jpg.js 37 KB

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  1. /**
  2. * @licstart The following is the entire license notice for the
  3. * Javascript code in this page
  4. *
  5. * Copyright 2018 Mozilla Foundation
  6. *
  7. * Licensed under the Apache License, Version 2.0 (the "License");
  8. * you may not use this file except in compliance with the License.
  9. * You may obtain a copy of the License at
  10. *
  11. * http://www.apache.org/licenses/LICENSE-2.0
  12. *
  13. * Unless required by applicable law or agreed to in writing, software
  14. * distributed under the License is distributed on an "AS IS" BASIS,
  15. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  16. * See the License for the specific language governing permissions and
  17. * limitations under the License.
  18. *
  19. * @licend The above is the entire license notice for the
  20. * Javascript code in this page
  21. */
  22. "use strict";
  23. Object.defineProperty(exports, "__esModule", {
  24. value: true
  25. });
  26. exports.JpegImage = void 0;
  27. var _util = require("../shared/util");
  28. function _typeof(obj) { if (typeof Symbol === "function" && typeof Symbol.iterator === "symbol") { _typeof = function _typeof(obj) { return typeof obj; }; } else { _typeof = function _typeof(obj) { return obj && typeof Symbol === "function" && obj.constructor === Symbol && obj !== Symbol.prototype ? "symbol" : typeof obj; }; } return _typeof(obj); }
  29. var JpegError = function JpegErrorClosure() {
  30. function JpegError(msg) {
  31. this.message = 'JPEG error: ' + msg;
  32. }
  33. JpegError.prototype = new Error();
  34. JpegError.prototype.name = 'JpegError';
  35. JpegError.constructor = JpegError;
  36. return JpegError;
  37. }();
  38. var DNLMarkerError = function DNLMarkerErrorClosure() {
  39. function DNLMarkerError(message, scanLines) {
  40. this.message = message;
  41. this.scanLines = scanLines;
  42. }
  43. DNLMarkerError.prototype = new Error();
  44. DNLMarkerError.prototype.name = 'DNLMarkerError';
  45. DNLMarkerError.constructor = DNLMarkerError;
  46. return DNLMarkerError;
  47. }();
  48. var EOIMarkerError = function EOIMarkerErrorClosure() {
  49. function EOIMarkerError(message) {
  50. this.message = message;
  51. }
  52. EOIMarkerError.prototype = new Error();
  53. EOIMarkerError.prototype.name = 'EOIMarkerError';
  54. EOIMarkerError.constructor = EOIMarkerError;
  55. return EOIMarkerError;
  56. }();
  57. var JpegImage = function JpegImageClosure() {
  58. var dctZigZag = new Uint8Array([0, 1, 8, 16, 9, 2, 3, 10, 17, 24, 32, 25, 18, 11, 4, 5, 12, 19, 26, 33, 40, 48, 41, 34, 27, 20, 13, 6, 7, 14, 21, 28, 35, 42, 49, 56, 57, 50, 43, 36, 29, 22, 15, 23, 30, 37, 44, 51, 58, 59, 52, 45, 38, 31, 39, 46, 53, 60, 61, 54, 47, 55, 62, 63]);
  59. var dctCos1 = 4017;
  60. var dctSin1 = 799;
  61. var dctCos3 = 3406;
  62. var dctSin3 = 2276;
  63. var dctCos6 = 1567;
  64. var dctSin6 = 3784;
  65. var dctSqrt2 = 5793;
  66. var dctSqrt1d2 = 2896;
  67. function JpegImage() {
  68. var _ref = arguments.length > 0 && arguments[0] !== undefined ? arguments[0] : {},
  69. _ref$decodeTransform = _ref.decodeTransform,
  70. decodeTransform = _ref$decodeTransform === void 0 ? null : _ref$decodeTransform,
  71. _ref$colorTransform = _ref.colorTransform,
  72. colorTransform = _ref$colorTransform === void 0 ? -1 : _ref$colorTransform;
  73. this._decodeTransform = decodeTransform;
  74. this._colorTransform = colorTransform;
  75. }
  76. function buildHuffmanTable(codeLengths, values) {
  77. var k = 0,
  78. code = [],
  79. i,
  80. j,
  81. length = 16;
  82. while (length > 0 && !codeLengths[length - 1]) {
  83. length--;
  84. }
  85. code.push({
  86. children: [],
  87. index: 0
  88. });
  89. var p = code[0],
  90. q;
  91. for (i = 0; i < length; i++) {
  92. for (j = 0; j < codeLengths[i]; j++) {
  93. p = code.pop();
  94. p.children[p.index] = values[k];
  95. while (p.index > 0) {
  96. p = code.pop();
  97. }
  98. p.index++;
  99. code.push(p);
  100. while (code.length <= i) {
  101. code.push(q = {
  102. children: [],
  103. index: 0
  104. });
  105. p.children[p.index] = q.children;
  106. p = q;
  107. }
  108. k++;
  109. }
  110. if (i + 1 < length) {
  111. code.push(q = {
  112. children: [],
  113. index: 0
  114. });
  115. p.children[p.index] = q.children;
  116. p = q;
  117. }
  118. }
  119. return code[0].children;
  120. }
  121. function getBlockBufferOffset(component, row, col) {
  122. return 64 * ((component.blocksPerLine + 1) * row + col);
