AbstractOperations.cpp 44 KB

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  1. /*
  2. * Copyright (c) 2020-2021, Linus Groh <linusg@serenityos.org>
  3. * Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/CharacterTypes.h>
  8. #include <AK/Function.h>
  9. #include <AK/Optional.h>
  10. #include <AK/TemporaryChange.h>
  11. #include <AK/Utf16View.h>
  12. #include <LibJS/Bytecode/Interpreter.h>
  13. #include <LibJS/Interpreter.h>
  14. #include <LibJS/Parser.h>
  15. #include <LibJS/Runtime/AbstractOperations.h>
  16. #include <LibJS/Runtime/Accessor.h>
  17. #include <LibJS/Runtime/ArgumentsObject.h>
  18. #include <LibJS/Runtime/Array.h>
  19. #include <LibJS/Runtime/BoundFunction.h>
  20. #include <LibJS/Runtime/Completion.h>
  21. #include <LibJS/Runtime/DeclarativeEnvironment.h>
  22. #include <LibJS/Runtime/ECMAScriptFunctionObject.h>
  23. #include <LibJS/Runtime/ErrorTypes.h>
  24. #include <LibJS/Runtime/FunctionEnvironment.h>
  25. #include <LibJS/Runtime/FunctionObject.h>
  26. #include <LibJS/Runtime/GlobalObject.h>
  27. #include <LibJS/Runtime/Object.h>
  28. #include <LibJS/Runtime/ObjectEnvironment.h>
  29. #include <LibJS/Runtime/PropertyDescriptor.h>
  30. #include <LibJS/Runtime/PropertyKey.h>
  31. #include <LibJS/Runtime/ProxyObject.h>
  32. #include <LibJS/Runtime/Reference.h>
  33. namespace JS {
  34. // 7.2.1 RequireObjectCoercible ( argument ), https://tc39.es/ecma262/#sec-requireobjectcoercible
  35. ThrowCompletionOr<Value> require_object_coercible(GlobalObject& global_object, Value value)
  36. {
  37. auto& vm = global_object.vm();
  38. if (value.is_nullish())
  39. return vm.throw_completion<TypeError>(global_object, ErrorType::NotObjectCoercible, value.to_string_without_side_effects());
  40. return value;
  41. }
  42. // 7.3.13 Call ( F, V [ , argumentsList ] ), https://tc39.es/ecma262/#sec-call
  43. ThrowCompletionOr<Value> call_impl(GlobalObject& global_object, Value function, Value this_value, Optional<MarkedValueList> arguments_list)
  44. {
  45. auto& vm = global_object.vm();
  46. // 1. If argumentsList is not present, set argumentsList to a new empty List.
  47. if (!arguments_list.has_value())
  48. arguments_list = MarkedValueList { global_object.heap() };
  49. // 2. If IsCallable(F) is false, throw a TypeError exception.
  50. if (!function.is_function())
  51. return vm.throw_completion<TypeError>(global_object, ErrorType::NotAFunction, function.to_string_without_side_effects());
  52. // 3. Return ? F.[[Call]](V, argumentsList).
  53. return function.as_function().internal_call(this_value, move(*arguments_list));
  54. }
  55. // 7.3.14 Construct ( F [ , argumentsList [ , newTarget ] ] ), https://tc39.es/ecma262/#sec-construct
  56. ThrowCompletionOr<Object*> construct(GlobalObject& global_object, FunctionObject& function, Optional<MarkedValueList> arguments_list, FunctionObject* new_target)
  57. {
  58. // 1. If newTarget is not present, set newTarget to F.
  59. if (!new_target)
  60. new_target = &function;
  61. // 2. If argumentsList is not present, set argumentsList to a new empty List.
  62. if (!arguments_list.has_value())
  63. arguments_list = MarkedValueList { global_object.heap() };
  64. // 3. Return ? F.[[Construct]](argumentsList, newTarget).
  65. return function.internal_construct(move(*arguments_list), *new_target);
  66. }
  67. // 7.3.18 LengthOfArrayLike ( obj ), https://tc39.es/ecma262/#sec-lengthofarraylike
  68. ThrowCompletionOr<size_t> length_of_array_like(GlobalObject& global_object, Object const& object)
  69. {
  70. auto& vm = global_object.vm();
  71. auto result = TRY(object.get(vm.names.length));
  72. return result.to_length(global_object);
  73. }
  74. // 7.3.19 CreateListFromArrayLike ( obj [ , elementTypes ] ), https://tc39.es/ecma262/#sec-createlistfromarraylike
  75. ThrowCompletionOr<MarkedValueList> create_list_from_array_like(GlobalObject& global_object, Value value, Function<ThrowCompletionOr<void>(Value)> check_value)
  76. {
  77. auto& vm = global_object.vm();
  78. auto& heap = global_object.heap();
  79. // 1. If elementTypes is not present, set elementTypes to « Undefined, Null, Boolean, String, Symbol, Number, BigInt, Object ».
  80. // 2. If Type(obj) is not Object, throw a TypeError exception.
  81. if (!value.is_object())
  82. return vm.throw_completion<TypeError>(global_object, ErrorType::NotAnObject, value.to_string_without_side_effects());
  83. auto& array_like = value.as_object();
  84. // 3. Let len be ? LengthOfArrayLike(obj).
  85. auto length = TRY(length_of_array_like(global_object, array_like));
  86. // 4. Let list be a new empty List.
  87. auto list = MarkedValueList { heap };
  88. // 5. Let index be 0.
  89. // 6. Repeat, while index < len,
  90. for (size_t i = 0; i < length; ++i) {
  91. // a. Let indexName be ! ToString(𝔽(index)).
  92. auto index_name = PropertyKey { i };
  93. // b. Let next be ? Get(obj, indexName).
  94. auto next = TRY(array_like.get(index_name));
  95. // c. If Type(next) is not an element of elementTypes, throw a TypeError exception.
