OrbitControls.js 14 KB

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  1. /**
  2. * @author qiao / https://github.com/qiao
  3. * @author mrdoob / http://mrdoob.com
  4. * @author alteredq / http://alteredqualia.com/
  5. * @author WestLangley / http://github.com/WestLangley
  6. * @author erich666 / http://erichaines.com
  7. */
  8. /*global THREE, console */
  9. // This set of controls performs orbiting, dollying (zooming), and panning. It maintains
  10. // the "up" direction as +Y, unlike the TrackballControls. Touch on tablet and phones is
  11. // supported.
  12. //
  13. // Orbit - left mouse / touch: one finger move
  14. // Zoom - middle mouse, or mousewheel / touch: two finger spread or squish
  15. // Pan - right mouse, or arrow keys / touch: three finter swipe
  16. //
  17. // This is a drop-in replacement for (most) TrackballControls used in examples.
  18. // That is, include this js file and wherever you see:
  19. // controls = new THREE.TrackballControls( camera );
  20. // controls.target.z = 150;
  21. // Simple substitute "OrbitControls" and the control should work as-is.
  22. THREE.OrbitControls = function ( object, domElement ) {
  23. this.object = object;
  24. this.domElement = ( domElement !== undefined ) ? domElement : document;
  25. // API
  26. // Set to false to disable this control
  27. this.enabled = true;
  28. // "target" sets the location of focus, where the control orbits around
  29. // and where it pans with respect to.
  30. this.target = new THREE.Vector3();
  31. // center is old, deprecated; use "target" instead
  32. this.center = this.target;
  33. // This option actually enables dollying in and out; left as "zoom" for
  34. // backwards compatibility
  35. this.noZoom = false;
  36. this.zoomSpeed = 1.0;
  37. // Limits to how far you can dolly in and out
  38. this.minDistance = 0;
  39. this.maxDistance = Infinity;
  40. // Set to true to disable this control
  41. this.noRotate = false;
  42. this.rotateSpeed = 1.0;
  43. // Set to true to disable this control
  44. this.noPan = false;
  45. this.keyPanSpeed = 7.0; // pixels moved per arrow key push
  46. // Set to true to automatically rotate around the target
  47. this.autoRotate = false;
  48. this.autoRotateSpeed = 2.0; // 30 seconds per round when fps is 60
  49. // How far you can orbit vertically, upper and lower limits.
  50. // Range is 0 to Math.PI radians.
  51. this.minPolarAngle = 0; // radians
  52. this.maxPolarAngle = Math.PI; // radians
  53. // Set to true to disable use of the keys
  54. this.noKeys = false;
  55. // The four arrow keys
  56. this.keys = { LEFT: 37, UP: 38, RIGHT: 39, BOTTOM: 40 };
  57. ////////////
  58. // internals
  59. var scope = this;
  60. var EPS = 0.000001;
  61. var rotateStart = new THREE.Vector2();
  62. var rotateEnd = new THREE.Vector2();
  63. var rotateDelta = new THREE.Vector2();
  64. var panStart = new THREE.Vector2();
  65. var panEnd = new THREE.Vector2();
  66. var panDelta = new THREE.Vector2();
  67. var panOffset = new THREE.Vector3();
  68. var offset = new THREE.Vector3();
  69. var dollyStart = new THREE.Vector2();
  70. var dollyEnd = new THREE.Vector2();
  71. var dollyDelta = new THREE.Vector2();
  72. var phiDelta = 0;
  73. var thetaDelta = 0;
  74. var scale = 1;
  75. var pan = new THREE.Vector3();
  76. var lastPosition = new THREE.Vector3();
  77. var STATE = { NONE : -1, ROTATE : 0, DOLLY : 1, PAN : 2, TOUCH_ROTATE : 3, TOUCH_DOLLY : 4, TOUCH_PAN : 5 };
  78. var state = STATE.NONE;
  79. // events
  80. var changeEvent = { type: 'change' };
  81. this.rotateLeft = function ( angle ) {
  82. if ( angle === undefined ) {
  83. angle = getAutoRotationAngle();
  84. }
  85. thetaDelta -= angle;
  86. };
  87. this.rotateUp = function ( angle ) {
  88. if ( angle === undefined ) {
