SoftwareRenderer.js 14 KB

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  1. /**
  2. * @author mrdoob / http://mrdoob.com/
  3. * @author ryg / http://farbrausch.de/~fg
  4. * @author mraleph / http://mrale.ph/
  5. */
  6. THREE.SoftwareRenderer = function () {
  7. console.log( 'THREE.SoftwareRenderer', THREE.REVISION );
  8. var canvas = document.createElement( 'canvas' );
  9. var context = canvas.getContext( '2d' );
  10. var shaders = {};
  11. var canvasWidth, canvasHeight;
  12. var canvasWBlocks, canvasHBlocks;
  13. var viewportXScale, viewportYScale, viewportZScale;
  14. var viewportXOffs, viewportYOffs, viewportZOffs;
  15. var imagedata, data, zbuffer;
  16. var numBlocks, blockMaxZ, blockFlags;
  17. var BLOCK_ISCLEAR = (1 << 0);
  18. var BLOCK_NEEDCLEAR = (1 << 1);
  19. var subpixelBits = 4;
  20. var subpixelBias = (1 << subpixelBits) - 1;
  21. var blockShift = 3;
  22. var blockSize = 1 << blockShift;
  23. var maxZVal = (1 << 24); // Note: You want to size this so you don't get overflows.
  24. var rectx1 = Infinity, recty1 = Infinity;
  25. var rectx2 = 0, recty2 = 0;
  26. var prevrectx1 = Infinity, prevrecty1 = Infinity;
  27. var prevrectx2 = 0, prevrecty2 = 0;
  28. var projector = new THREE.Projector();
  29. this.domElement = canvas;
  30. this.autoClear = true;
  31. // WebGLRenderer compatibility
  32. this.supportsVertexTextures = function () {};
  33. this.setFaceCulling = function () {};
  34. this.setSize = function ( width, height ) {
  35. canvasWBlocks = Math.floor( width / blockSize );
  36. canvasHBlocks = Math.floor( height / blockSize );
  37. canvasWidth = canvasWBlocks * blockSize;
  38. canvasHeight = canvasHBlocks * blockSize;
  39. var fixScale = 1 << subpixelBits;
  40. viewportXScale = fixScale * canvasWidth / 2;
  41. viewportYScale = -fixScale * canvasHeight / 2;
  42. viewportZScale = maxZVal / 2;
  43. viewportXOffs = fixScale * canvasWidth / 2 + 0.5;
  44. viewportYOffs = fixScale * canvasHeight / 2 + 0.5;
  45. viewportZOffs = maxZVal / 2 + 0.5;
  46. canvas.width = canvasWidth;
  47. canvas.height = canvasHeight;
  48. imagedata = context.getImageData( 0, 0, canvasWidth, canvasHeight );
  49. data = imagedata.data;
  50. zbuffer = new Int32Array( data.length / 4 );
  51. numBlocks = canvasWBlocks * canvasHBlocks;
  52. blockMaxZ = new Int32Array( numBlocks );
  53. blockFlags = new Uint8Array( numBlocks );
  54. for ( var i = 0, l = zbuffer.length; i < l; i ++ ) {
  55. zbuffer[ i ] = maxZVal;
  56. }
  57. for ( var i = 0; i < numBlocks; i ++ ) {
  58. blockFlags[ i ] = BLOCK_ISCLEAR;
  59. }
  60. };
  61. this.setSize( canvas.width, canvas.height );
  62. this.clear = function () {
  63. for ( var i = 0; i < numBlocks; i ++ ) {
  64. blockMaxZ[ i ] = maxZVal;
  65. blockFlags[ i ] = (blockFlags[ i ] & BLOCK_ISCLEAR) ? BLOCK_ISCLEAR : BLOCK_NEEDCLEAR;
  66. }
  67. };
  68. this.render = function ( scene, camera ) {
  69. rectx1 = Infinity;
