UITask.cpp 19 KB

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  1. #include "UITask.h"
  2. #include <helpers/TxtDataHelpers.h>
  3. #include "../MyMesh.h"
  4. #include "target.h"
  5. #ifndef AUTO_OFF_MILLIS
  6. #define AUTO_OFF_MILLIS 15000 // 15 seconds
  7. #endif
  8. #define BOOT_SCREEN_MILLIS 3000 // 3 seconds
  9. #ifdef PIN_STATUS_LED
  10. #define LED_ON_MILLIS 20
  11. #define LED_ON_MSG_MILLIS 200
  12. #define LED_CYCLE_MILLIS 4000
  13. #endif
  14. #define LONG_PRESS_MILLIS 1200
  15. #ifndef UI_RECENT_LIST_SIZE
  16. #define UI_RECENT_LIST_SIZE 4
  17. #endif
  18. #define PRESS_LABEL "long press"
  19. #include "icons.h"
  20. class SplashScreen : public UIScreen {
  21. UITask* _task;
  22. unsigned long dismiss_after;
  23. char _version_info[12];
  24. public:
  25. SplashScreen(UITask* task) : _task(task) {
  26. // strip off dash and commit hash by changing dash to null terminator
  27. // e.g: v1.2.3-abcdef -> v1.2.3
  28. const char *ver = FIRMWARE_VERSION;
  29. const char *dash = strchr(ver, '-');
  30. int len = dash ? dash - ver : strlen(ver);
  31. if (len >= sizeof(_version_info)) len = sizeof(_version_info) - 1;
  32. memcpy(_version_info, ver, len);
  33. _version_info[len] = 0;
  34. dismiss_after = millis() + BOOT_SCREEN_MILLIS;
  35. }
  36. int render(DisplayDriver& display) override {
  37. // meshcore logo
  38. display.setColor(DisplayDriver::BLUE);
  39. int logoWidth = 128;
  40. display.drawXbm((display.width() - logoWidth) / 2, 3, meshcore_logo, logoWidth, 13);
  41. // version info
  42. display.setColor(DisplayDriver::LIGHT);
  43. display.setTextSize(2);
  44. display.drawTextCentered(display.width()/2, 22, _version_info);
  45. display.setTextSize(1);
  46. display.drawTextCentered(display.width()/2, 42, FIRMWARE_BUILD_DATE);
  47. return 1000;
  48. }
  49. void poll() override {
  50. if (millis() >= dismiss_after) {
  51. _task->gotoHomeScreen();
  52. }
  53. }
  54. };
  55. class HomeScreen : public UIScreen {
  56. enum HomePage {
  57. FIRST,
  58. RECENT,
  59. RADIO,
  60. BLUETOOTH,
  61. ADVERT,
  62. SHUTDOWN,
  63. Count // keep as last
  64. };
  65. UITask* _task;
  66. mesh::RTCClock* _rtc;
  67. SensorManager* _sensors;
  68. NodePrefs* _node_prefs;
  69. uint8_t _page;
  70. bool _shutdown_init;
  71. AdvertPath recent[UI_RECENT_LIST_SIZE];
  72. void renderBatteryIndicator(DisplayDriver& display, uint16_t batteryMilliVolts) {
  73. // Convert millivolts to percentage
  74. const int minMilliVolts = 3000; // Minimum voltage (e.g., 3.0V)
  75. const int maxMilliVolts = 4200; // Maximum voltage (e.g., 4.2V)
  76. int batteryPercentage = ((batteryMilliVolts - minMilliVolts) * 100) / (maxMilliVolts - minMilliVolts);
  77. if (batteryPercentage < 0) batteryPercentage = 0; // Clamp to 0%
  78. if (batteryPercentage > 100) batteryPercentage = 100; // Clamp to 100%
  79. // battery icon
  80. int iconWidth = 24;
  81. int iconHeight = 10;
  82. int iconX = display.width() - iconWidth - 5; // Position the icon near the top-right corner
  83. int iconY = 0;
  84. display.setColor(DisplayDriver::GREEN);
  85. // battery outline
  86. display.drawRect(iconX, iconY, iconWidth, iconHeight);
  87. // battery "cap"
  88. display.fillRect(iconX + iconWidth, iconY + (iconHeight / 4), 3, iconHeight / 2);
  89. // fill the battery based on the percentage
  90. int fillWidth = (batteryPercentage * (iconWidth - 4)) / 100;
  91. display.fillRect(iconX + 2, iconY + 2, fillWidth, iconHeight - 4);
  92. }
  93. public:
  94. HomeScreen(UITask* task, mesh::RTCClock* rtc, SensorManager* sensors, NodePrefs* node_prefs)
  95. : _task(task), _rtc(rtc), _sensors(sensors), _node_prefs(node_prefs), _page(0), _shutdown_init(false) { }
  96. void poll() override {
  97. if (_shutdown_init && !_task->isButtonPressed()) { // must wait for USR button to be released
  98. _task->shutdown();
  99. }
  100. }
  101. int render(DisplayDriver& display) override {
  102. char tmp[80];
  103. // node name
  104. display.setCursor(0, 0);
  105. display.setTextSize(1);
  106. display.setColor(DisplayDriver::GREEN);
  107. display.print(_node_prefs->node_name);
  108. // battery voltage
  109. renderBatteryIndicator(display, _task->getBattMilliVolts());
  110. // curr page indicator
  111. int y = 14;
  112. int x = display.width() / 2 - 25;
  113. for (uint8_t i = 0; i < HomePage::Count; i++, x += 10) {
  114. if (i == _page) {
  115. display.fillRect(x-1, y-1, 3, 3);
  116. } else {
  117. display.fillRect(x, y, 1, 1);
  118. }
  119. }
  120. if (_page == HomePage::FIRST) {
  121. display.setColor(DisplayDriver::YELLOW);
  122. display.setTextSize(2);
  123. sprintf(tmp, "MSG: %d", _task->getMsgCount());
  124. display.drawTextCentered(display.width() / 2, 20, tmp);
  125. if (_task->hasConnection()) {
  126. display.setColor(DisplayDriver::GREEN);
  127. display.setTextSize(1);
  128. display.drawTextCentered(display.width() / 2, 43, "< Connected >");
  129. } else if (the_mesh.getBLEPin() != 0) { // BT pin
  130. display.setColor(DisplayDriver::RED);
  131. display.setTextSize(2);
  132. sprintf(tmp, "Pin:%d", the_mesh.getBLEPin());
  133. display.drawTextCentered(display.width() / 2, 43, tmp);
  134. }
  135. } else if (_page == HomePage::RECENT) {
  136. the_mesh.getRecentlyHeard(recent, UI_RECENT_LIST_SIZE);
  137. display.setColor(DisplayDriver::GREEN);
  138. int y = 20;
  139. for (int i = 0; i < UI_RECENT_LIST_SIZE; i++, y += 11) {
  140. auto a = &recent[i];
  141. if (a->name[0] == 0) continue; // empty slot
  142. display.setCursor(0, y);
  143. display.print(a->name);
  144. int secs = _rtc->getCurrentTime() - a->recv_timestamp;
  145. if (secs < 60) {
  146. sprintf(tmp, "%ds", secs);
  147. } else if (secs < 60*60) {
  148. sprintf(tmp, "%dm", secs / 60);
  149. } else {
  150. sprintf(tmp, "%dh", secs / (60*60));
  151. }
  152. display.setCursor(display.width() - display.getTextWidth(tmp) - 1, y);
  153. display.print(tmp);
  154. }
  155. } else if (_page == HomePage::RADIO) {
  156. display.setColor(DisplayDriver::YELLOW);
  157. display.setTextSize(1);
  158. // freq / sf
  159. display.setCursor(0, 20);
  160. sprintf(tmp, "FQ: %06.3f SF: %d", _node_prefs->freq, _node_prefs->sf);
  161. display.print(tmp);
  162. display.setCursor(0, 31);
  163. sprintf(tmp, "BW: %03.2f CR: %d", _node_prefs->bw, _node_prefs->cr);
  164. display.print(tmp);
  165. // tx power, noise floor
  166. display.setCursor(0, 42);
  167. sprintf(tmp, "TX: %ddBm", _node_prefs->tx_power_dbm);
  168. display.print(tmp);
  169. display.setCursor(0, 53);
  170. sprintf(tmp, "Noise floor: %d", radio_driver.getNoiseFloor());
  171. display.print(tmp);
  172. } else if (_page == HomePage::BLUETOOTH) {
  173. display.setColor(DisplayDriver::GREEN);
  174. display.drawXbm((display.width() - 32) / 2, 18,
  175. _task->isSerialEnabled() ? bluetooth_on : bluetooth_off,
  176. 32, 32);
  177. display.setTextSize(1);
  178. display.drawTextCentered(display.width() / 2, 64 - 11, "toggle: " PRESS_LABEL);
