cmap.js 24 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 2020 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.CMapFactory = exports.IdentityCMap = exports.CMap = void 0;
  27. var _util = require("../shared/util.js");
  28. var _primitives = require("./primitives.js");
  29. var _parser = require("./parser.js");
  30. var _core_utils = require("./core_utils.js");
  31. var _stream = require("./stream.js");
  32. var BUILT_IN_CMAPS = ["Adobe-GB1-UCS2", "Adobe-CNS1-UCS2", "Adobe-Japan1-UCS2", "Adobe-Korea1-UCS2", "78-EUC-H", "78-EUC-V", "78-H", "78-RKSJ-H", "78-RKSJ-V", "78-V", "78ms-RKSJ-H", "78ms-RKSJ-V", "83pv-RKSJ-H", "90ms-RKSJ-H", "90ms-RKSJ-V", "90msp-RKSJ-H", "90msp-RKSJ-V", "90pv-RKSJ-H", "90pv-RKSJ-V", "Add-H", "Add-RKSJ-H", "Add-RKSJ-V", "Add-V", "Adobe-CNS1-0", "Adobe-CNS1-1", "Adobe-CNS1-2", "Adobe-CNS1-3", "Adobe-CNS1-4", "Adobe-CNS1-5", "Adobe-CNS1-6", "Adobe-GB1-0", "Adobe-GB1-1", "Adobe-GB1-2", "Adobe-GB1-3", "Adobe-GB1-4", "Adobe-GB1-5", "Adobe-Japan1-0", "Adobe-Japan1-1", "Adobe-Japan1-2", "Adobe-Japan1-3", "Adobe-Japan1-4", "Adobe-Japan1-5", "Adobe-Japan1-6", "Adobe-Korea1-0", "Adobe-Korea1-1", "Adobe-Korea1-2", "B5-H", "B5-V", "B5pc-H", "B5pc-V", "CNS-EUC-H", "CNS-EUC-V", "CNS1-H", "CNS1-V", "CNS2-H", "CNS2-V", "ETHK-B5-H", "ETHK-B5-V", "ETen-B5-H", "ETen-B5-V", "ETenms-B5-H", "ETenms-B5-V", "EUC-H", "EUC-V", "Ext-H", "Ext-RKSJ-H", "Ext-RKSJ-V", "Ext-V", "GB-EUC-H", "GB-EUC-V", "GB-H", "GB-V", "GBK-EUC-H", "GBK-EUC-V", "GBK2K-H", "GBK2K-V", "GBKp-EUC-H", "GBKp-EUC-V", "GBT-EUC-H", "GBT-EUC-V", "GBT-H", "GBT-V", "GBTpc-EUC-H", "GBTpc-EUC-V", "GBpc-EUC-H", "GBpc-EUC-V", "H", "HKdla-B5-H", "HKdla-B5-V", "HKdlb-B5-H", "HKdlb-B5-V", "HKgccs-B5-H", "HKgccs-B5-V", "HKm314-B5-H", "HKm314-B5-V", "HKm471-B5-H", "HKm471-B5-V", "HKscs-B5-H", "HKscs-B5-V", "Hankaku", "Hiragana", "KSC-EUC-H", "KSC-EUC-V", "KSC-H", "KSC-Johab-H", "KSC-Johab-V", "KSC-V", "KSCms-UHC-H", "KSCms-UHC-HW-H", "KSCms-UHC-HW-V", "KSCms-UHC-V", "KSCpc-EUC-H", "KSCpc-EUC-V", "Katakana", "NWP-H", "NWP-V", "RKSJ-H", "RKSJ-V", "Roman", "UniCNS-UCS2-H", "UniCNS-UCS2-V", "UniCNS-UTF16-H", "UniCNS-UTF16-V", "UniCNS-UTF32-H", "UniCNS-UTF32-V", "UniCNS-UTF8-H", "UniCNS-UTF8-V", "UniGB-UCS2-H", "UniGB-UCS2-V", "UniGB-UTF16-H", "UniGB-UTF16-V", "UniGB-UTF32-H", "UniGB-UTF32-V", "UniGB-UTF8-H", "UniGB-UTF8-V", "UniJIS-UCS2-H", "UniJIS-UCS2-HW-H", "UniJIS-UCS2-HW-V", "UniJIS-UCS2-V", "UniJIS-UTF16-H", "UniJIS-UTF16-V", "UniJIS-UTF32-H", "UniJIS-UTF32-V", "UniJIS-UTF8-H", "UniJIS-UTF8-V", "UniJIS2004-UTF16-H", "UniJIS2004-UTF16-V", "UniJIS2004-UTF32-H", "UniJIS2004-UTF32-V", "UniJIS2004-UTF8-H", "UniJIS2004-UTF8-V", "UniJISPro-UCS2-HW-V", "UniJISPro-UCS2-V", "UniJISPro-UTF8-V", "UniJISX0213-UTF32-H", "UniJISX0213-UTF32-V", "UniJISX02132004-UTF32-H", "UniJISX02132004-UTF32-V", "UniKS-UCS2-H", "UniKS-UCS2-V", "UniKS-UTF16-H", "UniKS-UTF16-V", "UniKS-UTF32-H", "UniKS-UTF32-V", "UniKS-UTF8-H", "UniKS-UTF8-V", "V", "WP-Symbol"];
