Chromium Code Reviews| Index: runtime/vm/object.cc |
| =================================================================== |
| --- runtime/vm/object.cc (revision 1473) |
| +++ runtime/vm/object.cc (working copy) |
| @@ -239,6 +239,7 @@ |
| // Allocate and initialize the null class. |
| cls = Class::New<Instance>(); |
| + cls.set_is_finalized(); |
| null_class_ = cls.raw(); |
| // Complete initialization of null_ instance, i.e. initialize its class_ |
| @@ -264,6 +265,7 @@ |
| // see GetSingletonClassIndex) and its array fields cannot be set to the empty |
| // array, but remain null. |
| cls = Class::New<Instance>(); |
| + cls.set_is_finalized(); |
| cls.set_is_interface(); |
| dynamic_class_ = cls.raw(); |
| @@ -272,6 +274,7 @@ |
| unresolved_class_class_ = cls.raw(); |
| cls = Class::New<Instance>(); |
| + cls.set_is_finalized(); |
| void_class_ = cls.raw(); |
| cls = Class::New<ParameterizedType>(); |
| @@ -335,13 +338,33 @@ |
| } |
| +RawClass* Object::CreateAndRegisterCoreInterface(const char* cname, |
|
srdjan
2011/11/11 21:32:04
May want to change it to CreateAndRegisterInterfac
regis
2011/11/11 21:37:38
Done.
|
| + const Script& script, |
| + const Library& core_lib) { |
| + const String& name = String::Handle(String::NewSymbol(cname)); |
| + const Class& cls = Class::Handle(Class::NewInterface(name, script)); |
| + core_lib.AddClass(cls); |
| + return cls.raw(); |
| +} |
| + |
| + |
| +void Object::RegisterCoreImplClass(const Class& cls, |
|
srdjan
2011/11/11 21:32:04
Ditto for CoreImpl
regis
2011/11/11 21:37:38
Done.
|
| + const char* cname, |
| + const Script& impl_script, |
| + const Library& core_impl_lib) { |
| + const String& name = String::Handle(String::NewSymbol(cname)); |
| + cls.set_name(name); |
| + cls.set_script(impl_script); |
| + core_impl_lib.AddClass(cls); |
| +} |
| + |
| + |
| void Object::Init(Isolate* isolate) { |
| TIMERSCOPE(time_bootstrap); |
| ObjectStore* object_store = isolate->object_store(); |
| Class& cls = Class::Handle(); |
| Type& type = Type::Handle(); |
| - String& name = String::Handle(); |
| Array& array = Array::Handle(); |
| // All RawArray fields will be initialized to an empty array, therefore |
| @@ -363,52 +386,6 @@ |
| // has been created. |
| cls.InitEmptyFields(); |
| - cls = Class::New<ImmutableArray>(); |
| - object_store->set_immutable_array_class(cls); |
| - cls.set_type_arguments_instance_field_offset(Array::type_arguments_offset()); |
| - |
| - // Allocate and initialize the object class and type. |
| - cls = Class::New<Instance>(); |
| - object_store->set_object_class(cls); |
| - type = Type::NewNonParameterizedType(cls); |
| - object_store->set_object_type(type); |
| - |
| - cls = Class::New<Smi>(); |
| - object_store->set_smi_class(cls); |
| - |
| - cls = Class::New<Mint>(); |
| - object_store->set_mint_class(cls); |
| - |
| - cls = Class::New<Bigint>(); |
| - object_store->set_bigint_class(cls); |
| - |
| - cls = Class::New<Double>(); |
| - object_store->set_double_class(cls); |
| - |
| - cls = Class::New<OneByteString>(); |
| - object_store->set_one_byte_string_class(cls); |
| - |
| - cls = Class::New<TwoByteString>(); |
| - object_store->set_two_byte_string_class(cls); |
| - |
| - cls = Class::New<FourByteString>(); |
| - object_store->set_four_byte_string_class(cls); |
| - |
| - cls = Class::New<Bool>(); |
| - object_store->set_bool_class(cls); |
| - |
| - cls = Class::New<UnhandledException>(); |
| - object_store->set_unhandled_exception_class(cls); |
| - |
| - cls = Class::New<Stacktrace>(); |
| - object_store->set_stacktrace_class(cls); |
| - // Set the super type so that the 'toString' method is implemented. |
| - type = object_store->object_type(); |
| - cls.set_super_type(type); |
| - |
| - cls = Class::New<JSRegExp>(); |
| - object_store->set_jsregexp_class(cls); |
| - |
| // Setup the symbol table used within the String class. |
| const int kInitialSymbolTableSize = 16; |
