storage_int.c 22 KB

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  1. #include "storage_int.h"
  2. #include <lfs.h>
  3. #include <furi_hal.h>
  4. #define TAG "StorageInt"
  5. #define STORAGE_PATH "/int"
  6. #define LFS_CLEAN_FINGERPRINT 0
  7. typedef struct {
  8. const size_t start_address;
  9. const size_t start_page;
  10. struct lfs_config config;
  11. lfs_t lfs;
  12. } LFSData;
  13. typedef struct {
  14. void* data;
  15. bool open;
  16. } LFSHandle;
  17. static LFSHandle* lfs_handle_alloc_file() {
  18. LFSHandle* handle = malloc(sizeof(LFSHandle));
  19. handle->data = malloc(sizeof(lfs_file_t));
  20. return handle;
  21. }
  22. static LFSHandle* lfs_handle_alloc_dir() {
  23. LFSHandle* handle = malloc(sizeof(LFSHandle));
  24. handle->data = malloc(sizeof(lfs_dir_t));
  25. return handle;
  26. }
  27. /* INTERNALS */
  28. static lfs_dir_t* lfs_handle_get_dir(LFSHandle* handle) {
  29. return handle->data;
  30. }
  31. static lfs_file_t* lfs_handle_get_file(LFSHandle* handle) {
  32. return handle->data;
  33. }
  34. static void lfs_handle_free(LFSHandle* handle) {
  35. free(handle->data);
  36. free(handle);
  37. }
  38. static void lfs_handle_set_open(LFSHandle* handle) {
  39. handle->open = true;
  40. }
  41. static bool lfs_handle_is_open(LFSHandle* handle) {
  42. return handle->open;
  43. }
  44. static lfs_t* lfs_get_from_storage(StorageData* storage) {
  45. return &((LFSData*)storage->data)->lfs;
  46. }
  47. static LFSData* lfs_data_get_from_storage(StorageData* storage) {
  48. return (LFSData*)storage->data;
  49. }
  50. static int storage_int_device_read(
  51. const struct lfs_config* c,
  52. lfs_block_t block,
  53. lfs_off_t off,
  54. void* buffer,
  55. lfs_size_t size) {
  56. LFSData* lfs_data = c->context;
  57. size_t address = lfs_data->start_address + block * c->block_size + off;
  58. FURI_LOG_T(
  59. TAG,
  60. "Device read: block %d, off %d, buffer: %p, size %d, translated address: %p",
  61. block,
  62. off,
  63. buffer,
  64. size,
  65. address);
  66. memcpy(buffer, (void*)address, size);
  67. return 0;
  68. }
  69. static int storage_int_device_prog(
  70. const struct lfs_config* c,
  71. lfs_block_t block,
  72. lfs_off_t off,
  73. const void* buffer,
  74. lfs_size_t size) {
  75. LFSData* lfs_data = c->context;
  76. size_t address = lfs_data->start_address + block * c->block_size + off;
  77. FURI_LOG_T(
  78. TAG,
  79. "Device prog: block %d, off %d, buffer: %p, size %d, translated address: %p",
  80. block,
  81. off,
  82. buffer,
  83. size,
  84. address);
  85. int ret = 0;
  86. while(size > 0) {
  87. if(!furi_hal_flash_write_dword(address, *(uint64_t*)buffer)) {
  88. ret = -1;
  89. break;
  90. }
  91. address += c->prog_size;
  92. buffer += c->prog_size;
  93. size -= c->prog_size;
  94. }
  95. return ret;
  96. }
  97. static int storage_int_device_erase(const struct lfs_config* c, lfs_block_t block) {
  98. LFSData* lfs_data = c->context;
  99. size_t page = lfs_data->start_page + block;
  100. FURI_LOG_D(TAG, "Device erase: page %d, translated page: %x", block, page);
  101. if(furi_hal_flash_erase(page)) {
  102. return 0;
  103. } else {
  104. return -1;
  105. }
  106. }
  107. static int storage_int_device_sync(const struct lfs_config* c) {