  96. if (check_value)
  97. TRY(check_value(next));
  98. // d. Append next as the last element of list.
  99. list.append(next);
  100. }
  101. // 7. Return list.
  102. return ThrowCompletionOr(move(list));
  103. }
  104. // 7.3.22 SpeciesConstructor ( O, defaultConstructor ), https://tc39.es/ecma262/#sec-speciesconstructor
  105. ThrowCompletionOr<FunctionObject*> species_constructor(GlobalObject& global_object, Object const& object, FunctionObject& default_constructor)
  106. {
  107. auto& vm = global_object.vm();
  108. // 1. Let C be ? Get(O, "constructor").
  109. auto constructor = TRY(object.get(vm.names.constructor));
  110. // 2. If C is undefined, return defaultConstructor.
  111. if (constructor.is_undefined())
  112. return &default_constructor;
  113. // 3. If Type(C) is not Object, throw a TypeError exception.
  114. if (!constructor.is_object())
  115. return vm.throw_completion<TypeError>(global_object, ErrorType::NotAConstructor, constructor.to_string_without_side_effects());
  116. // 4. Let S be ? Get(C, @@species).
  117. auto species = TRY(constructor.as_object().get(*vm.well_known_symbol_species()));
  118. // 5. If S is either undefined or null, return defaultConstructor.
  119. if (species.is_nullish())
  120. return &default_constructor;
  121. // 6. If IsConstructor(S) is true, return S.
  122. if (species.is_constructor())
  123. return &species.as_function();
  124. // 7. Throw a TypeError exception.
  125. return vm.throw_completion<TypeError>(global_object, ErrorType::NotAConstructor, species.to_string_without_side_effects());
  126. }
  127. // 7.3.24 GetFunctionRealm ( obj ), https://tc39.es/ecma262/#sec-getfunctionrealm
  128. ThrowCompletionOr<Realm*> get_function_realm(GlobalObject& global_object, FunctionObject const& function)
  129. {
  130. auto& vm = global_object.vm();
  131. // 1. Assert: ! IsCallable(obj) is true.
  132. // 2. If obj has a [[Realm]] internal slot, then
  133. if (function.realm()) {
  134. // a. Return obj.[[Realm]].
  135. return function.realm();
  136. }
  137. // 3. If obj is a bound function exotic object, then
  138. if (is<BoundFunction>(function)) {
  139. auto& bound_function = static_cast<BoundFunction const&>(function);
  140. // a. Let target be obj.[[BoundTargetFunction]].
  141. auto& target = bound_function.bound_target_function();
  142. // b. Return ? GetFunctionRealm(target).
  143. return get_function_realm(global_object, target);
  144. }
  145. // 4. If obj is a Proxy exotic object, then
  146. if (is<ProxyObject>(function)) {
  147. auto& proxy = static_cast<ProxyObject const&>(function);
  148. // a. If obj.[[ProxyHandler]] is null, throw a TypeError exception.
  149. if (proxy.is_revoked())
  150. return vm.throw_completion<TypeError>(global_object, ErrorType::ProxyRevoked);
  151. // b. Let proxyTarget be obj.[[ProxyTarget]].
  152. auto& proxy_target = proxy.target();
  153. // c. Return ? GetFunctionRealm(proxyTarget).
  154. VERIFY(proxy_target.is_function());
  155. return get_function_realm(global_object, static_cast<FunctionObject const&>(proxy_target));
  156. }
  157. // 5. Return the current Realm Record.
  158. return vm.current_realm();
  159. }
  160. // 10.1.6.2 IsCompatiblePropertyDescriptor ( Extensible, Desc, Current ), https://tc39.es/ecma262/#sec-iscompatiblepropertydescriptor
  161. bool is_compatible_property_descriptor(bool extensible, PropertyDescriptor const& descriptor, Optional<PropertyDescriptor> const& current)
  162. {
  163. // 1. Return ValidateAndApplyPropertyDescriptor(undefined, undefined, Extensible, Desc, Current).
  164. return validate_and_apply_property_descriptor(nullptr, {}, extensible, descriptor, current);
  165. }
  166. // 10.1.6.3 ValidateAndApplyPropertyDescriptor ( O, P, extensible, Desc, current ), https://tc39.es/ecma262/#sec-validateandapplypropertydescriptor
  167. bool validate_and_apply_property_descriptor(Object* object, PropertyKey const& property_name, bool extensible, PropertyDescriptor const& descriptor, Optional<PropertyDescriptor> const& current)
  168. {
  169. // 1. Assert: If O is not undefined, then IsPropertyKey(P) is true.
  170. if (object)
  171. VERIFY(property_name.is_valid());
  172. // 2. If current is undefined, then
  173. if (!current.has_value()) {
  174. // a. If extensible is false, return false.
  175. if (!extensible)
  176. return false;
  177. // b. Assert: extensible is true.
  178. // c. If IsGenericDescriptor(Desc) is true or IsDataDescriptor(Desc) is true, then
  179. if (descriptor.is_generic_descriptor() || descriptor.is_data_descriptor()) {
  180. // i. If O is not undefined, create an own data property named P of object O whose [[Value]], [[Writable]],
  181. // [[Enumerable]], and [[Configurable]] attribute values are described by Desc.
  182. // If the value of an attribute field of Desc is absent, the attribute of the newly created property is set
  183. // to its default value.
  184. if (object) {
  185. auto value = descriptor.value.value_or(js_undefined());
  186. object->storage_set(property_name, { value, descriptor.attributes() });
  187. }
  188. }
  189. // d. Else,
  190. else {
  191. // i. Assert: ! IsAccessorDescriptor(Desc) is true.
  192. VERIFY(descriptor.is_accessor_descriptor());
  193. // ii. If O is not undefined, create an own accessor property named P of object O whose [[Get]], [[Set]],
  194. // [[Enumerable]], and [[Configurable]] attribute values are described by Desc.
  195. // If the value of an attribute field of Desc is absent, the attribute of the newly created property is set
  196. // to its default value.
