ObjectMiddleware.js 21 KB

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  1. /*
  2. MIT License http://www.opensource.org/licenses/mit-license.php
  3. */
  4. "use strict";
  5. const createHash = require("../util/createHash");
  6. const ArraySerializer = require("./ArraySerializer");
  7. const DateObjectSerializer = require("./DateObjectSerializer");
  8. const ErrorObjectSerializer = require("./ErrorObjectSerializer");
  9. const MapObjectSerializer = require("./MapObjectSerializer");
  10. const NullPrototypeObjectSerializer = require("./NullPrototypeObjectSerializer");
  11. const PlainObjectSerializer = require("./PlainObjectSerializer");
  12. const RegExpObjectSerializer = require("./RegExpObjectSerializer");
  13. const SerializerMiddleware = require("./SerializerMiddleware");
  14. const SetObjectSerializer = require("./SetObjectSerializer");
  15. /** @typedef {typeof import("../util/Hash")} Hash */
  16. /** @typedef {import("./types").ComplexSerializableType} ComplexSerializableType */
  17. /** @typedef {import("./types").PrimitiveSerializableType} PrimitiveSerializableType */
  18. /** @typedef {new (...params: any[]) => any} Constructor */
  19. /*
  20. Format:
  21. File -> Section*
  22. Section -> ObjectSection | ReferenceSection | EscapeSection | OtherSection
  23. ObjectSection -> ESCAPE (
  24. number:relativeOffset (number > 0) |
  25. string:request (string|null):export
  26. ) Section:value* ESCAPE ESCAPE_END_OBJECT
  27. ReferenceSection -> ESCAPE number:relativeOffset (number < 0)
  28. EscapeSection -> ESCAPE ESCAPE_ESCAPE_VALUE (escaped value ESCAPE)
  29. EscapeSection -> ESCAPE ESCAPE_UNDEFINED (escaped value ESCAPE)
  30. OtherSection -> any (except ESCAPE)
  31. Why using null as escape value?
  32. Multiple null values can merged by the BinaryMiddleware, which makes it very efficient
  33. Technically any value can be used.
  34. */
  35. /**
  36. * @typedef {object} ObjectSerializerContext
  37. * @property {function(any): void} write
  38. * @property {(function(any): void)=} writeLazy
  39. * @property {(function(any, object=): (() => Promise<any> | any))=} writeSeparate
  40. * @property {function(any): void} setCircularReference
  41. */
  42. /**
  43. * @typedef {object} ObjectDeserializerContext
  44. * @property {function(): any} read
  45. * @property {function(any): void} setCircularReference
  46. */
  47. /**
  48. * @typedef {object} ObjectSerializer
  49. * @property {function(any, ObjectSerializerContext): void} serialize
  50. * @property {function(ObjectDeserializerContext): any} deserialize
  51. */
  52. /**
  53. * @template T
  54. * @param {Set<T>} set set
  55. * @param {number} size count of items to keep
  56. */
  57. const setSetSize = (set, size) => {
  58. let i = 0;
  59. for (const item of set) {
  60. if (i++ >= size) {
  61. set.delete(item);
  62. }
  63. }
  64. };
  65. /**
  66. * @template K, X
  67. * @param {Map<K, X>} map map
  68. * @param {number} size count of items to keep
  69. */
  70. const setMapSize = (map, size) => {
  71. let i = 0;
  72. for (const item of map.keys()) {
  73. if (i++ >= size) {
  74. map.delete(item);
  75. }
  76. }
  77. };
  78. /**
  79. * @param {Buffer} buffer buffer
  80. * @param {string | Hash} hashFunction hash function to use
  81. * @returns {string} hash
  82. */
  83. const toHash = (buffer, hashFunction) => {
  84. const hash = createHash(hashFunction);
  85. hash.update(buffer);
  86. return /** @type {string} */ (hash.digest("latin1"));
  87. };
  88. const ESCAPE = null;
  89. const ESCAPE_ESCAPE_VALUE = null;
  90. const ESCAPE_END_OBJECT = true;
  91. const ESCAPE_UNDEFINED = false;
  92. const CURRENT_VERSION = 2;
  93. /** @type {Map<Constructor, { request?: string, name?: string | number | null, serializer?: ObjectSerializer }>} */
  94. const serializers = new Map();
  95. /** @type {Map<string | number, ObjectSerializer>} */
  96. const serializerInversed = new Map();
  97. /** @type {Set<string>} */
  98. const loadedRequests = new Set();
  99. const NOT_SERIALIZABLE = {};