  123. }
  124. function decodeScan(data, offset, frame, components, resetInterval, spectralStart, spectralEnd, successivePrev, successive) {
  125. var parseDNLMarker = arguments.length > 9 && arguments[9] !== undefined ? arguments[9] : false;
  126. var mcusPerLine = frame.mcusPerLine;
  127. var progressive = frame.progressive;
  128. var startOffset = offset,
  129. bitsData = 0,
  130. bitsCount = 0;
  131. function readBit() {
  132. if (bitsCount > 0) {
  133. bitsCount--;
  134. return bitsData >> bitsCount & 1;
  135. }
  136. bitsData = data[offset++];
  137. if (bitsData === 0xFF) {
  138. var nextByte = data[offset++];
  139. if (nextByte) {
  140. if (nextByte === 0xDC && parseDNLMarker) {
  141. offset += 2;
  142. var scanLines = data[offset++] << 8 | data[offset++];
  143. if (scanLines > 0 && scanLines !== frame.scanLines) {
  144. throw new DNLMarkerError('Found DNL marker (0xFFDC) while parsing scan data', scanLines);
  145. }
  146. } else if (nextByte === 0xD9) {
  147. throw new EOIMarkerError('Found EOI marker (0xFFD9) while parsing scan data');
  148. }
  149. throw new JpegError("unexpected marker ".concat((bitsData << 8 | nextByte).toString(16)));
  150. }
  151. }
  152. bitsCount = 7;
  153. return bitsData >>> 7;
  154. }
  155. function decodeHuffman(tree) {
  156. var node = tree;
  157. while (true) {
  158. node = node[readBit()];
  159. if (typeof node === 'number') {
  160. return node;
  161. }
  162. if (_typeof(node) !== 'object') {
  163. throw new JpegError('invalid huffman sequence');
  164. }
  165. }
  166. }
  167. function receive(length) {
  168. var n = 0;
  169. while (length > 0) {
  170. n = n << 1 | readBit();
  171. length--;
  172. }
  173. return n;
  174. }
  175. function receiveAndExtend(length) {
  176. if (length === 1) {
  177. return readBit() === 1 ? 1 : -1;
  178. }
  179. var n = receive(length);
  180. if (n >= 1 << length - 1) {
  181. return n;
  182. }
  183. return n + (-1 << length) + 1;
  184. }
  185. function decodeBaseline(component, offset) {
  186. var t = decodeHuffman(component.huffmanTableDC);
  187. var diff = t === 0 ? 0 : receiveAndExtend(t);
  188. component.blockData[offset] = component.pred += diff;
  189. var k = 1;
  190. while (k < 64) {
  191. var rs = decodeHuffman(component.huffmanTableAC);
  192. var s = rs & 15,
  193. r = rs >> 4;
  194. if (s === 0) {
  195. if (r < 15) {
  196. break;
  197. }
  198. k += 16;
  199. continue;
  200. }
  201. k += r;
  202. var z = dctZigZag[k];
  203. component.blockData[offset + z] = receiveAndExtend(s);
  204. k++;
  205. }
  206. }
  207. function decodeDCFirst(component, offset) {
  208. var t = decodeHuffman(component.huffmanTableDC);
  209. var diff = t === 0 ? 0 : receiveAndExtend(t) << successive;
  210. component.blockData[offset] = component.pred += diff;
  211. }
  212. function decodeDCSuccessive(component, offset) {
  213. component.blockData[offset] |= readBit() << successive;
  214. }
  215. var eobrun = 0;
  216. function decodeACFirst(component, offset) {
  217. if (eobrun > 0) {
  218. eobrun--;
  219. return;
  220. }
  221. var k = spectralStart,
  222. e = spectralEnd;
  223. while (k <= e) {
  224. var rs = decodeHuffman(component.huffmanTableAC);
  225. var s = rs & 15,
  226. r = rs >> 4;
  227. if (s === 0) {
  228. if (r < 15) {
  229. eobrun = receive(r) + (1 << r) - 1;
  230. break;
  231. }
  232. k += 16;
  233. continue;
  234. }
  235. k += r;
  236. var z = dctZigZag[k];
  237. component.blockData[offset + z] = receiveAndExtend(s) * (1 << successive);
  238. k++;
  239. }
  240. }
  241. var successiveACState = 0,
  242. successiveACNextValue;
  243. function decodeACSuccessive(component, offset) {
  244. var k = spectralStart;
  245. var e = spectralEnd;
  246. var r = 0;
  247. var s;
  248. var rs;
  249. while (k <= e) {
  250. var offsetZ = offset + dctZigZag[k];
  251. var sign = component.blockData[offsetZ] < 0 ? -1 : 1;
  252. switch (successiveACState) {
  253. case 0:
  254. rs = decodeHuffman(component.huffmanTableAC);
  255. s = rs & 15;
  256. r = rs >> 4;
  257. if (s === 0) {
  258. if (r < 15) {
  259. eobrun = receive(r) + (1 << r);
  260. successiveACState = 4;
  261. } else {
  262. r = 16;
  263. successiveACState = 1;
  264. }
  265. } else {
  266. if (s !== 1) {
  267. throw new JpegError('invalid ACn encoding');
  268. }
  269. successiveACNextValue = receiveAndExtend(s);
  270. successiveACState = r ? 2 : 3;
  271. }
  272. continue;
  273. case 1:
  274. case 2:
  275. if (component.blockData[offsetZ]) {
