flipbip_scene_1.c 18 KB

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  1. #include "../flipbip.h"
  2. #include <furi.h>
  3. #include <furi_hal.h>
  4. #include <input/input.h>
  5. #include <gui/elements.h>
  6. //#include <dolphin/dolphin.h>
  7. #include <storage/storage.h>
  8. #include "../helpers/flipbip_haptic.h"
  9. //#include "../helpers/flipbip_speaker.h"
  10. #include "../helpers/flipbip_led.h"
  11. #include "../helpers/flipbip_string.h"
  12. #include "../helpers/flipbip_file.h"
  13. #include <string.h>
  14. #include "../crypto/rand.h"
  15. #include "../crypto/bip32.h"
  16. #include "../crypto/bip39.h"
  17. #include "../crypto/curves.h"
  18. #include "../crypto/memzero.h"
  19. struct FlipBipScene1 {
  20. View* view;
  21. FlipBipScene1Callback callback;
  22. void* context;
  23. };
  24. typedef struct {
  25. int page;
  26. int strength;
  27. uint32_t coin;
  28. CONFIDENTIAL const char* mnemonic;
  29. CONFIDENTIAL uint8_t seed[64];
  30. CONFIDENTIAL const HDNode* node;
  31. CONFIDENTIAL const char* xprv_root;
  32. CONFIDENTIAL const char* xprv_account;
  33. CONFIDENTIAL const char* xpub_account;
  34. CONFIDENTIAL const char* xprv_extended;
  35. CONFIDENTIAL const char* xpub_extended;
  36. } FlipBipScene1Model;
  37. static CONFIDENTIAL char s_disp_text1[30 + 1];
  38. static CONFIDENTIAL char s_disp_text2[30 + 1];
  39. static CONFIDENTIAL char s_disp_text3[30 + 1];
  40. static CONFIDENTIAL char s_disp_text4[30 + 1];
  41. static CONFIDENTIAL char s_disp_text5[30 + 1];
  42. static CONFIDENTIAL char s_disp_text6[30 + 1];
  43. void flipbip_scene_1_set_callback(
  44. FlipBipScene1* instance,
  45. FlipBipScene1Callback callback,
  46. void* context) {
  47. furi_assert(instance);
  48. furi_assert(callback);
  49. instance->callback = callback;
  50. instance->context = context;
  51. }
  52. static void flipbip_scene_1_draw_generic(const char* text, size_t line_len) {
  53. // Split the text into parts
  54. for (size_t si = 1; si <= 6; si++) {
  55. char *ptr = NULL;
  56. if (si == 1) ptr = s_disp_text1;
  57. else if (si == 2) ptr = s_disp_text2;
  58. else if (si == 3) ptr = s_disp_text3;
  59. else if (si == 4) ptr = s_disp_text4;
  60. else if (si == 5) ptr = s_disp_text5;
  61. else if (si == 6) ptr = s_disp_text6;
  62. memzero(ptr, 30 + 1);
  63. if (line_len > 30) {
  64. strncpy(ptr, text + ((si - 1) * 30), 30);
  65. } else {
  66. strncpy(ptr, text + ((si - 1) * line_len), line_len);
  67. }
  68. }
  69. }
  70. static void flipbip_scene_1_draw_mnemonic(const char* mnemonic) {
  71. // Delineate sections of the mnemonic every 4 words
  72. char *mnemonic_working = malloc(strlen(mnemonic) + 1);
  73. strcpy(mnemonic_working, mnemonic);
  74. int word = 0;
  75. for (size_t i = 0; i < strlen(mnemonic_working); i++) {
  76. if (mnemonic_working[i] == ' ') {
  77. word++;
  78. if (word % 4 == 0) {
  79. mnemonic_working[i] = ',';
  80. }
  81. }
  82. }
  83. // Split the mnemonic into parts
  84. char *mnemonic_part = flipbip_strtok(mnemonic_working, ",");
  85. int mi = 0;
  86. while(mnemonic_part != NULL)
  87. {
  88. char *ptr = NULL;
  89. mi++;
  90. if (mi == 1) ptr = s_disp_text1;
  91. else if (mi == 2) ptr = s_disp_text2;
  92. else if (mi == 3) ptr = s_disp_text3;
  93. else if (mi == 4) ptr = s_disp_text4;
  94. else if (mi == 5) ptr = s_disp_text5;
  95. else if (mi == 6) ptr = s_disp_text6;
  96. memzero(ptr, 30 + 1);
  97. if (strlen(mnemonic_part) > 30) {
  98. strncpy(ptr, mnemonic_part, 30);
  99. } else {
