uart_text_input.c 18 KB

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  1. #include "uart_text_input.h"
  2. #include <gui/elements.h>
  3. #include <assets_icons.h>
  4. #include <furi.h>
  5. struct UART_TextInput {
  6. View* view;
  7. FuriTimer* timer;
  8. };
  9. typedef struct {
  10. const char text;
  11. const uint8_t x;
  12. const uint8_t y;
  13. } UART_TextInputKey;
  14. typedef struct {
  15. const char* header;
  16. char* text_buffer;
  17. size_t text_buffer_size;
  18. bool clear_default_text;
  19. UART_TextInputCallback callback;
  20. void* callback_context;
  21. uint8_t selected_row;
  22. uint8_t selected_column;
  23. UART_TextInputValidatorCallback validator_callback;
  24. void* validator_callback_context;
  25. FuriString* validator_text;
  26. bool valadator_message_visible;
  27. } UART_TextInputModel;
  28. static const uint8_t keyboard_origin_x = 1;
  29. static const uint8_t keyboard_origin_y = 29;
  30. static const uint8_t keyboard_row_count = 3;
  31. #define ENTER_KEY '\r'
  32. #define BACKSPACE_KEY '\b'
  33. static const UART_TextInputKey keyboard_keys_row_1[] = {
  34. {'q', 1, 8},
  35. {'w', 9, 8},
  36. {'e', 17, 8},
  37. {'r', 25, 8},
  38. {'t', 33, 8},
  39. {'y', 41, 8},
  40. {'u', 49, 8},
  41. {'i', 57, 8},
  42. {'o', 65, 8},
  43. {'p', 73, 8},
  44. {'0', 81, 8},
  45. {'1', 89, 8},
  46. {'2', 97, 8},
  47. {'3', 105, 8},
  48. {'/', 113, 8},
  49. {'-', 120, 8},
  50. };
  51. static const UART_TextInputKey keyboard_keys_row_2[] = {
  52. {'a', 1, 20},
  53. {'s', 9, 20},
  54. {'d', 18, 20},
  55. {'f', 25, 20},
  56. {'g', 33, 20},
  57. {'h', 41, 20},
  58. {'j', 49, 20},
  59. {'k', 57, 20},
  60. {'l', 65, 20},
  61. {BACKSPACE_KEY, 72, 12},
  62. {'4', 89, 20},
  63. {'5', 97, 20},
  64. {'6', 105, 20},
  65. {'$', 113, 20},
  66. {'&', 120, 20},
  67. };
  68. static const UART_TextInputKey keyboard_keys_row_3[] = {
  69. {'z', 1, 32},
  70. {'x', 9, 32},
  71. {'c', 18, 32},
  72. {'v', 25, 32},
  73. {'b', 33, 32},
  74. {'n', 41, 32},
  75. {'m', 49, 32},
  76. {'_', 57, 32},
  77. {ENTER_KEY, 64, 23},
  78. {'7', 89, 32},
  79. {'8', 97, 32},
  80. {'9', 105, 32},
  81. {'"', 113, 32},
  82. {'+', 120, 32},
  83. };
  84. static uint8_t get_row_size(uint8_t row_index) {
  85. uint8_t row_size = 0;
  86. switch(row_index + 1) {
  87. case 1:
  88. row_size = sizeof(keyboard_keys_row_1) / sizeof(UART_TextInputKey);
  89. break;
  90. case 2:
  91. row_size = sizeof(keyboard_keys_row_2) / sizeof(UART_TextInputKey);
  92. break;
  93. case 3:
  94. row_size = sizeof(keyboard_keys_row_3) / sizeof(UART_TextInputKey);
  95. break;
  96. }
  97. return row_size;
  98. }
  99. static const UART_TextInputKey* get_row(uint8_t row_index) {
  100. const UART_TextInputKey* row = NULL;
  101. switch(row_index + 1) {
  102. case 1:
  103. row = keyboard_keys_row_1;
  104. break;
  105. case 2:
  106. row = keyboard_keys_row_2;
  107. break;
  108. case 3:
  109. row = keyboard_keys_row_3;
  110. break;
  111. }
  112. return row;
  113. }
  114. static char get_selected_char(UART_TextInputModel* model) {
  115. return get_row(model->selected_row)[model->selected_column].text;
  116. }
  117. static bool char_is_lowercase(char letter) {
  118. return (letter >= 0x61 && letter <= 0x7A);
  119. }
  120. static char char_to_uppercase(const char letter) {
  121. if(letter == '_') {
  122. return 0x20;
  123. } else if(isalpha(letter)) {
  124. return (letter - 0x20);
  125. } else {
  126. return letter;
  127. }
  128. }
  129. static void uart_text_input_backspace_cb(UART_TextInputModel* model) {
