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https://github.com/ajisaacs/OpenNest.git
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Repo-wide sweep with the pinned CSharpier 1.3.0 tool. Whitespace and line-wrapping only; OpenNest.Engine.Tests (109) and OpenNest.IO.Tests pass after reformat, full solution builds 0 errors. Added .csharpierignore so csproj/config XML keeps its existing layout (CSharpier's XML wrapping churns attributes with zero benefit). Formatting is now enforceable: dotnet csharpier check . passes.
491 lines
16 KiB
C#
491 lines
16 KiB
C#
using System.Drawing;
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using System.Drawing.Drawing2D;
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using OpenNest.CNC;
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using OpenNest.Geometry;
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using OpenNest.Math;
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namespace OpenNest
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{
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internal static class GraphicsHelper
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{
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public static GraphicsPath GetGraphicsPath(this Program pgm)
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{
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var path = new GraphicsPath();
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var curpos = Vector.Zero;
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AddProgram(path, pgm, pgm.Mode, ref curpos);
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return path;
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}
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public static GraphicsPath GetGraphicsPath(this Program pgm, Vector origin)
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{
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var path = new GraphicsPath();
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var curpos = origin;
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AddProgram(path, pgm, pgm.Mode, ref curpos);
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return path;
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}
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public static GraphicsPath GetGraphicsPath(this Shape shape)
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{
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var path = new GraphicsPath();
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AddShape(path, shape);
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return path;
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}
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public static Image GetImage(this Program pgm, System.Drawing.Size size)
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{
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return pgm.GetImage(size, Pens.Black, null);
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}
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public static Image GetImage(this Program pgm, System.Drawing.Size size, Pen pen)
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{
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return pgm.GetImage(size, pen, null);
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}
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public static Image GetImage(
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this Program pgm,
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System.Drawing.Size size,
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Pen pen,
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Brush brush
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)
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{
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var img = new Bitmap(size.Width, size.Height);
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var path = pgm.GetGraphicsPath();
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var bounds = path.GetBounds();
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var scalex = (size.Height - 10) / bounds.Height;
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var scaley = (size.Width - 10) / bounds.Width;
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var scale = scalex < scaley ? scalex : scaley;
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var matrix = new Matrix();
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matrix.Scale(scale, -scale);
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path.Transform(matrix);
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bounds = path.GetBounds();
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var offset = new PointF(
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(size.Width - bounds.Width) * 0.5f - bounds.X,
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(size.Height - bounds.Height) * 0.5f - bounds.Y
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);
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var graphics = Graphics.FromImage(img);
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graphics.TranslateTransform(offset.X, offset.Y);
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if (brush != null)
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graphics.FillPath(brush, path);
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if (pen == null)
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pen = Pens.Black;
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graphics.DrawPath(pen, path);
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matrix.Dispose();
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graphics.Dispose();
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return img;
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}
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public static void GetGraphicsPaths(
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this Program pgm,
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Vector origin,
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out GraphicsPath cutPath,
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out GraphicsPath leadPath
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)
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{
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cutPath = new GraphicsPath();
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leadPath = new GraphicsPath();
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var curpos = origin;
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AddProgramSplit(cutPath, leadPath, pgm, pgm.Mode, ref curpos);
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}
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private static void AddProgramSplit(
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GraphicsPath cutPath,
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GraphicsPath leadPath,
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Program pgm,
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Mode mode,
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ref Vector curpos
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)
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{
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// Capture the frame origin at entry. Sub-program Offsets are relative
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// to this fixed origin, not to the current tool position.
