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@@ -10,7 +10,7 @@
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<div id="info">
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<a href="https://threejs.org" target="_blank" rel="noopener">three.js</a> webgpu - reflection<br/>
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- Based on <a href="https://web.archive.org/web/20210101053442/http://oos.moxiecode.com/js_webgl/recursive_tree_cubes/" target="_blank" rel="noopener">Recursive Tree Cubes</a>
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+ Based on <a href="https://oosmoxiecode.com/archive/js_webgl/recursive_tree_cubes/" target="_blank" rel="noopener">Recursive Tree Cubes</a>
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by <a href="https://github.com/oosmoxiecode" target="_blank" rel="noopener">oosmoxiecode</a>
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</div>
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@@ -29,7 +29,7 @@
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import * as THREE from 'three';
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- import { abs, color, div, float, Fn, instancedBufferAttribute, materialColor, min, normalWorldGeometry, pass, positionGeometry, positionLocal, reflector, screenUV, sin, sub, texture, time, uniform, uv, varyingProperty } from 'three/tsl';
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+ import { abs, blendOverlay, color, float, Fn, instancedBufferAttribute, materialColor, normalWorldGeometry, pass, positionGeometry, positionLocal, reflector, screenUV, sin, sub, texture, time, uniform, uv, vec3 } from 'three/tsl';
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import { gaussianBlur } from 'three/addons/tsl/display/GaussianBlurNode.js';
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import { OrbitControls } from 'three/addons/controls/OrbitControls.js';
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@@ -44,48 +44,55 @@
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// below uniforms will be animated via TWEEN.js
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- const uniformLife = uniform( 0 );
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const uniformEffector1 = uniform( - 0.2 );
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const uniformEffector2 = uniform( - 0.2 );
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init();
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- function init() {
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+ async function init() {
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camera = new THREE.PerspectiveCamera( 50, window.innerWidth / window.innerHeight, 0.25, 30 );
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camera.position.set( 4, 2, 4 );
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scene = new THREE.Scene();
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- scene.fog = new THREE.Fog( 0x0487e2, 7, 25 );
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- scene.backgroundNode = normalWorldGeometry.y.mix( color( 0x0487e2 ), color( 0x0066ff ) );
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+ scene.fog = new THREE.Fog( 0x4195a4, 1, 25 );
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+ scene.backgroundNode = normalWorldGeometry.y.mix( color( 0x4195a4 ), color( 0x0066ff ) );
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camera.lookAt( 0, 1, 0 );
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- const sunLight = new THREE.DirectionalLight( 0xFFE499, 3 );
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- sunLight.position.set( 7, 3, 7 );
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-
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- const waterAmbientLight = new THREE.HemisphereLight( 0x333366, 0x74ccf4, 3 );
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- const skyAmbientLight = new THREE.HemisphereLight( 0x74ccf4, 0, 1 );
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-
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+ const sunLight = new THREE.DirectionalLight( 0xFFE499, 2 );
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+ sunLight.position.set( 7, 5, 7 );
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+ sunLight.castShadow = true;
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+ sunLight.shadow.camera.zoom = 1.5;
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+ sunLight.shadow.mapSize.set( 1024, 1024 );
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+ sunLight.shadow.bias = - 0.0001;
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scene.add( sunLight );
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- scene.add( skyAmbientLight );
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- scene.add( waterAmbientLight );
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+
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+ const backLight = new THREE.DirectionalLight( 0x0487e2, 0.5 );
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+ backLight.position.set( 7, - 5, 7 );
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+ scene.add( backLight );
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// textures
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const textureLoader = new THREE.TextureLoader();
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- const floorColor = textureLoader.load( 'textures/floors/FloorsCheckerboard_S_Diffuse.jpg' );
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+ const floorColor = await textureLoader.loadAsync( 'textures/floors/FloorsCheckerboard_S_Diffuse.jpg' );
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floorColor.wrapS = THREE.RepeatWrapping;
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floorColor.wrapT = THREE.RepeatWrapping;
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floorColor.colorSpace = THREE.SRGBColorSpace;
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- const floorNormal = textureLoader.load( 'textures/floors/FloorsCheckerboard_S_Normal.jpg' );
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+ const floorNormal = await textureLoader.loadAsync( 'textures/floors/FloorsCheckerboard_S_Normal.jpg' );
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floorNormal.wrapS = THREE.RepeatWrapping;
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floorNormal.wrapT = THREE.RepeatWrapping;
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+ floorNormal.repeat.set( 15, 15 );
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+
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+ const boxMap = await textureLoader.loadAsync( 'textures/edge3.jpg' );
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+ boxMap.colorSpace = THREE.SRGBColorSpace;
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// tree
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- const treeMesh = createTreeMesh();
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+ const treeMesh = createTreeMesh( boxMap );
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+ treeMesh.castShadow = true;
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+ treeMesh.receiveShadow = true;
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scene.add( treeMesh );
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// floor
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@@ -100,9 +107,11 @@
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const floorMaterial = new THREE.MeshPhongNodeMaterial();
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floorMaterial.colorNode = texture( floorColor, floorUV ).add( reflection );
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+ floorMaterial.normalMap = floorNormal;
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+ floorMaterial.normalScale.set( 0.2, - 0.2 );
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const floor = new THREE.Mesh( new THREE.BoxGeometry( 50, .001, 50 ), floorMaterial );
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- floor.position.set( 0, 0, 0 );
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+ floor.receiveShadow = true;
