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 #include "class.h"
18
19 #include "art_field-inl.h"
20 #include "art_method-inl.h"
21 #include "class_linker.h"
22 #include "class_loader.h"
23 #include "class-inl.h"
24 #include "dex_cache.h"
25 #include "dex_file-inl.h"
26 #include "gc/accounting/card_table-inl.h"
27 #include "handle_scope-inl.h"
28 #include "object_array-inl.h"
29 #include "object-inl.h"
30 #include "runtime.h"
31 #include "thread.h"
32 #include "throwable.h"
33 #include "utils.h"
34 #include "well_known_classes.h"
35
36 namespace art {
37 namespace mirror {
38
39 GcRoot<Class> Class::java_lang_Class_;
40
SetClassClass(Class * java_lang_Class)41 void Class::SetClassClass(Class* java_lang_Class) {
42 CHECK(java_lang_Class_.IsNull())
43 << java_lang_Class_.Read()
44 << " " << java_lang_Class;
45 CHECK(java_lang_Class != nullptr);
46 java_lang_Class_ = GcRoot<Class>(java_lang_Class);
47 }
48
ResetClass()49 void Class::ResetClass() {
50 CHECK(!java_lang_Class_.IsNull());
51 java_lang_Class_ = GcRoot<Class>(nullptr);
52 }
53
VisitRoots(RootCallback * callback,void * arg)54 void Class::VisitRoots(RootCallback* callback, void* arg) {
55 java_lang_Class_.VisitRootIfNonNull(callback, arg, RootInfo(kRootStickyClass));
56 }
57
SetStatus(Status new_status,Thread * self)58 void Class::SetStatus(Status new_status, Thread* self) {
59 Status old_status = GetStatus();
60 ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
61 bool class_linker_initialized = class_linker != nullptr && class_linker->IsInitialized();
62 if (LIKELY(class_linker_initialized)) {
63 if (UNLIKELY(new_status <= old_status && new_status != kStatusError &&
64 new_status != kStatusRetired)) {
65 LOG(FATAL) << "Unexpected change back of class status for " << PrettyClass(this) << " "
66 << old_status << " -> " << new_status;
67 }
68 if (new_status >= kStatusResolved || old_status >= kStatusResolved) {
69 // When classes are being resolved the resolution code should hold the lock.
70 CHECK_EQ(GetLockOwnerThreadId(), self->GetThreadId())
71 << "Attempt to change status of class while not holding its lock: "
72 << PrettyClass(this) << " " << old_status << " -> " << new_status;
73 }
74 }
75 if (UNLIKELY(new_status == kStatusError)) {
76 CHECK_NE(GetStatus(), kStatusError)
77 << "Attempt to set as erroneous an already erroneous class " << PrettyClass(this);
78
79 // Stash current exception.
80 StackHandleScope<3> hs(self);
81 ThrowLocation old_throw_location;
82 Handle<mirror::Throwable> old_exception(hs.NewHandle(self->GetException(&old_throw_location)));
83 CHECK(old_exception.Get() != nullptr);
84 Handle<mirror::Object> old_throw_this_object(hs.NewHandle(old_throw_location.GetThis()));
85 Handle<mirror::ArtMethod> old_throw_method(hs.NewHandle(old_throw_location.GetMethod()));
86 uint32_t old_throw_dex_pc = old_throw_location.GetDexPc();
87 bool is_exception_reported = self->IsExceptionReportedToInstrumentation();
88 Class* eiie_class;
89 // Do't attempt to use FindClass if we have an OOM error since this can try to do more
90 // allocations and may cause infinite loops.
91 bool throw_eiie = (old_exception.Get() == nullptr);
92 if (!throw_eiie) {
93 std::string temp;
94 const char* old_exception_descriptor = old_exception->GetClass()->GetDescriptor(&temp);
95 throw_eiie = (strcmp(old_exception_descriptor, "Ljava/lang/OutOfMemoryError;") != 0);
96 }
97 if (throw_eiie) {
98 // Clear exception to call FindSystemClass.
99 self->ClearException();
100 eiie_class = Runtime::Current()->GetClassLinker()->FindSystemClass(
101 self, "Ljava/lang/ExceptionInInitializerError;");
102 CHECK(!self->IsExceptionPending());
103 // Only verification errors, not initialization problems, should set a verify error.
104 // This is to ensure that ThrowEarlierClassFailure will throw NoClassDefFoundError in that
105 // case.
106 Class* exception_class = old_exception->GetClass();
107 if (!eiie_class->IsAssignableFrom(exception_class)) {
108 SetVerifyErrorClass(exception_class);
109 }
110 }
111
112 // Restore exception.
113 ThrowLocation gc_safe_throw_location(old_throw_this_object.Get(), old_throw_method.Get(),
114 old_throw_dex_pc);
115 self->SetException(gc_safe_throw_location, old_exception.Get());
116 self->SetExceptionReportedToInstrumentation(is_exception_reported);
117 }
118 COMPILE_ASSERT(sizeof(Status) == sizeof(uint32_t), size_of_status_not_uint32);
119 if (Runtime::Current()->IsActiveTransaction()) {
120 SetField32Volatile<true>(OFFSET_OF_OBJECT_MEMBER(Class, status_), new_status);
121 } else {
122 SetField32Volatile<false>(OFFSET_OF_OBJECT_MEMBER(Class, status_), new_status);
123 }
124
125 if (!class_linker_initialized) {
126 // When the class linker is being initialized its single threaded and by definition there can be
127 // no waiters. During initialization classes may appear temporary but won't be retired as their
128 // size was statically computed.
