pattern_helper.js 13 KB

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  1. /* Copyright 2017 Mozilla Foundation
  2. *
  3. * Licensed under the Apache License, Version 2.0 (the "License");
  4. * you may not use this file except in compliance with the License.
  5. * You may obtain a copy of the License at
  6. *
  7. * http://www.apache.org/licenses/LICENSE-2.0
  8. *
  9. * Unless required by applicable law or agreed to in writing, software
  10. * distributed under the License is distributed on an "AS IS" BASIS,
  11. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. * See the License for the specific language governing permissions and
  13. * limitations under the License.
  14. */
  15. 'use strict';
  16. Object.defineProperty(exports, "__esModule", {
  17. value: true
  18. });
  19. exports.TilingPattern = exports.getShadingPatternFromIR = undefined;
  20. var _util = require('../shared/util');
  21. var _webgl = require('./webgl');
  22. var ShadingIRs = {};
  23. ShadingIRs.RadialAxial = {
  24. fromIR: function RadialAxial_fromIR(raw) {
  25. var type = raw[1];
  26. var colorStops = raw[2];
  27. var p0 = raw[3];
  28. var p1 = raw[4];
  29. var r0 = raw[5];
  30. var r1 = raw[6];
  31. return {
  32. type: 'Pattern',
  33. getPattern: function RadialAxial_getPattern(ctx) {
  34. var grad;
  35. if (type === 'axial') {
  36. grad = ctx.createLinearGradient(p0[0], p0[1], p1[0], p1[1]);
  37. } else if (type === 'radial') {
  38. grad = ctx.createRadialGradient(p0[0], p0[1], r0, p1[0], p1[1], r1);
  39. }
  40. for (var i = 0, ii = colorStops.length; i < ii; ++i) {
  41. var c = colorStops[i];
  42. grad.addColorStop(c[0], c[1]);
  43. }
  44. return grad;
  45. }
  46. };
  47. }
  48. };
  49. var createMeshCanvas = function createMeshCanvasClosure() {
  50. function drawTriangle(data, context, p1, p2, p3, c1, c2, c3) {
  51. var coords = context.coords,
  52. colors = context.colors;
  53. var bytes = data.data,
  54. rowSize = data.width * 4;
  55. var tmp;
  56. if (coords[p1 + 1] > coords[p2 + 1]) {
  57. tmp = p1;
  58. p1 = p2;
  59. p2 = tmp;
  60. tmp = c1;
  61. c1 = c2;
  62. c2 = tmp;
  63. }
  64. if (coords[p2 + 1] > coords[p3 + 1]) {
  65. tmp = p2;
  66. p2 = p3;
  67. p3 = tmp;
  68. tmp = c2;
  69. c2 = c3;
  70. c3 = tmp;
  71. }
  72. if (coords[p1 + 1] > coords[p2 + 1]) {
  73. tmp = p1;
  74. p1 = p2;
  75. p2 = tmp;
  76. tmp = c1;
  77. c1 = c2;
  78. c2 = tmp;
  79. }
  80. var x1 = (coords[p1] + context.offsetX) * context.scaleX;
  81. var y1 = (coords[p1 + 1] + context.offsetY) * context.scaleY;
  82. var x2 = (coords[p2] + context.offsetX) * context.scaleX;
  83. var y2 = (coords[p2 + 1] + context.offsetY) * context.scaleY;
  84. var x3 = (coords[p3] + context.offsetX) * context.scaleX;
  85. var y3 = (coords[p3 + 1] + context.offsetY) * context.scaleY;
  86. if (y1 >= y3) {
  87. return;
  88. }
  89. var c1r = colors[c1],
  90. c1g = colors[c1 + 1],
  91. c1b = colors[c1 + 2];
  92. var c2r = colors[c2],
  93. c2g = colors[c2 + 1],
  94. c2b = colors[c2 + 2];
  95. var c3r = colors[c3],
  96. c3g = colors[c3 + 1],
  97. c3b = colors[c3 + 2];
  98. var minY = Math.round(y1),
  99. maxY = Math.round(y3);
  100. var xa, car, cag, cab;
  101. var xb, cbr, cbg, cbb;
  102. var k;
  103. for (var y = minY; y <= maxY; y++) {
  104. if (y < y2) {
  105. k = y < y1 ? 0 : y1 === y2 ? 1 : (y1 - y) / (y1 - y2);
  106. xa = x1 - (x1 - x2) * k;
  107. car = c1r - (c1r - c2r) * k;
  108. cag = c1g - (c1g - c2g) * k;
