Update defines for patched temperature macros (#14161)
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@ -1369,9 +1369,9 @@ static_assert(Y_MAX_LENGTH >= Y_BED_SIZE, "Movement bounds (Y_MIN_POS, Y_MAX_POS
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#error "TEMP_SENSOR_4 1000 requires HOTEND4_PULLUP_RESISTOR_OHMS, HOTEND4_RESISTANCE_25C_OHMS and HOTEND4_BETA in Configuration_adv.h."
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#error "TEMP_SENSOR_4 1000 requires HOTEND4_PULLUP_RESISTOR_OHMS, HOTEND4_RESISTANCE_25C_OHMS and HOTEND4_BETA in Configuration_adv.h."
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#elif ENABLED(HEATER_5_USER_THERMISTOR) && !(defined(HOTEND5_PULLUP_RESISTOR_OHMS) && defined(HOTEND5_RESISTANCE_25C_OHMS) && defined(HOTEND5_BETA))
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#elif ENABLED(HEATER_5_USER_THERMISTOR) && !(defined(HOTEND5_PULLUP_RESISTOR_OHMS) && defined(HOTEND5_RESISTANCE_25C_OHMS) && defined(HOTEND5_BETA))
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#error "TEMP_SENSOR_5 1000 requires HOTEND5_PULLUP_RESISTOR_OHMS, HOTEND5_RESISTANCE_25C_OHMS and HOTEND5_BETA in Configuration_adv.h."
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#error "TEMP_SENSOR_5 1000 requires HOTEND5_PULLUP_RESISTOR_OHMS, HOTEND5_RESISTANCE_25C_OHMS and HOTEND5_BETA in Configuration_adv.h."
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#elif ENABLED(BED_USER_THERMISTOR) && !(defined(BED_PULLUP_RESISTOR_OHMS) && defined(BED_RESISTANCE_25C_OHMS) && defined(BED_BETA))
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#elif ENABLED(HEATER_BED_USER_THERMISTOR) && !(defined(BED_PULLUP_RESISTOR_OHMS) && defined(BED_RESISTANCE_25C_OHMS) && defined(BED_BETA))
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#error "TEMP_SENSOR_BED 1000 requires BED_PULLUP_RESISTOR_OHMS, BED_RESISTANCE_25C_OHMS and BED_BETA in Configuration_adv.h."
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#error "TEMP_SENSOR_BED 1000 requires BED_PULLUP_RESISTOR_OHMS, BED_RESISTANCE_25C_OHMS and BED_BETA in Configuration_adv.h."
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#elif ENABLED(CHAMBER_USER_THERMISTOR) && !(defined(CHAMBER_PULLUP_RESISTOR_OHMS) && defined(CHAMBER_RESISTANCE_25C_OHMS) && defined(CHAMBER_BETA))
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#elif ENABLED(HEATER_CHAMBER_USER_THERMISTOR) && !(defined(CHAMBER_PULLUP_RESISTOR_OHMS) && defined(CHAMBER_RESISTANCE_25C_OHMS) && defined(CHAMBER_BETA))
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#error "TEMP_SENSOR_CHAMBER 1000 requires CHAMBER_PULLUP_RESISTOR_OHMS, CHAMBER_RESISTANCE_25C_OHMS and CHAMBER_BETA in Configuration_adv.h."
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#error "TEMP_SENSOR_CHAMBER 1000 requires CHAMBER_PULLUP_RESISTOR_OHMS, CHAMBER_RESISTANCE_25C_OHMS and CHAMBER_BETA in Configuration_adv.h."
