Object.cpp 44 KB

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  1. /*
  2. * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2020-2021, Linus Groh <linusg@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/String.h>
  8. #include <LibJS/Interpreter.h>
  9. #include <LibJS/Runtime/AbstractOperations.h>
  10. #include <LibJS/Runtime/Accessor.h>
  11. #include <LibJS/Runtime/Array.h>
  12. #include <LibJS/Runtime/ECMAScriptFunctionObject.h>
  13. #include <LibJS/Runtime/Error.h>
  14. #include <LibJS/Runtime/GlobalObject.h>
  15. #include <LibJS/Runtime/NativeFunction.h>
  16. #include <LibJS/Runtime/Object.h>
  17. #include <LibJS/Runtime/PropertyDescriptor.h>
  18. #include <LibJS/Runtime/ProxyObject.h>
  19. #include <LibJS/Runtime/Shape.h>
  20. #include <LibJS/Runtime/TemporaryClearException.h>
  21. #include <LibJS/Runtime/Value.h>
  22. namespace JS {
  23. // 10.1.12 OrdinaryObjectCreate ( proto [ , additionalInternalSlotsList ] ), https://tc39.es/ecma262/#sec-ordinaryobjectcreate
  24. Object* Object::create(GlobalObject& global_object, Object* prototype)
  25. {
  26. if (!prototype)
  27. return global_object.heap().allocate<Object>(global_object, *global_object.empty_object_shape());
  28. else if (prototype == global_object.object_prototype())
  29. return global_object.heap().allocate<Object>(global_object, *global_object.new_object_shape());
  30. else
  31. return global_object.heap().allocate<Object>(global_object, *prototype);
  32. }
  33. Object::Object(GlobalObjectTag)
  34. {
  35. // This is the global object
  36. m_shape = heap().allocate_without_global_object<Shape>(*this);
  37. }
  38. Object::Object(ConstructWithoutPrototypeTag, GlobalObject& global_object)
  39. {
  40. m_shape = heap().allocate_without_global_object<Shape>(global_object);
  41. }
  42. Object::Object(Object& prototype)
  43. {
  44. m_shape = prototype.global_object().empty_object_shape();
  45. set_prototype(&prototype);
  46. }
  47. Object::Object(Shape& shape)
  48. : m_shape(&shape)
  49. {
  50. m_storage.resize(shape.property_count());
  51. }
  52. void Object::initialize(GlobalObject&)
  53. {
  54. }
  55. Object::~Object()
  56. {
  57. }
  58. // 7.2 Testing and Comparison Operations, https://tc39.es/ecma262/#sec-testing-and-comparison-operations
  59. // 7.2.5 IsExtensible ( O ), https://tc39.es/ecma262/#sec-isextensible-o
  60. ThrowCompletionOr<bool> Object::is_extensible() const
  61. {
  62. // 1. Return ? O.[[IsExtensible]]().
  63. return internal_is_extensible();
  64. }
  65. // 7.3 Operations on Objects, https://tc39.es/ecma262/#sec-operations-on-objects
  66. // 7.3.2 Get ( O, P ), https://tc39.es/ecma262/#sec-get-o-p
  67. ThrowCompletionOr<Value> Object::get(PropertyKey const& property_key) const
  68. {
  69. // 1. Assert: Type(O) is Object.
  70. // 2. Assert: IsPropertyKey(P) is true.
  71. VERIFY(property_key.is_valid());
  72. // 3. Return ? O.[[Get]](P, O).
  73. return TRY(internal_get(property_key, this));
  74. }
  75. // NOTE: 7.3.3 GetV ( V, P ) is implemented as Value::get().
  76. // 7.3.4 Set ( O, P, V, Throw ), https://tc39.es/ecma262/#sec-set-o-p-v-throw
  77. ThrowCompletionOr<bool> Object::set(PropertyKey const& property_key, Value value, ShouldThrowExceptions throw_exceptions)
  78. {
  79. VERIFY(!value.is_empty());
  80. auto& vm = this->vm();
  81. // 1. Assert: Type(O) is Object.
  82. // 2. Assert: IsPropertyKey(P) is true.
  83. VERIFY(property_key.is_valid());
  84. // 3. Assert: Type(Throw) is Boolean.
  85. // 4. Let success be ? O.[[Set]](P, V, O).
  86. auto success = TRY(internal_set(property_key, value, this));
  87. // 5. If success is false and Throw is true, throw a TypeError exception.
  88. if (!success && throw_exceptions == ShouldThrowExceptions::Yes) {
  89. // FIXME: Improve/contextualize error message
  90. return vm.throw_completion<TypeError>(global_object(), ErrorType::ObjectSetReturnedFalse);
  91. }
  92. // 6. Return success.
  93. return success;
  94. }
  95. // 7.3.5 CreateDataProperty ( O, P, V ), https://tc39.es/ecma262/#sec-createdataproperty
  96. ThrowCompletionOr<bool> Object::create_data_property(PropertyKey const& property_key, Value value)
  97. {
  98. // 1. Assert: Type(O) is Object.
  99. // 2. Assert: IsPropertyKey(P) is true.
  100. VERIFY(property_key.is_valid());
  101. // 3. Let newDesc be the PropertyDescriptor { [[Value]]: V, [[Writable]]: true, [[Enumerable]]: true, [[Configurable]]: true }.
  102. auto new_descriptor = PropertyDescriptor {
  103. .value = value,
  104. .writable = true,
  105. .enumerable = true,
  106. .configurable = true,
  107. };
  108. // 4. Return ? O.[[DefineOwnProperty]](P, newDesc).
  109. return internal_define_own_property(property_key, new_descriptor);
  110. }
  111. // 7.3.6 CreateMethodProperty ( O, P, V ), https://tc39.es/ecma262/#sec-createmethodproperty
  112. ThrowCompletionOr<bool> Object::create_method_property(PropertyKey const& property_key, Value value)
  113. {
  114. VERIFY(!value.is_empty());
  115. // 1. Assert: Type(O) is Object.
  116. // 2. Assert: IsPropertyKey(P) is true.
  117. VERIFY(property_key.is_valid());
  118. // 3. Let newDesc be the PropertyDescriptor { [[Value]]: V, [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }.