  197. if (object) {
  198. auto accessor = Accessor::create(object->vm(), descriptor.get.value_or(nullptr), descriptor.set.value_or(nullptr));
  199. object->storage_set(property_name, { accessor, descriptor.attributes() });
  200. }
  201. }
  202. // e. Return true.
  203. return true;
  204. }
  205. // 3. If every field in Desc is absent, return true.
  206. if (descriptor.is_empty())
  207. return true;
  208. // 4. If current.[[Configurable]] is false, then
  209. if (!*current->configurable) {
  210. // a. If Desc.[[Configurable]] is present and its value is true, return false.
  211. if (descriptor.configurable.has_value() && *descriptor.configurable)
  212. return false;
  213. // b. If Desc.[[Enumerable]] is present and ! SameValue(Desc.[[Enumerable]], current.[[Enumerable]]) is false, return false.
  214. if (descriptor.enumerable.has_value() && *descriptor.enumerable != *current->enumerable)
  215. return false;
  216. }
  217. // 5. If ! IsGenericDescriptor(Desc) is true, then
  218. if (descriptor.is_generic_descriptor()) {
  219. // a. NOTE: No further validation is required.
  220. }
  221. // 6. Else if ! SameValue(! IsDataDescriptor(current), ! IsDataDescriptor(Desc)) is false, then
  222. else if (current->is_data_descriptor() != descriptor.is_data_descriptor()) {
  223. // a. If current.[[Configurable]] is false, return false.
  224. if (!*current->configurable)
  225. return false;
  226. // b. If IsDataDescriptor(current) is true, then
  227. if (current->is_data_descriptor()) {
  228. // If O is not undefined, convert the property named P of object O from a data property to an accessor property.
  229. // Preserve the existing values of the converted property's [[Configurable]] and [[Enumerable]] attributes and
  230. // set the rest of the property's attributes to their default values.
  231. if (object) {
  232. auto accessor = Accessor::create(object->vm(), nullptr, nullptr);
  233. object->storage_set(property_name, { accessor, current->attributes() });
  234. }
  235. }
  236. // c. Else,
  237. else {
  238. // If O is not undefined, convert the property named P of object O from an accessor property to a data property.
  239. // Preserve the existing values of the converted property's [[Configurable]] and [[Enumerable]] attributes and
  240. // set the rest of the property's attributes to their default values.
  241. if (object) {
  242. auto value = js_undefined();
  243. object->storage_set(property_name, { value, current->attributes() });
  244. }
  245. }
  246. }
  247. // 7. Else if IsDataDescriptor(current) and IsDataDescriptor(Desc) are both true, then
  248. else if (current->is_data_descriptor() && descriptor.is_data_descriptor()) {
  249. // a. If current.[[Configurable]] is false and current.[[Writable]] is false, then
  250. if (!*current->configurable && !*current->writable) {
  251. // i. If Desc.[[Writable]] is present and Desc.[[Writable]] is true, return false.
  252. if (descriptor.writable.has_value() && *descriptor.writable)
  253. return false;
  254. // ii. If Desc.[[Value]] is present and SameValue(Desc.[[Value]], current.[[Value]]) is false, return false.
  255. if (descriptor.value.has_value() && !same_value(*descriptor.value, *current->value))
  256. return false;
  257. // iii. Return true.
  258. return true;
  259. }
  260. }
  261. // 8. Else,
  262. else {
  263. // a. Assert: ! IsAccessorDescriptor(current) and ! IsAccessorDescriptor(Desc) are both true.
  264. VERIFY(current->is_accessor_descriptor());
  265. VERIFY(descriptor.is_accessor_descriptor());
  266. // b. If current.[[Configurable]] is false, then
  267. if (!*current->configurable) {
  268. // i. If Desc.[[Set]] is present and SameValue(Desc.[[Set]], current.[[Set]]) is false, return false.
  269. if (descriptor.set.has_value() && *descriptor.set != *current->set)
  270. return false;
  271. // ii. If Desc.[[Get]] is present and SameValue(Desc.[[Get]], current.[[Get]]) is false, return false.
  272. if (descriptor.get.has_value() && *descriptor.get != *current->get)
  273. return false;
  274. // iii. Return true.
  275. return true;
  276. }
  277. }
  278. // 9. If O is not undefined, then
  279. if (object) {
  280. // a. For each field of Desc that is present, set the corresponding attribute of the property named P of object O to the value of the field.
  281. Value value;
  282. if (descriptor.is_accessor_descriptor() || (current->is_accessor_descriptor() && !descriptor.is_data_descriptor())) {
  283. auto* getter = descriptor.get.value_or(current->get.value_or(nullptr));
  284. auto* setter = descriptor.set.value_or(current->set.value_or(nullptr));
  285. value = Accessor::create(object->vm(), getter, setter);
  286. } else {
  287. value = descriptor.value.value_or(current->value.value_or({}));
  288. }
  289. PropertyAttributes attributes;
  290. attributes.set_writable(descriptor.writable.value_or(current->writable.value_or(false)));
  291. attributes.set_enumerable(descriptor.enumerable.value_or(current->enumerable.value_or(false)));
  292. attributes.set_configurable(descriptor.configurable.value_or(current->configurable.value_or(false)));
  293. object->storage_set(property_name, { value, attributes });
  294. }
  295. // 10. Return true.
  296. return true;
  297. }
  298. // 10.1.14 GetPrototypeFromConstructor ( constructor, intrinsicDefaultProto ), https://tc39.es/ecma262/#sec-getprototypefromconstructor
  299. ThrowCompletionOr<Object*> get_prototype_from_constructor(GlobalObject& global_object, FunctionObject const& constructor, Object* (GlobalObject::*intrinsic_default_prototype)())
  300. {
  301. auto& vm = global_object.vm();
  302. // 1. Assert: intrinsicDefaultProto is this specification's name of an intrinsic object. The corresponding object must be an intrinsic that is intended to be used as the [[Prototype]] value of an object.