  130. uint8_t text_length = model->clear_default_text ? 1 : strlen(model->text_buffer);
  131. if(text_length > 0) {
  132. model->text_buffer[text_length - 1] = 0;
  133. }
  134. }
  135. static void uart_text_input_view_draw_callback(Canvas* canvas, void* _model) {
  136. UART_TextInputModel* model = _model;
  137. uint8_t text_length = model->text_buffer ? strlen(model->text_buffer) : 0;
  138. uint8_t needed_string_width = canvas_width(canvas) - 8;
  139. uint8_t start_pos = 4;
  140. const char* text = model->text_buffer;
  141. canvas_clear(canvas);
  142. canvas_set_color(canvas, ColorBlack);
  143. canvas_draw_str(canvas, 2, 8, model->header);
  144. elements_slightly_rounded_frame(canvas, 1, 12, 126, 15);
  145. if(canvas_string_width(canvas, text) > needed_string_width) {
  146. canvas_draw_str(canvas, start_pos, 22, "...");
  147. start_pos += 6;
  148. needed_string_width -= 8;
  149. }
  150. while(text != 0 && canvas_string_width(canvas, text) > needed_string_width) {
  151. text++;
  152. }
  153. if(model->clear_default_text) {
  154. elements_slightly_rounded_box(
  155. canvas, start_pos - 1, 14, canvas_string_width(canvas, text) + 2, 10);
  156. canvas_set_color(canvas, ColorWhite);
  157. } else {
  158. canvas_draw_str(canvas, start_pos + canvas_string_width(canvas, text) + 1, 22, "|");
  159. canvas_draw_str(canvas, start_pos + canvas_string_width(canvas, text) + 2, 22, "|");
  160. }
  161. canvas_draw_str(canvas, start_pos, 22, text);
  162. canvas_set_font(canvas, FontKeyboard);
  163. for(uint8_t row = 0; row <= keyboard_row_count; row++) {
  164. const uint8_t column_count = get_row_size(row);
  165. const UART_TextInputKey* keys = get_row(row);
  166. for(size_t column = 0; column < column_count; column++) {
  167. if(keys[column].text == ENTER_KEY) {
  168. canvas_set_color(canvas, ColorBlack);
  169. if(model->selected_row == row && model->selected_column == column) {
  170. canvas_draw_icon(
  171. canvas,
  172. keyboard_origin_x + keys[column].x,
  173. keyboard_origin_y + keys[column].y,
  174. &I_KeySaveSelected_24x11);
  175. } else {
  176. canvas_draw_icon(
  177. canvas,
  178. keyboard_origin_x + keys[column].x,
  179. keyboard_origin_y + keys[column].y,
  180. &I_KeySave_24x11);
  181. }
  182. } else if(keys[column].text == BACKSPACE_KEY) {
  183. canvas_set_color(canvas, ColorBlack);
  184. if(model->selected_row == row && model->selected_column == column) {
  185. canvas_draw_icon(
  186. canvas,
  187. keyboard_origin_x + keys[column].x,
  188. keyboard_origin_y + keys[column].y,
  189. &I_KeyBackspaceSelected_16x9);
  190. } else {
  191. canvas_draw_icon(
  192. canvas,
  193. keyboard_origin_x + keys[column].x,
  194. keyboard_origin_y + keys[column].y,
  195. &I_KeyBackspace_16x9);
  196. }
  197. } else {
  198. if(model->selected_row == row && model->selected_column == column) {
  199. canvas_set_color(canvas, ColorBlack);
  200. canvas_draw_box(
  201. canvas,
  202. keyboard_origin_x + keys[column].x - 1,
  203. keyboard_origin_y + keys[column].y - 8,
  204. 7,
  205. 10);
  206. canvas_set_color(canvas, ColorWhite);
  207. } else {
  208. canvas_set_color(canvas, ColorBlack);
  209. }
  210. if(model->clear_default_text ||
  211. (text_length == 0 && char_is_lowercase(keys[column].text))) {
  212. canvas_draw_glyph(
  213. canvas,
  214. keyboard_origin_x + keys[column].x,
  215. keyboard_origin_y + keys[column].y,
  216. //char_to_uppercase(keys[column].text));
  217. keys[column].text);
  218. } else {
  219. canvas_draw_glyph(
  220. canvas,
  221. keyboard_origin_x + keys[column].x,
