Move singlenozzle temp/fan (#20829)
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f6c4c26937
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@ -88,7 +88,7 @@ void GcodeSuite::M104() {
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if (got_temp) {
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if (got_temp) {
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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singlenozzle_temp[target_extruder] = temp;
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thermalManager.singlenozzle_temp[target_extruder] = temp;
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if (target_extruder != active_extruder) return;
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if (target_extruder != active_extruder) return;
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#endif
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#endif
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thermalManager.setTargetHotend(temp, target_extruder);
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thermalManager.setTargetHotend(temp, target_extruder);
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@ -166,7 +166,7 @@ void GcodeSuite::M109() {
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if (got_temp) {
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if (got_temp) {
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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singlenozzle_temp[target_extruder] = temp;
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thermalManager.singlenozzle_temp[target_extruder] = temp;
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if (target_extruder != active_extruder) return;
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if (target_extruder != active_extruder) return;
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#endif
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#endif
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thermalManager.setTargetHotend(temp, target_extruder);
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thermalManager.setTargetHotend(temp, target_extruder);
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@ -1935,16 +1935,16 @@ static_assert(hbm[Z_AXIS] >= 0, "HOMING_BUMP_MM.Z must be greater than or equal
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* Basic multi hotend duplication mode
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* Basic multi hotend duplication mode
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*/
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*/
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#if ENABLED(MULTI_NOZZLE_DUPLICATION)
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#if ENABLED(MULTI_NOZZLE_DUPLICATION)
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#if HOTENDS < 2
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#if ENABLED(SINGLENOZZLE)
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#error "MULTI_NOZZLE_DUPLICATION requires 2 or more hotends."
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with SINGLENOZZLE."
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#elif ENABLED(DUAL_X_CARRIAGE)
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#elif ENABLED(DUAL_X_CARRIAGE)
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with DUAL_X_CARRIAGE."
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with DUAL_X_CARRIAGE."
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#elif ENABLED(SINGLENOZZLE)
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with SINGLENOZZLE."
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#elif ENABLED(MIXING_EXTRUDER)
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#elif ENABLED(MIXING_EXTRUDER)
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with MIXING_EXTRUDER."
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with MIXING_EXTRUDER."
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#elif ENABLED(SWITCHING_EXTRUDER)
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#elif ENABLED(SWITCHING_EXTRUDER)
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with SWITCHING_EXTRUDER."
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#error "MULTI_NOZZLE_DUPLICATION is incompatible with SWITCHING_EXTRUDER."
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#elif HOTENDS < 2
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#error "MULTI_NOZZLE_DUPLICATION requires 2 or more hotends."
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#endif
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#endif
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#endif
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#endif
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@ -485,7 +485,7 @@ class MenuItem_bool : public MenuEditItemBase {
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#if SNFAN(1) || SNFAN(2) || SNFAN(3) || SNFAN(4) || SNFAN(5) || SNFAN(6) || SNFAN(7)
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#if SNFAN(1) || SNFAN(2) || SNFAN(3) || SNFAN(4) || SNFAN(5) || SNFAN(6) || SNFAN(7)
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#define DEFINE_SINGLENOZZLE_ITEM() \
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#define DEFINE_SINGLENOZZLE_ITEM() \
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auto singlenozzle_item = [&](const uint8_t f) { \
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auto singlenozzle_item = [&](const uint8_t f) { \
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editable.uint8 = singlenozzle_fan_speed[f]; \
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editable.uint8 = thermalManager.singlenozzle_fan_speed[f]; \
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EDIT_ITEM_FAST_N(percent, f, MSG_STORED_FAN_N, &editable.uint8, 0, 255, on_fan_update); \
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EDIT_ITEM_FAST_N(percent, f, MSG_STORED_FAN_N, &editable.uint8, 0, 255, on_fan_update); \
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}
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}
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#else
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#else
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@ -159,7 +159,7 @@ void menu_temperature() {
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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LOOP_S_L_N(e, 1, EXTRUDERS)
