CI / build-test (push) Failing after 1m5s
Pathfinding (depends on Core only): GridPathfinder with A* (octile/
Manhattan heuristic), Dijkstra and BFS over a game-implemented
IPathGrid; 4/8 connectivity, diagonals never cut corners. FlowField +
FlowFieldBuilder (multi-source Dijkstra) give crowds O(1) steering per
agent per frame. All buffers are grid-sized once and invalidated by a
generation stamp - repeated queries allocate nothing and clear nothing.
Collisions (Graphics exception: Transform2D, RectF): Collider component
(circle/AABB, offset, two-way layer masks), CollisionWorld - a uniform
spatial hash on flat arrays rebuilt from scratch each tick (O(n) for
movers, zero alloc after warm-up, deterministic pair order), pair
collection, QueryAabb and closest-hit Raycast. scene.UseCollisions()
registers CollisionSystem after movement systems.
30 new tests (string-map mazes, cost weighting, corner cutting, flow
descent; pair/mask/query/raycast). Sample gains a PathfindingScene
('path' console command): click to set the goal, 250 agents follow the
flow field, the A* path is highlighted, colliding agents flash red.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
200 lines
6.1 KiB
C#
200 lines
6.1 KiB
C#
using Microsoft.Xna.Framework;
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using Xunit;
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namespace MrGameEng.Pathfinding.Tests;
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public class GridPathfinderTests
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{
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private static List<Point> Path(IPathGrid grid, Point start, Point goal,
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PathAlgorithm algorithm = PathAlgorithm.AStar,
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GridConnectivity connectivity = GridConnectivity.Eight)
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{
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var pathfinder = new GridPathfinder(grid, connectivity);
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var path = new List<Point>();
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Assert.True(pathfinder.FindPath(start, goal, path, algorithm));
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return path;
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}
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private static void AssertValidPath(IPathGrid grid, List<Point> path, Point start, Point goal)
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{
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Assert.Equal(start, path[0]);
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Assert.Equal(goal, path[^1]);
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for (var i = 0; i < path.Count; i++)
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{
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Assert.True(grid.IsPassable(path[i].X, path[i].Y), $"impassable cell {path[i]}");
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if (i > 0)
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{
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var dx = Math.Abs(path[i].X - path[i - 1].X);
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var dy = Math.Abs(path[i].Y - path[i - 1].Y);
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Assert.True(dx <= 1 && dy <= 1 && dx + dy > 0, $"non-adjacent step {path[i - 1]} -> {path[i]}");
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}
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}
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}
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[Theory]
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[InlineData(PathAlgorithm.AStar)]
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[InlineData(PathAlgorithm.Dijkstra)]
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[InlineData(PathAlgorithm.BreadthFirst)]
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public void FindPath_OpenField_StraightLine(PathAlgorithm algorithm)
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{
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var grid = new TestGrid(
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".....",
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".....",
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".....");
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var path = Path(grid, new Point(0, 1), new Point(4, 1), algorithm);
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AssertValidPath(grid, path, new Point(0, 1), new Point(4, 1));
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Assert.Equal(5, path.Count); // прямая, без лишних шагов
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}
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[Theory]
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[InlineData(PathAlgorithm.AStar)]
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[InlineData(PathAlgorithm.Dijkstra)]
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[InlineData(PathAlgorithm.BreadthFirst)]
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public void FindPath_WallsForceDetour(PathAlgorithm algorithm)
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{
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var grid = new TestGrid(
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".....",
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"####.",
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".....");
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var path = Path(grid, new Point(0, 0), new Point(0, 2), algorithm);
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AssertValidPath(grid, path, new Point(0, 0), new Point(0, 2));
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Assert.Contains(new Point(4, 1), path); // единственный проход
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}
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[Fact]
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public void FindPath_NoRoute_ReturnsFalse()
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{
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var grid = new TestGrid(
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".#.",
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".#.",
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".#.");
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var pathfinder = new GridPathfinder(grid);
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var path = new List<Point>();
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Assert.False(pathfinder.FindPath(new Point(0, 0), new Point(2, 0), path));
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Assert.Empty(path);
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}
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[Fact]
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public void FindPath_StartEqualsGoal_SinglePoint()
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{
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var grid = new TestGrid("...");
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var path = Path(grid, new Point(1, 0), new Point(1, 0));
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Assert.Equal([new Point(1, 0)], path);
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}
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[Fact]
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public void FindPath_DiagonalNeverCutsCorners()
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{
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var grid = new TestGrid(
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".#",
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"#.");
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var pathfinder = new GridPathfinder(grid, GridConnectivity.Eight);
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var path = new List<Point>();
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// Диагональ (0,0)->(1,1) зажата стенами — пути нет.
