375 lines
15 KiB
JavaScript
375 lines
15 KiB
JavaScript
import {highlightMeasurementTerrainRuler, measureDistances} from "./compatibility.js";
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import {getGridPositionFromPixels, getGridPositionFromPixelsObj, getPixelsFromGridPositionObj} 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 {findPath, isPathfindingEnabled} from "./pathfinding.js";
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import {settingsKey} from "./settings.js";
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import {recalculate} from "./socket.js";
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import {applyTokenSizeOffset, enumeratedZip, getSnapPointForEntity, getSnapPointForToken, getSnapPointForTokenObj, getTokenShape, highlightTokenShape, sum} from "./util.js";
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// This is a modified version of Ruler.moveToken from foundry 0.7.9
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export async function moveEntities(draggedEntity, selectedEntities) {
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let wasPaused = game.paused;
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if (wasPaused && !game.user.isGM) {
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ui.notifications.warn(game.i18n.localize("GAME.PausedWarning"));
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return false;
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}
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if (!this.visible || !this.destination) return false;
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if (!draggedEntity) return;
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// Wait until all scheduled measurements are done
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await this.deferredMeasurementPromise;
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// Get the movement rays and check collision along each Ray
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// These rays are center-to-center for the purposes of collision checking
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const rays = this.constructor.dragRulerGetRaysFromWaypoints(this.waypoints, this.destination);
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if (!game.user.isGM && draggedEntity instanceof Token) {
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const hasCollision = selectedEntities.some(token => {
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const offset = calculateEntityOffset(token, draggedEntity);
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const offsetRays = rays.filter(ray => !ray.isPrevious).map(ray => applyOffsetToRay(ray, offset))
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if (window.WallHeight) {
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window.WallHeight.addBoundsToRays(offsetRays, draggedEntity);
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}
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return offsetRays.some(r => canvas.walls.checkCollision(r));
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})
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if (hasCollision) {
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ui.notifications.error(game.i18n.localize("ERROR.TokenCollide"));
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this._endMeasurement();
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return true;
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}
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}
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// Execute the movement path.
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// Transform each center-to-center ray into a top-left to top-left ray using the prior token offsets.
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this._state = Ruler.STATES.MOVING;
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await animateEntities.call(this, selectedEntities, draggedEntity, rays, wasPaused);
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// Once all animations are complete we can clear the ruler
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if (this.draggedEntity?.id === draggedEntity.id)
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this._endMeasurement();
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}
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// This is a modified version code extracted from Ruler.moveToken from foundry 0.7.9
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async function animateEntities(entities, draggedEntity, draggedRays, wasPaused) {
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const newRays = draggedRays.filter(r => !r.isPrevious);
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const entityAnimationData = entities.map(entity => {
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const entityOffset = calculateEntityOffset(entity, draggedEntity);
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const offsetRays = newRays.map(ray => applyOffsetToRay(ray, entityOffset));
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// Determine offset relative to the Token top-left.
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// This is important so we can position the token relative to the ruler origin for non-1x1 tokens.
