a7d1d99389
This reverts commit ed77783cd3.
BUG=
R=fschneider@google.com
Review-Url: https://codereview.chromium.org/2782913003 .
869 lines
34 KiB
C++
869 lines
34 KiB
C++
// Copyright (c) 2016, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "vm/kernel_reader.h"
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#include <string.h>
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#include "vm/dart_api_impl.h"
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#include "vm/longjump.h"
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#include "vm/object_store.h"
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#include "vm/parser.h"
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#include "vm/symbols.h"
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#if !defined(DART_PRECOMPILED_RUNTIME)
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namespace dart {
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namespace kernel {
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#define Z (zone_)
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#define I (isolate_)
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#define T (type_translator_)
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#define H (translation_helper_)
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class SimpleExpressionConverter : public ExpressionVisitor {
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public:
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explicit SimpleExpressionConverter(Thread* thread)
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: translation_helper_(thread),
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zone_(translation_helper_.zone()),
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is_simple_(false),
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simple_value_(NULL) {}
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virtual void VisitDefaultExpression(Expression* node) { is_simple_ = false; }
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virtual void VisitIntLiteral(IntLiteral* node) {
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is_simple_ = true;
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simple_value_ =
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&Integer::ZoneHandle(Z, Integer::New(node->value(), Heap::kOld));
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*simple_value_ = H.Canonicalize(*simple_value_);
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}
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virtual void VisitBigintLiteral(BigintLiteral* node) {
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is_simple_ = true;
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simple_value_ = &Integer::ZoneHandle(
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Z, Integer::New(H.DartString(node->value(), Heap::kOld)));
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*simple_value_ = H.Canonicalize(*simple_value_);
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}
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virtual void VisitDoubleLiteral(DoubleLiteral* node) {
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is_simple_ = true;
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simple_value_ = &Double::ZoneHandle(
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Z, Double::New(H.DartString(node->value()), Heap::kOld));
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*simple_value_ = H.Canonicalize(*simple_value_);
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}
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virtual void VisitBoolLiteral(BoolLiteral* node) {
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is_simple_ = true;
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simple_value_ = &Bool::Handle(Z, Bool::Get(node->value()).raw());
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}
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virtual void VisitNullLiteral(NullLiteral* node) {
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is_simple_ = true;
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simple_value_ = &dart::Instance::ZoneHandle(Z, dart::Instance::null());
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}
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virtual void VisitStringLiteral(StringLiteral* node) {
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is_simple_ = true;
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simple_value_ = &H.DartSymbol(node->value());
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}
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bool IsSimple(Expression* expression) {
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expression->AcceptExpressionVisitor(this);
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return is_simple_;
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}
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const dart::Instance& SimpleValue() { return *simple_value_; }
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dart::Zone* zone() const { return zone_; }
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private:
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TranslationHelper translation_helper_;
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dart::Zone* zone_;
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bool is_simple_;
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dart::Instance* simple_value_;
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};
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RawArray* KernelReader::MakeFunctionsArray() {
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const intptr_t len = functions_.length();
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const Array& res = Array::Handle(zone_, Array::New(len, Heap::kOld));
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for (intptr_t i = 0; i < len; i++) {
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res.SetAt(i, *functions_[i]);
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}
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return res.raw();
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}
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RawLibrary* BuildingTranslationHelper::LookupLibraryByKernelLibrary(
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CanonicalName* library) {
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return reader_->LookupLibrary(library).raw();
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}
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RawClass* BuildingTranslationHelper::LookupClassByKernelClass(
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CanonicalName* klass) {
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return reader_->LookupClass(klass).raw();
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}
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KernelReader::KernelReader(Program* program)
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: program_(program),
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thread_(dart::Thread::Current()),
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zone_(thread_->zone()),
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isolate_(thread_->isolate()),
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scripts_(Array::ZoneHandle(zone_)),
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translation_helper_(this, thread_),
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type_translator_(&translation_helper_,
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&active_class_,
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/*finalize=*/false) {
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intptr_t source_file_count = program_->source_table().size();
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scripts_ = Array::New(source_file_count, Heap::kOld);
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}
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Object& KernelReader::ReadProgram() {
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LongJumpScope jump;
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if (setjmp(*jump.Set()) == 0) {
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intptr_t length = program_->libraries().length();
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for (intptr_t i = 0; i < length; i++) {
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Library* kernel_library = program_->libraries()[i];
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ReadLibrary(kernel_library);
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}
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for (intptr_t i = 0; i < length; i++) {
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dart::Library& library =
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LookupLibrary(program_->libraries()[i]->canonical_name());
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if (!library.Loaded()) library.SetLoaded();
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}
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if (ClassFinalizer::ProcessPendingClasses(/*from_kernel=*/true)) {
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Procedure* main = program_->main_method();
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Library* kernel_main_library = Library::Cast(main->parent());
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dart::Library& library =
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LookupLibrary(kernel_main_library->canonical_name());
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// Sanity check that we can find the main entrypoint.
