TransformControls.js 43 KB

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  1. /**
  2. * @author arodic / https://github.com/arodic
  3. */
  4. THREE.TransformControls = function ( camera, domElement ) {
  5. THREE.Object3D.call( this );
  6. domElement = ( domElement !== undefined ) ? domElement : document;
  7. this.visible = false;
  8. var _gizmo = new THREE.TransformControlsGizmo();
  9. this.add( _gizmo );
  10. var _plane = new THREE.TransformControlsPlane();
  11. this.add( _plane );
  12. var scope = this;
  13. // Define properties with getters/setter
  14. // Setting the defined property will automatically trigger change event
  15. // Defined properties are passed down to gizmo and plane
  16. defineProperty( "camera", camera );
  17. defineProperty( "object", undefined );
  18. defineProperty( "enabled", true );
  19. defineProperty( "axis", null );
  20. defineProperty( "mode", "translate" );
  21. defineProperty( "translationSnap", null );
  22. defineProperty( "rotationSnap", null );
  23. defineProperty( "space", "world" );
  24. defineProperty( "size", 1 );
  25. defineProperty( "dragging", false );
  26. defineProperty( "showX", true );
  27. defineProperty( "showY", true );
  28. defineProperty( "showZ", true );
  29. var changeEvent = { type: "change" };
  30. var mouseDownEvent = { type: "mouseDown" };
  31. var mouseUpEvent = { type: "mouseUp", mode: scope.mode };
  32. var objectChangeEvent = { type: "objectChange" };
  33. // Reusable utility variables
  34. var ray = new THREE.Raycaster();
  35. var _tempVector = new THREE.Vector3();
  36. var _tempVector2 = new THREE.Vector3();
  37. var _tempQuaternion = new THREE.Quaternion();
  38. var _unit = {
  39. X: new THREE.Vector3( 1, 0, 0 ),
  40. Y: new THREE.Vector3( 0, 1, 0 ),
  41. Z: new THREE.Vector3( 0, 0, 1 )
  42. };
  43. var pointStart = new THREE.Vector3();
  44. var pointEnd = new THREE.Vector3();
  45. var offset = new THREE.Vector3();
  46. var rotationAxis = new THREE.Vector3();
  47. var startNorm = new THREE.Vector3();
  48. var endNorm = new THREE.Vector3();
  49. var rotationAngle = 0;
  50. var cameraPosition = new THREE.Vector3();
  51. var cameraQuaternion = new THREE.Quaternion();
  52. var cameraScale = new THREE.Vector3();
  53. var parentPosition = new THREE.Vector3();
  54. var parentQuaternion = new THREE.Quaternion();
  55. var parentQuaternionInv = new THREE.Quaternion();
  56. var parentScale = new THREE.Vector3();
  57. var worldPositionStart = new THREE.Vector3();
  58. var worldQuaternionStart = new THREE.Quaternion();
  59. var worldScaleStart = new THREE.Vector3();
  60. var worldPosition = new THREE.Vector3();
  61. var worldQuaternion = new THREE.Quaternion();
  62. var worldQuaternionInv = new THREE.Quaternion();
  63. var worldScale = new THREE.Vector3();
  64. var eye = new THREE.Vector3();
  65. var positionStart = new THREE.Vector3();
  66. var quaternionStart = new THREE.Quaternion();
  67. var scaleStart = new THREE.Vector3();
  68. // TODO: remove properties unused in plane and gizmo
  69. defineProperty( "worldPosition", worldPosition );
  70. defineProperty( "worldPositionStart", worldPositionStart );
  71. defineProperty( "worldQuaternion", worldQuaternion );
  72. defineProperty( "worldQuaternionStart", worldQuaternionStart );
  73. defineProperty( "cameraPosition", cameraPosition );
  74. defineProperty( "cameraQuaternion", cameraQuaternion );
  75. defineProperty( "pointStart", pointStart );
  76. defineProperty( "pointEnd", pointEnd );
  77. defineProperty( "rotationAxis", rotationAxis );
  78. defineProperty( "rotationAngle", rotationAngle );
  79. defineProperty( "eye", eye );
  80. {
  81. domElement.addEventListener( "mousedown", onPointerDown, false );
  82. domElement.addEventListener( "touchstart", onPointerDown, false );
  83. domElement.addEventListener( "mousemove", onPointerHover, false );
  84. domElement.addEventListener( "touchmove", onPointerHover, false );
  85. domElement.addEventListener( "touchmove", onPointerMove, false );
  86. document.addEventListener( "mouseup", onPointerUp, false );
  87. domElement.addEventListener( "touchend", onPointerUp, false );
  88. domElement.addEventListener( "touchcancel", onPointerUp, false );
  89. domElement.addEventListener( "touchleave", onPointerUp, false );
  90. }
  91. this.dispose = function () {
  92. domElement.removeEventListener( "mousedown", onPointerDown );
  93. domElement.removeEventListener( "touchstart", onPointerDown );
  94. domElement.removeEventListener( "mousemove", onPointerHover );
  95. document.removeEventListener( "mousemove", onPointerMove );
  96. domElement.removeEventListener( "touchmove", onPointerHover );
  97. domElement.removeEventListener( "touchmove", onPointerMove );
  98. document.removeEventListener( "mouseup", onPointerUp );
  99. domElement.removeEventListener( "touchend", onPointerUp );
  100. domElement.removeEventListener( "touchcancel", onPointerUp );
  101. domElement.removeEventListener( "touchleave", onPointerUp );
  102. this.traverse( function ( child ) {
  103. if ( child.geometry ) child.geometry.dispose();
  104. if ( child.material ) child.material.dispose();
  105. } );
  106. };
  107. // Set current object
  108. this.attach = function ( object ) {
  109. this.object = object;
  110. this.visible = true;
  111. return this;
  112. };
  113. // Detatch from object
  114. this.detach = function () {
  115. this.object = undefined;
  116. this.visible = false;
  117. this.axis = null;
  118. return this;
  119. };
  120. // Defined getter, setter and store for a property
  121. function defineProperty( propName, defaultValue ) {
  122. var propValue = defaultValue;
  123. Object.defineProperty( scope, propName, {
  124. get: function () {
  125. return propValue !== undefined ? propValue : defaultValue;
  126. },
  127. set: function ( value ) {
  128. if ( propValue !== value ) {
  129. propValue = value;
  130. _plane[ propName ] = value;