  70. recty1 = Infinity;
  71. rectx2 = 0;
  72. recty2 = 0;
  73. if ( this.autoClear ) this.clear();
  74. var renderData = projector.projectScene( scene, camera );
  75. var elements = renderData.elements;
  76. for ( var e = 0, el = elements.length; e < el; e ++ ) {
  77. var element = elements[ e ];
  78. var shader = getMaterialShader( element.material );
  79. if ( element instanceof THREE.RenderableFace3 ) {
  80. drawTriangle(
  81. element.v1.positionScreen,
  82. element.v2.positionScreen,
  83. element.v3.positionScreen,
  84. shader
  85. )
  86. } else if ( element instanceof THREE.RenderableFace4 ) {
  87. drawTriangle(
  88. element.v1.positionScreen,
  89. element.v2.positionScreen,
  90. element.v4.positionScreen,
  91. shader
  92. );
  93. drawTriangle(
  94. element.v2.positionScreen,
  95. element.v3.positionScreen,
  96. element.v4.positionScreen,
  97. shader
  98. );
  99. }
  100. }
  101. finishClear();
  102. var x = Math.min( rectx1, prevrectx1 );
  103. var y = Math.min( recty1, prevrecty1 );
  104. var width = Math.max( rectx2, prevrectx2 ) - x;
  105. var height = Math.max( recty2, prevrecty2 ) - y;
  106. /*
  107. // debug; draw zbuffer
  108. for ( var i = 0, l = zbuffer.length; i < l; i++ ) {
  109. var o = i * 4;
  110. var v = (65535 - zbuffer[ i ]) >> 3;
  111. data[ o + 0 ] = v;
  112. data[ o + 1 ] = v;
  113. data[ o + 2 ] = v;
  114. data[ o + 3 ] = 255;
  115. }
  116. */
  117. if ( x !== Infinity ) {
  118. context.putImageData( imagedata, 0, 0, x, y, width, height );
  119. }
  120. prevrectx1 = rectx1; prevrecty1 = recty1;
  121. prevrectx2 = rectx2; prevrecty2 = recty2;
  122. };
  123. function getMaterialShader( material ) {
  124. var id = material.id;
  125. var shader = shaders[ id ];
  126. if ( shaders[ id ] === undefined ) {
  127. if ( material instanceof THREE.MeshBasicMaterial ) {
  128. shader = new Function(
  129. 'buffer, offset, u, v',
  130. [
  131. 'buffer[ offset ] = ' + ( material.color.r * 255 ) + ';',
  132. 'buffer[ offset + 1 ] = ' + ( material.color.g * 255 ) + ';',
  133. 'buffer[ offset + 2 ] = ' + ( material.color.b * 255 ) + ';',
  134. 'buffer[ offset + 3 ] = ' + ( material.opacity * 255 ) + ';',
  135. ].join('\n')
  136. );
  137. } else if ( material instanceof THREE.MeshLambertMaterial ) {
  138. shader = new Function(
  139. 'buffer, offset, u, v',
  140. [
  141. 'buffer[ offset ] = ' + ( material.color.r * 255 ) + ';',
  142. 'buffer[ offset + 1 ] = ' + ( material.color.g * 255 ) + ';',
  143. 'buffer[ offset + 2 ] = ' + ( material.color.b * 255 ) + ';',
  144. 'buffer[ offset + 3 ] = ' + ( material.opacity * 255 ) + ';',
  145. ].join('\n')
  146. );
  147. } else {
  148. shader = new Function(
  149. 'buffer, offset, u, v',
  150. [
  151. 'buffer[ offset ] = u * 255;',
  152. 'buffer[ offset + 1 ] = v * 255;',
  153. 'buffer[ offset + 2 ] = 0;',
  154. 'buffer[ offset + 3 ] = 255;'
  155. ].join('\n')
  156. );
  157. }
  158. shaders[ id ] = shader;