  119. auto new_descriptor = PropertyDescriptor {
  120. .value = value,
  121. .writable = true,
  122. .enumerable = false,
  123. .configurable = true,
  124. };
  125. // 4. Return ? O.[[DefineOwnProperty]](P, newDesc).
  126. return internal_define_own_property(property_key, new_descriptor);
  127. }
  128. // 7.3.7 CreateDataPropertyOrThrow ( O, P, V ), https://tc39.es/ecma262/#sec-createdatapropertyorthrow
  129. ThrowCompletionOr<bool> Object::create_data_property_or_throw(PropertyKey const& property_key, Value value)
  130. {
  131. VERIFY(!value.is_empty());
  132. auto& vm = this->vm();
  133. // 1. Assert: Type(O) is Object.
  134. // 2. Assert: IsPropertyKey(P) is true.
  135. VERIFY(property_key.is_valid());
  136. // 3. Let success be ? CreateDataProperty(O, P, V).
  137. auto success = TRY(create_data_property(property_key, value));
  138. // 4. If success is false, throw a TypeError exception.
  139. if (!success) {
  140. // FIXME: Improve/contextualize error message
  141. return vm.throw_completion<TypeError>(global_object(), ErrorType::ObjectDefineOwnPropertyReturnedFalse);
  142. }
  143. // 5. Return success.
  144. return success;
  145. }
  146. // 7.3.8 CreateNonEnumerableDataPropertyOrThrow ( O, P, V ), https://tc39.es/ecma262/#sec-createnonenumerabledatapropertyorthrow
  147. ThrowCompletionOr<bool> Object::create_non_enumerable_data_property_or_throw(PropertyKey const& property_key, Value value)
  148. {
  149. VERIFY(!value.is_empty());
  150. VERIFY(property_key.is_valid());
  151. // 1. Let newDesc be the PropertyDescriptor { [[Value]]: V, [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }.
  152. auto new_description = PropertyDescriptor { .value = value, .writable = true, .enumerable = false, .configurable = true };
  153. // 2. Return ? DefinePropertyOrThrow(O, P, newDesc).
  154. return define_property_or_throw(property_key, new_description);
  155. }
  156. // 7.3.9 DefinePropertyOrThrow ( O, P, desc ), https://tc39.es/ecma262/#sec-definepropertyorthrow
  157. ThrowCompletionOr<bool> Object::define_property_or_throw(PropertyKey const& property_key, PropertyDescriptor const& property_descriptor)
  158. {
  159. auto& vm = this->vm();
  160. // 1. Assert: Type(O) is Object.
  161. // 2. Assert: IsPropertyKey(P) is true.
  162. VERIFY(property_key.is_valid());
  163. // 3. Let success be ? O.[[DefineOwnProperty]](P, desc).
  164. auto success = TRY(internal_define_own_property(property_key, property_descriptor));
  165. // 4. If success is false, throw a TypeError exception.
  166. if (!success) {
  167. // FIXME: Improve/contextualize error message
  168. return vm.throw_completion<TypeError>(global_object(), ErrorType::ObjectDefineOwnPropertyReturnedFalse);
  169. }
  170. // 5. Return success.
  171. return success;
  172. }
  173. // 7.3.10 DeletePropertyOrThrow ( O, P ), https://tc39.es/ecma262/#sec-deletepropertyorthrow
  174. ThrowCompletionOr<bool> Object::delete_property_or_throw(PropertyKey const& property_key)
  175. {
  176. auto& vm = this->vm();
  177. // 1. Assert: Type(O) is Object.
  178. // 2. Assert: IsPropertyKey(P) is true.
  179. VERIFY(property_key.is_valid());
  180. // 3. Let success be ? O.[[Delete]](P).
  181. auto success = TRY(internal_delete(property_key));
  182. // 4. If success is false, throw a TypeError exception.
  183. if (!success) {
  184. // FIXME: Improve/contextualize error message
  185. return vm.throw_completion<TypeError>(global_object(), ErrorType::ObjectDeleteReturnedFalse);
  186. }
  187. // 5. Return success.
  188. return success;
  189. }
  190. // 7.3.12 HasProperty ( O, P ), https://tc39.es/ecma262/#sec-hasproperty
  191. ThrowCompletionOr<bool> Object::has_property(PropertyKey const& property_key) const
  192. {
  193. // 1. Assert: Type(O) is Object.
  194. // 2. Assert: IsPropertyKey(P) is true.
  195. VERIFY(property_key.is_valid());
  196. // 3. Return ? O.[[HasProperty]](P).
  197. return internal_has_property(property_key);
  198. }
  199. // 7.3.13 HasOwnProperty ( O, P ), https://tc39.es/ecma262/#sec-hasownproperty
  200. ThrowCompletionOr<bool> Object::has_own_property(PropertyKey const& property_key) const
  201. {
  202. // 1. Assert: Type(O) is Object.
  203. // 2. Assert: IsPropertyKey(P) is true.
  204. VERIFY(property_key.is_valid());
  205. // 3. Let desc be ? O.[[GetOwnProperty]](P).
  206. auto descriptor = TRY(internal_get_own_property(property_key));
  207. // 4. If desc is undefined, return false.
  208. if (!descriptor.has_value())
  209. return false;
  210. // 5. Return true.
  211. return true;
  212. }
  213. // 7.3.16 SetIntegrityLevel ( O, level ), https://tc39.es/ecma262/#sec-setintegritylevel
  214. ThrowCompletionOr<bool> Object::set_integrity_level(IntegrityLevel level)
  215. {
  216. auto& global_object = this->global_object();
  217. // 1. Assert: Type(O) is Object.
  218. // 2. Assert: level is either sealed or frozen.
  219. VERIFY(level == IntegrityLevel::Sealed || level == IntegrityLevel::Frozen);
  220. // 3. Let status be ? O.[[PreventExtensions]]().
  221. auto status = TRY(internal_prevent_extensions());
  222. // 4. If status is false, return false.
  223. if (!status)
  224. return false;
  225. // 5. Let keys be ? O.[[OwnPropertyKeys]]().
  226. auto keys = TRY(internal_own_property_keys());
  227. // 6. If level is sealed, then
  228. if (level == IntegrityLevel::Sealed) {
  229. // a. For each element k of keys, do
  230. for (auto& key : keys) {
  231. auto property_key = MUST(PropertyKey::from_value(global_object, key));
  232. // i. Perform ? DefinePropertyOrThrow(O, k, PropertyDescriptor { [[Configurable]]: false }).