  108. UNUSED(c);
  109. FURI_LOG_D(TAG, "Device sync: skipping, cause ");
  110. return 0;
  111. }
  112. static LFSData* storage_int_lfs_data_alloc() {
  113. LFSData* lfs_data = malloc(sizeof(LFSData));
  114. // Internal storage start address
  115. *(size_t*)(&lfs_data->start_address) = furi_hal_flash_get_free_page_start_address();
  116. *(size_t*)(&lfs_data->start_page) =
  117. (lfs_data->start_address - furi_hal_flash_get_base()) / furi_hal_flash_get_page_size();
  118. // LFS configuration
  119. // Glue and context
  120. lfs_data->config.context = lfs_data;
  121. lfs_data->config.read = storage_int_device_read;
  122. lfs_data->config.prog = storage_int_device_prog;
  123. lfs_data->config.erase = storage_int_device_erase;
  124. lfs_data->config.sync = storage_int_device_sync;
  125. // Block device description
  126. lfs_data->config.read_size = furi_hal_flash_get_read_block_size();
  127. lfs_data->config.prog_size = furi_hal_flash_get_write_block_size();
  128. lfs_data->config.block_size = furi_hal_flash_get_page_size();
  129. lfs_data->config.block_count = furi_hal_flash_get_free_page_count();
  130. lfs_data->config.block_cycles = furi_hal_flash_get_cycles_count();
  131. lfs_data->config.cache_size = 16;
  132. lfs_data->config.lookahead_size = 16;
  133. return lfs_data;
  134. };
  135. // Returns true if fingerprint was invalid and LFS reformatting is needed
  136. static bool storage_int_check_and_set_fingerprint(LFSData* lfs_data) {
  137. bool value = false;
  138. uint32_t os_fingerprint = 0;
  139. os_fingerprint |= ((lfs_data->start_page & 0xFF) << 0);
  140. os_fingerprint |= ((lfs_data->config.block_count & 0xFF) << 8);
  141. os_fingerprint |= ((LFS_DISK_VERSION_MAJOR & 0xFFFF) << 16);
  142. uint32_t rtc_fingerprint = furi_hal_rtc_get_register(FuriHalRtcRegisterLfsFingerprint);
  143. if(rtc_fingerprint == LFS_CLEAN_FINGERPRINT) {
  144. FURI_LOG_I(TAG, "Storing LFS fingerprint in RTC");
  145. furi_hal_rtc_set_register(FuriHalRtcRegisterLfsFingerprint, os_fingerprint);
  146. } else if(rtc_fingerprint != os_fingerprint) {
  147. FURI_LOG_E(TAG, "LFS fingerprint mismatch");
  148. furi_hal_rtc_set_register(FuriHalRtcRegisterLfsFingerprint, os_fingerprint);
  149. value = true;
  150. }
  151. return value;
  152. }
  153. static void storage_int_lfs_mount(LFSData* lfs_data, StorageData* storage) {
  154. int err;
  155. lfs_t* lfs = &lfs_data->lfs;
  156. bool was_fingerprint_outdated = storage_int_check_and_set_fingerprint(lfs_data);
  157. bool need_format = furi_hal_rtc_is_flag_set(FuriHalRtcFlagFactoryReset) ||
  158. was_fingerprint_outdated;
  159. if(need_format) {
  160. // Format storage
  161. err = lfs_format(lfs, &lfs_data->config);
  162. if(err == 0) {
  163. FURI_LOG_I(TAG, "Factory reset: Format successful, trying to mount");
  164. furi_hal_rtc_reset_flag(FuriHalRtcFlagFactoryReset);
  165. err = lfs_mount(lfs, &lfs_data->config);
  166. if(err == 0) {
  167. FURI_LOG_I(TAG, "Factory reset: Mounted");
  168. storage->status = StorageStatusOK;
  169. } else {
  170. FURI_LOG_E(TAG, "Factory reset: Mount after format failed");
  171. storage->status = StorageStatusNotMounted;
  172. }
  173. } else {
  174. FURI_LOG_E(TAG, "Factory reset: Format failed");