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Object& main_obj = Object::Handle(
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Z, library.LookupObjectAllowPrivate(H.DartSymbol("main")));
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ASSERT(!main_obj.IsNull());
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return library;
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}
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}
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// Either class finalization failed or we caught a compile error.
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// In both cases sticky error would be set.
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Error& error = Error::Handle(Z);
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error = thread_->sticky_error();
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thread_->clear_sticky_error();
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return error;
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}
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void KernelReader::ReadLibrary(Library* kernel_library) {
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dart::Library& library = LookupLibrary(kernel_library->canonical_name());
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if (library.Loaded()) return;
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library.SetName(H.DartSymbol(kernel_library->name()));
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// The bootstrapper will take care of creating the native wrapper classes, but
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// we will add the synthetic constructors to them here.
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if (library.name() ==
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Symbols::Symbol(Symbols::kDartNativeWrappersLibNameId).raw()) {
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ASSERT(library.LoadInProgress());
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} else {
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library.SetLoadInProgress();
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}
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// Setup toplevel class (which contains library fields/procedures).
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Script& script = ScriptAt(kernel_library->source_uri_index(),
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kernel_library->import_uri());
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dart::Class& toplevel_class = dart::Class::Handle(
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Z, dart::Class::New(library, Symbols::TopLevel(), script,
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TokenPosition::kNoSource));
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toplevel_class.set_is_cycle_free();
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library.set_toplevel_class(toplevel_class);
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fields_.Clear();
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functions_.Clear();
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ActiveClassScope active_class_scope(&active_class_, NULL, &toplevel_class);
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// Load toplevel fields.
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for (intptr_t i = 0; i < kernel_library->fields().length(); i++) {
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Field* kernel_field = kernel_library->fields()[i];
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ActiveMemberScope active_member_scope(&active_class_, kernel_field);
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const dart::String& name = H.DartFieldName(kernel_field->name());
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const Object& script_class =
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ClassForScriptAt(toplevel_class, kernel_field->source_uri_index());
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dart::Field& field = dart::Field::Handle(
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Z, dart::Field::NewTopLevel(name, kernel_field->IsFinal(),
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kernel_field->IsConst(), script_class,
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kernel_field->position()));
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field.set_kernel_field(kernel_field);
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const AbstractType& type = T.TranslateType(kernel_field->type());
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field.SetFieldType(type);
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field.set_has_initializer(kernel_field->initializer() != NULL);
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GenerateFieldAccessors(toplevel_class, field, kernel_field);
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fields_.Add(&field);
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library.AddObject(field, name);
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}
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toplevel_class.AddFields(fields_);
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// Load toplevel procedures.
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for (intptr_t i = 0; i < kernel_library->procedures().length(); i++) {
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Procedure* kernel_procedure = kernel_library->procedures()[i];
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ReadProcedure(library, toplevel_class, kernel_procedure);
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}
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toplevel_class.SetFunctions(Array::Handle(MakeFunctionsArray()));
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const GrowableObjectArray& classes =
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GrowableObjectArray::Handle(I->object_store()->pending_classes());
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// Load all classes.
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for (intptr_t i = 0; i < kernel_library->classes().length(); i++) {
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Class* kernel_klass = kernel_library->classes()[i];
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classes.Add(ReadClass(library, toplevel_class, kernel_klass), Heap::kOld);
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}
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classes.Add(toplevel_class, Heap::kOld);
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}
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void KernelReader::ReadPreliminaryClass(dart::Class* klass,
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Class* kernel_klass) {
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ASSERT(kernel_klass->IsNormalClass());
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NormalClass* kernel_normal_class = NormalClass::Cast(kernel_klass);
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ActiveClassScope active_class_scope(&active_class_, kernel_klass, klass);
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// First setup the type parameters, so if any of the following code uses it
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// (in a recursive way) we're fine.
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TypeArguments& type_parameters =
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TypeArguments::Handle(Z, TypeArguments::null());
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intptr_t num_type_parameters = kernel_klass->type_parameters().length();
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if (num_type_parameters > 0) {
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dart::TypeParameter& parameter = dart::TypeParameter::Handle(Z);
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Type& null_bound = Type::Handle(Z, Type::null());
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// Step a) Create array of [TypeParameter] objects (without bound).
