DataStore.cpp 22 KB

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  1. #include <Arduino.h>
  2. #include "DataStore.h"
  3. #if defined(EXTRAFS) || defined(QSPIFLASH)
  4. #define MAX_BLOBRECS 100
  5. #else
  6. #define MAX_BLOBRECS 20
  7. #endif
  8. DataStore::DataStore(FILESYSTEM& fs, mesh::RTCClock& clock) : _fs(&fs), _fsExtra(nullptr), _clock(&clock),
  9. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  10. identity_store(fs, "")
  11. #elif defined(RP2040_PLATFORM)
  12. identity_store(fs, "/identity")
  13. #else
  14. identity_store(fs, "/identity")
  15. #endif
  16. {
  17. }
  18. #if defined(EXTRAFS) || defined(QSPIFLASH)
  19. DataStore::DataStore(FILESYSTEM& fs, FILESYSTEM& fsExtra, mesh::RTCClock& clock) : _fs(&fs), _fsExtra(&fsExtra), _clock(&clock),
  20. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  21. identity_store(fs, "")
  22. #elif defined(RP2040_PLATFORM)
  23. identity_store(fs, "/identity")
  24. #else
  25. identity_store(fs, "/identity")
  26. #endif
  27. {
  28. }
  29. #endif
  30. static File openWrite(FILESYSTEM* fs, const char* filename) {
  31. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  32. fs->remove(filename);
  33. return fs->open(filename, FILE_O_WRITE);
  34. #elif defined(RP2040_PLATFORM)
  35. return fs->open(filename, "w");
  36. #else
  37. return fs->open(filename, "w", true);
  38. #endif
  39. }
  40. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  41. static uint32_t _ContactsChannelsTotalBlocks = 0;
  42. #endif
  43. void DataStore::begin() {
  44. #if defined(RP2040_PLATFORM)
  45. identity_store.begin();
  46. #endif
  47. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  48. _ContactsChannelsTotalBlocks = _getContactsChannelsFS()->_getFS()->cfg->block_count;
  49. checkAdvBlobFile();
  50. #if defined(EXTRAFS) || defined(QSPIFLASH)
  51. migrateToSecondaryFS();
  52. #endif
  53. #else
  54. // init 'blob store' support
  55. _fs->mkdir("/bl");
  56. #endif
  57. }
  58. #if defined(ESP32)
  59. #include <SPIFFS.h>
  60. #include <nvs_flash.h>
  61. #elif defined(RP2040_PLATFORM)
  62. #include <LittleFS.h>
  63. #elif defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  64. #if defined(QSPIFLASH)
  65. #include <CustomLFS_QSPIFlash.h>
  66. #elif defined(EXTRAFS)
  67. #include <CustomLFS.h>
  68. #else
  69. #include <InternalFileSystem.h>
  70. #endif
  71. #endif
  72. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  73. int _countLfsBlock(void *p, lfs_block_t block){
  74. if (block > _ContactsChannelsTotalBlocks) {
  75. MESH_DEBUG_PRINTLN("ERROR: Block %d exceeds filesystem bounds - CORRUPTION DETECTED!", block);
  76. return LFS_ERR_CORRUPT; // return error to abort lfs_traverse() gracefully
  77. }
  78. lfs_size_t *size = (lfs_size_t*) p;
  79. *size += 1;
  80. return 0;
  81. }
  82. lfs_ssize_t _getLfsUsedBlockCount(FILESYSTEM* fs) {
  83. lfs_size_t size = 0;
  84. int err = lfs_traverse(fs->_getFS(), _countLfsBlock, &size);
  85. if (err) {
  86. MESH_DEBUG_PRINTLN("ERROR: lfs_traverse() error: %d", err);
  87. return 0;
  88. }
  89. return size;
  90. }
  91. #endif
  92. uint32_t DataStore::getStorageUsedKb() const {
  93. #if defined(ESP32)
  94. return SPIFFS.usedBytes() / 1024;
  95. #elif defined(RP2040_PLATFORM)
  96. FSInfo info;
  97. info.usedBytes = 0;
  98. _fs->info(info);
