My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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ultralcd.cpp 43KB

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  1. #include "temperature.h"
  2. #include "ultralcd.h"
  3. #ifdef ULTRA_LCD
  4. #include "Marlin.h"
  5. #include "language.h"
  6. #include "cardreader.h"
  7. #include "temperature.h"
  8. #include "stepper.h"
  9. #include "ConfigurationStore.h"
  10. int8_t encoderDiff; /* encoderDiff is updated from interrupt context and added to encoderPosition every LCD update */
  11. /* Configuration settings */
  12. int plaPreheatHotendTemp;
  13. int plaPreheatHPBTemp;
  14. int plaPreheatFanSpeed;
  15. int absPreheatHotendTemp;
  16. int absPreheatHPBTemp;
  17. int absPreheatFanSpeed;
  18. static float manual_feedrate[] = MANUAL_FEEDRATE;
  19. /* !Configuration settings */
  20. //Function pointer to menu functions.
  21. typedef void (*menuFunc_t)();
  22. uint8_t lcd_status_message_level;
  23. char lcd_status_message[LCD_WIDTH+1] = WELCOME_MSG;
  24. #ifdef DOGLCD
  25. #include "dogm_lcd_implementation.h"
  26. #else
  27. #include "ultralcd_implementation_hitachi_HD44780.h"
  28. #endif
  29. /** forward declerations **/
  30. void copy_and_scalePID_i();
  31. void copy_and_scalePID_d();
  32. /* Different menus */
  33. static void lcd_status_screen();
  34. #ifdef ULTIPANEL
  35. extern bool powersupply;
  36. static void lcd_main_menu();
  37. static void lcd_tune_menu();
  38. static void lcd_prepare_menu();
  39. static void lcd_move_menu();
  40. static void lcd_control_menu();
  41. static void lcd_control_temperature_menu();
  42. static void lcd_control_temperature_preheat_pla_settings_menu();
  43. static void lcd_control_temperature_preheat_abs_settings_menu();
  44. static void lcd_control_motion_menu();
  45. #ifdef DOGLCD
  46. static void lcd_set_contrast();
  47. #endif
  48. static void lcd_control_retract_menu();
  49. static void lcd_sdcard_menu();
  50. static void lcd_quick_feedback();//Cause an LCD refresh, and give the user visual or audiable feedback that something has happend
  51. /* Different types of actions that can be used in menuitems. */
  52. static void menu_action_back(menuFunc_t data);
  53. static void menu_action_submenu(menuFunc_t data);
  54. static void menu_action_gcode(const char* pgcode);
  55. static void menu_action_function(menuFunc_t data);
  56. static void menu_action_sdfile(const char* filename, char* longFilename);
  57. static void menu_action_sddirectory(const char* filename, char* longFilename);
  58. static void menu_action_setting_edit_bool(const char* pstr, bool* ptr);
  59. static void menu_action_setting_edit_int3(const char* pstr, int* ptr, int minValue, int maxValue);
  60. static void menu_action_setting_edit_float3(const char* pstr, float* ptr, float minValue, float maxValue);
  61. static void menu_action_setting_edit_float32(const char* pstr, float* ptr, float minValue, float maxValue);
  62. static void menu_action_setting_edit_float5(const char* pstr, float* ptr, float minValue, float maxValue);
  63. static void menu_action_setting_edit_float51(const char* pstr, float* ptr, float minValue, float maxValue);
  64. static void menu_action_setting_edit_float52(const char* pstr, float* ptr, float minValue, float maxValue);
  65. static void menu_action_setting_edit_long5(const char* pstr, unsigned long* ptr, unsigned long minValue, unsigned long maxValue);
  66. static void menu_action_setting_edit_callback_bool(const char* pstr, bool* ptr, menuFunc_t callbackFunc);
  67. static void menu_action_setting_edit_callback_int3(const char* pstr, int* ptr, int minValue, int maxValue, menuFunc_t callbackFunc);
  68. static void menu_action_setting_edit_callback_float3(const char* pstr, float* ptr, float minValue, float maxValue, menuFunc_t callbackFunc);
  69. static void menu_action_setting_edit_callback_float32(const char* pstr, float* ptr, float minValue, float maxValue, menuFunc_t callbackFunc);
  70. static void menu_action_setting_edit_callback_float5(const char* pstr, float* ptr, float minValue, float maxValue, menuFunc_t callbackFunc);
  71. static void menu_action_setting_edit_callback_float51(const char* pstr, float* ptr, float minValue, float maxValue, menuFunc_t callbackFunc);
  72. static void menu_action_setting_edit_callback_float52(const char* pstr, float* ptr, float minValue, float maxValue, menuFunc_t callbackFunc);
  73. static void menu_action_setting_edit_callback_long5(const char* pstr, unsigned long* ptr, unsigned long minValue, unsigned long maxValue, menuFunc_t callbackFunc);
  74. #define ENCODER_FEEDRATE_DEADZONE 10
  75. #if !defined(LCD_I2C_VIKI)
  76. #define ENCODER_STEPS_PER_MENU_ITEM 5
  77. #ifndef ENCODER_PULSES_PER_STEP
  78. #define ENCODER_PULSES_PER_STEP 1
  79. #endif
  80. #else
  81. #define ENCODER_STEPS_PER_MENU_ITEM 2 // VIKI LCD rotary encoder uses a different number of steps per rotation
  82. #ifndef ENCODER_PULSES_PER_STEP
  83. #define ENCODER_PULSES_PER_STEP 1
  84. #endif
  85. #endif
  86. /* Helper macros for menus */
  87. #define START_MENU() do { \
  88. if (encoderPosition > 0x8000) encoderPosition = 0; \
  89. if (encoderPosition / ENCODER_STEPS_PER_MENU_ITEM < currentMenuViewOffset) currentMenuViewOffset = encoderPosition / ENCODER_STEPS_PER_MENU_ITEM;\
  90. uint8_t _lineNr = currentMenuViewOffset, _menuItemNr; \
  91. for(uint8_t _drawLineNr = 0; _drawLineNr < LCD_HEIGHT; _drawLineNr++, _lineNr++) { \
  92. _menuItemNr = 0;
  93. #define MENU_ITEM(type, label, args...) do { \
  94. if (_menuItemNr == _lineNr) { \
  95. if (lcdDrawUpdate) { \
  96. const char* _label_pstr = PSTR(label); \
  97. if ((encoderPosition / ENCODER_STEPS_PER_MENU_ITEM) == _menuItemNr) { \
  98. lcd_implementation_drawmenu_ ## type ## _selected (_drawLineNr, _label_pstr , ## args ); \
  99. }else{\
  100. lcd_implementation_drawmenu_ ## type (_drawLineNr, _label_pstr , ## args ); \
  101. }\
  102. }\
  103. if (wasClicked && (encoderPosition / ENCODER_STEPS_PER_MENU_ITEM) == _menuItemNr) {\
  104. lcd_quick_feedback(); \
  105. menu_action_ ## type ( args ); \
  106. return;\
  107. }\
  108. }\
  109. _menuItemNr++;\
  110. } while(0)
  111. #define MENU_ITEM_DUMMY() do { _menuItemNr++; } while(0)
  112. #define MENU_ITEM_EDIT(type, label, args...) MENU_ITEM(setting_edit_ ## type, label, PSTR(label) , ## args )
  113. #define MENU_ITEM_EDIT_CALLBACK(type, label, args...) MENU_ITEM(setting_edit_callback_ ## type, label, PSTR(label) , ## args )
  114. #define END_MENU() \
  115. if (encoderPosition / ENCODER_STEPS_PER_MENU_ITEM >= _menuItemNr) encoderPosition = _menuItemNr * ENCODER_STEPS_PER_MENU_ITEM - 1; \
  116. if ((uint8_t)(encoderPosition / ENCODER_STEPS_PER_MENU_ITEM) >= currentMenuViewOffset + LCD_HEIGHT) { currentMenuViewOffset = (encoderPosition / ENCODER_STEPS_PER_MENU_ITEM) - LCD_HEIGHT + 1; lcdDrawUpdate = 1; _lineNr = currentMenuViewOffset - 1; _drawLineNr = -1; } \
  117. } } while(0)
  118. /** Used variables to keep track of the menu */
  119. #ifndef REPRAPWORLD_KEYPAD
  120. volatile uint8_t buttons;//Contains the bits of the currently pressed buttons.