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#endif
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#endif
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@ -1231,10 +1231,10 @@ void Temperature::manage_heater() {
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#if ENABLED(HEATER_5_USER_THERMISTOR)
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#if ENABLED(HEATER_5_USER_THERMISTOR)
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{ true, 0, 0, HOTEND5_PULLUP_RESISTOR_OHMS, HOTEND5_RESISTANCE_25C_OHMS, 0, 0, HOTEND5_BETA, 0 },
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{ true, 0, 0, HOTEND5_PULLUP_RESISTOR_OHMS, HOTEND5_RESISTANCE_25C_OHMS, 0, 0, HOTEND5_BETA, 0 },
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#endif
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#endif
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#if ENABLED(BED_USER_THERMISTOR)
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#if ENABLED(HEATER_BED_USER_THERMISTOR)
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{ true, 0, 0, BED_PULLUP_RESISTOR_OHMS, BED_RESISTANCE_25C_OHMS, 0, 0, BED_BETA, 0 },
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{ true, 0, 0, BED_PULLUP_RESISTOR_OHMS, BED_RESISTANCE_25C_OHMS, 0, 0, BED_BETA, 0 },
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#endif
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#endif
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#if ENABLED(CHAMBER_USER_THERMISTOR)
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#if ENABLED(HEATER_CHAMBER_USER_THERMISTOR)
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{ true, 0, 0, CHAMBER_PULLUP_RESISTOR_OHMS, CHAMBER_RESISTANCE_25C_OHMS, 0, 0, CHAMBER_BETA, 0 }
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{ true, 0, 0, CHAMBER_PULLUP_RESISTOR_OHMS, CHAMBER_RESISTANCE_25C_OHMS, 0, 0, CHAMBER_BETA, 0 }
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#endif
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#endif
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};
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};
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@ -1276,10 +1276,10 @@ void Temperature::manage_heater() {
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#if ENABLED(HEATER_5_USER_THERMISTOR)
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#if ENABLED(HEATER_5_USER_THERMISTOR)
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t_index == CTI_HOTEND_5 ? PSTR("HOTEND 5") :
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t_index == CTI_HOTEND_5 ? PSTR("HOTEND 5") :
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#endif
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#endif
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#if ENABLED(BED_USER_THERMISTOR)
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#if ENABLED(HEATER_BED_USER_THERMISTOR)
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t_index == CTI_BED ? PSTR("BED") :
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t_index == CTI_BED ? PSTR("BED") :
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#endif
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#endif
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#if ENABLED(CHAMBER_USER_THERMISTOR)
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#if ENABLED(HEATER_CHAMBER_USER_THERMISTOR)
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t_index == CTI_CHAMBER ? PSTR("CHAMBER") :
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t_index == CTI_CHAMBER ? PSTR("CHAMBER") :
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#endif
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#endif
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nullptr
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nullptr
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@ -1429,7 +1429,7 @@ float Temperature::analog_to_celsius_hotend(const int raw, const uint8_t e) {
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// Derived from RepRap FiveD extruder::getTemperature()
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// Derived from RepRap FiveD extruder::getTemperature()
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// For bed temperature measurement.
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// For bed temperature measurement.
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float Temperature::analog_to_celsius_bed(const int raw) {
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float Temperature::analog_to_celsius_bed(const int raw) {
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#if ENABLED(BED_USER_THERMISTOR)
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#if ENABLED(HEATER_BED_USER_THERMISTOR)
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return user_thermistor_to_deg_c(CTI_BED, raw);
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return user_thermistor_to_deg_c(CTI_BED, raw);
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#elif ENABLED(HEATER_BED_USES_THERMISTOR)
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#elif ENABLED(HEATER_BED_USES_THERMISTOR)
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SCAN_THERMISTOR_TABLE(BED_TEMPTABLE, BED_TEMPTABLE_LEN);
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SCAN_THERMISTOR_TABLE(BED_TEMPTABLE, BED_TEMPTABLE_LEN);
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@ -1447,7 +1447,7 @@ float Temperature::analog_to_celsius_hotend(const int raw, const uint8_t e) {
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// Derived from RepRap FiveD extruder::getTemperature()
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// Derived from RepRap FiveD extruder::getTemperature()
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// For chamber temperature measurement.
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// For chamber temperature measurement.
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float Temperature::analog_to_celsius_chamber(const int raw) {
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float Temperature::analog_to_celsius_chamber(const int raw) {
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#if ENABLED(CHAMBER_USER_THERMISTOR)
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#if ENABLED(HEATER_CHAMBER_USER_THERMISTOR)
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return user_thermistor_to_deg_c(CTI_CHAMBER, raw);
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return user_thermistor_to_deg_c(CTI_CHAMBER, raw);
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#elif ENABLED(HEATER_CHAMBER_USES_THERMISTOR)
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#elif ENABLED(HEATER_CHAMBER_USES_THERMISTOR)
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SCAN_THERMISTOR_TABLE(CHAMBER_TEMPTABLE, CHAMBER_TEMPTABLE_LEN);
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SCAN_THERMISTOR_TABLE(CHAMBER_TEMPTABLE, CHAMBER_TEMPTABLE_LEN);
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@ -233,10 +233,10 @@ typedef struct { int16_t raw_min, raw_max, mintemp, maxtemp; } temp_range_t;
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#if ENABLED(HEATER_5_USER_THERMISTOR)
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#if ENABLED(HEATER_5_USER_THERMISTOR)
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CTI_HOTEND_5,
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CTI_HOTEND_5,
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#endif
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#endif
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#if ENABLED(BED_USER_THERMISTOR)
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#if ENABLED(HEATER_BED_USER_THERMISTOR)
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CTI_BED,
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CTI_BED,
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#endif
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#endif
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#if ENABLED(CHAMBER_USER_THERMISTOR)
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#if ENABLED(HEATER_CHAMBER_USER_THERMISTOR)
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CTI_CHAMBER,
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CTI_CHAMBER,
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#endif
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#endif
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USER_THERMISTORS
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USER_THERMISTORS
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