VM.cpp 49 KB

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  1. /*
  2. * Copyright (c) 2020-2021, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2020-2022, Linus Groh <linusg@serenityos.org>
  4. * Copyright (c) 2021-2022, David Tuin <davidot@serenityos.org>
  5. *
  6. * SPDX-License-Identifier: BSD-2-Clause
  7. */
  8. #include <AK/Debug.h>
  9. #include <AK/LexicalPath.h>
  10. #include <AK/ScopeGuard.h>
  11. #include <AK/StringBuilder.h>
  12. #include <LibCore/File.h>
  13. #include <LibJS/AST.h>
  14. #include <LibJS/Interpreter.h>
  15. #include <LibJS/Runtime/AbstractOperations.h>
  16. #include <LibJS/Runtime/Array.h>
  17. #include <LibJS/Runtime/BoundFunction.h>
  18. #include <LibJS/Runtime/Completion.h>
  19. #include <LibJS/Runtime/ECMAScriptFunctionObject.h>
  20. #include <LibJS/Runtime/Error.h>
  21. #include <LibJS/Runtime/FinalizationRegistry.h>
  22. #include <LibJS/Runtime/FunctionEnvironment.h>
  23. #include <LibJS/Runtime/IteratorOperations.h>
  24. #include <LibJS/Runtime/NativeFunction.h>
  25. #include <LibJS/Runtime/PromiseCapability.h>
  26. #include <LibJS/Runtime/Reference.h>
  27. #include <LibJS/Runtime/Symbol.h>
  28. #include <LibJS/Runtime/VM.h>
  29. #include <LibJS/SourceTextModule.h>
  30. #include <LibJS/SyntheticModule.h>
  31. namespace JS {
  32. NonnullRefPtr<VM> VM::create(OwnPtr<CustomData> custom_data)
  33. {
  34. return adopt_ref(*new VM(move(custom_data)));
  35. }
  36. VM::VM(OwnPtr<CustomData> custom_data)
  37. : m_heap(*this)
  38. , m_custom_data(move(custom_data))
  39. {
  40. m_empty_string = m_heap.allocate_without_realm<PrimitiveString>(DeprecatedString::empty());
  41. for (size_t i = 0; i < 128; ++i) {
  42. m_single_ascii_character_strings[i] = m_heap.allocate_without_realm<PrimitiveString>(DeprecatedString::formatted("{:c}", i));
  43. }
  44. // Default hook implementations. These can be overridden by the host, for example, LibWeb overrides the default hooks to place promise jobs on the microtask queue.
  45. host_promise_rejection_tracker = [this](Promise& promise, Promise::RejectionOperation operation) {
  46. promise_rejection_tracker(promise, operation);
  47. };
  48. host_call_job_callback = [this](JobCallback& job_callback, Value this_value, MarkedVector<Value> arguments) {
  49. return call_job_callback(*this, job_callback, this_value, move(arguments));
  50. };
  51. host_enqueue_finalization_registry_cleanup_job = [this](FinalizationRegistry& finalization_registry) {
  52. enqueue_finalization_registry_cleanup_job(finalization_registry);
  53. };
  54. host_enqueue_promise_job = [this](Function<ThrowCompletionOr<Value>()> job, Realm* realm) {
  55. enqueue_promise_job(move(job), realm);
  56. };
  57. host_make_job_callback = [](FunctionObject& function_object) {
  58. return make_job_callback(function_object);
  59. };
  60. host_resolve_imported_module = [&](ScriptOrModule referencing_script_or_module, ModuleRequest const& specifier) {
  61. return resolve_imported_module(move(referencing_script_or_module), specifier);
  62. };
  63. host_import_module_dynamically = [&](ScriptOrModule, ModuleRequest const&, PromiseCapability const& promise_capability) {
  64. // By default, we throw on dynamic imports this is to prevent arbitrary file access by scripts.
  65. VERIFY(current_realm());
  66. auto& realm = *current_realm();
  67. auto promise = Promise::create(realm);
  68. // If you are here because you want to enable dynamic module importing make sure it won't be a security problem
  69. // by checking the default implementation of HostImportModuleDynamically and creating your own hook or calling
  70. // vm.enable_default_host_import_module_dynamically_hook().
  71. promise->reject(Error::create(realm, ErrorType::DynamicImportNotAllowed.message()));
  72. promise->perform_then(
  73. NativeFunction::create(realm, "", [](auto&) -> ThrowCompletionOr<Value> {
  74. VERIFY_NOT_REACHED();
  75. }),
  76. NativeFunction::create(realm, "", [&promise_capability](auto& vm) -> ThrowCompletionOr<Value> {
  77. auto error = vm.argument(0);
  78. // a. Perform ! Call(promiseCapability.[[Reject]], undefined, « error »).
  79. MUST(call(vm, *promise_capability.reject(), js_undefined(), error));
  80. // b. Return undefined.
  81. return js_undefined();
  82. }),
  83. {});
  84. };
  85. host_finish_dynamic_import = [&](ScriptOrModule referencing_script_or_module, ModuleRequest const& specifier, PromiseCapability const& promise_capability, Promise* promise) {
  86. return finish_dynamic_import(move(referencing_script_or_module), specifier, promise_capability, promise);
  87. };
  88. host_get_import_meta_properties = [&](SourceTextModule const&) -> HashMap<PropertyKey, Value> {
  89. return {};
  90. };
  91. host_finalize_import_meta = [&](Object*, SourceTextModule const&) {
  92. };
  93. host_get_supported_import_assertions = [&] {
  94. return Vector<DeprecatedString> { "type" };
  95. };
  96. // 19.2.1.2 HostEnsureCanCompileStrings ( callerRealm, calleeRealm ), https://tc39.es/ecma262/#sec-hostensurecancompilestrings
  97. host_ensure_can_compile_strings = [](Realm&) -> ThrowCompletionOr<void> {
  98. // The host-defined abstract operation HostEnsureCanCompileStrings takes argument calleeRealm (a Realm Record)
  99. // and returns either a normal completion containing unused or a throw completion.
  100. // It allows host environments to block certain ECMAScript functions which allow developers to compile strings into ECMAScript code.
  101. // An implementation of HostEnsureCanCompileStrings must conform to the following requirements:
  102. // - If the returned Completion Record is a normal completion, it must be a normal completion containing unused.
  103. // The default implementation of HostEnsureCanCompileStrings is to return NormalCompletion(unused).