  131. _gizmo[ propName ] = value;
  132. scope.dispatchEvent( { type: propName + "-changed", value: value } );
  133. scope.dispatchEvent( changeEvent );
  134. }
  135. }
  136. } );
  137. scope[ propName ] = defaultValue;
  138. _plane[ propName ] = defaultValue;
  139. _gizmo[ propName ] = defaultValue;
  140. }
  141. // updateMatrixWorld updates key transformation variables
  142. this.updateMatrixWorld = function () {
  143. if ( this.object !== undefined ) {
  144. this.object.updateMatrixWorld();
  145. this.object.parent.matrixWorld.decompose( parentPosition, parentQuaternion, parentScale );
  146. this.object.matrixWorld.decompose( worldPosition, worldQuaternion, worldScale );
  147. parentQuaternionInv.copy( parentQuaternion ).inverse();
  148. worldQuaternionInv.copy( worldQuaternion ).inverse();
  149. }
  150. this.camera.updateMatrixWorld();
  151. this.camera.matrixWorld.decompose( cameraPosition, cameraQuaternion, cameraScale );
  152. eye.copy( cameraPosition ).sub( worldPosition ).normalize();
  153. THREE.Object3D.prototype.updateMatrixWorld.call( this );
  154. };
  155. this.pointerHover = function ( pointer ) {
  156. if ( this.object === undefined || this.dragging === true || ( pointer.button !== undefined && pointer.button !== 0 ) ) return;
  157. ray.setFromCamera( pointer, this.camera );
  158. var intersect = ray.intersectObjects( _gizmo.picker[ this.mode ].children, true )[ 0 ] || false;
  159. if ( intersect ) {
  160. this.axis = intersect.object.name;
  161. } else {
  162. this.axis = null;
  163. }
  164. };
  165. this.pointerDown = function ( pointer ) {
  166. if ( this.object === undefined || this.dragging === true || ( pointer.button !== undefined && pointer.button !== 0 ) ) return;
  167. if ( ( pointer.button === 0 || pointer.button === undefined ) && this.axis !== null ) {
  168. ray.setFromCamera( pointer, this.camera );
  169. var planeIntersect = ray.intersectObjects( [ _plane ], true )[ 0 ] || false;
  170. if ( planeIntersect ) {
  171. var space = this.space;
  172. if ( this.mode === 'scale' ) {
  173. space = 'local';
  174. } else if ( this.axis === 'E' || this.axis === 'XYZE' || this.axis === 'XYZ' ) {
  175. space = 'world';
  176. }
  177. if ( space === 'local' && this.mode === 'rotate' ) {
  178. var snap = this.rotationSnap;
  179. if ( this.axis === 'X' && snap ) this.object.rotation.x = Math.round( this.object.rotation.x / snap ) * snap;
  180. if ( this.axis === 'Y' && snap ) this.object.rotation.y = Math.round( this.object.rotation.y / snap ) * snap;
  181. if ( this.axis === 'Z' && snap ) this.object.rotation.z = Math.round( this.object.rotation.z / snap ) * snap;
  182. }
  183. this.object.updateMatrixWorld();
  184. this.object.parent.updateMatrixWorld();
  185. positionStart.copy( this.object.position );
  186. quaternionStart.copy( this.object.quaternion );
  187. scaleStart.copy( this.object.scale );
  188. this.object.matrixWorld.decompose( worldPositionStart, worldQuaternionStart, worldScaleStart );
  189. pointStart.copy( planeIntersect.point ).sub( worldPositionStart );
  190. }
  191. this.dragging = true;
  192. mouseDownEvent.mode = this.mode;
  193. this.dispatchEvent( mouseDownEvent );
  194. }
  195. };
  196. this.pointerMove = function ( pointer ) {
  197. var axis = this.axis;
  198. var mode = this.mode;
  199. var object = this.object;
  200. var space = this.space;
  201. if ( mode === 'scale' ) {
  202. space = 'local';
  203. } else if ( axis === 'E' || axis === 'XYZE' || axis === 'XYZ' ) {
  204. space = 'world';
  205. }
  206. if ( object === undefined || axis === null || this.dragging === false || ( pointer.button !== undefined && pointer.button !== 0 ) ) return;
  207. ray.setFromCamera( pointer, this.camera );
  208. var planeIntersect = ray.intersectObjects( [ _plane ], true )[ 0 ] || false;
  209. if ( planeIntersect === false ) return;
  210. pointEnd.copy( planeIntersect.point ).sub( worldPositionStart );
  211. if ( mode === 'translate' ) {
  212. // Apply translate
  213. offset.copy( pointEnd ).sub( pointStart );
  214. if ( space === 'local' && axis !== 'XYZ' ) {
  215. offset.applyQuaternion( worldQuaternionInv );
  216. }
  217. if ( axis.indexOf( 'X' ) === - 1 ) offset.x = 0;
  218. if ( axis.indexOf( 'Y' ) === - 1 ) offset.y = 0;
  219. if ( axis.indexOf( 'Z' ) === - 1 ) offset.z = 0;
  220. if ( space === 'local' && axis !== 'XYZ' ) {
  221. offset.applyQuaternion( quaternionStart ).divide( parentScale );
  222. } else {
  223. offset.applyQuaternion( parentQuaternionInv ).divide( parentScale );
  224. }
  225. object.position.copy( offset ).add( positionStart );
  226. // Apply translation snap
  227. if ( this.translationSnap ) {
  228. if ( space === 'local' ) {
  229. object.position.applyQuaternion( _tempQuaternion.copy( quaternionStart ).inverse() );
  230. if ( axis.search( 'X' ) !== - 1 ) {
  231. object.position.x = Math.round( object.position.x / this.translationSnap ) * this.translationSnap;
  232. }
  233. if ( axis.search( 'Y' ) !== - 1 ) {
  234. object.position.y = Math.round( object.position.y / this.translationSnap ) * this.translationSnap;
  235. }
  236. if ( axis.search( 'Z' ) !== - 1 ) {
  237. object.position.z = Math.round( object.position.z / this.translationSnap ) * this.translationSnap;
  238. }
  239. object.position.applyQuaternion( quaternionStart );
  240. }
  241. if ( space === 'world' ) {
  242. if ( object.parent ) {
  243. object.position.add( _tempVector.setFromMatrixPosition( object.parent.matrixWorld ) );
  244. }
  245. if ( axis.search( 'X' ) !== - 1 ) {
  246. object.position.x = Math.round( object.position.x / this.translationSnap ) * this.translationSnap;
  247. }
  248. if ( axis.search( 'Y' ) !== - 1 ) {
  249. object.position.y = Math.round( object.position.y / this.translationSnap ) * this.translationSnap;
  250. }
  251. if ( axis.search( 'Z' ) !== - 1 ) {
  252. object.position.z = Math.round( object.position.z / this.translationSnap ) * this.translationSnap;