  303. // 2. Let proto be ? Get(constructor, "prototype").
  304. auto prototype = TRY(constructor.get(vm.names.prototype));
  305. // 3. If Type(proto) is not Object, then
  306. if (!prototype.is_object()) {
  307. // a. Let realm be ? GetFunctionRealm(constructor).
  308. auto* realm = TRY(get_function_realm(global_object, constructor));
  309. // b. Set proto to realm's intrinsic object named intrinsicDefaultProto.
  310. prototype = (realm->global_object().*intrinsic_default_prototype)();
  311. }
  312. // 4. Return proto.
  313. return &prototype.as_object();
  314. }
  315. // 9.1.2.2 NewDeclarativeEnvironment ( E ), https://tc39.es/ecma262/#sec-newdeclarativeenvironment
  316. DeclarativeEnvironment* new_declarative_environment(Environment& environment)
  317. {
  318. auto& global_object = environment.global_object();
  319. return global_object.heap().allocate<DeclarativeEnvironment>(global_object, &environment);
  320. }
  321. // 9.1.2.3 NewObjectEnvironment ( O, W, E ), https://tc39.es/ecma262/#sec-newobjectenvironment
  322. ObjectEnvironment* new_object_environment(Object& object, bool is_with_environment, Environment* environment)
  323. {
  324. auto& global_object = object.global_object();
  325. return global_object.heap().allocate<ObjectEnvironment>(global_object, object, is_with_environment ? ObjectEnvironment::IsWithEnvironment::Yes : ObjectEnvironment::IsWithEnvironment::No, environment);
  326. }
  327. // 9.1.2.4 NewFunctionEnvironment ( F, newTarget ), https://tc39.es/ecma262/#sec-newfunctionenvironment
  328. FunctionEnvironment* new_function_environment(ECMAScriptFunctionObject& function, Object* new_target)
  329. {
  330. auto& global_object = function.global_object();
  331. // 1. Let env be a new function Environment Record containing no bindings.
  332. auto* env = global_object.heap().allocate<FunctionEnvironment>(global_object, function.environment());
  333. // 2. Set env.[[FunctionObject]] to F.
  334. env->set_function_object(function);
  335. // 3. If F.[[ThisMode]] is lexical, set env.[[ThisBindingStatus]] to lexical.
  336. if (function.this_mode() == ECMAScriptFunctionObject::ThisMode::Lexical)
  337. env->set_this_binding_status(FunctionEnvironment::ThisBindingStatus::Lexical);
  338. // 4. Else, set env.[[ThisBindingStatus]] to uninitialized.
  339. else
  340. env->set_this_binding_status(FunctionEnvironment::ThisBindingStatus::Uninitialized);
  341. // 5. Set env.[[NewTarget]] to newTarget.
  342. env->set_new_target(new_target ?: js_undefined());
  343. // 6. Set env.[[OuterEnv]] to F.[[Environment]].
  344. // NOTE: Done in step 1 via the FunctionEnvironment constructor.
  345. // 7. Return env.
  346. return env;
  347. }
  348. PrivateEnvironment* new_private_environment(VM& vm, PrivateEnvironment* outer)
  349. {
  350. return vm.heap().allocate<PrivateEnvironment>(vm.current_realm()->global_object(), outer);
  351. }
  352. // 9.4.3 GetThisEnvironment ( ), https://tc39.es/ecma262/#sec-getthisenvironment
  353. Environment& get_this_environment(VM& vm)
  354. {
  355. for (auto* env = vm.lexical_environment(); env; env = env->outer_environment()) {
  356. if (env->has_this_binding())
  357. return *env;
  358. }
  359. VERIFY_NOT_REACHED();
  360. }
  361. // 13.3.7.2 GetSuperConstructor ( ), https://tc39.es/ecma262/#sec-getsuperconstructor
  362. Object* get_super_constructor(VM& vm)
  363. {
  364. // 1. Let envRec be GetThisEnvironment().
  365. auto& env = get_this_environment(vm);
  366. // 2. Assert: envRec is a function Environment Record.
  367. // 3. Let activeFunction be envRec.[[FunctionObject]].
  368. // 4. Assert: activeFunction is an ECMAScript function object.
  369. auto& active_function = verify_cast<FunctionEnvironment>(env).function_object();
  370. // 5. Let superConstructor be ! activeFunction.[[GetPrototypeOf]]().
  371. auto* super_constructor = MUST(active_function.internal_get_prototype_of());
  372. // 6. Return superConstructor.
  373. return super_constructor;
  374. }
  375. // 13.3.7.3 MakeSuperPropertyReference ( actualThis, propertyKey, strict ), https://tc39.es/ecma262/#sec-makesuperpropertyreference
  376. ThrowCompletionOr<Reference> make_super_property_reference(GlobalObject& global_object, Value actual_this, PropertyKey const& property_key, bool strict)
  377. {
  378. auto& vm = global_object.vm();
  379. // 1. Let env be GetThisEnvironment().
  380. auto& env = verify_cast<FunctionEnvironment>(get_this_environment(vm));
  381. // 2. Assert: env.HasSuperBinding() is true.
  382. VERIFY(env.has_super_binding());
  383. // 3. Let baseValue be ? env.GetSuperBase().
  384. auto base_value = TRY(env.get_super_base());
  385. // 4. Let bv be ? RequireObjectCoercible(baseValue).
  386. auto bv = TRY(require_object_coercible(global_object, base_value));
  387. // 5. Return the Reference Record { [[Base]]: bv, [[ReferencedName]]: propertyKey, [[Strict]]: strict, [[ThisValue]]: actualThis }.
  388. // 6. NOTE: This returns a Super Reference Record.
