Display unknown XYZ on the LCD as "---"
- Also show 2 digits past decimal for Z on DOGM
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56126786a6
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1a4a09c26f
@ -273,7 +273,6 @@ static void lcd_implementation_status_screen() {
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u8g.drawFrame(42, 49 - TALL_FONT_CORRECTION, 10, 4);
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u8g.drawPixel(50, 43 - TALL_FONT_CORRECTION);
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// Progress bar frame
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u8g.drawFrame(54, 49, 73, 4 - TALL_FONT_CORRECTION);
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@ -333,19 +332,28 @@ static void lcd_implementation_status_screen() {
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u8g.drawPixel(8,XYZ_BASELINE - 5);
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u8g.drawPixel(8,XYZ_BASELINE - 3);
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u8g.setPrintPos(10,XYZ_BASELINE);
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lcd_print(ftostr31ns(current_position[X_AXIS]));
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if (axis_known_position[X_AXIS])
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lcd_print(ftostr31ns(current_position[X_AXIS]));
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else
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lcd_printPGM(PSTR("---"));
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u8g.setPrintPos(43,XYZ_BASELINE);
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lcd_print('Y');
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u8g.drawPixel(49,XYZ_BASELINE - 5);
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u8g.drawPixel(49,XYZ_BASELINE - 3);
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u8g.setPrintPos(51,XYZ_BASELINE);
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lcd_print(ftostr31ns(current_position[Y_AXIS]));
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if (axis_known_position[Y_AXIS])
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lcd_print(ftostr31ns(current_position[Y_AXIS]));
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else
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lcd_printPGM(PSTR("---"));
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u8g.setPrintPos(83,XYZ_BASELINE);
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lcd_print('Z');
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u8g.drawPixel(89,XYZ_BASELINE - 5);
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u8g.drawPixel(89,XYZ_BASELINE - 3);
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u8g.setPrintPos(91,XYZ_BASELINE);
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lcd_print(ftostr31(current_position[Z_AXIS]));
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if (axis_known_position[Z_AXIS])
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lcd_print(ftostr32sp(current_position[Z_AXIS]));
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else
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lcd_printPGM(PSTR("---.--"));
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u8g.setColorIndex(1); // black on white
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// Feedrate
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@ -406,97 +406,99 @@ unsigned lcd_print(char c) { return charset_mapper(c); }
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/*
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Possible status screens:
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16x2 |0123456789012345|
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|000/000 B000/000|
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|Status line.....|
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16x2 |000/000 B000/000|
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|0123456789012345|
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16x4 |0123456789012345|
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|000/000 B000/000|
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|SD100% Z000.0|
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16x4 |000/000 B000/000|
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|SD100% Z000.00 |
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|F100% T--:--|
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|Status line.....|
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|0123456789012345|
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20x2 |01234567890123456789|
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|T000/000D B000/000D |
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|Status line.........|
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20x2 |T000/000D B000/000D |
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|01234567890123456789|
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20x4 |01234567890123456789|
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|T000/000D B000/000D |
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|X000 Y000 Z000.00|
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20x4 |T000/000D B000/000D |
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|X000 Y000 Z000.00 |
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|F100% SD100% T--:--|
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|Status line.........|
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|01234567890123456789|
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20x4 |01234567890123456789|
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|T000/000D B000/000D |
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20x4 |T000/000D B000/000D |
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|T000/000D Z000.00 |
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|F100% SD100% T--:--|
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|Status line.........|
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|01234567890123456789|
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*/
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static void lcd_implementation_status_screen() {
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int tHotend = int(degHotend(0) + 0.5);
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int tTarget = int(degTargetHotend(0) + 0.5);
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#define LCD_TEMP_ONLY(T1,T2) \
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lcd.print(itostr3(T1 + 0.5)); \
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lcd.print('/'); \
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lcd.print(itostr3left(T2 + 0.5))
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#define LCD_TEMP(T1,T2,PREFIX) \
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lcd.print(PREFIX); \
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LCD_TEMP_ONLY(T1,T2); \
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lcd_printPGM(PSTR(LCD_STR_DEGREE " ")); \
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if (T2 < 10) lcd.print(' ')
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//
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// Line 1
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//
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lcd.setCursor(0, 0);
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#if LCD_WIDTH < 20
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lcd.setCursor(0, 0);
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lcd.print(itostr3(tHotend));
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lcd.print('/');
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lcd.print(itostr3left(tTarget));
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//
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// Hotend 0 Temperature
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//
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LCD_TEMP_ONLY(degHotend(0), degTargetHotend(0));
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//
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// Hotend 1 or Bed Temperature
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//
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#if EXTRUDERS > 1 || TEMP_SENSOR_BED != 0
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// If we have an 2nd extruder or heated bed, show that in the top right corner
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lcd.setCursor(8, 0);
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#if EXTRUDERS > 1
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tHotend = int(degHotend(1) + 0.5);
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tTarget = int(degTargetHotend(1) + 0.5);
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lcd.print(LCD_STR_THERMOMETER[0]);
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#else // Heated bed
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tHotend = int(degBed() + 0.5);
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tTarget = int(degTargetBed() + 0.5);
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LCD_TEMP_ONLY(degHotend(1), degTargetHotend(1));
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#else
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lcd.print(LCD_STR_BEDTEMP[0]);
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LCD_TEMP_ONLY(degBed(), degTargetBed());
