Spacing, coding standards
This commit is contained in:
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@ -728,9 +728,9 @@
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// or until outcoming filament color is not clear for filament color change
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// or until outcoming filament color is not clear for filament color change
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#define FILAMENT_CHANGE_EXTRUDE_FEEDRATE 3 // Extrude filament feedrate in mm/s - must be slower than load feedrate
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#define FILAMENT_CHANGE_EXTRUDE_FEEDRATE 3 // Extrude filament feedrate in mm/s - must be slower than load feedrate
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#define FILAMENT_CHANGE_NOZZLE_TIMEOUT 45L // Turn off nozzle if user doesn't change filament within this time limit in seconds
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#define FILAMENT_CHANGE_NOZZLE_TIMEOUT 45L // Turn off nozzle if user doesn't change filament within this time limit in seconds
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#define FILAMENT_CHANGE_NUMBER_OF_ALERT_BEEPS 5L // Number of alert beeps before printer goes quiet
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#define FILAMENT_CHANGE_NUMBER_OF_ALERT_BEEPS 5L // Number of alert beeps before printer goes quiet
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#define STEPPER_MOTORS_DONT_TIMEOUT_DURING_FILAMENT_CHANGE // Enable to make stepper motors hold position during filament change even if it
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#define FILAMENT_CHANGE_NO_STEPPER_TIMEOUT // Enable to have stepper motors hold position during filament change
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// takes longer than DEFAULT_STEPPER_DEACTIVE_TIME
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// even if it takes longer than DEFAULT_STEPPER_DEACTIVE_TIME.
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#endif
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#endif
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/******************************************************************************\
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/******************************************************************************\
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@ -7310,7 +7310,7 @@ inline void gcode_M503() {
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}
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}
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}
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}
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bool busy_doing_M600 = false;
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static bool busy_doing_M600 = false;
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/**
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/**
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* M600: Pause for filament change
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* M600: Pause for filament change
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@ -7351,8 +7351,6 @@ inline void gcode_M503() {
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#define RUNPLAN(RATE_MM_S) line_to_destination(RATE_MM_S);
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#define RUNPLAN(RATE_MM_S) line_to_destination(RATE_MM_S);
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#endif
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#endif
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KEEPALIVE_STATE(IN_HANDLER);
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// Initial retract before move to filament change position
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// Initial retract before move to filament change position
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if (code_seen('E')) destination[E_AXIS] += code_value_axis_units(E_AXIS);
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if (code_seen('E')) destination[E_AXIS] += code_value_axis_units(E_AXIS);
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#if defined(FILAMENT_CHANGE_RETRACT_LENGTH) && FILAMENT_CHANGE_RETRACT_LENGTH > 0
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#if defined(FILAMENT_CHANGE_RETRACT_LENGTH) && FILAMENT_CHANGE_RETRACT_LENGTH > 0
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@ -7409,10 +7407,9 @@ inline void gcode_M503() {
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disable_e3();
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disable_e3();
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delay(100);
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delay(100);
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millis_t nozzle_timeout = millis() + FILAMENT_CHANGE_NOZZLE_TIMEOUT*1000L;
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millis_t nozzle_timeout = millis() + FILAMENT_CHANGE_NOZZLE_TIMEOUT * 1000L;
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bool nozzle_timed_out = false;
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bool nozzle_timed_out = false;
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float temps[4];
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float temps[4];
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int iii;
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// Wait for filament insert by user and press button
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// Wait for filament insert by user and press button
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_INSERT);
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_INSERT);
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@ -7422,62 +7419,62 @@ inline void gcode_M503() {
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wait_for_user = true; // LCD click or M108 will clear this
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wait_for_user = true; // LCD click or M108 will clear this
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next_buzz = 0;
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next_buzz = 0;
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runout_beep = 0;
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runout_beep = 0;
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for( iii=0; iii<HOTENDS; iii++) //Save nozzle temps
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HOTEND_LOOP() temps[e] = thermalManager.target_temperature[e]; // Save nozzle temps
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temps[iii] = thermalManager.target_temperature[iii];
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while (wait_for_user) {
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while (wait_for_user) {
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millis_t current_ms = millis();
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millis_t current_ms = millis();
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if (nozzle_timed_out == true)
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if (nozzle_timed_out)
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE);
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE);
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#if HAS_BUZZER
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#if HAS_BUZZER
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filament_change_beep();
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filament_change_beep();
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#endif //HAS_BUZZER
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#endif
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if (current_ms >= nozzle_timeout) {
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if (current_ms >= nozzle_timeout) {
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if (nozzle_timed_out == false ) {
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if (!nozzle_timed_out) {
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nozzle_timed_out = true; // if the nozzle time out happens, remember we turned off the nozzles.
