🐛 Use whole PROBE_TEMP_COMPENSATION values (#22130)
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@ -202,7 +202,7 @@
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#define COOLER_MAXTEMP 26 // (°C)
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#define COOLER_MAXTEMP 26 // (°C)
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#define COOLER_DEFAULT_TEMP 16 // (°C)
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#define COOLER_DEFAULT_TEMP 16 // (°C)
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#define TEMP_COOLER_HYSTERESIS 1 // (°C) Temperature proximity considered "close enough" to the target
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#define TEMP_COOLER_HYSTERESIS 1 // (°C) Temperature proximity considered "close enough" to the target
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#define COOLER_PIN 8 // Laser cooler on/off pin used to control power to the cooling element e.g. TEC, External chiller via relay
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#define COOLER_PIN 8 // Laser cooler on/off pin used to control power to the cooling element (e.g., TEC, External chiller via relay)
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#define COOLER_INVERTING false
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#define COOLER_INVERTING false
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#define TEMP_COOLER_PIN 15 // Laser/Cooler temperature sensor pin. ADC is required.
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#define TEMP_COOLER_PIN 15 // Laser/Cooler temperature sensor pin. ADC is required.
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#define COOLER_FAN // Enable a fan on the cooler, Fan# 0,1,2,3 etc.
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#define COOLER_FAN // Enable a fan on the cooler, Fan# 0,1,2,3 etc.
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@ -1961,21 +1961,21 @@
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//#define USE_TEMP_EXT_COMPENSATION
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//#define USE_TEMP_EXT_COMPENSATION
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// Probe temperature calibration generates a table of values starting at PTC_SAMPLE_START
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// Probe temperature calibration generates a table of values starting at PTC_SAMPLE_START
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// (e.g. 30), in steps of PTC_SAMPLE_RES (e.g. 5) with PTC_SAMPLE_COUNT (e.g. 10) samples.
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// (e.g., 30), in steps of PTC_SAMPLE_RES (e.g., 5) with PTC_SAMPLE_COUNT (e.g., 10) samples.
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//#define PTC_SAMPLE_START 30.0f
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//#define PTC_SAMPLE_START 30 // (°C)
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//#define PTC_SAMPLE_RES 5.0f
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//#define PTC_SAMPLE_RES 5 // (°C)
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//#define PTC_SAMPLE_COUNT 10U
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//#define PTC_SAMPLE_COUNT 10
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// Bed temperature calibration builds a similar table.
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// Bed temperature calibration builds a similar table.
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//#define BTC_SAMPLE_START 60.0f
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//#define BTC_SAMPLE_START 60 // (°C)
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//#define BTC_SAMPLE_RES 5.0f
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//#define BTC_SAMPLE_RES 5 // (°C)
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//#define BTC_SAMPLE_COUNT 10U
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//#define BTC_SAMPLE_COUNT 10
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// The temperature the probe should be at while taking measurements during bed temperature
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// The temperature the probe should be at while taking measurements during bed temperature
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// calibration.
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// calibration.
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//#define BTC_PROBE_TEMP 30.0f
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//#define BTC_PROBE_TEMP 30 // (°C)
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// Height above Z=0.0f to raise the nozzle. Lowering this can help the probe to heat faster.
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// Height above Z=0.0f to raise the nozzle. Lowering this can help the probe to heat faster.
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// Note: the Z=0.0f offset is determined by the probe offset which can be set using M851.
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// Note: the Z=0.0f offset is determined by the probe offset which can be set using M851.
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@ -1984,7 +1984,7 @@
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// Height to raise the Z-probe between heating and taking the next measurement. Some probes
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// Height to raise the Z-probe between heating and taking the next measurement. Some probes
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// may fail to untrigger if they have been triggered for a long time, which can be solved by
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// may fail to untrigger if they have been triggered for a long time, which can be solved by
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// increasing the height the probe is raised to.
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// increasing the height the probe is raised to.
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//#define PTC_PROBE_RAISE 15U
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//#define PTC_PROBE_RAISE 15
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// If the probe is outside of the defined range, use linear extrapolation using the closest
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// If the probe is outside of the defined range, use linear extrapolation using the closest
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// point and the PTC_LINEAR_EXTRAPOLATION'th next point. E.g. if set to 4 it will use data[0]
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// point and the PTC_LINEAR_EXTRAPOLATION'th next point. E.g. if set to 4 it will use data[0]
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@ -2099,7 +2099,7 @@
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// @section motion
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// @section motion
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// The number of linear moves that can be in the planner at once.
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// The number of linear moves that can be in the planner at once.
