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1223 lines
49 KiB
1223 lines
49 KiB
/*
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* Copyright (C) 2011 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef ART_RUNTIME_MIRROR_CLASS_INL_H_
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#define ART_RUNTIME_MIRROR_CLASS_INL_H_
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#include "class.h"
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#include "art_field.h"
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#include "art_method.h"
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#include "base/array_slice.h"
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#include "base/iteration_range.h"
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#include "base/length_prefixed_array.h"
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#include "base/stride_iterator.h"
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#include "base/utils.h"
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#include "class_linker.h"
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#include "class_loader.h"
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#include "common_throws.h"
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#include "dex/dex_file-inl.h"
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#include "dex/invoke_type.h"
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#include "dex_cache.h"
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#include "iftable-inl.h"
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#include "imtable.h"
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#include "object-inl.h"
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#include "object_array.h"
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#include "read_barrier-inl.h"
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#include "runtime.h"
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#include "string.h"
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#include "subtype_check.h"
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#include "thread-current-inl.h"
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namespace art {
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namespace mirror {
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template<VerifyObjectFlags kVerifyFlags>
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inline uint32_t Class::GetObjectSize() {
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// Note: Extra parentheses to avoid the comma being interpreted as macro parameter separator.
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DCHECK((!IsVariableSize<kVerifyFlags>())) << "class=" << PrettyTypeOf();
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return GetField32(ObjectSizeOffset());
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline uint32_t Class::GetObjectSizeAllocFastPath() {
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// Note: Extra parentheses to avoid the comma being interpreted as macro parameter separator.
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DCHECK((!IsVariableSize<kVerifyFlags>())) << "class=" << PrettyTypeOf();
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return GetField32(ObjectSizeAllocFastPathOffset());
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}
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template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
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inline ObjPtr<Class> Class::GetSuperClass() {
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// Can only get super class for loaded classes (hack for when runtime is
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// initializing)
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DCHECK(IsLoaded<kVerifyFlags>() ||
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IsErroneous<kVerifyFlags>() ||
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!Runtime::Current()->IsStarted()) << IsLoaded();
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return GetFieldObject<Class, kVerifyFlags, kReadBarrierOption>(
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OFFSET_OF_OBJECT_MEMBER(Class, super_class_));
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}
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inline void Class::SetSuperClass(ObjPtr<Class> new_super_class) {
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// Super class is assigned once, except during class linker initialization.
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if (kIsDebugBuild) {
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ObjPtr<Class> old_super_class =
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GetFieldObject<Class>(OFFSET_OF_OBJECT_MEMBER(Class, super_class_));
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DCHECK(old_super_class == nullptr || old_super_class == new_super_class);
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}
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DCHECK(new_super_class != nullptr);
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SetFieldObject</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
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OFFSET_OF_OBJECT_MEMBER(Class, super_class_), new_super_class);
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}
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inline bool Class::HasSuperClass() {
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// No read barrier is needed for comparing with null. See ReadBarrierOption.
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return GetSuperClass<kDefaultVerifyFlags, kWithoutReadBarrier>() != nullptr;
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}
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template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
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inline ObjPtr<ClassLoader> Class::GetClassLoader() {
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return GetFieldObject<ClassLoader, kVerifyFlags, kReadBarrierOption>(
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OFFSET_OF_OBJECT_MEMBER(Class, class_loader_));
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}
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template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
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inline ObjPtr<ClassExt> Class::GetExtData() {
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return GetFieldObject<ClassExt, kVerifyFlags, kReadBarrierOption>(
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OFFSET_OF_OBJECT_MEMBER(Class, ext_data_));
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}
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template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
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inline ObjPtr<DexCache> Class::GetDexCache() {
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return GetFieldObject<DexCache, kVerifyFlags, kReadBarrierOption>(
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OFFSET_OF_OBJECT_MEMBER(Class, dex_cache_));
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}
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inline uint32_t Class::GetCopiedMethodsStartOffset() {
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// Object::GetFieldShort returns an int16_t value, but
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// Class::copied_methods_offset_ is an uint16_t value; cast the
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// latter to uint16_t before returning it as an uint32_t value, so
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// that uint16_t values between 2^15 and 2^16-1 are correctly
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// handled.
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return static_cast<uint16_t>(
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GetFieldShort(OFFSET_OF_OBJECT_MEMBER(Class, copied_methods_offset_)));
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}
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inline uint32_t Class::GetDirectMethodsStartOffset() {
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return 0;
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}
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inline uint32_t Class::GetVirtualMethodsStartOffset() {
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// Object::GetFieldShort returns an int16_t value, but
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// Class::virtual_method_offset_ is an uint16_t value; cast the
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// latter to uint16_t before returning it as an uint32_t value, so
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// that uint16_t values between 2^15 and 2^16-1 are correctly
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// handled.
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return static_cast<uint16_t>(
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GetFieldShort(OFFSET_OF_OBJECT_MEMBER(Class, virtual_methods_offset_)));
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArraySlice<ArtMethod> Class::GetDirectMethodsSlice(PointerSize pointer_size) {
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DCHECK(IsLoaded() || IsErroneous()) << GetStatus();
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return GetDirectMethodsSliceUnchecked(pointer_size);
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}
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inline ArraySlice<ArtMethod> Class::GetDirectMethodsSliceUnchecked(PointerSize pointer_size) {
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return GetMethodsSliceRangeUnchecked(GetMethodsPtr(),
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pointer_size,
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GetDirectMethodsStartOffset(),
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GetVirtualMethodsStartOffset());
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArraySlice<ArtMethod> Class::GetDeclaredMethodsSlice(PointerSize pointer_size) {
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DCHECK(IsLoaded() || IsErroneous()) << GetStatus();
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return GetDeclaredMethodsSliceUnchecked(pointer_size);
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}
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inline ArraySlice<ArtMethod> Class::GetDeclaredMethodsSliceUnchecked(PointerSize pointer_size) {
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return GetMethodsSliceRangeUnchecked(GetMethodsPtr(),
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pointer_size,
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GetDirectMethodsStartOffset(),
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GetCopiedMethodsStartOffset());
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArraySlice<ArtMethod> Class::GetDeclaredVirtualMethodsSlice(PointerSize pointer_size) {
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DCHECK(IsLoaded() || IsErroneous()) << GetStatus();
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return GetDeclaredVirtualMethodsSliceUnchecked(pointer_size);
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}
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inline ArraySlice<ArtMethod> Class::GetDeclaredVirtualMethodsSliceUnchecked(
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PointerSize pointer_size) {
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return GetMethodsSliceRangeUnchecked(GetMethodsPtr(),
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pointer_size,
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GetVirtualMethodsStartOffset(),
