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203 lines
5.6 KiB
203 lines
5.6 KiB
import * as THREE from 'three'
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import { OrbitControls } from 'three/examples/jsm/controls/OrbitControls.js'
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import { Vector3 } from 'three'
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import { randFloat, randInt } from 'three/src/math/MathUtils.js'
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import { EffectComposer } from 'three/addons/postprocessing/EffectComposer.js';
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import { RenderPixelatedPass } from 'three/addons/postprocessing/RenderPixelatedPass.js';
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import { OutputPass } from 'three/addons/postprocessing/OutputPass.js';
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import { GUI } from 'three/addons/libs/lil-gui.module.min.js';
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let scene, camera, renderer, composer
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let aspect, frustumSize
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let mesh
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let delta
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let controls
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let gui, params
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let instancedMesh, dummy, count, lastTime
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let frames = [];
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const totalFrames = 300; // Number of frames to capture
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let frameCount = 0;
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let iter = 0
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var clock = new THREE.Clock()
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const matrix = new THREE.Matrix4()
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function init(){
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SetupRenderer()
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scene = new THREE.Scene()
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scene.background = new THREE.Color('white')
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SetupCamera()
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//AddLights()
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SetupControls()
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SetupComposer()
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SetupObjects()
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animate()
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}
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function SetupRenderer(){
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renderer = new THREE.WebGLRenderer({alpha: true})
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renderer.setSize(window.innerWidth, window.innerHeight)
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document.getElementById('container').appendChild(renderer.domElement)
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}
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function SetupCamera(){
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aspect = window.innerWidth / window.innerHeight
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frustumSize = 10
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camera = new THREE.OrthographicCamera(
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frustumSize * aspect / -2,
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frustumSize * aspect / 2,
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frustumSize / 2,
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frustumSize / -2,
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0.01,
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5000
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)
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camera.position.z = 20
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}
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function SetupControls(){
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controls = new OrbitControls(camera, renderer.domElement)
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controls.enableRotate = false;
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controls.enablePan = true
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controls.zoomToCursor = true;
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controls.mouseButtons = {
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RIGHT: THREE.MOUSE.ROTATE,
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MIDDLE: THREE.MOUSE.DOLLY,
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LEFT: THREE.MOUSE.PAN
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}
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camera.position.set(0, 0, 20)
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controls.update()
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}
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function AddLights() {
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// Add Ambient Light
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const ambientLight = new THREE.AmbientLight(0xFF0000, 5); // Soft white light
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scene.add(ambientLight);
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// Add Directional Light
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const directionalLight = new THREE.DirectionalLight(0xFF0000, 10); // Soft white light
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directionalLight.position.set(-5, 0, 5).normalize();
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scene.add(directionalLight);
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}
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function SetupComposer(){
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composer = new EffectComposer( renderer )
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const renderPixelPass = new RenderPixelatedPass( 8, scene, camera )
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renderPixelPass.normalEdgeStrength = 0
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renderPixelPass.depthEdgeStrength = 0
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composer.addPass( renderPixelPass )
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const outputPass = new OutputPass()
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composer.addPass( outputPass )
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// gui = new GUI()
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// params = { pixelSize: 3, normalEdgeStrength: .3, depthEdgeStrength: .4, pixelAlignedPanning: true };
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// gui.add( params, 'pixelSize' ).min( 1 ).max( 16 ).step( 1 )
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// .onChange( () => {
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// renderPixelPass.setPixelSize( params.pixelSize );
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// } );
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// gui.add( renderPixelPass, 'normalEdgeStrength' ).min( 0 ).max( 2 ).step( .05 );
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// gui.add( renderPixelPass, 'depthEdgeStrength' ).min( 0 ).max( 1 ).step( .05 );
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// gui.add( params, 'pixelAlignedPanning' );
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}
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function SetupObjects() {
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const loader = new THREE.TextureLoader()
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let txt = loader.load('../images/cn-logo-green.png')
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txt.magFilter = THREE.NearestFilter
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txt.minFilter = THREE.NearestFilter
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txt.wrapS = THREE.RepeatWrapping
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txt.wrapT = THREE.RepeatWrapping
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txt.colorSpace = THREE.SRGBColorSpace
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let geo = new THREE.BoxGeometry(1, 1, 1)
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let mat = new THREE.MeshBasicMaterial({map: txt})
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count = 1000
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instancedMesh = new THREE.InstancedMesh(geo, mat, count);
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scene.add(instancedMesh)
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dummy = new THREE.Object3D();
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for (let i = 0; i < count; i++) {
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let size = randFloat(5, 8);
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dummy.scale.set(size, size, size);
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dummy.position.set(randFloat(-20, 20), randFloat(-20,20), 0);
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dummy.updateMatrix();
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instancedMesh.setMatrixAt(i, dummy.matrix);
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}
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}
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function captureFrame() {
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renderer.domElement.toDataURL('image/png').replace("image/png", "image/octet-stream");
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let imgData = renderer.domElement.toDataURL("image/png");
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frames.push(imgData);
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frameCount++;
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// If last frame, prepare the download
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if (frameCount === totalFrames) {
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//prepareDownload();
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if( iter == 0 ){
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frameCount = 0
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iter = 1
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}
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}
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}
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function prepareDownload() {
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let zip = new JSZip();
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console.log('zipping..')
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frames.forEach((dataUrl, index) => {
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let imgData = dataUrl.split(',')[1]; // Get base64 data part
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zip.file(`frame_${index.toString().padStart(4, '0')}.png`, imgData, {base64: true});
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});
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console.log('zipped!')
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zip.generateAsync({type: "blob"})
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.then(function(content) {
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const a = document.createElement("a");
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a.href = URL.createObjectURL(content);
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a.download = "frames.zip";
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console.log('zip dl ready!')
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a.click();
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});
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}
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function animate(){
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requestAnimationFrame(animate)
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controls.update()
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delta = clock.getDelta() * 0.4
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const time = performance.now() * 0.001;
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const rotationSpeedX = 0.02;
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const rotationSpeedY = 0.01;
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lastTime = time
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for (let i = 0; i < count; i++) {
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instancedMesh.getMatrixAt(i, matrix)
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matrix.decompose(dummy.position, dummy.rotation, dummy.scale)
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dummy.rotation.set(i/1000 * time, i/1000 * time, i/1000 * time);
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dummy.updateMatrix();
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instancedMesh.setMatrixAt(i, dummy.matrix);
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}
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instancedMesh.instanceMatrix.needsUpdate = true
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// renderer.render(scene, camera)
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composer.render()
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// Capture the frame
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if (frameCount < totalFrames) {
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captureFrame();
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}
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}
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window.addEventListener('resize', () => {
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aspect = window.innerWidth / window.innerHeight
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camera.left = -frustumSize * aspect / 2
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camera.right = frustumSize * aspect / 2
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camera.top = frustumSize / 2
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camera.bottom = -frustumSize / 2
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camera.updateProjectionMatrix()
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renderer.setPixelRatio(window.devicePixelRatio)
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renderer.setSize(window.innerWidth, window.innerHeight)
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})
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init()
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