My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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ultralcd.cpp 119KB

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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (C) 2016 MarlinFirmware [https://github.com/MarlinFirmware/Marlin]
  4. *
  5. * Based on Sprinter and grbl.
  6. * Copyright (C) 2011 Camiel Gubbels / Erik van der Zalm
  7. *
  8. * This program is free software: you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation, either version 3 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  20. *
  21. */
  22. #include "ultralcd.h"
  23. #if ENABLED(ULTRA_LCD)
  24. #include "Marlin.h"
  25. #include "language.h"
  26. #include "cardreader.h"
  27. #include "temperature.h"
  28. #include "stepper.h"
  29. #include "configuration_store.h"
  30. #include "utility.h"
  31. #if HAS_BUZZER && DISABLED(LCD_USE_I2C_BUZZER)
  32. #include "buzzer.h"
  33. #endif
  34. #if ENABLED(BLTOUCH)
  35. #include "endstops.h"
  36. #endif
  37. #if ENABLED(PRINTCOUNTER)
  38. #include "printcounter.h"
  39. #include "duration_t.h"
  40. #endif
  41. int lcd_preheat_hotend_temp[2], lcd_preheat_bed_temp[2], lcd_preheat_fan_speed[2];
  42. #if ENABLED(FILAMENT_LCD_DISPLAY)
  43. millis_t previous_lcd_status_ms = 0;
  44. #endif
  45. #if ENABLED(BABYSTEPPING)
  46. long babysteps_done = 0;
  47. static void lcd_babystep_z();
  48. #endif
  49. uint8_t lcd_status_message_level;
  50. char lcd_status_message[3 * (LCD_WIDTH) + 1] = WELCOME_MSG; // worst case is kana with up to 3*LCD_WIDTH+1
  51. #if ENABLED(DOGLCD)
  52. #include "ultralcd_impl_DOGM.h"
  53. #include <U8glib.h>
  54. #else
  55. #include "ultralcd_impl_HD44780.h"
  56. #endif
  57. // The main status screen
  58. void lcd_status_screen();
  59. millis_t next_lcd_update_ms;
  60. uint8_t lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW; // Set when the LCD needs to draw, decrements after every draw. Set to 2 in LCD routines so the LCD gets at least 1 full redraw (first redraw is partial)
  61. uint16_t max_display_update_time = 0;
  62. #if ENABLED(DOGLCD)
  63. bool drawing_screen = false;
  64. #define LCDVIEW_KEEP_REDRAWING LCDVIEW_CALL_REDRAW_NEXT
  65. #else
  66. #define LCDVIEW_KEEP_REDRAWING LCDVIEW_REDRAW_NOW
  67. #endif
  68. #if ENABLED(DAC_STEPPER_CURRENT)
  69. #include "stepper_dac.h" //was dac_mcp4728.h MarlinMain uses stepper dac for the m-codes
  70. uint16_t driverPercent[XYZE];
  71. #endif
  72. #if ENABLED(ULTIPANEL)
  73. // place-holders for Ki and Kd edits
  74. float raw_Ki, raw_Kd;
  75. /**
  76. * REVERSE_MENU_DIRECTION
  77. *
  78. * To reverse the menu direction we need a general way to reverse
  79. * the direction of the encoder everywhere. So encoderDirection is
  80. * added to allow the encoder to go the other way.
  81. *
  82. * This behavior is limited to scrolling Menus and SD card listings,
  83. * and is disabled in other contexts.
  84. */
  85. #if ENABLED(REVERSE_MENU_DIRECTION)
  86. int8_t encoderDirection = 1;
  87. #define ENCODER_DIRECTION_NORMAL() (encoderDirection = 1)
  88. #define ENCODER_DIRECTION_MENUS() (encoderDirection = -1)
  89. #else
  90. #define ENCODER_DIRECTION_NORMAL() ;
  91. #define ENCODER_DIRECTION_MENUS() ;
  92. #endif
  93. int8_t encoderDiff; // updated from interrupt context and added to encoderPosition every LCD update
  94. millis_t manual_move_start_time = 0;
  95. int8_t manual_move_axis = (int8_t)NO_AXIS;
  96. #if EXTRUDERS > 1
  97. int8_t manual_move_e_index = 0;
  98. #else
  99. #define manual_move_e_index 0
  100. #endif
  101. bool encoderRateMultiplierEnabled;
  102. int32_t lastEncoderMovementMillis;
  103. #if HAS_POWER_SWITCH
  104. extern bool powersupply;
  105. #endif
  106. const float manual_feedrate_mm_m[] = MANUAL_FEEDRATE;
  107. void lcd_main_menu();
  108. void lcd_tune_menu();
  109. void lcd_prepare_menu();
  110. void lcd_move_menu();
  111. void lcd_control_menu();
  112. void lcd_control_temperature_menu();
  113. void lcd_control_temperature_preheat_material1_settings_menu();
  114. void lcd_control_temperature_preheat_material2_settings_menu();
  115. void lcd_control_motion_menu();
  116. void lcd_control_volumetric_menu();
  117. #if ENABLED(DAC_STEPPER_CURRENT)
  118. void dac_driver_commit();
  119. void dac_driver_getValues();
  120. void lcd_dac_menu();
  121. void lcd_dac_write_eeprom();
  122. #endif
  123. #if ENABLED(LCD_INFO_MENU)
  124. #if ENABLED(PRINTCOUNTER)
  125. void lcd_info_stats_menu();
  126. #endif
  127. void lcd_info_thermistors_menu();
  128. void lcd_info_board_menu();
  129. void lcd_info_menu();
  130. #endif // LCD_INFO_MENU
  131. #if ENABLED(FILAMENT_CHANGE_FEATURE)
  132. void lcd_filament_change_toocold_menu();
  133. void lcd_filament_change_option_menu();
  134. void lcd_filament_change_init_message();
  135. void lcd_filament_change_unload_message();
  136. void lcd_filament_change_insert_message();
  137. void lcd_filament_change_load_message();
  138. void lcd_filament_change_heat_nozzle();
  139. void lcd_filament_change_extrude_message();
  140. void lcd_filament_change_resume_message();
  141. #endif
  142. #if HAS_LCD_CONTRAST
  143. void lcd_set_contrast();
  144. #endif
  145. #if ENABLED(FWRETRACT)
  146. void lcd_control_retract_menu();
  147. #endif
  148. #if ENABLED(DELTA_CALIBRATION_MENU)
  149. void lcd_delta_calibrate_menu();
  150. #endif
  151. #if ENABLED(MANUAL_BED_LEVELING)
  152. #include "mesh_bed_leveling.h"
  153. #endif
  154. // Function pointer to menu functions.
  155. typedef void (*screenFunc_t)();
  156. // Different types of actions that can be used in menu items.
  157. #define menu_action_back(dummy) _menu_action_back()
  158. void _menu_action_back();
  159. void menu_action_submenu(screenFunc_t data);
  160. void menu_action_gcode(const char* pgcode);
  161. void menu_action_function(screenFunc_t data);
  162. void menu_action_setting_edit_bool(const char* pstr, bool* ptr);
  163. void menu_action_setting_edit_int3(const char* pstr, int* ptr, int minValue, int maxValue);
  164. void menu_action_setting_edit_float3(const char* pstr, float* ptr, float minValue, float maxValue);
  165. void menu_action_setting_edit_float32(const char* pstr, float* ptr, float minValue, float maxValue);
  166. void menu_action_setting_edit_float43(const char* pstr, float* ptr, float minValue, float maxValue);
  167. void menu_action_setting_edit_float5(const char* pstr, float* ptr, float minValue, float maxValue);
  168. void menu_action_setting_edit_float51(const char* pstr, float* ptr, float minValue, float maxValue);
  169. void menu_action_setting_edit_float52(const char* pstr, float* ptr, float minValue, float maxValue);
  170. void menu_action_setting_edit_float62(const char* pstr, float* ptr, float minValue, float maxValue);
  171. void menu_action_setting_edit_long5(const char* pstr, unsigned long* ptr, unsigned long minValue, unsigned long maxValue);
  172. void menu_action_setting_edit_callback_bool(const char* pstr, bool* ptr, screenFunc_t callbackFunc);
  173. void menu_action_setting_edit_callback_int3(const char* pstr, int* ptr, int minValue, int maxValue, screenFunc_t callbackFunc);
  174. void menu_action_setting_edit_callback_float3(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  175. void menu_action_setting_edit_callback_float32(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  176. void menu_action_setting_edit_callback_float43(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  177. void menu_action_setting_edit_callback_float5(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  178. void menu_action_setting_edit_callback_float51(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  179. void menu_action_setting_edit_callback_float52(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  180. void menu_action_setting_edit_callback_float62(const char* pstr, float* ptr, float minValue, float maxValue, screenFunc_t callbackFunc);
  181. void menu_action_setting_edit_callback_long5(const char* pstr, unsigned long* ptr, unsigned long minValue, unsigned long maxValue, screenFunc_t callbackFunc);
  182. #if ENABLED(SDSUPPORT)
  183. void lcd_sdcard_menu();
  184. void menu_action_sdfile(const char* filename, char* longFilename);
  185. void menu_action_sddirectory(const char* filename, char* longFilename);
  186. #endif
  187. /* Helper macros for menus */
  188. #ifndef ENCODER_FEEDRATE_DEADZONE
  189. #define ENCODER_FEEDRATE_DEADZONE 10
  190. #endif
  191. #ifndef ENCODER_STEPS_PER_MENU_ITEM
  192. #define ENCODER_STEPS_PER_MENU_ITEM 5
  193. #endif
  194. #ifndef ENCODER_PULSES_PER_STEP
  195. #define ENCODER_PULSES_PER_STEP 1
  196. #endif
  197. #ifndef TALL_FONT_CORRECTION
  198. #define TALL_FONT_CORRECTION 0
  199. #endif
  200. /**
  201. * START_SCREEN_OR_MENU generates init code for a screen or menu
  202. *
  203. * encoderLine is the position based on the encoder
  204. * encoderTopLine is the top menu line to display
  205. * _lcdLineNr is the index of the LCD line (e.g., 0-3)
  206. * _menuLineNr is the menu item to draw and process
  207. * _thisItemNr is the index of each MENU_ITEM or STATIC_ITEM
  208. * _countedItems is the total number of items in the menu (after one call)
  209. */
  210. #define START_SCREEN_OR_MENU(LIMIT) \
  211. ENCODER_DIRECTION_MENUS(); \
  212. encoderRateMultiplierEnabled = false; \
  213. if (encoderPosition > 0x8000) encoderPosition = 0; \
  214. static int8_t _countedItems = 0; \
  215. int8_t encoderLine = encoderPosition / (ENCODER_STEPS_PER_MENU_ITEM); \
  216. if (_countedItems > 0 && encoderLine >= _countedItems - (LIMIT)) { \
  217. encoderLine = max(0, _countedItems - (LIMIT)); \
  218. encoderPosition = encoderLine * (ENCODER_STEPS_PER_MENU_ITEM); \
  219. }
  220. #define SCREEN_OR_MENU_LOOP() \
  221. int8_t _menuLineNr = encoderTopLine, _thisItemNr; \
  222. for (int8_t _lcdLineNr = 0; _lcdLineNr < LCD_HEIGHT - (TALL_FONT_CORRECTION); _lcdLineNr++, _menuLineNr++) { \
  223. _thisItemNr = 0
  224. /**
  225. * START_SCREEN Opening code for a screen having only static items.
  226. * Do simplified scrolling of the entire screen.
  227. *
  228. * START_MENU Opening code for a screen with menu items.
  229. * Scroll as-needed to keep the selected line in view.
  230. */
  231. #define START_SCREEN() \
  232. START_SCREEN_OR_MENU(LCD_HEIGHT - (TALL_FONT_CORRECTION)); \
  233. encoderTopLine = encoderLine; \
  234. bool _skipStatic = false; \
  235. SCREEN_OR_MENU_LOOP()
  236. #define START_MENU() \
  237. START_SCREEN_OR_MENU(1); \
  238. screen_changed = false; \
  239. NOMORE(encoderTopLine, encoderLine); \
  240. if (encoderLine >= encoderTopLine + LCD_HEIGHT - (TALL_FONT_CORRECTION)) { \
  241. encoderTopLine = encoderLine - (LCD_HEIGHT - (TALL_FONT_CORRECTION) - 1); \
  242. } \
  243. bool _skipStatic = true; \
  244. SCREEN_OR_MENU_LOOP()
  245. /**
  246. * MENU_ITEM generates draw & handler code for a menu item, potentially calling:
  247. *
  248. * lcd_implementation_drawmenu_[type](sel, row, label, arg3...)
  249. * menu_action_[type](arg3...)
  250. *
  251. * Examples:
  252. * MENU_ITEM(back, MSG_WATCH, 0 [dummy parameter] )
  253. * or
  254. * MENU_BACK(MSG_WATCH)
  255. * lcd_implementation_drawmenu_back(sel, row, PSTR(MSG_WATCH))
  256. * menu_action_back()
  257. *
  258. * MENU_ITEM(function, MSG_PAUSE_PRINT, lcd_sdcard_pause)
  259. * lcd_implementation_drawmenu_function(sel, row, PSTR(MSG_PAUSE_PRINT), lcd_sdcard_pause)
  260. * menu_action_function(lcd_sdcard_pause)
  261. *
  262. * MENU_ITEM_EDIT(int3, MSG_SPEED, &feedrate_percentage, 10, 999)
  263. * MENU_ITEM(setting_edit_int3, MSG_SPEED, PSTR(MSG_SPEED), &feedrate_percentage, 10, 999)
  264. * lcd_implementation_drawmenu_setting_edit_int3(sel, row, PSTR(MSG_SPEED), PSTR(MSG_SPEED), &feedrate_percentage, 10, 999)
  265. * menu_action_setting_edit_int3(PSTR(MSG_SPEED), &feedrate_percentage, 10, 999)
  266. *
  267. */
  268. #define _MENU_ITEM_PART_1(TYPE, LABEL, ...) \
  269. if (_menuLineNr == _thisItemNr) { \
  270. if (lcdDrawUpdate) \
  271. lcd_implementation_drawmenu_ ## TYPE(encoderLine == _thisItemNr, _lcdLineNr, PSTR(LABEL), ## __VA_ARGS__); \
  272. if (lcd_clicked && encoderLine == _thisItemNr) {
  273. #define _MENU_ITEM_PART_2(TYPE, ...) \
  274. menu_action_ ## TYPE(__VA_ARGS__); \
  275. if (screen_changed) return; \
  276. } \
  277. } \
  278. ++_thisItemNr
  279. #define MENU_ITEM(TYPE, LABEL, ...) do { \
  280. _skipStatic = false; \
  281. _MENU_ITEM_PART_1(TYPE, LABEL, ## __VA_ARGS__); \
  282. _MENU_ITEM_PART_2(TYPE, ## __VA_ARGS__); \
  283. } while(0)
  284. #define MENU_BACK(LABEL) MENU_ITEM(back, LABEL, 0)
  285. // Used to print static text with no visible cursor.
  286. // Parameters: label [, bool center [, bool invert [, char *value] ] ]
  287. #define STATIC_ITEM(LABEL, ...) \
  288. if (_menuLineNr == _thisItemNr) { \
  289. if (_skipStatic && encoderLine <= _thisItemNr) { \
  290. encoderPosition += ENCODER_STEPS_PER_MENU_ITEM; \
  291. lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT; \
  292. } \
  293. if (lcdDrawUpdate) \
  294. lcd_implementation_drawmenu_static(_lcdLineNr, PSTR(LABEL), ## __VA_ARGS__); \
  295. } \
  296. ++_thisItemNr
  297. #define END_SCREEN() \
  298. } \
  299. _countedItems = _thisItemNr
  300. #define END_MENU() \
  301. } \
  302. _countedItems = _thisItemNr; \
  303. UNUSED(_skipStatic)
  304. #if ENABLED(ENCODER_RATE_MULTIPLIER)
  305. //#define ENCODER_RATE_MULTIPLIER_DEBUG // If defined, output the encoder steps per second value
  306. /**
  307. * MENU_MULTIPLIER_ITEM generates drawing and handling code for a multiplier menu item
  308. */
  309. #define MENU_MULTIPLIER_ITEM(type, label, ...) do { \
  310. _MENU_ITEM_PART_1(type, label, ## __VA_ARGS__); \
  311. encoderRateMultiplierEnabled = true; \
  312. lastEncoderMovementMillis = 0; \
  313. _MENU_ITEM_PART_2(type, ## __VA_ARGS__); \
  314. } while(0)
  315. #endif //ENCODER_RATE_MULTIPLIER
  316. #define MENU_ITEM_DUMMY() do { _thisItemNr++; } while(0)
  317. #define MENU_ITEM_EDIT(type, label, ...) MENU_ITEM(setting_edit_ ## type, label, PSTR(label), ## __VA_ARGS__)
  318. #define MENU_ITEM_EDIT_CALLBACK(type, label, ...) MENU_ITEM(setting_edit_callback_ ## type, label, PSTR(label), ## __VA_ARGS__)
  319. #if ENABLED(ENCODER_RATE_MULTIPLIER)
  320. #define MENU_MULTIPLIER_ITEM_EDIT(type, label, ...) MENU_MULTIPLIER_ITEM(setting_edit_ ## type, label, PSTR(label), ## __VA_ARGS__)
  321. #define MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(type, label, ...) MENU_MULTIPLIER_ITEM(setting_edit_callback_ ## type, label, PSTR(label), ## __VA_ARGS__)
  322. #else //!ENCODER_RATE_MULTIPLIER
  323. #define MENU_MULTIPLIER_ITEM_EDIT(type, label, ...) MENU_ITEM(setting_edit_ ## type, label, PSTR(label), ## __VA_ARGS__)
  324. #define MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(type, label, ...) MENU_ITEM(setting_edit_callback_ ## type, label, PSTR(label), ## __VA_ARGS__)
  325. #endif //!ENCODER_RATE_MULTIPLIER
  326. /** Used variables to keep track of the menu */
  327. volatile uint8_t buttons; //the last checked buttons in a bit array.
  328. #if ENABLED(REPRAPWORLD_KEYPAD)
  329. volatile uint8_t buttons_reprapworld_keypad; // to store the keypad shift register values
  330. #endif
  331. #if ENABLED(LCD_HAS_SLOW_BUTTONS)
  332. volatile uint8_t slow_buttons; // Bits of the pressed buttons.
  333. #endif
  334. int8_t encoderTopLine; /* scroll offset in the current menu */
  335. millis_t next_button_update_ms;
  336. uint8_t lastEncoderBits;
  337. uint32_t encoderPosition;
  338. #if PIN_EXISTS(SD_DETECT)
  339. uint8_t lcd_sd_status;
  340. #endif
  341. typedef struct {
  342. screenFunc_t menu_function;
  343. uint32_t encoder_position;
  344. } menuPosition;
  345. screenFunc_t currentScreen = lcd_status_screen; // pointer to the currently active menu handler
  346. menuPosition screen_history[10];
  347. uint8_t screen_history_depth = 0;
  348. bool screen_changed;
  349. // LCD and menu clicks
  350. bool lcd_clicked, wait_for_unclick, defer_return_to_status, no_reentrance;
  351. // Variables used when editing values.
  352. const char* editLabel;
  353. void* editValue;
  354. int32_t minEditValue, maxEditValue;
  355. screenFunc_t callbackFunc; // call this after editing
  356. /**
  357. * General function to go directly to a screen
  358. */
  359. void lcd_goto_screen(screenFunc_t screen, const uint32_t encoder = 0) {
  360. if (currentScreen != screen) {
  361. #if ENABLED(DOUBLECLICK_FOR_Z_BABYSTEPPING) && ENABLED(BABYSTEPPING)
  362. static millis_t doubleclick_expire_ms = 0;
  363. // Going to lcd_main_menu from status screen? Remember first click time.
  364. // Going back to status screen within a very short time? Go to Z babystepping.
  365. if (screen == lcd_main_menu) {
  366. if (currentScreen == lcd_status_screen)
  367. doubleclick_expire_ms = millis() + DOUBLECLICK_MAX_INTERVAL;
  368. }
  369. else if (screen == lcd_status_screen && currentScreen == lcd_main_menu && PENDING(millis(), doubleclick_expire_ms))
  370. screen = lcd_babystep_z;
  371. #endif
  372. currentScreen = screen;
  373. encoderPosition = encoder;
  374. if (screen == lcd_status_screen) {
  375. defer_return_to_status = false;
  376. screen_history_depth = 0;
  377. }
  378. lcd_implementation_clear();
  379. #if ENABLED(LCD_PROGRESS_BAR)
  380. // For LCD_PROGRESS_BAR re-initialize custom characters
  381. lcd_set_custom_characters(screen == lcd_status_screen);
  382. #endif
  383. lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
  384. screen_changed = true;
  385. #if ENABLED(DOGLCD)
  386. drawing_screen = false;
  387. #endif
  388. }
  389. }
  390. /**
  391. * Synchronize safely while holding the current screen
  392. * This blocks all further screen or stripe updates once called
  393. */
  394. inline void lcd_synchronize() {
  395. lcd_implementation_drawmenu_static(LCD_HEIGHT >= 4 ? 1 : 0, PSTR(MSG_MOVING));
  396. if (no_reentrance) return;
  397. no_reentrance = true;
  398. screenFunc_t old_screen = currentScreen;
  399. lcd_goto_screen(lcd_synchronize);
  400. stepper.synchronize();
  401. no_reentrance = false;
  402. lcd_goto_screen(old_screen);
  403. }
  404. void lcd_return_to_status() { lcd_goto_screen(lcd_status_screen); }
  405. void lcd_save_previous_screen() {
  406. if (screen_history_depth < COUNT(screen_history)) {
  407. screen_history[screen_history_depth].menu_function = currentScreen;
  408. screen_history[screen_history_depth].encoder_position = encoderPosition;
  409. ++screen_history_depth;
  410. }
  411. }
  412. void lcd_goto_previous_menu() {
  413. if (screen_history_depth > 0) {
  414. --screen_history_depth;
  415. lcd_goto_screen(
  416. screen_history[screen_history_depth].menu_function,
  417. screen_history[screen_history_depth].encoder_position
  418. );
  419. }
  420. else
  421. lcd_return_to_status();
  422. }
  423. #endif // ULTIPANEL
  424. /**
  425. *
  426. * "Info Screen"
  427. *
  428. * This is very display-dependent, so the lcd implementation draws this.
