FBXLoader.js 95 KB

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  1. /**
  2. * @author Kyle-Larson https://github.com/Kyle-Larson
  3. * @author Takahiro https://github.com/takahirox
  4. *
  5. * Loader loads FBX file and generates Group representing FBX scene.
  6. * Requires FBX file to be >= 7.0 and in ASCII or to be any version in Binary format.
  7. *
  8. * Supports:
  9. * Mesh Generation (Positional Data)
  10. * Normal Data (Per Vertex Drawing Instance)
  11. * UV Data (Per Vertex Drawing Instance)
  12. * Skinning
  13. * Animation
  14. * - Separated Animations based on stacks.
  15. * - Skeletal & Non-Skeletal Animations
  16. * NURBS (Open, Closed and Periodic forms)
  17. *
  18. * Needs Support:
  19. * Indexed Buffers
  20. * PreRotation support.
  21. * Euler rotation order
  22. *
  23. * FBX format references:
  24. * https://wiki.blender.org/index.php/User:Mont29/Foundation/FBX_File_Structure
  25. *
  26. * Binary format specification:
  27. * https://code.blender.org/2013/08/fbx-binary-file-format-specification/
  28. * https://wiki.rogiken.org/specifications/file-format/fbx/ (more detail but Japanese)
  29. */
  30. ( function () {
  31. THREE.FBXLoader = function ( manager ) {
  32. this.manager = ( manager !== undefined ) ? manager : THREE.DefaultLoadingManager;
  33. };
  34. Object.assign( THREE.FBXLoader.prototype, {
  35. load: function ( url, onLoad, onProgress, onError ) {
  36. var self = this;
  37. var resourceDirectory = THREE.Loader.prototype.extractUrlBase( url );
  38. var loader = new THREE.FileLoader( this.manager );
  39. loader.setResponseType( 'arraybuffer' );
  40. loader.load( url, function ( buffer ) {
  41. try {
  42. var scene = self.parse( buffer, resourceDirectory );
  43. onLoad( scene );
  44. } catch ( error ) {
  45. window.setTimeout( function () {
  46. if ( onError ) onError( error );
  47. self.manager.itemError( url );
  48. }, 0 );
  49. }
  50. }, onProgress, onError );
  51. },
  52. parse: function ( FBXBuffer, resourceDirectory ) {
  53. var FBXTree;
  54. if ( isFbxFormatBinary( FBXBuffer ) ) {
  55. FBXTree = new BinaryParser().parse( FBXBuffer );
  56. } else {
  57. var FBXText = convertArrayBufferToString( FBXBuffer );
  58. if ( ! isFbxFormatASCII( FBXText ) ) {
  59. throw new Error( 'THREE.FBXLoader: Unknown format.' );
  60. }
  61. if ( getFbxVersion( FBXText ) < 7000 ) {
  62. throw new Error( 'THREE.FBXLoader: FBX version not supported, FileVersion: ' + getFbxVersion( FBXText ) );
  63. }
  64. FBXTree = new TextParser().parse( FBXText );
  65. }
  66. console.log( FBXTree );
  67. var connections = parseConnections( FBXTree );
  68. var images = parseImages( FBXTree );
  69. var textures = parseTextures( FBXTree, new THREE.TextureLoader( this.manager ).setPath( resourceDirectory ), images, connections );
  70. var materials = parseMaterials( FBXTree, textures, connections );
  71. var deformers = parseDeformers( FBXTree, connections );
  72. var geometryMap = parseGeometries( FBXTree, connections, deformers );
  73. var sceneGraph = parseScene( FBXTree, connections, deformers, geometryMap, materials );
  74. return sceneGraph;
  75. }
  76. } );
  77. // Parses FBXTree.Connections which holds parent-child connections between objects (e.g. material -> texture, model->geometry )
  78. // and details the connection type
  79. function parseConnections( FBXTree ) {
  80. var connectionMap = new Map();
  81. if ( 'Connections' in FBXTree ) {
  82. var connectionArray = FBXTree.Connections.properties.connections;
  83. for ( var connectionArrayIndex = 0, connectionArrayLength = connectionArray.length; connectionArrayIndex < connectionArrayLength; ++ connectionArrayIndex ) {
  84. var connection = connectionArray[ connectionArrayIndex ];
  85. if ( ! connectionMap.has( connection[ 0 ] ) ) {
  86. connectionMap.set( connection[ 0 ], {
  87. parents: [],
  88. children: []
  89. } );
  90. }
  91. var parentRelationship = { ID: connection[ 1 ], relationship: connection[ 2 ] };
  92. connectionMap.get( connection[ 0 ] ).parents.push( parentRelationship );
  93. if ( ! connectionMap.has( connection[ 1 ] ) ) {
  94. connectionMap.set( connection[ 1 ], {
  95. parents: [],
  96. children: []
  97. } );
  98. }
  99. var childRelationship = { ID: connection[ 0 ], relationship: connection[ 2 ] };
  100. connectionMap.get( connection[ 1 ] ).children.push( childRelationship );
  101. }
  102. }
  103. return connectionMap;
  104. }
  105. // Parses map of images referenced in FBXTree.Objects.subNodes.Video
  106. // Images can either be referenced externally or embedded in the file
  107. // These images are connected to textures in FBXTree.Objects.subNodes.Textures
  108. // via FBXTree.Connections. Note that images can be duplicated here, in which case only one
  109. // will will have a .Content field
  110. function parseImages( FBXTree ) {
  111. var imageMap = new Map();
  112. if ( 'Video' in FBXTree.Objects.subNodes ) {
  113. var videoNodes = FBXTree.Objects.subNodes.Video;
  114. for ( var nodeID in videoNodes ) {
  115. var videoNode = videoNodes[ nodeID ];
  116. // raw image data is in videoNode.properties.Content
  117. if ( 'Content' in videoNode.properties ) {
  118. var image = parseImage( videoNodes[ nodeID ] );
  119. imageMap.set( parseInt( nodeID ), image );
  120. }
  121. }
  122. }
  123. return imageMap;
  124. }
  125. // Parse embedded image data in FBXTree.Video.properties.Content
  126. function parseImage( videoNode ) {
  127. var content = videoNode.properties.Content;
  128. var fileName = videoNode.properties.RelativeFilename || videoNode.properties.Filename;
  129. var extension = fileName.slice( fileName.lastIndexOf( '.' ) + 1 ).toLowerCase();
  130. var type;
  131. switch ( extension ) {
  132. case 'bmp':
  133. type = 'image/bmp';
  134. break;
  135. case 'jpg':
  136. case 'jpeg':
  137. type = 'image/jpeg';
  138. break;
  139. case 'png':
  140. type = 'image/png';
  141. break;
  142. case 'tif':
  143. type = 'image/tiff';
  144. break;
  145. default:
  146. console.warn( 'FBXLoader: Image type "' + extension + '" is not supported.' );
  147. return;
  148. }
  149. if ( typeof content === 'string' ) {
  150. return 'data:' + type + ';base64,' + content;
  151. } else {
  152. var array = new Uint8Array( content );
  153. return window.URL.createObjectURL( new Blob( [ array ], { type: type } ) );
  154. }
  155. }
  156. // Parse nodes in FBXTree.Objects.subNodes.Texture
  157. // These contain details such as UV scaling, cropping, rotation etc and are connected
  158. // to images in FBXTree.Objects.subNodes.Video
  159. function parseTextures( FBXTree, loader, imageMap, connections ) {
  160. var textureMap = new Map();
  161. if ( 'Texture' in FBXTree.Objects.subNodes ) {
  162. var textureNodes = FBXTree.Objects.subNodes.Texture;
  163. for ( var nodeID in textureNodes ) {
  164. var texture = parseTexture( textureNodes[ nodeID ], loader, imageMap, connections );
  165. textureMap.set( parseInt( nodeID ), texture );
  166. }
  167. }
  168. return textureMap;
  169. }
  170. // Parse individual node in FBXTree.Objects.subNodes.Texture
  171. function parseTexture( textureNode, loader, imageMap, connections ) {
  172. var FBX_ID = textureNode.id;
  173. var name = textureNode.attrName;
  174. var fileName;
  175. var filePath = textureNode.properties.FileName;
  176. var relativeFilePath = textureNode.properties.RelativeFilename;
  177. var children = connections.get( FBX_ID ).children;
  178. if ( children !== undefined && children.length > 0 && imageMap.has( children[ 0 ].ID ) ) {
  179. fileName = imageMap.get( children[ 0 ].ID );
  180. } else if ( relativeFilePath !== undefined && relativeFilePath[ 0 ] !== '/' && relativeFilePath.match( /^[a-zA-Z]:/ ) === null ) {
  181. // use textureNode.properties.RelativeFilename
  182. // if it exists and it doesn't seem an absolute path
  183. fileName = relativeFilePath;
  184. } else {
  185. var split = filePath.split( /[\\\/]/ );
  186. if ( split.length > 0 ) {
  187. fileName = split[ split.length - 1 ];
  188. } else {
  189. fileName = filePath;
  190. }
  191. }
  192. var currentPath = loader.path;
  193. if ( fileName.indexOf( 'blob:' ) === 0 || fileName.indexOf( 'data:' ) === 0 ) {
  194. loader.setPath( undefined );
  195. }
  196. var texture = loader.load( fileName );
  197. texture.name = name;
  198. texture.FBX_ID = FBX_ID;
  199. var wrapModeU = textureNode.properties.WrapModeU;
  200. var wrapModeV = textureNode.properties.WrapModeV;
  201. var valueU = wrapModeU !== undefined ? wrapModeU.value : 0;
  202. var valueV = wrapModeV !== undefined ? wrapModeV.value : 0;
  203. // http://download.autodesk.com/us/fbx/SDKdocs/FBX_SDK_Help/files/fbxsdkref/class_k_fbx_texture.html#889640e63e2e681259ea81061b85143a
  204. // 0: repeat(default), 1: clamp
  205. texture.wrapS = valueU === 0 ? THREE.RepeatWrapping : THREE.ClampToEdgeWrapping;
  206. texture.wrapT = valueV === 0 ? THREE.RepeatWrapping : THREE.ClampToEdgeWrapping;
  207. if ( 'Scaling' in textureNode.properties ) {
  208. var values = textureNode.properties.Scaling.value;
  209. texture.repeat.x = values[ 0 ];
  210. texture.repeat.y = values[ 1 ];
  211. }
  212. loader.setPath( currentPath );
  213. return texture;
  214. }
  215. // Parse nodes in FBXTree.Objects.subNodes.Material
  216. function parseMaterials( FBXTree, textureMap, connections ) {
  217. var materialMap = new Map();
  218. if ( 'Material' in FBXTree.Objects.subNodes ) {
  219. var materialNodes = FBXTree.Objects.subNodes.Material;
  220. for ( var nodeID in materialNodes ) {
  221. var material = parseMaterial( materialNodes[ nodeID ], textureMap, connections );
  222. if ( material !== null ) materialMap.set( parseInt( nodeID ), material );
  223. }
  224. }
  225. return materialMap;
  226. }
  227. // Parse single node in FBXTree.Objects.subNodes.Material
  228. // Materials are connected to texture maps in FBXTree.Objects.subNodes.Textures
  229. // FBX format currently only supports Lambert and Phong shading models
  230. function parseMaterial( materialNode, textureMap, connections ) {
  231. var FBX_ID = materialNode.id;
  232. var name = materialNode.attrName;
  233. var type = materialNode.properties.ShadingModel;
  234. //Case where FBX wraps shading model in property object.
  235. if ( typeof type === 'object' ) {
  236. type = type.value;
  237. }
  238. // Ignore unused materials which don't have any connections.
  239. if ( ! connections.has( FBX_ID ) ) return null;
  240. var children = connections.get( FBX_ID ).children;
  241. var parameters = parseParameters( materialNode.properties, textureMap, children );
  242. var material;
  243. switch ( type.toLowerCase() ) {
  244. case 'phong':
  245. material = new THREE.MeshPhongMaterial();
  246. break;
  247. case 'lambert':
  248. material = new THREE.MeshLambertMaterial();
  249. break;
  250. default:
  251. console.warn( 'THREE.FBXLoader: unknown material type "%s". Defaulting to MeshPhongMaterial.', type );
  252. material = new THREE.MeshPhongMaterial( { color: 0x3300ff } );
  253. break;
  254. }
  255. material.setValues( parameters );
  256. material.name = name;
  257. return material;
  258. }
  259. // Parse FBX material and return parameters suitable for a three.js material
  260. // Also parse the texture map and return any textures associated with the material
  261. function parseParameters( properties, textureMap, childrenRelationships ) {
  262. var parameters = {};
  263. if ( properties.BumpFactor ) {
  264. parameters.bumpScale = properties.BumpFactor.value;
  265. }
  266. if ( properties.Diffuse ) {
  267. parameters.color = parseColor( properties.Diffuse );
  268. }
  269. if ( properties.DisplacementFactor ) {
  270. parameters.displacementScale = properties.DisplacementFactor.value;
  271. }
  272. if ( properties.ReflectionFactor ) {
  273. parameters.reflectivity = properties.ReflectionFactor.value;
  274. }
  275. if ( properties.Specular ) {
  276. parameters.specular = parseColor( properties.Specular );
  277. }
  278. if ( properties.Shininess ) {
  279. parameters.shininess = properties.Shininess.value;
  280. }
  281. if ( properties.Emissive ) {
  282. parameters.emissive = parseColor( properties.Emissive );
  283. }
  284. if ( properties.EmissiveFactor ) {
  285. parameters.emissiveIntensity = parseFloat( properties.EmissiveFactor.value );
  286. }
  287. if ( properties.Opacity ) {
  288. parameters.opacity = parseFloat( properties.Opacity.value );
  289. }
  290. if ( parameters.opacity < 1.0 ) {
  291. parameters.transparent = true;
  292. }
  293. for ( var childrenRelationshipsIndex = 0, childrenRelationshipsLength = childrenRelationships.length; childrenRelationshipsIndex < childrenRelationshipsLength; ++ childrenRelationshipsIndex ) {
  294. var relationship = childrenRelationships[ childrenRelationshipsIndex ];
  295. var type = relationship.relationship;
  296. switch ( type ) {
  297. case 'Bump':
  298. parameters.bumpMap = textureMap.get( relationship.ID );
  299. break;
  300. case 'DiffuseColor':
  301. parameters.map = textureMap.get( relationship.ID );
  302. break;
  303. case 'DisplacementColor':
  304. parameters.displacementMap = textureMap.get( relationship.ID );
  305. break;
  306. case 'EmissiveColor':
  307. parameters.emissiveMap = textureMap.get( relationship.ID );
  308. break;
  309. case 'NormalMap':
  310. parameters.normalMap = textureMap.get( relationship.ID );
  311. break;
  312. case 'ReflectionColor':
  313. parameters.envMap = textureMap.get( relationship.ID );
  314. parameters.envMap.mapping = THREE.EquirectangularReflectionMapping;
  315. break;
  316. case 'SpecularColor':
  317. parameters.specularMap = textureMap.get( relationship.ID );
  318. break;
  319. case 'TransparentColor':
  320. parameters.alphaMap = textureMap.get( relationship.ID );
  321. parameters.transparent = true;
  322. break;
  323. case 'AmbientColor':
  324. case 'ShininessExponent': // AKA glossiness map
  325. case 'SpecularFactor': // AKA specularLevel
  326. case 'VectorDisplacementColor': // NOTE: Seems to be a copy of DisplacementColor
  327. default:
  328. console.warn( 'THREE.FBXLoader: %s map is not supported in three.js, skipping texture.', type );
  329. break;
  330. }
  331. }
  332. return parameters;
  333. }
  334. // Parse nodes in FBXTree.Objects.subNodes.Deformer
  335. // Deformer node can contain skinning or Vertex Cache animation data, however only skinning is supported here
  336. // Generates map of Skeleton-like objects for use later when generating and binding skeletons.
