Files
three.js/examples/materials_normalmap.html
T
alteredq 255c042b1e Added clear color parameter to WebGLRenderer constructor, also added setClearColor API call.
This allows to work around ANGLE antialiasing issue appearing when compositing WebGL framebuffer with transparent background color with HTML canvas element background (while keeping antialiasing on).

WebGLRenderer constructor now takes JSON object with few optional parameters:

    renderer = new THREE.WebGLRenderer { scene: scene,
                                         antialias: true,
                                         clearColor: 0x000000,
                                         clearAlpha: 0 };

Here is how to change clear color in runtime:

    renderer.setClearColor( 0xff0000, 1 );
2010-12-25 22:32:26 +01:00

283 lines
8.0 KiB
HTML

<!DOCTYPE HTML>
<html lang="en">
<head>
<title>three.js - webgl normal map</title>
<meta charset="utf-8">
<style type="text/css">
body {
background:#000;
color:#fff;
padding:0;
margin:0;
font-weight: bold;
overflow:hidden;
}
a { color: #ffffff; }
#info {
position: absolute;
top: 0px; width: 100%;
color: #ffffff;
padding: 5px;
font-family:Monospace;
font-size:13px;
text-align:center;
z-index:1000;
}
#oldie {
font-family:monospace;
font-size:13px;
text-align:center;
background:rgb(200,100,0);
color:#fff;
padding:1em;
width:475px;
margin:5em auto 0;
border:solid 2px #fff;
border-radius:10px;
display:none;
}
#vt { display:none }
#vt, #vt a { color:orange; }
.code { }
#log { position:absolute; top:50px; text-align:left; display:block; z-index:100 }
</style>
</head>
<body>
<pre id="log"></pre>
<div id="info">
<a href="http://github.com/mrdoob/three.js" target="_blank">three.js</a> - webgl (<span id="description">normal + ao + displacement</span>) map demo.
ninja head from <a href="http://developer.amd.com/archive/gpu/MeshMapper/pages/default.aspx" target="_blank">AMD GPU MeshMapper</a>
<div id="vt">displacement mapping needs vertex textures (GPU with Shader Model 3.0)<br/>
on Windows use <span class="code">Chrome --use-gl=desktop</span> or Firefox 4<br/>
please star this <a href="http://code.google.com/p/chromium/issues/detail?id=52497">Chrome issue</a> to get ANGLE support
</div>
</div>
<center>
<div id="oldie">
Sorry, your browser doesn't support <a href="http://khronos.org/webgl/wiki/Getting_a_WebGL_Implementation">WebGL</a>
and <a href="http://www.whatwg.org/specs/web-workers/current-work/">Web Workers</a>.<br/>
<br/>
Please try in
<a href="http://www.chromium.org/getting-involved/dev-channel">Chrome 9+</a> /
<a href="http://www.mozilla.com/en-US/firefox/all-beta.html">Firefox 4+</a> /
<a href="http://nightly.webkit.org/">Safari OSX 10.6+</a>
</div>
</center>
<script type="text/javascript" src="../build/ThreeExtras.js"></script>
<script type="text/javascript" src="js/Stats.js"></script>
<script type="text/javascript">
if ( !is_browser_compatible() ) {
document.getElementById( "oldie" ).style.display = "block";
}
var statsEnabled = true;
var container, stats, loader;
var camera, scene, webglRenderer;
var mesh, zmesh, lightMesh, geometry;
var mesh1, mesh2;
var directionalLight, pointLight, ambientLight;
var mouseX = 0;
var mouseY = 0;
var windowHalfX = window.innerWidth / 2;
var windowHalfY = window.innerHeight / 2;
var r = 0.0;
document.addEventListener( 'mousemove', onDocumentMouseMove, false );
init();
setInterval( loop, 1000 / 60 );
function init() {
container = document.createElement('div');
document.body.appendChild(container);
camera = new THREE.Camera( 60, window.innerWidth / window.innerHeight, 1, 100000 );
camera.projectionMatrix = THREE.Matrix4.makeOrtho( window.innerWidth / - 2, window.innerWidth / 2, window.innerHeight / 2, window.innerHeight / - 2, -10000, 10000 );
camera.position.z = 6200;
scene = new THREE.Scene();
// LIGHTS
ambientLight = new THREE.AmbientLight( 0x111111 );
scene.addLight( ambientLight );
pointLight = new THREE.PointLight( 0xffff55 );
pointLight.position.z = 10000;
scene.addLight( pointLight );
directionalLight = new THREE.DirectionalLight( 0xaaaa88 );