| array = Array::New(kInitialSymbolTableSize + 1); |
| @@ -416,156 +393,145 @@ |
| array.SetAt(kInitialSymbolTableSize, Smi::Handle(Smi::New(0))); |
| object_store->set_symbol_table(array); |
| + // Pre-allocate the OneByteString class needed by the symbol table. |
| + cls = Class::New<OneByteString>(); |
| + object_store->set_one_byte_string_class(cls); |
| + |
| // Basic infrastructure has been setup, initialize the class dictionary. |
| Library::InitCoreLibrary(isolate); |
| - Library& core_lib = Library::Handle(isolate->object_store()->core_library()); |
| + Library& core_lib = Library::Handle(Library::CoreLibrary()); |
| ASSERT(!core_lib.IsNull()); |
| Library& core_impl_lib = Library::Handle(Library::CoreImplLibrary()); |
| ASSERT(!core_impl_lib.IsNull()); |
| - // Allocate pre-initialized values. |
| - Bool& bool_value = Bool::Handle(); |
| - bool_value = Bool::New(true); |
| - object_store->set_true_value(bool_value); |
| - bool_value = Bool::New(false); |
| - object_store->set_false_value(bool_value); |
| - |
| object_store->set_pending_classes(Array::Handle(Array::Empty())); |
| Context& context = Context::Handle(Context::New(0)); |
| object_store->set_empty_context(context); |
| - // Now that the String class is initialized and the dictionary has been setup, |
| - // add the names to preallocated classes and register them in the dictionary. |
| + // Now that the symbol table is initialized and that the core dictionary as |
| + // well as the core implementation dictionary have been setup, preallocate |
| + // remaining classes and register them by name in the dictionaries. |
| const Script& impl_script = Script::Handle(Bootstrap::LoadImplScript()); |
| + GrowableArray<const Class*> pending_classes; |
| - name = String::NewSymbol("Smi"); |
| - cls = object_store->smi_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<Smi>(); |
| + object_store->set_smi_class(cls); |
| + RegisterCoreImplClass(cls, "Smi", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("OneByteString"); |
| - cls = object_store->one_byte_string_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<Mint>(); |
| + object_store->set_mint_class(cls); |
| + RegisterCoreImplClass(cls, "Mint", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("TwoByteString"); |
| - cls = object_store->two_byte_string_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<Bigint>(); |
| + object_store->set_bigint_class(cls); |
| + RegisterCoreImplClass(cls, "Bigint", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("FourByteString"); |
| - cls = object_store->four_byte_string_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<Double>(); |
| + object_store->set_double_class(cls); |
| + RegisterCoreImplClass(cls, "Double", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("Mint"); |
| - cls = object_store->mint_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<Bool>(); |
| + object_store->set_bool_class(cls); |
| + RegisterCoreImplClass(cls, "Bool", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("Bigint"); |
| - cls = object_store->bigint_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = object_store->array_class(); // Was allocated above. |
| + RegisterCoreImplClass(cls, "ObjectArray", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("Double"); |
| - cls = object_store->double_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<ImmutableArray>(); |
| + object_store->set_immutable_array_class(cls); |
| + cls.set_type_arguments_instance_field_offset(Array::type_arguments_offset()); |
| + ASSERT(object_store->immutable_array_class() != object_store->array_class()); |
| + RegisterCoreImplClass(cls, "ImmutableArray", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("Bool"); |
| - cls = object_store->bool_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = object_store->one_byte_string_class(); // Was allocated above. |