129 } else {
130 // Classes that are being resolved or initialized need to notify waiters that the class status
131 // changed. See ClassLinker::EnsureResolved and ClassLinker::WaitForInitializeClass.
132 if (IsTemp()) {
133 // Class is a temporary one, ensure that waiters for resolution get notified of retirement
134 // so that they can grab the new version of the class from the class linker's table.
135 CHECK_LT(new_status, kStatusResolved) << PrettyDescriptor(this);
136 if (new_status == kStatusRetired || new_status == kStatusError) {
137 NotifyAll(self);
138 }
139 } else {
140 CHECK_NE(new_status, kStatusRetired);
141 if (old_status >= kStatusResolved || new_status >= kStatusResolved) {
142 NotifyAll(self);
143 }
144 }
145 }
146 }
147
SetDexCache(DexCache * new_dex_cache)148 void Class::SetDexCache(DexCache* new_dex_cache) {
149 SetFieldObject<false>(OFFSET_OF_OBJECT_MEMBER(Class, dex_cache_), new_dex_cache);
150 SetDexCacheStrings(new_dex_cache != nullptr ? new_dex_cache->GetStrings() : nullptr);
151 }
152
SetClassSize(uint32_t new_class_size)153 void Class::SetClassSize(uint32_t new_class_size) {
154 if (kIsDebugBuild && (new_class_size < GetClassSize())) {
155 DumpClass(LOG(ERROR), kDumpClassFullDetail);
156 CHECK_GE(new_class_size, GetClassSize()) << " class=" << PrettyTypeOf(this);
157 }
158 // Not called within a transaction.
159 SetField32<false>(OFFSET_OF_OBJECT_MEMBER(Class, class_size_), new_class_size);
160 }
161
162 // Return the class' name. The exact format is bizarre, but it's the specified behavior for
163 // Class.getName: keywords for primitive types, regular "[I" form for primitive arrays (so "int"
164 // but "[I"), and arrays of reference types written between "L" and ";" but with dots rather than
165 // slashes (so "java.lang.String" but "[Ljava.lang.String;"). Madness.
ComputeName(Handle<Class> h_this)166 String* Class::ComputeName(Handle<Class> h_this) {
167 String* name = h_this->GetName();
168 if (name != nullptr) {
169 return name;
170 }
171 std::string temp;
172 const char* descriptor = h_this->GetDescriptor(&temp);
173 Thread* self = Thread::Current();
174 if ((descriptor[0] != 'L') && (descriptor[0] != '[')) {
175 // The descriptor indicates that this is the class for
176 // a primitive type; special-case the return value.
177 const char* c_name = nullptr;
178 switch (descriptor[0]) {
179 case 'Z': c_name = "boolean"; break;
180 case 'B': c_name = "byte"; break;
181 case 'C': c_name = "char"; break;
182 case 'S': c_name = "short"; break;
183 case 'I': c_name = "int"; break;
184 case 'J': c_name = "long"; break;
185 case 'F': c_name = "float"; break;
186 case 'D': c_name = "double"; break;
187 case 'V': c_name = "void"; break;
188 default:
189 LOG(FATAL) << "Unknown primitive type: " << PrintableChar(descriptor[0]);
190 }
191 name = String::AllocFromModifiedUtf8(self, c_name);
192 } else {
193 // Convert the UTF-8 name to a java.lang.String. The name must use '.' to separate package
194 // components.
195 name = String::AllocFromModifiedUtf8(self, DescriptorToDot(descriptor).c_str());
196 }
197 h_this->SetName(name);
198 return name;
199 }
200
DumpClass(std::ostream & os,int flags)201 void Class::DumpClass(std::ostream& os, int flags) {
202 if ((flags & kDumpClassFullDetail) == 0) {
203 os << PrettyClass(this);
204 if ((flags & kDumpClassClassLoader) != 0) {
205 os << ' ' << GetClassLoader();
206 }
207 if ((flags & kDumpClassInitialized) != 0) {
208 os << ' ' << GetStatus();
209 }
210 os << "\n";
211 return;
212 }
213
214 Thread* self = Thread::Current();
215 StackHandleScope<2> hs(self);
216 Handle<mirror::Class> h_this(hs.NewHandle(this));
217 Handle<mirror::Class> h_super(hs.NewHandle(GetSuperClass()));
218
219 std::string temp;
220 os << "----- " << (IsInterface() ? "interface" : "class") << " "
221 << "'" << GetDescriptor(&temp) << "' cl=" << GetClassLoader() << " -----\n",
222 os << " objectSize=" << SizeOf() << " "
223 << "(" << (h_super.Get() != nullptr ? h_super->SizeOf() : -1) << " from super)\n",
224 os << StringPrintf(" access=0x%04x.%04x\n",
225 GetAccessFlags() >> 16, GetAccessFlags() & kAccJavaFlagsMask);
226 if (h_super.Get() != nullptr) {
227 os << " super='" << PrettyClass(h_super.Get()) << "' (cl=" << h_super->GetClassLoader()
228 << ")\n";
229 }
230 if (IsArrayClass()) {
231 os << " componentType=" << PrettyClass(GetComponentType()) << "\n";
232 }
233 const size_t num_direct_interfaces = NumDirectInterfaces();
234 if (num_direct_interfaces > 0) {
235 os << " interfaces (" << num_direct_interfaces << "):\n";
236 for (size_t i = 0; i < num_direct_interfaces; ++i) {
237 Class* interface = GetDirectInterface(self, h_this, i);
238 const ClassLoader* cl = interface->GetClassLoader();
239 os << StringPrintf(" %2zd: %s (cl=%p)\n", i, PrettyClass(interface).c_str(), cl);
240 }
241 }
242 if (!IsLoaded()) {
243 os << " class not yet loaded";
244 } else {
245 // After this point, this may have moved due to GetDirectInterface.