  429. */
  430. void lcd_status_screen() {
  431. #if ENABLED(ULTIPANEL)
  432. ENCODER_DIRECTION_NORMAL();
  433. encoderRateMultiplierEnabled = false;
  434. #endif
  435. #if ENABLED(LCD_PROGRESS_BAR)
  436. millis_t ms = millis();
  437. #if DISABLED(PROGRESS_MSG_ONCE)
  438. if (ELAPSED(ms, progress_bar_ms + PROGRESS_BAR_MSG_TIME + PROGRESS_BAR_BAR_TIME)) {
  439. progress_bar_ms = ms;
  440. }
  441. #endif
  442. #if PROGRESS_MSG_EXPIRE > 0
  443. // Handle message expire
  444. if (expire_status_ms > 0) {
  445. #if ENABLED(SDSUPPORT)
  446. if (card.isFileOpen()) {
  447. // Expire the message when printing is active
  448. if (IS_SD_PRINTING) {
  449. if (ELAPSED(ms, expire_status_ms)) {
  450. lcd_status_message[0] = '\0';
  451. expire_status_ms = 0;
  452. }
  453. }
  454. else {
  455. expire_status_ms += LCD_UPDATE_INTERVAL;
  456. }
  457. }
  458. else {
  459. expire_status_ms = 0;
  460. }
  461. #else
  462. expire_status_ms = 0;
  463. #endif //SDSUPPORT
  464. }
  465. #endif
  466. #endif //LCD_PROGRESS_BAR
  467. lcd_implementation_status_screen();
  468. #if ENABLED(ULTIPANEL)
  469. if (lcd_clicked) {
  470. #if ENABLED(FILAMENT_LCD_DISPLAY)
  471. previous_lcd_status_ms = millis(); // get status message to show up for a while
  472. #endif
  473. lcd_implementation_init( // to maybe revive the LCD if static electricity killed it.
  474. #if ENABLED(LCD_PROGRESS_BAR)
  475. false
  476. #endif
  477. );
  478. lcd_goto_screen(lcd_main_menu);
  479. }
  480. #if ENABLED(ULTIPANEL_FEEDMULTIPLY)
  481. int new_frm = feedrate_percentage + (int32_t)encoderPosition;
  482. // Dead zone at 100% feedrate
  483. if ((feedrate_percentage < 100 && new_frm > 100) || (feedrate_percentage > 100 && new_frm < 100)) {
  484. feedrate_percentage = 100;
  485. encoderPosition = 0;
  486. }
  487. else if (feedrate_percentage == 100) {
  488. if ((int32_t)encoderPosition > ENCODER_FEEDRATE_DEADZONE) {
  489. feedrate_percentage += (int32_t)encoderPosition - (ENCODER_FEEDRATE_DEADZONE);
  490. encoderPosition = 0;
  491. }
  492. else if ((int32_t)encoderPosition < -(ENCODER_FEEDRATE_DEADZONE)) {
  493. feedrate_percentage += (int32_t)encoderPosition + ENCODER_FEEDRATE_DEADZONE;
  494. encoderPosition = 0;
  495. }
  496. }
  497. else {
  498. feedrate_percentage = new_frm;
  499. encoderPosition = 0;
  500. }
  501. #endif // ULTIPANEL_FEEDMULTIPLY
  502. feedrate_percentage = constrain(feedrate_percentage, 10, 999);
  503. #endif //ULTIPANEL
  504. }
  505. /**
  506. *
  507. * draw the kill screen
  508. *
  509. */
  510. void kill_screen(const char* lcd_msg) {
  511. lcd_init();
  512. lcd_setalertstatuspgm(lcd_msg);
  513. #if ENABLED(DOGLCD)
  514. u8g.firstPage();
  515. do {
  516. lcd_kill_screen();
  517. } while (u8g.nextPage());
  518. #else
  519. lcd_kill_screen();
  520. #endif
  521. }
  522. #if ENABLED(ULTIPANEL)
  523. inline void line_to_current(AxisEnum axis) {
  524. planner.buffer_line_kinematic(current_position, MMM_TO_MMS(manual_feedrate_mm_m[axis]), active_extruder);
  525. }
  526. #if ENABLED(SDSUPPORT)
  527. void lcd_sdcard_pause() {
  528. card.pauseSDPrint();
  529. print_job_timer.pause();
  530. }
  531. void lcd_sdcard_resume() {
  532. card.startFileprint();
  533. print_job_timer.start();
  534. }
  535. void lcd_sdcard_stop() {
  536. card.stopSDPrint();
  537. clear_command_queue();
  538. quickstop_stepper();
  539. print_job_timer.stop();
  540. #if ENABLED(AUTOTEMP)
  541. thermalManager.autotempShutdown();
  542. #endif
  543. wait_for_heatup = false;
  544. lcd_setstatus(MSG_PRINT_ABORTED, true);
  545. }
  546. #endif //SDSUPPORT
  547. #if ENABLED(MENU_ITEM_CASE_LIGHT)
  548. extern bool case_light_on;
  549. extern void update_case_light();
  550. void toggle_case_light() {
  551. case_light_on = !case_light_on;
  552. lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
  553. update_case_light();
  554. }
  555. #endif // MENU_ITEM_CASE_LIGHT
  556. #if ENABLED(LCD_PROGRESS_BAR_TEST)
  557. static void progress_bar_test() {
  558. static int8_t bar_percent = 0;
  559. if (lcd_clicked) {
  560. lcd_goto_previous_menu();
  561. lcd_set_custom_characters(false);
  562. return;
  563. }
  564. bar_percent += (int8_t)encoderPosition;
  565. bar_percent = constrain(bar_percent, 0, 100);
  566. encoderPosition = 0;
  567. lcd_implementation_drawmenu_static(0, PSTR(MSG_PROGRESS_BAR_TEST), true, true);
  568. lcd.setCursor((LCD_WIDTH) / 2 - 2, LCD_HEIGHT - 2);
  569. lcd.print(itostr3(bar_percent)); lcd.print('%');
  570. lcd.setCursor(0, LCD_HEIGHT - 1); lcd_draw_progress_bar(bar_percent);
  571. }
  572. void _progress_bar_test() {
  573. lcd_goto_screen(progress_bar_test);
  574. lcd_set_custom_characters();
  575. }
  576. #endif // LCD_PROGRESS_BAR_TEST
  577. #if HAS_DEBUG_MENU
  578. void lcd_debug_menu() {
  579. START_MENU();
  580. MENU_BACK(MSG_MAIN); // ^ Main
  581. #if ENABLED(LCD_PROGRESS_BAR_TEST)
  582. MENU_ITEM(submenu, MSG_PROGRESS_BAR_TEST, _progress_bar_test);
  583. #endif
  584. END_MENU();
  585. }
  586. #endif // HAS_DEBUG_MENU
  587. /**
  588. *
  589. * "Main" menu
  590. *
  591. */
  592. void lcd_main_menu() {
  593. START_MENU();
  594. MENU_BACK(MSG_WATCH);
  595. //
  596. // Debug Menu when certain options are enabled
  597. //
  598. #if HAS_DEBUG_MENU
  599. MENU_ITEM(submenu, MSG_DEBUG_MENU, lcd_debug_menu);
  600. #endif
  601. //
  602. // Switch case light on/off
  603. //
  604. #if ENABLED(MENU_ITEM_CASE_LIGHT)
  605. if (case_light_on)
  606. MENU_ITEM(function, MSG_LIGHTS_OFF, toggle_case_light);
  607. else
  608. MENU_ITEM(function, MSG_LIGHTS_ON, toggle_case_light);
  609. #endif
  610. #if ENABLED(BLTOUCH)
  611. if (!endstops.z_probe_enabled && TEST_BLTOUCH())
  612. MENU_ITEM(gcode, MSG_BLTOUCH_RESET, PSTR("M280 P" STRINGIFY(Z_ENDSTOP_SERVO_NR) " S" STRINGIFY(BLTOUCH_RESET)));
  613. #endif
  614. if (planner.movesplanned() || IS_SD_PRINTING) {
  615. MENU_ITEM(submenu, MSG_TUNE, lcd_tune_menu);
  616. }
  617. else {
  618. MENU_ITEM(submenu, MSG_PREPARE, lcd_prepare_menu);
  619. #if ENABLED(DELTA_CALIBRATION_MENU)
  620. MENU_ITEM(submenu, MSG_DELTA_CALIBRATE, lcd_delta_calibrate_menu);
  621. #endif
  622. }
  623. MENU_ITEM(submenu, MSG_CONTROL, lcd_control_menu);
  624. #if ENABLED(SDSUPPORT)
  625. if (card.cardOK) {
  626. if (card.isFileOpen()) {
  627. if (card.sdprinting)
  628. MENU_ITEM(function, MSG_PAUSE_PRINT, lcd_sdcard_pause);
  629. else
  630. MENU_ITEM(function, MSG_RESUME_PRINT, lcd_sdcard_resume);
  631. MENU_ITEM(function, MSG_STOP_PRINT, lcd_sdcard_stop);
  632. }
  633. else {
  634. MENU_ITEM(submenu, MSG_CARD_MENU, lcd_sdcard_menu);
  635. #if !PIN_EXISTS(SD_DETECT)
  636. MENU_ITEM(gcode, MSG_CNG_SDCARD, PSTR("M21")); // SD-card changed by user
  637. #endif
  638. }
  639. }
  640. else {
  641. MENU_ITEM(submenu, MSG_NO_CARD, lcd_sdcard_menu);
  642. #if !PIN_EXISTS(SD_DETECT)
  643. MENU_ITEM(gcode, MSG_INIT_SDCARD, PSTR("M21")); // Manually initialize the SD-card via user interface
  644. #endif
  645. }
  646. #endif //SDSUPPORT
  647. #if ENABLED(LCD_INFO_MENU)
  648. MENU_ITEM(submenu, MSG_INFO_MENU, lcd_info_menu);
  649. #endif
  650. END_MENU();
  651. }
  652. /**
  653. *
  654. * "Tune" submenu items
  655. *
  656. */
  657. #if DISABLED(NO_WORKSPACE_OFFSETS)
  658. /**
  659. * Set the home offset based on the current_position
  660. */
  661. void lcd_set_home_offsets() {
  662. // M428 Command
  663. enqueue_and_echo_commands_P(PSTR("M428"));
  664. lcd_return_to_status();
  665. }
  666. #endif
  667. #if ENABLED(BABYSTEPPING)
  668. void _lcd_babystep(const AxisEnum axis, const char* msg) {
  669. if (lcd_clicked) { defer_return_to_status = false; return lcd_goto_previous_menu(); }
  670. ENCODER_DIRECTION_NORMAL();
  671. if (encoderPosition) {
  672. int babystep_increment = (int32_t)encoderPosition * (BABYSTEP_MULTIPLICATOR);
  673. encoderPosition = 0;
  674. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  675. thermalManager.babystep_axis(axis, babystep_increment);
  676. babysteps_done += babystep_increment;
  677. }
  678. if (lcdDrawUpdate)
  679. lcd_implementation_drawedit(msg, ftostr43sign(planner.steps_to_mm[axis] * babysteps_done));
  680. }
  681. #if ENABLED(BABYSTEP_XY)
  682. void _lcd_babystep_x() { _lcd_babystep(X_AXIS, PSTR(MSG_BABYSTEPPING_X)); }
  683. void _lcd_babystep_y() { _lcd_babystep(Y_AXIS, PSTR(MSG_BABYSTEPPING_Y)); }
  684. void lcd_babystep_x() { lcd_goto_screen(_lcd_babystep_x); babysteps_done = 0; defer_return_to_status = true; }
  685. void lcd_babystep_y() { lcd_goto_screen(_lcd_babystep_y); babysteps_done = 0; defer_return_to_status = true; }
  686. #endif
  687. void _lcd_babystep_z() { _lcd_babystep(Z_AXIS, PSTR(MSG_BABYSTEPPING_Z)); }
  688. void lcd_babystep_z() { lcd_goto_screen(_lcd_babystep_z); babysteps_done = 0; defer_return_to_status = true; }
  689. #endif //BABYSTEPPING
  690. /**
  691. * Watch temperature callbacks
  692. */
  693. #if ENABLED(THERMAL_PROTECTION_HOTENDS) && WATCH_TEMP_PERIOD > 0
  694. #if TEMP_SENSOR_0 != 0
  695. void watch_temp_callback_E0() { thermalManager.start_watching_heater(0); }
  696. #endif
  697. #if HOTENDS > 1 && TEMP_SENSOR_1 != 0
  698. void watch_temp_callback_E1() { thermalManager.start_watching_heater(1); }
  699. #endif // HOTENDS > 1
  700. #if HOTENDS > 2 && TEMP_SENSOR_2 != 0
  701. void watch_temp_callback_E2() { thermalManager.start_watching_heater(2); }
  702. #endif // HOTENDS > 2
  703. #if HOTENDS > 3 && TEMP_SENSOR_3 != 0
  704. void watch_temp_callback_E3() { thermalManager.start_watching_heater(3); }
  705. #endif // HOTENDS > 3
  706. #else
  707. #if TEMP_SENSOR_0 != 0
  708. void watch_temp_callback_E0() {}
  709. #endif
  710. #if HOTENDS > 1 && TEMP_SENSOR_1 != 0
  711. void watch_temp_callback_E1() {}
  712. #endif // HOTENDS > 1
  713. #if HOTENDS > 2 && TEMP_SENSOR_2 != 0
  714. void watch_temp_callback_E2() {}
  715. #endif // HOTENDS > 2
  716. #if HOTENDS > 3 && TEMP_SENSOR_3 != 0
  717. void watch_temp_callback_E3() {}
  718. #endif // HOTENDS > 3
  719. #endif
  720. #if ENABLED(THERMAL_PROTECTION_BED) && WATCH_BED_TEMP_PERIOD > 0
  721. #if TEMP_SENSOR_BED != 0
  722. void watch_temp_callback_bed() { thermalManager.start_watching_bed(); }
  723. #endif
  724. #else
  725. #if TEMP_SENSOR_BED != 0
  726. void watch_temp_callback_bed() {}
  727. #endif
  728. #endif
  729. #if ENABLED(FILAMENT_CHANGE_FEATURE)
  730. void lcd_enqueue_filament_change() {
  731. if (!DEBUGGING(DRYRUN) && thermalManager.tooColdToExtrude(active_extruder)) {
  732. lcd_save_previous_screen();
  733. lcd_goto_screen(lcd_filament_change_toocold_menu);
  734. return;
  735. }
  736. lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_INIT);
  737. enqueue_and_echo_commands_P(PSTR("M600"));
  738. }
  739. #endif
  740. /**
  741. *
  742. * "Tune" submenu
  743. *
  744. */
  745. void lcd_tune_menu() {
  746. START_MENU();
  747. //
  748. // ^ Main
  749. //
  750. MENU_BACK(MSG_MAIN);
  751. //
  752. // Speed:
  753. //
  754. MENU_ITEM_EDIT(int3, MSG_SPEED, &feedrate_percentage, 10, 999);
  755. // Manual bed leveling, Bed Z:
  756. #if ENABLED(MANUAL_BED_LEVELING)
  757. MENU_ITEM_EDIT(float43, MSG_BED_Z, &mbl.z_offset, -1, 1);
  758. #endif
  759. //
  760. // Nozzle:
  761. // Nozzle [1-4]:
  762. //
  763. #if HOTENDS == 1
  764. #if TEMP_SENSOR_0 != 0
  765. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE, &thermalManager.target_temperature[0], 0, HEATER_0_MAXTEMP - 15, watch_temp_callback_E0);
  766. #endif
  767. #else //HOTENDS > 1
  768. #if TEMP_SENSOR_0 != 0
  769. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N1, &thermalManager.target_temperature[0], 0, HEATER_0_MAXTEMP - 15, watch_temp_callback_E0);
  770. #endif
  771. #if TEMP_SENSOR_1 != 0
  772. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N2, &thermalManager.target_temperature[1], 0, HEATER_1_MAXTEMP - 15, watch_temp_callback_E1);
  773. #endif
  774. #if HOTENDS > 2
  775. #if TEMP_SENSOR_2 != 0
  776. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N3, &thermalManager.target_temperature[2], 0, HEATER_2_MAXTEMP - 15, watch_temp_callback_E2);
  777. #endif
  778. #if HOTENDS > 3
  779. #if TEMP_SENSOR_3 != 0
  780. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N4, &thermalManager.target_temperature[3], 0, HEATER_3_MAXTEMP - 15, watch_temp_callback_E3);
  781. #endif
  782. #endif // HOTENDS > 3
  783. #endif // HOTENDS > 2
  784. #endif // HOTENDS > 1
  785. //
  786. // Bed:
  787. //
  788. #if TEMP_SENSOR_BED != 0
  789. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_BED, &thermalManager.target_temperature_bed, 0, BED_MAXTEMP - 15, watch_temp_callback_bed);
  790. #endif
  791. //
  792. // Fan Speed:
  793. //
  794. #if FAN_COUNT > 0
  795. #if HAS_FAN0
  796. #if FAN_COUNT > 1
  797. #define MSG_1ST_FAN_SPEED MSG_FAN_SPEED " 1"
  798. #else
  799. #define MSG_1ST_FAN_SPEED MSG_FAN_SPEED
  800. #endif
  801. MENU_MULTIPLIER_ITEM_EDIT(int3, MSG_1ST_FAN_SPEED, &fanSpeeds[0], 0, 255);
  802. #endif
  803. #if HAS_FAN1
  804. MENU_MULTIPLIER_ITEM_EDIT(int3, MSG_FAN_SPEED " 2", &fanSpeeds[1], 0, 255);
  805. #endif
  806. #if HAS_FAN2
  807. MENU_MULTIPLIER_ITEM_EDIT(int3, MSG_FAN_SPEED " 3", &fanSpeeds[2], 0, 255);
  808. #endif
  809. #endif // FAN_COUNT > 0
  810. //
  811. // Flow:
  812. // Flow 1:
  813. // Flow 2:
  814. // Flow 3:
  815. // Flow 4:
  816. //
  817. #if EXTRUDERS == 1
  818. MENU_ITEM_EDIT(int3, MSG_FLOW, &flow_percentage[0], 10, 999);
  819. #else // EXTRUDERS > 1
  820. MENU_ITEM_EDIT(int3, MSG_FLOW, &flow_percentage[active_extruder], 10, 999);
  821. MENU_ITEM_EDIT(int3, MSG_FLOW MSG_N1, &flow_percentage[0], 10, 999);
  822. MENU_ITEM_EDIT(int3, MSG_FLOW MSG_N2, &flow_percentage[1], 10, 999);
  823. #if EXTRUDERS > 2
  824. MENU_ITEM_EDIT(int3, MSG_FLOW MSG_N3, &flow_percentage[2], 10, 999);
  825. #if EXTRUDERS > 3
  826. MENU_ITEM_EDIT(int3, MSG_FLOW MSG_N4, &flow_percentage[3], 10, 999);
  827. #endif //EXTRUDERS > 3
  828. #endif //EXTRUDERS > 2
  829. #endif //EXTRUDERS > 1
  830. //
  831. // Babystep X:
  832. // Babystep Y:
  833. // Babystep Z:
  834. //
  835. #if ENABLED(BABYSTEPPING)
  836. #if ENABLED(BABYSTEP_XY)
  837. MENU_ITEM(submenu, MSG_BABYSTEP_X, lcd_babystep_x);
  838. MENU_ITEM(submenu, MSG_BABYSTEP_Y, lcd_babystep_y);
  839. #endif //BABYSTEP_XY
  840. MENU_ITEM(submenu, MSG_BABYSTEP_Z, lcd_babystep_z);
  841. #endif
  842. //
  843. // Change filament
  844. //
  845. #if ENABLED(FILAMENT_CHANGE_FEATURE)
  846. if (!thermalManager.tooColdToExtrude(active_extruder))
  847. MENU_ITEM(function, MSG_FILAMENTCHANGE, lcd_enqueue_filament_change);
  848. #endif
  849. END_MENU();
  850. }
  851. /**
  852. *
  853. * "Driver current control" submenu items
  854. *
  855. */
  856. #if ENABLED(DAC_STEPPER_CURRENT)
  857. void dac_driver_getValues() { LOOP_XYZE(i) driverPercent[i] = dac_current_get_percent((AxisEnum)i); }
  858. void dac_driver_commit() { dac_current_set_percents(driverPercent); }