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nozzle_timed_out = true; // on nozzle timeout remember the nozzles need to be reheated
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for( iii=0; iii<HOTENDS; iii++) // turn off all the nozzles
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HOTEND_LOOP() thermalManager.setTargetHotend(0, e); // Turn off all the nozzles
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thermalManager.setTargetHotend( 0.0 , iii );
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE);
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE);
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}
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}
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}
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}
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idle(true);
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idle(true);
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}
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}
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if (nozzle_timed_out == true ) { // Turn nozzles back on if we turned them off.
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if (nozzle_timed_out) // Turn nozzles back on if they were turned off
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for( iii=0; iii<HOTENDS; iii++)
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HOTEND_LOOP() thermalManager.setTargetHotend(temps[e], e);
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thermalManager.setTargetHotend( temps[iii] , iii );
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_WAIT_FOR_NOZZLES_TO_HEAT);
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}
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KEEP_CHECKING_TEMPS:
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// Show "wait for heating"
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idle();
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_WAIT_FOR_NOZZLES_TO_HEAT);
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for( iii=0; iii<HOTENDS; iii++){
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if (abs(thermalManager.degHotend(iii)-temps[iii]) > 3 ) {
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wait_for_heatup = true;
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_WAIT_FOR_NOZZLES_TO_HEAT);
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while (wait_for_heatup) {
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goto KEEP_CHECKING_TEMPS;
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idle();
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wait_for_heatup = false;
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HOTEND_LOOP() {
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if (abs(thermalManager.degHotend(e) - temps[e]) > 3) {
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wait_for_heatup = true;
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break;
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}
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}
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}
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}
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}
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// Show "insert filament"
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if (nozzle_timed_out)
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_INSERT);
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wait_for_user = true; // LCD click or M108 will clear this
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wait_for_user = true; // LCD click or M108 will clear this
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next_buzz = 0;
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next_buzz = 0;
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runout_beep = 0;
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runout_beep = 0;
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while (wait_for_user) {
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while (wait_for_user && nozzle_timed_out) {
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if (nozzle_timed_out == true)
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_INSERT);
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else break;
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#if HAS_BUZZER
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#if HAS_BUZZER
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filament_change_beep();
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filament_change_beep();
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#endif
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#endif
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idle(true);
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idle(true);
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}
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}
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// Show load message
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// Show "load" message
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_LOAD);
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_LOAD);
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idle();
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// Load filament
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// Load filament
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if (code_seen('L')) destination[E_AXIS] -= code_value_axis_units(E_AXIS);
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if (code_seen('L')) destination[E_AXIS] -= code_value_axis_units(E_AXIS);
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#if defined(FILAMENT_CHANGE_LOAD_LENGTH) && FILAMENT_CHANGE_LOAD_LENGTH > 0
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#if defined(FILAMENT_CHANGE_LOAD_LENGTH) && FILAMENT_CHANGE_LOAD_LENGTH > 0
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@ -7504,8 +7501,6 @@ KEEP_CHECKING_TEMPS:
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_RESUME);
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lcd_filament_change_show_message(FILAMENT_CHANGE_MESSAGE_RESUME);
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KEEPALIVE_STATE(IN_HANDLER);
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// Set extruder to saved position
