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@ -111,33 +111,24 @@ static volatile bool temp_meas_ready = false;
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unsigned long watchmillis = 0;
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#endif //WATCHPERIOD
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// Init min and max temp with extreme values to prevent false errors during startup
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static int minttemp[EXTRUDERS] = { 0 };
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static int maxttemp[EXTRUDERS] = { 16383 }; // the first value used for all
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static int bed_minttemp = 0;
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static int bed_maxttemp = 16383;
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static void *heater_ttbl_map[EXTRUDERS] = { (void *)heater_0_temptable
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#if EXTRUDERS > 1
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, (void *)heater_1_temptable
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#endif
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#if EXTRUDERS > 2
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, (void *)heater_2_temptable
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#endif
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#if EXTRUDERS > 3
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#error Unsupported number of extruders
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#endif
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};
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static int heater_ttbllen_map[EXTRUDERS] = { heater_0_temptable_len
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#if EXTRUDERS > 1
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, heater_1_temptable_len
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#endif
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#if EXTRUDERS > 2
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, heater_2_temptable_len
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#endif
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#if EXTRUDERS > 3
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#error Unsupported number of extruders
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# error Unsupported number of extruders
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#elif EXTRUDERS > 2
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# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1, v2, v3 }
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#elif EXTRUDERS > 1
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# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1, v2 }
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#else
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# define ARRAY_BY_EXTRUDERS(v1, v2, v3) { v1 }
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#endif
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};
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// Init min and max temp with extreme values to prevent false errors during startup
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static int minttemp[EXTRUDERS] = ARRAY_BY_EXTRUDERS(0, 0, 0);
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static int maxttemp[EXTRUDERS] = ARRAY_BY_EXTRUDERS(16383, 16383, 16383); // the first value used for all
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static int bed_minttemp = 0;
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static int bed_maxttemp = 16383;
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static void *heater_ttbl_map[EXTRUDERS] = ARRAY_BY_EXTRUDERS((void *)heater_0_temptable, (void *)heater_1_temptable, (void *)heater_2_temptable);
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static int heater_ttbllen_map[EXTRUDERS] = ARRAY_BY_EXTRUDERS(heater_0_temptable_len, heater_1_temptable_len, heater_2_temptable_len);
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//===========================================================================
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//============================= functions ============================
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@ -820,6 +811,9 @@ void max_temp_error(uint8_t e) {
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SERIAL_ERRORLN((int)e);
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SERIAL_ERRORLNPGM(": Extruder switched off. MAXTEMP triggered !");
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}
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#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
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Stop();
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#endif
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}
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void min_temp_error(uint8_t e) {
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@ -829,6 +823,9 @@ void min_temp_error(uint8_t e) {
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SERIAL_ERRORLN((int)e);
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SERIAL_ERRORLNPGM(": Extruder switched off. MINTEMP triggered !");
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}
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#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
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Stop();
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#endif
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}
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void bed_max_temp_error(void) {
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@ -839,16 +836,19 @@ void bed_max_temp_error(void) {
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SERIAL_ERROR_START;
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SERIAL_ERRORLNPGM("Temperature heated bed switched off. MAXTEMP triggered !!");
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}
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#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
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Stop();
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#endif
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}
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#define HEAT_INTERVAL 250
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#ifdef HEATER_0_USES_MAX6675
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#define MAX6675_HEAT_INTERVAL 250
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long max6675_previous_millis = -HEAT_INTERVAL;
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int max6675_temp = 2000;
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int read_max6675()
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{
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if (millis() - max6675_previous_millis < HEAT_INTERVAL)
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if (millis() - max6675_previous_millis < MAX6675_HEAT_INTERVAL)
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return max6675_temp;
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max6675_previous_millis = millis();
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@ -1077,20 +1077,10 @@ ISR(TIMER0_COMPB_vect)
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if(current_raw[e] >= maxttemp[e]) {
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target_raw[e] = 0;
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max_temp_error(e);
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#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
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{
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Stop();;
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}
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#endif
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}
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if(current_raw[e] <= minttemp[e]) {
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target_raw[e] = 0;
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min_temp_error(e);
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#ifndef BOGUS_TEMPERATURE_FAILSAFE_OVERRIDE
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{
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Stop();
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}
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#endif
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}
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}
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@ -1098,7 +1088,6 @@ ISR(TIMER0_COMPB_vect)
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if(current_raw_bed >= bed_maxttemp) {
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target_raw_bed = 0;
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bed_max_temp_error();
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Stop();
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}
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#endif
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}
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