246 os << " vtable (" << h_this->NumVirtualMethods() << " entries, "
247 << (h_super.Get() != nullptr ? h_super->NumVirtualMethods() : 0) << " in super):\n";
248 for (size_t i = 0; i < NumVirtualMethods(); ++i) {
249 os << StringPrintf(" %2zd: %s\n", i,
250 PrettyMethod(h_this->GetVirtualMethodDuringLinking(i)).c_str());
251 }
252 os << " direct methods (" << h_this->NumDirectMethods() << " entries):\n";
253 for (size_t i = 0; i < h_this->NumDirectMethods(); ++i) {
254 os << StringPrintf(" %2zd: %s\n", i, PrettyMethod(h_this->GetDirectMethod(i)).c_str());
255 }
256 if (h_this->NumStaticFields() > 0) {
257 os << " static fields (" << h_this->NumStaticFields() << " entries):\n";
258 if (h_this->IsResolved() || h_this->IsErroneous()) {
259 for (size_t i = 0; i < h_this->NumStaticFields(); ++i) {
260 os << StringPrintf(" %2zd: %s\n", i, PrettyField(h_this->GetStaticField(i)).c_str());
261 }
262 } else {
263 os << " <not yet available>";
264 }
265 }
266 if (h_this->NumInstanceFields() > 0) {
267 os << " instance fields (" << h_this->NumInstanceFields() << " entries):\n";
268 if (h_this->IsResolved() || h_this->IsErroneous()) {
269 for (size_t i = 0; i < h_this->NumInstanceFields(); ++i) {
270 os << StringPrintf(" %2zd: %s\n", i, PrettyField(h_this->GetInstanceField(i)).c_str());
271 }
272 } else {
273 os << " <not yet available>";
274 }
275 }
276 }
277 }
278
SetReferenceInstanceOffsets(uint32_t new_reference_offsets)279 void Class::SetReferenceInstanceOffsets(uint32_t new_reference_offsets) {
280 if (new_reference_offsets != CLASS_WALK_SUPER) {
281 // Sanity check that the number of bits set in the reference offset bitmap
282 // agrees with the number of references
283 size_t count = 0;
284 for (Class* c = this; c != nullptr; c = c->GetSuperClass()) {
285 count += c->NumReferenceInstanceFieldsDuringLinking();
286 }
287 CHECK_EQ((size_t)POPCOUNT(new_reference_offsets), count);
288 }
289 // Not called within a transaction.
290 SetField32<false>(OFFSET_OF_OBJECT_MEMBER(Class, reference_instance_offsets_),
291 new_reference_offsets);
292 }
293
SetReferenceStaticOffsets(uint32_t new_reference_offsets)294 void Class::SetReferenceStaticOffsets(uint32_t new_reference_offsets) {
295 if (new_reference_offsets != CLASS_WALK_SUPER) {
296 // Sanity check that the number of bits set in the reference offset bitmap
297 // agrees with the number of references
298 CHECK_EQ((size_t)POPCOUNT(new_reference_offsets),
299 NumReferenceStaticFieldsDuringLinking());
300 }
301 // Not called within a transaction.
302 SetField32<false>(OFFSET_OF_OBJECT_MEMBER(Class, reference_static_offsets_),
303 new_reference_offsets);
304 }
305
IsInSamePackage(const StringPiece & descriptor1,const StringPiece & descriptor2)306 bool Class::IsInSamePackage(const StringPiece& descriptor1, const StringPiece& descriptor2) {
307 size_t i = 0;
308 while (descriptor1[i] != '\0' && descriptor1[i] == descriptor2[i]) {
309 ++i;
310 }
311 if (descriptor1.find('/', i) != StringPiece::npos ||
312 descriptor2.find('/', i) != StringPiece::npos) {
313 return false;
314 } else {
315 return true;
316 }
317 }
318
IsInSamePackage(Class * that)319 bool Class::IsInSamePackage(Class* that) {
320 Class* klass1 = this;
321 Class* klass2 = that;
322 if (klass1 == klass2) {
323 return true;
324 }
325 // Class loaders must match.
326 if (klass1->GetClassLoader() != klass2->GetClassLoader()) {
327 return false;
328 }
329 // Arrays are in the same package when their element classes are.
