writer.js 9.2 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 2021 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.incrementalUpdate = incrementalUpdate;
  27. exports.writeDict = writeDict;
  28. var _util = require("../shared/util.js");
  29. var _primitives = require("./primitives.js");
  30. var _core_utils = require("./core_utils.js");
  31. var _xml_parser = require("./xml_parser.js");
  32. var _crypto = require("./crypto.js");
  33. function writeDict(dict, buffer, transform) {
  34. buffer.push("<<");
  35. for (const key of dict.getKeys()) {
  36. buffer.push(` /${(0, _core_utils.escapePDFName)(key)} `);
  37. writeValue(dict.getRaw(key), buffer, transform);
  38. }
  39. buffer.push(">>");
  40. }
  41. function writeStream(stream, buffer, transform) {
  42. writeDict(stream.dict, buffer, transform);
  43. buffer.push(" stream\n");
  44. let string = stream.getString();
  45. if (transform !== null) {
  46. string = transform.encryptString(string);
  47. }
  48. buffer.push(string, "\nendstream\n");
  49. }
  50. function writeArray(array, buffer, transform) {
  51. buffer.push("[");
  52. let first = true;
  53. for (const val of array) {
  54. if (!first) {
  55. buffer.push(" ");
  56. } else {
  57. first = false;
  58. }
  59. writeValue(val, buffer, transform);
  60. }
  61. buffer.push("]");
  62. }
  63. function numberToString(value) {
  64. if (Number.isInteger(value)) {
  65. return value.toString();
  66. }
  67. const roundedValue = Math.round(value * 100);
  68. if (roundedValue % 100 === 0) {
  69. return (roundedValue / 100).toString();
  70. }
  71. if (roundedValue % 10 === 0) {
  72. return value.toFixed(1);
  73. }
  74. return value.toFixed(2);
  75. }
  76. function writeValue(value, buffer, transform) {
  77. if ((0, _primitives.isName)(value)) {
  78. buffer.push(`/${(0, _core_utils.escapePDFName)(value.name)}`);
  79. } else if ((0, _primitives.isRef)(value)) {
  80. buffer.push(`${value.num} ${value.gen} R`);
  81. } else if (Array.isArray(value)) {
  82. writeArray(value, buffer, transform);
  83. } else if (typeof value === "string") {
  84. if (transform !== null) {
  85. value = transform.encryptString(value);
  86. }
  87. buffer.push(`(${(0, _util.escapeString)(value)})`);
  88. } else if (typeof value === "number") {
  89. buffer.push(numberToString(value));
  90. } else if (typeof value === "boolean") {
  91. buffer.push(value.toString());
  92. } else if ((0, _primitives.isDict)(value)) {
  93. writeDict(value, buffer, transform);
  94. } else if ((0, _primitives.isStream)(value)) {
  95. writeStream(value, buffer, transform);
  96. } else if (value === null) {
  97. buffer.push("null");
  98. } else {
  99. (0, _util.warn)(`Unhandled value in writer: ${typeof value}, please file a bug.`);
  100. }
  101. }
  102. function writeInt(number, size, offset, buffer) {
  103. for (let i = size + offset - 1; i > offset - 1; i--) {
  104. buffer[i] = number & 0xff;
  105. number >>= 8;
  106. }
  107. return offset + size;
  108. }
  109. function writeString(string, offset, buffer) {
  110. for (let i = 0, len = string.length; i < len; i++) {
  111. buffer[offset + i] = string.charCodeAt(i) & 0xff;
  112. }
  113. }
  114. function computeMD5(filesize, xrefInfo) {
  115. const time = Math.floor(Date.now() / 1000);
  116. const filename = xrefInfo.filename || "";
  117. const md5Buffer = [time.toString(), filename, filesize.toString()];
  118. let md5BufferLen = md5Buffer.reduce((a, str) => a + str.length, 0);
  119. for (const value of Object.values(xrefInfo.info)) {
  120. md5Buffer.push(value);
  121. md5BufferLen += value.length;
  122. }
  123. const array = new Uint8Array(md5BufferLen);
  124. let offset = 0;
  125. for (const str of md5Buffer) {
  126. writeString(str, offset, array);
  127. offset += str.length;
  128. }
  129. return (0, _util.bytesToString)((0, _crypto.calculateMD5)(array));
  130. }
  131. function writeXFADataForAcroform(str, newRefs) {
  132. const xml = new _xml_parser.SimpleXMLParser({
  133. hasAttributes: true
  134. }).parseFromString(str);
  135. for (const {
  136. xfa
  137. } of newRefs) {
  138. if (!xfa) {
  139. continue;
  140. }
  141. const {
  142. path,
  143. value
  144. } = xfa;
  145. if (!path) {
  146. continue;
  147. }
  148. const node = xml.documentElement.searchNode((0, _core_utils.parseXFAPath)(path), 0);
  149. if (node) {
  150. node.childNodes = [new _xml_parser.SimpleDOMNode("#text", value)];
  151. } else {
  152. (0, _util.warn)(`Node not found for path: ${path}`);
  153. }
  154. }
  155. const buffer = [];
  156. xml.documentElement.dump(buffer);
  157. return buffer.join("");
  158. }
  159. function updateXFA({
  160. xfaData,
  161. xfaDatasetsRef,
  162. hasXfaDatasetsEntry,
  163. acroFormRef,
  164. acroForm,
  165. newRefs,
  166. xref,
