SourceTextModule.cpp 37 KB

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  1. /*
  2. * Copyright (c) 2021-2023, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2022, David Tuin <davidot@serenityos.org>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #include <AK/Debug.h>
  8. #include <AK/QuickSort.h>
  9. #include <LibJS/Bytecode/Interpreter.h>
  10. #include <LibJS/Parser.h>
  11. #include <LibJS/Runtime/AsyncFunctionDriverWrapper.h>
  12. #include <LibJS/Runtime/ECMAScriptFunctionObject.h>
  13. #include <LibJS/Runtime/GlobalEnvironment.h>
  14. #include <LibJS/Runtime/ModuleEnvironment.h>
  15. #include <LibJS/Runtime/PromiseCapability.h>
  16. #include <LibJS/SourceTextModule.h>
  17. namespace JS {
  18. JS_DEFINE_ALLOCATOR(SourceTextModule);
  19. // 16.2.2.2 Static Semantics: WithClauseToAttributes, https://tc39.es/proposal-import-attributes/#sec-with-clause-to-attributes
  20. static Vector<ImportAttribute> with_clause_to_assertions(Vector<ImportAttribute> const& source_attributes)
  21. {
  22. // WithClause : AttributesKeyword { WithEntries , opt }
  23. // 1. Let attributes be WithClauseToAttributes of WithEntries.
  24. Vector<ImportAttribute> attributes;
  25. // AssertEntries : AssertionKey : StringLiteral
  26. // AssertEntries : AssertionKey : StringLiteral , WithEntries
  27. for (auto const& attribute : source_attributes) {
  28. // 1. Let key be the PropName of AttributeKey.
  29. // 2. Let entry be the ImportAttribute Record { [[Key]]: key, [[Value]]: SV of StringLiteral }.
  30. // 3. Return « entry ».
  31. attributes.empend(attribute);
  32. }
  33. // 2. Sort attributes according to the lexicographic order of their [[Key]] fields, treating the value of each such field as a sequence of UTF-16 code unit values. NOTE: This sorting is observable only in that hosts are prohibited from distinguishing among attributes by the order they occur in.
  34. // Note: The sorting is done in construction of the ModuleRequest object.
  35. // 3. Return attributes.
  36. return attributes;
  37. }
  38. // 16.2.1.3 Static Semantics: ModuleRequests, https://tc39.es/ecma262/#sec-static-semantics-modulerequests
  39. static Vector<ModuleRequest> module_requests(Program& program)
  40. {
  41. // A List of all the ModuleSpecifier strings used by the module represented by this record to request the importation of a module.
  42. // Note: The List is source text occurrence ordered!
  43. struct RequestedModuleAndSourceIndex {
  44. u32 source_offset { 0 };
  45. ModuleRequest const* module_request { nullptr };
  46. };
  47. Vector<RequestedModuleAndSourceIndex> requested_modules_with_indices;
  48. for (auto& import_statement : program.imports())
  49. requested_modules_with_indices.empend(import_statement->start_offset(), &import_statement->module_request());
  50. for (auto& export_statement : program.exports()) {
  51. for (auto& export_entry : export_statement->entries()) {
  52. if (!export_entry.is_module_request())
  53. continue;
  54. requested_modules_with_indices.empend(export_statement->start_offset(), &export_statement->module_request());
  55. }
  56. }
  57. // Note: The List is source code occurrence ordered. https://tc39.es/proposal-import-attributes/#table-cyclic-module-fields
  58. quick_sort(requested_modules_with_indices, [&](RequestedModuleAndSourceIndex const& lhs, RequestedModuleAndSourceIndex const& rhs) {
  59. return lhs.source_offset < rhs.source_offset;
  60. });
  61. Vector<ModuleRequest> requested_modules_in_source_order;
  62. requested_modules_in_source_order.ensure_capacity(requested_modules_with_indices.size());
  63. for (auto& module : requested_modules_with_indices) {
  64. // 16.2.1.3 Static Semantics: ModuleRequests, https://tc39.es/proposal-import-attributes/#sec-static-semantics-modulerequests
  65. if (module.module_request->attributes.is_empty()) {
  66. // ExportDeclaration : export ExportFromClause FromClause ;
  67. // ImportDeclaration : import ImportClause FromClause ;
  68. // 2. Let specifier be SV of FromClause.
  69. // 3. Return a List whose sole element is the ModuleRequest Record { [[Specifer]]: specifier, [[Attributes]]: « » }.
  70. requested_modules_in_source_order.empend(module.module_request->module_specifier);
  71. } else {
  72. // ExportDeclaration : export ExportFromClause FromClause WithClause ;
  73. // ImportDeclaration : import ImportClause FromClause WithClause ;
  74. // 1. Let specifier be the SV of FromClause.
  75. // 2. Let attributes be WithClauseToAttributes of WithClause.
