680 lines
No EOL
25 KiB
C#
680 lines
No EOL
25 KiB
C#
/*
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Copyright (c) 2014, Lars Brubaker
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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 MatterHackers.Agg;
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using MatterHackers.Agg.UI;
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using MatterHackers.GCodeVisualizer;
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using MatterHackers.Localizations;
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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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using System;
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using System.Collections.Generic;
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using System.Linq;
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namespace MatterHackers.MatterControl.ConfigurationPage.PrintLeveling
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{
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public class FirstPageInstructions : InstructionsPage
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{
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public FirstPageInstructions(PrinterConfig printer, string pageDescription, string instructionsText)
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: base(printer, pageDescription, instructionsText)
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{
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}
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}
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public class SelectMaterialPage : InstructionsPage
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{
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public SelectMaterialPage(PrinterConfig printer, string pageDescription, string instructionsText)
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: base(printer, pageDescription, instructionsText)
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{
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int extruderIndex = 0;
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var materialSelector = new PresetSelectorWidget(string.Format($"{"Material".Localize()} {extruderIndex + 1}"), RGBA_Bytes.Transparent, NamedSettingsLayers.Material, extruderIndex);
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materialSelector.BackgroundColor = RGBA_Bytes.Transparent;
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materialSelector.Margin = new BorderDouble(0, 0, 0, 15);
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topToBottomControls.AddChild(materialSelector);
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}
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}
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public class WaitForTempPage : InstructionsPage
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{
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protected WizardControl container;
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private ProgressBar progressBar;
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private TextWidget progressBarText;
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private TextWidget doneText;
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private double startingTemp;
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public WaitForTempPage(PrinterConfig printer, WizardControl container, LevelingStrings levelingStrings)
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: base(printer, levelingStrings.WaitingForTempPageStepText, levelingStrings.WaitingForTempPageInstructions)
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{
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this.container = container;
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var holder = new FlowLayoutWidget()
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{
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Margin = new BorderDouble(0, 5)
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};
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progressBar = new ProgressBar((int)(150 * GuiWidget.DeviceScale), (int)(15 * GuiWidget.DeviceScale))
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{
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FillColor = ActiveTheme.Instance.PrimaryAccentColor,
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BorderColor = ActiveTheme.Instance.PrimaryTextColor,
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BackgroundColor = RGBA_Bytes.White,
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Margin = new BorderDouble(3, 0, 0, 0),
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VAnchor = VAnchor.Center
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};
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progressBarText = new TextWidget("", pointSize: 10, textColor: ActiveTheme.Instance.PrimaryTextColor)
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{
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AutoExpandBoundsToText = true,
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Margin = new BorderDouble(5, 0, 0, 0),
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VAnchor = VAnchor.Center
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};
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holder.AddChild(progressBar);
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holder.AddChild(progressBarText);
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topToBottomControls.AddChild(holder);
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doneText = new TextWidget("Done!", textColor: ActiveTheme.Instance.PrimaryTextColor)
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{
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AutoExpandBoundsToText = true,
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Visible = false,
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};
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topToBottomControls.AddChild(doneText);
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}
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public override void PageIsBecomingActive()
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{
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startingTemp = printer.Connection.ActualBedTemperature;
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UiThread.RunOnIdle(ShowTempChangeProgress);
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// start heating the bed and show our progress
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printer.Connection.TargetBedTemperature = printer.Settings.GetValue<double>(SettingsKey.bed_temperature);
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// hook our parent so we can turn off the bed when we are done with leveling
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Parent.Closed += (s, e) =>
