1 /*
2 * Copyright (C) 2011 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #ifndef ART_RUNTIME_CLASS_LINKER_INL_H_
18 #define ART_RUNTIME_CLASS_LINKER_INL_H_
19
20 #include "art_field.h"
21 #include "class_linker.h"
22 #include "gc_root-inl.h"
23 #include "gc/heap-inl.h"
24 #include "mirror/class_loader.h"
25 #include "mirror/dex_cache-inl.h"
26 #include "mirror/iftable.h"
27 #include "mirror/object_array.h"
28 #include "handle_scope-inl.h"
29
30 namespace art {
31
FindSystemClass(Thread * self,const char * descriptor)32 inline mirror::Class* ClassLinker::FindSystemClass(Thread* self, const char* descriptor) {
33 return FindClass(self, descriptor, ScopedNullHandle<mirror::ClassLoader>());
34 }
35
FindArrayClass(Thread * self,mirror::Class ** element_class)36 inline mirror::Class* ClassLinker::FindArrayClass(Thread* self, mirror::Class** element_class) {
37 for (size_t i = 0; i < kFindArrayCacheSize; ++i) {
38 // Read the cached array class once to avoid races with other threads setting it.
39 mirror::Class* array_class = find_array_class_cache_[i].Read();
40 if (array_class != nullptr && array_class->GetComponentType() == *element_class) {
41 return array_class;
42 }
43 }
44 std::string descriptor = "[";
45 std::string temp;
46 descriptor += (*element_class)->GetDescriptor(&temp);
47 StackHandleScope<2> hs(Thread::Current());
48 Handle<mirror::ClassLoader> class_loader(hs.NewHandle((*element_class)->GetClassLoader()));
49 HandleWrapper<mirror::Class> h_element_class(hs.NewHandleWrapper(element_class));
50 mirror::Class* array_class = FindClass(self, descriptor.c_str(), class_loader);
51 if (array_class != nullptr) {
52 // Benign races in storing array class and incrementing index.
53 size_t victim_index = find_array_class_cache_next_victim_;
54 find_array_class_cache_[victim_index] = GcRoot<mirror::Class>(array_class);
55 find_array_class_cache_next_victim_ = (victim_index + 1) % kFindArrayCacheSize;
56 } else {
57 // We should have a NoClassDefFoundError.
58 self->AssertPendingException();
59 }
60 return array_class;
61 }
62
ResolveString(uint32_t string_idx,ArtMethod * referrer)63 inline mirror::String* ClassLinker::ResolveString(uint32_t string_idx, ArtMethod* referrer) {
64 mirror::Class* declaring_class = referrer->GetDeclaringClass();
65 // MethodVerifier refuses methods with string_idx out of bounds.
66 DCHECK_LT(string_idx, declaring_class->GetDexCache()->NumStrings());
67 mirror::String* resolved_string = declaring_class->GetDexCacheStrings()[string_idx].Read();
68 if (UNLIKELY(resolved_string == nullptr)) {
69 StackHandleScope<1> hs(Thread::Current());
70 Handle<mirror::DexCache> dex_cache(hs.NewHandle(declaring_class->GetDexCache()));
71 const DexFile& dex_file = *dex_cache->GetDexFile();
72 resolved_string = ResolveString(dex_file, string_idx, dex_cache);
73 if (resolved_string != nullptr) {
74 DCHECK_EQ(dex_cache->GetResolvedString(string_idx), resolved_string);
75 }
76 }
77 return resolved_string;
78 }
79
ResolveType(uint16_t type_idx,ArtMethod * referrer)80 inline mirror::Class* ClassLinker::ResolveType(uint16_t type_idx, ArtMethod* referrer) {
81 mirror::Class* resolved_type = referrer->GetDexCacheResolvedType(type_idx, image_pointer_size_);
82 if (UNLIKELY(resolved_type == nullptr)) {
83 mirror::Class* declaring_class = referrer->GetDeclaringClass();
84 StackHandleScope<2> hs(Thread::Current());
85 Handle<mirror::DexCache> dex_cache(hs.NewHandle(declaring_class->GetDexCache()));
86 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(declaring_class->GetClassLoader()));
87 const DexFile& dex_file = *dex_cache->GetDexFile();
88 resolved_type = ResolveType(dex_file, type_idx, dex_cache, class_loader);
89 // Note: We cannot check here to see whether we added the type to the cache. The type
90 // might be an erroneous class, which results in it being hidden from us.