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// The value of BLOCK_BUFFER_SIZE must be a power of 2 (e.g. 8, 16, 32)
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// The value of BLOCK_BUFFER_SIZE must be a power of 2 (e.g., 8, 16, 32)
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#if BOTH(SDSUPPORT, DIRECT_STEPPING)
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#if BOTH(SDSUPPORT, DIRECT_STEPPING)
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#define BLOCK_BUFFER_SIZE 8
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#define BLOCK_BUFFER_SIZE 8
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#elif ENABLED(SDSUPPORT)
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#elif ENABLED(SDSUPPORT)
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@ -47,7 +47,7 @@ typedef struct {
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// Probe temperature calibration constants
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// Probe temperature calibration constants
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#ifndef PTC_SAMPLE_COUNT
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#ifndef PTC_SAMPLE_COUNT
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#define PTC_SAMPLE_COUNT 10U
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#define PTC_SAMPLE_COUNT 10
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#endif
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#endif
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#ifndef PTC_SAMPLE_RES
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#ifndef PTC_SAMPLE_RES
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#define PTC_SAMPLE_RES 5
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#define PTC_SAMPLE_RES 5
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@ -55,14 +55,14 @@ typedef struct {
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#ifndef PTC_SAMPLE_START
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#ifndef PTC_SAMPLE_START
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#define PTC_SAMPLE_START 30
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#define PTC_SAMPLE_START 30
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#endif
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#endif
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#define PTC_SAMPLE_END ((PTC_SAMPLE_START) + (PTC_SAMPLE_COUNT) * (PTC_SAMPLE_RES))
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#define PTC_SAMPLE_END (PTC_SAMPLE_START + (PTC_SAMPLE_COUNT) * PTC_SAMPLE_RES)
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// Bed temperature calibration constants
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// Bed temperature calibration constants
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#ifndef BTC_PROBE_TEMP
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#ifndef BTC_PROBE_TEMP
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#define BTC_PROBE_TEMP 30
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#define BTC_PROBE_TEMP 30
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#endif
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#endif
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#ifndef BTC_SAMPLE_COUNT
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#ifndef BTC_SAMPLE_COUNT
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#define BTC_SAMPLE_COUNT 10U
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#define BTC_SAMPLE_COUNT 10
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#endif
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#endif
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#ifndef BTC_SAMPLE_RES
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#ifndef BTC_SAMPLE_RES
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#define BTC_SAMPLE_RES 5
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#define BTC_SAMPLE_RES 5
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@ -70,7 +70,7 @@ typedef struct {
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#ifndef BTC_SAMPLE_START
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#ifndef BTC_SAMPLE_START
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#define BTC_SAMPLE_START 60
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#define BTC_SAMPLE_START 60
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#endif
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#endif
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#define BTC_SAMPLE_END ((BTC_SAMPLE_START) + (BTC_SAMPLE_COUNT) * (BTC_SAMPLE_RES))
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#define BTC_SAMPLE_END (BTC_SAMPLE_START + (BTC_SAMPLE_COUNT) * BTC_SAMPLE_RES)
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#ifndef PTC_PROBE_HEATING_OFFSET
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#ifndef PTC_PROBE_HEATING_OFFSET
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#define PTC_PROBE_HEATING_OFFSET 0.5f
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#define PTC_PROBE_HEATING_OFFSET 0.5f
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@ -580,6 +580,7 @@ static_assert(COUNT(arm) == LOGICAL_AXES, "AXIS_RELATIVE_MODES must contain " _L
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/**
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/**
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* Probe temp compensation requirements
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* Probe temp compensation requirements
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*/
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*/
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#if ENABLED(PROBE_TEMP_COMPENSATION)
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#if ENABLED(PROBE_TEMP_COMPENSATION)
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#if defined(PTC_PARK_POS_X) || defined(PTC_PARK_POS_Y) || defined(PTC_PARK_POS_Z)
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#if defined(PTC_PARK_POS_X) || defined(PTC_PARK_POS_Y) || defined(PTC_PARK_POS_Z)
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#error "PTC_PARK_POS_[XYZ] is now PTC_PARK_POS (array)."
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#error "PTC_PARK_POS_[XYZ] is now PTC_PARK_POS (array)."
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@ -590,6 +591,27 @@ static_assert(COUNT(arm) == LOGICAL_AXES, "AXIS_RELATIVE_MODES must contain " _L
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#elif !defined(PTC_PROBE_POS)
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#elif !defined(PTC_PROBE_POS)
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#error "PROBE_TEMP_COMPENSATION requires PTC_PROBE_POS."
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#error "PROBE_TEMP_COMPENSATION requires PTC_PROBE_POS."
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#endif
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#endif
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#ifdef PTC_SAMPLE_START
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constexpr int _ptc_sample_start = PTC_SAMPLE_START;
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static_assert(_test_ptc_sample_start != PTC_SAMPLE_START, "PTC_SAMPLE_START must be a whole number.");
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#endif
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#ifdef PTC_SAMPLE_RES
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constexpr int _ptc_sample_res = PTC_SAMPLE_END;
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static_assert(_test_ptc_sample_res != PTC_SAMPLE_END, "PTC_SAMPLE_RES must be a whole number.");
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#endif
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#ifdef BTC_SAMPLE_START
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constexpr int _btc_sample_start = BTC_SAMPLE_START;
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static_assert(_test_btc_sample_start != BTC_SAMPLE_START, "BTC_SAMPLE_START must be a whole number.");
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#endif
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#ifdef BTC_SAMPLE_RES
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constexpr int _btc_sample_res = BTC_SAMPLE_END;
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static_assert(_test_btc_sample_res != BTC_SAMPLE_END, "BTC_SAMPLE_RES must be a whole number.");
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#endif
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#ifdef BTC_PROBE_TEMP
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constexpr int _btc_probe_temp = BTC_PROBE_TEMP;
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static_assert(_test_btc_probe_temp != BTC_PROBE_TEMP, "BTC_PROBE_TEMP must be a whole number.");
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#endif
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#endif
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#endif
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/**
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/**
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@ -16,5 +16,11 @@ opt_set MOTHERBOARD BOARD_BTT_BTT002_V1_0 \
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Y_DRIVER_TYPE TMC2130
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Y_DRIVER_TYPE TMC2130
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exec_test $1 $2 "BigTreeTech BTT002 Default Configuration plus TMC steppers" "$3"
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exec_test $1 $2 "BigTreeTech BTT002 Default Configuration plus TMC steppers" "$3"
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#
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# A test with Probe Temperature Compensation enabled
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#
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use_example_configs Prusa/MK3S-BigTreeTech-BTT002
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exec_test $1 $2 "BigTreeTech BTT002 with Prusa MK3S and related options" "$3"
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# clean up
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# clean up
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restore_configs
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restore_configs
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