  121. #else
  122. volatile uint8_t buttons_reprapworld_keypad; // to store the reprapworld_keypad shiftregister values
  123. #endif
  124. uint8_t currentMenuViewOffset; /* scroll offset in the current menu */
  125. uint32_t blocking_enc;
  126. uint8_t lastEncoderBits;
  127. uint32_t encoderPosition;
  128. bool wasClicked;
  129. #if (SDCARDDETECT > 0)
  130. bool lcd_oldcardstatus;
  131. #endif
  132. #endif//ULTIPANEL
  133. menuFunc_t currentMenu = lcd_status_screen; /* function pointer to the currently active menu */
  134. uint32_t lcd_next_update_millis;
  135. uint8_t lcd_status_update_delay;
  136. uint8_t lcdDrawUpdate = 2; /* Set to none-zero when the LCD needs to draw, decreased after every draw. Set to 2 in LCD routines so the LCD gets atleast 1 full redraw (first redraw is partial) */
  137. //prevMenu and prevEncoderPosition are used to store the previous menu location when editing settings.
  138. menuFunc_t prevMenu = NULL;
  139. uint16_t prevEncoderPosition;
  140. //Variables used when editing values.
  141. const char* editLabel;
  142. void* editValue;
  143. int32_t minEditValue, maxEditValue;
  144. menuFunc_t callbackFunc;
  145. // placeholders for Ki and Kd edits
  146. float raw_Ki, raw_Kd;
  147. /* Main status screen. It's up to the implementation specific part to show what is needed. As this is very display dependend */
  148. static void lcd_status_screen()
  149. {
  150. if (lcd_status_update_delay)
  151. lcd_status_update_delay--;
  152. else
  153. lcdDrawUpdate = 1;
  154. if (lcdDrawUpdate)
  155. {
  156. lcd_implementation_status_screen();
  157. lcd_status_update_delay = 10; /* redraw the main screen every second. This is easier then trying keep track of all things that change on the screen */
  158. }
  159. #ifdef ULTIPANEL
  160. if (LCD_CLICKED)
  161. {
  162. currentMenu = lcd_main_menu;
  163. encoderPosition = 0;
  164. lcd_quick_feedback();
  165. }
  166. // Dead zone at 100% feedrate
  167. if ((feedmultiply < 100 && (feedmultiply + int(encoderPosition)) > 100) ||
  168. (feedmultiply > 100 && (feedmultiply + int(encoderPosition)) < 100))
  169. {
  170. encoderPosition = 0;
  171. feedmultiply = 100;
  172. }
  173. if (feedmultiply == 100 && int(encoderPosition) > ENCODER_FEEDRATE_DEADZONE)
  174. {
  175. feedmultiply += int(encoderPosition) - ENCODER_FEEDRATE_DEADZONE;
  176. encoderPosition = 0;
  177. }
  178. else if (feedmultiply == 100 && int(encoderPosition) < -ENCODER_FEEDRATE_DEADZONE)
  179. {
  180. feedmultiply += int(encoderPosition) + ENCODER_FEEDRATE_DEADZONE;
  181. encoderPosition = 0;
  182. }
  183. else if (feedmultiply != 100)
  184. {
  185. feedmultiply += int(encoderPosition);
  186. encoderPosition = 0;
  187. }
  188. if (feedmultiply < 10)
  189. feedmultiply = 10;
  190. if (feedmultiply > 999)
  191. feedmultiply = 999;
  192. #endif//ULTIPANEL
  193. }
  194. #ifdef ULTIPANEL
  195. static void lcd_return_to_status()
  196. {
  197. encoderPosition = 0;
  198. currentMenu = lcd_status_screen;
  199. }
  200. static void lcd_sdcard_pause()
  201. {
  202. card.pauseSDPrint();
  203. }
  204. static void lcd_sdcard_resume()
  205. {
  206. card.startFileprint();
  207. }
  208. static void lcd_sdcard_stop()
  209. {
  210. card.sdprinting = false;
  211. card.closefile();
  212. quickStop();
  213. if(SD_FINISHED_STEPPERRELEASE)
  214. {
  215. enquecommand_P(PSTR(SD_FINISHED_RELEASECOMMAND));
  216. }
  217. autotempShutdown();
  218. }
  219. /* Menu implementation */
  220. static void lcd_main_menu()
  221. {
  222. START_MENU();
  223. MENU_ITEM(back, MSG_WATCH, lcd_status_screen);
  224. if (movesplanned() || IS_SD_PRINTING)
  225. {
  226. MENU_ITEM(submenu, MSG_TUNE, lcd_tune_menu);
  227. }else{
  228. MENU_ITEM(submenu, MSG_PREPARE, lcd_prepare_menu);
  229. }
  230. MENU_ITEM(submenu, MSG_CONTROL, lcd_control_menu);
  231. #ifdef SDSUPPORT
  232. if (card.cardOK)
  233. {
  234. if (card.isFileOpen())
  235. {
  236. if (card.sdprinting)
  237. MENU_ITEM(function, MSG_PAUSE_PRINT, lcd_sdcard_pause);
  238. else
  239. MENU_ITEM(function, MSG_RESUME_PRINT, lcd_sdcard_resume);
  240. MENU_ITEM(function, MSG_STOP_PRINT, lcd_sdcard_stop);
  241. }else{
  242. MENU_ITEM(submenu, MSG_CARD_MENU, lcd_sdcard_menu);
  243. #if SDCARDDETECT < 1
  244. MENU_ITEM(gcode, MSG_CNG_SDCARD, PSTR("M21")); // SD-card changed by user
  245. #endif
  246. }
  247. }else{
  248. MENU_ITEM(submenu, MSG_NO_CARD, lcd_sdcard_menu);
  249. #if SDCARDDETECT < 1
  250. MENU_ITEM(gcode, MSG_INIT_SDCARD, PSTR("M21")); // Manually initialize the SD-card via user interface
  251. #endif
  252. }
  253. #endif
  254. END_MENU();
  255. }
  256. #ifdef SDSUPPORT
  257. static void lcd_autostart_sd()
  258. {
  259. card.lastnr=0;
  260. card.setroot();
  261. card.checkautostart(true);
  262. }
  263. #endif
  264. void lcd_preheat_pla()
  265. {
  266. setTargetHotend0(plaPreheatHotendTemp);
  267. setTargetHotend1(plaPreheatHotendTemp);
  268. setTargetHotend2(plaPreheatHotendTemp);
  269. setTargetBed(plaPreheatHPBTemp);
  270. fanSpeed = plaPreheatFanSpeed;
  271. lcd_return_to_status();
  272. setWatch(); // heater sanity check timer
  273. }
  274. void lcd_preheat_abs()
  275. {
  276. setTargetHotend0(absPreheatHotendTemp);
  277. setTargetHotend1(absPreheatHotendTemp);
  278. setTargetHotend2(absPreheatHotendTemp);
  279. setTargetBed(absPreheatHPBTemp);
  280. fanSpeed = absPreheatFanSpeed;
  281. lcd_return_to_status();
  282. setWatch(); // heater sanity check timer
  283. }
  284. static void lcd_cooldown()
  285. {
  286. setTargetHotend0(0);
  287. setTargetHotend1(0);
  288. setTargetHotend2(0);
  289. setTargetBed(0);
  290. lcd_return_to_status();
  291. }
  292. #ifdef BABYSTEPPING
  293. static void lcd_babystep_x()
  294. {
  295. if (encoderPosition != 0)
  296. {
  297. babystepsTodo[X_AXIS]+=(int)encoderPosition;
  298. encoderPosition=0;
  299. lcdDrawUpdate = 1;
  300. }
  301. if (lcdDrawUpdate)