  76. auto attributes = with_clause_to_assertions(module.module_request->attributes);
  77. // NOTE: We have to modify the attributes in place because else it might keep unsupported ones.
  78. const_cast<ModuleRequest*>(module.module_request)->attributes = move(attributes);
  79. // 3. Return a List whose sole element is the ModuleRequest Record { [[Specifer]]: specifier, [[Attributes]]: attributes }.
  80. requested_modules_in_source_order.empend(module.module_request->module_specifier, module.module_request->attributes);
  81. }
  82. }
  83. return requested_modules_in_source_order;
  84. }
  85. SourceTextModule::SourceTextModule(Realm& realm, StringView filename, Script::HostDefined* host_defined, bool has_top_level_await, NonnullRefPtr<Program> body, Vector<ModuleRequest> requested_modules,
  86. Vector<ImportEntry> import_entries, Vector<ExportEntry> local_export_entries,
  87. Vector<ExportEntry> indirect_export_entries, Vector<ExportEntry> star_export_entries,
  88. RefPtr<ExportStatement const> default_export)
  89. : CyclicModule(realm, filename, has_top_level_await, move(requested_modules), host_defined)
  90. , m_ecmascript_code(move(body))
  91. , m_execution_context(ExecutionContext::create(realm.heap()))
  92. , m_import_entries(move(import_entries))
  93. , m_local_export_entries(move(local_export_entries))
  94. , m_indirect_export_entries(move(indirect_export_entries))
  95. , m_star_export_entries(move(star_export_entries))
  96. , m_default_export(move(default_export))
  97. {
  98. }
  99. void SourceTextModule::visit_edges(Cell::Visitor& visitor)
  100. {
  101. Base::visit_edges(visitor);
  102. visitor.visit(m_import_meta);
  103. m_execution_context->visit_edges(visitor);
  104. }
  105. // 16.2.1.6.1 ParseModule ( sourceText, realm, hostDefined ), https://tc39.es/ecma262/#sec-parsemodule
  106. Result<NonnullGCPtr<SourceTextModule>, Vector<ParserError>> SourceTextModule::parse(StringView source_text, Realm& realm, StringView filename, Script::HostDefined* host_defined)
  107. {
  108. // 1. Let body be ParseText(sourceText, Module).
  109. auto parser = Parser(Lexer(source_text, filename), Program::Type::Module);
  110. auto body = parser.parse_program();
  111. // 2. If body is a List of errors, return body.
  112. if (parser.has_errors())
  113. return parser.errors();
  114. // 3. Let requestedModules be the ModuleRequests of body.
  115. auto requested_modules = module_requests(*body);
  116. // 4. Let importEntries be ImportEntries of body.
  117. Vector<ImportEntry> import_entries;
  118. for (auto const& import_statement : body->imports())
  119. import_entries.extend(import_statement->entries());
  120. // 5. Let importedBoundNames be ImportedLocalNames(importEntries).
  121. // Note: Since we have to potentially extract the import entry we just use importEntries
  122. // In the future it might be an optimization to have a set/map of string to speed up the search.
  123. // 6. Let indirectExportEntries be a new empty List.
  124. Vector<ExportEntry> indirect_export_entries;
  125. // 7. Let localExportEntries be a new empty List.
  126. Vector<ExportEntry> local_export_entries;
  127. // 8. Let starExportEntries be a new empty List.
  128. Vector<ExportEntry> star_export_entries;
  129. // Note: Not in the spec but makes it easier to find the default.
  130. RefPtr<ExportStatement const> default_export;
  131. // 9. Let exportEntries be ExportEntries of body.
  132. // 10. For each ExportEntry Record ee of exportEntries, do
  133. for (auto const& export_statement : body->exports()) {
  134. if (export_statement->is_default_export()) {
  135. VERIFY(!default_export);
  136. VERIFY(export_statement->entries().size() == 1);
  137. VERIFY(export_statement->has_statement());
  138. auto const& entry = export_statement->entries()[0];
  139. VERIFY(entry.kind == ExportEntry::Kind::NamedExport);
  140. VERIFY(!entry.is_module_request());
  141. VERIFY(import_entries.find_if(
  142. [&](ImportEntry const& import_entry) {
  143. return import_entry.local_name == entry.local_or_import_name;
  144. })
  145. .is_end());
  146. default_export = export_statement;
  147. }
  148. for (auto const& export_entry : export_statement->entries()) {
  149. // Special case, export {} from "module" should add "module" to
  150. // required_modules but not any import or export so skip here.