  233. TRY(define_property_or_throw(property_key, { .configurable = false }));
  234. }
  235. }
  236. // 7. Else,
  237. else {
  238. // a. Assert: level is frozen.
  239. // b. For each element k of keys, do
  240. for (auto& key : keys) {
  241. auto property_key = MUST(PropertyKey::from_value(global_object, key));
  242. // i. Let currentDesc be ? O.[[GetOwnProperty]](k).
  243. auto current_descriptor = TRY(internal_get_own_property(property_key));
  244. // ii. If currentDesc is not undefined, then
  245. if (!current_descriptor.has_value())
  246. continue;
  247. PropertyDescriptor descriptor;
  248. // 1. If IsAccessorDescriptor(currentDesc) is true, then
  249. if (current_descriptor->is_accessor_descriptor()) {
  250. // a. Let desc be the PropertyDescriptor { [[Configurable]]: false }.
  251. descriptor = { .configurable = false };
  252. }
  253. // 2. Else,
  254. else {
  255. // a. Let desc be the PropertyDescriptor { [[Configurable]]: false, [[Writable]]: false }.
  256. descriptor = { .writable = false, .configurable = false };
  257. }
  258. // 3. Perform ? DefinePropertyOrThrow(O, k, desc).
  259. TRY(define_property_or_throw(property_key, descriptor));
  260. }
  261. }
  262. // 8. Return true.
  263. return true;
  264. }
  265. // 7.3.17 TestIntegrityLevel ( O, level ), https://tc39.es/ecma262/#sec-testintegritylevel
  266. ThrowCompletionOr<bool> Object::test_integrity_level(IntegrityLevel level) const
  267. {
  268. // 1. Assert: Type(O) is Object.
  269. // 2. Assert: level is either sealed or frozen.
  270. VERIFY(level == IntegrityLevel::Sealed || level == IntegrityLevel::Frozen);
  271. // 3. Let extensible be ? IsExtensible(O).
  272. auto extensible = TRY(is_extensible());
  273. // 4. If extensible is true, return false.
  274. // 5. NOTE: If the object is extensible, none of its properties are examined.
  275. if (extensible)
  276. return false;
  277. // 6. Let keys be ? O.[[OwnPropertyKeys]]().
  278. auto keys = TRY(internal_own_property_keys());
  279. // 7. For each element k of keys, do
  280. for (auto& key : keys) {
  281. auto property_key = MUST(PropertyKey::from_value(global_object(), key));
  282. // a. Let currentDesc be ? O.[[GetOwnProperty]](k).
  283. auto current_descriptor = TRY(internal_get_own_property(property_key));
  284. // b. If currentDesc is not undefined, then
  285. if (!current_descriptor.has_value())
  286. continue;
  287. // i. If currentDesc.[[Configurable]] is true, return false.
  288. if (*current_descriptor->configurable)
  289. return false;
  290. // ii. If level is frozen and IsDataDescriptor(currentDesc) is true, then
  291. if (level == IntegrityLevel::Frozen && current_descriptor->is_data_descriptor()) {
  292. // 1. If currentDesc.[[Writable]] is true, return false.
  293. if (*current_descriptor->writable)
  294. return false;
  295. }
  296. }
  297. // 8. Return true.
  298. return true;
  299. }
  300. // 7.3.24 EnumerableOwnPropertyNames ( O, kind ), https://tc39.es/ecma262/#sec-enumerableownpropertynames
  301. ThrowCompletionOr<MarkedValueList> Object::enumerable_own_property_names(PropertyKind kind) const
  302. {
  303. // NOTE: This has been flattened for readability, so some `else` branches in the
  304. // spec text have been replaced with `continue`s in the loop below.
  305. auto& global_object = this->global_object();
  306. // 1. Assert: Type(O) is Object.
  307. // 2. Let ownKeys be ? O.[[OwnPropertyKeys]]().
  308. auto own_keys = TRY(internal_own_property_keys());
  309. // 3. Let properties be a new empty List.
  310. auto properties = MarkedValueList { heap() };
  311. // 4. For each element key of ownKeys, do
  312. for (auto& key : own_keys) {
  313. // a. If Type(key) is String, then
  314. if (!key.is_string())
  315. continue;
  316. auto property_key = MUST(PropertyKey::from_value(global_object, key));
  317. // i. Let desc be ? O.[[GetOwnProperty]](key).
  318. auto descriptor = TRY(internal_get_own_property(property_key));
  319. // ii. If desc is not undefined and desc.[[Enumerable]] is true, then
  320. if (descriptor.has_value() && *descriptor->enumerable) {
  321. // 1. If kind is key, append key to properties.
  322. if (kind == PropertyKind::Key) {
  323. properties.append(key);
  324. continue;
  325. }
  326. // 2. Else,
  327. // a. Let value be ? Get(O, key).
  328. auto value = TRY(get(property_key));
  329. // b. If kind is value, append value to properties.
  330. if (kind == PropertyKind::Value) {
  331. properties.append(value);
  332. continue;
  333. }
  334. // c. Else,
  335. // i. Assert: kind is key+value.
  336. VERIFY(kind == PropertyKind::KeyAndValue);
  337. // ii. Let entry be ! CreateArrayFromList(« key, value »).
  338. auto entry = Array::create_from(global_object, { key, value });
  339. // iii. Append entry to properties.
  340. properties.append(entry);
  341. }
  342. }
  343. // 5. Return properties.
