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@ -12,7 +12,7 @@ LiquidCrystal lcd(LCD_PINS_RS, LCD_PINS_ENABLE, LCD_PINS_D4, LCD_PINS_D5,LCD_PIN |
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unsigned long previous_millis_lcd=0; |
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inline int intround(const float &x){return int(0.5+x);} |
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volatile char buttons=0; //the last checked buttons in a bit array. |
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int encoderpos=0; |
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@ -29,13 +29,10 @@ void lcd_status(const char* message) |
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strncpy(messagetext,message,LCD_WIDTH); |
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} |
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void clear() |
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inline void clear() |
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{ |
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//lcd.setCursor(0,0); |
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lcd.clear(); |
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//delay(1); |
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// lcd.begin(LCD_WIDTH,LCD_HEIGHT); |
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//lcd_init(); |
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} |
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long previous_millis_buttons=0; |
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@ -78,47 +75,48 @@ void lcd_init() |
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void beep() |
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{ |
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//return; |
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#ifdef ULTIPANEL |
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pinMode(BEEPER,OUTPUT); |
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for(int i=0;i<20;i++){ |
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WRITE(BEEPER,HIGH); |
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delay(5); |
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WRITE(BEEPER,LOW); |
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delay(5); |
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} |
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#endif |
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#ifdef ULTIPANEL |
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pinMode(BEEPER,OUTPUT); |
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for(int i=0;i<20;i++){ |
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WRITE(BEEPER,HIGH); |
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delay(5); |
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WRITE(BEEPER,LOW); |
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delay(5); |
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} |
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#endif |
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} |
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void beepshort() |
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{ |
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//return; |
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#ifdef ULTIPANEL |
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pinMode(BEEPER,OUTPUT); |
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for(int i=0;i<10;i++){ |
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WRITE(BEEPER,HIGH); |
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delay(3); |
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WRITE(BEEPER,LOW); |
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delay(3); |
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} |
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#endif |
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#ifdef ULTIPANEL |
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pinMode(BEEPER,OUTPUT); |
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for(int i=0;i<10;i++){ |
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WRITE(BEEPER,HIGH); |
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delay(3); |
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WRITE(BEEPER,LOW); |
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delay(3); |
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} |
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#endif |
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} |
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void lcd_status() |
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{ |
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#ifdef ULTIPANEL |
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static uint8_t oldbuttons=0; |
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static long previous_millis_buttons=0; |
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static long previous_lcdinit=0; |
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// buttons_check(); // Done in temperature interrupt |
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//previous_millis_buttons=millis(); |
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if((buttons==oldbuttons) && ((millis() - previous_millis_lcd) < LCD_UPDATE_INTERVAL) ) |
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return; |
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oldbuttons=buttons; |
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#else |
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if(((millis() - previous_millis_lcd) < LCD_UPDATE_INTERVAL) ) |
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return; |
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#endif |
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#ifdef ULTIPANEL |
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static uint8_t oldbuttons=0; |
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static long previous_millis_buttons=0; |
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static long previous_lcdinit=0; |
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// buttons_check(); // Done in temperature interrupt |
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//previous_millis_buttons=millis(); |
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if((buttons==oldbuttons) && ((millis() - previous_millis_lcd) < LCD_UPDATE_INTERVAL) ) |
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return; |
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oldbuttons=buttons; |
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#else |
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if(((millis() - previous_millis_lcd) < LCD_UPDATE_INTERVAL) ) |
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return; |
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#endif |
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previous_millis_lcd=millis(); |
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menu.update(); |
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@ -161,8 +159,7 @@ void buttons_check() |
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if((blocking<millis()) &&(READ(BTN_ENC)==0)) |
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newbutton|=EN_C; |
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buttons=newbutton; |
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#else |
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//read it from the shift register |
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#else //read it from the shift register |
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uint8_t newbutton=0; |
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WRITE(SHIFT_LD,LOW); |
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WRITE(SHIFT_LD,HIGH); |
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@ -238,8 +235,8 @@ extern volatile bool feedmultiplychanged; |
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void MainMenu::showStatus() |
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{ |
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#if LCD_HEIGHT==4 |
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static int oldcurrentraw=-1; |
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static int oldtargetraw=-1; |
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static int olddegHotEnd0=-1; |
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static int oldtargetHotEnd0=-1; |
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//force_lcd_update=true; |
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if(force_lcd_update||feedmultiplychanged) //initial display of content |
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{ |
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@ -247,38 +244,41 @@ void MainMenu::showStatus() |
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encoderpos=feedmultiply; |
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clear(); |
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lcd.setCursor(0,0);lcd.print("\002123/567\001 "); |
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#if defined BED_USES_THERMISTOR || defined BED_USES_AD595 |
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lcd.setCursor(10,0);lcd.print("B123/567\001 "); |
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#endif |
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#if defined BED_USES_THERMISTOR || defined BED_USES_AD595 |
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lcd.setCursor(10,0);lcd.print("B123/567\001 "); |
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#endif |
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} |
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if((abs(current_raw[TEMPSENSOR_HOTEND_0]-oldcurrentraw)>3)||force_lcd_update) |
