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https://github.com/MarlinFirmware/Marlin.git
synced 2024-11-27 13:56:24 +00:00
Clean up formatting, wrap macros
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72e3d2492f
commit
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@ -600,7 +600,7 @@ inline void manage_inactivity(const bool ignore_stepper_queue=false) {
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TERN_(HOTEND_IDLE_TIMEOUT, hotend_idle.check());
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TERN_(HOTEND_IDLE_TIMEOUT, hotend_idle.check());
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#if ENABLED(EXTRUDER_RUNOUT_PREVENT)
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#if ENABLED(EXTRUDER_RUNOUT_PREVENT)
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if (thermalManager.degHotend(active_extruder) > EXTRUDER_RUNOUT_MINTEMP
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if (thermalManager.degHotend(active_extruder) > (EXTRUDER_RUNOUT_MINTEMP)
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&& ELAPSED(ms, gcode.previous_move_ms + SEC_TO_MS(EXTRUDER_RUNOUT_SECONDS))
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&& ELAPSED(ms, gcode.previous_move_ms + SEC_TO_MS(EXTRUDER_RUNOUT_SECONDS))
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&& !planner.has_blocks_queued()
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&& !planner.has_blocks_queued()
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) {
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) {
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@ -45,7 +45,7 @@ void HotendIdleProtection::check_hotends(const millis_t &ms) {
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bool do_prot = false;
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bool do_prot = false;
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HOTEND_LOOP() {
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HOTEND_LOOP() {
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const bool busy = (TERN0(HAS_RESUME_CONTINUE, wait_for_user) || planner.has_blocks_queued());
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const bool busy = (TERN0(HAS_RESUME_CONTINUE, wait_for_user) || planner.has_blocks_queued());
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if (thermalManager.degHotend(e) >= HOTEND_IDLE_MIN_TRIGGER && !busy) {
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if (thermalManager.degHotend(e) >= (HOTEND_IDLE_MIN_TRIGGER) && !busy) {
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do_prot = true; break;
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do_prot = true; break;
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}
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}
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}
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}
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@ -36,13 +36,7 @@ private:
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static bool leds_off_after_print;
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static bool leds_off_after_print;
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#endif
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#endif
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static inline void set_done() {
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static inline void set_done() { TERN(LED_COLOR_PRESETS, leds.set_default(), leds.set_off()); }
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#if ENABLED(LED_COLOR_PRESETS)
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leds.set_default();
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#else
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leds.set_off();
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#endif
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}
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public:
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public:
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#if HAS_TEMP_HOTEND
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#if HAS_TEMP_HOTEND
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@ -85,15 +85,15 @@ bool Power::is_power_needed() {
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if (TERN0(HAS_HEATED_BED, thermalManager.degTargetBed() > 0 || thermalManager.temp_bed.soft_pwm_amount > 0)) return true;
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if (TERN0(HAS_HEATED_BED, thermalManager.degTargetBed() > 0 || thermalManager.temp_bed.soft_pwm_amount > 0)) return true;
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#if HAS_HOTEND && AUTO_POWER_E_TEMP
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#if HAS_HOTEND && AUTO_POWER_E_TEMP
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HOTEND_LOOP() if (thermalManager.degHotend(e) >= AUTO_POWER_E_TEMP) return true;
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HOTEND_LOOP() if (thermalManager.degHotend(e) >= (AUTO_POWER_E_TEMP)) return true;
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#endif
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#endif
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#if HAS_HEATED_CHAMBER && AUTO_POWER_CHAMBER_TEMP
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#if HAS_HEATED_CHAMBER && AUTO_POWER_CHAMBER_TEMP
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if (thermalManager.degChamber() >= AUTO_POWER_CHAMBER_TEMP) return true;
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if (thermalManager.degChamber() >= (AUTO_POWER_CHAMBER_TEMP)) return true;
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#endif
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#endif
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#if HAS_COOLER && AUTO_POWER_COOLER_TEMP
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#if HAS_COOLER && AUTO_POWER_COOLER_TEMP
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if (thermalManager.degCooler() >= AUTO_POWER_COOLER_TEMP) return true;
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if (thermalManager.degCooler() >= (AUTO_POWER_COOLER_TEMP)) return true;
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#endif
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#endif
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return false;
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return false;
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@ -181,7 +181,7 @@ float ProbeTempComp::get_offset_for_temperature(const TempSensorID tsi, const_fl
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// Linear interpolation
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// Linear interpolation
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uint8_t idx = static_cast<uint8_t>((temp - start_temp) / res_temp);
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uint8_t idx = static_cast<uint8_t>((temp - start_temp) / res_temp);
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// offset in um
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// offset in µm
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float offset = 0.0f;
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float offset = 0.0f;
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#if !defined(PTC_LINEAR_EXTRAPOLATION) || PTC_LINEAR_EXTRAPOLATION <= 0
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#if !defined(PTC_LINEAR_EXTRAPOLATION) || PTC_LINEAR_EXTRAPOLATION <= 0
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@ -208,7 +208,7 @@ void GcodeSuite::G76() {
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report_temps(next_temp_report);
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report_temps(next_temp_report);
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const float measured_z = g76_probe(TSI_BED, target_bed, noz_pos_xyz);
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const float measured_z = g76_probe(TSI_BED, target_bed, noz_pos_xyz);
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if (isnan(measured_z) || target_bed > BED_MAX_TARGET) break;
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if (isnan(measured_z) || target_bed > (BED_MAX_TARGET)) break;
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}
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}
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SERIAL_ECHOLNPAIR("Retrieved measurements: ", temp_comp.get_index());
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SERIAL_ECHOLNPAIR("Retrieved measurements: ", temp_comp.get_index());
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@ -236,7 +236,7 @@ void disp_bed_temp() {
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}
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}
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void disp_fan_speed() {
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void disp_fan_speed() {
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sprintf_P(public_buf_l, PSTR("%d%%"), thermalManager.fanSpeedPercent(0));