  100. const jsTypes = new Map();
  101. jsTypes.set(Object, new PlainObjectSerializer());
  102. jsTypes.set(Array, new ArraySerializer());
  103. jsTypes.set(null, new NullPrototypeObjectSerializer());
  104. jsTypes.set(Map, new MapObjectSerializer());
  105. jsTypes.set(Set, new SetObjectSerializer());
  106. jsTypes.set(Date, new DateObjectSerializer());
  107. jsTypes.set(RegExp, new RegExpObjectSerializer());
  108. jsTypes.set(Error, new ErrorObjectSerializer(Error));
  109. jsTypes.set(EvalError, new ErrorObjectSerializer(EvalError));
  110. jsTypes.set(RangeError, new ErrorObjectSerializer(RangeError));
  111. jsTypes.set(ReferenceError, new ErrorObjectSerializer(ReferenceError));
  112. jsTypes.set(SyntaxError, new ErrorObjectSerializer(SyntaxError));
  113. jsTypes.set(TypeError, new ErrorObjectSerializer(TypeError));
  114. // If in a sandboxed environment (e. g. jest), this escapes the sandbox and registers
  115. // real Object and Array types to. These types may occur in the wild too, e. g. when
  116. // using Structured Clone in postMessage.
  117. // eslint-disable-next-line n/exports-style
  118. if (exports.constructor !== Object) {
  119. // eslint-disable-next-line jsdoc/check-types, n/exports-style
  120. const Obj = /** @type {typeof Object} */ (exports.constructor);
  121. const Fn = /** @type {typeof Function} */ (Obj.constructor);
  122. for (const [type, config] of Array.from(jsTypes)) {
  123. if (type) {
  124. const Type = new Fn(`return ${type.name};`)();
  125. jsTypes.set(Type, config);
  126. }
  127. }
  128. }
  129. {
  130. let i = 1;
  131. for (const [type, serializer] of jsTypes) {
  132. serializers.set(type, {
  133. request: "",
  134. name: i++,
  135. serializer
  136. });
  137. }
  138. }
  139. for (const { request, name, serializer } of serializers.values()) {
  140. serializerInversed.set(
  141. `${request}/${name}`,
  142. /** @type {ObjectSerializer} */ (serializer)
  143. );
  144. }
  145. /** @type {Map<RegExp, (request: string) => boolean>} */
  146. const loaders = new Map();
  147. /**
  148. * @typedef {ComplexSerializableType[]} DeserializedType
  149. * @typedef {PrimitiveSerializableType[]} SerializedType
  150. * @extends {SerializerMiddleware<DeserializedType, SerializedType>}
  151. */
  152. class ObjectMiddleware extends SerializerMiddleware {
  153. /**
  154. * @param {function(any): void} extendContext context extensions
  155. * @param {string | Hash} hashFunction hash function to use
  156. */
  157. constructor(extendContext, hashFunction = "md4") {
  158. super();
  159. this.extendContext = extendContext;
  160. this._hashFunction = hashFunction;
  161. }
  162. /**
  163. * @param {RegExp} regExp RegExp for which the request is tested
  164. * @param {function(string): boolean} loader loader to load the request, returns true when successful
  165. * @returns {void}
  166. */
  167. static registerLoader(regExp, loader) {
  168. loaders.set(regExp, loader);
  169. }
  170. /**
  171. * @param {Constructor} Constructor the constructor
  172. * @param {string} request the request which will be required when deserializing
  173. * @param {string | null} name the name to make multiple serializer unique when sharing a request
  174. * @param {ObjectSerializer} serializer the serializer
  175. * @returns {void}
  176. */
  177. static register(Constructor, request, name, serializer) {
  178. const key = `${request}/${name}`;
  179. if (serializers.has(Constructor)) {
  180. throw new Error(
  181. `ObjectMiddleware.register: serializer for ${Constructor.name} is already registered`
  182. );
  183. }
  184. if (serializerInversed.has(key)) {
  185. throw new Error(
  186. `ObjectMiddleware.register: serializer for ${key} is already registered`
  187. );
  188. }
  189. serializers.set(Constructor, {
  190. request,
  191. name,
  192. serializer
  193. });
  194. serializerInversed.set(key, serializer);
  195. }
  196. /**
  197. * @param {Constructor} Constructor the constructor
  198. * @returns {void}
  199. */
