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1 /*
2  * Copyright (C) 2012 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_ENTRYPOINTS_ENTRYPOINT_UTILS_INL_H_
18 #define ART_RUNTIME_ENTRYPOINTS_ENTRYPOINT_UTILS_INL_H_
19 
20 #include "entrypoint_utils.h"
21 
22 #include <sstream>
23 
24 #include "art_field-inl.h"
25 #include "art_method-inl.h"
26 #include "base/enums.h"
27 #include "base/sdk_version.h"
28 #include "class_linker-inl.h"
29 #include "common_throws.h"
30 #include "dex/dex_file.h"
31 #include "dex/invoke_type.h"
32 #include "entrypoints/quick/callee_save_frame.h"
33 #include "handle_scope-inl.h"
34 #include "imt_conflict_table.h"
35 #include "imtable-inl.h"
36 #include "indirect_reference_table.h"
37 #include "mirror/array-alloc-inl.h"
38 #include "mirror/class-alloc-inl.h"
39 #include "mirror/class-inl.h"
40 #include "mirror/object-inl.h"
41 #include "mirror/throwable.h"
42 #include "nth_caller_visitor.h"
43 #include "oat_file.h"
44 #include "reflective_handle_scope-inl.h"
45 #include "runtime.h"
46 #include "stack_map.h"
47 #include "thread.h"
48 #include "well_known_classes.h"
49 
50 namespace art {
51 
GetResolvedMethodErrorString(ClassLinker * class_linker,ArtMethod * inlined_method,ArtMethod * parent_method,ArtMethod * outer_method,ObjPtr<mirror::DexCache> dex_cache,MethodInfo method_info)52 inline std::string GetResolvedMethodErrorString(ClassLinker* class_linker,
53                                                 ArtMethod* inlined_method,
54                                                 ArtMethod* parent_method,
55                                                 ArtMethod* outer_method,
56                                                 ObjPtr<mirror::DexCache> dex_cache,
57                                                 MethodInfo method_info)
58     REQUIRES_SHARED(Locks::mutator_lock_) {
59   const uint32_t method_index = method_info.GetMethodIndex();
60 
61   std::stringstream error_ss;
62   std::string separator = "";
63   error_ss << "BCP vector {";
64   for (const DexFile* df : class_linker->GetBootClassPath()) {
65     error_ss << separator << df << "(" << df->GetLocation() << ")";
66     separator = ", ";
67   }
68   error_ss << "}. oat_dex_files vector: {";
69   separator = "";
70   for (const OatDexFile* odf_value :
71        parent_method->GetDexFile()->GetOatDexFile()->GetOatFile()->GetOatDexFiles()) {
72     error_ss << separator << odf_value << "(" << odf_value->GetDexFileLocation() << ")";
73     separator = ", ";
74   }
75   error_ss << "}. ";
76   if (inlined_method != nullptr) {
77     error_ss << "Inlined method: " << inlined_method->PrettyMethod() << " ("
78              << inlined_method->GetDexFile()->GetLocation() << "/"
79              << static_cast<const void*>(inlined_method->GetDexFile()) << "). ";
80   } else if (dex_cache != nullptr) {
81     error_ss << "Could not find an inlined method from an .oat file, using dex_cache to print the "
82                 "inlined method: "
83              << dex_cache->GetDexFile()->PrettyMethod(method_index) << " ("
84              << dex_cache->GetDexFile()->GetLocation() << "/"
85              << static_cast<const void*>(dex_cache->GetDexFile()) << "). ";
86   } else {
87     error_ss << "Both inlined_method and dex_cache are null. This means that we had an OOB access "
88              << "to either bcp_dex_files or oat_dex_files. ";
89   }
90   error_ss << "The outer method is: " << parent_method->PrettyMethod() << " ("
91            << parent_method->GetDexFile()->GetLocation() << "/"
92            << static_cast<const void*>(parent_method->GetDexFile())
93            << "). The outermost method in the chain is: " << outer_method->PrettyMethod() << " ("
94            << outer_method->GetDexFile()->GetLocation() << "/"
95            << static_cast<const void*>(outer_method->GetDexFile())
96            << "). MethodInfo: method_index=" << std::dec << method_index
97            << ", is_in_bootclasspath=" << std::boolalpha
98            << (method_info.GetDexFileIndexKind() == MethodInfo::kKindBCP) << std::noboolalpha
99            << ", dex_file_index=" << std::dec << method_info.GetDexFileIndex() << ".";
100   return error_ss.str();
101 }
102 
GetResolvedMethod(ArtMethod * outer_method,const CodeInfo & code_info,const BitTableRange<InlineInfo> & inline_infos)103 inline ArtMethod* GetResolvedMethod(ArtMethod* outer_method,
104                                     const CodeInfo& code_info,
105                                     const BitTableRange<InlineInfo>& inline_infos)
106     REQUIRES_SHARED(Locks::mutator_lock_) {
107   DCHECK(!outer_method->IsObsolete());
108 
109   // This method is being used by artQuickResolutionTrampoline, before it sets up
110   // the passed parameters in a GC friendly way. Therefore we must never be
111   // suspended while executing it.
