bad_usb_script.c 18 KB

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  1. #include <furi.h>
  2. #include <furi_hal.h>
  3. #include <gui/gui.h>
  4. #include <input/input.h>
  5. #include <lib/toolbox/args.h>
  6. #include <furi_hal_usb_hid.h>
  7. #include <storage/storage.h>
  8. #include "bad_usb_script.h"
  9. #define TAG "BadUSB"
  10. #define WORKER_TAG TAG "Worker"
  11. #define FILE_BUFFER_LEN 16
  12. typedef enum {
  13. WorkerEvtReserved = (1 << 0),
  14. WorkerEvtToggle = (1 << 1),
  15. WorkerEvtEnd = (1 << 2),
  16. WorkerEvtConnect = (1 << 3),
  17. WorkerEvtDisconnect = (1 << 4),
  18. } WorkerEvtFlags;
  19. struct BadUsbScript {
  20. BadUsbState st;
  21. string_t file_path;
  22. uint32_t defdelay;
  23. FuriThread* thread;
  24. uint8_t file_buf[FILE_BUFFER_LEN + 1];
  25. uint8_t buf_start;
  26. uint8_t buf_len;
  27. bool file_end;
  28. string_t line;
  29. string_t line_prev;
  30. uint32_t repeat_cnt;
  31. };
  32. typedef struct {
  33. char* name;
  34. uint16_t keycode;
  35. } DuckyKey;
  36. static const DuckyKey ducky_keys[] = {
  37. {"CTRL-ALT", KEY_MOD_LEFT_CTRL | KEY_MOD_LEFT_ALT},
  38. {"CTRL-SHIFT", KEY_MOD_LEFT_CTRL | KEY_MOD_LEFT_SHIFT},
  39. {"ALT-SHIFT", KEY_MOD_LEFT_ALT | KEY_MOD_LEFT_SHIFT},
  40. {"ALT-GUI", KEY_MOD_LEFT_ALT | KEY_MOD_LEFT_GUI},
  41. {"CTRL", KEY_MOD_LEFT_CTRL},
  42. {"CONTROL", KEY_MOD_LEFT_CTRL},
  43. {"SHIFT", KEY_MOD_LEFT_SHIFT},
  44. {"ALT", KEY_MOD_LEFT_ALT},
  45. {"GUI", KEY_MOD_LEFT_GUI},
  46. {"WINDOWS", KEY_MOD_LEFT_GUI},
  47. {"DOWNARROW", KEY_DOWN_ARROW},
  48. {"DOWN", KEY_DOWN_ARROW},
  49. {"LEFTARROW", KEY_LEFT_ARROW},
  50. {"LEFT", KEY_LEFT_ARROW},
  51. {"RIGHTARROW", KEY_RIGHT_ARROW},
  52. {"RIGHT", KEY_RIGHT_ARROW},
  53. {"UPARROW", KEY_UP_ARROW},
  54. {"UP", KEY_UP_ARROW},
  55. {"ENTER", KEY_ENTER},
  56. {"BREAK", KEY_PAUSE},
  57. {"PAUSE", KEY_PAUSE},
  58. {"CAPSLOCK", KEY_CAPS_LOCK},
  59. {"DELETE", KEY_DELETE},
  60. {"BACKSPACE", KEY_BACKSPACE},
  61. {"END", KEY_END},
  62. {"ESC", KEY_ESC},
  63. {"ESCAPE", KEY_ESC},
  64. {"HOME", KEY_HOME},
  65. {"INSERT", KEY_INSERT},
  66. {"NUMLOCK", KEY_NUM_LOCK},
  67. {"PAGEUP", KEY_PAGE_UP},
  68. {"PAGEDOWN", KEY_PAGE_DOWN},
  69. {"PRINTSCREEN", KEY_PRINT},
  70. {"SCROLLOCK", KEY_SCROLL_LOCK},
  71. {"SPACE", KEY_SPACE},
  72. {"TAB", KEY_TAB},
  73. {"MENU", KEY_APPLICATION},
  74. {"APP", KEY_APPLICATION},
  75. {"F1", KEY_F1},
  76. {"F2", KEY_F2},
  77. {"F3", KEY_F3},
  78. {"F4", KEY_F4},
  79. {"F5", KEY_F5},
  80. {"F6", KEY_F6},
  81. {"F7", KEY_F7},
  82. {"F8", KEY_F8},
  83. {"F9", KEY_F9},
  84. {"F10", KEY_F10},
  85. {"F11", KEY_F11},
  86. {"F12", KEY_F12},
  87. };
  88. static const char ducky_cmd_comment[] = {"REM"};
  89. static const char ducky_cmd_delay[] = {"DELAY "};
  90. static const char ducky_cmd_string[] = {"STRING "};
  91. static const char ducky_cmd_defdelay_1[] = {"DEFAULT_DELAY "};
  92. static const char ducky_cmd_defdelay_2[] = {"DEFAULTDELAY "};
  93. static const char ducky_cmd_repeat[] = {"REPEAT "};