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type_parameters = TypeArguments::New(num_type_parameters);
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for (intptr_t i = 0; i < num_type_parameters; i++) {
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parameter = dart::TypeParameter::New(
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*klass, Function::Handle(Z), i, 0,
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H.DartSymbol(kernel_klass->type_parameters()[i]->name()), null_bound,
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TokenPosition::kNoSource);
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type_parameters.SetTypeAt(i, parameter);
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}
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klass->set_type_parameters(type_parameters);
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// Step b) Fill in the bounds of all [TypeParameter]s.
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for (intptr_t i = 0; i < num_type_parameters; i++) {
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TypeParameter* kernel_parameter = kernel_klass->type_parameters()[i];
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// TODO(github.com/dart-lang/kernel/issues/42): This should be handled
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// by the frontend.
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if (kernel_parameter->bound()->IsDynamicType()) {
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parameter ^= type_parameters.TypeAt(i);
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parameter.set_bound(Type::Handle(Z, I->object_store()->object_type()));
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} else {
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AbstractType& bound =
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T.TranslateTypeWithoutFinalization(kernel_parameter->bound());
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if (bound.IsMalformedOrMalbounded()) {
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bound = I->object_store()->object_type();
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}
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parameter ^= type_parameters.TypeAt(i);
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parameter.set_bound(bound);
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}
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}
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}
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// Set super type. Some classes (e.g., Object) do not have one.
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if (kernel_normal_class->super_class() != NULL) {
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AbstractType& super_type =
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T.TranslateTypeWithoutFinalization(kernel_normal_class->super_class());
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if (super_type.IsMalformed()) H.ReportError("Malformed super type");
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klass->set_super_type(super_type);
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}
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// Build implemented interface types
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intptr_t interface_count = kernel_klass->implemented_classes().length();
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const dart::Array& interfaces =
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dart::Array::Handle(Z, dart::Array::New(interface_count, Heap::kOld));
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for (intptr_t i = 0; i < interface_count; i++) {
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InterfaceType* kernel_interface_type =
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kernel_klass->implemented_classes()[i];
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const AbstractType& type =
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T.TranslateTypeWithoutFinalization(kernel_interface_type);
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if (type.IsMalformed()) H.ReportError("Malformed interface type.");
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interfaces.SetAt(i, type);
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}
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klass->set_interfaces(interfaces);
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if (kernel_klass->is_abstract()) klass->set_is_abstract();
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}
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dart::Class& KernelReader::ReadClass(const dart::Library& library,
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const dart::Class& toplevel_class,
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Class* kernel_klass) {
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dart::Class& klass = LookupClass(kernel_klass->canonical_name());
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// The class needs to have a script because all the functions in the class
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// will inherit it. The predicate Function::IsOptimizable uses the absence of
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// a script to detect test functions that should not be optimized.
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if (klass.script() == Script::null()) {
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klass.set_script(ScriptAt(kernel_klass->source_uri_index()));
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}
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if (klass.token_pos() == TokenPosition::kNoSource) {
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klass.set_token_pos(kernel_klass->position());
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}
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if (!klass.is_cycle_free()) {
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ReadPreliminaryClass(&klass, kernel_klass);
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}
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ActiveClassScope active_class_scope(&active_class_, kernel_klass, &klass);
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fields_.Clear();
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functions_.Clear();
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if (library.raw() == dart::Library::InternalLibrary() &&
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klass.Name() == Symbols::ClassID().raw()) {
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// If this is a dart:internal.ClassID class ignore field declarations
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// contained in the Kernel file and instead inject our own const
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// fields.
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klass.InjectCIDFields();
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} else {
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for (intptr_t i = 0; i < kernel_klass->fields().length(); i++) {
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Field* kernel_field = kernel_klass->fields()[i];
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ActiveMemberScope active_member_scope(&active_class_, kernel_field);
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const dart::String& name = H.DartFieldName(kernel_field->name());
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const AbstractType& type =
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T.TranslateTypeWithoutFinalization(kernel_field->type());
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const Object& script_class =
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ClassForScriptAt(klass, kernel_field->source_uri_index());
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dart::Field& field = dart::Field::Handle(
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Z,
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dart::Field::New(name, kernel_field->IsStatic(),
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// In the VM all const fields are implicitly final
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// whereas in Kernel they are not final because they
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// are not explicitly declared that way.
