236 lines
No EOL
7.9 KiB
C#
236 lines
No EOL
7.9 KiB
C#
/*
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Copyright (c) 2019, Lars Brubaker, John Lewin
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are met:
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1. Redistributions of source code must retain the above copyright notice, this
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list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright notice,
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this list of conditions and the following disclaimer in the documentation
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and/or other materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
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ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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The views and conclusions contained in the software and documentation are those
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of the authors and should not be interpreted as representing official policies,
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either expressed or implied, of the FreeBSD Project.
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*/
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Threading;
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using System.Threading.Tasks;
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using MatterControl.Printing;
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using MatterHackers.Agg;
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using MatterHackers.Agg.UI;
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using MatterHackers.MatterControl.PrinterCommunication;
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using MatterHackers.MatterControl.SlicerConfiguration;
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using MatterHackers.VectorMath;
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namespace MatterHackers.MatterControl.ConfigurationPage.PrintLeveling
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{
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public class AutoProbePage : WizardPage
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{
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private List<Vector2> probePoints;
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private int probePositionsBeingEditedIndex;
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private List<double> samples = new List<double>();
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private int numberOfSamples;
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private AutoResetEvent autoResetEvent;
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private Vector3 feedRates;
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private Vector3 adjustedProbePosition;
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private Vector3 probeStartPosition;
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private List<ProbePosition> probePositions;
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private double servoDeployCommand;
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private ProbePositionsWidget probePositionsWidget;
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public AutoProbePage(ISetupWizard setupWizard, PrinterConfig printer, string headerText, List<Vector2> probePoints, List<ProbePosition> probePositions)
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: base(setupWizard)
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{
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this.HeaderText = headerText;
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this.probePoints = probePoints;
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this.printer = printer;
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this.probePositions = probePositions;
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contentRow.BackgroundColor = Color.Transparent;
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contentRow.AddChild(probePositionsWidget = new ProbePositionsWidget(printer, probePoints, probePositions, AppContext.Theme)
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{
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HAnchor = HAnchor.Stretch,
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VAnchor = VAnchor.Stretch
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});
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this.NextButton.Enabled = false;
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// Disable leveling
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printer.Connection.AllowLeveling = false;
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// Collect settings
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servoDeployCommand = printer.Settings.GetValue<double>(SettingsKey.z_servo_depolyed_angle);
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feedRates = printer.Settings.Helpers.ManualMovementSpeeds();
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numberOfSamples = printer.Settings.GetValue<int>(SettingsKey.z_probe_samples) - 1;
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autoResetEvent = new AutoResetEvent(false);
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// Register listener
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if (printer.Connection.IsConnected
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&& !(printer.Connection.Printing
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|| printer.Connection.Paused))
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{
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printer.Connection.LineReceived += GetZProbeHeight;
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}
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}
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public override void OnClosed(EventArgs e)
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{
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// Unregister listener
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printer.Connection.LineReceived -= GetZProbeHeight;
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base.OnClosed(e);
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}
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private void SampleProbePoints()
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{
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double startProbeHeight = printer.Settings.GetValue<double>(SettingsKey.print_leveling_probe_start);
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for (var i = 0; i < probePoints.Count; i++)
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{
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var goalProbePosition = probePoints[i];
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if (this.HasBeenClosed)
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{
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// Make sure when the wizard is done we turn off the bed heating
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printer.Connection.TurnOffBedAndExtruders(TurnOff.AfterDelay);
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if (printer.Settings.GetValue<bool>(SettingsKey.z_homes_to_max))
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{
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printer.Connection.HomeAxis(PrinterConnection.Axis.XYZ);
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}
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break;
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}
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var validProbePosition = PrintLevelingWizard.EnsureInPrintBounds(printer, goalProbePosition);
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var probePosition = new Vector3(validProbePosition, startProbeHeight);
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//this.lastReportedPosition = printer.Connection.LastReportedPosition;
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probePositionsWidget.ActiveProbeIndex = i;
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probePositionsWidget.Invalidate();
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this.StartSampling(i, probePosition);
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autoResetEvent.WaitOne();
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}
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probePositionsWidget.ActiveProbeIndex = probePoints.Count;
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this.NextButton.Enabled = true;
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// Auto advance
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UiThread.RunOnIdle(this.NextButton.InvokeClick);
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}
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private void StartSampling(int probeIndex, Vector3 probePosition)
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{
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samples.Clear();
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probePositionsBeingEditedIndex = probeIndex;
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this.probeStartPosition = probePosition;
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if (printer.Settings.GetValue<bool>(SettingsKey.has_z_probe)
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&& printer.Settings.GetValue<bool>(SettingsKey.use_z_probe)
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&& printer.Settings.GetValue<bool>(SettingsKey.has_z_servo))
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{
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// make sure the servo is deployed
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printer.Connection.QueueLine($"M280 P0 S{servoDeployCommand}");
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}
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adjustedProbePosition = probeStartPosition;
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// subtract out the probe offset
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var probeOffset = printer.Settings.GetValue<Vector2>(SettingsKey.z_probe_xy_offset);
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adjustedProbePosition -= new Vector3(probeOffset);
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printer.Connection.MoveAbsolute(PrinterConnection.Axis.Z, probeStartPosition.Z, feedRates.Z);
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printer.Connection.MoveAbsolute(adjustedProbePosition, feedRates.X);
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// probe the current position
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printer.Connection.QueueLine("G30");
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// raise the probe after each sample
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printer.Connection.MoveAbsolute(adjustedProbePosition, feedRates.X);
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}
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public override void OnLoad(EventArgs args)
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{
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Task.Run((Action)this.SampleProbePoints);
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base.OnLoad(args);
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}
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private void GetZProbeHeight(object sender, string line)
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{
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if (line != null)
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{
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double sampleRead = double.MinValue;
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if (line.StartsWith("Bed")) // marlin G30 return code (looks like: 'Bed Position X:20 Y:32 Z:.01')
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{
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probePositions[probePositionsBeingEditedIndex].position.X = probeStartPosition.X;
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probePositions[probePositionsBeingEditedIndex].position.Y = probeStartPosition.Y;
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GCodeFile.GetFirstNumberAfter("Z:", line, ref sampleRead);
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}
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else if (line.StartsWith("Z:")) // smoothie G30 return code (looks like: 'Z:10.01')
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{
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probePositions[probePositionsBeingEditedIndex].position.X = probeStartPosition.X;
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probePositions[probePositionsBeingEditedIndex].position.Y = probeStartPosition.Y;
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// smoothie returns the position relative to the start position
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double reportedProbeZ = 0;
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GCodeFile.GetFirstNumberAfter("Z:", line, ref reportedProbeZ);
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sampleRead = probeStartPosition.Z - reportedProbeZ;
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}
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if (sampleRead != double.MinValue)
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{
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samples.Add(sampleRead);
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int numberOfSamples = printer.Settings.GetValue<int>(SettingsKey.z_probe_samples);
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if (samples.Count >= numberOfSamples)
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{
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samples.Sort();
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if (samples.Count > 3)
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{
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// drop the high and low values
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samples.RemoveAt(0);
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samples.RemoveAt(samples.Count - 1);
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}
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probePositions[probePositionsBeingEditedIndex].position.Z = Math.Round(samples.Average(), 2);
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// When probe data has been collected, resume our thread to continue collecting
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autoResetEvent.Set();
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}
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else if (!this.HasBeenClosed)
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{
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// add the next request for probe
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printer.Connection.QueueLine("G30");
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// raise the probe after each sample
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printer.Connection.MoveAbsolute(adjustedProbePosition, feedRates.X);
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}
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}
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}
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}
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}
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} |