  859. void dac_driver_eeprom_write() { dac_commit_eeprom(); }
  860. void lcd_dac_menu() {
  861. dac_driver_getValues();
  862. START_MENU();
  863. MENU_BACK(MSG_CONTROL);
  864. MENU_ITEM_EDIT_CALLBACK(int3, MSG_X " " MSG_DAC_PERCENT, &driverPercent[X_AXIS], 0, 100, dac_driver_commit);
  865. MENU_ITEM_EDIT_CALLBACK(int3, MSG_Y " " MSG_DAC_PERCENT, &driverPercent[Y_AXIS], 0, 100, dac_driver_commit);
  866. MENU_ITEM_EDIT_CALLBACK(int3, MSG_Z " " MSG_DAC_PERCENT, &driverPercent[Z_AXIS], 0, 100, dac_driver_commit);
  867. MENU_ITEM_EDIT_CALLBACK(int3, MSG_E " " MSG_DAC_PERCENT, &driverPercent[E_AXIS], 0, 100, dac_driver_commit);
  868. MENU_ITEM(function, MSG_DAC_EEPROM_WRITE, dac_driver_eeprom_write);
  869. END_MENU();
  870. }
  871. #endif
  872. constexpr int heater_maxtemp[HOTENDS] = ARRAY_BY_HOTENDS(HEATER_0_MAXTEMP, HEATER_1_MAXTEMP, HEATER_2_MAXTEMP, HEATER_3_MAXTEMP);
  873. /**
  874. *
  875. * "Prepare" submenu items
  876. *
  877. */
  878. void _lcd_preheat(int endnum, const float temph, const float tempb, const int fan) {
  879. if (temph > 0) thermalManager.setTargetHotend(min(heater_maxtemp[endnum], temph), endnum);
  880. #if TEMP_SENSOR_BED != 0
  881. if (tempb >= 0) thermalManager.setTargetBed(tempb);
  882. #else
  883. UNUSED(tempb);
  884. #endif
  885. #if FAN_COUNT > 0
  886. #if FAN_COUNT > 1
  887. fanSpeeds[active_extruder < FAN_COUNT ? active_extruder : 0] = fan;
  888. #else
  889. fanSpeeds[0] = fan;
  890. #endif
  891. #else
  892. UNUSED(fan);
  893. #endif
  894. lcd_return_to_status();
  895. }
  896. #if TEMP_SENSOR_0 != 0
  897. void lcd_preheat_m1_e0_only() { _lcd_preheat(0, lcd_preheat_hotend_temp[0], -1, lcd_preheat_fan_speed[0]); }
  898. void lcd_preheat_m2_e0_only() { _lcd_preheat(0, lcd_preheat_hotend_temp[1], -1, lcd_preheat_fan_speed[1]); }
  899. #if TEMP_SENSOR_BED != 0
  900. void lcd_preheat_m1_e0() { _lcd_preheat(0, lcd_preheat_hotend_temp[0], lcd_preheat_bed_temp[0], lcd_preheat_fan_speed[0]); }
  901. void lcd_preheat_m2_e0() { _lcd_preheat(0, lcd_preheat_hotend_temp[1], lcd_preheat_bed_temp[1], lcd_preheat_fan_speed[1]); }
  902. #endif
  903. #endif
  904. #if HOTENDS > 1
  905. void lcd_preheat_m1_e1_only() { _lcd_preheat(1, lcd_preheat_hotend_temp[0], -1, lcd_preheat_fan_speed[0]); }
  906. void lcd_preheat_m2_e1_only() { _lcd_preheat(1, lcd_preheat_hotend_temp[1], -1, lcd_preheat_fan_speed[1]); }
  907. #if TEMP_SENSOR_BED != 0
  908. void lcd_preheat_m1_e1() { _lcd_preheat(1, lcd_preheat_hotend_temp[0], lcd_preheat_bed_temp[0], lcd_preheat_fan_speed[0]); }
  909. void lcd_preheat_m2_e1() { _lcd_preheat(1, lcd_preheat_hotend_temp[1], lcd_preheat_bed_temp[1], lcd_preheat_fan_speed[1]); }
  910. #endif
  911. #if HOTENDS > 2
  912. void lcd_preheat_m1_e2_only() { _lcd_preheat(2, lcd_preheat_hotend_temp[0], -1, lcd_preheat_fan_speed[0]); }
  913. void lcd_preheat_m2_e2_only() { _lcd_preheat(2, lcd_preheat_hotend_temp[1], -1, lcd_preheat_fan_speed[1]); }
  914. #if TEMP_SENSOR_BED != 0
  915. void lcd_preheat_m1_e2() { _lcd_preheat(2, lcd_preheat_hotend_temp[0], lcd_preheat_bed_temp[0], lcd_preheat_fan_speed[0]); }
  916. void lcd_preheat_m2_e2() { _lcd_preheat(2, lcd_preheat_hotend_temp[1], lcd_preheat_bed_temp[1], lcd_preheat_fan_speed[1]); }
  917. #endif
  918. #if HOTENDS > 3
  919. void lcd_preheat_m1_e3_only() { _lcd_preheat(3, lcd_preheat_hotend_temp[0], -1, lcd_preheat_fan_speed[0]); }
  920. void lcd_preheat_m2_e3_only() { _lcd_preheat(3, lcd_preheat_hotend_temp[1], -1, lcd_preheat_fan_speed[1]); }
  921. #if TEMP_SENSOR_BED != 0
  922. void lcd_preheat_m1_e3() { _lcd_preheat(3, lcd_preheat_hotend_temp[0], lcd_preheat_bed_temp[0], lcd_preheat_fan_speed[0]); }
  923. void lcd_preheat_m2_e3() { _lcd_preheat(3, lcd_preheat_hotend_temp[1], lcd_preheat_bed_temp[1], lcd_preheat_fan_speed[1]); }
  924. #endif
  925. #endif
  926. #endif
  927. void lcd_preheat_m1_all() {
  928. #if HOTENDS > 1
  929. thermalManager.setTargetHotend(lcd_preheat_hotend_temp[0], 1);
  930. #if HOTENDS > 2
  931. thermalManager.setTargetHotend(lcd_preheat_hotend_temp[0], 2);
  932. #if HOTENDS > 3
  933. thermalManager.setTargetHotend(lcd_preheat_hotend_temp[0], 3);
  934. #endif
  935. #endif
  936. #endif
  937. #if TEMP_SENSOR_BED != 0
  938. lcd_preheat_m1_e0();
  939. #else
  940. lcd_preheat_m1_e0_only();
  941. #endif
  942. }
  943. void lcd_preheat_m2_all() {
  944. #if HOTENDS > 1
  945. thermalManager.setTargetHotend(lcd_preheat_hotend_temp[1], 1);
  946. #if HOTENDS > 2
  947. thermalManager.setTargetHotend(lcd_preheat_hotend_temp[1], 2);
  948. #if HOTENDS > 3
  949. thermalManager.setTargetHotend(lcd_preheat_hotend_temp[1], 3);
  950. #endif
  951. #endif
  952. #endif
  953. #if TEMP_SENSOR_BED != 0
  954. lcd_preheat_m1_e0();
  955. #else
  956. lcd_preheat_m1_e0_only();
  957. #endif
  958. }
  959. #endif // HOTENDS > 1
  960. #if TEMP_SENSOR_BED != 0
  961. void lcd_preheat_m1_bedonly() { _lcd_preheat(0, 0, lcd_preheat_bed_temp[0], lcd_preheat_fan_speed[0]); }
  962. void lcd_preheat_m2_bedonly() { _lcd_preheat(0, 0, lcd_preheat_bed_temp[1], lcd_preheat_fan_speed[1]); }
  963. #endif
  964. #if TEMP_SENSOR_0 != 0 && (TEMP_SENSOR_1 != 0 || TEMP_SENSOR_2 != 0 || TEMP_SENSOR_3 != 0 || TEMP_SENSOR_BED != 0)
  965. void lcd_preheat_m1_menu() {
  966. START_MENU();
  967. MENU_BACK(MSG_PREPARE);
  968. #if HOTENDS == 1
  969. #if TEMP_SENSOR_BED != 0
  970. MENU_ITEM(function, MSG_PREHEAT_1, lcd_preheat_m1_e0);
  971. MENU_ITEM(function, MSG_PREHEAT_1_END, lcd_preheat_m1_e0_only);
  972. #else
  973. MENU_ITEM(function, MSG_PREHEAT_1, lcd_preheat_m1_e0_only);
  974. #endif
  975. #else
  976. #if TEMP_SENSOR_BED != 0
  977. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H1, lcd_preheat_m1_e0);
  978. MENU_ITEM(function, MSG_PREHEAT_1_END " " MSG_E1, lcd_preheat_m1_e0_only);
  979. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H2, lcd_preheat_m1_e1);
  980. MENU_ITEM(function, MSG_PREHEAT_1_END " " MSG_E2, lcd_preheat_m1_e1_only);
  981. #else
  982. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H1, lcd_preheat_m1_e0_only);
  983. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H2, lcd_preheat_m1_e1_only);
  984. #endif
  985. #if HOTENDS > 2
  986. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H3, lcd_preheat_m1_e2_only);
  987. #if TEMP_SENSOR_BED != 0
  988. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H3, lcd_preheat_m1_e2);
  989. MENU_ITEM(function, MSG_PREHEAT_1_END " " MSG_E3, lcd_preheat_m1_e2_only);
  990. #else
  991. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H3, lcd_preheat_m1_e2_only);
  992. #endif
  993. #if HOTENDS > 3
  994. #if TEMP_SENSOR_BED != 0
  995. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H4, lcd_preheat_m1_e3);
  996. MENU_ITEM(function, MSG_PREHEAT_1_END " " MSG_E4, lcd_preheat_m1_e3_only);
  997. #else
  998. MENU_ITEM(function, MSG_PREHEAT_1_N MSG_H4, lcd_preheat_m1_e3_only);
  999. #endif
  1000. #endif
  1001. #endif
  1002. MENU_ITEM(function, MSG_PREHEAT_1_ALL, lcd_preheat_m1_all);
  1003. #endif
  1004. #if TEMP_SENSOR_BED != 0
  1005. MENU_ITEM(function, MSG_PREHEAT_1_BEDONLY, lcd_preheat_m1_bedonly);
  1006. #endif
  1007. END_MENU();
  1008. }
  1009. void lcd_preheat_m2_menu() {
  1010. START_MENU();
  1011. MENU_BACK(MSG_PREPARE);
  1012. #if HOTENDS == 1
  1013. #if TEMP_SENSOR_BED != 0
  1014. MENU_ITEM(function, MSG_PREHEAT_2, lcd_preheat_m2_e0);
  1015. MENU_ITEM(function, MSG_PREHEAT_2_END, lcd_preheat_m2_e0_only);
  1016. #else
  1017. MENU_ITEM(function, MSG_PREHEAT_2, lcd_preheat_m2_e0_only);
  1018. #endif
  1019. #else
  1020. #if TEMP_SENSOR_BED != 0
  1021. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H1, lcd_preheat_m2_e0);
  1022. MENU_ITEM(function, MSG_PREHEAT_2_END " " MSG_E1, lcd_preheat_m2_e0_only);
  1023. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H2, lcd_preheat_m2_e1);
  1024. MENU_ITEM(function, MSG_PREHEAT_2_END " " MSG_E2, lcd_preheat_m2_e1_only);
  1025. #else
  1026. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H1, lcd_preheat_m2_e0_only);
  1027. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H2, lcd_preheat_m2_e1_only);
  1028. #endif
  1029. #if HOTENDS > 2
  1030. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H3, lcd_preheat_m2_e2_only);
  1031. #if TEMP_SENSOR_BED != 0
  1032. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H3, lcd_preheat_m2_e2);
  1033. MENU_ITEM(function, MSG_PREHEAT_2_END " " MSG_E3, lcd_preheat_m2_e2_only);
  1034. #else
  1035. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H3, lcd_preheat_m2_e2_only);
  1036. #endif
  1037. #if HOTENDS > 3
  1038. #if TEMP_SENSOR_BED != 0
  1039. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H4, lcd_preheat_m2_e3);
  1040. MENU_ITEM(function, MSG_PREHEAT_2_END " " MSG_E4, lcd_preheat_m2_e3_only);
  1041. #else
  1042. MENU_ITEM(function, MSG_PREHEAT_2_N MSG_H4, lcd_preheat_m2_e3_only);
  1043. #endif
  1044. #endif
  1045. #endif
  1046. MENU_ITEM(function, MSG_PREHEAT_2_ALL, lcd_preheat_m2_all);
  1047. #endif
  1048. #if TEMP_SENSOR_BED != 0
  1049. MENU_ITEM(function, MSG_PREHEAT_2_BEDONLY, lcd_preheat_m2_bedonly);
  1050. #endif
  1051. END_MENU();
  1052. }
  1053. #endif // TEMP_SENSOR_0 && (TEMP_SENSOR_1 || TEMP_SENSOR_2 || TEMP_SENSOR_3 || TEMP_SENSOR_BED)
  1054. void lcd_cooldown() {
  1055. #if FAN_COUNT > 0
  1056. for (uint8_t i = 0; i < FAN_COUNT; i++) fanSpeeds[i] = 0;
  1057. #endif
  1058. thermalManager.disable_all_heaters();
  1059. lcd_return_to_status();
  1060. }
  1061. #if ENABLED(SDSUPPORT) && ENABLED(MENU_ADDAUTOSTART)
  1062. void lcd_autostart_sd() {
  1063. card.autostart_index = 0;
  1064. card.setroot();
  1065. card.checkautostart(true);
  1066. }
  1067. #endif
  1068. #if ENABLED(MANUAL_BED_LEVELING)
  1069. /**
  1070. *
  1071. * "Prepare" > "Bed Leveling" handlers
  1072. *
  1073. */
  1074. static uint8_t _lcd_level_bed_position;
  1075. // Utility to go to the next mesh point
  1076. // A raise is added between points if Z_HOMING_HEIGHT is in use
  1077. // Note: During Manual Bed Leveling the homed Z position is MESH_HOME_SEARCH_Z
  1078. // Z position will be restored with the final action, a G28
  1079. inline void _mbl_goto_xy(float x, float y) {
  1080. if (no_reentrance) return;
  1081. current_position[Z_AXIS] = LOGICAL_Z_POSITION(MESH_HOME_SEARCH_Z + Z_HOMING_HEIGHT);
  1082. line_to_current(Z_AXIS);
  1083. current_position[X_AXIS] = LOGICAL_X_POSITION(x);
  1084. current_position[Y_AXIS] = LOGICAL_Y_POSITION(y);
  1085. planner.buffer_line_kinematic(current_position, MMM_TO_MMS(XY_PROBE_SPEED), active_extruder);
  1086. #if Z_HOMING_HEIGHT > 0
  1087. current_position[Z_AXIS] = LOGICAL_Z_POSITION(MESH_HOME_SEARCH_Z);
  1088. line_to_current(Z_AXIS);
  1089. #endif
  1090. lcd_synchronize();
  1091. }
  1092. void _lcd_level_goto_next_point();
  1093. void _lcd_level_bed_done() {
  1094. if (lcdDrawUpdate) lcd_implementation_drawedit(PSTR(MSG_LEVEL_BED_DONE));
  1095. lcdDrawUpdate = LCDVIEW_KEEP_REDRAWING;
  1096. }
  1097. /**
  1098. * Step 7: Get the Z coordinate, then goto next point or exit
  1099. */
  1100. void _lcd_level_bed_get_z() {
  1101. ENCODER_DIRECTION_NORMAL();
  1102. if (no_reentrance) goto KeepDrawing;
  1103. // Encoder wheel adjusts the Z position
  1104. if (encoderPosition) {
  1105. refresh_cmd_timeout();
  1106. current_position[Z_AXIS] += float((int32_t)encoderPosition) * (MBL_Z_STEP);
  1107. NOLESS(current_position[Z_AXIS], 0);
  1108. NOMORE(current_position[Z_AXIS], MESH_HOME_SEARCH_Z * 2);
  1109. line_to_current(Z_AXIS);
  1110. lcdDrawUpdate = LCDVIEW_KEEP_REDRAWING;
  1111. encoderPosition = 0;
  1112. }
  1113. static bool debounce_click = false;
  1114. if (lcd_clicked) {
  1115. if (!debounce_click) {
  1116. debounce_click = true; // ignore multiple "clicks" in a row
  1117. mbl.set_zigzag_z(_lcd_level_bed_position++, current_position[Z_AXIS]);
  1118. if (_lcd_level_bed_position == (MESH_NUM_X_POINTS) * (MESH_NUM_Y_POINTS)) {
  1119. lcd_goto_screen(_lcd_level_bed_done);
  1120. current_position[Z_AXIS] = MESH_HOME_SEARCH_Z + Z_HOMING_HEIGHT;
  1121. line_to_current(Z_AXIS);
  1122. lcd_synchronize();
  1123. mbl.set_has_mesh(true);
  1124. enqueue_and_echo_commands_P(PSTR("G28"));
  1125. lcd_return_to_status();
  1126. //LCD_MESSAGEPGM(MSG_LEVEL_BED_DONE);
  1127. #if HAS_BUZZER
  1128. lcd_buzz(200, 659);
  1129. lcd_buzz(200, 698);
  1130. #endif
  1131. }
  1132. else {
  1133. lcd_goto_screen(_lcd_level_goto_next_point);
  1134. }
  1135. }
  1136. }
  1137. else {
  1138. debounce_click = false;
  1139. }
  1140. KeepDrawing:
  1141. // Update on first display, then only on updates to Z position
  1142. // Show message above on clicks instead
  1143. if (lcdDrawUpdate) {
  1144. float v = current_position[Z_AXIS] - MESH_HOME_SEARCH_Z;
  1145. lcd_implementation_drawedit(PSTR(MSG_MOVE_Z), ftostr43sign(v + (v < 0 ? -0.0001 : 0.0001), '+'));
  1146. }
  1147. }
  1148. /**
  1149. * Step 6: Display "Next point: 1 / 9" while waiting for move to finish
  1150. */
  1151. void _lcd_level_bed_moving() {
  1152. if (lcdDrawUpdate) {
  1153. char msg[10];
  1154. sprintf_P(msg, PSTR("%i / %u"), (int)(_lcd_level_bed_position + 1), (MESH_NUM_X_POINTS) * (MESH_NUM_Y_POINTS));
  1155. lcd_implementation_drawedit(PSTR(MSG_LEVEL_BED_NEXT_POINT), msg);
  1156. }
  1157. lcdDrawUpdate = LCDVIEW_KEEP_REDRAWING;
  1158. }
  1159. /**
  1160. * Step 5: Initiate a move to the next point
  1161. */
  1162. void _lcd_level_goto_next_point() {
  1163. // Set the menu to display ahead of blocking call
  1164. lcd_goto_screen(_lcd_level_bed_moving);
  1165. // _mbl_goto_xy runs the menu loop until the move is done
  1166. int8_t px, py;
  1167. mbl.zigzag(_lcd_level_bed_position, px, py);
  1168. _mbl_goto_xy(mbl.get_probe_x(px), mbl.get_probe_y(py));
  1169. // After the blocking function returns, change menus
  1170. lcd_goto_screen(_lcd_level_bed_get_z);
  1171. }
  1172. /**
  1173. * Step 4: Display "Click to Begin", wait for click
  1174. * Move to the first probe position
  1175. */
  1176. void _lcd_level_bed_homing_done() {
  1177. if (lcdDrawUpdate) lcd_implementation_drawedit(PSTR(MSG_LEVEL_BED_WAITING));
  1178. if (lcd_clicked) {
  1179. _lcd_level_bed_position = 0;
  1180. current_position[Z_AXIS] = MESH_HOME_SEARCH_Z
  1181. #if Z_HOME_DIR > 0
  1182. + Z_MAX_POS
  1183. #endif
  1184. ;
  1185. planner.set_position_mm(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS]);
  1186. lcd_goto_screen(_lcd_level_goto_next_point);
  1187. }
  1188. }
  1189. /**
  1190. * Step 3: Display "Homing XYZ" - Wait for homing to finish
  1191. */
  1192. void _lcd_level_bed_homing() {
  1193. if (lcdDrawUpdate) lcd_implementation_drawedit(PSTR(MSG_LEVEL_BED_HOMING), NULL);
  1194. lcdDrawUpdate = LCDVIEW_KEEP_REDRAWING;
  1195. if (axis_homed[X_AXIS] && axis_homed[Y_AXIS] && axis_homed[Z_AXIS])
  1196. lcd_goto_screen(_lcd_level_bed_homing_done);
  1197. }
  1198. /**
  1199. * Step 2: Continue Bed Leveling...
