313 lines
14 KiB
C#
313 lines
14 KiB
C#
using System;
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using System.Collections.Generic;
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using System.Collections.ObjectModel;
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using System.Drawing;
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using System.Globalization;
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using ClumsyCore;
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using ClumsyCore.DTools;
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using MDCSToolBox.Clumsy.Pilot;
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using MultiWheelC.TrajectoryPlanning.CoarsePath;
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using MultiWheelC.TrajectoryPlanning.EMPlanner;
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using MultiWheelC.TrajectoryPlanning.Mapping;
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using MultiWheelC.TrajectoryPlanning.PathSmoothing;
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namespace MultiWheelC.TrajectoryPlanning.TrajectoryObservation;
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public static class TrajectoryObservationPresentationText
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{
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public static string Create(TrajectoryObservationObservation observation, TrajectoryObservationCharts charts)
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{
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string projectionFailures = charts == null
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? "unavailable"
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: charts.FailedProjectionCount.ToString(CultureInfo.InvariantCulture);
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if (observation == null || observation.SelectedPoint == null)
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{
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return "OBSERVE_ONLY: no chassis command is sent.\n" +
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"selected trajectory point unavailable\n" +
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"LS projection failures=" + projectionFailures;
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}
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EmTrajectoryPoint point = observation.SelectedPoint;
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return "OBSERVE_ONLY: no chassis command is sent.\n" +
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"selected t=" + point.TimeFromStart.ToString("F2", CultureInfo.InvariantCulture) +
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" s, path-S=" + point.PathS.ToString("F2", CultureInfo.InvariantCulture) + " m\n" +
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"signed speed=" + point.SignedLongitudinalVelocity.ToString("F2", CultureInfo.InvariantCulture) +
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" m/s, yaw rate=" + point.YawRate.ToString("F2", CultureInfo.InvariantCulture) + " rad/s\n" +
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"LS projection failures=" + projectionFailures;
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}
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}
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public sealed class TrajectoryObservationLsPresentationPoint
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{
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public TrajectoryObservationLsPresentationPoint(double horizontalPathS, double verticalLateralOffset)
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{
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HorizontalPathS = horizontalPathS;
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VerticalLateralOffset = verticalLateralOffset;
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}
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public double HorizontalPathS { get; }
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public double VerticalLateralOffset { get; }
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}
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public sealed class TrajectoryObservationLsPresentationModel
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{
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private TrajectoryObservationLsPresentationModel(IReadOnlyList<TrajectoryObservationLsPresentationPoint> samples)
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{
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Samples = new ReadOnlyCollection<TrajectoryObservationLsPresentationPoint>(
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new List<TrajectoryObservationLsPresentationPoint>(samples));
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}
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public string HorizontalAxisLabel => "path-S (m)";
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public string VerticalAxisLabel => "lateral offset (m)";
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public IReadOnlyList<TrajectoryObservationLsPresentationPoint> Samples { get; }
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public static TrajectoryObservationLsPresentationModel Create(TrajectoryObservationCharts charts)
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{
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if (charts == null) throw new ArgumentNullException(nameof(charts));
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var samples = new List<TrajectoryObservationLsPresentationPoint>(charts.LsSamples.Count);
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for (int index = 0; index < charts.LsSamples.Count; index++)
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{
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TrajectoryObservationLsSample sample = charts.LsSamples[index];
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samples.Add(new TrajectoryObservationLsPresentationPoint(sample.PathS, sample.LateralOffset));
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}
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return new TrajectoryObservationLsPresentationModel(samples);
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}
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}
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public sealed class TrajectoryObservationPresentation
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{
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private const float MillimetersPerMeter = 1000f;
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private const int MaximumVisibleGridLines = 80;
