Mark code unused when PINDA_THERMISTOR is defined by macro. Saves 1B of RAM and 4B of FLASH memory.
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5 changed files with 27 additions and 20 deletions
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@ -423,8 +423,6 @@ void bed_analysis(float x_dimension, float y_dimension, int x_points_num, int y_
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void bed_check(float x_dimension, float y_dimension, int x_points_num, int y_points_num, float shift_x, float shift_y);
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#endif //HEATBED_ANALYSIS
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float temp_comp_interpolation(float temperature);
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void temp_compensation_apply();
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void temp_compensation_start();
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void show_fw_version_warnings();
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uint8_t check_printer_version();
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@ -397,6 +397,9 @@ static bool setTargetedHotend(int code, uint8_t &extruder);
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static void print_time_remaining_init();
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static void wait_for_heater(long codenum, uint8_t extruder);
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static void gcode_G28(bool home_x_axis, bool home_y_axis, bool home_z_axis);
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static void temp_compensation_start();
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static void temp_compensation_apply();
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uint16_t gcode_in_progress = 0;
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uint16_t mcode_in_progress = 0;
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@ -4617,7 +4620,9 @@ if(eSoundMode!=e_SOUND_MODE_SILENT)
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case_G80:
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{
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mesh_bed_leveling_flag = true;
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#ifndef PINDA_THERMISTOR
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static bool run = false;
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#endif // ndef PINDA_THERMISTOR
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#ifdef SUPPORT_VERBOSITY
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int8_t verbosity_level = 0;
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@ -4665,13 +4670,9 @@ if(eSoundMode!=e_SOUND_MODE_SILENT)
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}
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bool magnet_elimination = (eeprom_read_byte((uint8_t*)EEPROM_MBL_MAGNET_ELIMINATION) > 0);
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bool temp_comp_start = true;
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#ifdef PINDA_THERMISTOR
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temp_comp_start = false;
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#endif //PINDA_THERMISTOR
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if (temp_comp_start)
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if (run == false && temp_cal_active == true && calibration_status_pinda() == true && target_temperature_bed >= 50) {
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#ifndef PINDA_THERMISTOR
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if (run == false && temp_cal_active == true && calibration_status_pinda() == true && target_temperature_bed >= 50)
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{
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if (lcd_commands_type != LcdCommands::StopPrint) {
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temp_compensation_start();
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run = true;
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@ -4683,7 +4684,8 @@ if(eSoundMode!=e_SOUND_MODE_SILENT)
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}
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break;
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}
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run = false;
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run = false;
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#endif //PINDA_THERMISTOR
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if (lcd_commands_type == LcdCommands::StopPrint) {
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mesh_bed_leveling_flag = false;
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break;
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@ -4900,12 +4902,9 @@ if(eSoundMode!=e_SOUND_MODE_SILENT)
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clean_up_after_endstop_move(l_feedmultiply);
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// SERIAL_ECHOLNPGM("clean up finished ");
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bool apply_temp_comp = true;
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#ifdef PINDA_THERMISTOR
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apply_temp_comp = false;
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#endif
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if (apply_temp_comp)
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#ifndef PINDA_THERMISTOR
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if(temp_cal_active == true && calibration_status_pinda() == true) temp_compensation_apply(); //apply PINDA temperature compensation
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#endif
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babystep_apply(); // Apply Z height correction aka baby stepping before mesh bed leveing gets activated.