  1200. */
  1201. void _lcd_level_bed_continue() {
  1202. defer_return_to_status = true;
  1203. axis_homed[X_AXIS] = axis_homed[Y_AXIS] = axis_homed[Z_AXIS] = false;
  1204. mbl.reset();
  1205. enqueue_and_echo_commands_P(PSTR("G28"));
  1206. lcd_goto_screen(_lcd_level_bed_homing);
  1207. }
  1208. /**
  1209. * Step 1: MBL entry-point: "Cancel" or "Level Bed"
  1210. */
  1211. void lcd_level_bed() {
  1212. START_MENU();
  1213. MENU_BACK(MSG_LEVEL_BED_CANCEL);
  1214. MENU_ITEM(submenu, MSG_LEVEL_BED, _lcd_level_bed_continue);
  1215. END_MENU();
  1216. }
  1217. #endif // MANUAL_BED_LEVELING
  1218. /**
  1219. *
  1220. * "Prepare" submenu
  1221. *
  1222. */
  1223. void lcd_prepare_menu() {
  1224. START_MENU();
  1225. //
  1226. // ^ Main
  1227. //
  1228. MENU_BACK(MSG_MAIN);
  1229. //
  1230. // Move Axis
  1231. //
  1232. #if ENABLED(DELTA)
  1233. if (axis_homed[Z_AXIS])
  1234. #endif
  1235. MENU_ITEM(submenu, MSG_MOVE_AXIS, lcd_move_menu);
  1236. //
  1237. // Auto Home
  1238. //
  1239. MENU_ITEM(gcode, MSG_AUTO_HOME, PSTR("G28"));
  1240. #if ENABLED(INDIVIDUAL_AXIS_HOMING_MENU)
  1241. MENU_ITEM(gcode, MSG_AUTO_HOME_X, PSTR("G28 X"));
  1242. MENU_ITEM(gcode, MSG_AUTO_HOME_Y, PSTR("G28 Y"));
  1243. MENU_ITEM(gcode, MSG_AUTO_HOME_Z, PSTR("G28 Z"));
  1244. #endif
  1245. //
  1246. // Level Bed
  1247. //
  1248. #if HAS_ABL
  1249. MENU_ITEM(gcode, MSG_LEVEL_BED,
  1250. axis_homed[X_AXIS] && axis_homed[Y_AXIS] ? PSTR("G29") : PSTR("G28\nG29")
  1251. );
  1252. #elif ENABLED(MANUAL_BED_LEVELING)
  1253. MENU_ITEM(submenu, MSG_LEVEL_BED, lcd_level_bed);
  1254. #endif
  1255. #if DISABLED(NO_WORKSPACE_OFFSETS)
  1256. //
  1257. // Set Home Offsets
  1258. //
  1259. MENU_ITEM(function, MSG_SET_HOME_OFFSETS, lcd_set_home_offsets);
  1260. //MENU_ITEM(gcode, MSG_SET_ORIGIN, PSTR("G92 X0 Y0 Z0"));
  1261. #endif
  1262. //
  1263. // Disable Steppers
  1264. //
  1265. MENU_ITEM(gcode, MSG_DISABLE_STEPPERS, PSTR("M84"));
  1266. //
  1267. // Preheat PLA
  1268. // Preheat ABS
  1269. //
  1270. #if TEMP_SENSOR_0 != 0
  1271. //
  1272. // Change filament
  1273. //
  1274. #if ENABLED(FILAMENT_CHANGE_FEATURE)
  1275. if (!thermalManager.tooColdToExtrude(active_extruder))
  1276. MENU_ITEM(function, MSG_FILAMENTCHANGE, lcd_enqueue_filament_change);
  1277. #endif
  1278. //
  1279. // Cooldown
  1280. //
  1281. bool has_heat = false;
  1282. HOTEND_LOOP() if (thermalManager.target_temperature[HOTEND_INDEX]) { has_heat = true; break; }
  1283. #if HAS_TEMP_BED
  1284. if (thermalManager.target_temperature_bed) has_heat = true;
  1285. #endif
  1286. if (has_heat) MENU_ITEM(function, MSG_COOLDOWN, lcd_cooldown);
  1287. //
  1288. // Preheat for Material 1 and 2
  1289. //
  1290. #if TEMP_SENSOR_1 != 0 || TEMP_SENSOR_2 != 0 || TEMP_SENSOR_3 != 0 || TEMP_SENSOR_BED != 0
  1291. MENU_ITEM(submenu, MSG_PREHEAT_1, lcd_preheat_m1_menu);
  1292. MENU_ITEM(submenu, MSG_PREHEAT_2, lcd_preheat_m2_menu);
  1293. #else
  1294. MENU_ITEM(function, MSG_PREHEAT_1, lcd_preheat_m1_e0_only);
  1295. MENU_ITEM(function, MSG_PREHEAT_2, lcd_preheat_m2_e0_only);
  1296. #endif
  1297. #endif // TEMP_SENSOR_0 != 0
  1298. //
  1299. // BLTouch Self-Test and Reset
  1300. //
  1301. #if ENABLED(BLTOUCH)
  1302. MENU_ITEM(gcode, MSG_BLTOUCH_SELFTEST, PSTR("M280 P" STRINGIFY(Z_ENDSTOP_SERVO_NR) " S" STRINGIFY(BLTOUCH_SELFTEST)));
  1303. if (!endstops.z_probe_enabled && TEST_BLTOUCH())
  1304. MENU_ITEM(gcode, MSG_BLTOUCH_RESET, PSTR("M280 P" STRINGIFY(Z_ENDSTOP_SERVO_NR) " S" STRINGIFY(BLTOUCH_RESET)));
  1305. #endif
  1306. //
  1307. // Switch power on/off
  1308. //
  1309. #if HAS_POWER_SWITCH
  1310. if (powersupply)
  1311. MENU_ITEM(gcode, MSG_SWITCH_PS_OFF, PSTR("M81"));
  1312. else
  1313. MENU_ITEM(gcode, MSG_SWITCH_PS_ON, PSTR("M80"));
  1314. #endif
  1315. //
  1316. // Autostart
  1317. //
  1318. #if ENABLED(SDSUPPORT) && ENABLED(MENU_ADDAUTOSTART)
  1319. MENU_ITEM(function, MSG_AUTOSTART, lcd_autostart_sd);
  1320. #endif
  1321. END_MENU();
  1322. }
  1323. float move_menu_scale;
  1324. #if ENABLED(DELTA_CALIBRATION_MENU)
  1325. void lcd_move_z();
  1326. void lcd_delta_calibrate_menu();
  1327. void _lcd_calibrate_homing() {
  1328. if (lcdDrawUpdate) lcd_implementation_drawmenu_static(LCD_HEIGHT >= 4 ? 1 : 0, PSTR(MSG_LEVEL_BED_HOMING));
  1329. lcdDrawUpdate = LCDVIEW_KEEP_REDRAWING;
  1330. if (axis_homed[X_AXIS] && axis_homed[Y_AXIS] && axis_homed[Z_AXIS])
  1331. lcd_goto_previous_menu();
  1332. }
  1333. void _lcd_delta_calibrate_home() {
  1334. enqueue_and_echo_commands_P(PSTR("G28"));
  1335. lcd_goto_screen(_lcd_calibrate_homing);
  1336. }
  1337. // Move directly to the tower position with uninterpolated moves
  1338. // If we used interpolated moves it would cause this to become re-entrant
  1339. void _goto_tower_pos(const float &a) {
  1340. if (no_reentrance) return;
  1341. current_position[Z_AXIS] = max(Z_HOMING_HEIGHT, Z_CLEARANCE_BETWEEN_PROBES) + (DELTA_PRINTABLE_RADIUS) / 5;
  1342. line_to_current(Z_AXIS);
  1343. current_position[X_AXIS] = a < 0 ? X_HOME_POS : sin(a) * -(DELTA_PRINTABLE_RADIUS);
  1344. current_position[Y_AXIS] = a < 0 ? Y_HOME_POS : cos(a) * (DELTA_PRINTABLE_RADIUS);
  1345. line_to_current(Z_AXIS);
  1346. current_position[Z_AXIS] = 4.0;
  1347. line_to_current(Z_AXIS);
  1348. lcd_synchronize();
  1349. move_menu_scale = 0.1;
  1350. lcd_goto_screen(lcd_move_z);
  1351. }
  1352. void _goto_tower_x() { _goto_tower_pos(RADIANS(120)); }
  1353. void _goto_tower_y() { _goto_tower_pos(RADIANS(240)); }
  1354. void _goto_tower_z() { _goto_tower_pos(0); }
  1355. void _goto_center() { _goto_tower_pos(-1); }
  1356. void lcd_delta_calibrate_menu() {
  1357. START_MENU();
  1358. MENU_BACK(MSG_MAIN);
  1359. MENU_ITEM(submenu, MSG_AUTO_HOME, _lcd_delta_calibrate_home);
  1360. if (axis_homed[Z_AXIS]) {
  1361. MENU_ITEM(submenu, MSG_DELTA_CALIBRATE_X, _goto_tower_x);
  1362. MENU_ITEM(submenu, MSG_DELTA_CALIBRATE_Y, _goto_tower_y);
  1363. MENU_ITEM(submenu, MSG_DELTA_CALIBRATE_Z, _goto_tower_z);
  1364. MENU_ITEM(submenu, MSG_DELTA_CALIBRATE_CENTER, _goto_center);
  1365. }
  1366. END_MENU();
  1367. }
  1368. #endif // DELTA_CALIBRATION_MENU
  1369. /**
  1370. * If the most recent manual move hasn't been fed to the planner yet,
  1371. * and the planner can accept one, send immediately
  1372. */
  1373. inline void manage_manual_move() {
  1374. if (manual_move_axis != (int8_t)NO_AXIS && ELAPSED(millis(), manual_move_start_time) && !planner.is_full()) {
  1375. planner.buffer_line_kinematic(current_position, MMM_TO_MMS(manual_feedrate_mm_m[manual_move_axis]), manual_move_e_index);
  1376. manual_move_axis = (int8_t)NO_AXIS;
  1377. }
  1378. }
  1379. /**
  1380. * Set a flag that lcd_update() should start a move
  1381. * to "current_position" after a short delay.
  1382. */
  1383. inline void manual_move_to_current(AxisEnum axis
  1384. #if E_MANUAL > 1
  1385. , int8_t eindex=-1
  1386. #endif
  1387. ) {
  1388. #if E_MANUAL > 1
  1389. if (axis == E_AXIS) manual_move_e_index = eindex >= 0 ? eindex : active_extruder;
  1390. #endif
  1391. manual_move_start_time = millis() + (move_menu_scale < 0.99 ? 0UL : 250UL); // delay for bigger moves
  1392. manual_move_axis = (int8_t)axis;
  1393. }
  1394. /**
  1395. *
  1396. * "Prepare" > "Move Axis" submenu
  1397. *
  1398. */
  1399. void _lcd_move_xyz(const char* name, AxisEnum axis) {
  1400. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  1401. ENCODER_DIRECTION_NORMAL();
  1402. if (encoderPosition) {
  1403. refresh_cmd_timeout();
  1404. // Limit to software endstops, if enabled
  1405. float min = (soft_endstops_enabled && min_software_endstops) ? soft_endstop_min[axis] : current_position[axis] - 1000,
  1406. max = (soft_endstops_enabled && max_software_endstops) ? soft_endstop_max[axis] : current_position[axis] + 1000;
  1407. // Get the new position
  1408. current_position[axis] += float((int32_t)encoderPosition) * move_menu_scale;
  1409. // Delta limits XY based on the current offset from center
  1410. // This assumes the center is 0,0
  1411. #if ENABLED(DELTA)
  1412. if (axis != Z_AXIS) {
  1413. max = sqrt(sq((float)(DELTA_PRINTABLE_RADIUS)) - sq(current_position[Y_AXIS - axis]));
  1414. min = -max;
  1415. }
  1416. #endif
  1417. // Limit only when trying to move towards the limit
  1418. if ((int32_t)encoderPosition < 0) NOLESS(current_position[axis], min);
  1419. if ((int32_t)encoderPosition > 0) NOMORE(current_position[axis], max);
  1420. manual_move_to_current(axis);
  1421. encoderPosition = 0;
  1422. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  1423. }
  1424. if (lcdDrawUpdate) lcd_implementation_drawedit(name, ftostr41sign(current_position[axis]));
  1425. }
  1426. void lcd_move_x() { _lcd_move_xyz(PSTR(MSG_MOVE_X), X_AXIS); }
  1427. void lcd_move_y() { _lcd_move_xyz(PSTR(MSG_MOVE_Y), Y_AXIS); }
  1428. void lcd_move_z() { _lcd_move_xyz(PSTR(MSG_MOVE_Z), Z_AXIS); }
  1429. void _lcd_move_e(
  1430. #if E_MANUAL > 1
  1431. int8_t eindex=-1
  1432. #endif
  1433. ) {
  1434. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  1435. ENCODER_DIRECTION_NORMAL();
  1436. if (encoderPosition) {
  1437. current_position[E_AXIS] += float((int32_t)encoderPosition) * move_menu_scale;
  1438. encoderPosition = 0;
  1439. manual_move_to_current(E_AXIS
  1440. #if E_MANUAL > 1
  1441. , eindex
  1442. #endif
  1443. );
  1444. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  1445. }
  1446. if (lcdDrawUpdate) {
  1447. PGM_P pos_label;
  1448. #if E_MANUAL == 1
  1449. pos_label = PSTR(MSG_MOVE_E);
  1450. #else
  1451. switch (eindex) {
  1452. default: pos_label = PSTR(MSG_MOVE_E MSG_MOVE_E1); break;
  1453. case 1: pos_label = PSTR(MSG_MOVE_E MSG_MOVE_E2); break;
  1454. #if E_MANUAL > 2
  1455. case 2: pos_label = PSTR(MSG_MOVE_E MSG_MOVE_E3); break;
  1456. #if E_MANUAL > 3
  1457. case 3: pos_label = PSTR(MSG_MOVE_E MSG_MOVE_E4); break;
  1458. #endif
  1459. #endif
  1460. }
  1461. #endif
  1462. lcd_implementation_drawedit(pos_label, ftostr41sign(current_position[E_AXIS]));
  1463. }
  1464. }
  1465. void lcd_move_e() { _lcd_move_e(); }
  1466. #if E_MANUAL > 1
  1467. void lcd_move_e0() { _lcd_move_e(0); }
  1468. void lcd_move_e1() { _lcd_move_e(1); }
  1469. #if E_MANUAL > 2
  1470. void lcd_move_e2() { _lcd_move_e(2); }
  1471. #if E_MANUAL > 3
  1472. void lcd_move_e3() { _lcd_move_e(3); }
  1473. #endif
  1474. #endif
  1475. #endif
  1476. /**
  1477. *
  1478. * "Prepare" > "Move Xmm" > "Move XYZ" submenu
  1479. *
  1480. */
  1481. screenFunc_t _manual_move_func_ptr;
  1482. void lcd_move_menu_10mm() { move_menu_scale = 10.0; lcd_goto_screen(_manual_move_func_ptr); }
  1483. void lcd_move_menu_1mm() { move_menu_scale = 1.0; lcd_goto_screen(_manual_move_func_ptr); }
  1484. void lcd_move_menu_01mm() { move_menu_scale = 0.1; lcd_goto_screen(_manual_move_func_ptr); }
  1485. void _lcd_move_distance_menu(AxisEnum axis, screenFunc_t func) {
  1486. _manual_move_func_ptr = func;
  1487. START_MENU();
  1488. if (LCD_HEIGHT >= 4) {
  1489. switch(axis) {
  1490. case X_AXIS:
  1491. STATIC_ITEM(MSG_MOVE_X, true, true); break;
  1492. case Y_AXIS:
  1493. STATIC_ITEM(MSG_MOVE_Y, true, true); break;
  1494. case Z_AXIS:
  1495. STATIC_ITEM(MSG_MOVE_Z, true, true); break;
  1496. default:
  1497. STATIC_ITEM(MSG_MOVE_E, true, true); break;
  1498. }
  1499. }
  1500. MENU_BACK(MSG_MOVE_AXIS);
  1501. if (axis == X_AXIS || axis == Y_AXIS)
  1502. MENU_ITEM(submenu, MSG_MOVE_10MM, lcd_move_menu_10mm);
  1503. MENU_ITEM(submenu, MSG_MOVE_1MM, lcd_move_menu_1mm);
  1504. MENU_ITEM(submenu, MSG_MOVE_01MM, lcd_move_menu_01mm);
  1505. END_MENU();
  1506. }
  1507. void lcd_move_get_x_amount() { _lcd_move_distance_menu(X_AXIS, lcd_move_x); }
  1508. void lcd_move_get_y_amount() { _lcd_move_distance_menu(Y_AXIS, lcd_move_y); }
  1509. void lcd_move_get_z_amount() { _lcd_move_distance_menu(Z_AXIS, lcd_move_z); }
  1510. void lcd_move_get_e_amount() { _lcd_move_distance_menu(E_AXIS, lcd_move_e); }
  1511. #if E_MANUAL > 1
  1512. void lcd_move_get_e0_amount() { _lcd_move_distance_menu(E_AXIS, lcd_move_e0); }
  1513. void lcd_move_get_e1_amount() { _lcd_move_distance_menu(E_AXIS, lcd_move_e1); }
  1514. #if E_MANUAL > 2
  1515. void lcd_move_get_e2_amount() { _lcd_move_distance_menu(E_AXIS, lcd_move_e2); }
  1516. #if E_MANUAL > 3
  1517. void lcd_move_get_e3_amount() { _lcd_move_distance_menu(E_AXIS, lcd_move_e3); }
  1518. #endif
  1519. #endif
  1520. #endif
  1521. /**
  1522. *
  1523. * "Prepare" > "Move Axis" submenu
  1524. *
  1525. */
  1526. #if IS_KINEMATIC
  1527. #define _MOVE_XYZ_ALLOWED (axis_homed[X_AXIS] && axis_homed[Y_AXIS] && axis_homed[Z_AXIS])
  1528. #if ENABLED(DELTA)
  1529. #define _MOVE_XY_ALLOWED (current_position[Z_AXIS] <= delta_clip_start_height)
  1530. void lcd_lower_z_to_clip_height() {
  1531. if (!no_reentrance) {
  1532. current_position[Z_AXIS] = delta_clip_start_height;
  1533. line_to_current(Z_AXIS);
  1534. lcd_synchronize();
  1535. }
  1536. }
  1537. #else
  1538. #define _MOVE_XY_ALLOWED true
  1539. #endif
  1540. #else
  1541. #define _MOVE_XYZ_ALLOWED true
  1542. #define _MOVE_XY_ALLOWED true
  1543. #endif
  1544. void lcd_move_menu() {
  1545. START_MENU();
  1546. MENU_BACK(MSG_PREPARE);
  1547. if (_MOVE_XYZ_ALLOWED) {
  1548. if (_MOVE_XY_ALLOWED) {
  1549. MENU_ITEM(submenu, MSG_MOVE_X, lcd_move_get_x_amount);
  1550. MENU_ITEM(submenu, MSG_MOVE_Y, lcd_move_get_y_amount);
  1551. }
  1552. #if ENABLED(DELTA)
  1553. else
  1554. MENU_ITEM(function, MSG_FREE_XY, lcd_lower_z_to_clip_height);
  1555. #endif
  1556. MENU_ITEM(submenu, MSG_MOVE_Z, lcd_move_get_z_amount);
  1557. }
  1558. else
  1559. MENU_ITEM(gcode, MSG_AUTO_HOME, PSTR("G28"));
  1560. #if ENABLED(SWITCHING_EXTRUDER)
  1561. if (active_extruder)
  1562. MENU_ITEM(gcode, MSG_SELECT " " MSG_E1, PSTR("T0"));
  1563. else
  1564. MENU_ITEM(gcode, MSG_SELECT " " MSG_E2, PSTR("T1"));
  1565. #endif
  1566. MENU_ITEM(submenu, MSG_MOVE_E, lcd_move_get_e_amount);
  1567. #if E_MANUAL > 1
  1568. MENU_ITEM(submenu, MSG_MOVE_E MSG_MOVE_E1, lcd_move_get_e0_amount);
