Support temperature units in M503
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@ -1294,25 +1294,26 @@ inline bool code_value_bool() { return !code_has_value() || code_value_byte() >
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#if ENABLED(TEMPERATURE_UNITS_SUPPORT)
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#if ENABLED(TEMPERATURE_UNITS_SUPPORT)
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inline void set_input_temp_units(TempUnit units) { input_temp_units = units; }
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inline void set_input_temp_units(TempUnit units) { input_temp_units = units; }
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int16_t code_value_temp_abs() {
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float temp_abs(const float &c) {
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switch (input_temp_units) {
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switch (input_temp_units) {
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case TEMPUNIT_F:
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case TEMPUNIT_F:
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return (code_value_float() - 32) * 0.5555555556;
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return (c - 32.0) * 0.5555555556;
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case TEMPUNIT_K:
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case TEMPUNIT_K:
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return code_value_float() - 273.15;
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return c - 273.15;
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case TEMPUNIT_C:
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case TEMPUNIT_C:
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default:
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default:
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return code_value_int();
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return c;
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}
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}
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}
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}
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int16_t code_value_temp_abs() { return temp_abs(code_value_float()); }
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int16_t code_value_temp_diff() {
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int16_t code_value_temp_diff() {
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switch (input_temp_units) {
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switch (input_temp_units) {
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case TEMPUNIT_C:
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case TEMPUNIT_K:
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return code_value_float();
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case TEMPUNIT_F:
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case TEMPUNIT_F:
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return code_value_float() * 0.5555555556;
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return code_value_float() * 0.5555555556;
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case TEMPUNIT_C:
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case TEMPUNIT_K:
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default:
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default:
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return code_value_float();
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return code_value_float();
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}
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}
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@ -1239,7 +1239,10 @@ void MarlinSettings::reset() {
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extern float linear_unit_factor, volumetric_unit_factor;
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extern float linear_unit_factor, volumetric_unit_factor;
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#define LINEAR_UNIT(N) ((N) / linear_unit_factor)
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#define LINEAR_UNIT(N) ((N) / linear_unit_factor)
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#define VOLUMETRIC_UNIT(N) ((N) / (volumetric_enabled ? volumetric_unit_factor : linear_unit_factor))
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#define VOLUMETRIC_UNIT(N) ((N) / (volumetric_enabled ? volumetric_unit_factor : linear_unit_factor))
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serialprintPGM(linear_unit_factor == 1.0 ? PSTR(" G21 ; Units in mm\n") : PSTR(" G20 ; Units in inches\n"));
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SERIAL_ECHOPGM(" G2");
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SERIAL_CHAR(linear_unit_factor == 1.0 ? '1' : '0');
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SERIAL_ECHOPGM(" ; Units in ");
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serialprintPGM(linear_unit_factor == 1.0 ? PSTR("mm\n") : PSTR("inches\n"));
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#else
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#else
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#define LINEAR_UNIT(N) N
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#define LINEAR_UNIT(N) N
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#define VOLUMETRIC_UNIT(N) N
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#define VOLUMETRIC_UNIT(N) N
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@ -1247,6 +1250,27 @@ void MarlinSettings::reset() {
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#endif
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#endif
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SERIAL_EOL;
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SERIAL_EOL;
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#if ENABLED(ULTIPANEL)
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// Temperature units - for Ultipanel temperature options
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CONFIG_ECHO_START;
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#if ENABLED(TEMPERATURE_UNITS_SUPPORT)
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extern TempUnit input_temp_units;
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extern float temp_abs(float &f);
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#define TEMP_UNIT(N) temp_abs(N)
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SERIAL_ECHOPGM(" M149 ");
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SERIAL_CHAR(input_temp_units == TEMPUNIT_K ? 'K' : input_temp_units == TEMPUNIT_F ? 'F' : 'C');
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SERIAL_ECHOPGM(" ; Units in ");
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serialprintPGM(input_temp_units == TEMPUNIT_K ? PSTR("Kelvin\n") : input_temp_units == TEMPUNIT_F ? PSTR("Fahrenheit\n") : PSTR("Celsius\n"));
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#else
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#define TEMP_UNIT(N) N
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SERIAL_ECHOLNPGM(" M149 C ; Units in Celsius\n");
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#endif
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SERIAL_EOL;
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#endif
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/**
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/**
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* Volumetric extrusion M200
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* Volumetric extrusion M200
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*/
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*/
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@ -1519,8 +1543,8 @@ void MarlinSettings::reset() {
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CONFIG_ECHO_START;
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CONFIG_ECHO_START;
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for (uint8_t i = 0; i < COUNT(lcd_preheat_hotend_temp); i++) {
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for (uint8_t i = 0; i < COUNT(lcd_preheat_hotend_temp); i++) {
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SERIAL_ECHOPAIR(" M145 S", (int)i);
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SERIAL_ECHOPAIR(" M145 S", (int)i);
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SERIAL_ECHOPAIR(" H", lcd_preheat_hotend_temp[i]);
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SERIAL_ECHOPAIR(" H", TEMP_UNIT(lcd_preheat_hotend_temp[i]));
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SERIAL_ECHOPAIR(" B", lcd_preheat_bed_temp[i]);
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SERIAL_ECHOPAIR(" B", TEMP_UNIT(lcd_preheat_bed_temp[i]));
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SERIAL_ECHOLNPAIR(" F", lcd_preheat_fan_speed[i]);
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SERIAL_ECHOLNPAIR(" F", lcd_preheat_fan_speed[i]);
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}
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}
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#endif // ULTIPANEL
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#endif // ULTIPANEL
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