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GetCopiedMethodsStartOffset());
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArraySlice<ArtMethod> Class::GetVirtualMethodsSlice(PointerSize pointer_size) {
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DCHECK(IsLoaded() || IsErroneous());
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return GetVirtualMethodsSliceUnchecked(pointer_size);
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}
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inline ArraySlice<ArtMethod> Class::GetVirtualMethodsSliceUnchecked(PointerSize pointer_size) {
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LengthPrefixedArray<ArtMethod>* methods = GetMethodsPtr();
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return GetMethodsSliceRangeUnchecked(methods,
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pointer_size,
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GetVirtualMethodsStartOffset(),
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NumMethods(methods));
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArraySlice<ArtMethod> Class::GetCopiedMethodsSlice(PointerSize pointer_size) {
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DCHECK(IsLoaded() || IsErroneous());
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return GetCopiedMethodsSliceUnchecked(pointer_size);
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}
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inline ArraySlice<ArtMethod> Class::GetCopiedMethodsSliceUnchecked(PointerSize pointer_size) {
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LengthPrefixedArray<ArtMethod>* methods = GetMethodsPtr();
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return GetMethodsSliceRangeUnchecked(methods,
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pointer_size,
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GetCopiedMethodsStartOffset(),
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NumMethods(methods));
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}
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inline LengthPrefixedArray<ArtMethod>* Class::GetMethodsPtr() {
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return reinterpret_cast<LengthPrefixedArray<ArtMethod>*>(
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static_cast<uintptr_t>(GetField64(OFFSET_OF_OBJECT_MEMBER(Class, methods_))));
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArraySlice<ArtMethod> Class::GetMethodsSlice(PointerSize pointer_size) {
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DCHECK(IsLoaded() || IsErroneous());
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LengthPrefixedArray<ArtMethod>* methods = GetMethodsPtr();
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return GetMethodsSliceRangeUnchecked(methods, pointer_size, 0, NumMethods(methods));
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}
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inline ArraySlice<ArtMethod> Class::GetMethodsSliceRangeUnchecked(
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LengthPrefixedArray<ArtMethod>* methods,
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PointerSize pointer_size,
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uint32_t start_offset,
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uint32_t end_offset) {
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DCHECK_LE(start_offset, end_offset);
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DCHECK_LE(end_offset, NumMethods(methods));
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uint32_t size = end_offset - start_offset;
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if (size == 0u) {
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return ArraySlice<ArtMethod>();
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}
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DCHECK(methods != nullptr);
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DCHECK_LE(end_offset, methods->size());
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size_t method_size = ArtMethod::Size(pointer_size);
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size_t method_alignment = ArtMethod::Alignment(pointer_size);
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ArraySlice<ArtMethod> slice(&methods->At(0u, method_size, method_alignment),
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methods->size(),
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method_size);
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return slice.SubArray(start_offset, size);
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}
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inline uint32_t Class::NumMethods() {
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return NumMethods(GetMethodsPtr());
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}
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inline uint32_t Class::NumMethods(LengthPrefixedArray<ArtMethod>* methods) {
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return (methods == nullptr) ? 0 : methods->size();
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}
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inline ArtMethod* Class::GetDirectMethodUnchecked(size_t i, PointerSize pointer_size) {
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CheckPointerSize(pointer_size);
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return &GetDirectMethodsSliceUnchecked(pointer_size)[i];
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}
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inline ArtMethod* Class::GetDirectMethod(size_t i, PointerSize pointer_size) {
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CheckPointerSize(pointer_size);
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return &GetDirectMethodsSlice(pointer_size)[i];
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}
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inline void Class::SetMethodsPtr(LengthPrefixedArray<ArtMethod>* new_methods,
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uint32_t num_direct,
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uint32_t num_virtual) {
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DCHECK(GetMethodsPtr() == nullptr);
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SetMethodsPtrUnchecked(new_methods, num_direct, num_virtual);
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}
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inline void Class::SetMethodsPtrUnchecked(LengthPrefixedArray<ArtMethod>* new_methods,
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uint32_t num_direct,
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uint32_t num_virtual) {
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DCHECK_LE(num_direct + num_virtual, (new_methods == nullptr) ? 0 : new_methods->size());
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SetField64<false>(OFFSET_OF_OBJECT_MEMBER(Class, methods_),
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static_cast<uint64_t>(reinterpret_cast<uintptr_t>(new_methods)));
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SetFieldShort<false>(OFFSET_OF_OBJECT_MEMBER(Class, copied_methods_offset_),
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dchecked_integral_cast<uint16_t>(num_direct + num_virtual));
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SetFieldShort<false>(OFFSET_OF_OBJECT_MEMBER(Class, virtual_methods_offset_),
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dchecked_integral_cast<uint16_t>(num_direct));
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline ArtMethod* Class::GetVirtualMethod(size_t i, PointerSize pointer_size) {
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CheckPointerSize(pointer_size);
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DCHECK(IsResolved<kVerifyFlags>() || IsErroneous<kVerifyFlags>())
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<< Class::PrettyClass() << " status=" << GetStatus();
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return GetVirtualMethodUnchecked(i, pointer_size);
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}
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inline ArtMethod* Class::GetVirtualMethodDuringLinking(size_t i, PointerSize pointer_size) {
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CheckPointerSize(pointer_size);
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DCHECK(IsLoaded() || IsErroneous());
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return GetVirtualMethodUnchecked(i, pointer_size);
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}
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inline ArtMethod* Class::GetVirtualMethodUnchecked(size_t i, PointerSize pointer_size) {
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CheckPointerSize(pointer_size);
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return &GetVirtualMethodsSliceUnchecked(pointer_size)[i];
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}
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template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
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inline ObjPtr<PointerArray> Class::GetVTable() {
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DCHECK(IsLoaded<kVerifyFlags>() || IsErroneous<kVerifyFlags>());
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return GetFieldObject<PointerArray, kVerifyFlags, kReadBarrierOption>(
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OFFSET_OF_OBJECT_MEMBER(Class, vtable_));
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}
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inline ObjPtr<PointerArray> Class::GetVTableDuringLinking() {
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DCHECK(IsLoaded() || IsErroneous());
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return GetFieldObject<PointerArray>(OFFSET_OF_OBJECT_MEMBER(Class, vtable_));
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}
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inline void Class::SetVTable(ObjPtr<PointerArray> new_vtable) {
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SetFieldObject</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
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OFFSET_OF_OBJECT_MEMBER(Class, vtable_), new_vtable);
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline bool Class::ShouldHaveImt() {
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return ShouldHaveEmbeddedVTable<kVerifyFlags>();
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline bool Class::ShouldHaveEmbeddedVTable() {
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return IsInstantiable<kVerifyFlags>();
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}
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inline bool Class::HasVTable() {
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// No read barrier is needed for comparing with null. See ReadBarrierOption.
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return GetVTable<kDefaultVerifyFlags, kWithoutReadBarrier>() != nullptr ||
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ShouldHaveEmbeddedVTable();
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline int32_t Class::GetVTableLength() {
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if (ShouldHaveEmbeddedVTable<kVerifyFlags>()) {
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return GetEmbeddedVTableLength();
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}
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// We do not need a read barrier here as the length is constant,
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// both from-space and to-space vtables shall yield the same result.
