sd-filesystem.c 13 KB

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  1. #include "fatfs.h"
  2. #include "filesystem-api.h"
  3. #include "sd-filesystem.h"
  4. #include "menu/menu.h"
  5. #include "menu/menu_item.h"
  6. FS_Api* fs_api_alloc() {
  7. FS_Api* fs_api = furi_alloc(sizeof(FS_Api));
  8. // fill file api
  9. fs_api->file.open = fs_file_open;
  10. fs_api->file.close = fs_file_close;
  11. fs_api->file.read = fs_file_read;
  12. fs_api->file.write = fs_file_write;
  13. fs_api->file.seek = fs_file_seek;
  14. fs_api->file.tell = fs_file_tell;
  15. fs_api->file.truncate = fs_file_truncate;
  16. fs_api->file.size = fs_file_size;
  17. fs_api->file.sync = fs_file_sync;
  18. fs_api->file.eof = fs_file_eof;
  19. // fill dir api
  20. fs_api->dir.open = fs_dir_open;
  21. fs_api->dir.close = fs_dir_close;
  22. fs_api->dir.read = fs_dir_read;
  23. fs_api->dir.rewind = fs_dir_rewind;
  24. // fill common api
  25. fs_api->common.info = fs_common_info;
  26. fs_api->common.remove = fs_common_remove;
  27. fs_api->common.rename = fs_common_rename;
  28. fs_api->common.set_attr = fs_common_set_attr;
  29. fs_api->common.mkdir = fs_common_mkdir;
  30. fs_api->common.set_time = fs_common_set_time;
  31. fs_api->common.get_fs_info = fs_get_fs_info;
  32. // fill errors api
  33. fs_api->error.get_desc = fs_error_get_desc;
  34. fs_api->error.get_internal_desc = fs_error_get_internal_desc;
  35. return fs_api;
  36. }
  37. void sd_set_lines(SdApp* sd_app, uint8_t count, ...) {
  38. va_list argptr;
  39. count = min(count, SD_STATE_LINES_COUNT);
  40. for(uint8_t i = 0; i < SD_STATE_LINES_COUNT; i++) {
  41. sd_app->line[i] = "";
  42. }
  43. va_start(argptr, count);
  44. for(uint8_t i = 0; i < count; i++) {
  45. sd_app->line[i] = va_arg(argptr, char*);
  46. }
  47. va_end(argptr);
  48. }
  49. void sd_icon_draw_callback(Canvas* canvas, void* context) {
  50. furi_assert(canvas);
  51. furi_assert(context);
  52. SdApp* sd_app = context;
  53. switch(sd_app->info.status) {
  54. case SD_NO_CARD:
  55. break;
  56. case SD_OK:
  57. canvas_draw_icon(canvas, 0, 0, sd_app->icon.mounted);
  58. break;
  59. default:
  60. canvas_draw_icon(canvas, 0, 0, sd_app->icon.fail);
  61. break;
  62. }
  63. }
  64. void sd_app_draw_callback(Canvas* canvas, void* context) {
  65. furi_assert(canvas);
  66. furi_assert(context);
  67. SdApp* sd_app = context;
  68. canvas_clear(canvas);
  69. canvas_set_color(canvas, ColorBlack);
  70. canvas_set_font(canvas, FontPrimary);
  71. for(uint8_t i = 0; i < SD_STATE_LINES_COUNT; i++) {
  72. canvas_draw_str(canvas, 0, (i + 1) * 10, sd_app->line[i]);
  73. }
  74. }
  75. void sd_app_input_callback(InputEvent* event, void* context) {
  76. furi_assert(context);
  77. SdApp* sd_app = context;
  78. osMessageQueuePut(sd_app->event_queue, event, 0, 0);
  79. }
  80. SdApp* sd_app_alloc() {
  81. SdApp* sd_app = furi_alloc(sizeof(SdApp));
  82. // init inner fs data
  83. if(!_fs_init(&sd_app->info)) {
  84. furiac_exit(NULL);
  85. }
  86. sd_app->event_queue = osMessageQueueNew(1, sizeof(InputEvent), NULL);
  87. // init widget
  88. sd_app->widget = widget_alloc();
