mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2024-11-21 23:20:20 +00:00
f87041bf3a
Resulting in a massive rename across almost everywhere! Alongside the namespace change, we now have the following names: * JS::NonnullGCPtr -> GC::Ref * JS::GCPtr -> GC::Ptr * JS::HeapFunction -> GC::Function * JS::CellImpl -> GC::Cell * JS::Handle -> GC::Root
226 lines
9.1 KiB
C++
226 lines
9.1 KiB
C++
/*
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* Copyright (c) 2020-2021, Andreas Kling <andreas@ladybird.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <LibJS/Runtime/DeclarativeEnvironment.h>
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#include <LibJS/Runtime/Error.h>
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#include <LibJS/Runtime/GlobalObject.h>
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#include <LibJS/Runtime/Reference.h>
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namespace JS {
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// 6.2.4.6 PutValue ( V, W ), https://tc39.es/ecma262/#sec-putvalue
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ThrowCompletionOr<void> Reference::put_value(VM& vm, Value value)
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{
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// 1. ReturnIfAbrupt(V).
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// 2. ReturnIfAbrupt(W).
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// 3. If V is not a Reference Record, throw a ReferenceError exception.
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if (!is_valid_reference())
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return vm.throw_completion<ReferenceError>(ErrorType::InvalidLeftHandAssignment);
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// 4. If IsUnresolvableReference(V) is true, then
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if (is_unresolvable()) {
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// a. If V.[[Strict]] is true, throw a ReferenceError exception.
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if (m_strict)
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return throw_reference_error(vm);
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// b. Let globalObj be GetGlobalObject().
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auto& global_object = vm.get_global_object();
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// c. Perform ? Set(globalObj, V.[[ReferencedName]], W, false).
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TRY(global_object.set(name(), value, Object::ShouldThrowExceptions::No));
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// Return unused.
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return {};
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}
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// 5. If IsPropertyReference(V) is true, then
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if (is_property_reference()) {
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// a. Let baseObj be ? ToObject(V.[[Base]]).
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auto base_obj = TRY(m_base_value.to_object(vm));
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// b. If IsPrivateReference(V) is true, then
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if (is_private_reference()) {
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// i. Return ? PrivateSet(baseObj, V.[[ReferencedName]], W).
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return base_obj->private_set(private_name(), value);
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}
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// c. Let succeeded be ? baseObj.[[Set]](V.[[ReferencedName]], W, GetThisValue(V)).
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auto succeeded = TRY(base_obj->internal_set(name(), value, get_this_value()));
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// d. If succeeded is false and V.[[Strict]] is true, throw a TypeError exception.
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if (!succeeded && m_strict)
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return vm.throw_completion<TypeError>(ErrorType::ReferenceNullishSetProperty, name(), m_base_value.to_string_without_side_effects());
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// e. Return unused.
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return {};
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}
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// 6. Else,
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// a. Let base be V.[[Base]].
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// b. Assert: base is an Environment Record.
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VERIFY(m_base_type == BaseType::Environment);
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VERIFY(m_base_environment);
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// c. Return ? base.SetMutableBinding(V.[[ReferencedName]], W, V.[[Strict]]) (see 9.1).
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if (m_environment_coordinate.has_value())
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return static_cast<DeclarativeEnvironment*>(m_base_environment)->set_mutable_binding_direct(vm, m_environment_coordinate->index, value, m_strict);
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else
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return m_base_environment->set_mutable_binding(vm, name().as_string(), value, m_strict);
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}
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Completion Reference::throw_reference_error(VM& vm) const
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{
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if (is_private_reference())
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return vm.throw_completion<ReferenceError>(ErrorType::ReferenceUnresolvable);
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else
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return vm.throw_completion<ReferenceError>(ErrorType::UnknownIdentifier, name().to_string_or_symbol().to_display_string());
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}
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// 6.2.4.5 GetValue ( V ), https://tc39.es/ecma262/#sec-getvalue
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ThrowCompletionOr<Value> Reference::get_value(VM& vm) const
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{
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auto& realm = *vm.current_realm();
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// 1. ReturnIfAbrupt(V).
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// 2. If V is not a Reference Record, return V.
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// 3. If IsUnresolvableReference(V) is true, throw a ReferenceError exception.
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if (!is_valid_reference() || is_unresolvable())
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return throw_reference_error(vm);
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// 4. If IsPropertyReference(V) is true, then
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if (is_property_reference()) {
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// a. Let baseObj be ? ToObject(V.[[Base]]).
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// NOTE: Deferred as an optimization; we might not actually need to create an object.
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// b. If IsPrivateReference(V) is true, then
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if (is_private_reference()) {
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// FIXME: We need to be able to specify the receiver for this
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// if we want to use it in error messages in future
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// as things currently stand this does the "wrong thing" but
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// the error is unobservable
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auto base_obj = TRY(m_base_value.to_object(vm));
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// i. Return ? PrivateGet(baseObj, V.[[ReferencedName]]).
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return base_obj->private_get(private_name());
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}
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// OPTIMIZATION: For various primitives we can avoid actually creating a new object for them.
