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@@ -2,104 +2,111 @@
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* @author mrdoob / http://mrdoob.com/
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* @author mrdoob / http://mrdoob.com/
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*/
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*/
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-THREE.VTKLoader = function () {};
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+THREE.VTKLoader = function () {
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-THREE.VTKLoader.prototype = new THREE.Loader();
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-THREE.VTKLoader.prototype.constructor = THREE.VTKLoader;
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+ THREE.EventTarget.call( this );
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-THREE.VTKLoader.prototype.load = function ( url, callback ) {
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+};
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+
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+THREE.VTKLoader.prototype = {
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+
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+ constructor: THREE.VTKLoader,
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+
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+ load: function ( url ) {
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+
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+ var scope = this;
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+ var xhr = new XMLHttpRequest();
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- var that = this;
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- var xhr = new XMLHttpRequest();
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+ xhr.onreadystatechange = function () {
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- xhr.onreadystatechange = function () {
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+ if ( xhr.readyState == 4 ) {
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- if ( xhr.readyState == 4 ) {
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+ if ( xhr.status == 200 || xhr.status == 0 ) {
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- if ( xhr.status == 200 || xhr.status == 0 ) {
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+ scope.dispatchEvent( { type: 'complete', content: scope.parse( xhr.responseText ) } );
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- callback( that.parse( xhr.responseText ) );
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+ } else {
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- } else {
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+ scope.dispatchEvent( { type: 'error', status: xhr.status } );
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- console.error( 'THREE.VTKLoader: Couldn\'t load ' + url + ' (' + xhr.status + ')' );
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+ }
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}
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}
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- }
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+ };
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- };
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+ xhr.open( 'GET', url, true );
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+ xhr.send( null );
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- xhr.open( "GET", url, true );
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- xhr.send( null );
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+ },
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-};
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+ parse: function ( data ) {
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-THREE.VTKLoader.prototype.parse = function ( data ) {
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+ var geometry = new THREE.Geometry();
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- var geometry = new THREE.Geometry();
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+ function vertex( x, y, z ) {
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- function vertex( x, y, z ) {
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+ geometry.vertices.push( new THREE.Vector3( x, y, z ) );
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- geometry.vertices.push( new THREE.Vector3( x, y, z ) );
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+ }
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- }
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+ function face3( a, b, c ) {
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- function face3( a, b, c ) {
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+ geometry.faces.push( new THREE.Face3( a, b, c ) );
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- geometry.faces.push( new THREE.Face3( a, b, c ) );
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+ }
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- }
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+ function face4( a, b, c, d ) {
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- function face4( a, b, c, d ) {
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+ geometry.faces.push( new THREE.Face4( a, b, c, d ) );
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- geometry.faces.push( new THREE.Face4( a, b, c, d ) );
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+ }
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- }
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+ var pattern, result;
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- var pattern, result;
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+ // float float float
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- // float float float
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+ pattern = /([\d|\.|\+|\-|e]+)[ ]+([\d|\.|\+|\-|e]+)[ ]+([\d|\.|\+|\-|e]+)/g;
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- pattern = /([\d|\.|\+|\-|e]+)[ ]+([\d|\.|\+|\-|e]+)[ ]+([\d|\.|\+|\-|e]+)/g;
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+ while ( ( result = pattern.exec( data ) ) != null ) {
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- while ( ( result = pattern.exec( data ) ) != null ) {
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+ // ["1.0 2.0 3.0", "1.0", "2.0", "3.0"]
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- // ["1.0 2.0 3.0", "1.0", "2.0", "3.0"]
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+ vertex( parseFloat( result[ 1 ] ), parseFloat( result[ 2 ] ), parseFloat( result[ 3 ] ) );
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- vertex( parseFloat( result[ 1 ] ), parseFloat( result[ 2 ] ), parseFloat( result[ 3 ] ) );
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+ }
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- }
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+ // 3 int int int
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- // 3 int int int
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+ pattern = /3[ ]+([\d]+)[ ]+([\d]+)[ ]+([\d]+)/g;
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- pattern = /3[ ]+([\d]+)[ ]+([\d]+)[ ]+([\d]+)/g;
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+ while ( ( result = pattern.exec( data ) ) != null ) {
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- while ( ( result = pattern.exec( data ) ) != null ) {
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+ // ["3 1 2 3", "1", "2", "3"]
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- // ["3 1 2 3", "1", "2", "3"]
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+ face3( parseInt( result[ 1 ] ), parseInt( result[ 2 ] ), parseInt( result[ 3 ] ) );
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- face3( parseInt( result[ 1 ] ), parseInt( result[ 2 ] ), parseInt( result[ 3 ] ) );
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+ }
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- }
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+ // 4 int int int int
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- // 4 int int int int
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+ pattern = /4[ ]+([\d]+)[ ]+([\d]+)[ ]+([\d]+)[ ]+([\d]+)/g;
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- pattern = /4[ ]+([\d]+)[ ]+([\d]+)[ ]+([\d]+)[ ]+([\d]+)/g;
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+ while ( ( result = pattern.exec( data ) ) != null ) {
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- while ( ( result = pattern.exec( data ) ) != null ) {
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+ // ["4 1 2 3 4", "1", "2", "3", "4"]
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- // ["4 1 2 3 4", "1", "2", "3", "4"]
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+ face4( parseInt( result[ 1 ] ), parseInt( result[ 2 ] ), parseInt( result[ 3 ] ), parseInt( result[ 4 ] ) );
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- face4( parseInt( result[ 1 ] ), parseInt( result[ 2 ] ), parseInt( result[ 3 ] ), parseInt( result[ 4 ] ) );
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+ }
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- }
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+ geometry.computeCentroids();
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+ geometry.computeFaceNormals();
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+ geometry.computeVertexNormals();
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+ geometry.computeBoundingSphere();
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- geometry.computeCentroids();
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- geometry.computeFaceNormals();
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- geometry.computeVertexNormals();
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- geometry.computeBoundingSphere();
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+ return geometry;
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- return geometry;
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+ }
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}
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}
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