Sphere.tests.js 8.8 KB

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  1. /* global QUnit */
  2. import { Box3 } from '../../../../src/math/Box3.js';
  3. import { Vector3 } from '../../../../src/math/Vector3.js';
  4. import { Sphere } from '../../../../src/math/Sphere.js';
  5. import { Plane } from '../../../../src/math/Plane.js';
  6. import { Matrix4 } from '../../../../src/math/Matrix4.js';
  7. import {
  8. zero3,
  9. one3,
  10. two3,
  11. eps
  12. } from './Constants.tests.js';
  13. export default QUnit.module( 'Maths', () => {
  14. QUnit.module( 'Sphere', () => {
  15. // INSTANCING
  16. QUnit.test( 'Instancing', ( assert ) => {
  17. var a = new Sphere();
  18. assert.ok( a.center.equals( zero3 ), 'Passed!' );
  19. assert.ok( a.radius == - 1, 'Passed!' );
  20. var a = new Sphere( one3.clone(), 1 );
  21. assert.ok( a.center.equals( one3 ), 'Passed!' );
  22. assert.ok( a.radius == 1, 'Passed!' );
  23. } );
  24. // PUBLIC STUFF
  25. QUnit.todo( 'isSphere', ( assert ) => {
  26. assert.ok( false, 'everything\'s gonna be alright' );
  27. } );
  28. QUnit.test( 'set', ( assert ) => {
  29. var a = new Sphere();
  30. assert.ok( a.center.equals( zero3 ), 'Passed!' );
  31. assert.ok( a.radius == - 1, 'Passed!' );
  32. a.set( one3, 1 );
  33. assert.ok( a.center.equals( one3 ), 'Passed!' );
  34. assert.ok( a.radius == 1, 'Passed!' );
  35. } );
  36. QUnit.test( 'setFromPoints', ( assert ) => {
  37. var a = new Sphere();
  38. var expectedCenter = new Vector3( 0.9330126941204071, 0, 0 );
  39. var expectedRadius = 1.3676668773461689;
  40. var optionalCenter = new Vector3( 1, 1, 1 );
  41. var points = [
  42. new Vector3( 1, 1, 0 ), new Vector3( 1, 1, 0 ),
  43. new Vector3( 1, 1, 0 ), new Vector3( 1, 1, 0 ),
  44. new Vector3( 1, 1, 0 ), new Vector3( 0.8660253882408142, 0.5, 0 ),
  45. new Vector3( - 0, 0.5, 0.8660253882408142 ), new Vector3( 1.8660253882408142, 0.5, 0 ),
  46. new Vector3( 0, 0.5, - 0.8660253882408142 ), new Vector3( 0.8660253882408142, 0.5, - 0 ),
  47. new Vector3( 0.8660253882408142, - 0.5, 0 ), new Vector3( - 0, - 0.5, 0.8660253882408142 ),
  48. new Vector3( 1.8660253882408142, - 0.5, 0 ), new Vector3( 0, - 0.5, - 0.8660253882408142 ),
  49. new Vector3( 0.8660253882408142, - 0.5, - 0 ), new Vector3( - 0, - 1, 0 ),
  50. new Vector3( - 0, - 1, 0 ), new Vector3( 0, - 1, 0 ),
  51. new Vector3( 0, - 1, - 0 ), new Vector3( - 0, - 1, - 0 ),
  52. ];
  53. a.setFromPoints( points );
  54. assert.ok( Math.abs( a.center.x - expectedCenter.x ) <= eps, 'Default center: check center.x' );
  55. assert.ok( Math.abs( a.center.y - expectedCenter.y ) <= eps, 'Default center: check center.y' );
  56. assert.ok( Math.abs( a.center.z - expectedCenter.z ) <= eps, 'Default center: check center.z' );
  57. assert.ok( Math.abs( a.radius - expectedRadius ) <= eps, 'Default center: check radius' );
  58. var expectedRadius = 2.5946195770400102;
  59. a.setFromPoints( points, optionalCenter );
  60. assert.ok( Math.abs( a.center.x - optionalCenter.x ) <= eps, 'Optional center: check center.x' );
  61. assert.ok( Math.abs( a.center.y - optionalCenter.y ) <= eps, 'Optional center: check center.y' );
  62. assert.ok( Math.abs( a.center.z - optionalCenter.z ) <= eps, 'Optional center: check center.z' );