  33. class CMap {
  34. constructor(builtInCMap = false) {
  35. this.codespaceRanges = [[], [], [], []];
  36. this.numCodespaceRanges = 0;
  37. this._map = [];
  38. this.name = "";
  39. this.vertical = false;
  40. this.useCMap = null;
  41. this.builtInCMap = builtInCMap;
  42. }
  43. addCodespaceRange(n, low, high) {
  44. this.codespaceRanges[n - 1].push(low, high);
  45. this.numCodespaceRanges++;
  46. }
  47. mapCidRange(low, high, dstLow) {
  48. while (low <= high) {
  49. this._map[low++] = dstLow++;
  50. }
  51. }
  52. mapBfRange(low, high, dstLow) {
  53. var lastByte = dstLow.length - 1;
  54. while (low <= high) {
  55. this._map[low++] = dstLow;
  56. dstLow = dstLow.substring(0, lastByte) + String.fromCharCode(dstLow.charCodeAt(lastByte) + 1);
  57. }
  58. }
  59. mapBfRangeToArray(low, high, array) {
  60. const ii = array.length;
  61. let i = 0;
  62. while (low <= high && i < ii) {
  63. this._map[low] = array[i++];
  64. ++low;
  65. }
  66. }
  67. mapOne(src, dst) {
  68. this._map[src] = dst;
  69. }
  70. lookup(code) {
  71. return this._map[code];
  72. }
  73. contains(code) {
  74. return this._map[code] !== undefined;
  75. }
  76. forEach(callback) {
  77. const map = this._map;
  78. const length = map.length;
  79. if (length <= 0x10000) {
  80. for (let i = 0; i < length; i++) {
  81. if (map[i] !== undefined) {
  82. callback(i, map[i]);
  83. }
  84. }
  85. } else {
  86. for (const i in map) {
  87. callback(i, map[i]);
  88. }
  89. }
  90. }
  91. charCodeOf(value) {
  92. const map = this._map;
  93. if (map.length <= 0x10000) {
  94. return map.indexOf(value);
  95. }
  96. for (const charCode in map) {
  97. if (map[charCode] === value) {
  98. return charCode | 0;
  99. }
  100. }
  101. return -1;
  102. }
  103. getMap() {
  104. return this._map;
  105. }
  106. readCharCode(str, offset, out) {
  107. let c = 0;
  108. const codespaceRanges = this.codespaceRanges;
  109. for (let n = 0, nn = codespaceRanges.length; n < nn; n++) {
  110. c = (c << 8 | str.charCodeAt(offset + n)) >>> 0;
  111. const codespaceRange = codespaceRanges[n];
  112. for (let k = 0, kk = codespaceRange.length; k < kk;) {
  113. const low = codespaceRange[k++];
  114. const high = codespaceRange[k++];
  115. if (c >= low && c <= high) {
  116. out.charcode = c;
  117. out.length = n + 1;
  118. return;
  119. }
  120. }
  121. }
  122. out.charcode = 0;
  123. out.length = 1;
  124. }
  125. get length() {
  126. return this._map.length;
  127. }
  128. get isIdentityCMap() {
  129. if (!(this.name === "Identity-H" || this.name === "Identity-V")) {
  130. return false;
  131. }
  132. if (this._map.length !== 0x10000) {
  133. return false;
  134. }
  135. for (let i = 0; i < 0x10000; i++) {
  136. if (this._map[i] !== i) {
  137. return false;
  138. }
  139. }
  140. return true;
  141. }
  142. }
  143. exports.CMap = CMap;
  144. class IdentityCMap extends CMap {