  302. {
  303. lcd_implementation_drawedit(PSTR("Babystepping X"),"");
  304. }
  305. if (LCD_CLICKED)
  306. {
  307. lcd_quick_feedback();
  308. currentMenu = lcd_tune_menu;
  309. encoderPosition = 0;
  310. }
  311. }
  312. static void lcd_babystep_y()
  313. {
  314. if (encoderPosition != 0)
  315. {
  316. babystepsTodo[Y_AXIS]+=(int)encoderPosition;
  317. encoderPosition=0;
  318. lcdDrawUpdate = 1;
  319. }
  320. if (lcdDrawUpdate)
  321. {
  322. lcd_implementation_drawedit(PSTR("Babystepping Y"),"");
  323. }
  324. if (LCD_CLICKED)
  325. {
  326. lcd_quick_feedback();
  327. currentMenu = lcd_tune_menu;
  328. encoderPosition = 0;
  329. }
  330. }
  331. static void lcd_babystep_z()
  332. {
  333. if (encoderPosition != 0)
  334. {
  335. babystepsTodo[Z_AXIS]+=(int)encoderPosition;
  336. encoderPosition=0;
  337. lcdDrawUpdate = 1;
  338. }
  339. if (lcdDrawUpdate)
  340. {
  341. lcd_implementation_drawedit(PSTR("Babystepping Z"),"");
  342. }
  343. if (LCD_CLICKED)
  344. {
  345. lcd_quick_feedback();
  346. currentMenu = lcd_tune_menu;
  347. encoderPosition = 0;
  348. }
  349. }
  350. #endif //BABYSTEPPING
  351. static void lcd_tune_menu()
  352. {
  353. START_MENU();
  354. MENU_ITEM(back, MSG_MAIN, lcd_main_menu);
  355. MENU_ITEM_EDIT(int3, MSG_SPEED, &feedmultiply, 10, 999);
  356. MENU_ITEM_EDIT(int3, MSG_NOZZLE, &target_temperature[0], 0, HEATER_0_MAXTEMP - 15);
  357. #if TEMP_SENSOR_1 != 0
  358. MENU_ITEM_EDIT(int3, MSG_NOZZLE1, &target_temperature[1], 0, HEATER_1_MAXTEMP - 15);
  359. #endif
  360. #if TEMP_SENSOR_2 != 0
  361. MENU_ITEM_EDIT(int3, MSG_NOZZLE2, &target_temperature[2], 0, HEATER_2_MAXTEMP - 15);
  362. #endif
  363. #if TEMP_SENSOR_BED != 0
  364. MENU_ITEM_EDIT(int3, MSG_BED, &target_temperature_bed, 0, BED_MAXTEMP - 15);
  365. #endif
  366. MENU_ITEM_EDIT(int3, MSG_FAN_SPEED, &fanSpeed, 0, 255);
  367. MENU_ITEM_EDIT(int3, MSG_FLOW, &extrudemultiply, 10, 999);
  368. #ifdef BABYSTEPPING
  369. #ifdef BABYSTEP_XY
  370. MENU_ITEM(submenu, "Babystep X", lcd_babystep_x);
  371. MENU_ITEM(submenu, "Babystep Y", lcd_babystep_y);
  372. #endif //BABYSTEP_XY
  373. MENU_ITEM(submenu, "Babystep Z", lcd_babystep_z);
  374. #endif
  375. #ifdef FILAMENTCHANGEENABLE
  376. MENU_ITEM(gcode, MSG_FILAMENTCHANGE, PSTR("M600"));
  377. #endif
  378. END_MENU();
  379. }
  380. static void lcd_prepare_menu()
  381. {
  382. START_MENU();
  383. MENU_ITEM(back, MSG_MAIN, lcd_main_menu);
  384. #ifdef SDSUPPORT
  385. //MENU_ITEM(function, MSG_AUTOSTART, lcd_autostart_sd);
  386. #endif
  387. MENU_ITEM(gcode, MSG_DISABLE_STEPPERS, PSTR("M84"));
  388. MENU_ITEM(gcode, MSG_AUTO_HOME, PSTR("G28"));
  389. //MENU_ITEM(gcode, MSG_SET_ORIGIN, PSTR("G92 X0 Y0 Z0"));
  390. MENU_ITEM(function, MSG_PREHEAT_PLA, lcd_preheat_pla);
  391. MENU_ITEM(function, MSG_PREHEAT_ABS, lcd_preheat_abs);
  392. MENU_ITEM(function, MSG_COOLDOWN, lcd_cooldown);
  393. #if PS_ON_PIN > -1
  394. if (powersupply)
  395. {
  396. MENU_ITEM(gcode, MSG_SWITCH_PS_OFF, PSTR("M81"));
  397. }else{
  398. MENU_ITEM(gcode, MSG_SWITCH_PS_ON, PSTR("M80"));
  399. }
  400. #endif
  401. MENU_ITEM(submenu, MSG_MOVE_AXIS, lcd_move_menu);
  402. END_MENU();
  403. }
  404. float move_menu_scale;
  405. static void lcd_move_menu_axis();
  406. static void lcd_move_x()
  407. {
  408. if (encoderPosition != 0)
  409. {
  410. current_position[X_AXIS] += float((int)encoderPosition) * move_menu_scale;
  411. if (min_software_endstops && current_position[X_AXIS] < X_MIN_POS)
  412. current_position[X_AXIS] = X_MIN_POS;
  413. if (max_software_endstops && current_position[X_AXIS] > X_MAX_POS)
  414. current_position[X_AXIS] = X_MAX_POS;
  415. encoderPosition = 0;
  416. #ifdef DELTA
  417. calculate_delta(current_position);
  418. plan_buffer_line(delta[X_AXIS], delta[Y_AXIS], delta[Z_AXIS], current_position[E_AXIS], manual_feedrate[X_AXIS]/60, active_extruder);
  419. #else
  420. plan_buffer_line(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS], manual_feedrate[X_AXIS]/60, active_extruder);
  421. #endif
  422. lcdDrawUpdate = 1;
  423. }
  424. if (lcdDrawUpdate)
  425. {
  426. lcd_implementation_drawedit(PSTR("X"), ftostr31(current_position[X_AXIS]));
  427. }
  428. if (LCD_CLICKED)
  429. {
  430. lcd_quick_feedback();
  431. currentMenu = lcd_move_menu_axis;
  432. encoderPosition = 0;
  433. }
  434. }
  435. static void lcd_move_y()
  436. {
  437. if (encoderPosition != 0)
  438. {
  439. current_position[Y_AXIS] += float((int)encoderPosition) * move_menu_scale;
  440. if (min_software_endstops && current_position[Y_AXIS] < Y_MIN_POS)
  441. current_position[Y_AXIS] = Y_MIN_POS;
  442. if (max_software_endstops && current_position[Y_AXIS] > Y_MAX_POS)
  443. current_position[Y_AXIS] = Y_MAX_POS;
  444. encoderPosition = 0;
  445. #ifdef DELTA
  446. calculate_delta(current_position);
  447. plan_buffer_line(delta[X_AXIS], delta[Y_AXIS], delta[Z_AXIS], current_position[E_AXIS], manual_feedrate[Y_AXIS]/60, active_extruder);
  448. #else
  449. plan_buffer_line(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS], manual_feedrate[Y_AXIS]/60, active_extruder);
  450. #endif
  451. lcdDrawUpdate = 1;
  452. }
  453. if (lcdDrawUpdate)
  454. {
  455. lcd_implementation_drawedit(PSTR("Y"), ftostr31(current_position[Y_AXIS]));
  456. }
  457. if (LCD_CLICKED)
  458. {
  459. lcd_quick_feedback();
  460. currentMenu = lcd_move_menu_axis;
  461. encoderPosition = 0;
  462. }
  463. }
  464. static void lcd_move_z()
  465. {
  466. if (encoderPosition != 0)
  467. {
  468. current_position[Z_AXIS] += float((int)encoderPosition) * move_menu_scale;
  469. if (min_software_endstops && current_position[Z_AXIS] < Z_MIN_POS)
  470. current_position[Z_AXIS] = Z_MIN_POS;
  471. if (max_software_endstops && current_position[Z_AXIS] > Z_MAX_POS)
  472. current_position[Z_AXIS] = Z_MAX_POS;
  473. encoderPosition = 0;
  474. #ifdef DELTA
  475. calculate_delta(current_position);
