181 lines
7.2 KiB
C#
181 lines
7.2 KiB
C#
using OpenNest.CNC;
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using OpenNest.Geometry;
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using OpenNest.Engine.Jobs;
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using OpenNest.Engine.Jobs.Adapters;
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namespace OpenNest.Engine.Tests.Jobs;
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/// <summary>
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/// The jobs-boundary contract that <see cref="CandidatePlacementContext"/> and
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/// <see cref="NestJobRunner"/> share with every <see cref="IPlateNester"/>. Retargeted from the
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/// deleted legacy adapter's tests: the private-geometry, reference-identity, and unknown-part
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/// guarantees are boundary properties, so they are proven with a nester stub that mutates its
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/// private items exactly as an engine would.
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/// </summary>
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public class NesterContractTests
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{
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[Fact]
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public void NesterMutationsCannotDoubleSubtractOrReachCallerObjects()
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{
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var drawing = new Drawing("same name", TestDrawingFactory.Rectangle());
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drawing.Quantity.Required = 9;
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var item = new NestItem
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{
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Drawing = drawing,
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Quantity = 3,
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Priority = 7,
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StepAngle = 0,
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};
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var sourcePlate = new Plate(100, 200) { Quantity = 3, PartSpacing = 2 };
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var job = new NestJob(
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new[] { DrawingJobMapper.FromItem("requirement", item) },
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new[] { DrawingJobMapper.FromPlate("stock", sourcePlate, 3) }
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);
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var quantities = new List<int>();
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var nester = new RecordingNester(
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items =>
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{
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var privateItem = Assert.Single(items);
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quantities.Add(privateItem.Quantity);
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Assert.NotSame(drawing, privateItem.Drawing);
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Assert.Equal(0, privateItem.StepAngle);
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Assert.Equal(7, privateItem.Priority);
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var part = new Part(privateItem.Drawing);
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privateItem.Quantity = 0;
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privateItem.Drawing.Quantity.Required = 0;
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return new List<Part> { part };
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}
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);
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var result = new NestJobRunner(_ => nester).Solve(job);
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var materialized = NestResultMaterializer.Materialize(job, result);
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Assert.Equal(new[] { 3, 2, 1 }, quantities);
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Assert.Equal(NestJobStatus.Complete, result.Status);
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Assert.Equal(3, materialized.Nest.Plates.Count);
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Assert.All(
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materialized.Nest.Plates,
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p =>
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{
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Assert.Equal(1, p.Quantity);
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Assert.Single(p.Parts);
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}
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);
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var outputDrawing = materialized.DrawingsByPartId["requirement"];
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Assert.Equal(3, outputDrawing.Quantity.Required);
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Assert.Equal(3, outputDrawing.Quantity.Nested);
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Assert.All(
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materialized.Nest.Plates,
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p => Assert.Same(outputDrawing, p.Parts[0].BaseDrawing)
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);
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Assert.NotSame(drawing, outputDrawing);
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Assert.Equal(9, drawing.Quantity.Required);
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Assert.Equal(0, drawing.Quantity.Nested);
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Assert.Equal(3, item.Quantity);
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Assert.Equal(3, sourcePlate.Quantity);
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Assert.Empty(sourcePlate.Parts);
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Assert.Equal(2, sourcePlate.PartSpacing);
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Assert.Equal(
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PartGeometrySnapshot.FromProgram(TestDrawingFactory.Rectangle()).Motions,
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PartGeometrySnapshot.FromProgram(drawing.Program).Motions
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);
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}
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[Fact]
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public void ReferenceIdentityNotNamesControlsPlacements()
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{
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var drawing = new Drawing("duplicate", TestDrawingFactory.Rectangle());
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var job = new NestJob(
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new[]
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{
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DrawingJobMapper.FromDrawing("a", drawing, 1),
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DrawingJobMapper.FromDrawing("b", drawing, 1),
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},
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FiniteStockJobTests.Job(1).Plates
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);
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var nester = new RecordingNester(
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items =>
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{
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Assert.NotSame(items[0].Drawing, items[1].Drawing);
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foreach (var item in items)
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item.Drawing.Name = "identical";
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return new List<Part>
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{
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new Part(items[0].Drawing, new Vector(0, 0)),
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new Part(items[1].Drawing, new Vector(10, 0)),
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};
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}
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);
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var result = new NestJobRunner(_ => nester).Solve(job);
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Assert.Equal(new[] { "a", "b" }, result.Plates[0].Placements.Select(p => p.PartId));
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var output = NestResultMaterializer.Materialize(job, result);
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Assert.NotSame(output.DrawingsByPartId["a"], output.DrawingsByPartId["b"]);
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Assert.All(output.DrawingsByPartId.Values, d => Assert.Equal(1, d.Quantity.Nested));
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}
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[Fact]
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public void UnknownPrivateDrawingIsRejectedEvenWithMatchingName()
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{
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var nester = new RecordingNester(
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items =>
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new List<Part>
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{
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new(new Drawing(items[0].Drawing.Name, TestDrawingFactory.Rectangle())),
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}
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);
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Assert.Throws<InvalidOperationException>(() =>
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new NestJobRunner(_ => nester).Solve(FiniteStockJobTests.Job())
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);
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Assert.Throws<NotSupportedException>(() => PlateNesterFactory.Create("not registered"));
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}
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/// <summary>Runs a caller-supplied function over freshly built private items and maps the
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/// returned parts back by Drawing reference — the same boundary mechanics as the production
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/// <see cref="CandidatePlacementContext"/>, but rebuilt per call so each trial is independent.</summary>
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private sealed class RecordingNester(Func<List<NestItem>, List<Part>> propose) : IPlateNester
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{
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public PlateCandidate Place(
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PlatePlacementRequest request,
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IProgress<NestJobProgress>? progress = null,
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CancellationToken token = default
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)
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{
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var items = new List<NestItem>();
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var idsByDrawing = new Dictionary<Drawing, string>(ReferenceEqualityComparer.Instance);
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foreach (var requirement in request.Parts)
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{
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var drawing = DrawingJobMapper.CreateDrawing(requirement);
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idsByDrawing.Add(drawing, requirement.Id);
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items.Add(
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new NestItem
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{
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Drawing = drawing,
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Quantity = requirement.Quantity,
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Priority = requirement.Priority,
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StepAngle = DrawingJobMapper.LegacyStep(requirement.Rotation),
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RotationStart = requirement.Rotation.Start,
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RotationEnd = requirement.Rotation.End,
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}
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);
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}
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return new PlateCandidate(
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propose(items).Select(p => new NestJobPlacement(
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IdFor(idsByDrawing, p),
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0,
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p.Location.X,
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p.Location.Y,
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p.Rotation
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))
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);
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}
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private static string IdFor(Dictionary<Drawing, string> idsByDrawing, Part part)
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{
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// Deliberately reference-based, like the placement context.
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if (part?.BaseDrawing == null || !idsByDrawing.TryGetValue(part.BaseDrawing, out var id))
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throw new InvalidOperationException(
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"Placement does not reference a known requirement drawing."
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);
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return id;
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}
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}
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}
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