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{
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// Make sure when the wizard closes we turn off the bed heating
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printer.Connection.TargetBedTemperature = 0;
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};
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if (printer.Settings.Helpers.UseZProbe())
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{
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container.backButton.Enabled = false;
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container.nextButton.Enabled = false;
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}
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base.PageIsBecomingActive();
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}
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public override void PageIsBecomingInactive()
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{
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container.nextButton.Enabled = true;
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container.backButton.Enabled = true;
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base.PageIsBecomingInactive();
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}
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private void ShowTempChangeProgress()
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{
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progressBar.Visible = true;
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double targetTemp = printer.Connection.TargetBedTemperature;
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double actualTemp = printer.Connection.ActualBedTemperature;
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double totalDelta = targetTemp - startingTemp;
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double currentDelta = actualTemp - startingTemp;
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double ratioDone = totalDelta != 0 ? (currentDelta / totalDelta) : 1;
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progressBar.RatioComplete = Math.Min(Math.Max(0, ratioDone), 1);
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progressBarText.Text = $"Temperature: {actualTemp:0} / {targetTemp:0}";
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if (!HasBeenClosed)
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{
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UiThread.RunOnIdle(ShowTempChangeProgress, 1);
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}
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// if we are within 1 degree of our target
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if (Math.Abs(targetTemp - actualTemp) < 1
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&& doneText.Visible == false)
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{
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doneText.Visible = true;
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container.backButton.Enabled = true;
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container.nextButton.Enabled = true;
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if (printer.Settings.Helpers.UseZProbe())
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{
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// advance to the next page
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UiThread.RunOnIdle(() => container.nextButton.ClickButton(null));
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}
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}
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}
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}
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public class LastPagelInstructions : InstructionsPage
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{
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protected WizardControl container;
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private List<ProbePosition> probePositions;
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public LastPagelInstructions(PrinterConfig printer, WizardControl container, string pageDescription, string instructionsText, List<ProbePosition> probePositions)
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: base(printer, pageDescription, instructionsText)
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{
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this.probePositions = probePositions;
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this.container = container;
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}
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public override void PageIsBecomingActive()
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{
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PrintLevelingData levelingData = printer.Settings.Helpers.GetPrintLevelingData();
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levelingData.SampledPositions.Clear();
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Vector3 zProbeOffset = new Vector3(0, 0, printer.Settings.GetValue<double>(SettingsKey.z_probe_z_offset));
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for (int i = 0; i < probePositions.Count; i++)
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{
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levelingData.SampledPositions.Add(probePositions[i].position - zProbeOffset);
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}
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// Invoke setter forcing persistence of leveling data
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printer.Settings.Helpers.SetPrintLevelingData(levelingData, true);
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printer.Settings.Helpers.DoPrintLeveling ( true);
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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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container.backButton.Enabled = false;
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base.PageIsBecomingActive();
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}
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}
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public class GettingThirdPointFor2PointCalibration : InstructionsPage
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{
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protected Vector3 probeStartPosition;
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private ProbePosition probePosition;
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protected WizardControl container;
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public GettingThirdPointFor2PointCalibration(PrinterConfig printer, WizardControl container, string pageDescription, Vector3 probeStartPosition, string instructionsText, ProbePosition probePosition)