  337. function parseDeformers( FBXTree, connections ) {
  338. var deformers = {};
  339. if ( 'Deformer' in FBXTree.Objects.subNodes ) {
  340. var DeformerNodes = FBXTree.Objects.subNodes.Deformer;
  341. for ( var nodeID in DeformerNodes ) {
  342. var deformerNode = DeformerNodes[ nodeID ];
  343. if ( deformerNode.attrType === 'Skin' ) {
  344. var conns = connections.get( parseInt( nodeID ) );
  345. var skeleton = parseSkeleton( conns, DeformerNodes );
  346. skeleton.FBX_ID = parseInt( nodeID );
  347. deformers[ nodeID ] = skeleton;
  348. }
  349. }
  350. }
  351. return deformers;
  352. }
  353. // Parse single nodes in FBXTree.Objects.subNodes.Deformer
  354. // Generates a "Skeleton Representation" of FBX nodes based on an FBX Skin Deformer's connections
  355. // and an object containing SubDeformer nodes.
  356. function parseSkeleton( connections, DeformerNodes ) {
  357. var subDeformers = {};
  358. var children = connections.children;
  359. for ( var i = 0, l = children.length; i < l; ++ i ) {
  360. var child = children[ i ];
  361. var subDeformerNode = DeformerNodes[ child.ID ];
  362. var subDeformer = {
  363. FBX_ID: child.ID,
  364. index: i,
  365. indices: [],
  366. weights: [],
  367. transform: new THREE.Matrix4().fromArray( subDeformerNode.subNodes.Transform.properties.a ),
  368. transformLink: new THREE.Matrix4().fromArray( subDeformerNode.subNodes.TransformLink.properties.a ),
  369. linkMode: subDeformerNode.properties.Mode
  370. };
  371. if ( 'Indexes' in subDeformerNode.subNodes ) {
  372. subDeformer.indices = subDeformerNode.subNodes.Indexes.properties.a;
  373. subDeformer.weights = subDeformerNode.subNodes.Weights.properties.a;
  374. }
  375. subDeformers[ child.ID ] = subDeformer;
  376. }
  377. return {
  378. map: subDeformers,
  379. bones: []
  380. };
  381. }
  382. // Parse nodes in FBXTree.Objects.subNodes.Geometry
  383. function parseGeometries( FBXTree, connections, deformers ) {
  384. var geometryMap = new Map();
  385. if ( 'Geometry' in FBXTree.Objects.subNodes ) {
  386. var geometryNodes = FBXTree.Objects.subNodes.Geometry;
  387. for ( var nodeID in geometryNodes ) {
  388. var relationships = connections.get( parseInt( nodeID ) );
  389. var geo = parseGeometry( geometryNodes[ nodeID ], relationships, deformers );
  390. geometryMap.set( parseInt( nodeID ), geo );
  391. }
  392. }
  393. return geometryMap;
  394. }
  395. // Parse single node in FBXTree.Objects.subNodes.Geometry
  396. function parseGeometry( geometryNode, relationships, deformers ) {
  397. switch ( geometryNode.attrType ) {
  398. case 'Mesh':
  399. return parseMeshGeometry( geometryNode, relationships, deformers );
  400. break;
  401. case 'NurbsCurve':
  402. return parseNurbsGeometry( geometryNode );
  403. break;
  404. }
  405. }
  406. // Parse single node mesh geometry in FBXTree.Objects.subNodes.Geometry
  407. function parseMeshGeometry( geometryNode, relationships, deformers ) {
  408. for ( var i = 0; i < relationships.children.length; ++ i ) {
  409. var deformer = deformers[ relationships.children[ i ].ID ];
  410. if ( deformer !== undefined ) break;
  411. }
  412. return genGeometry( geometryNode, deformer );
  413. }
  414. // Generate a THREE.BufferGeometry from a node in FBXTree.Objects.subNodes.Geometry
  415. function genGeometry( geometryNode, deformer ) {
  416. var subNodes = geometryNode.subNodes;
  417. var vertexPositions = subNodes.Vertices.properties.a;
  418. var vertexIndices = subNodes.PolygonVertexIndex.properties.a;
  419. // create arrays to hold the final data used to build the buffergeometry
  420. var vertexB = [];
  421. var normalB = [];
  422. var colorsB = [];
  423. var uvsB = [];
  424. var materialsB = [];
  425. var weightsB = [];
  426. var weightsIndicesB = [];
  427. if ( subNodes.LayerElementColor ) {
  428. var colorInfo = getColors( subNodes.LayerElementColor[ 0 ] );
  429. }
  430. if ( subNodes.LayerElementMaterial ) {
  431. var materialInfo = getMaterials( subNodes.LayerElementMaterial[ 0 ] );
  432. }
  433. if ( subNodes.LayerElementNormal ) {
  434. var normalInfo = getNormals( subNodes.LayerElementNormal[ 0 ] );
  435. }
  436. if ( subNodes.LayerElementUV ) {
  437. var uvInfo = [];
  438. var i = 0;
  439. while ( subNodes.LayerElementUV[ i ] ) {
  440. uvInfo.push( getUVs( subNodes.LayerElementUV[ i ] ) );
  441. i ++;
  442. }
  443. }
  444. var weightTable = {};
  445. if ( deformer ) {
  446. var subDeformers = deformer.map;
  447. for ( var key in subDeformers ) {
  448. var subDeformer = subDeformers[ key ];
  449. var indices = subDeformer.indices;
  450. for ( var j = 0; j < indices.length; j ++ ) {
  451. var index = indices[ j ];
  452. var weight = subDeformer.weights[ j ];
  453. if ( weightTable[ index ] === undefined ) weightTable[ index ] = [];
  454. weightTable[ index ].push( {
  455. id: subDeformer.index,
  456. weight: weight
  457. } );
  458. }
  459. }
  460. }
  461. var polygonIndex = 0;
  462. var faceLength = 0;
  463. var displayedWeightsWarning = false;
  464. // these will hold data for a single face
  465. var vertexPositionIndexes = [];
  466. var faceNormals = [];
  467. var faceColors = [];
  468. var faceUVs = [];
  469. var faceWeights = [];
  470. var faceWeightIndices = [];
  471. for ( var polygonVertexIndex = 0; polygonVertexIndex < vertexIndices.length; polygonVertexIndex ++ ) {
  472. var vertexIndex = vertexIndices[ polygonVertexIndex ];
  473. var endOfFace = false;
  474. // Face index and vertex index arrays are combined in a single array
  475. // A cube with quad faces looks like this:
  476. // PolygonVertexIndex: *24 {
  477. // a: 0, 1, 3, -3, 2, 3, 5, -5, 4, 5, 7, -7, 6, 7, 1, -1, 1, 7, 5, -4, 6, 0, 2, -5
  478. // }
  479. // Negative numbers mark the end of a face - first face here is 0, 1, 3, -3
  480. // to find index of last vertex multiply by -1 and subtract 1: -3 * - 1 - 1 = 2
  481. if ( vertexIndex < 0 ) {
  482. vertexIndex = vertexIndex ^ - 1; // equivalent to ( x * -1 ) - 1
  483. vertexIndices[ polygonVertexIndex ] = vertexIndex;
  484. endOfFace = true;
  485. }
  486. var weightIndices = [];
  487. var weights = [];
  488. vertexPositionIndexes.push( vertexIndex * 3, vertexIndex * 3 + 1, vertexIndex * 3 + 2 );
  489. if ( colorInfo ) {
  490. var data = getData( polygonVertexIndex, polygonIndex, vertexIndex, colorInfo );
  491. faceColors.push( data[ 0 ], data[ 1 ], data[ 2 ] );
  492. }
  493. if ( deformer ) {
  494. if ( weightTable[ vertexIndex ] !== undefined ) {
  495. var array = weightTable[ vertexIndex ];
  496. for ( var j = 0, jl = array.length; j < jl; j ++ ) {
  497. weights.push( array[ j ].weight );
  498. weightIndices.push( array[ j ].id );
  499. }
  500. }
  501. if ( weights.length > 4 ) {
  502. if ( ! displayedWeightsWarning ) {
  503. console.warn( 'THREE.FBXLoader: Vertex has more than 4 skinning weights assigned to vertex. Deleting additional weights.' );
  504. displayedWeightsWarning = true;
  505. }
  506. var WIndex = [ 0, 0, 0, 0 ];
  507. var Weight = [ 0, 0, 0, 0 ];
  508. weights.forEach( function ( weight, weightIndex ) {
  509. var currentWeight = weight;
  510. var currentIndex = weightIndices[ weightIndex ];
  511. Weight.forEach( function ( comparedWeight, comparedWeightIndex, comparedWeightArray ) {
  512. if ( currentWeight > comparedWeight ) {
  513. comparedWeightArray[ comparedWeightIndex ] = currentWeight;
  514. currentWeight = comparedWeight;
  515. var tmp = WIndex[ comparedWeightIndex ];
  516. WIndex[ comparedWeightIndex ] = currentIndex;
  517. currentIndex = tmp;
  518. }
  519. } );
  520. } );
  521. weightIndices = WIndex;
  522. weights = Weight;
  523. }
  524. // if the weight array is shorter than 4 pad with 0s
  525. for ( var i = weights.length; i < 4; ++ i ) {
  526. weights[ i ] = 0;
  527. weightIndices[ i ] = 0;
  528. }
  529. for ( var i = 0; i < 4; ++ i ) {
  530. faceWeights.push( weights[ i ] );
  531. faceWeightIndices.push( weightIndices[ i ] );
  532. }
  533. }
  534. if ( normalInfo ) {
  535. var data = getData( polygonVertexIndex, polygonIndex, vertexIndex, normalInfo );
  536. faceNormals.push( data[ 0 ], data[ 1 ], data[ 2 ] );
  537. }
  538. if ( uvInfo ) {
  539. for ( var i = 0; i < uvInfo.length; i ++ ) {
  540. var data = getData( polygonVertexIndex, polygonIndex, vertexIndex, uvInfo[ i ] );
  541. if ( faceUVs[ i ] === undefined ) faceUVs[ i ] = [];
  542. faceUVs[ i ].push(
  543. data[ 0 ],
  544. data[ 1 ]
  545. );
  546. }
  547. }
  548. faceLength ++;
  549. // we have reached the end of a face - it may have 4 sides though
  550. // in which case the data is split into to represent 3 sides faces
  551. if ( endOfFace ) {
  552. for ( var i = 2; i < faceLength; i ++ ) {
  553. vertexB.push(
  554. vertexPositions[ vertexPositionIndexes[ 0 ] ],
  555. vertexPositions[ vertexPositionIndexes[ 1 ] ],
  556. vertexPositions[ vertexPositionIndexes[ 2 ] ],
  557. vertexPositions[ vertexPositionIndexes[ ( i - 1 ) * 3 ] ],
  558. vertexPositions[ vertexPositionIndexes[ ( i - 1 ) * 3 + 1 ] ],
  559. vertexPositions[ vertexPositionIndexes[ ( i - 1 ) * 3 + 2 ] ],
  560. vertexPositions[ vertexPositionIndexes[ i * 3 ] ],
  561. vertexPositions[ vertexPositionIndexes[ i * 3 + 1 ] ],
  562. vertexPositions[ vertexPositionIndexes[ i * 3 + 2 ] ]
  563. );
  564. }
  565. if ( deformer ) {
  566. for ( var i = 2; i < faceLength; i ++ ) {
  567. weightsB.push(
  568. faceWeights[ 0 ],
  569. faceWeights[ 1 ],
  570. faceWeights[ 2 ],
  571. faceWeights[ 3 ],
  572. faceWeights[ ( i - 1 ) * 4 ],
  573. faceWeights[ ( i - 1 ) * 4 + 1 ],
  574. faceWeights[ ( i - 1 ) * 4 + 2 ],
  575. faceWeights[ ( i - 1 ) * 4 + 3 ],
  576. faceWeights[ i * 4 ],
  577. faceWeights[ i * 4 + 1 ],
  578. faceWeights[ i * 4 + 2 ],
  579. faceWeights[ i * 4 + 3 ]
  580. );
  581. weightsIndicesB.push(
  582. faceWeightIndices[ 0 ],
  583. faceWeightIndices[ 1 ],
  584. faceWeightIndices[ 2 ],
  585. faceWeightIndices[ 3 ],
  586. faceWeightIndices[ ( i - 1 ) * 4 ],
  587. faceWeightIndices[ ( i - 1 ) * 4 + 1 ],
  588. faceWeightIndices[ ( i - 1 ) * 4 + 2 ],
  589. faceWeightIndices[ ( i - 1 ) * 4 + 3 ],
  590. faceWeightIndices[ i * 4 ],
  591. faceWeightIndices[ i * 4 + 1 ],
  592. faceWeightIndices[ i * 4 + 2 ],
  593. faceWeightIndices[ i * 4 + 3 ]
  594. );
  595. }
  596. }
  597. if ( normalInfo ) {
  598. for ( var i = 2; i < faceLength; i ++ ) {
  599. normalB.push(
  600. faceNormals[ 0 ],
  601. faceNormals[ 1 ],
  602. faceNormals[ 2 ],
  603. faceNormals[ ( i - 1 ) * 3 ],
  604. faceNormals[ ( i - 1 ) * 3 + 1 ],
  605. faceNormals[ ( i - 1 ) * 3 + 2 ],
  606. faceNormals[ i * 3 ],
  607. faceNormals[ i * 3 + 1 ],
  608. faceNormals[ i * 3 + 2 ]
  609. );
  610. }
  611. }
  612. if ( uvInfo ) {
  613. for ( var j = 0; j < uvInfo.length; j ++ ) {
  614. if ( uvsB[ j ] === undefined ) uvsB[ j ] = [];
  615. for ( var i = 2; i < faceLength; i ++ ) {
  616. uvsB[ j ].push(
  617. faceUVs[ j ][ 0 ],
  618. faceUVs[ j ][ 1 ],
  619. faceUVs[ j ][ ( i - 1 ) * 2 ],
  620. faceUVs[ j ][ ( i - 1 ) * 2 + 1 ],
  621. faceUVs[ j ][ i * 2 ],
  622. faceUVs[ j ][ i * 2 + 1 ]
  623. );
  624. }
  625. }
  626. }
  627. if ( colorInfo ) {
  628. for ( var i = 2; i < faceLength; i ++ ) {
  629. colorsB.push(
  630. faceColors[ 0 ],
  631. faceColors[ 1 ],
  632. faceColors[ 2 ],
  633. faceColors[ ( i - 1 ) * 3 ],
  634. faceColors[ ( i - 1 ) * 3 + 1 ],
  635. faceColors[ ( i - 1 ) * 3 + 2 ],
  636. faceColors[ i * 3 ],
  637. faceColors[ i * 3 + 1 ],
  638. faceColors[ i * 3 + 2 ]
  639. );
  640. }
  641. }
  642. if ( materialInfo && materialInfo.mappingType !== 'AllSame' ) {
  643. var materialIndex = getData( polygonVertexIndex, polygonIndex, vertexIndex, materialInfo )[ 0 ];
  644. for ( var i = 2; i < faceLength; i ++ ) {
  645. materialsB.push(
  646. materialIndex,
  647. materialIndex,
  648. materialIndex
  649. );
  650. }
  651. }
  652. polygonIndex ++;
  653. endOfFace = false;
  654. faceLength = 0;
  655. // reset arrays for the next face
  656. vertexPositionIndexes = [];
  657. faceNormals = [];
  658. faceColors = [];
  659. faceUVs = [];
  660. faceWeights = [];
  661. faceWeightIndices = [];
  662. }
  663. }
  664. var geo = new THREE.BufferGeometry();
  665. geo.name = geometryNode.name;
  666. geo.addAttribute( 'position', new THREE.Float32BufferAttribute( vertexB, 3 ) );
  667. if ( colorsB.length > 0 ) {
  668. geo.addAttribute( 'color', new THREE.Float32BufferAttribute( colorsB, 3 ) );
  669. }
  670. if ( deformer ) {
  671. geo.addAttribute( 'skinIndex', new THREE.Float32BufferAttribute( weightsIndicesB, 4 ) );
  672. geo.addAttribute( 'skinWeight', new THREE.Float32BufferAttribute( weightsB, 4 ) );
  673. geo.FBX_Deformer = deformer;
  674. }
  675. if ( normalB.length > 0 ) {
  676. geo.addAttribute( 'normal', new THREE.Float32BufferAttribute( normalB, 3 ) );
  677. }
  678. if ( uvsB.length > 0 ) {
  679. for ( var i = 0; i < uvsB.length; i ++ ) {
  680. var name = 'uv' + ( i + 1 ).toString();
  681. if ( i == 0 ) {
  682. name = 'uv';
  683. }
  684. geo.addAttribute( name, new THREE.Float32BufferAttribute( uvsB[ i ], 2 ) );
  685. }
  686. }
  687. if ( materialInfo && materialInfo.mappingType !== 'AllSame' ) {
  688. // Convert the material indices of each vertex into rendering groups on the geometry.