  344. return { move(properties) };
  345. }
  346. // 7.3.26 CopyDataProperties ( target, source, excludedItems ), https://tc39.es/ecma262/#sec-copydataproperties
  347. ThrowCompletionOr<Object*> Object::copy_data_properties(Value source, HashTable<PropertyKey> const& seen_names, GlobalObject& global_object)
  348. {
  349. if (source.is_nullish())
  350. return this;
  351. auto* from_object = MUST(source.to_object(global_object));
  352. for (auto& next_key_value : TRY(from_object->internal_own_property_keys())) {
  353. auto next_key = MUST(PropertyKey::from_value(global_object, next_key_value));
  354. if (seen_names.contains(next_key))
  355. continue;
  356. auto desc = TRY(from_object->internal_get_own_property(next_key));
  357. if (desc.has_value() && desc->attributes().is_enumerable()) {
  358. auto prop_value = TRY(from_object->get(next_key));
  359. TRY(create_data_property_or_throw(next_key, prop_value));
  360. }
  361. }
  362. return this;
  363. }
  364. // 7.3.27 PrivateElementFind ( O, P ), https://tc39.es/ecma262/#sec-privateelementfind
  365. PrivateElement* Object::private_element_find(PrivateName const& name)
  366. {
  367. if (!m_private_elements)
  368. return nullptr;
  369. auto element = m_private_elements->find_if([&](auto const& element) {
  370. return element.key == name;
  371. });
  372. if (element.is_end())
  373. return nullptr;
  374. return &(*element);
  375. }
  376. // 7.3.28 PrivateFieldAdd ( O, P, value ), https://tc39.es/ecma262/#sec-privatefieldadd
  377. ThrowCompletionOr<void> Object::private_field_add(PrivateName const& name, Value value)
  378. {
  379. if (auto* entry = private_element_find(name); entry)
  380. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldAlreadyDeclared, name.description);
  381. if (!m_private_elements)
  382. m_private_elements = make<Vector<PrivateElement>>();
  383. m_private_elements->empend(name, PrivateElement::Kind::Field, value);
  384. return {};
  385. }
  386. // 7.3.29 PrivateMethodOrAccessorAdd ( O, method ), https://tc39.es/ecma262/#sec-privatemethodoraccessoradd
  387. ThrowCompletionOr<void> Object::private_method_or_accessor_add(PrivateElement element)
  388. {
  389. VERIFY(element.kind == PrivateElement::Kind::Method || element.kind == PrivateElement::Kind::Accessor);
  390. if (auto* entry = private_element_find(element.key); entry)
  391. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldAlreadyDeclared, element.key.description);
  392. if (!m_private_elements)
  393. m_private_elements = make<Vector<PrivateElement>>();
  394. m_private_elements->append(move(element));
  395. return {};
  396. }
  397. // 7.3.30 PrivateGet ( O, P ), https://tc39.es/ecma262/#sec-privateget
  398. ThrowCompletionOr<Value> Object::private_get(PrivateName const& name)
  399. {
  400. auto* entry = private_element_find(name);
  401. if (!entry)
  402. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldDoesNotExistOnObject, name.description);
  403. auto& value = entry->value;
  404. if (entry->kind != PrivateElement::Kind::Accessor)
  405. return value;
  406. VERIFY(value.is_accessor());
  407. auto* getter = value.as_accessor().getter();
  408. if (!getter)
  409. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldGetAccessorWithoutGetter, name.description);
  410. // 8. Return ? Call(getter, Receiver).
  411. return TRY(call(global_object(), *getter, this));
  412. }
  413. // 7.3.31 PrivateSet ( O, P, value ), https://tc39.es/ecma262/#sec-privateset
  414. ThrowCompletionOr<void> Object::private_set(PrivateName const& name, Value value)
  415. {
  416. auto* entry = private_element_find(name);
  417. if (!entry)
  418. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldDoesNotExistOnObject, name.description);
  419. if (entry->kind == PrivateElement::Kind::Field) {
  420. entry->value = value;
  421. return {};
  422. } else if (entry->kind == PrivateElement::Kind::Method) {
  423. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldSetMethod, name.description);
  424. }
  425. VERIFY(entry->kind == PrivateElement::Kind::Accessor);
  426. auto& accessor = entry->value;
  427. VERIFY(accessor.is_accessor());
  428. auto* setter = accessor.as_accessor().setter();
  429. if (!setter)
  430. return vm().throw_completion<TypeError>(global_object(), ErrorType::PrivateFieldSetAccessorWithoutSetter, name.description);
  431. TRY(call(global_object(), *setter, this, value));
  432. return {};
  433. }
  434. // 7.3.32 DefineField ( receiver, fieldRecord ), https://tc39.es/ecma262/#sec-definefield
  435. ThrowCompletionOr<void> Object::define_field(Variant<PropertyKey, PrivateName> name, ECMAScriptFunctionObject* initializer)
  436. {
  437. Value init_value = js_undefined();
  438. if (initializer)
  439. init_value = TRY(call(global_object(), *initializer, this));
  440. if (auto* property_key_ptr = name.get_pointer<PropertyKey>())
  441. TRY(create_data_property_or_throw(*property_key_ptr, init_value));
  442. else
  443. TRY(private_field_add(name.get<PrivateName>(), init_value));
  444. return {};
  445. }
  446. // 10.1 Ordinary Object Internal Methods and Internal Slots, https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots
  447. // 10.1.1 [[GetPrototypeOf]] ( ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-getprototypeof
  448. ThrowCompletionOr<Object*> Object::internal_get_prototype_of() const
  449. {
  450. // 1. Return O.[[Prototype]].
  451. return const_cast<Object*>(prototype());
  452. }
  453. // 10.1.2 [[SetPrototypeOf]] ( V ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-setprototypeof-v
  454. ThrowCompletionOr<bool> Object::internal_set_prototype_of(Object* new_prototype)
  455. {
  456. // 1. Assert: Either Type(V) is Object or Type(V) is Null.
  457. // 2. Let current be O.[[Prototype]].
  458. // 3. If SameValue(V, current) is true, return true.
  459. if (prototype() == new_prototype)
  460. return true;
  461. // 4. Let extensible be O.[[Extensible]].
  462. // 5. If extensible is false, return false.
  463. if (!m_is_extensible)
  464. return false;
  465. // 6. Let p be V.
  466. auto* prototype = new_prototype;
  467. // 7. Let done be false.
  468. // 8. Repeat, while done is false,
  469. while (prototype) {
  470. // a. If p is null, set done to true.
  471. // b. Else if SameValue(p, O) is true, return false.
  472. if (prototype == this)
  473. return false;
  474. // c. Else,
  475. // i. If p.[[GetPrototypeOf]] is not the ordinary object internal method defined in 10.1.1, set done to true.
  476. // NOTE: This is a best-effort implementation; we don't have a good way of detecting whether certain virtual
  477. // Object methods have been overridden by a given object, but as ProxyObject is the only one doing that for
  478. // [[SetPrototypeOf]], this check does the trick.
  479. if (is<ProxyObject>(prototype))
  480. break;
  481. // ii. Else, set p to p.[[Prototype]].