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kernel_field->IsFinal() || kernel_field->IsConst(),
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kernel_field->IsConst(),
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false, // is_reflectable
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script_class, type, kernel_field->position()));
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field.set_kernel_field(kernel_field);
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field.set_has_initializer(kernel_field->initializer() != NULL);
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GenerateFieldAccessors(klass, field, kernel_field);
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fields_.Add(&field);
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}
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klass.AddFields(fields_);
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}
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for (intptr_t i = 0; i < kernel_klass->constructors().length(); i++) {
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Constructor* kernel_constructor = kernel_klass->constructors()[i];
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ActiveMemberScope active_member_scope(&active_class_, kernel_constructor);
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ActiveFunctionScope active_function_scope(&active_class_,
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kernel_constructor->function());
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const dart::String& name = H.DartConstructorName(kernel_constructor);
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Function& function = dart::Function::ZoneHandle(
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Z, dart::Function::New(name, RawFunction::kConstructor,
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false, // is_static
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kernel_constructor->IsConst(),
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false, // is_abstract
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kernel_constructor->IsExternal(),
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false, // is_native
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klass, kernel_constructor->position()));
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function.set_end_token_pos(kernel_constructor->end_position());
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functions_.Add(&function);
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function.set_kernel_function(kernel_constructor);
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function.set_result_type(T.ReceiverType(klass));
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SetupFunctionParameters(H, T, klass, function,
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kernel_constructor->function(),
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true, // is_method
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false); // is_closure
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if (FLAG_enable_mirrors) {
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library.AddFunctionMetadata(function, TokenPosition::kNoSource,
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kernel_constructor);
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}
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}
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for (intptr_t i = 0; i < kernel_klass->procedures().length(); i++) {
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Procedure* kernel_procedure = kernel_klass->procedures()[i];
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ActiveMemberScope active_member_scope(&active_class_, kernel_procedure);
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ReadProcedure(library, klass, kernel_procedure, kernel_klass);
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}
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klass.SetFunctions(Array::Handle(MakeFunctionsArray()));
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if (!klass.is_marked_for_parsing()) {
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klass.set_is_marked_for_parsing();
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}
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if (FLAG_enable_mirrors) {
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library.AddClassMetadata(klass, toplevel_class, TokenPosition::kNoSource,
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kernel_klass);
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}
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return klass;
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}
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void KernelReader::ReadProcedure(const dart::Library& library,
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const dart::Class& owner,
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Procedure* kernel_procedure,
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Class* kernel_klass) {
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ActiveClassScope active_class_scope(&active_class_, kernel_klass, &owner);
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ActiveMemberScope active_member_scope(&active_class_, kernel_procedure);
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ActiveFunctionScope active_function_scope(&active_class_,
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kernel_procedure->function());
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const dart::String& name = H.DartProcedureName(kernel_procedure);
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bool is_method = kernel_klass != NULL && !kernel_procedure->IsStatic();
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bool is_abstract = kernel_procedure->IsAbstract();
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bool is_external = kernel_procedure->IsExternal();
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dart::String* native_name = NULL;
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if (is_external) {
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// Maybe it has a native implementation, which is not external as far as
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// the VM is concerned because it does have an implementation. Check for
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// an ExternalName annotation and extract the string from it.
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for (int i = 0; i < kernel_procedure->annotations().length(); ++i) {
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Expression* annotation = kernel_procedure->annotations()[i];
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if (!annotation->IsConstructorInvocation()) continue;
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ConstructorInvocation* invocation =
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ConstructorInvocation::Cast(annotation);
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Class* annotation_class = Class::Cast(invocation->target()->parent());