  109. cab = c1b - (c1b - c2b) * k;
  110. } else {
  111. k = y > y3 ? 1 : y2 === y3 ? 0 : (y2 - y) / (y2 - y3);
  112. xa = x2 - (x2 - x3) * k;
  113. car = c2r - (c2r - c3r) * k;
  114. cag = c2g - (c2g - c3g) * k;
  115. cab = c2b - (c2b - c3b) * k;
  116. }
  117. k = y < y1 ? 0 : y > y3 ? 1 : (y1 - y) / (y1 - y3);
  118. xb = x1 - (x1 - x3) * k;
  119. cbr = c1r - (c1r - c3r) * k;
  120. cbg = c1g - (c1g - c3g) * k;
  121. cbb = c1b - (c1b - c3b) * k;
  122. var x1_ = Math.round(Math.min(xa, xb));
  123. var x2_ = Math.round(Math.max(xa, xb));
  124. var j = rowSize * y + x1_ * 4;
  125. for (var x = x1_; x <= x2_; x++) {
  126. k = (xa - x) / (xa - xb);
  127. k = k < 0 ? 0 : k > 1 ? 1 : k;
  128. bytes[j++] = car - (car - cbr) * k | 0;
  129. bytes[j++] = cag - (cag - cbg) * k | 0;
  130. bytes[j++] = cab - (cab - cbb) * k | 0;
  131. bytes[j++] = 255;
  132. }
  133. }
  134. }
  135. function drawFigure(data, figure, context) {
  136. var ps = figure.coords;
  137. var cs = figure.colors;
  138. var i, ii;
  139. switch (figure.type) {
  140. case 'lattice':
  141. var verticesPerRow = figure.verticesPerRow;
  142. var rows = Math.floor(ps.length / verticesPerRow) - 1;
  143. var cols = verticesPerRow - 1;
  144. for (i = 0; i < rows; i++) {
  145. var q = i * verticesPerRow;
  146. for (var j = 0; j < cols; j++, q++) {
  147. drawTriangle(data, context, ps[q], ps[q + 1], ps[q + verticesPerRow], cs[q], cs[q + 1], cs[q + verticesPerRow]);
  148. drawTriangle(data, context, ps[q + verticesPerRow + 1], ps[q + 1], ps[q + verticesPerRow], cs[q + verticesPerRow + 1], cs[q + 1], cs[q + verticesPerRow]);
  149. }
  150. }
  151. break;
  152. case 'triangles':
  153. for (i = 0, ii = ps.length; i < ii; i += 3) {
  154. drawTriangle(data, context, ps[i], ps[i + 1], ps[i + 2], cs[i], cs[i + 1], cs[i + 2]);
  155. }
  156. break;
  157. default:
  158. (0, _util.error)('illigal figure');
  159. break;
  160. }
  161. }
  162. function createMeshCanvas(bounds, combinesScale, coords, colors, figures, backgroundColor, cachedCanvases) {
  163. var EXPECTED_SCALE = 1.1;
  164. var MAX_PATTERN_SIZE = 3000;
  165. var BORDER_SIZE = 2;
  166. var offsetX = Math.floor(bounds[0]);
  167. var offsetY = Math.floor(bounds[1]);
  168. var boundsWidth = Math.ceil(bounds[2]) - offsetX;
  169. var boundsHeight = Math.ceil(bounds[3]) - offsetY;
  170. var width = Math.min(Math.ceil(Math.abs(boundsWidth * combinesScale[0] * EXPECTED_SCALE)), MAX_PATTERN_SIZE);
  171. var height = Math.min(Math.ceil(Math.abs(boundsHeight * combinesScale[1] * EXPECTED_SCALE)), MAX_PATTERN_SIZE);
  172. var scaleX = boundsWidth / width;
  173. var scaleY = boundsHeight / height;
  174. var context = {
  175. coords: coords,
  176. colors: colors,
  177. offsetX: -offsetX,
  178. offsetY: -offsetY,
  179. scaleX: 1 / scaleX,
  180. scaleY: 1 / scaleY
  181. };
  182. var paddedWidth = width + BORDER_SIZE * 2;
  183. var paddedHeight = height + BORDER_SIZE * 2;
  184. var canvas, tmpCanvas, i, ii;
  185. if (_webgl.WebGLUtils.isEnabled) {
  186. canvas = _webgl.WebGLUtils.drawFigures(width, height, backgroundColor, figures, context);
  187. tmpCanvas = cachedCanvases.getCanvas('mesh', paddedWidth, paddedHeight, false);
  188. tmpCanvas.context.drawImage(canvas, BORDER_SIZE, BORDER_SIZE);
  189. canvas = tmpCanvas.canvas;
  190. } else {
  191. tmpCanvas = cachedCanvases.getCanvas('mesh', paddedWidth, paddedHeight, false);
  192. var tmpCtx = tmpCanvas.context;
  193. var data = tmpCtx.createImageData(width, height);