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sprintf_P(public_buf_l, PSTR("%d%%"), (int)thermalManager.fanSpeedPercent(0));
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lv_label_set_text(labelFan, public_buf_l);
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lv_label_set_text(labelFan, public_buf_l);
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}
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}
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@ -178,11 +178,7 @@ void process_lcd_eb_command(const char *command) {
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#else
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#else
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0, 0,
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0, 0,
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#endif
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#endif
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#if ENABLED(SDSUPPORT)
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TERN(SDSUPPORT, done_pct, 0),
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done_pct,
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#else
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0,
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#endif
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elapsed_buffer
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elapsed_buffer
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);
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);
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write_to_lcd(message_buffer);
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write_to_lcd(message_buffer);
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@ -296,21 +296,13 @@ namespace ExtUI {
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}
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}
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float getTargetFan_percent(const fan_t fan) {
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float getTargetFan_percent(const fan_t fan) {
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#if HAS_FAN
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return thermalManager.fanSpeedPercent(fan - FAN0);
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#else
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UNUSED(fan);
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UNUSED(fan);
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return 0;
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return TERN0(HAS_FAN, thermalManager.fanSpeedPercent(fan - FAN0));
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#endif
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}
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}
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float getActualFan_percent(const fan_t fan) {
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float getActualFan_percent(const fan_t fan) {
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#if HAS_FAN
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return thermalManager.scaledFanSpeedPercent(fan - FAN0);
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#else
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UNUSED(fan);
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UNUSED(fan);
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return 0;
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return TERN0(HAS_FAN, thermalManager.scaledFanSpeedPercent(fan - FAN0));
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#endif
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}
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}
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float getAxisPosition_mm(const axis_t axis) {
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float getAxisPosition_mm(const axis_t axis) {
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@ -567,7 +567,7 @@ volatile bool Temperature::raw_temps_ready = false;
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SHV(bias);
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SHV(bias);
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#if ENABLED(PRINTER_EVENT_LEDS)
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#if ENABLED(PRINTER_EVENT_LEDS)
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const celsius_float_t start_temp = GHV(temp_chamber.celsius, temp_bed.celsius, temp_hotend[heater_id].celsius);
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const celsius_float_t start_temp = GHV(degChamber(), degBed(), degHotend(heater_id));
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LEDColor color = ONHEATINGSTART();
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LEDColor color = ONHEATINGSTART();
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#endif
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#endif
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@ -583,7 +583,7 @@ volatile bool Temperature::raw_temps_ready = false;
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updateTemperaturesFromRawValues();
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updateTemperaturesFromRawValues();
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// Get the current temperature and constrain it
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// Get the current temperature and constrain it
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current_temp = GHV(temp_chamber.celsius, temp_bed.celsius, temp_hotend[heater_id].celsius);
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current_temp = GHV(degChamber(), degBed(), degHotend(heater_id));
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NOLESS(maxT, current_temp);
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NOLESS(maxT, current_temp);
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NOMORE(minT, current_temp);
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NOMORE(minT, current_temp);
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@ -1054,8 +1054,6 @@ void tool_change(const uint8_t new_tool, bool no_move/*=false*/) {
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first_tool_is_primed = true;
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first_tool_is_primed = true;
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TERN_(TOOLCHANGE_FS_INIT_BEFORE_SWAP, toolchange_extruder_ready[old_tool] = true); // Primed and initialized
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TERN_(TOOLCHANGE_FS_INIT_BEFORE_SWAP, toolchange_extruder_ready[old_tool] = true); // Primed and initialized
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}
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}
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#else
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constexpr bool first_tool_is_primed = true;
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#endif
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#endif
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if (new_tool != old_tool || TERN0(PARKING_EXTRUDER, extruder_parked)) { // PARKING_EXTRUDER may need to attach old_tool when homing
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if (new_tool != old_tool || TERN0(PARKING_EXTRUDER, extruder_parked)) { // PARKING_EXTRUDER may need to attach old_tool when homing
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@ -1092,7 +1090,7 @@ void tool_change(const uint8_t new_tool, bool no_move/*=false*/) {
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}
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}
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else {
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else {
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// For first new tool, change without unloading the old. 'Just prime/init the new'
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// For first new tool, change without unloading the old. 'Just prime/init the new'
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if (first_tool_is_primed)
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if (TERN1(TOOLCHANGE_FS_PRIME_FIRST_USED, first_tool_is_primed))
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unscaled_e_move(-toolchange_settings.swap_length, MMM_TO_MMS(toolchange_settings.retract_speed));
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unscaled_e_move(-toolchange_settings.swap_length, MMM_TO_MMS(toolchange_settings.retract_speed));
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TERN_(TOOLCHANGE_FS_PRIME_FIRST_USED, first_tool_is_primed = true); // The first new tool will be primed by toolchanging
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TERN_(TOOLCHANGE_FS_PRIME_FIRST_USED, first_tool_is_primed = true); // The first new tool will be primed by toolchanging
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}
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}
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