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MLEM/Tests/PathfindingTests.cs

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2.7 KiB
C#

using System.Collections.Generic;
using System.Linq;
using Microsoft.Xna.Framework;
using MLEM.Pathfinding;
using NUnit.Framework;
namespace Tests {
public class PathfindingTests {
[Test]
public void TestConsistency() {
var area = new[] {
"XXXX",
"X X",
"X X",
"XXXX"
};
var noDiagonals = FindPathInArea(new Point(1, 1), new Point(2, 2), area, false).ToArray();
Assert.AreEqual(noDiagonals.Length, 3);
Assert.AreEqual(noDiagonals[0], new Point(1, 1));
Assert.AreEqual(noDiagonals[2], new Point(2, 2));
var diagonals = FindPathInArea(new Point(1, 1), new Point(2, 2), area, true).ToArray();
Assert.AreEqual(diagonals.Length, 2);
Assert.AreEqual(diagonals[0], new Point(1, 1));
Assert.AreEqual(diagonals[1], new Point(2, 2));
}
[Test]
public void TestPathCost() {
var area = new[] {
"XXXXXXXX",
"X 5 X",
"X 5 X",
"XXXXXXXX"
};
var firstPath = FindPathInArea(new Point(1, 1), new Point(3, 1), area, false).ToArray();
var firstExpected = new[] {new Point(1, 1), new Point(1, 2), new Point(2, 2), new Point(3, 2), new Point(3, 1)};
Assert.AreEqual(firstPath, firstExpected);
var secondPath = FindPathInArea(new Point(1, 1), new Point(5, 2), area, false).ToArray();
var secondExpected = firstExpected.Concat(new[] {new Point(4, 1), new Point(5, 1), new Point(5, 2)}).ToArray();
Assert.AreEqual(secondPath, secondExpected);
}
[Test]
public void TestBlocked() {
var area = new[] {
"XXXX",
"X XX",
"XX X",
"X X",
"XXXX"
};
// non-diagonal pathfinding should get stuck in the corner
Assert.IsNull(FindPathInArea(new Point(1, 1), new Point(2, 3), area, false));
// diagonal pathfinding should be able to cross the diagonal gap
Assert.IsNotNull(FindPathInArea(new Point(1, 1), new Point(2, 3), area, true));
}
private static Stack<Point> FindPathInArea(Point start, Point end, IEnumerable<string> area, bool allowDiagonals) {
var costs = area.Select(s => s.Select(c => c switch {
' ' => 1,
'X' => AStar2.InfiniteCost,
_ => (float) char.GetNumericValue(c)
}).ToArray()).ToArray();
var pathFinder = new AStar2((p1, p2) => costs[p2.Y][p2.X], allowDiagonals);
return pathFinder.FindPath(start, end);
}
}
}