  89. angle = getAutoRotationAngle();
  90. }
  91. phiDelta -= angle;
  92. };
  93. // pass in distance in world space to move left
  94. this.panLeft = function ( distance ) {
  95. var te = this.object.matrix.elements;
  96. // get X column of matrix
  97. panOffset.set( te[ 0 ], te[ 1 ], te[ 2 ] );
  98. panOffset.multiplyScalar( - distance );
  99. pan.add( panOffset );
  100. };
  101. // pass in distance in world space to move up
  102. this.panUp = function ( distance ) {
  103. var te = this.object.matrix.elements;
  104. // get Y column of matrix
  105. panOffset.set( te[ 4 ], te[ 5 ], te[ 6 ] );
  106. panOffset.multiplyScalar( distance );
  107. pan.add( panOffset );
  108. };
  109. // pass in x,y of change desired in pixel space,
  110. // right and down are positive
  111. this.pan = function ( deltaX, deltaY ) {
  112. var element = scope.domElement === document ? scope.domElement.body : scope.domElement;
  113. if ( scope.object.fov !== undefined ) {
  114. // perspective
  115. var position = scope.object.position;
  116. var offset = position.clone().sub( scope.target );
  117. var targetDistance = offset.length();
  118. // half of the fov is center to top of screen
  119. targetDistance *= Math.tan( ( scope.object.fov / 2 ) * Math.PI / 180.0 );
  120. // we actually don't use screenWidth, since perspective camera is fixed to screen height
  121. scope.panLeft( 2 * deltaX * targetDistance / element.clientHeight );
  122. scope.panUp( 2 * deltaY * targetDistance / element.clientHeight );
  123. } else if ( scope.object.top !== undefined ) {
  124. // orthographic
  125. scope.panLeft( deltaX * (scope.object.right - scope.object.left) / element.clientWidth );
  126. scope.panUp( deltaY * (scope.object.top - scope.object.bottom) / element.clientHeight );
  127. } else {
  128. // camera neither orthographic or perspective
  129. console.warn( 'WARNING: OrbitControls.js encountered an unknown camera type - pan disabled.' );
  130. }
  131. };
  132. this.dollyIn = function ( dollyScale ) {
  133. if ( dollyScale === undefined ) {
  134. dollyScale = getZoomScale();
  135. }
  136. scale /= dollyScale;
  137. };
  138. this.dollyOut = function ( dollyScale ) {
  139. if ( dollyScale === undefined ) {
  140. dollyScale = getZoomScale();
  141. }
  142. scale *= dollyScale;
  143. };
  144. this.update = function () {
  145. var position = this.object.position;
  146. offset.copy( position ).sub( this.target );
  147. // angle from z-axis around y-axis
  148. var theta = Math.atan2( offset.x, offset.z );
  149. // angle from y-axis
  150. var phi = Math.atan2( Math.sqrt( offset.x * offset.x + offset.z * offset.z ), offset.y );
  151. if ( this.autoRotate ) {
  152. this.rotateLeft( getAutoRotationAngle() );
  153. }
  154. theta += thetaDelta;
  155. phi += phiDelta;
  156. // restrict phi to be between desired limits
  157. phi = Math.max( this.minPolarAngle, Math.min( this.maxPolarAngle, phi ) );
  158. // restrict phi to be betwee EPS and PI-EPS
  159. phi = Math.max( EPS, Math.min( Math.PI - EPS, phi ) );
  160. var radius = offset.length() * scale;
  161. // restrict radius to be between desired limits
  162. radius = Math.max( this.minDistance, Math.min( this.maxDistance, radius ) );
  163. // move target to panned location
  164. this.target.add( pan );
  165. offset.x = radius * Math.sin( phi ) * Math.sin( theta );
  166. offset.y = radius * Math.cos( phi );
  167. offset.z = radius * Math.sin( phi ) * Math.cos( theta );
  168. position.copy( this.target ).add( offset );
  169. this.object.lookAt( this.target );
  170. thetaDelta = 0;
  171. phiDelta = 0;
  172. scale = 1;
  173. pan.set( 0, 0, 0 );
  174. if ( lastPosition.distanceTo( this.object.position ) > 0 ) {
  175. this.dispatchEvent( changeEvent );
  176. lastPosition.copy( this.object.position );
  177. }