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: base(printer, pageDescription, instructionsText)
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{
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this.probeStartPosition = probeStartPosition;
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this.probePosition = probePosition;
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this.container = container;
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}
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private EventHandler unregisterEvents;
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public override void OnClosed(ClosedEventArgs e)
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{
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unregisterEvents?.Invoke(this, null);
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base.OnClosed(e);
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}
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public override void PageIsBecomingActive()
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{
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// first make sure there is no leftover FinishedProbe event
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printer.Connection.ReadLine.UnregisterEvent(FinishedProbe, ref unregisterEvents);
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var feedRates = printer.Settings.Helpers.ManualMovementSpeeds();
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printer.Connection.MoveAbsolute(PrinterConnection.Axis.Z, probeStartPosition.z, feedRates.z);
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printer.Connection.MoveAbsolute(probeStartPosition, feedRates.x);
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printer.Connection.SendLineToPrinterNow("G30");
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printer.Connection.ReadLine.RegisterEvent(FinishedProbe, ref unregisterEvents);
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base.PageIsBecomingActive();
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container.nextButton.Enabled = false;
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container.backButton.Enabled = false;
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}
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private void FinishedProbe(object sender, EventArgs e)
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{
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StringEventArgs currentEvent = e as StringEventArgs;
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if (currentEvent != null)
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{
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if (currentEvent.Data.Contains("endstops hit"))
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{
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printer.Connection.ReadLine.UnregisterEvent(FinishedProbe, ref unregisterEvents);
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int zStringPos = currentEvent.Data.LastIndexOf("Z:");
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string zProbeHeight = currentEvent.Data.Substring(zStringPos + 2);
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probePosition.position = new Vector3(probeStartPosition.x, probeStartPosition.y, double.Parse(zProbeHeight));
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printer.Connection.MoveAbsolute(probeStartPosition, printer.Settings.Helpers.ManualMovementSpeeds().z);
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printer.Connection.ReadPosition();
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UiThread.RunOnIdle(() => container.nextButton.ClickButton(null));
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}
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}
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}
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}
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public class HomePrinterPage : InstructionsPage
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{
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protected WizardControl container;
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private EventHandler unregisterEvents;
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public HomePrinterPage(PrinterConfig printer, WizardControl container, string pageDescription, string instructionsText)
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: base(printer, pageDescription, instructionsText)
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{
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this.container = container;
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}
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public override void OnClosed(ClosedEventArgs e)
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{
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unregisterEvents?.Invoke(this, null);
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base.OnClosed(e);
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}
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public override void PageIsBecomingActive()
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{
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// make sure we don't have anything left over
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unregisterEvents?.Invoke(this, null);
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printer.Connection.PrintingStateChanged.RegisterEvent(CheckHomeFinished, ref unregisterEvents);
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printer.Connection.HomeAxis(PrinterConnection.Axis.XYZ);
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if (printer.Settings.Helpers.UseZProbe())
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{
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container.nextButton.Enabled = false;
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}
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base.PageIsBecomingActive();
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}
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private void CheckHomeFinished(object sender, EventArgs e)
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{
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if(printer.Connection.DetailedPrintingState != DetailedPrintingState.HomingAxis)
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{
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unregisterEvents?.Invoke(this, null);
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container.nextButton.Enabled = true;
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container.backButton.Enabled = true;
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if (printer.Settings.Helpers.UseZProbe())
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{
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UiThread.RunOnIdle(() => container.nextButton.ClickButton(null));