  151. if (export_entry.kind == ExportEntry::Kind::EmptyNamedExport) {
  152. VERIFY(export_statement->entries().size() == 1);
  153. break;
  154. }
  155. // a. If ee.[[ModuleRequest]] is null, then
  156. if (!export_entry.is_module_request()) {
  157. auto in_imported_bound_names = import_entries.find_if(
  158. [&](ImportEntry const& import_entry) {
  159. return import_entry.local_name == export_entry.local_or_import_name;
  160. });
  161. // i. If ee.[[LocalName]] is not an element of importedBoundNames, then
  162. if (in_imported_bound_names.is_end()) {
  163. // 1. Append ee to localExportEntries.
  164. local_export_entries.empend(export_entry);
  165. }
  166. // ii. Else,
  167. else {
  168. // 1. Let ie be the element of importEntries whose [[LocalName]] is the same as ee.[[LocalName]].
  169. auto& import_entry = *in_imported_bound_names;
  170. // 2. If ie.[[ImportName]] is namespace-object, then
  171. if (import_entry.is_namespace) {
  172. // a. NOTE: This is a re-export of an imported module namespace object.
  173. // b. Append ee to localExportEntries.
  174. local_export_entries.empend(export_entry);
  175. }
  176. // 3. Else,
  177. else {
  178. // a. NOTE: This is a re-export of a single name.
  179. // b. Append the ExportEntry Record { [[ModuleRequest]]: ie.[[ModuleRequest]], [[ImportName]]: ie.[[ImportName]], [[LocalName]]: null, [[ExportName]]: ee.[[ExportName]] } to indirectExportEntries.
  180. indirect_export_entries.empend(ExportEntry::indirect_export_entry(import_entry.module_request(), import_entry.import_name, export_entry.export_name));
  181. }
  182. }
  183. }
  184. // b. Else if ee.[[ImportName]] is all-but-default, then
  185. else if (export_entry.kind == ExportEntry::Kind::ModuleRequestAllButDefault) {
  186. // i. Assert: ee.[[ExportName]] is null.
  187. VERIFY(export_entry.export_name.is_null());
  188. // ii. Append ee to starExportEntries.
  189. star_export_entries.empend(export_entry);
  190. }
  191. // c. Else,
  192. else {
  193. // i. Append ee to indirectExportEntries.
  194. indirect_export_entries.empend(export_entry);
  195. }
  196. }
  197. }
  198. // 11. Let async be body Contains await.
  199. bool async = body->has_top_level_await();
  200. // 12. Return Source Text Module Record {
  201. // [[Realm]]: realm, [[Environment]]: empty, [[Namespace]]: empty, [[CycleRoot]]: empty, [[HasTLA]]: async,
  202. // [[AsyncEvaluation]]: false, [[TopLevelCapability]]: empty, [[AsyncParentModules]]: « »,
  203. // [[PendingAsyncDependencies]]: empty, [[Status]]: unlinked, [[EvaluationError]]: empty,
  204. // [[HostDefined]]: hostDefined, [[ECMAScriptCode]]: body, [[Context]]: empty, [[ImportMeta]]: empty,
  205. // [[RequestedModules]]: requestedModules, [[ImportEntries]]: importEntries, [[LocalExportEntries]]: localExportEntries,
  206. // [[IndirectExportEntries]]: indirectExportEntries, [[StarExportEntries]]: starExportEntries, [[DFSIndex]]: empty, [[DFSAncestorIndex]]: empty }.
  207. return realm.heap().allocate_without_realm<SourceTextModule>(
  208. realm,
  209. filename,
  210. host_defined,
  211. async,
  212. move(body),
  213. move(requested_modules),
  214. move(import_entries),
  215. move(local_export_entries),
  216. move(indirect_export_entries),
  217. move(star_export_entries),
  218. move(default_export));
  219. }
  220. // 16.2.1.6.2 GetExportedNames ( [ exportStarSet ] ), https://tc39.es/ecma262/#sec-getexportednames
  221. ThrowCompletionOr<Vector<DeprecatedFlyString>> SourceTextModule::get_exported_names(VM& vm, Vector<Module*> export_star_set)
  222. {
  223. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] get_export_names of {}", filename());
  224. // 1. Assert: module.[[Status]] is not new.
  225. VERIFY(m_status != ModuleStatus::New);
  226. // 2. If exportStarSet is not present, set exportStarSet to a new empty List.
  227. // Note: This is done by default argument
  228. // 3. If exportStarSet contains module, then
  229. if (export_star_set.contains_slow(this)) {
  230. // a. Assert: We've reached the starting point of an export * circularity.
  231. // FIXME: How do we check that?
  232. // b. Return a new empty List.
  233. return Vector<DeprecatedFlyString> {};
  234. }
  235. // 4. Append module to exportStarSet.
  236. export_star_set.append(this);
  237. // 5. Let exportedNames be a new empty List.
  238. Vector<DeprecatedFlyString> exported_names;
  239. // 6. For each ExportEntry Record e of module.[[LocalExportEntries]], do
  240. for (auto& entry : m_local_export_entries) {
  241. // a. Assert: module provides the direct binding for this export.
