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713 lines
19 KiB
HTML
713 lines
19 KiB
HTML
<!DOCTYPE html>
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<html lang="en">
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<head>
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<title>three.js vr - xr layers</title>
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<meta charset="utf-8">
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<meta name="viewport" content="width=device-width, initial-scale=1.0, user-scalable=no">
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<link type="text/css" rel="stylesheet" href="main.css">
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</head>
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<body>
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<div id="info">
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<a href="https://threejs.org" target="_blank" rel="noopener">three.js</a> vr - xr layers
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</div>
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<script type="importmap">
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{
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"imports": {
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"three": "../build/three.webgpu.js",
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"three/webgpu": "../build/three.webgpu.js",
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"three/tsl": "../build/three.tsl.js",
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"three/addons/": "./jsm/"
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}
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}
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</script>
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<script type="module">
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import * as THREE from 'three';
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import { BoxLineGeometry } from 'three/addons/geometries/BoxLineGeometry.js';
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import { VRButton } from 'three/addons/webxr/VRButton.js';
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import { XRControllerModelFactory } from 'three/addons/webxr/XRControllerModelFactory.js';
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import { GLTFLoader } from 'three/addons/loaders/GLTFLoader.js';
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import { InteractiveGroup } from 'three/addons/interactive/InteractiveGroup.js';
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import {
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RollerCoasterGeometry,
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RollerCoasterShadowGeometry,
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RollerCoasterLiftersGeometry,
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TreesGeometry,
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SkyGeometry
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} from 'three/addons/misc/RollerCoaster.js';
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import { HTMLMesh } from 'three/addons/interactive/HTMLMesh.js';
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import { GUI } from 'three/addons/libs/lil-gui.module.min.js';
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let camera, scene, renderer;
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let controller1, controller2;
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let controllerGrip1, controllerGrip2;
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let room;
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let count = 0;
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const radius = 0.08;
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let normal = new THREE.Vector3();
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const relativeVelocity = new THREE.Vector3();
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const clock = new THREE.Clock();
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const funfairs = [];
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const train = new THREE.Object3D();
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const rcdelta = clock.getDelta() * 0.8; // slow down simulation
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const PI2 = Math.PI * 2;
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let rccamera = null;
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let rcscene = null;
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const tempMatrix = new THREE.Matrix4();
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let raycaster = null;
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const curve = ( function () {
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const vector = new THREE.Vector3();
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const vector2 = new THREE.Vector3();
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return {
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getPointAt: function ( t ) {
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t = t * PI2;
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const x = Math.sin( t * 3 ) * Math.cos( t * 4 ) * 50;
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const y = Math.sin( t * 10 ) * 2 + Math.cos( t * 17 ) * 2 + 5;
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const z = Math.sin( t ) * Math.sin( t * 4 ) * 50;
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return vector.set( x, y, z ).multiplyScalar( 2 );
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},
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getTangentAt: function ( t ) {
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const delta = 0.0001;
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const t1 = Math.max( 0, t - delta );
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const t2 = Math.min( 1, t + delta );
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return vector2.copy( this.getPointAt( t2 ) )
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.sub( this.getPointAt( t1 ) ).normalize();
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}
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};
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} )();
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let horseCamera = null;
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let horseScene = null;
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let horseMixer = null;
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let horseTheta = 0;
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let horseMesh = null;
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const horseRadius = 600;
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let guiScene = null;
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let guiCamera = null;
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let guiGroup = null;
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let rollercoasterLayer = null;
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let horseLayer = null;
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let guiLayer = null;
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const parameters = {
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radius: 0.6,
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tube: 0.2,
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tubularSegments: 150,
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radialSegments: 20,
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p: 2,
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q: 3,
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thickness: 0.5
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};
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init();
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function getIntersections( controller ) {
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tempMatrix.identity().extractRotation( controller.matrixWorld );
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raycaster.ray.origin.setFromMatrixPosition( controller.matrixWorld );
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raycaster.ray.direction.set( 0, 0, - 1 ).applyMatrix4( tempMatrix );
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return raycaster.intersectObjects( scene.children, false );
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}
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function init() {
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scene = new THREE.Scene();
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scene.background = new THREE.Color( 0x505050 );
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raycaster = new THREE.Raycaster();