112   ScopedAssertNoThreadSuspension sants(__FUNCTION__);
113 
114   {
115     InlineInfo inline_info = inline_infos.back();
116 
117     if (inline_info.EncodesArtMethod()) {
118       return inline_info.GetArtMethod();
119     }
120 
121     uint32_t method_index = code_info.GetMethodIndexOf(inline_info);
122     if (inline_info.GetDexPc() == static_cast<uint32_t>(-1)) {
123       // "charAt" special case. It is the only non-leaf method we inline across dex files.
124       ArtMethod* inlined_method = WellKnownClasses::java_lang_String_charAt;
125       DCHECK_EQ(inlined_method->GetDexMethodIndex(), method_index);
126       return inlined_method;
127     }
128   }
129 
130   // Find which method did the call in the inlining hierarchy.
131   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
132   ArtMethod* method = outer_method;
133   for (InlineInfo inline_info : inline_infos) {
134     DCHECK(!inline_info.EncodesArtMethod());
135     DCHECK_NE(inline_info.GetDexPc(), static_cast<uint32_t>(-1));
136     MethodInfo method_info = code_info.GetMethodInfoOf(inline_info);
137     uint32_t method_index = method_info.GetMethodIndex();
138     const uint32_t dex_file_index = method_info.GetDexFileIndex();
139     ArtMethod* inlined_method = nullptr;
140     ObjPtr<mirror::DexCache> dex_cache = nullptr;
141     if (method_info.HasDexFileIndex()) {
142       if (method_info.GetDexFileIndexKind() == MethodInfo::kKindBCP) {
143         ArrayRef<const DexFile* const> bcp_dex_files(class_linker->GetBootClassPath());
144         DCHECK_LT(dex_file_index, bcp_dex_files.size())
145             << "OOB access to bcp_dex_files. Dumping info: "
146             << GetResolvedMethodErrorString(
147                    class_linker, inlined_method, method, outer_method, dex_cache, method_info);
148         const DexFile* dex_file = bcp_dex_files[dex_file_index];
149         DCHECK_NE(dex_file, nullptr);
150         dex_cache = class_linker->FindDexCache(Thread::Current(), *dex_file);
151       } else {
152         ArrayRef<const OatDexFile* const> oat_dex_files(
153             outer_method->GetDexFile()->GetOatDexFile()->GetOatFile()->GetOatDexFiles());
154         DCHECK_LT(dex_file_index, oat_dex_files.size())
155             << "OOB access to oat_dex_files. Dumping info: "
156             << GetResolvedMethodErrorString(
157                    class_linker, inlined_method, method, outer_method, dex_cache, method_info);
158         const OatDexFile* odf = oat_dex_files[dex_file_index];
159         DCHECK_NE(odf, nullptr);
160         dex_cache = class_linker->FindDexCache(Thread::Current(), *odf);
161       }
162     } else {
163       dex_cache = outer_method->GetDexCache();
164     }
165     inlined_method =
166         class_linker->LookupResolvedMethod(method_index, dex_cache, dex_cache->GetClassLoader());
167 
168     if (UNLIKELY(inlined_method == nullptr)) {
169       LOG(FATAL) << GetResolvedMethodErrorString(
170           class_linker, inlined_method, method, outer_method, dex_cache, method_info);
171       UNREACHABLE();
172     }
173     DCHECK(!inlined_method->IsRuntimeMethod());
174     DCHECK_EQ(inlined_method->GetDexFile() == outer_method->GetDexFile(),
175               dex_file_index == MethodInfo::kSameDexFile)
176         << GetResolvedMethodErrorString(
177                class_linker, inlined_method, method, outer_method, dex_cache, method_info);
178     method = inlined_method;
179   }
180 
181   return method;
182 }
183 
184 ALWAYS_INLINE
CheckClassInitializedForObjectAlloc(ObjPtr<mirror::Class> klass,Thread * self,bool * slow_path)185 inline ObjPtr<mirror::Class> CheckClassInitializedForObjectAlloc(ObjPtr<mirror::Class> klass,
186                                                                  Thread* self,
187                                                                  bool* slow_path)
188     REQUIRES_SHARED(Locks::mutator_lock_)
189     REQUIRES(!Roles::uninterruptible_) {
190   if (UNLIKELY(!klass->IsVisiblyInitialized())) {
191     StackHandleScope<1> hs(self);
192     Handle<mirror::Class> h_class(hs.NewHandle(klass));
193     // EnsureInitialized (the class initializer) might cause a GC.