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scene.add( floor );
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// renderer
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@@ -111,6 +120,9 @@
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renderer.setPixelRatio( window.devicePixelRatio );
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renderer.setSize( window.innerWidth, window.innerHeight );
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renderer.setAnimationLoop( animate );
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+ renderer.shadowMap.enabled = true;
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+ renderer.shadowMap.type = THREE.PCFSoftShadowMap;
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+ renderer.toneMapping = THREE.ACESFilmicToneMapping;
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document.body.appendChild( renderer.domElement );
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stats = new Stats();
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@@ -137,18 +149,29 @@
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const scenePassColorBlurred = gaussianBlur( scenePassColor );
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scenePassColorBlurred.directionNode = scenePassDepth;
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- const vignette = screenUV.distance( .5 ).mul( 1.35 ).clamp().oneMinus();
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+ const vignette = screenUV.distance( .5 ).mul( 1.25 ).clamp().oneMinus().sub( 0.2 );
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postProcessing = new THREE.PostProcessing( renderer );
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- postProcessing.outputNode = scenePassColorBlurred.mul( vignette );
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+ postProcessing.outputNode = blendOverlay( scenePassColorBlurred, vignette );
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- //
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+ // tweens
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- window.addEventListener( 'resize', onWindowResize );
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+ new TWEEN.Tween( uniformEffector1 )
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+ .to( { value: 1.2 }, 3000 )
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+ .delay( 800 )
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+ .repeat( Infinity )
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+ .easing( TWEEN.Easing.Sinusoidal.InOut )
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+ .start();
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+
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+ new TWEEN.Tween( uniformEffector2 )
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+ .to( { value: 1.2 }, 3000 )
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+ .repeat( Infinity )
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+ .easing( TWEEN.Easing.Sinusoidal.InOut )
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+ .start();
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//
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- startTweens();
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+ window.addEventListener( 'resize', onWindowResize );
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}
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@@ -173,52 +196,18 @@
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}
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- function startTweens() {
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-
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- const lifeTween = new TWEEN.Tween( uniformLife )
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- .to( { value: 1 }, 5000 )
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- .easing( TWEEN.Easing.Bounce.Out );
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- lifeTween.start();
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+ function random() {
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- const effectTween = new TWEEN.Tween( uniformEffector1 )
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- .to( { value: 1.2 }, 2500 )
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- .delay( 3000 )
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- .easing( TWEEN.Easing.Sinusoidal.InOut )
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- .onComplete( function () {
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-
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- secondaryTweens();
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-
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- } );
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- effectTween.start();
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+ return ( Math.random() - 0.5 ) * 2.0;
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}
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- function secondaryTweens() {
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-
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- uniformEffector1.value = - 0.2;
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- uniformEffector2.value = - 0.2;
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-
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- const effect2Tween = new TWEEN.Tween( uniformEffector2 )
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- .to( { value: 1.2 }, 3000 )
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- .repeat( Infinity )
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- .easing( TWEEN.Easing.Sinusoidal.InOut );
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- effect2Tween.start();
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-
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- const effectTween = new TWEEN.Tween( uniformEffector1 )
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- .to( { value: 1.2 }, 3000 )
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- .delay( 800 )
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- .repeat( Infinity )
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- .easing( TWEEN.Easing.Sinusoidal.InOut );
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- effectTween.start();
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- }
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- function createTreeMesh() {
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+ function createTreeMesh( boxMap ) {
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- const maxSteps = 6;
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- const angleLeft = Math.PI / 180 * 30;
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- const angleRight = Math.PI / 180 * 40;
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- const lengthMult = 0.88;
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+ const maxSteps = 5;
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+ const lengthMult = 0.8;
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const positions = [];
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const normals = [];
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@@ -234,6 +223,8 @@
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function createTreePart( angle, x, y, z, length, count ) {
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+ if ( Math.random() > ( maxSteps / count ) * 0.25 ) return;
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+
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if ( count < maxSteps ) {
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const newLength = length * lengthMult;
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@@ -246,9 +237,9 @@
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if ( size > 25 ) size = 25;
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if ( size < 10 ) size = 10;
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- size = size / 10;
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+ size = size / 100;
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- const subSteps = 60;
