Changes supporting "Prussia3D" MK3 (#21617)
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@ -2539,7 +2539,9 @@
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#endif
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#if HAS_TEMPERATURE && EITHER(HAS_LCD_MENU, DWIN_CREALITY_LCD)
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#ifdef PREHEAT_5_LABEL
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#ifdef PREHEAT_6_LABEL
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#define PREHEAT_COUNT 6
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#elif defined(PREHEAT_5_LABEL)
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#define PREHEAT_COUNT 5
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#elif defined(PREHEAT_4_LABEL)
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#define PREHEAT_COUNT 4
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@ -281,7 +281,9 @@
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#define STATUS_HOTEND8_WIDTH STATUS_HOTEND7_WIDTH
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#endif
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constexpr uint8_t status_hotend_width[HOTENDS] = ARRAY_N(HOTENDS, STATUS_HOTEND1_WIDTH, STATUS_HOTEND2_WIDTH, STATUS_HOTEND3_WIDTH, STATUS_HOTEND4_WIDTH, STATUS_HOTEND5_WIDTH, STATUS_HOTEND6_WIDTH, STATUS_HOTEND7_WIDTH, STATUS_HOTEND8_WIDTH);
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#define _SHNAME(N,T) STATUS_HOTEND##N##_##T,
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constexpr uint8_t status_hotend_width[HOTENDS] = { REPEAT2_S(1, INCREMENT(HOTENDS), _SHNAME, WIDTH) };
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#define STATUS_HOTEND_WIDTH(N) status_hotend_width[N]
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#ifndef STATUS_HOTEND1_BYTEWIDTH
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@ -309,7 +311,7 @@
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#define STATUS_HOTEND8_BYTEWIDTH BW(STATUS_HOTEND8_WIDTH)
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#endif
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constexpr uint8_t status_hotend_bytewidth[HOTENDS] = ARRAY_N(HOTENDS, STATUS_HOTEND1_BYTEWIDTH, STATUS_HOTEND2_BYTEWIDTH, STATUS_HOTEND3_BYTEWIDTH, STATUS_HOTEND4_BYTEWIDTH, STATUS_HOTEND5_BYTEWIDTH, STATUS_HOTEND6_BYTEWIDTH, STATUS_HOTEND7_BYTEWIDTH, STATUS_HOTEND8_BYTEWIDTH);
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constexpr uint8_t status_hotend_bytewidth[HOTENDS] = { REPEAT2_S(1, INCREMENT(HOTENDS), _SHNAME, BYTEWIDTH) };
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#define STATUS_HOTEND_BYTEWIDTH(N) status_hotend_bytewidth[N]
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#ifndef STATUS_HOTEND1_X
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@ -339,7 +341,7 @@
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#define STATUS_HOTEND8_X STATUS_HOTEND7_X + STATUS_HEATERS_XSPACE
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#endif
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constexpr uint8_t status_hotend_x[HOTENDS] = ARRAY_N(HOTENDS, STATUS_HOTEND1_X, STATUS_HOTEND2_X, STATUS_HOTEND3_X, STATUS_HOTEND4_X, STATUS_HOTEND5_X, STATUS_HOTEND6_X, STATUS_HOTEND7_X, STATUS_HOTEND8_X);
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constexpr uint8_t status_hotend_x[HOTENDS] = { REPEAT2_S(1, INCREMENT(HOTENDS), _SHNAME, X) };
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#define STATUS_HOTEND_X(N) status_hotend_x[N]
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#elif HAS_MULTI_HOTEND
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#define STATUS_HOTEND_X(N) ((N) ? STATUS_HOTEND2_X : STATUS_HOTEND1_X)
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@ -370,13 +372,15 @@
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#ifndef STATUS_HOTEND8_TEXT_X
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#define STATUS_HOTEND8_TEXT_X STATUS_HOTEND7_TEXT_X + STATUS_HEATERS_XSPACE
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#endif
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constexpr uint8_t status_hotend_text_x[] = ARRAY_N(HOTENDS, STATUS_HOTEND1_TEXT_X, STATUS_HOTEND2_TEXT_X, STATUS_HOTEND3_TEXT_X, STATUS_HOTEND4_TEXT_X, STATUS_HOTEND5_TEXT_X, STATUS_HOTEND6_TEXT_X, STATUS_HOTEND7_TEXT_X, STATUS_HOTEND8_TEXT_X);
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constexpr uint8_t status_hotend_text_x[HOTENDS] = { REPEAT2_S(1, INCREMENT(HOTENDS), _SHNAME, TEXT_X) };
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#define STATUS_HOTEND_TEXT_X(N) status_hotend_text_x[N]
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#else
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#define STATUS_HOTEND_TEXT_X(N) (STATUS_HOTEND1_X + 6 + (N) * (STATUS_HEATERS_XSPACE))
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#endif
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#endif
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#undef _SHNAME
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#if STATUS_HOTEND_BITMAPS > 1 && DISABLED(STATUS_HOTEND_NUMBERLESS)
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#define TEST_BITMAP_OFF status_hotend1_a_bmp
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#define TEST_BITMAP_ON status_hotend1_b_bmp
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@ -112,25 +112,10 @@ constexpr uint8_t epps = ENCODER_PULSES_PER_STEP;
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#if PREHEAT_COUNT
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preheat_t MarlinUI::material_preset[PREHEAT_COUNT]; // Initialized by settings.load()
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PGM_P MarlinUI::get_preheat_label(const uint8_t m) {
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#ifdef PREHEAT_1_LABEL
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static PGMSTR(preheat_0_label, PREHEAT_1_LABEL);
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#endif
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#ifdef PREHEAT_2_LABEL
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static PGMSTR(preheat_1_label, PREHEAT_2_LABEL);
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#endif
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#ifdef PREHEAT_3_LABEL
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static PGMSTR(preheat_2_label, PREHEAT_3_LABEL);
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#endif
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#ifdef PREHEAT_4_LABEL