  159. }
  160. return shader;
  161. }
  162. function clearRectangle( x1, y1, x2, y2 ) {
  163. var xmin = Math.max( Math.min( x1, x2 ), 0 );
  164. var xmax = Math.min( Math.max( x1, x2 ), canvasWidth );
  165. var ymin = Math.max( Math.min( y1, y2 ), 0 );
  166. var ymax = Math.min( Math.max( y1, y2 ), canvasHeight );
  167. var offset = ( xmin + ymin * canvasWidth - 1 ) * 4 + 3;
  168. var linestep = ( canvasWidth - ( xmax - xmin ) ) * 4;
  169. for ( var y = ymin; y < ymax; y ++ ) {
  170. for ( var x = xmin; x < xmax; x ++ ) {
  171. data[ offset += 4 ] = 0;
  172. }
  173. offset += linestep;
  174. }
  175. }
  176. function drawTriangle( v1, v2, v3, shader ) {
  177. // https://gist.github.com/2486101
  178. // explanation: http://pouet.net/topic.php?which=8760&page=1
  179. // 28.4 fixed-point coordinates
  180. var x1 = (v1.x * viewportXScale + viewportXOffs) | 0;
  181. var x2 = (v2.x * viewportXScale + viewportXOffs) | 0;
  182. var x3 = (v3.x * viewportXScale + viewportXOffs) | 0;
  183. var y1 = (v1.y * viewportYScale + viewportYOffs) | 0;
  184. var y2 = (v2.y * viewportYScale + viewportYOffs) | 0;
  185. var y3 = (v3.y * viewportYScale + viewportYOffs) | 0;
  186. // Z values (.28 fixed-point)
  187. var z1 = (v1.z * viewportZScale + viewportZOffs) | 0;
  188. var z2 = (v2.z * viewportZScale + viewportZOffs) | 0;
  189. var z3 = (v3.z * viewportZScale + viewportZOffs) | 0;
  190. // Deltas
  191. var dx12 = x1 - x2, dy12 = y2 - y1;
  192. var dx23 = x2 - x3, dy23 = y3 - y2;
  193. var dx31 = x3 - x1, dy31 = y1 - y3;
  194. // Bounding rectangle
  195. var minx = Math.max( ( Math.min( x1, x2, x3 ) + subpixelBias ) >> subpixelBits, 0 );
  196. var maxx = Math.min( ( Math.max( x1, x2, x3 ) + subpixelBias ) >> subpixelBits, canvasWidth );
  197. var miny = Math.max( ( Math.min( y1, y2, y3 ) + subpixelBias ) >> subpixelBits, 0 );
  198. var maxy = Math.min( ( Math.max( y1, y2, y3 ) + subpixelBias ) >> subpixelBits, canvasHeight );
  199. rectx1 = Math.min( minx, rectx1 );
  200. rectx2 = Math.max( maxx, rectx2 );
  201. recty1 = Math.min( miny, recty1 );
  202. recty2 = Math.max( maxy, recty2 );
  203. // Block size, standard 8x8 (must be power of two)
  204. var q = blockSize;
  205. // Start in corner of 8x8 block
  206. minx &= ~(q - 1);
  207. miny &= ~(q - 1);
  208. // Constant part of half-edge functions
  209. var c1 = dy12 * ((minx << subpixelBits) - x1) + dx12 * ((miny << subpixelBits) - y1);
  210. var c2 = dy23 * ((minx << subpixelBits) - x2) + dx23 * ((miny << subpixelBits) - y2);
  211. var c3 = dy31 * ((minx << subpixelBits) - x3) + dx31 * ((miny << subpixelBits) - y3);
  212. // Correct for fill convention
  213. if ( dy12 > 0 || ( dy12 == 0 && dx12 > 0 ) ) c1 ++;
  214. if ( dy23 > 0 || ( dy23 == 0 && dx23 > 0 ) ) c2 ++;
  215. if ( dy31 > 0 || ( dy31 == 0 && dx31 > 0 ) ) c3 ++;
  216. // Note this doesn't kill subpixel precision, but only because we test for >=0 (not >0).