  175. storage->status = StorageStatusNoFS;
  176. }
  177. } else {
  178. // Normal
  179. err = lfs_mount(lfs, &lfs_data->config);
  180. if(err == 0) {
  181. FURI_LOG_I(TAG, "Mounted");
  182. storage->status = StorageStatusOK;
  183. } else {
  184. FURI_LOG_E(TAG, "Mount failed, formatting");
  185. err = lfs_format(lfs, &lfs_data->config);
  186. if(err == 0) {
  187. FURI_LOG_I(TAG, "Format successful, trying to mount");
  188. err = lfs_mount(lfs, &lfs_data->config);
  189. if(err == 0) {
  190. FURI_LOG_I(TAG, "Mounted");
  191. storage->status = StorageStatusOK;
  192. } else {
  193. FURI_LOG_E(TAG, "Mount after format failed");
  194. storage->status = StorageStatusNotMounted;
  195. }
  196. } else {
  197. FURI_LOG_E(TAG, "Format failed");
  198. storage->status = StorageStatusNoFS;
  199. }
  200. }
  201. }
  202. }
  203. /****************** Common Functions ******************/
  204. static FS_Error storage_int_parse_error(int error) {
  205. FS_Error result = FSE_INTERNAL;
  206. if(error >= LFS_ERR_OK) {
  207. result = FSE_OK;
  208. } else {
  209. switch(error) {
  210. case LFS_ERR_IO:
  211. result = FSE_INTERNAL;
  212. break;
  213. case LFS_ERR_CORRUPT:
  214. result = FSE_INTERNAL;
  215. break;
  216. case LFS_ERR_NOENT:
  217. result = FSE_NOT_EXIST;
  218. break;
  219. case LFS_ERR_EXIST:
  220. result = FSE_EXIST;
  221. break;
  222. case LFS_ERR_NOTDIR:
  223. result = FSE_INVALID_NAME;
  224. break;
  225. case LFS_ERR_ISDIR:
  226. result = FSE_INVALID_NAME;
  227. break;
  228. case LFS_ERR_NOTEMPTY:
  229. result = FSE_DENIED;
  230. break;
  231. case LFS_ERR_BADF:
  232. result = FSE_INVALID_NAME;
  233. break;
  234. case LFS_ERR_FBIG:
  235. result = FSE_INTERNAL;
  236. break;
  237. case LFS_ERR_INVAL:
  238. result = FSE_INVALID_PARAMETER;
  239. break;
  240. case LFS_ERR_NOSPC:
  241. result = FSE_INTERNAL;
  242. break;
  243. case LFS_ERR_NOMEM:
  244. result = FSE_INTERNAL;
  245. break;
  246. case LFS_ERR_NOATTR:
  247. result = FSE_INVALID_PARAMETER;
  248. break;
  249. case LFS_ERR_NAMETOOLONG:
  250. result = FSE_INVALID_NAME;
  251. break;
  252. default:
  253. break;
  254. }
  255. }
  256. return result;
  257. }
  258. /******************* File Functions *******************/
  259. static bool storage_int_file_open(
  260. void* ctx,
  261. File* file,
  262. const char* path,
  263. FS_AccessMode access_mode,
  264. FS_OpenMode open_mode) {
  265. StorageData* storage = ctx;
  266. lfs_t* lfs = lfs_get_from_storage(storage);
  267. int flags = 0;
  268. if(access_mode & FSAM_READ) flags |= LFS_O_RDONLY;
  269. if(access_mode & FSAM_WRITE) flags |= LFS_O_WRONLY;
  270. if(open_mode & FSOM_OPEN_EXISTING) flags |= 0;
  271. if(open_mode & FSOM_OPEN_ALWAYS) flags |= LFS_O_CREAT;
  272. if(open_mode & FSOM_OPEN_APPEND) flags |= LFS_O_CREAT | LFS_O_APPEND;
  273. if(open_mode & FSOM_CREATE_NEW) flags |= LFS_O_CREAT | LFS_O_EXCL;
  274. if(open_mode & FSOM_CREATE_ALWAYS) flags |= LFS_O_CREAT | LFS_O_TRUNC;
  275. LFSHandle* handle = lfs_handle_alloc_file();
  276. storage_set_storage_file_data(file, handle, storage);
  277. file->internal_error_id = lfs_file_open(lfs, lfs_handle_get_file(handle), path, flags);
  278. if(file->internal_error_id >= LFS_ERR_OK) {