194     // may cause us to suspend meaning that another thread may try to
195     // change the allocator while we are stuck in the entrypoints of
196     // an old allocator. Also, the class initialization may fail. To
197     // handle these cases we mark the slow path boolean as true so
198     // that the caller knows to check the allocator type to see if it
199     // has changed and to null-check the return value in case the
200     // initialization fails.
201     *slow_path = true;
202     if (!Runtime::Current()->GetClassLinker()->EnsureInitialized(self, h_class, true, true)) {
203       DCHECK(self->IsExceptionPending());
204       return nullptr;  // Failure
205     } else {
206       DCHECK(!self->IsExceptionPending());
207     }
208     return h_class.Get();
209   }
210   return klass;
211 }
212 
CheckObjectAlloc(ObjPtr<mirror::Class> klass,Thread * self,bool * slow_path)213 ALWAYS_INLINE inline ObjPtr<mirror::Class> CheckObjectAlloc(ObjPtr<mirror::Class> klass,
214                                                             Thread* self,
215                                                             bool* slow_path)
216     REQUIRES_SHARED(Locks::mutator_lock_)
217     REQUIRES(!Roles::uninterruptible_) {
218   if (UNLIKELY(!klass->IsInstantiable())) {
219     self->ThrowNewException("Ljava/lang/InstantiationError;", klass->PrettyDescriptor().c_str());
220     *slow_path = true;
221     return nullptr;  // Failure
222   }
223   if (UNLIKELY(klass->IsClassClass())) {
224     ThrowIllegalAccessError(nullptr, "Class %s is inaccessible",
225                             klass->PrettyDescriptor().c_str());
226     *slow_path = true;
227     return nullptr;  // Failure
228   }
229   return CheckClassInitializedForObjectAlloc(klass, self, slow_path);
230 }
231 
232 // Allocate an instance of klass. Throws InstantationError if klass is not instantiable,
233 // or IllegalAccessError if klass is j.l.Class. Performs a clinit check too.
234 template <bool kInstrumented>
235 ALWAYS_INLINE
AllocObjectFromCode(ObjPtr<mirror::Class> klass,Thread * self,gc::AllocatorType allocator_type)236 inline ObjPtr<mirror::Object> AllocObjectFromCode(ObjPtr<mirror::Class> klass,
237                                                   Thread* self,
238                                                   gc::AllocatorType allocator_type) {
239   bool slow_path = false;
240   klass = CheckObjectAlloc(klass, self, &slow_path);
241   if (UNLIKELY(slow_path)) {
242     if (klass == nullptr) {
243       return nullptr;
244     }
245     // CheckObjectAlloc can cause thread suspension which means we may now be instrumented.
246     return klass->Alloc</*kInstrumented=*/true>(
247         self,
248         Runtime::Current()->GetHeap()->GetCurrentAllocator());
249   }
250   DCHECK(klass != nullptr);
251   return klass->Alloc<kInstrumented>(self, allocator_type);
252 }
253 
254 // Given the context of a calling Method and a resolved class, create an instance.
255 template <bool kInstrumented>
256 ALWAYS_INLINE
AllocObjectFromCodeResolved(ObjPtr<mirror::Class> klass,Thread * self,gc::AllocatorType allocator_type)257 inline ObjPtr<mirror::Object> AllocObjectFromCodeResolved(ObjPtr<mirror::Class> klass,
258                                                           Thread* self,
259                                                           gc::AllocatorType allocator_type) {
260   DCHECK(klass != nullptr);
261   bool slow_path = false;
262   klass = CheckClassInitializedForObjectAlloc(klass, self, &slow_path);
263   if (UNLIKELY(slow_path)) {
264     if (klass == nullptr) {
265       return nullptr;
266     }
267     gc::Heap* heap = Runtime::Current()->GetHeap();
268     // Pass in kNoAddFinalizer since the object cannot be finalizable.
269     // CheckClassInitializedForObjectAlloc can cause thread suspension which means we may now be
270     // instrumented.
271     return klass->Alloc</*kInstrumented=*/true, mirror::Class::AddFinalizer::kNoAddFinalizer>(
272         self, heap->GetCurrentAllocator());
273   }
274   // Pass in kNoAddFinalizer since the object cannot be finalizable.
275   return klass->Alloc<kInstrumented,
276                       mirror::Class::AddFinalizer::kNoAddFinalizer>(self, allocator_type);
277 }
278 
279 // Given the context of a calling Method and an initialized class, create an instance.
