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MLEM/MLEM.Extended/Tiled/TiledMapCollisions.cs

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using System;
using System.Collections.Generic;
using System.Collections.ObjectModel;
using System.Linq;
using Microsoft.Xna.Framework;
using MLEM.Extensions;
using MonoGame.Extended;
using MonoGame.Extended.Tiled;
namespace MLEM.Extended.Tiled {
public class TiledMapCollisions {
private TiledMap map;
private TileCollisionInfo[,,] collisionInfos;
private CollectCollisions collisionFunction;
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public TiledMapCollisions(TiledMap map = null) {
if (map != null)
this.SetMap(map);
}
public void SetMap(TiledMap map, CollectCollisions collisionFunction = null) {
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this.map = map;
this.collisionFunction = collisionFunction ?? ((collisions, tile) => {
foreach (var obj in tile.TilesetTile.Objects) {
var area = obj.GetArea(tile.Map);
if (tile.Tile.IsFlippedHorizontally)
area.X = 1 - area.X - area.Width;
if (tile.Tile.IsFlippedVertically)
area.Y = 1 - area.Y - area.Height;
area.Offset(tile.Position);
collisions.Add(area);
}
});
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this.collisionInfos = new TileCollisionInfo[map.Layers.Count, map.Width, map.Height];
for (var i = 0; i < map.TileLayers.Count; i++) {
for (var x = 0; x < map.Width; x++) {
for (var y = 0; y < map.Height; y++) {
this.UpdateCollisionInfo(i, x, y);
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}
}
}
}
public void UpdateCollisionInfo(int layerIndex, int x, int y) {
var layer = this.map.TileLayers[layerIndex];
var tile = layer.GetTile(x, y);
if (tile.IsBlank) {
this.collisionInfos[layerIndex, x, y] = null;
return;
}
var tilesetTile = tile.GetTilesetTile(this.map);
this.collisionInfos[layerIndex, x, y] = new TileCollisionInfo(this.map, new Vector2(x, y), tile, layer, tilesetTile, this.collisionFunction);
}
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public IEnumerable<TileCollisionInfo> GetCollidingTiles(RectangleF area, Func<TileCollisionInfo, bool> included = null) {
var inclusionFunc = included ?? (tile => tile.Collisions.Any(c => c.Intersects(area)));
var minX = Math.Max(0, area.Left.Floor());
var maxX = Math.Min(this.map.Width - 1, area.Right);
var minY = Math.Max(0, area.Top.Floor());
var maxY = Math.Min(this.map.Height - 1, area.Bottom);
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for (var i = 0; i < this.map.TileLayers.Count; i++) {
for (var x = minX; x <= maxX; x++) {
for (var y = minY; y <= maxY; y++) {
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var tile = this.collisionInfos[i, x, y];
if (tile == null)
continue;
if (inclusionFunc(tile))
yield return tile;
}
}
}
}
public bool IsColliding(RectangleF area, Func<TileCollisionInfo, bool> included = null) {
return this.GetCollidingTiles(area, included).Any();
}
public delegate void CollectCollisions(List<RectangleF> collisions, TileCollisionInfo tile);
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public class TileCollisionInfo {
public readonly TiledMap Map;
public readonly Vector2 Position;
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public readonly TiledMapTile Tile;
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public readonly TiledMapTileLayer Layer;
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public readonly TiledMapTilesetTile TilesetTile;
public readonly List<RectangleF> Collisions;
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public TileCollisionInfo(TiledMap map, Vector2 position, TiledMapTile tile, TiledMapTileLayer layer, TiledMapTilesetTile tilesetTile, CollectCollisions collisionFunction) {
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this.TilesetTile = tilesetTile;
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this.Layer = layer;
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this.Tile = tile;
this.Map = map;
this.Position = position;
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this.Collisions = new List<RectangleF>();
collisionFunction(this.Collisions, this);
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}
}
}
}