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ObjPtr<PointerArray> vtable = GetVTable<kVerifyFlags, kWithoutReadBarrier>();
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return vtable != nullptr ? vtable->GetLength() : 0;
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}
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template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
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inline ArtMethod* Class::GetVTableEntry(uint32_t i, PointerSize pointer_size) {
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if (ShouldHaveEmbeddedVTable<kVerifyFlags>()) {
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return GetEmbeddedVTableEntry(i, pointer_size);
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}
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ObjPtr<PointerArray> vtable = GetVTable<kVerifyFlags, kReadBarrierOption>();
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DCHECK(vtable != nullptr);
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return vtable->GetElementPtrSize<ArtMethod*, kVerifyFlags>(i, pointer_size);
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline int32_t Class::GetEmbeddedVTableLength() {
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return GetField32<kVerifyFlags>(MemberOffset(EmbeddedVTableLengthOffset()));
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}
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inline void Class::SetEmbeddedVTableLength(int32_t len) {
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SetField32</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
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MemberOffset(EmbeddedVTableLengthOffset()), len);
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}
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inline ImTable* Class::GetImt(PointerSize pointer_size) {
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return GetFieldPtrWithSize<ImTable*>(ImtPtrOffset(pointer_size), pointer_size);
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}
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inline void Class::SetImt(ImTable* imt, PointerSize pointer_size) {
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return SetFieldPtrWithSize</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
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ImtPtrOffset(pointer_size), imt, pointer_size);
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}
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inline MemberOffset Class::EmbeddedVTableEntryOffset(uint32_t i, PointerSize pointer_size) {
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return MemberOffset(
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EmbeddedVTableOffset(pointer_size).Uint32Value() + i * VTableEntrySize(pointer_size));
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}
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inline ArtMethod* Class::GetEmbeddedVTableEntry(uint32_t i, PointerSize pointer_size) {
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return GetFieldPtrWithSize<ArtMethod*>(EmbeddedVTableEntryOffset(i, pointer_size), pointer_size);
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}
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inline void Class::SetEmbeddedVTableEntryUnchecked(
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uint32_t i, ArtMethod* method, PointerSize pointer_size) {
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SetFieldPtrWithSize</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
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EmbeddedVTableEntryOffset(i, pointer_size), method, pointer_size);
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}
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inline void Class::SetEmbeddedVTableEntry(uint32_t i, ArtMethod* method, PointerSize pointer_size) {
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ObjPtr<PointerArray> vtable = GetVTableDuringLinking();
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CHECK_EQ(method, vtable->GetElementPtrSize<ArtMethod*>(i, pointer_size));
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SetEmbeddedVTableEntryUnchecked(i, method, pointer_size);
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}
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inline bool Class::Implements(ObjPtr<Class> klass) {
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DCHECK(klass != nullptr);
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DCHECK(klass->IsInterface()) << PrettyClass();
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// All interfaces implemented directly and by our superclass, and
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// recursively all super-interfaces of those interfaces, are listed
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// in iftable_, so we can just do a linear scan through that.
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int32_t iftable_count = GetIfTableCount();
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ObjPtr<IfTable> iftable = GetIfTable();
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for (int32_t i = 0; i < iftable_count; i++) {
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if (iftable->GetInterface(i) == klass) {
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return true;
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}
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}
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return false;
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}
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template<VerifyObjectFlags kVerifyFlags>
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inline bool Class::IsVariableSize() {
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// Classes, arrays, and strings vary in size, and so the object_size_ field cannot
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// be used to Get their instance size
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return IsClassClass<kVerifyFlags>() ||
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IsArrayClass<kVerifyFlags>() ||
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IsStringClass<kVerifyFlags>();
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}
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inline void Class::SetObjectSize(uint32_t new_object_size) {
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DCHECK(!IsVariableSize());
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// Not called within a transaction.
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return SetField32<false>(OFFSET_OF_OBJECT_MEMBER(Class, object_size_), new_object_size);
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}
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// Determine whether "this" is assignable from "src", where both of these
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// are array classes.
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//
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// Consider an array class, e.g. Y[][], where Y is a subclass of X.
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// Y[][] = Y[][] --> true (identity)
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// X[][] = Y[][] --> true (element superclass)
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// Y = Y[][] --> false
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// Y[] = Y[][] --> false
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// Object = Y[][] --> true (everything is an object)
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// Object[] = Y[][] --> true
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// Object[][] = Y[][] --> true
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// Object[][][] = Y[][] --> false (too many []s)
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// Serializable = Y[][] --> true (all arrays are Serializable)
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// Serializable[] = Y[][] --> true
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// Serializable[][] = Y[][] --> false (unless Y is Serializable)
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//
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// Don't forget about primitive types.
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// Object[] = int[] --> false
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//
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inline bool Class::IsArrayAssignableFromArray(ObjPtr<Class> src) {
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DCHECK(IsArrayClass()) << PrettyClass();
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DCHECK(src->IsArrayClass()) << src->PrettyClass();
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return GetComponentType()->IsAssignableFrom(src->GetComponentType());
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}
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inline bool Class::IsAssignableFromArray(ObjPtr<Class> src) {
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DCHECK(!IsInterface()) << PrettyClass(); // handled first in IsAssignableFrom
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DCHECK(src->IsArrayClass()) << src->PrettyClass();
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if (!IsArrayClass()) {
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// If "this" is not also an array, it must be Object.
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// src's super should be java_lang_Object, since it is an array.
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ObjPtr<Class> java_lang_Object = src->GetSuperClass();
|
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DCHECK(java_lang_Object != nullptr) << src->PrettyClass();
|
|
DCHECK(java_lang_Object->GetSuperClass() == nullptr) << src->PrettyClass();
|
|
return this == java_lang_Object;
|
|
}
|
|
return IsArrayAssignableFromArray(src);
|
|
}
|
|
|
|
template <bool throw_on_failure>
|
|
inline bool Class::ResolvedFieldAccessTest(ObjPtr<Class> access_to,
|
|
ArtField* field,
|
|
ObjPtr<DexCache> dex_cache,
|
|
uint32_t field_idx) {
|
|
DCHECK(dex_cache != nullptr);
|
|
if (UNLIKELY(!this->CanAccess(access_to))) {
|
|
// The referrer class can't access the field's declaring class but may still be able
|
|
// to access the field if the FieldId specifies an accessible subclass of the declaring
|
|
// class rather than the declaring class itself.
|
|
dex::TypeIndex class_idx = dex_cache->GetDexFile()->GetFieldId(field_idx).class_idx_;
|
|
// The referenced class has already been resolved with the field, but may not be in the dex
|
|
// cache. Use LookupResolveType here to search the class table if it is not in the dex cache.
|
|
// should be no thread suspension due to the class being resolved.
|
|
ObjPtr<Class> dex_access_to = Runtime::Current()->GetClassLinker()->LookupResolvedType(
|
|
class_idx,
|
|
dex_cache,
|
|
access_to->GetClassLoader());
|
|
DCHECK(dex_access_to != nullptr);
|
|
if (UNLIKELY(!this->CanAccess(dex_access_to))) {
|
|
if (throw_on_failure) {
|
|
ThrowIllegalAccessErrorClass(this, dex_access_to);
|
|
}
|
|
return false;
|
|
}
|
|
}
|
|
if (LIKELY(this->CanAccessMember(access_to, field->GetAccessFlags()))) {
|
|
return true;
|
|
}
|
|
if (throw_on_failure) {
|
|
ThrowIllegalAccessErrorField(this, field);
|
|
}
|
|
return false;
|
|
}
|
|
|
|
template <bool throw_on_failure>
|
|
inline bool Class::ResolvedMethodAccessTest(ObjPtr<Class> access_to,
|
|
ArtMethod* method,
|
|
ObjPtr<DexCache> dex_cache,
|
|
uint32_t method_idx,
|
|
InvokeType throw_invoke_type) {
|
|
DCHECK(throw_on_failure || throw_invoke_type == kStatic);
|
|
DCHECK(dex_cache != nullptr);
|
|
if (UNLIKELY(!this->CanAccess(access_to))) {
|
|
// The referrer class can't access the method's declaring class but may still be able
|
|
// to access the method if the MethodId specifies an accessible subclass of the declaring
|
|
// class rather than the declaring class itself.
|
|
dex::TypeIndex class_idx = dex_cache->GetDexFile()->GetMethodId(method_idx).class_idx_;
|
|
// The referenced class has already been resolved with the method, but may not be in the dex
|
|
// cache.