  253. }
  254. if ( object.parent ) {
  255. object.position.sub( _tempVector.setFromMatrixPosition( object.parent.matrixWorld ) );
  256. }
  257. }
  258. }
  259. } else if ( mode === 'scale' ) {
  260. if ( axis.search( 'XYZ' ) !== - 1 ) {
  261. var d = pointEnd.length() / pointStart.length();
  262. if ( pointEnd.dot( pointStart ) < 0 ) d *= - 1;
  263. _tempVector2.set( d, d, d );
  264. } else {
  265. _tempVector.copy( pointStart );
  266. _tempVector2.copy( pointEnd );
  267. _tempVector.applyQuaternion( worldQuaternionInv );
  268. _tempVector2.applyQuaternion( worldQuaternionInv );
  269. _tempVector2.divide( _tempVector );
  270. if ( axis.search( 'X' ) === - 1 ) {
  271. _tempVector2.x = 1;
  272. }
  273. if ( axis.search( 'Y' ) === - 1 ) {
  274. _tempVector2.y = 1;
  275. }
  276. if ( axis.search( 'Z' ) === - 1 ) {
  277. _tempVector2.z = 1;
  278. }
  279. }
  280. // Apply scale
  281. object.scale.copy( scaleStart ).multiply( _tempVector2 );
  282. } else if ( mode === 'rotate' ) {
  283. offset.copy( pointEnd ).sub( pointStart );
  284. var ROTATION_SPEED = 20 / worldPosition.distanceTo( _tempVector.setFromMatrixPosition( this.camera.matrixWorld ) );
  285. if ( axis === 'E' ) {
  286. rotationAxis.copy( eye );
  287. rotationAngle = pointEnd.angleTo( pointStart );
  288. startNorm.copy( pointStart ).normalize();
  289. endNorm.copy( pointEnd ).normalize();
  290. rotationAngle *= ( endNorm.cross( startNorm ).dot( eye ) < 0 ? 1 : - 1 );
  291. } else if ( axis === 'XYZE' ) {
  292. rotationAxis.copy( offset ).cross( eye ).normalize();
  293. rotationAngle = offset.dot( _tempVector.copy( rotationAxis ).cross( this.eye ) ) * ROTATION_SPEED;
  294. } else if ( axis === 'X' || axis === 'Y' || axis === 'Z' ) {
  295. rotationAxis.copy( _unit[ axis ] );
  296. _tempVector.copy( _unit[ axis ] );
  297. if ( space === 'local' ) {
  298. _tempVector.applyQuaternion( worldQuaternion );
  299. }
  300. rotationAngle = offset.dot( _tempVector.cross( eye ).normalize() ) * ROTATION_SPEED;
  301. }
  302. // Apply rotation snap
  303. if ( this.rotationSnap ) rotationAngle = Math.round( rotationAngle / this.rotationSnap ) * this.rotationSnap;
  304. this.rotationAngle = rotationAngle;
  305. // Apply rotate
  306. if ( space === 'local' && axis !== 'E' && axis !== 'XYZE' ) {
  307. object.quaternion.copy( quaternionStart );
  308. object.quaternion.multiply( _tempQuaternion.setFromAxisAngle( rotationAxis, rotationAngle ) ).normalize();
  309. } else {
  310. rotationAxis.applyQuaternion( parentQuaternionInv );
  311. object.quaternion.copy( _tempQuaternion.setFromAxisAngle( rotationAxis, rotationAngle ) );
  312. object.quaternion.multiply( quaternionStart ).normalize();
  313. }
  314. }
  315. this.dispatchEvent( changeEvent );
  316. this.dispatchEvent( objectChangeEvent );
  317. };
  318. this.pointerUp = function ( pointer ) {
  319. if ( pointer.button !== undefined && pointer.button !== 0 ) return;
  320. if ( this.dragging && ( this.axis !== null ) ) {
  321. mouseUpEvent.mode = this.mode;
  322. this.dispatchEvent( mouseUpEvent );
  323. }
  324. this.dragging = false;
  325. if ( pointer.button === undefined ) this.axis = null;
  326. };
  327. // normalize mouse / touch pointer and remap {x,y} to view space.
  328. function getPointer( event ) {
  329. if ( document.pointerLockElement ) {
  330. return {
  331. x: 0,
  332. y: 0,
  333. button: event.button
  334. };
  335. } else {
  336. var pointer = event.changedTouches ? event.changedTouches[ 0 ] : event;
  337. var rect = domElement.getBoundingClientRect();
  338. return {
  339. x: ( pointer.clientX - rect.left ) / rect.width * 2 - 1,
  340. y: - ( pointer.clientY - rect.top ) / rect.height * 2 + 1,
  341. button: event.button
  342. };
  343. }
  344. }
  345. // mouse / touch event handlers
  346. function onPointerHover( event ) {
  347. if ( ! scope.enabled ) return;
  348. scope.pointerHover( getPointer( event ) );
  349. }
  350. function onPointerDown( event ) {
  351. if ( ! scope.enabled ) return;
  352. document.addEventListener( "mousemove", onPointerMove, false );
  353. scope.pointerHover( getPointer( event ) );
  354. scope.pointerDown( getPointer( event ) );
  355. }
  356. function onPointerMove( event ) {
  357. if ( ! scope.enabled ) return;
  358. scope.pointerMove( getPointer( event ) );
  359. }
  360. function onPointerUp( event ) {
  361. if ( ! scope.enabled ) return;
  362. document.removeEventListener( "mousemove", onPointerMove, false );
  363. scope.pointerUp( getPointer( event ) );
  364. }
  365. // TODO: deprecate
  366. this.getMode = function () {
  367. return scope.mode;
  368. };
  369. this.setMode = function ( mode ) {
  370. scope.mode = mode;
  371. };
  372. this.setTranslationSnap = function ( translationSnap ) {
  373. scope.translationSnap = translationSnap;
  374. };
  375. this.setRotationSnap = function ( rotationSnap ) {
  376. scope.rotationSnap = rotationSnap;
  377. };
  378. this.setSize = function ( size ) {
  379. scope.size = size;
  380. };
  381. this.setSpace = function ( space ) {
  382. scope.space = space;
  383. };
  384. this.update = function () {
  385. console.warn( 'THREE.TransformControls: update function has no more functionality and therefore has been deprecated.' );
  386. };
  387. };
  388. THREE.TransformControls.prototype = Object.assign( Object.create( THREE.Object3D.prototype ), {
  389. constructor: THREE.TransformControls,
  390. isTransformControls: true
  391. } );
  392. THREE.TransformControlsGizmo = function () {
  393. 'use strict';
  394. THREE.Object3D.call( this );
  395. this.type = 'TransformControlsGizmo';
  396. // shared materials
  397. var gizmoMaterial = new THREE.MeshBasicMaterial( {
  398. depthTest: false,
  399. depthWrite: false,
  400. transparent: true,
  401. side: THREE.DoubleSide,
  402. fog: false
  403. } );
  404. var gizmoLineMaterial = new THREE.LineBasicMaterial( {