  689. var materialIndexBuffer = materialsB;
  690. var prevMaterialIndex = materialIndexBuffer[ 0 ];
  691. var startIndex = 0;
  692. for ( var i = 0; i < materialIndexBuffer.length; ++ i ) {
  693. if ( materialIndexBuffer[ i ] !== prevMaterialIndex ) {
  694. geo.addGroup( startIndex, i - startIndex, prevMaterialIndex );
  695. prevMaterialIndex = materialIndexBuffer[ i ];
  696. startIndex = i;
  697. }
  698. }
  699. // the loop above doesn't add the last group, do that here.
  700. if ( geo.groups.length > 0 ) {
  701. var lastGroup = geo.groups[ geo.groups.length - 1 ];
  702. var lastIndex = lastGroup.start + lastGroup.count;
  703. if ( lastIndex !== materialIndexBuffer.length ) {
  704. geo.addGroup( lastIndex, materialIndexBuffer.length - lastIndex, prevMaterialIndex );
  705. }
  706. }
  707. // case where there are multiple materials but the whole geometry is only
  708. // using one of them
  709. if ( geo.groups.length === 0 ) {
  710. geo.addGroup( 0, materialIndexBuffer.length, materialIndexBuffer[ 0 ] );
  711. }
  712. }
  713. return geo;
  714. }
  715. // Parse normal from FBXTree.Objects.subNodes.Geometry.subNodes.LayerElementNormal if it exists
  716. function getNormals( NormalNode ) {
  717. var mappingType = NormalNode.properties.MappingInformationType;
  718. var referenceType = NormalNode.properties.ReferenceInformationType;
  719. var buffer = NormalNode.subNodes.Normals.properties.a;
  720. var indexBuffer = [];
  721. if ( referenceType === 'IndexToDirect' ) {
  722. if ( 'NormalIndex' in NormalNode.subNodes ) {
  723. indexBuffer = NormalNode.subNodes.NormalIndex.properties.a;
  724. } else if ( 'NormalsIndex' in NormalNode.subNodes ) {
  725. indexBuffer = NormalNode.subNodes.NormalsIndex.properties.a;
  726. }
  727. }
  728. return {
  729. dataSize: 3,
  730. buffer: buffer,
  731. indices: indexBuffer,
  732. mappingType: mappingType,
  733. referenceType: referenceType
  734. };
  735. }
  736. // Parse UVs from FBXTree.Objects.subNodes.Geometry.subNodes.LayerElementUV if it exists
  737. function getUVs( UVNode ) {
  738. var mappingType = UVNode.properties.MappingInformationType;
  739. var referenceType = UVNode.properties.ReferenceInformationType;
  740. var buffer = UVNode.subNodes.UV.properties.a;
  741. var indexBuffer = [];
  742. if ( referenceType === 'IndexToDirect' ) {
  743. indexBuffer = UVNode.subNodes.UVIndex.properties.a;
  744. }
  745. return {
  746. dataSize: 2,
  747. buffer: buffer,
  748. indices: indexBuffer,
  749. mappingType: mappingType,
  750. referenceType: referenceType
  751. };
  752. }
  753. // Parse Vertex Colors from FBXTree.Objects.subNodes.Geometry.subNodes.LayerElementColor if it exists
  754. function getColors( ColorNode ) {
  755. var mappingType = ColorNode.properties.MappingInformationType;
  756. var referenceType = ColorNode.properties.ReferenceInformationType;
  757. var buffer = ColorNode.subNodes.Colors.properties.a;
  758. var indexBuffer = [];
  759. if ( referenceType === 'IndexToDirect' ) {
  760. indexBuffer = ColorNode.subNodes.ColorIndex.properties.a;
  761. }
  762. return {
  763. dataSize: 4,
  764. buffer: buffer,
  765. indices: indexBuffer,
  766. mappingType: mappingType,
  767. referenceType: referenceType
  768. };
  769. }
  770. // Parse mapping and material data in FBXTree.Objects.subNodes.Geometry.subNodes.LayerElementMaterial if it exists
  771. function getMaterials( MaterialNode ) {
  772. var mappingType = MaterialNode.properties.MappingInformationType;
  773. var referenceType = MaterialNode.properties.ReferenceInformationType;
  774. if ( mappingType === 'NoMappingInformation' ) {
  775. return {
  776. dataSize: 1,
  777. buffer: [ 0 ],
  778. indices: [ 0 ],
  779. mappingType: 'AllSame',
  780. referenceType: referenceType
  781. };
  782. }
  783. var materialIndexBuffer = MaterialNode.subNodes.Materials.properties.a;
  784. // Since materials are stored as indices, there's a bit of a mismatch between FBX and what
  785. // we expect.So we create an intermediate buffer that points to the index in the buffer,
  786. // for conforming with the other functions we've written for other data.
  787. var materialIndices = [];
  788. for ( var materialIndexBufferIndex = 0, materialIndexBufferLength = materialIndexBuffer.length; materialIndexBufferIndex < materialIndexBufferLength; ++ materialIndexBufferIndex ) {
  789. materialIndices.push( materialIndexBufferIndex );
  790. }
  791. return {
  792. dataSize: 1,
  793. buffer: materialIndexBuffer,
  794. indices: materialIndices,
  795. mappingType: mappingType,
  796. referenceType: referenceType
  797. };
  798. }
  799. // Functions use the infoObject and given indices to return value array of geometry.
  800. // infoObject can be materialInfo, normalInfo, UVInfo or colorInfo
  801. // polygonVertexIndex - Index of vertex in draw order (which index of the index buffer refers to this vertex).
  802. // polygonIndex - Index of polygon in geometry.
  803. // vertexIndex - Index of vertex inside vertex buffer (used because some data refers to old index buffer that we don't use anymore).
  804. var dataArray = [];
  805. var GetData = {
  806. ByPolygonVertex: {
  807. Direct: function ( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  808. var from = ( polygonVertexIndex * infoObject.dataSize );
  809. var to = ( polygonVertexIndex * infoObject.dataSize ) + infoObject.dataSize;
  810. // return infoObject.buffer.slice( from, to );
  811. return slice( dataArray, infoObject.buffer, from, to );
  812. },
  813. IndexToDirect: function ( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  814. var index = infoObject.indices[ polygonVertexIndex ];
  815. var from = ( index * infoObject.dataSize );
  816. var to = ( index * infoObject.dataSize ) + infoObject.dataSize;
  817. // return infoObject.buffer.slice( from, to );
  818. return slice( dataArray, infoObject.buffer, from, to );
  819. }
  820. },
  821. ByPolygon: {
  822. Direct: function ( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  823. var from = polygonIndex * infoObject.dataSize;
  824. var to = polygonIndex * infoObject.dataSize + infoObject.dataSize;
  825. // return infoObject.buffer.slice( from, to );
  826. return slice( dataArray, infoObject.buffer, from, to );
  827. },
  828. IndexToDirect: function ( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  829. var index = infoObject.indices[ polygonIndex ];
  830. var from = index * infoObject.dataSize;
  831. var to = index * infoObject.dataSize + infoObject.dataSize;
  832. // return infoObject.buffer.slice( from, to );
  833. return slice( dataArray, infoObject.buffer, from, to );
  834. }
  835. },
  836. ByVertice: {
  837. Direct: function ( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  838. var from = ( vertexIndex * infoObject.dataSize );
  839. var to = ( vertexIndex * infoObject.dataSize ) + infoObject.dataSize;
  840. // return infoObject.buffer.slice( from, to );
  841. return slice( dataArray, infoObject.buffer, from, to );
  842. }
  843. },
  844. AllSame: {
  845. IndexToDirect: function ( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  846. var from = infoObject.indices[ 0 ] * infoObject.dataSize;
  847. var to = infoObject.indices[ 0 ] * infoObject.dataSize + infoObject.dataSize;
  848. // return infoObject.buffer.slice( from, to );
  849. return slice( dataArray, infoObject.buffer, from, to );
  850. }
  851. }
  852. };
  853. function getData( polygonVertexIndex, polygonIndex, vertexIndex, infoObject ) {
  854. return GetData[ infoObject.mappingType ][ infoObject.referenceType ]( polygonVertexIndex, polygonIndex, vertexIndex, infoObject );
  855. }
  856. // Generate a NurbGeometry from a node in FBXTree.Objects.subNodes.Geometry
  857. function parseNurbsGeometry( geometryNode ) {
  858. if ( THREE.NURBSCurve === undefined ) {
  859. console.error( 'THREE.FBXLoader: The loader relies on THREE.NURBSCurve for any nurbs present in the model. Nurbs will show up as empty geometry.' );
  860. return new THREE.BufferGeometry();
  861. }
  862. var order = parseInt( geometryNode.properties.Order );
  863. if ( isNaN( order ) ) {
  864. console.error( 'THREE.FBXLoader: Invalid Order %s given for geometry ID: %s', geometryNode.properties.Order, geometryNode.id );
  865. return new THREE.BufferGeometry();
  866. }
  867. var degree = order - 1;
  868. var knots = geometryNode.subNodes.KnotVector.properties.a;
  869. var controlPoints = [];
  870. var pointsValues = geometryNode.subNodes.Points.properties.a;
  871. for ( var i = 0, l = pointsValues.length; i < l; i += 4 ) {
  872. controlPoints.push( new THREE.Vector4().fromArray( pointsValues, i ) );
  873. }
  874. var startKnot, endKnot;
  875. if ( geometryNode.properties.Form === 'Closed' ) {
  876. controlPoints.push( controlPoints[ 0 ] );
  877. } else if ( geometryNode.properties.Form === 'Periodic' ) {
  878. startKnot = degree;
  879. endKnot = knots.length - 1 - startKnot;
  880. for ( var i = 0; i < degree; ++ i ) {
  881. controlPoints.push( controlPoints[ i ] );
  882. }
  883. }
  884. var curve = new THREE.NURBSCurve( degree, knots, controlPoints, startKnot, endKnot );
  885. var vertices = curve.getPoints( controlPoints.length * 7 );
  886. var positions = new Float32Array( vertices.length * 3 );
  887. for ( var i = 0, l = vertices.length; i < l; ++ i ) {
  888. vertices[ i ].toArray( positions, i * 3 );
  889. }
  890. var geometry = new THREE.BufferGeometry();
  891. geometry.addAttribute( 'position', new THREE.BufferAttribute( positions, 3 ) );
  892. return geometry;
  893. }
  894. // parse nodes in FBXTree.Objects.subNodes.Model and generate a THREE.Group
  895. function parseScene( FBXTree, connections, deformers, geometryMap, materialMap ) {
  896. var sceneGraph = new THREE.Group();
  897. var ModelNode = FBXTree.Objects.subNodes.Model;
  898. var modelArray = [];
  899. var modelMap = new Map();
  900. for ( var nodeID in ModelNode ) {
  901. var id = parseInt( nodeID );
  902. var node = ModelNode[ nodeID ];
  903. var conns = connections.get( id );
  904. var model = null;
  905. for ( var i = 0; i < conns.parents.length; ++ i ) {
  906. for ( var FBX_ID in deformers ) {
  907. var deformer = deformers[ FBX_ID ];
  908. var subDeformers = deformer.map;
  909. var subDeformer = subDeformers[ conns.parents[ i ].ID ];
  910. if ( subDeformer ) {
  911. var model2 = model;
  912. model = new THREE.Bone();
  913. deformer.bones[ subDeformer.index ] = model;
  914. // seems like we need this not to make non-connected bone, maybe?