  389. return Reference { bv, property_key, actual_this, strict };
  390. }
  391. // 19.2.1.1 PerformEval ( x, callerRealm, strictCaller, direct ), https://tc39.es/ecma262/#sec-performeval
  392. ThrowCompletionOr<Value> perform_eval(Value x, GlobalObject& caller_realm, CallerMode strict_caller, EvalMode direct)
  393. {
  394. VERIFY(direct == EvalMode::Direct || strict_caller == CallerMode::NonStrict);
  395. if (!x.is_string())
  396. return x;
  397. auto& vm = caller_realm.vm();
  398. auto& eval_realm = vm.running_execution_context().realm;
  399. auto& code_string = x.as_string();
  400. Parser parser { Lexer { code_string.string() } };
  401. auto program = parser.parse_program(strict_caller == CallerMode::Strict);
  402. if (parser.has_errors()) {
  403. auto& error = parser.errors()[0];
  404. return vm.throw_completion<SyntaxError>(caller_realm, error.to_string());
  405. }
  406. auto strict_eval = strict_caller == CallerMode::Strict;
  407. if (program->is_strict_mode())
  408. strict_eval = true;
  409. auto& running_context = vm.running_execution_context();
  410. Environment* lexical_environment;
  411. Environment* variable_environment;
  412. PrivateEnvironment* private_environment;
  413. if (direct == EvalMode::Direct) {
  414. lexical_environment = new_declarative_environment(*running_context.lexical_environment);
  415. variable_environment = running_context.variable_environment;
  416. private_environment = running_context.private_environment;
  417. } else {
  418. lexical_environment = new_declarative_environment(eval_realm->global_environment());
  419. variable_environment = &eval_realm->global_environment();
  420. private_environment = nullptr;
  421. }
  422. if (strict_eval)
  423. variable_environment = lexical_environment;
  424. if (direct == EvalMode::Direct && !strict_eval) {
  425. // NOTE: Non-strict direct eval() forces us to deoptimize variable accesses.
  426. // Mark the variable environment chain as screwed since we will not be able
  427. // to rely on cached environment coordinates from this point on.
  428. variable_environment->set_permanently_screwed_by_eval();
  429. }
  430. // 18. If runningContext is not already suspended, suspend runningContext.
  431. // FIXME: We don't have this concept yet.
  432. ExecutionContext eval_context(vm.heap());
  433. eval_context.realm = eval_realm;
  434. eval_context.variable_environment = variable_environment;
  435. eval_context.lexical_environment = lexical_environment;
  436. eval_context.private_environment = private_environment;
  437. vm.push_execution_context(eval_context, eval_realm->global_object());
  438. ScopeGuard pop_guard = [&] {
  439. vm.pop_execution_context();
  440. };
  441. TRY(eval_declaration_instantiation(vm, eval_realm->global_object(), program, variable_environment, lexical_environment, private_environment, strict_eval));
  442. TemporaryChange scope_change_strict(vm.running_execution_context().is_strict_mode, strict_eval);
  443. Value eval_result;
  444. if (auto* bytecode_interpreter = Bytecode::Interpreter::current()) {
  445. auto executable = JS::Bytecode::Generator::generate(program);
  446. executable.name = "eval"sv;
  447. if (JS::Bytecode::g_dump_bytecode)
  448. executable.dump();
  449. eval_result = TRY(bytecode_interpreter->run(executable));
  450. } else {
  451. auto& ast_interpreter = vm.interpreter();
  452. // FIXME: We need to use evaluate_statements() here because Program::execute() calls global_declaration_instantiation() when it shouldn't
  453. eval_result = program->evaluate_statements(ast_interpreter, caller_realm);
  454. }
  455. if (auto* exception = vm.exception())
  456. return throw_completion(exception->value());
  457. else
  458. return eval_result.value_or(js_undefined());
  459. }
  460. // 19.2.1.3 EvalDeclarationInstantiation ( body, varEnv, lexEnv, privateEnv, strict ), https://tc39.es/ecma262/#sec-evaldeclarationinstantiation
  461. ThrowCompletionOr<void> eval_declaration_instantiation(VM& vm, GlobalObject& global_object, Program const& program, Environment* variable_environment, Environment* lexical_environment, PrivateEnvironment* private_environment, bool strict)
  462. {
  463. // FIXME: I'm not sure if the global object is correct here. And this is quite a crucial spot!
  464. GlobalEnvironment* global_var_environment = variable_environment->is_global_environment() ? static_cast<GlobalEnvironment*>(variable_environment) : nullptr;
  465. if (!strict) {
  466. if (global_var_environment) {
  467. program.for_each_var_declared_name([&](auto const& name) {
  468. if (global_var_environment->has_lexical_declaration(name)) {
  469. vm.throw_exception<SyntaxError>(global_object, ErrorType::TopLevelVariableAlreadyDeclared, name);
  470. return IterationDecision::Break;
  471. }
  472. return IterationDecision::Continue;
  473. });
  474. }
  475. auto* this_environment = lexical_environment;
  476. while (this_environment != variable_environment) {
  477. if (!is<ObjectEnvironment>(*this_environment)) {
  478. program.for_each_var_declared_name([&](auto const& name) {
  479. if (MUST(this_environment->has_binding(name))) {
  480. vm.throw_exception<SyntaxError>(global_object, ErrorType::TopLevelVariableAlreadyDeclared, name);
  481. return IterationDecision::Break;
  482. }
  483. // FIXME: NOTE: Annex B.3.4 defines alternate semantics for the above step.
  484. // In particular it only throw the syntax error if it is not an environment from a catchclause.
  485. return IterationDecision::Continue;
  486. });
  487. if (auto* exception = vm.exception())
  488. return throw_completion(exception->value());
  489. }
  490. this_environment = this_environment->outer_environment();
  491. VERIFY(this_environment);
  492. }
  493. }
  494. // FIXME: Add Private identifiers check here.