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LOOP_S_L_N(e, 1, EXTRUDERS)
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EDIT_ITEM_FAST_N(uint16_3, e, MSG_NOZZLE_STANDBY, &singlenozzle_temp[e], 0, thermalManager.heater_maxtemp[0] - (HOTEND_OVERSHOOT));
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EDIT_ITEM_FAST_N(uint16_3, e, MSG_NOZZLE_STANDBY, &thermalManager.singlenozzle_temp[e], 0, thermalManager.heater_maxtemp[0] - (HOTEND_OVERSHOOT));
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#endif
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#endif
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//
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//
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@ -127,7 +127,7 @@ void menu_tune() {
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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LOOP_S_L_N(e, 1, EXTRUDERS)
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LOOP_S_L_N(e, 1, EXTRUDERS)
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EDIT_ITEM_FAST_N(uint16_3, e, MSG_NOZZLE_STANDBY, &singlenozzle_temp[e], 0, thermalManager.heater_maxtemp[0] - HOTEND_OVERSHOOT);
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EDIT_ITEM_FAST_N(uint16_3, e, MSG_NOZZLE_STANDBY, &thermalManager.singlenozzle_temp[e], 0, thermalManager.heater_maxtemp[0] - HOTEND_OVERSHOOT);
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#endif
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#endif
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//
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//
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@ -377,6 +377,13 @@ volatile bool Temperature::raw_temps_ready = false;
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Temperature::soft_pwm_count_fan[FAN_COUNT];
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Temperature::soft_pwm_count_fan[FAN_COUNT];
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#endif
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#endif
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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uint16_t Temperature::singlenozzle_temp[EXTRUDERS];
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#if HAS_FAN
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uint8_t Temperature::singlenozzle_fan_speed[EXTRUDERS];
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#endif
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#endif
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#if ENABLED(PROBING_HEATERS_OFF)
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#if ENABLED(PROBING_HEATERS_OFF)
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bool Temperature::paused;
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bool Temperature::paused;
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#endif
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#endif
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@ -2195,6 +2202,24 @@ void Temperature::disable_all_heaters() {
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#endif // PROBING_HEATERS_OFF
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#endif // PROBING_HEATERS_OFF
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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void Temperature::singlenozzle_change(const uint8_t old_tool, const uint8_t new_tool) {
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#if HAS_FAN
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singlenozzle_fan_speed[old_tool] = fan_speed[0];
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fan_speed[0] = singlenozzle_fan_speed[new_tool];
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#endif
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singlenozzle_temp[old_tool] = temp_hotend[0].target;
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if (singlenozzle_temp[new_tool] && singlenozzle_temp[new_tool] != singlenozzle_temp[old_tool]) {
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setTargetHotend(singlenozzle_temp[new_tool], 0);
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TERN_(AUTOTEMP, planner.autotemp_update());
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TERN_(HAS_DISPLAY, set_heating_message(0));
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(void)wait_for_hotend(0, false); // Wait for heating or cooling
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}
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}
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#endif
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#if HAS_MAX6675
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#if HAS_MAX6675
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#ifndef THERMOCOUPLE_MAX_ERRORS
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#ifndef THERMOCOUPLE_MAX_ERRORS
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@ -335,6 +335,14 @@ class Temperature {
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FORCE_INLINE static bool hotEnoughToExtrude(const uint8_t e) { return !tooColdToExtrude(e); }
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FORCE_INLINE static bool hotEnoughToExtrude(const uint8_t e) { return !tooColdToExtrude(e); }
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FORCE_INLINE static bool targetHotEnoughToExtrude(const uint8_t e) { return !targetTooColdToExtrude(e); }
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FORCE_INLINE static bool targetHotEnoughToExtrude(const uint8_t e) { return !targetTooColdToExtrude(e); }
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#if ENABLED(SINGLENOZZLE_STANDBY_FAN)
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static uint16_t singlenozzle_temp[EXTRUDERS];
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#if HAS_FAN
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static uint8_t singlenozzle_fan_speed[EXTRUDERS];
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#endif
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static void singlenozzle_change(const uint8_t old_tool, const uint8_t new_tool);
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#endif
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#if HEATER_IDLE_HANDLER
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#if HEATER_IDLE_HANDLER
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// Heater idle handling. Marlin creates one per hotend and one for the heated bed.