  915. // TODO: confirm
  916. if ( model2 !== null ) model.add( model2 );
  917. }
  918. }
  919. }
  920. if ( ! model ) {
  921. switch ( node.attrType ) {
  922. // create a THREE.PerspectiveCamera or THREE.OrthographicCamera
  923. case 'Camera':
  924. var cameraAttribute;
  925. for ( var childrenIndex = 0, childrenLength = conns.children.length; childrenIndex < childrenLength; ++ childrenIndex ) {
  926. var childID = conns.children[ childrenIndex ].ID;
  927. var attr = FBXTree.Objects.subNodes.NodeAttribute[ childID ];
  928. if ( attr !== undefined && attr.properties !== undefined ) {
  929. cameraAttribute = attr.properties;
  930. }
  931. }
  932. if ( cameraAttribute === undefined ) {
  933. model = new THREE.Object3D();
  934. } else {
  935. var type = 0;
  936. if ( cameraAttribute.CameraProjectionType !== undefined && cameraAttribute.CameraProjectionType.value === 1 ) {
  937. type = 1;
  938. }
  939. var nearClippingPlane = 1;
  940. if ( cameraAttribute.NearPlane !== undefined ) {
  941. nearClippingPlane = cameraAttribute.NearPlane.value / 1000;
  942. }
  943. var farClippingPlane = 1000;
  944. if ( cameraAttribute.FarPlane !== undefined ) {
  945. farClippingPlane = cameraAttribute.FarPlane.value / 1000;
  946. }
  947. var width = window.innerWidth;
  948. var height = window.innerHeight;
  949. if ( cameraAttribute.AspectWidth !== undefined && cameraAttribute.AspectHeight !== undefined ) {
  950. width = cameraAttribute.AspectWidth.value;
  951. height = cameraAttribute.AspectHeight.value;
  952. }
  953. var aspect = width / height;
  954. var fov = 45;
  955. if ( cameraAttribute.FieldOfView !== undefined ) {
  956. fov = cameraAttribute.FieldOfView.value;
  957. }
  958. switch ( type ) {
  959. case 0: // Perspective
  960. model = new THREE.PerspectiveCamera( fov, aspect, nearClippingPlane, farClippingPlane );
  961. break;
  962. case 1: // Orthographic
  963. model = new THREE.OrthographicCamera( - width / 2, width / 2, height / 2, - height / 2, nearClippingPlane, farClippingPlane );
  964. break;
  965. default:
  966. console.warn( 'THREE.FBXLoader: Unknown camera type ' + type + '.' );
  967. model = new THREE.Object3D();
  968. break;
  969. }
  970. }
  971. break;
  972. // Create a THREE.DirectionalLight, THREE.PointLight or THREE.SpotLight
  973. case 'Light':
  974. var lightAttribute;
  975. for ( var childrenIndex = 0, childrenLength = conns.children.length; childrenIndex < childrenLength; ++ childrenIndex ) {
  976. var childID = conns.children[ childrenIndex ].ID;
  977. var attr = FBXTree.Objects.subNodes.NodeAttribute[ childID ];
  978. if ( attr !== undefined && attr.properties !== undefined ) {
  979. lightAttribute = attr.properties;
  980. }
  981. }
  982. if ( lightAttribute === undefined ) {
  983. model = new THREE.Object3D();
  984. } else {
  985. var type;
  986. // LightType can be undefined for Point lights
  987. if ( lightAttribute.LightType === undefined ) {
  988. type = 0;
  989. } else {
  990. type = lightAttribute.LightType.value;
  991. }
  992. var color = 0xffffff;
  993. if ( lightAttribute.Color !== undefined ) {
  994. color = parseColor( lightAttribute.Color.value );
  995. }
  996. var intensity = ( lightAttribute.Intensity === undefined ) ? 1 : lightAttribute.Intensity.value / 100;
  997. // light disabled
  998. if ( lightAttribute.CastLightOnObject !== undefined && lightAttribute.CastLightOnObject.value === 0 ) {
  999. intensity = 0;
  1000. }
  1001. var distance = 0;
  1002. if ( lightAttribute.FarAttenuationEnd !== undefined ) {
  1003. if ( lightAttribute.EnableFarAttenuation !== undefined && lightAttribute.EnableFarAttenuation.value === 0 ) {
  1004. distance = 0;
  1005. } else {
  1006. distance = lightAttribute.FarAttenuationEnd.value / 1000;
  1007. }
  1008. }
  1009. // TODO: could this be calculated linearly from FarAttenuationStart to FarAttenuationEnd?
  1010. var decay = 1;
  1011. switch ( type ) {
  1012. case 0: // Point
  1013. model = new THREE.PointLight( color, intensity, distance, decay );
  1014. break;
  1015. case 1: // Directional
  1016. model = new THREE.DirectionalLight( color, intensity );
  1017. break;
  1018. case 2: // Spot
  1019. var angle = Math.PI / 3;
  1020. if ( lightAttribute.InnerAngle !== undefined ) {
  1021. angle = THREE.Math.degToRad( lightAttribute.InnerAngle.value );
  1022. }
  1023. var penumbra = 0;
  1024. if ( lightAttribute.OuterAngle !== undefined ) {
  1025. // TODO: this is not correct - FBX calculates outer and inner angle in degrees
  1026. // with OuterAngle > InnerAngle && OuterAngle <= Math.PI
  1027. // while three.js uses a penumbra between (0, 1) to attenuate the inner angle
  1028. penumbra = THREE.Math.degToRad( lightAttribute.OuterAngle.value );
  1029. penumbra = Math.max( penumbra, 1 );
  1030. }
  1031. model = new THREE.SpotLight( color, intensity, distance, angle, penumbra, decay );
  1032. break;
  1033. default:
  1034. console.warn( 'THREE.FBXLoader: Unknown light type ' + lightAttribute.LightType.value + ', defaulting to a THREE.PointLight.' );
  1035. model = new THREE.PointLight( color, intensity );
  1036. break;
  1037. }
  1038. if ( lightAttribute.CastShadows !== undefined && lightAttribute.CastShadows.value === 1 ) {
  1039. model.castShadow = true;
  1040. }
  1041. }
  1042. break;
  1043. case 'Mesh':
  1044. var geometry = null;
  1045. var material = null;
  1046. var materials = [];
  1047. for ( var childrenIndex = 0, childrenLength = conns.children.length; childrenIndex < childrenLength; ++ childrenIndex ) {
  1048. var child = conns.children[ childrenIndex ];
  1049. if ( geometryMap.has( child.ID ) ) {
  1050. geometry = geometryMap.get( child.ID );
  1051. }
  1052. if ( materialMap.has( child.ID ) ) {
  1053. materials.push( materialMap.get( child.ID ) );
  1054. }
  1055. }
  1056. if ( materials.length > 1 ) {
  1057. material = materials;
  1058. } else if ( materials.length > 0 ) {
  1059. material = materials[ 0 ];
  1060. } else {
  1061. material = new THREE.MeshPhongMaterial( { color: 0xcccccc } );
  1062. materials.push( material );
  1063. }
  1064. if ( 'color' in geometry.attributes ) {
  1065. for ( var materialIndex = 0, numMaterials = materials.length; materialIndex < numMaterials; ++ materialIndex ) {
  1066. materials[ materialIndex ].vertexColors = THREE.VertexColors;
  1067. }
  1068. }
  1069. if ( geometry.FBX_Deformer ) {
  1070. for ( var materialsIndex = 0, materialsLength = materials.length; materialsIndex < materialsLength; ++ materialsIndex ) {
  1071. materials[ materialsIndex ].skinning = true;
  1072. }
  1073. model = new THREE.SkinnedMesh( geometry, material );
  1074. } else {
  1075. model = new THREE.Mesh( geometry, material );
  1076. }
  1077. break;
  1078. case 'NurbsCurve':
  1079. var geometry = null;
  1080. for ( var childrenIndex = 0, childrenLength = conns.children.length; childrenIndex < childrenLength; ++ childrenIndex ) {
  1081. var child = conns.children[ childrenIndex ];
  1082. if ( geometryMap.has( child.ID ) ) {
  1083. geometry = geometryMap.get( child.ID );
  1084. }
  1085. }
  1086. // FBX does not list materials for Nurbs lines, so we'll just put our own in here.
  1087. material = new THREE.LineBasicMaterial( { color: 0x3300ff, linewidth: 5 } );
  1088. model = new THREE.Line( geometry, material );
  1089. break;
  1090. default:
  1091. model = new THREE.Group();
  1092. break;
  1093. }
  1094. }
  1095. model.name = THREE.PropertyBinding.sanitizeNodeName( node.attrName );
  1096. model.FBX_ID = id;
  1097. modelArray.push( model );
  1098. modelMap.set( id, model );
  1099. }
  1100. for ( var modelArrayIndex = 0, modelArrayLength = modelArray.length; modelArrayIndex < modelArrayLength; ++ modelArrayIndex ) {
  1101. var model = modelArray[ modelArrayIndex ];
  1102. var node = ModelNode[ model.FBX_ID ];
  1103. if ( 'Lcl_Translation' in node.properties ) {
  1104. model.position.fromArray( node.properties.Lcl_Translation.value );
  1105. }
  1106. if ( 'Lcl_Rotation' in node.properties ) {
  1107. var rotation = node.properties.Lcl_Rotation.value.map( THREE.Math.degToRad );
  1108. rotation.push( 'ZYX' );
  1109. model.rotation.fromArray( rotation );
  1110. }
  1111. if ( 'Lcl_Scaling' in node.properties ) {
  1112. model.scale.fromArray( node.properties.Lcl_Scaling.value );
  1113. }
  1114. if ( 'PreRotation' in node.properties ) {
  1115. var preRotations = new THREE.Euler().fromArray( node.properties.PreRotation.value.map( THREE.Math.degToRad ), 'ZYX' );
  1116. preRotations = new THREE.Quaternion().setFromEuler( preRotations );
  1117. var currentRotation = new THREE.Quaternion().setFromEuler( model.rotation );
  1118. preRotations.multiply( currentRotation );
  1119. model.rotation.setFromQuaternion( preRotations, 'ZYX' );
  1120. }
  1121. // allow transformed pivots - see https://github.com/mrdoob/three.js/issues/11895
  1122. if ( 'GeometricTranslation' in node.properties ) {
  1123. var array = node.properties.GeometricTranslation.value;
  1124. model.traverse( function ( child ) {
  1125. if ( child.geometry ) {
  1126. child.geometry.translate( array[ 0 ], array[ 1 ], array[ 2 ] );
  1127. }
  1128. } );
  1129. }
  1130. if ( 'LookAtProperty' in node.properties ) {
  1131. var conns = connections.get( model.FBX_ID );
  1132. for ( var childrenIndex = 0, childrenLength = conns.children.length; childrenIndex < childrenLength; ++ childrenIndex ) {
  1133. var child = conns.children[ childrenIndex ];
  1134. if ( child.relationship === 'LookAtProperty' ) {
  1135. var lookAtTarget = FBXTree.Objects.subNodes.Model[ child.ID ];
  1136. if ( 'Lcl_Translation' in lookAtTarget.properties ) {
  1137. var pos = lookAtTarget.properties.Lcl_Translation.value;
  1138. // DirectionalLight, SpotLight
  1139. if ( model.target !== undefined ) {
  1140. model.target.position.set( pos[ 0 ], pos[ 1 ], pos[ 2 ] );
  1141. sceneGraph.add( model.target );
  1142. } else { // Cameras and other Object3Ds
  1143. model.lookAt( new THREE.Vector3( pos[ 0 ], pos[ 1 ], pos[ 2 ] ) );
  1144. }
  1145. }
  1146. }
  1147. }
  1148. }
  1149. var conns = connections.get( model.FBX_ID );
  1150. for ( var parentIndex = 0; parentIndex < conns.parents.length; parentIndex ++ ) {
  1151. var pIndex = findIndex( modelArray, function ( mod ) {
  1152. return mod.FBX_ID === conns.parents[ parentIndex ].ID;
  1153. } );
  1154. if ( pIndex > - 1 ) {
  1155. modelArray[ pIndex ].add( model );
  1156. break;
  1157. }
  1158. }
  1159. if ( model.parent === null ) {
  1160. sceneGraph.add( model );
  1161. }
  1162. }
  1163. // Now with the bones created, we can update the skeletons and bind them to the skinned meshes.
  1164. sceneGraph.updateMatrixWorld( true );
  1165. var worldMatrices = new Map();
  1166. // Put skeleton into bind pose.
  1167. if ( 'Pose' in FBXTree.Objects.subNodes ) {
  1168. var BindPoseNode = FBXTree.Objects.subNodes.Pose;
  1169. for ( var nodeID in BindPoseNode ) {
  1170. if ( BindPoseNode[ nodeID ].attrType === 'BindPose' ) {
  1171. BindPoseNode = BindPoseNode[ nodeID ];
  1172. break;
  1173. }
  1174. }
  1175. var PoseNode = BindPoseNode.subNodes.PoseNode;
  1176. for ( var PoseNodeIndex = 0, PoseNodeLength = PoseNode.length; PoseNodeIndex < PoseNodeLength; ++ PoseNodeIndex ) {
  1177. var node = PoseNode[ PoseNodeIndex ];
  1178. var rawMatWrd = new THREE.Matrix4().fromArray( node.subNodes.Matrix.properties.a );
  1179. worldMatrices.set( parseInt( node.id ), rawMatWrd );
  1180. }
  1181. }
  1182. for ( var FBX_ID in deformers ) {
  1183. var deformer = deformers[ FBX_ID ];
  1184. var subDeformers = deformer.map;
  1185. for ( var key in subDeformers ) {
  1186. var subDeformer = subDeformers[ key ];
  1187. var subDeformerIndex = subDeformer.index;
  1188. var bone = deformer.bones[ subDeformerIndex ];
  1189. if ( ! worldMatrices.has( bone.FBX_ID ) ) {
  1190. break;
  1191. }
  1192. var mat = worldMatrices.get( bone.FBX_ID );
  1193. bone.matrixWorld.copy( mat );
  1194. }
  1195. // Now that skeleton is in bind pose, bind to model.
  1196. deformer.skeleton = new THREE.Skeleton( deformer.bones );
  1197. var conns = connections.get( deformer.FBX_ID );
  1198. var parents = conns.parents;
  1199. for ( var parentsIndex = 0, parentsLength = parents.length; parentsIndex < parentsLength; ++ parentsIndex ) {
  1200. var parent = parents[ parentsIndex ];
  1201. if ( geometryMap.has( parent.ID ) ) {
  1202. var geoID = parent.ID;
  1203. var geoConns = connections.get( geoID );
  1204. for ( var i = 0; i < geoConns.parents.length; ++ i ) {
  1205. if ( modelMap.has( geoConns.parents[ i ].ID ) ) {
  1206. var model = modelMap.get( geoConns.parents[ i ].ID );
  1207. model.bind( deformer.skeleton, model.matrixWorld );
  1208. break;
  1209. }
  1210. }
  1211. }
  1212. }
  1213. }
  1214. //Skeleton is now bound, return objects to starting world positions.
  1215. sceneGraph.updateMatrixWorld( true );
  1216. // Silly hack with the animation parsing. We're gonna pretend the scene graph has a skeleton
  1217. // to attach animations to, since FBX treats animations as animations for the entire scene,
  1218. // not just for individual objects.