|
|
ObjPtr<Class> dex_access_to = Runtime::Current()->GetClassLinker()->LookupResolvedType(
|
|
class_idx,
|
|
dex_cache,
|
|
access_to->GetClassLoader());
|
|
DCHECK(dex_access_to != nullptr);
|
|
if (UNLIKELY(!this->CanAccess(dex_access_to))) {
|
|
if (throw_on_failure) {
|
|
ThrowIllegalAccessErrorClassForMethodDispatch(this,
|
|
dex_access_to,
|
|
method,
|
|
throw_invoke_type);
|
|
}
|
|
return false;
|
|
}
|
|
}
|
|
if (LIKELY(this->CanAccessMember(access_to, method->GetAccessFlags()))) {
|
|
return true;
|
|
}
|
|
if (throw_on_failure) {
|
|
ThrowIllegalAccessErrorMethod(this, method);
|
|
}
|
|
return false;
|
|
}
|
|
|
|
inline bool Class::CanAccessResolvedField(ObjPtr<Class> access_to,
|
|
ArtField* field,
|
|
ObjPtr<DexCache> dex_cache,
|
|
uint32_t field_idx) {
|
|
return ResolvedFieldAccessTest<false>(access_to, field, dex_cache, field_idx);
|
|
}
|
|
|
|
inline bool Class::CheckResolvedFieldAccess(ObjPtr<Class> access_to,
|
|
ArtField* field,
|
|
ObjPtr<DexCache> dex_cache,
|
|
uint32_t field_idx) {
|
|
return ResolvedFieldAccessTest<true>(access_to, field, dex_cache, field_idx);
|
|
}
|
|
|
|
inline bool Class::CanAccessResolvedMethod(ObjPtr<Class> access_to,
|
|
ArtMethod* method,
|
|
ObjPtr<DexCache> dex_cache,
|
|
uint32_t method_idx) {
|
|
return ResolvedMethodAccessTest<false>(access_to, method, dex_cache, method_idx, kStatic);
|
|
}
|
|
|
|
inline bool Class::CheckResolvedMethodAccess(ObjPtr<Class> access_to,
|
|
ArtMethod* method,
|
|
ObjPtr<DexCache> dex_cache,
|
|
uint32_t method_idx,
|
|
InvokeType throw_invoke_type) {
|
|
return ResolvedMethodAccessTest<true>(
|
|
access_to, method, dex_cache, method_idx, throw_invoke_type);
|
|
}
|
|
|
|
inline bool Class::IsObsoleteVersionOf(ObjPtr<Class> klass) {
|
|
DCHECK(!klass->IsObsoleteObject()) << klass->PrettyClass() << " is obsolete!";
|
|
if (LIKELY(!IsObsoleteObject())) {
|
|
return false;
|
|
}
|
|
ObjPtr<Class> current(klass);
|
|
do {
|
|
if (UNLIKELY(current == this)) {
|
|
return true;
|
|
} else {
|
|
current = current->GetObsoleteClass();
|
|
}
|
|
} while (!current.IsNull());
|
|
return false;
|
|
}
|
|
|
|
inline bool Class::IsSubClass(ObjPtr<Class> klass) {
|
|
// Since the SubtypeCheck::IsSubtypeOf needs to lookup the Depth,
|
|
// it is always O(Depth) in terms of speed to do the check.
|
|
//
|
|
// So always do the "slow" linear scan in normal release builds.
|
|
//
|
|
// Future note: If we could have the depth in O(1) we could use the 'fast'
|
|
// method instead as it avoids a loop and a read barrier.
|
|
bool result = false;
|
|
DCHECK(!IsInterface()) << PrettyClass();
|
|
DCHECK(!IsArrayClass()) << PrettyClass();
|
|
ObjPtr<Class> current = this;
|
|
do {
|
|
if (current == klass) {
|
|
result = true;
|
|
break;
|
|
}
|
|
current = current->GetSuperClass();
|
|
} while (current != nullptr);
|
|
|
|
if (kIsDebugBuild && kBitstringSubtypeCheckEnabled) {
|
|
ObjPtr<mirror::Class> dis(this);
|
|
|
|
SubtypeCheckInfo::Result sc_result = SubtypeCheck<ObjPtr<Class>>::IsSubtypeOf(dis, klass);
|
|
if (sc_result != SubtypeCheckInfo::kUnknownSubtypeOf) {
|
|
// Note: The "kUnknownSubTypeOf" can be avoided if and only if:
|
|
// SubtypeCheck::EnsureInitialized(source)
|
|
// happens-before source.IsSubClass(target)
|
|
// SubtypeCheck::EnsureAssigned(target).GetState() == Assigned
|
|
// happens-before source.IsSubClass(target)
|
|
//
|
|
// When code generated by optimizing compiler executes this operation, both
|
|
// happens-before are guaranteed, so there is no fallback code there.
|
|
SubtypeCheckInfo::Result expected_result =
|
|
result ? SubtypeCheckInfo::kSubtypeOf : SubtypeCheckInfo::kNotSubtypeOf;
|
|
DCHECK_EQ(expected_result, sc_result)
|
|
<< "source: " << PrettyClass() << "target: " << klass->PrettyClass();
|
|
}
|
|
}
|
|
|
|
return result;
|
|
}
|
|
|
|
inline ArtMethod* Class::FindVirtualMethodForInterface(ArtMethod* method,
|
|
PointerSize pointer_size) {
|
|
ObjPtr<Class> declaring_class = method->GetDeclaringClass();
|
|
DCHECK(declaring_class != nullptr) << PrettyClass();
|
|
if (UNLIKELY(!declaring_class->IsInterface())) {
|
|
DCHECK(declaring_class->IsObjectClass()) << method->PrettyMethod();
|
|
DCHECK(method->IsPublic() && !method->IsStatic());
|
|
return FindVirtualMethodForVirtual(method, pointer_size);
|
|
}
|
|
DCHECK(!method->IsCopied());
|
|
// TODO cache to improve lookup speed
|
|
const int32_t iftable_count = GetIfTableCount();
|
|
ObjPtr<IfTable> iftable = GetIfTable();
|
|
for (int32_t i = 0; i < iftable_count; i++) {
|
|
if (iftable->GetInterface(i) == declaring_class) {
|
|
return iftable->GetMethodArray(i)->GetElementPtrSize<ArtMethod*>(
|
|
method->GetMethodIndex(), pointer_size);
|
|
}
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
inline ArtMethod* Class::FindVirtualMethodForVirtual(ArtMethod* method, PointerSize pointer_size) {
|
|
// Only miranda or default methods may come from interfaces and be used as a virtual.
|
|
DCHECK(!method->GetDeclaringClass()->IsInterface() || method->IsDefault() || method->IsMiranda());
|
|
// The argument method may from a super class.
|
|
// Use the index to a potentially overridden one for this instance's class.
|
|
return GetVTableEntry(method->GetMethodIndex(), pointer_size);
|
|
}
|
|
|
|
inline ArtMethod* Class::FindVirtualMethodForSuper(ArtMethod* method, PointerSize pointer_size) {
|
|
DCHECK(!method->GetDeclaringClass()->IsInterface());
|
|
return GetSuperClass()->GetVTableEntry(method->GetMethodIndex(), pointer_size);
|
|
}
|
|
|
|
inline ArtMethod* Class::FindVirtualMethodForVirtualOrInterface(ArtMethod* method,
|
|
PointerSize pointer_size) {
|
|
if (method->IsDirect()) {
|
|
return method;
|
|
}
|
|
if (method->GetDeclaringClass()->IsInterface() && !method->IsCopied()) {
|
|
return FindVirtualMethodForInterface(method, pointer_size);
|
|
}
|
|
return FindVirtualMethodForVirtual(method, pointer_size);
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
|
|
inline ObjPtr<IfTable> Class::GetIfTable() {
|
|
ObjPtr<IfTable> ret = GetFieldObject<IfTable, kVerifyFlags, kReadBarrierOption>(IfTableOffset());
|
|
DCHECK(ret != nullptr) << PrettyClass(this);
|
|
return ret;
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline int32_t Class::GetIfTableCount() {
|
|
// We do not need a read barrier here as the length is constant,
|
|
// both from-space and to-space iftables shall yield the same result.