  100. strncpy(ptr, mnemonic_part, strlen(mnemonic_part));
  101. }
  102. mnemonic_part = flipbip_strtok(NULL, ",");
  103. }
  104. // Free the working mnemonic memory
  105. memzero(mnemonic_working, strlen(mnemonic_working));
  106. free(mnemonic_working);
  107. }
  108. static void flipbip_scene_1_draw_seed(FlipBipScene1Model* const model) {
  109. char *seed_working = malloc(64 * 2 + 1);
  110. // Convert the seed to a hex string
  111. for (size_t i = 0; i < 64; i++) {
  112. flipbip_btox(model->seed[i], seed_working + (i * 2));
  113. }
  114. flipbip_scene_1_draw_generic(seed_working, 22);
  115. // Free the working seed memory
  116. memzero(seed_working, sizeof(seed_working));
  117. free(seed_working);
  118. }
  119. static void flipbip_scene_1_draw_address(const HDNode* node, uint32_t addr_type, uint32_t addr_index) {
  120. // buffer for key serialization
  121. const size_t buflen = 128;
  122. char buf[128 + 1];
  123. HDNode *addr_node = malloc(sizeof(HDNode));
  124. memcpy(addr_node, node, sizeof(HDNode));
  125. hdnode_private_ckd(addr_node, addr_index);
  126. hdnode_fill_public_key(addr_node);
  127. if (addr_type == 0) { // BTC
  128. // BTC style address
  129. const char addr_version = 0x00;
  130. //const char wif_version = 0x80;
  131. ecdsa_get_address(addr_node->public_key, addr_version, HASHER_SHA2_RIPEMD, HASHER_SHA2D, buf, buflen);
  132. char *address = malloc(buflen + 1);
  133. strncpy(address, buf, buflen);
  134. flipbip_scene_1_draw_generic(address, 12);
  135. memzero(address, buflen + 1);
  136. free(address);
  137. //ecdsa_get_wif(addr_node->private_key, wif_version, HASHER_SHA2D, buf, buflen);
  138. //char *wif = malloc(buflen + 1);
  139. //strncpy(wif, buf, buflen);
  140. } else if (addr_type == 60) { // ETH
  141. // ETH style address
  142. hdnode_get_ethereum_pubkeyhash(addr_node, (uint8_t *)buf);
  143. char *address = malloc(42 + 1);
  144. memcpy(address, "0x", 2);
  145. // Convert the hash to a hex string
  146. for (size_t i = 0; i < 20; i++) {
  147. flipbip_btox(buf[i], address + 2 + (i * 2));
  148. }
  149. flipbip_scene_1_draw_generic(address, 12);
  150. memzero(address, 42 + 1);
  151. free(address);
  152. }
  153. memzero(addr_node, sizeof(HDNode));
  154. free(addr_node);
  155. }
  156. static void flipbip_scene_1_clear_text() {
  157. memzero((void*)s_disp_text1, 30 + 1);
  158. memzero((void*)s_disp_text2, 30 + 1);
  159. memzero((void*)s_disp_text3, 30 + 1);
  160. memzero((void*)s_disp_text4, 30 + 1);
  161. memzero((void*)s_disp_text5, 30 + 1);
  162. memzero((void*)s_disp_text6, 30 + 1);
  163. }
  164. void flipbip_scene_1_draw(Canvas* canvas, FlipBipScene1Model* model) {
  165. //UNUSED(model);
  166. canvas_clear(canvas);
  167. canvas_set_color(canvas, ColorBlack);
  168. flipbip_scene_1_clear_text();
  169. if (model->page == 1) {
  170. const char* info = "-Scroll pages with up/down-"
  171. "p1,2) Mnemonic/Seed "
  172. "p3) xprv Root Key "
  173. "p4,5) xprv/xpub Accnt Keys"
  174. "p6,7) xprv/xpub Extnd Keys"
  175. "p8+) Receive Addresses ";
  176. flipbip_scene_1_draw_generic(info, 27);
  177. }
  178. else if (model->page == 2) {
  179. flipbip_scene_1_draw_mnemonic(model->mnemonic);
  180. }
  181. else if (model->page == 3) {
  182. flipbip_scene_1_draw_seed(model);
  183. }
  184. else if (model->page == 4) {
  185. flipbip_scene_1_draw_generic(model->xprv_root, 20);
  186. }
  187. else if (model->page == 5) {
  188. flipbip_scene_1_draw_generic(model->xprv_account, 20);
  189. }
  190. else if (model->page == 6) {