  89. widget_draw_callback_set(sd_app->widget, sd_app_draw_callback, sd_app);
  90. widget_input_callback_set(sd_app->widget, sd_app_input_callback, sd_app);
  91. widget_enabled_set(sd_app->widget, false);
  92. // init lines
  93. sd_set_lines(sd_app, 0);
  94. // init icon widget
  95. sd_app->icon.widget = widget_alloc();
  96. sd_app->icon.mounted = assets_icons_get(I_SDcardMounted_11x8);
  97. sd_app->icon.fail = assets_icons_get(I_SDcardFail_11x8);
  98. widget_set_width(sd_app->icon.widget, icon_get_width(sd_app->icon.mounted));
  99. widget_draw_callback_set(sd_app->icon.widget, sd_icon_draw_callback, sd_app);
  100. widget_enabled_set(sd_app->icon.widget, false);
  101. return sd_app;
  102. }
  103. bool app_sd_ask(SdApp* sd_app, Input input_true, Input input_false) {
  104. bool result;
  105. InputEvent event;
  106. while(1) {
  107. osStatus_t event_status =
  108. osMessageQueueGet(sd_app->event_queue, &event, NULL, osWaitForever);
  109. if(event_status == osOK) {
  110. if(event.state && event.input == input_true) {
  111. result = true;
  112. break;
  113. }
  114. if(event.state && event.input == InputBack) {
  115. result = false;
  116. break;
  117. }
  118. }
  119. }
  120. return result;
  121. }
  122. void app_sd_info_callback(void* context) {
  123. furi_assert(context);
  124. SdApp* sd_app = context;
  125. widget_enabled_set(sd_app->widget, true);
  126. // dynamic strings
  127. const uint8_t str_buffer_size = 26;
  128. const uint8_t str_count = 6;
  129. char* str_buffer[str_count];
  130. bool memory_error = false;
  131. // info vars
  132. uint32_t serial_num;
  133. SDError get_label_result, get_free_result;
  134. FATFS* fs;
  135. uint32_t free_clusters, free_sectors, total_sectors;
  136. char volume_label[34];
  137. // init strings
  138. for(uint8_t i = 0; i < str_count; i++) {
  139. str_buffer[i] = malloc(str_buffer_size + 1);
  140. if(str_buffer[i] == NULL) {
  141. memory_error = true;
  142. } else {
  143. snprintf(str_buffer[i], str_buffer_size, "");
  144. }
  145. }
  146. if(memory_error) {
  147. sd_set_lines(sd_app, 1, "not enough memory");
  148. } else {
  149. // get fs info
  150. _fs_lock(&sd_app->info);
  151. get_label_result = f_getlabel(sd_app->info.path, volume_label, &serial_num);
  152. get_free_result = f_getfree(sd_app->info.path, &free_clusters, &fs);
  153. _fs_unlock(&sd_app->info);
  154. // calculate size
  155. total_sectors = (fs->n_fatent - 2) * fs->csize;
  156. free_sectors = free_clusters * fs->csize;
  157. uint16_t sector_size = _MAX_SS;
  158. #if _MAX_SS != _MIN_SS
  159. sector_size = fs->ssize;
  160. #endif
  161. // output info to dynamic strings
  162. if(get_label_result == SD_OK && get_free_result == SD_OK) {
  163. snprintf(str_buffer[0], str_buffer_size, "%s", volume_label);
  164. const char* fs_type = "";
  165. switch(fs->fs_type) {
  166. case(FS_FAT12):
  167. fs_type = "FAT12";
  168. break;
  169. case(FS_FAT16):
  170. fs_type = "FAT16";
  171. break;
  172. case(FS_FAT32):
  173. fs_type = "FAT32";
  174. break;
  175. case(FS_EXFAT):
  176. fs_type = "EXFAT";
  177. break;
  178. default:
  179. fs_type = "UNKNOWN";
  180. break;
