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112 lines
3.0 KiB
112 lines
3.0 KiB
var PF = require('..')
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var scenarios = require('./PathTestScenarios');
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/**
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* Path-finding tests for the path-finders.
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* @param {boolean} opt.optimal - Whether the finder is guaranteed to find the shortest path
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*/
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function pathTest(opt) {
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var name = opt.name,
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finder = opt.finder,
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optimal = opt.optimal;
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describe(name, function() {
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var startX, startY, endX, endY, grid, expectedLength,
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width, height, matrix, path, i, scen;
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var test = (function() {
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var testId = 0;
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return function(startX, startY, endX, endY, grid, expectedLength) {
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it('should solve maze '+ ++testId, function() {
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path = finder.findPath(startX, startY, endX, endY, grid);
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if (optimal) {
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path.length.should.equal(expectedLength);
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} else {
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path[0].should.eql([startX, startY]);
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path[path.length - 1].should.eql([endX, endY]);
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}
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});
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};
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})();
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// Load all the scenarios and test against the finder.
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for (i = 0; i < scenarios.length; ++i) {
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scen = scenarios[i];
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matrix = scen.matrix;
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height = matrix.length;
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width = matrix[0].length;
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grid = new PF.Grid(width, height, matrix);
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test(
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scen.startX, scen.startY,
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scen.endX, scen.endY,
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grid,
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scen.expectedLength
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);
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}
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});
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}
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function pathTests(tests) {
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for (i = 0; i < arguments.length; ++i) {
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pathTest(arguments[i]);
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}
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}
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// finders guaranteed to find the shortest path
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pathTests({
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name: 'AStar',
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finder: new PF.AStarFinder(),
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optimal: true
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}, {
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name: 'BreadthFirst',
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finder: new PF.BreadthFirstFinder(),
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optimal: true
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}, {
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name: 'Dijkstra',
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finder: new PF.DijkstraFinder(),
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optimal: true
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}, {
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name: 'BiBreadthFirst',
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finder: new PF.BiBreadthFirstFinder(),
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optimal: true
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}, {
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name: 'BiDijkstra',
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finder: new PF.BiDijkstraFinder(),
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optimal: true
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});
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// finders NOT guaranteed to find the shortest path
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pathTests({
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name: 'BiAStar',
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finder: new PF.BiAStarFinder(),
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optimal: false
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}, {
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name: 'BestFirst',
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finder: new PF.BestFirstFinder(),
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optimal: false
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}, {
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name: 'BiBestFirst',
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finder: new PF.BiBestFirstFinder(),
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optimal: false
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}, {
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name: 'IDAStar',
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finder: new PF.IDAStarFinder(),
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optimal: false
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}, {
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name: 'JPFMoveDiagonallyIfAtMostOneObstacle',
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finder: new PF.JumpPointFinder({
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diagonalMovement: PF.DiagonalMovement.IfAtMostOneObstacle
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}),
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optimal: false
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}, {
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name: 'JPFNeverMoveDiagonally',
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finder: new PF.JumpPointFinder({
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diagonalMovement: PF.DiagonalMovement.Never
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}),
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optimal: false
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});
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