using System; using System.Collections.Generic; using System.Linq; using OpenNest.Benchmark; using OpenNest.CNC; using OpenNest.Engine.Jobs; using OpenNest.Engine.Jobs.Adapters; using OpenNest.Geometry; namespace OpenNest.Engine.__NAME__.Tests; /// /// Starter acceptance tests. Every layout is checked by the same NestValidator the benchmark /// scores with, so a passing test means the benchmark will accept the layout. They fail until /// Solve() is implemented; add engine-specific tests alongside them. /// public class __NAME__NestingEngineTests { [Fact] public void HasPublicParameterlessConstructorForPluginDiscovery() { var engine = Activator.CreateInstance(typeof(__NAME__NestingEngine)); Assert.IsAssignableFrom(engine); } [Fact] public void RectanglesFitOnOneSheetWithSpacing() { var job = Job(new[] { Part("rect", Rectangle(10, 5), 12) }, new[] { Stock("sheet", 48, 96, spacing: 0.25) }); var result = new __NAME__NestingEngine().Solve(job); AssertValid(job, result); Assert.Equal(NestJobStatus.Complete, result.Status); Assert.Single(result.Plates); Assert.Equal(12, result.Plates[0].Placements.Count); } [Theory] [InlineData(1)] [InlineData(2)] [InlineData(3)] [InlineData(4)] public void MixedArcAndConcavePartsAreValidInEveryQuadrant(int quadrant) { var job = Job( new[] { Part("disc", Disc(3), 10), Part("ell", LShape(12, 8, 4), 10), Part("tri", Triangle(9, 6), 10), }, new[] { Stock("sheet", 40, 60, spacing: 0.5, edge: new Spacing(0.5, 0.5, 0.5, 0.5), quadrant: quadrant) } ); var result = new __NAME__NestingEngine().Solve(job); AssertValid(job, result); Assert.Equal(NestJobStatus.Complete, result.Status); } [Fact] public void OverflowSpillsOntoAdditionalSheets() { var job = Job(new[] { Part("square", Rectangle(10, 10), 30) }, new[] { Stock("sheet", 25, 45, spacing: 0.25) }); var result = new __NAME__NestingEngine().Solve(job); AssertValid(job, result); Assert.Equal(NestJobStatus.Complete, result.Status); Assert.True(result.Plates.Count > 1); } [Fact] public void PartTooBigForAnySheetIsReportedUnplaced() { var job = Job( new[] { Part("huge", Rectangle(50, 50), 1), Part("small", Rectangle(5, 5), 4) }, new[] { Stock("sheet", 20, 20, spacing: 0.25) } ); var result = new __NAME__NestingEngine().Solve(job); AssertValid(job, result); var huge = Assert.Single(result.Fulfillment, f => f.PartId == "huge"); Assert.Equal(1, huge.Unplaced); } // ---- helpers ------------------------------------------------------------------------- private static void AssertValid(NestJob job, NestJobResult result) { var materialized = NestResultMaterializer.Materialize(job, result); var runs = materialized.Nest.Plates.Select(plate => (Plate: plate, Parts: plate.Parts.ToList())).ToList(); var requirements = job.Parts.ToDictionary( p => materialized.DrawingsByPartId[p.Id], p => (p.Id, p.Quantity), ReferenceEqualityComparer.Instance ); var validation = NestValidator.Validate(runs, requirements); NestValidator.ValidateAgainstJob(job, result, job.Parts.ToDictionary(p => p.Id, p => p.Id), validation); Assert.True(validation.Valid, string.Join(Environment.NewLine, validation.Violations)); foreach (var f in result.Fulfillment) Assert.Equal(f.Requested, f.Placed + f.Unplaced); } private static NestJob Job(NestJobPart[] parts, NestPlateStock[] stock, NestJobOptions? options = null) => new(parts, stock, options); private static NestJobPart Part(string id, Program program, int quantity, RotationPolicy? rotation = null) => new(id, PartGeometrySnapshot.FromProgram(program), quantity, 0, rotation); /// Y extent. /// X extent. private static NestPlateStock Stock( string id, double width, double length, double spacing = 0, Spacing edge = default, int quadrant = 1, int? quantity = null ) => new(id, new Size(width, length), quantity, spacing, edge, quadrant); private static Program Polyline(params (double X, double Y)[] points) { var program = new Program(); program.Codes.Add(new RapidMove(points[0].X, points[0].Y)); foreach (var (x, y) in points.Skip(1)) program.Codes.Add(new LinearMove(x, y)); program.Codes.Add(new LinearMove(points[0].X, points[0].Y)); return program; } private static Program Rectangle(double w, double h) => Polyline((0, 0), (w, 0), (w, h), (0, h)); private static Program Triangle(double w, double h) => Polyline((0, 0), (w, 0), (w * 0.3, h)); private static Program LShape(double w, double h, double t) => Polyline((0, 0), (w, 0), (w, t), (t, t), (t, h), (0, h)); private static Program Disc(double r) { var program = new Program(); program.Codes.Add(new RapidMove(r, 0)); program.Codes.Add(new ArcMove(-r, 0, 0, 0, RotationType.CCW)); program.Codes.Add(new ArcMove(r, 0, 0, 0, RotationType.CCW)); return program; } }