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@ -51,89 +51,29 @@ |
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/**
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* M104: Set Hotend Temperature target and return immediately |
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* |
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* Parameters: |
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* I<preset> : Material Preset index (if material presets are defined) |
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* T<index> : Tool index. If omitted, applies to the active tool |
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* S<target> : The target temperature in current units |
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*/ |
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void GcodeSuite::M104() { |
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if (DEBUGGING(DRYRUN)) return; |
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#if ENABLED(MIXING_EXTRUDER) && MIXING_VIRTUAL_TOOLS > 1 |
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constexpr int8_t target_extruder = 0; |
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#else |
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const int8_t target_extruder = get_target_extruder_from_command(); |
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if (target_extruder < 0) return; |
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#endif |
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bool got_temp = false; |
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celsius_t temp = 0; |
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// Accept 'I' if temperature presets are defined
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#if PREHEAT_COUNT |
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got_temp = parser.seenval('I'); |
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if (got_temp) { |
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const uint8_t index = parser.value_byte(); |
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temp = ui.material_preset[_MIN(index, PREHEAT_COUNT - 1)].hotend_temp; |
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} |
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#endif |
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// If no 'I' get the temperature from 'S'
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if (!got_temp) { |
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got_temp = parser.seenval('S'); |
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if (got_temp) temp = parser.value_celsius(); |
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} |
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if (got_temp) { |
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#if ENABLED(SINGLENOZZLE_STANDBY_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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#endif |
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thermalManager.setTargetHotend(temp, target_extruder); |
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#if ENABLED(DUAL_X_CARRIAGE) |
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if (idex_is_duplicating() && target_extruder == 0) |
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thermalManager.setTargetHotend(temp ? temp + duplicate_extruder_temp_offset : 0, 1); |
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#endif |
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#if ENABLED(PRINTJOB_TIMER_AUTOSTART) |
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/**
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* Stop the timer at the end of print. Start is managed by 'heat and wait' M109. |
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* Hotends use EXTRUDE_MINTEMP / 2 to allow nozzles to be put into hot standby |
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* mode, for instance in a dual extruder setup, without affecting the running |
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* print timer. |
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*/ |
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thermalManager.auto_job_check_timer(false, true); |
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#endif |
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} |
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TERN_(AUTOTEMP, planner.autotemp_M104_M109()); |
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} |
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/**
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* M109: Set Hotend Temperature target and wait |
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* |
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* Parameters |
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* I<preset> : Material Preset index (if material presets are defined) |
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* T<index> : Tool index. If omitted, applies to the active tool |
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* S<target> : The target temperature in current units. Wait for heating only. |
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* R<target> : The target temperature in current units. Wait for heating and cooling. |
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* S<target> : The target temperature in current units. For M109, only wait when heating up. |
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* |
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* With AUTOTEMP... |
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* F<factor> : Autotemp Scaling Factor. Set non-zero to enable Auto-temp. |
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* S<min> : Minimum temperature, in current units. |
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* B<max> : Maximum temperature, in current units. |
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* |
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* M109 Parameters |
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* R<target> : The target temperature in current units. Wait for heating and cooling. |
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* |
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* Examples |
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* M109 S100 : Set target to 100°. Wait until the hotend is at or above 100°. |
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* M104 S100 : Set target to 100° and return. |
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* M109 R150 : Set target to 150°. Wait until the hotend gets close to 150°. |
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* |
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* With PRINTJOB_TIMER_AUTOSTART turning on heaters will start the print job timer |
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* (used by printingIsActive, etc.) and turning off heaters will stop the timer. |
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*/ |
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void GcodeSuite::M109() { |
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void GcodeSuite::M104_M109(const bool isM109) { |
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if (DEBUGGING(DRYRUN)) return; |
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@ -160,7 +100,7 @@ void GcodeSuite::M109() { |
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bool no_wait_for_cooling = false; |
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if (!got_temp) { |
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no_wait_for_cooling = parser.seenval('S'); |
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got_temp = no_wait_for_cooling || parser.seenval('R'); |
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got_temp = no_wait_for_cooling || (isM109 && parser.seenval('R')); |
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if (got_temp) temp = parser.value_celsius(); |
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} |
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@ -182,7 +122,7 @@ void GcodeSuite::M109() { |
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* standby mode, (e.g., in a dual extruder setup) without affecting |
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* the running print timer. |
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*/ |
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thermalManager.auto_job_check_timer(true, true); |
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thermalManager.auto_job_check_timer(isM109, true); |
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#endif |
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#if HAS_STATUS_MESSAGE |
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@ -193,7 +133,7 @@ void GcodeSuite::M109() { |
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TERN_(AUTOTEMP, planner.autotemp_M104_M109()); |
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if (got_temp) |
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if (isM109 && got_temp) |
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(void)thermalManager.wait_for_hotend(target_extruder, no_wait_for_cooling); |
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} |
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