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}
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}
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}
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public override void PageIsBecomingInactive()
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{
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unregisterEvents?.Invoke(this, null);
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container.nextButton.Enabled = true;
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container.backButton.Enabled = true;
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base.PageIsBecomingInactive();
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}
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}
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public class FindBedHeight : InstructionsPage
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{
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private Vector3 lastReportedPosition;
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private List<ProbePosition> probePositions;
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int probePositionsBeingEditedIndex;
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private double moveAmount;
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protected JogControls.MoveButton zPlusControl;
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protected JogControls.MoveButton zMinusControl;
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protected WizardControl container;
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public FindBedHeight(PrinterConfig printer, WizardControl container, string pageDescription, string setZHeightCoarseInstruction1, string setZHeightCoarseInstruction2, double moveDistance, List<ProbePosition> probePositions, int probePositionsBeingEditedIndex)
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: base(printer, pageDescription, setZHeightCoarseInstruction1)
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{
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this.container = container;
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this.probePositions = probePositions;
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this.moveAmount = moveDistance;
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this.lastReportedPosition = printer.Connection.LastReportedPosition;
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this.probePositionsBeingEditedIndex = probePositionsBeingEditedIndex;
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GuiWidget spacer = new GuiWidget(15, 15);
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topToBottomControls.AddChild(spacer);
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FlowLayoutWidget zButtonsAndInfo = new FlowLayoutWidget();
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zButtonsAndInfo.HAnchor |= Agg.UI.HAnchor.Center;
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FlowLayoutWidget zButtons = CreateZButtons();
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zButtonsAndInfo.AddChild(zButtons);
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zButtonsAndInfo.AddChild(new GuiWidget(15, 10));
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//textFields
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TextWidget zPosition = new TextWidget("Z: 0.0 ", pointSize: 12, textColor: ActiveTheme.Instance.PrimaryTextColor)
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{
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VAnchor = VAnchor.Center,
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Margin = new BorderDouble(10, 0),
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};
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Action<TextWidget> updateUntilClose = null;
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updateUntilClose = (tw) =>
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{
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Vector3 destinationPosition = printer.Connection.CurrentDestination;
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zPosition.Text = "Z: {0:0.00}".FormatWith(destinationPosition.z);
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UiThread.RunOnIdle(() => updateUntilClose(zPosition), .3);
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};
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updateUntilClose(zPosition);
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zButtonsAndInfo.AddChild(zPosition);
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topToBottomControls.AddChild(zButtonsAndInfo);
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AddTextField(setZHeightCoarseInstruction2, 10);
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}
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public override void PageIsBecomingActive()
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{
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// always make sure we don't have print leveling turned on
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printer.Settings.Helpers.DoPrintLeveling(false);
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base.PageIsBecomingActive();
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this.Parents<SystemWindow>().First().KeyDown += TopWindowKeyDown;
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}
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public override void PageIsBecomingInactive()
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{
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this.Parents<SystemWindow>().First().KeyDown -= TopWindowKeyDown;
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probePositions[probePositionsBeingEditedIndex].position = printer.Connection.LastReportedPosition;
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base.PageIsBecomingInactive();
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}
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private FlowLayoutWidget CreateZButtons()
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{
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FlowLayoutWidget zButtons = JogControls.CreateZButtons(printer, RGBA_Bytes.White, 4, out zPlusControl, out zMinusControl, true);
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// set these to 0 so the button does not do any movements by default (we will handle the movement on our click callback)
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zPlusControl.MoveAmount = 0;
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zMinusControl.MoveAmount = 0;
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zPlusControl.Click += zPlusControl_Click;
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zMinusControl.Click += zMinusControl_Click;
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return zButtons;
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}
