| Index: runtime/vm/flow_graph_compiler_x64.cc
|
| ===================================================================
|
| --- runtime/vm/flow_graph_compiler_x64.cc (revision 5534)
|
| +++ runtime/vm/flow_graph_compiler_x64.cc (working copy)
|
| @@ -614,12 +614,9 @@
|
| }
|
|
|
|
|
| -void FlowGraphCompiler::VisitExtractTypeArguments(
|
| - ExtractTypeArgumentsComp* comp) {
|
| +void FlowGraphCompiler::VisitExtractFactoryTypeArguments(
|
| + ExtractFactoryTypeArgumentsComp* comp) {
|
| __ popq(RAX); // Instantiator.
|
| - if (!comp->constructor().IsFactory()) {
|
| - __ popq(RBX); // Discard placeholder.
|
| - }
|
|
|
| // RAX is the instantiator AbstractTypeArguments object (or null).
|
| // If RAX is null, no need to instantiate the type arguments, use null, and
|
| @@ -644,33 +641,111 @@
|
| __ j(EQUAL, &type_arguments_instantiated, Assembler::kNearJump);
|
| }
|
| __ Bind(&type_arguments_uninstantiated);
|
| - if (comp->constructor().IsFactory()) {
|
| - // A runtime call to instantiate the type arguments is required before
|
| - // calling the factory.
|
| - __ PushObject(Object::ZoneHandle()); // Make room for the result.
|
| - __ PushObject(comp->type_arguments());
|
| - __ pushq(RAX); // Push instantiator type arguments.
|
| - GenerateCallRuntime(comp->node_id(),
|
| - comp->token_index(),
|
| - kInstantiateTypeArgumentsRuntimeEntry);
|
| - __ popq(RAX); // Pop instantiator type arguments.
|
| - __ popq(RAX); // Pop uninstantiated type arguments.
|
| - __ popq(RAX); // Pop instantiated type arguments.
|
| - __ Bind(&type_arguments_instantiated);
|
| - // RAX: Instantiated type arguments.
|
| - } else {
|
| - // In the non-factory case, we rely on the allocation stub to
|
| - // instantiate the type arguments.
|
| - __ PushObject(comp->type_arguments());
|
| - // RAX: Instantiator type arguments.
|
| - Label type_arguments_pushed;
|
| - __ jmp(&type_arguments_pushed, Assembler::kNearJump);
|
| + // A runtime call to instantiate the type arguments is required before
|
| + // calling the factory.
|
| + __ PushObject(Object::ZoneHandle()); // Make room for the result.
|
| + __ PushObject(comp->type_arguments());
|
| + __ pushq(RAX); // Push instantiator type arguments.
|
| + GenerateCallRuntime(comp->node_id(),
|
| + comp->token_index(),
|
| + kInstantiateTypeArgumentsRuntimeEntry);
|
| + __ popq(RAX); // Pop instantiator type arguments.
|
| + __ popq(RAX); // Pop uninstantiated type arguments.
|
| + __ popq(RAX); // Pop instantiated type arguments.
|
| + __ Bind(&type_arguments_instantiated);
|
| + // RAX: Instantiated type arguments.
|
| +}
|
|
|
| - __ Bind(&type_arguments_instantiated);
|
| - __ pushq(RAX); // Instantiated type arguments.
|
| +
|
| +void FlowGraphCompiler::VisitExtractConstructorTypeArguments(
|
| + ExtractConstructorTypeArgumentsComp* comp) {
|
| + __ popq(RAX); // Instantiator.
|
| +
|
| + // RAX is the instantiator AbstractTypeArguments object (or null).
|
| + // If RAX is null, no need to instantiate the type arguments, use null, and
|
| + // allocate an object of a raw type.
|
| + // TODO(regis): The above sentence is actually not correct. If the type
|
| + // arguments are only partially uninstantiated, we are losing type information
|
| + // by allocating a raw type. The code needs to be fixed here and in the
|
| + // unoptimized version (both ia32 and x64).
|
| + const Immediate raw_null =
|
| + Immediate(reinterpret_cast<intptr_t>(Object::null()));
|
| + Label type_arguments_instantiated, type_arguments_uninstantiated;
|
| + __ cmpq(RAX, raw_null);
|
| + __ j(EQUAL, &type_arguments_instantiated, Assembler::kNearJump);
|
| +
|
| + // Check if type arguments represent the uninstantiated identity vector.