330 while (klass1->IsArrayClass()) {
331 klass1 = klass1->GetComponentType();
332 }
333 while (klass2->IsArrayClass()) {
334 klass2 = klass2->GetComponentType();
335 }
336 // trivial check again for array types
337 if (klass1 == klass2) {
338 return true;
339 }
340 // Compare the package part of the descriptor string.
341 std::string temp1, temp2;
342 return IsInSamePackage(klass1->GetDescriptor(&temp1), klass2->GetDescriptor(&temp2));
343 }
344
IsStringClass() const345 bool Class::IsStringClass() const {
346 return this == String::GetJavaLangString();
347 }
348
IsThrowableClass()349 bool Class::IsThrowableClass() {
350 return WellKnownClasses::ToClass(WellKnownClasses::java_lang_Throwable)->IsAssignableFrom(this);
351 }
352
SetClassLoader(ClassLoader * new_class_loader)353 void Class::SetClassLoader(ClassLoader* new_class_loader) {
354 if (Runtime::Current()->IsActiveTransaction()) {
355 SetFieldObject<true>(OFFSET_OF_OBJECT_MEMBER(Class, class_loader_), new_class_loader);
356 } else {
357 SetFieldObject<false>(OFFSET_OF_OBJECT_MEMBER(Class, class_loader_), new_class_loader);
358 }
359 }
360
FindInterfaceMethod(const StringPiece & name,const StringPiece & signature)361 ArtMethod* Class::FindInterfaceMethod(const StringPiece& name, const StringPiece& signature) {
362 // Check the current class before checking the interfaces.
363 ArtMethod* method = FindDeclaredVirtualMethod(name, signature);
364 if (method != nullptr) {
365 return method;
366 }
367
368 int32_t iftable_count = GetIfTableCount();
369 IfTable* iftable = GetIfTable();
370 for (int32_t i = 0; i < iftable_count; ++i) {
371 method = iftable->GetInterface(i)->FindDeclaredVirtualMethod(name, signature);
372 if (method != nullptr) {
373 return method;
374 }
375 }
376 return nullptr;
377 }
378
FindInterfaceMethod(const StringPiece & name,const Signature & signature)379 ArtMethod* Class::FindInterfaceMethod(const StringPiece& name, const Signature& signature) {
380 // Check the current class before checking the interfaces.
381 ArtMethod* method = FindDeclaredVirtualMethod(name, signature);
382 if (method != nullptr) {
383 return method;
384 }
385
386 int32_t iftable_count = GetIfTableCount();
387 IfTable* iftable = GetIfTable();
388 for (int32_t i = 0; i < iftable_count; ++i) {
389 method = iftable->GetInterface(i)->FindDeclaredVirtualMethod(name, signature);
390 if (method != nullptr) {
391 return method;
392 }
393 }
394 return nullptr;
395 }
396
FindInterfaceMethod(const DexCache * dex_cache,uint32_t dex_method_idx)397 ArtMethod* Class::FindInterfaceMethod(const DexCache* dex_cache, uint32_t dex_method_idx) {
398 // Check the current class before checking the interfaces.
399 ArtMethod* method = FindDeclaredVirtualMethod(dex_cache, dex_method_idx);
400 if (method != nullptr) {
401 return method;
402 }
403
404 int32_t iftable_count = GetIfTableCount();
405 IfTable* iftable = GetIfTable();
406 for (int32_t i = 0; i < iftable_count; ++i) {
407 method = iftable->GetInterface(i)->FindDeclaredVirtualMethod(dex_cache, dex_method_idx);
408 if (method != nullptr) {
409 return method;
410 }
411 }
412 return nullptr;
413 }
414
FindDeclaredDirectMethod(const StringPiece & name,const StringPiece & signature)415 ArtMethod* Class::FindDeclaredDirectMethod(const StringPiece& name, const StringPiece& signature) {
416 for (size_t i = 0; i < NumDirectMethods(); ++i) {
417 ArtMethod* method = GetDirectMethod(i);
418 if (name == method->GetName() && method->GetSignature() == signature) {
419 return method;
420 }
421 }
422 return nullptr;
423 }
424
FindDeclaredDirectMethod(const StringPiece & name,const Signature & signature)425 ArtMethod* Class::FindDeclaredDirectMethod(const StringPiece& name, const Signature& signature) {
426 for (size_t i = 0; i < NumDirectMethods(); ++i) {
427 ArtMethod* method = GetDirectMethod(i);
428 if (name == method->GetName() && signature == method->GetSignature()) {
429 return method;
430 }
431 }
432 return nullptr;
433 }
434
FindDeclaredDirectMethod(const DexCache * dex_cache,uint32_t dex_method_idx)435 ArtMethod* Class::FindDeclaredDirectMethod(const DexCache* dex_cache, uint32_t dex_method_idx) {
436 if (GetDexCache() == dex_cache) {
437 for (size_t i = 0; i < NumDirectMethods(); ++i) {
438 ArtMethod* method = GetDirectMethod(i);
439 if (method->GetDexMethodIndex() == dex_method_idx) {
440 return method;
441 }
442 }
443 }
444 return nullptr;
445 }
446
FindDirectMethod(const StringPiece & name,const StringPiece & signature)447 ArtMethod* Class::FindDirectMethod(const StringPiece& name, const StringPiece& signature) {