|
|
return GetIfTable<kVerifyFlags, kWithoutReadBarrier>()->Count();
|
|
}
|
|
|
|
inline void Class::SetIfTable(ObjPtr<IfTable> new_iftable) {
|
|
DCHECK(new_iftable != nullptr) << PrettyClass(this);
|
|
SetFieldObject</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
|
|
IfTableOffset(), new_iftable);
|
|
}
|
|
|
|
inline LengthPrefixedArray<ArtField>* Class::GetIFieldsPtr() {
|
|
DCHECK(IsLoaded() || IsErroneous()) << GetStatus();
|
|
return GetFieldPtr<LengthPrefixedArray<ArtField>*>(OFFSET_OF_OBJECT_MEMBER(Class, ifields_));
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
|
|
inline MemberOffset Class::GetFirstReferenceInstanceFieldOffset() {
|
|
ObjPtr<Class> super_class = GetSuperClass<kVerifyFlags, kReadBarrierOption>();
|
|
return (super_class != nullptr)
|
|
? MemberOffset(RoundUp(super_class->GetObjectSize<kVerifyFlags>(), kHeapReferenceSize))
|
|
: ClassOffset();
|
|
}
|
|
|
|
template <VerifyObjectFlags kVerifyFlags>
|
|
inline MemberOffset Class::GetFirstReferenceStaticFieldOffset(PointerSize pointer_size) {
|
|
DCHECK(IsResolved<kVerifyFlags>());
|
|
uint32_t base = sizeof(Class); // Static fields come after the class.
|
|
if (ShouldHaveEmbeddedVTable<kVerifyFlags>()) {
|
|
// Static fields come after the embedded tables.
|
|
base = Class::ComputeClassSize(
|
|
true, GetEmbeddedVTableLength<kVerifyFlags>(), 0, 0, 0, 0, 0, pointer_size);
|
|
}
|
|
return MemberOffset(base);
|
|
}
|
|
|
|
inline MemberOffset Class::GetFirstReferenceStaticFieldOffsetDuringLinking(
|
|
PointerSize pointer_size) {
|
|
DCHECK(IsLoaded());
|
|
uint32_t base = sizeof(Class); // Static fields come after the class.
|
|
if (ShouldHaveEmbeddedVTable()) {
|
|
// Static fields come after the embedded tables.
|
|
base = Class::ComputeClassSize(true, GetVTableDuringLinking()->GetLength(),
|
|
0, 0, 0, 0, 0, pointer_size);
|
|
}
|
|
return MemberOffset(base);
|
|
}
|
|
|
|
inline void Class::SetIFieldsPtr(LengthPrefixedArray<ArtField>* new_ifields) {
|
|
DCHECK(GetIFieldsPtrUnchecked() == nullptr);
|
|
return SetFieldPtr<false>(OFFSET_OF_OBJECT_MEMBER(Class, ifields_), new_ifields);
|
|
}
|
|
|
|
inline void Class::SetIFieldsPtrUnchecked(LengthPrefixedArray<ArtField>* new_ifields) {
|
|
SetFieldPtr<false, true, kVerifyNone>(OFFSET_OF_OBJECT_MEMBER(Class, ifields_), new_ifields);
|
|
}
|
|
|
|
inline LengthPrefixedArray<ArtField>* Class::GetSFieldsPtrUnchecked() {
|
|
return GetFieldPtr<LengthPrefixedArray<ArtField>*>(OFFSET_OF_OBJECT_MEMBER(Class, sfields_));
|
|
}
|
|
|
|
inline LengthPrefixedArray<ArtField>* Class::GetIFieldsPtrUnchecked() {
|
|
return GetFieldPtr<LengthPrefixedArray<ArtField>*>(OFFSET_OF_OBJECT_MEMBER(Class, ifields_));
|
|
}
|
|
|
|
inline LengthPrefixedArray<ArtField>* Class::GetSFieldsPtr() {
|
|
DCHECK(IsLoaded() || IsErroneous()) << GetStatus();
|
|
return GetSFieldsPtrUnchecked();
|
|
}
|
|
|
|
inline void Class::SetSFieldsPtr(LengthPrefixedArray<ArtField>* new_sfields) {
|
|
DCHECK((IsRetired() && new_sfields == nullptr) ||
|
|
GetFieldPtr<ArtField*>(OFFSET_OF_OBJECT_MEMBER(Class, sfields_)) == nullptr);
|
|
SetFieldPtr<false>(OFFSET_OF_OBJECT_MEMBER(Class, sfields_), new_sfields);
|
|
}
|
|
|
|
inline void Class::SetSFieldsPtrUnchecked(LengthPrefixedArray<ArtField>* new_sfields) {
|
|
SetFieldPtr<false, true, kVerifyNone>(OFFSET_OF_OBJECT_MEMBER(Class, sfields_), new_sfields);
|
|
}
|
|
|
|
inline ArtField* Class::GetStaticField(uint32_t i) {
|
|
return &GetSFieldsPtr()->At(i);
|
|
}
|
|
|
|
inline ArtField* Class::GetInstanceField(uint32_t i) {
|
|
return &GetIFieldsPtr()->At(i);
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline uint32_t Class::GetReferenceInstanceOffsets() {
|
|
DCHECK(IsResolved<kVerifyFlags>() || IsErroneous<kVerifyFlags>());
|
|
return GetField32<kVerifyFlags>(OFFSET_OF_OBJECT_MEMBER(Class, reference_instance_offsets_));
|
|
}
|
|
|
|
inline void Class::SetClinitThreadId(pid_t new_clinit_thread_id) {
|
|
SetField32Transaction(OFFSET_OF_OBJECT_MEMBER(Class, clinit_thread_id_), new_clinit_thread_id);
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags,
|
|
ReadBarrierOption kReadBarrierOption>
|
|
inline ObjPtr<String> Class::GetName() {
|
|
return GetFieldObject<String, kVerifyFlags, kReadBarrierOption>(
|
|
OFFSET_OF_OBJECT_MEMBER(Class, name_));
|
|
}
|
|
|
|
inline void Class::SetName(ObjPtr<String> name) {
|
|
SetFieldObjectTransaction(OFFSET_OF_OBJECT_MEMBER(Class, name_), name);
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline Primitive::Type Class::GetPrimitiveType() {
|
|
static_assert(sizeof(Primitive::Type) == sizeof(int32_t),
|
|
"art::Primitive::Type and int32_t have different sizes.");
|
|
int32_t v32 = GetField32<kVerifyFlags>(OFFSET_OF_OBJECT_MEMBER(Class, primitive_type_));
|
|
Primitive::Type type = static_cast<Primitive::Type>(v32 & kPrimitiveTypeMask);
|
|
DCHECK_EQ(static_cast<size_t>(v32 >> kPrimitiveTypeSizeShiftShift),
|
|
Primitive::ComponentSizeShift(type));
|
|
return type;
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline size_t Class::GetPrimitiveTypeSizeShift() {
|
|
static_assert(sizeof(Primitive::Type) == sizeof(int32_t),
|
|
"art::Primitive::Type and int32_t have different sizes.");
|
|
int32_t v32 = GetField32<kVerifyFlags>(OFFSET_OF_OBJECT_MEMBER(Class, primitive_type_));
|
|
size_t size_shift = static_cast<Primitive::Type>(v32 >> kPrimitiveTypeSizeShiftShift);
|
|
DCHECK_EQ(size_shift,
|
|
Primitive::ComponentSizeShift(static_cast<Primitive::Type>(v32 & kPrimitiveTypeMask)));
|
|
return size_shift;
|
|
}
|
|
|
|
inline uint32_t Class::ComputeClassSize(bool has_embedded_vtable,
|
|
uint32_t num_vtable_entries,
|
|
uint32_t num_8bit_static_fields,
|
|
uint32_t num_16bit_static_fields,
|
|
uint32_t num_32bit_static_fields,
|
|
uint32_t num_64bit_static_fields,
|
|
uint32_t num_ref_static_fields,
|
|
PointerSize pointer_size) {
|
|
// Space used by java.lang.Class and its instance fields.