  194. if (backgroundColor) {
  195. var bytes = data.data;
  196. for (i = 0, ii = bytes.length; i < ii; i += 4) {
  197. bytes[i] = backgroundColor[0];
  198. bytes[i + 1] = backgroundColor[1];
  199. bytes[i + 2] = backgroundColor[2];
  200. bytes[i + 3] = 255;
  201. }
  202. }
  203. for (i = 0; i < figures.length; i++) {
  204. drawFigure(data, figures[i], context);
  205. }
  206. tmpCtx.putImageData(data, BORDER_SIZE, BORDER_SIZE);
  207. canvas = tmpCanvas.canvas;
  208. }
  209. return {
  210. canvas: canvas,
  211. offsetX: offsetX - BORDER_SIZE * scaleX,
  212. offsetY: offsetY - BORDER_SIZE * scaleY,
  213. scaleX: scaleX,
  214. scaleY: scaleY
  215. };
  216. }
  217. return createMeshCanvas;
  218. }();
  219. ShadingIRs.Mesh = {
  220. fromIR: function Mesh_fromIR(raw) {
  221. var coords = raw[2];
  222. var colors = raw[3];
  223. var figures = raw[4];
  224. var bounds = raw[5];
  225. var matrix = raw[6];
  226. var background = raw[8];
  227. return {
  228. type: 'Pattern',
  229. getPattern: function Mesh_getPattern(ctx, owner, shadingFill) {
  230. var scale;
  231. if (shadingFill) {
  232. scale = _util.Util.singularValueDecompose2dScale(ctx.mozCurrentTransform);
  233. } else {
  234. scale = _util.Util.singularValueDecompose2dScale(owner.baseTransform);
  235. if (matrix) {
  236. var matrixScale = _util.Util.singularValueDecompose2dScale(matrix);
  237. scale = [scale[0] * matrixScale[0], scale[1] * matrixScale[1]];
  238. }
  239. }
  240. var temporaryPatternCanvas = createMeshCanvas(bounds, scale, coords, colors, figures, shadingFill ? null : background, owner.cachedCanvases);
  241. if (!shadingFill) {
  242. ctx.setTransform.apply(ctx, owner.baseTransform);
  243. if (matrix) {
  244. ctx.transform.apply(ctx, matrix);
  245. }
  246. }
  247. ctx.translate(temporaryPatternCanvas.offsetX, temporaryPatternCanvas.offsetY);
  248. ctx.scale(temporaryPatternCanvas.scaleX, temporaryPatternCanvas.scaleY);
  249. return ctx.createPattern(temporaryPatternCanvas.canvas, 'no-repeat');
  250. }
  251. };
  252. }
  253. };
  254. ShadingIRs.Dummy = {
  255. fromIR: function Dummy_fromIR() {
  256. return {
  257. type: 'Pattern',
  258. getPattern: function Dummy_fromIR_getPattern() {
  259. return 'hotpink';
  260. }
  261. };
  262. }
  263. };
  264. function getShadingPatternFromIR(raw) {
  265. var shadingIR = ShadingIRs[raw[0]];
  266. if (!shadingIR) {
  267. (0, _util.error)('Unknown IR type: ' + raw[0]);
  268. }
  269. return shadingIR.fromIR(raw);
  270. }
  271. var TilingPattern = function TilingPatternClosure() {
  272. var PaintType = {
  273. COLORED: 1,
  274. UNCOLORED: 2
  275. };
  276. var MAX_PATTERN_SIZE = 3000;
  277. function TilingPattern(IR, color, ctx, canvasGraphicsFactory, baseTransform) {
  278. this.operatorList = IR[2];
  279. this.matrix = IR[3] || [1, 0, 0, 1, 0, 0];
  280. this.bbox = IR[4];
  281. this.xstep = IR[5];
  282. this.ystep = IR[6];
  283. this.paintType = IR[7];
  284. this.tilingType = IR[8];
  285. this.color = color;
  286. this.canvasGraphicsFactory = canvasGraphicsFactory;
  287. this.baseTransform = baseTransform;
  288. this.type = 'Pattern';
  289. this.ctx = ctx;
  290. }
  291. TilingPattern.prototype = {
  292. createPatternCanvas: function TilinPattern_createPatternCanvas(owner) {
  293. var operatorList = this.operatorList;
  294. var bbox = this.bbox;
  295. var xstep = this.xstep;
  296. var ystep = this.ystep;
  297. var paintType = this.paintType;
  298. var tilingType = this.tilingType;
