1 /*
2  * Copyright (C) 2015 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 "unstarted_runtime.h"
18 
19 #include <ctype.h>
20 #include <errno.h>
21 #include <stdlib.h>
22 
23 #include <cmath>
24 #include <initializer_list>
25 #include <limits>
26 #include <locale>
27 
28 #include <android-base/logging.h>
29 #include <android-base/stringprintf.h>
30 
31 #include "art_method-inl.h"
32 #include "base/casts.h"
33 #include "base/enums.h"
34 #include "base/hash_map.h"
35 #include "base/macros.h"
36 #include "base/quasi_atomic.h"
37 #include "base/zip_archive.h"
38 #include "class_linker.h"
39 #include "common_throws.h"
40 #include "dex/descriptors_names.h"
41 #include "entrypoints/entrypoint_utils-inl.h"
42 #include "gc/reference_processor.h"
43 #include "handle_scope-inl.h"
44 #include "hidden_api.h"
45 #include "interpreter/interpreter_common.h"
46 #include "jvalue-inl.h"
47 #include "mirror/array-alloc-inl.h"
48 #include "mirror/array-inl.h"
49 #include "mirror/class-alloc-inl.h"
50 #include "mirror/executable-inl.h"
51 #include "mirror/field.h"
52 #include "mirror/method.h"
53 #include "mirror/object-inl.h"
54 #include "mirror/object_array-alloc-inl.h"
55 #include "mirror/object_array-inl.h"
56 #include "mirror/string-alloc-inl.h"
57 #include "mirror/string-inl.h"
58 #include "nativehelper/scoped_local_ref.h"
59 #include "nth_caller_visitor.h"
60 #include "reflection.h"
61 #include "thread-inl.h"
62 #include "transaction.h"
63 #include "unstarted_runtime_list.h"
64 #include "well_known_classes.h"
65 
66 namespace art {
67 namespace interpreter {
68 
69 using android::base::StringAppendV;
70 using android::base::StringPrintf;
71 
72 static void AbortTransactionOrFail(Thread* self, const char* fmt, ...)
73     __attribute__((__format__(__printf__, 2, 3)))
74     REQUIRES_SHARED(Locks::mutator_lock_);
75 
AbortTransactionOrFail(Thread * self,const char * fmt,...)76 static void AbortTransactionOrFail(Thread* self, const char* fmt, ...) {
77   va_list args;
78   if (Runtime::Current()->IsActiveTransaction()) {
79     va_start(args, fmt);
80     AbortTransactionV(self, fmt, args);
81     va_end(args);
82   } else {
83     va_start(args, fmt);
84     std::string msg;
85     StringAppendV(&msg, fmt, args);
86     va_end(args);
87     LOG(FATAL) << "Trying to abort, but not in transaction mode: " << msg;
88     UNREACHABLE();
89   }
90 }
91 
92 // Restricted support for character upper case / lower case. Only support ASCII, where
93 // it's easy. Abort the transaction otherwise.
CharacterLowerUpper(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset,bool to_lower_case)94 static void CharacterLowerUpper(Thread* self,
95                                 ShadowFrame* shadow_frame,
96                                 JValue* result,
97                                 size_t arg_offset,
98                                 bool to_lower_case) REQUIRES_SHARED(Locks::mutator_lock_) {
99   uint32_t int_value = static_cast<uint32_t>(shadow_frame->GetVReg(arg_offset));
100 
101   // Only ASCII (7-bit).
102   if (!isascii(int_value)) {
103     AbortTransactionOrFail(self,
104                            "Only support ASCII characters for toLowerCase/toUpperCase: %u",
105                            int_value);
106     return;
107   }
108 
109   std::locale c_locale("C");
110   char char_value = static_cast<char>(int_value);
111 
112   if (to_lower_case) {
113     result->SetI(std::tolower(char_value, c_locale));
114   } else {
115     result->SetI(std::toupper(char_value, c_locale));
116   }
117 }
118 
UnstartedCharacterToLowerCase(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)119 void UnstartedRuntime::UnstartedCharacterToLowerCase(
120     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
121   CharacterLowerUpper(self, shadow_frame, result, arg_offset, true);
122 }
123 
UnstartedCharacterToUpperCase(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)124 void UnstartedRuntime::UnstartedCharacterToUpperCase(
125     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
126   CharacterLowerUpper(self, shadow_frame, result, arg_offset, false);
127 }
128 
129 // Helper function to deal with class loading in an unstarted runtime.
UnstartedRuntimeFindClass(Thread * self,Handle<mirror::String> className,Handle<mirror::ClassLoader> class_loader,JValue * result,bool initialize_class)130 static void UnstartedRuntimeFindClass(Thread* self,
131                                       Handle<mirror::String> className,
132                                       Handle<mirror::ClassLoader> class_loader,
133                                       JValue* result,
134                                       bool initialize_class)
135     REQUIRES_SHARED(Locks::mutator_lock_) {
136   CHECK(className != nullptr);
137   std::string descriptor(DotToDescriptor(className->ToModifiedUtf8().c_str()));
138   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
139 
140   ObjPtr<mirror::Class> found = class_linker->FindClass(self, descriptor.c_str(), class_loader);
141   if (found != nullptr && initialize_class) {
142     StackHandleScope<1> hs(self);
143     HandleWrapperObjPtr<mirror::Class> h_class = hs.NewHandleWrapper(&found);
144     if (!class_linker->EnsureInitialized(self, h_class, true, true)) {
145       CHECK(self->IsExceptionPending());
146       return;
147     }
148   }
149   result->SetL(found);
150 }
151 
152 // Common helper for class-loading cutouts in an unstarted runtime. We call Runtime methods that
153 // rely on Java code to wrap errors in the correct exception class (i.e., NoClassDefFoundError into
154 // ClassNotFoundException), so need to do the same. The only exception is if the exception is
155 // actually the transaction abort exception. This must not be wrapped, as it signals an
156 // initialization abort.
CheckExceptionGenerateClassNotFound(Thread * self)157 static void CheckExceptionGenerateClassNotFound(Thread* self)
158     REQUIRES_SHARED(Locks::mutator_lock_) {
159   if (self->IsExceptionPending()) {
160     Runtime* runtime = Runtime::Current();
161     DCHECK_EQ(runtime->IsTransactionAborted(),
162               self->GetException()->GetClass()->DescriptorEquals(
163                   Transaction::kAbortExceptionDescriptor))
164         << self->GetException()->GetClass()->PrettyDescriptor();
165     if (runtime->IsActiveTransaction()) {
166       // The boot class path at run time may contain additional dex files with
167       // the required class definition(s). We cannot throw a normal exception at
168       // compile time because a class initializer could catch it and successfully
169       // initialize a class differently than when executing at run time.
170       // If we're not aborting the transaction yet, abort now. b/183691501
171       if (!runtime->IsTransactionAborted()) {
172         AbortTransactionF(self, "ClassNotFoundException");
173       }
174     } else {
175       // If not in a transaction, it cannot be the transaction abort exception. Wrap it.