|
|
uint32_t size = sizeof(Class);
|
|
// Space used by embedded tables.
|
|
if (has_embedded_vtable) {
|
|
size = RoundUp(size + sizeof(uint32_t), static_cast<size_t>(pointer_size));
|
|
size += static_cast<size_t>(pointer_size); // size of pointer to IMT
|
|
size += num_vtable_entries * VTableEntrySize(pointer_size);
|
|
}
|
|
|
|
// Space used by reference statics.
|
|
size += num_ref_static_fields * kHeapReferenceSize;
|
|
if (!IsAligned<8>(size) && num_64bit_static_fields > 0) {
|
|
uint32_t gap = 8 - (size & 0x7);
|
|
size += gap; // will be padded
|
|
// Shuffle 4-byte fields forward.
|
|
while (gap >= sizeof(uint32_t) && num_32bit_static_fields != 0) {
|
|
--num_32bit_static_fields;
|
|
gap -= sizeof(uint32_t);
|
|
}
|
|
// Shuffle 2-byte fields forward.
|
|
while (gap >= sizeof(uint16_t) && num_16bit_static_fields != 0) {
|
|
--num_16bit_static_fields;
|
|
gap -= sizeof(uint16_t);
|
|
}
|
|
// Shuffle byte fields forward.
|
|
while (gap >= sizeof(uint8_t) && num_8bit_static_fields != 0) {
|
|
--num_8bit_static_fields;
|
|
gap -= sizeof(uint8_t);
|
|
}
|
|
}
|
|
// Guaranteed to be at least 4 byte aligned. No need for further alignments.
|
|
// Space used for primitive static fields.
|
|
size += num_8bit_static_fields * sizeof(uint8_t) + num_16bit_static_fields * sizeof(uint16_t) +
|
|
num_32bit_static_fields * sizeof(uint32_t) + num_64bit_static_fields * sizeof(uint64_t);
|
|
return size;
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline bool Class::IsClassClass() {
|
|
// OK to look at from-space copies since java.lang.Class.class is non-moveable
|
|
// (even when running without boot image, see ClassLinker::InitWithoutImage())
|
|
// and we're reading it for comparison only. See ReadBarrierOption.
|
|
ObjPtr<Class> java_lang_Class = GetClass<kVerifyFlags, kWithoutReadBarrier>();
|
|
return this == java_lang_Class;
|
|
}
|
|
|
|
inline const DexFile& Class::GetDexFile() {
|
|
// From-space version is the same as the to-space version since the dex file never changes.
|
|
// Avoiding the read barrier here is important to prevent recursive AssertToSpaceInvariant issues
|
|
// from PrettyTypeOf.
|
|
return *GetDexCache<kDefaultVerifyFlags, kWithoutReadBarrier>()->GetDexFile();
|
|
}
|
|
|
|
inline bool Class::DescriptorEquals(const char* match) {
|
|
ObjPtr<mirror::Class> klass = this;
|
|
while (klass->IsArrayClass()) {
|
|
if (match[0] != '[') {
|
|
return false;
|
|
}
|
|
++match;
|
|
// No read barrier needed, we're reading a chain of constant references for comparison
|
|
// with null. Then we follow up below with reading constant references to read constant
|
|
// primitive data in both proxy and non-proxy paths. See ReadBarrierOption.
|
|
klass = klass->GetComponentType<kDefaultVerifyFlags, kWithoutReadBarrier>();
|
|
}
|
|
if (klass->IsPrimitive()) {
|
|
return strcmp(Primitive::Descriptor(klass->GetPrimitiveType()), match) == 0;
|
|
} else if (klass->IsProxyClass()) {
|
|
return klass->ProxyDescriptorEquals(match);
|
|
} else {
|
|
const DexFile& dex_file = klass->GetDexFile();
|
|
const dex::TypeId& type_id = dex_file.GetTypeId(klass->GetDexTypeIndex());
|
|
return strcmp(dex_file.GetTypeDescriptor(type_id), match) == 0;
|
|
}
|
|
}
|
|
|
|
inline void Class::AssertInitializedOrInitializingInThread(Thread* self) {
|
|
if (kIsDebugBuild && !IsInitialized()) {
|
|
CHECK(IsInitializing()) << PrettyClass() << " is not initializing: " << GetStatus();
|
|
CHECK_EQ(GetClinitThreadId(), self->GetTid())
|
|
<< PrettyClass() << " is initializing in a different thread";
|
|
}
|
|
}
|
|
|
|
inline ObjPtr<ObjectArray<Class>> Class::GetProxyInterfaces() {
|
|
CHECK(IsProxyClass());
|
|
// First static field.
|
|
ArtField* field = GetStaticField(0);
|
|
DCHECK_STREQ(field->GetName(), "interfaces");
|
|
MemberOffset field_offset = field->GetOffset();
|
|
return GetFieldObject<ObjectArray<Class>>(field_offset);
|
|
}
|
|
|
|
inline ObjPtr<ObjectArray<ObjectArray<Class>>> Class::GetProxyThrows() {
|
|
CHECK(IsProxyClass());
|
|
// Second static field.
|
|
ArtField* field = GetStaticField(1);
|
|
DCHECK_STREQ(field->GetName(), "throws");
|
|
MemberOffset field_offset = field->GetOffset();
|
|
return GetFieldObject<ObjectArray<ObjectArray<Class>>>(field_offset);
|
|
}
|
|
|
|
inline bool Class::IsBootStrapClassLoaded() {
|
|
// No read barrier is needed for comparing with null. See ReadBarrierOption.
|
|
return GetClassLoader<kDefaultVerifyFlags, kWithoutReadBarrier>() == nullptr;
|
|
}
|
|
|
|
inline void Class::InitializeClassVisitor::operator()(ObjPtr<Object> obj,
|
|
size_t usable_size) const {
|
|
DCHECK_LE(class_size_, usable_size);
|
|
// Avoid AsClass as object is not yet in live bitmap or allocation stack.
|
|
ObjPtr<Class> klass = ObjPtr<Class>::DownCast(obj);
|
|
klass->SetClassSize(class_size_);
|
|
klass->SetPrimitiveType(Primitive::kPrimNot); // Default to not being primitive.
|
|
klass->SetDexClassDefIndex(DexFile::kDexNoIndex16); // Default to no valid class def index.
|
|
klass->SetDexTypeIndex(dex::TypeIndex(DexFile::kDexNoIndex16)); // Default to no valid type
|
|
// index.