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// Heater idle handling. Marlin creates one per hotend and one for the heated bed.
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@ -49,14 +49,6 @@
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bool toolchange_extruder_ready[EXTRUDERS];
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bool toolchange_extruder_ready[EXTRUDERS];
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#endif
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#endif
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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uint16_t singlenozzle_temp[EXTRUDERS];
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#endif
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#if BOTH(HAS_FAN, SINGLENOZZLE_STANDBY_FAN)
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uint8_t singlenozzle_fan_speed[EXTRUDERS];
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#endif
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#if ENABLED(MAGNETIC_PARKING_EXTRUDER) || defined(EVENT_GCODE_AFTER_TOOLCHANGE) || (ENABLED(PARKING_EXTRUDER) && PARKING_EXTRUDER_SOLENOIDS_DELAY > 0)
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#if ENABLED(MAGNETIC_PARKING_EXTRUDER) || defined(EVENT_GCODE_AFTER_TOOLCHANGE) || (ENABLED(PARKING_EXTRUDER) && PARKING_EXTRUDER_SOLENOIDS_DELAY > 0)
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#include "../gcode/gcode.h"
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#include "../gcode/gcode.h"
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#endif
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#endif
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@ -1081,20 +1073,7 @@ void tool_change(const uint8_t new_tool, bool no_move/*=false*/) {
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const bool should_move = safe_to_move && !no_move && IsRunning();
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const bool should_move = safe_to_move && !no_move && IsRunning();
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if (should_move) {
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if (should_move) {
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#if BOTH(HAS_FAN, SINGLENOZZLE_STANDBY_FAN)
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TERN_(SINGLENOZZLE_STANDBY_TEMP, thermalManager.singlenozzle_change(old_tool, new_tool));
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singlenozzle_fan_speed[old_tool] = thermalManager.fan_speed[0];
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thermalManager.fan_speed[0] = singlenozzle_fan_speed[new_tool];
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#endif
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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singlenozzle_temp[old_tool] = thermalManager.temp_hotend[0].target;
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if (singlenozzle_temp[new_tool] && singlenozzle_temp[new_tool] != singlenozzle_temp[old_tool]) {
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thermalManager.setTargetHotend(singlenozzle_temp[new_tool], 0);
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TERN_(AUTOTEMP, planner.autotemp_update());
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TERN_(HAS_DISPLAY, thermalManager.set_heating_message(0));
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(void)thermalManager.wait_for_hotend(0, false); // Wait for heating or cooling
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}
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#endif
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#if ENABLED(TOOLCHANGE_FILAMENT_SWAP)
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#if ENABLED(TOOLCHANGE_FILAMENT_SWAP)
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if (should_swap && !too_cold) {
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if (should_swap && !too_cold) {
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@ -114,14 +114,6 @@
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#endif
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#endif
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#if ENABLED(SINGLENOZZLE_STANDBY_TEMP)
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extern uint16_t singlenozzle_temp[EXTRUDERS];
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#endif
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#if BOTH(HAS_FAN, SINGLENOZZLE_STANDBY_FAN)
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extern uint8_t singlenozzle_fan_speed[EXTRUDERS];
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#endif
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TERN_(ELECTROMAGNETIC_SWITCHING_TOOLHEAD, void est_init());
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TERN_(ELECTROMAGNETIC_SWITCHING_TOOLHEAD, void est_init());
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TERN_(SWITCHING_TOOLHEAD, void swt_init());
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TERN_(SWITCHING_TOOLHEAD, void swt_init());
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