using System.Linq; using OpenNest.Engine.Jobs.Adapters; using OpenNest.Geometry; namespace OpenNest.Engine.Jobs; /// Benchmark scoring primitives. Lower costs represent less sheet consumption. public static class NestJobCost { /// /// Sheet area less SalvageRate times the largest usable full-width/full-length edge offcut. /// Both offcut dimensions must meet MinimumSalvageDimension, which must be positive. /// Bounds use rotated material contours only; scribe/etch marks never shrink salvage offcuts. /// public static double NetSheetArea(NestJob job, NestJobPlateResult sheet) { var area = sheet.Stock.Size.Width * sheet.Stock.Size.Length; var minimum = job.Options.MinimumSalvageDimension; if (job.Options.SalvageRate == 0 || minimum <= 0 || sheet.Placements.Count == 0) return area; var parts = job.Parts.ToDictionary(p => p.Id); var boxes = sheet .Placements.Select(p => { var part = new Part(DrawingJobMapper.CreateDrawing(parts[p.PartId])); part.Rotate(p.Rotation); part.Location = new OpenNest.Geometry.Vector(p.X, p.Y); part.UpdateBounds(); return NestLayoutCheck.MaterialBounds(part); }) .ToList(); return NetSheetArea(job.Options, sheet.Stock, boxes.Min(b => b.Left), boxes.Min(b => b.Bottom), boxes.Max(b => b.Right), boxes.Max(b => b.Top)); } /// /// Computes net area from an existing placed-parts envelope without rebuilding geometry. /// The envelope must contain material only; exclude scribe/etch marks. /// Empty sheets should use the sheet overload, which returns their full area. /// public static double NetSheetArea(NestJobOptions options, NestPlateStock stock, Box partsEnvelope) => NetSheetArea(options, stock, partsEnvelope.Left, partsEnvelope.Bottom, partsEnvelope.Right, partsEnvelope.Top); private static double NetSheetArea( NestJobOptions options, NestPlateStock stock, double left, double bottom, double right, double top) { var area = stock.Size.Width * stock.Size.Length; var minimum = options.MinimumSalvageDimension; if (options.SalvageRate == 0 || minimum <= 0) return area; var work = stock.WorkArea; var gap = stock.PartSpacing; var candidates = new[] { (work.Length, bottom - work.Bottom - gap), (work.Length, work.Top - top - gap), (left - work.Left - gap, work.Width), (work.Right - right - gap, work.Width), }; var salvage = candidates .Where(c => c.Item1 >= minimum && c.Item2 >= minimum) .Select(c => c.Item1 * c.Item2) .DefaultIfEmpty(0) .Max(); return area - options.SalvageRate * salvage; } /// Largest offered sheet area, charged by the benchmark per unplaced part. public static double UnplacedPartPenalty(NestJob job) => job.Plates.Count == 0 ? 0 : job.Plates.Max(stock => stock.Size.Width * stock.Size.Length); /// /// Sum of net sheet areas plus unplaced quantity times the largest offered sheet area. /// Matches the benchmark for a valid run; this method does not validate the result. /// public static double Evaluate(NestJob job, NestJobResult result) => result.Plates.Sum(sheet => NetSheetArea(job, sheet)) + System.Math.Max(0, job.Parts.Sum(part => part.Quantity) - result.Plates.Sum(sheet => sheet.Placements.Count)) * UnplacedPartPenalty(job); }