  145. constructor(vertical, n) {
  146. super();
  147. this.vertical = vertical;
  148. this.addCodespaceRange(n, 0, 0xffff);
  149. }
  150. mapCidRange(low, high, dstLow) {
  151. (0, _util.unreachable)("should not call mapCidRange");
  152. }
  153. mapBfRange(low, high, dstLow) {
  154. (0, _util.unreachable)("should not call mapBfRange");
  155. }
  156. mapBfRangeToArray(low, high, array) {
  157. (0, _util.unreachable)("should not call mapBfRangeToArray");
  158. }
  159. mapOne(src, dst) {
  160. (0, _util.unreachable)("should not call mapCidOne");
  161. }
  162. lookup(code) {
  163. return Number.isInteger(code) && code <= 0xffff ? code : undefined;
  164. }
  165. contains(code) {
  166. return Number.isInteger(code) && code <= 0xffff;
  167. }
  168. forEach(callback) {
  169. for (let i = 0; i <= 0xffff; i++) {
  170. callback(i, i);
  171. }
  172. }
  173. charCodeOf(value) {
  174. return Number.isInteger(value) && value <= 0xffff ? value : -1;
  175. }
  176. getMap() {
  177. const map = new Array(0x10000);
  178. for (let i = 0; i <= 0xffff; i++) {
  179. map[i] = i;
  180. }
  181. return map;
  182. }
  183. get length() {
  184. return 0x10000;
  185. }
  186. get isIdentityCMap() {
  187. (0, _util.unreachable)("should not access .isIdentityCMap");
  188. }
  189. }
  190. exports.IdentityCMap = IdentityCMap;
  191. var BinaryCMapReader = function BinaryCMapReaderClosure() {
  192. function hexToInt(a, size) {
  193. var n = 0;
  194. for (var i = 0; i <= size; i++) {
  195. n = n << 8 | a[i];
  196. }
  197. return n >>> 0;
  198. }
  199. function hexToStr(a, size) {
  200. if (size === 1) {
  201. return String.fromCharCode(a[0], a[1]);
  202. }
  203. if (size === 3) {
  204. return String.fromCharCode(a[0], a[1], a[2], a[3]);
  205. }
  206. return String.fromCharCode.apply(null, a.subarray(0, size + 1));
  207. }
  208. function addHex(a, b, size) {
  209. var c = 0;
  210. for (var i = size; i >= 0; i--) {
  211. c += a[i] + b[i];
  212. a[i] = c & 255;
  213. c >>= 8;
  214. }
  215. }
  216. function incHex(a, size) {
  217. var c = 1;
  218. for (var i = size; i >= 0 && c > 0; i--) {
  219. c += a[i];
  220. a[i] = c & 255;
  221. c >>= 8;
  222. }
  223. }
  224. var MAX_NUM_SIZE = 16;
  225. var MAX_ENCODED_NUM_SIZE = 19;
  226. function BinaryCMapStream(data) {
  227. this.buffer = data;
  228. this.pos = 0;
  229. this.end = data.length;
  230. this.tmpBuf = new Uint8Array(MAX_ENCODED_NUM_SIZE);
  231. }
  232. BinaryCMapStream.prototype = {
  233. readByte() {
  234. if (this.pos >= this.end) {
  235. return -1;
  236. }
  237. return this.buffer[this.pos++];
  238. },
  239. readNumber() {
  240. var n = 0;
  241. var last;
  242. do {
  243. var b = this.readByte();
  244. if (b < 0) {
  245. throw new _util.FormatError("unexpected EOF in bcmap");
  246. }
  247. last = !(b & 0x80);
  248. n = n << 7 | b & 0x7f;
  249. } while (!last);
  250. return n;