  94. static const char ducky_cmd_altchar[] = {"ALTCHAR "};
  95. static const char ducky_cmd_altstr_1[] = {"ALTSTRING "};
  96. static const char ducky_cmd_altstr_2[] = {"ALTCODE "};
  97. static const uint8_t numpad_keys[10] = {
  98. KEYPAD_0,
  99. KEYPAD_1,
  100. KEYPAD_2,
  101. KEYPAD_3,
  102. KEYPAD_4,
  103. KEYPAD_5,
  104. KEYPAD_6,
  105. KEYPAD_7,
  106. KEYPAD_8,
  107. KEYPAD_9,
  108. };
  109. static bool ducky_get_number(const char* param, uint32_t* val) {
  110. uint32_t value = 0;
  111. if(sscanf(param, "%lu", &value) == 1) {
  112. *val = value;
  113. return true;
  114. }
  115. return false;
  116. }
  117. static uint32_t ducky_get_command_len(const char* line) {
  118. uint32_t len = strlen(line);
  119. for(uint32_t i = 0; i < len; i++) {
  120. if(line[i] == ' ') return i;
  121. }
  122. return 0;
  123. }
  124. static void ducky_numlock_on() {
  125. if((furi_hal_hid_get_led_state() & HID_KB_LED_NUM) == 0) {
  126. furi_hal_hid_kb_press(KEY_NUM_LOCK);
  127. furi_hal_hid_kb_release(KEY_NUM_LOCK);
  128. }
  129. }
  130. static bool ducky_numpad_press(const char num) {
  131. if((num < '0') || (num > '9')) return false;
  132. uint16_t key = numpad_keys[num - '0'];
  133. furi_hal_hid_kb_press(key);
  134. furi_hal_hid_kb_release(key);
  135. return true;
  136. }
  137. static bool ducky_altchar(const char* charcode) {
  138. uint8_t i = 0;
  139. bool state = false;
  140. //TODO: numlock
  141. FURI_LOG_I(WORKER_TAG, "char %s", charcode);
  142. furi_hal_hid_kb_press(KEY_MOD_LEFT_ALT);
  143. while((charcode[i] != ' ') && (charcode[i] != '\n') && (charcode[i] != '\0')) {
  144. state = ducky_numpad_press(charcode[i]);
  145. if(state == false) break;
  146. i++;
  147. }
  148. furi_hal_hid_kb_release(KEY_MOD_LEFT_ALT);
  149. return state;
  150. }
  151. static bool ducky_altstring(const char* param) {
  152. uint32_t i = 0;
  153. bool state = false;
  154. while(param[i] != '\0') {
  155. if((param[i] < ' ') || (param[i] > '~')) {
  156. i++;
  157. continue; // Skip non-printable chars
  158. }
  159. char temp_str[4];
  160. snprintf(temp_str, 4, "%u", param[i]);
  161. state = ducky_altchar(temp_str);
  162. if(state == false) break;
  163. i++;
  164. }
  165. return state;
  166. }
  167. static bool ducky_string(const char* param) {
  168. uint32_t i = 0;
  169. while(param[i] != '\0') {
  170. furi_hal_hid_kb_press(HID_ASCII_TO_KEY(param[i]));
  171. furi_hal_hid_kb_release(HID_ASCII_TO_KEY(param[i]));
  172. i++;
  173. }
  174. return true;
  175. }
  176. static uint16_t ducky_get_keycode(const char* param, bool accept_chars) {
  177. for(uint8_t i = 0; i < (sizeof(ducky_keys) / sizeof(ducky_keys[0])); i++) {
  178. uint8_t key_cmd_len = strlen(ducky_keys[i].name);
  179. if((strncmp(param, ducky_keys[i].name, key_cmd_len) == 0) &&
  180. ((param[key_cmd_len] == ' ') || (param[key_cmd_len] == '\n') ||
  181. (param[key_cmd_len] == '\0'))) {
  182. return ducky_keys[i].keycode;
  183. }
  184. }
  185. if((accept_chars) && (strlen(param) > 0)) {