  99. return info.usedBytes / 1024;
  100. #elif defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  101. const lfs_config* config = _getContactsChannelsFS()->_getFS()->cfg;
  102. int usedBlockCount = _getLfsUsedBlockCount(_getContactsChannelsFS());
  103. int usedBytes = config->block_size * usedBlockCount;
  104. return usedBytes / 1024;
  105. #else
  106. return 0;
  107. #endif
  108. }
  109. uint32_t DataStore::getStorageTotalKb() const {
  110. #if defined(ESP32)
  111. return SPIFFS.totalBytes() / 1024;
  112. #elif defined(RP2040_PLATFORM)
  113. FSInfo info;
  114. info.totalBytes = 0;
  115. _fs->info(info);
  116. return info.totalBytes / 1024;
  117. #elif defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  118. const lfs_config* config = _getContactsChannelsFS()->_getFS()->cfg;
  119. int totalBytes = config->block_size * config->block_count;
  120. return totalBytes / 1024;
  121. #else
  122. return 0;
  123. #endif
  124. }
  125. File DataStore::openRead(const char* filename) {
  126. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  127. return _fs->open(filename, FILE_O_READ);
  128. #elif defined(RP2040_PLATFORM)
  129. return _fs->open(filename, "r");
  130. #else
  131. return _fs->open(filename, "r", false);
  132. #endif
  133. }
  134. File DataStore::openRead(FILESYSTEM* fs, const char* filename) {
  135. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  136. return fs->open(filename, FILE_O_READ);
  137. #elif defined(RP2040_PLATFORM)
  138. return fs->open(filename, "r");
  139. #else
  140. return fs->open(filename, "r", false);
  141. #endif
  142. }
  143. bool DataStore::removeFile(const char* filename) {
  144. return _fs->remove(filename);
  145. }
  146. bool DataStore::removeFile(FILESYSTEM* fs, const char* filename) {
  147. return fs->remove(filename);
  148. }
  149. bool DataStore::formatFileSystem() {
  150. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  151. if (_fsExtra == nullptr) {
  152. return _fs->format();
  153. } else {
  154. return _fs->format() && _fsExtra->format();
  155. }
  156. #elif defined(RP2040_PLATFORM)
  157. return LittleFS.format();
  158. #elif defined(ESP32)
  159. bool fs_success = ((fs::SPIFFSFS *)_fs)->format();
  160. esp_err_t nvs_err = nvs_flash_erase(); // no need to reinit, will be done by reboot
  161. return fs_success && (nvs_err == ESP_OK);
  162. #else
  163. #error "need to implement format()"
  164. #endif
  165. }
  166. bool DataStore::loadMainIdentity(mesh::LocalIdentity &identity) {
  167. return identity_store.load("_main", identity);
  168. }
  169. bool DataStore::saveMainIdentity(const mesh::LocalIdentity &identity) {
  170. return identity_store.save("_main", identity);
  171. }
  172. void DataStore::loadPrefs(NodePrefs& prefs, double& node_lat, double& node_lon) {
  173. if (_fs->exists("/new_prefs")) {
  174. loadPrefsInt("/new_prefs", prefs, node_lat, node_lon); // new filename
  175. } else if (_fs->exists("/node_prefs")) {
  176. loadPrefsInt("/node_prefs", prefs, node_lat, node_lon);
  177. savePrefs(prefs, node_lat, node_lon); // save to new filename
  178. _fs->remove("/node_prefs"); // remove old
  179. }
  180. }
  181. void DataStore::loadPrefsInt(const char *filename, NodePrefs& _prefs, double& node_lat, double& node_lon) {
  182. File file = openRead(_fs, filename);
  183. if (file) {
  184. uint8_t pad[8];