  482. prototype = prototype->prototype();
  483. }
  484. // 9. Set O.[[Prototype]] to V.
  485. set_prototype(new_prototype);
  486. // 10. Return true.
  487. return true;
  488. }
  489. // 10.1.3 [[IsExtensible]] ( ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-isextensible
  490. ThrowCompletionOr<bool> Object::internal_is_extensible() const
  491. {
  492. // 1. Return O.[[Extensible]].
  493. return m_is_extensible;
  494. }
  495. // 10.1.4 [[PreventExtensions]] ( ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-preventextensions
  496. ThrowCompletionOr<bool> Object::internal_prevent_extensions()
  497. {
  498. // 1. Set O.[[Extensible]] to false.
  499. m_is_extensible = false;
  500. // 2. Return true.
  501. return true;
  502. }
  503. // 10.1.5 [[GetOwnProperty]] ( P ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-getownproperty-p
  504. ThrowCompletionOr<Optional<PropertyDescriptor>> Object::internal_get_own_property(PropertyKey const& property_key) const
  505. {
  506. // 1. Assert: IsPropertyKey(P) is true.
  507. VERIFY(property_key.is_valid());
  508. // 2. If O does not have an own property with key P, return undefined.
  509. auto maybe_storage_entry = storage_get(property_key);
  510. if (!maybe_storage_entry.has_value())
  511. return Optional<PropertyDescriptor> {};
  512. // 3. Let D be a newly created Property Descriptor with no fields.
  513. PropertyDescriptor descriptor;
  514. // 4. Let X be O's own property whose key is P.
  515. auto [value, attributes] = *maybe_storage_entry;
  516. // 5. If X is a data property, then
  517. if (!value.is_accessor()) {
  518. // a. Set D.[[Value]] to the value of X's [[Value]] attribute.
  519. descriptor.value = value.value_or(js_undefined());
  520. // b. Set D.[[Writable]] to the value of X's [[Writable]] attribute.
  521. descriptor.writable = attributes.is_writable();
  522. }
  523. // 6. Else,
  524. else {
  525. // a. Assert: X is an accessor property.
  526. // b. Set D.[[Get]] to the value of X's [[Get]] attribute.
  527. descriptor.get = value.as_accessor().getter();
  528. // c. Set D.[[Set]] to the value of X's [[Set]] attribute.
  529. descriptor.set = value.as_accessor().setter();
  530. }
  531. // 7. Set D.[[Enumerable]] to the value of X's [[Enumerable]] attribute.
  532. descriptor.enumerable = attributes.is_enumerable();
  533. // 8. Set D.[[Configurable]] to the value of X's [[Configurable]] attribute.
  534. descriptor.configurable = attributes.is_configurable();
  535. // 9. Return D.
  536. return descriptor;
  537. }
  538. // 10.1.6 [[DefineOwnProperty]] ( P, Desc ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-defineownproperty-p-desc
  539. ThrowCompletionOr<bool> Object::internal_define_own_property(PropertyKey const& property_key, PropertyDescriptor const& property_descriptor)
  540. {
  541. VERIFY(property_key.is_valid());
  542. // 1. Let current be ? O.[[GetOwnProperty]](P).
  543. auto current = TRY(internal_get_own_property(property_key));
  544. // 2. Let extensible be ? IsExtensible(O).
  545. auto extensible = TRY(is_extensible());
  546. // 3. Return ValidateAndApplyPropertyDescriptor(O, P, extensible, Desc, current).
  547. return validate_and_apply_property_descriptor(this, property_key, extensible, property_descriptor, current);
  548. }
  549. // 10.1.7 [[HasProperty]] ( P ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-hasproperty-p
  550. ThrowCompletionOr<bool> Object::internal_has_property(PropertyKey const& property_key) const
  551. {
  552. // 1. Assert: IsPropertyKey(P) is true.
  553. VERIFY(property_key.is_valid());
  554. // 2. Let hasOwn be ? O.[[GetOwnProperty]](P).
  555. auto has_own = TRY(internal_get_own_property(property_key));
  556. // 3. If hasOwn is not undefined, return true.
  557. if (has_own.has_value())
  558. return true;
  559. // 4. Let parent be ? O.[[GetPrototypeOf]]().
  560. auto* parent = TRY(internal_get_prototype_of());
  561. // 5. If parent is not null, then
  562. if (parent) {
  563. // a. Return ? parent.[[HasProperty]](P).
  564. return parent->internal_has_property(property_key);
  565. }
  566. // 6. Return false.
  567. return false;
  568. }
  569. // 10.1.8 [[Get]] ( P, Receiver ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-get-p-receiver
  570. ThrowCompletionOr<Value> Object::internal_get(PropertyKey const& property_key, Value receiver) const
  571. {
  572. VERIFY(!receiver.is_empty());
  573. // 1. Assert: IsPropertyKey(P) is true.
  574. VERIFY(property_key.is_valid());
  575. // 2. Let desc be ? O.[[GetOwnProperty]](P).
  576. auto descriptor = TRY(internal_get_own_property(property_key));
  577. // 3. If desc is undefined, then
  578. if (!descriptor.has_value()) {
  579. // a. Let parent be ? O.[[GetPrototypeOf]]().
  580. auto* parent = TRY(internal_get_prototype_of());
  581. // b. If parent is null, return undefined.
  582. if (!parent)
  583. return js_undefined();
  584. // c. Return ? parent.[[Get]](P, Receiver).
  585. return parent->internal_get(property_key, receiver);
  586. }
  587. // 4. If IsDataDescriptor(desc) is true, return desc.[[Value]].
  588. if (descriptor->is_data_descriptor())
  589. return *descriptor->value;
  590. // 5. Assert: IsAccessorDescriptor(desc) is true.
  591. VERIFY(descriptor->is_accessor_descriptor());
  592. // 6. Let getter be desc.[[Get]].
  593. auto* getter = *descriptor->get;
  594. // 7. If getter is undefined, return undefined.
  595. if (!getter)
  596. return js_undefined();
  597. // 8. Return ? Call(getter, Receiver).
  598. return TRY(call(global_object(), *getter, receiver));
  599. }
  600. // 10.1.9 [[Set]] ( P, V, Receiver ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-set-p-v-receiver
  601. ThrowCompletionOr<bool> Object::internal_set(PropertyKey const& property_key, Value value, Value receiver)
  602. {
  603. VERIFY(!value.is_empty());
  604. VERIFY(!receiver.is_empty());
  605. // 1. Assert: IsPropertyKey(P) is true.