  1569. MENU_ITEM(submenu, MSG_MOVE_E MSG_MOVE_E2, lcd_move_get_e1_amount);
  1570. #if E_MANUAL > 2
  1571. MENU_ITEM(submenu, MSG_MOVE_E MSG_MOVE_E3, lcd_move_get_e2_amount);
  1572. #if E_MANUAL > 3
  1573. MENU_ITEM(submenu, MSG_MOVE_E MSG_MOVE_E4, lcd_move_get_e3_amount);
  1574. #endif
  1575. #endif
  1576. #endif
  1577. END_MENU();
  1578. }
  1579. /**
  1580. *
  1581. * "Control" submenu
  1582. *
  1583. */
  1584. void lcd_control_menu() {
  1585. START_MENU();
  1586. MENU_BACK(MSG_MAIN);
  1587. MENU_ITEM(submenu, MSG_TEMPERATURE, lcd_control_temperature_menu);
  1588. MENU_ITEM(submenu, MSG_MOTION, lcd_control_motion_menu);
  1589. MENU_ITEM(submenu, MSG_VOLUMETRIC, lcd_control_volumetric_menu);
  1590. #if HAS_LCD_CONTRAST
  1591. //MENU_ITEM_EDIT(int3, MSG_CONTRAST, &lcd_contrast, 0, 63);
  1592. MENU_ITEM(submenu, MSG_CONTRAST, lcd_set_contrast);
  1593. #endif
  1594. #if ENABLED(FWRETRACT)
  1595. MENU_ITEM(submenu, MSG_RETRACT, lcd_control_retract_menu);
  1596. #endif
  1597. #if ENABLED(DAC_STEPPER_CURRENT)
  1598. MENU_ITEM(submenu, MSG_DRIVE_STRENGTH, lcd_dac_menu);
  1599. #endif
  1600. #if ENABLED(EEPROM_SETTINGS)
  1601. MENU_ITEM(function, MSG_STORE_EPROM, Config_StoreSettings);
  1602. MENU_ITEM(function, MSG_LOAD_EPROM, Config_RetrieveSettings);
  1603. #endif
  1604. MENU_ITEM(function, MSG_RESTORE_FAILSAFE, Config_ResetDefault);
  1605. END_MENU();
  1606. }
  1607. /**
  1608. *
  1609. * "Temperature" submenu
  1610. *
  1611. */
  1612. #if ENABLED(PID_AUTOTUNE_MENU)
  1613. #if ENABLED(PIDTEMP)
  1614. int autotune_temp[HOTENDS] = ARRAY_BY_HOTENDS1(150);
  1615. #endif
  1616. #if ENABLED(PIDTEMPBED)
  1617. int autotune_temp_bed = 70;
  1618. #endif
  1619. void _lcd_autotune(int e) {
  1620. char cmd[30];
  1621. sprintf_P(cmd, PSTR("M303 U1 E%i S%i"), e,
  1622. #if HAS_PID_FOR_BOTH
  1623. e < 0 ? autotune_temp_bed : autotune_temp[e]
  1624. #elif ENABLED(PIDTEMPBED)
  1625. autotune_temp_bed
  1626. #else
  1627. autotune_temp[e]
  1628. #endif
  1629. );
  1630. enqueue_and_echo_command(cmd);
  1631. }
  1632. #endif //PID_AUTOTUNE_MENU
  1633. #if ENABLED(PIDTEMP)
  1634. // Helpers for editing PID Ki & Kd values
  1635. // grab the PID value out of the temp variable; scale it; then update the PID driver
  1636. void copy_and_scalePID_i(int e) {
  1637. #if DISABLED(PID_PARAMS_PER_HOTEND) || HOTENDS == 1
  1638. UNUSED(e);
  1639. #endif
  1640. PID_PARAM(Ki, e) = scalePID_i(raw_Ki);
  1641. thermalManager.updatePID();
  1642. }
  1643. void copy_and_scalePID_d(int e) {
  1644. #if DISABLED(PID_PARAMS_PER_HOTEND) || HOTENDS == 1
  1645. UNUSED(e);
  1646. #endif
  1647. PID_PARAM(Kd, e) = scalePID_d(raw_Kd);
  1648. thermalManager.updatePID();
  1649. }
  1650. #define _PIDTEMP_BASE_FUNCTIONS(eindex) \
  1651. void copy_and_scalePID_i_E ## eindex() { copy_and_scalePID_i(eindex); } \
  1652. void copy_and_scalePID_d_E ## eindex() { copy_and_scalePID_d(eindex); }
  1653. #if ENABLED(PID_AUTOTUNE_MENU)
  1654. #define _PIDTEMP_FUNCTIONS(eindex) \
  1655. _PIDTEMP_BASE_FUNCTIONS(eindex); \
  1656. void lcd_autotune_callback_E ## eindex() { _lcd_autotune(eindex); }
  1657. #else
  1658. #define _PIDTEMP_FUNCTIONS(eindex) _PIDTEMP_BASE_FUNCTIONS(eindex)
  1659. #endif
  1660. _PIDTEMP_FUNCTIONS(0)
  1661. #if ENABLED(PID_PARAMS_PER_HOTEND)
  1662. #if HOTENDS > 1
  1663. _PIDTEMP_FUNCTIONS(1)
  1664. #if HOTENDS > 2
  1665. _PIDTEMP_FUNCTIONS(2)
  1666. #if HOTENDS > 3
  1667. _PIDTEMP_FUNCTIONS(3)
  1668. #endif //HOTENDS > 3
  1669. #endif //HOTENDS > 2
  1670. #endif //HOTENDS > 1
  1671. #endif //PID_PARAMS_PER_HOTEND
  1672. #endif //PIDTEMP
  1673. /**
  1674. *
  1675. * "Control" > "Temperature" submenu
  1676. *
  1677. */
  1678. void lcd_control_temperature_menu() {
  1679. START_MENU();
  1680. //
  1681. // ^ Control
  1682. //
  1683. MENU_BACK(MSG_CONTROL);
  1684. //
  1685. // Nozzle:
  1686. // Nozzle [1-4]:
  1687. //
  1688. #if HOTENDS == 1
  1689. #if TEMP_SENSOR_0 != 0
  1690. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE, &thermalManager.target_temperature[0], 0, HEATER_0_MAXTEMP - 15, watch_temp_callback_E0);
  1691. #endif
  1692. #else //HOTENDS > 1
  1693. #if TEMP_SENSOR_0 != 0
  1694. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N1, &thermalManager.target_temperature[0], 0, HEATER_0_MAXTEMP - 15, watch_temp_callback_E0);
  1695. #endif
  1696. #if TEMP_SENSOR_1 != 0
  1697. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N2, &thermalManager.target_temperature[1], 0, HEATER_1_MAXTEMP - 15, watch_temp_callback_E1);
  1698. #endif
  1699. #if HOTENDS > 2
  1700. #if TEMP_SENSOR_2 != 0
  1701. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N3, &thermalManager.target_temperature[2], 0, HEATER_2_MAXTEMP - 15, watch_temp_callback_E2);
  1702. #endif
  1703. #if HOTENDS > 3
  1704. #if TEMP_SENSOR_3 != 0
  1705. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_NOZZLE MSG_N4, &thermalManager.target_temperature[3], 0, HEATER_3_MAXTEMP - 15, watch_temp_callback_E3);
  1706. #endif
  1707. #endif // HOTENDS > 3
  1708. #endif // HOTENDS > 2
  1709. #endif // HOTENDS > 1
  1710. //
  1711. // Bed:
  1712. //
  1713. #if TEMP_SENSOR_BED != 0
  1714. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_BED, &thermalManager.target_temperature_bed, 0, BED_MAXTEMP - 15, watch_temp_callback_bed);
  1715. #endif
  1716. //
  1717. // Fan Speed:
  1718. //
  1719. #if FAN_COUNT > 0
  1720. #if HAS_FAN0
  1721. #if FAN_COUNT > 1
  1722. #define MSG_1ST_FAN_SPEED MSG_FAN_SPEED " 1"
  1723. #else
  1724. #define MSG_1ST_FAN_SPEED MSG_FAN_SPEED
  1725. #endif
  1726. MENU_MULTIPLIER_ITEM_EDIT(int3, MSG_1ST_FAN_SPEED, &fanSpeeds[0], 0, 255);
  1727. #endif
  1728. #if HAS_FAN1
  1729. MENU_MULTIPLIER_ITEM_EDIT(int3, MSG_FAN_SPEED " 2", &fanSpeeds[1], 0, 255);
  1730. #endif
  1731. #if HAS_FAN2
  1732. MENU_MULTIPLIER_ITEM_EDIT(int3, MSG_FAN_SPEED " 3", &fanSpeeds[2], 0, 255);
  1733. #endif
  1734. #endif // FAN_COUNT > 0
  1735. //
  1736. // Autotemp, Min, Max, Fact
  1737. //
  1738. #if ENABLED(AUTOTEMP) && (TEMP_SENSOR_0 != 0)
  1739. MENU_ITEM_EDIT(bool, MSG_AUTOTEMP, &planner.autotemp_enabled);
  1740. MENU_ITEM_EDIT(float3, MSG_MIN, &planner.autotemp_min, 0, HEATER_0_MAXTEMP - 15);
  1741. MENU_ITEM_EDIT(float3, MSG_MAX, &planner.autotemp_max, 0, HEATER_0_MAXTEMP - 15);
  1742. MENU_ITEM_EDIT(float32, MSG_FACTOR, &planner.autotemp_factor, 0.0, 1.0);
  1743. #endif
  1744. //
  1745. // PID-P, PID-I, PID-D, PID-C, PID Autotune
  1746. // PID-P E1, PID-I E1, PID-D E1, PID-C E1, PID Autotune E1
  1747. // PID-P E2, PID-I E2, PID-D E2, PID-C E2, PID Autotune E2
  1748. // PID-P E3, PID-I E3, PID-D E3, PID-C E3, PID Autotune E3
  1749. // PID-P E4, PID-I E4, PID-D E4, PID-C E4, PID Autotune E4
  1750. //
  1751. #if ENABLED(PIDTEMP)
  1752. #define _PID_BASE_MENU_ITEMS(ELABEL, eindex) \
  1753. raw_Ki = unscalePID_i(PID_PARAM(Ki, eindex)); \
  1754. raw_Kd = unscalePID_d(PID_PARAM(Kd, eindex)); \
  1755. MENU_ITEM_EDIT(float52, MSG_PID_P ELABEL, &PID_PARAM(Kp, eindex), 1, 9990); \
  1756. MENU_ITEM_EDIT_CALLBACK(float52, MSG_PID_I ELABEL, &raw_Ki, 0.01, 9990, copy_and_scalePID_i_E ## eindex); \
  1757. MENU_ITEM_EDIT_CALLBACK(float52, MSG_PID_D ELABEL, &raw_Kd, 1, 9990, copy_and_scalePID_d_E ## eindex)
  1758. #if ENABLED(PID_EXTRUSION_SCALING)
  1759. #define _PID_MENU_ITEMS(ELABEL, eindex) \
  1760. _PID_BASE_MENU_ITEMS(ELABEL, eindex); \
  1761. MENU_ITEM_EDIT(float3, MSG_PID_C ELABEL, &PID_PARAM(Kc, eindex), 1, 9990)
  1762. #else
  1763. #define _PID_MENU_ITEMS(ELABEL, eindex) _PID_BASE_MENU_ITEMS(ELABEL, eindex)
  1764. #endif
  1765. #if ENABLED(PID_AUTOTUNE_MENU)
  1766. #define PID_MENU_ITEMS(ELABEL, eindex) \
  1767. _PID_MENU_ITEMS(ELABEL, eindex); \
  1768. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(int3, MSG_PID_AUTOTUNE ELABEL, &autotune_temp[eindex], 150, heater_maxtemp[eindex] - 15, lcd_autotune_callback_E ## eindex)
  1769. #else
  1770. #define PID_MENU_ITEMS(ELABEL, eindex) _PID_MENU_ITEMS(ELABEL, eindex)
  1771. #endif
  1772. #if ENABLED(PID_PARAMS_PER_HOTEND) && HOTENDS > 1
  1773. PID_MENU_ITEMS(" " MSG_E1, 0);
  1774. PID_MENU_ITEMS(" " MSG_E2, 1);
  1775. #if HOTENDS > 2
  1776. PID_MENU_ITEMS(" " MSG_E3, 2);
  1777. #if HOTENDS > 3
  1778. PID_MENU_ITEMS(" " MSG_E4, 3);
  1779. #endif //HOTENDS > 3
  1780. #endif //HOTENDS > 2
  1781. #else //!PID_PARAMS_PER_HOTEND || HOTENDS == 1
  1782. PID_MENU_ITEMS("", 0);
  1783. #endif //!PID_PARAMS_PER_HOTEND || HOTENDS == 1
  1784. #endif //PIDTEMP
  1785. //
  1786. // Preheat Material 1 conf
  1787. //
  1788. MENU_ITEM(submenu, MSG_PREHEAT_1_SETTINGS, lcd_control_temperature_preheat_material1_settings_menu);
  1789. //
  1790. // Preheat Material 2 conf
  1791. //
  1792. MENU_ITEM(submenu, MSG_PREHEAT_2_SETTINGS, lcd_control_temperature_preheat_material2_settings_menu);
  1793. END_MENU();
  1794. }
  1795. void _lcd_control_temperature_preheat_settings_menu(uint8_t material) {
  1796. #if HOTENDS > 3
  1797. #define MINTEMP_ALL MIN4(HEATER_0_MINTEMP, HEATER_1_MINTEMP, HEATER_2_MINTEMP, HEATER_3_MINTEMP)
  1798. #define MAXTEMP_ALL MAX4(HEATER_0_MAXTEMP, HEATER_1_MAXTEMP, HEATER_2_MAXTEMP, HEATER_3_MAXTEMP)
  1799. #elif HOTENDS > 2
  1800. #define MINTEMP_ALL MIN3(HEATER_0_MINTEMP, HEATER_1_MINTEMP, HEATER_2_MINTEMP)
  1801. #define MAXTEMP_ALL MAX3(HEATER_0_MAXTEMP, HEATER_1_MAXTEMP, HEATER_2_MAXTEMP)
  1802. #elif HOTENDS > 1
  1803. #define MINTEMP_ALL min(HEATER_0_MINTEMP, HEATER_1_MINTEMP)
  1804. #define MAXTEMP_ALL max(HEATER_0_MAXTEMP, HEATER_1_MAXTEMP)
  1805. #else
  1806. #define MINTEMP_ALL HEATER_0_MINTEMP
  1807. #define MAXTEMP_ALL HEATER_0_MAXTEMP
  1808. #endif
  1809. START_MENU();
  1810. MENU_BACK(MSG_TEMPERATURE);
  1811. MENU_ITEM_EDIT(int3, MSG_FAN_SPEED, &lcd_preheat_fan_speed[material], 0, 255);
  1812. #if TEMP_SENSOR_0 != 0
  1813. MENU_ITEM_EDIT(int3, MSG_NOZZLE, &lcd_preheat_hotend_temp[material], MINTEMP_ALL, MAXTEMP_ALL - 15);
  1814. #endif
  1815. #if TEMP_SENSOR_BED != 0
  1816. MENU_ITEM_EDIT(int3, MSG_BED, &lcd_preheat_bed_temp[material], BED_MINTEMP, BED_MAXTEMP - 15);
  1817. #endif
  1818. #if ENABLED(EEPROM_SETTINGS)
  1819. MENU_ITEM(function, MSG_STORE_EPROM, Config_StoreSettings);
  1820. #endif
  1821. END_MENU();
  1822. }
  1823. /**
  1824. *
  1825. * "Temperature" > "Preheat Material 1 conf" submenu
  1826. *
  1827. */
  1828. void lcd_control_temperature_preheat_material1_settings_menu() { _lcd_control_temperature_preheat_settings_menu(0); }
  1829. /**
  1830. *
  1831. * "Temperature" > "Preheat Material 2 conf" submenu
  1832. *
  1833. */
  1834. void lcd_control_temperature_preheat_material2_settings_menu() { _lcd_control_temperature_preheat_settings_menu(1); }
  1835. void _reset_acceleration_rates() { planner.reset_acceleration_rates(); }
  1836. #if ENABLED(DISTINCT_E_FACTORS)
  1837. void _reset_e_acceleration_rate(const uint8_t e) { if (e == active_extruder) _reset_acceleration_rates(); }
  1838. void _reset_e0_acceleration_rate() { _reset_e_acceleration_rate(0); }
  1839. void _reset_e1_acceleration_rate() { _reset_e_acceleration_rate(1); }
  1840. #if E_STEPPERS > 2
  1841. void _reset_e2_acceleration_rate() { _reset_e_acceleration_rate(2); }
  1842. #if E_STEPPERS > 3
  1843. void _reset_e3_acceleration_rate() { _reset_e_acceleration_rate(3); }
  1844. #endif
  1845. #endif
  1846. #endif
  1847. void _planner_refresh_positioning() { planner.refresh_positioning(); }
  1848. #if ENABLED(DISTINCT_E_FACTORS)
  1849. void _planner_refresh_e_positioning(const uint8_t e) {
  1850. if (e == active_extruder)
  1851. _planner_refresh_positioning();
  1852. else
  1853. planner.steps_to_mm[e] = 1.0 / planner.axis_steps_per_mm[e];
  1854. }
  1855. void _planner_refresh_e0_positioning() { _reset_e_acceleration_rate(0); }
  1856. void _planner_refresh_e1_positioning() { _reset_e_acceleration_rate(1); }
  1857. #if E_STEPPERS > 2
  1858. void _planner_refresh_e2_positioning() { _reset_e_acceleration_rate(2); }
  1859. #if E_STEPPERS > 3
  1860. void _planner_refresh_e3_positioning() { _reset_e_acceleration_rate(3); }
  1861. #endif
  1862. #endif
  1863. #endif
  1864. /**
  1865. *
  1866. * "Control" > "Motion" submenu
  1867. *
  1868. */
  1869. void lcd_control_motion_menu() {
  1870. START_MENU();
  1871. MENU_BACK(MSG_CONTROL);
  1872. #if HAS_BED_PROBE
  1873. MENU_ITEM_EDIT(float32, MSG_ZPROBE_ZOFFSET, &zprobe_zoffset, Z_PROBE_OFFSET_RANGE_MIN, Z_PROBE_OFFSET_RANGE_MAX);
  1874. #endif
  1875. // Manual bed leveling, Bed Z:
  1876. #if ENABLED(MANUAL_BED_LEVELING)
  1877. MENU_ITEM_EDIT(float43, MSG_BED_Z, &mbl.z_offset, -1, 1);
  1878. #endif
  1879. MENU_ITEM_EDIT(float5, MSG_ACC, &planner.acceleration, 10, 99000);
  1880. MENU_ITEM_EDIT(float3, MSG_VX_JERK, &planner.max_jerk[X_AXIS], 1, 990);
  1881. MENU_ITEM_EDIT(float3, MSG_VY_JERK, &planner.max_jerk[Y_AXIS], 1, 990);
  1882. #if ENABLED(DELTA)
  1883. MENU_ITEM_EDIT(float3, MSG_VZ_JERK, &planner.max_jerk[Z_AXIS], 1, 990);
  1884. #else
  1885. MENU_ITEM_EDIT(float52, MSG_VZ_JERK, &planner.max_jerk[Z_AXIS], 0.1, 990);
  1886. #endif
  1887. MENU_ITEM_EDIT(float3, MSG_VE_JERK, &planner.max_jerk[E_AXIS], 1, 990);
  1888. //
  1889. // M203 Settings
  1890. //
  1891. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_X, &planner.max_feedrate_mm_s[X_AXIS], 1, 999);
  1892. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_Y, &planner.max_feedrate_mm_s[Y_AXIS], 1, 999);
  1893. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_Z, &planner.max_feedrate_mm_s[Z_AXIS], 1, 999);
  1894. #if ENABLED(DISTINCT_E_FACTORS)
  1895. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E, &planner.max_feedrate_mm_s[E_AXIS + active_extruder], 1, 999);
  1896. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E1, &planner.max_feedrate_mm_s[E_AXIS], 1, 999);
  1897. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E2, &planner.max_feedrate_mm_s[E_AXIS + 1], 1, 999);
  1898. #if E_STEPPERS > 2
  1899. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E3, &planner.max_feedrate_mm_s[E_AXIS + 2], 1, 999);
  1900. #if E_STEPPERS > 3
  1901. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E3, &planner.max_feedrate_mm_s[E_AXIS + 3], 1, 999);