| + RegisterCoreImplClass(cls, "OneByteString", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("ObjectArray"); |
| - cls = object_store->array_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<TwoByteString>(); |
| + object_store->set_two_byte_string_class(cls); |
| + RegisterCoreImplClass(cls, "TwoByteString", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("ImmutableArray"); |
| - cls = object_store->immutable_array_class(); |
| - ASSERT(object_store->immutable_array_class() != object_store->array_class()); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<FourByteString>(); |
| + object_store->set_four_byte_string_class(cls); |
| + RegisterCoreImplClass(cls, "FourByteString", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("UnhandledException"); |
| - cls = object_store->unhandled_exception_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<UnhandledException>(); |
| + object_store->set_unhandled_exception_class(cls); |
| + RegisterCoreImplClass(cls, "UnhandledException", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| - name = String::NewSymbol("Stacktrace"); |
| - cls = object_store->stacktrace_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<Stacktrace>(); |
| + object_store->set_stacktrace_class(cls); |
| + RegisterCoreImplClass(cls, "Stacktrace", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| + // Super type set below, after Object is allocated. |
| - name = String::NewSymbol("JSSyntaxRegExp"); |
| - cls = object_store->jsregexp_class(); |
| - cls.set_name(name); |
| - cls.set_script(impl_script); |
| - core_impl_lib.AddClass(cls); |
| + cls = Class::New<JSRegExp>(); |
| + object_store->set_jsregexp_class(cls); |
| + RegisterCoreImplClass(cls, "JSSyntaxRegExp", impl_script, core_impl_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| // Initialize the base interfaces used by the core VM classes. |
| const Script& script = Script::Handle(Bootstrap::LoadScript()); |
| - name = String::NewSymbol("Object"); |
| - cls = object_store->object_class(); |
| - cls.set_name(name); |
| + // Allocate and initialize the Object class and type. |
| + // Object class is the only pre-allocated non-interface in the core library. |
| + cls = Class::New<Instance>(); |
| + object_store->set_object_class(cls); |
| + cls.set_name(String::Handle(String::NewSymbol("Object"))); |
| cls.set_script(script); |
| core_lib.AddClass(cls); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| + type = Type::NewNonParameterizedType(cls); |
| + object_store->set_object_type(type); |
| - name = String::NewSymbol("Function"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + // Set the super type of class Stacktrace to Object type so that the |
| + // 'toString' method is implemented. |
| + cls = object_store->stacktrace_class(); |
| + cls.set_super_type(type); |
| + |
| + cls = CreateAndRegisterCoreInterface("Function", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_function_interface(type); |
| - name = String::NewSymbol("num"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + cls = CreateAndRegisterCoreInterface("num", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_number_interface(type); |
| - name = String::NewSymbol("int"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + cls = CreateAndRegisterCoreInterface("int", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_int_interface(type); |
| - name = String::NewSymbol("double"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + cls = CreateAndRegisterCoreInterface("double", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_double_interface(type); |
| - name = String::NewSymbol("String"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + cls = CreateAndRegisterCoreInterface("String", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_string_interface(type); |