  185. file.read((uint8_t *)&_prefs.airtime_factor, sizeof(float)); // 0
  186. file.read((uint8_t *)_prefs.node_name, sizeof(_prefs.node_name)); // 4
  187. file.read(pad, 4); // 36
  188. file.read((uint8_t *)&node_lat, sizeof(node_lat)); // 40
  189. file.read((uint8_t *)&node_lon, sizeof(node_lon)); // 48
  190. file.read((uint8_t *)&_prefs.freq, sizeof(_prefs.freq)); // 56
  191. file.read((uint8_t *)&_prefs.sf, sizeof(_prefs.sf)); // 60
  192. file.read((uint8_t *)&_prefs.cr, sizeof(_prefs.cr)); // 61
  193. file.read((uint8_t *)&_prefs.client_repeat, sizeof(_prefs.client_repeat)); // 62
  194. file.read((uint8_t *)&_prefs.manual_add_contacts, sizeof(_prefs.manual_add_contacts)); // 63
  195. file.read((uint8_t *)&_prefs.bw, sizeof(_prefs.bw)); // 64
  196. file.read((uint8_t *)&_prefs.tx_power_dbm, sizeof(_prefs.tx_power_dbm)); // 68
  197. file.read((uint8_t *)&_prefs.telemetry_mode_base, sizeof(_prefs.telemetry_mode_base)); // 69
  198. file.read((uint8_t *)&_prefs.telemetry_mode_loc, sizeof(_prefs.telemetry_mode_loc)); // 70
  199. file.read((uint8_t *)&_prefs.telemetry_mode_env, sizeof(_prefs.telemetry_mode_env)); // 71
  200. file.read((uint8_t *)&_prefs.rx_delay_base, sizeof(_prefs.rx_delay_base)); // 72
  201. file.read((uint8_t *)&_prefs.advert_loc_policy, sizeof(_prefs.advert_loc_policy)); // 76
  202. file.read((uint8_t *)&_prefs.multi_acks, sizeof(_prefs.multi_acks)); // 77
  203. file.read((uint8_t *)&_prefs.path_hash_mode, sizeof(_prefs.path_hash_mode)); // 78
  204. file.read(pad, 1); // 79
  205. file.read((uint8_t *)&_prefs.ble_pin, sizeof(_prefs.ble_pin)); // 80
  206. file.read((uint8_t *)&_prefs.buzzer_quiet, sizeof(_prefs.buzzer_quiet)); // 84
  207. file.read((uint8_t *)&_prefs.gps_enabled, sizeof(_prefs.gps_enabled)); // 85
  208. file.read((uint8_t *)&_prefs.gps_interval, sizeof(_prefs.gps_interval)); // 86
  209. file.read((uint8_t *)&_prefs.autoadd_config, sizeof(_prefs.autoadd_config)); // 87
  210. file.read((uint8_t *)&_prefs.autoadd_max_hops, sizeof(_prefs.autoadd_max_hops)); // 88
  211. file.read((uint8_t *)&_prefs.rx_boosted_gain, sizeof(_prefs.rx_boosted_gain)); // 89
  212. if (file.available() >= (int)sizeof(_prefs.wifi_powersave)) {
  213. file.read((uint8_t *)&_prefs.wifi_powersave, sizeof(_prefs.wifi_powersave)); // 90
  214. }
  215. if (file.available() >= (int)sizeof(_prefs.wifi_ssid)) {
  216. file.read((uint8_t *)_prefs.wifi_ssid, sizeof(_prefs.wifi_ssid)); // 91
  217. _prefs.wifi_ssid[sizeof(_prefs.wifi_ssid) - 1] = 0;
  218. }
  219. if (file.available() >= (int)sizeof(_prefs.wifi_pwd)) {
  220. file.read((uint8_t *)_prefs.wifi_pwd, sizeof(_prefs.wifi_pwd)); // 124
  221. _prefs.wifi_pwd[sizeof(_prefs.wifi_pwd) - 1] = 0;
  222. }
  223. file.close();
  224. }
  225. }
  226. void DataStore::savePrefs(const NodePrefs& _prefs, double node_lat, double node_lon) {
  227. File file = openWrite(_fs, "/new_prefs");
  228. if (file) {
  229. uint8_t pad[8];
  230. memset(pad, 0, sizeof(pad));
  231. file.write((uint8_t *)&_prefs.airtime_factor, sizeof(float)); // 0
  232. file.write((uint8_t *)_prefs.node_name, sizeof(_prefs.node_name)); // 4
  233. file.write(pad, 4); // 36
  234. file.write((uint8_t *)&node_lat, sizeof(node_lat)); // 40
  235. file.write((uint8_t *)&node_lon, sizeof(node_lon)); // 48
  236. file.write((uint8_t *)&_prefs.freq, sizeof(_prefs.freq)); // 56