176       DCHECK(!runtime->IsTransactionAborted());
177       self->ThrowNewWrappedException("Ljava/lang/ClassNotFoundException;",
178                                      "ClassNotFoundException");
179     }
180   }
181 }
182 
GetClassName(Thread * self,ShadowFrame * shadow_frame,size_t arg_offset)183 static ObjPtr<mirror::String> GetClassName(Thread* self,
184                                            ShadowFrame* shadow_frame,
185                                            size_t arg_offset)
186     REQUIRES_SHARED(Locks::mutator_lock_) {
187   mirror::Object* param = shadow_frame->GetVRegReference(arg_offset);
188   if (param == nullptr) {
189     AbortTransactionOrFail(self, "Null-pointer in Class.forName.");
190     return nullptr;
191   }
192   return param->AsString();
193 }
194 
GetHiddenapiAccessContextFunction(ShadowFrame * frame)195 static std::function<hiddenapi::AccessContext()> GetHiddenapiAccessContextFunction(
196     ShadowFrame* frame) {
197   return [=]() REQUIRES_SHARED(Locks::mutator_lock_) {
198     return hiddenapi::AccessContext(frame->GetMethod()->GetDeclaringClass());
199   };
200 }
201 
202 template<typename T>
ShouldDenyAccessToMember(T * member,ShadowFrame * frame)203 static ALWAYS_INLINE bool ShouldDenyAccessToMember(T* member, ShadowFrame* frame)
204     REQUIRES_SHARED(Locks::mutator_lock_) {
205   // All uses in this file are from reflection
206   constexpr hiddenapi::AccessMethod kAccessMethod = hiddenapi::AccessMethod::kReflection;
207   return hiddenapi::ShouldDenyAccessToMember(member,
208                                              GetHiddenapiAccessContextFunction(frame),
209                                              kAccessMethod);
210 }
211 
UnstartedClassForNameCommon(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset,bool long_form)212 void UnstartedRuntime::UnstartedClassForNameCommon(Thread* self,
213                                                    ShadowFrame* shadow_frame,
214                                                    JValue* result,
215                                                    size_t arg_offset,
216                                                    bool long_form) {
217   ObjPtr<mirror::String> class_name = GetClassName(self, shadow_frame, arg_offset);
218   if (class_name == nullptr) {
219     return;
220   }
221   bool initialize_class;
222   ObjPtr<mirror::ClassLoader> class_loader;
223   if (long_form) {
224     initialize_class = shadow_frame->GetVReg(arg_offset + 1) != 0;
225     class_loader =
226         ObjPtr<mirror::ClassLoader>::DownCast(shadow_frame->GetVRegReference(arg_offset + 2));
227   } else {
228     initialize_class = true;
229     // TODO: This is really only correct for the boot classpath, and for robustness we should
230     //       check the caller.
231     class_loader = nullptr;
232   }
233 
234   ScopedObjectAccessUnchecked soa(self);
235   if (class_loader != nullptr && !ClassLinker::IsBootClassLoader(soa, class_loader)) {
236     AbortTransactionOrFail(self,
237                            "Only the boot classloader is supported: %s",
238                            mirror::Object::PrettyTypeOf(class_loader).c_str());
239     return;
240   }
241 
242   StackHandleScope<1> hs(self);
243   Handle<mirror::String> h_class_name(hs.NewHandle(class_name));
244   UnstartedRuntimeFindClass(self,
245                             h_class_name,
246                             ScopedNullHandle<mirror::ClassLoader>(),
247                             result,
248                             initialize_class);
249   CheckExceptionGenerateClassNotFound(self);
250 }
251 
UnstartedClassForName(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)252 void UnstartedRuntime::UnstartedClassForName(
253     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
254   UnstartedClassForNameCommon(self, shadow_frame, result, arg_offset, /*long_form=*/ false);
255 }
256 
UnstartedClassForNameLong(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)257 void UnstartedRuntime::UnstartedClassForNameLong(
258     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
259   UnstartedClassForNameCommon(self, shadow_frame, result, arg_offset, /*long_form=*/ true);
260 }
261 
UnstartedClassGetPrimitiveClass(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)262 void UnstartedRuntime::UnstartedClassGetPrimitiveClass(
263     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
264   ObjPtr<mirror::String> class_name = GetClassName(self, shadow_frame, arg_offset);
265   ObjPtr<mirror::Class> klass = mirror::Class::GetPrimitiveClass(class_name);
266   if (UNLIKELY(klass == nullptr)) {
267     DCHECK(self->IsExceptionPending());
268     AbortTransactionOrFail(self,
269                            "Class.getPrimitiveClass() failed: %s",
270                            self->GetException()->GetDetailMessage()->ToModifiedUtf8().c_str());
271     return;
272   }
273   result->SetL(klass);
274 }
275 
UnstartedClassClassForName(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)276 void UnstartedRuntime::UnstartedClassClassForName(
277     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
278   UnstartedClassForNameCommon(self, shadow_frame, result, arg_offset, /*long_form=*/ true);
279 }
280 
UnstartedClassNewInstance(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)281 void UnstartedRuntime::UnstartedClassNewInstance(
282     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
283   StackHandleScope<2> hs(self);  // Class, constructor, object.
284   mirror::Object* param = shadow_frame->GetVRegReference(arg_offset);
285   if (param == nullptr) {
286     AbortTransactionOrFail(self, "Null-pointer in Class.newInstance.");
287     return;
288   }
289   Handle<mirror::Class> h_klass(hs.NewHandle(param->AsClass()));
290 
291   // Check that it's not null.
292   if (h_klass == nullptr) {
293     AbortTransactionOrFail(self, "Class reference is null for newInstance");
294     return;
295   }
296 
297   // If we're in a transaction, class must not be finalizable (it or a superclass has a finalizer).
298   if (Runtime::Current()->IsActiveTransaction()) {
299     if (h_klass->IsFinalizable()) {
300       AbortTransactionF(self, "Class for newInstance is finalizable: '%s'",
301                         h_klass->PrettyClass().c_str());
302       return;
303     }
304   }
305 
306   // There are two situations in which we'll abort this run.
307   //  1) If the class isn't yet initialized and initialization fails.
308   //  2) If we can't find the default constructor. We'll postpone the exception to runtime.
309   // Note that 2) could likely be handled here, but for safety abort the transaction.
310   bool ok = false;
311   auto* cl = Runtime::Current()->GetClassLinker();
312   if (cl->EnsureInitialized(self, h_klass, true, true)) {
313     ArtMethod* cons = h_klass->FindConstructor("()V", cl->GetImagePointerSize());
314     if (cons != nullptr && ShouldDenyAccessToMember(cons, shadow_frame)) {
315       cons = nullptr;
316     }
317     if (cons != nullptr) {
318       Handle<mirror::Object> h_obj(hs.NewHandle(h_klass->AllocObject(self)));
319       CHECK(h_obj != nullptr);  // We don't expect OOM at compile-time.
320       EnterInterpreterFromInvoke(self, cons, h_obj.Get(), nullptr, nullptr);
321       if (!self->IsExceptionPending()) {
322         result->SetL(h_obj.Get());
323         ok = true;
324       }
325     } else {
326       self->ThrowNewExceptionF("Ljava/lang/InternalError;",
327                                "Could not find default constructor for '%s'",
328                                h_klass->PrettyClass().c_str());
329     }
330   }
331   if (!ok) {
332     AbortTransactionOrFail(self, "Failed in Class.newInstance for '%s' with %s",
333                            h_klass->PrettyClass().c_str(),
334                            mirror::Object::PrettyTypeOf(self->GetException()).c_str());
335   }
336 }
337 
UnstartedClassGetDeclaredField(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)338 void UnstartedRuntime::UnstartedClassGetDeclaredField(
339     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
340   // Special managed code cut-out to allow field lookup in a un-started runtime that'd fail
341   // going the reflective Dex way.