  279. lfs_handle_set_open(handle);
  280. }
  281. file->error_id = storage_int_parse_error(file->internal_error_id);
  282. return (file->error_id == FSE_OK);
  283. }
  284. static bool storage_int_file_close(void* ctx, File* file) {
  285. StorageData* storage = ctx;
  286. lfs_t* lfs = lfs_get_from_storage(storage);
  287. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  288. if(lfs_handle_is_open(handle)) {
  289. file->internal_error_id = lfs_file_close(lfs, lfs_handle_get_file(handle));
  290. } else {
  291. file->internal_error_id = LFS_ERR_BADF;
  292. }
  293. file->error_id = storage_int_parse_error(file->internal_error_id);
  294. lfs_handle_free(handle);
  295. return (file->error_id == FSE_OK);
  296. }
  297. static uint16_t
  298. storage_int_file_read(void* ctx, File* file, void* buff, uint16_t const bytes_to_read) {
  299. StorageData* storage = ctx;
  300. lfs_t* lfs = lfs_get_from_storage(storage);
  301. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  302. uint16_t bytes_read = 0;
  303. if(lfs_handle_is_open(handle)) {
  304. file->internal_error_id =
  305. lfs_file_read(lfs, lfs_handle_get_file(handle), buff, bytes_to_read);
  306. } else {
  307. file->internal_error_id = LFS_ERR_BADF;
  308. }
  309. file->error_id = storage_int_parse_error(file->internal_error_id);
  310. if(file->error_id == FSE_OK) {
  311. bytes_read = file->internal_error_id;
  312. file->internal_error_id = 0;
  313. }
  314. return bytes_read;
  315. }
  316. static uint16_t
  317. storage_int_file_write(void* ctx, File* file, const void* buff, uint16_t const bytes_to_write) {
  318. StorageData* storage = ctx;
  319. lfs_t* lfs = lfs_get_from_storage(storage);
  320. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  321. uint16_t bytes_written = 0;
  322. if(lfs_handle_is_open(handle)) {
  323. file->internal_error_id =
  324. lfs_file_write(lfs, lfs_handle_get_file(handle), buff, bytes_to_write);
  325. } else {
  326. file->internal_error_id = LFS_ERR_BADF;
  327. }
  328. file->error_id = storage_int_parse_error(file->internal_error_id);
  329. if(file->error_id == FSE_OK) {
  330. bytes_written = file->internal_error_id;
  331. file->internal_error_id = 0;
  332. }
  333. return bytes_written;
  334. }
  335. static bool
  336. storage_int_file_seek(void* ctx, File* file, const uint32_t offset, const bool from_start) {
  337. StorageData* storage = ctx;
  338. lfs_t* lfs = lfs_get_from_storage(storage);
  339. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  340. if(lfs_handle_is_open(handle)) {
  341. if(from_start) {
  342. file->internal_error_id =
  343. lfs_file_seek(lfs, lfs_handle_get_file(handle), offset, LFS_SEEK_SET);
  344. } else {
  345. file->internal_error_id =
  346. lfs_file_seek(lfs, lfs_handle_get_file(handle), offset, LFS_SEEK_CUR);
  347. }
  348. } else {
  349. file->internal_error_id = LFS_ERR_BADF;
  350. }
  351. file->error_id = storage_int_parse_error(file->internal_error_id);
  352. return (file->error_id == FSE_OK);
  353. }
  354. static uint64_t storage_int_file_tell(void* ctx, File* file) {
  355. StorageData* storage = ctx;
  356. lfs_t* lfs = lfs_get_from_storage(storage);
  357. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  358. if(lfs_handle_is_open(handle)) {