  476. plan_buffer_line(delta[X_AXIS], delta[Y_AXIS], delta[Z_AXIS], current_position[E_AXIS], manual_feedrate[Z_AXIS]/60, active_extruder);
  477. #else
  478. plan_buffer_line(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS], manual_feedrate[Z_AXIS]/60, active_extruder);
  479. #endif
  480. lcdDrawUpdate = 1;
  481. }
  482. if (lcdDrawUpdate)
  483. {
  484. lcd_implementation_drawedit(PSTR("Z"), ftostr31(current_position[Z_AXIS]));
  485. }
  486. if (LCD_CLICKED)
  487. {
  488. lcd_quick_feedback();
  489. currentMenu = lcd_move_menu_axis;
  490. encoderPosition = 0;
  491. }
  492. }
  493. static void lcd_move_e()
  494. {
  495. if (encoderPosition != 0)
  496. {
  497. current_position[E_AXIS] += float((int)encoderPosition) * move_menu_scale;
  498. encoderPosition = 0;
  499. #ifdef DELTA
  500. calculate_delta(current_position);
  501. plan_buffer_line(delta[X_AXIS], delta[Y_AXIS], delta[Z_AXIS], current_position[E_AXIS], manual_feedrate[E_AXIS]/60, active_extruder);
  502. #else
  503. plan_buffer_line(current_position[X_AXIS], current_position[Y_AXIS], current_position[Z_AXIS], current_position[E_AXIS], manual_feedrate[E_AXIS]/60, active_extruder);
  504. #endif
  505. lcdDrawUpdate = 1;
  506. }
  507. if (lcdDrawUpdate)
  508. {
  509. lcd_implementation_drawedit(PSTR("Extruder"), ftostr31(current_position[E_AXIS]));
  510. }
  511. if (LCD_CLICKED)
  512. {
  513. lcd_quick_feedback();
  514. currentMenu = lcd_move_menu_axis;
  515. encoderPosition = 0;
  516. }
  517. }
  518. static void lcd_move_menu_axis()
  519. {
  520. START_MENU();
  521. MENU_ITEM(back, MSG_MOVE_AXIS, lcd_move_menu);
  522. MENU_ITEM(submenu, "Move X", lcd_move_x);
  523. MENU_ITEM(submenu, "Move Y", lcd_move_y);
  524. if (move_menu_scale < 10.0)
  525. {
  526. MENU_ITEM(submenu, "Move Z", lcd_move_z);
  527. MENU_ITEM(submenu, "Extruder", lcd_move_e);
  528. }
  529. END_MENU();
  530. }
  531. static void lcd_move_menu_10mm()
  532. {
  533. move_menu_scale = 10.0;
  534. lcd_move_menu_axis();
  535. }
  536. static void lcd_move_menu_1mm()
  537. {
  538. move_menu_scale = 1.0;
  539. lcd_move_menu_axis();
  540. }
  541. static void lcd_move_menu_01mm()
  542. {
  543. move_menu_scale = 0.1;
  544. lcd_move_menu_axis();
  545. }
  546. static void lcd_move_menu()
  547. {
  548. START_MENU();
  549. MENU_ITEM(back, MSG_PREPARE, lcd_prepare_menu);
  550. MENU_ITEM(submenu, "Move 10mm", lcd_move_menu_10mm);
  551. MENU_ITEM(submenu, "Move 1mm", lcd_move_menu_1mm);
  552. MENU_ITEM(submenu, "Move 0.1mm", lcd_move_menu_01mm);
  553. //TODO:X,Y,Z,E
  554. END_MENU();
  555. }
  556. static void lcd_control_menu()
  557. {
  558. START_MENU();
  559. MENU_ITEM(back, MSG_MAIN, lcd_main_menu);
  560. MENU_ITEM(submenu, MSG_TEMPERATURE, lcd_control_temperature_menu);
  561. MENU_ITEM(submenu, MSG_MOTION, lcd_control_motion_menu);
  562. #ifdef DOGLCD
  563. // MENU_ITEM_EDIT(int3, MSG_CONTRAST, &lcd_contrast, 0, 63);
  564. MENU_ITEM(submenu, MSG_CONTRAST, lcd_set_contrast);
  565. #endif
  566. #ifdef FWRETRACT
  567. MENU_ITEM(submenu, MSG_RETRACT, lcd_control_retract_menu);
  568. #endif
  569. #ifdef EEPROM_SETTINGS
  570. MENU_ITEM(function, MSG_STORE_EPROM, Config_StoreSettings);
  571. MENU_ITEM(function, MSG_LOAD_EPROM, Config_RetrieveSettings);
  572. #endif
  573. MENU_ITEM(function, MSG_RESTORE_FAILSAFE, Config_ResetDefault);
  574. END_MENU();
  575. }
  576. static void lcd_control_temperature_menu()
  577. {
  578. #ifdef PIDTEMP
  579. // set up temp variables - undo the default scaling
  580. raw_Ki = unscalePID_i(Ki);
  581. raw_Kd = unscalePID_d(Kd);
  582. #endif
  583. START_MENU();
  584. MENU_ITEM(back, MSG_CONTROL, lcd_control_menu);
  585. MENU_ITEM_EDIT(int3, MSG_NOZZLE, &target_temperature[0], 0, HEATER_0_MAXTEMP - 15);
  586. #if TEMP_SENSOR_1 != 0
  587. MENU_ITEM_EDIT(int3, MSG_NOZZLE1, &target_temperature[1], 0, HEATER_1_MAXTEMP - 15);
  588. #endif
  589. #if TEMP_SENSOR_2 != 0
  590. MENU_ITEM_EDIT(int3, MSG_NOZZLE2, &target_temperature[2], 0, HEATER_2_MAXTEMP - 15);
  591. #endif
  592. #if TEMP_SENSOR_BED != 0
  593. MENU_ITEM_EDIT(int3, MSG_BED, &target_temperature_bed, 0, BED_MAXTEMP - 15);
  594. #endif
  595. MENU_ITEM_EDIT(int3, MSG_FAN_SPEED, &fanSpeed, 0, 255);
  596. #ifdef AUTOTEMP
  597. MENU_ITEM_EDIT(bool, MSG_AUTOTEMP, &autotemp_enabled);
  598. MENU_ITEM_EDIT(float3, MSG_MIN, &autotemp_min, 0, HEATER_0_MAXTEMP - 15);
  599. MENU_ITEM_EDIT(float3, MSG_MAX, &autotemp_max, 0, HEATER_0_MAXTEMP - 15);
  600. MENU_ITEM_EDIT(float32, MSG_FACTOR, &autotemp_factor, 0.0, 1.0);
  601. #endif
  602. #ifdef PIDTEMP
  603. MENU_ITEM_EDIT(float52, MSG_PID_P, &Kp, 1, 9990);
  604. // i is typically a small value so allows values below 1
  605. MENU_ITEM_EDIT_CALLBACK(float52, MSG_PID_I, &raw_Ki, 0.01, 9990, copy_and_scalePID_i);
  606. MENU_ITEM_EDIT_CALLBACK(float52, MSG_PID_D, &raw_Kd, 1, 9990, copy_and_scalePID_d);
  607. # ifdef PID_ADD_EXTRUSION_RATE
  608. MENU_ITEM_EDIT(float3, MSG_PID_C, &Kc, 1, 9990);
  609. # endif//PID_ADD_EXTRUSION_RATE
  610. #endif//PIDTEMP
  611. MENU_ITEM(submenu, MSG_PREHEAT_PLA_SETTINGS, lcd_control_temperature_preheat_pla_settings_menu);
  612. MENU_ITEM(submenu, MSG_PREHEAT_ABS_SETTINGS, lcd_control_temperature_preheat_abs_settings_menu);
  613. END_MENU();
  614. }
  615. static void lcd_control_temperature_preheat_pla_settings_menu()
  616. {
  617. START_MENU();
  618. MENU_ITEM(back, MSG_TEMPERATURE, lcd_control_temperature_menu);
  619. MENU_ITEM_EDIT(int3, MSG_FAN_SPEED, &plaPreheatFanSpeed, 0, 255);
  620. MENU_ITEM_EDIT(int3, MSG_NOZZLE, &plaPreheatHotendTemp, 0, HEATER_0_MAXTEMP - 15);
  621. #if TEMP_SENSOR_BED != 0
  622. MENU_ITEM_EDIT(int3, MSG_BED, &plaPreheatHPBTemp, 0, BED_MAXTEMP - 15);
  623. #endif
  624. #ifdef EEPROM_SETTINGS
  625. MENU_ITEM(function, MSG_STORE_EPROM, Config_StoreSettings);
  626. #endif
  627. END_MENU();
  628. }
  629. static void lcd_control_temperature_preheat_abs_settings_menu()
