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webgpu_camera_logarithmicdepthbuffer.html 11 KB

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  1. <!DOCTYPE html>
  2. <html lang="en">
  3. <head>
  4. <title>three.js webgpu - logarithmic depth buffer</title>
  5. <meta charset="utf-8">
  6. <meta name="viewport" content="width=device-width, user-scalable=no, minimum-scale=1.0, maximum-scale=1.0">
  7. <meta property="og:title" content="three.js webgpu - logarithmic depth buffer">
  8. <meta property="og:type" content="website">
  9. <meta property="og:url" content="https://threejs.org/examples/webgpu_camera_logarithmicdepthbuffer.html">
  10. <meta property="og:image" content="https://threejs.org/examples/screenshots/webgpu_camera_logarithmicdepthbuffer.jpg">
  11. <link type="text/css" rel="stylesheet" href="example.css">
  12. <style>
  13. body{
  14. touch-action: none;
  15. }
  16. .renderer_label {
  17. position: absolute;
  18. bottom: 1em;
  19. width: 100%;
  20. color: white;
  21. z-index: 10;
  22. display: block;
  23. text-align: center;
  24. }
  25. #container {
  26. display: flex;
  27. }
  28. #container_normal {
  29. width: 50%;
  30. display: inline-block;
  31. position: relative;
  32. }
  33. #container_logzbuf {
  34. width: 50%;
  35. display: inline-block;
  36. position: relative;
  37. }
  38. #renderer_border {
  39. position: absolute;
  40. top: 0;
  41. left: 25%;
  42. bottom: 0;
  43. width: 2px;
  44. z-index: 10;
  45. opacity: .8;
  46. background: #ccc;
  47. border: 1px inset #ccc;
  48. cursor: col-resize;
  49. }
  50. </style>
  51. </head>
  52. <body>
  53. <div id="container">
  54. <div id="container_normal"><h2 class="renderer_label">normal z-buffer</h2></div>
  55. <div id="container_logzbuf"><h2 class="renderer_label">logarithmic z-buffer</h2></div>
  56. <div id="renderer_border"></div>
  57. </div>
  58. <div id="info">
  59. <a href="https://threejs.org/" target="_blank" rel="noopener" class="logo-link"></a>
  60. <div class="title-wrapper">
  61. <a href="https://threejs.org/" target="_blank" rel="noopener">three.js</a><span>Logarithmic Depth Buffer</span>
  62. </div>
  63. <small>Mousewheel to dolly out.</small>
  64. </div>
  65. <script type="importmap">
  66. {
  67. "imports": {
  68. "three": "../build/three.webgpu.js",
  69. "three/webgpu": "../build/three.webgpu.js",
  70. "three/tsl": "../build/three.tsl.js",
  71. "three/addons/": "./jsm/"
  72. }
  73. }
  74. </script>
  75. <script type="module">
  76. import * as THREE from 'three/webgpu';
  77. import { Inspector } from 'three/addons/inspector/Inspector.js';
  78. import { FontLoader } from 'three/addons/loaders/FontLoader.js';
  79. import { TextGeometry } from 'three/addons/geometries/TextGeometry.js';
  80. // 1 micrometer to 100 billion light years in one scene, with 1 unit = 1 meter? preposterous! and yet...
  81. const NEAR = 1e-6, FAR = 1e27;
  82. let SCREEN_WIDTH = window.innerWidth;
  83. let SCREEN_HEIGHT = window.innerHeight;
  84. let screensplit = .25, screensplit_right = 0;
  85. const mouse = [ .5, .5 ];
  86. let zoompos = - 100, minzoomspeed = .015;
  87. let zoomspeed = minzoomspeed;
  88. let border;
  89. const objects = {};
  90. // Generate a number of text labels, from 1µm in size up to 100,000,000 light years
  91. // Try to use some descriptive real-world examples of objects at each scale
  92. const labeldata = [
  93. { size: .01, scale: 0.0001, label: 'microscopic (1µm)' }, // FIXME - triangulating text fails at this size, so we scale instead
  94. { size: .01, scale: 0.1, label: 'minuscule (1mm)' },
  95. { size: .01, scale: 1.0, label: 'tiny (1cm)' },
  96. { size: 1, scale: 1.0, label: 'child-sized (1m)' },
  97. { size: 10, scale: 1.0, label: 'tree-sized (10m)' },
  98. { size: 100, scale: 1.0, label: 'building-sized (100m)' },
  99. { size: 1000, scale: 1.0, label: 'medium (1km)' },
  100. { size: 10000, scale: 1.0, label: 'city-sized (10km)' },
  101. { size: 3400000, scale: 1.0, label: 'moon-sized (3,400 Km)' },