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// Set extruder to saved position
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destination[E_AXIS] = current_position[E_AXIS] = lastpos[E_AXIS];
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destination[E_AXIS] = current_position[E_AXIS] = lastpos[E_AXIS];
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planner.set_e_position_mm(current_position[E_AXIS]);
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planner.set_e_position_mm(current_position[E_AXIS]);
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@ -10144,14 +10139,15 @@ void manage_inactivity(bool ignore_stepper_queue/*=false*/) {
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millis_t ms = millis();
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millis_t ms = millis();
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if (max_inactive_time && ELAPSED(ms, previous_cmd_ms + max_inactive_time)) kill(PSTR(MSG_KILLED));
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if (max_inactive_time && ELAPSED(ms, previous_cmd_ms + max_inactive_time)) kill(PSTR(MSG_KILLED));
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#if ENABLED(FILAMENT_CHANGE_FEATURE)
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// Prevent steppers timing-out in the middle of M600
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#ifdef STEPPER_MOTORS_DONT_TIMEOUT_DURING_FILAMENT_CHANGE
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#if ENABLED(FILAMENT_CHANGE_FEATURE) && ENABLED(FILAMENT_CHANGE_NO_STEPPER_TIMEOUT)
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if (busy_doing_M600 == false ) // We only allow the stepper motors to time out if
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#define M600_TEST !busy_doing_M600
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#endif // we are not in the middle of an M600 command.
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#else
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#define M600_TEST true
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#endif
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#endif
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if (stepper_inactive_time && ELAPSED(ms, previous_cmd_ms + stepper_inactive_time)
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if (M600_TEST && stepper_inactive_time && ELAPSED(ms, previous_cmd_ms + stepper_inactive_time)
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&& !ignore_stepper_queue && !planner.blocks_queued()) {
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&& !ignore_stepper_queue && !planner.blocks_queued()) {
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#if ENABLED(DISABLE_INACTIVE_X)
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#if ENABLED(DISABLE_INACTIVE_X)
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disable_x();
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disable_x();
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@ -950,7 +950,7 @@ void kill_screen(const char* lcd_msg) {
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// Change filament
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// Change filament
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//
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//
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#if ENABLED(FILAMENT_CHANGE_FEATURE)
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#if ENABLED(FILAMENT_CHANGE_FEATURE)
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if (!thermalManager.tooColdToExtrude(active_extruder))
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if (!thermalManager.tooColdToExtrude(active_extruder))
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MENU_ITEM(function, MSG_FILAMENTCHANGE, lcd_enqueue_filament_change);
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MENU_ITEM(function, MSG_FILAMENTCHANGE, lcd_enqueue_filament_change);
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#endif
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#endif
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@ -2446,19 +2446,19 @@ KeepDrawing:
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}
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}
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#endif // LCD_INFO_MENU
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#endif // LCD_INFO_MENU
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/**
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/**
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*
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*
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* Filament Change Feature Screens
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* Filament Change Feature Screens
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*
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*
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*/
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*/
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#if ENABLED(FILAMENT_CHANGE_FEATURE)
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#if ENABLED(FILAMENT_CHANGE_FEATURE)
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void lcd_filament_change_toocold_menu() {
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void lcd_filament_change_toocold_menu() {
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START_MENU();
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START_MENU();
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STATIC_ITEM(MSG_HEATING_FAILED_LCD, true, true);
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STATIC_ITEM(MSG_HEATING_FAILED_LCD, true, true);
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STATIC_ITEM (MSG_FILAMENT_CHANGE_MINTEMP STRINGIFY(EXTRUDE_MINTEMP) ".", false, false);
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STATIC_ITEM(MSG_FILAMENT_CHANGE_MINTEMP STRINGIFY(EXTRUDE_MINTEMP) ".", false, false);
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MENU_BACK(MSG_BACK);
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MENU_BACK(MSG_BACK);
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STATIC_ITEM (" ");
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STATIC_ITEM(" ");
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STATIC_ITEM(MSG_FILAMENT_CHANGE_NOZZLE, false, true);