  200. static registerNotSerializable(Constructor) {
  201. if (serializers.has(Constructor)) {
  202. throw new Error(
  203. `ObjectMiddleware.registerNotSerializable: serializer for ${Constructor.name} is already registered`
  204. );
  205. }
  206. serializers.set(Constructor, NOT_SERIALIZABLE);
  207. }
  208. static getSerializerFor(object) {
  209. const proto = Object.getPrototypeOf(object);
  210. let c;
  211. if (proto === null) {
  212. // Object created with Object.create(null)
  213. c = null;
  214. } else {
  215. c = proto.constructor;
  216. if (!c) {
  217. throw new Error(
  218. "Serialization of objects with prototype without valid constructor property not possible"
  219. );
  220. }
  221. }
  222. const config = serializers.get(c);
  223. if (!config) throw new Error(`No serializer registered for ${c.name}`);
  224. if (config === NOT_SERIALIZABLE) throw NOT_SERIALIZABLE;
  225. return config;
  226. }
  227. /**
  228. * @param {string} request request
  229. * @param {TODO} name name
  230. * @returns {ObjectSerializer} serializer
  231. */
  232. static getDeserializerFor(request, name) {
  233. const key = `${request}/${name}`;
  234. const serializer = serializerInversed.get(key);
  235. if (serializer === undefined) {
  236. throw new Error(`No deserializer registered for ${key}`);
  237. }
  238. return serializer;
  239. }
  240. /**
  241. * @param {string} request request
  242. * @param {string} name name
  243. * @returns {ObjectSerializer | undefined} serializer
  244. */
  245. static _getDeserializerForWithoutError(request, name) {
  246. const key = `${request}/${name}`;
  247. const serializer = serializerInversed.get(key);
  248. return serializer;
  249. }
  250. /**
  251. * @param {DeserializedType} data data
  252. * @param {object} context context object
  253. * @returns {SerializedType|Promise<SerializedType>} serialized data
  254. */
  255. serialize(data, context) {
  256. /** @type {any[]} */
  257. let result = [CURRENT_VERSION];
  258. let currentPos = 0;
  259. let referenceable = new Map();
  260. const addReferenceable = item => {
  261. referenceable.set(item, currentPos++);
  262. };
  263. let bufferDedupeMap = new Map();
  264. /**
  265. * @param {Buffer} buf buffer
  266. * @returns {Buffer} deduped buffer
  267. */
  268. const dedupeBuffer = buf => {
  269. const len = buf.length;
  270. const entry = bufferDedupeMap.get(len);
  271. if (entry === undefined) {
  272. bufferDedupeMap.set(len, buf);
  273. return buf;
  274. }
  275. if (Buffer.isBuffer(entry)) {
  276. if (len < 32) {
  277. if (buf.equals(entry)) {
  278. return entry;
  279. }
  280. bufferDedupeMap.set(len, [entry, buf]);
  281. return buf;
  282. }
  283. const hash = toHash(entry, this._hashFunction);
  284. const newMap = new Map();
  285. newMap.set(hash, entry);
  286. bufferDedupeMap.set(len, newMap);
  287. const hashBuf = toHash(buf, this._hashFunction);
  288. if (hash === hashBuf) {
  289. return entry;
  290. }
  291. return buf;
  292. } else if (Array.isArray(entry)) {
  293. if (entry.length < 16) {
  294. for (const item of entry) {
  295. if (buf.equals(item)) {
  296. return item;
  297. }
  298. }
  299. entry.push(buf);
  300. return buf;
  301. }
  302. const newMap = new Map();
  303. const hash = toHash(buf, this._hashFunction);
  304. let found;
  305. for (const item of entry) {
  306. const itemHash = toHash(item, this._hashFunction);
  307. newMap.set(itemHash, item);
  308. if (found === undefined && itemHash === hash) found = item;
  309. }
  310. bufferDedupeMap.set(len, newMap);
  311. if (found === undefined) {
  312. newMap.set(hash, buf);
  313. return buf;
  314. }
  315. return found;
  316. }
  317. const hash = toHash(buf, this._hashFunction);
  318. const item = entry.get(hash);
  319. if (item !== undefined) {
  320. return item;
  321. }
  322. entry.set(hash, buf);
  323. return buf;
  324. };
  325. let currentPosTypeLookup = 0;
  326. let objectTypeLookup = new Map();
  327. const cycleStack = new Set();
  328. const stackToString = item => {