  251. },
  252. readSigned() {
  253. var n = this.readNumber();
  254. return n & 1 ? ~(n >>> 1) : n >>> 1;
  255. },
  256. readHex(num, size) {
  257. num.set(this.buffer.subarray(this.pos, this.pos + size + 1));
  258. this.pos += size + 1;
  259. },
  260. readHexNumber(num, size) {
  261. var last;
  262. var stack = this.tmpBuf,
  263. sp = 0;
  264. do {
  265. var b = this.readByte();
  266. if (b < 0) {
  267. throw new _util.FormatError("unexpected EOF in bcmap");
  268. }
  269. last = !(b & 0x80);
  270. stack[sp++] = b & 0x7f;
  271. } while (!last);
  272. var i = size,
  273. buffer = 0,
  274. bufferSize = 0;
  275. while (i >= 0) {
  276. while (bufferSize < 8 && stack.length > 0) {
  277. buffer = stack[--sp] << bufferSize | buffer;
  278. bufferSize += 7;
  279. }
  280. num[i] = buffer & 255;
  281. i--;
  282. buffer >>= 8;
  283. bufferSize -= 8;
  284. }
  285. },
  286. readHexSigned(num, size) {
  287. this.readHexNumber(num, size);
  288. var sign = num[size] & 1 ? 255 : 0;
  289. var c = 0;
  290. for (var i = 0; i <= size; i++) {
  291. c = (c & 1) << 8 | num[i];
  292. num[i] = c >> 1 ^ sign;
  293. }
  294. },
  295. readString() {
  296. var len = this.readNumber();
  297. var s = "";
  298. for (var i = 0; i < len; i++) {
  299. s += String.fromCharCode(this.readNumber());
  300. }
  301. return s;
  302. }
  303. };
  304. function processBinaryCMap(data, cMap, extend) {
  305. return new Promise(function (resolve, reject) {
  306. var stream = new BinaryCMapStream(data);
  307. var header = stream.readByte();
  308. cMap.vertical = !!(header & 1);
  309. var useCMap = null;
  310. var start = new Uint8Array(MAX_NUM_SIZE);
  311. var end = new Uint8Array(MAX_NUM_SIZE);
  312. var char = new Uint8Array(MAX_NUM_SIZE);
  313. var charCode = new Uint8Array(MAX_NUM_SIZE);
  314. var tmp = new Uint8Array(MAX_NUM_SIZE);
  315. var code;
  316. var b;
  317. while ((b = stream.readByte()) >= 0) {
  318. var type = b >> 5;
  319. if (type === 7) {
  320. switch (b & 0x1f) {
  321. case 0:
  322. stream.readString();
  323. break;
  324. case 1:
  325. useCMap = stream.readString();
  326. break;
  327. }
  328. continue;
  329. }
  330. var sequence = !!(b & 0x10);
  331. var dataSize = b & 15;
  332. if (dataSize + 1 > MAX_NUM_SIZE) {
  333. throw new Error("processBinaryCMap: Invalid dataSize.");
  334. }
  335. var ucs2DataSize = 1;
  336. var subitemsCount = stream.readNumber();
  337. var i;
  338. switch (type) {
  339. case 0:
  340. stream.readHex(start, dataSize);
  341. stream.readHexNumber(end, dataSize);
  342. addHex(end, start, dataSize);
  343. cMap.addCodespaceRange(dataSize + 1, hexToInt(start, dataSize), hexToInt(end, dataSize));
  344. for (i = 1; i < subitemsCount; i++) {
  345. incHex(end, dataSize);
  346. stream.readHexNumber(start, dataSize);
  347. addHex(start, end, dataSize);
  348. stream.readHexNumber(end, dataSize);
  349. addHex(end, start, dataSize);