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camera = new THREE.PerspectiveCamera( 50, window.innerWidth / window.innerHeight, 0.1, 10 );
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camera.position.set( 0, 1.6, 3 );
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room = new THREE.LineSegments(
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new BoxLineGeometry( 6, 6, 6, 10, 10, 10 ),
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new THREE.LineBasicMaterial( { color: 0x808080 } )
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);
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room.geometry.translate( 0, 3, 0 );
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scene.add( room );
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scene.add( new THREE.HemisphereLight( 0x606060, 0x404040 ) );
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const light = new THREE.DirectionalLight( 0xffffff );
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light.position.set( 1, 1, 1 ).normalize();
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scene.add( light );
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const geometry = new THREE.IcosahedronGeometry( radius, 3 );
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for ( let i = 0; i < 200; i ++ ) {
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const object = new THREE.Mesh( geometry, new THREE.MeshLambertMaterial( { color: Math.random() * 0xffffff } ) );
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object.position.x = Math.random() * 4 - 2;
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object.position.y = Math.random() * 4;
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object.position.z = Math.random() * 4 - 2;
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object.userData.velocity = new THREE.Vector3();
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object.userData.velocity.x = Math.random() * 0.01 - 0.005;
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object.userData.velocity.y = Math.random() * 0.01 - 0.005;
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object.userData.velocity.z = Math.random() * 0.01 - 0.005;
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room.add( object );
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}
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//
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renderer = new THREE.WebGPURenderer( { antialias: true, forceWebGL: true, colorBufferType: THREE.UnsignedByteType, multiview: true } );
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renderer.setPixelRatio( window.devicePixelRatio );
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renderer.setSize( window.innerWidth, window.innerHeight );
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renderer.setAnimationLoop( render );
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renderer.xr.enabled = true;
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document.body.appendChild( renderer.domElement );
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//
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document.body.appendChild( VRButton.createButton( renderer ) );
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// controllers
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function onSqueezeStart( ) {
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this.userData.isSelecting = true;
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}
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function onSqueezeEnd() {
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this.userData.isSelecting = false;
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}
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function onSelectStart( event ) {
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const controller = event.target;
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const intersections = getIntersections( controller );
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let hadSelection = false;
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for ( let x = 0; x < intersections.length; x ++ ) {
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if ( intersections[ x ].object == horseLayer ) {
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horseLayer.visible = false;
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hadSelection = true;
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}
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if ( intersections[ x ].object == rollercoasterLayer ) {
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controller.attach( rollercoasterLayer );
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hadSelection = true;
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}
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if ( intersections[ x ].object == guiLayer ) {
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const uv = intersections[ x ].uv;
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guiGroup.children[ 0 ].dispatchEvent( { type: 'mousedown', data: { x: uv.x, y: 1 - uv.y }, target: guiGroup } );
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hadSelection = true;
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}
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}
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this.userData.isSelecting = hadSelection === false;
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}
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function onSelectEnd( ) {
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horseLayer.visible = true;
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scene.attach( rollercoasterLayer );
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guiGroup.children[ 0 ].dispatchEvent( { type: 'mouseup', data: { x: 0, y: 0 }, target: guiGroup } );
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this.userData.isSelecting = false;
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}
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controller1 = renderer.xr.getController( 0 );
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controller1.addEventListener( 'selectstart', onSelectStart );
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controller1.addEventListener( 'selectend', onSelectEnd );
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controller1.addEventListener( 'squeezestart', onSqueezeStart );
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controller1.addEventListener( 'squeezeend', onSqueezeEnd );
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controller1.addEventListener( 'connected', function ( event ) {
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this.add( buildController( event.data ) );
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} );
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controller1.addEventListener( 'disconnected', function () {
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this.remove( this.children[ 0 ] );
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} );
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scene.add( controller1 );
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controller2 = renderer.xr.getController( 1 );
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controller2.addEventListener( 'selectstart', onSelectStart );
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controller2.addEventListener( 'selectend', onSelectEnd );
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controller2.addEventListener( 'squeezestart', onSqueezeStart );
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controller2.addEventListener( 'squeezeend', onSqueezeEnd );
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controller2.addEventListener( 'connected', function ( event ) {
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this.add( buildController( event.data ) );
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} );
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controller2.addEventListener( 'disconnected', function () {
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this.remove( this.children[ 0 ] );
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} );
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scene.add( controller2 );
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// The XRControllerModelFactory will automatically fetch controller models
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// that match what the user is holding as closely as possible. The models
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// should be attached to the object returned from getControllerGrip in
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// order to match the orientation of the held device.