| - name = String::NewSymbol("bool"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + cls = CreateAndRegisterCoreInterface("bool", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_bool_interface(type); |
| - name = String::NewSymbol("List"); |
| - cls = Class::NewInterface(name, script); |
| - core_lib.AddClass(cls); |
| + cls = CreateAndRegisterCoreInterface("List", script, core_lib); |
| + pending_classes.Add(&Class::ZoneHandle(cls.raw())); |
| type = Type::NewNonParameterizedType(cls); |
| object_store->set_list_interface(type); |
| @@ -590,11 +556,21 @@ |
| object_store->set_dynamic_type(type); |
| core_lib.AddClass(cls); |
| - // Finish the initialization by compiling the bootstrap script containing the |
| - // implementation of the internal classes. |
| - Bootstrap::Compile(Library::Handle(Library::CoreLibrary()), script); |
| - Bootstrap::Compile(Library::Handle(Library::CoreImplLibrary()), impl_script); |
| + // Add the preallocated classes to the list of classes to be finalized. |
| + ClassFinalizer::AddPendingClasses(pending_classes); |
| + // Allocate pre-initialized values. |
| + Bool& bool_value = Bool::Handle(); |
| + bool_value = Bool::New(true); |
| + object_store->set_true_value(bool_value); |
| + bool_value = Bool::New(false); |
| + object_store->set_false_value(bool_value); |
| + |
| + // Finish the initialization by compiling the bootstrap scripts containing the |
| + // base interfaces and the implementation of the internal classes. |
| + Bootstrap::Compile(core_lib, script); |
| + Bootstrap::Compile(core_impl_lib, impl_script); |
| + |
| Bootstrap::SetupNativeResolver(); |
| // Remove the Object superclass cycle by setting the super type to null (not |
| @@ -713,25 +689,26 @@ |
| RawType* Class::SignatureType() const { |
| - // Return the only canonical signature type if already computed. |
| + // Return the first canonical signature type if already computed. |
| const Array& signature_types = Array::Handle(canonical_types()); |
| if (signature_types.Length() > 0) { |
| Type& signature_type = Type::Handle(); |
| signature_type ^= signature_types.At(0); |
| if (!signature_type.IsNull()) { |
| - // A signature class has a unique canonical signature type. |
| - ASSERT((signature_types.Length() == 1) || |
| - signature_types.At(1) == Object::null()); |
| return signature_type.raw(); |
| } |
| } |
| ASSERT(IsSignatureClass()); |
| TypeArguments& signature_type_arguments = TypeArguments::Handle(); |
| const intptr_t num_type_params = NumTypeParameters(); |
| - // If the signature class extends a parameterized class, the type arguments of |
| - // the super class will be prepended to the type argument vector during type |
| - // finalization. We only need to provide the type parameters of the signature |
| - // class here. |
| + // A signature class extends class Instance and is parameterized in the same |
| + // way as the owner class of its non-static signature function. |
| + // It is not type parameterized if its signature function is static. |
| + // See Class::NewSignatureClass() for the setup of its type parameters. |
| + // During type finalization, the type arguments of the super class of the |
| + // owner class of its signature function will be prepended to the type |
| + // argument vector. Therefore, we only need to set the type arguments |
| + // matching the type parameters here. |
| if (num_type_params > 0) { |
| const Array& type_params = Array::Handle(type_parameters()); |
| signature_type_arguments = TypeArguments::NewTypeArray(num_type_params); |
| @@ -858,8 +835,16 @@ |
| intptr_t Class::NumTypeArguments() const { |
| // To work properly, this call requires the super class of this class to be |
| // resolved, which is checked by the SuperClass() call. |
| + Class& cls = Class::Handle(raw()); |
| + if (IsSignatureClass()) { |
| + const Function& signature_fun = Function::Handle(signature_function()); |
| + if (!signature_fun.is_static() && |
| + !signature_fun.HasInstantiatedSignature()) { |