  167. xrefInfo
  168. }) {
  169. if (xref === null) {
  170. return;
  171. }
  172. if (!hasXfaDatasetsEntry) {
  173. if (!acroFormRef) {
  174. (0, _util.warn)("XFA - Cannot save it");
  175. return;
  176. }
  177. const oldXfa = acroForm.get("XFA");
  178. const newXfa = oldXfa.slice();
  179. newXfa.splice(2, 0, "datasets");
  180. newXfa.splice(3, 0, xfaDatasetsRef);
  181. acroForm.set("XFA", newXfa);
  182. const encrypt = xref.encrypt;
  183. let transform = null;
  184. if (encrypt) {
  185. transform = encrypt.createCipherTransform(acroFormRef.num, acroFormRef.gen);
  186. }
  187. const buffer = [`${acroFormRef.num} ${acroFormRef.gen} obj\n`];
  188. writeDict(acroForm, buffer, transform);
  189. buffer.push("\n");
  190. acroForm.set("XFA", oldXfa);
  191. newRefs.push({
  192. ref: acroFormRef,
  193. data: buffer.join("")
  194. });
  195. }
  196. if (xfaData === null) {
  197. const datasets = xref.fetchIfRef(xfaDatasetsRef);
  198. xfaData = writeXFADataForAcroform(datasets.getString(), newRefs);
  199. }
  200. const encrypt = xref.encrypt;
  201. if (encrypt) {
  202. const transform = encrypt.createCipherTransform(xfaDatasetsRef.num, xfaDatasetsRef.gen);
  203. xfaData = transform.encryptString(xfaData);
  204. }
  205. const data = `${xfaDatasetsRef.num} ${xfaDatasetsRef.gen} obj\n` + `<< /Type /EmbeddedFile /Length ${xfaData.length}>>\nstream\n` + xfaData + "\nendstream\nendobj\n";
  206. newRefs.push({
  207. ref: xfaDatasetsRef,
  208. data
  209. });
  210. }
  211. function incrementalUpdate({
  212. originalData,
  213. xrefInfo,
  214. newRefs,
  215. xref = null,
  216. hasXfa = false,
  217. xfaDatasetsRef = null,
  218. hasXfaDatasetsEntry = false,
  219. acroFormRef = null,
  220. acroForm = null,
  221. xfaData = null
  222. }) {
  223. if (hasXfa) {
  224. updateXFA({
  225. xfaData,
  226. xfaDatasetsRef,
  227. hasXfaDatasetsEntry,
  228. acroFormRef,
  229. acroForm,
  230. newRefs,
  231. xref,
  232. xrefInfo
  233. });
  234. }
  235. const newXref = new _primitives.Dict(null);
  236. const refForXrefTable = xrefInfo.newRef;
  237. let buffer, baseOffset;
  238. const lastByte = originalData[originalData.length - 1];
  239. if (lastByte === 0x0a || lastByte === 0x0d) {
  240. buffer = [];
  241. baseOffset = originalData.length;
  242. } else {
  243. buffer = ["\n"];
  244. baseOffset = originalData.length + 1;
  245. }
  246. newXref.set("Size", refForXrefTable.num + 1);
  247. newXref.set("Prev", xrefInfo.startXRef);
  248. newXref.set("Type", _primitives.Name.get("XRef"));
  249. if (xrefInfo.rootRef !== null) {
  250. newXref.set("Root", xrefInfo.rootRef);
  251. }
  252. if (xrefInfo.infoRef !== null) {
  253. newXref.set("Info", xrefInfo.infoRef);
  254. }
  255. if (xrefInfo.encryptRef !== null) {
  256. newXref.set("Encrypt", xrefInfo.encryptRef);
  257. }
  258. newRefs.push({
  259. ref: refForXrefTable,
  260. data: ""
  261. });
  262. newRefs = newRefs.sort((a, b) => {
  263. return a.ref.num - b.ref.num;
  264. });
  265. const xrefTableData = [[0, 1, 0xffff]];
  266. const indexes = [0, 1];
  267. let maxOffset = 0;
  268. for (const {
  269. ref,
  270. data
  271. } of newRefs) {
  272. maxOffset = Math.max(maxOffset, baseOffset);
  273. xrefTableData.push([1, baseOffset, Math.min(ref.gen, 0xffff)]);
  274. baseOffset += data.length;
  275. indexes.push(ref.num, 1);
  276. buffer.push(data);
  277. }
  278. newXref.set("Index", indexes);
  279. if (Array.isArray(xrefInfo.fileIds) && xrefInfo.fileIds.length > 0) {
  280. const md5 = computeMD5(baseOffset, xrefInfo);
  281. newXref.set("ID", [xrefInfo.fileIds[0], md5]);
  282. }
  283. const offsetSize = Math.ceil(Math.log2(maxOffset) / 8);
  284. const sizes = [1, offsetSize, 2];
  285. const structSize = sizes[0] + sizes[1] + sizes[2];
  286. const tableLength = structSize * xrefTableData.length;
  287. newXref.set("W", sizes);
  288. newXref.set("Length", tableLength);
  289. buffer.push(`${refForXrefTable.num} ${refForXrefTable.gen} obj\n`);
  290. writeDict(newXref, buffer, null);
  291. buffer.push(" stream\n");
  292. const bufferLen = buffer.reduce((a, str) => a + str.length, 0);
  293. const footer = `\nendstream\nendobj\nstartxref\n${baseOffset}\n%%EOF\n`;
  294. const array = new Uint8Array(originalData.length + bufferLen + tableLength + footer.length);
  295. array.set(originalData);
  296. let offset = originalData.length;
  297. for (const str of buffer) {
  298. writeString(str, offset, array);
  299. offset += str.length;
  300. }
  301. for (const [type, objOffset, gen] of xrefTableData) {
  302. offset = writeInt(type, sizes[0], offset, array);
  303. offset = writeInt(objOffset, sizes[1], offset, array);
  304. offset = writeInt(gen, sizes[2], offset, array);
  305. }
  306. writeString(footer, offset, array);
  307. return array;
  308. }