280 template <bool kInstrumented>
281 ALWAYS_INLINE
AllocObjectFromCodeInitialized(ObjPtr<mirror::Class> klass,Thread * self,gc::AllocatorType allocator_type)282 inline ObjPtr<mirror::Object> AllocObjectFromCodeInitialized(ObjPtr<mirror::Class> klass,
283                                                              Thread* self,
284                                                              gc::AllocatorType allocator_type) {
285   DCHECK(klass != nullptr);
286   // Pass in kNoAddFinalizer since the object cannot be finalizable.
287   return klass->Alloc<kInstrumented,
288                       mirror::Class::AddFinalizer::kNoAddFinalizer>(self, allocator_type);
289 }
290 
291 
292 ALWAYS_INLINE
CheckArrayAlloc(dex::TypeIndex type_idx,int32_t component_count,ArtMethod * method,bool * slow_path)293 inline ObjPtr<mirror::Class> CheckArrayAlloc(dex::TypeIndex type_idx,
294                                              int32_t component_count,
295                                              ArtMethod* method,
296                                              bool* slow_path) {
297   if (UNLIKELY(component_count < 0)) {
298     ThrowNegativeArraySizeException(component_count);
299     *slow_path = true;
300     return nullptr;  // Failure
301   }
302   ObjPtr<mirror::Class> klass = method->GetDexCache()->GetResolvedType(type_idx);
303   if (UNLIKELY(klass == nullptr)) {  // Not in dex cache so try to resolve
304     ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
305     klass = class_linker->ResolveType(type_idx, method);
306     *slow_path = true;
307     if (klass == nullptr) {  // Error
308       DCHECK(Thread::Current()->IsExceptionPending());
309       return nullptr;  // Failure
310     }
311     CHECK(klass->IsArrayClass()) << klass->PrettyClass();
312   }
313   if (!method->SkipAccessChecks()) {
314     ObjPtr<mirror::Class> referrer = method->GetDeclaringClass();
315     if (UNLIKELY(!referrer->CanAccess(klass))) {
316       ThrowIllegalAccessErrorClass(referrer, klass);
317       *slow_path = true;
318       return nullptr;  // Failure
319     }
320   }
321   return klass;
322 }
323 
324 // Given the context of a calling Method, use its DexCache to resolve a type to an array Class. If
325 // it cannot be resolved, throw an error. If it can, use it to create an array.
326 // When verification/compiler hasn't been able to verify access, optionally perform an access
327 // check.
328 template <bool kInstrumented>
329 ALWAYS_INLINE
AllocArrayFromCode(dex::TypeIndex type_idx,int32_t component_count,ArtMethod * method,Thread * self,gc::AllocatorType allocator_type)330 inline ObjPtr<mirror::Array> AllocArrayFromCode(dex::TypeIndex type_idx,
331                                                 int32_t component_count,
332                                                 ArtMethod* method,
333                                                 Thread* self,
334                                                 gc::AllocatorType allocator_type) {
335   bool slow_path = false;
336   ObjPtr<mirror::Class> klass = CheckArrayAlloc(type_idx, component_count, method, &slow_path);
337   if (UNLIKELY(slow_path)) {
338     if (klass == nullptr) {
339       return nullptr;
340     }
341     gc::Heap* heap = Runtime::Current()->GetHeap();
342     // CheckArrayAlloc can cause thread suspension which means we may now be instrumented.
343     return mirror::Array::Alloc</*kInstrumented=*/true>(self,
344                                                         klass,
345                                                         component_count,
346                                                         klass->GetComponentSizeShift(),
347                                                         heap->GetCurrentAllocator());
348   }
349   return mirror::Array::Alloc<kInstrumented>(self,
350                                              klass,
351                                              component_count,
352                                              klass->GetComponentSizeShift(),
353                                              allocator_type);
354 }
355 
356 template <bool kInstrumented>
357 ALWAYS_INLINE
AllocArrayFromCodeResolved(ObjPtr<mirror::Class> klass,int32_t component_count,Thread * self,gc::AllocatorType allocator_type)358 inline ObjPtr<mirror::Array> AllocArrayFromCodeResolved(ObjPtr<mirror::Class> klass,
359                                                         int32_t component_count,
360                                                         Thread* self,
361                                                         gc::AllocatorType allocator_type) {
362   DCHECK(klass != nullptr);
363   if (UNLIKELY(component_count < 0)) {
364     ThrowNegativeArraySizeException(component_count);
365     return nullptr;  // Failure
366   }
367   // No need to retry a slow-path allocation as the above code won't cause a GC or thread
368   // suspension.