  359. file->internal_error_id = lfs_file_tell(lfs, lfs_handle_get_file(handle));
  360. } else {
  361. file->internal_error_id = LFS_ERR_BADF;
  362. }
  363. file->error_id = storage_int_parse_error(file->internal_error_id);
  364. int32_t position = 0;
  365. if(file->error_id == FSE_OK) {
  366. position = file->internal_error_id;
  367. file->internal_error_id = 0;
  368. }
  369. return position;
  370. }
  371. static bool storage_int_file_truncate(void* ctx, File* file) {
  372. StorageData* storage = ctx;
  373. lfs_t* lfs = lfs_get_from_storage(storage);
  374. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  375. if(lfs_handle_is_open(handle)) {
  376. file->internal_error_id = lfs_file_tell(lfs, lfs_handle_get_file(handle));
  377. file->error_id = storage_int_parse_error(file->internal_error_id);
  378. if(file->error_id == FSE_OK) {
  379. uint32_t position = file->internal_error_id;
  380. file->internal_error_id =
  381. lfs_file_truncate(lfs, lfs_handle_get_file(handle), position);
  382. file->error_id = storage_int_parse_error(file->internal_error_id);
  383. }
  384. } else {
  385. file->internal_error_id = LFS_ERR_BADF;
  386. file->error_id = storage_int_parse_error(file->internal_error_id);
  387. }
  388. return (file->error_id == FSE_OK);
  389. }
  390. static bool storage_int_file_sync(void* ctx, File* file) {
  391. StorageData* storage = ctx;
  392. lfs_t* lfs = lfs_get_from_storage(storage);
  393. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  394. if(lfs_handle_is_open(handle)) {
  395. file->internal_error_id = lfs_file_sync(lfs, lfs_handle_get_file(handle));
  396. } else {
  397. file->internal_error_id = LFS_ERR_BADF;
  398. }
  399. file->error_id = storage_int_parse_error(file->internal_error_id);
  400. return (file->error_id == FSE_OK);
  401. }
  402. static uint64_t storage_int_file_size(void* ctx, File* file) {
  403. StorageData* storage = ctx;
  404. lfs_t* lfs = lfs_get_from_storage(storage);
  405. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  406. if(lfs_handle_is_open(handle)) {
  407. file->internal_error_id = lfs_file_size(lfs, lfs_handle_get_file(handle));
  408. } else {
  409. file->internal_error_id = LFS_ERR_BADF;
  410. }
  411. file->error_id = storage_int_parse_error(file->internal_error_id);
  412. uint32_t size = 0;
  413. if(file->error_id == FSE_OK) {
  414. size = file->internal_error_id;
  415. file->internal_error_id = 0;
  416. }
  417. return size;
  418. }
  419. static bool storage_int_file_eof(void* ctx, File* file) {
  420. StorageData* storage = ctx;
  421. lfs_t* lfs = lfs_get_from_storage(storage);
  422. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  423. bool eof = true;
  424. if(lfs_handle_is_open(handle)) {
  425. int32_t position = lfs_file_tell(lfs, lfs_handle_get_file(handle));
  426. int32_t size = lfs_file_size(lfs, lfs_handle_get_file(handle));
  427. if(position < 0) {
  428. file->internal_error_id = position;
  429. } else if(size < 0) {
  430. file->internal_error_id = size;
  431. } else {
  432. file->internal_error_id = LFS_ERR_OK;
  433. eof = (position >= size);
  434. }
  435. } else {
  436. file->internal_error_id = LFS_ERR_BADF;
  437. }
  438. file->error_id = storage_int_parse_error(file->internal_error_id);