  237. file.write((uint8_t *)&_prefs.sf, sizeof(_prefs.sf)); // 60
  238. file.write((uint8_t *)&_prefs.cr, sizeof(_prefs.cr)); // 61
  239. file.write((uint8_t *)&_prefs.client_repeat, sizeof(_prefs.client_repeat)); // 62
  240. file.write((uint8_t *)&_prefs.manual_add_contacts, sizeof(_prefs.manual_add_contacts)); // 63
  241. file.write((uint8_t *)&_prefs.bw, sizeof(_prefs.bw)); // 64
  242. file.write((uint8_t *)&_prefs.tx_power_dbm, sizeof(_prefs.tx_power_dbm)); // 68
  243. file.write((uint8_t *)&_prefs.telemetry_mode_base, sizeof(_prefs.telemetry_mode_base)); // 69
  244. file.write((uint8_t *)&_prefs.telemetry_mode_loc, sizeof(_prefs.telemetry_mode_loc)); // 70
  245. file.write((uint8_t *)&_prefs.telemetry_mode_env, sizeof(_prefs.telemetry_mode_env)); // 71
  246. file.write((uint8_t *)&_prefs.rx_delay_base, sizeof(_prefs.rx_delay_base)); // 72
  247. file.write((uint8_t *)&_prefs.advert_loc_policy, sizeof(_prefs.advert_loc_policy)); // 76
  248. file.write((uint8_t *)&_prefs.multi_acks, sizeof(_prefs.multi_acks)); // 77
  249. file.write((uint8_t *)&_prefs.path_hash_mode, sizeof(_prefs.path_hash_mode)); // 78
  250. file.write(pad, 1); // 79
  251. file.write((uint8_t *)&_prefs.ble_pin, sizeof(_prefs.ble_pin)); // 80
  252. file.write((uint8_t *)&_prefs.buzzer_quiet, sizeof(_prefs.buzzer_quiet)); // 84
  253. file.write((uint8_t *)&_prefs.gps_enabled, sizeof(_prefs.gps_enabled)); // 85
  254. file.write((uint8_t *)&_prefs.gps_interval, sizeof(_prefs.gps_interval)); // 86
  255. file.write((uint8_t *)&_prefs.autoadd_config, sizeof(_prefs.autoadd_config)); // 87
  256. file.write((uint8_t *)&_prefs.autoadd_max_hops, sizeof(_prefs.autoadd_max_hops)); // 88
  257. file.write((uint8_t *)&_prefs.rx_boosted_gain, sizeof(_prefs.rx_boosted_gain)); // 89
  258. file.write((uint8_t *)&_prefs.wifi_powersave, sizeof(_prefs.wifi_powersave)); // 90
  259. file.write((uint8_t *)_prefs.wifi_ssid, sizeof(_prefs.wifi_ssid)); // 91
  260. file.write((uint8_t *)_prefs.wifi_pwd, sizeof(_prefs.wifi_pwd)); // 124
  261. file.close();
  262. }
  263. }
  264. void DataStore::loadContacts(DataStoreHost* host) {
  265. File file = openRead(_getContactsChannelsFS(), "/contacts3");
  266. if (file) {
  267. bool full = false;
  268. while (!full) {
  269. ContactInfo c;
  270. uint8_t pub_key[32];
  271. uint8_t unused;
  272. bool success = (file.read(pub_key, 32) == 32);
  273. success = success && (file.read((uint8_t *)&c.name, 32) == 32);
  274. success = success && (file.read(&c.type, 1) == 1);
  275. success = success && (file.read(&c.flags, 1) == 1);
  276. success = success && (file.read(&unused, 1) == 1);
  277. success = success && (file.read((uint8_t *)&c.sync_since, 4) == 4); // was 'reserved'
  278. success = success && (file.read((uint8_t *)&c.out_path_len, 1) == 1);
  279. success = success && (file.read((uint8_t *)&c.last_advert_timestamp, 4) == 4);
  280. success = success && (file.read(c.out_path, 64) == 64);
  281. success = success && (file.read((uint8_t *)&c.lastmod, 4) == 4);
  282. success = success && (file.read((uint8_t *)&c.gps_lat, 4) == 4);
  283. success = success && (file.read((uint8_t *)&c.gps_lon, 4) == 4);
  284. if (!success) break; // EOF
  285. c.id = mesh::Identity(pub_key);
  286. if (!host->onContactLoaded(c)) full = true;
  287. }
  288. file.close();
  289. }
  290. }
  291. void DataStore::saveContacts(DataStoreHost* host) {