  350. cMap.addCodespaceRange(dataSize + 1, hexToInt(start, dataSize), hexToInt(end, dataSize));
  351. }
  352. break;
  353. case 1:
  354. stream.readHex(start, dataSize);
  355. stream.readHexNumber(end, dataSize);
  356. addHex(end, start, dataSize);
  357. stream.readNumber();
  358. for (i = 1; i < subitemsCount; i++) {
  359. incHex(end, dataSize);
  360. stream.readHexNumber(start, dataSize);
  361. addHex(start, end, dataSize);
  362. stream.readHexNumber(end, dataSize);
  363. addHex(end, start, dataSize);
  364. stream.readNumber();
  365. }
  366. break;
  367. case 2:
  368. stream.readHex(char, dataSize);
  369. code = stream.readNumber();
  370. cMap.mapOne(hexToInt(char, dataSize), code);
  371. for (i = 1; i < subitemsCount; i++) {
  372. incHex(char, dataSize);
  373. if (!sequence) {
  374. stream.readHexNumber(tmp, dataSize);
  375. addHex(char, tmp, dataSize);
  376. }
  377. code = stream.readSigned() + (code + 1);
  378. cMap.mapOne(hexToInt(char, dataSize), code);
  379. }
  380. break;
  381. case 3:
  382. stream.readHex(start, dataSize);
  383. stream.readHexNumber(end, dataSize);
  384. addHex(end, start, dataSize);
  385. code = stream.readNumber();
  386. cMap.mapCidRange(hexToInt(start, dataSize), hexToInt(end, dataSize), code);
  387. for (i = 1; i < subitemsCount; i++) {
  388. incHex(end, dataSize);
  389. if (!sequence) {
  390. stream.readHexNumber(start, dataSize);
  391. addHex(start, end, dataSize);
  392. } else {
  393. start.set(end);
  394. }
  395. stream.readHexNumber(end, dataSize);
  396. addHex(end, start, dataSize);
  397. code = stream.readNumber();
  398. cMap.mapCidRange(hexToInt(start, dataSize), hexToInt(end, dataSize), code);
  399. }
  400. break;
  401. case 4:
  402. stream.readHex(char, ucs2DataSize);
  403. stream.readHex(charCode, dataSize);
  404. cMap.mapOne(hexToInt(char, ucs2DataSize), hexToStr(charCode, dataSize));
  405. for (i = 1; i < subitemsCount; i++) {
  406. incHex(char, ucs2DataSize);
  407. if (!sequence) {
  408. stream.readHexNumber(tmp, ucs2DataSize);
  409. addHex(char, tmp, ucs2DataSize);
  410. }
  411. incHex(charCode, dataSize);
  412. stream.readHexSigned(tmp, dataSize);
  413. addHex(charCode, tmp, dataSize);
  414. cMap.mapOne(hexToInt(char, ucs2DataSize), hexToStr(charCode, dataSize));
  415. }
  416. break;
  417. case 5:
  418. stream.readHex(start, ucs2DataSize);
  419. stream.readHexNumber(end, ucs2DataSize);
  420. addHex(end, start, ucs2DataSize);
  421. stream.readHex(charCode, dataSize);
  422. cMap.mapBfRange(hexToInt(start, ucs2DataSize), hexToInt(end, ucs2DataSize), hexToStr(charCode, dataSize));
  423. for (i = 1; i < subitemsCount; i++) {
  424. incHex(end, ucs2DataSize);
  425. if (!sequence) {
  426. stream.readHexNumber(start, ucs2DataSize);
  427. addHex(start, end, ucs2DataSize);
  428. } else {
  429. start.set(end);
  430. }
  431. stream.readHexNumber(end, ucs2DataSize);