91 }
92 return resolved_type;
93 }
94
ResolveType(uint16_t type_idx,ArtField * referrer)95 inline mirror::Class* ClassLinker::ResolveType(uint16_t type_idx, ArtField* referrer) {
96 mirror::Class* declaring_class = referrer->GetDeclaringClass();
97 mirror::DexCache* dex_cache_ptr = declaring_class->GetDexCache();
98 mirror::Class* resolved_type = dex_cache_ptr->GetResolvedType(type_idx);
99 if (UNLIKELY(resolved_type == nullptr)) {
100 StackHandleScope<2> hs(Thread::Current());
101 Handle<mirror::DexCache> dex_cache(hs.NewHandle(dex_cache_ptr));
102 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(declaring_class->GetClassLoader()));
103 const DexFile& dex_file = *dex_cache->GetDexFile();
104 resolved_type = ResolveType(dex_file, type_idx, dex_cache, class_loader);
105 // Note: We cannot check here to see whether we added the type to the cache. The type
106 // might be an erroneous class, which results in it being hidden from us.
107 }
108 return resolved_type;
109 }
110
GetResolvedMethod(uint32_t method_idx,ArtMethod * referrer)111 inline ArtMethod* ClassLinker::GetResolvedMethod(uint32_t method_idx, ArtMethod* referrer) {
112 ArtMethod* resolved_method = referrer->GetDexCacheResolvedMethod(method_idx, image_pointer_size_);
113 if (resolved_method == nullptr || resolved_method->IsRuntimeMethod()) {
114 return nullptr;
115 }
116 return resolved_method;
117 }
118
ResolveReferencedClassOfMethod(uint32_t method_idx,Handle<mirror::DexCache> dex_cache,Handle<mirror::ClassLoader> class_loader)119 inline mirror::Class* ClassLinker::ResolveReferencedClassOfMethod(
120 uint32_t method_idx,
121 Handle<mirror::DexCache> dex_cache,
122 Handle<mirror::ClassLoader> class_loader) {
123 // NB: We cannot simply use `GetResolvedMethod(method_idx, ...)->GetDeclaringClass()`. This is
124 // because if we did so than an invoke-super could be incorrectly dispatched in cases where
125 // GetMethodId(method_idx).class_idx_ refers to a non-interface, non-direct-superclass
126 // (super*-class?) of the referrer and the direct superclass of the referrer contains a concrete
127 // implementation of the method. If this class's implementation of the method is copied from an
128 // interface (either miranda, default or conflict) we would incorrectly assume that is what we
129 // want to invoke on, instead of the 'concrete' implementation that the direct superclass
130 // contains.
131 const DexFile* dex_file = dex_cache->GetDexFile();
132 const DexFile::MethodId& method = dex_file->GetMethodId(method_idx);
133 mirror::Class* resolved_type = dex_cache->GetResolvedType(method.class_idx_);
134 if (UNLIKELY(resolved_type == nullptr)) {
135 resolved_type = ResolveType(*dex_file, method.class_idx_, dex_cache, class_loader);
136 }
137 return resolved_type;
138 }
139
140 template <ClassLinker::ResolveMode kResolveMode>
ResolveMethod(Thread * self,uint32_t method_idx,ArtMethod * referrer,InvokeType type)141 inline ArtMethod* ClassLinker::ResolveMethod(Thread* self,
142 uint32_t method_idx,
143 ArtMethod* referrer,
144 InvokeType type) {
145 ArtMethod* resolved_method = GetResolvedMethod(method_idx, referrer);
146 if (UNLIKELY(resolved_method == nullptr)) {
147 mirror::Class* declaring_class = referrer->GetDeclaringClass();
148 StackHandleScope<2> hs(self);
149 Handle<mirror::DexCache> h_dex_cache(hs.NewHandle(declaring_class->GetDexCache()));
150 Handle<mirror::ClassLoader> h_class_loader(hs.NewHandle(declaring_class->GetClassLoader()));
151 const DexFile* dex_file = h_dex_cache->GetDexFile();
152 resolved_method = ResolveMethod<kResolveMode>(*dex_file,
153 method_idx,
154 h_dex_cache,
155 h_class_loader,
156 referrer,
157 type);
158 }
159 // Note: We cannot check here to see whether we added the method to the cache. It
160 // might be an erroneous class, which results in it being hidden from us.