  104. return {};
  105. };
  106. host_ensure_can_add_private_element = [](Object&) -> ThrowCompletionOr<void> {
  107. // The host-defined abstract operation HostEnsureCanAddPrivateElement takes argument O (an Object)
  108. // and returns either a normal completion containing unused or a throw completion.
  109. // It allows host environments to prevent the addition of private elements to particular host-defined exotic objects.
  110. // An implementation of HostEnsureCanAddPrivateElement must conform to the following requirements:
  111. // - If O is not a host-defined exotic object, this abstract operation must return NormalCompletion(unused) and perform no other steps.
  112. // - Any two calls of this abstract operation with the same argument must return the same kind of Completion Record.
  113. // The default implementation of HostEnsureCanAddPrivateElement is to return NormalCompletion(unused).
  114. return {};
  115. // This abstract operation is only invoked by ECMAScript hosts that are web browsers.
  116. // NOTE: Since LibJS has no way of knowing whether the current environment is a browser we always
  117. // call HostEnsureCanAddPrivateElement when needed.
  118. };
  119. #define __JS_ENUMERATE(SymbolName, snake_name) \
  120. m_well_known_symbol_##snake_name = Symbol::create(*this, "Symbol." #SymbolName, false);
  121. JS_ENUMERATE_WELL_KNOWN_SYMBOLS
  122. #undef __JS_ENUMERATE
  123. }
  124. void VM::enable_default_host_import_module_dynamically_hook()
  125. {
  126. host_import_module_dynamically = [&](ScriptOrModule referencing_script_or_module, ModuleRequest const& specifier, PromiseCapability const& promise_capability) {
  127. return import_module_dynamically(move(referencing_script_or_module), specifier, promise_capability);
  128. };
  129. }
  130. Interpreter& VM::interpreter()
  131. {
  132. VERIFY(!m_interpreters.is_empty());
  133. return *m_interpreters.last();
  134. }
  135. Interpreter* VM::interpreter_if_exists()
  136. {
  137. if (m_interpreters.is_empty())
  138. return nullptr;
  139. return m_interpreters.last();
  140. }
  141. void VM::push_interpreter(Interpreter& interpreter)
  142. {
  143. m_interpreters.append(&interpreter);
  144. }
  145. void VM::pop_interpreter(Interpreter& interpreter)
  146. {
  147. VERIFY(!m_interpreters.is_empty());
  148. auto* popped_interpreter = m_interpreters.take_last();
  149. VERIFY(popped_interpreter == &interpreter);
  150. }
  151. VM::InterpreterExecutionScope::InterpreterExecutionScope(Interpreter& interpreter)
  152. : m_interpreter(interpreter)
  153. {
  154. m_interpreter.vm().push_interpreter(m_interpreter);
  155. }
  156. VM::InterpreterExecutionScope::~InterpreterExecutionScope()
  157. {
  158. m_interpreter.vm().pop_interpreter(m_interpreter);
  159. }
  160. void VM::gather_roots(HashTable<Cell*>& roots)
  161. {
  162. roots.set(m_empty_string);
  163. for (auto* string : m_single_ascii_character_strings)
  164. roots.set(string);
  165. auto gather_roots_from_execution_context_stack = [&roots](Vector<ExecutionContext*> const& stack) {
  166. for (auto& execution_context : stack) {
  167. if (execution_context->this_value.is_cell())
  168. roots.set(&execution_context->this_value.as_cell());
  169. for (auto& argument : execution_context->arguments) {
  170. if (argument.is_cell())
  171. roots.set(&argument.as_cell());
  172. }
  173. roots.set(execution_context->lexical_environment);
  174. roots.set(execution_context->variable_environment);
  175. roots.set(execution_context->private_environment);
  176. if (auto* context_owner = execution_context->context_owner)
  177. roots.set(context_owner);
  178. execution_context->script_or_module.visit(
  179. [](Empty) {},
  180. [&](auto& script_or_module) {
  181. roots.set(script_or_module.ptr());
  182. });
  183. }
  184. };
  185. gather_roots_from_execution_context_stack(m_execution_context_stack);
  186. for (auto& saved_stack : m_saved_execution_context_stacks)
  187. gather_roots_from_execution_context_stack(saved_stack);
  188. #define __JS_ENUMERATE(SymbolName, snake_name) \
  189. roots.set(well_known_symbol_##snake_name());
  190. JS_ENUMERATE_WELL_KNOWN_SYMBOLS
  191. #undef __JS_ENUMERATE
  192. for (auto& symbol : m_global_symbol_registry)
  193. roots.set(symbol.value);
  194. for (auto* finalization_registry : m_finalization_registry_cleanup_jobs)
  195. roots.set(finalization_registry);
  196. }
  197. ThrowCompletionOr<Value> VM::named_evaluation_if_anonymous_function(ASTNode const& expression, FlyString const& name)
  198. {
  199. // 8.3.3 Static Semantics: IsAnonymousFunctionDefinition ( expr ), https://tc39.es/ecma262/#sec-isanonymousfunctiondefinition
  200. // And 8.3.5 Runtime Semantics: NamedEvaluation, https://tc39.es/ecma262/#sec-runtime-semantics-namedevaluation
  201. if (is<FunctionExpression>(expression)) {
  202. auto& function = static_cast<FunctionExpression const&>(expression);
  203. if (!function.has_name()) {
  204. return function.instantiate_ordinary_function_expression(interpreter(), name);
  205. }
  206. } else if (is<ClassExpression>(expression)) {
  207. auto& class_expression = static_cast<ClassExpression const&>(expression);
  208. if (!class_expression.has_name()) {
  209. return TRY(class_expression.class_definition_evaluation(interpreter(), {}, name));
  210. }
  211. }
  212. return TRY(expression.execute(interpreter())).release_value();
  213. }
  214. // 13.15.5.2 Runtime Semantics: DestructuringAssignmentEvaluation, https://tc39.es/ecma262/#sec-runtime-semantics-destructuringassignmentevaluation
  215. ThrowCompletionOr<void> VM::destructuring_assignment_evaluation(NonnullRefPtr<BindingPattern> const& target, Value value)
  216. {
  217. // Note: DestructuringAssignmentEvaluation is just like BindingInitialization without an environment
  218. // And it allows member expressions. We thus trust the parser to disallow member expressions
  219. // in any non assignment binding and just call BindingInitialization with a nullptr environment
  220. return binding_initialization(target, value, nullptr);
  221. }
  222. // 8.5.2 Runtime Semantics: BindingInitialization, https://tc39.es/ecma262/#sec-runtime-semantics-bindinginitialization
  223. ThrowCompletionOr<void> VM::binding_initialization(FlyString const& target, Value value, Environment* environment)
  224. {
  225. // 1. Let name be StringValue of Identifier.