369   return mirror::Array::Alloc<kInstrumented>(self,
370                                              klass,
371                                              component_count,
372                                              klass->GetComponentSizeShift(),
373                                              allocator_type);
374 }
375 
376 FLATTEN
ResolveFieldWithAccessChecks(Thread * self,ClassLinker * class_linker,uint16_t field_index,ArtMethod * caller,bool is_static,bool is_put,size_t resolve_field_type)377 inline ArtField* ResolveFieldWithAccessChecks(Thread* self,
378                                               ClassLinker* class_linker,
379                                               uint16_t field_index,
380                                               ArtMethod* caller,
381                                               bool is_static,
382                                               bool is_put,
383                                               size_t resolve_field_type)  // Resolve if not zero
384     REQUIRES_SHARED(Locks::mutator_lock_) {
385   if (caller->SkipAccessChecks()) {
386     return class_linker->ResolveField(field_index, caller, is_static);
387   }
388 
389   caller = caller->GetInterfaceMethodIfProxy(class_linker->GetImagePointerSize());
390 
391   StackHandleScope<2> hs(self);
392   Handle<mirror::DexCache> h_dex_cache(hs.NewHandle(caller->GetDexCache()));
393   Handle<mirror::ClassLoader> h_class_loader(hs.NewHandle(caller->GetClassLoader()));
394 
395   ArtField* resolved_field = class_linker->ResolveFieldJLS(field_index,
396                                                            h_dex_cache,
397                                                            h_class_loader);
398   if (resolved_field == nullptr) {
399     return nullptr;
400   }
401 
402   ObjPtr<mirror::Class> fields_class = resolved_field->GetDeclaringClass();
403   if (UNLIKELY(resolved_field->IsStatic() != is_static)) {
404     ThrowIncompatibleClassChangeErrorField(resolved_field, is_static, caller);
405     return nullptr;
406   }
407   ObjPtr<mirror::Class> referring_class = caller->GetDeclaringClass();
408   if (UNLIKELY(!referring_class->CheckResolvedFieldAccess(fields_class,
409                                                           resolved_field,
410                                                           caller->GetDexCache(),
411                                                           field_index))) {
412     DCHECK(self->IsExceptionPending());
413     return nullptr;
414   }
415   if (UNLIKELY(is_put && !resolved_field->CanBeChangedBy(caller))) {
416     ThrowIllegalAccessErrorFinalField(caller, resolved_field);
417     return nullptr;
418   }
419 
420   if (resolve_field_type != 0u) {
421     StackArtFieldHandleScope<1> rhs(self);
422     ReflectiveHandle<ArtField> field_handle(rhs.NewHandle(resolved_field));
423     if (resolved_field->ResolveType().IsNull()) {
424       DCHECK(self->IsExceptionPending());
425       return nullptr;
426     }
427     resolved_field = field_handle.Get();
428   }
429   return resolved_field;
430 }
431 
432 template<FindFieldType type>
433 inline ArtField* FindFieldFromCode(uint32_t field_idx,
434                                    ArtMethod* referrer,
435                                    Thread* self,
436                                    bool should_resolve_type = false) {
437   constexpr bool is_set = (type & FindFieldFlags::WriteBit) != 0;
438   constexpr bool is_static = (type & FindFieldFlags::StaticBit) != 0;
439   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
440   ArtField* resolved_field = ResolveFieldWithAccessChecks(
441       self, class_linker, field_idx, referrer, is_static, is_set, should_resolve_type ? 1u : 0u);
442   if (!is_static || resolved_field == nullptr) {
443     // instance fields must be being accessed on an initialized class
444     return resolved_field;
445   } else {
446     ObjPtr<mirror::Class> fields_class = resolved_field->GetDeclaringClass();
447     // If the class is initialized we're done.
448     if (LIKELY(fields_class->IsVisiblyInitialized())) {
449       return resolved_field;
450     } else {
451       StackHandleScope<1> hs(self);
452       StackArtFieldHandleScope<1> rhs(self);
453       ReflectiveHandle<ArtField> resolved_field_handle(rhs.NewHandle(resolved_field));
454       if (LIKELY(class_linker->EnsureInitialized(self, hs.NewHandle(fields_class), true, true))) {
455         // Otherwise let's ensure the class is initialized before resolving the field.
456         return resolved_field_handle.Get();
457       }
458       DCHECK(self->IsExceptionPending());  // Throw exception and unwind
459       return nullptr;  // Failure.
460     }
461   }
462 }
463 
464 // NOLINTBEGIN(bugprone-macro-parentheses)
465 // Explicit template declarations of FindFieldFromCode for all field access types.