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#endif
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lcd.print(itostr3(tHotend));
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lcd.print('/');
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lcd.print(itostr3left(tTarget));
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#endif // EXTRUDERS > 1 || TEMP_SENSOR_BED != 0
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#else // LCD_WIDTH > 19
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#else // LCD_WIDTH >= 20
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lcd.setCursor(0, 0);
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lcd.print(LCD_STR_THERMOMETER[0]);
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lcd.print(itostr3(tHotend));
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lcd.print('/');
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lcd.print(itostr3left(tTarget));
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lcd_printPGM(PSTR(LCD_STR_DEGREE " "));
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if (tTarget < 10) lcd.print(' ');
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//
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// Hotend 0 Temperature
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//
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LCD_TEMP(degHotend(0), degTargetHotend(0), LCD_STR_THERMOMETER[0]);
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//
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// Hotend 1 or Bed Temperature
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//
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#if EXTRUDERS > 1 || TEMP_SENSOR_BED != 0
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// If we have an 2nd extruder or heated bed, show that in the top right corner
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lcd.setCursor(10, 0);
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#if EXTRUDERS > 1
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tHotend = int(degHotend(1) + 0.5);
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tTarget = int(degTargetHotend(1) + 0.5);
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lcd.print(LCD_STR_THERMOMETER[0]);
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#else // Heated bed
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tHotend = int(degBed() + 0.5);
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tTarget = int(degTargetBed() + 0.5);
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lcd.print(LCD_STR_BEDTEMP[0]);
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LCD_TEMP(degHotend(1), degTargetHotend(1), LCD_STR_THERMOMETER[0]);
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#else
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LCD_TEMP(degBed(), degTargetBed(), LCD_STR_BEDTEMP[0]);
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#endif
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lcd.print(itostr3(tHotend));
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lcd.print('/');
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lcd.print(itostr3left(tTarget));
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lcd_printPGM(PSTR(LCD_STR_DEGREE " "));
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if (tTarget < 10) lcd.print(' ');
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#endif // EXTRUDERS > 1 || TEMP_SENSOR_BED != 0
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#endif // LCD_WIDTH > 19
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#endif // LCD_WIDTH >= 20
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//
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// Line 2
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//
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#if LCD_HEIGHT > 2
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// Lines 2 for 4 line LCD
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#if LCD_WIDTH < 20
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#ifdef SDSUPPORT
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lcd.setCursor(0, 2);
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lcd_printPGM(PSTR("SD"));
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@ -507,36 +509,48 @@ static void lcd_implementation_status_screen() {
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lcd.print('%');
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#endif // SDSUPPORT
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#else // LCD_WIDTH > 19
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#else // LCD_WIDTH >= 20
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lcd.setCursor(0, 1);
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#if EXTRUDERS > 1 && TEMP_SENSOR_BED != 0
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// If we both have a 2nd extruder and a heated bed, show the heated bed temp on the 2nd line on the left, as the first line is filled with extruder temps
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tHotend = int(degBed() + 0.5);
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tTarget = int(degTargetBed() + 0.5);
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lcd.setCursor(0, 1);
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lcd.print(LCD_STR_BEDTEMP[0]);
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lcd.print(itostr3(tHotend));
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lcd.print('/');
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lcd.print(itostr3left(tTarget));
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lcd_printPGM(PSTR(LCD_STR_DEGREE " "));
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if (tTarget < 10) lcd.print(' ');
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// If we both have a 2nd extruder and a heated bed,
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// show the heated bed temp on the left,
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// since the first line is filled with extruder temps
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LCD_TEMP(degBed(), degTargetBed(), LCD_STR_BEDTEMP[0]);
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#else
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lcd.setCursor(0,1);
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lcd.print('X');
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lcd.print(ftostr3(current_position[X_AXIS]));
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if (axis_known_position[X_AXIS])
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lcd.print(ftostr3(current_position[X_AXIS]));
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else
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lcd_printPGM(PSTR("---"));
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lcd_printPGM(PSTR(" Y"));
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lcd.print(ftostr3(current_position[Y_AXIS]));
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if (axis_known_position[Y_AXIS])
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lcd.print(ftostr3(current_position[Y_AXIS]));
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else
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lcd_printPGM(PSTR("---"));
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#endif // EXTRUDERS > 1 || TEMP_SENSOR_BED != 0
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#endif // LCD_WIDTH > 19
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#endif // LCD_WIDTH >= 20
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lcd.setCursor(LCD_WIDTH - 8, 1);
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lcd.print('Z');
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lcd.print(ftostr32sp(current_position[Z_AXIS] + 0.00001));
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if (axis_known_position[Z_AXIS])
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lcd.print(ftostr32sp(current_position[Z_AXIS] + 0.00001));
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else
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lcd_printPGM(PSTR("---.--"));
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#endif // LCD_HEIGHT > 2
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//
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// Line 3
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//
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#if LCD_HEIGHT > 3
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lcd.setCursor(0, 2);
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@ -570,9 +584,10 @@ static void lcd_implementation_status_screen() {
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#endif // LCD_HEIGHT > 3
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/**
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* Display Progress Bar, Filament display, and/or Status Message on the last line
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*/
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//
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// Last Line
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// Status Message (which may be a Progress Bar or Filament display)
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//
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lcd.setCursor(0, LCD_HEIGHT - 1);
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