  226. // 2. Return ? InitializeBoundName(name, value, environment).
  227. return initialize_bound_name(*this, target, value, environment);
  228. }
  229. // 8.5.2 Runtime Semantics: BindingInitialization, https://tc39.es/ecma262/#sec-runtime-semantics-bindinginitialization
  230. ThrowCompletionOr<void> VM::binding_initialization(NonnullRefPtr<BindingPattern> const& target, Value value, Environment* environment)
  231. {
  232. auto& vm = *this;
  233. // BindingPattern : ObjectBindingPattern
  234. if (target->kind == BindingPattern::Kind::Object) {
  235. // 1. Perform ? RequireObjectCoercible(value).
  236. TRY(require_object_coercible(vm, value));
  237. // 2. Return ? BindingInitialization of ObjectBindingPattern with arguments value and environment.
  238. // BindingInitialization of ObjectBindingPattern
  239. // 1. Perform ? PropertyBindingInitialization of BindingPropertyList with arguments value and environment.
  240. TRY(property_binding_initialization(*target, value, environment));
  241. // 2. Return unused.
  242. return {};
  243. }
  244. // BindingPattern : ArrayBindingPattern
  245. else {
  246. // 1. Let iteratorRecord be ? GetIterator(value).
  247. auto iterator_record = TRY(get_iterator(vm, value));
  248. // 2. Let result be Completion(IteratorBindingInitialization of ArrayBindingPattern with arguments iteratorRecord and environment).
  249. auto result = iterator_binding_initialization(*target, iterator_record, environment);
  250. // 3. If iteratorRecord.[[Done]] is false, return ? IteratorClose(iteratorRecord, result).
  251. if (!iterator_record.done) {
  252. // iterator_close() always returns a Completion, which ThrowCompletionOr will interpret as a throw
  253. // completion. So only return the result of iterator_close() if it is indeed a throw completion.
  254. auto completion = result.is_throw_completion() ? result.release_error() : normal_completion({});
  255. if (completion = iterator_close(vm, iterator_record, move(completion)); completion.is_error())
  256. return completion.release_error();
  257. }
  258. // 4. Return ? result.
  259. return result;
  260. }
  261. }
  262. // 13.15.5.3 Runtime Semantics: PropertyDestructuringAssignmentEvaluation, https://tc39.es/ecma262/#sec-runtime-semantics-propertydestructuringassignmentevaluation
  263. // 14.3.3.1 Runtime Semantics: PropertyBindingInitialization, https://tc39.es/ecma262/#sec-destructuring-binding-patterns-runtime-semantics-propertybindinginitialization
  264. ThrowCompletionOr<void> VM::property_binding_initialization(BindingPattern const& binding, Value value, Environment* environment)
  265. {
  266. auto& vm = *this;
  267. auto& realm = *vm.current_realm();
  268. auto* object = TRY(value.to_object(vm));
  269. HashTable<PropertyKey> seen_names;
  270. for (auto& property : binding.entries) {
  271. VERIFY(!property.is_elision());
  272. if (property.is_rest) {
  273. Reference assignment_target;
  274. if (auto identifier_ptr = property.name.get_pointer<NonnullRefPtr<Identifier>>()) {
  275. assignment_target = TRY(resolve_binding((*identifier_ptr)->string(), environment));
  276. } else if (auto member_ptr = property.alias.get_pointer<NonnullRefPtr<MemberExpression>>()) {
  277. assignment_target = TRY((*member_ptr)->to_reference(interpreter()));
  278. } else {
  279. VERIFY_NOT_REACHED();
  280. }
  281. auto rest_object = Object::create(realm, realm.intrinsics().object_prototype());
  282. VERIFY(rest_object);
  283. TRY(rest_object->copy_data_properties(vm, object, seen_names));
  284. if (!environment)
  285. return assignment_target.put_value(vm, rest_object);
  286. else
  287. return assignment_target.initialize_referenced_binding(vm, rest_object);
  288. }
  289. auto name = TRY(property.name.visit(
  290. [&](Empty) -> ThrowCompletionOr<PropertyKey> { VERIFY_NOT_REACHED(); },
  291. [&](NonnullRefPtr<Identifier> const& identifier) -> ThrowCompletionOr<PropertyKey> {
  292. return identifier->string();
  293. },
  294. [&](NonnullRefPtr<Expression> const& expression) -> ThrowCompletionOr<PropertyKey> {
  295. auto result = TRY(expression->execute(interpreter())).release_value();
  296. return result.to_property_key(vm);
  297. }));
  298. seen_names.set(name);
  299. if (property.name.has<NonnullRefPtr<Identifier>>() && property.alias.has<Empty>()) {
  300. // FIXME: this branch and not taking this have a lot in common we might want to unify it more (like it was before).
  301. auto& identifier = *property.name.get<NonnullRefPtr<Identifier>>();
  302. auto reference = TRY(resolve_binding(identifier.string(), environment));
  303. auto value_to_assign = TRY(object->get(name));
  304. if (property.initializer && value_to_assign.is_undefined()) {
  305. value_to_assign = TRY(named_evaluation_if_anonymous_function(*property.initializer, identifier.string()));
  306. }
  307. if (!environment)
  308. TRY(reference.put_value(vm, value_to_assign));
  309. else
  310. TRY(reference.initialize_referenced_binding(vm, value_to_assign));
  311. continue;
  312. }
  313. auto reference_to_assign_to = TRY(property.alias.visit(
  314. [&](Empty) -> ThrowCompletionOr<Optional<Reference>> { return Optional<Reference> {}; },
  315. [&](NonnullRefPtr<Identifier> const& identifier) -> ThrowCompletionOr<Optional<Reference>> {
  316. return TRY(resolve_binding(identifier->string(), environment));
  317. },
  318. [&](NonnullRefPtr<BindingPattern> const&) -> ThrowCompletionOr<Optional<Reference>> { return Optional<Reference> {}; },
  319. [&](NonnullRefPtr<MemberExpression> const& member_expression) -> ThrowCompletionOr<Optional<Reference>> {
  320. return TRY(member_expression->to_reference(interpreter()));
  321. }));
  322. auto value_to_assign = TRY(object->get(name));
  323. if (property.initializer && value_to_assign.is_undefined()) {
  324. if (auto* identifier_ptr = property.alias.get_pointer<NonnullRefPtr<Identifier>>())
  325. value_to_assign = TRY(named_evaluation_if_anonymous_function(*property.initializer, (*identifier_ptr)->string()));
  326. else
  327. value_to_assign = TRY(property.initializer->execute(interpreter())).release_value();
  328. }
  329. if (auto* binding_ptr = property.alias.get_pointer<NonnullRefPtr<BindingPattern>>()) {
  330. TRY(binding_initialization(*binding_ptr, value_to_assign, environment));
  331. } else {
  332. VERIFY(reference_to_assign_to.has_value());
  333. if (!environment)
  334. TRY(reference_to_assign_to->put_value(vm, value_to_assign));
  335. else
  336. TRY(reference_to_assign_to->initialize_referenced_binding(vm, value_to_assign));
  337. }
  338. }
  339. return {};
  340. }
  341. // 13.15.5.5 Runtime Semantics: IteratorDestructuringAssignmentEvaluation, https://tc39.es/ecma262/#sec-runtime-semantics-iteratordestructuringassignmentevaluation
  342. // 8.5.3 Runtime Semantics: IteratorBindingInitialization, https://tc39.es/ecma262/#sec-runtime-semantics-iteratorbindinginitialization
  343. ThrowCompletionOr<void> VM::iterator_binding_initialization(BindingPattern const& binding, Iterator& iterator_record, Environment* environment)
  344. {
  345. auto& vm = *this;
  346. auto& realm = *vm.current_realm();
  347. // FIXME: this method is nearly identical to destructuring assignment!