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String* class_name = annotation_class->name();
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// Just compare by name, do not generate the annotation class.
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int length = sizeof("ExternalName") - 1;
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if (class_name->size() != length) continue;
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if (memcmp(class_name->buffer(), "ExternalName", length) != 0) continue;
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String* library_name = annotation_class->parent()->name();
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length = sizeof("dart._internal") - 1;
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if (library_name->size() != length) continue;
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if (memcmp(library_name->buffer(), "dart._internal", length) != 0) {
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continue;
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}
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is_external = false;
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ASSERT(invocation->arguments()->positional().length() == 1 &&
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invocation->arguments()->named().length() == 0);
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StringLiteral* literal =
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StringLiteral::Cast(invocation->arguments()->positional()[0]);
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native_name = &H.DartSymbol(literal->value());
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break;
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}
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}
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const Object& script_class =
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ClassForScriptAt(owner, kernel_procedure->source_uri_index());
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dart::Function& function = dart::Function::ZoneHandle(
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Z, Function::New(name, GetFunctionType(kernel_procedure),
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!is_method, // is_static
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false, // is_const
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is_abstract, is_external,
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native_name != NULL, // is_native
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script_class, kernel_procedure->position()));
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function.set_end_token_pos(kernel_procedure->end_position());
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functions_.Add(&function);
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function.set_kernel_function(kernel_procedure);
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function.set_is_debuggable(
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kernel_procedure->function()->dart_async_marker() == FunctionNode::kSync);
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switch (kernel_procedure->function()->dart_async_marker()) {
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case FunctionNode::kSyncStar:
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function.set_modifier(RawFunction::kSyncGen);
|
|
break;
|
|
case FunctionNode::kAsync:
|
|
function.set_modifier(RawFunction::kAsync);
|
|
function.set_is_inlinable(!FLAG_causal_async_stacks);
|
|
break;
|
|
case FunctionNode::kAsyncStar:
|
|
function.set_modifier(RawFunction::kAsyncGen);
|
|
function.set_is_inlinable(!FLAG_causal_async_stacks);
|
|
break;
|
|
default:
|
|
// no special modifier
|
|
break;
|
|
}
|
|
ASSERT(kernel_procedure->function()->async_marker() == FunctionNode::kSync);
|
|
|
|
if (native_name != NULL) {
|
|
function.set_native_name(*native_name);
|
|
}
|
|
|
|
SetupFunctionParameters(H, T, owner, function, kernel_procedure->function(),
|
|
is_method,
|
|
false); // is_closure
|
|
|
|
if (kernel_klass == NULL) {
|
|
library.AddObject(function, name);
|
|
ASSERT(!Object::Handle(Z, library.LookupObjectAllowPrivate(
|
|
H.DartProcedureName(kernel_procedure)))
|
|
.IsNull());
|
|
}
|
|
if (FLAG_enable_mirrors) {
|
|
library.AddFunctionMetadata(function, TokenPosition::kNoSource,
|
|
kernel_procedure);
|
|
}
|
|
}
|
|
|
|
const Object& KernelReader::ClassForScriptAt(const dart::Class& klass,
|
|
intptr_t source_uri_index) {
|
|
Script& correct_script = ScriptAt(source_uri_index);
|
|
if (klass.script() != correct_script.raw()) {
|
|
// TODO(jensj): We could probably cache this so we don't create
|
|
// new PatchClasses all the time
|
|
return PatchClass::ZoneHandle(Z, PatchClass::New(klass, correct_script));
|
|
}
|
|
return klass;
|
|
}
|
|
|
|
static int LowestFirst(const intptr_t* a, const intptr_t* b) {
|
|
return *a - *b;
|
|
}
|
|
|
|
/**
|
|
* If index exists as sublist in list, sort the sublist from lowest to highest,
|
|
* then copy it, as Smis and without duplicates,
|
|
* to a new Array in Heap::kOld which is returned.
|
|
* Note that the source list is both sorted and de-duplicated as well, but will
|
|
* possibly contain duplicate and unsorted data at the end.
|
|
* Otherwise (when sublist doesn't exist in list) return new empty array.
|
|
*/
|
|
static RawArray* AsSortedDuplicateFreeArray(
|
|
intptr_t index,
|
|
MallocGrowableArray<MallocGrowableArray<intptr_t>*>* list) {
|
|
if ((index < list->length()) && (list->At(index)->length() > 0)) {
|
|
MallocGrowableArray<intptr_t>* source = list->At(index);
|
|
source->Sort(LowestFirst);
|
|
|
|
intptr_t size = source->length();
|
|
intptr_t last = 0;
|
|
for (intptr_t current = 1; current < size; ++current) {
|
|
if (source->At(last) != source->At(current)) {
|
|
(*source)[++last] = source->At(current);
|
|
}
|
|
}
|
|
Array& array_object = Array::Handle();
|
|
array_object ^= Array::New(last + 1, Heap::kOld);
|
|
Smi& smi_value = Smi::Handle();
|
|
for (intptr_t i = 0; i <= last; ++i) {
|
|
smi_value = Smi::New(source->At(i));
|
|
array_object.SetAt(i, smi_value);
|
|
}
|
|
return array_object.raw();
|
|
} else {
|
|
return Array::New(0);
|
|
}
|
|
}
|
|
|
|
Script& KernelReader::ScriptAt(intptr_t source_uri_index, String* import_uri) {
|
|
Script& script = Script::ZoneHandle(Z);
|
|
script ^= scripts_.At(source_uri_index);
|
|
if (script.IsNull()) {
|
|
// Create script with correct uri(s).
|
|
String* uri = program_->source_uri_table().strings()[source_uri_index];
|
|
dart::String& uri_string = H.DartString(uri, Heap::kOld);
|
|
dart::String& import_uri_string =
|
|
import_uri == NULL ? uri_string : H.DartString(import_uri, Heap::kOld);
|
|
dart::String& source_code = H.DartString(
|
|
program_->source_table().SourceFor(source_uri_index), Heap::kOld);
|
|
script = Script::New(import_uri_string, uri_string, source_code,
|
|
RawScript::kKernelTag);
|
|
scripts_.SetAt(source_uri_index, script);
|
|
|
|
// Create line_starts array for the script.
