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| THREE.ParametricGeometries = { |
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| klein: function ( v, u, target ) { |
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| u *= Math.PI; |
| v *= 2 * Math.PI; |
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| u = u * 2; |
| var x, y, z; |
| if ( u < Math.PI ) { |
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| x = 3 * Math.cos( u ) * ( 1 + Math.sin( u ) ) + ( 2 * ( 1 - Math.cos( u ) / 2 ) ) * Math.cos( u ) * Math.cos( v ); |
| z = - 8 * Math.sin( u ) - 2 * ( 1 - Math.cos( u ) / 2 ) * Math.sin( u ) * Math.cos( v ); |
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| } else { |
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| x = 3 * Math.cos( u ) * ( 1 + Math.sin( u ) ) + ( 2 * ( 1 - Math.cos( u ) / 2 ) ) * Math.cos( v + Math.PI ); |
| z = - 8 * Math.sin( u ); |
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| } |
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| y = - 2 * ( 1 - Math.cos( u ) / 2 ) * Math.sin( v ); |
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| target.set( x, y, z ); |
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| }, |
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| plane: function ( width, height ) { |
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| return function ( u, v, target ) { |
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| var x = u * width; |
| var y = 0; |
| var z = v * height; |
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| target.set( x, y, z ); |
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| }; |
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| }, |
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| mobius: function ( u, t, target ) { |
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| u = u - 0.5; |
| var v = 2 * Math.PI * t; |
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| var x, y, z; |
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| var a = 2; |
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| x = Math.cos( v ) * ( a + u * Math.cos( v / 2 ) ); |
| y = Math.sin( v ) * ( a + u * Math.cos( v / 2 ) ); |
| z = u * Math.sin( v / 2 ); |
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| target.set( x, y, z ); |
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| }, |
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| mobius3d: function ( u, t, target ) { |
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| |
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| u *= Math.PI; |
| t *= 2 * Math.PI; |
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| u = u * 2; |
| var phi = u / 2; |
| var major = 2.25, a = 0.125, b = 0.65; |
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| var x, y, z; |
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| x = a * Math.cos( t ) * Math.cos( phi ) - b * Math.sin( t ) * Math.sin( phi ); |
| z = a * Math.cos( t ) * Math.sin( phi ) + b * Math.sin( t ) * Math.cos( phi ); |
| y = ( major + x ) * Math.sin( u ); |
| x = ( major + x ) * Math.cos( u ); |
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| target.set( x, y, z ); |
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| } |
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| }; |
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| THREE.ParametricGeometries.TubeGeometry = function ( path, segments, radius, segmentsRadius, closed, debug ) { |
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| this.path = path; |
| this.segments = segments || 64; |
| this.radius = radius || 1; |
| this.segmentsRadius = segmentsRadius || 8; |
| this.closed = closed || false; |
| if ( debug ) this.debug = new THREE.Object3D(); |
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| var scope = this, numpoints = this.segments + 1; |
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| var frames = path.computeFrenetFrames( segments, closed ), |
| tangents = frames.tangents, |
| normals = frames.normals, |
| binormals = frames.binormals; |
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| |
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| this.tangents = tangents; |
| this.normals = normals; |
| this.binormals = binormals; |
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| var ParametricTube = function ( u, v, target ) { |
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| v *= 2 * Math.PI; |
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| var i = u * ( numpoints - 1 ); |
| i = Math.floor( i ); |
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| var pos = path.getPointAt( u ); |
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| var tangent = tangents[ i ]; |
| var normal = normals[ i ]; |
| var binormal = binormals[ i ]; |
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| if ( scope.debug ) { |
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| scope.debug.add( new THREE.ArrowHelper( tangent, pos, radius, 0x0000ff ) ); |
| scope.debug.add( new THREE.ArrowHelper( normal, pos, radius, 0xff0000 ) ); |
| scope.debug.add( new THREE.ArrowHelper( binormal, pos, radius, 0x00ff00 ) ); |
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| } |