  405. depthTest: false,
  406. depthWrite: false,
  407. transparent: true,
  408. linewidth: 1,
  409. fog: false
  410. } );
  411. // Make unique material for each axis/color
  412. var matInvisible = gizmoMaterial.clone();
  413. matInvisible.opacity = 0.15;
  414. var matHelper = gizmoMaterial.clone();
  415. matHelper.opacity = 0.33;
  416. var matRed = gizmoMaterial.clone();
  417. matRed.color.set( 0xff0000 );
  418. var matGreen = gizmoMaterial.clone();
  419. matGreen.color.set( 0x00ff00 );
  420. var matBlue = gizmoMaterial.clone();
  421. matBlue.color.set( 0x0000ff );
  422. var matWhiteTransparent = gizmoMaterial.clone();
  423. matWhiteTransparent.opacity = 0.25;
  424. var matYellowTransparent = matWhiteTransparent.clone();
  425. matYellowTransparent.color.set( 0xffff00 );
  426. var matCyanTransparent = matWhiteTransparent.clone();
  427. matCyanTransparent.color.set( 0x00ffff );
  428. var matMagentaTransparent = matWhiteTransparent.clone();
  429. matMagentaTransparent.color.set( 0xff00ff );
  430. var matYellow = gizmoMaterial.clone();
  431. matYellow.color.set( 0xffff00 );
  432. var matLineRed = gizmoLineMaterial.clone();
  433. matLineRed.color.set( 0xff0000 );
  434. var matLineGreen = gizmoLineMaterial.clone();
  435. matLineGreen.color.set( 0x00ff00 );
  436. var matLineBlue = gizmoLineMaterial.clone();
  437. matLineBlue.color.set( 0x0000ff );
  438. var matLineCyan = gizmoLineMaterial.clone();
  439. matLineCyan.color.set( 0x00ffff );
  440. var matLineMagenta = gizmoLineMaterial.clone();
  441. matLineMagenta.color.set( 0xff00ff );
  442. var matLineYellow = gizmoLineMaterial.clone();
  443. matLineYellow.color.set( 0xffff00 );
  444. var matLineGray = gizmoLineMaterial.clone();
  445. matLineGray.color.set( 0x787878 );
  446. var matLineYellowTransparent = matLineYellow.clone();
  447. matLineYellowTransparent.opacity = 0.25;
  448. // reusable geometry
  449. var arrowGeometry = new THREE.CylinderBufferGeometry( 0, 0.05, 0.2, 12, 1, false );
  450. var scaleHandleGeometry = new THREE.BoxBufferGeometry( 0.125, 0.125, 0.125 );
  451. var lineGeometry = new THREE.BufferGeometry( );
  452. lineGeometry.addAttribute( 'position', new THREE.Float32BufferAttribute( [ 0, 0, 0, 1, 0, 0 ], 3 ) );
  453. var CircleGeometry = function ( radius, arc ) {
  454. var geometry = new THREE.BufferGeometry( );
  455. var vertices = [];
  456. for ( var i = 0; i <= 64 * arc; ++ i ) {
  457. vertices.push( 0, Math.cos( i / 32 * Math.PI ) * radius, Math.sin( i / 32 * Math.PI ) * radius );
  458. }
  459. geometry.addAttribute( 'position', new THREE.Float32BufferAttribute( vertices, 3 ) );
  460. return geometry;
  461. };
  462. // Special geometry for transform helper. If scaled with position vector it spans from [0,0,0] to position
  463. var TranslateHelperGeometry = function () {
  464. var geometry = new THREE.BufferGeometry();
  465. geometry.addAttribute( 'position', new THREE.Float32BufferAttribute( [ 0, 0, 0, 1, 1, 1 ], 3 ) );
  466. return geometry;
  467. };
  468. // Gizmo definitions - custom hierarchy definitions for setupGizmo() function
  469. var gizmoTranslate = {
  470. X: [
  471. [ new THREE.Mesh( arrowGeometry, matRed ), [ 1, 0, 0 ], [ 0, 0, - Math.PI / 2 ], null, 'fwd' ],
  472. [ new THREE.Mesh( arrowGeometry, matRed ), [ 1, 0, 0 ], [ 0, 0, Math.PI / 2 ], null, 'bwd' ],
  473. [ new THREE.Line( lineGeometry, matLineRed ) ]
  474. ],
  475. Y: [
  476. [ new THREE.Mesh( arrowGeometry, matGreen ), [ 0, 1, 0 ], null, null, 'fwd' ],
  477. [ new THREE.Mesh( arrowGeometry, matGreen ), [ 0, 1, 0 ], [ Math.PI, 0, 0 ], null, 'bwd' ],
  478. [ new THREE.Line( lineGeometry, matLineGreen ), null, [ 0, 0, Math.PI / 2 ]]
  479. ],
  480. Z: [
  481. [ new THREE.Mesh( arrowGeometry, matBlue ), [ 0, 0, 1 ], [ Math.PI / 2, 0, 0 ], null, 'fwd' ],
  482. [ new THREE.Mesh( arrowGeometry, matBlue ), [ 0, 0, 1 ], [ - Math.PI / 2, 0, 0 ], null, 'bwd' ],
  483. [ new THREE.Line( lineGeometry, matLineBlue ), null, [ 0, - Math.PI / 2, 0 ]]
  484. ],
  485. XYZ: [
  486. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.1, 0 ), matWhiteTransparent.clone() ), [ 0, 0, 0 ], [ 0, 0, 0 ]]
  487. ],
  488. XY: [
  489. [ new THREE.Mesh( new THREE.PlaneBufferGeometry( 0.295, 0.295 ), matYellowTransparent.clone() ), [ 0.15, 0.15, 0 ]],
  490. [ new THREE.Line( lineGeometry, matLineYellow ), [ 0.18, 0.3, 0 ], null, [ 0.125, 1, 1 ]],
  491. [ new THREE.Line( lineGeometry, matLineYellow ), [ 0.3, 0.18, 0 ], [ 0, 0, Math.PI / 2 ], [ 0.125, 1, 1 ]]
  492. ],
  493. YZ: [
  494. [ new THREE.Mesh( new THREE.PlaneBufferGeometry( 0.295, 0.295 ), matCyanTransparent.clone() ), [ 0, 0.15, 0.15 ], [ 0, Math.PI / 2, 0 ]],
  495. [ new THREE.Line( lineGeometry, matLineCyan ), [ 0, 0.18, 0.3 ], [ 0, 0, Math.PI / 2 ], [ 0.125, 1, 1 ]],
  496. [ new THREE.Line( lineGeometry, matLineCyan ), [ 0, 0.3, 0.18 ], [ 0, - Math.PI / 2, 0 ], [ 0.125, 1, 1 ]]
  497. ],
  498. XZ: [
  499. [ new THREE.Mesh( new THREE.PlaneBufferGeometry( 0.295, 0.295 ), matMagentaTransparent.clone() ), [ 0.15, 0, 0.15 ], [ - Math.PI / 2, 0, 0 ]],
  500. [ new THREE.Line( lineGeometry, matLineMagenta ), [ 0.18, 0, 0.3 ], null, [ 0.125, 1, 1 ]],
  501. [ new THREE.Line( lineGeometry, matLineMagenta ), [ 0.3, 0, 0.18 ], [ 0, - Math.PI / 2, 0 ], [ 0.125, 1, 1 ]]
  502. ]
  503. };
  504. var pickerTranslate = {
  505. X: [
  506. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.2, 0, 1, 4, 1, false ), matInvisible ), [ 0.6, 0, 0 ], [ 0, 0, - Math.PI / 2 ]]
  507. ],
  508. Y: [
  509. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.2, 0, 1, 4, 1, false ), matInvisible ), [ 0, 0.6, 0 ]]
  510. ],
  511. Z: [
  512. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.2, 0, 1, 4, 1, false ), matInvisible ), [ 0, 0, 0.6 ], [ Math.PI / 2, 0, 0 ]]
  513. ],
  514. XYZ: [
  515. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.2, 0 ), matInvisible ) ]
  516. ],
  517. XY: [