  242. // FIXME: How do we check that?
  243. // b. Assert: e.[[ExportName]] is not null.
  244. VERIFY(!entry.export_name.is_null());
  245. // c. Append e.[[ExportName]] to exportedNames.
  246. exported_names.empend(entry.export_name);
  247. }
  248. // 7. For each ExportEntry Record e of module.[[IndirectExportEntries]], do
  249. for (auto& entry : m_indirect_export_entries) {
  250. // a. a. Assert: module imports a specific binding for this export.
  251. // FIXME: How do we check that?
  252. // b. Assert: e.[[ExportName]] is not null.
  253. VERIFY(!entry.export_name.is_null());
  254. // c. Append e.[[ExportName]] to exportedNames.
  255. exported_names.empend(entry.export_name);
  256. }
  257. // 8. For each ExportEntry Record e of module.[[StarExportEntries]], do
  258. for (auto& entry : m_star_export_entries) {
  259. // a. Assert: e.[[ModuleRequest]] is not null.
  260. // b. Let requestedModule be GetImportedModule(module, e.[[ModuleRequest]]).
  261. auto requested_module = get_imported_module(entry.module_request());
  262. // c. Let starNames be ? requestedModule.GetExportedNames(exportStarSet).
  263. auto star_names = TRY(requested_module->get_exported_names(vm, export_star_set));
  264. // d. For each element n of starNames, do
  265. for (auto& name : star_names) {
  266. // i. If SameValue(n, "default") is false, then
  267. if (name != "default"sv) {
  268. // 1. If n is not an element of exportedNames, then
  269. if (!exported_names.contains_slow(name)) {
  270. // a. Append n to exportedNames.
  271. exported_names.empend(name);
  272. }
  273. }
  274. }
  275. }
  276. // 9. Return exportedNames.
  277. return exported_names;
  278. }
  279. // 16.2.1.6.4 InitializeEnvironment ( ), https://tc39.es/ecma262/#sec-source-text-module-record-initialize-environment
  280. ThrowCompletionOr<void> SourceTextModule::initialize_environment(VM& vm)
  281. {
  282. // 1. For each ExportEntry Record e of module.[[IndirectExportEntries]], do
  283. for (auto& entry : m_indirect_export_entries) {
  284. // a. Let resolution be ? module.ResolveExport(e.[[ExportName]]).
  285. auto resolution = TRY(resolve_export(vm, entry.export_name));
  286. // b. If resolution is null or ambiguous, throw a SyntaxError exception.
  287. if (!resolution.is_valid())
  288. return vm.throw_completion<SyntaxError>(ErrorType::InvalidOrAmbiguousExportEntry, entry.export_name);
  289. // c. Assert: resolution is a ResolvedBinding Record.
  290. VERIFY(resolution.is_valid());
  291. }
  292. // 2. Assert: All named exports from module are resolvable.
  293. // Note: We check all the indirect export entries above in step 1 and all
  294. // the local named exports are resolvable by construction.
  295. // 3. Let realm be module.[[Realm]].
  296. // 4. Assert: realm is not undefined.
  297. // Note: This must be true because we use a reference.
  298. // 5. Let env be NewModuleEnvironment(realm.[[GlobalEnv]]).
  299. auto environment = vm.heap().allocate_without_realm<ModuleEnvironment>(&realm().global_environment());
  300. // 6. Set module.[[Environment]] to env.
  301. set_environment(environment);
  302. // 7. For each ImportEntry Record in of module.[[ImportEntries]], do
  303. for (auto& import_entry : m_import_entries) {
  304. // a. Let importedModule be GetImportedModule(module, in.[[ModuleRequest]]).
  305. auto imported_module = get_imported_module(import_entry.module_request());
  306. // b. NOTE: The above call cannot fail because imported module requests are a subset of module.[[RequestedModules]], and these have been resolved earlier in this algorithm.
  307. // c. If in.[[ImportName]] is namespace-object, then
  308. if (import_entry.is_namespace) {
  309. // i. Let namespace be ? GetModuleNamespace(importedModule).
  310. auto* namespace_ = TRY(imported_module->get_module_namespace(vm));
  311. // ii. Perform ! env.CreateImmutableBinding(in.[[LocalName]], true).
  312. MUST(environment->create_immutable_binding(vm, import_entry.local_name, true));
  313. // iii. Perform ! env.InitializeBinding(in.[[LocalName]], namespace, normal).
  314. MUST(environment->initialize_binding(vm, import_entry.local_name, namespace_, Environment::InitializeBindingHint::Normal));
  315. }
  316. // d. Else,
  317. else {
  318. // i. Let resolution be ? importedModule.ResolveExport(in.[[ImportName]]).