  181. }
  182. snprintf(str_buffer[1], str_buffer_size, "%s, S/N: %lu", fs_type, serial_num);
  183. snprintf(str_buffer[2], str_buffer_size, "Cluster: %d sectors", fs->csize);
  184. snprintf(str_buffer[3], str_buffer_size, "Sector: %d bytes", sector_size);
  185. snprintf(
  186. str_buffer[4], str_buffer_size, "%lu KB total", total_sectors / 1024 * sector_size);
  187. snprintf(
  188. str_buffer[5], str_buffer_size, "%lu KB free", free_sectors / 1024 * sector_size);
  189. } else {
  190. snprintf(str_buffer[0], str_buffer_size, "SD status error:");
  191. snprintf(
  192. str_buffer[1],
  193. str_buffer_size,
  194. "%s",
  195. fs_error_get_internal_desc(_fs_status(&sd_app->info)));
  196. snprintf(str_buffer[2], str_buffer_size, "Label error:");
  197. snprintf(
  198. str_buffer[3], str_buffer_size, "%s", fs_error_get_internal_desc(get_label_result));
  199. snprintf(str_buffer[4], str_buffer_size, "Get free error:");
  200. snprintf(
  201. str_buffer[5], str_buffer_size, "%s", fs_error_get_internal_desc(get_free_result));
  202. }
  203. // dynamic strings to screen
  204. sd_set_lines(
  205. sd_app,
  206. 6,
  207. str_buffer[0],
  208. str_buffer[1],
  209. str_buffer[2],
  210. str_buffer[3],
  211. str_buffer[4],
  212. str_buffer[5]);
  213. }
  214. app_sd_ask(sd_app, InputBack, InputBack);
  215. sd_set_lines(sd_app, 0);
  216. widget_enabled_set(sd_app->widget, false);
  217. for(uint8_t i = 0; i < str_count; i++) {
  218. free(str_buffer[i]);
  219. }
  220. }
  221. void app_sd_format_callback(void* context) {
  222. furi_assert(context);
  223. SdApp* sd_app = context;
  224. uint8_t* work_area;
  225. // ask to really format
  226. sd_set_lines(sd_app, 2, "Press UP to format", "or BACK to exit");
  227. widget_enabled_set(sd_app->widget, true);
  228. // wait for input
  229. if(!app_sd_ask(sd_app, InputUp, InputBack)) {
  230. widget_enabled_set(sd_app->widget, false);
  231. return;
  232. }
  233. // show warning
  234. sd_set_lines(sd_app, 3, "formatting SD card", "procedure can be lengthy", "please wait");
  235. // format card
  236. _fs_lock(&sd_app->info);
  237. work_area = malloc(_MAX_SS);
  238. if(work_area == NULL) {
  239. sd_app->info.status = SD_NOT_ENOUGH_CORE;
  240. } else {
  241. sd_app->info.status = f_mkfs(sd_app->info.path, FM_ANY, 0, work_area, _MAX_SS);
  242. free(work_area);
  243. if(sd_app->info.status == SD_OK) {
  244. // set label and mount card
  245. f_setlabel("Flipper SD");
  246. sd_app->info.status = f_mount(&sd_app->info.fat_fs, sd_app->info.path, 1);
  247. }
  248. }
  249. if(sd_app->info.status != SD_OK) {
  250. sd_set_lines(
  251. sd_app, 2, "SD card format error", fs_error_get_internal_desc(sd_app->info.status));
  252. } else {
  253. sd_set_lines(sd_app, 1, "SD card formatted");
  254. }
  255. _fs_unlock(&sd_app->info);
  256. // wait for BACK
  257. app_sd_ask(sd_app, InputBack, InputBack);
  258. widget_enabled_set(sd_app->widget, false);
  259. }
  260. void app_sd_unmount_card(SdApp* sd_app) {
  261. _fs_lock(&sd_app->info);
  262. // set status
  263. sd_app->info.status = SD_NO_CARD;
  264. widget_enabled_set(sd_app->icon.widget, false);