  518. [ new THREE.Mesh( new THREE.PlaneBufferGeometry( 0.4, 0.4 ), matInvisible ), [ 0.2, 0.2, 0 ]]
  519. ],
  520. YZ: [
  521. [ new THREE.Mesh( new THREE.PlaneBufferGeometry( 0.4, 0.4 ), matInvisible ), [ 0, 0.2, 0.2 ], [ 0, Math.PI / 2, 0 ]]
  522. ],
  523. XZ: [
  524. [ new THREE.Mesh( new THREE.PlaneBufferGeometry( 0.4, 0.4 ), matInvisible ), [ 0.2, 0, 0.2 ], [ - Math.PI / 2, 0, 0 ]]
  525. ]
  526. };
  527. var helperTranslate = {
  528. START: [
  529. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.01, 2 ), matHelper ), null, null, null, 'helper' ]
  530. ],
  531. END: [
  532. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.01, 2 ), matHelper ), null, null, null, 'helper' ]
  533. ],
  534. DELTA: [
  535. [ new THREE.Line( TranslateHelperGeometry(), matHelper ), null, null, null, 'helper' ]
  536. ],
  537. X: [
  538. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ - 1e3, 0, 0 ], null, [ 1e6, 1, 1 ], 'helper' ]
  539. ],
  540. Y: [
  541. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ 0, - 1e3, 0 ], [ 0, 0, Math.PI / 2 ], [ 1e6, 1, 1 ], 'helper' ]
  542. ],
  543. Z: [
  544. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ 0, 0, - 1e3 ], [ 0, - Math.PI / 2, 0 ], [ 1e6, 1, 1 ], 'helper' ]
  545. ]
  546. };
  547. var gizmoRotate = {
  548. X: [
  549. [ new THREE.Line( CircleGeometry( 1, 0.5 ), matLineRed ) ],
  550. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.04, 0 ), matRed ), [ 0, 0, 0.99 ], null, [ 1, 3, 1 ]],
  551. ],
  552. Y: [
  553. [ new THREE.Line( CircleGeometry( 1, 0.5 ), matLineGreen ), null, [ 0, 0, - Math.PI / 2 ]],
  554. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.04, 0 ), matGreen ), [ 0, 0, 0.99 ], null, [ 3, 1, 1 ]],
  555. ],
  556. Z: [
  557. [ new THREE.Line( CircleGeometry( 1, 0.5 ), matLineBlue ), null, [ 0, Math.PI / 2, 0 ]],
  558. [ new THREE.Mesh( new THREE.OctahedronBufferGeometry( 0.04, 0 ), matBlue ), [ 0.99, 0, 0 ], null, [ 1, 3, 1 ]],
  559. ],
  560. E: [
  561. [ new THREE.Line( CircleGeometry( 1.25, 1 ), matLineYellowTransparent ), null, [ 0, Math.PI / 2, 0 ]],
  562. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.03, 0, 0.15, 4, 1, false ), matLineYellowTransparent ), [ 1.17, 0, 0 ], [ 0, 0, - Math.PI / 2 ], [ 1, 1, 0.001 ]],
  563. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.03, 0, 0.15, 4, 1, false ), matLineYellowTransparent ), [ - 1.17, 0, 0 ], [ 0, 0, Math.PI / 2 ], [ 1, 1, 0.001 ]],
  564. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.03, 0, 0.15, 4, 1, false ), matLineYellowTransparent ), [ 0, - 1.17, 0 ], [ Math.PI, 0, 0 ], [ 1, 1, 0.001 ]],
  565. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.03, 0, 0.15, 4, 1, false ), matLineYellowTransparent ), [ 0, 1.17, 0 ], [ 0, 0, 0 ], [ 1, 1, 0.001 ]],
  566. ],
  567. XYZE: [
  568. [ new THREE.Line( CircleGeometry( 1, 1 ), matLineGray ), null, [ 0, Math.PI / 2, 0 ]]
  569. ]
  570. };
  571. var helperRotate = {
  572. AXIS: [
  573. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ - 1e3, 0, 0 ], null, [ 1e6, 1, 1 ], 'helper' ]
  574. ]
  575. };
  576. var pickerRotate = {
  577. X: [
  578. [ new THREE.Mesh( new THREE.TorusBufferGeometry( 1, 0.1, 4, 24 ), matInvisible ), [ 0, 0, 0 ], [ 0, - Math.PI / 2, - Math.PI / 2 ]],
  579. ],
  580. Y: [
  581. [ new THREE.Mesh( new THREE.TorusBufferGeometry( 1, 0.1, 4, 24 ), matInvisible ), [ 0, 0, 0 ], [ Math.PI / 2, 0, 0 ]],
  582. ],
  583. Z: [
  584. [ new THREE.Mesh( new THREE.TorusBufferGeometry( 1, 0.1, 4, 24 ), matInvisible ), [ 0, 0, 0 ], [ 0, 0, - Math.PI / 2 ]],
  585. ],
  586. E: [
  587. [ new THREE.Mesh( new THREE.TorusBufferGeometry( 1.25, 0.1, 2, 24 ), matInvisible ) ]
  588. ],
  589. XYZE: [
  590. [ new THREE.Mesh( new THREE.SphereBufferGeometry( 0.7, 10, 8 ), matInvisible ) ]
  591. ]
  592. };
  593. var gizmoScale = {
  594. X: [
  595. [ new THREE.Mesh( scaleHandleGeometry, matRed ), [ 0.8, 0, 0 ], [ 0, 0, - Math.PI / 2 ]],
  596. [ new THREE.Line( lineGeometry, matLineRed ), null, null, [ 0.8, 1, 1 ]]
  597. ],
  598. Y: [
  599. [ new THREE.Mesh( scaleHandleGeometry, matGreen ), [ 0, 0.8, 0 ]],
  600. [ new THREE.Line( lineGeometry, matLineGreen ), null, [ 0, 0, Math.PI / 2 ], [ 0.8, 1, 1 ]]
  601. ],
  602. Z: [
  603. [ new THREE.Mesh( scaleHandleGeometry, matBlue ), [ 0, 0, 0.8 ], [ Math.PI / 2, 0, 0 ]],
  604. [ new THREE.Line( lineGeometry, matLineBlue ), null, [ 0, - Math.PI / 2, 0 ], [ 0.8, 1, 1 ]]
  605. ],
  606. XY: [
  607. [ new THREE.Mesh( scaleHandleGeometry, matYellowTransparent ), [ 0.85, 0.85, 0 ], null, [ 2, 2, 0.2 ]],
  608. [ new THREE.Line( lineGeometry, matLineYellow ), [ 0.855, 0.98, 0 ], null, [ 0.125, 1, 1 ]],
  609. [ new THREE.Line( lineGeometry, matLineYellow ), [ 0.98, 0.855, 0 ], [ 0, 0, Math.PI / 2 ], [ 0.125, 1, 1 ]]
  610. ],
  611. YZ: [
  612. [ new THREE.Mesh( scaleHandleGeometry, matCyanTransparent ), [ 0, 0.85, 0.85 ], null, [ 0.2, 2, 2 ]],
  613. [ new THREE.Line( lineGeometry, matLineCyan ), [ 0, 0.855, 0.98 ], [ 0, 0, Math.PI / 2 ], [ 0.125, 1, 1 ]],
  614. [ new THREE.Line( lineGeometry, matLineCyan ), [ 0, 0.98, 0.855 ], [ 0, - Math.PI / 2, 0 ], [ 0.125, 1, 1 ]]
  615. ],
  616. XZ: [
  617. [ new THREE.Mesh( scaleHandleGeometry, matMagentaTransparent ), [ 0.85, 0, 0.85 ], null, [ 2, 0.2, 2 ]],
  618. [ new THREE.Line( lineGeometry, matLineMagenta ), [ 0.855, 0, 0.98 ], null, [ 0.125, 1, 1 ]],
  619. [ new THREE.Line( lineGeometry, matLineMagenta ), [ 0.98, 0, 0.855 ], [ 0, - Math.PI / 2, 0 ], [ 0.125, 1, 1 ]]
  620. ],
  621. XYZX: [
  622. [ new THREE.Mesh( new THREE.BoxBufferGeometry( 0.125, 0.125, 0.125 ), matWhiteTransparent.clone() ), [ 1.1, 0, 0 ]],
  623. ],
  624. XYZY: [
  625. [ new THREE.Mesh( new THREE.BoxBufferGeometry( 0.125, 0.125, 0.125 ), matWhiteTransparent.clone() ), [ 0, 1.1, 0 ]],
  626. ],
  627. XYZZ: [
  628. [ new THREE.Mesh( new THREE.BoxBufferGeometry( 0.125, 0.125, 0.125 ), matWhiteTransparent.clone() ), [ 0, 0, 1.1 ]],
  629. ]
  630. };
  631. var pickerScale = {
  632. X: [