|
|
intptr_t* line_starts =
|
|
program_->source_table().LineStartsFor(source_uri_index);
|
|
intptr_t line_count =
|
|
program_->source_table().LineCountFor(source_uri_index);
|
|
Array& array_object = Array::Handle(Z, Array::New(line_count, Heap::kOld));
|
|
Smi& value = Smi::Handle(Z);
|
|
for (intptr_t i = 0; i < line_count; ++i) {
|
|
value = Smi::New(line_starts[i]);
|
|
array_object.SetAt(i, value);
|
|
}
|
|
script.set_line_starts(array_object);
|
|
|
|
// Create tokens_seen array for the script.
|
|
array_object ^= AsSortedDuplicateFreeArray(
|
|
source_uri_index, &program_->valid_token_positions);
|
|
script.set_debug_positions(array_object);
|
|
|
|
// Create yield_positions array for the script.
|
|
array_object ^= AsSortedDuplicateFreeArray(
|
|
source_uri_index, &program_->yield_token_positions);
|
|
script.set_yield_positions(array_object);
|
|
}
|
|
return script;
|
|
}
|
|
|
|
void KernelReader::GenerateFieldAccessors(const dart::Class& klass,
|
|
const dart::Field& field,
|
|
Field* kernel_field) {
|
|
if (kernel_field->IsStatic() && kernel_field->initializer() == NULL) {
|
|
// Static fields without an initializer are implicitly initialized to null.
|
|
// We do not need a getter.
|
|
field.SetStaticValue(Instance::Handle(Z), true);
|
|
return;
|
|
}
|
|
if (kernel_field->initializer() != NULL) {
|
|
SimpleExpressionConverter converter(H.thread());
|
|
const bool has_simple_initializer =
|
|
converter.IsSimple(kernel_field->initializer());
|
|
if (kernel_field->IsStatic()) {
|
|
// Static fields with initializers either have the static value set to the
|
|
// initializer value if it is simple enough or else set to an
|
|
// uninitialized sentinel.
|
|
if (has_simple_initializer) {
|
|
// We do not need a getter.
|
|
field.SetStaticValue(converter.SimpleValue(), true);
|
|
return;
|
|
}
|
|
// We do need a getter that evaluates the initializer if necessary.
|
|
field.SetStaticValue(Object::sentinel(), true);
|
|
} else if (has_simple_initializer) {
|
|
// Note: optimizer relies on DoubleInitialized bit in its field-unboxing
|
|
// heuristics. See JitOptimizer::VisitStoreInstanceField for more details.
|
|
field.RecordStore(converter.SimpleValue());
|
|
if (!converter.SimpleValue().IsNull() &&
|
|
converter.SimpleValue().IsDouble()) {
|
|
field.set_is_double_initialized(true);
|
|
}
|
|
}
|
|
}
|
|
|
|
const dart::String& getter_name = H.DartGetterName(kernel_field->name());
|
|
const Object& script_class =
|
|
ClassForScriptAt(klass, kernel_field->source_uri_index());
|
|
Function& getter = Function::ZoneHandle(
|
|
Z,
|
|
Function::New(
|
|
getter_name,
|
|
kernel_field->IsStatic() ? RawFunction::kImplicitStaticFinalGetter
|
|
: RawFunction::kImplicitGetter,
|
|
kernel_field->IsStatic(),
|
|
// The functions created by the parser have is_const for static fields
|
|
// that are const (not just final) and they have is_const for
|
|
// non-static
|
|
// fields that are final.
|
|
kernel_field->IsStatic() ? kernel_field->IsConst()
|
|
: kernel_field->IsFinal(),
|
|
false, // is_abstract
|
|
false, // is_external
|
|
false, // is_native
|
|
script_class, kernel_field->position()));
|
|
functions_.Add(&getter);
|
|
getter.set_end_token_pos(kernel_field->end_position());
|
|
getter.set_kernel_function(kernel_field);
|
|
getter.set_result_type(AbstractType::Handle(Z, field.type()));
|
|
getter.set_is_debuggable(false);
|
|
SetupFieldAccessorFunction(klass, getter);
|
|
|
|
if (!kernel_field->IsStatic() && !kernel_field->IsFinal()) {
|
|
// Only static fields can be const.