  630. {
  631. START_MENU();
  632. MENU_ITEM(back, MSG_TEMPERATURE, lcd_control_temperature_menu);
  633. MENU_ITEM_EDIT(int3, MSG_FAN_SPEED, &absPreheatFanSpeed, 0, 255);
  634. MENU_ITEM_EDIT(int3, MSG_NOZZLE, &absPreheatHotendTemp, 0, HEATER_0_MAXTEMP - 15);
  635. #if TEMP_SENSOR_BED != 0
  636. MENU_ITEM_EDIT(int3, MSG_BED, &absPreheatHPBTemp, 0, BED_MAXTEMP - 15);
  637. #endif
  638. #ifdef EEPROM_SETTINGS
  639. MENU_ITEM(function, MSG_STORE_EPROM, Config_StoreSettings);
  640. #endif
  641. END_MENU();
  642. }
  643. static void lcd_control_motion_menu()
  644. {
  645. START_MENU();
  646. MENU_ITEM(back, MSG_CONTROL, lcd_control_menu);
  647. MENU_ITEM_EDIT(float5, MSG_ACC, &acceleration, 500, 99000);
  648. MENU_ITEM_EDIT(float3, MSG_VXY_JERK, &max_xy_jerk, 1, 990);
  649. MENU_ITEM_EDIT(float52, MSG_VZ_JERK, &max_z_jerk, 0.1, 990);
  650. MENU_ITEM_EDIT(float3, MSG_VE_JERK, &max_e_jerk, 1, 990);
  651. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_X, &max_feedrate[X_AXIS], 1, 999);
  652. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_Y, &max_feedrate[Y_AXIS], 1, 999);
  653. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_Z, &max_feedrate[Z_AXIS], 1, 999);
  654. MENU_ITEM_EDIT(float3, MSG_VMAX MSG_E, &max_feedrate[E_AXIS], 1, 999);
  655. MENU_ITEM_EDIT(float3, MSG_VMIN, &minimumfeedrate, 0, 999);
  656. MENU_ITEM_EDIT(float3, MSG_VTRAV_MIN, &mintravelfeedrate, 0, 999);
  657. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_X, &max_acceleration_units_per_sq_second[X_AXIS], 100, 99000, reset_acceleration_rates);
  658. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_Y, &max_acceleration_units_per_sq_second[Y_AXIS], 100, 99000, reset_acceleration_rates);
  659. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_Z, &max_acceleration_units_per_sq_second[Z_AXIS], 100, 99000, reset_acceleration_rates);
  660. MENU_ITEM_EDIT_CALLBACK(long5, MSG_AMAX MSG_E, &max_acceleration_units_per_sq_second[E_AXIS], 100, 99000, reset_acceleration_rates);
  661. MENU_ITEM_EDIT(float5, MSG_A_RETRACT, &retract_acceleration, 100, 99000);
  662. MENU_ITEM_EDIT(float52, MSG_XSTEPS, &axis_steps_per_unit[X_AXIS], 5, 9999);
  663. MENU_ITEM_EDIT(float52, MSG_YSTEPS, &axis_steps_per_unit[Y_AXIS], 5, 9999);
  664. MENU_ITEM_EDIT(float51, MSG_ZSTEPS, &axis_steps_per_unit[Z_AXIS], 5, 9999);
  665. MENU_ITEM_EDIT(float51, MSG_ESTEPS, &axis_steps_per_unit[E_AXIS], 5, 9999);
  666. #ifdef ABORT_ON_ENDSTOP_HIT_FEATURE_ENABLED
  667. MENU_ITEM_EDIT(bool, "Endstop abort", &abort_on_endstop_hit);
  668. #endif
  669. END_MENU();
  670. }
  671. #ifdef DOGLCD
  672. static void lcd_set_contrast()
  673. {
  674. if (encoderPosition != 0)
  675. {
  676. lcd_contrast -= encoderPosition;
  677. if (lcd_contrast < 0) lcd_contrast = 0;
  678. else if (lcd_contrast > 63) lcd_contrast = 63;
  679. encoderPosition = 0;
  680. lcdDrawUpdate = 1;
  681. u8g.setContrast(lcd_contrast);
  682. }
  683. if (lcdDrawUpdate)
  684. {
  685. lcd_implementation_drawedit(PSTR("Contrast"), itostr2(lcd_contrast));
  686. }
  687. if (LCD_CLICKED)
  688. {
  689. lcd_quick_feedback();
  690. currentMenu = lcd_control_menu;
  691. encoderPosition = 0;
  692. }
  693. }
  694. #endif
  695. #ifdef FWRETRACT
  696. static void lcd_control_retract_menu()
  697. {
  698. START_MENU();
  699. MENU_ITEM(back, MSG_CONTROL, lcd_control_menu);
  700. MENU_ITEM_EDIT(bool, MSG_AUTORETRACT, &autoretract_enabled);
  701. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT, &retract_length, 0, 100);
  702. MENU_ITEM_EDIT(float3, MSG_CONTROL_RETRACTF, &retract_feedrate, 1, 999);
  703. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT_ZLIFT, &retract_zlift, 0, 999);
  704. MENU_ITEM_EDIT(float52, MSG_CONTROL_RETRACT_RECOVER, &retract_recover_length, 0, 100);
  705. MENU_ITEM_EDIT(float3, MSG_CONTROL_RETRACT_RECOVERF, &retract_recover_feedrate, 1, 999);
  706. END_MENU();
  707. }
  708. #endif
  709. #if SDCARDDETECT == -1
  710. static void lcd_sd_refresh()
  711. {
  712. card.initsd();
  713. currentMenuViewOffset = 0;
  714. }
  715. #endif
  716. static void lcd_sd_updir()
  717. {
  718. card.updir();
  719. currentMenuViewOffset = 0;
  720. }
  721. void lcd_sdcard_menu()
  722. {
  723. if (lcdDrawUpdate == 0 && LCD_CLICKED == 0)
  724. return; // nothing to do (so don't thrash the SD card)
  725. uint16_t fileCnt = card.getnrfilenames();
  726. START_MENU();
  727. MENU_ITEM(back, MSG_MAIN, lcd_main_menu);
  728. card.getWorkDirName();
  729. if(card.filename[0]=='/')
  730. {
  731. #if SDCARDDETECT == -1
  732. MENU_ITEM(function, LCD_STR_REFRESH MSG_REFRESH, lcd_sd_refresh);
  733. #endif
  734. }else{
  735. MENU_ITEM(function, LCD_STR_FOLDER "..", lcd_sd_updir);
  736. }
  737. for(uint16_t i=0;i<fileCnt;i++)
  738. {
  739. if (_menuItemNr == _lineNr)
  740. {
  741. card.getfilename(i);
  742. if (card.filenameIsDir)
  743. {
  744. MENU_ITEM(sddirectory, MSG_CARD_MENU, card.filename, card.longFilename);
  745. }else{
  746. MENU_ITEM(sdfile, MSG_CARD_MENU, card.filename, card.longFilename);
  747. }
  748. }else{
  749. MENU_ITEM_DUMMY();
  750. }
  751. }
  752. END_MENU();
  753. }
  754. #define menu_edit_type(_type, _name, _strFunc, scale) \
  755. void menu_edit_ ## _name () \
  756. { \
  757. if ((int32_t)encoderPosition < minEditValue) \
  758. encoderPosition = minEditValue; \
  759. if ((int32_t)encoderPosition > maxEditValue) \
  760. encoderPosition = maxEditValue; \
  761. if (lcdDrawUpdate) \
  762. lcd_implementation_drawedit(editLabel, _strFunc(((_type)encoderPosition) / scale)); \
  763. if (LCD_CLICKED) \
  764. { \
  765. *((_type*)editValue) = ((_type)encoderPosition) / scale; \
  766. lcd_quick_feedback(); \
  767. currentMenu = prevMenu; \
  768. encoderPosition = prevEncoderPosition; \
  769. } \
  770. } \
  771. void menu_edit_callback_ ## _name () \
  772. { \
  773. if ((int32_t)encoderPosition < minEditValue) \
  774. encoderPosition = minEditValue; \
