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bc183dbbcb
This is effectively a drop-in replacement.
150 lines
6.0 KiB
C++
150 lines
6.0 KiB
C++
/*
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* Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
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* Copyright (c) 2022, Luke Wilde <lukew@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#pragma once
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#include <AK/FlyString.h>
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#include <AK/HashMap.h>
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#include <AK/String.h>
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#include <AK/Weakable.h>
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#include <LibJS/AST.h>
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#include <LibJS/Forward.h>
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#include <LibJS/Heap/DeferGC.h>
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#include <LibJS/Heap/Heap.h>
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#include <LibJS/Heap/MarkedVector.h>
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#include <LibJS/Runtime/Completion.h>
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#include <LibJS/Runtime/DeclarativeEnvironment.h>
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#include <LibJS/Runtime/ErrorTypes.h>
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#include <LibJS/Runtime/GlobalEnvironment.h>
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#include <LibJS/Runtime/GlobalObject.h>
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#include <LibJS/Runtime/Realm.h>
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#include <LibJS/Runtime/VM.h>
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#include <LibJS/Runtime/Value.h>
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#include <LibJS/Script.h>
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#include <LibJS/SourceTextModule.h>
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namespace JS {
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struct ExecutingASTNodeChain {
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ExecutingASTNodeChain* previous { nullptr };
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const ASTNode& node;
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};
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class Interpreter : public Weakable<Interpreter> {
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public:
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// 9.6 InitializeHostDefinedRealm ( ), https://tc39.es/ecma262/#sec-initializehostdefinedrealm
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template<typename GlobalObjectType, typename GlobalThisObjectType, typename... Args>
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static NonnullOwnPtr<Interpreter> create(VM& vm, Args&&... args) requires(IsBaseOf<GlobalObject, GlobalObjectType>&& IsBaseOf<Object, GlobalThisObjectType>)
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{
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DeferGC defer_gc(vm.heap());
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auto interpreter = adopt_own(*new Interpreter(vm));
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VM::InterpreterExecutionScope scope(*interpreter);
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// 1. Let realm be CreateRealm().
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auto* realm = Realm::create(vm);
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// 2. Let newContext be a new execution context. (This was done in the Interpreter constructor)
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// 3. Set the Function of newContext to null. (This is done for us when the execution context is constructed)
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// 4. Set the Realm of newContext to realm.
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interpreter->m_global_execution_context.realm = realm;
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// 5. Set the ScriptOrModule of newContext to null. (This was done during execution context construction)
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// 7. If the host requires use of an exotic object to serve as realm's global object, let global be such an object created in a host-defined manner.
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// Otherwise, let global be undefined, indicating that an ordinary object should be created as the global object.
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auto* global_object = static_cast<GlobalObject*>(interpreter->heap().allocate_without_global_object<GlobalObjectType>(forward<Args>(args)...));
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// 6. Push newContext onto the execution context stack; newContext is now the running execution context.
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// NOTE: This is out of order from the spec, but it shouldn't matter here.
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vm.push_execution_context(interpreter->m_global_execution_context, *global_object);
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// 8. If the host requires that the this binding in realm's global scope return an object other than the global object, let thisValue be such an object created
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// in a host-defined manner. Otherwise, let thisValue be undefined, indicating that realm's global this binding should be the global object.
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if constexpr (IsSame<GlobalObjectType, GlobalThisObjectType>) {
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// 9. Perform SetRealmGlobalObject(realm, global, thisValue).
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realm->set_global_object(*global_object, global_object);
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} else {
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// FIXME: Should we pass args in here? Let's er on the side of caution and say yes.
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auto* global_this_value = static_cast<Object*>(interpreter->heap().allocate_without_global_object<GlobalThisObjectType>(forward<Args>(args)...));
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// 9. Perform SetRealmGlobalObject(realm, global, thisValue).
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realm->set_global_object(*global_object, global_this_value);
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}
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// NOTE: These are not in the spec.
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static FlyString global_execution_context_name = "(global execution context)";
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interpreter->m_global_execution_context.function_name = global_execution_context_name;
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interpreter->m_global_object = make_handle(global_object);
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interpreter->m_realm = make_handle(realm);
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// 10. Let globalObj be ? SetDefaultGlobalBindings(realm).
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// 11. Create any host-defined global object properties on globalObj.
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static_cast<GlobalObjectType*>(global_object)->initialize_global_object();
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// 12. Return NormalCompletion(empty).
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return interpreter;
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}
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template<typename GlobalObjectType, typename... Args>
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static NonnullOwnPtr<Interpreter> create(VM& vm, Args&&... args) requires IsBaseOf<GlobalObject, GlobalObjectType>
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{
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// NOTE: This function is here to facilitate step 8 of InitializeHostDefinedRealm. (Callers don't have to specify the same type twice if not necessary)
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return create<GlobalObjectType, GlobalObjectType>(vm, args...);
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}
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static NonnullOwnPtr<Interpreter> create_with_existing_realm(Realm&);
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~Interpreter();
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ThrowCompletionOr<Value> run(Script&);
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ThrowCompletionOr<Value> run(SourceTextModule&);
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GlobalObject& global_object();
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const GlobalObject& global_object() const;
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Realm& realm();
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Realm const& realm() const;
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ALWAYS_INLINE VM& vm() { return *m_vm; }
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ALWAYS_INLINE const VM& vm() const { return *m_vm; }
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ALWAYS_INLINE Heap& heap() { return vm().heap(); }
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Environment* lexical_environment() { return vm().lexical_environment(); }
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void push_ast_node(ExecutingASTNodeChain& chain_node)
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{
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chain_node.previous = m_ast_node_chain;
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m_ast_node_chain = &chain_node;
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}
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void pop_ast_node()
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{
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VERIFY(m_ast_node_chain);
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m_ast_node_chain = m_ast_node_chain->previous;
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}
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const ASTNode* current_node() const { return m_ast_node_chain ? &m_ast_node_chain->node : nullptr; }
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private:
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explicit Interpreter(VM&);
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ExecutingASTNodeChain* m_ast_node_chain { nullptr };
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NonnullRefPtr<VM> m_vm;
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Handle<GlobalObject> m_global_object;
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Handle<Realm> m_realm;
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// This is here to keep the global execution context alive for the entire lifespan of the Interpreter.
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ExecutionContext m_global_execution_context;
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};
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}
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