342   ObjPtr<mirror::Class> klass = shadow_frame->GetVRegReference(arg_offset)->AsClass();
343   ObjPtr<mirror::String> name2 = shadow_frame->GetVRegReference(arg_offset + 1)->AsString();
344   ArtField* found = nullptr;
345   for (ArtField& field : klass->GetIFields()) {
346     if (name2->Equals(field.GetName())) {
347       found = &field;
348       break;
349     }
350   }
351   if (found == nullptr) {
352     for (ArtField& field : klass->GetSFields()) {
353       if (name2->Equals(field.GetName())) {
354         found = &field;
355         break;
356       }
357     }
358   }
359   if (found != nullptr && ShouldDenyAccessToMember(found, shadow_frame)) {
360     found = nullptr;
361   }
362   if (found == nullptr) {
363     AbortTransactionOrFail(self, "Failed to find field in Class.getDeclaredField in un-started "
364                            " runtime. name=%s class=%s", name2->ToModifiedUtf8().c_str(),
365                            klass->PrettyDescriptor().c_str());
366     return;
367   }
368   ObjPtr<mirror::Field> field = mirror::Field::CreateFromArtField(self, found, true);
369   result->SetL(field);
370 }
371 
372 // This is required for Enum(Set) code, as that uses reflection to inspect enum classes.
UnstartedClassGetDeclaredMethod(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)373 void UnstartedRuntime::UnstartedClassGetDeclaredMethod(
374     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
375   // Special managed code cut-out to allow method lookup in a un-started runtime.
376   ObjPtr<mirror::Class> klass = shadow_frame->GetVRegReference(arg_offset)->AsClass();
377   if (klass == nullptr) {
378     ThrowNullPointerExceptionForMethodAccess(shadow_frame->GetMethod(), InvokeType::kVirtual);
379     return;
380   }
381   ObjPtr<mirror::String> name = shadow_frame->GetVRegReference(arg_offset + 1)->AsString();
382   ObjPtr<mirror::ObjectArray<mirror::Class>> args =
383       shadow_frame->GetVRegReference(arg_offset + 2)->AsObjectArray<mirror::Class>();
384   PointerSize pointer_size = Runtime::Current()->GetClassLinker()->GetImagePointerSize();
385   auto fn_hiddenapi_access_context = GetHiddenapiAccessContextFunction(shadow_frame);
386   ObjPtr<mirror::Method> method = (pointer_size == PointerSize::k64)
387       ? mirror::Class::GetDeclaredMethodInternal<PointerSize::k64>(
388             self, klass, name, args, fn_hiddenapi_access_context)
389       : mirror::Class::GetDeclaredMethodInternal<PointerSize::k32>(
390             self, klass, name, args, fn_hiddenapi_access_context);
391   if (method != nullptr && ShouldDenyAccessToMember(method->GetArtMethod(), shadow_frame)) {
392     method = nullptr;
393   }
394   result->SetL(method);
395 }
396 
397 // Special managed code cut-out to allow constructor lookup in a un-started runtime.
UnstartedClassGetDeclaredConstructor(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)398 void UnstartedRuntime::UnstartedClassGetDeclaredConstructor(
399     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
400   ObjPtr<mirror::Class> klass = shadow_frame->GetVRegReference(arg_offset)->AsClass();
401   if (klass == nullptr) {
402     ThrowNullPointerExceptionForMethodAccess(shadow_frame->GetMethod(), InvokeType::kVirtual);
403     return;
404   }
405   ObjPtr<mirror::ObjectArray<mirror::Class>> args =
406       shadow_frame->GetVRegReference(arg_offset + 1)->AsObjectArray<mirror::Class>();
407   PointerSize pointer_size = Runtime::Current()->GetClassLinker()->GetImagePointerSize();
408   ObjPtr<mirror::Constructor> constructor = (pointer_size == PointerSize::k64)
409       ? mirror::Class::GetDeclaredConstructorInternal<PointerSize::k64>(self, klass, args)
410       : mirror::Class::GetDeclaredConstructorInternal<PointerSize::k32>(self, klass, args);
411   if (constructor != nullptr &&
412       ShouldDenyAccessToMember(constructor->GetArtMethod(), shadow_frame)) {
413     constructor = nullptr;
414   }
415   result->SetL(constructor);
416 }
417 
UnstartedClassGetDeclaringClass(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)418 void UnstartedRuntime::UnstartedClassGetDeclaringClass(
419     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
420   StackHandleScope<1> hs(self);
421   Handle<mirror::Class> klass(hs.NewHandle(
422       reinterpret_cast<mirror::Class*>(shadow_frame->GetVRegReference(arg_offset))));
423   if (klass->IsProxyClass() || klass->GetDexCache() == nullptr) {
424     result->SetL(nullptr);
425     return;
426   }
427   // Return null for anonymous classes.