  432. addHex(end, start, ucs2DataSize);
  433. stream.readHex(charCode, dataSize);
  434. cMap.mapBfRange(hexToInt(start, ucs2DataSize), hexToInt(end, ucs2DataSize), hexToStr(charCode, dataSize));
  435. }
  436. break;
  437. default:
  438. reject(new Error("processBinaryCMap: Unknown type: " + type));
  439. return;
  440. }
  441. }
  442. if (useCMap) {
  443. resolve(extend(useCMap));
  444. return;
  445. }
  446. resolve(cMap);
  447. });
  448. }
  449. function BinaryCMapReader() {}
  450. BinaryCMapReader.prototype = {
  451. process: processBinaryCMap
  452. };
  453. return BinaryCMapReader;
  454. }();
  455. var CMapFactory = function CMapFactoryClosure() {
  456. function strToInt(str) {
  457. var a = 0;
  458. for (var i = 0; i < str.length; i++) {
  459. a = a << 8 | str.charCodeAt(i);
  460. }
  461. return a >>> 0;
  462. }
  463. function expectString(obj) {
  464. if (!(0, _util.isString)(obj)) {
  465. throw new _util.FormatError("Malformed CMap: expected string.");
  466. }
  467. }
  468. function expectInt(obj) {
  469. if (!Number.isInteger(obj)) {
  470. throw new _util.FormatError("Malformed CMap: expected int.");
  471. }
  472. }
  473. function parseBfChar(cMap, lexer) {
  474. while (true) {
  475. var obj = lexer.getObj();
  476. if ((0, _primitives.isEOF)(obj)) {
  477. break;
  478. }
  479. if ((0, _primitives.isCmd)(obj, "endbfchar")) {
  480. return;
  481. }
  482. expectString(obj);
  483. var src = strToInt(obj);
  484. obj = lexer.getObj();
  485. expectString(obj);
  486. var dst = obj;
  487. cMap.mapOne(src, dst);
  488. }
  489. }
  490. function parseBfRange(cMap, lexer) {
  491. while (true) {
  492. var obj = lexer.getObj();
  493. if ((0, _primitives.isEOF)(obj)) {
  494. break;
  495. }
  496. if ((0, _primitives.isCmd)(obj, "endbfrange")) {
  497. return;
  498. }
  499. expectString(obj);
  500. var low = strToInt(obj);
  501. obj = lexer.getObj();
  502. expectString(obj);
  503. var high = strToInt(obj);
  504. obj = lexer.getObj();
  505. if (Number.isInteger(obj) || (0, _util.isString)(obj)) {
  506. var dstLow = Number.isInteger(obj) ? String.fromCharCode(obj) : obj;
  507. cMap.mapBfRange(low, high, dstLow);
  508. } else if ((0, _primitives.isCmd)(obj, "[")) {
  509. obj = lexer.getObj();
  510. var array = [];
  511. while (!(0, _primitives.isCmd)(obj, "]") && !(0, _primitives.isEOF)(obj)) {
  512. array.push(obj);
  513. obj = lexer.getObj();
  514. }
  515. cMap.mapBfRangeToArray(low, high, array);
  516. } else {
  517. break;
  518. }
  519. }
  520. throw new _util.FormatError("Invalid bf range.");
  521. }
  522. function parseCidChar(cMap, lexer) {
  523. while (true) {
  524. var obj = lexer.getObj();
  525. if ((0, _primitives.isEOF)(obj)) {
  526. break;
  527. }
  528. if ((0, _primitives.isCmd)(obj, "endcidchar")) {
  529. return;
  530. }
  531. expectString(obj);
  532. var src = strToInt(obj);
  533. obj = lexer.getObj();