  186. return (HID_ASCII_TO_KEY(param[0]) & 0xFF);
  187. }
  188. return 0;
  189. }
  190. static int32_t ducky_parse_line(BadUsbScript* bad_usb, string_t line) {
  191. uint32_t line_len = string_size(line);
  192. const char* line_tmp = string_get_cstr(line);
  193. bool state = false;
  194. for(uint32_t i = 0; i < line_len; i++) {
  195. if((line_tmp[i] != ' ') && (line_tmp[i] != '\t') && (line_tmp[i] != '\n')) {
  196. line_tmp = &line_tmp[i];
  197. break; // Skip spaces and tabs
  198. }
  199. if(i == line_len - 1) return 0; // Skip empty lines
  200. }
  201. FURI_LOG_I(WORKER_TAG, "line:%s", line_tmp);
  202. // General commands
  203. if(strncmp(line_tmp, ducky_cmd_comment, strlen(ducky_cmd_comment)) == 0) {
  204. // REM - comment line
  205. return (0);
  206. } else if(strncmp(line_tmp, ducky_cmd_delay, strlen(ducky_cmd_delay)) == 0) {
  207. // DELAY
  208. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  209. uint32_t delay_val = 0;
  210. state = ducky_get_number(line_tmp, &delay_val);
  211. if((state) && (delay_val > 0)) {
  212. return (int32_t)delay_val;
  213. }
  214. return (-1);
  215. } else if(
  216. (strncmp(line_tmp, ducky_cmd_defdelay_1, strlen(ducky_cmd_defdelay_1)) == 0) ||
  217. (strncmp(line_tmp, ducky_cmd_defdelay_2, strlen(ducky_cmd_defdelay_2)) == 0)) {
  218. // DEFAULT_DELAY
  219. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  220. state = ducky_get_number(line_tmp, &bad_usb->defdelay);
  221. return (state) ? (0) : (-1);
  222. } else if(strncmp(line_tmp, ducky_cmd_string, strlen(ducky_cmd_string)) == 0) {
  223. // STRING
  224. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  225. state = ducky_string(line_tmp);
  226. return (state) ? (0) : (-1);
  227. } else if(strncmp(line_tmp, ducky_cmd_altchar, strlen(ducky_cmd_altchar)) == 0) {
  228. // ALTCHAR
  229. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  230. ducky_numlock_on();
  231. state = ducky_altchar(line_tmp);
  232. return (state) ? (0) : (-1);
  233. } else if(
  234. (strncmp(line_tmp, ducky_cmd_altstr_1, strlen(ducky_cmd_altstr_1)) == 0) ||
  235. (strncmp(line_tmp, ducky_cmd_altstr_2, strlen(ducky_cmd_altstr_2)) == 0)) {
  236. // ALTSTRING
  237. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  238. ducky_numlock_on();
  239. state = ducky_altstring(line_tmp);
  240. return (state) ? (0) : (-1);
  241. } else if(strncmp(line_tmp, ducky_cmd_repeat, strlen(ducky_cmd_repeat)) == 0) {
  242. // REPEAT
  243. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  244. state = ducky_get_number(line_tmp, &bad_usb->repeat_cnt);
  245. return (state) ? (0) : (-1);
  246. } else {
  247. // Special keys + modifiers
  248. uint16_t key = ducky_get_keycode(line_tmp, false);
  249. if(key == KEY_NONE) return (-1);
  250. if((key & 0xFF00) != 0) {
  251. // It's a modifier key
  252. line_tmp = &line_tmp[ducky_get_command_len(line_tmp) + 1];
  253. key |= ducky_get_keycode(line_tmp, true);
  254. }
  255. furi_hal_hid_kb_press(key);
  256. furi_hal_hid_kb_release(key);