|
|
ASSERT(!kernel_field->IsConst());
|
|
const dart::String& setter_name = H.DartSetterName(kernel_field->name());
|
|
Function& setter = Function::ZoneHandle(
|
|
Z, Function::New(setter_name, RawFunction::kImplicitSetter,
|
|
false, // is_static
|
|
false, // is_const
|
|
false, // is_abstract
|
|
false, // is_external
|
|
false, // is_native
|
|
script_class, kernel_field->position()));
|
|
functions_.Add(&setter);
|
|
setter.set_end_token_pos(kernel_field->end_position());
|
|
setter.set_kernel_function(kernel_field);
|
|
setter.set_result_type(Object::void_type());
|
|
setter.set_is_debuggable(false);
|
|
SetupFieldAccessorFunction(klass, setter);
|
|
}
|
|
}
|
|
|
|
|
|
void KernelReader::SetupFunctionParameters(TranslationHelper translation_helper,
|
|
DartTypeTranslator type_translator,
|
|
const dart::Class& klass,
|
|
const dart::Function& function,
|
|
FunctionNode* node,
|
|
bool is_method,
|
|
bool is_closure) {
|
|
dart::Zone* zone = translation_helper.zone();
|
|
|
|
ASSERT(!(is_method && is_closure));
|
|
bool is_factory = function.IsFactory();
|
|
intptr_t extra_parameters = (is_method || is_closure || is_factory) ? 1 : 0;
|
|
|
|
function.set_num_fixed_parameters(extra_parameters +
|
|
node->required_parameter_count());
|
|
if (node->named_parameters().length() > 0) {
|
|
function.SetNumOptionalParameters(node->named_parameters().length(), false);
|
|
} else {
|
|
function.SetNumOptionalParameters(node->positional_parameters().length() -
|
|
node->required_parameter_count(),
|
|
true);
|
|
}
|
|
intptr_t num_parameters = extra_parameters +
|
|
node->positional_parameters().length() +
|
|
node->named_parameters().length();
|
|
function.set_parameter_types(
|
|
Array::Handle(zone, Array::New(num_parameters, Heap::kOld)));
|
|
function.set_parameter_names(
|
|
Array::Handle(zone, Array::New(num_parameters, Heap::kOld)));
|
|
intptr_t pos = 0;
|
|
if (is_method) {
|
|
ASSERT(!klass.IsNull());
|
|
function.SetParameterTypeAt(pos,
|
|
translation_helper.GetCanonicalType(klass));
|
|
function.SetParameterNameAt(pos, Symbols::This());
|
|
pos++;
|
|
} else if (is_closure) {
|
|
function.SetParameterTypeAt(pos, AbstractType::dynamic_type());
|
|
function.SetParameterNameAt(pos, Symbols::ClosureParameter());
|
|
pos++;
|
|
} else if (is_factory) {
|
|
function.SetParameterTypeAt(pos, AbstractType::dynamic_type());
|
|
function.SetParameterNameAt(pos, Symbols::TypeArgumentsParameter());
|
|
pos++;
|
|
}
|
|
for (intptr_t i = 0; i < node->positional_parameters().length(); i++, pos++) {
|
|
VariableDeclaration* kernel_variable = node->positional_parameters()[i];
|
|
const AbstractType& type = type_translator.TranslateTypeWithoutFinalization(
|
|
kernel_variable->type());
|
|
function.SetParameterTypeAt(
|
|
pos, type.IsMalformed() ? Type::dynamic_type() : type);
|
|
function.SetParameterNameAt(
|
|
pos, translation_helper.DartSymbol(kernel_variable->name()));
|
|
}
|
|
for (intptr_t i = 0; i < node->named_parameters().length(); i++, pos++) {
|
|
VariableDeclaration* named_expression = node->named_parameters()[i];
|
|
const AbstractType& type = type_translator.TranslateTypeWithoutFinalization(
|
|
named_expression->type());
|
|
function.SetParameterTypeAt(
|
|
pos, type.IsMalformed() ? Type::dynamic_type() : type);
|
|
function.SetParameterNameAt(
|
|
pos, translation_helper.DartSymbol(named_expression->name()));
|
|
}
|
|
|
|
// The result type for generative constructors has already been set.