  1219. sceneGraph.skeleton = {
  1220. bones: modelArray
  1221. };
  1222. var animations = parseAnimations( FBXTree, connections, sceneGraph );
  1223. addAnimations( sceneGraph, animations );
  1224. // Parse ambient color - if it's not set to black (default), create an ambient light
  1225. if ( 'GlobalSettings' in FBXTree && 'AmbientColor' in FBXTree.GlobalSettings.properties ) {
  1226. var ambientColor = FBXTree.GlobalSettings.properties.AmbientColor.value;
  1227. var r = ambientColor[ 0 ];
  1228. var g = ambientColor[ 1 ];
  1229. var b = ambientColor[ 2 ];
  1230. if ( r !== 0 || g !== 0 || b !== 0 ) {
  1231. var color = new THREE.Color( r, g, b );
  1232. sceneGraph.add( new THREE.AmbientLight( color, 1 ) );
  1233. }
  1234. }
  1235. return sceneGraph;
  1236. }
  1237. // Parses animation information from nodes in
  1238. // FBXTree.Objects.subNodes.AnimationCurve ( connected to AnimationCurveNode )
  1239. // FBXTree.Objects.subNodes.AnimationCurveNode ( connected to AnimationLayer and an animated property in some other node )
  1240. // FBXTree.Objects.subNodes.AnimationLayer ( connected to AnimationStack )
  1241. // FBXTree.Objects.subNodes.AnimationStack
  1242. function parseAnimations( FBXTree, connections, sceneGraph ) {
  1243. var rawNodes = FBXTree.Objects.subNodes.AnimationCurveNode;
  1244. var rawCurves = FBXTree.Objects.subNodes.AnimationCurve;
  1245. var rawLayers = FBXTree.Objects.subNodes.AnimationLayer;
  1246. var rawStacks = FBXTree.Objects.subNodes.AnimationStack;
  1247. var fps = 30; // default framerate
  1248. if ( 'GlobalSettings' in FBXTree && 'TimeMode' in FBXTree.GlobalSettings.properties ) {
  1249. /* Autodesk time mode documentation can be found here:
  1250. * http://docs.autodesk.com/FBX/2014/ENU/FBX-SDK-Documentation/index.html?url=cpp_ref/class_fbx_time.html,topicNumber=cpp_ref_class_fbx_time_html
  1251. */
  1252. var timeModeEnum = [
  1253. 30, // 0: eDefaultMode
  1254. 120, // 1: eFrames120
  1255. 100, // 2: eFrames100
  1256. 60, // 3: eFrames60
  1257. 50, // 4: eFrames50
  1258. 48, // 5: eFrames48
  1259. 30, // 6: eFrames30 (black and white NTSC )
  1260. 30, // 7: eFrames30Drop
  1261. 29.97, // 8: eNTSCDropFrame
  1262. 29.97, // 90: eNTSCFullFrame
  1263. 25, // 10: ePal ( PAL/SECAM )
  1264. 24, // 11: eFrames24 (Film/Cinema)
  1265. 1, // 12: eFrames1000 (use for date time))
  1266. 23.976, // 13: eFilmFullFrame
  1267. 30, // 14: eCustom: use GlobalSettings.properties.CustomFrameRate.value
  1268. 96, // 15: eFrames96
  1269. 72, // 16: eFrames72
  1270. 59.94, // 17: eFrames59dot94
  1271. ];
  1272. var eMode = FBXTree.GlobalSettings.properties.TimeMode.value;
  1273. if ( eMode === 14 ) {
  1274. if ( 'CustomFrameRate' in FBXTree.GlobalSettings.properties ) {
  1275. fps = FBXTree.GlobalSettings.properties.CustomFrameRate.value;
  1276. fps = ( fps === - 1 ) ? 30 : fps;
  1277. }
  1278. } else if ( eMode <= 17 ) { // for future proofing - if more eModes get added, they will default to 30fps
  1279. fps = timeModeEnum[ eMode ];
  1280. }
  1281. }
  1282. /**
  1283. * @type {{
  1284. curves: Map<number, {
  1285. T: {
  1286. id: number;
  1287. attr: string;
  1288. internalID: number;
  1289. attrX: boolean;
  1290. attrY: boolean;
  1291. attrZ: boolean;
  1292. containerBoneID: number;
  1293. containerID: number;
  1294. curves: {
  1295. x: {
  1296. version: any;
  1297. id: number;
  1298. internalID: number;
  1299. times: number[];
  1300. values: number[];
  1301. attrFlag: number[];
  1302. attrData: number[];
  1303. };
  1304. y: {
  1305. version: any;
  1306. id: number;
  1307. internalID: number;
  1308. times: number[];
  1309. values: number[];
  1310. attrFlag: number[];
  1311. attrData: number[];
  1312. };
  1313. z: {
  1314. version: any;
  1315. id: number;
  1316. internalID: number;
  1317. times: number[];
  1318. values: number[];
  1319. attrFlag: number[];
  1320. attrData: number[];
  1321. };
  1322. };
  1323. },
  1324. R: {
  1325. id: number;
  1326. attr: string;
  1327. internalID: number;
  1328. attrX: boolean;
  1329. attrY: boolean;
  1330. attrZ: boolean;
  1331. containerBoneID: number;
  1332. containerID: number;
  1333. curves: {
  1334. x: {
  1335. version: any;
  1336. id: number;
  1337. internalID: number;
  1338. times: number[];
  1339. values: number[];
  1340. attrFlag: number[];
  1341. attrData: number[];
  1342. };
  1343. y: {
  1344. version: any;
  1345. id: number;
  1346. internalID: number;
  1347. times: number[];
  1348. values: number[];
  1349. attrFlag: number[];
  1350. attrData: number[];
  1351. };
  1352. z: {
  1353. version: any;
  1354. id: number;
  1355. internalID: number;
  1356. times: number[];
  1357. values: number[];
  1358. attrFlag: number[];
  1359. attrData: number[];
  1360. };
  1361. };
  1362. },
  1363. S: {
  1364. id: number;
  1365. attr: string;
  1366. internalID: number;
  1367. attrX: boolean;
  1368. attrY: boolean;
  1369. attrZ: boolean;
  1370. containerBoneID: number;
  1371. containerID: number;
  1372. curves: {
  1373. x: {
  1374. version: any;
  1375. id: number;
  1376. internalID: number;
  1377. times: number[];
  1378. values: number[];
  1379. attrFlag: number[];
  1380. attrData: number[];
  1381. };
  1382. y: {
  1383. version: any;
  1384. id: number;
  1385. internalID: number;
  1386. times: number[];
  1387. values: number[];
  1388. attrFlag: number[];
  1389. attrData: number[];
  1390. };
  1391. z: {
  1392. version: any;
  1393. id: number;
  1394. internalID: number;
  1395. times: number[];
  1396. values: number[];
  1397. attrFlag: number[];
  1398. attrData: number[];
  1399. };
  1400. };
  1401. }
  1402. }>,
  1403. layers: Map<number, {
  1404. T: {
  1405. id: number;
  1406. attr: string;
  1407. internalID: number;
  1408. attrX: boolean;
  1409. attrY: boolean;
  1410. attrZ: boolean;
  1411. containerBoneID: number;
  1412. containerID: number;
  1413. curves: {
  1414. x: {
  1415. version: any;
  1416. id: number;
  1417. internalID: number;
  1418. times: number[];
  1419. values: number[];
  1420. attrFlag: number[];
  1421. attrData: number[];
  1422. };
  1423. y: {
  1424. version: any;
  1425. id: number;
  1426. internalID: number;
  1427. times: number[];
  1428. values: number[];
  1429. attrFlag: number[];
  1430. attrData: number[];
  1431. };
  1432. z: {
  1433. version: any;
  1434. id: number;
  1435. internalID: number;
  1436. times: number[];
  1437. values: number[];
  1438. attrFlag: number[];
  1439. attrData: number[];
  1440. };
  1441. },
  1442. },
  1443. R: {
  1444. id: number;
  1445. attr: string;
  1446. internalID: number;
  1447. attrX: boolean;
  1448. attrY: boolean;
  1449. attrZ: boolean;
  1450. containerBoneID: number;
  1451. containerID: number;
  1452. curves: {
  1453. x: {
  1454. version: any;
  1455. id: number;
  1456. internalID: number;
  1457. times: number[];
  1458. values: number[];
  1459. attrFlag: number[];
  1460. attrData: number[];
  1461. };
  1462. y: {
  1463. version: any;
  1464. id: number;
  1465. internalID: number;
  1466. times: number[];
  1467. values: number[];
  1468. attrFlag: number[];
  1469. attrData: number[];
  1470. };
  1471. z: {
  1472. version: any;
  1473. id: number;
  1474. internalID: number;
  1475. times: number[];
  1476. values: number[];
  1477. attrFlag: number[];
  1478. attrData: number[];
  1479. };
  1480. },
  1481. },
  1482. S: {
  1483. id: number;
  1484. attr: string;
  1485. internalID: number;
  1486. attrX: boolean;
  1487. attrY: boolean;
  1488. attrZ: boolean;
  1489. containerBoneID: number;
  1490. containerID: number;
  1491. curves: {
  1492. x: {
  1493. version: any;
  1494. id: number;
  1495. internalID: number;
  1496. times: number[];
  1497. values: number[];
  1498. attrFlag: number[];
  1499. attrData: number[];
  1500. };
  1501. y: {
  1502. version: any;
  1503. id: number;
  1504. internalID: number;
  1505. times: number[];
  1506. values: number[];
  1507. attrFlag: number[];
  1508. attrData: number[];
  1509. };
  1510. z: {
  1511. version: any;
  1512. id: number;
  1513. internalID: number;
  1514. times: number[];
  1515. values: number[];
  1516. attrFlag: number[];
  1517. attrData: number[];
  1518. };
  1519. },
  1520. }
  1521. }[]>,
  1522. stacks: Map<number, {
  1523. name: string,
  1524. layers: {
  1525. T: {
  1526. id: number;
  1527. attr: string;
  1528. internalID: number;
  1529. attrX: boolean;
  1530. attrY: boolean;
  1531. attrZ: boolean;
  1532. containerBoneID: number;
  1533. containerID: number;
  1534. curves: {
  1535. x: {
  1536. version: any;
  1537. id: number;
  1538. internalID: number;
  1539. times: number[];
  1540. values: number[];
  1541. attrFlag: number[];
  1542. attrData: number[];
  1543. };
  1544. y: {
  1545. version: any;
  1546. id: number;
  1547. internalID: number;
  1548. times: number[];
  1549. values: number[];
  1550. attrFlag: number[];
  1551. attrData: number[];
  1552. };
  1553. z: {
  1554. version: any;
  1555. id: number;
  1556. internalID: number;
  1557. times: number[];
  1558. values: number[];
  1559. attrFlag: number[];
  1560. attrData: number[];
  1561. };
  1562. };
  1563. };
  1564. R: {
  1565. id: number;
  1566. attr: string;
  1567. internalID: number;
  1568. attrX: boolean;
  1569. attrY: boolean;
  1570. attrZ: boolean;
  1571. containerBoneID: number;
  1572. containerID: number;
  1573. curves: {
  1574. x: {
  1575. version: any;
  1576. id: number;
  1577. internalID: number;
  1578. times: number[];
  1579. values: number[];
  1580. attrFlag: number[];
  1581. attrData: number[];
  1582. };
  1583. y: {
  1584. version: any;
  1585. id: number;
  1586. internalID: number;
  1587. times: number[];
  1588. values: number[];
  1589. attrFlag: number[];
  1590. attrData: number[];
  1591. };
  1592. z: {
  1593. version: any;
  1594. id: number;
  1595. internalID: number;
  1596. times: number[];
  1597. values: number[];
  1598. attrFlag: number[];
  1599. attrData: number[];
  1600. };
  1601. };
  1602. };
  1603. S: {
  1604. id: number;
  1605. attr: string;
  1606. internalID: number;
  1607. attrX: boolean;
  1608. attrY: boolean;
  1609. attrZ: boolean;
  1610. containerBoneID: number;
  1611. containerID: number;
  1612. curves: {
  1613. x: {
  1614. version: any;
  1615. id: number;
  1616. internalID: number;
  1617. times: number[];
  1618. values: number[];
  1619. attrFlag: number[];
  1620. attrData: number[];
  1621. };
  1622. y: {
  1623. version: any;
  1624. id: number;
  1625. internalID: number;
  1626. times: number[];
  1627. values: number[];
  1628. attrFlag: number[];
  1629. attrData: number[];
  1630. };
  1631. z: {
  1632. version: any;
  1633. id: number;
  1634. internalID: number;
  1635. times: number[];
  1636. values: number[];
  1637. attrFlag: number[];
  1638. attrData: number[];
  1639. };
  1640. };
  1641. };
  1642. }[][],
  1643. length: number,
  1644. frames: number }>,
  1645. length: number,
  1646. fps: number,
  1647. frames: number
  1648. }}
  1649. */
  1650. var returnObject = {
  1651. curves: new Map(),
  1652. layers: {},
  1653. stacks: {},
  1654. length: 0,
  1655. fps: fps,
  1656. frames: 0
  1657. };
  1658. var animationCurveNodes = [];
  1659. for ( var nodeID in rawNodes ) {
  1660. if ( nodeID.match( /\d+/ ) ) {
  1661. var animationNode = parseAnimationNode( FBXTree, rawNodes[ nodeID ], connections, sceneGraph );
  1662. animationCurveNodes.push( animationNode );
  1663. }
  1664. }
  1665. var tmpMap = new Map();
  1666. for ( var animationCurveNodeIndex = 0; animationCurveNodeIndex < animationCurveNodes.length; ++ animationCurveNodeIndex ) {
  1667. if ( animationCurveNodes[ animationCurveNodeIndex ] === null ) {
  1668. continue;
  1669. }
  1670. tmpMap.set( animationCurveNodes[ animationCurveNodeIndex ].id, animationCurveNodes[ animationCurveNodeIndex ] );
  1671. }
  1672. var animationCurves = [];
  1673. for ( nodeID in rawCurves ) {
  1674. if ( nodeID.match( /\d+/ ) ) {
  1675. var animationCurve = parseAnimationCurve( rawCurves[ nodeID ] );
  1676. // seems like this check would be necessary?
  1677. if ( ! connections.has( animationCurve.id ) ) continue;
  1678. animationCurves.push( animationCurve );
  1679. var firstParentConn = connections.get( animationCurve.id ).parents[ 0 ];
  1680. var firstParentID = firstParentConn.ID;
  1681. var firstParentRelationship = firstParentConn.relationship;
  1682. var axis = '';
  1683. if ( firstParentRelationship.match( /X/ ) ) {
  1684. axis = 'x';
  1685. } else if ( firstParentRelationship.match( /Y/ ) ) {
  1686. axis = 'y';
  1687. } else if ( firstParentRelationship.match( /Z/ ) ) {
  1688. axis = 'z';
  1689. } else {
  1690. continue;
  1691. }
  1692. tmpMap.get( firstParentID ).curves[ axis ] = animationCurve;
  1693. }
  1694. }
  1695. tmpMap.forEach( function ( curveNode ) {
  1696. var id = curveNode.containerBoneID;
  1697. if ( ! returnObject.curves.has( id ) ) {
  1698. returnObject.curves.set( id, { T: null, R: null, S: null } );
  1699. }
  1700. returnObject.curves.get( id )[ curveNode.attr ] = curveNode;
  1701. if ( curveNode.attr === 'R' ) {
  1702. var curves = curveNode.curves;
  1703. // Some FBX files have an AnimationCurveNode
  1704. // which isn't any connected to any AnimationCurve.
  1705. // Setting animation parameter for them here.