  534. expectInt(obj);
  535. var dst = obj;
  536. cMap.mapOne(src, dst);
  537. }
  538. }
  539. function parseCidRange(cMap, lexer) {
  540. while (true) {
  541. var obj = lexer.getObj();
  542. if ((0, _primitives.isEOF)(obj)) {
  543. break;
  544. }
  545. if ((0, _primitives.isCmd)(obj, "endcidrange")) {
  546. return;
  547. }
  548. expectString(obj);
  549. var low = strToInt(obj);
  550. obj = lexer.getObj();
  551. expectString(obj);
  552. var high = strToInt(obj);
  553. obj = lexer.getObj();
  554. expectInt(obj);
  555. var dstLow = obj;
  556. cMap.mapCidRange(low, high, dstLow);
  557. }
  558. }
  559. function parseCodespaceRange(cMap, lexer) {
  560. while (true) {
  561. var obj = lexer.getObj();
  562. if ((0, _primitives.isEOF)(obj)) {
  563. break;
  564. }
  565. if ((0, _primitives.isCmd)(obj, "endcodespacerange")) {
  566. return;
  567. }
  568. if (!(0, _util.isString)(obj)) {
  569. break;
  570. }
  571. var low = strToInt(obj);
  572. obj = lexer.getObj();
  573. if (!(0, _util.isString)(obj)) {
  574. break;
  575. }
  576. var high = strToInt(obj);
  577. cMap.addCodespaceRange(obj.length, low, high);
  578. }
  579. throw new _util.FormatError("Invalid codespace range.");
  580. }
  581. function parseWMode(cMap, lexer) {
  582. var obj = lexer.getObj();
  583. if (Number.isInteger(obj)) {
  584. cMap.vertical = !!obj;
  585. }
  586. }
  587. function parseCMapName(cMap, lexer) {
  588. var obj = lexer.getObj();
  589. if ((0, _primitives.isName)(obj) && (0, _util.isString)(obj.name)) {
  590. cMap.name = obj.name;
  591. }
  592. }
  593. function parseCMap(cMap, lexer, fetchBuiltInCMap, useCMap) {
  594. var previous;
  595. var embeddedUseCMap;
  596. objLoop: while (true) {
  597. try {
  598. var obj = lexer.getObj();
  599. if ((0, _primitives.isEOF)(obj)) {
  600. break;
  601. } else if ((0, _primitives.isName)(obj)) {
  602. if (obj.name === "WMode") {
  603. parseWMode(cMap, lexer);
  604. } else if (obj.name === "CMapName") {
  605. parseCMapName(cMap, lexer);
  606. }
  607. previous = obj;
  608. } else if ((0, _primitives.isCmd)(obj)) {
  609. switch (obj.cmd) {
  610. case "endcmap":
  611. break objLoop;
  612. case "usecmap":
  613. if ((0, _primitives.isName)(previous)) {
  614. embeddedUseCMap = previous.name;
  615. }
  616. break;
  617. case "begincodespacerange":
  618. parseCodespaceRange(cMap, lexer);
  619. break;
  620. case "beginbfchar":
  621. parseBfChar(cMap, lexer);
  622. break;
  623. case "begincidchar":
  624. parseCidChar(cMap, lexer);
  625. break;
  626. case "beginbfrange":
  627. parseBfRange(cMap, lexer);
  628. break;
  629. case "begincidrange":
  630. parseCidRange(cMap, lexer);
  631. break;
  632. }
  633. }
  634. } catch (ex) {
  635. if (ex instanceof _core_utils.MissingDataException) {
  636. throw ex;
  637. }
  638. (0, _util.warn)("Invalid cMap data: " + ex);
  639. continue;
  640. }
  641. }