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GC::Ptr<Object> base_obj;
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if (m_base_value.is_string()) {
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auto string_value = TRY(m_base_value.as_string().get(vm, name()));
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if (string_value.has_value())
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return *string_value;
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base_obj = realm.intrinsics().string_prototype();
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} else if (m_base_value.is_number())
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base_obj = realm.intrinsics().number_prototype();
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else if (m_base_value.is_boolean())
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base_obj = realm.intrinsics().boolean_prototype();
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else if (m_base_value.is_bigint())
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base_obj = realm.intrinsics().bigint_prototype();
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else if (m_base_value.is_symbol())
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base_obj = realm.intrinsics().symbol_prototype();
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else
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base_obj = TRY(m_base_value.to_object(vm));
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// c. Return ? baseObj.[[Get]](V.[[ReferencedName]], GetThisValue(V)).
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return base_obj->internal_get(name(), get_this_value());
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}
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// 5. Else,
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// a. Let base be V.[[Base]].
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// b. Assert: base is an Environment Record.
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VERIFY(m_base_type == BaseType::Environment);
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VERIFY(m_base_environment);
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// c. Return ? base.GetBindingValue(V.[[ReferencedName]], V.[[Strict]]) (see 9.1).
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if (m_environment_coordinate.has_value())
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return static_cast<DeclarativeEnvironment*>(m_base_environment)->get_binding_value_direct(vm, m_environment_coordinate->index);
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return m_base_environment->get_binding_value(vm, name().as_string(), m_strict);
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}
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// 13.5.1.2 Runtime Semantics: Evaluation, https://tc39.es/ecma262/#sec-delete-operator-runtime-semantics-evaluation
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ThrowCompletionOr<bool> Reference::delete_(VM& vm)
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{
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// 13.5.1.2 Runtime Semantics: Evaluation, https://tc39.es/ecma262/#sec-delete-operator-runtime-semantics-evaluation
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// UnaryExpression : delete UnaryExpression
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// NOTE: The following steps have already been evaluated by the time we get here:
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// 1. Let ref be the result of evaluating UnaryExpression.
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// 2. ReturnIfAbrupt(ref).
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// 3. If ref is not a Reference Record, return true.
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// 4. If IsUnresolvableReference(ref) is true, then
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if (is_unresolvable()) {
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// a. Assert: ref.[[Strict]] is false.
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VERIFY(!m_strict);
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// b. Return true.
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return true;
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}
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// 5. If IsPropertyReference(ref) is true, then
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if (is_property_reference()) {
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// a. Assert: IsPrivateReference(ref) is false.
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VERIFY(!is_private_reference());
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// b. If IsSuperReference(ref) is true, throw a ReferenceError exception.
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if (is_super_reference())
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return vm.throw_completion<ReferenceError>(ErrorType::UnsupportedDeleteSuperProperty);
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// c. Let baseObj be ? ToObject(ref.[[Base]]).
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auto base_obj = TRY(m_base_value.to_object(vm));
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// d. Let deleteStatus be ? baseObj.[[Delete]](ref.[[ReferencedName]]).
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bool delete_status = TRY(base_obj->internal_delete(name()));
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// e. If deleteStatus is false and ref.[[Strict]] is true, throw a TypeError exception.
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if (!delete_status && m_strict)
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return vm.throw_completion<TypeError>(ErrorType::ReferenceNullishDeleteProperty, name(), m_base_value.to_string_without_side_effects());
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// f. Return deleteStatus.
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return delete_status;
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}
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// 6. Else,
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// a. Let base be ref.[[Base]].
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// b. Assert: base is an Environment Record.
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VERIFY(m_base_type == BaseType::Environment);
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// c. Return ? base.DeleteBinding(ref.[[ReferencedName]]).
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return m_base_environment->delete_binding(vm, name().as_string());
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}
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// 6.2.4.8 InitializeReferencedBinding ( V, W ), https://tc39.es/ecma262/#sec-object.prototype.hasownproperty
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// 1.2.1.1 InitializeReferencedBinding ( V, W, hint ), https://tc39.es/proposal-explicit-resource-management/#sec-initializereferencedbinding
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ThrowCompletionOr<void> Reference::initialize_referenced_binding(VM& vm, Value value, Environment::InitializeBindingHint hint) const
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{
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VERIFY(!is_unresolvable());
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VERIFY(m_base_type == BaseType::Environment);
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return m_base_environment->initialize_binding(vm, name().as_string(), value, hint);
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}
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// 6.2.4.9 MakePrivateReference ( baseValue, privateIdentifier ), https://tc39.es/ecma262/#sec-makeprivatereference
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Reference make_private_reference(VM& vm, Value base_value, DeprecatedFlyString const& private_identifier)
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{
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// 1. Let privEnv be the running execution context's PrivateEnvironment.
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auto private_environment = vm.running_execution_context().private_environment;
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// 2. Assert: privEnv is not null.
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VERIFY(private_environment);
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// 3. Let privateName be ResolvePrivateIdentifier(privEnv, privateIdentifier).
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auto private_name = private_environment->resolve_private_identifier(private_identifier);
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// 4. Return the Reference Record { [[Base]]: baseValue, [[ReferencedName]]: privateName, [[Strict]]: true, [[ThisValue]]: empty }.
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return Reference { base_value, private_name };
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}
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}
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