  319. auto resolution = TRY(imported_module->resolve_export(vm, import_entry.import_name));
  320. // ii. If resolution is null or ambiguous, throw a SyntaxError exception.
  321. if (!resolution.is_valid())
  322. return vm.throw_completion<SyntaxError>(ErrorType::InvalidOrAmbiguousExportEntry, import_entry.import_name);
  323. // iii. If resolution.[[BindingName]] is namespace, then
  324. if (resolution.is_namespace()) {
  325. // 1. Let namespace be ? GetModuleNamespace(resolution.[[Module]]).
  326. auto* namespace_ = TRY(resolution.module->get_module_namespace(vm));
  327. // 2. Perform ! env.CreateImmutableBinding(in.[[LocalName]], true).
  328. MUST(environment->create_immutable_binding(vm, import_entry.local_name, true));
  329. // 3. Perform ! env.InitializeBinding(in.[[LocalName]], namespace, normal).
  330. MUST(environment->initialize_binding(vm, import_entry.local_name, namespace_, Environment::InitializeBindingHint::Normal));
  331. }
  332. // iv. Else,
  333. else {
  334. // 1. Perform env.CreateImportBinding(in.[[LocalName]], resolution.[[Module]], resolution.[[BindingName]]).
  335. MUST(environment->create_import_binding(import_entry.local_name, resolution.module, resolution.export_name));
  336. }
  337. }
  338. }
  339. // 8. Let moduleContext be a new ECMAScript code execution context.
  340. // Note: this has already been created during the construction of this object.
  341. // 9. Set the Function of moduleContext to null.
  342. // 10. Assert: module.[[Realm]] is not undefined.
  343. // Note: This must be true because we use a reference.
  344. // 11. Set the Realm of moduleContext to module.[[Realm]].
  345. m_execution_context->realm = &realm();
  346. // 12. Set the ScriptOrModule of moduleContext to module.
  347. m_execution_context->script_or_module = NonnullGCPtr<Module>(*this);
  348. // 13. Set the VariableEnvironment of moduleContext to module.[[Environment]].
  349. m_execution_context->variable_environment = environment;
  350. // 14. Set the LexicalEnvironment of moduleContext to module.[[Environment]].
  351. m_execution_context->lexical_environment = environment;
  352. // 15. Set the PrivateEnvironment of moduleContext to null.
  353. // 16. Set module.[[Context]] to moduleContext.
  354. // Note: We're already working on that one.
  355. // 17. Push moduleContext onto the execution context stack; moduleContext is now the running execution context.
  356. TRY(vm.push_execution_context(*m_execution_context, {}));
  357. // 18. Let code be module.[[ECMAScriptCode]].
  358. // 19. Let varDeclarations be the VarScopedDeclarations of code.
  359. // Note: We just loop through them in step 21.
  360. // 20. Let declaredVarNames be a new empty List.
  361. Vector<DeprecatedFlyString> declared_var_names;
  362. // 21. For each element d of varDeclarations, do
  363. // a. For each element dn of the BoundNames of d, do
  364. // NOTE: Due to the use of MUST with `create_mutable_binding` and `initialize_binding` below,
  365. // an exception should not result from `for_each_var_declared_identifier`.
  366. MUST(m_ecmascript_code->for_each_var_declared_identifier([&](auto const& identifier) {
  367. auto const& name = identifier.string();
  368. // i. If dn is not an element of declaredVarNames, then
  369. if (!declared_var_names.contains_slow(name)) {
  370. // 1. Perform ! env.CreateMutableBinding(dn, false).
  371. MUST(environment->create_mutable_binding(vm, name, false));
  372. // 2. Perform ! env.InitializeBinding(dn, undefined, normal).
  373. MUST(environment->initialize_binding(vm, name, js_undefined(), Environment::InitializeBindingHint::Normal));
  374. // 3. Append dn to declaredVarNames.
  375. declared_var_names.empend(name);
  376. }
  377. }));
  378. // 22. Let lexDeclarations be the LexicallyScopedDeclarations of code.
  379. // Note: We only loop through them in step 24.
  380. // 23. Let privateEnv be null.
  381. PrivateEnvironment* private_environment = nullptr;
  382. // 24. For each element d of lexDeclarations, do
  383. // NOTE: Due to the use of MUST in the callback, an exception should not result from `for_each_lexically_scoped_declaration`.
  384. MUST(m_ecmascript_code->for_each_lexically_scoped_declaration([&](Declaration const& declaration) {
  385. // a. For each element dn of the BoundNames of d, do
  386. // NOTE: Due to the use of MUST with `create_immutable_binding`, `create_mutable_binding` and `initialize_binding` below,
  387. // an exception should not result from `for_each_bound_identifier`.