  191. flipbip_scene_1_draw_generic(model->xpub_account, 20);
  192. }
  193. else if (model->page == 7) {
  194. flipbip_scene_1_draw_generic(model->xprv_extended, 20);
  195. }
  196. else if (model->page == 8) {
  197. flipbip_scene_1_draw_generic(model->xpub_extended, 20);
  198. }
  199. else if (model->page >= 9 && model->page <= 13) {
  200. flipbip_scene_1_draw_address(model->node, model->coin, model->page - 9);
  201. }
  202. if (model->page == 0) {
  203. canvas_set_font(canvas, FontPrimary);
  204. canvas_draw_str(canvas, 1, 10, "Generating...");
  205. canvas_draw_str(canvas, 6, 30, "m/44'/C'/0'/0");
  206. } else if (model->page >= 9 && model->page <= 13) {
  207. canvas_set_font(canvas, FontSecondary);
  208. const char * receive_text;
  209. if (model->coin == 0) { // BTC
  210. receive_text = "BTC receive address:";
  211. }
  212. else if (model->coin == 60) { // ETH
  213. receive_text = "ETH receive address:";
  214. }
  215. else {
  216. receive_text = "Receive address:";
  217. }
  218. canvas_draw_str_aligned(canvas, 1, 2, AlignLeft, AlignTop, receive_text);
  219. canvas_set_font(canvas, FontPrimary);
  220. canvas_draw_str(canvas, 6, 22, s_disp_text1);
  221. canvas_draw_str(canvas, 6, 34, s_disp_text2);
  222. canvas_draw_str(canvas, 6, 46, s_disp_text3);
  223. canvas_draw_str(canvas, 6, 58, s_disp_text4);
  224. }
  225. else {
  226. canvas_set_font(canvas, FontSecondary);
  227. canvas_draw_str_aligned(canvas, 1, 2, AlignLeft, AlignTop, s_disp_text1);
  228. canvas_draw_str_aligned(canvas, 1, 12, AlignLeft, AlignTop, s_disp_text2);
  229. canvas_draw_str_aligned(canvas, 1, 22, AlignLeft, AlignTop, s_disp_text3);
  230. canvas_draw_str_aligned(canvas, 1, 32, AlignLeft, AlignTop, s_disp_text4);
  231. canvas_draw_str_aligned(canvas, 1, 42, AlignLeft, AlignTop, s_disp_text5);
  232. canvas_draw_str_aligned(canvas, 1, 52, AlignLeft, AlignTop, s_disp_text6);
  233. }
  234. }
  235. static void flipbip_scene_1_model_init(FlipBipScene1Model* const model, const int strength, const uint32_t coin, const bool overwrite) {
  236. model->page = 0;
  237. model->coin = coin;
  238. model->strength = strength;
  239. // Allocate memory for mnemonic
  240. char* mnemonic = malloc(256);
  241. memzero(mnemonic, 256);
  242. // Check if the mnemonic key & data is already saved in persistent storage, or overwrite is true
  243. if (overwrite || (!flipbip_has_settings(true) && !flipbip_has_settings(false))) {
  244. // Generate a random mnemonic using trezor-crypto
  245. const char* mnemonic_gen = mnemonic_generate(strength);
  246. // Save the mnemonic to persistent storage
  247. if (!flipbip_save_settings_secure(mnemonic_gen)) return;
  248. // Clear the mnemonic from memory
  249. mnemonic_clear();
  250. }
  251. // Load the mnemonic from persistent storage
  252. if (!flipbip_load_settings_secure(mnemonic)) return;
  253. model->mnemonic = mnemonic;
  254. // test mnemonic
  255. //model->mnemonic = "wealth budget salt video delay obey neutral tail sure soda hold rubber joy movie boat raccoon tornado noise off inmate payment patch group topple";
  256. // Generate a BIP39 seed from the mnemonic
  257. mnemonic_to_seed(model->mnemonic, "", model->seed, 0);
  258. // Generate a BIP32 root HD node from the mnemonic
  259. HDNode *root = malloc(sizeof(HDNode));
  260. hdnode_from_seed(model->seed, 64, SECP256K1_NAME, root);
  261. // m/44'/0'/0'/0 or m/44'/60'/0'/0
  262. const uint32_t purpose = 44;
  263. //const uint32_t coin = 0; // BTC
  264. //const uint32_t coin = 60; // ETH
