Improve conditions for HAS_TEMP
and use them in temperuture.h Flattened the if structure - the preprocessor is doing the work - not the Arduino. Arduino.
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@ -345,11 +345,11 @@
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/**
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/**
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* Shorthand for pin tests, for temperature.cpp
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* Shorthand for pin tests, for temperature.cpp
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*/
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*/
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#define HAS_TEMP_0 (defined(TEMP_0_PIN) && TEMP_0_PIN >= 0)
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#define HAS_TEMP_0 (defined(TEMP_0_PIN) && TEMP_0_PIN >= 0 && TEMP_SENSOR_0 != 0 && TEMP_SENSOR_0 != -2)
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#define HAS_TEMP_1 (defined(TEMP_1_PIN) && TEMP_1_PIN >= 0)
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#define HAS_TEMP_1 (defined(TEMP_1_PIN) && TEMP_1_PIN >= 0 && TEMP_SENSOR_1 != 0)
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#define HAS_TEMP_2 (defined(TEMP_2_PIN) && TEMP_2_PIN >= 0)
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#define HAS_TEMP_2 (defined(TEMP_2_PIN) && TEMP_2_PIN >= 0 && TEMP_SENSOR_2 != 0)
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#define HAS_TEMP_3 (defined(TEMP_3_PIN) && TEMP_3_PIN >= 0)
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#define HAS_TEMP_3 (defined(TEMP_3_PIN) && TEMP_3_PIN >= 0 && TEMP_SENSOR_3 != 0)
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#define HAS_TEMP_BED (defined(TEMP_BED_PIN) && TEMP_BED_PIN >= 0)
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#define HAS_TEMP_BED (defined(TEMP_BED_PIN) && TEMP_BED_PIN >= 0 && TEMP_SENSOR_BED != 0)
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#define HAS_FILAMENT_SENSOR (defined(FILAMENT_SENSOR) && defined(FILWIDTH_PIN) && FILWIDTH_PIN >= 0)
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#define HAS_FILAMENT_SENSOR (defined(FILAMENT_SENSOR) && defined(FILWIDTH_PIN) && FILWIDTH_PIN >= 0)
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#define HAS_HEATER_0 (defined(HEATER_0_PIN) && HEATER_0_PIN >= 0)
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#define HAS_HEATER_0 (defined(HEATER_0_PIN) && HEATER_0_PIN >= 0)
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#define HAS_HEATER_1 (defined(HEATER_1_PIN) && HEATER_1_PIN >= 0)
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#define HAS_HEATER_1 (defined(HEATER_1_PIN) && HEATER_1_PIN >= 0)
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@ -1543,7 +1543,7 @@ ISR(TIMER0_COMPB_vect) {
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if ((minttemp_raw[0]) GE0 (current_temperature_raw[0])) min_temp_error(0);
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if ((minttemp_raw[0]) GE0 (current_temperature_raw[0])) min_temp_error(0);
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#endif
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#endif
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#if EXTRUDERS > 1
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#if HAS_TEMP_1
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#if HEATER_1_RAW_LO_TEMP > HEATER_1_RAW_HI_TEMP
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#if HEATER_1_RAW_LO_TEMP > HEATER_1_RAW_HI_TEMP
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#define GE1 <=
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#define GE1 <=
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#else
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#else
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@ -1551,8 +1551,9 @@ ISR(TIMER0_COMPB_vect) {
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#endif
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#endif
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if ((current_temperature_raw[1]) GE1 (maxttemp_raw[1])) max_temp_error(1);
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if ((current_temperature_raw[1]) GE1 (maxttemp_raw[1])) max_temp_error(1);
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if ((minttemp_raw[1]) GE1 (current_temperature_raw[1])) min_temp_error(1);
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if ((minttemp_raw[1]) GE1 (current_temperature_raw[1])) min_temp_error(1);
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#endif // TEMP_SENSOR_1
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#if EXTRUDERS > 2
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#if HAS_TEMP_2
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#if HEATER_2_RAW_LO_TEMP > HEATER_2_RAW_HI_TEMP
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#if HEATER_2_RAW_LO_TEMP > HEATER_2_RAW_HI_TEMP
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#define GE2 <=
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#define GE2 <=
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#else
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#else
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@ -1560,8 +1561,9 @@ ISR(TIMER0_COMPB_vect) {
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#endif
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#endif
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if ((current_temperature_raw[2]) GE2 (maxttemp_raw[2])) max_temp_error(2);
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if ((current_temperature_raw[2]) GE2 (maxttemp_raw[2])) max_temp_error(2);
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if ((minttemp_raw[2]) GE2 (current_temperature_raw[2])) min_temp_error(2);
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if ((minttemp_raw[2]) GE2 (current_temperature_raw[2])) min_temp_error(2);
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#endif // TEMP_SENSOR_2
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#if EXTRUDERS > 3
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#if HAS_TEMP_3
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#if HEATER_3_RAW_LO_TEMP > HEATER_3_RAW_HI_TEMP
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#if HEATER_3_RAW_LO_TEMP > HEATER_3_RAW_HI_TEMP
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#define GE3 <=
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#define GE3 <=
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#else
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#else
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@ -1569,12 +1571,9 @@ ISR(TIMER0_COMPB_vect) {
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#endif
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#endif
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if ((current_temperature_raw[3]) GE3 (maxttemp_raw[3])) max_temp_error(3);
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if ((current_temperature_raw[3]) GE3 (maxttemp_raw[3])) max_temp_error(3);
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if ((minttemp_raw[3]) GE3 (current_temperature_raw[3])) min_temp_error(3);
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if ((minttemp_raw[3]) GE3 (current_temperature_raw[3])) min_temp_error(3);
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#endif // TEMP_SENSOR_3
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#endif // EXTRUDERS > 3
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#if HAS_TEMP_BED
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#endif // EXTRUDERS > 2
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#endif // EXTRUDERS > 1
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#if defined(BED_MAXTEMP) && (TEMP_SENSOR_BED != 0)
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#if HEATER_BED_RAW_LO_TEMP > HEATER_BED_RAW_HI_TEMP
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#if HEATER_BED_RAW_LO_TEMP > HEATER_BED_RAW_HI_TEMP
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#define GEBED <=
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#define GEBED <=
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#else
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#else
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