  388. MUST(declaration.for_each_bound_identifier([&](auto const& identifier) {
  389. auto const& name = identifier.string();
  390. // i. If IsConstantDeclaration of d is true, then
  391. if (declaration.is_constant_declaration()) {
  392. // 1. Perform ! env.CreateImmutableBinding(dn, true).
  393. MUST(environment->create_immutable_binding(vm, name, true));
  394. }
  395. // ii. Else,
  396. else {
  397. // 1. Perform ! env.CreateMutableBinding(dn, false).
  398. MUST(environment->create_mutable_binding(vm, name, false));
  399. }
  400. // iii. If d is a FunctionDeclaration, a GeneratorDeclaration, an AsyncFunctionDeclaration, or an AsyncGeneratorDeclaration, then
  401. if (declaration.is_function_declaration()) {
  402. VERIFY(is<FunctionDeclaration>(declaration));
  403. auto const& function_declaration = static_cast<FunctionDeclaration const&>(declaration);
  404. // 1. Let fo be InstantiateFunctionObject of d with arguments env and privateEnv.
  405. // NOTE: Special case if the function is a default export of an anonymous function
  406. // it has name "*default*" but internally should have name "default".
  407. DeprecatedFlyString function_name = function_declaration.name();
  408. if (function_name == ExportStatement::local_name_for_default)
  409. function_name = "default"sv;
  410. auto function = ECMAScriptFunctionObject::create(realm(), function_name, function_declaration.source_text(), function_declaration.body(), function_declaration.parameters(), function_declaration.function_length(), function_declaration.local_variables_names(), environment, private_environment, function_declaration.kind(), function_declaration.is_strict_mode(), function_declaration.might_need_arguments_object(), function_declaration.contains_direct_call_to_eval());
  411. // 2. Perform ! env.InitializeBinding(dn, fo, normal).
  412. MUST(environment->initialize_binding(vm, name, function, Environment::InitializeBindingHint::Normal));
  413. }
  414. }));
  415. }));
  416. // Note: The default export name is also part of the local lexical declarations but
  417. // instead of making that a special case in the parser we just check it here.
  418. // This is only needed for things which are not declarations.
  419. // For more info check Parser::parse_export_statement.
  420. // Furthermore, that declaration is not constant. so we take 24.a.ii
  421. if (m_default_export) {
  422. VERIFY(m_default_export->has_statement());
  423. auto const& statement = m_default_export->statement();
  424. if (!is<Declaration>(statement)) {
  425. auto const& name = m_default_export->entries()[0].local_or_import_name;
  426. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] Adding default export to lexical declarations: local name: {}, Expression: {}", name, statement.class_name());
  427. // 1. Perform ! env.CreateMutableBinding(dn, false).
  428. MUST(environment->create_mutable_binding(vm, name, false));
  429. // Note: Since this is not a function declaration 24.a.iii never applies
  430. }
  431. }
  432. // 25. Remove moduleContext from the execution context stack.
  433. vm.pop_execution_context();
  434. // 26. Return unused.
  435. return {};
  436. }
  437. // 16.2.1.6.3 ResolveExport ( exportName [ , resolveSet ] ), https://tc39.es/ecma262/#sec-resolveexport
  438. ThrowCompletionOr<ResolvedBinding> SourceTextModule::resolve_export(VM& vm, DeprecatedFlyString const& export_name, Vector<ResolvedBinding> resolve_set)
  439. {
  440. // 1. Assert: module.[[Status]] is not new.
  441. VERIFY(m_status != ModuleStatus::New);
  442. // 2. If resolveSet is not present, set resolveSet to a new empty List.
  443. // Note: This is done by the default argument.
  444. // 3. For each Record { [[Module]], [[ExportName]] } r of resolveSet, do
  445. for (auto& [type, module, exported_name] : resolve_set) {
  446. // a. If module and r.[[Module]] are the same Module Record and SameValue(exportName, r.[[ExportName]]) is true, then
  447. if (module == this && exported_name == export_name) {
  448. // i. Assert: This is a circular import request.
  449. // ii. Return null.
  450. return ResolvedBinding::null();
  451. }
  452. }
  453. // 4. Append the Record { [[Module]]: module, [[ExportName]]: exportName } to resolveSet.
  454. resolve_set.append({ ResolvedBinding::Type::BindingName, this, export_name });
  455. // 5. For each ExportEntry Record e of module.[[LocalExportEntries]], do
  456. for (auto& entry : m_local_export_entries) {
  457. // a. If SameValue(exportName, e.[[ExportName]]) is true, then
  458. if (export_name != entry.export_name)
  459. continue;
  460. // i. Assert: module provides the direct binding for this export.
  461. // FIXME: What does this mean?
  462. // ii. Return ResolvedBinding Record { [[Module]]: module, [[BindingName]]: e.[[LocalName]] }.