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const firstWaypoint = this.waypoints.find(w => !w.isPrevious);
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const origin = [firstWaypoint.x + entityOffset.x, firstWaypoint.y + entityOffset.y];
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let dx, dy;
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if (canvas.grid.type === CONST.GRID_TYPES.GRIDLESS) {
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dx = entity.data.x - origin[0];
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dy = entity.data.y - origin[1];
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}
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else {
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dx = entity.data.x - origin[0];
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dy = entity.data.y - origin[1];
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}
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return {entity, rays: offsetRays, dx, dy};
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});
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const isToken = draggedEntity instanceof Token;
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const animate = isToken && !moveWithoutAnimation;
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const startWaypoint = animate ? 0 : entityAnimationData[0].rays.length - 1;
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// This is a flag of the "Monk's Active Tile Triggers" module that signals that the movement should be cancelled early
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this.cancelMovement = false;
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for (let i = startWaypoint;i < entityAnimationData[0].rays.length; i++) {
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if (!wasPaused && game.paused) break;
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const entityPaths = entityAnimationData.map(({entity, rays, dx, dy}) => {
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const ray = rays[i];
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const dest = [ray.B.x, ray.B.y];
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const path = new Ray({x: entity.x, y: entity.y}, {x: dest[0] + dx, y: dest[1] + dy});
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return {entity, path};
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});
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const updates = entityPaths.map(({entity, path}) => {
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return {x: path.B.x, y: path.B.y, _id: entity.id};
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});
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await draggedEntity.scene.updateEmbeddedDocuments(draggedEntity.constructor.embeddedName, updates, {animate});
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if (animate)
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await Promise.all(entityPaths.map(({entity}) => CanvasAnimation.getAnimation(entity.movementAnimationName)?.promise));
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// This is a flag of the "Monk's Active Tile Triggers" module that signals that the movement should be cancelled early
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if (this.cancelMovement) {
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entityAnimationData.forEach(ead => ead.rays = ead.rays.slice(0, i + 1));
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break;
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}
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}
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if (isToken)
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trackRays(entities, entityAnimationData.map(({rays}) => rays)).then(() => recalculate(entities));
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}
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function calculateEntityOffset(entityA, entityB) {
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return {x: entityA.data.x - entityB.data.x, y: entityA.data.y - entityB.data.y};
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}
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function applyOffsetToRay(ray, offset) {
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const newRay = new Ray({x: ray.A.x + offset.x, y: ray.A.y + offset.y}, {x: ray.B.x + offset.x, y: ray.B.y + offset.y});
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newRay.isPrevious = ray.isPrevious;
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return newRay;
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}
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// This is a modified version of Ruler._onMouseMove from foundry 0.7.9
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export function onMouseMove(event) {
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if (this._state === Ruler.STATES.MOVING) return;
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// Extract event data
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const destination = {x: event.data.destination.x + this.rulerOffset.x, y: event.data.destination.y + this.rulerOffset.y}
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// Hide any existing Token HUD
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canvas.hud.token.clear();
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delete event.data.hudState;
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// Draw measurement updates
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scheduleMeasurement.call(this, destination, event);
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}
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function scheduleMeasurement(destination, event) {
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const measurementInterval = 50;
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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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event._measureTime = Date.now();
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this._state = Ruler.STATES.MEASURING;
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cancelScheduledMeasurement.call(this);
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}
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else {
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this.deferredMeasurementData = {destination, event};
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if (!this.deferredMeasurementTimeout) {
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this.deferredMeasurementPromise = new Promise((resolve, reject) => this.deferredMeasurementResolve = resolve);
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this.deferredMeasurementTimeout = window.setTimeout(() => scheduleMeasurement.call(this, this.deferredMeasurementData.destination, this.deferredMeasurementData.event), measurementInterval);
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}
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}
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}
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export function cancelScheduledMeasurement() {
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window.clearTimeout(this.deferredMeasurementTimeout);
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this.deferredMeasurementTimeout = undefined;
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this.deferredMeasurementResolve?.();
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}
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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.snap = options.snap ?? !disableSnap;
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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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this.dragRulerRemovePathfindingWaypoints();
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if (isToken && isPathfindingEnabled.call(this)) {