  257. return (0);
  258. }
  259. return (-1);
  260. }
  261. static bool ducky_script_preload(BadUsbScript* bad_usb, File* script_file) {
  262. uint8_t ret = 0;
  263. uint32_t line_len = 0;
  264. do {
  265. ret = storage_file_read(script_file, bad_usb->file_buf, FILE_BUFFER_LEN);
  266. for(uint16_t i = 0; i < ret; i++) {
  267. if(bad_usb->file_buf[i] == '\n' && line_len > 0) {
  268. bad_usb->st.line_nb++;
  269. line_len = 0;
  270. } else {
  271. line_len++;
  272. }
  273. }
  274. if(storage_file_eof(script_file)) {
  275. if(line_len > 0) {
  276. bad_usb->st.line_nb++;
  277. break;
  278. }
  279. }
  280. } while(ret > 0);
  281. storage_file_seek(script_file, 0, true);
  282. return true;
  283. }
  284. static int32_t ducky_script_execute_next(BadUsbScript* bad_usb, File* script_file) {
  285. int32_t delay_val = 0;
  286. if(bad_usb->repeat_cnt > 0) {
  287. bad_usb->repeat_cnt--;
  288. delay_val = ducky_parse_line(bad_usb, bad_usb->line_prev);
  289. if(delay_val < 0) {
  290. bad_usb->st.error_line = bad_usb->st.line_cur - 1;
  291. FURI_LOG_E(WORKER_TAG, "Unknown command at line %lu", bad_usb->st.line_cur - 1);
  292. return (-1);
  293. } else {
  294. return (delay_val + bad_usb->defdelay);
  295. }
  296. }
  297. string_set(bad_usb->line_prev, bad_usb->line);
  298. string_reset(bad_usb->line);
  299. while(1) {
  300. if(bad_usb->buf_len == 0) {
  301. bad_usb->buf_len = storage_file_read(script_file, bad_usb->file_buf, FILE_BUFFER_LEN);
  302. if(storage_file_eof(script_file)) {
  303. if((bad_usb->buf_len < FILE_BUFFER_LEN) && (bad_usb->file_end == false)) {
  304. bad_usb->file_buf[bad_usb->buf_len] = '\n';
  305. bad_usb->buf_len++;
  306. bad_usb->file_end = true;
  307. }
  308. }
  309. bad_usb->buf_start = 0;
  310. if(bad_usb->buf_len == 0) return (-2);
  311. }
  312. for(uint8_t i = bad_usb->buf_start; i < (bad_usb->buf_start + bad_usb->buf_len); i++) {
  313. if(bad_usb->file_buf[i] == '\n' && string_size(bad_usb->line) > 0) {
  314. bad_usb->st.line_cur++;
  315. bad_usb->buf_len = bad_usb->buf_len + bad_usb->buf_start - (i + 1);
  316. bad_usb->buf_start = i + 1;
  317. delay_val = ducky_parse_line(bad_usb, bad_usb->line);
  318. if(delay_val < 0) {
  319. bad_usb->st.error_line = bad_usb->st.line_cur;
  320. FURI_LOG_E(WORKER_TAG, "Unknown command at line %lu", bad_usb->st.line_cur);
  321. return (-1);
  322. } else {
  323. return (delay_val + bad_usb->defdelay);
  324. }
  325. } else {
  326. string_push_back(bad_usb->line, bad_usb->file_buf[i]);
  327. }
  328. }
  329. bad_usb->buf_len = 0;
  330. if(bad_usb->file_end) return (-2);
  331. }
  332. return 0;
  333. }
  334. static void bad_usb_hid_state_callback(bool state, void* context) {
  335. furi_assert(context);
  336. BadUsbScript* bad_usb = context;
  337. if(state == true)
  338. osThreadFlagsSet(furi_thread_get_thread_id(bad_usb->thread), WorkerEvtConnect);
  339. else
  340. osThreadFlagsSet(furi_thread_get_thread_id(bad_usb->thread), WorkerEvtDisconnect);
  341. }