  222. keyboard_origin_y + keys[column].y,
  223. keys[column].text);
  224. }
  225. }
  226. }
  227. }
  228. if(model->valadator_message_visible) {
  229. canvas_set_font(canvas, FontSecondary);
  230. canvas_set_color(canvas, ColorWhite);
  231. canvas_draw_box(canvas, 8, 10, 110, 48);
  232. canvas_set_color(canvas, ColorBlack);
  233. canvas_draw_icon(canvas, 10, 14, &I_WarningDolphin_45x42);
  234. canvas_draw_rframe(canvas, 8, 8, 112, 50, 3);
  235. canvas_draw_rframe(canvas, 9, 9, 110, 48, 2);
  236. elements_multiline_text(canvas, 62, 20, furi_string_get_cstr(model->validator_text));
  237. canvas_set_font(canvas, FontKeyboard);
  238. }
  239. }
  240. static void
  241. uart_text_input_handle_up(UART_TextInput* uart_text_input, UART_TextInputModel* model) {
  242. UNUSED(uart_text_input);
  243. if(model->selected_row > 0) {
  244. model->selected_row--;
  245. if(model->selected_column > get_row_size(model->selected_row) - 6) {
  246. model->selected_column = model->selected_column + 1;
  247. }
  248. }
  249. }
  250. static void
  251. uart_text_input_handle_down(UART_TextInput* uart_text_input, UART_TextInputModel* model) {
  252. UNUSED(uart_text_input);
  253. if(model->selected_row < keyboard_row_count - 1) {
  254. model->selected_row++;
  255. if(model->selected_column > get_row_size(model->selected_row) - 4) {
  256. model->selected_column = model->selected_column - 1;
  257. }
  258. }
  259. }
  260. static void
  261. uart_text_input_handle_left(UART_TextInput* uart_text_input, UART_TextInputModel* model) {
  262. UNUSED(uart_text_input);
  263. if(model->selected_column > 0) {
  264. model->selected_column--;
  265. } else {
  266. model->selected_column = get_row_size(model->selected_row) - 1;
  267. }
  268. }
  269. static void
  270. uart_text_input_handle_right(UART_TextInput* uart_text_input, UART_TextInputModel* model) {
  271. UNUSED(uart_text_input);
  272. if(model->selected_column < get_row_size(model->selected_row) - 1) {
  273. model->selected_column++;
  274. } else {
  275. model->selected_column = 0;
  276. }
  277. }
  278. static void uart_text_input_handle_ok(
  279. UART_TextInput* uart_text_input,
  280. UART_TextInputModel* model,
  281. bool shift) {
  282. char selected = get_selected_char(model);
  283. uint8_t text_length = strlen(model->text_buffer);
  284. if(shift) {
  285. selected = char_to_uppercase(selected);
  286. }
  287. if(selected == ENTER_KEY) {
  288. if(model->validator_callback &&
  289. (!model->validator_callback(
  290. model->text_buffer, model->validator_text, model->validator_callback_context))) {
  291. model->valadator_message_visible = true;
  292. furi_timer_start(uart_text_input->timer, furi_kernel_get_tick_frequency() * 4);
  293. } else if(model->callback != 0 && text_length > 0) {
  294. model->callback(model->callback_context);
  295. }
  296. } else if(selected == BACKSPACE_KEY) {
  297. uart_text_input_backspace_cb(model);
  298. } else {
  299. if(model->clear_default_text) {
  300. text_length = 0;
  301. }
  302. if(text_length < (model->text_buffer_size - 1)) {
  303. if(text_length == 0 && char_is_lowercase(selected)) {
  304. //selected = char_to_uppercase(selected);
  305. }
  306. model->text_buffer[text_length] = selected;
  307. model->text_buffer[text_length + 1] = 0;
  308. }
  309. }
  310. model->clear_default_text = false;
  311. }
  312. static bool uart_text_input_view_input_callback(InputEvent* event, void* context) {
  313. UART_TextInput* uart_text_input = context;
  314. furi_assert(uart_text_input);
  315. bool consumed = false;
  316. // Acquire model