448 for (Class* klass = this; klass != nullptr; klass = klass->GetSuperClass()) {
449 ArtMethod* method = klass->FindDeclaredDirectMethod(name, signature);
450 if (method != nullptr) {
451 return method;
452 }
453 }
454 return nullptr;
455 }
456
FindDirectMethod(const StringPiece & name,const Signature & signature)457 ArtMethod* Class::FindDirectMethod(const StringPiece& name, const Signature& signature) {
458 for (Class* klass = this; klass != nullptr; klass = klass->GetSuperClass()) {
459 ArtMethod* method = klass->FindDeclaredDirectMethod(name, signature);
460 if (method != nullptr) {
461 return method;
462 }
463 }
464 return nullptr;
465 }
466
FindDirectMethod(const DexCache * dex_cache,uint32_t dex_method_idx)467 ArtMethod* Class::FindDirectMethod(const DexCache* dex_cache, uint32_t dex_method_idx) {
468 for (Class* klass = this; klass != nullptr; klass = klass->GetSuperClass()) {
469 ArtMethod* method = klass->FindDeclaredDirectMethod(dex_cache, dex_method_idx);
470 if (method != nullptr) {
471 return method;
472 }
473 }
474 return nullptr;
475 }
476
FindDeclaredVirtualMethod(const StringPiece & name,const StringPiece & signature)477 ArtMethod* Class::FindDeclaredVirtualMethod(const StringPiece& name, const StringPiece& signature) {
478 for (size_t i = 0; i < NumVirtualMethods(); ++i) {
479 ArtMethod* method = GetVirtualMethod(i);
480 if (name == method->GetName() && method->GetSignature() == signature) {
481 return method;
482 }
483 }
484 return nullptr;
485 }
486
FindDeclaredVirtualMethod(const StringPiece & name,const Signature & signature)487 ArtMethod* Class::FindDeclaredVirtualMethod(const StringPiece& name, const Signature& signature) {
488 for (size_t i = 0; i < NumVirtualMethods(); ++i) {
489 ArtMethod* method = GetVirtualMethod(i);
490 if (name == method->GetName() && signature == method->GetSignature()) {
491 return method;
492 }
493 }
494 return nullptr;
495 }
496
FindDeclaredVirtualMethod(const DexCache * dex_cache,uint32_t dex_method_idx)497 ArtMethod* Class::FindDeclaredVirtualMethod(const DexCache* dex_cache, uint32_t dex_method_idx) {
498 if (GetDexCache() == dex_cache) {
499 for (size_t i = 0; i < NumVirtualMethods(); ++i) {
500 ArtMethod* method = GetVirtualMethod(i);
501 if (method->GetDexMethodIndex() == dex_method_idx &&
502 // A miranda method may have a different DexCache and is always created by linking,
503 // never *declared* in the class.
504 !method->IsMiranda()) {
505 return method;
506 }
507 }
508 }
509 return nullptr;
510 }
511
FindVirtualMethod(const StringPiece & name,const StringPiece & signature)512 ArtMethod* Class::FindVirtualMethod(const StringPiece& name, const StringPiece& signature) {
513 for (Class* klass = this; klass != nullptr; klass = klass->GetSuperClass()) {
514 ArtMethod* method = klass->FindDeclaredVirtualMethod(name, signature);
515 if (method != nullptr) {
516 return method;
517 }
518 }
519 return nullptr;
520 }
521
FindVirtualMethod(const StringPiece & name,const Signature & signature)522 ArtMethod* Class::FindVirtualMethod(const StringPiece& name, const Signature& signature) {
523 for (Class* klass = this; klass != nullptr; klass = klass->GetSuperClass()) {
524 ArtMethod* method = klass->FindDeclaredVirtualMethod(name, signature);
525 if (method != nullptr) {
526 return method;
527 }
528 }
529 return nullptr;
530 }
531
FindVirtualMethod(const DexCache * dex_cache,uint32_t dex_method_idx)532 ArtMethod* Class::FindVirtualMethod(const DexCache* dex_cache, uint32_t dex_method_idx) {
533 for (Class* klass = this; klass != nullptr; klass = klass->GetSuperClass()) {
534 ArtMethod* method = klass->FindDeclaredVirtualMethod(dex_cache, dex_method_idx);
535 if (method != nullptr) {
536 return method;
537 }
538 }
539 return nullptr;
540 }
541
FindClassInitializer()542 ArtMethod* Class::FindClassInitializer() {
543 for (size_t i = 0; i < NumDirectMethods(); ++i) {
544 ArtMethod* method = GetDirectMethod(i);
545 if (method->IsClassInitializer()) {
546 DCHECK_STREQ(method->GetName(), "<clinit>");
547 DCHECK_STREQ(method->GetSignature().ToString().c_str(), "()V");
548 return method;
549 }
550 }
551 return nullptr;
552 }
553
FindDeclaredInstanceField(const StringPiece & name,const StringPiece & type)554 ArtField* Class::FindDeclaredInstanceField(const StringPiece& name, const StringPiece& type) {
555 // Is the field in this class?
556 // Interfaces are not relevant because they can't contain instance fields.