  348. for (size_t i = 0; i < binding.entries.size(); i++) {
  349. auto& entry = binding.entries[i];
  350. Value value;
  351. auto assignment_target = TRY(entry.alias.visit(
  352. [&](Empty) -> ThrowCompletionOr<Optional<Reference>> { return Optional<Reference> {}; },
  353. [&](NonnullRefPtr<Identifier> const& identifier) -> ThrowCompletionOr<Optional<Reference>> {
  354. return TRY(resolve_binding(identifier->string(), environment));
  355. },
  356. [&](NonnullRefPtr<BindingPattern> const&) -> ThrowCompletionOr<Optional<Reference>> { return Optional<Reference> {}; },
  357. [&](NonnullRefPtr<MemberExpression> const& member_expression) -> ThrowCompletionOr<Optional<Reference>> {
  358. return TRY(member_expression->to_reference(interpreter()));
  359. }));
  360. // BindingRestElement : ... BindingIdentifier
  361. // BindingRestElement : ... BindingPattern
  362. if (entry.is_rest) {
  363. VERIFY(i == binding.entries.size() - 1);
  364. // 2. Let A be ! ArrayCreate(0).
  365. auto array = MUST(Array::create(realm, 0));
  366. // 3. Let n be 0.
  367. // 4. Repeat,
  368. while (true) {
  369. ThrowCompletionOr<Object*> next { nullptr };
  370. // a. If iteratorRecord.[[Done]] is false, then
  371. if (!iterator_record.done) {
  372. // i. Let next be Completion(IteratorStep(iteratorRecord)).
  373. next = iterator_step(vm, iterator_record);
  374. // ii. If next is an abrupt completion, set iteratorRecord.[[Done]] to true.
  375. // iii. ReturnIfAbrupt(next).
  376. if (next.is_error()) {
  377. iterator_record.done = true;
  378. return next.release_error();
  379. }
  380. // iv. If next is false, set iteratorRecord.[[Done]] to true.
  381. if (!next.value())
  382. iterator_record.done = true;
  383. }
  384. // b. If iteratorRecord.[[Done]] is true, then
  385. if (iterator_record.done) {
  386. // NOTE: Step i. and ii. are handled below.
  387. break;
  388. }
  389. // c. Let nextValue be Completion(IteratorValue(next)).
  390. auto next_value = iterator_value(vm, *next.value());
  391. // d. If nextValue is an abrupt completion, set iteratorRecord.[[Done]] to true.
  392. // e. ReturnIfAbrupt(nextValue).
  393. if (next_value.is_error()) {
  394. iterator_record.done = true;
  395. return next_value.release_error();
  396. }
  397. // f. Perform ! CreateDataPropertyOrThrow(A, ! ToString(𝔽(n)), nextValue).
  398. array->indexed_properties().append(next_value.value());
  399. // g. Set n to n + 1.
  400. }
  401. value = array;
  402. }
  403. // SingleNameBinding : BindingIdentifier Initializer[opt]
  404. // BindingElement : BindingPattern Initializer[opt]
  405. else {
  406. // 1. Let v be undefined.
  407. value = js_undefined();
  408. // 2. If iteratorRecord.[[Done]] is false, then
  409. if (!iterator_record.done) {
  410. // a. Let next be Completion(IteratorStep(iteratorRecord)).
  411. auto next = iterator_step(vm, iterator_record);
  412. // b. If next is an abrupt completion, set iteratorRecord.[[Done]] to true.
  413. // c. ReturnIfAbrupt(next).
  414. if (next.is_error()) {
  415. iterator_record.done = true;
  416. return next.release_error();
  417. }
  418. // d. If next is false, set iteratorRecord.[[Done]] to true.
  419. if (!next.value()) {
  420. iterator_record.done = true;
  421. }
  422. // e. Else,
  423. else {
  424. // i. Set v to Completion(IteratorValue(next)).
  425. auto value_or_error = iterator_value(vm, *next.value());
  426. // ii. If v is an abrupt completion, set iteratorRecord.[[Done]] to true.
  427. // iii. ReturnIfAbrupt(v).
  428. if (value_or_error.is_throw_completion()) {
  429. iterator_record.done = true;
  430. return value_or_error.release_error();
  431. }
  432. value = value_or_error.release_value();
  433. }
  434. }
  435. // NOTE: Step 3. and 4. are handled below.