428   JValue is_anon_result;
429   UnstartedClassIsAnonymousClass(self, shadow_frame, &is_anon_result, arg_offset);
430   if (is_anon_result.GetZ() != 0) {
431     result->SetL(nullptr);
432     return;
433   }
434   result->SetL(annotations::GetDeclaringClass(klass));
435 }
436 
UnstartedClassGetEnclosingClass(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)437 void UnstartedRuntime::UnstartedClassGetEnclosingClass(
438     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
439   StackHandleScope<1> hs(self);
440   Handle<mirror::Class> klass(hs.NewHandle(shadow_frame->GetVRegReference(arg_offset)->AsClass()));
441   if (klass->IsProxyClass() || klass->GetDexCache() == nullptr) {
442     result->SetL(nullptr);
443   }
444   result->SetL(annotations::GetEnclosingClass(klass));
445 }
446 
UnstartedClassGetInnerClassFlags(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)447 void UnstartedRuntime::UnstartedClassGetInnerClassFlags(
448     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
449   StackHandleScope<1> hs(self);
450   Handle<mirror::Class> klass(hs.NewHandle(
451       reinterpret_cast<mirror::Class*>(shadow_frame->GetVRegReference(arg_offset))));
452   const int32_t default_value = shadow_frame->GetVReg(arg_offset + 1);
453   result->SetI(mirror::Class::GetInnerClassFlags(klass, default_value));
454 }
455 
UnstartedClassGetSignatureAnnotation(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)456 void UnstartedRuntime::UnstartedClassGetSignatureAnnotation(
457     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
458   StackHandleScope<1> hs(self);
459   Handle<mirror::Class> klass(hs.NewHandle(
460       reinterpret_cast<mirror::Class*>(shadow_frame->GetVRegReference(arg_offset))));
461 
462   if (klass->IsProxyClass() || klass->GetDexCache() == nullptr) {
463     result->SetL(nullptr);
464     return;
465   }
466 
467   result->SetL(annotations::GetSignatureAnnotationForClass(klass));
468 }
469 
UnstartedClassIsAnonymousClass(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)470 void UnstartedRuntime::UnstartedClassIsAnonymousClass(
471     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
472   StackHandleScope<1> hs(self);
473   Handle<mirror::Class> klass(hs.NewHandle(
474       reinterpret_cast<mirror::Class*>(shadow_frame->GetVRegReference(arg_offset))));
475   if (klass->IsProxyClass() || klass->GetDexCache() == nullptr) {
476     result->SetZ(false);
477     return;
478   }
479   ObjPtr<mirror::String> class_name = nullptr;
480   if (!annotations::GetInnerClass(klass, &class_name)) {
481     result->SetZ(false);
482     return;
483   }
484   result->SetZ(class_name == nullptr);
485 }
486 
FindAndExtractEntry(const std::string & jar_file,const char * entry_name,size_t * size,std::string * error_msg)487 static MemMap FindAndExtractEntry(const std::string& jar_file,
488                                   const char* entry_name,
489                                   size_t* size,
490                                   std::string* error_msg) {
491   CHECK(size != nullptr);
492 
493   std::unique_ptr<ZipArchive> zip_archive(ZipArchive::Open(jar_file.c_str(), error_msg));
494   if (zip_archive == nullptr) {
495     return MemMap::Invalid();
496   }
497   std::unique_ptr<ZipEntry> zip_entry(zip_archive->Find(entry_name, error_msg));
498   if (zip_entry == nullptr) {
499     return MemMap::Invalid();
500   }
501   MemMap tmp_map = zip_entry->ExtractToMemMap(jar_file.c_str(), entry_name, error_msg);
502   if (!tmp_map.IsValid()) {
503     return MemMap::Invalid();
504   }
505 
506   // OK, from here everything seems fine.
507   *size = zip_entry->GetUncompressedLength();
508   return tmp_map;
509 }
510 
GetResourceAsStream(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)511 static void GetResourceAsStream(Thread* self,
512                                 ShadowFrame* shadow_frame,
513                                 JValue* result,
514                                 size_t arg_offset) REQUIRES_SHARED(Locks::mutator_lock_) {
515   mirror::Object* resource_obj = shadow_frame->GetVRegReference(arg_offset + 1);
516   if (resource_obj == nullptr) {
517     AbortTransactionOrFail(self, "null name for getResourceAsStream");
518     return;
519   }
520   CHECK(resource_obj->IsString());
521   ObjPtr<mirror::String> resource_name = resource_obj->AsString();
522 
523   std::string resource_name_str = resource_name->ToModifiedUtf8();
524   if (resource_name_str.empty() || resource_name_str == "/") {
525     AbortTransactionOrFail(self,
526                            "Unsupported name %s for getResourceAsStream",
527                            resource_name_str.c_str());
528     return;
529   }
530   const char* resource_cstr = resource_name_str.c_str();
531   if (resource_cstr[0] == '/') {
532     resource_cstr++;
533   }
534 
535   Runtime* runtime = Runtime::Current();
536 
537   const std::vector<std::string>& boot_class_path = Runtime::Current()->GetBootClassPath();
538   if (boot_class_path.empty()) {
539     AbortTransactionOrFail(self, "Boot classpath not set");
540     return;
541   }
542 
543   MemMap mem_map;
544   size_t map_size;
545   std::string last_error_msg;  // Only store the last message (we could concatenate).
546 
547   for (const std::string& jar_file : boot_class_path) {
548     mem_map = FindAndExtractEntry(jar_file, resource_cstr, &map_size, &last_error_msg);
549     if (mem_map.IsValid()) {
550       break;
551     }
552   }
553 
554   if (!mem_map.IsValid()) {
555     // Didn't find it. There's a good chance this will be the same at runtime, but still
556     // conservatively abort the transaction here.
557     AbortTransactionOrFail(self,
558                            "Could not find resource %s. Last error was %s.",
559                            resource_name_str.c_str(),
560                            last_error_msg.c_str());
561     return;
562   }
563 
564   StackHandleScope<3> hs(self);
565 
566   // Create byte array for content.
567   Handle<mirror::ByteArray> h_array(hs.NewHandle(mirror::ByteArray::Alloc(self, map_size)));
568   if (h_array == nullptr) {
569     AbortTransactionOrFail(self, "Could not find/create byte array class");
570     return;
571   }
572   // Copy in content.
573   memcpy(h_array->GetData(), mem_map.Begin(), map_size);
574   // Be proactive releasing memory.
575   mem_map.Reset();
576 
577   // Create a ByteArrayInputStream.
578   Handle<mirror::Class> h_class(hs.NewHandle(
579       runtime->GetClassLinker()->FindClass(self,
580                                            "Ljava/io/ByteArrayInputStream;",
581                                            ScopedNullHandle<mirror::ClassLoader>())));
582   if (h_class == nullptr) {
583     AbortTransactionOrFail(self, "Could not find ByteArrayInputStream class");
584     return;
585   }
586   if (!runtime->GetClassLinker()->EnsureInitialized(self, h_class, true, true)) {
587     AbortTransactionOrFail(self, "Could not initialize ByteArrayInputStream class");
588     return;
589   }
590 
591   Handle<mirror::Object> h_obj(hs.NewHandle(h_class->AllocObject(self)));
592   if (h_obj == nullptr) {
593     AbortTransactionOrFail(self, "Could not allocate ByteArrayInputStream object");
594     return;
595   }
596 
597   auto* cl = Runtime::Current()->GetClassLinker();
598   ArtMethod* constructor = h_class->FindConstructor("([B)V", cl->GetImagePointerSize());
599   if (constructor == nullptr) {
600     AbortTransactionOrFail(self, "Could not find ByteArrayInputStream constructor");
601     return;
602   }
603 
604   uint32_t args[1];
605   args[0] = reinterpret_cast32<uint32_t>(h_array.Get());
606   EnterInterpreterFromInvoke(self, constructor, h_obj.Get(), args, nullptr);
607 
608   if (self->IsExceptionPending()) {
609     AbortTransactionOrFail(self, "Could not run ByteArrayInputStream constructor");
610     return;
611   }
612 
613   result->SetL(h_obj.Get());
614 }
615 
UnstartedClassLoaderGetResourceAsStream(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)616 void UnstartedRuntime::UnstartedClassLoaderGetResourceAsStream(
617     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
618   {
619     mirror::Object* this_obj = shadow_frame->GetVRegReference(arg_offset);
620     CHECK(this_obj != nullptr);
621     CHECK(this_obj->IsClassLoader());
622 
623     StackHandleScope<1> hs(self);
624     Handle<mirror::Class> this_classloader_class(hs.NewHandle(this_obj->GetClass()));
625 
626     if (self->DecodeJObject(WellKnownClasses::java_lang_BootClassLoader) !=
627             this_classloader_class.Get()) {
628       AbortTransactionOrFail(self,
629                              "Unsupported classloader type %s for getResourceAsStream",
630                              mirror::Class::PrettyClass(this_classloader_class.Get()).c_str());
631       return;
632     }
633   }
634 
635   GetResourceAsStream(self, shadow_frame, result, arg_offset);
636 }
637 
UnstartedConstructorNewInstance0(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)638 void UnstartedRuntime::UnstartedConstructorNewInstance0(
639     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
640   // This is a cutdown version of java_lang_reflect_Constructor.cc's implementation.