557 for (size_t i = 0; i < NumInstanceFields(); ++i) {
558 ArtField* f = GetInstanceField(i);
559 if (name == f->GetName() && type == f->GetTypeDescriptor()) {
560 return f;
561 }
562 }
563 return nullptr;
564 }
565
FindDeclaredInstanceField(const DexCache * dex_cache,uint32_t dex_field_idx)566 ArtField* Class::FindDeclaredInstanceField(const DexCache* dex_cache, uint32_t dex_field_idx) {
567 if (GetDexCache() == dex_cache) {
568 for (size_t i = 0; i < NumInstanceFields(); ++i) {
569 ArtField* f = GetInstanceField(i);
570 if (f->GetDexFieldIndex() == dex_field_idx) {
571 return f;
572 }
573 }
574 }
575 return nullptr;
576 }
577
FindInstanceField(const StringPiece & name,const StringPiece & type)578 ArtField* Class::FindInstanceField(const StringPiece& name, const StringPiece& type) {
579 // Is the field in this class, or any of its superclasses?
580 // Interfaces are not relevant because they can't contain instance fields.
581 for (Class* c = this; c != nullptr; c = c->GetSuperClass()) {
582 ArtField* f = c->FindDeclaredInstanceField(name, type);
583 if (f != nullptr) {
584 return f;
585 }
586 }
587 return nullptr;
588 }
589
FindInstanceField(const DexCache * dex_cache,uint32_t dex_field_idx)590 ArtField* Class::FindInstanceField(const DexCache* dex_cache, uint32_t dex_field_idx) {
591 // Is the field in this class, or any of its superclasses?
592 // Interfaces are not relevant because they can't contain instance fields.
593 for (Class* c = this; c != nullptr; c = c->GetSuperClass()) {
594 ArtField* f = c->FindDeclaredInstanceField(dex_cache, dex_field_idx);
595 if (f != nullptr) {
596 return f;
597 }
598 }
599 return nullptr;
600 }
601
FindDeclaredStaticField(const StringPiece & name,const StringPiece & type)602 ArtField* Class::FindDeclaredStaticField(const StringPiece& name, const StringPiece& type) {
603 DCHECK(type != nullptr);
604 for (size_t i = 0; i < NumStaticFields(); ++i) {
605 ArtField* f = GetStaticField(i);
606 if (name == f->GetName() && type == f->GetTypeDescriptor()) {
607 return f;
608 }
609 }
610 return nullptr;
611 }
612
FindDeclaredStaticField(const DexCache * dex_cache,uint32_t dex_field_idx)613 ArtField* Class::FindDeclaredStaticField(const DexCache* dex_cache, uint32_t dex_field_idx) {
614 if (dex_cache == GetDexCache()) {
615 for (size_t i = 0; i < NumStaticFields(); ++i) {
616 ArtField* f = GetStaticField(i);
617 if (f->GetDexFieldIndex() == dex_field_idx) {
618 return f;
619 }
620 }
621 }
622 return nullptr;
623 }
624
FindStaticField(Thread * self,Handle<Class> klass,const StringPiece & name,const StringPiece & type)625 ArtField* Class::FindStaticField(Thread* self, Handle<Class> klass, const StringPiece& name,
626 const StringPiece& type) {
627 // Is the field in this class (or its interfaces), or any of its
628 // superclasses (or their interfaces)?
629 for (Class* k = klass.Get(); k != nullptr; k = k->GetSuperClass()) {
630 // Is the field in this class?
631 ArtField* f = k->FindDeclaredStaticField(name, type);
632 if (f != nullptr) {
633 return f;
634 }
635 // Wrap k incase it moves during GetDirectInterface.
636 StackHandleScope<1> hs(self);
637 HandleWrapper<mirror::Class> h_k(hs.NewHandleWrapper(&k));
638 // Is this field in any of this class' interfaces?
639 for (uint32_t i = 0; i < h_k->NumDirectInterfaces(); ++i) {
640 StackHandleScope<1> hs(self);
641 Handle<mirror::Class> interface(hs.NewHandle(GetDirectInterface(self, h_k, i)));
642 f = FindStaticField(self, interface, name, type);
643 if (f != nullptr) {
644 return f;
645 }
646 }
647 }
648 return nullptr;
649 }
650
FindStaticField(Thread * self,Handle<Class> klass,const DexCache * dex_cache,uint32_t dex_field_idx)651 ArtField* Class::FindStaticField(Thread* self, Handle<Class> klass, const DexCache* dex_cache,
652 uint32_t dex_field_idx) {
653 for (Class* k = klass.Get(); k != nullptr; k = k->GetSuperClass()) {
654 // Is the field in this class?
655 ArtField* f = k->FindDeclaredStaticField(dex_cache, dex_field_idx);
656 if (f != nullptr) {
657 return f;
658 }
659 // Wrap k incase it moves during GetDirectInterface.
660 StackHandleScope<1> hs(self);
661 HandleWrapper<mirror::Class> h_k(hs.NewHandleWrapper(&k));
662 // Is this field in any of this class' interfaces?