  178. };
  179. function getAutoRotationAngle() {
  180. return 2 * Math.PI / 60 / 60 * scope.autoRotateSpeed;
  181. }
  182. function getZoomScale() {
  183. return Math.pow( 0.95, scope.zoomSpeed );
  184. }
  185. function onMouseDown( event ) {
  186. if ( scope.enabled === false ) return;
  187. event.preventDefault();
  188. if ( event.button === 0 ) {
  189. if ( scope.noRotate === true ) return;
  190. state = STATE.ROTATE;
  191. rotateStart.set( event.clientX, event.clientY );
  192. } else if ( event.button === 1 ) {
  193. if ( scope.noZoom === true ) return;
  194. state = STATE.DOLLY;
  195. dollyStart.set( event.clientX, event.clientY );
  196. } else if ( event.button === 2 ) {
  197. if ( scope.noPan === true ) return;
  198. state = STATE.PAN;
  199. panStart.set( event.clientX, event.clientY );
  200. }
  201. scope.domElement.addEventListener( 'mousemove', onMouseMove, false );
  202. scope.domElement.addEventListener( 'mouseup', onMouseUp, false );
  203. }
  204. function onMouseMove( event ) {
  205. if ( scope.enabled === false ) return;
  206. event.preventDefault();
  207. var element = scope.domElement === document ? scope.domElement.body : scope.domElement;
  208. if ( state === STATE.ROTATE ) {
  209. if ( scope.noRotate === true ) return;
  210. rotateEnd.set( event.clientX, event.clientY );
  211. rotateDelta.subVectors( rotateEnd, rotateStart );
  212. // rotating across whole screen goes 360 degrees around
  213. scope.rotateLeft( 2 * Math.PI * rotateDelta.x / element.clientWidth * scope.rotateSpeed );
  214. // rotating up and down along whole screen attempts to go 360, but limited to 180
  215. scope.rotateUp( 2 * Math.PI * rotateDelta.y / element.clientHeight * scope.rotateSpeed );
  216. rotateStart.copy( rotateEnd );
  217. } else if ( state === STATE.DOLLY ) {
  218. if ( scope.noZoom === true ) return;
  219. dollyEnd.set( event.clientX, event.clientY );
  220. dollyDelta.subVectors( dollyEnd, dollyStart );
  221. if ( dollyDelta.y > 0 ) {
  222. scope.dollyIn();
  223. } else {
  224. scope.dollyOut();
  225. }
  226. dollyStart.copy( dollyEnd );
  227. } else if ( state === STATE.PAN ) {
  228. if ( scope.noPan === true ) return;
  229. panEnd.set( event.clientX, event.clientY );
  230. panDelta.subVectors( panEnd, panStart );
  231. scope.pan( panDelta.x, panDelta.y );
  232. panStart.copy( panEnd );
  233. }
  234. scope.update();
  235. }
  236. function onMouseUp( /* event */ ) {
  237. if ( scope.enabled === false ) return;
  238. scope.domElement.removeEventListener( 'mousemove', onMouseMove, false );
  239. scope.domElement.removeEventListener( 'mouseup', onMouseUp, false );
  240. state = STATE.NONE;
  241. }
  242. function onMouseWheel( event ) {
  243. if ( scope.enabled === false || scope.noZoom === true ) return;
  244. event.preventDefault();
  245. var delta = 0;
  246. if ( event.wheelDelta !== undefined ) { // WebKit / Opera / Explorer 9
  247. delta = event.wheelDelta;
  248. } else if ( event.detail !== undefined ) { // Firefox
  249. delta = - event.detail;
  250. }
  251. if ( delta > 0 ) {
  252. scope.dollyOut();
  253. } else {
  254. scope.dollyIn();
  255. }
  256. scope.update();
  257. }
  258. function onKeyDown( event ) {
  259. if ( scope.enabled === false || scope.noKeys === true || scope.noPan === true ) return;
  260. switch ( event.keyCode ) {
  261. case scope.keys.UP:
  262. scope.pan( 0, scope.keyPanSpeed );
  263. scope.update();
  264. break;
  265. case scope.keys.BOTTOM:
  266. scope.pan( 0, - scope.keyPanSpeed );
  267. scope.update();
  268. break;
  269. case scope.keys.LEFT:
  270. scope.pan( scope.keyPanSpeed, 0 );
  271. scope.update();
  272. break;
  273. case scope.keys.RIGHT:
  274. scope.pan( - scope.keyPanSpeed, 0 );
  275. scope.update();
  276. break;
  277. }
  278. }