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| var cx = - scope.radius * Math.cos( v ); |
| var cy = scope.radius * Math.sin( v ); |
|
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| pos.x += cx * normal.x + cy * binormal.x; |
| pos.y += cx * normal.y + cy * binormal.y; |
| pos.z += cx * normal.z + cy * binormal.z; |
|
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| target.copy( pos ); |
|
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| }; |
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| THREE.ParametricGeometry.call( this, ParametricTube, segments, segmentsRadius ); |
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| }; |
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| THREE.ParametricGeometries.TubeGeometry.prototype = Object.create( THREE.Geometry.prototype ); |
| THREE.ParametricGeometries.TubeGeometry.prototype.constructor = THREE.ParametricGeometries.TubeGeometry; |
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| THREE.ParametricGeometries.TorusKnotGeometry = function ( radius, tube, segmentsT, segmentsR, p, q ) { |
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| this.radius = radius || 200; |
| this.tube = tube || 40; |
| this.segmentsT = segmentsT || 64; |
| this.segmentsR = segmentsR || 8; |
| this.p = p || 2; |
| this.q = q || 3; |
|
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| function TorusKnotCurve() { |
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| THREE.Curve.call( this ); |
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| } |
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| TorusKnotCurve.prototype = Object.create( THREE.Curve.prototype ); |
| TorusKnotCurve.prototype.constructor = TorusKnotCurve; |
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| TorusKnotCurve.prototype.getPoint = function ( t, optionalTarget ) { |
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| var point = optionalTarget || new THREE.Vector3(); |
|
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| t *= Math.PI * 2; |
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| var r = 0.5; |
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| var x = ( 1 + r * Math.cos( q * t ) ) * Math.cos( p * t ); |
| var y = ( 1 + r * Math.cos( q * t ) ) * Math.sin( p * t ); |
| var z = r * Math.sin( q * t ); |
|
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| return point.set( x, y, z ).multiplyScalar( radius ); |
|
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| }; |
|
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| var segments = segmentsT; |
| var radiusSegments = segmentsR; |
| var extrudePath = new TorusKnotCurve(); |
|
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| THREE.ParametricGeometries.TubeGeometry.call( this, extrudePath, segments, tube, radiusSegments, true, false ); |
|
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| }; |
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| THREE.ParametricGeometries.TorusKnotGeometry.prototype = Object.create( THREE.Geometry.prototype ); |
| THREE.ParametricGeometries.TorusKnotGeometry.prototype.constructor = THREE.ParametricGeometries.TorusKnotGeometry; |
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| THREE.ParametricGeometries.SphereGeometry = function ( size, u, v ) { |
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| function sphere( u, v, target ) { |
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| u *= Math.PI; |
| v *= 2 * Math.PI; |
|
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| var x = size * Math.sin( u ) * Math.cos( v ); |
| var y = size * Math.sin( u ) * Math.sin( v ); |
| var z = size * Math.cos( u ); |
|
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| target.set( x, y, z ); |
|
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| } |
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| THREE.ParametricGeometry.call( this, sphere, u, v ); |
|
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| }; |
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| THREE.ParametricGeometries.SphereGeometry.prototype = Object.create( THREE.Geometry.prototype ); |
| THREE.ParametricGeometries.SphereGeometry.prototype.constructor = THREE.ParametricGeometries.SphereGeometry; |
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| THREE.ParametricGeometries.PlaneGeometry = function ( width, depth, segmentsWidth, segmentsDepth ) { |
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| function plane( u, v, target ) { |
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| var x = u * width; |
| var y = 0; |
| var z = v * depth; |
|
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| target.set( x, y, z ); |
|
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| } |
|
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| THREE.ParametricGeometry.call( this, plane, segmentsWidth, segmentsDepth ); |
|
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| }; |
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| THREE.ParametricGeometries.PlaneGeometry.prototype = Object.create( THREE.Geometry.prototype ); |
| THREE.ParametricGeometries.PlaneGeometry.prototype.constructor = THREE.ParametricGeometries.PlaneGeometry; |
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