Files
OpenNest/OpenNest.Engine.Tests/Jobs/NestJobExampleTests.cs
T

201 lines
7.8 KiB
C#

using OpenNest.CNC;
using OpenNest.Geometry;
using Xunit;
using OpenNest.Engine.Jobs;
using OpenNest.Engine.Jobs.Placement;
namespace OpenNest.Engine.Tests.Jobs;
/// <summary>
/// Runnable end-to-end example of the whole-job engine API: multiple part requirements, multiple plate
/// sizes, and an enumeration of every returned plate, placement, leftover, and stock line. Also the
/// documentation checkpoint for the public single-plate placement service used by interactive flows.
/// </summary>
public class NestJobExampleTests
{
[Fact]
public void MultiRequirementMultiStockJobEnumeratesEveryPlateAndLeftover()
{
// Two requirements with independent IDs, quantities, and priorities.
var job = new NestJob(
new[]
{
Part("bracket", 100.0, 60.0, 5, priority: 0),
Part("plate-clip", 40.0, 40.0, 8, priority: 1),
},
// Mixed inventory: five large sheets and unlimited small sheets.
new[]
{
new NestPlateStock(
"large",
new Size(600.0, 400.0),
quantity: 5,
partSpacing: 2.0,
edgeSpacing: new Spacing(5.0, 5.0, 5.0, 5.0),
quadrant: 1
),
new NestPlateStock(
"small",
new Size(300.0, 300.0),
quantity: null,
partSpacing: 2.0,
edgeSpacing: new Spacing(5.0, 5.0, 5.0, 5.0),
quadrant: 1
),
}
);
var result = new NestJobRunner(PlateNesterFactory.Create).Solve(job);
// -- Every physical plate is enumerated with its stock identity and placements. --
Console.WriteLine($"Status: {result.Status}, stop reason: {result.StopReason}.");
foreach (var plate in result.Plates)
{
Console.WriteLine(
$"Plate {plate.PlateIndex} from stock '{plate.StockId}' "
+ $"({plate.Stock.Size.Width} x {plate.Stock.Size.Length}):"
);
foreach (var placement in plate.Placements)
Console.WriteLine(
$" {placement.PartId} #{placement.InstanceIndex} at "
+ $"({placement.X:F1}, {placement.Y:F1}) rotated {placement.Rotation:F3} rad."
);
}
// -- Every requirement reports exact fulfillment, including leftovers. --
foreach (var fulfillment in result.Fulfillment)
Console.WriteLine(
$"Requirement '{fulfillment.PartId}': requested {fulfillment.Requested}, "
+ $"placed {fulfillment.Placed}, unplaced {fulfillment.Unplaced}."
);
// -- Every stock line reports physical sheets used and remaining availability. --
foreach (var usage in result.StockUsage)
Console.WriteLine(
$"Stock '{usage.StockId}': used {usage.Used}, "
+ $"remaining {(usage.Remaining.HasValue ? usage.Remaining.Value.ToString() : "unlimited")}."
);
// Invariants the enumeration relies on: conservation per requirement and per stock line, no
// empty plates, every plate bound to supplied stock, and per-placement instance accounting.
foreach (var fulfillment in result.Fulfillment)
{
Assert.Equal(fulfillment.Requested, fulfillment.Placed + fulfillment.Unplaced);
Assert.True(fulfillment.Unplaced >= 0);
}
foreach (var usage in result.StockUsage)
{
var stock = job.Plates.First(candidate => candidate.Id == usage.StockId);
Assert.True(usage.Used >= 0);
Assert.Equal(
stock.Quantity is int capacity ? capacity - usage.Used : (int?)null,
usage.Remaining
);
}
Assert.All(result.Plates, plate => Assert.NotEmpty(plate.Placements));
var plateCountByStock = result
.Plates.GroupBy(plate => plate.StockId)
.ToDictionary(group => group.Key, group => group.Count());
foreach (var usage in result.StockUsage)
Assert.Equal(usage.Used, plateCountByStock.GetValueOrDefault(usage.StockId));
var instanceIndicesByPart = result
.Plates.SelectMany(plate => plate.Placements)
.GroupBy(placement => placement.PartId)
.ToDictionary(
group => group.Key,
group => group.Select(placement => placement.InstanceIndex)
);
foreach (var fulfillment in result.Fulfillment)
Assert.Equal(
Enumerable.Range(0, fulfillment.Placed),
instanceIndicesByPart
.GetValueOrDefault(fulfillment.PartId, new List<int>())
.OrderBy(index => index)
);
// The default heuristic completes this synthetic job from the mixed inventory.
Assert.Equal(NestJobStatus.Complete, result.Status);
Assert.Equal(NestJobStopReason.Completed, result.StopReason);
Assert.Equal(
5,
result.Fulfillment.Single(fulfillment => fulfillment.PartId == "bracket").Placed
);
Assert.Equal(
8,
result.Fulfillment.Single(fulfillment => fulfillment.PartId == "plate-clip").Placed
);
}
[Fact]
public void MaxPlatesExampleShowsExplicitLeftovers()
{
// Same shape of job, but a plate budget forces an explicit partial result.
var job = new NestJob(
new[] { Part("part", 100.0, 100.0, 6, priority: 0) },
new[]
{
new NestPlateStock(
"sheet",
new Size(220.0, 220.0),
quantity: null,
partSpacing: 2.0,
edgeSpacing: new Spacing(5.0, 5.0, 5.0, 5.0),
quadrant: 1
),
},
new NestJobOptions("Default", maxPlates: 1)
);
var result = new NestJobRunner(PlateNesterFactory.Create).Solve(job);
Assert.Equal(NestJobStatus.Incomplete, result.Status);
Assert.Equal(NestJobStopReason.PlateLimitReached, result.StopReason);
var single = Assert.Single(result.Plates);
Assert.Equal("sheet", single.StockId);
var fulfillment = Assert.Single(result.Fulfillment);
Assert.Equal(6, fulfillment.Requested);
Assert.Equal(single.Placements.Count, fulfillment.Placed);
Assert.Equal(fulfillment.Requested - fulfillment.Placed, fulfillment.Unplaced);
}
/// <summary>
/// The public placement service is the single-plate contract for preview-driven flows. It proposes
/// parts without mutating the caller's plate, so the UI can accept or discard them explicitly.
/// </summary>
[Fact]
public void PlateFillService_ProposesSinglePlatePartsWithoutMutatingPlate()
{
var plate = new Plate { Size = new Size(300.0, 200.0), Quadrant = 1 };
var drawing = new Drawing("preview", TestDrawingFactory.Rectangle(50.0, 50.0));
var item = new NestItem { Drawing = drawing, Quantity = 1 };
var parts = PlateFillService.Nest(
"Default",
plate,
new List<NestItem> { item },
progress: null,
token: CancellationToken.None
);
var placed = Assert.Single(parts);
Assert.Same(drawing, placed.BaseDrawing);
Assert.Empty(plate.Parts);
}
private static NestJobPart Part(
string id,
double width,
double length,
int quantity,
int priority
) =>
new(
id,
PartGeometrySnapshot.FromProgram(TestDrawingFactory.Rectangle(width, length)),
quantity,
priority
);
}