Every nesting-geometry consumer filtered only rapids, so scribe/etch moves counted as part material. An etch tick that ends a hair outside the outline (PEP bend ticks start on the notch edge) made the part "open geometry leaving the material region": the job validator threw and every built-in engine plus Gpt6Astra crashed on real PEP jobs (PT75, drawing 4980 A01 PT77). Marks are only on the surface, so they should never affect placement, collision, area, or validation. - SpecialLayers.IsMaterial excludes Rapid and Scribe; used by drawing area, canonical angle, part collision, PartGeometry, plate perimeter, best-fit/pair evaluation, rotation analysis, GPU evaluators, and both validators. Timing, display, splitting and posts still see marks. - ConvertGeometry also maps the saved SCRIBE layer name to Scribe, so programs rebuilt from stored entities keep their marks. - NestReader repairs older files (e.g. PepNestExport output) whose programs saved etch as cut moves while source entities kept SCRIBE. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
160 lines
4.8 KiB
C#
160 lines
4.8 KiB
C#
using System.Collections.Generic;
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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.Converters
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{
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public static class ConvertGeometry
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{
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public static Program ToProgram(IList<Entity> geometry)
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{
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var shapes = ShapeBuilder.GetShapes(geometry);
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if (shapes.Count == 0)
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return null;
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var perimeter = shapes[0];
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var area = perimeter.BoundingBox.Area();
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var index = 0;
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for (int i = 1; i < shapes.Count; ++i)
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{
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var program = shapes[i];
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var area2 = program.BoundingBox.Area();
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if (area2 > area)
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{
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perimeter = program;
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area = area2;
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index = i;
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}
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}
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shapes.RemoveAt(index);
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var pgm = new Program();
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foreach (var shape in shapes)
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{
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var subpgm = ToProgram(shape);
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pgm.Merge(subpgm);
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}
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pgm.Merge(ToProgram(perimeter));
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pgm.Mode = Mode.Incremental;
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return pgm;
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}
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public static Program ToProgram(Shape shape)
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{
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var pgm = new Program();
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var lastpt = new Vector();
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for (int i = 0; i < shape.Entities.Count; i++)
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lastpt = AddEntity(pgm, lastpt, shape.Entities[i]);
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return pgm;
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}
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private static Vector AddEntity(Program pgm, Vector lastpt, Entity geo)
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{
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switch (geo.Type)
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{
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case EntityType.Arc:
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lastpt = AddArc(pgm, lastpt, (Arc)geo);
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break;
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case EntityType.Circle:
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lastpt = AddCircle(pgm, lastpt, (Circle)geo);
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break;
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case EntityType.Line:
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lastpt = AddLine(pgm, lastpt, (Line)geo);
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break;
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}
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return lastpt;
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}
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private static Vector AddArc(Program pgm, Vector lastpt, Arc arc)
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{
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var startpt = arc.StartPoint();
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var endpt = arc.EndPoint();
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if (startpt.DistanceTo(lastpt) > Tolerance.ChainTolerance)
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pgm.MoveTo(startpt);
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lastpt = endpt;
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var layer = ClassifyLayer(arc);
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var sweep = System.Math.Abs(arc.SweepAngle());
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if (sweep < Tolerance.Epsilon || sweep.IsEqualTo(Angle.TwoPI))
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{
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pgm.Codes.Add(new LinearMove(endpt) { Layer = layer });
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}
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else
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{
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pgm.Codes.Add(
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new ArcMove(
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endpt,
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arc.Center,
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arc.IsReversed ? RotationType.CW : RotationType.CCW
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)
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{
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Layer = layer,
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}
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);
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}
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return lastpt;
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}
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private static Vector AddCircle(Program pgm, Vector lastpt, Circle circle)
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{
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var startpt = new Vector(circle.Center.X + circle.Radius, circle.Center.Y);
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if (startpt.DistanceTo(lastpt) > Tolerance.ChainTolerance)
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pgm.MoveTo(startpt);
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pgm.Codes.Add(
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new ArcMove(startpt, circle.Center, circle.Rotation)
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{
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Layer = ClassifyLayer(circle),
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}
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);
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lastpt = startpt;
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return lastpt;
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}
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private static Vector AddLine(Program pgm, Vector lastpt, Line line)
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{
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if (line.StartPoint.DistanceTo(lastpt) > Tolerance.ChainTolerance)
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pgm.MoveTo(line.StartPoint);
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pgm.Codes.Add(new LinearMove(line.EndPoint) { Layer = ClassifyLayer(line) });
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lastpt = line.EndPoint;
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return lastpt;
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}
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// Engrave/etch/scribe geometry maps to Scribe so the post processor can treat it as a
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// separate tool pass; everything else keeps the move's default Cut layer. SCRIBE is the
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// name marks carry once saved (SpecialLayers.Scribe), so drawings rebuilt from stored
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// entities must map it too or their marks silently become cut moves.
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private static LayerType ClassifyLayer(Entity geo)
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{
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var name = geo.Layer?.Name;
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if (
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string.Equals(name, "ENGRAVE", System.StringComparison.OrdinalIgnoreCase)
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|| string.Equals(name, "ETCH", System.StringComparison.OrdinalIgnoreCase)
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|| string.Equals(name, SpecialLayers.Scribe.Name, System.StringComparison.OrdinalIgnoreCase)
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)
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return LayerType.Scribe;
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return LayerType.Cut;
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}
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}
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}
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