  217. // It's a bit subtle. :)
  218. c1 = (c1 - 1) >> subpixelBits;
  219. c2 = (c2 - 1) >> subpixelBits;
  220. c3 = (c3 - 1) >> subpixelBits;
  221. // Z interpolation setup
  222. var dz12 = z1 - z2, dz31 = z3 - z1;
  223. var invDet = 1.0 / (dx12*dy31 - dx31*dy12);
  224. var dzdx = (invDet * (dz12*dy31 - dz31*dy12)); // dz per one subpixel step in x
  225. var dzdy = (invDet * (dz12*dx31 - dx12*dz31)); // dz per one subpixel step in y
  226. // Z at top/left corner of rast area
  227. var cz = ( z1 + ((minx << subpixelBits) - x1) * dzdx + ((miny << subpixelBits) - y1) * dzdy ) | 0;
  228. // Z pixel steps
  229. var zfixscale = (1 << subpixelBits);
  230. dzdx = (dzdx * zfixscale) | 0;
  231. dzdy = (dzdy * zfixscale) | 0;
  232. // Set up min/max corners
  233. var qm1 = q - 1; // for convenience
  234. var nmin1 = 0, nmax1 = 0;
  235. var nmin2 = 0, nmax2 = 0;
  236. var nmin3 = 0, nmax3 = 0;
  237. var nminz = 0, nmaxz = 0;
  238. if (dx12 >= 0) nmax1 -= qm1*dx12; else nmin1 -= qm1*dx12;
  239. if (dy12 >= 0) nmax1 -= qm1*dy12; else nmin1 -= qm1*dy12;
  240. if (dx23 >= 0) nmax2 -= qm1*dx23; else nmin2 -= qm1*dx23;
  241. if (dy23 >= 0) nmax2 -= qm1*dy23; else nmin2 -= qm1*dy23;
  242. if (dx31 >= 0) nmax3 -= qm1*dx31; else nmin3 -= qm1*dx31;
  243. if (dy31 >= 0) nmax3 -= qm1*dy31; else nmin3 -= qm1*dy31;
  244. if (dzdx >= 0) nmaxz += qm1*dzdx; else nminz += qm1*dzdx;
  245. if (dzdy >= 0) nmaxz += qm1*dzdy; else nminz += qm1*dzdy;
  246. // Loop through blocks
  247. var linestep = canvasWidth - q;
  248. var scale = 1.0 / (c1 + c2 + c3);
  249. var cb1 = c1;
  250. var cb2 = c2;
  251. var cb3 = c3;
  252. var cbz = cz;
  253. var qstep = -q;
  254. var e1x = qstep * dy12;
  255. var e2x = qstep * dy23;
  256. var e3x = qstep * dy31;
  257. var ezx = qstep * dzdx;
  258. var x0 = minx;
  259. for ( var y0 = miny; y0 < maxy; y0 += q ) {
  260. // New block line - keep hunting for tri outer edge in old block line dir
  261. while ( x0 >= minx && x0 < maxx && cb1 >= nmax1 && cb2 >= nmax2 && cb3 >= nmax3 ) {
  262. x0 += qstep;
  263. cb1 += e1x;
  264. cb2 += e2x;
  265. cb3 += e3x;
  266. cbz += ezx;
  267. }
  268. // Okay, we're now in a block we know is outside. Reverse direction and go into main loop.
  269. qstep = -qstep;
  270. e1x = -e1x;
  271. e2x = -e2x;
  272. e3x = -e3x;
  273. ezx = -ezx;
  274. while ( 1 ) {
  275. // Step everything
  276. x0 += qstep;
  277. cb1 += e1x;
  278. cb2 += e2x;
  279. cb3 += e3x;
  280. cbz += ezx;
  281. // We're done with this block line when at least one edge completely out
  282. // If an edge function is too small and decreasing in the current traversal
  283. // dir, we're done with this line.
  284. if (x0 < minx || x0 >= maxx) break;
  285. if (cb1 < nmax1) if (e1x < 0) break; else continue;
  286. if (cb2 < nmax2) if (e2x < 0) break; else continue;
  287. if (cb3 < nmax3) if (e3x < 0) break; else continue;
  288. // We can skip this block if it's already fully covered
  289. var blockX = x0 >> blockShift;
  290. var blockY = y0 >> blockShift;
  291. var blockId = blockX + blockY * canvasWBlocks;
  292. var minz = cbz + nminz;
  293. // farthest point in block closer than closest point in our tri?
  294. if ( blockMaxZ[ blockId ] < minz ) continue;
  295. // Need to do a deferred clear?