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STATIC_ITEM(MSG_FILAMENT_CHANGE_NOZZLE, false, true);
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lcd_implementation_hotend_status();
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lcd_implementation_hotend_status();
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END_MENU();
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END_MENU();
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@ -2604,31 +2604,24 @@ KeepDrawing:
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switch (message) {
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switch (message) {
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case FILAMENT_CHANGE_MESSAGE_INIT:
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case FILAMENT_CHANGE_MESSAGE_INIT:
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defer_return_to_status = true;
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defer_return_to_status = true;
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_init_message);
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lcd_goto_screen(lcd_filament_change_init_message);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_UNLOAD:
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case FILAMENT_CHANGE_MESSAGE_UNLOAD:
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_unload_message);
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lcd_goto_screen(lcd_filament_change_unload_message);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_INSERT:
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case FILAMENT_CHANGE_MESSAGE_INSERT:
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_insert_message);
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lcd_goto_screen(lcd_filament_change_insert_message);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_LOAD:
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case FILAMENT_CHANGE_MESSAGE_LOAD:
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_load_message);
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lcd_goto_screen(lcd_filament_change_load_message);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_EXTRUDE:
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case FILAMENT_CHANGE_MESSAGE_EXTRUDE:
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_extrude_message);
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lcd_goto_screen(lcd_filament_change_extrude_message);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE:
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case FILAMENT_CHANGE_MESSAGE_CLICK_TO_HEAT_NOZZLE:
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_heat_nozzle);
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lcd_goto_screen(lcd_filament_change_heat_nozzle);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_WAIT_FOR_NOZZLES_TO_HEAT:
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case FILAMENT_CHANGE_MESSAGE_WAIT_FOR_NOZZLES_TO_HEAT:
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lcdDrawUpdate = LCDVIEW_CALL_REDRAW_NEXT;
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lcd_goto_screen(lcd_filament_change_wait_for_nozzles_to_heat);
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lcd_goto_screen(lcd_filament_change_wait_for_nozzles_to_heat);
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break;
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break;
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case FILAMENT_CHANGE_MESSAGE_OPTION:
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case FILAMENT_CHANGE_MESSAGE_OPTION:
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@ -382,9 +382,9 @@ FORCE_INLINE void _draw_axis_label(const AxisEnum axis, const char* const pstr,
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static void lcd_implementation_hotend_status() {
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static void lcd_implementation_hotend_status() {
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u8g.setPrintPos(58, 60);
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u8g.setPrintPos(58, 60);
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lcd_print( (char) '0'+active_extruder );
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lcd_print((char)('0' + active_extruder));
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lcd_print( ' ' );
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lcd_print(' ');
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lcd_print( ' ' );
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lcd_print(' ');
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lcd_print(itostr3(thermalManager.degHotend(active_extruder)));
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lcd_print(itostr3(thermalManager.degHotend(active_extruder)));
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lcd_print('/');
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lcd_print('/');
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lcd_print(itostr3(thermalManager.degTargetHotend(active_extruder)));
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lcd_print(itostr3(thermalManager.degTargetHotend(active_extruder)));
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@ -593,7 +593,7 @@ FORCE_INLINE void _draw_axis_label(const AxisEnum axis, const char* const pstr,
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#endif // LCD_PROGRESS_BAR
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#endif // LCD_PROGRESS_BAR
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static void lcd_implementation_hotend_status() {
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static void lcd_implementation_hotend_status() {
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lcd.setCursor(10,3);
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lcd.setCursor(10, 3);
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lcd.print(LCD_STR_THERMOMETER[active_extruder]);
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lcd.print(LCD_STR_THERMOMETER[active_extruder]);
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lcd.print(itostr3(thermalManager.degHotend(active_extruder)));
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lcd.print(itostr3(thermalManager.degHotend(active_extruder)));
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lcd.print('/');
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lcd.print('/');
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