  179. } else if (_page == HomePage::ADVERT) {
  180. display.setColor(DisplayDriver::GREEN);
  181. display.drawXbm((display.width() - 32) / 2, 18, advert_icon, 32, 32);
  182. display.drawTextCentered(display.width() / 2, 64 - 11, "advert: " PRESS_LABEL);
  183. } else if (_page == HomePage::SHUTDOWN) {
  184. display.setColor(DisplayDriver::GREEN);
  185. display.setTextSize(1);
  186. if (_shutdown_init) {
  187. display.drawTextCentered(display.width() / 2, 34, "hibernating...");
  188. } else {
  189. display.drawXbm((display.width() - 32) / 2, 18, power_icon, 32, 32);
  190. display.drawTextCentered(display.width() / 2, 64 - 11, "hibernate: " PRESS_LABEL);
  191. }
  192. }
  193. return 5000; // next render after 5000 ms
  194. }
  195. bool handleInput(char c) override {
  196. if (c == KEY_LEFT || c == KEY_PREV) {
  197. _page = (_page + HomePage::Count - 1) % HomePage::Count;
  198. return true;
  199. }
  200. if (c == KEY_NEXT || c == KEY_RIGHT) {
  201. _page = (_page + 1) % HomePage::Count;
  202. if (_page == HomePage::RECENT) {
  203. _task->showAlert("Recent adverts", 800);
  204. }
  205. return true;
  206. }
  207. if (c == KEY_ENTER && _page == HomePage::BLUETOOTH) {
  208. if (_task->isSerialEnabled()) { // toggle Bluetooth on/off
  209. _task->disableSerial();
  210. } else {
  211. _task->enableSerial();
  212. }
  213. return true;
  214. }
  215. if (c == KEY_ENTER && _page == HomePage::ADVERT) {
  216. #ifdef PIN_BUZZER
  217. _task->soundBuzzer(UIEventType::ack);
  218. #endif
  219. if (the_mesh.advert()) {
  220. _task->showAlert("Advert sent!", 1000);
  221. } else {
  222. _task->showAlert("Advert failed..", 1000);
  223. }
  224. return true;
  225. }
  226. if (c == KEY_ENTER && _page == HomePage::SHUTDOWN) {
  227. _shutdown_init = true; // need to wait for button to be released
  228. return true;
  229. }
  230. return false;
  231. }
  232. };
  233. class MsgPreviewScreen : public UIScreen {
  234. UITask* _task;
  235. mesh::RTCClock* _rtc;
  236. struct MsgEntry {
  237. uint32_t timestamp;
  238. char origin[62];
  239. char msg[78];
  240. };
  241. #define MAX_UNREAD_MSGS 32
  242. int num_unread;
  243. MsgEntry unread[MAX_UNREAD_MSGS];
  244. public:
  245. MsgPreviewScreen(UITask* task, mesh::RTCClock* rtc) : _task(task), _rtc(rtc) { num_unread = 0; }
  246. void addPreview(uint8_t path_len, const char* from_name, const char* msg) {
  247. if (num_unread >= MAX_UNREAD_MSGS) return; // full
  248. auto p = &unread[num_unread++];
  249. p->timestamp = _rtc->getCurrentTime();
  250. if (path_len == 0xFF) {
  251. sprintf(p->origin, "(D) %s:", from_name);
  252. } else {
  253. sprintf(p->origin, "(%d) %s:", (uint32_t) path_len, from_name);
  254. }
  255. StrHelper::strncpy(p->msg, msg, sizeof(p->msg));
  256. }
  257. int render(DisplayDriver& display) override {
  258. char tmp[16];
  259. display.setCursor(0, 0);
  260. display.setTextSize(1);
  261. display.setColor(DisplayDriver::GREEN);
  262. sprintf(tmp, "Unread: %d", num_unread);
  263. display.print(tmp);
  264. auto p = &unread[0];
  265. int secs = _rtc->getCurrentTime() - p->timestamp;
  266. if (secs < 60) {
  267. sprintf(tmp, "%ds", secs);
  268. } else if (secs < 60*60) {
  269. sprintf(tmp, "%dm", secs / 60);
  270. } else {
  271. sprintf(tmp, "%dh", secs / (60*60));
  272. }
  273. display.setCursor(display.width() - display.getTextWidth(tmp) - 2, 0);
  274. display.print(tmp);
  275. display.drawRect(0, 11, display.width(), 1); // horiz line
  276. display.setCursor(0, 14);