466 #define EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(_type) \
467 template REQUIRES_SHARED(Locks::mutator_lock_) ALWAYS_INLINE \
468 ArtField* FindFieldFromCode<_type>(uint32_t field_idx, \
469                                    ArtMethod* referrer, \
470                                    Thread* self, \
471                                    bool should_resolve_type = false) \
472 
473 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(InstanceObjectRead);
474 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(InstanceObjectWrite);
475 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(InstancePrimitiveRead);
476 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(InstancePrimitiveWrite);
477 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(StaticObjectRead);
478 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(StaticObjectWrite);
479 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(StaticPrimitiveRead);
480 EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL(StaticPrimitiveWrite);
481 
482 #undef EXPLICIT_FIND_FIELD_FROM_CODE_TEMPLATE_DECL
483 // NOLINTEND(bugprone-macro-parentheses)
484 
IsStringInit(const DexFile * dex_file,uint32_t method_idx)485 static inline bool IsStringInit(const DexFile* dex_file, uint32_t method_idx)
486     REQUIRES_SHARED(Locks::mutator_lock_) {
487   const dex::MethodId& method_id = dex_file->GetMethodId(method_idx);
488   const char* class_name = dex_file->StringByTypeIdx(method_id.class_idx_);
489   const char* method_name = dex_file->GetMethodName(method_id);
490   // Instead of calling ResolveMethod() which has suspend point and can trigger
491   // GC, look up the method symbolically.
492   // Compare method's class name and method name against string init.
493   // It's ok since it's not allowed to create your own java/lang/String.
494   // TODO: verify that assumption.
495   if ((strcmp(class_name, "Ljava/lang/String;") == 0) &&
496       (strcmp(method_name, "<init>") == 0)) {
497     return true;
498   }
499   return false;
500 }
501 
IsStringInit(const Instruction & instr,ArtMethod * caller)502 static inline bool IsStringInit(const Instruction& instr, ArtMethod* caller)
503     REQUIRES_SHARED(Locks::mutator_lock_) {
504   if (instr.Opcode() == Instruction::INVOKE_DIRECT ||
505       instr.Opcode() == Instruction::INVOKE_DIRECT_RANGE) {
506     uint16_t callee_method_idx = (instr.Opcode() == Instruction::INVOKE_DIRECT_RANGE) ?
507         instr.VRegB_3rc() : instr.VRegB_35c();
508     return IsStringInit(caller->GetDexFile(), callee_method_idx);
509   }
510   return false;
511 }
512 
513 extern "C" size_t NterpGetMethod(Thread* self, ArtMethod* caller, const uint16_t* dex_pc_ptr);
514 
515 template <InvokeType type>
FindMethodToCall(Thread * self,ArtMethod * caller,ObjPtr<mirror::Object> * this_object,const Instruction & inst,bool only_lookup_tls_cache,bool * string_init)516 ArtMethod* FindMethodToCall(Thread* self,
517                             ArtMethod* caller,
518                             ObjPtr<mirror::Object>* this_object,
519                             const Instruction& inst,
520                             bool only_lookup_tls_cache,
521                             /*out*/ bool* string_init)
522     REQUIRES_SHARED(Locks::mutator_lock_) {
523   PointerSize pointer_size = Runtime::Current()->GetClassLinker()->GetImagePointerSize();
524 
525   // Try to find the method in thread-local cache.
526   size_t tls_value = 0u;
527   if (!self->GetInterpreterCache()->Get(self, &inst, &tls_value)) {
528     if (only_lookup_tls_cache) {
529       return nullptr;
530     }
531     DCHECK(!self->IsExceptionPending());
532     // NterpGetMethod can suspend, so save this_object.
533     StackHandleScope<1> hs(self);
534     HandleWrapperObjPtr<mirror::Object> h_this(hs.NewHandleWrapper(this_object));
535     tls_value = NterpGetMethod(self, caller, reinterpret_cast<const uint16_t*>(&inst));
536     if (self->IsExceptionPending()) {
537       return nullptr;
538     }
539   }
540 
541   if (type != kStatic && UNLIKELY((*this_object) == nullptr)) {
542     if (UNLIKELY(IsStringInit(inst, caller))) {
543       // Hack for String init:
544       //
545       // We assume that the input of String.<init> in verified code is always
546       // an uninitialized reference. If it is a null constant, it must have been
547       // optimized out by the compiler and we arrive here after deoptimization.
548       // Do not throw NullPointerException.
549     } else {
550       // Maintain interpreter-like semantics where NullPointerException is thrown
551       // after potential NoSuchMethodError from class linker.
552       const uint32_t method_idx = inst.VRegB();
553       ThrowNullPointerExceptionForMethodAccess(method_idx, type);
554       return nullptr;
555     }
556   }
557 
558   static constexpr size_t kStringInitMethodFlag = 0b1;
559   static constexpr size_t kInvokeInterfaceOnObjectMethodFlag = 0b1;
560   static constexpr size_t kMethodMask = ~0b11;
561 
562   ArtMethod* called_method = nullptr;
563   switch (type) {
564     case kDirect:
565     case kSuper:
566     case kStatic:
567       // Note: for the interpreter, the String.<init> special casing for invocation is handled
568       // in DoCallCommon.