  276. component.blockData[offsetZ] += sign * (readBit() << successive);
  277. } else {
  278. r--;
  279. if (r === 0) {
  280. successiveACState = successiveACState === 2 ? 3 : 0;
  281. }
  282. }
  283. break;
  284. case 3:
  285. if (component.blockData[offsetZ]) {
  286. component.blockData[offsetZ] += sign * (readBit() << successive);
  287. } else {
  288. component.blockData[offsetZ] = successiveACNextValue << successive;
  289. successiveACState = 0;
  290. }
  291. break;
  292. case 4:
  293. if (component.blockData[offsetZ]) {
  294. component.blockData[offsetZ] += sign * (readBit() << successive);
  295. }
  296. break;
  297. }
  298. k++;
  299. }
  300. if (successiveACState === 4) {
  301. eobrun--;
  302. if (eobrun === 0) {
  303. successiveACState = 0;
  304. }
  305. }
  306. }
  307. function decodeMcu(component, decode, mcu, row, col) {
  308. var mcuRow = mcu / mcusPerLine | 0;
  309. var mcuCol = mcu % mcusPerLine;
  310. var blockRow = mcuRow * component.v + row;
  311. var blockCol = mcuCol * component.h + col;
  312. var offset = getBlockBufferOffset(component, blockRow, blockCol);
  313. decode(component, offset);
  314. }
  315. function decodeBlock(component, decode, mcu) {
  316. var blockRow = mcu / component.blocksPerLine | 0;
  317. var blockCol = mcu % component.blocksPerLine;
  318. var offset = getBlockBufferOffset(component, blockRow, blockCol);
  319. decode(component, offset);
  320. }
  321. var componentsLength = components.length;
  322. var component, i, j, k, n;
  323. var decodeFn;
  324. if (progressive) {
  325. if (spectralStart === 0) {
  326. decodeFn = successivePrev === 0 ? decodeDCFirst : decodeDCSuccessive;
  327. } else {
  328. decodeFn = successivePrev === 0 ? decodeACFirst : decodeACSuccessive;
  329. }
  330. } else {
  331. decodeFn = decodeBaseline;
  332. }
  333. var mcu = 0,
  334. fileMarker;
  335. var mcuExpected;
  336. if (componentsLength === 1) {
  337. mcuExpected = components[0].blocksPerLine * components[0].blocksPerColumn;
  338. } else {
  339. mcuExpected = mcusPerLine * frame.mcusPerColumn;
  340. }
  341. var h, v;
  342. while (mcu < mcuExpected) {
  343. var mcuToRead = resetInterval ? Math.min(mcuExpected - mcu, resetInterval) : mcuExpected;
  344. for (i = 0; i < componentsLength; i++) {
  345. components[i].pred = 0;
  346. }
  347. eobrun = 0;
  348. if (componentsLength === 1) {
  349. component = components[0];
  350. for (n = 0; n < mcuToRead; n++) {
  351. decodeBlock(component, decodeFn, mcu);
  352. mcu++;
  353. }
  354. } else {
  355. for (n = 0; n < mcuToRead; n++) {
  356. for (i = 0; i < componentsLength; i++) {
  357. component = components[i];
  358. h = component.h;
  359. v = component.v;
  360. for (j = 0; j < v; j++) {
  361. for (k = 0; k < h; k++) {
  362. decodeMcu(component, decodeFn, mcu, j, k);
  363. }
  364. }
  365. }
  366. mcu++;
  367. }
  368. }
  369. bitsCount = 0;
  370. fileMarker = findNextFileMarker(data, offset);
  371. if (fileMarker && fileMarker.invalid) {
  372. (0, _util.warn)('decodeScan - unexpected MCU data, current marker is: ' + fileMarker.invalid);
  373. offset = fileMarker.offset;
  374. }
  375. var marker = fileMarker && fileMarker.marker;
  376. if (!marker || marker <= 0xFF00) {
  377. throw new JpegError('marker was not found');
  378. }
  379. if (marker >= 0xFFD0 && marker <= 0xFFD7) {
  380. offset += 2;
  381. } else {
  382. break;
  383. }
  384. }
  385. fileMarker = findNextFileMarker(data, offset);
  386. if (fileMarker && fileMarker.invalid) {
  387. (0, _util.warn)('decodeScan - unexpected Scan data, current marker is: ' + fileMarker.invalid);
  388. offset = fileMarker.offset;
  389. }
  390. return offset - startOffset;
  391. }
  392. function quantizeAndInverse(component, blockBufferOffset, p) {
  393. var qt = component.quantizationTable,
  394. blockData = component.blockData;
  395. var v0, v1, v2, v3, v4, v5, v6, v7;
  396. var p0, p1, p2, p3, p4, p5, p6, p7;
  397. var t;
  398. if (!qt) {
  399. throw new JpegError('missing required Quantization Table.');
  400. }
  401. for (var row = 0; row < 64; row += 8) {
  402. p0 = blockData[blockBufferOffset + row];
  403. p1 = blockData[blockBufferOffset + row + 1];
  404. p2 = blockData[blockBufferOffset + row + 2];
  405. p3 = blockData[blockBufferOffset + row + 3];
  406. p4 = blockData[blockBufferOffset + row + 4];
  407. p5 = blockData[blockBufferOffset + row + 5];
  408. p6 = blockData[blockBufferOffset + row + 6];
  409. p7 = blockData[blockBufferOffset + row + 7];