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private const float VelocitySeriesBaseMillimeters = -2500f;
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private readonly Painter worldPainter = UI.GetPainter("TrajectoryObserver.World", true);
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private readonly Painter lsPainter = UI.GetPainter("TrajectoryObserver.LS", true);
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private readonly Painter stPainter = UI.GetPainter("TrajectoryObserver.ST", true);
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public void DrawWorld(TrajectoryObservationBootstrapResult bootstrap,
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TrajectoryObservationObservation observation)
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{
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worldPainter.Clear();
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if (bootstrap == null)
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{
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worldPainter.DrawText(Color.LightYellow, "Trajectory bootstrap unavailable.", 0f, 0f);
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return;
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}
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DrawMap(bootstrap.Map);
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DrawPose(bootstrap.Job == null ? null : bootstrap.Job.Start, Color.LimeGreen, "start");
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DrawPose(bootstrap.Job == null ? null : bootstrap.Job.Goal, Color.Orange, "goal");
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DrawCoarsePath(bootstrap.CoarseResult == null ? null : bootstrap.CoarseResult.PlanningResult.Path);
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DrawLocalG2Path(bootstrap.SmoothedPath == null ? null : bootstrap.SmoothedPath.Path);
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DrawPose(observation == null || observation.VehicleState == null ? null : observation.VehicleState.Pose,
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Color.DeepSkyBlue, "real pose");
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EmTrajectory trajectory = observation == null ? null : observation.PublishedTrajectory;
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if (trajectory == null || trajectory.Points == null || trajectory.Points.Count == 0)
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{
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worldPainter.DrawText(Color.LightYellow, "No published trajectory available.", 0f, 0f);
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return;
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}
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DrawEmPath(trajectory.Points);
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}
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public void DrawLs(TrajectoryObservationCharts charts)
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{
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lsPainter.Clear();
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if (charts == null || charts.LsSamples == null || charts.LsSamples.Count == 0)
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{
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lsPainter.DrawText(Color.LightYellow, "No published trajectory available for L-S chart.", 0f, 0f);
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return;
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}
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TrajectoryObservationLsPresentationModel model = TrajectoryObservationLsPresentationModel.Create(charts);
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float maxS = MaximumPathS(charts.LsSamples);
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float maxL = MaximumLateralOffset(charts.LsSamples);
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lsPainter.DrawLine(Color.Gainsboro, 0f, 0f, maxS, 0f, width: 2);
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lsPainter.DrawLine(Color.Gainsboro, 0f, -maxL, 0f, maxL, width: 2);
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lsPainter.DrawText(Color.White, "S-L", maxS + 100f, maxL + 150f);
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lsPainter.DrawText(Color.White, model.HorizontalAxisLabel, maxS + 100f, -200f);
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lsPainter.DrawText(Color.White, model.VerticalAxisLabel, 100f, maxL + 300f);
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for (int index = 1; index < model.Samples.Count; index++)
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{
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TrajectoryObservationLsPresentationPoint previous = model.Samples[index - 1];
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TrajectoryObservationLsPresentationPoint current = model.Samples[index];
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lsPainter.DrawLine(Color.MediumPurple, ToMillimeters(previous.HorizontalPathS),
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ToMillimeters(previous.VerticalLateralOffset), ToMillimeters(current.HorizontalPathS),
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ToMillimeters(current.VerticalLateralOffset), width: 3);
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}
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}
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public void DrawSt(TrajectoryObservationCharts charts)
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{
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stPainter.Clear();
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if (charts == null || charts.StSamples == null || charts.StSamples.Count == 0)
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{
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stPainter.DrawText(Color.LightYellow, "No published trajectory available for T-S/T-V charts.", 0f, 0f);
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return;
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}
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float maxTime = MaximumTime(charts.StSamples, charts.SpeedSamples);
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float maxS = MaximumPathS(charts.StSamples);
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stPainter.DrawLine(Color.Gainsboro, 0f, 0f, maxTime, 0f, width: 2);
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stPainter.DrawLine(Color.Gainsboro, 0f, 0f, 0f, maxS, width: 2);
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stPainter.DrawText(Color.White, "T-S", 0f, maxS + 150f);