  633. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.2, 0, 0.8, 4, 1, false ), matInvisible ), [ 0.5, 0, 0 ], [ 0, 0, - Math.PI / 2 ]]
  634. ],
  635. Y: [
  636. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.2, 0, 0.8, 4, 1, false ), matInvisible ), [ 0, 0.5, 0 ]]
  637. ],
  638. Z: [
  639. [ new THREE.Mesh( new THREE.CylinderBufferGeometry( 0.2, 0, 0.8, 4, 1, false ), matInvisible ), [ 0, 0, 0.5 ], [ Math.PI / 2, 0, 0 ]]
  640. ],
  641. XY: [
  642. [ new THREE.Mesh( scaleHandleGeometry, matInvisible ), [ 0.85, 0.85, 0 ], null, [ 3, 3, 0.2 ]],
  643. ],
  644. YZ: [
  645. [ new THREE.Mesh( scaleHandleGeometry, matInvisible ), [ 0, 0.85, 0.85 ], null, [ 0.2, 3, 3 ]],
  646. ],
  647. XZ: [
  648. [ new THREE.Mesh( scaleHandleGeometry, matInvisible ), [ 0.85, 0, 0.85 ], null, [ 3, 0.2, 3 ]],
  649. ],
  650. XYZX: [
  651. [ new THREE.Mesh( new THREE.BoxBufferGeometry( 0.2, 0.2, 0.2 ), matInvisible ), [ 1.1, 0, 0 ]],
  652. ],
  653. XYZY: [
  654. [ new THREE.Mesh( new THREE.BoxBufferGeometry( 0.2, 0.2, 0.2 ), matInvisible ), [ 0, 1.1, 0 ]],
  655. ],
  656. XYZZ: [
  657. [ new THREE.Mesh( new THREE.BoxBufferGeometry( 0.2, 0.2, 0.2 ), matInvisible ), [ 0, 0, 1.1 ]],
  658. ]
  659. };
  660. var helperScale = {
  661. X: [
  662. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ - 1e3, 0, 0 ], null, [ 1e6, 1, 1 ], 'helper' ]
  663. ],
  664. Y: [
  665. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ 0, - 1e3, 0 ], [ 0, 0, Math.PI / 2 ], [ 1e6, 1, 1 ], 'helper' ]
  666. ],
  667. Z: [
  668. [ new THREE.Line( lineGeometry, matHelper.clone() ), [ 0, 0, - 1e3 ], [ 0, - Math.PI / 2, 0 ], [ 1e6, 1, 1 ], 'helper' ]
  669. ]
  670. };
  671. // Creates an Object3D with gizmos described in custom hierarchy definition.
  672. var setupGizmo = function ( gizmoMap ) {
  673. var gizmo = new THREE.Object3D();
  674. for ( var name in gizmoMap ) {
  675. for ( var i = gizmoMap[ name ].length; i --; ) {
  676. var object = gizmoMap[ name ][ i ][ 0 ].clone();
  677. var position = gizmoMap[ name ][ i ][ 1 ];
  678. var rotation = gizmoMap[ name ][ i ][ 2 ];
  679. var scale = gizmoMap[ name ][ i ][ 3 ];
  680. var tag = gizmoMap[ name ][ i ][ 4 ];
  681. // name and tag properties are essential for picking and updating logic.
  682. object.name = name;
  683. object.tag = tag;
  684. if ( position ) {
  685. object.position.set( position[ 0 ], position[ 1 ], position[ 2 ] );
  686. }
  687. if ( rotation ) {
  688. object.rotation.set( rotation[ 0 ], rotation[ 1 ], rotation[ 2 ] );
  689. }
  690. if ( scale ) {
  691. object.scale.set( scale[ 0 ], scale[ 1 ], scale[ 2 ] );
  692. }
  693. object.updateMatrix();
  694. var tempGeometry = object.geometry.clone();
  695. tempGeometry.applyMatrix( object.matrix );
  696. object.geometry = tempGeometry;
  697. object.renderOrder = Infinity;
  698. object.position.set( 0, 0, 0 );
  699. object.rotation.set( 0, 0, 0 );
  700. object.scale.set( 1, 1, 1 );
  701. gizmo.add( object );
  702. }
  703. }
  704. return gizmo;
  705. };
  706. // Reusable utility variables
  707. var tempVector = new THREE.Vector3( 0, 0, 0 );
  708. var tempEuler = new THREE.Euler();
  709. var alignVector = new THREE.Vector3( 0, 1, 0 );
  710. var zeroVector = new THREE.Vector3( 0, 0, 0 );
  711. var lookAtMatrix = new THREE.Matrix4();
  712. var tempQuaternion = new THREE.Quaternion();
  713. var tempQuaternion2 = new THREE.Quaternion();
  714. var identityQuaternion = new THREE.Quaternion();
  715. var unitX = new THREE.Vector3( 1, 0, 0 );
  716. var unitY = new THREE.Vector3( 0, 1, 0 );
  717. var unitZ = new THREE.Vector3( 0, 0, 1 );
  718. // Gizmo creation
  719. this.gizmo = {};
  720. this.picker = {};
  721. this.helper = {};
  722. this.add( this.gizmo[ "translate" ] = setupGizmo( gizmoTranslate ) );
  723. this.add( this.gizmo[ "rotate" ] = setupGizmo( gizmoRotate ) );
  724. this.add( this.gizmo[ "scale" ] = setupGizmo( gizmoScale ) );
  725. this.add( this.picker[ "translate" ] = setupGizmo( pickerTranslate ) );
  726. this.add( this.picker[ "rotate" ] = setupGizmo( pickerRotate ) );
  727. this.add( this.picker[ "scale" ] = setupGizmo( pickerScale ) );
  728. this.add( this.helper[ "translate" ] = setupGizmo( helperTranslate ) );
  729. this.add( this.helper[ "rotate" ] = setupGizmo( helperRotate ) );
  730. this.add( this.helper[ "scale" ] = setupGizmo( helperScale ) );
  731. // Pickers should be hidden always
  732. this.picker[ "translate" ].visible = false;
  733. this.picker[ "rotate" ].visible = false;
  734. this.picker[ "scale" ].visible = false;
  735. // updateMatrixWorld will update transformations and appearance of individual handles
  736. this.updateMatrixWorld = function () {
  737. var space = this.space;
  738. if ( this.mode === 'scale' ) space = 'local'; // scale always oriented to local rotation
  739. var quaternion = space === "local" ? this.worldQuaternion : identityQuaternion;
  740. // Show only gizmos for current transform mode
  741. this.gizmo[ "translate" ].visible = this.mode === "translate";
  742. this.gizmo[ "rotate" ].visible = this.mode === "rotate";
  743. this.gizmo[ "scale" ].visible = this.mode === "scale";
  744. this.helper[ "translate" ].visible = this.mode === "translate";
  745. this.helper[ "rotate" ].visible = this.mode === "rotate";
  746. this.helper[ "scale" ].visible = this.mode === "scale";
  747. var handles = [];
  748. handles = handles.concat( this.picker[ this.mode ].children );
  749. handles = handles.concat( this.gizmo[ this.mode ].children );
  750. handles = handles.concat( this.helper[ this.mode ].children );
  751. for ( var i = 0; i < handles.length; i ++ ) {
  752. var handle = handles[ i ];
  753. // hide aligned to camera
  754. handle.visible = true;
  755. handle.rotation.set( 0, 0, 0 );
  756. handle.position.copy( this.worldPosition );
  757. var eyeDistance = this.worldPosition.distanceTo( this.cameraPosition );
  758. handle.scale.set( 1, 1, 1 ).multiplyScalar( eyeDistance * this.size / 7 );