161 return resolved_method;
162 }
163
GetResolvedField(uint32_t field_idx,mirror::DexCache * dex_cache)164 inline ArtField* ClassLinker::GetResolvedField(uint32_t field_idx, mirror::DexCache* dex_cache) {
165 return dex_cache->GetResolvedField(field_idx, image_pointer_size_);
166 }
167
GetResolvedField(uint32_t field_idx,mirror::Class * field_declaring_class)168 inline ArtField* ClassLinker::GetResolvedField(
169 uint32_t field_idx, mirror::Class* field_declaring_class) {
170 return GetResolvedField(field_idx, field_declaring_class->GetDexCache());
171 }
172
ResolveField(uint32_t field_idx,ArtMethod * referrer,bool is_static)173 inline ArtField* ClassLinker::ResolveField(uint32_t field_idx, ArtMethod* referrer,
174 bool is_static) {
175 mirror::Class* declaring_class = referrer->GetDeclaringClass();
176 ArtField* resolved_field = GetResolvedField(field_idx, declaring_class);
177 if (UNLIKELY(resolved_field == nullptr)) {
178 StackHandleScope<2> hs(Thread::Current());
179 Handle<mirror::DexCache> dex_cache(hs.NewHandle(declaring_class->GetDexCache()));
180 Handle<mirror::ClassLoader> class_loader(hs.NewHandle(declaring_class->GetClassLoader()));
181 const DexFile& dex_file = *dex_cache->GetDexFile();
182 resolved_field = ResolveField(dex_file, field_idx, dex_cache, class_loader, is_static);
183 // Note: We cannot check here to see whether we added the field to the cache. The type
184 // might be an erroneous class, which results in it being hidden from us.
185 }
186 return resolved_field;
187 }
188
AllocObject(Thread * self)189 inline mirror::Object* ClassLinker::AllocObject(Thread* self) {
190 return GetClassRoot(kJavaLangObject)->Alloc<true, false>(
191 self,
192 Runtime::Current()->GetHeap()->GetCurrentAllocator());
193 }
194
195 template <class T>
AllocObjectArray(Thread * self,size_t length)196 inline mirror::ObjectArray<T>* ClassLinker::AllocObjectArray(Thread* self, size_t length) {
197 return mirror::ObjectArray<T>::Alloc(self, GetClassRoot(kObjectArrayClass), length);
198 }
199
AllocClassArray(Thread * self,size_t length)200 inline mirror::ObjectArray<mirror::Class>* ClassLinker::AllocClassArray(Thread* self,
201 size_t length) {
202 return mirror::ObjectArray<mirror::Class>::Alloc(self, GetClassRoot(kClassArrayClass), length);
203 }
204
AllocStringArray(Thread * self,size_t length)205 inline mirror::ObjectArray<mirror::String>* ClassLinker::AllocStringArray(Thread* self,
206 size_t length) {
207 return mirror::ObjectArray<mirror::String>::Alloc(self,
208 GetClassRoot(kJavaLangStringArrayClass),
209 length);
210 }
211
AllocIfTable(Thread * self,size_t ifcount)212 inline mirror::IfTable* ClassLinker::AllocIfTable(Thread* self, size_t ifcount) {
213 return down_cast<mirror::IfTable*>(
214 mirror::IfTable::Alloc(self,
215 GetClassRoot(kObjectArrayClass),
216 ifcount * mirror::IfTable::kMax));
217 }
218
GetClassRoot(ClassRoot class_root)219 inline mirror::Class* ClassLinker::GetClassRoot(ClassRoot class_root)
220 SHARED_REQUIRES(Locks::mutator_lock_) {
221 DCHECK(!class_roots_.IsNull());
222 mirror::ObjectArray<mirror::Class>* class_roots = class_roots_.Read();
223 mirror::Class* klass = class_roots->Get(class_root);
224 DCHECK(klass != nullptr);
225 return klass;
226 }
227
228 } // namespace art
229
230 #endif // ART_RUNTIME_CLASS_LINKER_INL_H_
231