  102. { size: 12000000, scale: 1.0, label: 'planet-sized (12,000 km)' },
  103. { size: 1400000000, scale: 1.0, label: 'sun-sized (1,400,000 km)' },
  104. { size: 7.47e12, scale: 1.0, label: 'solar system-sized (50Au)' },
  105. { size: 9.4605284e15, scale: 1.0, label: 'gargantuan (1 light year)' },
  106. { size: 3.08567758e16, scale: 1.0, label: 'ludicrous (1 parsec)' },
  107. { size: 1e19, scale: 1.0, label: 'mind boggling (1000 light years)' }
  108. ];
  109. init().then( animate );
  110. async function init() {
  111. const loader = new FontLoader();
  112. const font = await loader.loadAsync( 'fonts/helvetiker_regular.typeface.json' );
  113. const scene = initScene( font );
  114. // Initialize two copies of the same scene, one with normal z-buffer and one with logarithmic z-buffer
  115. objects.normal = await initView( scene, 'normal', false );
  116. objects.logzbuf = await initView( scene, 'logzbuf', true );
  117. // Resize border allows the user to easily compare effects of logarithmic depth buffer over the whole scene
  118. border = document.getElementById( 'renderer_border' );
  119. border.addEventListener( 'pointerdown', onBorderPointerDown );
  120. window.addEventListener( 'mousemove', onMouseMove );
  121. window.addEventListener( 'resize', onWindowResize );
  122. window.addEventListener( 'wheel', onMouseWheel );
  123. }
  124. async function initView( scene, name, logDepthBuf ) {
  125. const framecontainer = document.getElementById( 'container_' + name );
  126. const camera = new THREE.PerspectiveCamera( 50, screensplit * SCREEN_WIDTH / SCREEN_HEIGHT, NEAR, FAR );
  127. scene.add( camera );
  128. const renderer = new THREE.WebGPURenderer( { antialias: true, logarithmicDepthBuffer: logDepthBuf } );
  129. renderer.setPixelRatio( window.devicePixelRatio );
  130. renderer.setSize( SCREEN_WIDTH / 2, SCREEN_HEIGHT );
  131. renderer.domElement.style.position = 'relative';
  132. renderer.domElement.id = 'renderer_' + name;
  133. renderer.inspector = new Inspector();
  134. framecontainer.appendChild( renderer.domElement );
  135. await renderer.init();
  136. return { container: framecontainer, renderer: renderer, scene: scene, camera: camera };
  137. }
  138. function initScene( font ) {
  139. const scene = new THREE.Scene();
  140. scene.background = new THREE.Color( 0x000000 );
  141. scene.add( new THREE.AmbientLight( 0x777777 ) );
  142. const light = new THREE.DirectionalLight( 0xffffff, 3 );
  143. light.position.set( 100, 100, 100 );
  144. scene.add( light );
  145. const materialargs = {
  146. color: 0xffffff,
  147. specular: 0x050505,
  148. shininess: 50,
  149. emissive: 0x000000
  150. };
  151. const geometry = new THREE.SphereGeometry( 0.5, 24, 12 );
  152. for ( let i = 0; i < labeldata.length; i ++ ) {
  153. const scale = labeldata[ i ].scale || 1;
  154. const labelgeo = new TextGeometry( labeldata[ i ].label, {
  155. font: font,
  156. size: labeldata[ i ].size,
  157. depth: labeldata[ i ].size / 2
  158. } );
  159. labelgeo.computeBoundingSphere();
  160. // center text
  161. labelgeo.translate( - labelgeo.boundingSphere.radius, 0, 0 );
  162. materialargs.color = new THREE.Color().setHSL( Math.random(), 0.5, 0.5 );
  163. const material = new THREE.MeshPhongMaterial( materialargs );
  164. const group = new THREE.Group();
  165. group.position.z = - labeldata[ i ].size * scale;
  166. scene.add( group );
  167. const textmesh = new THREE.Mesh( labelgeo, material );
  168. textmesh.scale.set( scale, scale, scale );
  169. textmesh.position.z = - labeldata[ i ].size * scale;
  170. textmesh.position.y = labeldata[ i ].size / 4 * scale;
  171. group.add( textmesh );
  172. const dotmesh = new THREE.Mesh( geometry, material );
  173. dotmesh.position.y = - labeldata[ i ].size / 4 * scale;
  174. dotmesh.scale.multiplyScalar( labeldata[ i ].size * scale );
  175. group.add( dotmesh );
  176. }
  177. return scene;
  178. }
  179. function updateRendererSizes() {