  759. // TODO: simplify helpers and consider decoupling from gizmo
  760. if ( handle.tag === 'helper' ) {
  761. handle.visible = false;
  762. if ( handle.name === 'AXIS' ) {
  763. handle.position.copy( this.worldPositionStart );
  764. handle.visible = !! this.axis;
  765. if ( this.axis === 'X' ) {
  766. tempQuaternion.setFromEuler( tempEuler.set( 0, 0, 0 ) );
  767. handle.quaternion.copy( quaternion ).multiply( tempQuaternion );
  768. if ( Math.abs( alignVector.copy( unitX ).applyQuaternion( quaternion ).dot( this.eye ) ) > 0.9 ) {
  769. handle.visible = false;
  770. }
  771. }
  772. if ( this.axis === 'Y' ) {
  773. tempQuaternion.setFromEuler( tempEuler.set( 0, 0, Math.PI / 2 ) );
  774. handle.quaternion.copy( quaternion ).multiply( tempQuaternion );
  775. if ( Math.abs( alignVector.copy( unitY ).applyQuaternion( quaternion ).dot( this.eye ) ) > 0.9 ) {
  776. handle.visible = false;
  777. }
  778. }
  779. if ( this.axis === 'Z' ) {
  780. tempQuaternion.setFromEuler( tempEuler.set( 0, Math.PI / 2, 0 ) );
  781. handle.quaternion.copy( quaternion ).multiply( tempQuaternion );
  782. if ( Math.abs( alignVector.copy( unitZ ).applyQuaternion( quaternion ).dot( this.eye ) ) > 0.9 ) {
  783. handle.visible = false;
  784. }
  785. }
  786. if ( this.axis === 'XYZE' ) {
  787. tempQuaternion.setFromEuler( tempEuler.set( 0, Math.PI / 2, 0 ) );
  788. alignVector.copy( this.rotationAxis );
  789. handle.quaternion.setFromRotationMatrix( lookAtMatrix.lookAt( zeroVector, alignVector, unitY ) );
  790. handle.quaternion.multiply( tempQuaternion );
  791. handle.visible = this.dragging;
  792. }
  793. if ( this.axis === 'E' ) {
  794. handle.visible = false;
  795. }
  796. } else if ( handle.name === 'START' ) {
  797. handle.position.copy( this.worldPositionStart );
  798. handle.visible = this.dragging;
  799. } else if ( handle.name === 'END' ) {
  800. handle.position.copy( this.worldPosition );
  801. handle.visible = this.dragging;
  802. } else if ( handle.name === 'DELTA' ) {
  803. handle.position.copy( this.worldPositionStart );
  804. handle.quaternion.copy( this.worldQuaternionStart );
  805. tempVector.set( 1e-10, 1e-10, 1e-10 ).add( this.worldPositionStart ).sub( this.worldPosition ).multiplyScalar( - 1 );
  806. tempVector.applyQuaternion( this.worldQuaternionStart.clone().inverse() );
  807. handle.scale.copy( tempVector );
  808. handle.visible = this.dragging;
  809. } else {
  810. handle.quaternion.copy( quaternion );
  811. if ( this.dragging ) {
  812. handle.position.copy( this.worldPositionStart );
  813. } else {
  814. handle.position.copy( this.worldPosition );
  815. }
  816. if ( this.axis ) {
  817. handle.visible = this.axis.search( handle.name ) !== - 1;
  818. }
  819. }
  820. // If updating helper, skip rest of the loop
  821. continue;
  822. }
  823. // Align handles to current local or world rotation
  824. handle.quaternion.copy( quaternion );
  825. if ( this.mode === 'translate' || this.mode === 'scale' ) {
  826. // Hide translate and scale axis facing the camera
  827. var AXIS_HIDE_TRESHOLD = 0.99;
  828. var PLANE_HIDE_TRESHOLD = 0.2;
  829. var AXIS_FLIP_TRESHOLD = 0.0;
  830. if ( handle.name === 'X' || handle.name === 'XYZX' ) {
  831. if ( Math.abs( alignVector.copy( unitX ).applyQuaternion( quaternion ).dot( this.eye ) ) > AXIS_HIDE_TRESHOLD ) {
  832. handle.scale.set( 1e-10, 1e-10, 1e-10 );
  833. handle.visible = false;
  834. }
  835. }
  836. if ( handle.name === 'Y' || handle.name === 'XYZY' ) {
  837. if ( Math.abs( alignVector.copy( unitY ).applyQuaternion( quaternion ).dot( this.eye ) ) > AXIS_HIDE_TRESHOLD ) {
  838. handle.scale.set( 1e-10, 1e-10, 1e-10 );
  839. handle.visible = false;
  840. }
  841. }
  842. if ( handle.name === 'Z' || handle.name === 'XYZZ' ) {
  843. if ( Math.abs( alignVector.copy( unitZ ).applyQuaternion( quaternion ).dot( this.eye ) ) > AXIS_HIDE_TRESHOLD ) {
  844. handle.scale.set( 1e-10, 1e-10, 1e-10 );
  845. handle.visible = false;
  846. }
  847. }
  848. if ( handle.name === 'XY' ) {
  849. if ( Math.abs( alignVector.copy( unitZ ).applyQuaternion( quaternion ).dot( this.eye ) ) < PLANE_HIDE_TRESHOLD ) {
  850. handle.scale.set( 1e-10, 1e-10, 1e-10 );
  851. handle.visible = false;
  852. }
  853. }
  854. if ( handle.name === 'YZ' ) {
  855. if ( Math.abs( alignVector.copy( unitX ).applyQuaternion( quaternion ).dot( this.eye ) ) < PLANE_HIDE_TRESHOLD ) {
  856. handle.scale.set( 1e-10, 1e-10, 1e-10 );
  857. handle.visible = false;
  858. }
  859. }
  860. if ( handle.name === 'XZ' ) {
  861. if ( Math.abs( alignVector.copy( unitY ).applyQuaternion( quaternion ).dot( this.eye ) ) < PLANE_HIDE_TRESHOLD ) {
  862. handle.scale.set( 1e-10, 1e-10, 1e-10 );
  863. handle.visible = false;
  864. }
  865. }
  866. // Flip translate and scale axis ocluded behind another axis
  867. if ( handle.name.search( 'X' ) !== - 1 ) {
  868. if ( alignVector.copy( unitX ).applyQuaternion( quaternion ).dot( this.eye ) < AXIS_FLIP_TRESHOLD ) {
  869. if ( handle.tag === 'fwd' ) {
  870. handle.visible = false;
  871. } else {
  872. handle.scale.x *= - 1;
  873. }
  874. } else if ( handle.tag === 'bwd' ) {
  875. handle.visible = false;
  876. }
  877. }
  878. if ( handle.name.search( 'Y' ) !== - 1 ) {
  879. if ( alignVector.copy( unitY ).applyQuaternion( quaternion ).dot( this.eye ) < AXIS_FLIP_TRESHOLD ) {
  880. if ( handle.tag === 'fwd' ) {
  881. handle.visible = false;
  882. } else {
  883. handle.scale.y *= - 1;
  884. }
  885. } else if ( handle.tag === 'bwd' ) {
  886. handle.visible = false;
  887. }
  888. }
  889. if ( handle.name.search( 'Z' ) !== - 1 ) {
  890. if ( alignVector.copy( unitZ ).applyQuaternion( quaternion ).dot( this.eye ) < AXIS_FLIP_TRESHOLD ) {
  891. if ( handle.tag === 'fwd' ) {
  892. handle.visible = false;
  893. } else {
  894. handle.scale.z *= - 1;
  895. }
  896. } else if ( handle.tag === 'bwd' ) {
  897. handle.visible = false;
