374 lines
12 KiB
JavaScript
374 lines
12 KiB
JavaScript
import * as THREE from 'three';
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import { GLTFLoader } from 'GLTFLoader';
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import { DRACOLoader } from 'DRACOLoader';
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import { EffectComposer } from 'https://cdn.jsdelivr.net/npm/three@0.155.0/examples/jsm/postprocessing/EffectComposer.js';
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import { RenderPass } from 'https://cdn.jsdelivr.net/npm/three@0.155.0/examples/jsm/postprocessing/RenderPass.js';
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import { ShaderPass } from 'https://cdn.jsdelivr.net/npm/three@0.155.0/examples/jsm/postprocessing/ShaderPass.js';
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import { UnrealBloomPass } from 'https://cdn.jsdelivr.net/npm/three@0.155.0/examples/jsm/postprocessing/UnrealBloomPass.js';
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import { GammaCorrectionShader } from 'https://cdn.jsdelivr.net/npm/three@0.155.0/examples/jsm/shaders/GammaCorrectionShader.js';
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import { VignetteShader } from "https://cdn.jsdelivr.net/npm/three@0.155.0/examples/jsm/shaders/VignetteShader.js";
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// ---- BASIS Three.js Szene ----
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const scene = new THREE.Scene();
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const ASPECT = 3/2, SCALE = 15;
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const hw = SCALE/2, hh = (SCALE/ASPECT)/2;
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const camera = new THREE.OrthographicCamera(-hw, hw, hh, -hh, 0.1, 1000);
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camera.position.set(0, -14.424, 20);
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camera.rotation.set(THREE.MathUtils.degToRad(55), 0, 0);
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const container = document.getElementById('viewer');
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const renderer = new THREE.WebGLRenderer({ antialias:true });
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renderer.outputColorSpace = THREE.SRGBColorSpace;
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renderer.shadowMap.enabled = true;
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renderer.shadowMap.type = THREE.PCFSoftShadowMap;
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container.appendChild(renderer.domElement);
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// ---- POSTPROCESSING
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const foliageTexture = new THREE.TextureLoader().load('assets/sprites/foliage.png');
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foliageTexture.colorSpace = THREE.SRGBColorSpace;
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const FoliageOverlayShader = {
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uniforms: {
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'tDiffuse': { value: null },
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'tFoliage': { value: foliageTexture },
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'opacity': { value: 1.0 }
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},
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vertexShader: `
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varying vec2 vUv;
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void main() { vUv = uv; gl_Position = projectionMatrix * modelViewMatrix * vec4(position,1.0); }
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`,
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fragmentShader: `
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uniform sampler2D tDiffuse;
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uniform sampler2D tFoliage;
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uniform float opacity;
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varying vec2 vUv;
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void main() {
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vec4 base = texture2D(tDiffuse, vUv);
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vec4 foliage = texture2D(tFoliage, vUv);
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gl_FragColor = mix(base, vec4(foliage.rgb, base.a), foliage.a * opacity);
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}
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`
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};
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const foliageOverlayPass = new ShaderPass(FoliageOverlayShader);
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const composer = new EffectComposer(renderer);
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composer.addPass(new RenderPass(scene, camera));
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composer.addPass(foliageOverlayPass);
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composer.addPass(new UnrealBloomPass(
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new THREE.Vector2(container.clientWidth, container.clientHeight),
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0.8, 0.2, 0.4
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));
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const vignettePass = new ShaderPass(VignetteShader);
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vignettePass.uniforms['offset'].value = 0.3;
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vignettePass.uniforms['darkness'].value = 1.35;
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composer.addPass(vignettePass);
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composer.addPass(new ShaderPass(GammaCorrectionShader));
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// ---- Resize
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function onResize(){
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const W=container.clientWidth, H=container.clientHeight, winA=W/H;
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let vw,vh,vx,vy;
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if(winA>ASPECT){
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vh=H; vw=H*ASPECT; vx=(W-vw)/2; vy=0;
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} else {
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vw=W; vh=W/ASPECT; vx=0; vy=(H-vh)/2;
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}
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renderer.setSize(W,H);
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renderer.setViewport(vx,vy,vw,vh);
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renderer.setScissor(vx,vy,vw,vh);
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renderer.setScissorTest(true);
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renderer.toneMapping = THREE.ACESFilmicToneMapping;
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renderer.toneMappingExposure = 1.2;
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renderer.outputColorSpace = THREE.SRGBColorSpace;
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composer.setSize(W, H);
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const dpr = window.devicePixelRatio || 1;
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renderer.setPixelRatio(dpr);