  265. const uint32_t account = 0;
  266. const uint32_t change = 0;
  267. // constants for BTC / ETH
  268. const uint32_t version_public = 0x0488b21e;
  269. const uint32_t version_private = 0x0488ade4;
  270. // "xprv_magic": 76066276,
  271. // "xpub_magic": 76067358,
  272. // "xpub_magic_segwit_p2sh": 77429938,
  273. // "xpub_magic_segwit_native": 78792518,
  274. // "xpub_magic_multisig_segwit_p2sh": 43365439,
  275. // "xpub_magic_multisig_segwit_native": 44728019,
  276. // buffer for key serialization
  277. const size_t buflen = 128;
  278. char buf[128 + 1];
  279. // root
  280. uint32_t fingerprint = 0;
  281. hdnode_serialize_private(root, fingerprint, version_private, buf, buflen);
  282. char *xprv_root = malloc(buflen + 1);
  283. strncpy(xprv_root, buf, buflen);
  284. model->xprv_root = xprv_root;
  285. HDNode *node = root;
  286. // purpose m/44'
  287. fingerprint = hdnode_fingerprint(node);
  288. hdnode_private_ckd_prime(node, purpose); // purpose
  289. // coin m/44'/0' or m/44'/60'
  290. fingerprint = hdnode_fingerprint(node);
  291. hdnode_private_ckd_prime(node, model->coin); // coin
  292. // account m/44'/0'/0' or m/44'/60'/0'
  293. fingerprint = hdnode_fingerprint(node);
  294. hdnode_private_ckd_prime(node, account); // account
  295. hdnode_serialize_private(node, fingerprint, version_private, buf, buflen);
  296. char *xprv_acc = malloc(buflen + 1);
  297. strncpy(xprv_acc, buf, buflen);
  298. model->xprv_account = xprv_acc;
  299. hdnode_serialize_public(node, fingerprint, version_public, buf, buflen);
  300. char *xpub_acc = malloc(buflen + 1);
  301. strncpy(xpub_acc, buf, buflen);
  302. model->xpub_account = xpub_acc;
  303. // external/internal (change) m/44'/0'/0'/0 or m/44'/60'/0'/0
  304. fingerprint = hdnode_fingerprint(node);
  305. hdnode_private_ckd(node, change); // external/internal (change)
  306. hdnode_serialize_private(node, fingerprint, version_private, buf, buflen);
  307. char *xprv_ext = malloc(buflen + 1);
  308. strncpy(xprv_ext, buf, buflen);
  309. model->xprv_extended = xprv_ext;
  310. hdnode_serialize_public(node, fingerprint, version_public, buf, buflen);
  311. char *xpub_ext = malloc(buflen + 1);
  312. strncpy(xpub_ext, buf, buflen);
  313. model->xpub_extended = xpub_ext;
  314. model->node = node;
  315. model->page = 1;
  316. #if USE_BIP39_CACHE
  317. // Clear the BIP39 cache
  318. bip39_cache_clear();
  319. #endif
  320. }
  321. bool flipbip_scene_1_input(InputEvent* event, void* context) {
  322. furi_assert(context);
  323. FlipBipScene1* instance = context;
  324. if (event->type == InputTypeRelease) {
  325. switch(event->key) {
  326. case InputKeyBack:
  327. with_view_model(
  328. instance->view,
  329. FlipBipScene1Model * model,
  330. {
  331. UNUSED(model);
  332. instance->callback(FlipBipCustomEventScene1Back, instance->context);
  333. },
  334. true);
  335. break;
  336. case InputKeyRight:
  337. case InputKeyDown:
  338. case InputKeyOk:
  339. with_view_model(
  340. instance->view,
  341. FlipBipScene1Model* model,
  342. {
  343. //UNUSED(model);
  344. model->page = (model->page + 1) % 14;
  345. if (model->page == 0) {
  346. model->page = 1;
  347. }
  348. },
  349. true);
  350. break;
  351. case InputKeyLeft:
  352. case InputKeyUp:
  353. with_view_model(
  354. instance->view,
  355. FlipBipScene1Model* model,
  356. {
  357. //UNUSED(model);
  358. model->page = (model->page - 1) % 14;
  359. if (model->page == 0) {
  360. model->page = 13;
  361. }
  362. },
  363. true);
