272 lines
7.2 KiB
TypeScript
272 lines
7.2 KiB
TypeScript
import { Doodler, IDoodlerOptions } from "./canvas.ts";
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import { OriginVector, Point } from "./geometry/vector.ts";
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import { easeInOut } from "./timing/EaseInOut.ts";
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import { map } from "./timing/Map.ts";
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type TouchEventCallback = (e: TouchEvent) => void;
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const maxZoomScale = 4;
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export class ZoomableDoodler extends Doodler {
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private scale = 1;
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dragging = false;
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private origin: Point = {
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x: 0,
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y: 0
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}
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mouse = {
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x: 0,
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y: 0
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}
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private previousTouchLength?: number;
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private touchTimer?: number;
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private hasDoubleTapped = false;
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private zooming = false;
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scaleAround: Point = { x: 0, y: 0 };
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constructor(options: IDoodlerOptions) {
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super(options)
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this._canvas.addEventListener('wheel', (e) => {
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this.scaleAtMouse(e.deltaY < 0 ? 1.1 : .9);
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if (this.scale === 1) {
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this.origin.x = 0
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this.origin.y = 0
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}
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})
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this._canvas.addEventListener('dblclick', (e) => {
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e.preventDefault();
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this.scale = 1;
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this.origin.x = 0;
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this.origin.y = 0;
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this.ctx.setTransform(1, 0, 0, 1, 0, 0);
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})
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this._canvas.addEventListener('mousedown', (e) => {
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e.preventDefault();
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this.dragging = true;
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})
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this._canvas.addEventListener('mouseup', (e) => {
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e.preventDefault();
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this.dragging = false;
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})
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this._canvas.addEventListener('mouseleave', (e) => {
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this.dragging = false;
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})
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this._canvas.addEventListener('mousemove', (e) => {
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const prev = this.mouse;
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this.mouse = {
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x: e.offsetX,
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y: e.offsetY
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}
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if (this.dragging && !this.dragTarget) this.drag(prev);
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})
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this._canvas.addEventListener('touchstart', (e) => {
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e.preventDefault();
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if (e.touches.length === 1) {
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const t1 = e.touches.item(0);
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if (t1) {
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this.mouse = this.getTouchOffset({
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x: t1.clientX,
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y: t1.clientY
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})
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}
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// this.touchTimer = setTimeout(() => {
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// this.dragging = true;
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// }, 100)
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} else {
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clearTimeout(this.touchTimer);
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}
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});
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this._canvas.addEventListener('touchend', (e) => {
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if (e.touches.length !== 2) {
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this.previousTouchLength = undefined;
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}
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switch (e.touches.length) {
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case 1:
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break;
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case 0:
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if (!this.zooming) {
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this.events.get('touchend')?.map(cb => cb(e));
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}
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break;
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}
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this.dragging = e.touches.length === 1;
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clearTimeout(this.touchTimer);
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});
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this._canvas.addEventListener('touchmove', (e) => {
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e.preventDefault();
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if (e.touches.length === 2) {
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const t1 = e.touches.item(0);
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const t2 = e.touches.item(1);
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if (t1 && t2) {
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const vect = OriginVector.from(
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this.getTouchOffset({
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x: t1.clientX,
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y: t1.clientY
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}),
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{
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x: t2.clientX,
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y: t2.clientY
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},
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)
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if (this.previousTouchLength) {
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const diff = this.previousTouchLength - vect.mag();
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this.scaleAt(vect.halfwayPoint, diff < 0 ? 1.01 : .99);
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this.scaleAround = { ...vect.halfwayPoint }
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}
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this.previousTouchLength = vect.mag();
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}
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}
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if (e.touches.length === 1) {
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this.dragging === true;
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const t1 = e.touches.item(0);
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if (t1) {
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const prev = this.mouse;
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this.mouse = this.getTouchOffset({
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x: t1.clientX,
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y: t1.clientY
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})
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this.drag(prev);
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}