  775. if ((int32_t)encoderPosition > maxEditValue) \
  776. encoderPosition = maxEditValue; \
  777. if (lcdDrawUpdate) \
  778. lcd_implementation_drawedit(editLabel, _strFunc(((_type)encoderPosition) / scale)); \
  779. if (LCD_CLICKED) \
  780. { \
  781. *((_type*)editValue) = ((_type)encoderPosition) / scale; \
  782. lcd_quick_feedback(); \
  783. currentMenu = prevMenu; \
  784. encoderPosition = prevEncoderPosition; \
  785. (*callbackFunc)();\
  786. } \
  787. } \
  788. static void menu_action_setting_edit_ ## _name (const char* pstr, _type* ptr, _type minValue, _type maxValue) \
  789. { \
  790. prevMenu = currentMenu; \
  791. prevEncoderPosition = encoderPosition; \
  792. \
  793. lcdDrawUpdate = 2; \
  794. currentMenu = menu_edit_ ## _name; \
  795. \
  796. editLabel = pstr; \
  797. editValue = ptr; \
  798. minEditValue = minValue * scale; \
  799. maxEditValue = maxValue * scale; \
  800. encoderPosition = (*ptr) * scale; \
  801. }\
  802. static void menu_action_setting_edit_callback_ ## _name (const char* pstr, _type* ptr, _type minValue, _type maxValue, menuFunc_t callback) \
  803. { \
  804. prevMenu = currentMenu; \
  805. prevEncoderPosition = encoderPosition; \
  806. \
  807. lcdDrawUpdate = 2; \
  808. currentMenu = menu_edit_callback_ ## _name; \
  809. \
  810. editLabel = pstr; \
  811. editValue = ptr; \
  812. minEditValue = minValue * scale; \
  813. maxEditValue = maxValue * scale; \
  814. encoderPosition = (*ptr) * scale; \
  815. callbackFunc = callback;\
  816. }
  817. menu_edit_type(int, int3, itostr3, 1)
  818. menu_edit_type(float, float3, ftostr3, 1)
  819. menu_edit_type(float, float32, ftostr32, 100)
  820. menu_edit_type(float, float5, ftostr5, 0.01)
  821. menu_edit_type(float, float51, ftostr51, 10)
  822. menu_edit_type(float, float52, ftostr52, 100)
  823. menu_edit_type(unsigned long, long5, ftostr5, 0.01)
  824. #ifdef REPRAPWORLD_KEYPAD
  825. static void reprapworld_keypad_move_z_up() {
  826. encoderPosition = 1;
  827. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  828. lcd_move_z();
  829. }
  830. static void reprapworld_keypad_move_z_down() {
  831. encoderPosition = -1;
  832. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  833. lcd_move_z();
  834. }
  835. static void reprapworld_keypad_move_x_left() {
  836. encoderPosition = -1;
  837. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  838. lcd_move_x();
  839. }
  840. static void reprapworld_keypad_move_x_right() {
  841. encoderPosition = 1;
  842. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  843. lcd_move_x();
  844. }
  845. static void reprapworld_keypad_move_y_down() {
  846. encoderPosition = 1;
  847. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  848. lcd_move_y();
  849. }
  850. static void reprapworld_keypad_move_y_up() {
  851. encoderPosition = -1;
  852. move_menu_scale = REPRAPWORLD_KEYPAD_MOVE_STEP;
  853. lcd_move_y();
  854. }
  855. static void reprapworld_keypad_move_home() {
  856. enquecommand_P((PSTR("G28"))); // move all axis home
  857. }
  858. #endif
  859. /** End of menus **/
  860. static void lcd_quick_feedback()
  861. {
  862. lcdDrawUpdate = 2;
  863. blocking_enc = millis() + 500;
  864. lcd_implementation_quick_feedback();
  865. }
  866. /** Menu action functions **/
  867. static void menu_action_back(menuFunc_t data)
  868. {
  869. currentMenu = data;
  870. encoderPosition = 0;
  871. }
  872. static void menu_action_submenu(menuFunc_t data)
  873. {
  874. currentMenu = data;
  875. encoderPosition = 0;
  876. }
  877. static void menu_action_gcode(const char* pgcode)
  878. {
  879. enquecommand_P(pgcode);
  880. }
  881. static void menu_action_function(menuFunc_t data)
  882. {
  883. (*data)();
  884. }
  885. static void menu_action_sdfile(const char* filename, char* longFilename)
  886. {
  887. char cmd[30];
  888. char* c;
  889. sprintf_P(cmd, PSTR("M23 %s"), filename);
  890. for(c = &cmd[4]; *c; c++)
  891. *c = tolower(*c);
  892. enquecommand(cmd);
  893. enquecommand_P(PSTR("M24"));
  894. lcd_return_to_status();
  895. }
  896. static void menu_action_sddirectory(const char* filename, char* longFilename)
  897. {
  898. card.chdir(filename);
  899. encoderPosition = 0;
  900. }
  901. static void menu_action_setting_edit_bool(const char* pstr, bool* ptr)
  902. {
  903. *ptr = !(*ptr);
  904. }
  905. #endif//ULTIPANEL
  906. /** LCD API **/
  907. void lcd_init()
  908. {
  909. lcd_implementation_init();
  910. #ifdef NEWPANEL
  911. pinMode(BTN_EN1,INPUT);
  912. pinMode(BTN_EN2,INPUT);
  913. pinMode(SDCARDDETECT,INPUT);
  914. WRITE(BTN_EN1,HIGH);
  915. WRITE(BTN_EN2,HIGH);
  916. #if BTN_ENC > 0
  917. pinMode(BTN_ENC,INPUT);
  918. WRITE(BTN_ENC,HIGH);
  919. #endif
  920. #ifdef REPRAPWORLD_KEYPAD
  921. pinMode(SHIFT_CLK,OUTPUT);
  922. pinMode(SHIFT_LD,OUTPUT);
  923. pinMode(SHIFT_OUT,INPUT);
  924. WRITE(SHIFT_OUT,HIGH);
  925. WRITE(SHIFT_LD,HIGH);
  926. #endif
  927. #else
  928. pinMode(SHIFT_CLK,OUTPUT);
  929. pinMode(SHIFT_LD,OUTPUT);
  930. pinMode(SHIFT_EN,OUTPUT);
  931. pinMode(SHIFT_OUT,INPUT);
  932. WRITE(SHIFT_OUT,HIGH);
  933. WRITE(SHIFT_LD,HIGH);
  934. WRITE(SHIFT_EN,LOW);
  935. #endif//!NEWPANEL
  936. #if (SDCARDDETECT > 0)
  937. WRITE(SDCARDDETECT, HIGH);
  938. lcd_oldcardstatus = IS_SD_INSERTED;
  939. #endif//(SDCARDDETECT > 0)
  940. lcd_buttons_update();
  941. #ifdef ULTIPANEL
  942. encoderDiff = 0;
  943. #endif
  944. }
  945. void lcd_update()
  946. {
  947. static unsigned long timeoutToStatus = 0;
  948. lcd_buttons_update();
  949. #ifdef LCD_HAS_SLOW_BUTTONS
  950. buttons |= lcd_implementation_read_slow_buttons(); // buttons which take too long to read in interrupt context
  951. #endif
  952. #if (SDCARDDETECT > 0)
  953. if((IS_SD_INSERTED != lcd_oldcardstatus))
  954. {
  955. lcdDrawUpdate = 2;
  956. lcd_oldcardstatus = IS_SD_INSERTED;
  957. lcd_implementation_init(); // to maybe revive the lcd if static electricty killed it.