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DrawStSeries(charts.StSamples);
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stPainter.DrawLine(Color.Gainsboro, 0f, VelocitySeriesBaseMillimeters,
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maxTime, VelocitySeriesBaseMillimeters, width: 2);
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stPainter.DrawLine(Color.Gainsboro, 0f, VelocitySeriesBaseMillimeters, 0f,
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VelocitySeriesBaseMillimeters + MillimetersPerMeter, width: 2);
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stPainter.DrawText(Color.White, "T-V", 0f, VelocitySeriesBaseMillimeters - 200f);
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DrawSpeedSeries(charts.SpeedSamples);
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DrawStLegend(maxTime, maxS);
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}
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public void ClearAll()
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{
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worldPainter.Clear();
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lsPainter.Clear();
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stPainter.Clear();
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}
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private void DrawMap(PlanningGridMap map)
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{
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if (map == null) return;
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float xMin = map.Bounds.XMin;
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float xMax = map.Bounds.XMax;
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float yMin = map.Bounds.YMin;
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float yMax = map.Bounds.YMax;
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int gridStride = Math.Max(1, (int)Math.Ceiling(Math.Max(map.Rows, map.Cols) /
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(double)MaximumVisibleGridLines));
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for (int column = 0; column <= map.Cols; column += gridStride)
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{
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float x = Math.Min(xMax, xMin + column * map.ResolutionMm);
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worldPainter.DrawLine(Color.FromArgb(80, Color.SlateGray), x, yMin, x, yMax, width: 1);
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}
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for (int row = 0; row <= map.Rows; row += gridStride)
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{
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float y = Math.Min(yMax, yMin + row * map.ResolutionMm);
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worldPainter.DrawLine(Color.FromArgb(80, Color.SlateGray), xMin, y, xMax, y, width: 1);
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}
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DrawRectangle(Color.Gainsboro, xMin, yMin, xMax, yMax, 3);
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for (int row = 0; row < map.Rows; row++)
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{
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for (int column = 0; column < map.Cols; column++)
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{
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if (!map.IsOccupied(row, column)) continue;
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float x = xMin + column * map.ResolutionMm + map.ResolutionMm / 2f;
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float y = yMin + row * map.ResolutionMm;
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worldPainter.DrawLine(Color.FromArgb(150, Color.Firebrick), x, y, x, y + map.ResolutionMm,
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width: Math.Max(1, (int)Math.Round(map.ResolutionMm)));
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}
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}
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}
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private void DrawPose(Pose2D pose, Color color, string label)
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{
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if (pose == null) return;
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float x = ToMillimeters(pose.X);
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float y = ToMillimeters(pose.Y);
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worldPainter.DrawCircle(color, x, y, 80f);
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worldPainter.DrawLine(color, x, y, x + (float)Math.Cos(pose.Heading) * 250f,
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y + (float)Math.Sin(pose.Heading) * 250f, endArrow: true, width: 3);
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worldPainter.DrawText(color, label, x + 100f, y + 100f);
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}
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private void DrawCoarsePath(IReadOnlyList<CoarsePathPoint> path)
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{
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if (path == null || path.Count == 0) return;
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for (int index = 1; index < path.Count; index++)
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worldPainter.DrawLine(Color.LimeGreen, ToMillimeters(path[index - 1].X), ToMillimeters(path[index - 1].Y),
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ToMillimeters(path[index].X), ToMillimeters(path[index].Y), width: 4);
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}
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private void DrawLocalG2Path(IReadOnlyList<SmoothedPathPoint> path)
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{
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if (path == null || path.Count == 0) return;
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for (int index = 1; index < path.Count; index++)
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worldPainter.DrawLine(Color.Gold, ToMillimeters(path[index - 1].X), ToMillimeters(path[index - 1].Y),
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ToMillimeters(path[index].X), ToMillimeters(path[index].Y), width: 3);
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}
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private void DrawEmPath(IReadOnlyList<EmTrajectoryPoint> path)
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{