  439. return eof;
  440. }
  441. /******************* Dir Functions *******************/
  442. static bool storage_int_dir_open(void* ctx, File* file, const char* path) {
  443. StorageData* storage = ctx;
  444. lfs_t* lfs = lfs_get_from_storage(storage);
  445. LFSHandle* handle = lfs_handle_alloc_dir();
  446. storage_set_storage_file_data(file, handle, storage);
  447. file->internal_error_id = lfs_dir_open(lfs, lfs_handle_get_dir(handle), path);
  448. if(file->internal_error_id >= LFS_ERR_OK) {
  449. lfs_handle_set_open(handle);
  450. }
  451. file->error_id = storage_int_parse_error(file->internal_error_id);
  452. return (file->error_id == FSE_OK);
  453. }
  454. static bool storage_int_dir_close(void* ctx, File* file) {
  455. StorageData* storage = ctx;
  456. lfs_t* lfs = lfs_get_from_storage(storage);
  457. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  458. if(lfs_handle_is_open(handle)) {
  459. file->internal_error_id = lfs_dir_close(lfs, lfs_handle_get_dir(handle));
  460. } else {
  461. file->internal_error_id = LFS_ERR_BADF;
  462. }
  463. file->error_id = storage_int_parse_error(file->internal_error_id);
  464. lfs_handle_free(handle);
  465. return (file->error_id == FSE_OK);
  466. }
  467. static bool storage_int_dir_read(
  468. void* ctx,
  469. File* file,
  470. FileInfo* fileinfo,
  471. char* name,
  472. const uint16_t name_length) {
  473. StorageData* storage = ctx;
  474. lfs_t* lfs = lfs_get_from_storage(storage);
  475. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  476. if(lfs_handle_is_open(handle)) {
  477. struct lfs_info _fileinfo;
  478. // LFS returns virtual directories "." and "..", so we read until we get something meaningful or an empty string
  479. do {
  480. file->internal_error_id = lfs_dir_read(lfs, lfs_handle_get_dir(handle), &_fileinfo);
  481. file->error_id = storage_int_parse_error(file->internal_error_id);
  482. } while(strcmp(_fileinfo.name, ".") == 0 || strcmp(_fileinfo.name, "..") == 0);
  483. if(fileinfo != NULL) {
  484. fileinfo->size = _fileinfo.size;
  485. fileinfo->flags = 0;
  486. if(_fileinfo.type & LFS_TYPE_DIR) fileinfo->flags |= FSF_DIRECTORY;
  487. }
  488. if(name != NULL) {
  489. snprintf(name, name_length, "%s", _fileinfo.name);
  490. }
  491. // set FSE_NOT_EXIST error on end of directory
  492. if(file->internal_error_id == 0) {
  493. file->error_id = FSE_NOT_EXIST;
  494. }
  495. } else {
  496. file->internal_error_id = LFS_ERR_BADF;
  497. file->error_id = storage_int_parse_error(file->internal_error_id);
  498. }
  499. return (file->error_id == FSE_OK);
  500. }
  501. static bool storage_int_dir_rewind(void* ctx, File* file) {
  502. StorageData* storage = ctx;
  503. lfs_t* lfs = lfs_get_from_storage(storage);
  504. LFSHandle* handle = storage_get_storage_file_data(file, storage);
  505. if(lfs_handle_is_open(handle)) {
  506. file->internal_error_id = lfs_dir_rewind(lfs, lfs_handle_get_dir(handle));
  507. } else {
  508. file->internal_error_id = LFS_ERR_BADF;
  509. }
  510. file->error_id = storage_int_parse_error(file->internal_error_id);
  511. return (file->error_id == FSE_OK);
  512. }
  513. /******************* Common FS Functions *******************/