  463. return ResolvedBinding {
  464. ResolvedBinding::Type::BindingName,
  465. this,
  466. entry.local_or_import_name,
  467. };
  468. }
  469. // 5. For each ExportEntry Record e of module.[[IndirectExportEntries]], do
  470. for (auto& entry : m_indirect_export_entries) {
  471. // a. If SameValue(exportName, e.[[ExportName]]) is true, then
  472. if (export_name != entry.export_name)
  473. continue;
  474. // i. Assert: e.[[ModuleRequest]] is not null.
  475. // ii. Let importedModule be GetImportedModule(module, e.[[ModuleRequest]]).
  476. auto imported_module = get_imported_module(entry.module_request());
  477. // iii. If e.[[ImportName]] is all, then
  478. if (entry.kind == ExportEntry::Kind::ModuleRequestAll) {
  479. // 1. Assert: module does not provide the direct binding for this export.
  480. // FIXME: What does this mean? / How do we check this
  481. // 2. Return ResolvedBinding Record { [[Module]]: importedModule, [[BindingName]]: namespace }.
  482. return ResolvedBinding {
  483. ResolvedBinding::Type::Namespace,
  484. imported_module.ptr(),
  485. {}
  486. };
  487. }
  488. // iv. Else,
  489. else {
  490. // 1. Assert: module imports a specific binding for this export.
  491. // FIXME: What does this mean? / How do we check this
  492. // 2. Return ? importedModule.ResolveExport(e.[[ImportName]], resolveSet).
  493. return imported_module->resolve_export(vm, entry.local_or_import_name, resolve_set);
  494. }
  495. }
  496. // 7. If SameValue(exportName, "default") is true, then
  497. if (export_name == "default"sv) {
  498. // a. Assert: A default export was not explicitly defined by this module.
  499. // FIXME: What does this mean? / How do we check this
  500. // b. Return null.
  501. return ResolvedBinding::null();
  502. // c. NOTE: A default export cannot be provided by an export * from "mod" declaration.
  503. }
  504. // 8. Let starResolution be null.
  505. ResolvedBinding star_resolution = ResolvedBinding::null();
  506. // 9. For each ExportEntry Record e of module.[[StarExportEntries]], do
  507. for (auto& entry : m_star_export_entries) {
  508. // a. Assert: e.[[ModuleRequest]] is not null.
  509. // b. Let importedModule be GetImportedModule(module, e.[[ModuleRequest]]).
  510. auto imported_module = get_imported_module(entry.module_request());
  511. // c. Let resolution be ? importedModule.ResolveExport(exportName, resolveSet).
  512. auto resolution = TRY(imported_module->resolve_export(vm, export_name, resolve_set));
  513. // d. If resolution is ambiguous, return ambiguous.
  514. if (resolution.is_ambiguous())
  515. return ResolvedBinding::ambiguous();
  516. // e. If resolution is not null, then
  517. if (resolution.type == ResolvedBinding::Null)
  518. continue;
  519. // i. Assert: resolution is a ResolvedBinding Record.
  520. VERIFY(resolution.is_valid());
  521. // ii. If starResolution is null, set starResolution to resolution.
  522. if (star_resolution.type == ResolvedBinding::Null) {
  523. star_resolution = resolution;
  524. }
  525. // iii. Else,
  526. else {
  527. // 1. Assert: There is more than one * import that includes the requested name.
  528. // FIXME: Assert this
  529. // 2. If resolution.[[Module]] and starResolution.[[Module]] are not the same Module Record, return ambiguous.
  530. if (resolution.module != star_resolution.module)
  531. return ResolvedBinding::ambiguous();
  532. // 3. If resolution.[[BindingName]] is namespace and starResolution.[[BindingName]] is not namespace, or if resolution.[[BindingName]] is not namespace and starResolution.[[BindingName]] is namespace, return ambiguous.
  533. if (resolution.is_namespace() != star_resolution.is_namespace())
  534. return ResolvedBinding::ambiguous();
  535. // 4. If resolution.[[BindingName]] is a String, starResolution.[[BindingName]] is a String, and SameValue(resolution.[[BindingName]], starResolution.[[BindingName]]) is false, return ambiguous.
  536. if (!resolution.is_namespace() && resolution.export_name != star_resolution.export_name) {
  537. // Note: Because we know from the previous if that either both are namespaces or both are string we can check just one
  538. return ResolvedBinding::ambiguous();
  539. }
  540. }
  541. }
  542. // 10. Return starResolution.
  543. return star_resolution;
  544. }
  545. // 16.2.1.6.5 ExecuteModule ( [ capability ] ), https://tc39.es/ecma262/#sec-source-text-module-record-execute-module
  546. ThrowCompletionOr<void> SourceTextModule::execute_module(VM& vm, GCPtr<PromiseCapability> capability)
  547. {
  548. dbgln_if(JS_MODULE_DEBUG, "[JS MODULE] SourceTextModule::execute_module({}, PromiseCapability @ {})", filename(), capability.ptr());
  549. // 1. Let moduleContext be a new ECMAScript code execution context.