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static PGMSTR(preheat_3_label, PREHEAT_4_LABEL);
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#endif
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#ifdef PREHEAT_5_LABEL
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static PGMSTR(preheat_4_label, PREHEAT_5_LABEL);
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#endif
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#define _PDEF(N) static PGMSTR(preheat_##N##_label, PREHEAT_##N##_LABEL);
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#define _PLBL(N) preheat_##N##_label,
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static PGM_P const preheat_labels[PREHEAT_COUNT] PROGMEM = { REPEAT(PREHEAT_COUNT, _PLBL) };
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REPEAT_S(1, INCREMENT(PREHEAT_COUNT), _PDEF);
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static PGM_P const preheat_labels[PREHEAT_COUNT] PROGMEM = { REPEAT_S(1, INCREMENT(PREHEAT_COUNT), _PLBL) };
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return (PGM_P)pgm_read_ptr(&preheat_labels[m]);
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}
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#endif
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@ -2780,25 +2780,20 @@ void MarlinSettings::reset() {
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// Preheat parameters
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//
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#if PREHEAT_COUNT
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#define _PITEM(N,T) PREHEAT_##N##_##T,
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#if HAS_HOTEND
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constexpr uint16_t hpre[] = ARRAY_N(PREHEAT_COUNT, PREHEAT_1_TEMP_HOTEND, PREHEAT_2_TEMP_HOTEND, PREHEAT_3_TEMP_HOTEND, PREHEAT_4_TEMP_HOTEND, PREHEAT_5_TEMP_HOTEND);
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constexpr uint16_t hpre[] = { REPEAT2_S(1, INCREMENT(PREHEAT_COUNT), _PITEM, TEMP_HOTEND) };
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#endif
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#if HAS_HEATED_BED
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constexpr uint16_t bpre[] = ARRAY_N(PREHEAT_COUNT, PREHEAT_1_TEMP_BED, PREHEAT_2_TEMP_BED, PREHEAT_3_TEMP_BED, PREHEAT_4_TEMP_BED, PREHEAT_5_TEMP_BED);
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constexpr uint16_t bpre[] = { REPEAT2_S(1, INCREMENT(PREHEAT_COUNT), _PITEM, TEMP_BED) };
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#endif
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#if HAS_FAN
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constexpr uint8_t fpre[] = ARRAY_N(PREHEAT_COUNT, PREHEAT_1_FAN_SPEED, PREHEAT_2_FAN_SPEED, PREHEAT_3_FAN_SPEED, PREHEAT_4_FAN_SPEED, PREHEAT_5_FAN_SPEED);
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constexpr uint8_t fpre[] = { REPEAT2_S(1, INCREMENT(PREHEAT_COUNT), _PITEM, FAN_SPEED) };
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#endif
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LOOP_L_N(i, PREHEAT_COUNT) {
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#if HAS_HOTEND
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ui.material_preset[i].hotend_temp = hpre[i];
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#endif
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#if HAS_HEATED_BED
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ui.material_preset[i].bed_temp = bpre[i];
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#endif
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#if HAS_FAN
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ui.material_preset[i].fan_speed = fpre[i];
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#endif
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TERN_(HAS_HOTEND, ui.material_preset[i].hotend_temp = hpre[i]);
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TERN_(HAS_HEATED_BED, ui.material_preset[i].bed_temp = bpre[i]);
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TERN_(HAS_FAN, ui.material_preset[i].fan_speed = fpre[i]);
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}
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#endif
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@ -27,7 +27,10 @@
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#include "env_validate.h"
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#define BOARD_INFO_NAME "Einsy Rambo"
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#define BOARD_INFO_NAME "Einsy Rambo"
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#define DEFAULT_MACHINE_NAME "Prusa MK3"
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//#define MK3_FAN_PINS
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//
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// TMC2130 Configuration_adv defaults for EinsyRambo
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@ -123,11 +126,19 @@
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#define HEATER_BED_PIN 4
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#ifndef FAN_PIN
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#define FAN_PIN 8
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#ifdef MK3_FAN_PINS
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#define FAN_PIN 6
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#else
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#define FAN_PIN 8
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#endif
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#endif
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#ifndef FAN1_PIN
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#define FAN1_PIN 6
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#ifdef MK3_FAN_PINS
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#define FAN_PIN -1
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#else
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#define FAN_PIN 6
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#endif
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#endif
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//
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@ -192,3 +203,5 @@
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#endif // IS_ULTIPANEL || TOUCH_UI_ULTIPANEL
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#endif // HAS_WIRED_LCD
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#undef MK3_FAN_PINS
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