  898. }
  899. }
  900. } else if ( this.mode === 'rotate' ) {
  901. // Align handles to current local or world rotation
  902. tempQuaternion2.copy( quaternion );
  903. alignVector.copy( this.eye ).applyQuaternion( tempQuaternion.copy( quaternion ).inverse() );
  904. if ( handle.name.search( "E" ) !== - 1 ) {
  905. handle.quaternion.setFromRotationMatrix( lookAtMatrix.lookAt( this.eye, zeroVector, unitY ) );
  906. }
  907. if ( handle.name === 'X' ) {
  908. tempQuaternion.setFromAxisAngle( unitX, Math.atan2( - alignVector.y, alignVector.z ) );
  909. tempQuaternion.multiplyQuaternions( tempQuaternion2, tempQuaternion );
  910. handle.quaternion.copy( tempQuaternion );
  911. }
  912. if ( handle.name === 'Y' ) {
  913. tempQuaternion.setFromAxisAngle( unitY, Math.atan2( alignVector.x, alignVector.z ) );
  914. tempQuaternion.multiplyQuaternions( tempQuaternion2, tempQuaternion );
  915. handle.quaternion.copy( tempQuaternion );
  916. }
  917. if ( handle.name === 'Z' ) {
  918. tempQuaternion.setFromAxisAngle( unitZ, Math.atan2( alignVector.y, alignVector.x ) );
  919. tempQuaternion.multiplyQuaternions( tempQuaternion2, tempQuaternion );
  920. handle.quaternion.copy( tempQuaternion );
  921. }
  922. }
  923. // Hide disabled axes
  924. handle.visible = handle.visible && ( handle.name.indexOf( "X" ) === - 1 || this.showX );
  925. handle.visible = handle.visible && ( handle.name.indexOf( "Y" ) === - 1 || this.showY );
  926. handle.visible = handle.visible && ( handle.name.indexOf( "Z" ) === - 1 || this.showZ );
  927. handle.visible = handle.visible && ( handle.name.indexOf( "E" ) === - 1 || ( this.showX && this.showY && this.showZ ) );
  928. // highlight selected axis
  929. handle.material._opacity = handle.material._opacity || handle.material.opacity;
  930. handle.material._color = handle.material._color || handle.material.color.clone();
  931. handle.material.color.copy( handle.material._color );
  932. handle.material.opacity = handle.material._opacity;
  933. if ( ! this.enabled ) {
  934. handle.material.opacity *= 0.5;
  935. handle.material.color.lerp( new THREE.Color( 1, 1, 1 ), 0.5 );
  936. } else if ( this.axis ) {
  937. if ( handle.name === this.axis ) {
  938. handle.material.opacity = 1.0;
  939. handle.material.color.lerp( new THREE.Color( 1, 1, 1 ), 0.5 );
  940. } else if ( this.axis.split( '' ).some( function ( a ) {
  941. return handle.name === a;
  942. } ) ) {
  943. handle.material.opacity = 1.0;
  944. handle.material.color.lerp( new THREE.Color( 1, 1, 1 ), 0.5 );
  945. } else {
  946. handle.material.opacity *= 0.25;
  947. handle.material.color.lerp( new THREE.Color( 1, 1, 1 ), 0.5 );
  948. }
  949. }
  950. }
  951. THREE.Object3D.prototype.updateMatrixWorld.call( this );
  952. };
  953. };
  954. THREE.TransformControlsGizmo.prototype = Object.assign( Object.create( THREE.Object3D.prototype ), {
  955. constructor: THREE.TransformControlsGizmo,
  956. isTransformControlsGizmo: true
  957. } );
  958. THREE.TransformControlsPlane = function () {
  959. 'use strict';
  960. THREE.Mesh.call( this,
  961. new THREE.PlaneBufferGeometry( 100000, 100000, 2, 2 ),
  962. new THREE.MeshBasicMaterial( { visible: false, wireframe: true, side: THREE.DoubleSide, transparent: true, opacity: 0.1 } )
  963. );
  964. this.type = 'TransformControlsPlane';
  965. var unitX = new THREE.Vector3( 1, 0, 0 );
  966. var unitY = new THREE.Vector3( 0, 1, 0 );
  967. var unitZ = new THREE.Vector3( 0, 0, 1 );
  968. var tempVector = new THREE.Vector3();
  969. var dirVector = new THREE.Vector3();
  970. var alignVector = new THREE.Vector3();
  971. var tempMatrix = new THREE.Matrix4();
  972. var identityQuaternion = new THREE.Quaternion();
  973. this.updateMatrixWorld = function () {
  974. var space = this.space;
  975. this.position.copy( this.worldPosition );
  976. if ( this.mode === 'scale' ) space = 'local'; // scale always oriented to local rotation
  977. unitX.set( 1, 0, 0 ).applyQuaternion( space === "local" ? this.worldQuaternion : identityQuaternion );
  978. unitY.set( 0, 1, 0 ).applyQuaternion( space === "local" ? this.worldQuaternion : identityQuaternion );
  979. unitZ.set( 0, 0, 1 ).applyQuaternion( space === "local" ? this.worldQuaternion : identityQuaternion );
  980. // Align the plane for current transform mode, axis and space.
  981. alignVector.copy( unitY );
  982. switch ( this.mode ) {
  983. case 'translate':
  984. case 'scale':
  985. switch ( this.axis ) {
  986. case 'X':
  987. alignVector.copy( this.eye ).cross( unitX );
  988. dirVector.copy( unitX ).cross( alignVector );
  989. break;
  990. case 'Y':
  991. alignVector.copy( this.eye ).cross( unitY );
  992. dirVector.copy( unitY ).cross( alignVector );
  993. break;
  994. case 'Z':
  995. alignVector.copy( this.eye ).cross( unitZ );
  996. dirVector.copy( unitZ ).cross( alignVector );
  997. break;
  998. case 'XY':
  999. dirVector.copy( unitZ );
  1000. break;
  1001. case 'YZ':
  1002. dirVector.copy( unitX );
  1003. break;
  1004. case 'XZ':
  1005. alignVector.copy( unitZ );
  1006. dirVector.copy( unitY );
  1007. break;
  1008. case 'XYZ':
  1009. case 'E':
  1010. dirVector.set( 0, 0, 0 );
  1011. break;
  1012. }
  1013. break;
  1014. case 'rotate':
  1015. default:
  1016. // special case for rotate
  1017. dirVector.set( 0, 0, 0 );
  1018. }
  1019. if ( dirVector.length() === 0 ) {
  1020. // If in rotate mode, make the plane parallel to camera
  1021. this.quaternion.copy( this.cameraQuaternion );
  1022. } else {
  1023. tempMatrix.lookAt( tempVector.set( 0, 0, 0 ), dirVector, alignVector );
  1024. this.quaternion.setFromRotationMatrix( tempMatrix );
  1025. }
  1026. THREE.Object3D.prototype.updateMatrixWorld.call( this );
  1027. };
  1028. };
  1029. THREE.TransformControlsPlane.prototype = Object.assign( Object.create( THREE.Mesh.prototype ), {
  1030. constructor: THREE.TransformControlsPlane,
  1031. isTransformControlsPlane: true
  1032. } );