| + cls = signature_fun.owner(); |
| + } |
| + } |
| intptr_t num_type_args = NumTypeParameters(); |
| - const Class& superclass = Class::Handle(SuperClass()); |
| + const Class& superclass = Class::Handle(cls.SuperClass()); |
| // Object is its own super class during bootstrap. |
| if (!superclass.IsNull() && (superclass.raw() != raw())) { |
| num_type_args += superclass.NumTypeArguments(); |
| @@ -868,6 +853,17 @@ |
| } |
| +bool Class::HasTypeArguments() const { |
| + if (!IsSignatureClass() && (is_finalized() || is_prefinalized())) { |
| + // More efficient than calling NumTypeArguments(). |
| + return type_arguments_instance_field_offset() != kNoTypeArguments; |
| + } else { |
| + // No need to check NumTypeArguments() if class has type parameters. |
| + return (NumTypeParameters() > 0) || (NumTypeArguments() > 0); |
| + } |
| +} |
| + |
| + |
| RawClass* Class::SuperClass() const { |
| const Type& sup_type = Type::Handle(super_type()); |
| if (sup_type.IsNull()) { |
| @@ -1033,42 +1029,49 @@ |
| const Function& signature_function, |
| const Script& script) { |
| ASSERT(!signature_function.IsNull()); |
| - Type& super_type = Type::Handle(Type::ObjectType()); |
| const Class& owner_class = Class::Handle(signature_function.owner()); |
| ASSERT(!owner_class.IsNull()); |
| Array& type_parameters = Array::Handle(); |
| TypeArray& type_parameter_extends = TypeArray::Handle(); |
| + // A signature class extends class Instance and is parameterized in the same |
| + // way as the owner class of its non-static signature function. |
| + // It is not type parameterized if its signature function is static. |
| if (!signature_function.is_static()) { |
| if ((owner_class.NumTypeParameters() > 0) && |
| !signature_function.HasInstantiatedSignature()) { |
| - // Share the function owner super class as the super class of the |
| - // signature class, so that the type argument vector of the closure at |
| - // run time matches the type argument vector of the closure instantiator. |
| type_parameters = owner_class.type_parameters(); |
| type_parameter_extends = owner_class.type_parameter_extends(); |
| - if (!owner_class.is_interface()) { |
| - super_type = owner_class.super_type(); |
| - } |
| } |
| } |
| Class& result = Class::Handle(New<Closure>(name, script)); |
| + const Type& super_type = Type::Handle(Type::ObjectType()); |
| + ASSERT(!super_type.IsNull()); |
| result.set_super_type(super_type); |
| result.set_signature_function(signature_function); |
| result.set_type_parameters(type_parameters); |
| result.set_type_parameter_extends(type_parameter_extends); |
| result.SetFields(Array::Handle(Array::Empty())); |
| result.SetFunctions(Array::Handle(Array::Empty())); |
| - // Implements interface Function. |
| + // Implements interface "Function". |
| const Type& function_interface = Type::Handle(Type::FunctionInterface()); |
| const Array& interfaces = Array::Handle(Array::New(1, Heap::kOld)); |
| interfaces.SetAt(0, function_interface); |
| result.set_interfaces(interfaces); |
| // Unless the signature function already has a signature class, create a |
| - // canonical signature class by having the signature function pointing back to |
| + // canonical signature class by having the signature function point back to |
| // the signature class. |
| if (signature_function.signature_class() == Object::null()) { |
| signature_function.set_signature_class(result); |
| } |
| + result.set_is_finalized(); |
| + // Instances of a signature class can only be closures. |
| + ASSERT(result.instance_size() == Closure::InstanceSize()); |
| + // Cache the signature type as the first canonicalized type in result. |
| + const Type& signature_type = Type::Handle(result.SignatureType()); |
| + ASSERT(!signature_type.IsFinalized()); |
| + const Array& new_canonical_types = Array::Handle(Array::New(1, Heap::kOld)); |
| + new_canonical_types.SetAt(0, signature_type); |