directionalLight.position.x = 1;
directionalLight.position.y = 1;
directionalLight.position.z = 0.5;
directionalLight.position.normalize();
scene.addLight( directionalLight );
// light representation
var sphere = new Sphere( 100, 16, 8, 1 );
lightMesh = new THREE.Mesh( sphere, new THREE.MeshBasicMaterial( { color:0xffaa00 } ) );
lightMesh.position = pointLight.position;
lightMesh.scale.x = lightMesh.scale.y = lightMesh.scale.z = 0.05;
scene.addObject(lightMesh);
// common material parameters
var ambient = 0x050505, diffuse = 0x555555, specular = 0xaa6600, shininess = 10, scale = 23;
// normal map shader
var fragment_shader = ShaderUtils.lib[ "normal" ].fragment_shader;
var vertex_shader = ShaderUtils.lib[ "normal" ].vertex_shader;
var uniforms = ShaderUtils.lib[ "normal" ].uniforms;
uniforms[ "tNormal" ].texture = ImageUtils.loadTexture( "textures/normal/ninja/normal.jpg" );
uniforms[ "tAO" ].texture = ImageUtils.loadTexture( "textures/normal/ninja/ao.jpg" );
uniforms[ "tDisplacement" ].texture = ImageUtils.loadTexture( "textures/normal/ninja/displacement.jpg" );
uniforms[ "uDisplacementBias" ].value = -0.428408 * scale;
uniforms[ "uDisplacementScale" ].value = 2.436143 * scale;
uniforms[ "uPointLightPos" ].value = pointLight.position;
uniforms[ "uPointLightColor" ].value = pointLight.color;
uniforms[ "uDirLightPos" ].value = directionalLight.position;
uniforms[ "uDirLightColor" ].value = directionalLight.color;
uniforms[ "uAmbientLightColor" ].value = ambientLight.color;
uniforms[ "uDiffuseColor" ].value.setHex( diffuse );
uniforms[ "uSpecularColor" ].value.setHex( specular );
uniforms[ "uAmbientColor" ].value.setHex( ambient );
uniforms[ "uShininess" ].value = shininess;
var material1 = new THREE.MeshShaderMaterial( { fragment_shader: fragment_shader,
vertex_shader: vertex_shader,
uniforms: uniforms
} );
var material2 = new THREE.MeshPhongMaterial( { color: diffuse, specular: specular, ambient: ambient, shininess: shininess } );
loader = new THREE.Loader( true );
document.body.appendChild( loader.statusDomElement );
loader.loadBinary( "obj/ninja/NinjaLo_bin.js", function( geometry ) { createScene( geometry, scale, material1, material2 ) }, "obj/ninja" );
webglRenderer = new THREE.WebGLRenderer( { scene: scene } );
webglRenderer.setSize( window.innerWidth, window.innerHeight );
container.appendChild( webglRenderer.domElement );
var description = "normal + ao" + ( webglRenderer.supportsVertexTextures() ? " + displacement" : " + <strike>displacement</strike>" );
document.getElementById( "description" ).innerHTML = description;
document.getElementById( "vt" ).style.display = webglRenderer.supportsVertexTextures() ? "none" : "block";
if ( statsEnabled ) {
stats = new Stats();
stats.domElement.style.position = 'absolute';
stats.domElement.style.top = '0px';
stats.domElement.style.zIndex = 100;
container.appendChild( stats.domElement );
}
}
function createScene( geometry, scale, material1, material2 ) {
geometry.computeTangents();
mesh1 = SceneUtils.addMesh( scene, geometry, scale, -scale * 12, 0, 0, 0,0,0, material1 );
mesh2 = SceneUtils.addMesh( scene, geometry, scale, scale * 12, 0, 0, 0,0,0, material2 );
loader.statusDomElement.style.display = "none";
}
function onDocumentMouseMove(event) {
mouseX = ( event.clientX - windowHalfX ) * 10;
mouseY = ( event.clientY - windowHalfY ) * 10;
}
function loop() {
var ry = mouseX * 0.0003, rx = mouseY * 0.0003;
if( mesh1 ) {
mesh1.rotation.y = ry;
mesh1.rotation.x = rx;
}
if( mesh2 ) {
mesh2.rotation.y = ry;
mesh2.rotation.x = rx;
}
lightMesh.position.x = 2500 * Math.cos( r );
lightMesh.position.z = 2500 * Math.sin( r );
r += 0.01;
webglRenderer.render( scene, camera );
if ( statsEnabled ) stats.update();
}
function log( text ) {
var e = document.getElementById("log");
e.innerHTML = text + "<br/>" + e.innerHTML;
}
function is_browser_compatible() {
// WebGL support
try { var test = new Float32Array(1); } catch(e) { return false; }
// Web workers
return !!window.Worker;
}
</script>
</body>
</html>