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int tHotEnd0=intround(degHotend0()); |
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if((abs(tHotEnd0-olddegHotEnd0)>1)||force_lcd_update) //>1 because otherwise the lcd is refreshed to often. |
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{ |
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lcd.setCursor(1,0); |
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lcd.print(ftostr3(analog2temp(current_raw[TEMPSENSOR_HOTEND_0]))); |
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oldcurrentraw=current_raw[TEMPSENSOR_HOTEND_0]; |
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lcd.print(ftostr3(tHotEnd0)); |
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olddegHotEnd0=tHotEnd0; |
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} |
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if((target_raw[TEMPSENSOR_HOTEND_0]!=oldtargetraw)||force_lcd_update) |
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int ttHotEnd0=intround(degTargetHotend0()); |
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if((ttHotEnd0!=oldtargetHotEnd0)||force_lcd_update) |
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{ |
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lcd.setCursor(5,0); |
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lcd.print(ftostr3(analog2temp(target_raw[TEMPSENSOR_HOTEND_0]))); |
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oldtargetraw=target_raw[TEMPSENSOR_HOTEND_0]; |
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lcd.print(ftostr3(ttHotEnd0)); |
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oldtargetHotEnd0=ttHotEnd0; |
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} |
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#if defined BED_USES_THERMISTOR || defined BED_USES_AD595 |
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static int oldcurrentbedraw=-1; |
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static int oldtargetbedraw=-1; |
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if((current_bed_raw!=oldcurrentbedraw)||force_lcd_update) |
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static int oldtBed=-1; |
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static int oldtargetBed=-1; |
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int tBed=intround(degBed()); |
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if((tBed!=oldtBed)||force_lcd_update) |
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{ |
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lcd.setCursor(1,0); |
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lcd.print(ftostr3(analog2temp(current_bed_raw))); |
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oldcurrentraw=current_raw[TEMPSENSOR_BED]; |
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lcd.print(ftostr3(tBed)); |
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olddegHotEnd0=tBed; |
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} |
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if((target_bed_raw!=oldtargebedtraw)||force_lcd_update) |
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int targetBed=intround(degTargetBed()); |
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if((targetBed!=oldtargetBed)||force_lcd_update) |
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{ |
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lcd.setCursor(5,0); |
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lcd.print(ftostr3(analog2temp(target_bed_raw))); |
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oldtargetraw=target_bed_raw; |
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lcd.print(ftostr3(targetBed)); |
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oldtargetBed=targetBed; |
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} |
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#endif |
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//starttime=2; |
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@ -327,8 +327,8 @@ void MainMenu::showStatus() |
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messagetext[0]='\0'; |
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} |
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#else //smaller LCDS---------------------------------- |
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static int oldcurrentraw=-1; |
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static int oldtargetraw=-1; |
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static int olddegHotEnd0=-1; |
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static int oldtargetHotEnd0=-1; |
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if(force_lcd_update) //initial display of content |
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{ |
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encoderpos=feedmultiply; |
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@ -338,18 +338,21 @@ void MainMenu::showStatus() |
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#endif |
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} |
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int tHotEnd0=intround(degHotend0()); |
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int ttHotEnd0=intround(degTargetHotend0()); |
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if((abs(current_raw[TEMPSENSOR_HOTEND]-oldcurrentraw)>3)||force_lcd_update) |
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if((abs(tHotEnd0-olddegHotEnd0)>1)||force_lcd_update) |
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{ |
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lcd.setCursor(1,0); |
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lcd.print(ftostr3(analog2temp(current_raw[TEMPSENSOR_HOTEND]))); |
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oldcurrentraw=current_raw[TEMPSENSOR_HOTEND]; |
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lcd.print(ftostr3(tHotEnd0)); |
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olddegHotEnd0=tHotEnd0; |
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} |
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if((target_raw[TEMPSENSOR_HOTEND]!=oldtargetraw)||force_lcd_update) |
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if((ttHotEnd0!=oldtargetHotEnd0)||force_lcd_update) |
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{ |
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lcd.setCursor(5,0); |
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lcd.print(ftostr3(analog2temp(target_raw[TEMPSENSOR_HOTEND]))); |
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oldtargetraw=target_raw[TEMPSENSOR_HOTEND]; |
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lcd.print(ftostr3(ttHotEnd0)); |
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oldtargetHotEnd0=ttHotEnd0; |
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} |
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if(messagetext[0]!='\0') |
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@ -426,7 +429,7 @@ void MainMenu::showPrepare() |
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if((activeline==line) && CLICKED) |
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{ |
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BLOCK |
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target_raw[TEMPSENSOR_HOTEND_0] = temp2analog(170); |
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setTargetHotend0(170); |
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beepshort(); |
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} |
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}break; |
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@ -531,7 +534,7 @@ void MainMenu::showControl() |
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if(force_lcd_update) |
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{ |
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lcd.setCursor(0,line);lcd.print(" \002Nozzle:"); |
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lcd.setCursor(13,line);lcd.print(ftostr3(analog2temp(target_raw[TEMPSENSOR_HOTEND_0]))); |
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lcd.setCursor(13,line);lcd.print(ftostr3(intround(degHotend0()))); |
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} |
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if((activeline==line) ) |
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@ -541,11 +544,11 @@ void MainMenu::showControl() |
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linechanging=!linechanging; |
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if(linechanging) |
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{ |
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encoderpos=(int)analog2temp(target_raw[TEMPSENSOR_HOTEND_0]); |
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encoderpos=intround(degHotend0()); |
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} |
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else |
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{ |
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target_raw[TEMPSENSOR_HOTEND_0] = temp2analog(encoderpos); |
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setTargetHotend0(encoderpos); |
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encoderpos=activeline*lcdslow; |
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beepshort(); |
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} |
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@ -1591,3 +1594,4 @@ char *fillto(int8_t n,char *c) |
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inline void lcd_status() {}; |
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#endif |
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