  63. assert.ok( Math.abs( a.radius - expectedRadius ) <= eps, 'Optional center: check radius' );
  64. } );
  65. QUnit.todo( 'clone', ( assert ) => {
  66. assert.ok( false, 'everything\'s gonna be alright' );
  67. } );
  68. QUnit.test( 'copy', ( assert ) => {
  69. var a = new Sphere( one3.clone(), 1 );
  70. var b = new Sphere().copy( a );
  71. assert.ok( b.center.equals( one3 ), 'Passed!' );
  72. assert.ok( b.radius == 1, 'Passed!' );
  73. // ensure that it is a true copy
  74. a.center = zero3;
  75. a.radius = 0;
  76. assert.ok( b.center.equals( one3 ), 'Passed!' );
  77. assert.ok( b.radius == 1, 'Passed!' );
  78. } );
  79. QUnit.test( 'isEmpty', ( assert ) => {
  80. var a = new Sphere();
  81. assert.ok( a.isEmpty(), 'Passed!' );
  82. a.set( one3, 1 );
  83. assert.ok( ! a.isEmpty(), 'Passed!' );
  84. // Negative radius contains no points
  85. a.set( one3, - 1 );
  86. assert.ok( a.isEmpty(), 'Passed!' );
  87. // Zero radius contains only the center point
  88. a.set( one3, 0 );
  89. assert.ok( ! a.isEmpty(), 'Passed!' );
  90. } );
  91. QUnit.test( 'makeEmpty', ( assert ) => {
  92. var a = new Sphere( one3.clone(), 1 );
  93. assert.ok( ! a.isEmpty(), 'Passed!' );
  94. a.makeEmpty();
  95. assert.ok( a.isEmpty(), 'Passed!' );
  96. assert.ok( a.center.equals( zero3 ), 'Passed!' );
  97. } );
  98. QUnit.test( 'containsPoint', ( assert ) => {
  99. var a = new Sphere( one3.clone(), 1 );
  100. assert.ok( ! a.containsPoint( zero3 ), 'Passed!' );
  101. assert.ok( a.containsPoint( one3 ), 'Passed!' );
  102. a.set( zero3, 0 );
  103. assert.ok( a.containsPoint( a.center ), 'Passed!' );
  104. } );
  105. QUnit.test( 'distanceToPoint', ( assert ) => {
  106. var a = new Sphere( one3.clone(), 1 );
  107. assert.ok( ( a.distanceToPoint( zero3 ) - 0.7320 ) < 0.001, 'Passed!' );
  108. assert.ok( a.distanceToPoint( one3 ) === - 1, 'Passed!' );
  109. } );
  110. QUnit.test( 'intersectsSphere', ( assert ) => {
  111. var a = new Sphere( one3.clone(), 1 );
  112. var b = new Sphere( zero3.clone(), 1 );
  113. var c = new Sphere( zero3.clone(), 0.25 );
  114. assert.ok( a.intersectsSphere( b ), 'Passed!' );
  115. assert.ok( ! a.intersectsSphere( c ), 'Passed!' );
  116. } );
  117. QUnit.test( 'intersectsBox', ( assert ) => {
  118. var a = new Sphere( zero3, 1 );
  119. var b = new Sphere( new Vector3( - 5, - 5, - 5 ), 1 );
  120. var box = new Box3( zero3, one3 );
  121. assert.strictEqual( a.intersectsBox( box ), true, 'Check unit sphere' );
  122. assert.strictEqual( b.intersectsBox( box ), false, 'Check shifted sphere' );
  123. } );
  124. QUnit.test( 'intersectsPlane', ( assert ) => {
  125. var a = new Sphere( zero3.clone(), 1 );
  126. var b = new Plane( new Vector3( 0, 1, 0 ), 1 );
  127. var c = new Plane( new Vector3( 0, 1, 0 ), 1.25 );
  128. var d = new Plane( new Vector3( 0, - 1, 0 ), 1.25 );
  129. assert.ok( a.intersectsPlane( b ), 'Passed!' );
  130. assert.ok( ! a.intersectsPlane( c ), 'Passed!' );
  131. assert.ok( ! a.intersectsPlane( d ), 'Passed!' );
  132. } );
  133. QUnit.test( 'clampPoint', ( assert ) => {
  134. var a = new Sphere( one3.clone(), 1 );
  135. var point = new Vector3();
  136. a.clampPoint( new Vector3( 1, 1, 3 ), point );