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public void TopWindowKeyDown(object s, KeyEventArgs keyEvent)
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{
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switch(keyEvent.KeyCode)
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{
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case Keys.Up:
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zPlusControl_Click(null, null);
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container.nextButton.Enabled = true;
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break;
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case Keys.Down:
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zMinusControl_Click(null, null);
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container.nextButton.Enabled = true;
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break;
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case Keys.Right:
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if (container.nextButton.Enabled)
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{
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UiThread.RunOnIdle(() => container.nextButton.ClickButton(null));
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}
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break;
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case Keys.Left:
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if (container.backButton.Enabled)
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{
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UiThread.RunOnIdle(() => container.backButton.ClickButton(null));
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}
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break;
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}
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base.OnKeyDown(keyEvent);
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}
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private static string zIsTooLowMessage = "You cannot move any lower. This position on your bed is too low for the extruder to reach. You need to raise your bed, or adjust your limits to allow the extruder to go lower.".Localize();
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private static string zTooLowTitle = "Warning - Moving Too Low".Localize();
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private void zMinusControl_Click(object sender, EventArgs mouseEvent)
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{
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printer.Connection.MoveRelative(PrinterConnection.Axis.Z, -moveAmount, printer.Settings.Helpers.ManualMovementSpeeds().z);
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printer.Connection.ReadPosition();
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}
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private void zPlusControl_Click(object sender, EventArgs mouseEvent)
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{
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printer.Connection.MoveRelative(PrinterConnection.Axis.Z, moveAmount, printer.Settings.Helpers.ManualMovementSpeeds().z);
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printer.Connection.ReadPosition();
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}
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}
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public class AutoProbeFeedback : InstructionsPage
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{
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private Vector3 lastReportedPosition;
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private List<ProbePosition> probePositions;
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int probePositionsBeingEditedIndex;
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private EventHandler unregisterEvents;
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protected Vector3 probeStartPosition;
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protected WizardControl container;
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public AutoProbeFeedback(PrinterConfig printer, WizardControl container, Vector3 probeStartPosition, string pageDescription, List<ProbePosition> probePositions, int probePositionsBeingEditedIndex)
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: base(printer, pageDescription, pageDescription)
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{
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this.container = container;
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this.probeStartPosition = probeStartPosition;
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this.probePositions = probePositions;
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this.lastReportedPosition = printer.Connection.LastReportedPosition;
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this.probePositionsBeingEditedIndex = probePositionsBeingEditedIndex;
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GuiWidget spacer = new GuiWidget(15, 15);
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topToBottomControls.AddChild(spacer);
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FlowLayoutWidget textFields = new FlowLayoutWidget(FlowDirection.TopToBottom);
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}
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private void GetZProbeHeight(object sender, EventArgs e)
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{
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StringEventArgs currentEvent = e as StringEventArgs;
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if (currentEvent != null)
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{
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double sampleRead = double.MinValue;
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if (currentEvent.Data.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:", currentEvent.Data, ref sampleRead);
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}
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else if (currentEvent.Data.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 postion
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double reportedProbeZ = 0;
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GCodeFile.GetFirstNumberAfter("Z:", currentEvent.Data, 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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|
{
|
|
samples.Sort();
|
|
if (samples.Count > 3)
|
|
{
|
|
// drop the high and low values
|
|
samples.RemoveAt(0);
|
|
samples.RemoveAt(samples.Count - 1);
|
|
}
|
|
|
|
probePositions[probePositionsBeingEditedIndex].position.z = Math.Round(samples.Average(), 2);
|
|
UiThread.RunOnIdle(() => container.nextButton.ClickButton(null));
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
public override void OnClosed(ClosedEventArgs e)
|
|
{
|
|
