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@@ -9,18 +9,173 @@
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namespace JS {
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-ArgumentsObject::ArgumentsObject(GlobalObject& global_object)
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+ArgumentsObject::ArgumentsObject(GlobalObject& global_object, Environment& environment)
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: Object(*global_object.object_prototype())
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+ , m_environment(environment)
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{
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}
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void ArgumentsObject::initialize(GlobalObject& global_object)
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{
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Base::initialize(global_object);
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+ m_parameter_map = Object::create(global_object, nullptr);
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}
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ArgumentsObject::~ArgumentsObject()
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{
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}
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+void ArgumentsObject::visit_edges(Cell::Visitor& visitor)
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+{
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+ Base::visit_edges(visitor);
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+ visitor.visit(&m_environment);
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+ visitor.visit(m_parameter_map);
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+}
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+
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+// 10.4.4.3 [[Get]] ( P, Receiver ), https://tc39.es/ecma262/#sec-arguments-exotic-objects-get-p-receiver
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+Value ArgumentsObject::internal_get(const PropertyName& property_name, Value receiver) const
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+{
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+ // 1. Let map be args.[[ParameterMap]].
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+ auto& map = *m_parameter_map;
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+ // 2. Let isMapped be ! HasOwnProperty(map, P).
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+ bool is_mapped = m_parameter_map->has_own_property(property_name);
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+ // 3. If isMapped is false, then
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+ if (!is_mapped) {
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+ // a. Return ? OrdinaryGet(args, P, Receiver).
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+ return Object::internal_get(property_name, receiver);
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+ }
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+
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+ // FIXME: a. Assert: map contains a formal parameter mapping for P.
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+
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+ // b. Return Get(map, P).
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+ return map.get(property_name);
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+}
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+
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+// 10.4.4.4 [[Set]] ( P, V, Receiver ), https://tc39.es/ecma262/#sec-arguments-exotic-objects-set-p-v-receiver
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+bool ArgumentsObject::internal_set(PropertyName const& property_name, Value value, Value receiver)
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+{
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+ bool is_mapped = false;
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+
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+ // 1. If SameValue(args, Receiver) is false, then
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+ if (same_value(this, receiver)) {
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+ // a. Let isMapped be false.
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+ is_mapped = false;
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+ } else {
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+ // a. Let map be args.[[ParameterMap]].
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+ // b. Let isMapped be ! HasOwnProperty(map, P).
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+ is_mapped = parameter_map().has_own_property(property_name);
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+ }
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+
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+ // 3. If isMapped is true, then
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+ if (is_mapped) {
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+ // a. Let setStatus be Set(map, P, V, false).
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+ auto set_status = m_parameter_map->set(property_name, value, false);
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+ // b. Assert: setStatus is true because formal parameters mapped by argument objects are always writable.
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+ VERIFY(set_status);
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+ }
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+
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+ // 4. Return ? OrdinarySet(args, P, V, Receiver).
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+ return Object::internal_set(property_name, value, receiver);
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+}
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+
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+// 10.4.4.5 [[Delete]] ( P ), https://tc39.es/ecma262/#sec-arguments-exotic-objects-delete-p
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+bool ArgumentsObject::internal_delete(PropertyName const& property_name)
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+{
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+ // 1. Let map be args.[[ParameterMap]].
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+ auto& map = parameter_map();
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+ // 2. Let isMapped be ! HasOwnProperty(map, P).
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+ bool is_mapped = map.has_own_property(property_name);
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+ // 3. Let result be ? OrdinaryDelete(args, P).
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+ bool result = Object::internal_delete(property_name);
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+ if (vm().exception())
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+ return false;
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+
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+ // 4. If result is true and isMapped is true, then
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+ if (result && is_mapped) {
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+ // a. Call map.[[Delete]](P).
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+ map.internal_delete(property_name);
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+ }
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+
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+ // 5. Return result.
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+ return result;
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+}
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+
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+// 10.4.4.1 [[GetOwnProperty]] ( P ), https://tc39.es/ecma262/#sec-arguments-exotic-objects-getownproperty-p
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+Optional<PropertyDescriptor> ArgumentsObject::internal_get_own_property(PropertyName const& property_name) const
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+{
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+ // 1. Let desc be OrdinaryGetOwnProperty(args, P).
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+ auto desc = Object::internal_get_own_property(property_name);
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+ // 2. If desc is undefined, return desc.
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+ if (!desc.has_value())
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+ return desc;
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+ // 3. Let map be args.[[ParameterMap]].
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+ // 4. Let isMapped be ! HasOwnProperty(map, P).
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+ bool is_mapped = m_parameter_map->has_own_property(property_name);
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+ // 5. If isMapped is true, then
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+ if (is_mapped) {
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+ // a. Set desc.[[Value]] to Get(map, P).
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+ desc->value = m_parameter_map->get(property_name);
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+ }
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+ // 6. Return desc.
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+ return desc;
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+}
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+
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+// 10.4.4.2 [[DefineOwnProperty]] ( P, Desc ), https://tc39.es/ecma262/#sec-arguments-exotic-objects-defineownproperty-p-desc
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+bool ArgumentsObject::internal_define_own_property(PropertyName const& property_name, PropertyDescriptor const& descriptor)
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+{
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+ // 1. Let map be args.[[ParameterMap]].
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+ auto& map = parameter_map();
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+
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+ // 2. Let isMapped be HasOwnProperty(map, P).
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+ bool is_mapped = map.has_own_property(property_name);
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+
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+ // 3. Let newArgDesc be Desc.
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+ auto new_arg_desc = descriptor;
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+
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+ // 4. If isMapped is true and IsDataDescriptor(Desc) is true, then
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+ if (is_mapped && descriptor.is_data_descriptor()) {
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+ // a. If Desc.[[Value]] is not present and Desc.[[Writable]] is present and its value is false, then
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+ if (!descriptor.value.has_value() && descriptor.writable.has_value() && descriptor.writable == false) {
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+ // i. Set newArgDesc to a copy of Desc.
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+ new_arg_desc = descriptor;
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+ // ii. Set newArgDesc.[[Value]] to Get(map, P).
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+ new_arg_desc.value = map.get(property_name);
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+ }
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+ }
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+
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+ // 5. Let allowed be ? OrdinaryDefineOwnProperty(args, P, newArgDesc).
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+ bool allowed = Object::internal_define_own_property(property_name, new_arg_desc);
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+ if (vm().exception())
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+ return false;
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+
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+ // 6. If allowed is false, return false.
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+ if (!allowed)
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+ return false;
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+
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+ // 7. If isMapped is true, then
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+ if (is_mapped) {
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+ // a. If IsAccessorDescriptor(Desc) is true, then
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+ if (descriptor.is_accessor_descriptor()) {
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+ // i. Call map.[[Delete]](P).
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+ map.internal_delete(property_name);
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+ } else {
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+ // i. If Desc.[[Value]] is present, then
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+ if (descriptor.value.has_value()) {
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+ // 1. Let setStatus be Set(map, P, Desc.[[Value]], false).
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+ bool set_status = map.set(property_name, descriptor.value.value(), false);
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+ // 2. Assert: setStatus is true because formal parameters mapped by argument objects are always writable.
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+ VERIFY(set_status);
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+ }
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+ // ii. If Desc.[[Writable]] is present and its value is false, then
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+ if (descriptor.writable == false) {
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+ // 1. Call map.[[Delete]](P).
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+ map.internal_delete(property_name);
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+ }
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+ }
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+ }
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+
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+ // 8. Return true.
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+ return true;
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+}
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+
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}
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