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var frameOrigin = curpos;
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mode = pgm.Mode;
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for (var i = 0; i < pgm.Length; ++i)
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{
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var code = pgm[i];
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switch (code.Type)
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{
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case CodeType.ArcMove:
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var arc = (ArcMove)code;
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if (arc.Suppressed)
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{
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var endpt = arc.EndPoint;
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if (mode == Mode.Incremental)
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endpt += curpos;
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curpos = endpt;
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break;
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}
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var arcPath =
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(arc.Layer == LayerType.Leadin || arc.Layer == LayerType.Leadout)
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? leadPath
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: cutPath;
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AddArc(arcPath, arc, mode, ref curpos);
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break;
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case CodeType.LinearMove:
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var line = (LinearMove)code;
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if (line.Suppressed)
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{
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var endpt = line.EndPoint;
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if (mode == Mode.Incremental)
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endpt += curpos;
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curpos = endpt;
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break;
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}
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var linePath =
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(line.Layer == LayerType.Leadin || line.Layer == LayerType.Leadout)
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? leadPath
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: cutPath;
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AddLine(linePath, line, mode, ref curpos);
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break;
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case CodeType.RapidMove:
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{
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var rapid = (RapidMove)code;
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var endpt = rapid.EndPoint;
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if (mode == Mode.Incremental)
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endpt += curpos;
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var dx = endpt.X - curpos.X;
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var dy = endpt.Y - curpos.Y;
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if (dx * dx + dy * dy > 0.001 * 0.001)
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{
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cutPath.StartFigure();
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leadPath.StartFigure();
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}
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curpos = endpt;
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}
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break;
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case CodeType.SubProgramCall:
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var tmpmode = mode;
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var subpgm = (SubProgramCall)code;
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if (subpgm.Program != null)
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{
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cutPath.StartFigure();
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leadPath.StartFigure();
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curpos = new Vector(
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frameOrigin.X + subpgm.Offset.X,
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frameOrigin.Y + subpgm.Offset.Y
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);
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AddProgramSplit(cutPath, leadPath, subpgm.Program, mode, ref curpos);
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}
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mode = tmpmode;
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break;
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}
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}
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}
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private static void AddArc(GraphicsPath path, ArcMove arc, Mode mode, ref Vector curpos)
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{
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var endpt = arc.EndPoint;
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var center = arc.CenterPoint;
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if (mode == Mode.Incremental)
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{
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endpt += curpos;
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center += curpos;
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}
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// start angle in degrees
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var startAngle = Angle.ToDegrees(
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System.Math.Atan2(curpos.Y - center.Y, curpos.X - center.X)
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);
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// end angle in degrees
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var endAngle = Angle.ToDegrees(
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System.Math.Atan2(endpt.Y - center.Y, endpt.X - center.X)
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);
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endAngle = Angle.NormalizeDeg(endAngle);
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startAngle = Angle.NormalizeDeg(startAngle);
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if (arc.Rotation == RotationType.CCW && endAngle < startAngle)
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endAngle += 360.0;
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else if (arc.Rotation == RotationType.CW && startAngle < endAngle)
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startAngle += 360.0;
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var dx = endpt.X - center.X;
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var dy = endpt.Y - center.Y;
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var radius = System.Math.Sqrt(dx * dx + dy * dy);
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var pt = new PointF((float)(center.X - radius), (float)(center.Y - radius));
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var size = (float)(radius * 2.0);
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if (startAngle.IsEqualTo(endAngle))
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{
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path.AddEllipse(pt.X, pt.Y, size, size);
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}
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else
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{
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var sweepAngle = (endAngle - startAngle);
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path.AddArc(pt.X, pt.Y, size, size, (float)startAngle, (float)sweepAngle);
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}
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curpos = endpt;
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}
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private static void AddLine(
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GraphicsPath path,
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LinearMove line,
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Mode mode,
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ref Vector curpos
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)
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{
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var pt = line.EndPoint;
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if (mode == Mode.Incremental)
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pt += curpos;
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var pt1 = new PointF((float)curpos.X, (float)curpos.Y);
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var pt2 = new PointF((float)pt.X, (float)pt.Y);
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path.AddLine(pt1, pt2);
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curpos = pt;
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}
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private static void AddLine(GraphicsPath path, RapidMove line, Mode mode, ref Vector curpos)
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{
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var pt = line.EndPoint;
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if (mode == Mode.Incremental)
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pt += curpos;
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curpos = pt;
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}
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private static void AddProgram(GraphicsPath path, Program pgm, Mode mode, ref Vector curpos)
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{
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// Capture the frame origin at entry. Sub-program Offsets are relative
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// to this fixed origin, not to the current tool position.