641   StackHandleScope<4> hs(self);
642   Handle<mirror::Constructor> m = hs.NewHandle(
643       reinterpret_cast<mirror::Constructor*>(shadow_frame->GetVRegReference(arg_offset)));
644   Handle<mirror::ObjectArray<mirror::Object>> args = hs.NewHandle(
645       reinterpret_cast<mirror::ObjectArray<mirror::Object>*>(
646           shadow_frame->GetVRegReference(arg_offset + 1)));
647   Handle<mirror::Class> c(hs.NewHandle(m->GetDeclaringClass()));
648   if (UNLIKELY(c->IsAbstract())) {
649     AbortTransactionOrFail(self, "Cannot handle abstract classes");
650     return;
651   }
652   // Verify that we can access the class.
653   if (!m->IsAccessible() && !c->IsPublic()) {
654     // Go 2 frames back, this method is always called from newInstance0, which is called from
655     // Constructor.newInstance(Object... args).
656     ObjPtr<mirror::Class> caller = GetCallingClass(self, 2);
657     // If caller is null, then we called from JNI, just avoid the check since JNI avoids most
658     // access checks anyways. TODO: Investigate if this the correct behavior.
659     if (caller != nullptr && !caller->CanAccess(c.Get())) {
660       AbortTransactionOrFail(self, "Cannot access class");
661       return;
662     }
663   }
664   if (!Runtime::Current()->GetClassLinker()->EnsureInitialized(self, c, true, true)) {
665     DCHECK(self->IsExceptionPending());
666     return;
667   }
668   if (c->IsClassClass()) {
669     AbortTransactionOrFail(self, "new Class() is not supported");
670     return;
671   }
672 
673   // String constructor is replaced by a StringFactory method in InvokeMethod.
674   if (c->IsStringClass()) {
675     // We don't support strings.
676     AbortTransactionOrFail(self, "String construction is not supported");
677     return;
678   }
679 
680   Handle<mirror::Object> receiver = hs.NewHandle(c->AllocObject(self));
681   if (receiver == nullptr) {
682     AbortTransactionOrFail(self, "Could not allocate");
683     return;
684   }
685 
686   // It's easier to use reflection to make the call, than create the uint32_t array.
687   {
688     ScopedObjectAccessUnchecked soa(self);
689     ScopedLocalRef<jobject> method_ref(self->GetJniEnv(),
690                                        soa.AddLocalReference<jobject>(m.Get()));
691     ScopedLocalRef<jobject> object_ref(self->GetJniEnv(),
692                                        soa.AddLocalReference<jobject>(receiver.Get()));
693     ScopedLocalRef<jobject> args_ref(self->GetJniEnv(),
694                                      soa.AddLocalReference<jobject>(args.Get()));
695     PointerSize pointer_size = Runtime::Current()->GetClassLinker()->GetImagePointerSize();
696     if (pointer_size == PointerSize::k64) {
697       InvokeMethod<PointerSize::k64>(soa, method_ref.get(), object_ref.get(), args_ref.get(), 2);
698     } else {
699       InvokeMethod<PointerSize::k32>(soa, method_ref.get(), object_ref.get(), args_ref.get(), 2);
700     }
701   }
702   if (self->IsExceptionPending()) {
703     AbortTransactionOrFail(self, "Failed running constructor");
704   } else {
705     result->SetL(receiver.Get());
706   }
707 }
708 
UnstartedVmClassLoaderFindLoadedClass(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)709 void UnstartedRuntime::UnstartedVmClassLoaderFindLoadedClass(
710     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
711   ObjPtr<mirror::String> class_name = shadow_frame->GetVRegReference(arg_offset + 1)->AsString();
712   ObjPtr<mirror::ClassLoader> class_loader =
713       ObjPtr<mirror::ClassLoader>::DownCast(shadow_frame->GetVRegReference(arg_offset));
714   StackHandleScope<2> hs(self);
715   Handle<mirror::String> h_class_name(hs.NewHandle(class_name));
716   Handle<mirror::ClassLoader> h_class_loader(hs.NewHandle(class_loader));
717   UnstartedRuntimeFindClass(self,
718                             h_class_name,
719                             h_class_loader,
720                             result,
721                             /*initialize_class=*/ false);
722   // This might have an error pending. But semantics are to just return null.
723   if (self->IsExceptionPending()) {
724     Runtime* runtime = Runtime::Current();
725     DCHECK_EQ(runtime->IsTransactionAborted(),
726               self->GetException()->GetClass()->DescriptorEquals(
727                   Transaction::kAbortExceptionDescriptor))
728         << self->GetException()->GetClass()->PrettyDescriptor();
729     if (runtime->IsActiveTransaction()) {
730       // If we're not aborting the transaction yet, abort now. b/183691501
731       // See CheckExceptionGenerateClassNotFound() for more detailed explanation.
732       if (!runtime->IsTransactionAborted()) {
733         AbortTransactionF(self, "ClassNotFoundException");
734       }
735     } else {
736       // If not in a transaction, it cannot be the transaction abort exception. Clear it.
737       DCHECK(!runtime->IsTransactionAborted());
738       self->ClearException();
739     }
740   }
741 }
742 
743 // Arraycopy emulation.
744 // Note: we can't use any fast copy functions, as they are not available under transaction.
745 
746 template <typename T>
PrimitiveArrayCopy(Thread * self,ObjPtr<mirror::Array> src_array,int32_t src_pos,ObjPtr<mirror::Array> dst_array,int32_t dst_pos,int32_t length)747 static void PrimitiveArrayCopy(Thread* self,
748                                ObjPtr<mirror::Array> src_array,
749                                int32_t src_pos,
750                                ObjPtr<mirror::Array> dst_array,
751                                int32_t dst_pos,
752                                int32_t length)
753     REQUIRES_SHARED(Locks::mutator_lock_) {
754   if (src_array->GetClass()->GetComponentType() != dst_array->GetClass()->GetComponentType()) {
755     AbortTransactionOrFail(self,
756                            "Types mismatched in arraycopy: %s vs %s.",
757                            mirror::Class::PrettyDescriptor(
758                                src_array->GetClass()->GetComponentType()).c_str(),
759                            mirror::Class::PrettyDescriptor(
760                                dst_array->GetClass()->GetComponentType()).c_str());
761     return;
762   }
763   ObjPtr<mirror::PrimitiveArray<T>> src = ObjPtr<mirror::PrimitiveArray<T>>::DownCast(src_array);
764   ObjPtr<mirror::PrimitiveArray<T>> dst = ObjPtr<mirror::PrimitiveArray<T>>::DownCast(dst_array);
765   const bool copy_forward = (dst_pos < src_pos) || (dst_pos - src_pos >= length);
766   if (copy_forward) {
767     for (int32_t i = 0; i < length; ++i) {
768       dst->Set(dst_pos + i, src->Get(src_pos + i));
769     }
770   } else {
771     for (int32_t i = 1; i <= length; ++i) {
772       dst->Set(dst_pos + length - i, src->Get(src_pos + length - i));
773     }
774   }
775 }
776 
UnstartedSystemArraycopy(Thread * self,ShadowFrame * shadow_frame,JValue * result ATTRIBUTE_UNUSED,size_t arg_offset)777 void UnstartedRuntime::UnstartedSystemArraycopy(
778     Thread* self, ShadowFrame* shadow_frame, JValue* result ATTRIBUTE_UNUSED, size_t arg_offset) {
779   // Special case array copying without initializing System.