  495. HashTable<FlyString> declared_function_names;
  496. Vector<FunctionDeclaration const&> functions_to_initialize;
  497. program.for_each_var_function_declaration_in_reverse_order([&](FunctionDeclaration const& function) {
  498. if (declared_function_names.set(function.name()) != AK::HashSetResult::InsertedNewEntry)
  499. return IterationDecision::Continue;
  500. if (global_var_environment) {
  501. auto function_definable = global_var_environment->can_declare_global_function(function.name());
  502. if (vm.exception())
  503. return IterationDecision::Break;
  504. if (!function_definable) {
  505. vm.throw_exception<TypeError>(global_object, ErrorType::CannotDeclareGlobalFunction, function.name());
  506. return IterationDecision::Break;
  507. }
  508. }
  509. functions_to_initialize.append(function);
  510. return IterationDecision::Continue;
  511. });
  512. if (auto* exception = vm.exception())
  513. return throw_completion(exception->value());
  514. if (!strict) {
  515. // The spec here uses 'declaredVarNames' but that has not been declared yet.
  516. HashTable<FlyString> hoisted_functions;
  517. program.for_each_function_hoistable_with_annexB_extension([&](FunctionDeclaration& function_declaration) {
  518. auto& function_name = function_declaration.name();
  519. auto* this_environment = lexical_environment;
  520. while (this_environment != variable_environment) {
  521. if (!is<ObjectEnvironment>(*this_environment) && MUST(this_environment->has_binding(function_name)))
  522. return IterationDecision::Continue;
  523. this_environment = this_environment->outer_environment();
  524. VERIFY(this_environment);
  525. }
  526. if (global_var_environment) {
  527. if (global_var_environment->has_lexical_declaration(function_name))
  528. return IterationDecision::Continue;
  529. auto var_definable = global_var_environment->can_declare_global_var(function_name);
  530. if (vm.exception())
  531. return IterationDecision::Break;
  532. if (!var_definable)
  533. return IterationDecision::Continue;
  534. }
  535. if (!declared_function_names.contains(function_name) && !hoisted_functions.contains(function_name)) {
  536. if (global_var_environment) {
  537. global_var_environment->create_global_var_binding(function_name, true);
  538. if (vm.exception())
  539. return IterationDecision::Break;
  540. } else {
  541. if (!MUST(variable_environment->has_binding(function_name))) {
  542. MUST(variable_environment->create_mutable_binding(global_object, function_name, true));
  543. MUST(variable_environment->initialize_binding(global_object, function_name, js_undefined()));
  544. }
  545. }
  546. hoisted_functions.set(function_name);
  547. }
  548. function_declaration.set_should_do_additional_annexB_steps();
  549. return IterationDecision::Continue;
  550. });
  551. if (auto* exception = vm.exception())
  552. return throw_completion(exception->value());
  553. }
  554. HashTable<FlyString> declared_var_names;
  555. program.for_each_var_scoped_variable_declaration([&](VariableDeclaration const& declaration) {
  556. declaration.for_each_bound_name([&](auto const& name) {
  557. if (!declared_function_names.contains(name)) {
  558. if (global_var_environment) {
  559. auto variable_definable = global_var_environment->can_declare_global_var(name);
  560. if (vm.exception())
  561. return IterationDecision::Break;
  562. if (!variable_definable) {
  563. vm.throw_exception<TypeError>(global_object, ErrorType::CannotDeclareGlobalVariable, name);
  564. return IterationDecision::Break;
  565. }
  566. }
  567. declared_var_names.set(name);
  568. }
  569. return IterationDecision::Continue;
  570. });
  571. if (vm.exception())
  572. return IterationDecision::Break;
  573. return IterationDecision::Continue;
  574. });
  575. if (auto* exception = vm.exception())
  576. return throw_completion(exception->value());
  577. // 14. NOTE: No abnormal terminations occur after this algorithm step unless varEnv is a global Environment Record and the global object is a Proxy exotic object.
  578. program.for_each_lexically_scoped_declaration([&](Declaration const& declaration) {
  579. declaration.for_each_bound_name([&](auto const& name) {
  580. if (declaration.is_constant_declaration())
  581. (void)lexical_environment->create_immutable_binding(global_object, name, true);
  582. else
  583. (void)lexical_environment->create_mutable_binding(global_object, name, false);
  584. if (vm.exception())
  585. return IterationDecision::Break;
  586. return IterationDecision::Continue;
  587. });
  588. if (vm.exception())
  589. return IterationDecision::Break;
  590. return IterationDecision::Continue;
  591. });
  592. if (auto* exception = vm.exception())
  593. return throw_completion(exception->value());
  594. for (auto& declaration : functions_to_initialize) {
  595. auto* function = ECMAScriptFunctionObject::create(global_object, declaration.name(), declaration.body(), declaration.parameters(), declaration.function_length(), lexical_environment, private_environment, declaration.kind(), declaration.is_strict_mode(), declaration.might_need_arguments_object());
  596. if (global_var_environment) {
  597. global_var_environment->create_global_function_binding(declaration.name(), function, true);
  598. if (auto* exception = vm.exception())
  599. return throw_completion(exception->value());
  600. } else {
  601. auto binding_exists = MUST(variable_environment->has_binding(declaration.name()));
  602. if (!binding_exists) {
  603. TRY(variable_environment->create_mutable_binding(global_object, declaration.name(), true));
  604. TRY(variable_environment->initialize_binding(global_object, declaration.name(), function));
  605. } else {
  606. TRY(variable_environment->set_mutable_binding(global_object, declaration.name(), function, false));
  607. }
  608. }
  609. }
  610. for (auto& var_name : declared_var_names) {
  611. if (global_var_environment) {
  612. global_var_environment->create_global_var_binding(var_name, true);
  613. if (auto* exception = vm.exception())
  614. return throw_completion(exception->value());
  615. } else {
  616. auto binding_exists = MUST(variable_environment->has_binding(var_name));
  617. if (!binding_exists) {
  618. TRY(variable_environment->create_mutable_binding(global_object, var_name, true));
  619. TRY(variable_environment->initialize_binding(global_object, var_name, js_undefined()));
  620. }
  621. }
  622. }
  623. return {};
  624. }
  625. // 10.4.4.6 CreateUnmappedArgumentsObject ( argumentsList ), https://tc39.es/ecma262/#sec-createunmappedargumentsobject
  626. Object* create_unmapped_arguments_object(GlobalObject& global_object, Span<Value> arguments)
  627. {
  628. auto& vm = global_object.vm();
  629. // 1. Let len be the number of elements in argumentsList.