  292. File file = openWrite(_getContactsChannelsFS(), "/contacts3");
  293. if (file) {
  294. uint32_t idx = 0;
  295. ContactInfo c;
  296. uint8_t unused = 0;
  297. while (host->getContactForSave(idx, c)) {
  298. bool success = (file.write(c.id.pub_key, 32) == 32);
  299. success = success && (file.write((uint8_t *)&c.name, 32) == 32);
  300. success = success && (file.write(&c.type, 1) == 1);
  301. success = success && (file.write(&c.flags, 1) == 1);
  302. success = success && (file.write(&unused, 1) == 1);
  303. success = success && (file.write((uint8_t *)&c.sync_since, 4) == 4);
  304. success = success && (file.write((uint8_t *)&c.out_path_len, 1) == 1);
  305. success = success && (file.write((uint8_t *)&c.last_advert_timestamp, 4) == 4);
  306. success = success && (file.write(c.out_path, 64) == 64);
  307. success = success && (file.write((uint8_t *)&c.lastmod, 4) == 4);
  308. success = success && (file.write((uint8_t *)&c.gps_lat, 4) == 4);
  309. success = success && (file.write((uint8_t *)&c.gps_lon, 4) == 4);
  310. if (!success) break; // write failed
  311. idx++; // advance to next contact
  312. }
  313. file.close();
  314. }
  315. }
  316. void DataStore::loadChannels(DataStoreHost* host) {
  317. File file = openRead(_getContactsChannelsFS(), "/channels2");
  318. if (file) {
  319. bool full = false;
  320. uint8_t channel_idx = 0;
  321. while (!full) {
  322. ChannelDetails ch;
  323. uint8_t unused[4];
  324. bool success = (file.read(unused, 4) == 4);
  325. success = success && (file.read((uint8_t *)ch.name, 32) == 32);
  326. success = success && (file.read((uint8_t *)ch.channel.secret, 32) == 32);
  327. if (!success) break; // EOF
  328. if (host->onChannelLoaded(channel_idx, ch)) {
  329. channel_idx++;
  330. } else {
  331. full = true;
  332. }
  333. }
  334. file.close();
  335. }
  336. }
  337. void DataStore::saveChannels(DataStoreHost* host) {
  338. File file = openWrite(_getContactsChannelsFS(), "/channels2");
  339. if (file) {
  340. uint8_t channel_idx = 0;
  341. ChannelDetails ch;
  342. uint8_t unused[4];
  343. memset(unused, 0, 4);
  344. while (host->getChannelForSave(channel_idx, ch)) {
  345. bool success = (file.write(unused, 4) == 4);
  346. success = success && (file.write((uint8_t *)ch.name, 32) == 32);
  347. success = success && (file.write((uint8_t *)ch.channel.secret, 32) == 32);
  348. if (!success) break; // write failed
  349. channel_idx++;
  350. }
  351. file.close();
  352. }
  353. }
  354. #if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
  355. #define MAX_ADVERT_PKT_LEN (2 + 32 + PUB_KEY_SIZE + 4 + SIGNATURE_SIZE + MAX_ADVERT_DATA_SIZE)
  356. struct BlobRec {
  357. uint32_t timestamp;
  358. uint8_t key[7];
  359. uint8_t len;
  360. uint8_t data[MAX_ADVERT_PKT_LEN];
  361. };
  362. void DataStore::checkAdvBlobFile() {
  363. if (!_getContactsChannelsFS()->exists("/adv_blobs")) {
  364. File file = openWrite(_getContactsChannelsFS(), "/adv_blobs");
  365. if (file) {
  366. BlobRec zeroes;
  367. memset(&zeroes, 0, sizeof(zeroes));
  368. for (int i = 0; i < MAX_BLOBRECS; i++) { // pre-allocate to fixed size
  369. file.write((uint8_t *) &zeroes, sizeof(zeroes));
  370. }
  371. file.close();
  372. }
  373. }
  374. }
  375. void DataStore::migrateToSecondaryFS() {
  376. // migrate old adv_blobs, contacts3 and channels2 files to secondary FS if they don't already exist