780   jint src_pos = shadow_frame->GetVReg(arg_offset + 1);
781   jint dst_pos = shadow_frame->GetVReg(arg_offset + 3);
782   jint length = shadow_frame->GetVReg(arg_offset + 4);
783 
784   mirror::Object* src_obj = shadow_frame->GetVRegReference(arg_offset);
785   mirror::Object* dst_obj = shadow_frame->GetVRegReference(arg_offset + 2);
786   // Null checking. For simplicity, abort transaction.
787   if (src_obj == nullptr) {
788     AbortTransactionOrFail(self, "src is null in arraycopy.");
789     return;
790   }
791   if (dst_obj == nullptr) {
792     AbortTransactionOrFail(self, "dst is null in arraycopy.");
793     return;
794   }
795   // Test for arrayness. Throw ArrayStoreException.
796   if (!src_obj->IsArrayInstance() || !dst_obj->IsArrayInstance()) {
797     self->ThrowNewException("Ljava/lang/ArrayStoreException;", "src or trg is not an array");
798     return;
799   }
800 
801   ObjPtr<mirror::Array> src_array = src_obj->AsArray();
802   ObjPtr<mirror::Array> dst_array = dst_obj->AsArray();
803 
804   // Bounds checking. Throw IndexOutOfBoundsException.
805   if (UNLIKELY(src_pos < 0) || UNLIKELY(dst_pos < 0) || UNLIKELY(length < 0) ||
806       UNLIKELY(src_pos > src_array->GetLength() - length) ||
807       UNLIKELY(dst_pos > dst_array->GetLength() - length)) {
808     self->ThrowNewExceptionF("Ljava/lang/IndexOutOfBoundsException;",
809                              "src.length=%d srcPos=%d dst.length=%d dstPos=%d length=%d",
810                              src_array->GetLength(), src_pos, dst_array->GetLength(), dst_pos,
811                              length);
812     return;
813   }
814 
815   if (Runtime::Current()->IsActiveTransaction() && !CheckWriteConstraint(self, dst_obj)) {
816     DCHECK(self->IsExceptionPending());
817     return;
818   }
819 
820   // Type checking.
821   ObjPtr<mirror::Class> src_type = shadow_frame->GetVRegReference(arg_offset)->GetClass()->
822       GetComponentType();
823 
824   if (!src_type->IsPrimitive()) {
825     // Check that the second type is not primitive.
826     ObjPtr<mirror::Class> trg_type = shadow_frame->GetVRegReference(arg_offset + 2)->GetClass()->
827         GetComponentType();
828     if (trg_type->IsPrimitiveInt()) {
829       AbortTransactionOrFail(self, "Type mismatch in arraycopy: %s vs %s",
830                              mirror::Class::PrettyDescriptor(
831                                  src_array->GetClass()->GetComponentType()).c_str(),
832                              mirror::Class::PrettyDescriptor(
833                                  dst_array->GetClass()->GetComponentType()).c_str());
834       return;
835     }
836 
837     ObjPtr<mirror::ObjectArray<mirror::Object>> src = src_array->AsObjectArray<mirror::Object>();
838     ObjPtr<mirror::ObjectArray<mirror::Object>> dst = dst_array->AsObjectArray<mirror::Object>();
839     if (src == dst) {
840       // Can overlap, but not have type mismatches.
841       // We cannot use ObjectArray::MemMove here, as it doesn't support transactions.
842       const bool copy_forward = (dst_pos < src_pos) || (dst_pos - src_pos >= length);
843       if (copy_forward) {
844         for (int32_t i = 0; i < length; ++i) {
845           dst->Set(dst_pos + i, src->Get(src_pos + i));
846         }
847       } else {
848         for (int32_t i = 1; i <= length; ++i) {
849           dst->Set(dst_pos + length - i, src->Get(src_pos + length - i));
850         }
851       }
852     } else {
853       // We're being lazy here. Optimally this could be a memcpy (if component types are
854       // assignable), but the ObjectArray implementation doesn't support transactions. The
855       // checking version, however, does.
856       if (Runtime::Current()->IsActiveTransaction()) {
857         dst->AssignableCheckingMemcpy<true>(
858             dst_pos, src, src_pos, length, /* throw_exception= */ true);
859       } else {
860         dst->AssignableCheckingMemcpy<false>(
861             dst_pos, src, src_pos, length, /* throw_exception= */ true);
862       }
863     }
864   } else if (src_type->IsPrimitiveByte()) {
865     PrimitiveArrayCopy<uint8_t>(self, src_array, src_pos, dst_array, dst_pos, length);
866   } else if (src_type->IsPrimitiveChar()) {
867     PrimitiveArrayCopy<uint16_t>(self, src_array, src_pos, dst_array, dst_pos, length);
868   } else if (src_type->IsPrimitiveInt()) {
869     PrimitiveArrayCopy<int32_t>(self, src_array, src_pos, dst_array, dst_pos, length);
870   } else {
871     AbortTransactionOrFail(self, "Unimplemented System.arraycopy for type '%s'",
872                            src_type->PrettyDescriptor().c_str());
873   }
874 }
875 
UnstartedSystemArraycopyByte(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)876 void UnstartedRuntime::UnstartedSystemArraycopyByte(
877     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
878   // Just forward.
879   UnstartedRuntime::UnstartedSystemArraycopy(self, shadow_frame, result, arg_offset);
880 }
881 
UnstartedSystemArraycopyChar(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)882 void UnstartedRuntime::UnstartedSystemArraycopyChar(
883     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
884   // Just forward.
885   UnstartedRuntime::UnstartedSystemArraycopy(self, shadow_frame, result, arg_offset);
886 }
887 
UnstartedSystemArraycopyInt(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)888 void UnstartedRuntime::UnstartedSystemArraycopyInt(
889     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
890   // Just forward.
