SSAARenderPass.js 5.9 KB

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  1. import {
  2. AdditiveBlending,
  3. Color,
  4. ShaderMaterial,
  5. UniformsUtils,
  6. WebGLRenderTarget
  7. } from 'three';
  8. import { Pass, FullScreenQuad } from './Pass.js';
  9. import { CopyShader } from '../shaders/CopyShader.js';
  10. /**
  11. *
  12. * Supersample Anti-Aliasing Render Pass
  13. *
  14. * This manual approach to SSAA re-renders the scene ones for each sample with camera jitter and accumulates the results.
  15. *
  16. * References: https://en.wikipedia.org/wiki/Supersampling
  17. *
  18. */
  19. class SSAARenderPass extends Pass {
  20. constructor( scene, camera, clearColor, clearAlpha ) {
  21. super();
  22. this.scene = scene;
  23. this.camera = camera;
  24. this.sampleLevel = 4; // specified as n, where the number of samples is 2^n, so sampleLevel = 4, is 2^4 samples, 16.
  25. this.unbiased = true;
  26. // as we need to clear the buffer in this pass, clearColor must be set to something, defaults to black.
  27. this.clearColor = ( clearColor !== undefined ) ? clearColor : 0x000000;
  28. this.clearAlpha = ( clearAlpha !== undefined ) ? clearAlpha : 0;
  29. this._oldClearColor = new Color();
  30. if ( CopyShader === undefined ) console.error( 'THREE.SSAARenderPass relies on CopyShader' );
  31. const copyShader = CopyShader;
  32. this.copyUniforms = UniformsUtils.clone( copyShader.uniforms );
  33. this.copyMaterial = new ShaderMaterial( {
  34. uniforms: this.copyUniforms,
  35. vertexShader: copyShader.vertexShader,
  36. fragmentShader: copyShader.fragmentShader,
  37. transparent: true,
  38. blending: AdditiveBlending,
  39. depthTest: false,
  40. depthWrite: false
  41. } );
  42. this.fsQuad = new FullScreenQuad( this.copyMaterial );
  43. }
  44. dispose() {
  45. if ( this.sampleRenderTarget ) {
  46. this.sampleRenderTarget.dispose();
  47. this.sampleRenderTarget = null;
  48. }
  49. this.copyMaterial.dispose();
  50. this.fsQuad.dispose();
  51. }
  52. setSize( width, height ) {
  53. if ( this.sampleRenderTarget ) this.sampleRenderTarget.setSize( width, height );
  54. }
  55. render( renderer, writeBuffer, readBuffer ) {
  56. if ( ! this.sampleRenderTarget ) {
  57. this.sampleRenderTarget = new WebGLRenderTarget( readBuffer.width, readBuffer.height );
  58. this.sampleRenderTarget.texture.name = 'SSAARenderPass.sample';
  59. }
  60. const jitterOffsets = _JitterVectors[ Math.max( 0, Math.min( this.sampleLevel, 5 ) ) ];
  61. const autoClear = renderer.autoClear;
  62. renderer.autoClear = false;
  63. renderer.getClearColor( this._oldClearColor );
  64. const oldClearAlpha = renderer.getClearAlpha();
  65. const baseSampleWeight = 1.0 / jitterOffsets.length;
  66. const roundingRange = 1 / 32;
  67. this.copyUniforms[ 'tDiffuse' ].value = this.sampleRenderTarget.texture;
  68. const viewOffset = {
  69. fullWidth: readBuffer.width,
  70. fullHeight: readBuffer.height,
  71. offsetX: 0,
  72. offsetY: 0,
  73. width: readBuffer.width,
  74. height: readBuffer.height
  75. };
  76. const originalViewOffset = Object.assign( {}, this.camera.view );
  77. if ( originalViewOffset.enabled ) Object.assign( viewOffset, originalViewOffset );
  78. // render the scene multiple times, each slightly jitter offset from the last and accumulate the results.
  79. for ( let i = 0; i < jitterOffsets.length; i ++ ) {
  80. const jitterOffset = jitterOffsets[ i ];
  81. if ( this.camera.setViewOffset ) {
  82. this.camera.setViewOffset(
  83. viewOffset.fullWidth, viewOffset.fullHeight,
  84. viewOffset.offsetX + jitterOffset[ 0 ] * 0.0625, viewOffset.offsetY + jitterOffset[ 1 ] * 0.0625, // 0.0625 = 1 / 16
  85. viewOffset.width, viewOffset.height
  86. );
  87. }
  88. let sampleWeight = baseSampleWeight;
  89. if ( this.unbiased ) {
  90. // the theory is that equal weights for each sample lead to an accumulation of rounding errors.