  329. const arr = Array.from(cycleStack);
  330. arr.push(item);
  331. return arr
  332. .map(item => {
  333. if (typeof item === "string") {
  334. if (item.length > 100) {
  335. return `String ${JSON.stringify(item.slice(0, 100)).slice(
  336. 0,
  337. -1
  338. )}..."`;
  339. }
  340. return `String ${JSON.stringify(item)}`;
  341. }
  342. try {
  343. const { request, name } = ObjectMiddleware.getSerializerFor(item);
  344. if (request) {
  345. return `${request}${name ? `.${name}` : ""}`;
  346. }
  347. } catch (_err) {
  348. // ignore -> fallback
  349. }
  350. if (typeof item === "object" && item !== null) {
  351. if (item.constructor) {
  352. if (item.constructor === Object)
  353. return `Object { ${Object.keys(item).join(", ")} }`;
  354. if (item.constructor === Map) return `Map { ${item.size} items }`;
  355. if (item.constructor === Array)
  356. return `Array { ${item.length} items }`;
  357. if (item.constructor === Set) return `Set { ${item.size} items }`;
  358. if (item.constructor === RegExp) return item.toString();
  359. return `${item.constructor.name}`;
  360. }
  361. return `Object [null prototype] { ${Object.keys(item).join(
  362. ", "
  363. )} }`;
  364. }
  365. if (typeof item === "bigint") {
  366. return `BigInt ${item}n`;
  367. }
  368. try {
  369. return `${item}`;
  370. } catch (err) {
  371. return `(${err.message})`;
  372. }
  373. })
  374. .join(" -> ");
  375. };
  376. /** @type {WeakSet<Error>} */
  377. let hasDebugInfoAttached;
  378. let ctx = {
  379. write(value, key) {
  380. try {
  381. process(value);
  382. } catch (err) {
  383. if (err !== NOT_SERIALIZABLE) {
  384. if (hasDebugInfoAttached === undefined)
  385. hasDebugInfoAttached = new WeakSet();
  386. if (!hasDebugInfoAttached.has(/** @type {Error} */ (err))) {
  387. /** @type {Error} */
  388. (err).message += `\nwhile serializing ${stackToString(value)}`;
  389. hasDebugInfoAttached.add(/** @type {Error} */ (err));
  390. }
  391. }
  392. throw err;
  393. }
  394. },
  395. setCircularReference(ref) {
  396. addReferenceable(ref);
  397. },
  398. snapshot() {
  399. return {
  400. length: result.length,
  401. cycleStackSize: cycleStack.size,
  402. referenceableSize: referenceable.size,
  403. currentPos,
  404. objectTypeLookupSize: objectTypeLookup.size,
  405. currentPosTypeLookup
  406. };
  407. },
  408. rollback(snapshot) {
  409. result.length = snapshot.length;
  410. setSetSize(cycleStack, snapshot.cycleStackSize);
  411. setMapSize(referenceable, snapshot.referenceableSize);
  412. currentPos = snapshot.currentPos;
  413. setMapSize(objectTypeLookup, snapshot.objectTypeLookupSize);
  414. currentPosTypeLookup = snapshot.currentPosTypeLookup;
  415. },
  416. ...context
  417. };
  418. this.extendContext(ctx);
  419. const process = item => {
  420. if (Buffer.isBuffer(item)) {
  421. // check if we can emit a reference
  422. const ref = referenceable.get(item);
  423. if (ref !== undefined) {
  424. result.push(ESCAPE, ref - currentPos);
  425. return;
  426. }
  427. const alreadyUsedBuffer = dedupeBuffer(item);
  428. if (alreadyUsedBuffer !== item) {
  429. const ref = referenceable.get(alreadyUsedBuffer);
  430. if (ref !== undefined) {
  431. referenceable.set(item, ref);
  432. result.push(ESCAPE, ref - currentPos);
  433. return;
  434. }
  435. item = alreadyUsedBuffer;
  436. }
  437. addReferenceable(item);
  438. result.push(item);
  439. } else if (item === ESCAPE) {
  440. result.push(ESCAPE, ESCAPE_ESCAPE_VALUE);
  441. } else if (
  442. typeof item === "object"
  443. // We don't have to check for null as ESCAPE is null and this has been checked before
  444. ) {
  445. // check if we can emit a reference
  446. const ref = referenceable.get(item);
  447. if (ref !== undefined) {
  448. result.push(ESCAPE, ref - currentPos);
  449. return;
  450. }
  451. if (cycleStack.has(item)) {
  452. throw new Error(
  453. "This is a circular references. To serialize circular references use 'setCircularReference' somewhere in the circle during serialize and deserialize."