891   UnstartedRuntime::UnstartedSystemArraycopy(self, shadow_frame, result, arg_offset);
892 }
893 
UnstartedSystemGetSecurityManager(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame ATTRIBUTE_UNUSED,JValue * result,size_t arg_offset ATTRIBUTE_UNUSED)894 void UnstartedRuntime::UnstartedSystemGetSecurityManager(
895     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame ATTRIBUTE_UNUSED,
896     JValue* result, size_t arg_offset ATTRIBUTE_UNUSED) {
897   result->SetL(nullptr);
898 }
899 
900 static constexpr const char* kAndroidHardcodedSystemPropertiesFieldName = "STATIC_PROPERTIES";
901 
GetSystemProperty(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset,bool is_default_version)902 static void GetSystemProperty(Thread* self,
903                               ShadowFrame* shadow_frame,
904                               JValue* result,
905                               size_t arg_offset,
906                               bool is_default_version)
907     REQUIRES_SHARED(Locks::mutator_lock_) {
908   StackHandleScope<4> hs(self);
909   Handle<mirror::String> h_key(
910       hs.NewHandle(reinterpret_cast<mirror::String*>(shadow_frame->GetVRegReference(arg_offset))));
911   if (h_key == nullptr) {
912     AbortTransactionOrFail(self, "getProperty key was null");
913     return;
914   }
915 
916   // This is overall inefficient, but reflecting the values here is not great, either. So
917   // for simplicity, and with the assumption that the number of getProperty calls is not
918   // too great, just iterate each time.
919 
920   // Get the storage class.
921   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
922   Handle<mirror::Class> h_props_class(hs.NewHandle(
923       class_linker->FindClass(self,
924                               "Ljava/lang/AndroidHardcodedSystemProperties;",
925                               ScopedNullHandle<mirror::ClassLoader>())));
926   if (h_props_class == nullptr) {
927     AbortTransactionOrFail(self, "Could not find AndroidHardcodedSystemProperties");
928     return;
929   }
930   if (!class_linker->EnsureInitialized(self, h_props_class, true, true)) {
931     AbortTransactionOrFail(self, "Could not initialize AndroidHardcodedSystemProperties");
932     return;
933   }
934 
935   // Get the storage array.
936   ArtField* static_properties =
937       h_props_class->FindDeclaredStaticField(kAndroidHardcodedSystemPropertiesFieldName,
938                                              "[[Ljava/lang/String;");
939   if (static_properties == nullptr) {
940     AbortTransactionOrFail(self,
941                            "Could not find %s field",
942                            kAndroidHardcodedSystemPropertiesFieldName);
943     return;
944   }
945   ObjPtr<mirror::Object> props = static_properties->GetObject(h_props_class.Get());
946   Handle<mirror::ObjectArray<mirror::ObjectArray<mirror::String>>> h_2string_array(hs.NewHandle(
947       props->AsObjectArray<mirror::ObjectArray<mirror::String>>()));
948   if (h_2string_array == nullptr) {
949     AbortTransactionOrFail(self, "Field %s is null", kAndroidHardcodedSystemPropertiesFieldName);
950     return;
951   }
952 
953   // Iterate over it.
954   const int32_t prop_count = h_2string_array->GetLength();
955   // Use the third handle as mutable.
956   MutableHandle<mirror::ObjectArray<mirror::String>> h_string_array(
957       hs.NewHandle<mirror::ObjectArray<mirror::String>>(nullptr));
958   for (int32_t i = 0; i < prop_count; ++i) {
959     h_string_array.Assign(h_2string_array->Get(i));
960     if (h_string_array == nullptr ||
961         h_string_array->GetLength() != 2 ||
962         h_string_array->Get(0) == nullptr) {
963       AbortTransactionOrFail(self,
964                              "Unexpected content of %s",
965                              kAndroidHardcodedSystemPropertiesFieldName);
966       return;
967     }
968     if (h_key->Equals(h_string_array->Get(0))) {
969       // Found a value.
970       if (h_string_array->Get(1) == nullptr && is_default_version) {
971         // Null is being delegated to the default map, and then resolved to the given default value.
972         // As there's no default map, return the given value.
973         result->SetL(shadow_frame->GetVRegReference(arg_offset + 1));
974       } else {
975         result->SetL(h_string_array->Get(1));
976       }
977       return;
978     }
979   }
980 
981   // Key is not supported.
982   AbortTransactionOrFail(self, "getProperty key %s not supported", h_key->ToModifiedUtf8().c_str());
983 }
984 
UnstartedSystemGetProperty(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)985 void UnstartedRuntime::UnstartedSystemGetProperty(
986     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
987   GetSystemProperty(self, shadow_frame, result, arg_offset, false);
988 }
989 
UnstartedSystemGetPropertyWithDefault(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)990 void UnstartedRuntime::UnstartedSystemGetPropertyWithDefault(
991     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
992   GetSystemProperty(self, shadow_frame, result, arg_offset, true);
993 }
994 
GetImmediateCaller(ShadowFrame * shadow_frame)995 static std::string GetImmediateCaller(ShadowFrame* shadow_frame)
996     REQUIRES_SHARED(Locks::mutator_lock_) {
997   if (shadow_frame->GetLink() == nullptr) {
998     return "<no caller>";
999   }
1000   return ArtMethod::PrettyMethod(shadow_frame->GetLink()->GetMethod());
1001 }
1002 
CheckCallers(ShadowFrame * shadow_frame,std::initializer_list<std::string> allowed_call_stack)1003 static bool CheckCallers(ShadowFrame* shadow_frame,
1004                          std::initializer_list<std::string> allowed_call_stack)
1005     REQUIRES_SHARED(Locks::mutator_lock_) {
1006   for (const std::string& allowed_caller : allowed_call_stack) {
1007     if (shadow_frame->GetLink() == nullptr) {
1008       return false;
1009     }
1010 
1011     std::string found_caller = ArtMethod::PrettyMethod(shadow_frame->GetLink()->GetMethod());
1012     if (allowed_caller != found_caller) {
1013       return false;
1014     }
1015 
1016     shadow_frame = shadow_frame->GetLink();
1017   }
1018   return true;
1019 }
1020 
CreateInstanceOf(Thread * self,const char * class_descriptor)1021 static ObjPtr<mirror::Object> CreateInstanceOf(Thread* self, const char* class_descriptor)
1022     REQUIRES_SHARED(Locks::mutator_lock_) {
1023   // Find the requested class.