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var frameOrigin = curpos;
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mode = pgm.Mode;
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GraphicsPath currentFigure = null;
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void Flush()
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{
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if (currentFigure != null)
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{
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path.AddPath(currentFigure, false);
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currentFigure.Dispose();
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currentFigure = null;
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}
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}
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for (int i = 0; i < pgm.Length; ++i)
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{
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var code = pgm[i];
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switch (code.Type)
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{
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case CodeType.ArcMove:
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{
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var arc = (ArcMove)code;
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if (arc.Layer != LayerType.Leadin && arc.Layer != LayerType.Leadout)
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{
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if (currentFigure == null)
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currentFigure = new GraphicsPath();
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AddArc(currentFigure, arc, mode, ref curpos);
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}
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else
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{
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Flush();
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var endpt = arc.EndPoint;
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if (mode == Mode.Incremental)
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endpt += curpos;
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curpos = endpt;
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}
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}
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break;
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case CodeType.LinearMove:
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{
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var line = (LinearMove)code;
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if (line.Layer != LayerType.Leadin && line.Layer != LayerType.Leadout)
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{
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if (currentFigure == null)
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currentFigure = new GraphicsPath();
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AddLine(currentFigure, line, mode, ref curpos);
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}
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else
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{
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Flush();
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var endpt = line.EndPoint;
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if (mode == Mode.Incremental)
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endpt += curpos;
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curpos = endpt;
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}
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}
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break;
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case CodeType.RapidMove:
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{
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var rapid = (RapidMove)code;
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var endpt = rapid.EndPoint;
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if (mode == Mode.Incremental)
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endpt += curpos;
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var dx = endpt.X - curpos.X;
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var dy = endpt.Y - curpos.Y;
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if (dx * dx + dy * dy > 0.001 * 0.001)
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Flush();
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curpos = endpt;
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}
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break;
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case CodeType.SubProgramCall:
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{
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Flush();
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var tmpmode = mode;
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var subpgm = (SubProgramCall)code;
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if (subpgm.Program != null)
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{
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curpos = new Vector(
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frameOrigin.X + subpgm.Offset.X,
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frameOrigin.Y + subpgm.Offset.Y
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);
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AddProgram(path, subpgm.Program, mode, ref curpos);
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}
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mode = tmpmode;
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break;
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}
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}
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}
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Flush();
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}
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private static void AddArc(GraphicsPath path, Arc arc)
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{
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var diameter = arc.Diameter;
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var endAngle = Angle.NormalizeDeg(Angle.ToDegrees(arc.EndAngle));
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var startAngle = Angle.NormalizeDeg(Angle.ToDegrees(arc.StartAngle));
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if (arc.Rotation == RotationType.CCW && endAngle < startAngle)
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endAngle += 360.0;
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else if (arc.Rotation == RotationType.CW && startAngle < endAngle)
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startAngle += 360.0;
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var sweepAngle = (endAngle - startAngle);
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path.AddArc(
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(float)(arc.Center.X - arc.Radius),
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(float)(arc.Center.Y - arc.Radius),
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(float)diameter,
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(float)diameter,
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(float)(startAngle),
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(float)sweepAngle
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);
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}
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private static void AddCircle(GraphicsPath path, Circle circle)
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{
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var diameter = circle.Diameter;
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path.AddEllipse(
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(float)(circle.Center.X - circle.Radius),
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(float)(circle.Center.Y - circle.Radius),
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(float)diameter,
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(float)diameter
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);
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}
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private static void AddLine(GraphicsPath path, Line line)
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{
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path.AddLine(
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(float)line.StartPoint.X,
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(float)line.StartPoint.Y,
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(float)line.EndPoint.X,
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(float)line.EndPoint.Y
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);
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}
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private static void AddShape(GraphicsPath path, Shape shape)
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{
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foreach (var entity in shape.Entities)
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{
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if (entity.Layer != null)
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{
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if (
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string.Equals(
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entity.Layer.Name,
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SpecialLayers.Leadin.Name,
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System.StringComparison.OrdinalIgnoreCase
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)
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|| string.Equals(
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entity.Layer.Name,
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SpecialLayers.Leadout.Name,
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System.StringComparison.OrdinalIgnoreCase
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)
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)
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{
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continue;
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}
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}
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switch (entity.Type)
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{
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case EntityType.Arc:
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AddArc(path, (Arc)entity);
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break;
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case EntityType.Circle:
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AddCircle(path, (Circle)entity);
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break;
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case EntityType.Line:
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AddLine(path, (Line)entity);
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break;
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case EntityType.Polygon:
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AddPolygon(path, (Polygon)entity);
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break;
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case EntityType.Shape:
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var subpath = new GraphicsPath();
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AddShape(subpath, (Shape)entity);
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path.AddPath(subpath, false);
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subpath.Dispose();
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break;
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}
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}
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}
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private static void AddPolygon(GraphicsPath path, Polygon polygon)
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{
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var pts = new PointF[polygon.Vertices.Count];
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for (int i = 0; i < pts.Length; i++)
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{
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var pt = polygon.Vertices[i];
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pts[i] = new PointF((float)pt.X, (float)pt.Y);
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}
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path.AddPolygon(pts);
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}
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}
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}
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