|
| + if (comp->type_arguments().IsUninstantiatedIdentity()) {
|
| + // Check if the instantiator type argument vector is a TypeArguments of a
|
| + // matching length and, if so, use it as the instantiated type_arguments.
|
| + __ LoadObject(RCX, Class::ZoneHandle(Object::type_arguments_class()));
|
| + __ cmpq(RCX, FieldAddress(RAX, Object::class_offset()));
|
| + __ j(NOT_EQUAL, &type_arguments_uninstantiated, Assembler::kNearJump);
|
| + Immediate arguments_length = Immediate(reinterpret_cast<int64_t>(
|
| + Smi::New(comp->type_arguments().Length())));
|
| + __ cmpq(FieldAddress(RAX, TypeArguments::length_offset()),
|
| + arguments_length);
|
| + __ j(EQUAL, &type_arguments_instantiated, Assembler::kNearJump);
|
| + }
|
| + __ Bind(&type_arguments_uninstantiated);
|
| + // In the non-factory case, we rely on the allocation stub to
|
| + // instantiate the type arguments.
|
| + __ LoadObject(RAX, comp->type_arguments());
|
| + // RAX: uninstantiated type arguments.
|
| + __ Bind(&type_arguments_instantiated);
|
| + // RAX: uninstantiated or instantiated type arguments.
|
| +}
|
| +
|
| +
|
| +void FlowGraphCompiler::VisitExtractConstructorInstantiator(
|
| + ExtractConstructorInstantiatorComp* comp) {
|
| + __ popq(RCX); // Discard value.
|
| + __ popq(RAX); // Instantiator.
|
| +
|
| + // RAX is the instantiator AbstractTypeArguments object (or null).
|
| + // If RAX is null, no need to instantiate the type arguments, use null, and
|
| + // allocate an object of a raw type.
|
| + // TODO(regis): The above sentence is actually not correct. If the type
|
| + // arguments are only partially uninstantiated, we are losing type information
|
| + // by allocating a raw type. The code needs to be fixed here and in the
|
| + // unoptimized version (both ia32 and x64).
|
| +
|
| + // If type arguments represent the uninstantiated identity vector and if the
|
| + // instantiator is not null, the instantiator was used as type arguments,
|
| + // therefore, the instantiator must be reset to null here to indicate to the
|
| + // allocator that the type arguments are instantiated.
|
| + if (comp->type_arguments().IsUninstantiatedIdentity()) {
|
| + // TODO(regis): The following emitted code is duplicated in
|
| + // VisitExtractConstructorTypeArguments above. The reason is that the code
|
| + // is split between two computations, so that each one produces a
|
| + // single value, rather than producing a pair of values.
|
| + // If this becomes an issue, we should expose these tests at the IL level.
|
| + // Note that this code will still change, because bounds checking is not
|
| + // implemented yet.
|
| + const Immediate raw_null =
|
| + Immediate(reinterpret_cast<intptr_t>(Object::null()));
|
| + Label use_instantiator;
|
| + __ cmpq(RAX, raw_null);
|
| + __ j(EQUAL, &use_instantiator, Assembler::kNearJump); // Already null.
|
| +
|
| + // Check if the instantiator type argument vector is a TypeArguments of a
|
| + // matching length and, if so, use it as the instantiated type_arguments.
|
| + __ LoadObject(RCX, Class::ZoneHandle(Object::type_arguments_class()));
|
| + __ cmpq(RCX, FieldAddress(RAX, Object::class_offset()));
|
| + __ j(NOT_EQUAL, &use_instantiator, Assembler::kNearJump);
|
| + Immediate arguments_length = Immediate(reinterpret_cast<int64_t>(
|
| + Smi::New(comp->type_arguments().Length())));
|
| + __ cmpq(FieldAddress(RAX, TypeArguments::length_offset()),
|
| + arguments_length);
|
| + __ j(NOT_EQUAL, &use_instantiator, Assembler::kNearJump);
|
| + // The instantiator was used in VisitExtractConstructorTypeArguments as the
|
| + // instantiated type arguments, reset instantiator to null.
|
| __ movq(RAX, raw_null); // Null instantiator.
|
| - __ Bind(&type_arguments_pushed);
|
| + __ Bind(&use_instantiator); // Use instantiator in RAX.
|
| }
|
| + // In the non-factory case, we rely on the allocation stub to
|
| + // instantiate the type arguments.
|
| + // RAX: instantiator or null.
|
| }
|
|
|
|
|
|
|