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const controllerModelFactory = new XRControllerModelFactory();
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controllerGrip1 = renderer.xr.getControllerGrip( 0 );
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controllerGrip1.add( controllerModelFactory.createControllerModel( controllerGrip1 ) );
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scene.add( controllerGrip1 );
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controllerGrip2 = renderer.xr.getControllerGrip( 1 );
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controllerGrip2.add( controllerModelFactory.createControllerModel( controllerGrip2 ) );
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scene.add( controllerGrip2 );
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//
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window.addEventListener( 'resize', onWindowResize );
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// set up rollercoaster
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rollercoasterLayer = renderer.xr.createCylinderLayer( 1, Math.PI / 2, 2, new THREE.Vector3( 0, 1.5, - 0.5 ), new THREE.Quaternion(), 1500, 1000, renderRollercoaster );
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scene.add( rollercoasterLayer );
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rcscene = new THREE.Scene();
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rcscene.background = new THREE.Color( 0xf0f0ff );
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const rclight = new THREE.HemisphereLight( 0xfff0f0, 0x606066 );
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rclight.position.set( 1, 1, 1 );
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rcscene.add( rclight );
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rcscene.add( train );
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rccamera = new THREE.PerspectiveCamera( 50, 1, 0.1, 500 );
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train.add( rccamera );
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// environment
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let rcgeometry = new THREE.PlaneGeometry( 500, 500, 15, 15 );
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rcgeometry.rotateX( - Math.PI / 2 );
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const positions = rcgeometry.attributes.position.array;
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const vertex = new THREE.Vector3();
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for ( let i = 0; i < positions.length; i += 3 ) {
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vertex.fromArray( positions, i );
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vertex.x += Math.random() * 10 - 5;
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vertex.z += Math.random() * 10 - 5;
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const distance = ( vertex.distanceTo( scene.position ) / 5 ) - 25;
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vertex.y = Math.random() * Math.max( 0, distance );
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vertex.toArray( positions, i );
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}
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rcgeometry.computeVertexNormals();
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let rcmaterial = new THREE.MeshLambertMaterial( {
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color: 0x407000
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} );
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let rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcscene.add( rcmesh );
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rcgeometry = new TreesGeometry( rcmesh );
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rcmaterial = new THREE.MeshBasicMaterial( {
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side: THREE.DoubleSide, vertexColors: true
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} );
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcscene.add( rcmesh );
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rcgeometry = new SkyGeometry();
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rcmaterial = new THREE.MeshBasicMaterial( { color: 0xffffff } );
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcscene.add( rcmesh );
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//
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rcgeometry = new RollerCoasterGeometry( curve, 1500 );
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rcmaterial = new THREE.MeshPhongMaterial( {
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vertexColors: true
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} );