  342. static int32_t bad_usb_worker(void* context) {
  343. BadUsbScript* bad_usb = context;
  344. BadUsbWorkerState worker_state = BadUsbStateInit;
  345. int32_t delay_val = 0;
  346. FURI_LOG_I(WORKER_TAG, "Init");
  347. File* script_file = storage_file_alloc(furi_record_open("storage"));
  348. string_init(bad_usb->line);
  349. string_init(bad_usb->line_prev);
  350. furi_hal_hid_set_state_callback(bad_usb_hid_state_callback, bad_usb);
  351. while(1) {
  352. if(worker_state == BadUsbStateInit) { // State: initialization
  353. if(storage_file_open(
  354. script_file,
  355. string_get_cstr(bad_usb->file_path),
  356. FSAM_READ,
  357. FSOM_OPEN_EXISTING)) {
  358. if((ducky_script_preload(bad_usb, script_file)) && (bad_usb->st.line_nb > 0)) {
  359. if(furi_hal_hid_is_connected()) {
  360. worker_state = BadUsbStateIdle; // Ready to run
  361. } else {
  362. worker_state = BadUsbStateNotConnected; // USB not connected
  363. }
  364. } else {
  365. worker_state = BadUsbStateScriptError; // Script preload error
  366. }
  367. } else {
  368. FURI_LOG_E(WORKER_TAG, "File open error");
  369. worker_state = BadUsbStateFileError; // File open error
  370. }
  371. bad_usb->st.state = worker_state;
  372. } else if(worker_state == BadUsbStateNotConnected) { // State: USB not connected
  373. uint32_t flags =
  374. osThreadFlagsWait(WorkerEvtEnd | WorkerEvtConnect, osFlagsWaitAny, osWaitForever);
  375. furi_check((flags & osFlagsError) == 0);
  376. if(flags & WorkerEvtEnd) {
  377. break;
  378. } else if(flags & WorkerEvtConnect) {
  379. worker_state = BadUsbStateIdle; // Ready to run
  380. }
  381. bad_usb->st.state = worker_state;
  382. } else if(worker_state == BadUsbStateIdle) { // State: ready to start
  383. uint32_t flags = osThreadFlagsWait(
  384. WorkerEvtEnd | WorkerEvtToggle | WorkerEvtDisconnect,
  385. osFlagsWaitAny,
  386. osWaitForever);
  387. furi_check((flags & osFlagsError) == 0);
  388. if(flags & WorkerEvtEnd) {
  389. break;
  390. } else if(flags & WorkerEvtToggle) { // Start executing script
  391. delay_val = 0;
  392. bad_usb->buf_len = 0;
  393. bad_usb->st.line_cur = 0;
  394. bad_usb->defdelay = 0;
  395. bad_usb->repeat_cnt = 0;
  396. bad_usb->file_end = false;
  397. storage_file_seek(script_file, 0, true);
  398. worker_state = BadUsbStateRunning;
  399. } else if(flags & WorkerEvtDisconnect) {
  400. worker_state = BadUsbStateNotConnected; // USB disconnected
  401. }
  402. bad_usb->st.state = worker_state;
  403. } else if(worker_state == BadUsbStateRunning) { // State: running
  404. uint16_t delay_cur = (delay_val > 1000) ? (1000) : (delay_val);
  405. uint32_t flags = osThreadFlagsWait(
  406. WorkerEvtEnd | WorkerEvtToggle | WorkerEvtDisconnect, osFlagsWaitAny, delay_cur);
  407. delay_val -= delay_cur;
  408. if(!(flags & osFlagsError)) {
  409. if(flags & WorkerEvtEnd) {
  410. break;
  411. } else if(flags & WorkerEvtToggle) {
  412. worker_state = BadUsbStateIdle; // Stop executing script
  413. furi_hal_hid_kb_release_all();
