Initial working pathfinding impl
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@@ -16,3 +16,21 @@ export function getGridPositionFromPixels(xPixel, yPixel) {
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return [y, x]
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return [x, y]
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}
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export function getGridPositionFromPixelsObj(o) {
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const r = {};
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[r.x, r.y] = getGridPositionFromPixels(o.x, o.y);
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return r;
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}
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export function getPixelsFromGridPositionObj(o) {
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const r = {};
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[r.x, r.y] = getPixelsFromGridPosition(o.x, o.y);
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return r;
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}
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export function getCenterFromGridPositionObj(o) {
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const r = getPixelsFromGridPositionObj(o);
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[r.x, r.y] = canvas.grid.getCenter(r.x, r.y);
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return r;
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}
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+21
-2
@@ -1,8 +1,9 @@
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import {highlightMeasurementTerrainRuler, measureDistances} from "./compatibility.js";
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import {getGridPositionFromPixels} from "./foundry_fixes.js";
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import {getCenterFromGridPositionObj, getGridPositionFromPixels, getGridPositionFromPixelsObj} from "./foundry_fixes.js";
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import {Line} from "./geometry.js";
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import {disableSnap, moveWithoutAnimation} from "./keybindings.js";
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import {trackRays} from "./movement_tracking.js"
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import {find_path} from "./pathfinding.js";
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import {recalculate} from "./socket.js";
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import {applyTokenSizeOffset, enumeratedZip, getSnapPointForEntity, getSnapPointForToken, getTokenShape, highlightTokenShape, sum} from "./util.js";
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@@ -131,7 +132,7 @@ function scheduleMeasurement(destination, event) {
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const mt = event._measureTime || 0;
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const originalEvent = event.data.originalEvent;
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if (Date.now() - mt > measurementInterval) {
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this.measure(destination, {snap: !disableSnap});
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this.measure(destination, {snap: !disableSnap, pathfinding: game.keyboard.isDown("y")});
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event._measureTime = Date.now();
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this._state = Ruler.STATES.MEASURING;
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cancelScheduledMeasurement.call(this);
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@@ -153,14 +154,32 @@ export function cancelScheduledMeasurement() {
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// This is a modified version of Ruler.measure form foundry 0.7.9
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export function measure(destination, options={}) {
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const isToken = this.draggedEntity instanceof Token;
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if (isToken && !this.draggedEntity.isVisible)
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return []
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options.pathfinding = options.pathfinding ?? false;
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if (options.snap) {
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destination = getSnapPointForEntity(destination.x, destination.y, this.draggedEntity);
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}
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// Remove waypoints generated by pathfinding
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this.waypoints = this.waypoints.filter(waypoint => !waypoint.isPathfinding);
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if (isToken && options.pathfinding) {
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let path = find_path(getGridPositionFromPixelsObj(this.waypoints[this.waypoints.length - 1]), getGridPositionFromPixelsObj(destination));
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if (path) {
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path = path.map(point => getCenterFromGridPositionObj(point));
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path.forEach(point => point.isPathfinding = true);
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this.waypoints = this.waypoints.concat(path);
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}
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else {
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// Don't show a path if the pathfinding yields no result to show the user that the destination is unreachable
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destination = this.waypoints[this.waypoints.length - 1];
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}
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}
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if(options.gridSpaces === undefined) {
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options.gridSpaces = canvas.grid.type !== CONST.GRID_TYPES.GRIDLESS;
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}
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@@ -0,0 +1,91 @@
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import {getCenterFromGridPositionObj} from "./foundry_fixes.js";
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// TODO Wipe cache if walls layer is being modified
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let cached_nodes = undefined;
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function get_node(pos, initialize=true) {
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if (!cached_nodes)
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// TODO Check if ceil is the right thing to do here
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cached_nodes = new Array(Math.ceil(canvas.dimensions.sceneHeight / canvas.dimensions.size));
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if (!cached_nodes[pos.y])
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cached_nodes[pos.y] = new Array(Math.ceil(canvas.dimensions.sceneWidth / canvas.dimensions.size));
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if (!cached_nodes[pos.y][pos.x]) {
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cached_nodes[pos.y][pos.x] = {x: pos.x, y: pos.y};
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}
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const node = cached_nodes[pos.y][pos.x];
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if (initialize && !node.edges) {
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node.edges = [];
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for (const neighborPos of neighbors(pos)) {
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// TODO Work with pixels instead of grid locations
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if (!canvas.walls.checkCollision(new Ray(getCenterFromGridPositionObj(pos), getCenterFromGridPositionObj(neighborPos)))) {
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const neighbor = get_node(neighborPos, false);
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node.edges.push({target: neighbor, cost: 1});
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}
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}
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}
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return node;
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}
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function* neighbors(pos) {
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for (let y = -1;y < 2;y++) {
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for (let x = -1;x < 2;x++) {
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if (x != 0 || y != 0)
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yield {x: pos.x + x, y: pos.y + y};
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}
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}
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}
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function calculate_path(from, to) {
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const nextNodes = [{node: get_node(to), cost: 0, estimated: estimate_cost(to, from), previous: null}];
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const previousNodes = new Set();
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while (nextNodes.length > 0) {
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// Sort by estimated cost, high to low
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// TODO Re-sorting every iteration is expensive. Think of something better
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nextNodes.sort((a, b) => b.estimated - a.estimated);
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// Get node with cheapest estimate
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const currentNode = nextNodes.pop();
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if (currentNode.node.x === from.x && currentNode.node.y === from.y)
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return currentNode;
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previousNodes.add(currentNode.node);
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for (const edge of currentNode.node.edges) {
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const neighborNode = get_node(edge.target);
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if (previousNodes.has(neighborNode))
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continue;
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// TODO We currently assume a cost of one for all transitions. Change this for 5/10/5 or difficult terrain support
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const neighbor = {node: neighborNode, cost: currentNode.cost + 1, estimated: currentNode.cost + 1 + estimate_cost(neighborNode, from), previous: currentNode};
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const neighborIndex = nextNodes.findIndex(node => node.node === neighbor.node);
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if (neighborIndex >= 0) {
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// If the neighbor is cheaper to reach via the current route than through previously discovered routes, replace it
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if (nextNodes[neighborIndex].cost > neighbor.cost) {
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nextNodes[neighborIndex] = neighbor;
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}
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}
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else {
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nextNodes.push(neighbor);
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}
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}
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}
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}
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function estimate_cost(pos, target) {
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return Math.max(Math.abs(pos.x - target.x), Math.abs(pos.y - target.y));
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}
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export function find_path(from, to) {
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const lastNode = calculate_path(from, to);
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if (!lastNode)
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return null;
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const path = [];
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let currentNode = lastNode;
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while (currentNode) {
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// TODO Check if the distance doesn't change
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if (path.length > 2 && !canvas.walls.checkCollision(new Ray(getCenterFromGridPositionObj(currentNode.node), getCenterFromGridPositionObj(path[path.length - 2]))))
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// Replace last waypoint if the current waypoint leads to a valid path
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path[path.length - 1] = {x: currentNode.node.x, y: currentNode.node.y};
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else
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path.push({x: currentNode.node.x, y: currentNode.node.y});
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currentNode = currentNode.previous;
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}
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return path;
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}
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