| + result.set_canonical_types(new_canonical_types); |
| return result.raw(); |
| } |
| @@ -1336,6 +1339,8 @@ |
| const TypeArguments& type_arguments, |
| const Class& other, |
| const TypeArguments& other_type_arguments) const { |
| + ASSERT(is_finalized() || !ClassFinalizer::AllClassesFinalized()); |
| + ASSERT(other.is_finalized() || !ClassFinalizer::AllClassesFinalized()); |
| if (test == kIsAssignableTo) { |
| // The spec states that "a type T is assignable to a type S if T is a |
| // subtype of S or S is a subtype of T". This is from the perspective of a |
| @@ -1691,7 +1696,7 @@ |
| num_type_params = cls.NumTypeParameters(); // Do not print the full vector. |
| if (num_type_params > num_args) { |
| first_type_param_index = 0; |
| - if (IsBeingFinalized()) { |
| + if (!IsFinalized() || IsBeingFinalized()) { |
| // Most probably an illformed type. Do not fill up with "Dynamic". |
| num_type_params = num_args; |
| } else { |
| @@ -1704,7 +1709,7 @@ |
| if (cls.IsSignatureClass()) { |
| // We may be reporting an error about an illformed function type. In that |
| // case, avoid instantiating the signature, since it may lead to cycles. |
| - if (IsBeingFinalized()) { |
| + if (!IsFinalized() || IsBeingFinalized()) { |
| return class_name.raw(); |
| } |
| const Function& signature_function = Function::Handle( |
| @@ -2007,13 +2012,11 @@ |
| intptr_t offset) const { |
| ASSERT(IsFinalized()); |
| ASSERT(!IsInstantiated()); |
| - TypeArguments& type_arguments = TypeArguments::Handle(); |
| - if (!instantiator_type_arguments.IsNull()) { |
| - type_arguments = arguments(); |
| - type_arguments = type_arguments.InstantiateFrom(instantiator_type_arguments, |
| - offset); |
| - } |
| + TypeArguments& type_arguments = TypeArguments::Handle(arguments()); |
| + type_arguments = type_arguments.InstantiateFrom(instantiator_type_arguments, |
| + offset); |
| const Class& cls = Class::Handle(type_class()); |
| + ASSERT(cls.is_finalized()); |
| ParameterizedType& instantiated_type = ParameterizedType::Handle( |
| ParameterizedType::New(cls, type_arguments)); |
| ASSERT(type_arguments.IsNull() || |
| @@ -2042,6 +2045,7 @@ |
| RawType* ParameterizedType::Canonicalize() const { |
| + ASSERT(IsFinalized()); |
| const Class& cls = Class::Handle(type_class()); |
| Array& canonical_types = Array::Handle(cls.canonical_types()); |
| if (canonical_types.IsNull()) { |
| @@ -2061,6 +2065,11 @@ |
| if (type.IsNull()) { |
| break; |
| } |
| + if (!type.IsFinalized()) { |
| + ASSERT((index == 0) && cls.IsSignatureClass()); |
| + index++; |
| + continue; |
| + } |
| if (this->Equals(type)) { |
| return type.raw(); |
| } |
| @@ -2444,9 +2453,6 @@ |
| const TypeArguments& instantiator_type_arguments, |
| intptr_t offset) const { |
| ASSERT(!IsInstantiated()); |
| - if (instantiator_type_arguments.IsNull()) { |
| - return TypeArguments::null(); |
| - } |
| if ((offset == 0) && |
| !instantiator_type_arguments.IsNull() && |
| IsUninstantiatedIdentity() && |
| @@ -3136,6 +3142,12 @@ |
| } else { |
| closure_function.set_signature_class(signature_class); |
| } |
| + const Type& signature_type = Type::Handle(signature_class.SignatureType()); |
| + if (!signature_type.IsFinalized()) { |
| + String& errmsg = String::Handle(); |
| + ClassFinalizer::FinalizeAndCanonicalizeType(signature_type, &errmsg); |
| + ASSERT(errmsg.IsNull()); |
| + } |
| ASSERT(closure_function.signature_class() == signature_class.raw()); |
| set_implicit_closure_function(closure_function); |
| ASSERT(closure_function.IsImplicitClosureFunction()); |
| @@ -4862,7 +4874,10 @@ |
| if (cls.HasTypeArguments()) { |
| type_arguments = GetTypeArguments(); |
| } |
| - return Type::NewParameterizedType(cls, type_arguments); |
| + const ParameterizedType& type = ParameterizedType::Handle( |
| + ParameterizedType::New(cls, type_arguments)); |
| + type.set_is_finalized(); |
| + return type.raw(); |
| } |