untestest commit, so I don't loose code.. features runout prevention addons
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@ -248,7 +248,7 @@ const bool Z_ENDSTOPS_INVERTING = true; // set to true to invert the logic of th
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#define SLOWDOWN
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#define SLOWDOWN
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//default stepper release if idle
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//default stepper release if idle
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#define DEFAULT_STEPPER_DEACTIVE_TIME 60
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#define DEFAULT_STEPPER_DEACTIVE_TIME 1200
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#define DEFAULT_STEPPER_DEACTIVE_COMMAND "M84 X Y E" //z stays powered
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#define DEFAULT_STEPPER_DEACTIVE_COMMAND "M84 X Y E" //z stays powered
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@ -176,8 +176,10 @@ const int sensitive_pins[] = SENSITIVE_PINS; // Sensitive pin list for M42
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//Inactivity shutdown variables
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//Inactivity shutdown variables
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static unsigned long previous_millis_cmd = 0;
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static unsigned long previous_millis_cmd = 0;
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static unsigned long previous_millis_runoutprevent = 0;
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//static unsigned long previous_millis_beep = 0;
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static unsigned long max_inactive_time=0;
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static unsigned long max_inactive_time=0;
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static unsigned long stepper_inactive_time = DEFAULT_STEPPER_DEACTIVE_TIME*1000;
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static unsigned long stepper_inactive_time = 0;
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static unsigned long last_stepperdisabled_time=30*1000; //first release check after 30 seconds
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static unsigned long last_stepperdisabled_time=30*1000; //first release check after 30 seconds
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static unsigned long starttime=0;
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static unsigned long starttime=0;
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@ -243,6 +245,10 @@ void setup()
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fromsd[i] = false;
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fromsd[i] = false;
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}
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}
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max_inactive_time = DEFAULT_MAX_INACTIVE_TIME*1000;
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stepper_inactive_time = DEFAULT_STEPPER_DEACTIVE_TIME*1000;
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EEPROM_RetrieveSettings(); // loads data from EEPROM if available
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EEPROM_RetrieveSettings(); // loads data from EEPROM if available
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for(int8_t i=0; i < NUM_AXIS; i++)
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for(int8_t i=0; i < NUM_AXIS; i++)
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@ -415,6 +421,7 @@ FORCE_INLINE void get_command()
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SERIAL_ECHO_START;
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SERIAL_ECHO_START;
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SERIAL_ECHOLN(time);
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SERIAL_ECHOLN(time);
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LCD_MESSAGE(time);
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LCD_MESSAGE(time);
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st_synchronize();
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card.printingHasFinished();
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card.printingHasFinished();
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card.checkautostart(true);
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card.checkautostart(true);
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@ -1200,11 +1207,34 @@ void prepare_arc_move(char isclockwise) {
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void manage_inactivity(byte debug)
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void manage_inactivity(byte debug)
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{
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{
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if( (millis()-previous_millis_cmd) > max_inactive_time )
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unsigned long curtime=millis();
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SERIAL_ECHO_START;
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SERIAL_ECHO("MS");
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SERIAL_ECHO(millis());
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SERIAL_ECHO(" PREV_CMD");
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SERIAL_ECHO(previous_millis_cmd);
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SERIAL_ECHO(" maxinactive");
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SERIAL_ECHOLN(max_inactive_time );
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if( (curtime-previous_millis_cmd) > max_inactive_time )
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if(max_inactive_time)
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if(max_inactive_time)
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{
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LCD_MESSAGEPGM("Bored Shutdown.");
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SERIAL_ERROR_START;
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SERIAL_ERRORLNPGM("Bored Shutdown.");
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kill();
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kill();
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}
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if( (curtime-previous_millis_cmd) > DEFAULT_MAX_HOT_TIME*1000 )
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if(DEFAULT_MAX_HOT_TIME && (degHotend0()>HOTTEMP) )
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{
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LCD_MESSAGEPGM("Hot too long.");
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SERIAL_ECHO_START;
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SERIAL_ECHOLNPGM("Hot too long");
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disable_heater();
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}
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if(stepper_inactive_time)
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if(stepper_inactive_time)
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if( (millis()-last_stepperdisabled_time) > stepper_inactive_time )
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if( (curtime-last_stepperdisabled_time) > stepper_inactive_time )
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{
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{
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if(previous_millis_cmd>last_stepperdisabled_time)
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if(previous_millis_cmd>last_stepperdisabled_time)
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last_stepperdisabled_time=previous_millis_cmd;
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last_stepperdisabled_time=previous_millis_cmd;
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@ -1216,8 +1246,16 @@ void manage_inactivity(byte debug)
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}
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}
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}
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}