  1706. if ( curves.x === null ) {
  1707. curves.x = {
  1708. version: null,
  1709. times: [ 0.0 ],
  1710. values: [ 0.0 ]
  1711. };
  1712. }
  1713. if ( curves.y === null ) {
  1714. curves.y = {
  1715. version: null,
  1716. times: [ 0.0 ],
  1717. values: [ 0.0 ]
  1718. };
  1719. }
  1720. if ( curves.z === null ) {
  1721. curves.z = {
  1722. version: null,
  1723. times: [ 0.0 ],
  1724. values: [ 0.0 ]
  1725. };
  1726. }
  1727. curves.x.values = curves.x.values.map( THREE.Math.degToRad );
  1728. curves.y.values = curves.y.values.map( THREE.Math.degToRad );
  1729. curves.z.values = curves.z.values.map( THREE.Math.degToRad );
  1730. if ( curveNode.preRotations !== null ) {
  1731. var preRotations = new THREE.Euler().setFromVector3( curveNode.preRotations, 'ZYX' );
  1732. preRotations = new THREE.Quaternion().setFromEuler( preRotations );
  1733. var frameRotation = new THREE.Euler();
  1734. var frameRotationQuaternion = new THREE.Quaternion();
  1735. for ( var frame = 0; frame < curves.x.times.length; ++ frame ) {
  1736. frameRotation.set( curves.x.values[ frame ], curves.y.values[ frame ], curves.z.values[ frame ], 'ZYX' );
  1737. frameRotationQuaternion.setFromEuler( frameRotation ).premultiply( preRotations );
  1738. frameRotation.setFromQuaternion( frameRotationQuaternion, 'ZYX' );
  1739. curves.x.values[ frame ] = frameRotation.x;
  1740. curves.y.values[ frame ] = frameRotation.y;
  1741. curves.z.values[ frame ] = frameRotation.z;
  1742. }
  1743. }
  1744. }
  1745. } );
  1746. for ( var nodeID in rawLayers ) {
  1747. var layer = [];
  1748. var children = connections.get( parseInt( nodeID ) ).children;
  1749. for ( var childIndex = 0; childIndex < children.length; childIndex ++ ) {
  1750. // Skip lockInfluenceWeights
  1751. if ( tmpMap.has( children[ childIndex ].ID ) ) {
  1752. var curveNode = tmpMap.get( children[ childIndex ].ID );
  1753. var boneID = curveNode.containerBoneID;
  1754. if ( layer[ boneID ] === undefined ) {
  1755. layer[ boneID ] = {
  1756. T: null,
  1757. R: null,
  1758. S: null
  1759. };
  1760. }
  1761. layer[ boneID ][ curveNode.attr ] = curveNode;
  1762. }
  1763. }
  1764. returnObject.layers[ nodeID ] = layer;
  1765. }
  1766. for ( var nodeID in rawStacks ) {
  1767. var layers = [];
  1768. var children = connections.get( parseInt( nodeID ) ).children;
  1769. var timestamps = { max: 0, min: Number.MAX_VALUE };
  1770. for ( var childIndex = 0; childIndex < children.length; ++ childIndex ) {
  1771. var currentLayer = returnObject.layers[ children[ childIndex ].ID ];
  1772. if ( currentLayer !== undefined ) {
  1773. layers.push( currentLayer );
  1774. for ( var currentLayerIndex = 0, currentLayerLength = currentLayer.length; currentLayerIndex < currentLayerLength; ++ currentLayerIndex ) {
  1775. var layer = currentLayer[ currentLayerIndex ];
  1776. if ( layer ) {
  1777. getCurveNodeMaxMinTimeStamps( layer, timestamps );
  1778. }
  1779. }
  1780. }
  1781. }
  1782. // Do we have an animation clip with actual length?
  1783. if ( timestamps.max > timestamps.min ) {
  1784. returnObject.stacks[ nodeID ] = {
  1785. name: rawStacks[ nodeID ].attrName,
  1786. layers: layers,
  1787. length: timestamps.max - timestamps.min,
  1788. frames: ( timestamps.max - timestamps.min ) * returnObject.fps
  1789. };
  1790. }
  1791. }
  1792. return returnObject;
  1793. }
  1794. function parseAnimationNode( FBXTree, animationCurveNode, connections, sceneGraph ) {
  1795. var rawModels = FBXTree.Objects.subNodes.Model;
  1796. var returnObject = {
  1797. id: animationCurveNode.id,
  1798. attr: animationCurveNode.attrName,
  1799. internalID: animationCurveNode.id,
  1800. attrX: false,
  1801. attrY: false,
  1802. attrZ: false,
  1803. containerBoneID: - 1,
  1804. containerID: - 1,
  1805. curves: {
  1806. x: null,
  1807. y: null,
  1808. z: null
  1809. },
  1810. preRotations: null
  1811. };
  1812. if ( returnObject.attr.match( /S|R|T/ ) ) {
  1813. for ( var attributeKey in animationCurveNode.properties ) {
  1814. if ( attributeKey.match( /X/ ) ) {
  1815. returnObject.attrX = true;
  1816. }
  1817. if ( attributeKey.match( /Y/ ) ) {
  1818. returnObject.attrY = true;
  1819. }
  1820. if ( attributeKey.match( /Z/ ) ) {
  1821. returnObject.attrZ = true;
  1822. }
  1823. }
  1824. } else {
  1825. return null;
  1826. }
  1827. var conns = connections.get( returnObject.id );
  1828. var containerIndices = conns.parents;
  1829. for ( var containerIndicesIndex = containerIndices.length - 1; containerIndicesIndex >= 0; -- containerIndicesIndex ) {
  1830. var boneID = findIndex( sceneGraph.skeleton.bones, function ( bone ) {
  1831. return bone.FBX_ID === containerIndices[ containerIndicesIndex ].ID;
  1832. } );
  1833. if ( boneID > - 1 ) {
  1834. returnObject.containerBoneID = boneID;
  1835. returnObject.containerID = containerIndices[ containerIndicesIndex ].ID;
  1836. var model = rawModels[ returnObject.containerID.toString() ];
  1837. if ( 'PreRotation' in model.properties ) {
  1838. returnObject.preRotations = parseVector3( model.properties.PreRotation ).multiplyScalar( Math.PI / 180 );
  1839. }
  1840. break;
  1841. }
  1842. }
  1843. return returnObject;
  1844. }
  1845. function parseAnimationCurve( animationCurve ) {
  1846. return {
  1847. version: null,
  1848. id: animationCurve.id,
  1849. internalID: animationCurve.id,
  1850. times: animationCurve.subNodes.KeyTime.properties.a.map( convertFBXTimeToSeconds ),
  1851. values: animationCurve.subNodes.KeyValueFloat.properties.a,
  1852. attrFlag: animationCurve.subNodes.KeyAttrFlags.properties.a,
  1853. attrData: animationCurve.subNodes.KeyAttrDataFloat.properties.a,
  1854. };
  1855. }
  1856. // Sets the maxTimeStamp and minTimeStamp variables if it has timeStamps that are either larger or smaller
  1857. // than the max or min respectively.
  1858. function getCurveNodeMaxMinTimeStamps( layer, timestamps ) {
  1859. if ( layer.R ) {
  1860. getCurveMaxMinTimeStamp( layer.R.curves, timestamps );
  1861. }
  1862. if ( layer.S ) {
  1863. getCurveMaxMinTimeStamp( layer.S.curves, timestamps );
  1864. }
  1865. if ( layer.T ) {
  1866. getCurveMaxMinTimeStamp( layer.T.curves, timestamps );
  1867. }
  1868. }
  1869. // Sets the maxTimeStamp and minTimeStamp if one of the curve's time stamps
  1870. // exceeds the maximum or minimum.
  1871. function getCurveMaxMinTimeStamp( curve, timestamps ) {
  1872. if ( curve.x ) {
  1873. getCurveAxisMaxMinTimeStamps( curve.x, timestamps );
  1874. }
  1875. if ( curve.y ) {
  1876. getCurveAxisMaxMinTimeStamps( curve.y, timestamps );
  1877. }
  1878. if ( curve.z ) {
  1879. getCurveAxisMaxMinTimeStamps( curve.z, timestamps );
  1880. }
  1881. }
  1882. // Sets the maxTimeStamp and minTimeStamp if one of its timestamps exceeds the maximum or minimum.
  1883. function getCurveAxisMaxMinTimeStamps( axis, timestamps ) {
  1884. timestamps.max = axis.times[ axis.times.length - 1 ] > timestamps.max ? axis.times[ axis.times.length - 1 ] : timestamps.max;
  1885. timestamps.min = axis.times[ 0 ] < timestamps.min ? axis.times[ 0 ] : timestamps.min;
  1886. }
  1887. function addAnimations( group, animations ) {
  1888. if ( group.animations === undefined ) {
  1889. group.animations = [];
  1890. }
  1891. var stacks = animations.stacks;
  1892. for ( var key in stacks ) {
  1893. var stack = stacks[ key ];
  1894. var animationData = {
  1895. name: stack.name,
  1896. fps: animations.fps,
  1897. length: stack.length,
  1898. hierarchy: []
  1899. };
  1900. var bones = group.skeleton.bones;
  1901. for ( var bonesIndex = 0, bonesLength = bones.length; bonesIndex < bonesLength; ++ bonesIndex ) {
  1902. var bone = bones[ bonesIndex ];
  1903. var name = bone.name.replace( /.*:/, '' );
  1904. var parentIndex = findIndex( bones, function ( parentBone ) {
  1905. return bone.parent === parentBone;
  1906. } );
  1907. animationData.hierarchy.push( { parent: parentIndex, name: name, keys: [] } );
  1908. }
  1909. for ( var frame = 0; frame <= stack.frames; frame ++ ) {
  1910. for ( var bonesIndex = 0, bonesLength = bones.length; bonesIndex < bonesLength; ++ bonesIndex ) {
  1911. var bone = bones[ bonesIndex ];
  1912. var boneIndex = bonesIndex;
  1913. var animationNode = stack.layers[ 0 ][ boneIndex ];
  1914. for ( var hierarchyIndex = 0, hierarchyLength = animationData.hierarchy.length; hierarchyIndex < hierarchyLength; ++ hierarchyIndex ) {
  1915. var node = animationData.hierarchy[ hierarchyIndex ];
  1916. if ( node.name === bone.name ) {
  1917. node.keys.push( generateKey( animations, animationNode, bone, frame ) );
  1918. }
  1919. }
  1920. }
  1921. }
  1922. group.animations.push( THREE.AnimationClip.parseAnimation( animationData, bones ) );
  1923. }
  1924. }
  1925. var euler = new THREE.Euler();
  1926. var quaternion = new THREE.Quaternion();
  1927. function generateKey( animations, animationNode, bone, frame ) {
  1928. var key = {
  1929. time: frame / animations.fps,
  1930. pos: bone.position.toArray(),
  1931. rot: bone.quaternion.toArray(),
  1932. scl: bone.scale.toArray()
  1933. };
  1934. if ( animationNode === undefined ) return key;
  1935. euler.setFromQuaternion( bone.quaternion, 'ZYX', false );
  1936. try {
  1937. if ( hasCurve( animationNode, 'T' ) && hasKeyOnFrame( animationNode.T, frame ) ) {
  1938. if ( animationNode.T.curves.x.values[ frame ] ) {
  1939. key.pos[ 0 ] = animationNode.T.curves.x.values[ frame ];
  1940. }
  1941. if ( animationNode.T.curves.y.values[ frame ] ) {
  1942. key.pos[ 1 ] = animationNode.T.curves.y.values[ frame ];
  1943. }
  1944. if ( animationNode.T.curves.z.values[ frame ] ) {
  1945. key.pos[ 2 ] = animationNode.T.curves.z.values[ frame ];
  1946. }
  1947. }
  1948. if ( hasCurve( animationNode, 'R' ) && hasKeyOnFrame( animationNode.R, frame ) ) {
  1949. // Only update the euler's values if rotation is defined for the axis on this frame
  1950. if ( animationNode.R.curves.x.values[ frame ] ) {
  1951. euler.x = animationNode.R.curves.x.values[ frame ];
  1952. }
  1953. if ( animationNode.R.curves.y.values[ frame ] ) {
  1954. euler.y = animationNode.R.curves.y.values[ frame ];
  1955. }
  1956. if ( animationNode.R.curves.z.values[ frame ] ) {
  1957. euler.z = animationNode.R.curves.z.values[ frame ];
  1958. }
  1959. quaternion.setFromEuler( euler );
  1960. key.rot = quaternion.toArray();
  1961. }
  1962. if ( hasCurve( animationNode, 'S' ) && hasKeyOnFrame( animationNode.S, frame ) ) {
  1963. if ( animationNode.T.curves.x.values[ frame ] ) {
  1964. key.scl[ 0 ] = animationNode.S.curves.x.values[ frame ];
  1965. }
  1966. if ( animationNode.T.curves.y.values[ frame ] ) {
  1967. key.scl[ 1 ] = animationNode.S.curves.y.values[ frame ];
  1968. }
  1969. if ( animationNode.T.curves.z.values[ frame ] ) {
  1970. key.scl[ 2 ] = animationNode.S.curves.z.values[ frame ];
  1971. }
  1972. }
  1973. } catch ( error ) {
  1974. // Curve is not fully plotted.
  1975. console.log( 'THREE.FBXLoader: ', bone );
  1976. console.log( 'THREE.FBXLoader: ', error );
  1977. }
  1978. return key;
  1979. }
  1980. var AXES = [ 'x', 'y', 'z' ];
  1981. function hasCurve( animationNode, attribute ) {
  1982. if ( animationNode === undefined ) {
  1983. return false;
  1984. }
  1985. var attributeNode = animationNode[ attribute ];
  1986. if ( ! attributeNode ) {
  1987. return false;
  1988. }
  1989. return AXES.every( function ( key ) {
  1990. return attributeNode.curves[ key ] !== null;
  1991. } );
  1992. }
  1993. function hasKeyOnFrame( attributeNode, frame ) {
  1994. return AXES.every( function ( key ) {
  1995. return isKeyExistOnFrame( attributeNode.curves[ key ], frame );
  1996. } );
  1997. }
  1998. function isKeyExistOnFrame( curve, frame ) {
  1999. return curve.values[ frame ] !== undefined;
  2000. }
  2001. // parse an FBX file in ASCII format
  2002. function TextParser() {}
  2003. Object.assign( TextParser.prototype, {
  2004. getPrevNode: function () {
  2005. return this.nodeStack[ this.currentIndent - 2 ];
  2006. },
  2007. getCurrentNode: function () {
  2008. return this.nodeStack[ this.currentIndent - 1 ];
  2009. },
  2010. getCurrentProp: function () {
  2011. return this.currentProp;
  2012. },
  2013. pushStack: function ( node ) {
  2014. this.nodeStack.push( node );
  2015. this.currentIndent += 1;
  2016. },
  2017. popStack: function () {
  2018. this.nodeStack.pop();
  2019. this.currentIndent -= 1;
  2020. },
  2021. setCurrentProp: function ( val, name ) {
  2022. this.currentProp = val;
  2023. this.currentPropName = name;
  2024. },
  2025. parse: function ( text ) {
  2026. this.currentIndent = 0;
  2027. this.allNodes = new FBXTree();
  2028. this.nodeStack = [];
  2029. this.currentProp = [];
  2030. this.currentPropName = '';
  2031. var split = text.split( '\n' );
  2032. for ( var lineNum = 0, lineLength = split.length; lineNum < lineLength; lineNum ++ ) {
  2033. var l = split[ lineNum ];
  2034. // skip comment line
  2035. if ( l.match( /^[\s\t]*;/ ) ) {
  2036. continue;
  2037. }
  2038. // skip empty line
  2039. if ( l.match( /^[\s\t]*$/ ) ) {
  2040. continue;
  2041. }
  2042. // beginning of node
  2043. var beginningOfNodeExp = new RegExp( '^\\t{' + this.currentIndent + '}(\\w+):(.*){', '' );
  2044. var match = l.match( beginningOfNodeExp );
  2045. if ( match ) {
  2046. var nodeName = match[ 1 ].trim().replace( /^"/, '' ).replace( /"$/, '' );
  2047. var nodeAttrs = match[ 2 ].split( ',' );
  2048. for ( var i = 0, l = nodeAttrs.length; i < l; i ++ ) {
  2049. nodeAttrs[ i ] = nodeAttrs[ i ].trim().replace( /^"/, '' ).replace( /"$/, '' );
  2050. }
  2051. this.parseNodeBegin( l, nodeName, nodeAttrs || null );
  2052. continue;
  2053. }
  2054. // node's property
  2055. var propExp = new RegExp( '^\\t{' + ( this.currentIndent ) + '}(\\w+):[\\s\\t\\r\\n](.*)' );
  2056. var match = l.match( propExp );
  2057. if ( match ) {
  2058. var propName = match[ 1 ].replace( /^"/, '' ).replace( /"$/, '' ).trim();
  2059. var propValue = match[ 2 ].replace( /^"/, '' ).replace( /"$/, '' ).trim();
  2060. // for special case: base64 image data follows "Content: ," line
  2061. // Content: ,
  2062. // "iVB..."