663 for (uint32_t i = 0; i < h_k->NumDirectInterfaces(); ++i) {
664 StackHandleScope<1> hs(self);
665 Handle<mirror::Class> interface(hs.NewHandle(GetDirectInterface(self, h_k, i)));
666 f = FindStaticField(self, interface, dex_cache, dex_field_idx);
667 if (f != nullptr) {
668 return f;
669 }
670 }
671 }
672 return nullptr;
673 }
674
FindField(Thread * self,Handle<Class> klass,const StringPiece & name,const StringPiece & type)675 ArtField* Class::FindField(Thread* self, Handle<Class> klass, const StringPiece& name,
676 const StringPiece& type) {
677 // Find a field using the JLS field resolution order
678 for (Class* k = klass.Get(); k != nullptr; k = k->GetSuperClass()) {
679 // Is the field in this class?
680 ArtField* f = k->FindDeclaredInstanceField(name, type);
681 if (f != nullptr) {
682 return f;
683 }
684 f = k->FindDeclaredStaticField(name, type);
685 if (f != nullptr) {
686 return f;
687 }
688 // Is this field in any of this class' interfaces?
689 StackHandleScope<1> hs(self);
690 HandleWrapper<mirror::Class> h_k(hs.NewHandleWrapper(&k));
691 for (uint32_t i = 0; i < h_k->NumDirectInterfaces(); ++i) {
692 StackHandleScope<1> hs(self);
693 Handle<mirror::Class> interface(hs.NewHandle(GetDirectInterface(self, h_k, i)));
694 f = interface->FindStaticField(self, interface, name, type);
695 if (f != nullptr) {
696 return f;
697 }
698 }
699 }
700 return nullptr;
701 }
702
SetPreverifiedFlagOnMethods(mirror::ObjectArray<mirror::ArtMethod> * methods)703 static void SetPreverifiedFlagOnMethods(mirror::ObjectArray<mirror::ArtMethod>* methods)
704 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
705 if (methods != nullptr) {
706 for (int32_t index = 0, end = methods->GetLength(); index < end; ++index) {
707 mirror::ArtMethod* method = methods->GetWithoutChecks(index);
708 DCHECK(method != nullptr);
709 if (!method->IsNative() && !method->IsAbstract()) {
710 method->SetPreverified();
711 }
712 }
713 }
714 }
715
SetPreverifiedFlagOnAllMethods()716 void Class::SetPreverifiedFlagOnAllMethods() {
717 DCHECK(IsVerified());
718 SetPreverifiedFlagOnMethods(GetDirectMethods());
719 SetPreverifiedFlagOnMethods(GetVirtualMethods());
720 }
721
GetDescriptor(std::string * storage)722 const char* Class::GetDescriptor(std::string* storage) {
723 if (IsPrimitive()) {
724 return Primitive::Descriptor(GetPrimitiveType());
725 } else if (IsArrayClass()) {
726 return GetArrayDescriptor(storage);
727 } else if (IsProxyClass()) {
728 *storage = Runtime::Current()->GetClassLinker()->GetDescriptorForProxy(this);
729 return storage->c_str();
730 } else {
731 const DexFile& dex_file = GetDexFile();
732 const DexFile::TypeId& type_id = dex_file.GetTypeId(GetClassDef()->class_idx_);
733 return dex_file.GetTypeDescriptor(type_id);
734 }
735 }
736
GetArrayDescriptor(std::string * storage)737 const char* Class::GetArrayDescriptor(std::string* storage) {
738 std::string temp;
739 const char* elem_desc = GetComponentType()->GetDescriptor(&temp);
740 *storage = "[";
741 *storage += elem_desc;
742 return storage->c_str();
743 }
744
GetClassDef()745 const DexFile::ClassDef* Class::GetClassDef() {
746 uint16_t class_def_idx = GetDexClassDefIndex();
747 if (class_def_idx == DexFile::kDexNoIndex16) {
748 return nullptr;
749 }
750 return &GetDexFile().GetClassDef(class_def_idx);
751 }
752
GetDirectInterfaceTypeIdx(uint32_t idx)753 uint16_t Class::GetDirectInterfaceTypeIdx(uint32_t idx) {
754 DCHECK(!IsPrimitive());
755 DCHECK(!IsArrayClass());
756 return GetInterfaceTypeList()->GetTypeItem(idx).type_idx_;
757 }
758
GetDirectInterface(Thread * self,Handle<mirror::Class> klass,uint32_t idx)759 mirror::Class* Class::GetDirectInterface(Thread* self, Handle<mirror::Class> klass, uint32_t idx) {
760 DCHECK(klass.Get() != nullptr);
761 DCHECK(!klass->IsPrimitive());
762 if (klass->IsArrayClass()) {
763 ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
764 if (idx == 0) {
765 return class_linker->FindSystemClass(self, "Ljava/lang/Cloneable;");
766 } else {
767 DCHECK_EQ(1U, idx);
768 return class_linker->FindSystemClass(self, "Ljava/io/Serializable;");
769 }
770 } else if (klass->IsProxyClass()) {
771 mirror::ObjectArray<mirror::Class>* interfaces = klass.Get()->GetInterfaces();
772 DCHECK(interfaces != nullptr);
773 return interfaces->Get(idx);
774 } else {
775 uint16_t type_idx = klass->GetDirectInterfaceTypeIdx(idx);
776 mirror::Class* interface = klass->GetDexCache()->GetResolvedType(type_idx);
777 if (interface == nullptr) {
778 interface = Runtime::Current()->GetClassLinker()->ResolveType(klass->GetDexFile(), type_idx,
779 klass.Get());
780 CHECK(interface != nullptr || self->IsExceptionPending());
781 }
782 return interface;
783 }
784 }
785
GetSourceFile()786 const char* Class::GetSourceFile() {
787 const DexFile& dex_file = GetDexFile();
788 const DexFile::ClassDef* dex_class_def = GetClassDef();
789 if (dex_class_def == nullptr) {
790 // Generated classes have no class def.