  642. if (!useCMap && embeddedUseCMap) {
  643. useCMap = embeddedUseCMap;
  644. }
  645. if (useCMap) {
  646. return extendCMap(cMap, fetchBuiltInCMap, useCMap);
  647. }
  648. return Promise.resolve(cMap);
  649. }
  650. function extendCMap(cMap, fetchBuiltInCMap, useCMap) {
  651. return createBuiltInCMap(useCMap, fetchBuiltInCMap).then(function (newCMap) {
  652. cMap.useCMap = newCMap;
  653. if (cMap.numCodespaceRanges === 0) {
  654. var useCodespaceRanges = cMap.useCMap.codespaceRanges;
  655. for (var i = 0; i < useCodespaceRanges.length; i++) {
  656. cMap.codespaceRanges[i] = useCodespaceRanges[i].slice();
  657. }
  658. cMap.numCodespaceRanges = cMap.useCMap.numCodespaceRanges;
  659. }
  660. cMap.useCMap.forEach(function (key, value) {
  661. if (!cMap.contains(key)) {
  662. cMap.mapOne(key, cMap.useCMap.lookup(key));
  663. }
  664. });
  665. return cMap;
  666. });
  667. }
  668. function createBuiltInCMap(name, fetchBuiltInCMap) {
  669. if (name === "Identity-H") {
  670. return Promise.resolve(new IdentityCMap(false, 2));
  671. } else if (name === "Identity-V") {
  672. return Promise.resolve(new IdentityCMap(true, 2));
  673. }
  674. if (!BUILT_IN_CMAPS.includes(name)) {
  675. return Promise.reject(new Error("Unknown CMap name: " + name));
  676. }
  677. if (!fetchBuiltInCMap) {
  678. return Promise.reject(new Error("Built-in CMap parameters are not provided."));
  679. }
  680. return fetchBuiltInCMap(name).then(function (data) {
  681. var cMapData = data.cMapData,
  682. compressionType = data.compressionType;
  683. var cMap = new CMap(true);
  684. if (compressionType === _util.CMapCompressionType.BINARY) {
  685. return new BinaryCMapReader().process(cMapData, cMap, function (useCMap) {
  686. return extendCMap(cMap, fetchBuiltInCMap, useCMap);
  687. });
  688. }
  689. if (compressionType === _util.CMapCompressionType.NONE) {
  690. var lexer = new _parser.Lexer(new _stream.Stream(cMapData));
  691. return parseCMap(cMap, lexer, fetchBuiltInCMap, null);
  692. }
  693. return Promise.reject(new Error("TODO: Only BINARY/NONE CMap compression is currently supported."));
  694. });
  695. }
  696. return {
  697. async create(params) {
  698. var encoding = params.encoding;
  699. var fetchBuiltInCMap = params.fetchBuiltInCMap;
  700. var useCMap = params.useCMap;
  701. if ((0, _primitives.isName)(encoding)) {
  702. return createBuiltInCMap(encoding.name, fetchBuiltInCMap);
  703. } else if ((0, _primitives.isStream)(encoding)) {
  704. var cMap = new CMap();
  705. var lexer = new _parser.Lexer(encoding);
  706. return parseCMap(cMap, lexer, fetchBuiltInCMap, useCMap).then(function (parsedCMap) {
  707. if (parsedCMap.isIdentityCMap) {
  708. return createBuiltInCMap(parsedCMap.name, fetchBuiltInCMap);
  709. }
  710. return parsedCMap;
  711. });
  712. }
  713. throw new Error("Encoding required.");
  714. }
  715. };
  716. }();
  717. exports.CMapFactory = CMapFactory;