  436. }
  437. if (value.is_undefined() && entry.initializer) {
  438. VERIFY(!entry.is_rest);
  439. if (auto* identifier_ptr = entry.alias.get_pointer<NonnullRefPtr<Identifier>>())
  440. value = TRY(named_evaluation_if_anonymous_function(*entry.initializer, (*identifier_ptr)->string()));
  441. else
  442. value = TRY(entry.initializer->execute(interpreter())).release_value();
  443. }
  444. if (auto* binding_ptr = entry.alias.get_pointer<NonnullRefPtr<BindingPattern>>()) {
  445. TRY(binding_initialization(*binding_ptr, value, environment));
  446. } else if (!entry.alias.has<Empty>()) {
  447. VERIFY(assignment_target.has_value());
  448. if (!environment)
  449. TRY(assignment_target->put_value(vm, value));
  450. else
  451. TRY(assignment_target->initialize_referenced_binding(vm, value));
  452. }
  453. }
  454. return {};
  455. }
  456. // 9.1.2.1 GetIdentifierReference ( env, name, strict ), https://tc39.es/ecma262/#sec-getidentifierreference
  457. ThrowCompletionOr<Reference> VM::get_identifier_reference(Environment* environment, FlyString name, bool strict, size_t hops)
  458. {
  459. // 1. If env is the value null, then
  460. if (!environment) {
  461. // a. Return the Reference Record { [[Base]]: unresolvable, [[ReferencedName]]: name, [[Strict]]: strict, [[ThisValue]]: empty }.
  462. return Reference { Reference::BaseType::Unresolvable, move(name), strict };
  463. }
  464. // 2. Let exists be ? env.HasBinding(name).
  465. Optional<size_t> index;
  466. auto exists = TRY(environment->has_binding(name, &index));
  467. // Note: This is an optimization for looking up the same reference.
  468. Optional<EnvironmentCoordinate> environment_coordinate;
  469. if (index.has_value()) {
  470. VERIFY(hops <= NumericLimits<u32>::max());
  471. VERIFY(index.value() <= NumericLimits<u32>::max());
  472. environment_coordinate = EnvironmentCoordinate { .hops = static_cast<u32>(hops), .index = static_cast<u32>(index.value()) };
  473. }
  474. // 3. If exists is true, then
  475. if (exists) {
  476. // a. Return the Reference Record { [[Base]]: env, [[ReferencedName]]: name, [[Strict]]: strict, [[ThisValue]]: empty }.
  477. return Reference { *environment, move(name), strict, environment_coordinate };
  478. }
  479. // 4. Else,
  480. else {
  481. // a. Let outer be env.[[OuterEnv]].
  482. // b. Return ? GetIdentifierReference(outer, name, strict).
  483. return get_identifier_reference(environment->outer_environment(), move(name), strict, hops + 1);
  484. }
  485. }
  486. // 9.4.2 ResolveBinding ( name [ , env ] ), https://tc39.es/ecma262/#sec-resolvebinding
  487. ThrowCompletionOr<Reference> VM::resolve_binding(FlyString const& name, Environment* environment)
  488. {
  489. // 1. If env is not present or if env is undefined, then
  490. if (!environment) {
  491. // a. Set env to the running execution context's LexicalEnvironment.
  492. environment = running_execution_context().lexical_environment;
  493. }
  494. // 2. Assert: env is an Environment Record.
  495. VERIFY(environment);
  496. // 3. If the source text matched by the syntactic production that is being evaluated is contained in strict mode code, let strict be true; else let strict be false.
  497. bool strict = in_strict_mode();
  498. // 4. Return ? GetIdentifierReference(env, name, strict).
  499. return get_identifier_reference(environment, name, strict);
  500. // NOTE: The spec says:
  501. // Note: The result of ResolveBinding is always a Reference Record whose [[ReferencedName]] field is name.
  502. // But this is not actually correct as GetIdentifierReference (or really the methods it calls) can throw.
  503. }
  504. // 9.4.4 ResolveThisBinding ( ), https://tc39.es/ecma262/#sec-resolvethisbinding
  505. ThrowCompletionOr<Value> VM::resolve_this_binding()
  506. {
  507. auto& vm = *this;
  508. // 1. Let envRec be GetThisEnvironment().
  509. auto& environment = get_this_environment(vm);
  510. // 2. Return ? envRec.GetThisBinding().
  511. return TRY(environment.get_this_binding(vm));
  512. }
  513. // 9.4.5 GetNewTarget ( ), https://tc39.es/ecma262/#sec-getnewtarget
  514. Value VM::get_new_target()
  515. {
  516. // 1. Let envRec be GetThisEnvironment().
  517. auto& env = get_this_environment(*this);
  518. // 2. Assert: envRec has a [[NewTarget]] field.
  519. // 3. Return envRec.[[NewTarget]].
  520. return verify_cast<FunctionEnvironment>(env).new_target();
  521. }
  522. // 9.4.5 GetGlobalObject ( ), https://tc39.es/ecma262/#sec-getglobalobject
  523. Object& VM::get_global_object()
  524. {
  525. // 1. Let currentRealm be the current Realm Record.
  526. auto& current_realm = *this->current_realm();
  527. // 2. Return currentRealm.[[GlobalObject]].
  528. return current_realm.global_object();
  529. }
  530. bool VM::in_strict_mode() const
  531. {
  532. if (execution_context_stack().is_empty())
  533. return false;
  534. return running_execution_context().is_strict_mode;
  535. }
  536. void VM::run_queued_promise_jobs()
  537. {
  538. dbgln_if(PROMISE_DEBUG, "Running queued promise jobs");
  539. while (!m_promise_jobs.is_empty()) {
  540. auto job = m_promise_jobs.take_first();
  541. dbgln_if(PROMISE_DEBUG, "Calling promise job function");
  542. [[maybe_unused]] auto result = job();
  543. }
  544. }
  545. // 9.5.4 HostEnqueuePromiseJob ( job, realm ), https://tc39.es/ecma262/#sec-hostenqueuepromisejob
  546. void VM::enqueue_promise_job(Function<ThrowCompletionOr<Value>()> job, Realm*)
  547. {
  548. // An implementation of HostEnqueuePromiseJob must conform to the requirements in 9.5 as well as the following:
  549. // - FIXME: If realm is not null, each time job is invoked the implementation must perform implementation-defined steps such that execution is prepared to evaluate ECMAScript code at the time of job's invocation.
  550. // - FIXME: Let scriptOrModule be GetActiveScriptOrModule() at the time HostEnqueuePromiseJob is invoked. If realm is not null, each time job is invoked the implementation must perform implementation-defined steps
  551. // such that scriptOrModule is the active script or module at the time of job's invocation.
  552. // - Jobs must run in the same order as the HostEnqueuePromiseJob invocations that scheduled them.
  553. m_promise_jobs.append(move(job));
  554. }
  555. void VM::run_queued_finalization_registry_cleanup_jobs()
  556. {
  557. while (!m_finalization_registry_cleanup_jobs.is_empty()) {
  558. auto* registry = m_finalization_registry_cleanup_jobs.take_first();
  559. // FIXME: Handle any uncatched exceptions here.