569       *string_init = ((tls_value & kStringInitMethodFlag) != 0);
570       DCHECK_EQ(*string_init, IsStringInit(inst, caller));
571       called_method = reinterpret_cast<ArtMethod*>(tls_value & kMethodMask);
572       break;
573     case kInterface:
574       if ((tls_value & kInvokeInterfaceOnObjectMethodFlag) != 0) {
575         // invokeinterface on a j.l.Object method.
576         uint16_t method_index = tls_value >> 16;
577         called_method = (*this_object)->GetClass()->GetVTableEntry(method_index, pointer_size);
578       } else {
579         ArtMethod* interface_method = reinterpret_cast<ArtMethod*>(tls_value & kMethodMask);
580         called_method = (*this_object)->GetClass()->GetImt(pointer_size)->Get(
581             interface_method->GetImtIndex(), pointer_size);
582         if (called_method->IsRuntimeMethod()) {
583           called_method = (*this_object)->GetClass()->FindVirtualMethodForInterface(
584               interface_method, pointer_size);
585           if (UNLIKELY(called_method == nullptr)) {
586             ThrowIncompatibleClassChangeErrorClassForInterfaceDispatch(
587                 interface_method, *this_object, caller);
588             return nullptr;
589           }
590         }
591       }
592       break;
593     case kVirtual:
594       called_method = (*this_object)->GetClass()->GetVTableEntry(tls_value, pointer_size);
595       break;
596   }
597 
598   if (UNLIKELY(!called_method->IsInvokable())) {
599     called_method->ThrowInvocationTimeError((type == kStatic) ? nullptr : *this_object);
600     return nullptr;
601   }
602   DCHECK(!called_method->IsRuntimeMethod()) << called_method->PrettyMethod();
603   return called_method;
604 }
605 
606 template<bool access_check>
FindSuperMethodToCall(uint32_t method_idx,ArtMethod * resolved_method,ArtMethod * referrer,Thread * self)607 ALWAYS_INLINE ArtMethod* FindSuperMethodToCall(uint32_t method_idx,
608                                               ArtMethod* resolved_method,
609                                               ArtMethod* referrer,
610                                               Thread* self)
611     REQUIRES_SHARED(Locks::mutator_lock_) {
612   // TODO This lookup is quite slow.
613   // NB This is actually quite tricky to do any other way. We cannot use GetDeclaringClass since
614   //    that will actually not be what we want in some cases where there are miranda methods or
615   //    defaults. What we actually need is a GetContainingClass that says which classes virtuals
616   //    this method is coming from.
617   ClassLinker* linker = Runtime::Current()->GetClassLinker();
618   dex::TypeIndex type_idx = referrer->GetDexFile()->GetMethodId(method_idx).class_idx_;
619   ObjPtr<mirror::Class> referenced_class = linker->ResolveType(type_idx, referrer);
620   if (UNLIKELY(referenced_class == nullptr)) {
621     DCHECK(self->IsExceptionPending());
622     return nullptr;
623   }
624 
625   if (access_check) {
626     if (!referenced_class->IsAssignableFrom(referrer->GetDeclaringClass())) {
627       ThrowNoSuchMethodError(kSuper,
628                              resolved_method->GetDeclaringClass(),
629                              resolved_method->GetName(),
630                              resolved_method->GetSignature());
631       return nullptr;
632     }
633   }
634 
635   if (referenced_class->IsInterface()) {
636     // TODO We can do better than this for a (compiled) fastpath.
637     ArtMethod* found_method = referenced_class->FindVirtualMethodForInterfaceSuper(
638         resolved_method, linker->GetImagePointerSize());
639     DCHECK(found_method != nullptr);
640     return found_method;
641   }
642 
643   DCHECK(resolved_method->IsCopied() ||
644          !resolved_method->GetDeclaringClass()->IsInterface());
645 
646   uint16_t vtable_index = resolved_method->GetMethodIndex();
647   ObjPtr<mirror::Class> super_class = referrer->GetDeclaringClass()->GetSuperClass();
648   if (access_check) {
649     DCHECK(super_class == nullptr || super_class->HasVTable());
650     // Check existence of super class.
651     if (super_class == nullptr ||
652         vtable_index >= static_cast<uint32_t>(super_class->GetVTableLength())) {
653       // Behavior to agree with that of the verifier.
654       ThrowNoSuchMethodError(kSuper,
655                              resolved_method->GetDeclaringClass(),
656                              resolved_method->GetName(),
657                              resolved_method->GetSignature());
658       return nullptr;  // Failure.