  410. p0 *= qt[row];
  411. if ((p1 | p2 | p3 | p4 | p5 | p6 | p7) === 0) {
  412. t = dctSqrt2 * p0 + 512 >> 10;
  413. p[row] = t;
  414. p[row + 1] = t;
  415. p[row + 2] = t;
  416. p[row + 3] = t;
  417. p[row + 4] = t;
  418. p[row + 5] = t;
  419. p[row + 6] = t;
  420. p[row + 7] = t;
  421. continue;
  422. }
  423. p1 *= qt[row + 1];
  424. p2 *= qt[row + 2];
  425. p3 *= qt[row + 3];
  426. p4 *= qt[row + 4];
  427. p5 *= qt[row + 5];
  428. p6 *= qt[row + 6];
  429. p7 *= qt[row + 7];
  430. v0 = dctSqrt2 * p0 + 128 >> 8;
  431. v1 = dctSqrt2 * p4 + 128 >> 8;
  432. v2 = p2;
  433. v3 = p6;
  434. v4 = dctSqrt1d2 * (p1 - p7) + 128 >> 8;
  435. v7 = dctSqrt1d2 * (p1 + p7) + 128 >> 8;
  436. v5 = p3 << 4;
  437. v6 = p5 << 4;
  438. v0 = v0 + v1 + 1 >> 1;
  439. v1 = v0 - v1;
  440. t = v2 * dctSin6 + v3 * dctCos6 + 128 >> 8;
  441. v2 = v2 * dctCos6 - v3 * dctSin6 + 128 >> 8;
  442. v3 = t;
  443. v4 = v4 + v6 + 1 >> 1;
  444. v6 = v4 - v6;
  445. v7 = v7 + v5 + 1 >> 1;
  446. v5 = v7 - v5;
  447. v0 = v0 + v3 + 1 >> 1;
  448. v3 = v0 - v3;
  449. v1 = v1 + v2 + 1 >> 1;
  450. v2 = v1 - v2;
  451. t = v4 * dctSin3 + v7 * dctCos3 + 2048 >> 12;
  452. v4 = v4 * dctCos3 - v7 * dctSin3 + 2048 >> 12;
  453. v7 = t;
  454. t = v5 * dctSin1 + v6 * dctCos1 + 2048 >> 12;
  455. v5 = v5 * dctCos1 - v6 * dctSin1 + 2048 >> 12;
  456. v6 = t;
  457. p[row] = v0 + v7;
  458. p[row + 7] = v0 - v7;
  459. p[row + 1] = v1 + v6;
  460. p[row + 6] = v1 - v6;
  461. p[row + 2] = v2 + v5;
  462. p[row + 5] = v2 - v5;
  463. p[row + 3] = v3 + v4;
  464. p[row + 4] = v3 - v4;
  465. }
  466. for (var col = 0; col < 8; ++col) {
  467. p0 = p[col];
  468. p1 = p[col + 8];
  469. p2 = p[col + 16];
  470. p3 = p[col + 24];
  471. p4 = p[col + 32];
  472. p5 = p[col + 40];
  473. p6 = p[col + 48];
  474. p7 = p[col + 56];
  475. if ((p1 | p2 | p3 | p4 | p5 | p6 | p7) === 0) {
  476. t = dctSqrt2 * p0 + 8192 >> 14;
  477. t = t < -2040 ? 0 : t >= 2024 ? 255 : t + 2056 >> 4;
  478. blockData[blockBufferOffset + col] = t;
  479. blockData[blockBufferOffset + col + 8] = t;
  480. blockData[blockBufferOffset + col + 16] = t;
  481. blockData[blockBufferOffset + col + 24] = t;
  482. blockData[blockBufferOffset + col + 32] = t;
  483. blockData[blockBufferOffset + col + 40] = t;
  484. blockData[blockBufferOffset + col + 48] = t;
  485. blockData[blockBufferOffset + col + 56] = t;
  486. continue;
  487. }
  488. v0 = dctSqrt2 * p0 + 2048 >> 12;
  489. v1 = dctSqrt2 * p4 + 2048 >> 12;
  490. v2 = p2;
  491. v3 = p6;
  492. v4 = dctSqrt1d2 * (p1 - p7) + 2048 >> 12;
  493. v7 = dctSqrt1d2 * (p1 + p7) + 2048 >> 12;
  494. v5 = p3;
  495. v6 = p5;
  496. v0 = (v0 + v1 + 1 >> 1) + 4112;
  497. v1 = v0 - v1;
  498. t = v2 * dctSin6 + v3 * dctCos6 + 2048 >> 12;
  499. v2 = v2 * dctCos6 - v3 * dctSin6 + 2048 >> 12;
  500. v3 = t;
  501. v4 = v4 + v6 + 1 >> 1;
  502. v6 = v4 - v6;
  503. v7 = v7 + v5 + 1 >> 1;
  504. v5 = v7 - v5;
  505. v0 = v0 + v3 + 1 >> 1;
  506. v3 = v0 - v3;
  507. v1 = v1 + v2 + 1 >> 1;
  508. v2 = v1 - v2;
  509. t = v4 * dctSin3 + v7 * dctCos3 + 2048 >> 12;
  510. v4 = v4 * dctCos3 - v7 * dctSin3 + 2048 >> 12;
  511. v7 = t;
  512. t = v5 * dctSin1 + v6 * dctCos1 + 2048 >> 12;
  513. v5 = v5 * dctCos1 - v6 * dctSin1 + 2048 >> 12;
  514. v6 = t;
  515. p0 = v0 + v7;
  516. p7 = v0 - v7;
  517. p1 = v1 + v6;
  518. p6 = v1 - v6;
  519. p2 = v2 + v5;
  520. p5 = v2 - v5;
  521. p3 = v3 + v4;
  522. p4 = v3 - v4;
  523. p0 = p0 < 16 ? 0 : p0 >= 4080 ? 255 : p0 >> 4;
  524. p1 = p1 < 16 ? 0 : p1 >= 4080 ? 255 : p1 >> 4;
  525. p2 = p2 < 16 ? 0 : p2 >= 4080 ? 255 : p2 >> 4;
  526. p3 = p3 < 16 ? 0 : p3 >= 4080 ? 255 : p3 >> 4;
  527. p4 = p4 < 16 ? 0 : p4 >= 4080 ? 255 : p4 >> 4;
  528. p5 = p5 < 16 ? 0 : p5 >= 4080 ? 255 : p5 >> 4;
  529. p6 = p6 < 16 ? 0 : p6 >= 4080 ? 255 : p6 >> 4;
  530. p7 = p7 < 16 ? 0 : p7 >= 4080 ? 255 : p7 >> 4;
  531. blockData[blockBufferOffset + col] = p0;
  532. blockData[blockBufferOffset + col + 8] = p1;
  533. blockData[blockBufferOffset + col + 16] = p2;
  534. blockData[blockBufferOffset + col + 24] = p3;
  535. blockData[blockBufferOffset + col + 32] = p4;
  536. blockData[blockBufferOffset + col + 40] = p5;
  537. blockData[blockBufferOffset + col + 48] = p6;
  538. blockData[blockBufferOffset + col + 56] = p7;
  539. }
  540. }
  541. function buildComponentData(frame, component) {
  542. var blocksPerLine = component.blocksPerLine;
  543. var blocksPerColumn = component.blocksPerColumn;
  544. var computationBuffer = new Int16Array(64);