|
|
// Default to force slow path until visibly initialized.
|
|
// There is no need for release store (volatile) in pre-fence visitor.
|
|
klass->SetField32</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
|
|
ObjectSizeAllocFastPathOffset(), std::numeric_limits<uint32_t>::max());
|
|
}
|
|
|
|
inline void Class::SetAccessFlagsDuringLinking(uint32_t new_access_flags) {
|
|
SetField32</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
|
|
AccessFlagsOffset(), new_access_flags);
|
|
}
|
|
|
|
inline void Class::SetAccessFlags(uint32_t new_access_flags) {
|
|
if (kIsDebugBuild) {
|
|
SetAccessFlagsDCheck(new_access_flags);
|
|
}
|
|
// Called inside a transaction when setting pre-verified flag during boot image compilation.
|
|
if (Runtime::Current()->IsActiveTransaction()) {
|
|
SetField32<true>(AccessFlagsOffset(), new_access_flags);
|
|
} else {
|
|
SetField32<false>(AccessFlagsOffset(), new_access_flags);
|
|
}
|
|
}
|
|
|
|
inline void Class::SetClassFlags(uint32_t new_flags) {
|
|
SetField32</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
|
|
OFFSET_OF_OBJECT_MEMBER(Class, class_flags_), new_flags);
|
|
}
|
|
|
|
inline uint32_t Class::NumDirectInterfaces() {
|
|
if (IsPrimitive()) {
|
|
return 0;
|
|
} else if (IsArrayClass()) {
|
|
return 2;
|
|
} else if (IsProxyClass()) {
|
|
ObjPtr<ObjectArray<Class>> interfaces = GetProxyInterfaces();
|
|
return interfaces != nullptr ? interfaces->GetLength() : 0;
|
|
} else {
|
|
const dex::TypeList* interfaces = GetInterfaceTypeList();
|
|
if (interfaces == nullptr) {
|
|
return 0;
|
|
} else {
|
|
return interfaces->Size();
|
|
}
|
|
}
|
|
}
|
|
|
|
inline ArraySlice<ArtMethod> Class::GetDirectMethods(PointerSize pointer_size) {
|
|
CheckPointerSize(pointer_size);
|
|
return GetDirectMethodsSliceUnchecked(pointer_size);
|
|
}
|
|
|
|
inline ArraySlice<ArtMethod> Class::GetDeclaredMethods(PointerSize pointer_size) {
|
|
return GetDeclaredMethodsSliceUnchecked(pointer_size);
|
|
}
|
|
|
|
inline ArraySlice<ArtMethod> Class::GetDeclaredVirtualMethods(PointerSize pointer_size) {
|
|
return GetDeclaredVirtualMethodsSliceUnchecked(pointer_size);
|
|
}
|
|
|
|
inline ArraySlice<ArtMethod> Class::GetVirtualMethods(PointerSize pointer_size) {
|
|
CheckPointerSize(pointer_size);
|
|
return GetVirtualMethodsSliceUnchecked(pointer_size);
|
|
}
|
|
|
|
inline ArraySlice<ArtMethod> Class::GetCopiedMethods(PointerSize pointer_size) {
|
|
CheckPointerSize(pointer_size);
|
|
return GetCopiedMethodsSliceUnchecked(pointer_size);
|
|
}
|
|
|
|
|
|
inline ArraySlice<ArtMethod> Class::GetMethods(PointerSize pointer_size) {
|
|
CheckPointerSize(pointer_size);
|
|
LengthPrefixedArray<ArtMethod>* methods = GetMethodsPtr();
|
|
return GetMethodsSliceRangeUnchecked(methods, pointer_size, 0u, NumMethods(methods));
|
|
}
|
|
|
|
inline IterationRange<StrideIterator<ArtField>> Class::GetIFields() {
|
|
return MakeIterationRangeFromLengthPrefixedArray(GetIFieldsPtr());
|
|
}
|
|
|
|
inline IterationRange<StrideIterator<ArtField>> Class::GetSFields() {
|
|
return MakeIterationRangeFromLengthPrefixedArray(GetSFieldsPtr());
|
|
}
|
|
|
|
inline IterationRange<StrideIterator<ArtField>> Class::GetIFieldsUnchecked() {
|
|
return MakeIterationRangeFromLengthPrefixedArray(GetIFieldsPtrUnchecked());
|
|
}
|
|
|
|
inline IterationRange<StrideIterator<ArtField>> Class::GetSFieldsUnchecked() {
|
|
return MakeIterationRangeFromLengthPrefixedArray(GetSFieldsPtrUnchecked());
|
|
}
|
|
|
|
inline void Class::CheckPointerSize(PointerSize pointer_size) {
|
|
DCHECK_EQ(pointer_size, Runtime::Current()->GetClassLinker()->GetImagePointerSize());
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags, ReadBarrierOption kReadBarrierOption>
|
|
inline ObjPtr<Class> Class::GetComponentType() {
|
|
return GetFieldObject<Class, kVerifyFlags, kReadBarrierOption>(ComponentTypeOffset());
|
|
}
|
|
|
|
inline void Class::SetComponentType(ObjPtr<Class> new_component_type) {
|
|
DCHECK(GetComponentType() == nullptr);
|
|
DCHECK(new_component_type != nullptr);
|
|
// Component type is invariant: use non-transactional mode without check.
|
|
SetFieldObject</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
|
|
ComponentTypeOffset(), new_component_type);
|
|
}
|
|
|
|
inline size_t Class::GetComponentSize() {
|
|
return 1U << GetComponentSizeShift();
|
|
}
|
|
|
|
inline size_t Class::GetComponentSizeShift() {
|
|
// No read barrier is needed for reading a constant primitive field through
|
|
// constant reference field. See ReadBarrierOption.
|
|
return GetComponentType<kDefaultVerifyFlags, kWithoutReadBarrier>()->GetPrimitiveTypeSizeShift();
|
|
}
|
|
|
|
inline bool Class::IsObjectClass() {
|
|
// No read barrier is needed for comparing with null. See ReadBarrierOption.
|
|
return !IsPrimitive() && GetSuperClass<kDefaultVerifyFlags, kWithoutReadBarrier>() == nullptr;
|
|
}
|
|
|
|
inline bool Class::IsInstantiableNonArray() {
|
|
return !IsPrimitive() && !IsInterface() && !IsAbstract() && !IsArrayClass();
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
bool Class::IsInstantiable() {
|
|
return (!IsPrimitive<kVerifyFlags>() &&
|
|
!IsInterface<kVerifyFlags>() &&
|
|
!IsAbstract<kVerifyFlags>()) ||
|
|
(IsAbstract<kVerifyFlags>() && IsArrayClass<kVerifyFlags>());
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline bool Class::IsArrayClass() {
|
|
// We do not need a read barrier for comparing with null.
|
|
return GetComponentType<kVerifyFlags, kWithoutReadBarrier>() != nullptr;
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
inline bool Class::IsObjectArrayClass() {
|
|
// We do not need a read barrier here as the primitive type is constant,
|
|
// both from-space and to-space component type classes shall yield the same result.
|
|
const ObjPtr<Class> component_type = GetComponentType<kVerifyFlags, kWithoutReadBarrier>();
|
|
constexpr VerifyObjectFlags kNewFlags = RemoveThisFlags(kVerifyFlags);
|
|
return component_type != nullptr && !component_type->IsPrimitive<kNewFlags>();
|
|
}
|
|
|
|
template<VerifyObjectFlags kVerifyFlags>
|
|
bool Class::IsPrimitiveArray() {
|
|
// We do not need a read barrier here as the primitive type is constant,
|
|
// both from-space and to-space component type classes shall yield the same result.