  514. static FS_Error storage_int_common_stat(void* ctx, const char* path, FileInfo* fileinfo) {
  515. StorageData* storage = ctx;
  516. lfs_t* lfs = lfs_get_from_storage(storage);
  517. struct lfs_info _fileinfo;
  518. int result = lfs_stat(lfs, path, &_fileinfo);
  519. if(fileinfo != NULL) {
  520. fileinfo->size = _fileinfo.size;
  521. fileinfo->flags = 0;
  522. if(_fileinfo.type & LFS_TYPE_DIR) fileinfo->flags |= FSF_DIRECTORY;
  523. }
  524. return storage_int_parse_error(result);
  525. }
  526. static FS_Error storage_int_common_remove(void* ctx, const char* path) {
  527. StorageData* storage = ctx;
  528. lfs_t* lfs = lfs_get_from_storage(storage);
  529. int result = lfs_remove(lfs, path);
  530. return storage_int_parse_error(result);
  531. }
  532. static FS_Error storage_int_common_mkdir(void* ctx, const char* path) {
  533. StorageData* storage = ctx;
  534. lfs_t* lfs = lfs_get_from_storage(storage);
  535. int result = lfs_mkdir(lfs, path);
  536. return storage_int_parse_error(result);
  537. }
  538. static FS_Error storage_int_common_fs_info(
  539. void* ctx,
  540. const char* fs_path,
  541. uint64_t* total_space,
  542. uint64_t* free_space) {
  543. UNUSED(fs_path);
  544. StorageData* storage = ctx;
  545. lfs_t* lfs = lfs_get_from_storage(storage);
  546. LFSData* lfs_data = lfs_data_get_from_storage(storage);
  547. if(total_space) {
  548. *total_space = lfs_data->config.block_size * lfs_data->config.block_count;
  549. }
  550. lfs_ssize_t result = lfs_fs_size(lfs);
  551. if(free_space && (result >= 0)) {
  552. *free_space = (lfs_data->config.block_count - result) * lfs_data->config.block_size;
  553. }
  554. return storage_int_parse_error(result);
  555. }
  556. /******************* Init Storage *******************/
  557. static const FS_Api fs_api = {
  558. .file =
  559. {
  560. .open = storage_int_file_open,
  561. .close = storage_int_file_close,
  562. .read = storage_int_file_read,
  563. .write = storage_int_file_write,
  564. .seek = storage_int_file_seek,
  565. .tell = storage_int_file_tell,
  566. .truncate = storage_int_file_truncate,
  567. .size = storage_int_file_size,
  568. .sync = storage_int_file_sync,
  569. .eof = storage_int_file_eof,
  570. },
  571. .dir =
  572. {
  573. .open = storage_int_dir_open,
  574. .close = storage_int_dir_close,
  575. .read = storage_int_dir_read,
  576. .rewind = storage_int_dir_rewind,
  577. },
  578. .common =
  579. {
  580. .stat = storage_int_common_stat,
  581. .mkdir = storage_int_common_mkdir,
  582. .remove = storage_int_common_remove,
  583. .fs_info = storage_int_common_fs_info,
  584. },
  585. };
  586. void storage_int_init(StorageData* storage) {
  587. FURI_LOG_I(TAG, "Starting");
  588. LFSData* lfs_data = storage_int_lfs_data_alloc();
  589. FURI_LOG_I(
  590. TAG,
  591. "Config: start %p, read %d, write %d, page size: %d, page count: %d, cycles: %d",
  592. lfs_data->start_address,
  593. lfs_data->config.read_size,
  594. lfs_data->config.prog_size,
  595. lfs_data->config.block_size,
  596. lfs_data->config.block_count,
  597. lfs_data->config.block_cycles);
  598. storage_int_lfs_mount(lfs_data, storage);
  599. storage->data = lfs_data;
  600. storage->api.tick = NULL;
  601. storage->fs_api = &fs_api;
  602. }