  265. // close files
  266. for(uint8_t index = 0; index < SD_FS_MAX_FILES; index++) {
  267. FileData* filedata = &sd_app->info.files[index];
  268. if(filedata->thread_id != NULL) {
  269. if(filedata->is_dir) {
  270. f_closedir(&filedata->data.dir);
  271. } else {
  272. f_close(&filedata->data.file);
  273. }
  274. filedata->thread_id = NULL;
  275. }
  276. }
  277. // unmount volume
  278. f_mount(0, sd_app->info.path, 0);
  279. _fs_unlock(&sd_app->info);
  280. }
  281. void app_sd_eject_callback(void* context) {
  282. furi_assert(context);
  283. SdApp* sd_app = context;
  284. sd_set_lines(sd_app, 1, "ejecting SD card");
  285. widget_enabled_set(sd_app->widget, true);
  286. app_sd_unmount_card(sd_app);
  287. sd_set_lines(sd_app, 1, "SD card can be pulled out");
  288. // wait for BACK
  289. app_sd_ask(sd_app, InputBack, InputBack);
  290. widget_enabled_set(sd_app->widget, false);
  291. }
  292. void sd_filesystem(void* p) {
  293. SdApp* sd_app = sd_app_alloc();
  294. FS_Api* fs_api = fs_api_alloc();
  295. Gui* gui = furi_open("gui");
  296. gui_add_widget(gui, sd_app->widget, GuiLayerFullscreen);
  297. gui_add_widget(gui, sd_app->icon.widget, GuiLayerStatusBarLeft);
  298. // add api record
  299. if(!furi_create("sdcard", fs_api)) {
  300. furiac_exit(NULL);
  301. }
  302. // init menu
  303. // TODO menu icon
  304. MenuItem* menu_item;
  305. menu_item = menu_item_alloc_menu("SD Card", assets_icons_get(I_SDcardMounted_11x8));
  306. menu_item_subitem_add(
  307. menu_item, menu_item_alloc_function("Info", NULL, app_sd_info_callback, sd_app));
  308. menu_item_subitem_add(
  309. menu_item, menu_item_alloc_function("Format", NULL, app_sd_format_callback, sd_app));
  310. menu_item_subitem_add(
  311. menu_item, menu_item_alloc_function("Eject", NULL, app_sd_eject_callback, sd_app));
  312. // add item to menu
  313. ValueMutex* menu_vm = furi_open("menu");
  314. furi_check(menu_vm);
  315. with_value_mutex(
  316. menu_vm, (Menu * menu) { menu_item_add(menu, menu_item); });
  317. furiac_ready();
  318. printf("[sd_filesystem] start\n");
  319. // sd card cycle
  320. bool sd_was_present = true;
  321. while(true) {
  322. if(sd_was_present) {
  323. if(hal_gpio_read_sd_detect()) {
  324. printf("[sd_filesystem] card detected\n");
  325. uint8_t bsp_result = BSP_SD_Init();
  326. if(bsp_result) {
  327. sd_app->info.status = SD_LOW_LEVEL_ERR;
  328. printf("[sd_filesystem] bsp error: %x\n", bsp_result);
  329. } else {
  330. printf("[sd_filesystem] bsp ok\n");
  331. sd_app->info.status = f_mount(&sd_app->info.fat_fs, sd_app->info.path, 1);
  332. if(sd_app->info.status != SD_OK) {
  333. printf("[sd_filesystem] mount error: %d\n", sd_app->info.status);
  334. } else {
  335. printf("[sd_filesystem] mount ok\n");
  336. }
  337. }
  338. widget_enabled_set(sd_app->icon.widget, true);
  339. sd_was_present = false;
  340. }
  341. } else {
  342. if(!hal_gpio_read_sd_detect()) {
  343. printf("[sd_filesystem] card removed\n");
  344. widget_enabled_set(sd_app->icon.widget, false);
  345. app_sd_unmount_card(sd_app);
  346. sd_was_present = true;
  347. }
  348. }
  349. delay(1000);
  350. }
  351. }