|
|
if (!function.IsGenerativeConstructor()) {
|
|
const AbstractType& return_type =
|
|
type_translator.TranslateTypeWithoutFinalization(node->return_type());
|
|
function.set_result_type(return_type.IsMalformed() ? Type::dynamic_type()
|
|
: return_type);
|
|
}
|
|
}
|
|
|
|
|
|
void KernelReader::SetupFieldAccessorFunction(const dart::Class& klass,
|
|
const dart::Function& function) {
|
|
bool is_setter = function.IsImplicitSetterFunction();
|
|
bool is_method = !function.IsStaticFunction();
|
|
intptr_t num_parameters = (is_method ? 1 : 0) + (is_setter ? 1 : 0);
|
|
|
|
function.SetNumOptionalParameters(0, false);
|
|
function.set_num_fixed_parameters(num_parameters);
|
|
function.set_parameter_types(
|
|
Array::Handle(Z, Array::New(num_parameters, Heap::kOld)));
|
|
function.set_parameter_names(
|
|
Array::Handle(Z, Array::New(num_parameters, Heap::kOld)));
|
|
|
|
intptr_t pos = 0;
|
|
if (is_method) {
|
|
function.SetParameterTypeAt(pos, T.ReceiverType(klass));
|
|
function.SetParameterNameAt(pos, Symbols::This());
|
|
pos++;
|
|
}
|
|
if (is_setter) {
|
|
function.SetParameterTypeAt(pos, AbstractType::dynamic_type());
|
|
function.SetParameterNameAt(pos, Symbols::Value());
|
|
pos++;
|
|
}
|
|
}
|
|
|
|
|
|
dart::Library& KernelReader::LookupLibrary(CanonicalName* library) {
|
|
dart::Library* handle = NULL;
|
|
if (!libraries_.Lookup(library, &handle)) {
|
|
const dart::String& url = H.DartSymbol(library->name());
|
|
handle =
|
|
&dart::Library::Handle(Z, dart::Library::LookupLibrary(thread_, url));
|
|
if (handle->IsNull()) {
|
|
*handle = dart::Library::New(url);
|
|
handle->Register(thread_);
|
|
}
|
|
ASSERT(!handle->IsNull());
|
|
libraries_.Insert(library, handle);
|
|
}
|
|
return *handle;
|
|
}
|
|
|
|
|
|
dart::Class& KernelReader::LookupClass(CanonicalName* klass) {
|
|
dart::Class* handle = NULL;
|
|
if (!classes_.Lookup(klass, &handle)) {
|
|
dart::Library& library = LookupLibrary(klass->parent());
|
|
const dart::String& name = H.DartClassName(klass);
|
|
handle = &dart::Class::Handle(Z, library.LookupClass(name));
|
|
if (handle->IsNull()) {
|
|
*handle = dart::Class::New(library, name, Script::Handle(Z),
|
|
TokenPosition::kNoSource);
|
|
library.AddClass(*handle);
|
|
}
|
|
// Insert the class in the cache before calling ReadPreliminaryClass so
|
|
// we do not risk allocating the class again by calling LookupClass
|
|
// recursively from ReadPreliminaryClass for the same class.
|
|
classes_.Insert(klass, handle);
|
|
}
|
|
return *handle;
|
|
}
|
|
|
|
|
|
RawFunction::Kind KernelReader::GetFunctionType(Procedure* kernel_procedure) {
|
|
intptr_t lookuptable[] = {
|
|
RawFunction::kRegularFunction, // Procedure::kMethod
|
|
RawFunction::kGetterFunction, // Procedure::kGetter
|
|
RawFunction::kSetterFunction, // Procedure::kSetter
|
|
RawFunction::kRegularFunction, // Procedure::kOperator
|
|
RawFunction::kConstructor, // Procedure::kFactory
|
|
};
|
|
intptr_t kind = static_cast<int>(kernel_procedure->kind());
|
|
if (kind == Procedure::kIncompleteProcedure) {
|
|
return RawFunction::kSignatureFunction;
|
|
} else {
|
|
ASSERT(0 <= kind && kind <= Procedure::kFactory);
|
|
return static_cast<RawFunction::Kind>(lookuptable[kind]);
|
|
}
|
|
}
|
|
|
|
|
|
ParsedFunction* ParseStaticFieldInitializer(Zone* zone,
|
|
const dart::Field& field) {
|
|
Thread* thread = Thread::Current();
|
|
kernel::Field* kernel_field = kernel::Field::Cast(
|
|
reinterpret_cast<kernel::Node*>(field.kernel_field()));
|
|
|
|
dart::String& init_name = dart::String::Handle(zone, field.name());
|
|
init_name = Symbols::FromConcat(thread, Symbols::InitPrefix(), init_name);
|
|
|
|
// Create a static initializer.
|
|
const Object& owner = Object::Handle(field.RawOwner());
|
|
const Function& initializer_fun = Function::ZoneHandle(
|
|
zone,
|
|
dart::Function::New(init_name, RawFunction::kImplicitStaticFinalGetter,
|
|
true, // is_static
|
|
false, // is_const
|
|
false, // is_abstract
|
|
false, // is_external
|
|
false, // is_native
|
|
owner, TokenPosition::kNoSource));
|
|
initializer_fun.set_kernel_function(kernel_field);
|
|
initializer_fun.set_result_type(AbstractType::Handle(zone, field.type()));
|
|
initializer_fun.set_is_debuggable(false);
|
|
initializer_fun.set_is_reflectable(false);
|
|
initializer_fun.set_is_inlinable(false);
|
|
return new (zone) ParsedFunction(thread, initializer_fun);
|
|
}
|
|
|
|
|
|
} // namespace kernel
|
|
} // namespace dart
|
|
#endif // !defined(DART_PRECOMPILED_RUNTIME)
|