  454. );
  455. }
  456. const { request, name, serializer } =
  457. ObjectMiddleware.getSerializerFor(item);
  458. const key = `${request}/${name}`;
  459. const lastIndex = objectTypeLookup.get(key);
  460. if (lastIndex === undefined) {
  461. objectTypeLookup.set(key, currentPosTypeLookup++);
  462. result.push(ESCAPE, request, name);
  463. } else {
  464. result.push(ESCAPE, currentPosTypeLookup - lastIndex);
  465. }
  466. cycleStack.add(item);
  467. try {
  468. serializer.serialize(item, ctx);
  469. } finally {
  470. cycleStack.delete(item);
  471. }
  472. result.push(ESCAPE, ESCAPE_END_OBJECT);
  473. addReferenceable(item);
  474. } else if (typeof item === "string") {
  475. if (item.length > 1) {
  476. // short strings are shorter when not emitting a reference (this saves 1 byte per empty string)
  477. // check if we can emit a reference
  478. const ref = referenceable.get(item);
  479. if (ref !== undefined) {
  480. result.push(ESCAPE, ref - currentPos);
  481. return;
  482. }
  483. addReferenceable(item);
  484. }
  485. if (item.length > 102400 && context.logger) {
  486. context.logger.warn(
  487. `Serializing big strings (${Math.round(
  488. item.length / 1024
  489. )}kiB) impacts deserialization performance (consider using Buffer instead and decode when needed)`
  490. );
  491. }
  492. result.push(item);
  493. } else if (typeof item === "function") {
  494. if (!SerializerMiddleware.isLazy(item))
  495. throw new Error(`Unexpected function ${item}`);
  496. /** @type {SerializedType} */
  497. const serializedData =
  498. SerializerMiddleware.getLazySerializedValue(item);
  499. if (serializedData !== undefined) {
  500. if (typeof serializedData === "function") {
  501. result.push(serializedData);
  502. } else {
  503. throw new Error("Not implemented");
  504. }
  505. } else if (SerializerMiddleware.isLazy(item, this)) {
  506. throw new Error("Not implemented");
  507. } else {
  508. const data = SerializerMiddleware.serializeLazy(item, data =>
  509. this.serialize([data], context)
  510. );
  511. SerializerMiddleware.setLazySerializedValue(item, data);
  512. result.push(data);
  513. }
  514. } else if (item === undefined) {
  515. result.push(ESCAPE, ESCAPE_UNDEFINED);
  516. } else {
  517. result.push(item);
  518. }
  519. };
  520. try {
  521. for (const item of data) {
  522. process(item);
  523. }
  524. return result;
  525. } catch (err) {
  526. if (err === NOT_SERIALIZABLE) return null;
  527. throw err;
  528. } finally {
  529. // Get rid of these references to avoid leaking memory
  530. // This happens because the optimized code v8 generates
  531. // is optimized for our "ctx.write" method so it will reference
  532. // it from e. g. Dependency.prototype.serialize -(IC)-> ctx.write
  533. data =
  534. result =
  535. referenceable =
  536. bufferDedupeMap =
  537. objectTypeLookup =
  538. ctx =
  539. /** @type {EXPECTED_ANY} */
  540. (undefined);
  541. }
  542. }
  543. /**
  544. * @param {SerializedType} data data
  545. * @param {object} context context object
  546. * @returns {DeserializedType|Promise<DeserializedType>} deserialized data
  547. */
  548. deserialize(data, context) {
  549. let currentDataPos = 0;
  550. const read = () => {
  551. if (currentDataPos >= data.length)
  552. throw new Error("Unexpected end of stream");
  553. return data[currentDataPos++];
  554. };
  555. if (read() !== CURRENT_VERSION)
  556. throw new Error("Version mismatch, serializer changed");
  557. let currentPos = 0;
  558. let referenceable = [];
  559. const addReferenceable = item => {
  560. referenceable.push(item);
  561. currentPos++;
  562. };
  563. let currentPosTypeLookup = 0;
  564. let objectTypeLookup = [];
  565. let result = [];
  566. let ctx = {
  567. read() {
  568. return decodeValue();
  569. },
  570. setCircularReference(ref) {
  571. addReferenceable(ref);
  572. },
  573. ...context