  296. var bflags = blockFlags[ blockId ];
  297. if ( bflags & BLOCK_NEEDCLEAR) clearBlock( blockX, blockY );
  298. blockFlags[ blockId ] = bflags & ~( BLOCK_ISCLEAR | BLOCK_NEEDCLEAR );
  299. // Offset at top-left corner
  300. var offset = x0 + y0 * canvasWidth;
  301. // Accept whole block when fully covered
  302. if ( cb1 >= nmin1 && cb2 >= nmin2 && cb3 >= nmin3 ) {
  303. var maxz = cbz + nmaxz;
  304. blockMaxZ[ blockId ] = Math.min( blockMaxZ[ blockId ], maxz );
  305. var cy1 = cb1;
  306. var cy2 = cb2;
  307. var cyz = cbz;
  308. for ( var iy = 0; iy < q; iy ++ ) {
  309. var cx1 = cy1;
  310. var cx2 = cy2;
  311. var cxz = cyz;
  312. for ( var ix = 0; ix < q; ix ++ ) {
  313. var z = cxz;
  314. if ( z < zbuffer[ offset ] ) {
  315. zbuffer[ offset ] = z;
  316. var u = cx1 * scale;
  317. var v = cx2 * scale;
  318. shader( data, offset * 4, u, v );
  319. }
  320. cx1 += dy12;
  321. cx2 += dy23;
  322. cxz += dzdx;
  323. offset++;
  324. }
  325. cy1 += dx12;
  326. cy2 += dx23;
  327. cyz += dzdy;
  328. offset += linestep;
  329. }
  330. } else { // Partially covered block
  331. var cy1 = cb1;
  332. var cy2 = cb2;
  333. var cy3 = cb3;
  334. var cyz = cbz;
  335. for ( var iy = 0; iy < q; iy ++ ) {
  336. var cx1 = cy1;
  337. var cx2 = cy2;
  338. var cx3 = cy3;
  339. var cxz = cyz;
  340. for ( var ix = 0; ix < q; ix ++ ) {
  341. if ( ( cx1 | cx2 | cx3 ) >= 0 ) {
  342. var z = cxz;
  343. if ( z < zbuffer[ offset ] ) {
  344. var u = cx1 * scale;
  345. var v = cx2 * scale;
  346. zbuffer[ offset ] = z;
  347. shader( data, offset * 4, u, v );
  348. }
  349. }
  350. cx1 += dy12;
  351. cx2 += dy23;
  352. cx3 += dy31;
  353. cxz += dzdx;
  354. offset++;
  355. }
  356. cy1 += dx12;
  357. cy2 += dx23;
  358. cy3 += dx31;
  359. cyz += dzdy;
  360. offset += linestep;
  361. }
  362. }
  363. }
  364. // Advance to next row of blocks
  365. cb1 += q*dx12;
  366. cb2 += q*dx23;
  367. cb3 += q*dx31;
  368. cbz += q*dzdy;
  369. }
  370. }
  371. function clearBlock( blockX, blockY ) {
  372. var zoffset = blockX * blockSize + blockY * blockSize * canvasWidth;
  373. var poffset = zoffset * 4 + 3;
  374. var zlinestep = canvasWidth - blockSize;
  375. var plinestep = zlinestep * 4;
  376. for ( var y = 0; y < blockSize; y ++ ) {
  377. for ( var x = 0; x < blockSize; x ++ ) {
  378. zbuffer[ zoffset ] = maxZVal;
  379. data[ poffset ] = 0;
  380. zoffset ++;
  381. poffset += 4;
  382. }
  383. zoffset += zlinestep;
  384. poffset += plinestep;
  385. }
  386. }
  387. function finishClear( ) {
  388. var block = 0;
  389. for ( var y = 0; y < canvasHBlocks; y ++ ) {
  390. for ( var x = 0; x < canvasWBlocks; x ++ ) {
  391. if ( blockFlags[ block ] & BLOCK_NEEDCLEAR ) {
  392. clearBlock( x, y );
  393. blockFlags[ block ] = BLOCK_ISCLEAR;
  394. }
  395. block ++;
  396. }
  397. }
  398. }
  399. };