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcscene.add( rcmesh );
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rcgeometry = new RollerCoasterLiftersGeometry( curve, 100 );
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rcmaterial = new THREE.MeshPhongMaterial();
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcmesh.position.y = 0.1;
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rcscene.add( rcmesh );
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rcgeometry = new RollerCoasterShadowGeometry( curve, 500 );
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rcmaterial = new THREE.MeshBasicMaterial( {
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color: 0x305000, depthWrite: false, transparent: true
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} );
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcmesh.position.y = 0.1;
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rcscene.add( rcmesh );
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//
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rcgeometry = new THREE.CylinderGeometry( 10, 10, 5, 15 );
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rcmaterial = new THREE.MeshLambertMaterial( {
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color: 0xff8080
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} );
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcmesh.position.set( - 80, 10, - 70 );
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rcmesh.rotation.x = Math.PI / 2;
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rcscene.add( rcmesh );
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funfairs.push( rcmesh );
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rcgeometry = new THREE.CylinderGeometry( 5, 6, 4, 10 );
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rcmaterial = new THREE.MeshLambertMaterial( {
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color: 0x8080ff
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} );
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rcmesh = new THREE.Mesh( rcgeometry, rcmaterial );
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rcmesh.position.set( 50, 2, 30 );
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rcscene.add( rcmesh );
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funfairs.push( rcmesh );
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// set up horse animation
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horseLayer = renderer.xr.createQuadLayer( 1, 1, new THREE.Vector3( - 1.5, 1.5, - 1.5 ), new THREE.Quaternion(), 800, 800, renderQuad );
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scene.add( horseLayer );
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horseLayer.geometry = new THREE.CircleGeometry( .5, 64 );
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horseCamera = new THREE.PerspectiveCamera( 50, 1, 1, 10000 );
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horseCamera.position.y = 300;
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horseScene = new THREE.Scene();
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horseScene.background = new THREE.Color( 0xf0f0f0 );
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//
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const light1 = new THREE.DirectionalLight( 0xefefff, 1.5 );
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light1.position.set( 1, 1, 1 ).normalize();
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horseScene.add( light1 );
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const light2 = new THREE.DirectionalLight( 0xffefef, 1.5 );
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light2.position.set( - 1, - 1, - 1 ).normalize();
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horseScene.add( light2 );
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const loader = new GLTFLoader();
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loader.load( 'models/gltf/Horse.glb', function ( gltf ) {
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horseMesh = gltf.scene.children[ 0 ];
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horseMesh.scale.set( 1.5, 1.5, 1.5 );
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horseScene.add( horseMesh );
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horseMixer = new THREE.AnimationMixer( horseMesh );
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horseMixer.clipAction( gltf.animations[ 0 ] ).setDuration( 1 ).play();
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} );
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function onChange() { }
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function onThicknessChange() { }
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// set up ui