  91. // The following equation varies the sampleWeight per sample so that it is uniformly distributed
  92. // across a range of values whose rounding errors cancel each other out.
  93. const uniformCenteredDistribution = ( - 0.5 + ( i + 0.5 ) / jitterOffsets.length );
  94. sampleWeight += roundingRange * uniformCenteredDistribution;
  95. }
  96. this.copyUniforms[ 'opacity' ].value = sampleWeight;
  97. renderer.setClearColor( this.clearColor, this.clearAlpha );
  98. renderer.setRenderTarget( this.sampleRenderTarget );
  99. renderer.clear();
  100. renderer.render( this.scene, this.camera );
  101. renderer.setRenderTarget( this.renderToScreen ? null : writeBuffer );
  102. if ( i === 0 ) {
  103. renderer.setClearColor( 0x000000, 0.0 );
  104. renderer.clear();
  105. }
  106. this.fsQuad.render( renderer );
  107. }
  108. if ( this.camera.setViewOffset && originalViewOffset.enabled ) {
  109. this.camera.setViewOffset(
  110. originalViewOffset.fullWidth, originalViewOffset.fullHeight,
  111. originalViewOffset.offsetX, originalViewOffset.offsetY,
  112. originalViewOffset.width, originalViewOffset.height
  113. );
  114. } else if ( this.camera.clearViewOffset ) {
  115. this.camera.clearViewOffset();
  116. }
  117. renderer.autoClear = autoClear;
  118. renderer.setClearColor( this._oldClearColor, oldClearAlpha );
  119. }
  120. }
  121. // These jitter vectors are specified in integers because it is easier.
  122. // I am assuming a [-8,8) integer grid, but it needs to be mapped onto [-0.5,0.5)
  123. // before being used, thus these integers need to be scaled by 1/16.
  124. //
  125. // Sample patterns reference: https://msdn.microsoft.com/en-us/library/windows/desktop/ff476218%28v=vs.85%29.aspx?f=255&MSPPError=-2147217396
  126. const _JitterVectors = [
  127. [
  128. [ 0, 0 ]
  129. ],
  130. [
  131. [ 4, 4 ], [ - 4, - 4 ]
  132. ],
  133. [
  134. [ - 2, - 6 ], [ 6, - 2 ], [ - 6, 2 ], [ 2, 6 ]
  135. ],
  136. [
  137. [ 1, - 3 ], [ - 1, 3 ], [ 5, 1 ], [ - 3, - 5 ],
  138. [ - 5, 5 ], [ - 7, - 1 ], [ 3, 7 ], [ 7, - 7 ]
  139. ],
  140. [
  141. [ 1, 1 ], [ - 1, - 3 ], [ - 3, 2 ], [ 4, - 1 ],
  142. [ - 5, - 2 ], [ 2, 5 ], [ 5, 3 ], [ 3, - 5 ],
  143. [ - 2, 6 ], [ 0, - 7 ], [ - 4, - 6 ], [ - 6, 4 ],
  144. [ - 8, 0 ], [ 7, - 4 ], [ 6, 7 ], [ - 7, - 8 ]
  145. ],
  146. [
  147. [ - 4, - 7 ], [ - 7, - 5 ], [ - 3, - 5 ], [ - 5, - 4 ],
  148. [ - 1, - 4 ], [ - 2, - 2 ], [ - 6, - 1 ], [ - 4, 0 ],
  149. [ - 7, 1 ], [ - 1, 2 ], [ - 6, 3 ], [ - 3, 3 ],
  150. [ - 7, 6 ], [ - 3, 6 ], [ - 5, 7 ], [ - 1, 7 ],
  151. [ 5, - 7 ], [ 1, - 6 ], [ 6, - 5 ], [ 4, - 4 ],
  152. [ 2, - 3 ], [ 7, - 2 ], [ 1, - 1 ], [ 4, - 1 ],
  153. [ 2, 1 ], [ 6, 2 ], [ 0, 4 ], [ 4, 4 ],
  154. [ 2, 5 ], [ 7, 5 ], [ 5, 6 ], [ 3, 7 ]
  155. ]
  156. ];
  157. export { SSAARenderPass };