  279. function touchstart( event ) {
  280. if ( scope.enabled === false ) return;
  281. switch ( event.touches.length ) {
  282. case 1: // one-fingered touch: rotate
  283. if ( scope.noRotate === true ) return;
  284. state = STATE.TOUCH_ROTATE;
  285. rotateStart.set( event.touches[ 0 ].pageX, event.touches[ 0 ].pageY );
  286. break;
  287. case 2: // two-fingered touch: dolly
  288. if ( scope.noZoom === true ) return;
  289. state = STATE.TOUCH_DOLLY;
  290. var dx = event.touches[ 0 ].pageX - event.touches[ 1 ].pageX;
  291. var dy = event.touches[ 0 ].pageY - event.touches[ 1 ].pageY;
  292. var distance = Math.sqrt( dx * dx + dy * dy );
  293. dollyStart.set( 0, distance );
  294. break;
  295. case 3: // three-fingered touch: pan
  296. if ( scope.noPan === true ) return;
  297. state = STATE.TOUCH_PAN;
  298. panStart.set( event.touches[ 0 ].pageX, event.touches[ 0 ].pageY );
  299. break;
  300. default:
  301. state = STATE.NONE;
  302. }
  303. }
  304. function touchmove( event ) {
  305. if ( scope.enabled === false ) return;
  306. event.preventDefault();
  307. event.stopPropagation();
  308. var element = scope.domElement === document ? scope.domElement.body : scope.domElement;
  309. switch ( event.touches.length ) {
  310. case 1: // one-fingered touch: rotate
  311. if ( scope.noRotate === true ) return;
  312. if ( state !== STATE.TOUCH_ROTATE ) return;
  313. rotateEnd.set( event.touches[ 0 ].pageX, event.touches[ 0 ].pageY );
  314. rotateDelta.subVectors( rotateEnd, rotateStart );
  315. // rotating across whole screen goes 360 degrees around
  316. scope.rotateLeft( 2 * Math.PI * rotateDelta.x / element.clientWidth * scope.rotateSpeed );
  317. // rotating up and down along whole screen attempts to go 360, but limited to 180
  318. scope.rotateUp( 2 * Math.PI * rotateDelta.y / element.clientHeight * scope.rotateSpeed );
  319. rotateStart.copy( rotateEnd );
  320. scope.update();
  321. break;
  322. case 2: // two-fingered touch: dolly
  323. if ( scope.noZoom === true ) return;
  324. if ( state !== STATE.TOUCH_DOLLY ) return;
  325. var dx = event.touches[ 0 ].pageX - event.touches[ 1 ].pageX;
  326. var dy = event.touches[ 0 ].pageY - event.touches[ 1 ].pageY;
  327. var distance = Math.sqrt( dx * dx + dy * dy );
  328. dollyEnd.set( 0, distance );
  329. dollyDelta.subVectors( dollyEnd, dollyStart );
  330. if ( dollyDelta.y > 0 ) {
  331. scope.dollyOut();
  332. } else {
  333. scope.dollyIn();
  334. }
  335. dollyStart.copy( dollyEnd );
  336. scope.update();
  337. break;
  338. case 3: // three-fingered touch: pan
  339. if ( scope.noPan === true ) return;
  340. if ( state !== STATE.TOUCH_PAN ) return;
  341. panEnd.set( event.touches[ 0 ].pageX, event.touches[ 0 ].pageY );
  342. panDelta.subVectors( panEnd, panStart );
  343. scope.pan( panDelta.x, panDelta.y );
  344. panStart.copy( panEnd );
  345. scope.update();
  346. break;
  347. default:
  348. state = STATE.NONE;
  349. }
  350. }
  351. function touchend( /* event */ ) {
  352. if ( scope.enabled === false ) return;
  353. state = STATE.NONE;
  354. }
  355. this.domElement.addEventListener( 'contextmenu', function ( event ) { event.preventDefault(); }, false );
  356. this.domElement.addEventListener( 'mousedown', onMouseDown, false );
  357. this.domElement.addEventListener( 'mousewheel', onMouseWheel, false );
  358. this.domElement.addEventListener( 'DOMMouseScroll', onMouseWheel, false ); // firefox
  359. this.domElement.addEventListener( 'touchstart', touchstart, false );
  360. this.domElement.addEventListener( 'touchend', touchend, false );
  361. this.domElement.addEventListener( 'touchmove', touchmove, false );
  362. window.addEventListener( 'keydown', onKeyDown, false );
  363. };
  364. THREE.OrbitControls.prototype = Object.create( THREE.EventDispatcher.prototype );