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guiScene = new THREE.Scene();
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guiScene.background = new THREE.Color( 0x0 );
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guiCamera = new THREE.OrthographicCamera( - 1, 1, 1, - 1, 0, 1 );
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guiScene.add( guiCamera );
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const gui = new GUI( { width: 300 } );
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gui.add( parameters, 'radius', 0.0, 1.0 ).onChange( onChange );
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gui.add( parameters, 'tube', 0.0, 1.0 ).onChange( onChange );
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gui.add( parameters, 'tubularSegments', 10, 150, 1 ).onChange( onChange );
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gui.add( parameters, 'radialSegments', 2, 20, 1 ).onChange( onChange );
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gui.add( parameters, 'p', 1, 10, 1 ).onChange( onChange );
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gui.add( parameters, 'q', 0, 10, 1 ).onChange( onChange );
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gui.add( parameters, 'thickness', 0, 1 ).onChange( onThicknessChange );
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gui.domElement.style.visibility = 'hidden';
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guiGroup = new InteractiveGroup( renderer, guiCamera );
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guiScene.add( guiGroup );
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const mesh = new HTMLMesh( gui.domElement );
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guiGroup.add( mesh );
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const bbox = new THREE.Box3().setFromObject( guiScene );
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guiLayer = renderer.xr.createQuadLayer( 1.2, .8, new THREE.Vector3( 1.5, 1.5, - 1.5 ), new THREE.Quaternion(), 1280, 800, renderGui );
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scene.add( guiLayer );
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guiCamera.left = bbox.min.x;
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guiCamera.right = bbox.max.x;
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guiCamera.top = bbox.max.y;
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guiCamera.bottom = bbox.min.y;
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guiCamera.updateProjectionMatrix();
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}
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function renderGui() {
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renderer.render( guiScene, guiCamera );
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}
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function renderQuad() {
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horseTheta += 0.1;
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horseCamera.position.x = horseRadius * Math.sin( THREE.MathUtils.degToRad( horseTheta ) );
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horseCamera.position.z = horseRadius * Math.cos( THREE.MathUtils.degToRad( horseTheta ) );
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horseCamera.lookAt( 0, 150, 0 );
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if ( horseMixer ) {
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const time = Date.now();
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horseMixer.update( ( time - prevTime ) * 0.001 );
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prevTime = time;
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}
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renderer.render( horseScene, horseCamera );
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}
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const rcposition = new THREE.Vector3();
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const tangent = new THREE.Vector3();
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const lookAt = new THREE.Vector3();
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let rcvelocity = 0;
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let progress = 0;
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let prevTime = performance.now();
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function renderRollercoaster() {
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const time = performance.now();
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for ( let i = 0; i < funfairs.length; i ++ ) {
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funfairs[ i ].rotation.y = time * 0.0004;
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}