  277. display.setColor(DisplayDriver::YELLOW);
  278. display.print(p->origin);
  279. display.setCursor(0, 25);
  280. display.setColor(DisplayDriver::LIGHT);
  281. display.printWordWrap(p->msg, display.width());
  282. #if AUTO_OFF_MILLIS==0 // probably e-ink
  283. return 10000; // 10 s
  284. #else
  285. return 1000; // next render after 1000 ms
  286. #endif
  287. }
  288. bool handleInput(char c) override {
  289. if (c == KEY_NEXT || c == KEY_RIGHT) {
  290. num_unread--;
  291. if (num_unread == 0) {
  292. _task->gotoHomeScreen();
  293. } else {
  294. // delete first/curr item from unread queue
  295. for (int i = 0; i < num_unread; i++) {
  296. unread[i] = unread[i + 1];
  297. }
  298. }
  299. return true;
  300. }
  301. if (c == KEY_ENTER) {
  302. num_unread = 0; // clear unread queue
  303. _task->gotoHomeScreen();
  304. return true;
  305. }
  306. return false;
  307. }
  308. };
  309. void UITask::begin(DisplayDriver* display, SensorManager* sensors, NodePrefs* node_prefs) {
  310. _display = display;
  311. _sensors = sensors;
  312. _auto_off = millis() + AUTO_OFF_MILLIS;
  313. #if defined(PIN_USER_BTN)
  314. user_btn.begin();
  315. #endif
  316. #if defined(PIN_USER_BTN_ANA)
  317. analog_btn.begin();
  318. #endif
  319. _node_prefs = node_prefs;
  320. if (_display != NULL) {
  321. _display->turnOn();
  322. }
  323. #ifdef PIN_BUZZER
  324. buzzer.begin();
  325. #endif
  326. ui_started_at = millis();
  327. _alert_expiry = 0;
  328. splash = new SplashScreen(this);
  329. home = new HomeScreen(this, &rtc_clock, sensors, node_prefs);
  330. msg_preview = new MsgPreviewScreen(this, &rtc_clock);
  331. setCurrScreen(splash);
  332. }
  333. void UITask::showAlert(const char* text, int duration_millis) {
  334. strcpy(_alert, text);
  335. _alert_expiry = millis() + duration_millis;
  336. }
  337. void UITask::soundBuzzer(UIEventType bet) {
  338. #if defined(PIN_BUZZER)
  339. switch(bet){
  340. case UIEventType::contactMessage:
  341. // gemini's pick
  342. buzzer.play("MsgRcv3:d=4,o=6,b=200:32e,32g,32b,16c7");
  343. break;
  344. case UIEventType::channelMessage:
  345. buzzer.play("kerplop:d=16,o=6,b=120:32g#,32c#");
  346. break;
  347. case UIEventType::ack:
  348. buzzer.play("ack:d=32,o=8,b=120:c");
  349. break;
  350. case UIEventType::roomMessage:
  351. case UIEventType::newContactMessage:
  352. case UIEventType::none:
  353. default:
  354. break;
  355. }
  356. #endif
  357. }
  358. void UITask::msgRead(int msgcount) {
  359. _msgcount = msgcount;
  360. if (msgcount == 0) {
  361. gotoHomeScreen();
  362. }
  363. }
  364. void UITask::newMsg(uint8_t path_len, const char* from_name, const char* text, int msgcount) {
  365. _msgcount = msgcount;
  366. ((MsgPreviewScreen *) msg_preview)->addPreview(path_len, from_name, text);
  367. setCurrScreen(msg_preview);
  368. if (_display != NULL) {
  369. if (!_display->isOn()) _display->turnOn();
  370. _auto_off = millis() + AUTO_OFF_MILLIS; // extend the auto-off timer
  371. _next_refresh = 100; // trigger refresh
  372. }
  373. }
  374. void UITask::userLedHandler() {
  375. #ifdef PIN_STATUS_LED
  376. int cur_time = millis();
  377. if (cur_time > next_led_change) {
  378. if (led_state == 0) {
  379. led_state = 1;
  380. if (_msgcount > 0) {
  381. last_led_increment = LED_ON_MSG_MILLIS;
  382. } else {
  383. last_led_increment = LED_ON_MILLIS;
  384. }
  385. next_led_change = cur_time + last_led_increment;
  386. } else {
  387. led_state = 0;