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const from = getGridPositionFromPixelsObj(this.waypoints[this.waypoints.length - 1]);
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const to = getGridPositionFromPixelsObj(destination);
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let path = findPath(from, to, this.draggedEntity, this.waypoints);
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if (path) {
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path = path.map(point => getSnapPointForTokenObj(getPixelsFromGridPositionObj(point), this.draggedEntity));
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// If the token is snapped to the grid, the first point of the path is already handled by the ruler
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if (path[0].x === this.waypoints[this.waypoints.length - 1].x && path[0].y === this.waypoints[this.waypoints.length - 1].y)
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path = path.slice(1);
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// If snapping is enabled, the last point of the path is already handled by the ruler
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if (options.snap)
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path = path.slice(0, path.length - 1);
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for (const point of path) {
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point.isPathfinding = true;
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this.labels.addChild(new PreciseText("", CONFIG.canvasTextStyle));
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}
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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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if (canvas.grid.diagonalRule === "EUCL") {
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options.gridSpaces = false;
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options.ignoreGrid = true;
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}
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if(options.ignoreGrid === undefined) {
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options.ignoreGrid = false;
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}
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options.enableTerrainRuler = isToken && game.modules.get("terrain-ruler")?.active;
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const waypoints = this.waypoints.concat([destination]);
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// Move the waypoints to the center of the grid if a size is used that measures from edge to edge
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const centeredWaypoints = isToken ? applyTokenSizeOffset(waypoints, this.draggedEntity) : duplicate(waypoints);
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// Foundries native ruler requires the waypoints to sit in the dead center of the square to work properly
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if (!options.enableTerrainRuler && !options.ignoreGrid)
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centeredWaypoints.forEach(w => [w.x, w.y] = canvas.grid.getCenter(w.x, w.y));
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const r = this.ruler;
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this.destination = destination;
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// Iterate over waypoints and construct segment rays
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const segments = [];
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const centeredSegments = []
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for (let [i, dest] of waypoints.slice(1).entries()) {
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const centeredDest = centeredWaypoints[i + 1]
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const origin = waypoints[i];
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const centeredOrigin = centeredWaypoints[i]
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const label = this.labels.children[i];
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const ray = new Ray(origin, dest);
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const centeredRay = new Ray(centeredOrigin, centeredDest)
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ray.isPrevious = Boolean(origin.isPrevious);
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centeredRay.isPrevious = ray.isPrevious;
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ray.dragRulerVisitedSpaces = origin.dragRulerVisitedSpaces;
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centeredRay.dragRulerVisitedSpaces = ray.dragRulerVisitedSpaces;
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ray.dragRulerFinalState = origin.dragRulerFinalState;
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centeredRay.dragRulerFinalState = ray.dragRulerFinalState;
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if (ray.distance < 10) {
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if (label) label.visible = false;
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continue;
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}
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segments.push({ ray, label });
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centeredSegments.push({ray: centeredRay, label})
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}
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const shape = isToken ? getTokenShape(this.draggedEntity) : null;
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// Compute measured distance
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const distances = measureDistances(centeredSegments, this.draggedEntity, shape, options);
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let totalDistance = 0;
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for (let [i, d] of distances.entries()) {
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let s = centeredSegments[i];
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s.startDistance = totalDistance
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totalDistance += d;
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s.last = i === (centeredSegments.length - 1);
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s.distance = d;
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s.text = this._getSegmentLabel(d, totalDistance, s.last);
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}
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// Clear the grid highlight layer
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const hlt = canvas.grid.highlightLayers[this.name] || canvas.grid.addHighlightLayer(this.name);
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hlt.clear();
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// Draw measured path
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r.clear();
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let rulerColor
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if (!options.gridSpaces || canvas.grid.type === CONST.GRID_TYPES.GRIDLESS)
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rulerColor = this.dragRulerGetColorForDistance(totalDistance);
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else
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rulerColor = this.color
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for (const [i, s, cs] of enumeratedZip([...segments].reverse(), [...centeredSegments].reverse())) {
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const { label, text, last } = cs;
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// Draw line segment
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const opacityMultiplier = s.ray.isPrevious ? 0.33 : 1;
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r.lineStyle(6, 0x000000, 0.5 * opacityMultiplier).moveTo(s.ray.A.x, s.ray.A.y).lineTo(s.ray.B.x, s.ray.B.y)