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}
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});
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this._canvas.addEventListener('touchstart', (e) => {
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if (e.touches.length !== 1) return false;
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if (!this.hasDoubleTapped) {
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this.hasDoubleTapped = true;
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setTimeout(() => this.hasDoubleTapped = false, 300);
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return false;
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}
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// this.ctx.setTransform(1, 0, 0, 1, 0, 0);
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// this.scale = 1;
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// this.origin.x = 0;
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// this.origin.y = 0;
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console.log(this.mouse);
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if (this.scale > 1) {
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this.frameCounter = map(this.scale, maxZoomScale, 1, 0, 59);
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this.zoomDirection = -1;
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} else {
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this.frameCounter = 0;
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this.zoomDirection = 1;
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}
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if (this.zoomDirection > 0)
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this.scaleAround = { ...this.mouse };
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this.events.get('doubletap')?.map(cb => cb(e));
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})
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}
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worldToScreen(x: number, y: number) {
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x = x * this.scale + this.origin.x;
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y = y * this.scale + this.origin.y;
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return { x, y };
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}
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screenToWorld(x: number, y: number) {
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x = (x - this.origin.x) / this.scale;
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y = (y - this.origin.y) / this.scale;
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return { x, y };
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}
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scaleAtMouse(scaleBy: number) {
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if (this.scale === 4 && scaleBy > 1) return;
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this.scaleAt({
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x: this.mouse.x,
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y: this.mouse.y
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}, scaleBy);
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}
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scaleAt(p: Point, scaleBy: number) {
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this.scale = Math.min(Math.max(this.scale * scaleBy, 1), maxZoomScale);
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this.origin.x = p.x - (p.x - this.origin.x) * scaleBy;
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this.origin.y = p.y - (p.y - this.origin.y) * scaleBy;
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this.constrainOrigin();
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}
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drag(prev: Point) {
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if (this.scale > 1) {
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const xOffset = this.mouse.x - prev.x;
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const yOffset = this.mouse.y - prev.y;
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this.origin.x += xOffset;
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this.origin.y += yOffset;
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this.constrainOrigin();
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}
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}
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constrainOrigin() {
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this.origin.x = Math.min(Math.max(this.origin.x, (-this._canvas.width * this.scale) + this._canvas.width), 0);
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this.origin.y = Math.min(Math.max(this.origin.y, (-this._canvas.height * this.scale) + this._canvas.height), 0);
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}
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draw() {
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this.ctx.setTransform(this.scale, 0, 0, this.scale, this.origin.x, this.origin.y)
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this.animateZoom();
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this.ctx.fillStyle = this.bg;
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this.ctx.fillRect(0, 0, this.width/this.scale, this.height/this.scale);
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super.draw();
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}
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getTouchOffset(p: Point) {
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const { x, y } = this._canvas.getBoundingClientRect();
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const offsetX = p.x - x;
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const offsetY = p.y - y;
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return {
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x: offsetX,
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y: offsetY
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}
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}
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onDrag(e: MouseEvent): void {
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const d = {
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...e,
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movementX: e.movementX/this.scale,
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movementY: e.movementY/this.scale
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}
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super.onDrag(d);
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const {x, y} = this.screenToWorld(e.offsetX, e.offsetY);
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this.mouseX = x;
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this.mouseY = y;
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}
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zoomDirection = -1;
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frameCounter = 60;
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animateZoom() {
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if (this.frameCounter < 60) {
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const frame = easeInOut(map(this.frameCounter, 0, 59, 0, 1));
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switch (this.zoomDirection) {
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case 1: {
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this.scale = map(frame, 0, 1, 1, maxZoomScale);
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}
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break;
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case -1: {
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this.scale = map(frame, 0, 1, maxZoomScale, 1);
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}
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break;
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}
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this.origin.x = this.scaleAround.x - (this.scaleAround.x * this.scale);
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this.origin.y = this.scaleAround.y - (this.scaleAround.y * this.scale);
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this.constrainOrigin();
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this.frameCounter++;
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}
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}
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events: Map<string, TouchEventCallback[]> = new Map();
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registerEvent(eventName: 'touchend' | 'touchstart' | 'touchmove' | 'doubletap', cb: TouchEventCallback) {
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let events = this.events.get(eventName);
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if (!events) events = this.events.set(eventName, []).get(eventName)!;
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events.push(cb);
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}
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}
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