  545. for (var blockRow = 0; blockRow < blocksPerColumn; blockRow++) {
  546. for (var blockCol = 0; blockCol < blocksPerLine; blockCol++) {
  547. var offset = getBlockBufferOffset(component, blockRow, blockCol);
  548. quantizeAndInverse(component, offset, computationBuffer);
  549. }
  550. }
  551. return component.blockData;
  552. }
  553. function findNextFileMarker(data, currentPos) {
  554. var startPos = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : currentPos;
  555. function peekUint16(pos) {
  556. return data[pos] << 8 | data[pos + 1];
  557. }
  558. var maxPos = data.length - 1;
  559. var newPos = startPos < currentPos ? startPos : currentPos;
  560. if (currentPos >= maxPos) {
  561. return null;
  562. }
  563. var currentMarker = peekUint16(currentPos);
  564. if (currentMarker >= 0xFFC0 && currentMarker <= 0xFFFE) {
  565. return {
  566. invalid: null,
  567. marker: currentMarker,
  568. offset: currentPos
  569. };
  570. }
  571. var newMarker = peekUint16(newPos);
  572. while (!(newMarker >= 0xFFC0 && newMarker <= 0xFFFE)) {
  573. if (++newPos >= maxPos) {
  574. return null;
  575. }
  576. newMarker = peekUint16(newPos);
  577. }
  578. return {
  579. invalid: currentMarker.toString(16),
  580. marker: newMarker,
  581. offset: newPos
  582. };
  583. }
  584. JpegImage.prototype = {
  585. parse: function parse(data) {
  586. var _ref2 = arguments.length > 1 && arguments[1] !== undefined ? arguments[1] : {},
  587. _ref2$dnlScanLines = _ref2.dnlScanLines,
  588. dnlScanLines = _ref2$dnlScanLines === void 0 ? null : _ref2$dnlScanLines;
  589. function readUint16() {
  590. var value = data[offset] << 8 | data[offset + 1];
  591. offset += 2;
  592. return value;
  593. }
  594. function readDataBlock() {
  595. var length = readUint16();
  596. var endOffset = offset + length - 2;
  597. var fileMarker = findNextFileMarker(data, endOffset, offset);
  598. if (fileMarker && fileMarker.invalid) {
  599. (0, _util.warn)('readDataBlock - incorrect length, current marker is: ' + fileMarker.invalid);
  600. endOffset = fileMarker.offset;
  601. }
  602. var array = data.subarray(offset, endOffset);
  603. offset += array.length;
  604. return array;
  605. }
  606. function prepareComponents(frame) {
  607. var mcusPerLine = Math.ceil(frame.samplesPerLine / 8 / frame.maxH);
  608. var mcusPerColumn = Math.ceil(frame.scanLines / 8 / frame.maxV);
  609. for (var i = 0; i < frame.components.length; i++) {
  610. component = frame.components[i];
  611. var blocksPerLine = Math.ceil(Math.ceil(frame.samplesPerLine / 8) * component.h / frame.maxH);
  612. var blocksPerColumn = Math.ceil(Math.ceil(frame.scanLines / 8) * component.v / frame.maxV);
  613. var blocksPerLineForMcu = mcusPerLine * component.h;
  614. var blocksPerColumnForMcu = mcusPerColumn * component.v;
  615. var blocksBufferSize = 64 * blocksPerColumnForMcu * (blocksPerLineForMcu + 1);
  616. component.blockData = new Int16Array(blocksBufferSize);
  617. component.blocksPerLine = blocksPerLine;
  618. component.blocksPerColumn = blocksPerColumn;
  619. }
  620. frame.mcusPerLine = mcusPerLine;
  621. frame.mcusPerColumn = mcusPerColumn;
  622. }
  623. var offset = 0;
  624. var jfif = null;
  625. var adobe = null;
  626. var frame, resetInterval;
  627. var numSOSMarkers = 0;
  628. var quantizationTables = [];
  629. var huffmanTablesAC = [],
  630. huffmanTablesDC = [];
  631. var fileMarker = readUint16();
  632. if (fileMarker !== 0xFFD8) {
  633. throw new JpegError('SOI not found');
  634. }
  635. fileMarker = readUint16();
  636. markerLoop: while (fileMarker !== 0xFFD9) {
  637. var i, j, l;
  638. switch (fileMarker) {
  639. case 0xFFE0:
  640. case 0xFFE1:
  641. case 0xFFE2:
  642. case 0xFFE3:
  643. case 0xFFE4:
  644. case 0xFFE5:
  645. case 0xFFE6:
  646. case 0xFFE7:
  647. case 0xFFE8:
  648. case 0xFFE9:
  649. case 0xFFEA:
  650. case 0xFFEB:
  651. case 0xFFEC:
  652. case 0xFFED:
  653. case 0xFFEE:
  654. case 0xFFEF:
  655. case 0xFFFE:
  656. var appData = readDataBlock();
  657. if (fileMarker === 0xFFE0) {
  658. if (appData[0] === 0x4A && appData[1] === 0x46 && appData[2] === 0x49 && appData[3] === 0x46 && appData[4] === 0) {
  659. jfif = {
  660. version: {
  661. major: appData[5],
  662. minor: appData[6]
  663. },
  664. densityUnits: appData[7],
  665. xDensity: appData[8] << 8 | appData[9],
  666. yDensity: appData[10] << 8 | appData[11],
  667. thumbWidth: appData[12],
  668. thumbHeight: appData[13],
  669. thumbData: appData.subarray(14, 14 + 3 * appData[12] * appData[13])