  364. break;
  365. case InputKeyMAX:
  366. break;
  367. }
  368. }
  369. return true;
  370. }
  371. void flipbip_scene_1_exit(void* context) {
  372. furi_assert(context);
  373. FlipBipScene1* instance = (FlipBipScene1*)context;
  374. with_view_model(
  375. instance->view,
  376. FlipBipScene1Model * model,
  377. {
  378. model->page = 0;
  379. model->strength = 0;
  380. model->coin = 0;
  381. for (int i = 0; i < 64; i++) {
  382. model->seed[i] = 0;
  383. }
  384. memzero((void*)model->mnemonic, strlen(model->mnemonic));
  385. free((void*)model->mnemonic);
  386. memzero((void*)model->node, sizeof(HDNode));
  387. free((void*)model->node);
  388. memzero((void*)model->xprv_root, strlen(model->xprv_root));
  389. memzero((void*)model->xprv_account, strlen(model->xprv_account));
  390. memzero((void*)model->xpub_account, strlen(model->xpub_account));
  391. memzero((void*)model->xprv_extended, strlen(model->xprv_extended));
  392. memzero((void*)model->xpub_extended, strlen(model->xpub_extended));
  393. free((void*)model->xprv_root);
  394. free((void*)model->xprv_account);
  395. free((void*)model->xpub_account);
  396. free((void*)model->xprv_extended);
  397. free((void*)model->xpub_extended);
  398. },
  399. true
  400. );
  401. flipbip_scene_1_clear_text();
  402. }
  403. void flipbip_scene_1_enter(void* context) {
  404. furi_assert(context);
  405. FlipBipScene1* instance = (FlipBipScene1*)context;
  406. FlipBip* app = instance->context;
  407. // BIP39 Strength setting
  408. int strength_setting = app->bip39_strength;
  409. int strength = 256; // FlipBipStrength256 // 24 words (256 bit)
  410. if (strength_setting == FlipBipStrength128) strength = 128; // 12 words (128 bit)
  411. else if (strength_setting == FlipBipStrength192) strength = 192; // 18 words (192 bit)
  412. // BIP44 Coin setting
  413. int coin_setting = app->bip44_coin;
  414. uint32_t coin = 0; //FlipBipCoinBTC0 // BTC (0)
  415. if (coin_setting == FlipBipCoinETH60) coin = 60; // ETH (60)
  416. // Overwrite the saved seed with a new one setting
  417. bool overwrite = app->overwrite_saved_seed != 0;
  418. flipbip_play_happy_bump(app);
  419. flipbip_led_set_rgb(app, 255, 0, 0);
  420. with_view_model(
  421. instance->view,
  422. FlipBipScene1Model * model,
  423. {
  424. flipbip_scene_1_model_init(model, strength, coin, overwrite);
  425. },
  426. true
  427. );
  428. }
  429. FlipBipScene1* flipbip_scene_1_alloc() {
  430. FlipBipScene1* instance = malloc(sizeof(FlipBipScene1));
  431. instance->view = view_alloc();
  432. view_allocate_model(instance->view, ViewModelTypeLocking, sizeof(FlipBipScene1Model));
  433. view_set_context(instance->view, instance); // furi_assert crashes in events without this
  434. view_set_draw_callback(instance->view, (ViewDrawCallback)flipbip_scene_1_draw);
  435. view_set_input_callback(instance->view, flipbip_scene_1_input);
  436. view_set_enter_callback(instance->view, flipbip_scene_1_enter);
  437. view_set_exit_callback(instance->view, flipbip_scene_1_exit);
  438. return instance;
  439. }
  440. void flipbip_scene_1_free(FlipBipScene1* instance) {
  441. furi_assert(instance);
  442. with_view_model(
  443. instance->view,
  444. FlipBipScene1Model * model,
  445. {
  446. UNUSED(model);
  447. },
  448. true);
  449. flipbip_scene_1_clear_text();
  450. view_free(instance->view);
  451. free(instance);
  452. }
  453. View* flipbip_scene_1_get_view(FlipBipScene1* instance) {
  454. furi_assert(instance);
  455. return instance->view;
  456. }