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Assert.False(pathfinder.FindPath(new Point(0, 0), new Point(1, 1), path));
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}
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[Fact]
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public void FindPath_FourConnectivity_NoDiagonalSteps()
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{
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var grid = new TestGrid(
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"...",
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"...",
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"...");
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var path = Path(grid, new Point(0, 0), new Point(2, 2), connectivity: GridConnectivity.Four);
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Assert.Equal(5, path.Count); // манхэттен: 4 шага
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for (var i = 1; i < path.Count; i++)
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{
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var dx = Math.Abs(path[i].X - path[i - 1].X);
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var dy = Math.Abs(path[i].Y - path[i - 1].Y);
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Assert.Equal(1, dx + dy);
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}
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}
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[Theory]
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[InlineData(PathAlgorithm.AStar)]
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[InlineData(PathAlgorithm.Dijkstra)]
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public void FindPath_CostAware_AvoidsExpensiveTerrain(PathAlgorithm algorithm)
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{
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// Прямой путь через болото (цена 9) дороже обхода по краю.
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var grid = new TestGrid(
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".....",
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".999.",
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".....");
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var path = Path(grid, new Point(0, 1), new Point(4, 1), algorithm);
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Assert.DoesNotContain(path, p => grid.Cost(p.X, p.Y) > 1f);
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}
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[Fact]
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public void FindPath_BreadthFirst_IgnoresCosts()
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{
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var grid = new TestGrid(
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".....",
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".999.",
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".....");
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var path = Path(grid, new Point(0, 1), new Point(4, 1), PathAlgorithm.BreadthFirst);
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Assert.Equal(5, path.Count); // идёт напрямик через дорогие клетки
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}
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[Fact]
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public void FindPath_ReusedInstance_GivesCleanResults()
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{
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var grid = new TestGrid(
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".....",
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".###.",
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".....");
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var pathfinder = new GridPathfinder(grid);
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var path = new List<Point>();
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Assert.True(pathfinder.FindPath(new Point(0, 0), new Point(4, 2), path));
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var first = path.ToArray();
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Assert.True(pathfinder.FindPath(new Point(0, 0), new Point(4, 2), path));
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Assert.Equal(first, path); // generation-сброс не оставляет мусора между запросами
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}
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[Fact]
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public void FindPath_AStarMatchesDijkstraCost()
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{
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var grid = new TestGrid(
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"..3..",
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".#3#.",
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"..3..",
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".###.",
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".....");
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var start = new Point(0, 0);
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var goal = new Point(4, 4);
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var aStar = Path(grid, start, goal, PathAlgorithm.AStar);
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var dijkstra = Path(grid, start, goal, PathAlgorithm.Dijkstra);
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Assert.Equal(PathCost(grid, dijkstra), PathCost(grid, aStar), 3);
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}
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private static float PathCost(IPathGrid grid, List<Point> path)
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{
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var total = 0f;
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for (var i = 1; i < path.Count; i++)
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{
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var diagonal = path[i].X != path[i - 1].X && path[i].Y != path[i - 1].Y;
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total += (diagonal ? 1.4142135f : 1f) * grid.Cost(path[i].X, path[i].Y);
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}
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return total;
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}
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}
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