  958. if(lcd_oldcardstatus)
  959. {
  960. card.initsd();
  961. LCD_MESSAGEPGM(MSG_SD_INSERTED);
  962. }
  963. else
  964. {
  965. card.release();
  966. LCD_MESSAGEPGM(MSG_SD_REMOVED);
  967. }
  968. }
  969. #endif//CARDINSERTED
  970. if (lcd_next_update_millis < millis())
  971. {
  972. wasClicked = LCD_CLICKED;
  973. #ifdef ULTIPANEL
  974. #ifdef REPRAPWORLD_KEYPAD
  975. if (REPRAPWORLD_KEYPAD_MOVE_Z_UP) {
  976. reprapworld_keypad_move_z_up();
  977. }
  978. if (REPRAPWORLD_KEYPAD_MOVE_Z_DOWN) {
  979. reprapworld_keypad_move_z_down();
  980. }
  981. if (REPRAPWORLD_KEYPAD_MOVE_X_LEFT) {
  982. reprapworld_keypad_move_x_left();
  983. }
  984. if (REPRAPWORLD_KEYPAD_MOVE_X_RIGHT) {
  985. reprapworld_keypad_move_x_right();
  986. }
  987. if (REPRAPWORLD_KEYPAD_MOVE_Y_DOWN) {
  988. reprapworld_keypad_move_y_down();
  989. }
  990. if (REPRAPWORLD_KEYPAD_MOVE_Y_UP) {
  991. reprapworld_keypad_move_y_up();
  992. }
  993. if (REPRAPWORLD_KEYPAD_MOVE_HOME) {
  994. reprapworld_keypad_move_home();
  995. }
  996. #endif
  997. if (abs(encoderDiff) >= ENCODER_PULSES_PER_STEP)
  998. {
  999. lcdDrawUpdate = 1;
  1000. encoderPosition += encoderDiff / ENCODER_PULSES_PER_STEP;
  1001. encoderDiff = 0;
  1002. timeoutToStatus = millis() + LCD_TIMEOUT_TO_STATUS;
  1003. }
  1004. if (LCD_CLICKED)
  1005. timeoutToStatus = millis() + LCD_TIMEOUT_TO_STATUS;
  1006. #endif//ULTIPANEL
  1007. #ifdef DOGLCD // Changes due to different driver architecture of the DOGM display
  1008. blink++; // Variable for fan animation and alive dot
  1009. u8g.firstPage();
  1010. do
  1011. {
  1012. u8g.setFont(u8g_font_6x10_marlin);
  1013. u8g.setPrintPos(125,0);
  1014. if (blink % 2) u8g.setColorIndex(1); else u8g.setColorIndex(0); // Set color for the alive dot
  1015. u8g.drawPixel(127,63); // draw alive dot
  1016. u8g.setColorIndex(1); // black on white
  1017. (*currentMenu)();
  1018. if (!lcdDrawUpdate) break; // Terminate display update, when nothing new to draw. This must be done before the last dogm.next()
  1019. } while( u8g.nextPage() );
  1020. #else
  1021. (*currentMenu)();
  1022. #endif
  1023. #ifdef LCD_HAS_STATUS_INDICATORS
  1024. lcd_implementation_update_indicators();
  1025. #endif
  1026. #ifdef ULTIPANEL
  1027. if(timeoutToStatus < millis() && currentMenu != lcd_status_screen)
  1028. {
  1029. lcd_return_to_status();
  1030. lcdDrawUpdate = 2;
  1031. }
  1032. #endif//ULTIPANEL
  1033. if (lcdDrawUpdate == 2)
  1034. lcd_implementation_clear();
  1035. if (lcdDrawUpdate)
  1036. lcdDrawUpdate--;
  1037. lcd_next_update_millis = millis() + 100;
  1038. }
  1039. }
  1040. void lcd_setstatus(const char* message)
  1041. {
  1042. if (lcd_status_message_level > 0)
  1043. return;
  1044. strncpy(lcd_status_message, message, LCD_WIDTH);
  1045. lcdDrawUpdate = 2;
  1046. }
  1047. void lcd_setstatuspgm(const char* message)
  1048. {
  1049. if (lcd_status_message_level > 0)
  1050. return;
  1051. strncpy_P(lcd_status_message, message, LCD_WIDTH);
  1052. lcdDrawUpdate = 2;
  1053. }
  1054. void lcd_setalertstatuspgm(const char* message)
  1055. {
  1056. lcd_setstatuspgm(message);
  1057. lcd_status_message_level = 1;
  1058. #ifdef ULTIPANEL
  1059. lcd_return_to_status();
  1060. #endif//ULTIPANEL
  1061. }
  1062. void lcd_reset_alert_level()
  1063. {
  1064. lcd_status_message_level = 0;
  1065. }
  1066. #ifdef DOGLCD
  1067. void lcd_setcontrast(uint8_t value)
  1068. {
  1069. lcd_contrast = value & 63;
  1070. u8g.setContrast(lcd_contrast);
  1071. }
  1072. #endif
  1073. #ifdef ULTIPANEL
  1074. /* Warning: This function is called from interrupt context */
  1075. void lcd_buttons_update()
  1076. {
  1077. #ifdef NEWPANEL
  1078. uint8_t newbutton=0;
  1079. if(READ(BTN_EN1)==0) newbutton|=EN_A;
  1080. if(READ(BTN_EN2)==0) newbutton|=EN_B;
  1081. #if BTN_ENC > 0
  1082. if((blocking_enc<millis()) && (READ(BTN_ENC)==0))
  1083. newbutton |= EN_C;
  1084. #endif
  1085. buttons = newbutton;
  1086. #ifdef REPRAPWORLD_KEYPAD
  1087. // for the reprapworld_keypad
  1088. uint8_t newbutton_reprapworld_keypad=0;
  1089. WRITE(SHIFT_LD,LOW);
  1090. WRITE(SHIFT_LD,HIGH);
  1091. for(int8_t i=0;i<8;i++) {
  1092. newbutton_reprapworld_keypad = newbutton_reprapworld_keypad>>1;
  1093. if(READ(SHIFT_OUT))
  1094. newbutton_reprapworld_keypad|=(1<<7);
  1095. WRITE(SHIFT_CLK,HIGH);
  1096. WRITE(SHIFT_CLK,LOW);
  1097. }
  1098. buttons_reprapworld_keypad=~newbutton_reprapworld_keypad; //invert it, because a pressed switch produces a logical 0
  1099. #endif
  1100. #else //read it from the shift register
  1101. uint8_t newbutton=0;
  1102. WRITE(SHIFT_LD,LOW);
  1103. WRITE(SHIFT_LD,HIGH);
  1104. unsigned char tmp_buttons=0;
  1105. for(int8_t i=0;i<8;i++)
  1106. {
  1107. newbutton = newbutton>>1;
  1108. if(READ(SHIFT_OUT))
  1109. newbutton|=(1<<7);
  1110. WRITE(SHIFT_CLK,HIGH);
  1111. WRITE(SHIFT_CLK,LOW);
  1112. }
  1113. buttons=~newbutton; //invert it, because a pressed switch produces a logical 0
  1114. #endif//!NEWPANEL
  1115. //manage encoder rotation
  1116. uint8_t enc=0;
  1117. if(buttons&EN_A)
  1118. enc|=(1<<0);
  1119. if(buttons&EN_B)
  1120. enc|=(1<<1);
  1121. if(enc != lastEncoderBits)
  1122. {
  1123. switch(enc)
  1124. {
  1125. case encrot0:
  1126. if(lastEncoderBits==encrot3)
  1127. encoderDiff++;
  1128. else if(lastEncoderBits==encrot1)
  1129. encoderDiff--;
  1130. break;
  1131. case encrot1:
  1132. if(lastEncoderBits==encrot0)
  1133. encoderDiff++;
  1134. else if(lastEncoderBits==encrot2)
  1135. encoderDiff--;
  1136. break;
  1137. case encrot2:
  1138. if(lastEncoderBits==encrot1)