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for (int index = 1; index < path.Count; index++)
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worldPainter.DrawLine(Color.DeepPink, ToMillimeters(path[index - 1].X), ToMillimeters(path[index - 1].Y),
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ToMillimeters(path[index].X), ToMillimeters(path[index].Y), width: 4);
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}
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private void DrawRectangle(Color color, float xMin, float yMin, float xMax, float yMax, int width)
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{
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worldPainter.DrawLine(color, xMin, yMin, xMax, yMin, width: width);
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worldPainter.DrawLine(color, xMax, yMin, xMax, yMax, width: width);
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worldPainter.DrawLine(color, xMax, yMax, xMin, yMax, width: width);
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worldPainter.DrawLine(color, xMin, yMax, xMin, yMin, width: width);
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}
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private void DrawStSeries(IReadOnlyList<TrajectoryObservationStSample> samples)
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{
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for (int index = 1; index < samples.Count; index++)
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stPainter.DrawLine(Color.Cyan, ToMillimeters(samples[index - 1].TimeFromStart),
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ToMillimeters(samples[index - 1].PathS), ToMillimeters(samples[index].TimeFromStart),
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ToMillimeters(samples[index].PathS), width: 3);
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}
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private void DrawSpeedSeries(IReadOnlyList<TrajectoryObservationSpeedSample> samples)
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{
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if (samples == null) return;
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for (int index = 1; index < samples.Count; index++)
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stPainter.DrawLine(Color.Orange, ToMillimeters(samples[index - 1].TimeFromStart),
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VelocitySeriesBaseMillimeters + ToMillimeters(samples[index - 1].SignedLongitudinalVelocity),
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ToMillimeters(samples[index].TimeFromStart),
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VelocitySeriesBaseMillimeters + ToMillimeters(samples[index].SignedLongitudinalVelocity), width: 3);
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}
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private void DrawStLegend(float maxTime, float maxS)
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{
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float x = maxTime + 250f;
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stPainter.DrawLine(Color.Cyan, x, maxS, x + 200f, maxS, width: 4);
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stPainter.DrawText(Color.Cyan, "t-s", x + 250f, maxS - 50f);
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stPainter.DrawLine(Color.Orange, x, VelocitySeriesBaseMillimeters, x + 200f,
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VelocitySeriesBaseMillimeters, width: 4);
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stPainter.DrawText(Color.Orange, "t-v", x + 250f, VelocitySeriesBaseMillimeters - 50f);
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}
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private static float MaximumPathS(IReadOnlyList<TrajectoryObservationLsSample> samples)
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{
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double maximum = 1d;
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for (int index = 0; index < samples.Count; index++) maximum = Math.Max(maximum, samples[index].PathS);
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return ToMillimeters(maximum);
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}
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private static float MaximumPathS(IReadOnlyList<TrajectoryObservationStSample> samples)
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{
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double maximum = 1d;
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for (int index = 0; index < samples.Count; index++) maximum = Math.Max(maximum, samples[index].PathS);
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return ToMillimeters(maximum);
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}
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private static float MaximumLateralOffset(IReadOnlyList<TrajectoryObservationLsSample> samples)
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{
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double maximum = 1d;
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for (int index = 0; index < samples.Count; index++) maximum = Math.Max(maximum, Math.Abs(samples[index].LateralOffset));
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return ToMillimeters(maximum);
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}
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private static float MaximumTime(IReadOnlyList<TrajectoryObservationStSample> stSamples,
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IReadOnlyList<TrajectoryObservationSpeedSample> speedSamples)
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{
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double maximum = 1d;
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for (int index = 0; index < stSamples.Count; index++) maximum = Math.Max(maximum, stSamples[index].TimeFromStart);
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if (speedSamples != null)
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for (int index = 0; index < speedSamples.Count; index++)
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maximum = Math.Max(maximum, speedSamples[index].TimeFromStart);
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return ToMillimeters(maximum);
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}
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private static float ToMillimeters(double meters) => (float)(meters * MillimetersPerMeter);
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}
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