  606. VERIFY(property_key.is_valid());
  607. // 2. Let ownDesc be ? O.[[GetOwnProperty]](P).
  608. auto own_descriptor = TRY(internal_get_own_property(property_key));
  609. // 3. Return OrdinarySetWithOwnDescriptor(O, P, V, Receiver, ownDesc).
  610. return ordinary_set_with_own_descriptor(property_key, value, receiver, own_descriptor);
  611. }
  612. // 10.1.9.2 OrdinarySetWithOwnDescriptor ( O, P, V, Receiver, ownDesc ), https://tc39.es/ecma262/#sec-ordinarysetwithowndescriptor
  613. ThrowCompletionOr<bool> Object::ordinary_set_with_own_descriptor(PropertyKey const& property_key, Value value, Value receiver, Optional<PropertyDescriptor> own_descriptor)
  614. {
  615. // 1. Assert: IsPropertyKey(P) is true.
  616. VERIFY(property_key.is_valid());
  617. // 2. If ownDesc is undefined, then
  618. if (!own_descriptor.has_value()) {
  619. // a. Let parent be ? O.[[GetPrototypeOf]]().
  620. auto* parent = TRY(internal_get_prototype_of());
  621. // b. If parent is not null, then
  622. if (parent) {
  623. // i. Return ? parent.[[Set]](P, V, Receiver).
  624. return TRY(parent->internal_set(property_key, value, receiver));
  625. }
  626. // c. Else,
  627. else {
  628. // i. Set ownDesc to the PropertyDescriptor { [[Value]]: undefined, [[Writable]]: true, [[Enumerable]]: true, [[Configurable]]: true }.
  629. own_descriptor = PropertyDescriptor {
  630. .value = js_undefined(),
  631. .writable = true,
  632. .enumerable = true,
  633. .configurable = true,
  634. };
  635. }
  636. }
  637. // 3. If IsDataDescriptor(ownDesc) is true, then
  638. if (own_descriptor->is_data_descriptor()) {
  639. // a. If ownDesc.[[Writable]] is false, return false.
  640. if (!*own_descriptor->writable)
  641. return false;
  642. // b. If Type(Receiver) is not Object, return false.
  643. if (!receiver.is_object())
  644. return false;
  645. // c. Let existingDescriptor be ? Receiver.[[GetOwnProperty]](P).
  646. auto existing_descriptor = TRY(receiver.as_object().internal_get_own_property(property_key));
  647. // d. If existingDescriptor is not undefined, then
  648. if (existing_descriptor.has_value()) {
  649. // i. If IsAccessorDescriptor(existingDescriptor) is true, return false.
  650. if (existing_descriptor->is_accessor_descriptor())
  651. return false;
  652. // ii. If existingDescriptor.[[Writable]] is false, return false.
  653. if (!*existing_descriptor->writable)
  654. return false;
  655. // iii. Let valueDesc be the PropertyDescriptor { [[Value]]: V }.
  656. auto value_descriptor = PropertyDescriptor { .value = value };
  657. // iv. Return ? Receiver.[[DefineOwnProperty]](P, valueDesc).
  658. return TRY(receiver.as_object().internal_define_own_property(property_key, value_descriptor));
  659. }
  660. // e. Else,
  661. else {
  662. // i. Assert: Receiver does not currently have a property P.
  663. VERIFY(!receiver.as_object().storage_has(property_key));
  664. // ii. Return ? CreateDataProperty(Receiver, P, V).
  665. return TRY(receiver.as_object().create_data_property(property_key, value));
  666. }
  667. }
  668. // 4. Assert: IsAccessorDescriptor(ownDesc) is true.
  669. VERIFY(own_descriptor->is_accessor_descriptor());
  670. // 5. Let setter be ownDesc.[[Set]].
  671. auto* setter = *own_descriptor->set;
  672. // 6. If setter is undefined, return false.
  673. if (!setter)
  674. return false;
  675. // 7. Perform ? Call(setter, Receiver, « V »).
  676. (void)TRY(call(global_object(), *setter, receiver, value));
  677. // 8. Return true.
  678. return true;
  679. }
  680. // 10.1.10 [[Delete]] ( P ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-delete-p
  681. ThrowCompletionOr<bool> Object::internal_delete(PropertyKey const& property_key)
  682. {
  683. // 1. Assert: IsPropertyKey(P) is true.
  684. VERIFY(property_key.is_valid());
  685. // 2. Let desc be ? O.[[GetOwnProperty]](P).
  686. auto descriptor = TRY(internal_get_own_property(property_key));
  687. // 3. If desc is undefined, return true.
  688. if (!descriptor.has_value())
  689. return true;
  690. // 4. If desc.[[Configurable]] is true, then
  691. if (*descriptor->configurable) {
  692. // a. Remove the own property with name P from O.
  693. storage_delete(property_key);
  694. // b. Return true.
  695. return true;
  696. }
  697. // 5. Return false.
  698. return false;
  699. }
  700. // 10.1.11 [[OwnPropertyKeys]] ( ), https://tc39.es/ecma262/#sec-ordinary-object-internal-methods-and-internal-slots-ownpropertykeys
  701. ThrowCompletionOr<MarkedValueList> Object::internal_own_property_keys() const
  702. {
  703. auto& vm = this->vm();
  704. // 1. Let keys be a new empty List.
  705. MarkedValueList keys { heap() };
  706. // 2. For each own property key P of O such that P is an array index, in ascending numeric index order, do
  707. for (auto& entry : m_indexed_properties) {
  708. // a. Add P as the last element of keys.
  709. keys.append(js_string(vm, String::number(entry.index())));
  710. }
  711. // 3. For each own property key P of O such that Type(P) is String and P is not an array index, in ascending chronological order of property creation, do
  712. for (auto& it : shape().property_table_ordered()) {
  713. if (it.key.is_string()) {
  714. // a. Add P as the last element of keys.
  715. keys.append(it.key.to_value(vm));
  716. }
  717. }
  718. // 4. For each own property key P of O such that Type(P) is Symbol, in ascending chronological order of property creation, do
  719. for (auto& it : shape().property_table_ordered()) {
  720. if (it.key.is_symbol()) {
  721. // a. Add P as the last element of keys.