  560. (void)registry->cleanup();
  561. }
  562. }
  563. // 9.10.4.1 HostEnqueueFinalizationRegistryCleanupJob ( finalizationRegistry ), https://tc39.es/ecma262/#sec-host-cleanup-finalization-registry
  564. void VM::enqueue_finalization_registry_cleanup_job(FinalizationRegistry& registry)
  565. {
  566. m_finalization_registry_cleanup_jobs.append(&registry);
  567. }
  568. // 27.2.1.9 HostPromiseRejectionTracker ( promise, operation ), https://tc39.es/ecma262/#sec-host-promise-rejection-tracker
  569. void VM::promise_rejection_tracker(Promise& promise, Promise::RejectionOperation operation) const
  570. {
  571. switch (operation) {
  572. case Promise::RejectionOperation::Reject:
  573. // A promise was rejected without any handlers
  574. if (on_promise_unhandled_rejection)
  575. on_promise_unhandled_rejection(promise);
  576. break;
  577. case Promise::RejectionOperation::Handle:
  578. // A handler was added to an already rejected promise
  579. if (on_promise_rejection_handled)
  580. on_promise_rejection_handled(promise);
  581. break;
  582. default:
  583. VERIFY_NOT_REACHED();
  584. }
  585. }
  586. void VM::dump_backtrace() const
  587. {
  588. for (ssize_t i = m_execution_context_stack.size() - 1; i >= 0; --i) {
  589. auto& frame = m_execution_context_stack[i];
  590. if (frame->current_node) {
  591. auto source_range = frame->current_node->source_range();
  592. dbgln("-> {} @ {}:{},{}", frame->function_name, source_range.filename(), source_range.start.line, source_range.start.column);
  593. } else {
  594. dbgln("-> {}", frame->function_name);
  595. }
  596. }
  597. }
  598. void VM::save_execution_context_stack()
  599. {
  600. m_saved_execution_context_stacks.append(move(m_execution_context_stack));
  601. }
  602. void VM::restore_execution_context_stack()
  603. {
  604. m_execution_context_stack = m_saved_execution_context_stacks.take_last();
  605. }
  606. // 9.4.1 GetActiveScriptOrModule ( ), https://tc39.es/ecma262/#sec-getactivescriptormodule
  607. ScriptOrModule VM::get_active_script_or_module() const
  608. {
  609. // 1. If the execution context stack is empty, return null.
  610. if (m_execution_context_stack.is_empty())
  611. return Empty {};
  612. // 2. Let ec be the topmost execution context on the execution context stack whose ScriptOrModule component is not null.
  613. for (auto i = m_execution_context_stack.size() - 1; i > 0; i--) {
  614. if (!m_execution_context_stack[i]->script_or_module.has<Empty>())
  615. return m_execution_context_stack[i]->script_or_module;
  616. }
  617. // 3. If no such execution context exists, return null. Otherwise, return ec's ScriptOrModule.
  618. // Note: Since it is not empty we have 0 and since we got here all the
  619. // above contexts don't have a non-null ScriptOrModule
  620. return m_execution_context_stack[0]->script_or_module;
  621. }
  622. VM::StoredModule* VM::get_stored_module(ScriptOrModule const&, DeprecatedString const& filename, DeprecatedString const&)
  623. {
  624. // Note the spec says:
  625. // Each time this operation is called with a specific referencingScriptOrModule, specifier pair as arguments
  626. // it must return the same Module Record instance if it completes normally.
  627. // Currently, we ignore the referencing script or module but this might not be correct in all cases.
  628. // Editor's Note from https://tc39.es/proposal-json-modules/#sec-hostresolveimportedmodule
  629. // The above text implies that is recommended but not required that hosts do not use moduleRequest.[[Assertions]]
  630. // as part of the module cache key. In either case, an exception thrown from an import with a given assertion list
  631. // does not rule out success of another import with the same specifier but a different assertion list.
  632. auto end_or_module = m_loaded_modules.find_if([&](StoredModule const& stored_module) {
  633. return stored_module.filename == filename;
  634. });
  635. if (end_or_module.is_end())
  636. return nullptr;
  637. return &(*end_or_module);
  638. }
  639. ThrowCompletionOr<void> VM::link_and_eval_module(Badge<Interpreter>, SourceTextModule& module)
  640. {
  641. return link_and_eval_module(module);
  642. }
  643. ThrowCompletionOr<void> VM::link_and_eval_module(Module& module)
  644. {
  645. auto filename = module.filename();
  646. auto module_or_end = m_loaded_modules.find_if([&](StoredModule const& stored_module) {
  647. return stored_module.module.ptr() == &module;
  648. });
  649. StoredModule* stored_module;
  650. if (module_or_end.is_end()) {
  651. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] Warning introducing module via link_and_eval_module {}", module.filename());
  652. if (m_loaded_modules.size() > 0)
  653. dbgln("Warning: Using multiple modules as entry point can lead to unexpected results");
  654. m_loaded_modules.empend(
  655. NonnullGCPtr(module),
  656. module.filename(),
  657. DeprecatedString {}, // Null type
  658. module,
  659. true);
  660. stored_module = &m_loaded_modules.last();
  661. } else {
  662. stored_module = module_or_end.operator->();
  663. if (stored_module->has_once_started_linking) {
  664. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] Module already has started linking once {}", module.filename());
  665. return {};
  666. }
  667. stored_module->has_once_started_linking = true;
  668. }
  669. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] Linking module {}", filename);
  670. auto linked_or_error = module.link(*this);
  671. if (linked_or_error.is_error())
  672. return linked_or_error.throw_completion();
  673. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] Linking passed, now evaluating module {}", filename);
  674. auto evaluated_or_error = module.evaluate(*this);
  675. if (evaluated_or_error.is_error())
  676. return evaluated_or_error.throw_completion();
  677. auto* evaluated_value = evaluated_or_error.value();
  678. run_queued_promise_jobs();
  679. VERIFY(m_promise_jobs.is_empty());
  680. // FIXME: This will break if we start doing promises actually asynchronously.
