES):
  588. result = "too many open files";
  589. break;
  590. case(SD_INVALID_PARAMETER):
  591. result = "invalid parameter";
  592. break;
  593. case(SD_NO_CARD):
  594. result = "no SD Card";
  595. break;
  596. case(SD_NOT_A_FILE):
  597. result = "not a file";
  598. break;
  599. case(SD_NOT_A_DIR):
  600. result = "not a directory";
  601. break;
  602. case(SD_OTHER_APP):
  603. result = "opened by other app";
  604. break;
  605. case(SD_LOW_LEVEL_ERR):
  606. result = "low level error";
  607. break;
  608. default:
  609. result = "unknown error";
  610. break;
  611. }
  612. return result;
  613. }