  630. auto length = arguments.size();
  631. // 2. Let obj be ! OrdinaryObjectCreate(%Object.prototype%, « [[ParameterMap]] »).
  632. // 3. Set obj.[[ParameterMap]] to undefined.
  633. auto* object = Object::create(global_object, global_object.object_prototype());
  634. object->set_has_parameter_map();
  635. // 4. Perform DefinePropertyOrThrow(obj, "length", PropertyDescriptor { [[Value]]: 𝔽(len), [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }).
  636. MUST(object->define_property_or_throw(vm.names.length, { .value = Value(length), .writable = true, .enumerable = false, .configurable = true }));
  637. // 5. Let index be 0.
  638. // 6. Repeat, while index < len,
  639. for (size_t index = 0; index < length; ++index) {
  640. // a. Let val be argumentsList[index].
  641. auto value = arguments[index];
  642. // b. Perform ! CreateDataPropertyOrThrow(obj, ! ToString(𝔽(index)), val).
  643. MUST(object->create_data_property_or_throw(index, value));
  644. // c. Set index to index + 1.
  645. }
  646. // 7. Perform ! DefinePropertyOrThrow(obj, @@iterator, PropertyDescriptor { [[Value]]: %Array.prototype.values%, [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }).
  647. auto* array_prototype_values = global_object.array_prototype_values_function();
  648. MUST(object->define_property_or_throw(*vm.well_known_symbol_iterator(), { .value = array_prototype_values, .writable = true, .enumerable = false, .configurable = true }));
  649. // 8. Perform ! DefinePropertyOrThrow(obj, "callee", PropertyDescriptor { [[Get]]: %ThrowTypeError%, [[Set]]: %ThrowTypeError%, [[Enumerable]]: false, [[Configurable]]: false }).
  650. auto* throw_type_error = global_object.throw_type_error_function();
  651. MUST(object->define_property_or_throw(vm.names.callee, { .get = throw_type_error, .set = throw_type_error, .enumerable = false, .configurable = false }));
  652. // 9. Return obj.
  653. return object;
  654. }
  655. // 10.4.4.7 CreateMappedArgumentsObject ( func, formals, argumentsList, env ), https://tc39.es/ecma262/#sec-createmappedargumentsobject
  656. Object* create_mapped_arguments_object(GlobalObject& global_object, FunctionObject& function, Vector<FunctionNode::Parameter> const& formals, Span<Value> arguments, Environment& environment)
  657. {
  658. auto& vm = global_object.vm();
  659. // 1. Assert: formals does not contain a rest parameter, any binding patterns, or any initializers. It may contain duplicate identifiers.
  660. // 2. Let len be the number of elements in argumentsList.
  661. VERIFY(arguments.size() <= NumericLimits<i32>::max());
  662. i32 length = static_cast<i32>(arguments.size());
  663. // 3. Let obj be ! MakeBasicObject(« [[Prototype]], [[Extensible]], [[ParameterMap]] »).
  664. // 4. Set obj.[[GetOwnProperty]] as specified in 10.4.4.1.
  665. // 5. Set obj.[[DefineOwnProperty]] as specified in 10.4.4.2.
  666. // 6. Set obj.[[Get]] as specified in 10.4.4.3.
  667. // 7. Set obj.[[Set]] as specified in 10.4.4.4.
  668. // 8. Set obj.[[Delete]] as specified in 10.4.4.5.
  669. // 9. Set obj.[[Prototype]] to %Object.prototype%.
  670. auto* object = vm.heap().allocate<ArgumentsObject>(global_object, global_object, environment);
  671. VERIFY(!vm.exception());
  672. // 14. Let index be 0.
  673. // 15. Repeat, while index < len,
  674. for (i32 index = 0; index < length; ++index) {
  675. // a. Let val be argumentsList[index].
  676. auto value = arguments[index];
  677. // b. Perform ! CreateDataPropertyOrThrow(obj, ! ToString(𝔽(index)), val).
  678. MUST(object->create_data_property_or_throw(index, value));
  679. // c. Set index to index + 1.
  680. }
  681. // 16. Perform ! DefinePropertyOrThrow(obj, "length", PropertyDescriptor { [[Value]]: 𝔽(len), [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }).
  682. MUST(object->define_property_or_throw(vm.names.length, { .value = Value(length), .writable = true, .enumerable = false, .configurable = true }));
  683. // 17. Let mappedNames be a new empty List.
  684. HashTable<FlyString> mapped_names;
  685. // 18. Set index to numberOfParameters - 1.
  686. // 19. Repeat, while index ≥ 0,
  687. VERIFY(formals.size() <= NumericLimits<i32>::max());
  688. for (i32 index = static_cast<i32>(formals.size()) - 1; index >= 0; --index) {
  689. // a. Let name be parameterNames[index].
  690. auto const& name = formals[index].binding.get<FlyString>();
  691. // b. If name is not an element of mappedNames, then
  692. if (mapped_names.contains(name))
  693. continue;
  694. // i. Add name as an element of the list mappedNames.
  695. mapped_names.set(name);
  696. // ii. If index < len, then
  697. if (index < length) {
  698. // 1. Let g be MakeArgGetter(name, env).
  699. // 2. Let p be MakeArgSetter(name, env).
  700. // 3. Perform map.[[DefineOwnProperty]](! ToString(𝔽(index)), PropertyDescriptor { [[Set]]: p, [[Get]]: g, [[Enumerable]]: false, [[Configurable]]: true }).