  681. VERIFY(evaluated_value->state() != Promise::State::Pending);
  682. if (evaluated_value->state() == Promise::State::Rejected)
  683. return JS::throw_completion(evaluated_value->result());
  684. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] Evaluating passed for module {}", module.filename());
  685. return {};
  686. }
  687. static DeprecatedString resolve_module_filename(StringView filename, StringView module_type)
  688. {
  689. auto extensions = Vector<StringView, 2> { "js"sv, "mjs"sv };
  690. if (module_type == "json"sv)
  691. extensions = { "json"sv };
  692. if (!Core::File::exists(filename)) {
  693. for (auto extension : extensions) {
  694. // import "./foo" -> import "./foo.ext"
  695. auto resolved_filepath = DeprecatedString::formatted("{}.{}", filename, extension);
  696. if (Core::File::exists(resolved_filepath))
  697. return resolved_filepath;
  698. }
  699. } else if (Core::File::is_directory(filename)) {
  700. for (auto extension : extensions) {
  701. // import "./foo" -> import "./foo/index.ext"
  702. auto resolved_filepath = LexicalPath::join(filename, DeprecatedString::formatted("index.{}", extension)).string();
  703. if (Core::File::exists(resolved_filepath))
  704. return resolved_filepath;
  705. }
  706. }
  707. return filename;
  708. }
  709. // 16.2.1.7 HostResolveImportedModule ( referencingScriptOrModule, specifier ), https://tc39.es/ecma262/#sec-hostresolveimportedmodule
  710. ThrowCompletionOr<NonnullGCPtr<Module>> VM::resolve_imported_module(ScriptOrModule referencing_script_or_module, ModuleRequest const& module_request)
  711. {
  712. // An implementation of HostResolveImportedModule must conform to the following requirements:
  713. // - If it completes normally, the [[Value]] slot of the completion must contain an instance of a concrete subclass of Module Record.
  714. // - If a Module Record corresponding to the pair referencingScriptOrModule, moduleRequest does not exist or cannot be created, an exception must be thrown.
  715. // - Each time this operation is called with a specific referencingScriptOrModule, moduleRequest.[[Specifier]], moduleRequest.[[Assertions]] triple
  716. // as arguments it must return the same Module Record instance if it completes normally.
  717. // * It is recommended but not required that implementations additionally conform to the following stronger constraint:
  718. // each time this operation is called with a specific referencingScriptOrModule, moduleRequest.[[Specifier]] pair as arguments it must return the same Module Record instance if it completes normally.
  719. // - moduleRequest.[[Assertions]] must not influence the interpretation of the module or the module specifier;
  720. // instead, it may be used to determine whether the algorithm completes normally or with an abrupt completion.
  721. // Multiple different referencingScriptOrModule, moduleRequest.[[Specifier]] pairs may map to the same Module Record instance.
  722. // The actual mapping semantic is host-defined but typically a normalization process is applied to specifier as part of the mapping process.
  723. // A typical normalization process would include actions such as alphabetic case folding and expansion of relative and abbreviated path specifiers.
  724. // We only allow "type" as a supported assertion so it is the only valid key that should ever arrive here.
  725. VERIFY(module_request.assertions.is_empty() || (module_request.assertions.size() == 1 && module_request.assertions.first().key == "type"));
  726. auto module_type = module_request.assertions.is_empty() ? DeprecatedString {} : module_request.assertions.first().value;
  727. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] module at {} has type {} [is_null={}]", module_request.module_specifier, module_type, module_type.is_null());
  728. StringView base_filename = referencing_script_or_module.visit(
  729. [&](Empty) {
  730. return "."sv;
  731. },
  732. [&](auto& script_or_module) {
  733. return script_or_module->filename();
  734. });
  735. LexicalPath base_path { base_filename };
  736. auto filename = LexicalPath::absolute_path(base_path.dirname(), module_request.module_specifier);
  737. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] base path: '{}'", base_path);
  738. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] initial filename: '{}'", filename);
  739. filename = resolve_module_filename(filename, module_type);
  740. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] resolved filename: '{}'", filename);
  741. #if JS_MODULE_DEBUG
  742. DeprecatedString referencing_module_string = referencing_script_or_module.visit(
  743. [&](Empty) -> DeprecatedString {
  744. return ".";
  745. },
  746. [&](auto& script_or_module) {
  747. if constexpr (IsSame<Script*, decltype(script_or_module)>) {
  748. return DeprecatedString::formatted("Script @ {}", script_or_module.ptr());
  749. }
  750. return DeprecatedString::formatted("Module @ {}", script_or_module.ptr());
  751. });
  752. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] resolve_imported_module({}, {})", referencing_module_string, filename);
  753. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] resolved {} + {} -> {}", base_path, module_request.module_specifier, filename);
  754. #endif
  755. auto* loaded_module_or_end = get_stored_module(referencing_script_or_module, filename, module_type);
  756. if (loaded_module_or_end != nullptr) {
  757. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] resolve_imported_module({}) already loaded at {}", filename, loaded_module_or_end->module.ptr());
  758. return NonnullGCPtr(*loaded_module_or_end->module);
  759. }
  760. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] reading and parsing module {}", filename);
  761. auto file_or_error = Core::File::open(filename, Core::OpenMode::ReadOnly);
  762. if (file_or_error.is_error()) {
  763. return throw_completion<SyntaxError>(ErrorType::ModuleNotFound, module_request.module_specifier);
  764. }
  765. // FIXME: Don't read the file in one go.
  766. auto file_content = file_or_error.value()->read_all();
  767. StringView content_view { file_content.data(), file_content.size() };
  768. auto module = TRY([&]() -> ThrowCompletionOr<NonnullGCPtr<Module>> {
  769. // If assertions has an entry entry such that entry.[[Key]] is "type", let type be entry.[[Value]]. The following requirements apply:
  770. // If type is "json", then this algorithm must either invoke ParseJSONModule and return the resulting Completion Record, or throw an exception.
  771. if (module_type == "json"sv) {
  772. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] reading and parsing JSON module {}", filename);
  773. return parse_json_module(content_view, *current_realm(), filename);
  774. }
  775. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] reading and parsing as SourceTextModule module {}", filename);
  776. // Note: We treat all files as module, so if a script does not have exports it just runs it.
  777. auto module_or_errors = SourceTextModule::parse(content_view, *current_realm(), filename);
  778. if (module_or_errors.is_error()) {
  779. VERIFY(module_or_errors.error().size() > 0);
  780. return throw_completion<SyntaxError>(module_or_errors.error().first().to_deprecated_string());
  781. }
  782. return module_or_errors.release_value();
  783. }());
  784. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] resolve_imported_module(...) parsed {} to {}", filename, module.ptr());
  785. // We have to set it here already in case it references itself.