  722. keys.append(it.key.to_value(vm));
  723. }
  724. }
  725. // 5. Return keys.
  726. return { move(keys) };
  727. }
  728. // 10.4.7.2 SetImmutablePrototype ( O, V ), https://tc39.es/ecma262/#sec-set-immutable-prototype
  729. ThrowCompletionOr<bool> Object::set_immutable_prototype(Object* prototype)
  730. {
  731. // 1. Assert: Either Type(V) is Object or Type(V) is Null.
  732. // 2. Let current be ? O.[[GetPrototypeOf]]().
  733. auto* current = TRY(internal_get_prototype_of());
  734. // 3. If SameValue(V, current) is true, return true.
  735. if (prototype == current)
  736. return true;
  737. // 4. Return false.
  738. return false;
  739. }
  740. Optional<ValueAndAttributes> Object::storage_get(PropertyKey const& property_key) const
  741. {
  742. VERIFY(property_key.is_valid());
  743. Value value;
  744. PropertyAttributes attributes;
  745. if (property_key.is_number()) {
  746. auto value_and_attributes = m_indexed_properties.get(property_key.as_number());
  747. if (!value_and_attributes.has_value())
  748. return {};
  749. value = value_and_attributes->value;
  750. attributes = value_and_attributes->attributes;
  751. } else {
  752. auto metadata = shape().lookup(property_key.to_string_or_symbol());
  753. if (!metadata.has_value())
  754. return {};
  755. value = m_storage[metadata->offset];
  756. attributes = metadata->attributes;
  757. }
  758. return ValueAndAttributes { .value = value, .attributes = attributes };
  759. }
  760. bool Object::storage_has(PropertyKey const& property_key) const
  761. {
  762. VERIFY(property_key.is_valid());
  763. if (property_key.is_number())
  764. return m_indexed_properties.has_index(property_key.as_number());
  765. return shape().lookup(property_key.to_string_or_symbol()).has_value();
  766. }
  767. void Object::storage_set(PropertyKey const& property_key, ValueAndAttributes const& value_and_attributes)
  768. {
  769. VERIFY(property_key.is_valid());
  770. auto [value, attributes] = value_and_attributes;
  771. if (property_key.is_number()) {
  772. auto index = property_key.as_number();
  773. m_indexed_properties.put(index, value, attributes);
  774. return;
  775. }
  776. auto property_key_string_or_symbol = property_key.to_string_or_symbol();
  777. auto metadata = shape().lookup(property_key_string_or_symbol);
  778. if (!metadata.has_value()) {
  779. if (!m_shape->is_unique() && shape().property_count() > 100) {
  780. // If you add more than 100 properties to an object, let's stop doing
  781. // transitions to avoid filling up the heap with shapes.
  782. ensure_shape_is_unique();
  783. }
  784. if (m_shape->is_unique())
  785. m_shape->add_property_to_unique_shape(property_key_string_or_symbol, attributes);
  786. else
  787. set_shape(*m_shape->create_put_transition(property_key_string_or_symbol, attributes));
  788. m_storage.append(value);
  789. return;
  790. }
  791. if (attributes != metadata->attributes) {
  792. if (m_shape->is_unique())
  793. m_shape->reconfigure_property_in_unique_shape(property_key_string_or_symbol, attributes);
  794. else
  795. set_shape(*m_shape->create_configure_transition(property_key_string_or_symbol, attributes));
  796. }
  797. m_storage[metadata->offset] = value;
  798. }
  799. void Object::storage_delete(PropertyKey const& property_key)
  800. {
  801. VERIFY(property_key.is_valid());
  802. VERIFY(storage_has(property_key));
  803. if (property_key.is_number())
  804. return m_indexed_properties.remove(property_key.as_number());
  805. auto metadata = shape().lookup(property_key.to_string_or_symbol());
  806. VERIFY(metadata.has_value());
  807. ensure_shape_is_unique();
  808. shape().remove_property_from_unique_shape(property_key.to_string_or_symbol(), metadata->offset);
  809. m_storage.remove(metadata->offset);
  810. }
  811. void Object::set_prototype(Object* new_prototype)
  812. {
  813. if (prototype() == new_prototype)
  814. return;
  815. auto& shape = this->shape();
  816. if (shape.is_unique())
  817. shape.set_prototype_without_transition(new_prototype);
  818. else
  819. m_shape = shape.create_prototype_transition(new_prototype);
  820. }
  821. void Object::define_native_accessor(PropertyKey const& property_key, Function<ThrowCompletionOr<Value>(VM&, GlobalObject&)> getter, Function<ThrowCompletionOr<Value>(VM&, GlobalObject&)> setter, PropertyAttributes attribute)
  822. {
  823. auto& vm = this->vm();
  824. String formatted_property_key;
  825. if (property_key.is_number()) {
  826. formatted_property_key = property_key.to_string();
  827. } else if (property_key.is_string()) {
  828. formatted_property_key = property_key.as_string();
  829. } else {
  830. formatted_property_key = String::formatted("[{}]", property_key.as_symbol()->description());
  831. }
  832. FunctionObject* getter_function = nullptr;
  833. if (getter) {
  834. auto name = String::formatted("get {}", formatted_property_key);
  835. getter_function = NativeFunction::create(global_object(), name, move(getter));
  836. getter_function->define_direct_property(vm.names.length, Value(0), Attribute::Configurable);
  837. getter_function->define_direct_property(vm.names.name, js_string(vm, name), Attribute::Configurable);
  838. }
  839. FunctionObject* setter_function = nullptr;
  840. if (setter) {
  841. auto name = String::formatted("set {}", formatted_property_key);
  842. setter_function = NativeFunction::create(global_object(), name, move(setter));
  843. setter_function->define_direct_property(vm.names.length, Value(1), Attribute::Configurable);
  844. setter_function->define_direct_property(vm.names.name, js_string(vm, name), Attribute::Configurable);
  845. }
  846. return define_direct_accessor(property_key, getter_function, setter_function, attribute);
  847. }
  848. void Object::define_direct_accessor(PropertyKey const& property_key, FunctionObject* getter, FunctionObject* setter, PropertyAttributes attributes)
  849. {
  850. VERIFY(property_key.is_valid());
  851. auto existing_property = storage_get(property_key).value_or({}).value;
  852. auto* accessor = existing_property.is_accessor() ? &existing_property.as_accessor() : nullptr;
  853. if (!accessor) {
  854. accessor = Accessor::create(vm(), getter, setter);
  855. define_direct_property(property_key, accessor, attributes);
  856. } else {
  857. if (getter)
  858. accessor->set_getter(getter);
  859. if (setter)
  860. accessor->set_setter(setter);
  861. }
  862. }
  863. void Object::ensure_shape_is_unique()
  864. {
  865. if (shape().is_unique())
  866. return;
  867. m_shape = m_shape->create_unique_clone();
  868. }
  869. // Simple side-effect free property lookup, following the prototype chain. Non-standard.