  317. UART_TextInputModel* model = view_get_model(uart_text_input->view);
  318. if((!(event->type == InputTypePress) && !(event->type == InputTypeRelease)) &&
  319. model->valadator_message_visible) {
  320. model->valadator_message_visible = false;
  321. consumed = true;
  322. } else if(event->type == InputTypeShort) {
  323. consumed = true;
  324. switch(event->key) {
  325. case InputKeyUp:
  326. uart_text_input_handle_up(uart_text_input, model);
  327. break;
  328. case InputKeyDown:
  329. uart_text_input_handle_down(uart_text_input, model);
  330. break;
  331. case InputKeyLeft:
  332. uart_text_input_handle_left(uart_text_input, model);
  333. break;
  334. case InputKeyRight:
  335. uart_text_input_handle_right(uart_text_input, model);
  336. break;
  337. case InputKeyOk:
  338. uart_text_input_handle_ok(uart_text_input, model, false);
  339. break;
  340. default:
  341. consumed = false;
  342. break;
  343. }
  344. } else if(event->type == InputTypeLong) {
  345. consumed = true;
  346. switch(event->key) {
  347. case InputKeyUp:
  348. uart_text_input_handle_up(uart_text_input, model);
  349. break;
  350. case InputKeyDown:
  351. uart_text_input_handle_down(uart_text_input, model);
  352. break;
  353. case InputKeyLeft:
  354. uart_text_input_handle_left(uart_text_input, model);
  355. break;
  356. case InputKeyRight:
  357. uart_text_input_handle_right(uart_text_input, model);
  358. break;
  359. case InputKeyOk:
  360. uart_text_input_handle_ok(uart_text_input, model, true);
  361. break;
  362. case InputKeyBack:
  363. uart_text_input_backspace_cb(model);
  364. break;
  365. default:
  366. consumed = false;
  367. break;
  368. }
  369. } else if(event->type == InputTypeRepeat) {
  370. consumed = true;
  371. switch(event->key) {
  372. case InputKeyUp:
  373. uart_text_input_handle_up(uart_text_input, model);
  374. break;
  375. case InputKeyDown:
  376. uart_text_input_handle_down(uart_text_input, model);
  377. break;
  378. case InputKeyLeft:
  379. uart_text_input_handle_left(uart_text_input, model);
  380. break;
  381. case InputKeyRight:
  382. uart_text_input_handle_right(uart_text_input, model);
  383. break;
  384. case InputKeyBack:
  385. uart_text_input_backspace_cb(model);
  386. break;
  387. default:
  388. consumed = false;
  389. break;
  390. }
  391. }
  392. // Commit model
  393. view_commit_model(uart_text_input->view, consumed);
  394. return consumed;
  395. }
  396. void uart_text_input_timer_callback(void* context) {
  397. furi_assert(context);
  398. UART_TextInput* uart_text_input = context;
  399. with_view_model(
  400. uart_text_input->view,
  401. UART_TextInputModel * model,
  402. { model->valadator_message_visible = false; },
  403. true);
  404. }
  405. UART_TextInput* uart_text_input_alloc() {
  406. UART_TextInput* uart_text_input = malloc(sizeof(UART_TextInput));
  407. uart_text_input->view = view_alloc();
  408. view_set_context(uart_text_input->view, uart_text_input);
  409. view_allocate_model(uart_text_input->view, ViewModelTypeLocking, sizeof(UART_TextInputModel));
  410. view_set_draw_callback(uart_text_input->view, uart_text_input_view_draw_callback);
  411. view_set_input_callback(uart_text_input->view, uart_text_input_view_input_callback);
  412. uart_text_input->timer =
  413. furi_timer_alloc(uart_text_input_timer_callback, FuriTimerTypeOnce, uart_text_input);
  414. with_view_model(
  415. uart_text_input->view,
  416. UART_TextInputModel * model,
  417. { model->validator_text = furi_string_alloc(); },
  418. false);
  419. uart_text_input_reset(uart_text_input);