  670. };
  671. }
  672. }
  673. if (fileMarker === 0xFFEE) {
  674. if (appData[0] === 0x41 && appData[1] === 0x64 && appData[2] === 0x6F && appData[3] === 0x62 && appData[4] === 0x65) {
  675. adobe = {
  676. version: appData[5] << 8 | appData[6],
  677. flags0: appData[7] << 8 | appData[8],
  678. flags1: appData[9] << 8 | appData[10],
  679. transformCode: appData[11]
  680. };
  681. }
  682. }
  683. break;
  684. case 0xFFDB:
  685. var quantizationTablesLength = readUint16();
  686. var quantizationTablesEnd = quantizationTablesLength + offset - 2;
  687. var z;
  688. while (offset < quantizationTablesEnd) {
  689. var quantizationTableSpec = data[offset++];
  690. var tableData = new Uint16Array(64);
  691. if (quantizationTableSpec >> 4 === 0) {
  692. for (j = 0; j < 64; j++) {
  693. z = dctZigZag[j];
  694. tableData[z] = data[offset++];
  695. }
  696. } else if (quantizationTableSpec >> 4 === 1) {
  697. for (j = 0; j < 64; j++) {
  698. z = dctZigZag[j];
  699. tableData[z] = readUint16();
  700. }
  701. } else {
  702. throw new JpegError('DQT - invalid table spec');
  703. }
  704. quantizationTables[quantizationTableSpec & 15] = tableData;
  705. }
  706. break;
  707. case 0xFFC0:
  708. case 0xFFC1:
  709. case 0xFFC2:
  710. if (frame) {
  711. throw new JpegError('Only single frame JPEGs supported');
  712. }
  713. readUint16();
  714. frame = {};
  715. frame.extended = fileMarker === 0xFFC1;
  716. frame.progressive = fileMarker === 0xFFC2;
  717. frame.precision = data[offset++];
  718. var sofScanLines = readUint16();
  719. frame.scanLines = dnlScanLines || sofScanLines;
  720. frame.samplesPerLine = readUint16();
  721. frame.components = [];
  722. frame.componentIds = {};
  723. var componentsCount = data[offset++],
  724. componentId;
  725. var maxH = 0,
  726. maxV = 0;
  727. for (i = 0; i < componentsCount; i++) {
  728. componentId = data[offset];
  729. var h = data[offset + 1] >> 4;
  730. var v = data[offset + 1] & 15;
  731. if (maxH < h) {
  732. maxH = h;
  733. }
  734. if (maxV < v) {
  735. maxV = v;
  736. }
  737. var qId = data[offset + 2];
  738. l = frame.components.push({
  739. h: h,
  740. v: v,
  741. quantizationId: qId,
  742. quantizationTable: null
  743. });
  744. frame.componentIds[componentId] = l - 1;
  745. offset += 3;
  746. }
  747. frame.maxH = maxH;
  748. frame.maxV = maxV;
  749. prepareComponents(frame);
  750. break;
  751. case 0xFFC4:
  752. var huffmanLength = readUint16();
  753. for (i = 2; i < huffmanLength;) {
  754. var huffmanTableSpec = data[offset++];
  755. var codeLengths = new Uint8Array(16);
  756. var codeLengthSum = 0;
  757. for (j = 0; j < 16; j++, offset++) {
  758. codeLengthSum += codeLengths[j] = data[offset];
  759. }
  760. var huffmanValues = new Uint8Array(codeLengthSum);
  761. for (j = 0; j < codeLengthSum; j++, offset++) {
  762. huffmanValues[j] = data[offset];
  763. }
  764. i += 17 + codeLengthSum;
  765. (huffmanTableSpec >> 4 === 0 ? huffmanTablesDC : huffmanTablesAC)[huffmanTableSpec & 15] = buildHuffmanTable(codeLengths, huffmanValues);
  766. }
  767. break;
  768. case 0xFFDD:
  769. readUint16();
  770. resetInterval = readUint16();
  771. break;
  772. case 0xFFDA:
  773. var parseDNLMarker = ++numSOSMarkers === 1 && !dnlScanLines;
  774. readUint16();
  775. var selectorsCount = data[offset++];
  776. var components = [],
  777. component;
  778. for (i = 0; i < selectorsCount; i++) {
  779. var componentIndex = frame.componentIds[data[offset++]];
  780. component = frame.components[componentIndex];
  781. var tableSpec = data[offset++];
  782. component.huffmanTableDC = huffmanTablesDC[tableSpec >> 4];
  783. component.huffmanTableAC = huffmanTablesAC[tableSpec & 15];
  784. components.push(component);
  785. }
  786. var spectralStart = data[offset++];
  787. var spectralEnd = data[offset++];
  788. var successiveApproximation = data[offset++];
  789. try {
  790. var processed = decodeScan(data, offset, frame, components, resetInterval, spectralStart, spectralEnd, successiveApproximation >> 4, successiveApproximation & 15, parseDNLMarker);
  791. offset += processed;
  792. } catch (ex) {
  793. if (ex instanceof DNLMarkerError) {
  794. (0, _util.warn)("".concat(ex.message, " -- attempting to re-parse the JPEG image."));
  795. return this.parse(data, {
  796. dnlScanLines: ex.scanLines
  797. });
  798. } else if (ex instanceof EOIMarkerError) {
  799. (0, _util.warn)("".concat(ex.message, " -- ignoring the rest of the image data."));
  800. break markerLoop;