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composer.setPixelRatio(dpr);
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camera.updateProjectionMatrix();
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}
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window.addEventListener('resize',onResize);
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onResize();
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// ---- Environment Map
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const texLoader = new THREE.TextureLoader();
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const pmremGen = new THREE.PMREMGenerator(renderer);
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texLoader.load('assets/hdri/environment.jpg', tex => {
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const envRT = pmremGen.fromEquirectangular(tex).texture;
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scene.environment = envRT;
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scene.background = envRT;
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tex.dispose();
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pmremGen.dispose();
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});
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// ---- Directional Sun ----
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const sun = new THREE.DirectionalLight(0xFFA230, 2);
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sun.position.set(21, -25, 30);
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sun.castShadow = true;
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sun.shadow.mapSize.width = 2048;
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sun.shadow.mapSize.height = 2048;
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sun.shadow.camera.near = 1;
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sun.shadow.camera.far = 100;
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sun.shadow.camera.left = -30;
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sun.shadow.camera.right = 30;
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sun.shadow.camera.top = 30;
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sun.shadow.camera.bottom = -30;
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scene.add(sun);
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// ---- GLTF/DRACO Loader ----
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const draco = new DRACOLoader();
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draco.setDecoderPath('https://www.gstatic.com/draco/versioned/decoders/1.5.6/');
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const gltfLoader = new GLTFLoader();
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gltfLoader.setDRACOLoader(draco);
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// ---- Utility: GLBs laden (für Grundszene) ----
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async function loadGLB(path, pos, rotDeg, {receiveShadow=false, castShadow=false, emissive=null, visible=true, shadowOnly=false} = {}) {
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const { scene: obj } = await gltfLoader.loadAsync(path);
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obj.position.set(pos[0], pos[1], pos[2]);
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obj.rotation.set(
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THREE.MathUtils.degToRad(rotDeg[0]),
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THREE.MathUtils.degToRad(rotDeg[1]),
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THREE.MathUtils.degToRad(rotDeg[2])
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);
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obj.traverse(c => {
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c.visible = visible;
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if (c.isMesh) {
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c.castShadow = castShadow;
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c.receiveShadow = receiveShadow;
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if (shadowOnly) c.material = new THREE.MeshBasicMaterial({ color: 0x000000, opacity: 0.01, transparent: true, depthWrite: false });
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if (emissive && c.material && c.material.isMeshStandardMaterial) {
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c.material.emissive = new THREE.Color(emissive);
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c.material.emissiveIntensity = 1.0;
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}
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}
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});
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scene.add(obj);
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return obj;
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}
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async function loadSpinner(path, pos, rotDeg, color, opacity) {
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const { scene: obj } = await gltfLoader.loadAsync(path);
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obj.position.set(...pos);
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obj.rotation.set(
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THREE.MathUtils.degToRad(rotDeg[0]),
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THREE.MathUtils.degToRad(rotDeg[1]),
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THREE.MathUtils.degToRad(rotDeg[2])
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);
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obj.traverse(c => {
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c.visible = true;
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if (c.isMesh && c.material && c.material.isMeshStandardMaterial) {
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c.material.transparent = true;
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c.material.opacity = opacity;
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c.material.emissive = new THREE.Color(color);
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c.material.emissiveIntensity = 3.0;
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c.material.vertexColors = true;
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c.castShadow = true;
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}
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});
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scene.add(obj);
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return obj;
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}
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// ---- Grundszene initialisieren
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let spinnerRed, spinnerBlue, torigate, landscape, shadowTree;
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const rotatingLights = [], counterRotatingLights = [];
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const LIGHT_RADIUS = 1;
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const clock = new THREE.Clock();
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(async()=>{
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landscape = await loadGLB(
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'assets/models/landscape.glb',