  388. next_led_change = cur_time + LED_CYCLE_MILLIS - last_led_increment;
  389. }
  390. digitalWrite(PIN_STATUS_LED, led_state);
  391. }
  392. #endif
  393. }
  394. void UITask::setCurrScreen(UIScreen* c) {
  395. curr = c;
  396. _next_refresh = 100;
  397. }
  398. /*
  399. hardware-agnostic pre-shutdown activity should be done here
  400. */
  401. void UITask::shutdown(bool restart){
  402. #ifdef PIN_BUZZER
  403. /* note: we have a choice here -
  404. we can do a blocking buzzer.loop() with non-deterministic consequences
  405. or we can set a flag and delay the shutdown for a couple of seconds
  406. while a non-blocking buzzer.loop() plays out in UITask::loop()
  407. */
  408. buzzer.shutdown();
  409. uint32_t buzzer_timer = millis(); // fail-safe shutdown
  410. while (buzzer.isPlaying() && (millis() - 2500) < buzzer_timer)
  411. buzzer.loop();
  412. #endif // PIN_BUZZER
  413. if (restart) {
  414. _board->reboot();
  415. } else {
  416. _display->turnOff();
  417. _board->powerOff();
  418. }
  419. }
  420. bool UITask::isButtonPressed() const {
  421. #ifdef PIN_USER_BTN
  422. return user_btn.isPressed();
  423. #else
  424. return false;
  425. #endif
  426. }
  427. void UITask::loop() {
  428. char c = 0;
  429. #if defined(PIN_USER_BTN)
  430. int ev = user_btn.check();
  431. if (ev == BUTTON_EVENT_CLICK) {
  432. c = checkDisplayOn(KEY_NEXT);
  433. } else if (ev == BUTTON_EVENT_LONG_PRESS) {
  434. c = handleLongPress(KEY_ENTER);
  435. } else if (ev == BUTTON_EVENT_DOUBLE_CLICK) {
  436. c = handleDoubleClick(KEY_PREV);
  437. } else if (ev == BUTTON_EVENT_TRIPLE_CLICK) {
  438. c = handleTripleClick(KEY_SELECT);
  439. }
  440. #endif
  441. #if defined(WIO_TRACKER_L1)
  442. ev = joystick_left.check();
  443. if (ev == BUTTON_EVENT_CLICK) {
  444. c = checkDisplayOn(KEY_LEFT);
  445. } else if (ev == BUTTON_EVENT_LONG_PRESS) {
  446. c = handleLongPress(KEY_LEFT);
  447. }
  448. ev = joystick_right.check();
  449. if (ev == BUTTON_EVENT_CLICK) {
  450. c = checkDisplayOn(KEY_RIGHT);
  451. } else if (ev == BUTTON_EVENT_LONG_PRESS) {
  452. c = handleLongPress(KEY_RIGHT);
  453. }
  454. #endif
  455. #if defined(PIN_USER_BTN_ANA)
  456. ev = analog_btn.check();
  457. if (ev == BUTTON_EVENT_CLICK) {
  458. c = checkDisplayOn(KEY_NEXT);
  459. } else if (ev == BUTTON_EVENT_LONG_PRESS) {
  460. c = handleLongPress(KEY_ENTER);
  461. } else if (ev == BUTTON_EVENT_DOUBLE_CLICK) {
  462. c = handleDoubleClick(KEY_PREV);
  463. } else if (ev == BUTTON_EVENT_TRIPLE_CLICK) {
  464. c = handleTripleClick(KEY_SELECT);
  465. }
  466. #endif
  467. #if defined(DISP_BACKLIGHT) && defined(BACKLIGHT_BTN)
  468. if (millis() > next_backlight_btn_check) {
  469. bool touch_state = digitalRead(PIN_BUTTON2);
  470. digitalWrite(DISP_BACKLIGHT, !touch_state);
  471. next_backlight_btn_check = millis() + 300;
  472. }
  473. #endif
  474. if (c != 0 && curr) {
  475. curr->handleInput(c);
  476. _auto_off = millis() + AUTO_OFF_MILLIS; // extend auto-off timer
  477. _next_refresh = 100; // trigger refresh
  478. }
  479. userLedHandler();
  480. #ifdef PIN_BUZZER
  481. if (buzzer.isPlaying()) buzzer.loop();
  482. #endif
  483. if (curr) curr->poll();
  484. if (_display != NULL && _display->isOn()) {
  485. if (millis() >= _next_refresh && curr) {
  486. _display->startFrame();
  487. int delay_millis = curr->render(*_display);
  488. if (millis() < _alert_expiry) { // render alert popup
  489. _display->setTextSize(1);