  2063. if ( propName === 'Content' && propValue === ',' ) {
  2064. propValue = split[ ++ lineNum ].replace( /"/g, '' ).replace( /,$/, '' ).trim();
  2065. }
  2066. this.parseNodeProperty( l, propName, propValue );
  2067. continue;
  2068. }
  2069. // end of node
  2070. var endOfNodeExp = new RegExp( '^\\t{' + ( this.currentIndent - 1 ) + '}}' );
  2071. if ( l.match( endOfNodeExp ) ) {
  2072. this.nodeEnd();
  2073. continue;
  2074. }
  2075. // large arrays are split over multiple lines terminated with a ',' character
  2076. // if this is encountered the line needs to be joined to the previous line
  2077. if ( l.match( /^[^\s\t}]/ ) ) {
  2078. this.parseNodePropertyContinued( l );
  2079. }
  2080. }
  2081. return this.allNodes;
  2082. },
  2083. parseNodeBegin: function ( line, nodeName, nodeAttrs ) {
  2084. var node = { 'name': nodeName, properties: {}, 'subNodes': {} };
  2085. var attrs = this.parseNodeAttr( nodeAttrs );
  2086. var currentNode = this.getCurrentNode();
  2087. // a top node
  2088. if ( this.currentIndent === 0 ) {
  2089. this.allNodes.add( nodeName, node );
  2090. } else { // a subnode
  2091. // if the subnode already exists, append it
  2092. if ( nodeName in currentNode.subNodes ) {
  2093. var tmp = currentNode.subNodes[ nodeName ];
  2094. if ( this.isFlattenNode( currentNode.subNodes[ nodeName ] ) ) {
  2095. if ( attrs.id === '' ) {
  2096. currentNode.subNodes[ nodeName ] = [];
  2097. currentNode.subNodes[ nodeName ].push( tmp );
  2098. } else {
  2099. currentNode.subNodes[ nodeName ] = {};
  2100. currentNode.subNodes[ nodeName ][ tmp.id ] = tmp;
  2101. }
  2102. }
  2103. if ( attrs.id === '' ) {
  2104. currentNode.subNodes[ nodeName ].push( node );
  2105. } else {
  2106. currentNode.subNodes[ nodeName ][ attrs.id ] = node;
  2107. }
  2108. } else if ( typeof attrs.id === 'number' || attrs.id.match( /^\d+$/ ) ) {
  2109. currentNode.subNodes[ nodeName ] = {};
  2110. currentNode.subNodes[ nodeName ][ attrs.id ] = node;
  2111. } else {
  2112. currentNode.subNodes[ nodeName ] = node;
  2113. }
  2114. }
  2115. // for this ↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓
  2116. // NodeAttribute: 1001463072, "NodeAttribute::", "LimbNode" {
  2117. if ( nodeAttrs ) {
  2118. node.id = attrs.id;
  2119. node.attrName = attrs.name;
  2120. node.attrType = attrs.type;
  2121. }
  2122. this.pushStack( node );
  2123. },
  2124. parseNodeAttr: function ( attrs ) {
  2125. var id = attrs[ 0 ];
  2126. if ( attrs[ 0 ] !== '' ) {
  2127. id = parseInt( attrs[ 0 ] );
  2128. if ( isNaN( id ) ) {
  2129. id = attrs[ 0 ];
  2130. }
  2131. }
  2132. var name = '', type = '';
  2133. if ( attrs.length > 1 ) {
  2134. name = attrs[ 1 ].replace( /^(\w+)::/, '' );
  2135. type = attrs[ 2 ];
  2136. }
  2137. return { id: id, name: name, type: type };
  2138. },
  2139. parseNodeProperty: function ( line, propName, propValue ) {
  2140. var currentNode = this.getCurrentNode();
  2141. var parentName = currentNode.name;
  2142. // special case where the parent node is something like "Properties70"
  2143. // these children nodes must treated carefully
  2144. if ( parentName !== undefined ) {
  2145. var propMatch = parentName.match( /Properties(\d)+/ );
  2146. if ( propMatch ) {
  2147. this.parseNodeSpecialProperty( line, propName, propValue );
  2148. return;
  2149. }
  2150. }
  2151. // Connections
  2152. if ( propName === 'C' ) {
  2153. var connProps = propValue.split( ',' ).slice( 1 );
  2154. var from = parseInt( connProps[ 0 ] );
  2155. var to = parseInt( connProps[ 1 ] );
  2156. var rest = propValue.split( ',' ).slice( 3 );
  2157. rest = rest.map( function ( elem ) {
  2158. return elem.trim().replace( /^"/, '' );
  2159. } );
  2160. propName = 'connections';
  2161. propValue = [ from, to ];
  2162. append( propValue, rest );
  2163. if ( currentNode.properties[ propName ] === undefined ) {
  2164. currentNode.properties[ propName ] = [];
  2165. }
  2166. }
  2167. // Node
  2168. if ( propName === 'Node' ) {
  2169. var id = parseInt( propValue );
  2170. currentNode.properties.id = id;
  2171. currentNode.id = id;
  2172. }
  2173. // already exists in properties, then append this
  2174. if ( propName in currentNode.properties ) {
  2175. if ( Array.isArray( currentNode.properties[ propName ] ) ) {
  2176. currentNode.properties[ propName ].push( propValue );
  2177. } else {
  2178. currentNode.properties[ propName ] += propValue;
  2179. }
  2180. } else {
  2181. if ( Array.isArray( currentNode.properties[ propName ] ) ) {
  2182. currentNode.properties[ propName ].push( propValue );
  2183. } else {
  2184. currentNode.properties[ propName ] = propValue;
  2185. }
  2186. }
  2187. this.setCurrentProp( currentNode.properties, propName );
  2188. // convert string to array, unless it ends in ',' in which case more will be added to it
  2189. if ( propName === 'a' && propValue.slice( - 1 ) !== ',' ) {
  2190. currentNode.properties.a = parseNumberArray( propValue );
  2191. }
  2192. },
  2193. parseNodePropertyContinued: function ( line ) {
  2194. this.currentProp[ this.currentPropName ] += line;
  2195. // if the line doesn't end in ',' we have reached the end of the property value
  2196. // so convert the string to an array
  2197. if ( line.slice( - 1 ) !== ',' ) {
  2198. var currentNode = this.getCurrentNode();
  2199. currentNode.properties.a = parseNumberArray( currentNode.properties.a );
  2200. }
  2201. },
  2202. parseNodeSpecialProperty: function ( line, propName, propValue ) {
  2203. // split this
  2204. // P: "Lcl Scaling", "Lcl Scaling", "", "A",1,1,1
  2205. // into array like below
  2206. // ["Lcl Scaling", "Lcl Scaling", "", "A", "1,1,1" ]
  2207. var props = propValue.split( '",' );
  2208. for ( var i = 0, l = props.length; i < l; i ++ ) {
  2209. props[ i ] = props[ i ].trim().replace( /^\"/, '' ).replace( /\s/, '_' );
  2210. }
  2211. var innerPropName = props[ 0 ];
  2212. var innerPropType1 = props[ 1 ];
  2213. var innerPropType2 = props[ 2 ];
  2214. var innerPropFlag = props[ 3 ];
  2215. var innerPropValue = props[ 4 ];
  2216. /*
  2217. if ( innerPropValue === undefined ) {
  2218. innerPropValue = props[3];
  2219. }
  2220. */
  2221. // cast value to its type
  2222. switch ( innerPropType1 ) {
  2223. case 'int':
  2224. case 'enum':
  2225. case 'bool':
  2226. case 'ULongLong':
  2227. innerPropValue = parseInt( innerPropValue );
  2228. break;
  2229. case 'double':
  2230. case 'Number':
  2231. case 'FieldOfView':
  2232. innerPropValue = parseFloat( innerPropValue );
  2233. break;
  2234. case 'ColorRGB':
  2235. case 'Vector3D':
  2236. case 'Lcl_Translation':
  2237. case 'Lcl_Rotation':
  2238. case 'Lcl_Scaling':
  2239. innerPropValue = parseNumberArray( innerPropValue );
  2240. break;
  2241. }
  2242. // CAUTION: these props must append to parent's parent
  2243. this.getPrevNode().properties[ innerPropName ] = {
  2244. 'type': innerPropType1,
  2245. 'type2': innerPropType2,
  2246. 'flag': innerPropFlag,
  2247. 'value': innerPropValue
  2248. };
  2249. this.setCurrentProp( this.getPrevNode().properties, innerPropName );
  2250. },
  2251. nodeEnd: function () {
  2252. this.popStack();
  2253. },
  2254. isFlattenNode: function ( node ) {
  2255. return ( 'subNodes' in node && 'properties' in node ) ? true : false;
  2256. }
  2257. } );
  2258. // Parse an FBX file in Binary format
  2259. function BinaryParser() {}
  2260. Object.assign( BinaryParser.prototype, {
  2261. parse: function ( buffer ) {
  2262. var reader = new BinaryReader( buffer );
  2263. reader.skip( 23 ); // skip magic 23 bytes
  2264. var version = reader.getUint32();
  2265. console.log( 'THREE.FBXLoader: FBX binary version: ' + version );
  2266. var allNodes = new FBXTree();
  2267. while ( ! this.endOfContent( reader ) ) {
  2268. var node = this.parseNode( reader, version );
  2269. if ( node !== null ) allNodes.add( node.name, node );
  2270. }
  2271. return allNodes;
  2272. },
  2273. // Check if reader has reached the end of content.
  2274. endOfContent: function ( reader ) {
  2275. // footer size: 160bytes + 16-byte alignment padding
  2276. // - 16bytes: magic
  2277. // - padding til 16-byte alignment (at least 1byte?)
  2278. // (seems like some exporters embed fixed 15 or 16bytes?)
  2279. // - 4bytes: magic
  2280. // - 4bytes: version
  2281. // - 120bytes: zero
  2282. // - 16bytes: magic
  2283. if ( reader.size() % 16 === 0 ) {
  2284. return ( ( reader.getOffset() + 160 + 16 ) & ~ 0xf ) >= reader.size();
  2285. } else {
  2286. return reader.getOffset() + 160 + 16 >= reader.size();
  2287. }
  2288. },
  2289. parseNode: function ( reader, version ) {
  2290. // The first three data sizes depends on version.
  2291. var endOffset = ( version >= 7500 ) ? reader.getUint64() : reader.getUint32();
  2292. var numProperties = ( version >= 7500 ) ? reader.getUint64() : reader.getUint32();
  2293. // note: do not remove this even if you get a linter warning as it moves the buffer forward
  2294. var propertyListLen = ( version >= 7500 ) ? reader.getUint64() : reader.getUint32();
  2295. var nameLen = reader.getUint8();
  2296. var name = reader.getString( nameLen );
  2297. // Regards this node as NULL-record if endOffset is zero
  2298. if ( endOffset === 0 ) return null;
  2299. var propertyList = [];
  2300. for ( var i = 0; i < numProperties; i ++ ) {
  2301. propertyList.push( this.parseProperty( reader ) );
  2302. }
  2303. // Regards the first three elements in propertyList as id, attrName, and attrType
  2304. var id = propertyList.length > 0 ? propertyList[ 0 ] : '';
  2305. var attrName = propertyList.length > 1 ? propertyList[ 1 ] : '';
  2306. var attrType = propertyList.length > 2 ? propertyList[ 2 ] : '';
  2307. var subNodes = {};
  2308. var properties = {};
  2309. var isSingleProperty = false;
  2310. // check if this node represents just a single property
  2311. // like (name, 0) set or (name2, [0, 1, 2]) set of {name: 0, name2: [0, 1, 2]}
  2312. if ( numProperties === 1 && reader.getOffset() === endOffset ) {
  2313. isSingleProperty = true;
  2314. }
  2315. while ( endOffset > reader.getOffset() ) {
  2316. var node = this.parseNode( reader, version );
  2317. if ( node === null ) continue;
  2318. // special case: child node is single property
  2319. if ( node.singleProperty === true ) {
  2320. var value = node.propertyList[ 0 ];
  2321. if ( Array.isArray( value ) ) {
  2322. node.properties[ node.name ] = node.propertyList[ 0 ];
  2323. subNodes[ node.name ] = node;
  2324. node.properties.a = value;
  2325. } else {
  2326. properties[ node.name ] = value;
  2327. }
  2328. continue;
  2329. }
  2330. // parse connections
  2331. if ( name === 'Connections' && node.name === 'C' ) {
  2332. var array = [];
  2333. for ( var i = 1, il = node.propertyList.length; i < il; i ++ ) {
  2334. array[ i - 1 ] = node.propertyList[ i ];
  2335. }
  2336. if ( properties.connections === undefined ) {
  2337. properties.connections = [];
  2338. }
  2339. properties.connections.push( array );
  2340. continue;
  2341. }
  2342. // special case: child node is Properties\d+
  2343. // move child node's properties to this node.
  2344. if ( node.name.match( /^Properties\d+$/ ) ) {
  2345. var keys = Object.keys( node.properties );
  2346. for ( var i = 0, il = keys.length; i < il; i ++ ) {
  2347. var key = keys[ i ];
  2348. properties[ key ] = node.properties[ key ];
  2349. }
  2350. continue;
  2351. }
  2352. // parse 'properties70'
  2353. if ( name.match( /^Properties\d+$/ ) && node.name === 'P' ) {
  2354. var innerPropName = node.propertyList[ 0 ];
  2355. var innerPropType1 = node.propertyList[ 1 ];
  2356. var innerPropType2 = node.propertyList[ 2 ];
  2357. var innerPropFlag = node.propertyList[ 3 ];
  2358. var innerPropValue;
  2359. if ( innerPropName.indexOf( 'Lcl ' ) === 0 ) innerPropName = innerPropName.replace( 'Lcl ', 'Lcl_' );
  2360. if ( innerPropType1.indexOf( 'Lcl ' ) === 0 ) innerPropType1 = innerPropType1.replace( 'Lcl ', 'Lcl_' );
  2361. if ( innerPropType1 === 'ColorRGB' || innerPropType1 === 'Vector' || innerPropType1 === 'Vector3D' || innerPropType1.indexOf( 'Lcl_' ) === 0 ) {
  2362. innerPropValue = [
  2363. node.propertyList[ 4 ],
  2364. node.propertyList[ 5 ],
  2365. node.propertyList[ 6 ]
  2366. ];
  2367. } else {
  2368. innerPropValue = node.propertyList[ 4 ];
  2369. }
  2370. // this will be copied to parent, see above
  2371. properties[ innerPropName ] = {
  2372. 'type': innerPropType1,
  2373. 'type2': innerPropType2,
  2374. 'flag': innerPropFlag,
  2375. 'value': innerPropValue
  2376. };
  2377. continue;
  2378. }
  2379. if ( subNodes[ node.name ] === undefined ) {
  2380. if ( typeof node.id === 'number' ) {
  2381. subNodes[ node.name ] = {};
  2382. subNodes[ node.name ][ node.id ] = node;
  2383. } else {
  2384. subNodes[ node.name ] = node;
  2385. }
  2386. } else {
  2387. if ( node.id === '' ) {
  2388. if ( ! Array.isArray( subNodes[ node.name ] ) ) {
  2389. subNodes[ node.name ] = [ subNodes[ node.name ] ];
  2390. }
  2391. subNodes[ node.name ].push( node );
  2392. } else {
  2393. if ( subNodes[ node.name ][ node.id ] === undefined ) {
  2394. subNodes[ node.name ][ node.id ] = node;
  2395. } else {
  2396. // conflict id. irregular?