  550. auto module_context = ExecutionContext::create(vm.heap());
  551. // Note: This is not in the spec but we require it.
  552. module_context->is_strict_mode = true;
  553. // 2. Set the Function of moduleContext to null.
  554. // 3. Set the Realm of moduleContext to module.[[Realm]].
  555. module_context->realm = &realm();
  556. // 4. Set the ScriptOrModule of moduleContext to module.
  557. module_context->script_or_module = NonnullGCPtr<Module>(*this);
  558. // 5. Assert: module has been linked and declarations in its module environment have been instantiated.
  559. VERIFY(m_status != ModuleStatus::New);
  560. VERIFY(m_status != ModuleStatus::Unlinked);
  561. VERIFY(m_status != ModuleStatus::Linking);
  562. VERIFY(environment());
  563. // 6. Set the VariableEnvironment of moduleContext to module.[[Environment]].
  564. module_context->variable_environment = environment();
  565. // 7. Set the LexicalEnvironment of moduleContext to module.[[Environment]].
  566. module_context->lexical_environment = environment();
  567. // 8. Suspend the currently running execution context.
  568. // FIXME: We don't have suspend yet
  569. // 9. If module.[[HasTLA]] is false, then
  570. if (!m_has_top_level_await) {
  571. // a. Assert: capability is not present.
  572. VERIFY(capability == nullptr);
  573. // b. Push moduleContext onto the execution context stack; moduleContext is now the running execution context.
  574. TRY(vm.push_execution_context(*module_context, {}));
  575. // c. Let result be the result of evaluating module.[[ECMAScriptCode]].
  576. Completion result;
  577. auto maybe_executable = Bytecode::compile(vm, m_ecmascript_code, {}, FunctionKind::Normal, "ShadowRealmEval"sv);
  578. if (maybe_executable.is_error())
  579. result = maybe_executable.release_error();
  580. else {
  581. auto executable = maybe_executable.release_value();
  582. auto value_and_frame = vm.bytecode_interpreter().run_and_return_frame(*executable, nullptr);
  583. if (value_and_frame.value.is_error()) {
  584. result = value_and_frame.value.release_error();
  585. } else {
  586. // Resulting value is in the accumulator.
  587. result = value_and_frame.frame->registers()[0].value_or(js_undefined());
  588. }
  589. }
  590. // d. Let env be moduleContext's LexicalEnvironment.
  591. auto env = module_context->lexical_environment;
  592. VERIFY(is<DeclarativeEnvironment>(*env));
  593. // e. Set result to DisposeResources(env, result).
  594. result = dispose_resources(vm, static_cast<DeclarativeEnvironment*>(env.ptr()), result);
  595. // f. Suspend moduleContext and remove it from the execution context stack.
  596. vm.pop_execution_context();
  597. // g. Resume the context that is now on the top of the execution context stack as the running execution context.
  598. // FIXME: We don't have resume yet.
  599. // h. If result is an abrupt completion, then
  600. if (result.is_error()) {
  601. // i. Return ? result.
  602. return result.release_error();
  603. }
  604. }
  605. // 10. Else,
  606. else {
  607. // a. Assert: capability is a PromiseCapability Record.
  608. VERIFY(capability != nullptr);
  609. // b. Perform AsyncBlockStart(capability, module.[[ECMAScriptCode]], moduleContext).
  610. // AD-HOC: We implement asynchronous execution via synthetic generator functions,
  611. // so we fake "AsyncBlockStart" here by creating an async function to wrap
  612. // the top-level module code.
  613. // FIXME: Improve this situation, so we can match the spec better.
  614. auto module_wrapper_function = ECMAScriptFunctionObject::create(
  615. realm(), "module code with top-level await", StringView {}, this->m_ecmascript_code,
  616. {}, 0, {}, environment(), nullptr, FunctionKind::Async, true, false, false);
  617. module_wrapper_function->set_is_module_wrapper(true);
  618. // AD-HOC: We push/pop the moduleContext around the call to ensure that the async execution context
  619. // captures the module execution context.
  620. vm.push_execution_context(*module_context);
  621. auto result = call(vm, Value { module_wrapper_function }, js_undefined(), ReadonlySpan<Value> {});
  622. vm.pop_execution_context();
  623. // AD-HOC: This is basically analogous to what AsyncBlockStart would do.
  624. if (result.is_throw_completion()) {
  625. MUST(call(vm, *capability->reject(), js_undefined(), result.throw_completion().value().value()));
  626. } else {
  627. MUST(call(vm, *capability->resolve(), js_undefined(), result.value()));
  628. }
  629. }
  630. // 11. Return unused.
  631. return {};
  632. }
  633. }