  414. } else if(flags & WorkerEvtDisconnect) {
  415. worker_state = BadUsbStateNotConnected; // USB disconnected
  416. furi_hal_hid_kb_release_all();
  417. }
  418. bad_usb->st.state = worker_state;
  419. continue;
  420. } else if((flags == osFlagsErrorTimeout) || (flags == osFlagsErrorResource)) {
  421. if(delay_val > 0) {
  422. bad_usb->st.delay_remain--;
  423. continue;
  424. }
  425. bad_usb->st.state = BadUsbStateRunning;
  426. delay_val = ducky_script_execute_next(bad_usb, script_file);
  427. if(delay_val == -1) { // Script error
  428. delay_val = 0;
  429. worker_state = BadUsbStateScriptError;
  430. bad_usb->st.state = worker_state;
  431. } else if(delay_val == -2) { // End of script
  432. delay_val = 0;
  433. worker_state = BadUsbStateIdle;
  434. bad_usb->st.state = BadUsbStateDone;
  435. furi_hal_hid_kb_release_all();
  436. continue;
  437. } else if(delay_val > 1000) {
  438. bad_usb->st.state = BadUsbStateDelay; // Show long delays
  439. bad_usb->st.delay_remain = delay_val / 1000;
  440. }
  441. } else {
  442. furi_check((flags & osFlagsError) == 0);
  443. }
  444. } else if(
  445. (worker_state == BadUsbStateFileError) ||
  446. (worker_state == BadUsbStateScriptError)) { // State: error
  447. uint32_t flags = osThreadFlagsWait(
  448. WorkerEvtEnd, osFlagsWaitAny, osWaitForever); // Waiting for exit command
  449. furi_check((flags & osFlagsError) == 0);
  450. if(flags & WorkerEvtEnd) {
  451. break;
  452. }
  453. }
  454. }
  455. furi_hal_hid_set_state_callback(NULL, NULL);
  456. storage_file_close(script_file);
  457. storage_file_free(script_file);
  458. string_clear(bad_usb->line);
  459. string_clear(bad_usb->line_prev);
  460. FURI_LOG_I(WORKER_TAG, "End");
  461. return 0;
  462. }
  463. BadUsbScript* bad_usb_script_open(string_t file_path) {
  464. furi_assert(file_path);
  465. BadUsbScript* bad_usb = furi_alloc(sizeof(BadUsbScript));
  466. string_init(bad_usb->file_path);
  467. string_set(bad_usb->file_path, file_path);
  468. bad_usb->st.state = BadUsbStateInit;
  469. bad_usb->thread = furi_thread_alloc();
  470. furi_thread_set_name(bad_usb->thread, "BadUsbWorker");
  471. furi_thread_set_stack_size(bad_usb->thread, 2048);
  472. furi_thread_set_context(bad_usb->thread, bad_usb);
  473. furi_thread_set_callback(bad_usb->thread, bad_usb_worker);
  474. furi_thread_start(bad_usb->thread);
  475. return bad_usb;
  476. }
  477. void bad_usb_script_close(BadUsbScript* bad_usb) {
  478. furi_assert(bad_usb);
  479. osThreadFlagsSet(furi_thread_get_thread_id(bad_usb->thread), WorkerEvtEnd);
  480. furi_thread_join(bad_usb->thread);
  481. furi_thread_free(bad_usb->thread);
  482. string_clear(bad_usb->file_path);
  483. free(bad_usb);
  484. }
  485. void bad_usb_script_toggle(BadUsbScript* bad_usb) {
  486. furi_assert(bad_usb);
  487. osThreadFlagsSet(furi_thread_get_thread_id(bad_usb->thread), WorkerEvtToggle);
  488. }
  489. BadUsbState* bad_usb_script_get_state(BadUsbScript* bad_usb) {
  490. furi_assert(bad_usb);
  491. return &(bad_usb->st);
  492. }