  574. };
  575. this.extendContext(ctx);
  576. const decodeValue = () => {
  577. const item = read();
  578. if (item === ESCAPE) {
  579. const nextItem = read();
  580. if (nextItem === ESCAPE_ESCAPE_VALUE) {
  581. return ESCAPE;
  582. } else if (nextItem === ESCAPE_UNDEFINED) {
  583. // Nothing
  584. } else if (nextItem === ESCAPE_END_OBJECT) {
  585. throw new Error(
  586. `Unexpected end of object at position ${currentDataPos - 1}`
  587. );
  588. } else {
  589. const request = nextItem;
  590. let serializer;
  591. if (typeof request === "number") {
  592. if (request < 0) {
  593. // relative reference
  594. return referenceable[currentPos + request];
  595. }
  596. serializer = objectTypeLookup[currentPosTypeLookup - request];
  597. } else {
  598. if (typeof request !== "string") {
  599. throw new Error(
  600. `Unexpected type (${typeof request}) of request ` +
  601. `at position ${currentDataPos - 1}`
  602. );
  603. }
  604. const name = /** @type {string} */ (read());
  605. serializer = ObjectMiddleware._getDeserializerForWithoutError(
  606. request,
  607. name
  608. );
  609. if (serializer === undefined) {
  610. if (request && !loadedRequests.has(request)) {
  611. let loaded = false;
  612. for (const [regExp, loader] of loaders) {
  613. if (regExp.test(request) && loader(request)) {
  614. loaded = true;
  615. break;
  616. }
  617. }
  618. if (!loaded) {
  619. require(request);
  620. }
  621. loadedRequests.add(request);
  622. }
  623. serializer = ObjectMiddleware.getDeserializerFor(request, name);
  624. }
  625. objectTypeLookup.push(serializer);
  626. currentPosTypeLookup++;
  627. }
  628. try {
  629. const item = serializer.deserialize(ctx);
  630. const end1 = read();
  631. if (end1 !== ESCAPE) {
  632. throw new Error("Expected end of object");
  633. }
  634. const end2 = read();
  635. if (end2 !== ESCAPE_END_OBJECT) {
  636. throw new Error("Expected end of object");
  637. }
  638. addReferenceable(item);
  639. return item;
  640. } catch (err) {
  641. // As this is only for error handling, we omit creating a Map for
  642. // faster access to this information, as this would affect performance
  643. // in the good case
  644. let serializerEntry;
  645. for (const entry of serializers) {
  646. if (entry[1].serializer === serializer) {
  647. serializerEntry = entry;
  648. break;
  649. }
  650. }
  651. const name = !serializerEntry
  652. ? "unknown"
  653. : !serializerEntry[1].request
  654. ? serializerEntry[0].name
  655. : serializerEntry[1].name
  656. ? `${serializerEntry[1].request} ${serializerEntry[1].name}`
  657. : serializerEntry[1].request;
  658. /** @type {Error} */
  659. (err).message += `\n(during deserialization of ${name})`;
  660. throw err;
  661. }
  662. }
  663. } else if (typeof item === "string") {
  664. if (item.length > 1) {
  665. addReferenceable(item);
  666. }
  667. return item;
  668. } else if (Buffer.isBuffer(item)) {
  669. addReferenceable(item);
  670. return item;
  671. } else if (typeof item === "function") {
  672. return SerializerMiddleware.deserializeLazy(
  673. item,
  674. data => this.deserialize(data, context)[0]
  675. );
  676. } else {
  677. return item;
  678. }
  679. };
  680. try {
  681. while (currentDataPos < data.length) {
  682. result.push(decodeValue());
  683. }
  684. return result;
  685. } finally {
  686. // Get rid of these references to avoid leaking memory
  687. // This happens because the optimized code v8 generates
  688. // is optimized for our "ctx.read" method so it will reference
  689. // it from e. g. Dependency.prototype.deserialize -(IC)-> ctx.read
  690. result =
  691. referenceable =
  692. data =
  693. objectTypeLookup =
  694. ctx =
  695. /** @type {EXPECTED_ANY} */
  696. (undefined);
  697. }
  698. }
  699. }
  700. module.exports = ObjectMiddleware;
  701. module.exports.NOT_SERIALIZABLE = NOT_SERIALIZABLE;