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#ifdef EXTRUDER_RUNOUT_PREVENT
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#ifdef EXTRUDER_RUNOUT_PREVENT
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if( (millis()-previous_millis_cmd) > EXTRUDER_RUNOUT_SECONDS*1000 )
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if(!blocks_queued())
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if(degHotend(active_extruder)>EXTRUDER_RUNOUT_MINTEMP)
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if( (curtime-previous_millis_cmd) > EXTRUDER_RUNOUT_SECONDS*1000 )
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{
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if(previous_millis_cmd>previous_millis_runoutprevent)
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{
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previous_millis_runoutprevent=previous_millis_cmd;
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}
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if(degHotend0()>EXTRUDER_RUNOUT_MINTEMP)
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if((curtime-previous_millis_runoutprevent) > EXTRUDER_RUNOUT_SECONDS*1000)
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{
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{
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bool oldstatus=READ(E_ENABLE_PIN);
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bool oldstatus=READ(E_ENABLE_PIN);
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enable_e();
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enable_e();
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@ -1229,11 +1267,17 @@ void manage_inactivity(byte debug)
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current_position[E_AXIS]=oldepos;
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current_position[E_AXIS]=oldepos;
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destination[E_AXIS]=oldedes;
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destination[E_AXIS]=oldedes;
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plan_set_e_position(oldepos);
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plan_set_e_position(oldepos);
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previous_millis_cmd=millis();
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//enquecommand(DEFAULT_STEPPER_DEACTIVE_COMMAND);
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while(current_block!=NULL || blocks_queued())
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st_synchronize();
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{
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manage_heater();
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LCD_STATUS;
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}
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previous_millis_runoutprevent=millis();
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WRITE(E_ENABLE_PIN,oldstatus);
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WRITE(E_ENABLE_PIN,oldstatus);
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}
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}
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}
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#endif
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#endif
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check_axes_activity();
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check_axes_activity();
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}
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}
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@ -1247,7 +1291,7 @@ void kill()
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disable_z();
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disable_z();
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disable_e();
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disable_e();
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if(PS_ON_PIN > -1) pinMode(PS_ON_PIN,INPUT);
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if(PS_ON_PIN > -1) pinMode(PS_ON_PIN,INPUT); //Turn powersupply off
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SERIAL_ERROR_START;
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SERIAL_ERROR_START;
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SERIAL_ERRORLNPGM("Printer halted. kill() called !!");
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SERIAL_ERRORLNPGM("Printer halted. kill() called !!");
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LCD_MESSAGEPGM("KILLED. ");
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LCD_MESSAGEPGM("KILLED. ");
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@ -706,15 +706,21 @@ void st_init()
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sei();
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sei();
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}
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}
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#include "util/delay.h"
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// Block until all buffered steps are executed
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// Block until all buffered steps are executed
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void st_synchronize()
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void st_synchronize()
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{
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{
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while( blocks_queued()) {
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while(current_block!=NULL || blocks_queued()) {
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manage_heater();
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manage_heater();
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manage_inactivity(1);
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manage_inactivity(1);
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LCD_STATUS;
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LCD_STATUS;
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//_delay_ms(100);
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;
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}
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}
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// _delay_ms(250);_delay_ms(250);_delay_ms(250);_delay_ms(250);
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// _delay_ms(250);_delay_ms(250);_delay_ms(250);_delay_ms(250);
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// _delay_ms(250);_delay_ms(250);_delay_ms(250);_delay_ms(250);
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// _delay_ms(250);_delay_ms(250);_delay_ms(250);_delay_ms(250);
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}
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}
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void st_set_position(const long &x, const long &y, const long &z, const long &e)
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void st_set_position(const long &x, const long &y, const long &z, const long &e)
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@ -451,6 +451,11 @@ void setWatch()
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void disable_heater()
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void disable_heater()
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{
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{
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for(int i=0;i<EXTRUDERS;i++)
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setTargetHotend(0,i);
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setTargetBed(0);
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#if TEMP_0_PIN > -1
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#if TEMP_0_PIN > -1
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target_raw[0]=0;
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target_raw[0]=0;
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#if HEATER_0_PIN > -1
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#if HEATER_0_PIN > -1
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