  870. Value Object::get_without_side_effects(const PropertyKey& property_key) const
  871. {
  872. auto* object = this;
  873. while (object) {
  874. auto value_and_attributes = object->storage_get(property_key);
  875. if (value_and_attributes.has_value())
  876. return value_and_attributes->value;
  877. object = object->prototype();
  878. }
  879. return {};
  880. }
  881. void Object::define_native_function(PropertyKey const& property_key, Function<ThrowCompletionOr<Value>(VM&, GlobalObject&)> native_function, i32 length, PropertyAttributes attribute)
  882. {
  883. auto& vm = this->vm();
  884. String function_name;
  885. if (property_key.is_string()) {
  886. function_name = property_key.as_string();
  887. } else {
  888. function_name = String::formatted("[{}]", property_key.as_symbol()->description());
  889. }
  890. auto* function = NativeFunction::create(global_object(), function_name, move(native_function));
  891. function->define_direct_property(vm.names.length, Value(length), Attribute::Configurable);
  892. function->define_direct_property(vm.names.name, js_string(vm, function_name), Attribute::Configurable);
  893. define_direct_property(property_key, function, attribute);
  894. }
  895. // 20.1.2.3.1 ObjectDefineProperties ( O, Properties ), https://tc39.es/ecma262/#sec-objectdefineproperties
  896. ThrowCompletionOr<Object*> Object::define_properties(Value properties)
  897. {
  898. auto& global_object = this->global_object();
  899. // 1. Assert: Type(O) is Object.
  900. // 2. Let props be ? ToObject(Properties).
  901. auto* props = TRY(properties.to_object(global_object));
  902. // 3. Let keys be ? props.[[OwnPropertyKeys]]().
  903. auto keys = TRY(props->internal_own_property_keys());
  904. struct NameAndDescriptor {
  905. PropertyKey name;
  906. PropertyDescriptor descriptor;
  907. };
  908. // 4. Let descriptors be a new empty List.
  909. Vector<NameAndDescriptor> descriptors;
  910. // 5. For each element nextKey of keys, do
  911. for (auto& next_key : keys) {
  912. auto property_key = MUST(PropertyKey::from_value(global_object, next_key));
  913. // a. Let propDesc be ? props.[[GetOwnProperty]](nextKey).
  914. auto property_descriptor = TRY(props->internal_get_own_property(property_key));
  915. // b. If propDesc is not undefined and propDesc.[[Enumerable]] is true, then
  916. if (property_descriptor.has_value() && *property_descriptor->enumerable) {
  917. // i. Let descObj be ? Get(props, nextKey).
  918. auto descriptor_object = TRY(props->get(property_key));
  919. // ii. Let desc be ? ToPropertyDescriptor(descObj).
  920. auto descriptor = TRY(to_property_descriptor(global_object, descriptor_object));
  921. // iii. Append the pair (a two element List) consisting of nextKey and desc to the end of descriptors.
  922. descriptors.append({ property_key, descriptor });
  923. }
  924. }
  925. // 6. For each element pair of descriptors, do
  926. for (auto& [name, descriptor] : descriptors) {
  927. // a. Let P be the first element of pair.
  928. // b. Let desc be the second element of pair.
  929. // c. Perform ? DefinePropertyOrThrow(O, P, desc).
  930. TRY(define_property_or_throw(name, descriptor));
  931. }
  932. // 7. Return O.
  933. return this;
  934. }
  935. void Object::visit_edges(Cell::Visitor& visitor)
  936. {
  937. Cell::visit_edges(visitor);
  938. visitor.visit(m_shape);
  939. for (auto& value : m_storage)
  940. visitor.visit(value);
  941. m_indexed_properties.for_each_value([&visitor](auto& value) {
  942. visitor.visit(value);
  943. });
  944. if (m_private_elements) {
  945. for (auto& private_element : *m_private_elements)
  946. visitor.visit(private_element.value);
  947. }
  948. }
  949. // 7.1.1.1 OrdinaryToPrimitive ( O, hint ), https://tc39.es/ecma262/#sec-ordinarytoprimitive
  950. ThrowCompletionOr<Value> Object::ordinary_to_primitive(Value::PreferredType preferred_type) const
  951. {
  952. VERIFY(preferred_type == Value::PreferredType::String || preferred_type == Value::PreferredType::Number);
  953. auto& vm = this->vm();
  954. AK::Array<PropertyKey, 2> method_names;
  955. // 1. If hint is string, then
  956. if (preferred_type == Value::PreferredType::String) {
  957. // a. Let methodNames be « "toString", "valueOf" ».
  958. method_names = { vm.names.toString, vm.names.valueOf };
  959. } else {
  960. // a. Let methodNames be « "valueOf", "toString" ».
  961. method_names = { vm.names.valueOf, vm.names.toString };
  962. }
  963. // 3. For each element name of methodNames, do
  964. for (auto& method_name : method_names) {
  965. // a. Let method be ? Get(O, name).
  966. auto method = TRY(get(method_name));
  967. // b. If IsCallable(method) is true, then
  968. if (method.is_function()) {
  969. // i. Let result be ? Call(method, O).
  970. auto result = TRY(call(global_object(), method.as_function(), const_cast<Object*>(this)));
  971. // ii. If Type(result) is not Object, return result.
  972. if (!result.is_object())
  973. return result;
  974. }
  975. }
  976. // 4. Throw a TypeError exception.
  977. return vm.throw_completion<TypeError>(global_object(), ErrorType::Convert, "object", preferred_type == Value::PreferredType::String ? "string" : "number");
  978. }
  979. }