  420. return uart_text_input;
  421. }
  422. void uart_text_input_free(UART_TextInput* uart_text_input) {
  423. furi_assert(uart_text_input);
  424. with_view_model(
  425. uart_text_input->view,
  426. UART_TextInputModel * model,
  427. { furi_string_free(model->validator_text); },
  428. false);
  429. // Send stop command
  430. furi_timer_stop(uart_text_input->timer);
  431. // Release allocated memory
  432. furi_timer_free(uart_text_input->timer);
  433. view_free(uart_text_input->view);
  434. free(uart_text_input);
  435. }
  436. void uart_text_input_reset(UART_TextInput* uart_text_input) {
  437. furi_assert(uart_text_input);
  438. with_view_model(
  439. uart_text_input->view,
  440. UART_TextInputModel * model,
  441. {
  442. model->text_buffer_size = 0;
  443. model->header = "";
  444. model->selected_row = 0;
  445. model->selected_column = 0;
  446. model->clear_default_text = false;
  447. model->text_buffer = NULL;
  448. model->text_buffer_size = 0;
  449. model->callback = NULL;
  450. model->callback_context = NULL;
  451. model->validator_callback = NULL;
  452. model->validator_callback_context = NULL;
  453. furi_string_reset(model->validator_text);
  454. model->valadator_message_visible = false;
  455. },
  456. true);
  457. }
  458. View* uart_text_input_get_view(UART_TextInput* uart_text_input) {
  459. furi_assert(uart_text_input);
  460. return uart_text_input->view;
  461. }
  462. void uart_text_input_set_result_callback(
  463. UART_TextInput* uart_text_input,
  464. UART_TextInputCallback callback,
  465. void* callback_context,
  466. char* text_buffer,
  467. size_t text_buffer_size,
  468. bool clear_default_text) {
  469. with_view_model(
  470. uart_text_input->view,
  471. UART_TextInputModel * model,
  472. {
  473. model->callback = callback;
  474. model->callback_context = callback_context;
  475. model->text_buffer = text_buffer;
  476. model->text_buffer_size = text_buffer_size;
  477. model->clear_default_text = clear_default_text;
  478. if(text_buffer && text_buffer[0] != '\0') {
  479. // Set focus on Save
  480. model->selected_row = 2;
  481. model->selected_column = 8;
  482. }
  483. },
  484. true);
  485. }
  486. void uart_text_input_set_validator(
  487. UART_TextInput* uart_text_input,
  488. UART_TextInputValidatorCallback callback,
  489. void* callback_context) {
  490. with_view_model(
  491. uart_text_input->view,
  492. UART_TextInputModel * model,
  493. {
  494. model->validator_callback = callback;
  495. model->validator_callback_context = callback_context;
  496. },
  497. true);
  498. }
  499. UART_TextInputValidatorCallback
  500. uart_text_input_get_validator_callback(UART_TextInput* uart_text_input) {
  501. UART_TextInputValidatorCallback validator_callback = NULL;
  502. with_view_model(
  503. uart_text_input->view,
  504. UART_TextInputModel * model,
  505. { validator_callback = model->validator_callback; },
  506. false);
  507. return validator_callback;
  508. }
  509. void* uart_text_input_get_validator_callback_context(UART_TextInput* uart_text_input) {
  510. void* validator_callback_context = NULL;
  511. with_view_model(
  512. uart_text_input->view,
  513. UART_TextInputModel * model,
  514. { validator_callback_context = model->validator_callback_context; },
  515. false);
  516. return validator_callback_context;
  517. }
  518. void uart_text_input_set_header_text(UART_TextInput* uart_text_input, const char* text) {
  519. with_view_model(
  520. uart_text_input->view, UART_TextInputModel * model, { model->header = text; }, true);
  521. }