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// SERIAL_ECHOLNPGM("babystep applied");
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bool eeprom_bed_correction_valid = eeprom_read_byte((unsigned char*)EEPROM_BED_CORRECTION_VALID) == 1;
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@ -9354,7 +9353,8 @@ void bed_analysis(float x_dimension, float y_dimension, int x_points_num, int y_
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}
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#endif //HEATBED_ANALYSIS
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void temp_compensation_start() {
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#ifndef PINDA_THERMISTOR
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static void temp_compensation_start() {
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custom_message_type = CustomMsg::TempCompPreheat;
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custom_message_state = PINDA_HEAT_T + 1;
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@ -9381,7 +9381,7 @@ void temp_compensation_start() {
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custom_message_state = 0;
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}
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void temp_compensation_apply() {
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static void temp_compensation_apply() {
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int i_add;
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int z_shift = 0;
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float z_shift_mm;
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@ -9404,6 +9404,7 @@ void temp_compensation_apply() {
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//we have no temp compensation data
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}
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}
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#endif //ndef PINDA_THERMISTOR
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float temp_comp_interpolation(float inp_temperature) {
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@ -1565,7 +1565,9 @@ extern "C" {
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void adc_ready(void) //callback from adc when sampling finished
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{
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current_temperature_raw[0] = adc_values[ADC_PIN_IDX(TEMP_0_PIN)]; //heater
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#ifdef PINDA_THERMISTOR
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current_temperature_raw_pinda_fast = adc_values[ADC_PIN_IDX(TEMP_PINDA_PIN)];
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#endif //PINDA_THERMISTOR
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current_temperature_bed_raw = adc_values[ADC_PIN_IDX(TEMP_BED_PIN)];
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#ifdef VOLT_PWR_PIN
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current_voltage_raw_pwr = adc_values[ADC_PIN_IDX(VOLT_PWR_PIN)];
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@ -1863,11 +1863,11 @@ static void lcd_menu_temperatures()
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lcd_timeoutToStatus.stop(); //infinite timeout
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lcd_home();
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lcd_printf_P(PSTR(" %S: %d%c \n" " %S: %d%c \n"), _i("Nozzle"), (int)current_temperature[0], '\x01', _i("Bed"), (int)current_temperature_bed, '\x01');
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#ifdef AMBIENT_THERMISTOR
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#if defined (AMBIENT_THERMISTOR) && defined (PINDA_THERMISTOR)
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lcd_printf_P(PSTR(" %S: %d%c\n" " PINDA: %d%c"), _i("Ambient"), (int)current_temperature_ambient, '\x01', (int)current_temperature_pinda, '\x01');
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#else //AMBIENT_THERMISTOR
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#elif defined (PINDA_THERMISTOR)
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lcd_printf_P(PSTR(" PINDA: %d%c"), (int)current_temperature_pinda, '\x01');
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#endif //AMBIENT_THERMISTOR
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#endif
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menu_back_if_clicked();
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}
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@ -2969,9 +2969,11 @@ static void lcd_babystep_z()
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eeprom_update_byte(&(EEPROM_Sheets_base->s[(eeprom_read_byte(
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&(EEPROM_Sheets_base->active_sheet)))].bed_temp),
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target_temperature_bed);
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#ifdef PINDA_THERMISTOR
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eeprom_update_byte(&(EEPROM_Sheets_base->s[(eeprom_read_byte(
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&(EEPROM_Sheets_base->active_sheet)))].pinda_temp),
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current_temperature_pinda);
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#endif //PINDA_THERMISTOR
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calibration_status_store(CALIBRATION_STATUS_CALIBRATED);
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}
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if (LCD_CLICKED) menu_back();
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@ -3140,6 +3142,7 @@ void lcd_adjust_z() {
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}*/
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#ifdef PINDA_THERMISTOR
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bool lcd_wait_for_pinda(float temp) {
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lcd_set_custom_characters_degree();
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setAllTargetHotends(0);
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@ -3168,6 +3171,7 @@ bool lcd_wait_for_pinda(float temp) {
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lcd_update_enable(true);
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return target_temp_reached;
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}
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#endif //PINDA_THERMISTOR
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void lcd_wait_for_heater() {
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lcd_display_message_fullscreen_P(_T(MSG_WIZARD_HEATING));
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@ -197,7 +197,9 @@ void lcd_wait_for_cool_down();
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void lcd_extr_cal_reset();
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void lcd_temp_cal_show_result(bool result);
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#ifdef PINDA_THERMISTOR
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bool lcd_wait_for_pinda(float temp);
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#endif //PINDA_THERMISTOR
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void bowden_menu();
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