  801. }
  802. throw ex;
  803. }
  804. break;
  805. case 0xFFDC:
  806. offset += 4;
  807. break;
  808. case 0xFFFF:
  809. if (data[offset] !== 0xFF) {
  810. offset--;
  811. }
  812. break;
  813. default:
  814. if (data[offset - 3] === 0xFF && data[offset - 2] >= 0xC0 && data[offset - 2] <= 0xFE) {
  815. offset -= 3;
  816. break;
  817. }
  818. var nextFileMarker = findNextFileMarker(data, offset - 2);
  819. if (nextFileMarker && nextFileMarker.invalid) {
  820. (0, _util.warn)('JpegImage.parse - unexpected data, current marker is: ' + nextFileMarker.invalid);
  821. offset = nextFileMarker.offset;
  822. break;
  823. }
  824. throw new JpegError('unknown marker ' + fileMarker.toString(16));
  825. }
  826. fileMarker = readUint16();
  827. }
  828. this.width = frame.samplesPerLine;
  829. this.height = frame.scanLines;
  830. this.jfif = jfif;
  831. this.adobe = adobe;
  832. this.components = [];
  833. for (i = 0; i < frame.components.length; i++) {
  834. component = frame.components[i];
  835. var quantizationTable = quantizationTables[component.quantizationId];
  836. if (quantizationTable) {
  837. component.quantizationTable = quantizationTable;
  838. }
  839. this.components.push({
  840. output: buildComponentData(frame, component),
  841. scaleX: component.h / frame.maxH,
  842. scaleY: component.v / frame.maxV,
  843. blocksPerLine: component.blocksPerLine,
  844. blocksPerColumn: component.blocksPerColumn
  845. });
  846. }
  847. this.numComponents = this.components.length;
  848. },
  849. _getLinearizedBlockData: function _getLinearizedBlockData(width, height) {
  850. var isSourcePDF = arguments.length > 2 && arguments[2] !== undefined ? arguments[2] : false;
  851. var scaleX = this.width / width,
  852. scaleY = this.height / height;
  853. var component, componentScaleX, componentScaleY, blocksPerScanline;
  854. var x, y, i, j, k;
  855. var index;
  856. var offset = 0;
  857. var output;
  858. var numComponents = this.components.length;
  859. var dataLength = width * height * numComponents;
  860. var data = new Uint8ClampedArray(dataLength);
  861. var xScaleBlockOffset = new Uint32Array(width);
  862. var mask3LSB = 0xfffffff8;
  863. for (i = 0; i < numComponents; i++) {
  864. component = this.components[i];
  865. componentScaleX = component.scaleX * scaleX;
  866. componentScaleY = component.scaleY * scaleY;
  867. offset = i;
  868. output = component.output;
  869. blocksPerScanline = component.blocksPerLine + 1 << 3;
  870. for (x = 0; x < width; x++) {
  871. j = 0 | x * componentScaleX;
  872. xScaleBlockOffset[x] = (j & mask3LSB) << 3 | j & 7;
  873. }
  874. for (y = 0; y < height; y++) {
  875. j = 0 | y * componentScaleY;
  876. index = blocksPerScanline * (j & mask3LSB) | (j & 7) << 3;
  877. for (x = 0; x < width; x++) {
  878. data[offset] = output[index + xScaleBlockOffset[x]];
  879. offset += numComponents;
  880. }
  881. }
  882. }
  883. var transform = this._decodeTransform;
  884. if (!isSourcePDF && numComponents === 4 && !transform) {
  885. transform = new Int32Array([-256, 255, -256, 255, -256, 255, -256, 255]);
  886. }
  887. if (transform) {
  888. for (i = 0; i < dataLength;) {
  889. for (j = 0, k = 0; j < numComponents; j++, i++, k += 2) {
  890. data[i] = (data[i] * transform[k] >> 8) + transform[k + 1];
  891. }
  892. }
  893. }
  894. return data;
  895. },
  896. get _isColorConversionNeeded() {
  897. if (this.adobe) {
  898. return !!this.adobe.transformCode;
  899. }
  900. if (this.numComponents === 3) {
  901. if (this._colorTransform === 0) {
  902. return false;
  903. }
  904. return true;
  905. }
  906. if (this._colorTransform === 1) {
  907. return true;
  908. }
  909. return false;
  910. },
  911. _convertYccToRgb: function convertYccToRgb(data) {
  912. var Y, Cb, Cr;
  913. for (var i = 0, length = data.length; i < length; i += 3) {
  914. Y = data[i];
  915. Cb = data[i + 1];
  916. Cr = data[i + 2];
  917. data[i] = Y - 179.456 + 1.402 * Cr;
  918. data[i + 1] = Y + 135.459 - 0.344 * Cb - 0.714 * Cr;
  919. data[i + 2] = Y - 226.816 + 1.772 * Cb;
  920. }
  921. return data;
  922. },
  923. _convertYcckToRgb: function convertYcckToRgb(data) {
  924. var Y, Cb, Cr, k;
  925. var offset = 0;
  926. for (var i = 0, length = data.length; i < length; i += 4) {
  927. Y = data[i];
  928. Cb = data[i + 1];
  929. Cr = data[i + 2];
  930. k = data[i + 3];
