Code cleanup: rename params
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@ -2825,9 +2825,9 @@ static void gcode_G80()
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nMeasPoints = 3;
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nMeasPoints = 3;
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}
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}
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uint8_t nProbeRetry = code_seen('C') ? code_value_uint8() : eeprom_read_byte((uint8_t*)EEPROM_MBL_PROBE_NR);
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uint8_t nProbeRetryCount = code_seen('C') ? code_value_uint8() : eeprom_read_byte((uint8_t*)EEPROM_MBL_PROBE_NR);
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if (nProbeRetry > 10) {
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if (nProbeRetryCount > 10) {
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nProbeRetry = 10;
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nProbeRetryCount = 10;
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}
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}
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const float area_min_x = code_seen('X') ? code_value() - x_mesh_density - X_PROBE_OFFSET_FROM_EXTRUDER : -INFINITY;
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const float area_min_x = code_seen('X') ? code_value() - x_mesh_density - X_PROBE_OFFSET_FROM_EXTRUDER : -INFINITY;
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@ -2933,7 +2933,7 @@ static void gcode_G80()
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}
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}
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// Go down until endstop is hit
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// Go down until endstop is hit
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if (!find_bed_induction_sensor_point_z(has_z ? z0 - Z_CALIBRATION_THRESHOLD : -10.f, nProbeRetry)) { //if we have data from z calibration max allowed difference is 1mm for each point, if we dont have data max difference is 10mm from initial point
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if (!find_bed_induction_sensor_point_z(has_z ? z0 - Z_CALIBRATION_THRESHOLD : -10.f, nProbeRetryCount )) { //if we have data from z calibration max allowed difference is 1mm for each point, if we dont have data max difference is 10mm from initial point
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printf_P(_T(MSG_BED_LEVELING_FAILED_POINT_LOW));
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printf_P(_T(MSG_BED_LEVELING_FAILED_POINT_LOW));
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break;
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break;
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}
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}
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@ -2942,7 +2942,7 @@ static void gcode_G80()
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plan_buffer_line_curposXYZE(Z_LIFT_FEEDRATE);
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plan_buffer_line_curposXYZE(Z_LIFT_FEEDRATE);
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st_synchronize();
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st_synchronize();
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if (!find_bed_induction_sensor_point_z(has_z ? z0 - Z_CALIBRATION_THRESHOLD : -10.f, nProbeRetry)) { //if we have data from z calibration max allowed difference is 1mm for each point, if we dont have data max difference is 10mm from initial point
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if (!find_bed_induction_sensor_point_z(has_z ? z0 - Z_CALIBRATION_THRESHOLD : -10.f, nProbeRetryCount )) { //if we have data from z calibration max allowed difference is 1mm for each point, if we dont have data max difference is 10mm from initial point
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printf_P(_T(MSG_BED_LEVELING_FAILED_POINT_LOW));
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printf_P(_T(MSG_BED_LEVELING_FAILED_POINT_LOW));
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break;
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break;
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}
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}
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@ -4886,7 +4886,7 @@ void process_commands()
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#### Parameters
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#### Parameters
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- `N` - Number of mesh points on x axis. Default is 3. Valid values are 3 and 7.
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- `N` - Number of mesh points on x axis. Default is 3. Valid values are 3 and 7.
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- `C` - Probe retries. Default 3 max. 10
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- `C` - Probe retry counts. Default 3 max. 10
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- `O` - Return to origin. Default 1 (true)
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- `O` - Return to origin. Default 1 (true)
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Using the following parameters enables additional "manual" bed leveling correction. Valid values are -100 microns to 100 microns.
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Using the following parameters enables additional "manual" bed leveling correction. Valid values are -100 microns to 100 microns.
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