  1902. #endif
  1903. #endif
  1904. #else
  1905. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E, &planner.max_feedrate_mm_s[E_AXIS], 1, 999);
  1906. #endif
  1907. MENU_ITEM_EDIT(float3, MSG_VMIN, &planner.min_feedrate_mm_s, 0, 999);
  1908. MENU_ITEM_EDIT(float3, MSG_VTRAV_MIN, &planner.min_travel_feedrate_mm_s, 0, 999);
  1909. //
  1910. // M201 Settings
  1911. //
  1912. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_X, &planner.max_acceleration_mm_per_s2[X_AXIS], 100, 99000, _reset_acceleration_rates);
  1913. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_Y, &planner.max_acceleration_mm_per_s2[Y_AXIS], 100, 99000, _reset_acceleration_rates);
  1914. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_Z, &planner.max_acceleration_mm_per_s2[Z_AXIS], 10, 99000, _reset_acceleration_rates);
  1915. #if ENABLED(DISTINCT_E_FACTORS)
  1916. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E, &planner.max_acceleration_mm_per_s2[E_AXIS + active_extruder], 100, 99000, _reset_acceleration_rates);
  1917. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E1, &planner.max_acceleration_mm_per_s2[E_AXIS], 100, 99000, _reset_e0_acceleration_rate);
  1918. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E2, &planner.max_acceleration_mm_per_s2[E_AXIS + 1], 100, 99000, _reset_e1_acceleration_rate);
  1919. #if E_STEPPERS > 2
  1920. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E3, &planner.max_acceleration_mm_per_s2[E_AXIS + 2], 100, 99000, _reset_e2_acceleration_rate);
  1921. #if E_STEPPERS > 3
  1922. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E4, &planner.max_acceleration_mm_per_s2[E_AXIS + 3], 100, 99000, _reset_e3_acceleration_rate);
  1923. #endif
  1924. #endif
  1925. #else
  1926. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E, &planner.max_acceleration_mm_per_s2[E_AXIS], 100, 99000, _reset_acceleration_rates);
  1927. #endif
  1928. MENU_ITEM_EDIT(float5, MSG_A_RETRACT, &planner.retract_acceleration, 100, 99000);
  1929. MENU_ITEM_EDIT(float5, MSG_A_TRAVEL, &planner.travel_acceleration, 100, 99000);
  1930. //
  1931. // M92 Settings
  1932. //
  1933. MENU_ITEM_EDIT_CALLBACK(float62, MSG_XSTEPS, &planner.axis_steps_per_mm[X_AXIS], 5, 9999, _planner_refresh_positioning);
  1934. MENU_ITEM_EDIT_CALLBACK(float62, MSG_YSTEPS, &planner.axis_steps_per_mm[Y_AXIS], 5, 9999, _planner_refresh_positioning);
  1935. MENU_ITEM_EDIT_CALLBACK(float62, MSG_ZSTEPS, &planner.axis_steps_per_mm[Z_AXIS], 5, 9999, _planner_refresh_positioning);
  1936. #if ENABLED(DISTINCT_E_FACTORS)
  1937. MENU_ITEM_EDIT_CALLBACK(float62, MSG_ESTEPS, &planner.axis_steps_per_mm[E_AXIS + active_extruder], 5, 9999, _planner_refresh_positioning);
  1938. MENU_ITEM_EDIT_CALLBACK(float62, MSG_E1STEPS, &planner.axis_steps_per_mm[E_AXIS], 5, 9999, _planner_refresh_e0_positioning);
  1939. MENU_ITEM_EDIT_CALLBACK(float62, MSG_E2STEPS, &planner.axis_steps_per_mm[E_AXIS + 1], 5, 9999, _planner_refresh_e1_positioning);
  1940. #if E_STEPPERS > 2
  1941. MENU_ITEM_EDIT_CALLBACK(float62, MSG_E3STEPS, &planner.axis_steps_per_mm[E_AXIS + 2], 5, 9999, _planner_refresh_e2_positioning);
  1942. #if E_STEPPERS > 3
  1943. MENU_ITEM_EDIT_CALLBACK(float62, MSG_E4STEPS, &planner.axis_steps_per_mm[E_AXIS + 3], 5, 9999, _planner_refresh_e3_positioning);
  1944. #endif
  1945. #endif
  1946. #else
  1947. MENU_ITEM_EDIT_CALLBACK(float62, MSG_ESTEPS, &planner.axis_steps_per_mm[E_AXIS], 5, 9999, _planner_refresh_positioning);
  1948. #endif
  1949. #if ENABLED(ABORT_ON_ENDSTOP_HIT_FEATURE_ENABLED)
  1950. MENU_ITEM_EDIT(bool, MSG_ENDSTOP_ABORT, &stepper.abort_on_endstop_hit);
  1951. #endif
  1952. END_MENU();
  1953. }
  1954. /**
  1955. *
  1956. * "Control" > "Filament" submenu
  1957. *
  1958. */
  1959. void lcd_control_volumetric_menu() {
  1960. START_MENU();
  1961. MENU_BACK(MSG_CONTROL);
  1962. MENU_ITEM_EDIT_CALLBACK(bool, MSG_VOLUMETRIC_ENABLED, &volumetric_enabled, calculate_volumetric_multipliers);
  1963. if (volumetric_enabled) {
  1964. #if EXTRUDERS == 1
  1965. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(float43, MSG_FILAMENT_DIAM, &filament_size[0], 1.5, 3.25, calculate_volumetric_multipliers);
  1966. #else //EXTRUDERS > 1
  1967. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(float43, MSG_FILAMENT_DIAM MSG_DIAM_E1, &filament_size[0], 1.5, 3.25, calculate_volumetric_multipliers);
  1968. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(float43, MSG_FILAMENT_DIAM MSG_DIAM_E2, &filament_size[1], 1.5, 3.25, calculate_volumetric_multipliers);
  1969. #if EXTRUDERS > 2
  1970. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(float43, MSG_FILAMENT_DIAM MSG_DIAM_E3, &filament_size[2], 1.5, 3.25, calculate_volumetric_multipliers);
  1971. #if EXTRUDERS > 3
  1972. MENU_MULTIPLIER_ITEM_EDIT_CALLBACK(float43, MSG_FILAMENT_DIAM MSG_DIAM_E4, &filament_size[3], 1.5, 3.25, calculate_volumetric_multipliers);
  1973. #endif //EXTRUDERS > 3
  1974. #endif //EXTRUDERS > 2
  1975. #endif //EXTRUDERS > 1
  1976. }
  1977. END_MENU();
  1978. }
  1979. /**
  1980. *
  1981. * "Control" > "Contrast" submenu
  1982. *
  1983. */
  1984. #if HAS_LCD_CONTRAST
  1985. void lcd_set_contrast() {
  1986. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  1987. ENCODER_DIRECTION_NORMAL();
  1988. if (encoderPosition) {
  1989. set_lcd_contrast(lcd_contrast + encoderPosition);
  1990. encoderPosition = 0;
  1991. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  1992. }
  1993. if (lcdDrawUpdate) {
  1994. lcd_implementation_drawedit(PSTR(MSG_CONTRAST),
  1995. #if LCD_CONTRAST_MAX >= 100
  1996. itostr3(lcd_contrast)
  1997. #else
  1998. itostr2(lcd_contrast)
  1999. #endif
  2000. );
  2001. }
  2002. }
  2003. #endif // HAS_LCD_CONTRAST
  2004. /**
  2005. *
  2006. * "Control" > "Retract" submenu
  2007. *
  2008. */
  2009. #if ENABLED(FWRETRACT)
  2010. void lcd_control_retract_menu() {
  2011. START_MENU();
  2012. MENU_BACK(MSG_CONTROL);
  2013. MENU_ITEM_EDIT(bool, MSG_AUTORETRACT, &autoretract_enabled);
  2014. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT, &retract_length, 0, 100);
  2015. #if EXTRUDERS > 1
  2016. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT_SWAP, &retract_length_swap, 0, 100);
  2017. #endif
  2018. MENU_ITEM_EDIT(float3, MSG_CONTROL_RETRACTF, &retract_feedrate_mm_s, 1, 999);
  2019. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT_ZLIFT, &retract_zlift, 0, 999);
  2020. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT_RECOVER, &retract_recover_length, -100, 100);
  2021. #if EXTRUDERS > 1
  2022. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT_RECOVER_SWAP, &retract_recover_length_swap, -100, 100);
  2023. #endif
  2024. MENU_ITEM_EDIT(float3, MSG_CONTROL_RETRACT_RECOVERF, &retract_recover_feedrate_mm_s, 1, 999);
  2025. END_MENU();
  2026. }
  2027. #endif // FWRETRACT
  2028. #if ENABLED(SDSUPPORT)
  2029. #if !PIN_EXISTS(SD_DETECT)
  2030. void lcd_sd_refresh() {
  2031. card.initsd();
  2032. encoderTopLine = 0;
  2033. }
  2034. #endif
  2035. void lcd_sd_updir() {
  2036. card.updir();
  2037. encoderTopLine = 0;
  2038. screen_changed = true;
  2039. lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW;
  2040. }
  2041. /**
  2042. *
  2043. * "Print from SD" submenu
  2044. *
  2045. */
  2046. void lcd_sdcard_menu() {
  2047. ENCODER_DIRECTION_MENUS();
  2048. if (!lcdDrawUpdate && !lcd_clicked) return; // nothing to do (so don't thrash the SD card)
  2049. uint16_t fileCnt = card.getnrfilenames();
  2050. START_MENU();
  2051. MENU_BACK(MSG_MAIN);
  2052. card.getWorkDirName();
  2053. if (card.filename[0] == '/') {
  2054. #if !PIN_EXISTS(SD_DETECT)
  2055. MENU_ITEM(function, LCD_STR_REFRESH MSG_REFRESH, lcd_sd_refresh);
  2056. #endif
  2057. }
  2058. else {
  2059. MENU_ITEM(function, LCD_STR_FOLDER "..", lcd_sd_updir);
  2060. }
  2061. for (uint16_t i = 0; i < fileCnt; i++) {
  2062. if (_menuLineNr == _thisItemNr) {
  2063. #if ENABLED(SDCARD_RATHERRECENTFIRST) && DISABLED(SDCARD_SORT_ALPHA)
  2064. int nr = fileCnt - 1 - i;
  2065. #else
  2066. int nr = i;
  2067. #endif
  2068. #if ENABLED(SDCARD_SORT_ALPHA)
  2069. card.getfilename_sorted(nr);
  2070. #else
  2071. card.getfilename(nr);
  2072. #endif
  2073. if (card.filenameIsDir)
  2074. MENU_ITEM(sddirectory, MSG_CARD_MENU, card.filename, card.longFilename);
  2075. else
  2076. MENU_ITEM(sdfile, MSG_CARD_MENU, card.filename, card.longFilename);
  2077. }
  2078. else {
  2079. MENU_ITEM_DUMMY();
  2080. }
  2081. }
  2082. END_MENU();
  2083. }
  2084. #endif //SDSUPPORT
  2085. #if ENABLED(LCD_INFO_MENU)
  2086. #if ENABLED(PRINTCOUNTER)
  2087. /**
  2088. *
  2089. * About Printer > Statistics submenu
  2090. *
  2091. */
  2092. void lcd_info_stats_menu() {
  2093. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  2094. char buffer[21];
  2095. printStatistics stats = print_job_timer.getStats();
  2096. START_SCREEN(); // 12345678901234567890
  2097. STATIC_ITEM(MSG_INFO_PRINT_COUNT ": ", false, false, itostr3left(stats.totalPrints)); // Print Count: 999
  2098. STATIC_ITEM(MSG_INFO_COMPLETED_PRINTS": ", false, false, itostr3left(stats.finishedPrints)); // Completed : 666
  2099. duration_t elapsed = stats.printTime;
  2100. elapsed.toString(buffer);
  2101. STATIC_ITEM(MSG_INFO_PRINT_TIME ": ", false, false); // Total print Time:
  2102. STATIC_ITEM("", false, false, buffer); // 99y 364d 23h 59m 59s
  2103. elapsed = stats.longestPrint;
  2104. elapsed.toString(buffer);
  2105. STATIC_ITEM(MSG_INFO_PRINT_LONGEST ": ", false, false); // Longest job time:
  2106. STATIC_ITEM("", false, false, buffer); // 99y 364d 23h 59m 59s
  2107. sprintf_P(buffer, PSTR("%ld.%im"), long(stats.filamentUsed / 1000), int(stats.filamentUsed / 100) % 10);
  2108. STATIC_ITEM(MSG_INFO_PRINT_FILAMENT ": ", false, false); // Extruded total:
  2109. STATIC_ITEM("", false, false, buffer); // 125m
  2110. END_SCREEN();
  2111. }
  2112. #endif // PRINTCOUNTER
  2113. /**
  2114. *
  2115. * About Printer > Thermistors
  2116. *
  2117. */
  2118. void lcd_info_thermistors_menu() {
  2119. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  2120. START_SCREEN();
  2121. #define THERMISTOR_ID TEMP_SENSOR_0
  2122. #include "thermistornames.h"
  2123. STATIC_ITEM("T0: " THERMISTOR_NAME, false, true);
  2124. STATIC_ITEM(MSG_INFO_MIN_TEMP ": " STRINGIFY(HEATER_0_MINTEMP), false);
  2125. STATIC_ITEM(MSG_INFO_MAX_TEMP ": " STRINGIFY(HEATER_0_MAXTEMP), false);
  2126. #if TEMP_SENSOR_1 != 0
  2127. #undef THERMISTOR_ID
  2128. #define THERMISTOR_ID TEMP_SENSOR_1
  2129. #include "thermistornames.h"
  2130. STATIC_ITEM("T1: " THERMISTOR_NAME, false, true);
  2131. STATIC_ITEM(MSG_INFO_MIN_TEMP ": " STRINGIFY(HEATER_1_MINTEMP), false);
  2132. STATIC_ITEM(MSG_INFO_MAX_TEMP ": " STRINGIFY(HEATER_1_MAXTEMP), false);
  2133. #endif
  2134. #if TEMP_SENSOR_2 != 0
  2135. #undef THERMISTOR_ID
  2136. #define THERMISTOR_ID TEMP_SENSOR_2
  2137. #include "thermistornames.h"
  2138. STATIC_ITEM("T2: " THERMISTOR_NAME, false, true);
  2139. STATIC_ITEM(MSG_INFO_MIN_TEMP ": " STRINGIFY(HEATER_2_MINTEMP), false);
  2140. STATIC_ITEM(MSG_INFO_MAX_TEMP ": " STRINGIFY(HEATER_2_MAXTEMP), false);
  2141. #endif
  2142. #if TEMP_SENSOR_3 != 0
  2143. #undef THERMISTOR_ID
  2144. #define THERMISTOR_ID TEMP_SENSOR_3
  2145. #include "thermistornames.h"
  2146. STATIC_ITEM("T3: " THERMISTOR_NAME, false, true);
  2147. STATIC_ITEM(MSG_INFO_MIN_TEMP ": " STRINGIFY(HEATER_3_MINTEMP), false);
  2148. STATIC_ITEM(MSG_INFO_MAX_TEMP ": " STRINGIFY(HEATER_3_MAXTEMP), false);
  2149. #endif
  2150. #if TEMP_SENSOR_BED != 0
  2151. #undef THERMISTOR_ID
  2152. #define THERMISTOR_ID TEMP_SENSOR_BED
  2153. #include "thermistornames.h"
  2154. STATIC_ITEM("TBed:" THERMISTOR_NAME, false, true);
  2155. STATIC_ITEM(MSG_INFO_MIN_TEMP ": " STRINGIFY(BED_MINTEMP), false);
  2156. STATIC_ITEM(MSG_INFO_MAX_TEMP ": " STRINGIFY(BED_MAXTEMP), false);
  2157. #endif
  2158. END_SCREEN();
  2159. }
  2160. /**
  2161. *
  2162. * About Printer > Board Info
  2163. *
  2164. */
  2165. void lcd_info_board_menu() {
  2166. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  2167. START_SCREEN();
  2168. STATIC_ITEM(BOARD_NAME, true, true); // MyPrinterController
  2169. STATIC_ITEM(MSG_INFO_BAUDRATE ": " STRINGIFY(BAUDRATE), true); // Baud: 250000
  2170. STATIC_ITEM(MSG_INFO_PROTOCOL ": " PROTOCOL_VERSION, true); // Protocol: 1.0
  2171. #ifdef POWER_SUPPLY
  2172. #if (POWER_SUPPLY == 1)
  2173. STATIC_ITEM(MSG_INFO_PSU ": ATX", true); // Power Supply: ATX
  2174. #elif (POWER_SUPPLY == 2)
  2175. STATIC_ITEM(MSG_INFO_PSU ": XBox", true); // Power Supply: XBox
  2176. #endif
  2177. #endif // POWER_SUPPLY
  2178. END_SCREEN();
  2179. }
  2180. /**
  2181. *
  2182. * About Printer > Printer Info
  2183. *
  2184. */
  2185. void lcd_info_printer_menu() {
  2186. if (lcd_clicked) { return lcd_goto_previous_menu(); }
  2187. START_SCREEN();
  2188. STATIC_ITEM(MSG_MARLIN, true, true); // Marlin
  2189. STATIC_ITEM(SHORT_BUILD_VERSION, true); // x.x.x-Branch
  2190. STATIC_ITEM(STRING_DISTRIBUTION_DATE, true); // YYYY-MM-DD HH:MM
  2191. STATIC_ITEM(MACHINE_NAME, true); // My3DPrinter
  2192. STATIC_ITEM(WEBSITE_URL, true); // www.my3dprinter.com
  2193. STATIC_ITEM(MSG_INFO_EXTRUDERS ": " STRINGIFY(EXTRUDERS), true); // Extruders: 2
  2194. END_SCREEN();
  2195. }
  2196. /**
  2197. *
  2198. * "About Printer" submenu
  2199. *
  2200. */
  2201. void lcd_info_menu() {
  2202. START_MENU();
  2203. MENU_BACK(MSG_MAIN);
  2204. MENU_ITEM(submenu, MSG_INFO_PRINTER_MENU, lcd_info_printer_menu); // Printer Info >
  2205. MENU_ITEM(submenu, MSG_INFO_BOARD_MENU, lcd_info_board_menu); // Board Info >
  2206. MENU_ITEM(submenu, MSG_INFO_THERMISTOR_MENU, lcd_info_thermistors_menu); // Thermistors >
  2207. #if ENABLED(PRINTCOUNTER)
  2208. MENU_ITEM(submenu, MSG_INFO_STATS_MENU, lcd_info_stats_menu); // Printer Statistics >
  2209. #endif
  2210. END_MENU();
  2211. }
  2212. #endif // LCD_INFO_MENU
  2213. /**
  2214. *
  2215. * Filament Change Feature Screens
  2216. *
  2217. */
  2218. #if ENABLED(FILAMENT_CHANGE_FEATURE)
  2219. // Portions from STATIC_ITEM...