  490. int y = _display->height() / 3;
  491. int p = _display->height() / 32;
  492. _display->setColor(DisplayDriver::DARK);
  493. _display->fillRect(p, y, _display->width() - p*2, y);
  494. _display->setColor(DisplayDriver::LIGHT); // draw box border
  495. _display->drawRect(p, y, _display->width() - p*2, y);
  496. _display->drawTextCentered(_display->width() / 2, y + p*3, _alert);
  497. _next_refresh = _alert_expiry; // will need refresh when alert is dismissed
  498. } else {
  499. _next_refresh = millis() + delay_millis;
  500. }
  501. _display->endFrame();
  502. }
  503. #if AUTO_OFF_MILLIS > 0
  504. if (millis() > _auto_off) {
  505. _display->turnOff();
  506. }
  507. #endif
  508. }
  509. #ifdef AUTO_SHUTDOWN_MILLIVOLTS
  510. if (millis() > next_batt_chck) {
  511. uint16_t milliVolts = getBattMilliVolts();
  512. if (milliVolts > 0 && milliVolts < AUTO_SHUTDOWN_MILLIVOLTS) {
  513. // show low battery shutdown alert
  514. // we should only do this for eink displays, which will persist after power loss
  515. #if defined(THINKNODE_M1) || defined(LILYGO_TECHO)
  516. if (_display != NULL) {
  517. _display->startFrame();
  518. _display->setTextSize(2);
  519. _display->setColor(DisplayDriver::RED);
  520. _display->drawTextCentered(_display->width() / 2, 20, "Low Battery.");
  521. _display->drawTextCentered(_display->width() / 2, 40, "Shutting Down!");
  522. _display->endFrame();
  523. }
  524. #endif
  525. shutdown();
  526. }
  527. next_batt_chck = millis() + 8000;
  528. }
  529. #endif
  530. }
  531. char UITask::checkDisplayOn(char c) {
  532. if (_display != NULL) {
  533. if (!_display->isOn()) {
  534. _display->turnOn(); // turn display on and consume event
  535. c = 0;
  536. }
  537. _auto_off = millis() + AUTO_OFF_MILLIS; // extend auto-off timer
  538. _next_refresh = 0; // trigger refresh
  539. }
  540. return c;
  541. }
  542. char UITask::handleLongPress(char c) {
  543. if (millis() - ui_started_at < 8000) { // long press in first 8 seconds since startup -> CLI/rescue
  544. the_mesh.enterCLIRescue();
  545. c = 0; // consume event
  546. }
  547. return c;
  548. }
  549. char UITask::handleDoubleClick(char c) {
  550. MESH_DEBUG_PRINTLN("UITask: double click triggered");
  551. checkDisplayOn(c);
  552. return c;
  553. }
  554. char UITask::handleTripleClick(char c) {
  555. MESH_DEBUG_PRINTLN("UITask: triple click triggered");
  556. checkDisplayOn(c);
  557. toggleBuzzer();
  558. c = 0;
  559. return c;
  560. }
  561. void UITask::toggleGPS() {
  562. if (_sensors != NULL) {
  563. // toggle GPS on/off
  564. int num = _sensors->getNumSettings();
  565. for (int i = 0; i < num; i++) {
  566. if (strcmp(_sensors->getSettingName(i), "gps") == 0) {
  567. if (strcmp(_sensors->getSettingValue(i), "1") == 0) {
  568. _sensors->setSettingValue("gps", "0");
  569. soundBuzzer(UIEventType::ack);
  570. showAlert("GPS: Disabled", 800);
  571. } else {
  572. _sensors->setSettingValue("gps", "1");
  573. soundBuzzer(UIEventType::ack);
  574. showAlert("GPS: Enabled", 800);
  575. }
  576. _next_refresh = 0;
  577. break;
  578. }
  579. }
  580. }
  581. }
  582. void UITask::toggleBuzzer() {
  583. // Toggle buzzer quiet mode
  584. #ifdef PIN_BUZZER
  585. if (buzzer.isQuiet()) {
  586. buzzer.quiet(false);
  587. soundBuzzer(UIEventType::ack);
  588. showAlert("Buzzer: ON", 800);
  589. } else {
  590. buzzer.quiet(true);
  591. showAlert("Buzzer: OFF", 800);
  592. }
  593. _next_refresh = 0; // trigger refresh
  594. #endif
  595. }