unregisterEvents?.Invoke(this, null);
|
|
base.OnClosed(e);
|
|
}
|
|
|
|
List<double> samples = new List<double>();
|
|
|
|
public override void PageIsBecomingActive()
|
|
{
|
|
// always make sure we don't have print leveling turned on
|
|
printer.Settings.Helpers.DoPrintLeveling(false);
|
|
|
|
base.PageIsBecomingActive();
|
|
|
|
if (printer.Settings.GetValue<bool>(SettingsKey.has_z_probe)
|
|
&& printer.Settings.GetValue<bool>(SettingsKey.use_z_probe)
|
|
&& printer.Settings.GetValue<bool>(SettingsKey.has_z_servo))
|
|
{
|
|
// make sure the servo is deployed
|
|
var servoDeploy = printer.Settings.GetValue<double>(SettingsKey.z_servo_depolyed_angle);
|
|
printer.Connection.SendLineToPrinterNow($"M280 P0 S{servoDeploy}");
|
|
}
|
|
|
|
var feedRates = printer.Settings.Helpers.ManualMovementSpeeds();
|
|
|
|
var adjustedProbePosition = probeStartPosition;
|
|
// subtract out the probe offset
|
|
var probeOffset = printer.Settings.GetValue<Vector2>(SettingsKey.z_probe_xy_offset);
|
|
adjustedProbePosition -= new Vector3(probeOffset);
|
|
|
|
printer.Connection.MoveAbsolute(PrinterConnection.Axis.Z, probeStartPosition.z, feedRates.z);
|
|
printer.Connection.MoveAbsolute(adjustedProbePosition, feedRates.x);
|
|
|
|
int numberOfSamples = printer.Settings.GetValue<int>(SettingsKey.z_probe_samples);
|
|
for (int i = 0; i < numberOfSamples; i++)
|
|
{
|
|
// probe the current position
|
|
printer.Connection.SendLineToPrinterNow("G30");
|
|
// raise the probe after each sample
|
|
printer.Connection.MoveAbsolute(adjustedProbePosition, feedRates.x);
|
|
}
|
|
|
|
container.backButton.Enabled = false;
|
|
container.nextButton.Enabled = false;
|
|
|
|
if (printer.Connection.PrinterIsConnected
|
|
&& !(printer.Connection.PrinterIsPrinting
|
|
|| printer.Connection.PrinterIsPaused))
|
|
{
|
|
printer.Connection.ReadLine.RegisterEvent(GetZProbeHeight, ref unregisterEvents);
|
|
}
|
|
}
|
|
|
|
public override void PageIsBecomingInactive()
|
|
{
|
|
printer.Connection.ReadLine.UnregisterEvent(GetZProbeHeight, ref unregisterEvents);
|
|
base.PageIsBecomingInactive();
|
|
}
|
|
}
|
|
|
|
public class GetCoarseBedHeight : FindBedHeight
|
|
{
|
|
private static string setZHeightCoarseInstruction1 = "Using the [Z] controls on this screen, we will now take a coarse measurement of the extruder height at this position.".Localize();
|
|
|
|
private static string setZHeightCourseInstructTextOne = "Place the paper under the extruder".Localize();
|
|
private static string setZHeightCourseInstructTextTwo = "Using the above controls".Localize();
|
|
private static string setZHeightCourseInstructTextThree = "Press [Z-] until there is resistance to moving the paper".Localize();
|
|
private static string setZHeightCourseInstructTextFour = "Press [Z+] once to release the paper".Localize();
|
|
private static string setZHeightCourseInstructTextFive = "Finally click 'Next' to continue.".Localize();
|
|
private static string setZHeightCoarseInstruction2 = string.Format("\t• {0}\n\t• {1}\n\t• {2}\n\t• {3}\n\n{4}", setZHeightCourseInstructTextOne, setZHeightCourseInstructTextTwo, setZHeightCourseInstructTextThree, setZHeightCourseInstructTextFour, setZHeightCourseInstructTextFive);
|
|
|
|
protected Vector3 probeStartPosition;
|
|
|
|
public GetCoarseBedHeight(PrinterConfig printer, WizardControl container, Vector3 probeStartPosition, string pageDescription, List<ProbePosition> probePositions, int probePositionsBeingEditedIndex)
|
|
: base(printer, container, pageDescription, setZHeightCoarseInstruction1, setZHeightCoarseInstruction2, 1, probePositions, probePositionsBeingEditedIndex)
|
|
{
|
|
this.probeStartPosition = probeStartPosition;
|
|
}
|
|
|
|
public override void PageIsBecomingActive()
|
|
{
|
|
base.PageIsBecomingActive();
|
|
|
|
var feedRates = printer.Settings.Helpers.ManualMovementSpeeds();
|
|
|
|
printer.Connection.MoveAbsolute(PrinterConnection.Axis.Z, probeStartPosition.z, feedRates.z);
|
|
printer.Connection.MoveAbsolute(probeStartPosition, feedRates.x);
|
|
printer.Connection.ReadPosition();
|
|
|
|
container.backButton.Enabled = false;
|
|
container.nextButton.Enabled = false;
|
|
|
|
zPlusControl.Click += zControl_Click;
|
|
zMinusControl.Click += zControl_Click;
|
|
}
|
|
|
|
protected void zControl_Click(object sender, EventArgs mouseEvent)
|
|
{
|
|
container.nextButton.Enabled = true;
|
|
}
|
|
|
|
public override void PageIsBecomingInactive()
|
|
{
|
|
container.backButton.Enabled = true;
|
|
container.nextButton.Enabled = true;
|
|
|
|
base.PageIsBecomingInactive();
|
|
}
|
|
}
|
|
|
|
public class GetFineBedHeight : FindBedHeight
|
|
{
|
|
private static string setZHeightFineInstruction1 = "We will now refine our measurement of the extruder height at this position.".Localize();
|
|
private static string setZHeightFineInstructionTextOne = "Press [Z-] until there is resistance to moving the paper".Localize();
|
|
private static string setZHeightFineInstructionTextTwo = "Press [Z+] once to release the paper".Localize();
|
|
private static string setZHeightFineInstructionTextThree = "Finally click 'Next' to continue.".Localize();
|
|
private static string setZHeightFineInstruction2 = string.Format("\t• {0}\n\t• {1}\n\n{2}", setZHeightFineInstructionTextOne, setZHeightFineInstructionTextTwo, setZHeightFineInstructionTextThree);
|
|
|
|
public GetFineBedHeight(PrinterConfig printer, WizardControl container, string pageDescription, List<ProbePosition> probePositions, int probePositionsBeingEditedIndex)
|
|
: base(printer, container, pageDescription, setZHeightFineInstruction1, setZHeightFineInstruction2, .1, probePositions, probePositionsBeingEditedIndex)
|
|
{
|
|
}
|
|
}
|
|
|
|
public class GetUltraFineBedHeight : FindBedHeight
|
|
{
|
|
private static string setZHeightFineInstruction1 = "We will now finalize our measurement of the extruder height at this position.".Localize();
|
|
private static string setHeightFineInstructionTextOne = "Press [Z-] one click PAST the first hint of resistance".Localize();
|
|
private static string setHeightFineInstructionTextTwo = "Finally click 'Next' to continue.".Localize();
|
|
private static string setZHeightFineInstruction2 = string.Format("\t• {0}\n\n\n{1}", setHeightFineInstructionTextOne, setHeightFineInstructionTextTwo);
|
|
|
|
public GetUltraFineBedHeight(PrinterConfig printer, WizardControl container, string pageDescription, List<ProbePosition> probePositions, int probePositionsBeingEditedIndex)
|
|
: base(printer, container, pageDescription, setZHeightFineInstruction1, setZHeightFineInstruction2, .02, probePositions, probePositionsBeingEditedIndex)
|
|
{
|
|
}
|
|
|
|
private bool haveDrawn = false;
|
|
|
|
public override void OnDraw(Graphics2D graphics2D)
|
|
{
|
|
haveDrawn = true;
|
|
base.OnDraw(graphics2D);
|
|
}
|
|
|
|
public override void PageIsBecomingInactive()
|
|
{
|
|
if (haveDrawn)
|
|
{
|
|
printer.Connection.MoveRelative(PrinterConnection.Axis.Z, 2, printer.Settings.Helpers.ManualMovementSpeeds().z);
|
|
}
|
|
base.PageIsBecomingInactive();
|
|
}
|
|
}
|
|
} |