  2220. #define HOTEND_STATUS_ITEM() do { \
  2221. if (_menuLineNr == _thisItemNr) { \
  2222. if (lcdDrawUpdate) \
  2223. lcd_implementation_drawmenu_static(_lcdLineNr, PSTR(MSG_FILAMENT_CHANGE_NOZZLE), false, true); \
  2224. lcd_implementation_hotend_status(_lcdLineNr); \
  2225. if (_skipStatic && encoderLine <= _thisItemNr) { \
  2226. encoderPosition += ENCODER_STEPS_PER_MENU_ITEM; \
  2227. lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT; \
  2228. } \
  2229. else \
  2230. lcdDrawUpdate = LCDVIEW_CALL_NO_REDRAW; \
  2231. } \
  2232. ++_thisItemNr; \
  2233. } while(0)
  2234. void lcd_filament_change_toocold_menu() {
  2235. START_MENU();
  2236. STATIC_ITEM(MSG_HEATING_FAILED_LCD, true, true);
  2237. STATIC_ITEM(MSG_FILAMENT_CHANGE_MINTEMP STRINGIFY(EXTRUDE_MINTEMP) ".", false, false);
  2238. MENU_BACK(MSG_BACK);
  2239. #if LCD_HEIGHT > 4
  2240. STATIC_ITEM(" ");
  2241. #endif
  2242. HOTEND_STATUS_ITEM();
  2243. END_MENU();
  2244. }
  2245. void lcd_filament_change_resume_print() {
  2246. filament_change_menu_response = FILAMENT_CHANGE_RESPONSE_RESUME_PRINT;
  2247. }
  2248. void lcd_filament_change_extrude_more() {
  2249. filament_change_menu_response = FILAMENT_CHANGE_RESPONSE_EXTRUDE_MORE;
  2250. }
  2251. void lcd_filament_change_option_menu() {
  2252. START_MENU();
  2253. #if LCD_HEIGHT > 2
  2254. STATIC_ITEM(MSG_FILAMENT_CHANGE_OPTION_HEADER, true, false);
  2255. #endif
  2256. MENU_ITEM(function, MSG_FILAMENT_CHANGE_OPTION_RESUME, lcd_filament_change_resume_print);
  2257. MENU_ITEM(function, MSG_FILAMENT_CHANGE_OPTION_EXTRUDE, lcd_filament_change_extrude_more);
  2258. END_MENU();
  2259. }
  2260. void lcd_filament_change_init_message() {
  2261. START_SCREEN();
  2262. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2263. STATIC_ITEM(MSG_FILAMENT_CHANGE_INIT_1);
  2264. #ifdef MSG_FILAMENT_CHANGE_INIT_2
  2265. STATIC_ITEM(MSG_FILAMENT_CHANGE_INIT_2);
  2266. #define __FC_LINES_A 3
  2267. #else
  2268. #define __FC_LINES_A 2
  2269. #endif
  2270. #ifdef MSG_FILAMENT_CHANGE_INIT_3
  2271. STATIC_ITEM(MSG_FILAMENT_CHANGE_INIT_3);
  2272. #define _FC_LINES_A (__FC_LINES_A + 1)
  2273. #else
  2274. #define _FC_LINES_A __FC_LINES_A
  2275. #endif
  2276. #if LCD_HEIGHT > _FC_LINES_A + 1
  2277. STATIC_ITEM(" ");
  2278. #endif
  2279. HOTEND_STATUS_ITEM();
  2280. END_SCREEN();
  2281. }
  2282. void lcd_filament_change_unload_message() {
  2283. START_SCREEN();
  2284. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2285. STATIC_ITEM(MSG_FILAMENT_CHANGE_UNLOAD_1);
  2286. #ifdef MSG_FILAMENT_CHANGE_UNLOAD_2
  2287. STATIC_ITEM(MSG_FILAMENT_CHANGE_UNLOAD_2);
  2288. #define __FC_LINES_B 3
  2289. #else
  2290. #define __FC_LINES_B 2
  2291. #endif
  2292. #ifdef MSG_FILAMENT_CHANGE_UNLOAD_3
  2293. STATIC_ITEM(MSG_FILAMENT_CHANGE_UNLOAD_3);
  2294. #define _FC_LINES_B (__FC_LINES_B + 1)
  2295. #else
  2296. #define _FC_LINES_B __FC_LINES_B
  2297. #endif
  2298. #if LCD_HEIGHT > _FC_LINES_B + 1
  2299. STATIC_ITEM(" ");
  2300. #endif
  2301. HOTEND_STATUS_ITEM();
  2302. END_SCREEN();
  2303. }
  2304. void lcd_filament_change_wait_for_nozzles_to_heat() {
  2305. START_SCREEN();
  2306. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2307. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEATING_1);
  2308. #ifdef MSG_FILAMENT_CHANGE_HEATING_2
  2309. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEATING_2);
  2310. #define _FC_LINES_C 3
  2311. #else
  2312. #define _FC_LINES_C 2
  2313. #endif
  2314. #if LCD_HEIGHT > _FC_LINES_C + 1
  2315. STATIC_ITEM(" ");
  2316. #endif
  2317. HOTEND_STATUS_ITEM();
  2318. END_SCREEN();
  2319. }
  2320. void lcd_filament_change_heat_nozzle() {
  2321. START_SCREEN();
  2322. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2323. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEAT_1);
  2324. #ifdef MSG_FILAMENT_CHANGE_INSERT_2
  2325. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEAT_2);
  2326. #define _FC_LINES_D 3
  2327. #else
  2328. #define _FC_LINES_D 2
  2329. #endif
  2330. #if LCD_HEIGHT > _FC_LINES_D + 1
  2331. STATIC_ITEM(" ");
  2332. #endif
  2333. HOTEND_STATUS_ITEM();
  2334. END_SCREEN();
  2335. }
  2336. void lcd_filament_change_insert_message() {
  2337. START_SCREEN();
  2338. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2339. STATIC_ITEM(MSG_FILAMENT_CHANGE_INSERT_1);
  2340. #ifdef MSG_FILAMENT_CHANGE_INSERT_2
  2341. STATIC_ITEM(MSG_FILAMENT_CHANGE_INSERT_2);
  2342. #define __FC_LINES_E 3
  2343. #else
  2344. #define __FC_LINES_E 2
  2345. #endif
  2346. #ifdef MSG_FILAMENT_CHANGE_INSERT_3
  2347. STATIC_ITEM(MSG_FILAMENT_CHANGE_INSERT_3);
  2348. #define _FC_LINES_E (__FC_LINES_E + 1)
  2349. #else
  2350. #define _FC_LINES_E __FC_LINES_E
  2351. #endif
  2352. #if LCD_HEIGHT > _FC_LINES_E + 1
  2353. STATIC_ITEM(" ");
  2354. #endif
  2355. HOTEND_STATUS_ITEM();
  2356. END_SCREEN();
  2357. }
  2358. void lcd_filament_change_load_message() {
  2359. START_SCREEN();
  2360. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2361. STATIC_ITEM(MSG_FILAMENT_CHANGE_LOAD_1);
  2362. #ifdef MSG_FILAMENT_CHANGE_LOAD_2
  2363. STATIC_ITEM(MSG_FILAMENT_CHANGE_LOAD_2);
  2364. #define __FC_LINES_F 3
  2365. #else
  2366. #define __FC_LINES_F 2
  2367. #endif
  2368. #ifdef MSG_FILAMENT_CHANGE_LOAD_3
  2369. STATIC_ITEM(MSG_FILAMENT_CHANGE_LOAD_3);
  2370. #define _FC_LINES_F (__FC_LINES_F + 1)
  2371. #else
  2372. #define _FC_LINES_F __FC_LINES_F
  2373. #endif
  2374. #if LCD_HEIGHT > _FC_LINES_F + 1
  2375. STATIC_ITEM(" ");
  2376. #endif
  2377. HOTEND_STATUS_ITEM();
  2378. END_SCREEN();
  2379. }
  2380. void lcd_filament_change_extrude_message() {
  2381. START_SCREEN();
  2382. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2383. STATIC_ITEM(MSG_FILAMENT_CHANGE_EXTRUDE_1);
  2384. #ifdef MSG_FILAMENT_CHANGE_EXTRUDE_2
  2385. STATIC_ITEM(MSG_FILAMENT_CHANGE_EXTRUDE_2);
  2386. #define __FC_LINES_G 3
  2387. #else
  2388. #define __FC_LINES_G 2
  2389. #endif
  2390. #ifdef MSG_FILAMENT_CHANGE_EXTRUDE_3
  2391. STATIC_ITEM(MSG_FILAMENT_CHANGE_EXTRUDE_3);
  2392. #define _FC_LINES_G (__FC_LINES_G + 1)
  2393. #else
  2394. #define _FC_LINES_G __FC_LINES_G
  2395. #endif
  2396. #if LCD_HEIGHT > _FC_LINES_G + 1
  2397. STATIC_ITEM(" ");
  2398. #endif
  2399. HOTEND_STATUS_ITEM();
  2400. END_SCREEN();
  2401. }
  2402. void lcd_filament_change_resume_message() {
  2403. START_SCREEN();
  2404. STATIC_ITEM(MSG_FILAMENT_CHANGE_HEADER, true, true);
  2405. STATIC_ITEM(MSG_FILAMENT_CHANGE_RESUME_1);
  2406. #ifdef MSG_FILAMENT_CHANGE_RESUME_2
  2407. STATIC_ITEM(MSG_FILAMENT_CHANGE_RESUME_2);
  2408. #endif
  2409. #ifdef MSG_FILAMENT_CHANGE_RESUME_3
  2410. STATIC_ITEM(MSG_FILAMENT_CHANGE_RESUME_3);
  2411. #endif
  2412. END_SCREEN();
  2413. }
  2414. void lcd_filament_change_show_message(const FilamentChangeMessage message) {
  2415. switch (message) {
  2416. case FILAMENT_CHANGE_MESSAGE_INIT:
  2417. defer_return_to_status = true;
  2418. lcd_goto_screen(lcd_filament_change_init_message);
  2419. break;
  2420. case FILAMENT_CHANGE_MESSAGE_UNLOAD:
  2421. lcd_goto_screen(lcd_filament_change_unload_message);
  2422. break;
  2423. case FILAMENT_CHANGE_MESSAGE_INSERT:
  2424. lcd_goto_screen(lcd_filament_change_insert_message);
  2425. break;
  2426. case FILAMENT_CHANGE_MESSAGE_LOAD:
  2427. lcd_goto_screen(lcd_filament_change_load_message);
  2428. break;
  2429. case FILAMENT_CHANGE_MESSAGE_EXTRUDE:
  2430. lcd_goto_screen(lcd_filament_change_extrude_message);
  2431. break;
  2432. case FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE:
  2433. lcd_goto_screen(lcd_filament_change_heat_nozzle);
  2434. break;
  2435. case FILAMENT_CHANGE_MESSAGE_WAIT_FOR_NOZZLES_TO_HEAT:
  2436. lcd_goto_screen(lcd_filament_change_wait_for_nozzles_to_heat);
  2437. break;
  2438. case FILAMENT_CHANGE_MESSAGE_OPTION:
  2439. filament_change_menu_response = FILAMENT_CHANGE_RESPONSE_WAIT_FOR;
  2440. lcd_goto_screen(lcd_filament_change_option_menu);
  2441. break;
  2442. case FILAMENT_CHANGE_MESSAGE_RESUME:
  2443. lcd_goto_screen(lcd_filament_change_resume_message);
  2444. break;
  2445. case FILAMENT_CHANGE_MESSAGE_STATUS:
  2446. lcd_return_to_status();
  2447. break;
  2448. }
  2449. }
  2450. #endif // FILAMENT_CHANGE_FEATURE
  2451. /**
  2452. *
  2453. * Functions for editing single values
  2454. *
  2455. * The "menu_edit_type" macro generates the functions needed to edit a numerical value.
  2456. *
  2457. * For example, menu_edit_type(int, int3, itostr3, 1) expands into these functions:
  2458. *
  2459. * bool _menu_edit_int3();
  2460. * void menu_edit_int3(); // edit int (interactively)
  2461. * void menu_edit_callback_int3(); // edit int (interactively) with callback on completion
  2462. * void _menu_action_setting_edit_int3(const char * const pstr, int * const ptr, const int minValue, const int maxValue);
  2463. * void menu_action_setting_edit_int3(const char * const pstr, int * const ptr, const int minValue, const int maxValue);
  2464. * void menu_action_setting_edit_callback_int3(const char * const pstr, int * const ptr, const int minValue, const int maxValue, const screenFunc_t callback); // edit int with callback
  2465. *
  2466. * You can then use one of the menu macros to present the edit interface:
  2467. * MENU_ITEM_EDIT(int3, MSG_SPEED, &feedrate_percentage, 10, 999)
  2468. *
  2469. * This expands into a more primitive menu item:
  2470. * MENU_ITEM(setting_edit_int3, MSG_SPEED, PSTR(MSG_SPEED), &feedrate_percentage, 10, 999)
  2471. *
  2472. *
  2473. * Also: MENU_MULTIPLIER_ITEM_EDIT, MENU_ITEM_EDIT_CALLBACK, and MENU_MULTIPLIER_ITEM_EDIT_CALLBACK
  2474. *
  2475. * menu_action_setting_edit_int3(PSTR(MSG_SPEED), &feedrate_percentage, 10, 999)
  2476. */
  2477. #define menu_edit_type(_type, _name, _strFunc, _scale) \
  2478. bool _menu_edit_ ## _name () { \
  2479. ENCODER_DIRECTION_NORMAL(); \
  2480. if ((int32_t)encoderPosition < 0) encoderPosition = 0; \
  2481. if ((int32_t)encoderPosition > maxEditValue) encoderPosition = maxEditValue; \
  2482. if (lcdDrawUpdate) \
  2483. lcd_implementation_drawedit(editLabel, _strFunc(((_type)((int32_t)encoderPosition + minEditValue)) * (1.0 / _scale))); \
  2484. if (lcd_clicked) { \
  2485. *((_type*)editValue) = ((_type)((int32_t)encoderPosition + minEditValue)) * (1.0 / _scale); \
  2486. lcd_goto_previous_menu(); \
  2487. } \
  2488. return lcd_clicked; \
  2489. } \
  2490. void menu_edit_ ## _name () { _menu_edit_ ## _name(); } \
  2491. void menu_edit_callback_ ## _name () { if (_menu_edit_ ## _name ()) (*callbackFunc)(); } \
  2492. void _menu_action_setting_edit_ ## _name (const char * const pstr, _type* const ptr, const _type minValue, const _type maxValue) { \
  2493. lcd_save_previous_screen(); \
  2494. \
  2495. lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW; \
  2496. \
  2497. editLabel = pstr; \
  2498. editValue = ptr; \
  2499. minEditValue = minValue * _scale; \
  2500. maxEditValue = maxValue * _scale - minEditValue; \
  2501. encoderPosition = (*ptr) * _scale - minEditValue; \
  2502. } \
  2503. void menu_action_setting_edit_ ## _name (const char * const pstr, _type * const ptr, const _type minValue, const _type maxValue) { \
  2504. _menu_action_setting_edit_ ## _name(pstr, ptr, minValue, maxValue); \
  2505. currentScreen = menu_edit_ ## _name; \
  2506. }\
  2507. void menu_action_setting_edit_callback_ ## _name (const char * const pstr, _type * const ptr, const _type minValue, const _type maxValue, const screenFunc_t callback) { \
  2508. _menu_action_setting_edit_ ## _name(pstr, ptr, minValue, maxValue); \
  2509. currentScreen = menu_edit_callback_ ## _name; \
  2510. callbackFunc = callback; \
  2511. } \
  2512. typedef void _name
  2513. menu_edit_type(int, int3, itostr3, 1);
  2514. menu_edit_type(float, float3, ftostr3, 1.0);
  2515. menu_edit_type(float, float32, ftostr32, 100.0);
  2516. menu_edit_type(float, float43, ftostr43sign, 1000.0);
  2517. menu_edit_type(float, float5, ftostr5rj, 0.01);
  2518. menu_edit_type(float, float51, ftostr51sign, 10.0);
  2519. menu_edit_type(float, float52, ftostr52sign, 100.0);
  2520. menu_edit_type(float, float62, ftostr62rj, 100.0);
  2521. menu_edit_type(unsigned long, long5, ftostr5rj, 0.01);
  2522. /**
  2523. *
  2524. * Handlers for RepRap World Keypad input
  2525. *
  2526. */
  2527. #if ENABLED(REPRAPWORLD_KEYPAD)
  2528. void _reprapworld_keypad_move(AxisEnum axis, int dir) {
  2529. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  2530. encoderPosition = dir;
  2531. switch (axis) {
  2532. case X_AXIS: lcd_move_x(); break;
  2533. case Y_AXIS: lcd_move_y(); break;
  2534. case Z_AXIS: lcd_move_z();
  2535. default: break;
  2536. }
  2537. }
  2538. void reprapworld_keypad_move_z_up() { _reprapworld_keypad_move(Z_AXIS, 1); }
  2539. void reprapworld_keypad_move_z_down() { _reprapworld_keypad_move(Z_AXIS, -1); }
  2540. void reprapworld_keypad_move_x_left() { _reprapworld_keypad_move(X_AXIS, -1); }
  2541. void reprapworld_keypad_move_x_right() { _reprapworld_keypad_move(X_AXIS, 1); }
  2542. void reprapworld_keypad_move_y_up() { _reprapworld_keypad_move(Y_AXIS, -1); }
  2543. void reprapworld_keypad_move_y_down() { _reprapworld_keypad_move(Y_AXIS, 1); }
  2544. void reprapworld_keypad_move_home() { enqueue_and_echo_commands_P(PSTR("G28")); } // move all axes home and wait
  2545. void reprapworld_keypad_move_menu() { lcd_goto_screen(lcd_move_menu); }
  2546. inline void handle_reprapworld_keypad() {
  2547. static uint8_t keypad_debounce = 0;
  2548. if (!REPRAPWORLD_KEYPAD_PRESSED) {
  2549. if (keypad_debounce > 0) keypad_debounce--;
  2550. }
  2551. else if (!keypad_debounce) {
  2552. keypad_debounce = 2;
  2553. if (REPRAPWORLD_KEYPAD_MOVE_MENU) reprapworld_keypad_move_menu();
  2554. #if DISABLED(DELTA) && Z_HOME_DIR == -1
  2555. if (REPRAPWORLD_KEYPAD_MOVE_Z_UP) reprapworld_keypad_move_z_up();
  2556. #endif
  2557. if (axis_homed[X_AXIS] && axis_homed[Y_AXIS] && axis_homed[Z_AXIS]) {
  2558. #if ENABLED(DELTA) || Z_HOME_DIR != -1
  2559. if (REPRAPWORLD_KEYPAD_MOVE_Z_UP) reprapworld_keypad_move_z_up();
  2560. #endif
  2561. if (REPRAPWORLD_KEYPAD_MOVE_Z_DOWN) reprapworld_keypad_move_z_down();
  2562. if (REPRAPWORLD_KEYPAD_MOVE_X_LEFT) reprapworld_keypad_move_x_left();
  2563. if (REPRAPWORLD_KEYPAD_MOVE_X_RIGHT) reprapworld_keypad_move_x_right();
  2564. if (REPRAPWORLD_KEYPAD_MOVE_Y_DOWN) reprapworld_keypad_move_y_down();
  2565. if (REPRAPWORLD_KEYPAD_MOVE_Y_UP) reprapworld_keypad_move_y_up();
  2566. }
  2567. else {
  2568. if (REPRAPWORLD_KEYPAD_MOVE_HOME) reprapworld_keypad_move_home();
  2569. }
  2570. }
  2571. }
  2572. #endif // REPRAPWORLD_KEYPAD
  2573. /**
  2574. *
  2575. * Audio feedback for controller clicks
  2576. *
  2577. */
  2578. void lcd_buzz(long duration, uint16_t freq) {
  2579. #if ENABLED(LCD_USE_I2C_BUZZER)
  2580. lcd.buzz(duration, freq);
  2581. #elif PIN_EXISTS(BEEPER)
  2582. buzzer.tone(duration, freq);
  2583. #else
  2584. UNUSED(duration); UNUSED(freq);
  2585. #endif
  2586. }
  2587. void lcd_quick_feedback() {
  2588. lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW;
  2589. buttons = 0;
  2590. next_button_update_ms = millis() + 500;
  2591. // Buzz and wait. The delay is needed for buttons to settle!
  2592. lcd_buzz(LCD_FEEDBACK_FREQUENCY_DURATION_MS, LCD_FEEDBACK_FREQUENCY_HZ);
  2593. #if ENABLED(LCD_USE_I2C_BUZZER)
  2594. delay(10);
  2595. #elif PIN_EXISTS(BEEPER)
  2596. for (int8_t i = 5; i--;) { buzzer.tick(); delay(2); }
  2597. #endif
  2598. }
  2599. /**
  2600. *
  2601. * Menu actions
  2602. *
  2603. */
  2604. void _menu_action_back() { lcd_goto_previous_menu(); }
  2605. void menu_action_submenu(screenFunc_t func) { lcd_save_previous_screen(); lcd_goto_screen(func); }
  2606. void menu_action_gcode(const char* pgcode) { enqueue_and_echo_commands_P(pgcode); }
  2607. void menu_action_function(screenFunc_t func) { (*func)(); }
  2608. #if ENABLED(SDSUPPORT)
  2609. void menu_action_sdfile(const char* filename, char* longFilename) {
  2610. UNUSED(longFilename);
  2611. card.openAndPrintFile(filename);
  2612. lcd_return_to_status();
  2613. }
  2614. void menu_action_sddirectory(const char* filename, char* longFilename) {
  2615. UNUSED(longFilename);
  2616. card.chdir(filename);
  2617. encoderPosition = 0;
  2618. screen_changed = true;
  2619. lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW;
  2620. }
  2621. #endif //SDSUPPORT
  2622. void menu_action_setting_edit_bool(const char* pstr, bool* ptr) {UNUSED(pstr); *ptr = !(*ptr); lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW; }
  2623. void menu_action_setting_edit_callback_bool(const char* pstr, bool* ptr, screenFunc_t callback) {
  2624. menu_action_setting_edit_bool(pstr, ptr);
  2625. (*callback)();
  2626. }
  2627. #endif // ULTIPANEL
  2628. void lcd_init() {
  2629. lcd_implementation_init(
  2630. #if ENABLED(LCD_PROGRESS_BAR)
  2631. true
  2632. #endif
  2633. );
  2634. #if ENABLED(NEWPANEL)
  2635. #if BUTTON_EXISTS(EN1)
  2636. SET_INPUT_PULLUP(BTN_EN1);
  2637. #endif
  2638. #if BUTTON_EXISTS(EN2)
  2639. SET_INPUT_PULLUP(BTN_EN2);
  2640. #endif
  2641. #if BUTTON_EXISTS(ENC)
  2642. SET_INPUT_PULLUP(BTN_ENC);
  2643. #endif
  2644. #if ENABLED(REPRAPWORLD_KEYPAD)
  2645. SET_OUTPUT(SHIFT_CLK);
  2646. OUT_WRITE(SHIFT_LD, HIGH);
  2647. SET_INPUT_PULLUP(SHIFT_OUT);
  2648. #endif
  2649. #if BUTTON_EXISTS(UP)
  2650. SET_INPUT(BTN_UP);
  2651. #endif
  2652. #if BUTTON_EXISTS(DWN)
  2653. SET_INPUT(BTN_DWN);
  2654. #endif
  2655. #if BUTTON_EXISTS(LFT)
  2656. SET_INPUT(BTN_LFT);
  2657. #endif
  2658. #if BUTTON_EXISTS(RT)
  2659. SET_INPUT(BTN_RT);
  2660. #endif
  2661. #else // !NEWPANEL
  2662. #if ENABLED(SR_LCD_2W_NL) // Non latching 2 wire shift register
  2663. SET_OUTPUT(SR_DATA_PIN);
  2664. SET_OUTPUT(SR_CLK_PIN);
  2665. #elif defined(SHIFT_CLK)
  2666. SET_OUTPUT(SHIFT_CLK);
  2667. OUT_WRITE(SHIFT_LD, HIGH);
  2668. OUT_WRITE(SHIFT_EN, LOW);
  2669. SET_INPUT_PULLUP(SHIFT_OUT);
  2670. #endif // SR_LCD_2W_NL
  2671. #endif // !NEWPANEL
  2672. #if ENABLED(SDSUPPORT) && PIN_EXISTS(SD_DETECT)
  2673. SET_INPUT_PULLUP(SD_DETECT_PIN);
  2674. lcd_sd_status = 2; // UNKNOWN
  2675. #endif
  2676. #if ENABLED(LCD_HAS_SLOW_BUTTONS)
  2677. slow_buttons = 0;
  2678. #endif
  2679. lcd_buttons_update();
  2680. #if ENABLED(ULTIPANEL)
  2681. encoderDiff = 0;
  2682. #endif
  2683. }
  2684. int lcd_strlen(const char* s) {
  2685. int i = 0, j = 0;
  2686. while (s[i]) {
  2687. #if ENABLED(MAPPER_NON)
  2688. j++;
  2689. #else
  2690. if ((s[i] & 0xC0u) != 0x80u) j++;
  2691. #endif
  2692. i++;
  2693. }
  2694. return j;
  2695. }
  2696. int lcd_strlen_P(const char* s) {
  2697. int j = 0;
  2698. while (pgm_read_byte(s)) {
  2699. #if ENABLED(MAPPER_NON)
  2700. j++;
  2701. #else
  2702. if ((pgm_read_byte(s) & 0xC0u) != 0x80u) j++;
  2703. #endif
  2704. s++;
  2705. }
  2706. return j;
  2707. }
  2708. bool lcd_blink() {
  2709. static uint8_t blink = 0;
  2710. static millis_t next_blink_ms = 0;
  2711. millis_t ms = millis();
  2712. if (ELAPSED(ms, next_blink_ms)) {
  2713. blink ^= 0xFF;
  2714. next_blink_ms = ms + 1000 - LCD_UPDATE_INTERVAL / 2;
  2715. }
  2716. return blink != 0;
  2717. }
  2718. /**
  2719. * Update the LCD, read encoder buttons, etc.