  1139. encoderDiff++;
  1140. else if(lastEncoderBits==encrot3)
  1141. encoderDiff--;
  1142. break;
  1143. case encrot3:
  1144. if(lastEncoderBits==encrot2)
  1145. encoderDiff++;
  1146. else if(lastEncoderBits==encrot0)
  1147. encoderDiff--;
  1148. break;
  1149. }
  1150. }
  1151. lastEncoderBits = enc;
  1152. }
  1153. void lcd_buzz(long duration, uint16_t freq)
  1154. {
  1155. #ifdef LCD_USE_I2C_BUZZER
  1156. lcd.buzz(duration,freq);
  1157. #endif
  1158. }
  1159. bool lcd_clicked()
  1160. {
  1161. return LCD_CLICKED;
  1162. }
  1163. #endif//ULTIPANEL
  1164. /********************************/
  1165. /** Float conversion utilities **/
  1166. /********************************/
  1167. // convert float to string with +123.4 format
  1168. char conv[8];
  1169. char *ftostr3(const float &x)
  1170. {
  1171. return itostr3((int)x);
  1172. }
  1173. char *itostr2(const uint8_t &x)
  1174. {
  1175. //sprintf(conv,"%5.1f",x);
  1176. int xx=x;
  1177. conv[0]=(xx/10)%10+'0';
  1178. conv[1]=(xx)%10+'0';
  1179. conv[2]=0;
  1180. return conv;
  1181. }
  1182. // convert float to string with +123.4 format
  1183. char *ftostr31(const float &x)
  1184. {
  1185. int xx=x*10;
  1186. conv[0]=(xx>=0)?'+':'-';
  1187. xx=abs(xx);
  1188. conv[1]=(xx/1000)%10+'0';
  1189. conv[2]=(xx/100)%10+'0';
  1190. conv[3]=(xx/10)%10+'0';
  1191. conv[4]='.';
  1192. conv[5]=(xx)%10+'0';
  1193. conv[6]=0;
  1194. return conv;
  1195. }
  1196. // convert float to string with 123.4 format
  1197. char *ftostr31ns(const float &x)
  1198. {
  1199. int xx=x*10;
  1200. //conv[0]=(xx>=0)?'+':'-';
  1201. xx=abs(xx);
  1202. conv[0]=(xx/1000)%10+'0';
  1203. conv[1]=(xx/100)%10+'0';
  1204. conv[2]=(xx/10)%10+'0';
  1205. conv[3]='.';
  1206. conv[4]=(xx)%10+'0';
  1207. conv[5]=0;
  1208. return conv;
  1209. }
  1210. char *ftostr32(const float &x)
  1211. {
  1212. long xx=x*100;
  1213. if (xx >= 0)
  1214. conv[0]=(xx/10000)%10+'0';
  1215. else
  1216. conv[0]='-';
  1217. xx=abs(xx);
  1218. conv[1]=(xx/1000)%10+'0';
  1219. conv[2]=(xx/100)%10+'0';
  1220. conv[3]='.';
  1221. conv[4]=(xx/10)%10+'0';
  1222. conv[5]=(xx)%10+'0';
  1223. conv[6]=0;
  1224. return conv;
  1225. }
  1226. char *itostr31(const int &xx)
  1227. {
  1228. conv[0]=(xx>=0)?'+':'-';
  1229. conv[1]=(xx/1000)%10+'0';
  1230. conv[2]=(xx/100)%10+'0';
  1231. conv[3]=(xx/10)%10+'0';
  1232. conv[4]='.';
  1233. conv[5]=(xx)%10+'0';
  1234. conv[6]=0;
  1235. return conv;
  1236. }
  1237. char *itostr3(const int &xx)
  1238. {
  1239. if (xx >= 100)
  1240. conv[0]=(xx/100)%10+'0';
  1241. else
  1242. conv[0]=' ';
  1243. if (xx >= 10)
  1244. conv[1]=(xx/10)%10+'0';
  1245. else
  1246. conv[1]=' ';
  1247. conv[2]=(xx)%10+'0';
  1248. conv[3]=0;
  1249. return conv;
  1250. }
  1251. char *itostr3left(const int &xx)
  1252. {
  1253. if (xx >= 100)
  1254. {
  1255. conv[0]=(xx/100)%10+'0';
  1256. conv[1]=(xx/10)%10+'0';
  1257. conv[2]=(xx)%10+'0';
  1258. conv[3]=0;
  1259. }
  1260. else if (xx >= 10)
  1261. {
  1262. conv[0]=(xx/10)%10+'0';
  1263. conv[1]=(xx)%10+'0';
  1264. conv[2]=0;
  1265. }
  1266. else
  1267. {
  1268. conv[0]=(xx)%10+'0';
  1269. conv[1]=0;
  1270. }
  1271. return conv;
  1272. }
  1273. char *itostr4(const int &xx)
  1274. {
  1275. if (xx >= 1000)
  1276. conv[0]=(xx/1000)%10+'0';
  1277. else
  1278. conv[0]=' ';
  1279. if (xx >= 100)
  1280. conv[1]=(xx/100)%10+'0';
  1281. else
  1282. conv[1]=' ';
  1283. if (xx >= 10)
  1284. conv[2]=(xx/10)%10+'0';
  1285. else
  1286. conv[2]=' ';
  1287. conv[3]=(xx)%10+'0';
  1288. conv[4]=0;
  1289. return conv;
  1290. }
  1291. // convert float to string with 12345 format
  1292. char *ftostr5(const float &x)
  1293. {
  1294. long xx=abs(x);
  1295. if (xx >= 10000)
  1296. conv[0]=(xx/10000)%10+'0';
  1297. else
  1298. conv[0]=' ';
  1299. if (xx >= 1000)
  1300. conv[1]=(xx/1000)%10+'0';
  1301. else
  1302. conv[1]=' ';
  1303. if (xx >= 100)
  1304. conv[2]=(xx/100)%10+'0';
  1305. else
  1306. conv[2]=' ';
  1307. if (xx >= 10)
  1308. conv[3]=(xx/10)%10+'0';
  1309. else
  1310. conv[3]=' ';
  1311. conv[4]=(xx)%10+'0';
  1312. conv[5]=0;
  1313. return conv;
  1314. }
  1315. // convert float to string with +1234.5 format
  1316. char *ftostr51(const float &x)
  1317. {
  1318. long xx=x*10;
  1319. conv[0]=(xx>=0)?'+':'-';
  1320. xx=abs(xx);
  1321. conv[1]=(xx/10000)%10+'0';
  1322. conv[2]=(xx/1000)%10+'0';
  1323. conv[3]=(xx/100)%10+'0';
  1324. conv[4]=(xx/10)%10+'0';
  1325. conv[5]='.';
  1326. conv[6]=(xx)%10+'0';
  1327. conv[7]=0;
  1328. return conv;
  1329. }
  1330. // convert float to string with +123.45 format
  1331. char *ftostr52(const float &x)
  1332. {
  1333. long xx=x*100;
  1334. conv[0]=(xx>=0)?'+':'-';
  1335. xx=abs(xx);
  1336. conv[1]=(xx/10000)%10+'0';
  1337. conv[2]=(xx/1000)%10+'0';
  1338. conv[3]=(xx/100)%10+'0';
  1339. conv[4]='.';
  1340. conv[5]=(xx/10)%10+'0';
  1341. conv[6]=(xx)%10+'0';
  1342. conv[7]=0;
  1343. return conv;
  1344. }
  1345. // Callback for after editing PID i value
  1346. // grab the pid i value out of the temp variable; scale it; then update the PID driver
  1347. void copy_and_scalePID_i()
  1348. {
  1349. #ifdef PIDTEMP
  1350. Ki = scalePID_i(raw_Ki);
  1351. updatePID();
  1352. #endif
  1353. }
  1354. // Callback for after editing PID d value
  1355. // grab the pid d value out of the temp variable; scale it; then update the PID driver
  1356. void copy_and_scalePID_d()
  1357. {
  1358. #ifdef PIDTEMP
  1359. Kd = scalePID_d(raw_Kd);
  1360. updatePID();
  1361. #endif
  1362. }
  1363. #endif //ULTRA_LCD