  377. if (!_fsExtra->exists("/adv_blobs")) {
  378. if (_fs->exists("/adv_blobs")) {
  379. File oldAdvBlobs = openRead(_fs, "/adv_blobs");
  380. File newAdvBlobs = openWrite(_fsExtra, "/adv_blobs");
  381. if (oldAdvBlobs && newAdvBlobs) {
  382. BlobRec rec;
  383. size_t count = 0;
  384. // Copy 20 BlobRecs from old to new
  385. while (count < 20 && oldAdvBlobs.read((uint8_t *)&rec, sizeof(rec)) == sizeof(rec)) {
  386. newAdvBlobs.seek(count * sizeof(BlobRec));
  387. newAdvBlobs.write((uint8_t *)&rec, sizeof(rec));
  388. count++;
  389. }
  390. }
  391. if (oldAdvBlobs) oldAdvBlobs.close();
  392. if (newAdvBlobs) newAdvBlobs.close();
  393. _fs->remove("/adv_blobs");
  394. }
  395. }
  396. if (!_fsExtra->exists("/contacts3")) {
  397. if (_fs->exists("/contacts3")) {
  398. File oldFile = openRead(_fs, "/contacts3");
  399. File newFile = openWrite(_fsExtra, "/contacts3");
  400. if (oldFile && newFile) {
  401. uint8_t buf[64];
  402. int n;
  403. while ((n = oldFile.read(buf, sizeof(buf))) > 0) {
  404. newFile.write(buf, n);
  405. }
  406. }
  407. if (oldFile) oldFile.close();
  408. if (newFile) newFile.close();
  409. _fs->remove("/contacts3");
  410. }
  411. }
  412. if (!_fsExtra->exists("/channels2")) {
  413. if (_fs->exists("/channels2")) {
  414. File oldFile = openRead(_fs, "/channels2");
  415. File newFile = openWrite(_fsExtra, "/channels2");
  416. if (oldFile && newFile) {
  417. uint8_t buf[64];
  418. int n;
  419. while ((n = oldFile.read(buf, sizeof(buf))) > 0) {
  420. newFile.write(buf, n);
  421. }
  422. }
  423. if (oldFile) oldFile.close();
  424. if (newFile) newFile.close();
  425. _fs->remove("/channels2");
  426. }
  427. }
  428. // cleanup nodes which have been testing the extra fs, copy _main.id and new_prefs back to primary
  429. if (_fsExtra->exists("/_main.id")) {
  430. if (_fs->exists("/_main.id")) {_fs->remove("/_main.id");}
  431. File oldFile = openRead(_fsExtra, "/_main.id");
  432. File newFile = openWrite(_fs, "/_main.id");
  433. if (oldFile && newFile) {
  434. uint8_t buf[64];
  435. int n;
  436. while ((n = oldFile.read(buf, sizeof(buf))) > 0) {
  437. newFile.write(buf, n);
  438. }
  439. }
  440. if (oldFile) oldFile.close();
  441. if (newFile) newFile.close();
  442. _fsExtra->remove("/_main.id");
  443. }
  444. if (_fsExtra->exists("/new_prefs")) {
  445. if (_fs->exists("/new_prefs")) {_fs->remove("/new_prefs");}
  446. File oldFile = openRead(_fsExtra, "/new_prefs");
  447. File newFile = openWrite(_fs, "/new_prefs");
  448. if (oldFile && newFile) {
  449. uint8_t buf[64];
  450. int n;
  451. while ((n = oldFile.read(buf, sizeof(buf))) > 0) {
  452. newFile.write(buf, n);
  453. }
  454. }
  455. if (oldFile) oldFile.close();
  456. if (newFile) newFile.close();
  457. _fsExtra->remove("/new_prefs");
  458. }
  459. // remove files from where they should not be anymore
  460. if (_fs->exists("/adv_blobs")) {
  461. _fs->remove("/adv_blobs");
  462. }
  463. if (_fs->exists("/contacts3")) {
  464. _fs->remove("/contacts3");
  465. }
  466. if (_fs->exists("/channels2")) {
  467. _fs->remove("/channels2");
  468. }
  469. if (_fsExtra->exists("/_main.id")) {
  470. _fsExtra->remove("/_main.id");
  471. }
  472. if (_fsExtra->exists("/new_prefs")) {
  473. _fsExtra->remove("/new_prefs");
  474. }
  475. }