791 return nullptr;
792 }
793 return dex_file.GetSourceFile(*dex_class_def);
794 }
795
GetLocation()796 std::string Class::GetLocation() {
797 mirror::DexCache* dex_cache = GetDexCache();
798 if (dex_cache != nullptr && !IsProxyClass()) {
799 return dex_cache->GetLocation()->ToModifiedUtf8();
800 }
801 // Arrays and proxies are generated and have no corresponding dex file location.
802 return "generated class";
803 }
804
GetInterfaceTypeList()805 const DexFile::TypeList* Class::GetInterfaceTypeList() {
806 const DexFile::ClassDef* class_def = GetClassDef();
807 if (class_def == nullptr) {
808 return nullptr;
809 }
810 return GetDexFile().GetInterfacesList(*class_def);
811 }
812
PopulateEmbeddedImtAndVTable(StackHandleScope<kImtSize> * imt_handle_scope)813 void Class::PopulateEmbeddedImtAndVTable(StackHandleScope<kImtSize>* imt_handle_scope) {
814 for (uint32_t i = 0; i < kImtSize; i++) {
815 // Replace null with conflict.
816 mirror::Object* obj = imt_handle_scope->GetReference(i);
817 DCHECK(obj != nullptr);
818 SetEmbeddedImTableEntry(i, obj->AsArtMethod());
819 }
820
821 ObjectArray<ArtMethod>* table = GetVTableDuringLinking();
822 CHECK(table != nullptr) << PrettyClass(this);
823 SetEmbeddedVTableLength(table->GetLength());
824 for (int32_t i = 0; i < table->GetLength(); i++) {
825 SetEmbeddedVTableEntry(i, table->GetWithoutChecks(i));
826 }
827
828 // Keep java.lang.Object class's vtable around for since it's easier
829 // to be reused by array classes during their linking.
830 if (!IsObjectClass()) {
831 SetVTable(nullptr);
832 }
833 }
834
835 // The pre-fence visitor for Class::CopyOf().
836 class CopyClassVisitor {
837 public:
CopyClassVisitor(Thread * self,Handle<mirror::Class> * orig,size_t new_length,size_t copy_bytes,StackHandleScope<mirror::Class::kImtSize> * imt_handle_scope)838 explicit CopyClassVisitor(Thread* self, Handle<mirror::Class>* orig,
839 size_t new_length, size_t copy_bytes,
840 StackHandleScope<mirror::Class::kImtSize>* imt_handle_scope)
841 : self_(self), orig_(orig), new_length_(new_length),
842 copy_bytes_(copy_bytes), imt_handle_scope_(imt_handle_scope) {
843 }
844
operator ()(Object * obj,size_t usable_size) const845 void operator()(Object* obj, size_t usable_size) const
846 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
847 UNUSED(usable_size);
848 mirror::Class* new_class_obj = obj->AsClass();
849 mirror::Object::CopyObject(self_, new_class_obj, orig_->Get(), copy_bytes_);
850 new_class_obj->SetStatus(Class::kStatusResolving, self_);
851 new_class_obj->PopulateEmbeddedImtAndVTable(imt_handle_scope_);
852 new_class_obj->SetClassSize(new_length_);
853 }
854
855 private:
856 Thread* const self_;
857 Handle<mirror::Class>* const orig_;
858 const size_t new_length_;
859 const size_t copy_bytes_;
860 StackHandleScope<mirror::Class::kImtSize>* const imt_handle_scope_;
861 DISALLOW_COPY_AND_ASSIGN(CopyClassVisitor);
862 };
863
CopyOf(Thread * self,int32_t new_length,StackHandleScope<kImtSize> * imt_handle_scope)864 Class* Class::CopyOf(Thread* self, int32_t new_length,
865 StackHandleScope<kImtSize>* imt_handle_scope) {
866 DCHECK_GE(new_length, static_cast<int32_t>(sizeof(Class)));
867 // We may get copied by a compacting GC.
868 StackHandleScope<1> hs(self);
869 Handle<mirror::Class> h_this(hs.NewHandle(this));
870 gc::Heap* heap = Runtime::Current()->GetHeap();
871 // The num_bytes (3rd param) is sizeof(Class) as opposed to SizeOf()
872 // to skip copying the tail part that we will overwrite here.
873 CopyClassVisitor visitor(self, &h_this, new_length, sizeof(Class), imt_handle_scope);
874 mirror::Object* new_class =
875 kMovingClasses
876 ? heap->AllocObject<true>(self, java_lang_Class_.Read(), new_length, visitor)
877 : heap->AllocNonMovableObject<true>(self, java_lang_Class_.Read(), new_length, visitor);
878 if (UNLIKELY(new_class == nullptr)) {
879 CHECK(self->IsExceptionPending()); // Expect an OOME.
880 return nullptr;
881 }
882 return new_class->AsClass();
883 }
884
885 } // namespace mirror
886 } // namespace art
887