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.lineStyle(4, rulerColor, 0.25 * opacityMultiplier).moveTo(s.ray.A.x, s.ray.A.y).lineTo(s.ray.B.x, s.ray.B.y);
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// Draw the distance label just after the endpoint of the segment
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if (label) {
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label.text = text;
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label.alpha = last ? 1.0 : 0.5;
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label.visible = true;
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let labelPosition = {x: s.ray.x0, y: s.ray.y0};
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labelPosition.x -= label.width / 2;
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labelPosition.y -= label.height / 2;
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const rayLine = Line.fromPoints(s.ray.A, s.ray.B);
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const rayLabelXHitY = rayLine.calcY(labelPosition.x);
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let innerDistance;
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// If ray hits top or bottom side of label
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if (rayLine.isVertical || rayLabelXHitY < labelPosition.y || rayLabelXHitY > labelPosition.y + label.height)
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innerDistance = Math.abs((label.height / 2) / Math.sin(s.ray.angle));
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// If ray hits left or right side of label
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else
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innerDistance = Math.abs((label.width / 2) / Math.cos(s.ray.angle));
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labelPosition = s.ray.project((s.ray.distance + 50 + innerDistance) / s.ray.distance);
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labelPosition.x -= label.width / 2;
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labelPosition.y -= label.height / 2;
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label.position.set(labelPosition.x, labelPosition.y);
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}
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// Highlight grid positions
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if (isToken && canvas.grid.type !== CONST.GRID_TYPES.GRIDLESS && options.gridSpaces) {
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if (options.enableTerrainRuler) {
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highlightMeasurementTerrainRuler.call(this, cs.ray, cs.startDistance, shape, opacityMultiplier)
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}
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else {
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const previousSegments = centeredSegments.slice(0, segments.length - 1 - i);
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highlightMeasurementNative.call(this, cs.ray, previousSegments, shape, opacityMultiplier);
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}
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}
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}
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// Draw endpoints
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for (let p of waypoints) {
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r.lineStyle(2, 0x000000, 0.5).beginFill(rulerColor, 0.25).drawCircle(p.x, p.y, 8);
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}
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// Return the measured segments
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return segments;
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}
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export function highlightMeasurementNative(ray, previousSegments, tokenShape=[{x: 0, y: 0}], alpha=1) {
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const spacer = canvas.scene.data.gridType === CONST.GRID_TYPES.SQUARE ? 1.41 : 1;
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const nMax = Math.max(Math.floor(ray.distance / (spacer * Math.min(canvas.grid.w, canvas.grid.h))), 1);
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const tMax = Array.fromRange(nMax+1).map(t => t / nMax);
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// Track prior position
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let prior = null;
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// Iterate over ray portions
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for ( let [i, t] of tMax.reverse().entries() ) {
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let {x, y} = ray.project(t);
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// Get grid position
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let [x0, y0] = (i === 0) ? [null, null] : prior;
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let [x1, y1] = canvas.grid.grid.getGridPositionFromPixels(x, y);
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if ( x0 === x1 && y0 === y1 ) continue;
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// Highlight the grid position
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let [xgtl, ygtl] = canvas.grid.grid.getPixelsFromGridPosition(x1, y1);
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let [xg, yg] = canvas.grid.grid.getCenter(xgtl, ygtl);
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const pathUntilSpace = previousSegments.concat([{ray: new Ray(ray.A, {x: xg, y: yg})}]);
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const distance = sum(canvas.grid.measureDistances(pathUntilSpace, {gridSpaces: true}));
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const color = this.dragRulerGetColorForDistance(distance);
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const snapPoint = getSnapPointForToken(...canvas.grid.getTopLeft(x, y), this.draggedEntity);
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const [snapX, snapY] = getGridPositionFromPixels(snapPoint.x + 1, snapPoint.y + 1);
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prior = [x1, y1];
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// If the positions are not neighbors, also highlight their halfway point
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if (i > 0 && !canvas.grid.isNeighbor(x0, y0, x1, y1)) {
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let th = tMax[i - 1] - (0.5 / nMax);
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let {x, y} = ray.project(th);
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let [x1h, y1h] = canvas.grid.grid.getGridPositionFromPixels(x, y);
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let [xghtl, yghtl] = canvas.grid.grid.getPixelsFromGridPosition(x1h, y1h);
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let [xgh, ygh] = canvas.grid.grid.getCenter(xghtl, yghtl);
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const pathUntilSpace = previousSegments.concat([{ray: new Ray(ray.A, {x: xgh, y: ygh})}]);
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const distance = sum(canvas.grid.measureDistances(pathUntilSpace, {gridSpaces: true}));
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const color = this.dragRulerGetColorForDistance(distance);
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const snapPoint = getSnapPointForToken(...canvas.grid.getTopLeft(x, y), this.draggedEntity);
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const [snapX, snapY] = getGridPositionFromPixels(snapPoint.x + 1, snapPoint.y + 1);
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highlightTokenShape.call(this, {x: snapX, y: snapY}, tokenShape, color, alpha);
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}
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highlightTokenShape.call(this, {x: snapX, y: snapY}, tokenShape, color, alpha);
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}
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}
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