  180. // Recalculate size for both renderers when screen size or split location changes
  181. SCREEN_WIDTH = window.innerWidth;
  182. SCREEN_HEIGHT = window.innerHeight;
  183. screensplit_right = 1 - screensplit;
  184. objects.normal.renderer.setSize( screensplit * SCREEN_WIDTH, SCREEN_HEIGHT );
  185. objects.normal.camera.aspect = screensplit * SCREEN_WIDTH / SCREEN_HEIGHT;
  186. objects.normal.camera.updateProjectionMatrix();
  187. objects.normal.camera.setViewOffset( SCREEN_WIDTH, SCREEN_HEIGHT, 0, 0, SCREEN_WIDTH * screensplit, SCREEN_HEIGHT );
  188. objects.normal.container.style.width = ( screensplit * 100 ) + '%';
  189. objects.logzbuf.renderer.setSize( screensplit_right * SCREEN_WIDTH, SCREEN_HEIGHT );
  190. objects.logzbuf.camera.aspect = screensplit_right * SCREEN_WIDTH / SCREEN_HEIGHT;
  191. objects.logzbuf.camera.updateProjectionMatrix();
  192. objects.logzbuf.camera.setViewOffset( SCREEN_WIDTH, SCREEN_HEIGHT, SCREEN_WIDTH * screensplit, 0, SCREEN_WIDTH * screensplit_right, SCREEN_HEIGHT );
  193. objects.logzbuf.container.style.width = ( screensplit_right * 100 ) + '%';
  194. border.style.left = ( screensplit * 100 ) + '%';
  195. }
  196. function animate() {
  197. requestAnimationFrame( animate );
  198. // Put some limits on zooming
  199. const minzoom = labeldata[ 0 ].size * labeldata[ 0 ].scale * 1;
  200. const maxzoom = labeldata[ labeldata.length - 1 ].size * labeldata[ labeldata.length - 1 ].scale * 100;
  201. let damping = ( Math.abs( zoomspeed ) > minzoomspeed ? .95 : 1.0 );
  202. // Zoom out faster the further out you go
  203. const zoom = THREE.MathUtils.clamp( Math.pow( Math.E, zoompos ), minzoom, maxzoom );
  204. zoompos = Math.log( zoom );
  205. // Slow down quickly at the zoom limits
  206. if ( ( zoom == minzoom && zoomspeed < 0 ) || ( zoom == maxzoom && zoomspeed > 0 ) ) {
  207. damping = .85;
  208. }
  209. zoompos += zoomspeed;
  210. zoomspeed *= damping;
  211. objects.normal.camera.position.x = Math.sin( .5 * Math.PI * ( mouse[ 0 ] - .5 ) ) * zoom;
  212. objects.normal.camera.position.y = Math.sin( .25 * Math.PI * ( mouse[ 1 ] - .5 ) ) * zoom;
  213. objects.normal.camera.position.z = Math.cos( .5 * Math.PI * ( mouse[ 0 ] - .5 ) ) * zoom;
  214. objects.normal.camera.lookAt( objects.normal.scene.position );
  215. // Clone camera settings across both scenes
  216. objects.logzbuf.camera.position.copy( objects.normal.camera.position );
  217. objects.logzbuf.camera.quaternion.copy( objects.normal.camera.quaternion );
  218. // Update renderer sizes if the split has changed
  219. if ( screensplit_right != 1 - screensplit ) {
  220. updateRendererSizes();
  221. }
  222. objects.normal.renderer.render( objects.normal.scene, objects.normal.camera );
  223. objects.logzbuf.renderer.render( objects.logzbuf.scene, objects.logzbuf.camera );
  224. }
  225. function onWindowResize() {
  226. updateRendererSizes();
  227. }
  228. function onBorderPointerDown() {
  229. // activate draggable window resizing bar
  230. window.addEventListener( 'pointermove', onBorderPointerMove );
  231. window.addEventListener( 'pointerup', onBorderPointerUp );
  232. }
  233. function onBorderPointerMove( ev ) {
  234. screensplit = Math.max( 0, Math.min( 1, ev.clientX / window.innerWidth ) );
  235. }
  236. function onBorderPointerUp() {
  237. window.removeEventListener( 'pointermove', onBorderPointerMove );
  238. window.removeEventListener( 'pointerup', onBorderPointerUp );
  239. }
  240. function onMouseMove( ev ) {
  241. mouse[ 0 ] = ev.clientX / window.innerWidth;
  242. mouse[ 1 ] = ev.clientY / window.innerHeight;
  243. }
  244. function onMouseWheel( ev ) {
  245. const amount = ev.deltaY;
  246. if ( amount === 0 ) return;
  247. const dir = amount / Math.abs( amount );
  248. zoomspeed = dir / 10;
  249. // Slow down default zoom speed after user starts zooming, to give them more control
  250. minzoomspeed = 0.001;
  251. }
  252. </script>
  253. </body>
  254. </html>
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