  2397. if ( ! Array.isArray( subNodes[ node.name ][ node.id ] ) ) {
  2398. subNodes[ node.name ][ node.id ] = [ subNodes[ node.name ][ node.id ] ];
  2399. }
  2400. subNodes[ node.name ][ node.id ].push( node );
  2401. }
  2402. }
  2403. }
  2404. }
  2405. return {
  2406. singleProperty: isSingleProperty,
  2407. id: id,
  2408. attrName: attrName,
  2409. attrType: attrType,
  2410. name: name,
  2411. properties: properties,
  2412. propertyList: propertyList, // raw property list used by parent
  2413. subNodes: subNodes
  2414. };
  2415. },
  2416. parseProperty: function ( reader ) {
  2417. var type = reader.getChar();
  2418. switch ( type ) {
  2419. case 'C':
  2420. return reader.getBoolean();
  2421. case 'D':
  2422. return reader.getFloat64();
  2423. case 'F':
  2424. return reader.getFloat32();
  2425. case 'I':
  2426. return reader.getInt32();
  2427. case 'L':
  2428. return reader.getInt64();
  2429. case 'R':
  2430. var length = reader.getUint32();
  2431. return reader.getArrayBuffer( length );
  2432. case 'S':
  2433. var length = reader.getUint32();
  2434. return reader.getString( length );
  2435. case 'Y':
  2436. return reader.getInt16();
  2437. case 'b':
  2438. case 'c':
  2439. case 'd':
  2440. case 'f':
  2441. case 'i':
  2442. case 'l':
  2443. var arrayLength = reader.getUint32();
  2444. var encoding = reader.getUint32(); // 0: non-compressed, 1: compressed
  2445. var compressedLength = reader.getUint32();
  2446. if ( encoding === 0 ) {
  2447. switch ( type ) {
  2448. case 'b':
  2449. case 'c':
  2450. return reader.getBooleanArray( arrayLength );
  2451. case 'd':
  2452. return reader.getFloat64Array( arrayLength );
  2453. case 'f':
  2454. return reader.getFloat32Array( arrayLength );
  2455. case 'i':
  2456. return reader.getInt32Array( arrayLength );
  2457. case 'l':
  2458. return reader.getInt64Array( arrayLength );
  2459. }
  2460. }
  2461. if ( window.Zlib === undefined ) {
  2462. throw new Error( 'THREE.FBXLoader: External library Inflate.min.js required, obtain or import from https://github.com/imaya/zlib.js' );
  2463. }
  2464. var inflate = new Zlib.Inflate( new Uint8Array( reader.getArrayBuffer( compressedLength ) ) ); // eslint-disable-line no-undef
  2465. var reader2 = new BinaryReader( inflate.decompress().buffer );
  2466. switch ( type ) {
  2467. case 'b':
  2468. case 'c':
  2469. return reader2.getBooleanArray( arrayLength );
  2470. case 'd':
  2471. return reader2.getFloat64Array( arrayLength );
  2472. case 'f':
  2473. return reader2.getFloat32Array( arrayLength );
  2474. case 'i':
  2475. return reader2.getInt32Array( arrayLength );
  2476. case 'l':
  2477. return reader2.getInt64Array( arrayLength );
  2478. }
  2479. default:
  2480. throw new Error( 'THREE.FBXLoader: Unknown property type ' + type );
  2481. }
  2482. }
  2483. } );
  2484. function BinaryReader( buffer, littleEndian ) {
  2485. this.dv = new DataView( buffer );
  2486. this.offset = 0;
  2487. this.littleEndian = ( littleEndian !== undefined ) ? littleEndian : true;
  2488. }
  2489. Object.assign( BinaryReader.prototype, {
  2490. getOffset: function () {
  2491. return this.offset;
  2492. },
  2493. size: function () {
  2494. return this.dv.buffer.byteLength;
  2495. },
  2496. skip: function ( length ) {
  2497. this.offset += length;
  2498. },
  2499. // seems like true/false representation depends on exporter.
  2500. // true: 1 or 'Y'(=0x59), false: 0 or 'T'(=0x54)
  2501. // then sees LSB.
  2502. getBoolean: function () {
  2503. return ( this.getUint8() & 1 ) === 1;
  2504. },
  2505. getBooleanArray: function ( size ) {
  2506. var a = [];
  2507. for ( var i = 0; i < size; i ++ ) {
  2508. a.push( this.getBoolean() );
  2509. }
  2510. return a;
  2511. },
  2512. getInt8: function () {
  2513. var value = this.dv.getInt8( this.offset );
  2514. this.offset += 1;
  2515. return value;
  2516. },
  2517. getInt8Array: function ( size ) {
  2518. var a = [];
  2519. for ( var i = 0; i < size; i ++ ) {
  2520. a.push( this.getInt8() );
  2521. }
  2522. return a;
  2523. },
  2524. getUint8: function () {
  2525. var value = this.dv.getUint8( this.offset );
  2526. this.offset += 1;
  2527. return value;
  2528. },
  2529. getUint8Array: function ( size ) {
  2530. var a = [];
  2531. for ( var i = 0; i < size; i ++ ) {
  2532. a.push( this.getUint8() );
  2533. }
  2534. return a;
  2535. },
  2536. getInt16: function () {
  2537. var value = this.dv.getInt16( this.offset, this.littleEndian );
  2538. this.offset += 2;
  2539. return value;
  2540. },
  2541. getInt16Array: function ( size ) {
  2542. var a = [];
  2543. for ( var i = 0; i < size; i ++ ) {
  2544. a.push( this.getInt16() );
  2545. }
  2546. return a;
  2547. },
  2548. getUint16: function () {
  2549. var value = this.dv.getUint16( this.offset, this.littleEndian );
  2550. this.offset += 2;
  2551. return value;
  2552. },
  2553. getUint16Array: function ( size ) {
  2554. var a = [];
  2555. for ( var i = 0; i < size; i ++ ) {
  2556. a.push( this.getUint16() );
  2557. }
  2558. return a;
  2559. },
  2560. getInt32: function () {
  2561. var value = this.dv.getInt32( this.offset, this.littleEndian );
  2562. this.offset += 4;
  2563. return value;
  2564. },
  2565. getInt32Array: function ( size ) {
  2566. var a = [];
  2567. for ( var i = 0; i < size; i ++ ) {
  2568. a.push( this.getInt32() );
  2569. }
  2570. return a;
  2571. },
  2572. getUint32: function () {
  2573. var value = this.dv.getUint32( this.offset, this.littleEndian );
  2574. this.offset += 4;
  2575. return value;
  2576. },
  2577. getUint32Array: function ( size ) {
  2578. var a = [];
  2579. for ( var i = 0; i < size; i ++ ) {
  2580. a.push( this.getUint32() );
  2581. }
  2582. return a;
  2583. },
  2584. // JavaScript doesn't support 64-bit integer so calculate this here
  2585. // 1 << 32 will return 1 so using multiply operation instead here.
  2586. // There's a possibility that this method returns wrong value if the value
  2587. // is out of the range between Number.MAX_SAFE_INTEGER and Number.MIN_SAFE_INTEGER.
  2588. // TODO: safely handle 64-bit integer
  2589. getInt64: function () {
  2590. var low, high;
  2591. if ( this.littleEndian ) {
  2592. low = this.getUint32();
  2593. high = this.getUint32();
  2594. } else {
  2595. high = this.getUint32();
  2596. low = this.getUint32();
  2597. }
  2598. // calculate negative value
  2599. if ( high & 0x80000000 ) {
  2600. high = ~ high & 0xFFFFFFFF;
  2601. low = ~ low & 0xFFFFFFFF;
  2602. if ( low === 0xFFFFFFFF ) high = ( high + 1 ) & 0xFFFFFFFF;
  2603. low = ( low + 1 ) & 0xFFFFFFFF;
  2604. return - ( high * 0x100000000 + low );
  2605. }
  2606. return high * 0x100000000 + low;
  2607. },
  2608. getInt64Array: function ( size ) {
  2609. var a = [];
  2610. for ( var i = 0; i < size; i ++ ) {
  2611. a.push( this.getInt64() );
  2612. }
  2613. return a;
  2614. },
  2615. // Note: see getInt64() comment
  2616. getUint64: function () {
  2617. var low, high;
  2618. if ( this.littleEndian ) {
  2619. low = this.getUint32();
  2620. high = this.getUint32();
  2621. } else {
  2622. high = this.getUint32();
  2623. low = this.getUint32();
  2624. }
  2625. return high * 0x100000000 + low;
  2626. },
  2627. getUint64Array: function ( size ) {
  2628. var a = [];
  2629. for ( var i = 0; i < size; i ++ ) {
  2630. a.push( this.getUint64() );
  2631. }
  2632. return a;
  2633. },
  2634. getFloat32: function () {
  2635. var value = this.dv.getFloat32( this.offset, this.littleEndian );
  2636. this.offset += 4;
  2637. return value;
  2638. },
  2639. getFloat32Array: function ( size ) {
  2640. var a = [];
  2641. for ( var i = 0; i < size; i ++ ) {
  2642. a.push( this.getFloat32() );
  2643. }
  2644. return a;
  2645. },
  2646. getFloat64: function () {
  2647. var value = this.dv.getFloat64( this.offset, this.littleEndian );
  2648. this.offset += 8;
  2649. return value;
  2650. },
  2651. getFloat64Array: function ( size ) {
  2652. var a = [];
  2653. for ( var i = 0; i < size; i ++ ) {
  2654. a.push( this.getFloat64() );
  2655. }
  2656. return a;
  2657. },
  2658. getArrayBuffer: function ( size ) {
  2659. var value = this.dv.buffer.slice( this.offset, this.offset + size );
  2660. this.offset += size;
  2661. return value;
  2662. },
  2663. getChar: function () {
  2664. return String.fromCharCode( this.getUint8() );
  2665. },
  2666. getString: function ( size ) {
  2667. var s = '';
  2668. while ( size > 0 ) {
  2669. var value = this.getUint8();
  2670. size --;
  2671. if ( value === 0 ) break;
  2672. s += String.fromCharCode( value );
  2673. }
  2674. // Manage UTF8 encoding
  2675. s = decodeURIComponent( escape( s ) );
  2676. this.skip( size );
  2677. return s;
  2678. }
  2679. } );
  2680. // FBXTree holds a representation of the FBX data, returned by the TextParser ( FBX ASCII format)
  2681. // and BinaryParser( FBX Binary format)
  2682. function FBXTree() {}
  2683. Object.assign( FBXTree.prototype, {
  2684. add: function ( key, val ) {
  2685. this[ key ] = val;
  2686. },
  2687. } );
  2688. function isFbxFormatBinary( buffer ) {
  2689. var CORRECT = 'Kaydara FBX Binary \0';
  2690. return buffer.byteLength >= CORRECT.length && CORRECT === convertArrayBufferToString( buffer, 0, CORRECT.length );
  2691. }
  2692. function isFbxFormatASCII( text ) {
  2693. var CORRECT = [ 'K', 'a', 'y', 'd', 'a', 'r', 'a', '\\', 'F', 'B', 'X', '\\', 'B', 'i', 'n', 'a', 'r', 'y', '\\', '\\' ];
  2694. var cursor = 0;
  2695. function read( offset ) {
  2696. var result = text[ offset - 1 ];
  2697. text = text.slice( cursor + offset );
  2698. cursor ++;
  2699. return result;
  2700. }
  2701. for ( var i = 0; i < CORRECT.length; ++ i ) {
  2702. var num = read( 1 );
  2703. if ( num === CORRECT[ i ] ) {
  2704. return false;
  2705. }
  2706. }
  2707. return true;
  2708. }
  2709. function getFbxVersion( text ) {
  2710. var versionRegExp = /FBXVersion: (\d+)/;
  2711. var match = text.match( versionRegExp );
  2712. if ( match ) {
  2713. var version = parseInt( match[ 1 ] );
  2714. return version;
  2715. }
  2716. throw new Error( 'THREE.FBXLoader: Cannot find the version number for the file given.' );
  2717. }
  2718. // Converts FBX ticks into real time seconds.
  2719. function convertFBXTimeToSeconds( time ) {
  2720. return time / 46186158000;
  2721. }
  2722. // Parses comma separated list of numbers and returns them an array.
  2723. // Used internally by the TextParser
  2724. function parseNumberArray( value ) {
  2725. var array = value.split( ',' );
  2726. for ( var i = 0, l = array.length; i < l; i ++ ) {
  2727. array[ i ] = parseFloat( array[ i ] );
  2728. }
  2729. return array;
  2730. }
  2731. function parseVector3( property ) {
  2732. return new THREE.Vector3().fromArray( property.value );
  2733. }
  2734. function parseColor( property ) {
  2735. return new THREE.Color().fromArray( property.value );
  2736. }
  2737. // Converts ArrayBuffer to String.
  2738. function convertArrayBufferToString( buffer, from, to ) {
  2739. if ( from === undefined ) from = 0;
  2740. if ( to === undefined ) to = buffer.byteLength;
  2741. var array = new Uint8Array( buffer, from, to );
  2742. if ( window.TextDecoder !== undefined ) {
  2743. return new TextDecoder().decode( array );
  2744. }
  2745. var s = '';
  2746. for ( var i = 0, il = array.length; i < il; i ++ ) {
  2747. s += String.fromCharCode( array[ i ] );
  2748. }
  2749. return s;
  2750. }
  2751. function findIndex( array, func ) {
  2752. for ( var i = 0, l = array.length; i < l; i ++ ) {
  2753. if ( func( array[ i ] ) ) return i;
  2754. }
  2755. return - 1;
  2756. }
  2757. function append( a, b ) {
  2758. for ( var i = 0, j = a.length, l = b.length; i < l; i ++, j ++ ) {
  2759. a[ j ] = b[ i ];
  2760. }
  2761. }
  2762. function slice( a, b, from, to ) {
  2763. for ( var i = from, j = 0; i < to; i ++, j ++ ) {
  2764. a[ j ] = b[ i ];
  2765. }
  2766. return a;
  2767. }
  2768. } )();