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[0,0,0], [90,0,0],
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{receiveShadow:true, castShadow:true}
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);
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torigate = await loadGLB(
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'assets/models/tori.glb',
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[0,6.59,0.375], [90,0,0],
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{receiveShadow:true, castShadow:true}
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);
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spinnerRed = await loadSpinner(
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'assets/models/spinner_red.glb', [0,16.55,0.88], [90,0,0], "#ff3333", 0.2
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);
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spinnerBlue = await loadSpinner(
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'assets/models/spinner_blue.glb', [0,16.55,0.88], [90,0,0], "#3380ff", 0.2
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);
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shadowTree = await loadGLB(
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'assets/models/tree_low.glb',
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[0.0,0.0,0.0], [90,0,0],
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{receiveShadow:false, castShadow:true, shadowOnly: true}
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);
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for(let i=0;i<3;i++){
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const L = new THREE.PointLight(0xFFA230, 5, 30);
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L.castShadow = true;
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rotatingLights.push(L);
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scene.add(L);
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const L2 = new THREE.PointLight(0xFFA230, 5, 30);
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L2.castShadow = true;
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counterRotatingLights.push(L2);
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scene.add(L2);
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}
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animate();
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})();
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// ---- SPIRIT-KLASSE (aus alter Version, leicht adaptiert)
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const MOVE_SPEED = 1; // wie im Original
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class Spirit {
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constructor(obj3d, info) {
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this.clock = new THREE.Clock();
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this.grp = new THREE.Group();
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this.spiritMeshes = [];
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this.isFading = true;
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this.info = info || {};
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this.grp.add(obj3d);
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// Positionierung + Drehung wie im Original
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obj3d.rotation.x = -Math.PI;
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// Setze Position unterhalb Spinner (nutze aktuelle Spinner-Position)
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let y = spinnerRed ? spinnerRed.position.y - 1.5 : 15;
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this.grp.position.set(0, y, 0.88 - 0.6);
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obj3d.traverse(mesh => {
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if (mesh.isMesh) {
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mesh.castShadow = true;
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mesh.receiveShadow = true;
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mesh.userData.originalMaterial = mesh.material.clone();
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mesh.material = mesh.material.clone();
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mesh.material.color.set(0xffffcc);
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mesh.material.opacity = 0.0;
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mesh.material.transparent = true;
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mesh.material.emissive?.set(0xffffcc);
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mesh.material.emissiveIntensity = 2.0;
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this.spiritMeshes.push(mesh);
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}
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});
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scene.add(this.grp);
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}
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update(dt) {
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const t = this.clock.getElapsedTime();
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if(this.spiritMeshes && this.isFading){
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for(const mesh of this.spiritMeshes){
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if(t < 0.5){
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mesh.material.opacity = 1;
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mesh.material.color.lerp(mesh.userData.originalMaterial.color, t/0.5);
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if(mesh.material.emissive)
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mesh.material.emissive.lerp(mesh.userData.originalMaterial.emissive || new THREE.Color(0x000000), t/0.5);
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mesh.material.emissiveIntensity = 2.0 * (1-t/0.5) + (mesh.userData.originalMaterial.emissiveIntensity||1.0)*(t/0.5);
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} else {
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mesh.material.opacity = mesh.userData.originalMaterial.opacity ?? 1.0;
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mesh.material.color.copy(mesh.userData.originalMaterial.color);
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if(mesh.material.emissive)
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mesh.material.emissive.copy(mesh.userData.originalMaterial.emissive || new THREE.Color(0x000000));
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mesh.material.emissiveIntensity = mesh.userData.originalMaterial.emissiveIntensity ?? 1.0;
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this.isFading = false;
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}
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}
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}
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// Bewegung nach unten
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this.grp.position.y -= MOVE_SPEED * dt;
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if (t > 15) {
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scene.remove(this.grp);
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return false;
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}
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return true;