  476. uint8_t DataStore::getBlobByKey(const uint8_t key[], int key_len, uint8_t dest_buf[]) {
  477. File file = openRead(_getContactsChannelsFS(), "/adv_blobs");
  478. uint8_t len = 0; // 0 = not found
  479. if (file) {
  480. BlobRec tmp;
  481. while (file.read((uint8_t *) &tmp, sizeof(tmp)) == sizeof(tmp)) {
  482. if (memcmp(key, tmp.key, sizeof(tmp.key)) == 0) { // only match by 7 byte prefix
  483. len = tmp.len;
  484. memcpy(dest_buf, tmp.data, len);
  485. break;
  486. }
  487. }
  488. file.close();
  489. }
  490. return len;
  491. }
  492. bool DataStore::putBlobByKey(const uint8_t key[], int key_len, const uint8_t src_buf[], uint8_t len) {
  493. if (len < PUB_KEY_SIZE+4+SIGNATURE_SIZE || len > MAX_ADVERT_PKT_LEN) return false;
  494. checkAdvBlobFile();
  495. File file = _getContactsChannelsFS()->open("/adv_blobs", FILE_O_WRITE);
  496. if (file) {
  497. uint32_t pos = 0, found_pos = 0;
  498. uint32_t min_timestamp = 0xFFFFFFFF;
  499. // search for matching key OR evict by oldest timestmap
  500. BlobRec tmp;
  501. file.seek(0);
  502. while (file.read((uint8_t *) &tmp, sizeof(tmp)) == sizeof(tmp)) {
  503. if (memcmp(key, tmp.key, sizeof(tmp.key)) == 0) { // only match by 7 byte prefix
  504. found_pos = pos;
  505. break;
  506. }
  507. if (tmp.timestamp < min_timestamp) {
  508. min_timestamp = tmp.timestamp;
  509. found_pos = pos;
  510. }
  511. pos += sizeof(tmp);
  512. }
  513. memcpy(tmp.key, key, sizeof(tmp.key)); // just record 7 byte prefix of key
  514. memcpy(tmp.data, src_buf, len);
  515. tmp.len = len;
  516. tmp.timestamp = _clock->getCurrentTime();
  517. file.seek(found_pos);
  518. file.write((uint8_t *) &tmp, sizeof(tmp));
  519. file.close();
  520. return true;
  521. }
  522. return false; // error
  523. }
  524. bool DataStore::deleteBlobByKey(const uint8_t key[], int key_len) {
  525. return true; // this is just a stub on NRF52/STM32 platforms
  526. }
  527. #else
  528. inline void makeBlobPath(const uint8_t key[], int key_len, char* path, size_t path_size) {
  529. char fname[18];
  530. if (key_len > 8) key_len = 8; // just use first 8 bytes (prefix)
  531. mesh::Utils::toHex(fname, key, key_len);
  532. sprintf(path, "/bl/%s", fname);
  533. }
  534. uint8_t DataStore::getBlobByKey(const uint8_t key[], int key_len, uint8_t dest_buf[]) {
  535. char path[64];
  536. makeBlobPath(key, key_len, path, sizeof(path));
  537. if (_fs->exists(path)) {
  538. File f = openRead(_fs, path);
  539. if (f) {
  540. int len = f.read(dest_buf, 255); // currently MAX 255 byte blob len supported!!
  541. f.close();
  542. return len;
  543. }
  544. }
  545. return 0; // not found
  546. }
  547. bool DataStore::putBlobByKey(const uint8_t key[], int key_len, const uint8_t src_buf[], uint8_t len) {
  548. char path[64];
  549. makeBlobPath(key, key_len, path, sizeof(path));
  550. File f = openWrite(_fs, path);
  551. if (f) {
  552. int n = f.write(src_buf, len);
  553. f.close();
  554. if (n == len) return true; // success!
  555. _fs->remove(path); // blob was only partially written!
  556. }
  557. return false; // error
  558. }
  559. bool DataStore::deleteBlobByKey(const uint8_t key[], int key_len) {
  560. char path[64];
  561. makeBlobPath(key, key_len, path, sizeof(path));
  562. _fs->remove(path);
  563. return true; // return true even if file did not exist
  564. }
  565. #endif