  786. m_loaded_modules.empend(
  787. referencing_script_or_module,
  788. filename,
  789. module_type,
  790. *module,
  791. false);
  792. return module;
  793. }
  794. // 16.2.1.8 HostImportModuleDynamically ( referencingScriptOrModule, specifier, promiseCapability ), https://tc39.es/ecma262/#sec-hostimportmoduledynamically
  795. void VM::import_module_dynamically(ScriptOrModule referencing_script_or_module, ModuleRequest module_request, PromiseCapability const& promise_capability)
  796. {
  797. auto& realm = *current_realm();
  798. // Success path:
  799. // - At some future time, the host environment must perform FinishDynamicImport(referencingScriptOrModule, moduleRequest, promiseCapability, promise),
  800. // where promise is a Promise resolved with undefined.
  801. // - Any subsequent call to HostResolveImportedModule after FinishDynamicImport has completed,
  802. // given the arguments referencingScriptOrModule and specifier, must return a normal completion
  803. // containing a module which has already been evaluated, i.e. whose Evaluate concrete method has
  804. // already been called and returned a normal completion.
  805. // Failure path:
  806. // - At some future time, the host environment must perform
  807. // FinishDynamicImport(referencingScriptOrModule, moduleRequest, promiseCapability, promise),
  808. // where promise is a Promise rejected with an error representing the cause of failure.
  809. auto promise = Promise::create(realm);
  810. ScopeGuard finish_dynamic_import = [&] {
  811. host_finish_dynamic_import(referencing_script_or_module, module_request, promise_capability, promise);
  812. };
  813. // Generally within ECMA262 we always get a referencing_script_or_moulde. However, ShadowRealm gives an explicit null.
  814. // To get around this is we attempt to get the active script_or_module otherwise we might start loading "random" files from the working directory.
  815. if (referencing_script_or_module.has<Empty>()) {
  816. referencing_script_or_module = get_active_script_or_module();
  817. // If there is no ScriptOrModule in any of the execution contexts
  818. if (referencing_script_or_module.has<Empty>()) {
  819. // Throw an error for now
  820. promise->reject(InternalError::create(realm, DeprecatedString::formatted(ErrorType::ModuleNotFoundNoReferencingScript.message(), module_request.module_specifier)));
  821. return;
  822. }
  823. }
  824. // Note: If host_resolve_imported_module returns a module it has been loaded successfully and the next call in finish_dynamic_import will retrieve it again.
  825. auto module_or_error = host_resolve_imported_module(referencing_script_or_module, module_request);
  826. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] HostImportModuleDynamically(..., {}) -> {}", module_request.module_specifier, module_or_error.is_error() ? "failed" : "passed");
  827. if (module_or_error.is_throw_completion()) {
  828. promise->reject(*module_or_error.throw_completion().value());
  829. } else {
  830. auto module = module_or_error.release_value();
  831. auto& source_text_module = static_cast<Module&>(*module);
  832. auto evaluated_or_error = link_and_eval_module(source_text_module);
  833. if (evaluated_or_error.is_throw_completion()) {
  834. promise->reject(*evaluated_or_error.throw_completion().value());
  835. } else {
  836. promise->fulfill(js_undefined());
  837. }
  838. }
  839. // It must return unused.
  840. // Note: Just return void always since the resulting value cannot be accessed by user code.
  841. }
  842. // 16.2.1.9 FinishDynamicImport ( referencingScriptOrModule, specifier, promiseCapability, innerPromise ), https://tc39.es/ecma262/#sec-finishdynamicimport
  843. void VM::finish_dynamic_import(ScriptOrModule referencing_script_or_module, ModuleRequest module_request, PromiseCapability const& promise_capability, Promise* inner_promise)
  844. {
  845. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] finish_dynamic_import on {}", module_request.module_specifier);
  846. auto& realm = *current_realm();
  847. // 1. Let fulfilledClosure be a new Abstract Closure with parameters (result) that captures referencingScriptOrModule, specifier, and promiseCapability and performs the following steps when called:
  848. auto fulfilled_closure = [referencing_script_or_module = move(referencing_script_or_module), module_request = move(module_request), &promise_capability](VM& vm) -> ThrowCompletionOr<Value> {
  849. auto result = vm.argument(0);
  850. // a. Assert: result is undefined.
  851. VERIFY(result.is_undefined());
  852. // b. Let moduleRecord be ! HostResolveImportedModule(referencingScriptOrModule, specifier).
  853. auto module_record = MUST(vm.host_resolve_imported_module(referencing_script_or_module, module_request));
  854. // c. Assert: Evaluate has already been invoked on moduleRecord and successfully completed.
  855. // Note: If HostResolveImportedModule returns a module evaluate will have been called on it.
  856. // d. Let namespace be Completion(GetModuleNamespace(moduleRecord)).
  857. auto namespace_ = module_record->get_module_namespace(vm);
  858. // e. If namespace is an abrupt completion, then
  859. if (namespace_.is_throw_completion()) {
  860. // i. Perform ! Call(promiseCapability.[[Reject]], undefined, « namespace.[[Value]] »).
  861. MUST(call(vm, *promise_capability.reject(), js_undefined(), *namespace_.throw_completion().value()));
  862. }
  863. // f. Else,
  864. else {
  865. // i. Perform ! Call(promiseCapability.[[Resolve]], undefined, « namespace.[[Value]] »).
  866. MUST(call(vm, *promise_capability.resolve(), js_undefined(), namespace_.release_value()));
  867. }
  868. // g. Return unused.
  869. // NOTE: We don't support returning an empty/optional/unused value here.
  870. return js_undefined();
  871. };
  872. // 2. Let onFulfilled be CreateBuiltinFunction(fulfilledClosure, 0, "", « »).
  873. auto on_fulfilled = NativeFunction::create(realm, move(fulfilled_closure), 0, "");
  874. // 3. Let rejectedClosure be a new Abstract Closure with parameters (error) that captures promiseCapability and performs the following steps when called:
  875. auto rejected_closure = [&promise_capability](VM& vm) -> ThrowCompletionOr<Value> {
  876. auto error = vm.argument(0);
  877. // a. Perform ! Call(promiseCapability.[[Reject]], undefined, « error »).
  878. MUST(call(vm, *promise_capability.reject(), js_undefined(), error));
  879. // b. Return unused.
  880. // NOTE: We don't support returning an empty/optional/unused value here.
  881. return js_undefined();
  882. };
  883. // 4. Let onRejected be CreateBuiltinFunction(rejectedClosure, 0, "", « »).
  884. auto on_rejected = NativeFunction::create(realm, move(rejected_closure), 0, "");
  885. // 5. Perform PerformPromiseThen(innerPromise, onFulfilled, onRejected).
  886. inner_promise->perform_then(on_fulfilled, on_rejected, {});
  887. // 6. Return unused.
  888. }
  889. }