  2720. * - Read button states
  2721. * - Check the SD Card slot state
  2722. * - Act on RepRap World keypad input
  2723. * - Update the encoder position
  2724. * - Apply acceleration to the encoder position
  2725. * - Set lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NOW on controller events
  2726. * - Reset the Info Screen timeout if there's any input
  2727. * - Update status indicators, if any
  2728. *
  2729. * Run the current LCD menu handler callback function:
  2730. * - Call the handler only if lcdDrawUpdate != LCDVIEW_NONE
  2731. * - Before calling the handler, LCDVIEW_CALL_NO_REDRAW => LCDVIEW_NONE
  2732. * - Call the menu handler. Menu handlers should do the following:
  2733. * - If a value changes, set lcdDrawUpdate to LCDVIEW_REDRAW_NOW and draw the value
  2734. * (Encoder events automatically set lcdDrawUpdate for you.)
  2735. * - if (lcdDrawUpdate) { redraw }
  2736. * - Before exiting the handler set lcdDrawUpdate to:
  2737. * - LCDVIEW_CLEAR_CALL_REDRAW to clear screen and set LCDVIEW_CALL_REDRAW_NEXT.
  2738. * - LCDVIEW_REDRAW_NOW or LCDVIEW_NONE to keep drawing, but only in this loop.
  2739. * - LCDVIEW_CALL_REDRAW_NEXT to keep drawing and draw on the next loop also.
  2740. * - LCDVIEW_CALL_NO_REDRAW to keep drawing (or start drawing) with no redraw on the next loop.
  2741. * - NOTE: For graphical displays menu handlers may be called 2 or more times per loop,
  2742. * so don't change lcdDrawUpdate without considering this.
  2743. *
  2744. * After the menu handler callback runs (or not):
  2745. * - Clear the LCD if lcdDrawUpdate == LCDVIEW_CLEAR_CALL_REDRAW
  2746. * - Update lcdDrawUpdate for the next loop (i.e., move one state down, usually)
  2747. *
  2748. * No worries. This function is only called from the main thread.
  2749. */
  2750. void lcd_update() {
  2751. #if ENABLED(ULTIPANEL)
  2752. static millis_t return_to_status_ms = 0;
  2753. manage_manual_move();
  2754. lcd_buttons_update();
  2755. // If the action button is pressed...
  2756. if (LCD_CLICKED) {
  2757. if (!wait_for_unclick) { // If not waiting for a debounce release:
  2758. wait_for_unclick = true; // Set debounce flag to ignore continous clicks
  2759. lcd_clicked = !wait_for_user; // Keep the click if not waiting for a user-click
  2760. wait_for_user = false; // Any click clears wait for user
  2761. lcd_quick_feedback(); // Always make a click sound
  2762. }
  2763. }
  2764. else wait_for_unclick = false;
  2765. #endif
  2766. #if ENABLED(SDSUPPORT) && PIN_EXISTS(SD_DETECT)
  2767. bool sd_status = IS_SD_INSERTED;
  2768. if (sd_status != lcd_sd_status && lcd_detected()) {
  2769. if (sd_status) {
  2770. card.initsd();
  2771. if (lcd_sd_status != 2) LCD_MESSAGEPGM(MSG_SD_INSERTED);
  2772. }
  2773. else {
  2774. card.release();
  2775. if (lcd_sd_status != 2) LCD_MESSAGEPGM(MSG_SD_REMOVED);
  2776. }
  2777. lcd_sd_status = sd_status;
  2778. lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW;
  2779. lcd_implementation_init( // to maybe revive the LCD if static electricity killed it.
  2780. #if ENABLED(LCD_PROGRESS_BAR)
  2781. currentScreen == lcd_status_screen
  2782. #endif
  2783. );
  2784. }
  2785. #endif //SDSUPPORT && SD_DETECT_PIN
  2786. millis_t ms = millis();
  2787. if (ELAPSED(ms, next_lcd_update_ms)
  2788. #if ENABLED(DOGLCD)
  2789. || drawing_screen
  2790. #endif
  2791. ) {
  2792. next_lcd_update_ms = ms + LCD_UPDATE_INTERVAL;
  2793. #if ENABLED(LCD_HAS_STATUS_INDICATORS)
  2794. lcd_implementation_update_indicators();
  2795. #endif
  2796. #if ENABLED(ULTIPANEL)
  2797. #if ENABLED(LCD_HAS_SLOW_BUTTONS)
  2798. slow_buttons = lcd_implementation_read_slow_buttons(); // buttons which take too long to read in interrupt context
  2799. #endif
  2800. #if ENABLED(REPRAPWORLD_KEYPAD)
  2801. handle_reprapworld_keypad();
  2802. #endif
  2803. bool encoderPastThreshold = (abs(encoderDiff) >= ENCODER_PULSES_PER_STEP);
  2804. if (encoderPastThreshold || lcd_clicked) {
  2805. if (encoderPastThreshold) {
  2806. int32_t encoderMultiplier = 1;
  2807. #if ENABLED(ENCODER_RATE_MULTIPLIER)
  2808. if (encoderRateMultiplierEnabled) {
  2809. int32_t encoderMovementSteps = abs(encoderDiff) / ENCODER_PULSES_PER_STEP;
  2810. if (lastEncoderMovementMillis != 0) {
  2811. // Note that the rate is always calculated between to passes through the
  2812. // loop and that the abs of the encoderDiff value is tracked.
  2813. float encoderStepRate = (float)(encoderMovementSteps) / ((float)(ms - lastEncoderMovementMillis)) * 1000.0;
  2814. if (encoderStepRate >= ENCODER_100X_STEPS_PER_SEC) encoderMultiplier = 100;
  2815. else if (encoderStepRate >= ENCODER_10X_STEPS_PER_SEC) encoderMultiplier = 10;
  2816. #if ENABLED(ENCODER_RATE_MULTIPLIER_DEBUG)
  2817. SERIAL_ECHO_START;
  2818. SERIAL_ECHOPAIR("Enc Step Rate: ", encoderStepRate);
  2819. SERIAL_ECHOPAIR(" Multiplier: ", encoderMultiplier);
  2820. SERIAL_ECHOPAIR(" ENCODER_10X_STEPS_PER_SEC: ", ENCODER_10X_STEPS_PER_SEC);
  2821. SERIAL_ECHOPAIR(" ENCODER_100X_STEPS_PER_SEC: ", ENCODER_100X_STEPS_PER_SEC);
  2822. SERIAL_EOL;
  2823. #endif //ENCODER_RATE_MULTIPLIER_DEBUG
  2824. }
  2825. lastEncoderMovementMillis = ms;
  2826. } // encoderRateMultiplierEnabled
  2827. #endif //ENCODER_RATE_MULTIPLIER
  2828. encoderPosition += (encoderDiff * encoderMultiplier) / ENCODER_PULSES_PER_STEP;
  2829. encoderDiff = 0;
  2830. }
  2831. return_to_status_ms = ms + LCD_TIMEOUT_TO_STATUS;
  2832. lcdDrawUpdate = LCDVIEW_KEEP_REDRAWING;
  2833. }
  2834. #endif // ULTIPANEL
  2835. // We arrive here every ~100ms when idling often enough.
  2836. // Instead of tracking the changes simply redraw the Info Screen ~1 time a second.
  2837. static int8_t lcd_status_update_delay = 1; // first update one loop delayed
  2838. if (
  2839. #if ENABLED(ULTIPANEL)
  2840. currentScreen == lcd_status_screen &&
  2841. #endif
  2842. !lcd_status_update_delay--
  2843. ) {
  2844. lcd_status_update_delay = 9
  2845. #if ENABLED(DOGLCD)
  2846. + 3
  2847. #endif
  2848. ;
  2849. max_display_update_time--;
  2850. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  2851. }
  2852. // then we want to use 1/2 of the time only.
  2853. uint16_t bbr2 = planner.block_buffer_runtime() >> 1;
  2854. #if ENABLED(DOGLCD)
  2855. if ((lcdDrawUpdate || drawing_screen) && (!bbr2 || (bbr2 > max_display_update_time)))
  2856. #else
  2857. if (lcdDrawUpdate && (!bbr2 || (bbr2 > max_display_update_time)))
  2858. #endif
  2859. {
  2860. #if ENABLED(DOGLCD)
  2861. if (!drawing_screen)
  2862. #endif
  2863. {
  2864. switch (lcdDrawUpdate) {
  2865. case LCDVIEW_CALL_NO_REDRAW:
  2866. lcdDrawUpdate = LCDVIEW_NONE;
  2867. break;
  2868. case LCDVIEW_CLEAR_CALL_REDRAW: // set by handlers, then altered after (rarely occurs here)
  2869. case LCDVIEW_CALL_REDRAW_NEXT: // set by handlers, then altered after (never occurs here?)
  2870. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  2871. case LCDVIEW_REDRAW_NOW: // set above, or by a handler through LCDVIEW_CALL_REDRAW_NEXT
  2872. case LCDVIEW_NONE:
  2873. break;
  2874. } // switch
  2875. }
  2876. #if ENABLED(ULTIPANEL)
  2877. #define CURRENTSCREEN() (*currentScreen)(), lcd_clicked = false
  2878. #else
  2879. #define CURRENTSCREEN() lcd_status_screen()
  2880. #endif
  2881. #if ENABLED(DOGLCD) // Changes due to different driver architecture of the DOGM display
  2882. if (!drawing_screen) {
  2883. u8g.firstPage();
  2884. drawing_screen = 1;
  2885. }
  2886. lcd_setFont(FONT_MENU);
  2887. u8g.setColorIndex(1);
  2888. CURRENTSCREEN();
  2889. if (drawing_screen && (drawing_screen = u8g.nextPage())) {
  2890. NOLESS(max_display_update_time, millis() - ms);
  2891. return;
  2892. }
  2893. #else
  2894. CURRENTSCREEN();
  2895. #endif
  2896. NOLESS(max_display_update_time, millis() - ms);
  2897. }
  2898. #if ENABLED(ULTIPANEL)
  2899. // Return to Status Screen after a timeout
  2900. if (currentScreen == lcd_status_screen || defer_return_to_status)
  2901. return_to_status_ms = ms + LCD_TIMEOUT_TO_STATUS;
  2902. else if (ELAPSED(ms, return_to_status_ms))
  2903. lcd_return_to_status();
  2904. #endif // ULTIPANEL
  2905. #if ENABLED(DOGLCD)
  2906. if (!drawing_screen)
  2907. #endif
  2908. {
  2909. switch (lcdDrawUpdate) {
  2910. case LCDVIEW_CLEAR_CALL_REDRAW:
  2911. lcd_implementation_clear();
  2912. case LCDVIEW_CALL_REDRAW_NEXT:
  2913. lcdDrawUpdate = LCDVIEW_REDRAW_NOW;
  2914. break;
  2915. case LCDVIEW_REDRAW_NOW:
  2916. lcdDrawUpdate = LCDVIEW_NONE;
  2917. break;
  2918. case LCDVIEW_NONE:
  2919. break;
  2920. } // switch
  2921. }
  2922. } // ELAPSED(ms, next_lcd_update_ms)
  2923. }
  2924. void set_utf_strlen(char* s, uint8_t n) {
  2925. uint8_t i = 0, j = 0;
  2926. while (s[i] && (j < n)) {
  2927. #if ENABLED(MAPPER_NON)
  2928. j++;
  2929. #else
  2930. if ((s[i] & 0xC0u) != 0x80u) j++;
  2931. #endif
  2932. i++;
  2933. }
  2934. while (j++ < n) s[i++] = ' ';
  2935. s[i] = '\0';
  2936. }
  2937. void lcd_finishstatus(bool persist=false) {
  2938. set_utf_strlen(lcd_status_message, LCD_WIDTH);
  2939. #if !(ENABLED(LCD_PROGRESS_BAR) && (PROGRESS_MSG_EXPIRE > 0))
  2940. UNUSED(persist);
  2941. #endif
  2942. #if ENABLED(LCD_PROGRESS_BAR)
  2943. progress_bar_ms = millis();
  2944. #if PROGRESS_MSG_EXPIRE > 0
  2945. expire_status_ms = persist ? 0 : progress_bar_ms + PROGRESS_MSG_EXPIRE;
  2946. #endif
  2947. #endif
  2948. lcdDrawUpdate = LCDVIEW_CLEAR_CALL_REDRAW;
  2949. #if ENABLED(FILAMENT_LCD_DISPLAY)
  2950. previous_lcd_status_ms = millis(); //get status message to show up for a while
  2951. #endif
  2952. }
  2953. #if ENABLED(LCD_PROGRESS_BAR) && PROGRESS_MSG_EXPIRE > 0
  2954. void dontExpireStatus() { expire_status_ms = 0; }
  2955. #endif
  2956. bool lcd_hasstatus() { return (lcd_status_message[0] != '\0'); }
  2957. void lcd_setstatus(const char* const message, bool persist) {
  2958. if (lcd_status_message_level > 0) return;
  2959. strncpy(lcd_status_message, message, 3 * (LCD_WIDTH));
  2960. lcd_finishstatus(persist);
  2961. }
  2962. void lcd_setstatuspgm(const char* const message, uint8_t level) {
  2963. if (level < lcd_status_message_level) return;
  2964. lcd_status_message_level = level;
  2965. strncpy_P(lcd_status_message, message, 3 * (LCD_WIDTH));
  2966. lcd_finishstatus(level > 0);
  2967. }
  2968. void status_printf(uint8_t level, const char *status, ...) {
  2969. if (level < lcd_status_message_level) return;
  2970. lcd_status_message_level = level;
  2971. va_list args;
  2972. va_start(args, status);
  2973. vsnprintf_P(lcd_status_message, 3 * (LCD_WIDTH), status, args);
  2974. va_end(args);
  2975. lcd_finishstatus(level > 0);
  2976. }
  2977. void lcd_setalertstatuspgm(const char* const message) {
  2978. lcd_setstatuspgm(message, 1);
  2979. #if ENABLED(ULTIPANEL)
  2980. lcd_return_to_status();
  2981. #endif
  2982. }
  2983. void lcd_reset_alert_level() { lcd_status_message_level = 0; }
  2984. #if HAS_LCD_CONTRAST
  2985. void set_lcd_contrast(const int value) {
  2986. lcd_contrast = constrain(value, LCD_CONTRAST_MIN, LCD_CONTRAST_MAX);
  2987. u8g.setContrast(lcd_contrast);
  2988. }
  2989. #endif
  2990. #if ENABLED(ULTIPANEL)
  2991. /**
  2992. * Setup Rotary Encoder Bit Values (for two pin encoders to indicate movement)
  2993. * These values are independent of which pins are used for EN_A and EN_B indications
  2994. * The rotary encoder part is also independent to the chipset used for the LCD
  2995. */
  2996. #if defined(EN_A) && defined(EN_B)
  2997. #define encrot0 0
  2998. #define encrot1 2
  2999. #define encrot2 3
  3000. #define encrot3 1
  3001. #endif
  3002. #define GET_BUTTON_STATES(DST) \
  3003. uint8_t new_##DST = 0; \
  3004. WRITE(SHIFT_LD, LOW); \
  3005. WRITE(SHIFT_LD, HIGH); \
  3006. for (int8_t i = 0; i < 8; i++) { \
  3007. new_##DST >>= 1; \
  3008. if (READ(SHIFT_OUT)) SBI(new_##DST, 7); \
  3009. WRITE(SHIFT_CLK, HIGH); \
  3010. WRITE(SHIFT_CLK, LOW); \
  3011. } \
  3012. DST = ~new_##DST; //invert it, because a pressed switch produces a logical 0
  3013. /**
  3014. * Read encoder buttons from the hardware registers
  3015. * Warning: This function is called from interrupt context!
  3016. */
  3017. void lcd_buttons_update() {
  3018. millis_t now = millis();
  3019. if (ELAPSED(now, next_button_update_ms)) {
  3020. #if ENABLED(NEWPANEL)
  3021. uint8_t newbutton = 0;
  3022. #if BUTTON_EXISTS(EN1)
  3023. if (BUTTON_PRESSED(EN1)) newbutton |= EN_A;
  3024. #endif
  3025. #if BUTTON_EXISTS(EN2)
  3026. if (BUTTON_PRESSED(EN2)) newbutton |= EN_B;
  3027. #endif
  3028. #if BUTTON_EXISTS(ENC)
  3029. if (BUTTON_PRESSED(ENC)) newbutton |= EN_C;
  3030. #endif
  3031. #if LCD_HAS_DIRECTIONAL_BUTTONS
  3032. // Manage directional buttons
  3033. #if ENABLED(REVERSE_MENU_DIRECTION)
  3034. #define _ENCODER_UD_STEPS (ENCODER_STEPS_PER_MENU_ITEM * encoderDirection)
  3035. #else
  3036. #define _ENCODER_UD_STEPS ENCODER_STEPS_PER_MENU_ITEM
  3037. #endif
  3038. #if ENABLED(REVERSE_ENCODER_DIRECTION)
  3039. #define ENCODER_UD_STEPS _ENCODER_UD_STEPS
  3040. #define ENCODER_LR_PULSES ENCODER_PULSES_PER_STEP
  3041. #else
  3042. #define ENCODER_UD_STEPS -(_ENCODER_UD_STEPS)
  3043. #define ENCODER_LR_PULSES -(ENCODER_PULSES_PER_STEP)
  3044. #endif
  3045. if (false) {
  3046. // for the else-ifs below
  3047. }
  3048. #if BUTTON_EXISTS(UP)
  3049. else if (BUTTON_PRESSED(UP)) {
  3050. encoderDiff = -(ENCODER_UD_STEPS);
  3051. next_button_update_ms = now + 300;
  3052. }
  3053. #endif
  3054. #if BUTTON_EXISTS(DWN)
  3055. else if (BUTTON_PRESSED(DWN)) {
  3056. encoderDiff = ENCODER_UD_STEPS;
  3057. next_button_update_ms = now + 300;
  3058. }
  3059. #endif
  3060. #if BUTTON_EXISTS(LFT)
  3061. else if (BUTTON_PRESSED(LFT)) {
  3062. encoderDiff = -(ENCODER_LR_PULSES);
  3063. next_button_update_ms = now + 300;
  3064. }
  3065. #endif
  3066. #if BUTTON_EXISTS(RT)
  3067. else if (BUTTON_PRESSED(RT)) {
  3068. encoderDiff = ENCODER_LR_PULSES;
  3069. next_button_update_ms = now + 300;
  3070. }
  3071. #endif
  3072. #endif // LCD_HAS_DIRECTIONAL_BUTTONS
  3073. buttons = newbutton;
  3074. #if ENABLED(LCD_HAS_SLOW_BUTTONS)
  3075. buttons |= slow_buttons;
  3076. #endif
  3077. #if ENABLED(REPRAPWORLD_KEYPAD)
  3078. GET_BUTTON_STATES(buttons_reprapworld_keypad);
  3079. #endif
  3080. #else
  3081. GET_BUTTON_STATES(buttons);
  3082. #endif //!NEWPANEL
  3083. } // next_button_update_ms
  3084. // Manage encoder rotation
  3085. #if ENABLED(REVERSE_MENU_DIRECTION) && ENABLED(REVERSE_ENCODER_DIRECTION)
  3086. #define ENCODER_DIFF_CW (encoderDiff -= encoderDirection)
  3087. #define ENCODER_DIFF_CCW (encoderDiff += encoderDirection)
  3088. #elif ENABLED(REVERSE_MENU_DIRECTION)
  3089. #define ENCODER_DIFF_CW (encoderDiff += encoderDirection)
  3090. #define ENCODER_DIFF_CCW (encoderDiff -= encoderDirection)
  3091. #elif ENABLED(REVERSE_ENCODER_DIRECTION)
  3092. #define ENCODER_DIFF_CW (encoderDiff--)
  3093. #define ENCODER_DIFF_CCW (encoderDiff++)
  3094. #else
  3095. #define ENCODER_DIFF_CW (encoderDiff++)
  3096. #define ENCODER_DIFF_CCW (encoderDiff--)
  3097. #endif
  3098. #define ENCODER_SPIN(_E1, _E2) switch (lastEncoderBits) { case _E1: ENCODER_DIFF_CW; break; case _E2: ENCODER_DIFF_CCW; }
  3099. uint8_t enc = 0;
  3100. if (buttons & EN_A) enc |= B01;
  3101. if (buttons & EN_B) enc |= B10;
  3102. if (enc != lastEncoderBits) {
  3103. switch (enc) {
  3104. case encrot0: ENCODER_SPIN(encrot3, encrot1); break;
  3105. case encrot1: ENCODER_SPIN(encrot0, encrot2); break;
  3106. case encrot2: ENCODER_SPIN(encrot1, encrot3); break;
  3107. case encrot3: ENCODER_SPIN(encrot2, encrot0); break;
  3108. }
  3109. }
  3110. lastEncoderBits = enc;
  3111. }
  3112. #if (ENABLED(LCD_I2C_TYPE_MCP23017) || ENABLED(LCD_I2C_TYPE_MCP23008)) && ENABLED(DETECT_DEVICE)
  3113. bool lcd_detected() { return lcd.LcdDetected() == 1; }
  3114. #else
  3115. bool lcd_detected() { return true; }
  3116. #endif
  3117. #endif // ULTIPANEL
  3118. #endif // ULTRA_LCD