Files
OpenNest-Engines/_Template
ajandClaude Opus 5.5 f973c1c15c docs(template): list the Windows path of the drawing archive
Runs with Claude have to happen on the Windows PC, where the archive is
mapped as Y:\Archive rather than hermes' /mnt/rogers mount.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-09-25 07:03:28 -04:00
..

OpenNest.Engine.NAME

An independent INestingEngine implementation. It must not be a wrapper, ensemble, or selector over OpenNest's built-in engines. Solve() must not call, instantiate, or delegate to any existing INestingEngine (StockLadderNestingEngine, FixedStrategyNestingEngine), NestingEngineRegistry, NestJobRunner, or the whole-plate nesters/fillers behind PlateNesterFactory (DefaultPlateNester, StripPlateNester, RemnantPlateNester, PlateFillService, DefaultPlateFiller, ...). It must also never run several of them and keep the best result.

The decisions that make it an engine must be yours: which sheet(s) to use, which parts go where and in what order, which pattern/strategy to apply to which region, and when to stop.

Read BENCH-RULES.md before starting. It covers your workspace, version control, the real-part drawing archive, tests and your final report.

Allowed building blocks

Reuse is encouraged. These are tools you drive, composed by your own decision logic:

  • OpenNest.Core geometry: Polygon, Shape, BoundingBox, Vector, Box, ConvexHull, ConvexDecomposition, RotatingCalipers, Collision, NoFitPolygon, ShapeProfile, SpatialQuery.
  • Fill and pattern components in OpenNest.Engine.Fill: FillLinear, FillExtents, PairFiller, ShrinkFiller, RemnantFiller/RemnantFinder, Compactor, FillScore, Pattern/PatternTiler, PartBoundary, RotationAnalysis, AngleCandidateBuilder, BestCombination.
  • OpenNest.Engine.BestFit (BestFitFinder, PairEvaluator, ...), RectanglePacking, CirclePacking.

If you find a faster or better way to do something a shared component already does (for example linear patterning), implement it inside this engine's own project and leave the shared code untouched. Do not edit OpenNest.Core, OpenNest.Engine, or OpenNest.Benchmark. Call it out in your report (what it replaces, why it is better, measured numbers) so it can be generalized and upstreamed for every engine later.

What to fill in

  • __NAME__NestingEngine.cs — implement Solve(). Pick and document an actual placement strategy (NFP-based sliding placement, skyline/shelf packer, simulated-annealing/genetic layout search, guillotine-cut packer, physics/gravity-settling, etc). It's fine to be simpler or worse than the built-in engines to start; it must not be the same algorithm re-derived through indirection.
  • This README — replace this section with a description of the algorithm, its trade-offs, and benchmark results.

Tests

tests/ holds starter acceptance tests. Every layout is checked by the benchmark's own NestValidator (bounds, spacing, quantities, stock, rotation), so a passing test means the benchmark will accept the layout. They fail until Solve() is implemented. Keep them and add engine-specific tests next to them.

dotnet test OpenNest.Engine.__NAME__/tests/OpenNest.Engine.__NAME__.Tests.csproj

Build and benchmark

The project is a plugin outside OpenNest.sln. OpenNest.Benchmark loads plugin engines from an Engines/ folder next to its own build output:

dotnet build OpenNest.Engine.__NAME__/OpenNest.Engine.__NAME__.csproj -c Release
dotnet build <OpenNest>/OpenNest.Benchmark/OpenNest.Benchmark.csproj -c Release

mkdir -p <OpenNest>/OpenNest.Benchmark/bin/Release/net8.0/Engines
cp OpenNest.Engine.__NAME__/bin/Release/net8.0/OpenNest.Engine.__NAME__.dll <OpenNest>/OpenNest.Benchmark/bin/Release/net8.0/Engines/

dotnet <OpenNest>/OpenNest.Benchmark/bin/Release/net8.0/OpenNest.Benchmark.dll <path-to-.nest-or-folder> --parallel 1

<OpenNest> is the OpenNest checkout root. Your engine shows up in the report under its CLR type name (__NAME__NestingEngine), competing on equal footing against the built-in engines.