  299. var color = this.color;
  300. var canvasGraphicsFactory = this.canvasGraphicsFactory;
  301. (0, _util.info)('TilingType: ' + tilingType);
  302. var x0 = bbox[0],
  303. y0 = bbox[1],
  304. x1 = bbox[2],
  305. y1 = bbox[3];
  306. var topLeft = [x0, y0];
  307. var botRight = [x0 + xstep, y0 + ystep];
  308. var width = botRight[0] - topLeft[0];
  309. var height = botRight[1] - topLeft[1];
  310. var matrixScale = _util.Util.singularValueDecompose2dScale(this.matrix);
  311. var curMatrixScale = _util.Util.singularValueDecompose2dScale(this.baseTransform);
  312. var combinedScale = [matrixScale[0] * curMatrixScale[0], matrixScale[1] * curMatrixScale[1]];
  313. width = Math.min(Math.ceil(Math.abs(width * combinedScale[0])), MAX_PATTERN_SIZE);
  314. height = Math.min(Math.ceil(Math.abs(height * combinedScale[1])), MAX_PATTERN_SIZE);
  315. var tmpCanvas = owner.cachedCanvases.getCanvas('pattern', width, height, true);
  316. var tmpCtx = tmpCanvas.context;
  317. var graphics = canvasGraphicsFactory.createCanvasGraphics(tmpCtx);
  318. graphics.groupLevel = owner.groupLevel;
  319. this.setFillAndStrokeStyleToContext(tmpCtx, paintType, color);
  320. this.setScale(width, height, xstep, ystep);
  321. this.transformToScale(graphics);
  322. var tmpTranslate = [1, 0, 0, 1, -topLeft[0], -topLeft[1]];
  323. graphics.transform.apply(graphics, tmpTranslate);
  324. this.clipBbox(graphics, bbox, x0, y0, x1, y1);
  325. graphics.executeOperatorList(operatorList);
  326. return tmpCanvas.canvas;
  327. },
  328. setScale: function TilingPattern_setScale(width, height, xstep, ystep) {
  329. this.scale = [width / xstep, height / ystep];
  330. },
  331. transformToScale: function TilingPattern_transformToScale(graphics) {
  332. var scale = this.scale;
  333. var tmpScale = [scale[0], 0, 0, scale[1], 0, 0];
  334. graphics.transform.apply(graphics, tmpScale);
  335. },
  336. scaleToContext: function TilingPattern_scaleToContext() {
  337. var scale = this.scale;
  338. this.ctx.scale(1 / scale[0], 1 / scale[1]);
  339. },
  340. clipBbox: function clipBbox(graphics, bbox, x0, y0, x1, y1) {
  341. if ((0, _util.isArray)(bbox) && bbox.length === 4) {
  342. var bboxWidth = x1 - x0;
  343. var bboxHeight = y1 - y0;
  344. graphics.ctx.rect(x0, y0, bboxWidth, bboxHeight);
  345. graphics.clip();
  346. graphics.endPath();
  347. }
  348. },
  349. setFillAndStrokeStyleToContext: function setFillAndStrokeStyleToContext(context, paintType, color) {
  350. switch (paintType) {
  351. case PaintType.COLORED:
  352. var ctx = this.ctx;
  353. context.fillStyle = ctx.fillStyle;
  354. context.strokeStyle = ctx.strokeStyle;
  355. break;
  356. case PaintType.UNCOLORED:
  357. var cssColor = _util.Util.makeCssRgb(color[0], color[1], color[2]);
  358. context.fillStyle = cssColor;
  359. context.strokeStyle = cssColor;
  360. break;
  361. default:
  362. (0, _util.error)('Unsupported paint type: ' + paintType);
  363. }
  364. },
  365. getPattern: function TilingPattern_getPattern(ctx, owner) {
  366. var temporaryPatternCanvas = this.createPatternCanvas(owner);
  367. ctx = this.ctx;
  368. ctx.setTransform.apply(ctx, this.baseTransform);
  369. ctx.transform.apply(ctx, this.matrix);
  370. this.scaleToContext();
  371. return ctx.createPattern(temporaryPatternCanvas, 'repeat');
  372. }
  373. };
  374. return TilingPattern;
  375. }();
  376. exports.getShadingPatternFromIR = getShadingPatternFromIR;
  377. exports.TilingPattern = TilingPattern;