  931. data[offset++] = -122.67195406894 + Cb * (-6.60635669420364e-5 * Cb + 0.000437130475926232 * Cr - 5.4080610064599e-5 * Y + 0.00048449797120281 * k - 0.154362151871126) + Cr * (-0.000957964378445773 * Cr + 0.000817076911346625 * Y - 0.00477271405408747 * k + 1.53380253221734) + Y * (0.000961250184130688 * Y - 0.00266257332283933 * k + 0.48357088451265) + k * (-0.000336197177618394 * k + 0.484791561490776);
  932. data[offset++] = 107.268039397724 + Cb * (2.19927104525741e-5 * Cb - 0.000640992018297945 * Cr + 0.000659397001245577 * Y + 0.000426105652938837 * k - 0.176491792462875) + Cr * (-0.000778269941513683 * Cr + 0.00130872261408275 * Y + 0.000770482631801132 * k - 0.151051492775562) + Y * (0.00126935368114843 * Y - 0.00265090189010898 * k + 0.25802910206845) + k * (-0.000318913117588328 * k - 0.213742400323665);
  933. data[offset++] = -20.810012546947 + Cb * (-0.000570115196973677 * Cb - 2.63409051004589e-5 * Cr + 0.0020741088115012 * Y - 0.00288260236853442 * k + 0.814272968359295) + Cr * (-1.53496057440975e-5 * Cr - 0.000132689043961446 * Y + 0.000560833691242812 * k - 0.195152027534049) + Y * (0.00174418132927582 * Y - 0.00255243321439347 * k + 0.116935020465145) + k * (-0.000343531996510555 * k + 0.24165260232407);
  934. }
  935. return data.subarray(0, offset);
  936. },
  937. _convertYcckToCmyk: function convertYcckToCmyk(data) {
  938. var Y, Cb, Cr;
  939. for (var i = 0, length = data.length; i < length; i += 4) {
  940. Y = data[i];
  941. Cb = data[i + 1];
  942. Cr = data[i + 2];
  943. data[i] = 434.456 - Y - 1.402 * Cr;
  944. data[i + 1] = 119.541 - Y + 0.344 * Cb + 0.714 * Cr;
  945. data[i + 2] = 481.816 - Y - 1.772 * Cb;
  946. }
  947. return data;
  948. },
  949. _convertCmykToRgb: function convertCmykToRgb(data) {
  950. var c, m, y, k;
  951. var offset = 0;
  952. var scale = 1 / 255;
  953. for (var i = 0, length = data.length; i < length; i += 4) {
  954. c = data[i] * scale;
  955. m = data[i + 1] * scale;
  956. y = data[i + 2] * scale;
  957. k = data[i + 3] * scale;
  958. data[offset++] = 255 + c * (-4.387332384609988 * c + 54.48615194189176 * m + 18.82290502165302 * y + 212.25662451639585 * k - 285.2331026137004) + m * (1.7149763477362134 * m - 5.6096736904047315 * y - 17.873870861415444 * k - 5.497006427196366) + y * (-2.5217340131683033 * y - 21.248923337353073 * k + 17.5119270841813) - k * (21.86122147463605 * k + 189.48180835922747);
  959. data[offset++] = 255 + c * (8.841041422036149 * c + 60.118027045597366 * m + 6.871425592049007 * y + 31.159100130055922 * k - 79.2970844816548) + m * (-15.310361306967817 * m + 17.575251261109482 * y + 131.35250912493976 * k - 190.9453302588951) + y * (4.444339102852739 * y + 9.8632861493405 * k - 24.86741582555878) - k * (20.737325471181034 * k + 187.80453709719578);
  960. data[offset++] = 255 + c * (0.8842522430003296 * c + 8.078677503112928 * m + 30.89978309703729 * y - 0.23883238689178934 * k - 14.183576799673286) + m * (10.49593273432072 * m + 63.02378494754052 * y + 50.606957656360734 * k - 112.23884253719248) + y * (0.03296041114873217 * y + 115.60384449646641 * k - 193.58209356861505) - k * (22.33816807309886 * k + 180.12613974708367);
  961. }
  962. return data.subarray(0, offset);
  963. },
  964. getData: function getData(_ref3) {
  965. var width = _ref3.width,
  966. height = _ref3.height,
  967. _ref3$forceRGB = _ref3.forceRGB,
  968. forceRGB = _ref3$forceRGB === void 0 ? false : _ref3$forceRGB,
  969. _ref3$isSourcePDF = _ref3.isSourcePDF,
  970. isSourcePDF = _ref3$isSourcePDF === void 0 ? false : _ref3$isSourcePDF;
  971. if (this.numComponents > 4) {
  972. throw new JpegError('Unsupported color mode');
  973. }
  974. var data = this._getLinearizedBlockData(width, height, isSourcePDF);
  975. if (this.numComponents === 1 && forceRGB) {
  976. var dataLength = data.length;
  977. var rgbData = new Uint8ClampedArray(dataLength * 3);
  978. var offset = 0;
  979. for (var i = 0; i < dataLength; i++) {
  980. var grayColor = data[i];
  981. rgbData[offset++] = grayColor;
  982. rgbData[offset++] = grayColor;
  983. rgbData[offset++] = grayColor;
  984. }
  985. return rgbData;
  986. } else if (this.numComponents === 3 && this._isColorConversionNeeded) {
  987. return this._convertYccToRgb(data);
  988. } else if (this.numComponents === 4) {
  989. if (this._isColorConversionNeeded) {
  990. if (forceRGB) {
  991. return this._convertYcckToRgb(data);
  992. }
  993. return this._convertYcckToCmyk(data);
  994. } else if (forceRGB) {
  995. return this._convertCmykToRgb(data);
  996. }
  997. }
  998. return data;
  999. }
  1000. };
  1001. return JpegImage;
  1002. }();
  1003. exports.JpegImage = JpegImage;