  137. assert.ok( point.equals( new Vector3( 1, 1, 2 ) ), 'Passed!' );
  138. a.clampPoint( new Vector3( 1, 1, - 3 ), point );
  139. assert.ok( point.equals( new Vector3( 1, 1, 0 ) ), 'Passed!' );
  140. } );
  141. QUnit.test( 'getBoundingBox', ( assert ) => {
  142. var a = new Sphere( one3.clone(), 1 );
  143. var aabb = new Box3();
  144. a.getBoundingBox( aabb );
  145. assert.ok( aabb.equals( new Box3( zero3, two3 ) ), 'Passed!' );
  146. a.set( zero3, 0 );
  147. a.getBoundingBox( aabb );
  148. assert.ok( aabb.equals( new Box3( zero3, zero3 ) ), 'Passed!' );
  149. // Empty sphere produces empty bounding box
  150. a.makeEmpty();
  151. a.getBoundingBox( aabb );
  152. assert.ok( aabb.isEmpty(), 'Passed!' );
  153. } );
  154. QUnit.test( 'applyMatrix4', ( assert ) => {
  155. var a = new Sphere( one3.clone(), 1 );
  156. var m = new Matrix4().makeTranslation( 1, - 2, 1 );
  157. var aabb1 = new Box3();
  158. var aabb2 = new Box3();
  159. a.clone().applyMatrix4( m ).getBoundingBox( aabb1 );
  160. a.getBoundingBox( aabb2 );
  161. assert.ok( aabb1.equals( aabb2.applyMatrix4( m ) ), 'Passed!' );
  162. } );
  163. QUnit.test( 'translate', ( assert ) => {
  164. var a = new Sphere( one3.clone(), 1 );
  165. a.translate( one3.clone().negate() );
  166. assert.ok( a.center.equals( zero3 ), 'Passed!' );
  167. } );
  168. QUnit.test( 'expandByPoint', ( assert ) => {
  169. var a = new Sphere( zero3.clone(), 1 );
  170. var p = new Vector3( 2, 0, 0 );
  171. assert.ok( a.containsPoint( p ) === false, 'a does not contain p' );
  172. a.expandByPoint( p );
  173. assert.ok( a.containsPoint( p ) === true, 'a does contain p' );
  174. assert.ok( a.center.equals( new Vector3( 0.5, 0, 0 ) ), 'Passed!' );
  175. assert.ok( a.radius === 1.5, 'Passed!' );
  176. } );
  177. QUnit.test( 'union', ( assert ) => {
  178. var a = new Sphere( zero3.clone(), 1 );
  179. var b = new Sphere( new Vector3( 2, 0, 0 ), 1 );
  180. a.union( b );
  181. assert.ok( a.center.equals( new Vector3( 1, 0, 0 ) ), 'Passed!' );
  182. assert.ok( a.radius === 2, 'Passed!' );
  183. // d contains c (demonstrates why it is necessary to process two points in union)
  184. var c = new Sphere( new Vector3(), 1 );
  185. var d = new Sphere( new Vector3( 1, 0, 0 ), 4 );
  186. c.union( d );
  187. assert.ok( c.center.equals( new Vector3( 1, 0, 0 ) ), 'Passed!' );
  188. assert.ok( c.radius === 4, 'Passed!' );
  189. // edge case: both spheres have the same center point
  190. var e = new Sphere( new Vector3(), 1 );
  191. var f = new Sphere( new Vector3(), 4 );
  192. e.union( f );
  193. assert.ok( e.center.equals( new Vector3( 0, 0, 0 ) ), 'Passed!' );
  194. assert.ok( e.radius === 4, 'Passed!' );
  195. } );
  196. QUnit.test( 'equals', ( assert ) => {
  197. var a = new Sphere();
  198. var b = new Sphere( new Vector3( 1, 0, 0 ) );
  199. var c = new Sphere( new Vector3( 1, 0, 0 ), 1.0 );
  200. assert.strictEqual( a.equals( b ), false, 'a does not equal b' );
  201. assert.strictEqual( a.equals( c ), false, 'a does not equal c' );
  202. assert.strictEqual( b.equals( c ), false, 'b does not equal c' );
  203. a.copy( b );
  204. assert.strictEqual( a.equals( b ), true, 'a equals b after copy()' );
  205. } );
  206. } );
  207. } );