659     }
660   }
661   DCHECK(super_class != nullptr);
662   DCHECK(super_class->HasVTable());
663   return super_class->GetVTableEntry(vtable_index, linker->GetImagePointerSize());
664 }
665 
ResolveVerifyAndClinit(dex::TypeIndex type_idx,ArtMethod * referrer,Thread * self,bool can_run_clinit,bool verify_access)666 inline ObjPtr<mirror::Class> ResolveVerifyAndClinit(dex::TypeIndex type_idx,
667                                                     ArtMethod* referrer,
668                                                     Thread* self,
669                                                     bool can_run_clinit,
670                                                     bool verify_access) {
671   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
672   ObjPtr<mirror::Class> klass = class_linker->ResolveType(type_idx, referrer);
673   if (UNLIKELY(klass == nullptr)) {
674     CHECK(self->IsExceptionPending());
675     return nullptr;  // Failure - Indicate to caller to deliver exception
676   }
677   // Perform access check if necessary.
678   ObjPtr<mirror::Class> referring_class = referrer->GetDeclaringClass();
679   if (verify_access && UNLIKELY(!referring_class->CanAccess(klass))) {
680     ThrowIllegalAccessErrorClass(referring_class, klass);
681     return nullptr;  // Failure - Indicate to caller to deliver exception
682   }
683   // If we're just implementing const-class, we shouldn't call <clinit>.
684   if (!can_run_clinit) {
685     return klass;
686   }
687   // If we are the <clinit> of this class, just return our storage.
688   //
689   // Do not set the DexCache InitializedStaticStorage, since that implies <clinit> has finished
690   // running.
691   if (klass == referring_class && referrer->IsConstructor() && referrer->IsStatic()) {
692     return klass;
693   }
694   StackHandleScope<1> hs(self);
695   Handle<mirror::Class> h_class(hs.NewHandle(klass));
696   if (!class_linker->EnsureInitialized(self, h_class, true, true)) {
697     CHECK(self->IsExceptionPending());
698     return nullptr;  // Failure - Indicate to caller to deliver exception
699   }
700   return h_class.Get();
701 }
702 
703 template <typename INT_TYPE, typename FLOAT_TYPE>
art_float_to_integral(FLOAT_TYPE f)704 inline INT_TYPE art_float_to_integral(FLOAT_TYPE f) {
705   const INT_TYPE kMaxInt = static_cast<INT_TYPE>(std::numeric_limits<INT_TYPE>::max());
706   const INT_TYPE kMinInt = static_cast<INT_TYPE>(std::numeric_limits<INT_TYPE>::min());
707   const FLOAT_TYPE kMaxIntAsFloat = static_cast<FLOAT_TYPE>(kMaxInt);
708   const FLOAT_TYPE kMinIntAsFloat = static_cast<FLOAT_TYPE>(kMinInt);
709   if (LIKELY(f > kMinIntAsFloat)) {
710      if (LIKELY(f < kMaxIntAsFloat)) {
711        return static_cast<INT_TYPE>(f);
712      } else {
713        return kMaxInt;
714      }
715   } else {
716     return (f != f) ? 0 : kMinInt;  // f != f implies NaN
717   }
718 }
719 
GetGenericJniSynchronizationObject(Thread * self,ArtMethod * called)720 inline ObjPtr<mirror::Object> GetGenericJniSynchronizationObject(Thread* self, ArtMethod* called)
721     REQUIRES_SHARED(Locks::mutator_lock_) {
722   DCHECK(!called->IsCriticalNative());
723   DCHECK(!called->IsFastNative());
724   DCHECK(self->GetManagedStack()->GetTopQuickFrame() != nullptr);
725   DCHECK_EQ(*self->GetManagedStack()->GetTopQuickFrame(), called);
726   // We do not need read barriers here.
727   // On method entry, all reference arguments are to-space references and we mark the
728   // declaring class of a static native method if needed. When visiting thread roots at
729   // the start of a GC, we visit all these references to ensure they point to the to-space.
730   if (called->IsStatic()) {
731     // Static methods synchronize on the declaring class object.
732     return called->GetDeclaringClass<kWithoutReadBarrier>();
733   } else {
734     // Instance methods synchronize on the `this` object.
735     // The `this` reference is stored in the first out vreg in the caller's frame.
736     uint8_t* sp = reinterpret_cast<uint8_t*>(self->GetManagedStack()->GetTopQuickFrame());
737     size_t frame_size = RuntimeCalleeSaveFrame::GetFrameSize(CalleeSaveType::kSaveRefsAndArgs);
738     StackReference<mirror::Object>* this_ref = reinterpret_cast<StackReference<mirror::Object>*>(
739         sp + frame_size + static_cast<size_t>(kRuntimePointerSize));
740     return this_ref->AsMirrorPtr();
741   }
742 }
743 
744 }  // namespace art
745 
746 #endif  // ART_RUNTIME_ENTRYPOINTS_ENTRYPOINT_UTILS_INL_H_
747