  701. object->parameter_map().define_native_accessor(
  702. PropertyKey { index },
  703. [&environment, name](VM&, GlobalObject& global_object_getter) -> JS::ThrowCompletionOr<Value> {
  704. return MUST(environment.get_binding_value(global_object_getter, name, false));
  705. },
  706. [&environment, name](VM& vm, GlobalObject& global_object_setter) {
  707. MUST(environment.set_mutable_binding(global_object_setter, name, vm.argument(0), false));
  708. return js_undefined();
  709. },
  710. Attribute::Configurable);
  711. }
  712. }
  713. // 20. Perform ! DefinePropertyOrThrow(obj, @@iterator, PropertyDescriptor { [[Value]]: %Array.prototype.values%, [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }).
  714. auto* array_prototype_values = global_object.array_prototype_values_function();
  715. MUST(object->define_property_or_throw(*vm.well_known_symbol_iterator(), { .value = array_prototype_values, .writable = true, .enumerable = false, .configurable = true }));
  716. // 21. Perform ! DefinePropertyOrThrow(obj, "callee", PropertyDescriptor { [[Value]]: func, [[Writable]]: true, [[Enumerable]]: false, [[Configurable]]: true }).
  717. MUST(object->define_property_or_throw(vm.names.callee, { .value = &function, .writable = true, .enumerable = false, .configurable = true }));
  718. // 22. Return obj.
  719. return object;
  720. }
  721. // 7.1.21 CanonicalNumericIndexString ( argument ), https://tc39.es/ecma262/#sec-canonicalnumericindexstring
  722. Value canonical_numeric_index_string(GlobalObject& global_object, PropertyKey const& property_name)
  723. {
  724. // NOTE: If the property name is a number type (An implementation-defined optimized
  725. // property key type), it can be treated as a string property that has already been
  726. // converted successfully into a canonical numeric index.
  727. VERIFY(property_name.is_string() || property_name.is_number());
  728. if (property_name.is_number())
  729. return Value(property_name.as_number());
  730. // 1. Assert: Type(argument) is String.
  731. auto argument = Value(js_string(global_object.vm(), property_name.as_string()));
  732. // 2. If argument is "-0", return -0𝔽.
  733. if (argument.as_string().string() == "-0")
  734. return Value(-0.0);
  735. // 3. Let n be ! ToNumber(argument).
  736. auto n = MUST(argument.to_number(global_object));
  737. // 4. If SameValue(! ToString(n), argument) is false, return undefined.
  738. if (!same_value(MUST(n.to_primitive_string(global_object)), argument))
  739. return js_undefined();
  740. // 5. Return n.
  741. return n;
  742. }
  743. // 22.1.3.17.1 GetSubstitution ( matched, str, position, captures, namedCaptures, replacement ), https://tc39.es/ecma262/#sec-getsubstitution
  744. ThrowCompletionOr<String> get_substitution(GlobalObject& global_object, Utf16View const& matched, Utf16View const& str, size_t position, Span<Value> captures, Value named_captures, Value replacement)
  745. {
  746. auto replace_string = TRY(replacement.to_utf16_string(global_object));
  747. auto replace_view = replace_string.view();
  748. StringBuilder result;
  749. for (size_t i = 0; i < replace_view.length_in_code_units(); ++i) {
  750. u16 curr = replace_view.code_unit_at(i);
  751. if ((curr != '$') || (i + 1 >= replace_view.length_in_code_units())) {
  752. result.append(curr);
  753. continue;
  754. }
  755. u16 next = replace_view.code_unit_at(i + 1);
  756. if (next == '$') {
  757. result.append('$');
  758. ++i;
  759. } else if (next == '&') {
  760. result.append(matched);
  761. ++i;
  762. } else if (next == '`') {
  763. auto substring = str.substring_view(0, position);
  764. result.append(substring);
  765. ++i;
  766. } else if (next == '\'') {
  767. auto tail_pos = position + matched.length_in_code_units();
  768. if (tail_pos < str.length_in_code_units()) {
  769. auto substring = str.substring_view(tail_pos);
  770. result.append(substring);
  771. }
  772. ++i;
  773. } else if (is_ascii_digit(next)) {
  774. bool is_two_digits = (i + 2 < replace_view.length_in_code_units()) && is_ascii_digit(replace_view.code_unit_at(i + 2));
  775. auto capture_postition_string = replace_view.substring_view(i + 1, is_two_digits ? 2 : 1).to_utf8();
  776. auto capture_position = capture_postition_string.to_uint();
  777. if (capture_position.has_value() && (*capture_position > 0) && (*capture_position <= captures.size())) {
  778. auto& value = captures[*capture_position - 1];
  779. if (!value.is_undefined()) {
  780. auto value_string = TRY(value.to_string(global_object));
  781. result.append(value_string);
  782. }
  783. i += is_two_digits ? 2 : 1;
  784. } else {
  785. result.append(curr);
  786. }
  787. } else if (next == '<') {
  788. auto start_position = i + 2;
  789. Optional<size_t> end_position;
  790. for (size_t j = start_position; j < replace_view.length_in_code_units(); ++j) {
  791. if (replace_view.code_unit_at(j) == '>') {
  792. end_position = j;
  793. break;
  794. }
  795. }
  796. if (named_captures.is_undefined() || !end_position.has_value()) {
  797. result.append(curr);
  798. } else {
  799. auto group_name_view = replace_view.substring_view(start_position, *end_position - start_position);
  800. auto group_name = group_name_view.to_utf8(Utf16View::AllowInvalidCodeUnits::Yes);
  801. auto capture = TRY(named_captures.as_object().get(group_name));
  802. if (!capture.is_undefined()) {
  803. auto capture_string = TRY(capture.to_string(global_object));
  804. result.append(capture_string);
  805. }
  806. i = *end_position;
  807. }
  808. } else {
  809. result.append(curr);
  810. }
  811. }
  812. return result.build();
  813. }
  814. }