|
|
const ObjPtr<Class> component_type = GetComponentType<kVerifyFlags, kWithoutReadBarrier>();
|
|
constexpr VerifyObjectFlags kNewFlags = RemoveThisFlags(kVerifyFlags);
|
|
return component_type != nullptr && component_type->IsPrimitive<kNewFlags>();
|
|
}
|
|
|
|
inline bool Class::IsAssignableFrom(ObjPtr<Class> src) {
|
|
DCHECK(src != nullptr);
|
|
if (this == src) {
|
|
// Can always assign to things of the same type.
|
|
return true;
|
|
} else if (IsObjectClass()) {
|
|
// Can assign any reference to java.lang.Object.
|
|
return !src->IsPrimitive();
|
|
} else if (IsInterface()) {
|
|
return src->Implements(this);
|
|
} else if (src->IsArrayClass()) {
|
|
return IsAssignableFromArray(src);
|
|
} else {
|
|
return !src->IsInterface() && src->IsSubClass(this);
|
|
}
|
|
}
|
|
|
|
inline uint32_t Class::NumDirectMethods() {
|
|
return GetVirtualMethodsStartOffset();
|
|
}
|
|
|
|
inline uint32_t Class::NumDeclaredVirtualMethods() {
|
|
return GetCopiedMethodsStartOffset() - GetVirtualMethodsStartOffset();
|
|
}
|
|
|
|
inline uint32_t Class::NumVirtualMethods() {
|
|
return NumMethods() - GetVirtualMethodsStartOffset();
|
|
}
|
|
|
|
inline uint32_t Class::NumInstanceFields() {
|
|
LengthPrefixedArray<ArtField>* arr = GetIFieldsPtrUnchecked();
|
|
return arr != nullptr ? arr->size() : 0u;
|
|
}
|
|
|
|
inline uint32_t Class::NumStaticFields() {
|
|
LengthPrefixedArray<ArtField>* arr = GetSFieldsPtrUnchecked();
|
|
return arr != nullptr ? arr->size() : 0u;
|
|
}
|
|
|
|
template <typename T, VerifyObjectFlags kVerifyFlags, typename Visitor>
|
|
inline void Class::FixupNativePointer(
|
|
Class* dest, PointerSize pointer_size, const Visitor& visitor, MemberOffset member_offset) {
|
|
void** address =
|
|
reinterpret_cast<void**>(reinterpret_cast<uintptr_t>(dest) + member_offset.Uint32Value());
|
|
T old_value = GetFieldPtrWithSize<T, kVerifyFlags>(member_offset, pointer_size);
|
|
T new_value = visitor(old_value, address);
|
|
if (old_value != new_value) {
|
|
dest->SetFieldPtrWithSize</* kTransactionActive= */ false,
|
|
/* kCheckTransaction= */ true,
|
|
kVerifyNone>(member_offset, new_value, pointer_size);
|
|
}
|
|
}
|
|
|
|
template <VerifyObjectFlags kVerifyFlags, typename Visitor>
|
|
inline void Class::FixupNativePointers(Class* dest,
|
|
PointerSize pointer_size,
|
|
const Visitor& visitor) {
|
|
// Update the field arrays.
|
|
FixupNativePointer<LengthPrefixedArray<ArtField>*, kVerifyFlags>(
|
|
dest, pointer_size, visitor, OFFSET_OF_OBJECT_MEMBER(Class, sfields_));
|
|
FixupNativePointer<LengthPrefixedArray<ArtField>*, kVerifyFlags>(
|
|
dest, pointer_size, visitor, OFFSET_OF_OBJECT_MEMBER(Class, ifields_));
|
|
// Update method array.
|
|
FixupNativePointer<LengthPrefixedArray<ArtMethod>*, kVerifyFlags>(
|
|
dest, pointer_size, visitor, OFFSET_OF_OBJECT_MEMBER(Class, methods_));
|
|
// Fix up embedded tables.
|
|
if (!IsTemp<kVerifyNone>() && ShouldHaveEmbeddedVTable<kVerifyNone>()) {
|
|
for (int32_t i = 0, count = GetEmbeddedVTableLength<kVerifyFlags>(); i < count; ++i) {
|
|
FixupNativePointer<ArtMethod*, kVerifyFlags>(
|
|
dest, pointer_size, visitor, EmbeddedVTableEntryOffset(i, pointer_size));
|
|
}
|
|
}
|
|
if (!IsTemp<kVerifyNone>() && ShouldHaveImt<kVerifyNone>()) {
|
|
FixupNativePointer<ImTable*, kVerifyFlags>(
|
|
dest, pointer_size, visitor, ImtPtrOffset(pointer_size));
|
|
}
|
|
}
|
|
|
|
inline bool Class::CanAccess(ObjPtr<Class> that) {
|
|
return that->IsPublic() || this->IsInSamePackage(that);
|
|
}
|
|
|
|
|
|
inline bool Class::CanAccessMember(ObjPtr<Class> access_to, uint32_t member_flags) {
|
|
// Classes can access all of their own members
|
|
if (this == access_to) {
|
|
return true;
|
|
}
|
|
// Public members are trivially accessible
|
|
if (member_flags & kAccPublic) {
|
|
return true;
|
|
}
|
|
// Private members are trivially not accessible
|
|
if (member_flags & kAccPrivate) {
|
|
return false;
|
|
}
|
|
// Check for protected access from a sub-class, which may or may not be in the same package.
|
|
if (member_flags & kAccProtected) {
|
|
if (!this->IsInterface() && this->IsSubClass(access_to)) {
|
|
return true;
|
|
}
|
|
}
|
|
// Allow protected access from other classes in the same package.
|
|
return this->IsInSamePackage(access_to);
|
|
}
|
|
|
|
inline bool Class::CannotBeAssignedFromOtherTypes() {
|
|
if (!IsArrayClass()) {
|
|
return IsFinal();
|
|
}
|
|
ObjPtr<Class> component = GetComponentType();
|
|
return component->IsPrimitive() || component->CannotBeAssignedFromOtherTypes();
|
|
}
|
|
|
|
inline void Class::SetClassLoader(ObjPtr<ClassLoader> new_class_loader) {
|
|
SetFieldObject</*kTransactionActive=*/ false, /*kCheckTransaction=*/ false>(
|
|
OFFSET_OF_OBJECT_MEMBER(Class, class_loader_), new_class_loader);
|
|
}
|
|
|
|
inline void Class::SetRecursivelyInitialized() {
|
|
DCHECK_EQ(GetLockOwnerThreadId(), Thread::Current()->GetThreadId());
|
|
uint32_t flags = GetField32(OFFSET_OF_OBJECT_MEMBER(Class, access_flags_));
|
|
SetAccessFlags(flags | kAccRecursivelyInitialized);
|
|
}
|
|
|
|
inline void Class::SetHasDefaultMethods() {
|
|
DCHECK_EQ(GetLockOwnerThreadId(), Thread::Current()->GetThreadId());
|
|
uint32_t flags = GetField32(OFFSET_OF_OBJECT_MEMBER(Class, access_flags_));
|
|
SetAccessFlagsDuringLinking(flags | kAccHasDefaultMethod);
|
|
}
|
|
|
|
} // namespace mirror
|
|
} // namespace art
|
|
|
|
#endif // ART_RUNTIME_MIRROR_CLASS_INL_H_
|