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+ const subSteps = 200;
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// below loop generates the instanced data for a tree part
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@@ -270,7 +261,7 @@
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positions.push( position.x, position.y, position.z );
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- const scale = 0.25 * Math.random();
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+ const scale = Math.random();
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// normal
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@@ -279,7 +270,7 @@
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// color
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- color.setHSL( 0.55 + Math.random() * 0.05, 1.0, 0.7 + Math.random() * 0.3 );
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+ color.setHSL( ( count / maxSteps ) * 0.5 + Math.random() * 0.05, 0.75, 0.6 + Math.random() * 0.1 );
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colors.push( color.r, color.g, color.b );
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// to save vertex buffers, we store the size, time and seed in a single attribute
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@@ -292,8 +283,12 @@
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}
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- createTreePart( angle - angleRight, newX, newY, newZ, newLength, count + 1 );
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- createTreePart( angle + angleLeft, newX, newY, newZ, newLength, count + 1 );
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+ createTreePart( angle + random(), newX, newY, newZ, newLength + random(), count + 1 );
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+ createTreePart( angle + random(), newX, newY, newZ, newLength + random(), count + 1 );
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+ createTreePart( angle + random(), newX, newY, newZ, newLength + random(), count + 1 );
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+ createTreePart( angle + random(), newX, newY, newZ, newLength + random(), count + 1 );
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+ createTreePart( angle + random(), newX, newY, newZ, newLength + random(), count + 1 );
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+ createTreePart( angle + random(), newX, newY, newZ, newLength + random(), count + 1 );
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}
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@@ -306,7 +301,7 @@
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createTreePart( angle, 0, 0, 0, 16, 0 );
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const geometry = new THREE.BoxGeometry();
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- const material = new THREE.MeshStandardNodeMaterial();
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+ const material = new THREE.MeshStandardNodeMaterial( { map: boxMap } );
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const mesh = new THREE.Mesh( geometry, material );
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mesh.scale.setScalar( 0.05 );
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mesh.count = instanceCount;
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@@ -321,13 +316,11 @@
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// TSL
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- const vVisibility = varyingProperty( 'float' );
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-
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const instancePosition = instancedBufferAttribute( attributePosition );
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const instanceNormal = instancedBufferAttribute( attributeNormal );
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const instanceColor = instancedBufferAttribute( attributeColor );
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const instanceData = instancedBufferAttribute( attributeData );
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-
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+
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material.positionNode = Fn( () => {
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const instanceSize = instanceData.x;
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@@ -342,18 +335,13 @@
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const dif2 = abs( instanceTime.sub( uniformEffector2 ) ).toConst();
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effect = dif2.lessThanEqual( 0.15 ).select( sub( 0.15, dif2 ).mul( sub( 1.7, instanceTime ).mul( 10 ) ), effect );
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- // life (controls the visibility and initial scale of the cubes)
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-
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- const scale = uniformLife.greaterThan( instanceTime ).select( min( 1, div( uniformLife.sub( instanceTime ), 0 ) ) ).oneMinus();
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- vVisibility.assign( uniformLife.greaterThan( instanceTime ).select( 1, 0 ) );
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-
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// accumulate different vertex animations
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let animated = positionLocal.add( instancePosition ).toVar();
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const direction = positionGeometry.normalize().toConst();
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animated = animated.add( direction.mul( effect.add( instanceSize ) ) );
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- animated = animated.sub( direction.mul( scale ) );
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+ animated = animated.sub( direction.mul( effect ) );
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animated = animated.add( instanceNormal.mul( effect.mul( 1 ) ) );
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animated = animated.add( instanceNormal.mul( abs( sin( time.add( instanceSeed.mul( 2 ) ) ).mul( 1.5 ) ) ) );
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@@ -363,12 +351,24 @@
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material.colorNode = Fn( () => {
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- vVisibility.equal( 0 ).discard();
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-
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return materialColor.mul( instanceColor );
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} )();
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+ material.emissiveNode = Fn( () => {
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+
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+ const instanceTime = instanceData.y;
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+
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+ const dif1 = abs( instanceTime.sub( uniformEffector1 ) ).toConst();
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+ const effect1 = dif1.lessThanEqual( 0.15 ).select( sub( 0.15, dif1 ).mul( sub( 1.7, instanceTime ).mul( 10 ) ), float( 0 ) );
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+
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+ const dif2 = abs( instanceTime.sub( uniformEffector2 ) ).toConst();
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+ const effect2 = dif2.lessThanEqual( 0.15 ).select( sub( 0.15, dif2 ).mul( sub( 1.7, instanceTime ).mul( 10 ) ), effect1 );
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+
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+ return vec3( effect1, 0, effect2 ).mul( instanceColor );
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+
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+ } )();
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+
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return mesh;
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}
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