9e8e8e5fca
Consider the following situation: member M1 is overridden by another member M2; M2 is overridden in a dynamic module. Members which can be overridden in a dynamic module (such as M2) should be specified as 'can-be-overridden' in the dynamic interface. Members which are overridden implicitly/transitively (such as M1) are not required to be mentioned in the dynamic interface. However, when determining possible targets for a call with interface target M1, compiler should treat it as potentially overridden in a dynamic module. This change adds such handling to the VM/AOT. Dynamic interface annotator now marks members such as M1 with 'dyn-module:can-be-overridden-implicitly' pragma, and VM/AOT takes both can-be-overridden and can-be-overridden-implicitly into account. This change also simplifies handling of implicitly extenable classes in the VM/AOT - now VM handles both extendable and implicitly-extendable pragmas (from dynamic interface annotator) instead of recalculating implicitly extendable classes on its own. TEST=pkg/vm/test/transformations/dynamic_interface_annotator_test.dart TEST=dynamic_modules_suite/implicitly_extendable Fixes https://github.com/dart-lang/sdk/issues/59880 Change-Id: Id4570cc86303f8e45a061d696e9bca0d0b2b4b81 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/403951 Reviewed-by: Slava Egorov <vegorov@google.com> Commit-Queue: Alexander Markov <alexmarkov@google.com> Reviewed-by: Nate Biggs <natebiggs@google.com>
159 lines
5.3 KiB
C++
159 lines
5.3 KiB
C++
// Copyright (c) 2012, 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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#ifndef RUNTIME_VM_CLASS_FINALIZER_H_
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#define RUNTIME_VM_CLASS_FINALIZER_H_
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#include <memory>
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#include "vm/allocation.h"
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#include "vm/growable_array.h"
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#include "vm/object.h"
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namespace dart {
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// Traverses all pending, unfinalized classes, validates and marks them as
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// finalized.
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class ClassFinalizer : public AllStatic {
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public:
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// Modes for finalization. The ordering is relevant.
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enum FinalizationKind {
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kFinalize, // Finalize type and type arguments.
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kCanonicalize // Finalize and canonicalize.
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};
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// Finalize given type.
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static AbstractTypePtr FinalizeType(
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const AbstractType& type,
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FinalizationKind finalization = kCanonicalize);
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// Return false if we still have classes pending to be finalized.
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static bool AllClassesFinalized();
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#if !defined(DART_PRECOMPILED_RUNTIME)
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// Useful for sorting classes to make dispatch faster.
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static void SortClasses();
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static void RemapClassIds(intptr_t* old_to_new_cid);
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static void RehashTypes();
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static void ClearAllCode(bool including_nonchanging_cids = false);
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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// Return whether processing pending classes (ObjectStore::pending_classes_)
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// failed. The function returns true if the processing was successful.
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// If processing fails, an error message is set in the sticky error field
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// in the object store.
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static bool ProcessPendingClasses();
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// Finalize the types appearing in the declaration of class 'cls', i.e. its
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// type parameters and their upper bounds, its super type and interfaces.
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// Note that the fields and functions have not been parsed yet (unless cls
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// is an anonymous top level class).
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static void FinalizeTypesInClass(const Class& cls);
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#if !defined(DART_PRECOMPILED_RUNTIME)
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// Mark [cls], its superclass and superinterfaces as can_be_future().
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static void MarkClassCanBeFuture(Zone* zone, const Class& cls);
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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// Ensures members of the class are loaded, class layout is finalized and size
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// registered in class table.
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static void FinalizeClass(const Class& cls);
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#if !defined(DART_PRECOMPILED_RUNTIME)
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// Makes class instantiatable and usable by generated code.
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static ErrorPtr AllocateFinalizeClass(const Class& cls);
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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#if !defined(DART_PRECOMPILED_RUNTIME) || defined(DART_DYNAMIC_MODULES)
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// Completes loading of the class, this populates the function
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// and fields of the class.
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//
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// Returns Error::null() if there is no loading error.
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static ErrorPtr LoadClassMembers(const Class& cls);
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#endif // !defined(DART_PRECOMPILED_RUNTIME) || defined(DART_DYNAMIC_MODULES)
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#if !defined(DART_PRECOMPILED_RUNTIME)
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// Verify that the classes have been properly prefinalized. This is
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// needed during bootstrapping where the classes have been preloaded.
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static void VerifyBootstrapClasses();
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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private:
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// Finalize given type argument vector.
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static TypeArgumentsPtr FinalizeTypeArguments(
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Zone* zone,
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const TypeArguments& type_args,
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FinalizationKind finalization = kCanonicalize);
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static void FinalizeTypeParameters(Zone* zone,
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const TypeParameters& type_params,
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FinalizationKind finalization);
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#if !defined(DART_PRECOMPILED_RUNTIME) || defined(DART_DYNAMIC_MODULES)
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static void FinalizeMemberTypes(const Class& cls);
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#endif // !defined(DART_PRECOMPILED_RUNTIME) || defined(DART_DYNAMIC_MODULES)
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#if !defined(DART_PRECOMPILED_RUNTIME)
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static void PrintClassInformation(const Class& cls);
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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static void ReportError(const Error& error);
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static void ReportError(const char* format, ...) PRINTF_ATTRIBUTE(1, 2);
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#if !defined(DART_PRECOMPILED_RUNTIME)
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// Verify implicit offsets recorded in the VM for direct access to fields of
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// Dart instances (e.g: _TypedListView, _ByteDataView).
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static void VerifyImplicitFieldOffsets();
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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};
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class ClassHiearchyUpdater : public ValueObject {
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public:
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explicit ClassHiearchyUpdater(Zone* zone) : zone_(zone) {}
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// Register class in the lists of direct subclasses and direct implementors.
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void Register(const Class& cls);
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private:
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void MarkImplemented(const Class& interface);
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Zone* const zone_;
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AbstractType& type_ = AbstractType::Handle(zone_);
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Class& super_ = Class::Handle(zone_);
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Class& implemented_ = Class::Handle(zone_);
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Class& interface_ = Class::Handle(zone_);
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Array& interfaces_ = Array::Handle(zone_);
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class ClassWorklist {
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public:
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explicit ClassWorklist(Zone* zone) : zone_(zone) {}
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bool IsEmpty() const { return size_ == 0; }
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void Add(const Class& cls) {
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if (worklist_.length() == size_) {
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worklist_.Add(&Class::Handle(zone_));
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}
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*worklist_[size_] = cls.ptr();
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size_++;
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}
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ClassPtr RemoveLast() {
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size_--;
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return worklist_[size_]->ptr();
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}
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private:
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Zone* const zone_;
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GrowableArray<Class*> worklist_;
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intptr_t size_ = 0;
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};
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ClassWorklist worklist_{zone_};
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};
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} // namespace dart
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#endif // RUNTIME_VM_CLASS_FINALIZER_H_
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