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//
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progress += rcvelocity;
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progress = progress % 1;
|
|
|
|
rcposition.copy( curve.getPointAt( progress ) );
|
|
rcposition.y += 0.3;
|
|
|
|
train.position.copy( rcposition );
|
|
|
|
tangent.copy( curve.getTangentAt( progress ) );
|
|
|
|
rcvelocity -= tangent.y * 0.0000001 * rcdelta;
|
|
rcvelocity = Math.max( 0.00004, Math.min( 0.0002, rcvelocity ) );
|
|
|
|
train.lookAt( lookAt.copy( rcposition ).sub( tangent ) );
|
|
|
|
//
|
|
|
|
renderer.render( rcscene, rccamera );
|
|
|
|
}
|
|
|
|
function buildController( data ) {
|
|
|
|
let geometry, material;
|
|
|
|
switch ( data.targetRayMode ) {
|
|
|
|
case 'tracked-pointer':
|
|
|
|
geometry = new THREE.BufferGeometry();
|
|
geometry.setAttribute( 'position', new THREE.Float32BufferAttribute( [ 0, 0, 0, 0, 0, - 1 ], 3 ) );
|
|
geometry.setAttribute( 'color', new THREE.Float32BufferAttribute( [ 0.5, 0.5, 0.5, 0, 0, 0 ], 3 ) );
|
|
|
|
material = new THREE.LineBasicMaterial( { vertexColors: true, blending: THREE.AdditiveBlending } );
|
|
|
|
return new THREE.Line( geometry, material );
|
|
|
|
case 'gaze':
|
|
|
|
geometry = new THREE.RingGeometry( 0.02, 0.04, 32 ).translate( 0, 0, - 1 );
|
|
material = new THREE.MeshBasicMaterial( { opacity: 0.5, transparent: true } );
|
|
return new THREE.Mesh( geometry, material );
|
|
|
|
}
|
|
|
|
}
|
|
|
|
function onWindowResize() {
|
|
|
|
camera.aspect = window.innerWidth / window.innerHeight;
|
|
camera.updateProjectionMatrix();
|
|
|
|
renderer.setSize( window.innerWidth, window.innerHeight );
|
|
|
|
}
|
|
|
|
function handleController( controller ) {
|
|
|
|
if ( controller.userData.isSelecting ) {
|
|
|
|
const object = room.children[ count ++ ];
|
|
|
|
object.position.copy( controller.position );
|
|
object.userData.velocity.x = ( Math.random() - 0.5 ) * 3;
|
|
object.userData.velocity.y = ( Math.random() - 0.5 ) * 3;
|
|
object.userData.velocity.z = ( Math.random() - 9 );
|
|
object.userData.velocity.applyQuaternion( controller.quaternion );
|
|
|
|
if ( count === room.children.length ) count = 0;
|
|
|
|
}
|
|
|
|
const intersections = getIntersections( controller );
|
|
for ( let x = 0; x < intersections.length; x ++ ) {
|
|
|
|
if ( intersections[ x ].object == guiLayer ) {
|
|
|
|
const uv = intersections[ x ].uv;
|
|
guiGroup.children[ 0 ].dispatchEvent( { type: 'mousemove', data: { x: uv.x, y: 1 - uv.y }, target: guiGroup } );
|
|
|
|
}
|
|
|
|
|
|
}
|
|
|
|
|
|
}
|
|
|
|
//
|
|
|
|
function render() {
|
|
|
|
renderer.xr.renderLayers( );
|
|
|
|
handleController( controller1 );
|
|
handleController( controller2 );
|
|
|
|
// rotate horse
|
|
horseLayer.rotation.y -= 0.02;
|
|
|
|
//
|
|
const delta = clock.getDelta() * 0.8;
|
|
|
|
const range = 3 - radius;
|
|
|
|
for ( let i = 0; i < room.children.length; i ++ ) {
|
|
|
|
const object = room.children[ i ];
|
|
|
|
object.position.x += object.userData.velocity.x * delta;
|
|
object.position.y += object.userData.velocity.y * delta;
|
|
object.position.z += object.userData.velocity.z * delta;
|
|
|
|
// keep objects inside room
|
|
|
|
if ( object.position.x < - range || object.position.x > range ) {
|
|
|
|
object.position.x = THREE.MathUtils.clamp( object.position.x, - range, range );
|
|
object.userData.velocity.x = - object.userData.velocity.x;
|
|
|
|
}
|
|
|
|
if ( object.position.y < radius || object.position.y > 6 ) {
|
|
|
|
object.position.y = Math.max( object.position.y, radius );
|
|
|
|
object.userData.velocity.x *= 0.98;
|
|
object.userData.velocity.y = - object.userData.velocity.y * 0.8;
|
|
object.userData.velocity.z *= 0.98;
|
|
|
|
}
|
|
|
|
if ( object.position.z < - range || object.position.z > range ) {
|
|
|
|
object.position.z = THREE.MathUtils.clamp( object.position.z, - range, range );
|
|
object.userData.velocity.z = - object.userData.velocity.z;
|
|
|
|
}
|
|
|
|
for ( let j = i + 1; j < room.children.length; j ++ ) {
|
|
|
|
const object2 = room.children[ j ];
|
|
|
|
normal.copy( object.position ).sub( object2.position );
|
|
|
|
const distance = normal.length();
|
|
|
|
if ( distance < 2 * radius ) {
|
|
|
|
normal.multiplyScalar( 0.5 * distance - radius );
|
|
|
|
object.position.sub( normal );
|
|
object2.position.add( normal );
|
|
|
|
normal.normalize();
|
|
|
|
relativeVelocity.copy( object.userData.velocity ).sub( object2.userData.velocity );
|
|
|
|
normal = normal.multiplyScalar( relativeVelocity.dot( normal ) );
|
|
|
|
object.userData.velocity.sub( normal );
|
|
object2.userData.velocity.add( normal );
|
|
|
|
}
|
|
|
|
}
|
|
|
|
object.userData.velocity.y -= 9.8 * delta;
|
|
|
|
}
|
|
|
|
renderer.render( scene, camera );
|
|
|
|
}
|
|
|
|
</script>
|
|
</body>
|
|
</html> |