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}
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dispose() {
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scene.remove(this.grp);
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this.grp.traverse((mesh) => {
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if (mesh.isMesh) {
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mesh.geometry.dispose();
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if (Array.isArray(mesh.material)) mesh.material.forEach((m) => m.dispose());
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else mesh.material.dispose();
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}
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});
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}
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}
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// ---- Render-Loop ----
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let currentSpirit = null;
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window.currentSpirit = null;
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function animate(){
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const dt = clock.getDelta(), t = clock.getElapsedTime();
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// Spinner Animation
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const bob = Math.sin(t*1.2)*0.5;
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const baseY = 16.55 + bob;
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if (spinnerRed && spinnerBlue) {
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spinnerRed.position.y = baseY + 0.8;
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spinnerBlue.position.y = baseY;
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spinnerRed.rotation.y -= 1.2 * dt;
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spinnerBlue.rotation.y += 1.2 * dt;
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}
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// Rotierende Lichter
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const center = new THREE.Vector3(0, 16.55, 1.5);
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const lightZ = center.z;
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for(let i=0; i<rotatingLights.length; i++){
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const ang = t * 0.8 + i * 2 * Math.PI / 3;
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rotatingLights[i].position.set(
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center.x + Math.cos(ang) * LIGHT_RADIUS,
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center.y + Math.sin(ang) * LIGHT_RADIUS,
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lightZ
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);
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}
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for(let i=0; i<counterRotatingLights.length; i++){
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const ang = -t * 0.8 + i * 2 * Math.PI / 3;
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counterRotatingLights[i].position.set(
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center.x + Math.cos(ang) * LIGHT_RADIUS,
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center.y + Math.sin(ang) * LIGHT_RADIUS,
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lightZ
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);
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}
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// Spirit animieren/entfernen
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if (currentSpirit && currentSpirit.update) {
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if (!currentSpirit.update(dt)) {
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currentSpirit = null;
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window.currentSpirit = null;
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}
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}
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composer.render(scene, camera);
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requestAnimationFrame(animate);
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}
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// ---- WebSocket-basierter Spirit Spawn ----
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const ws = new WebSocket(`ws://${location.host}`);
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ws.addEventListener('message', async (event) => {
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const msg = JSON.parse(event.data);
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if (msg.type === 'spirit') {
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await showSpirit(msg.data);
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}
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});
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async function showSpirit(spirit) {
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if (currentSpirit) {
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currentSpirit.dispose();
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currentSpirit = null;
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window.currentSpirit = null;
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}
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console.log("Lade Spirit", spirit.modelUrl);
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// Modell laden
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const { scene: spiritObj } = await gltfLoader.loadAsync(spirit.modelUrl);
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// Spirit-Objekt mit Animation/Fading/Motion erzeugen!
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currentSpirit = new Spirit(spiritObj, spirit);
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window.currentSpirit = currentSpirit;
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updateSpiritOverlay(spirit);
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}
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// Overlay für Spirit-Infos
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function updateSpiritOverlay(spirit) {
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let el = document.getElementById('spirit-info');
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if (!el) {
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el = document.createElement('div');
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el.id = 'spirit-info';
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el.style = `
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position:absolute; left:20px; top:20px; color:white;
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background:rgba(0,0,0,0.6); padding:10px 18px; border-radius:10px;
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font-family: sans-serif; z-index:10; max-width: 320px;
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`;
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document.body.appendChild(el);
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}
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el.innerHTML = `<b>${spirit.name || 'Spirit'}</b><br><small>${spirit.desc || ""}</small>`;
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} |