1024   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
1025   ObjPtr<mirror::Class> klass =
1026       class_linker->FindClass(self, class_descriptor, ScopedNullHandle<mirror::ClassLoader>());
1027   if (klass == nullptr) {
1028     AbortTransactionOrFail(self, "Could not load class %s", class_descriptor);
1029     return nullptr;
1030   }
1031 
1032   StackHandleScope<2> hs(self);
1033   Handle<mirror::Class> h_class(hs.NewHandle(klass));
1034   Handle<mirror::Object> h_obj(hs.NewHandle(h_class->AllocObject(self)));
1035   if (h_obj != nullptr) {
1036     ArtMethod* init_method = h_class->FindConstructor("()V", class_linker->GetImagePointerSize());
1037     if (init_method == nullptr) {
1038       AbortTransactionOrFail(self, "Could not find <init> for %s", class_descriptor);
1039       return nullptr;
1040     } else {
1041       JValue invoke_result;
1042       EnterInterpreterFromInvoke(self, init_method, h_obj.Get(), nullptr, nullptr);
1043       if (!self->IsExceptionPending()) {
1044         return h_obj.Get();
1045       }
1046       AbortTransactionOrFail(self, "Could not run <init> for %s", class_descriptor);
1047     }
1048   }
1049   AbortTransactionOrFail(self, "Could not allocate instance of %s", class_descriptor);
1050   return nullptr;
1051 }
1052 
UnstartedThreadLocalGet(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset ATTRIBUTE_UNUSED)1053 void UnstartedRuntime::UnstartedThreadLocalGet(
1054     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset ATTRIBUTE_UNUSED) {
1055   if (CheckCallers(shadow_frame, { "sun.misc.FloatingDecimal$BinaryToASCIIBuffer "
1056                                        "sun.misc.FloatingDecimal.getBinaryToASCIIBuffer()" })) {
1057     result->SetL(CreateInstanceOf(self, "Lsun/misc/FloatingDecimal$BinaryToASCIIBuffer;"));
1058   } else {
1059     AbortTransactionOrFail(self,
1060                            "ThreadLocal.get() does not support %s",
1061                            GetImmediateCaller(shadow_frame).c_str());
1062   }
1063 }
1064 
UnstartedThreadCurrentThread(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset ATTRIBUTE_UNUSED)1065 void UnstartedRuntime::UnstartedThreadCurrentThread(
1066     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset ATTRIBUTE_UNUSED) {
1067   if (CheckCallers(shadow_frame,
1068                    { "void java.lang.Thread.init(java.lang.ThreadGroup, java.lang.Runnable, "
1069                          "java.lang.String, long, java.security.AccessControlContext)",
1070                      "void java.lang.Thread.init(java.lang.ThreadGroup, java.lang.Runnable, "
1071                          "java.lang.String, long)",
1072                      "void java.lang.Thread.<init>()",
1073                      "void java.util.logging.LogManager$Cleaner.<init>("
1074                          "java.util.logging.LogManager)" })) {
1075     // Whitelist LogManager$Cleaner, which is an unstarted Thread (for a shutdown hook). The
1076     // Thread constructor only asks for the current thread to set up defaults and add the
1077     // thread as unstarted to the ThreadGroup. A faked-up main thread peer is good enough for
1078     // these purposes.
1079     Runtime::Current()->InitThreadGroups(self);
1080     jobject main_peer =
1081         self->CreateCompileTimePeer(self->GetJniEnv(),
1082                                     "main",
1083                                     false,
1084                                     Runtime::Current()->GetMainThreadGroup());
1085     if (main_peer == nullptr) {
1086       AbortTransactionOrFail(self, "Failed allocating peer");
1087       return;
1088     }
1089 
1090     result->SetL(self->DecodeJObject(main_peer));
1091     self->GetJniEnv()->DeleteLocalRef(main_peer);
1092   } else {
1093     AbortTransactionOrFail(self,
1094                            "Thread.currentThread() does not support %s",
1095                            GetImmediateCaller(shadow_frame).c_str());
1096   }
1097 }
1098 
UnstartedThreadGetNativeState(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset ATTRIBUTE_UNUSED)1099 void UnstartedRuntime::UnstartedThreadGetNativeState(
1100     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset ATTRIBUTE_UNUSED) {
1101   if (CheckCallers(shadow_frame,
1102                    { "java.lang.Thread$State java.lang.Thread.getState()",
1103                      "java.lang.ThreadGroup java.lang.Thread.getThreadGroup()",
1104                      "void java.lang.Thread.init(java.lang.ThreadGroup, java.lang.Runnable, "
1105                          "java.lang.String, long, java.security.AccessControlContext)",
1106                      "void java.lang.Thread.init(java.lang.ThreadGroup, java.lang.Runnable, "
1107                          "java.lang.String, long)",
1108                      "void java.lang.Thread.<init>()",
1109                      "void java.util.logging.LogManager$Cleaner.<init>("
1110                          "java.util.logging.LogManager)" })) {
1111     // Whitelist reading the state of the "main" thread when creating another (unstarted) thread
1112     // for LogManager. Report the thread as "new" (it really only counts that it isn't terminated).
1113     constexpr int32_t kJavaRunnable = 1;
1114     result->SetI(kJavaRunnable);
1115   } else {
1116     AbortTransactionOrFail(self,
1117                            "Thread.getNativeState() does not support %s",
1118                            GetImmediateCaller(shadow_frame).c_str());
1119   }
1120 }
1121 
UnstartedMathCeil(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1122 void UnstartedRuntime::UnstartedMathCeil(
1123     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1124   result->SetD(ceil(shadow_frame->GetVRegDouble(arg_offset)));
1125 }
1126 
UnstartedMathFloor(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1127 void UnstartedRuntime::UnstartedMathFloor(
1128     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1129   result->SetD(floor(shadow_frame->GetVRegDouble(arg_offset)));
1130 }
1131 
UnstartedMathSin(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1132 void UnstartedRuntime::UnstartedMathSin(
1133     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1134   result->SetD(sin(shadow_frame->GetVRegDouble(arg_offset)));
1135 }
1136 
UnstartedMathCos(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1137 void UnstartedRuntime::UnstartedMathCos(
1138     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1139   result->SetD(cos(shadow_frame->GetVRegDouble(arg_offset)));
1140 }
1141 
UnstartedMathPow(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1142 void UnstartedRuntime::UnstartedMathPow(
1143     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1144   result->SetD(pow(shadow_frame->GetVRegDouble(arg_offset),
1145                    shadow_frame->GetVRegDouble(arg_offset + 2)));
1146 }
1147 
UnstartedObjectHashCode(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1148 void UnstartedRuntime::UnstartedObjectHashCode(
1149     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1150   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset);
1151   result->SetI(obj->IdentityHashCode());
1152 }
1153 
UnstartedDoubleDoubleToRawLongBits(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1154 void UnstartedRuntime::UnstartedDoubleDoubleToRawLongBits(
1155     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1156   double in = shadow_frame->GetVRegDouble(arg_offset);
1157   result->SetJ(bit_cast<int64_t, double>(in));
1158 }
1159 
UnstartedMemoryPeek(Primitive::Type type,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1160 static void UnstartedMemoryPeek(
1161     Primitive::Type type, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1162   int64_t address = shadow_frame->GetVRegLong(arg_offset);
1163   // TODO: Check that this is in the heap somewhere. Otherwise we will segfault instead of
1164   //       aborting the transaction.
1165 
1166   switch (type) {
1167     case Primitive::kPrimByte: {
1168       result->SetB(*reinterpret_cast<int8_t*>(static_cast<intptr_t>(address)));
1169       return;
1170     }
1171 
1172     case Primitive::kPrimShort: {
1173       using unaligned_short __attribute__((__aligned__(1))) = int16_t;
1174       result->SetS(*reinterpret_cast<unaligned_short*>(static_cast<intptr_t>(address)));
1175       return;
1176     }
1177 
1178     case Primitive::kPrimInt: {
1179       using unaligned_int __attribute__((__aligned__(1))) = int32_t;
1180       result->SetI(*reinterpret_cast<unaligned_int*>(static_cast<intptr_t>(address)));
1181       return;
1182     }
1183 
1184     case Primitive::kPrimLong: {
1185       using unaligned_long __attribute__((__aligned__(1))) = int64_t;
1186       result->SetJ(*reinterpret_cast<unaligned_long*>(static_cast<intptr_t>(address)));
1187       return;
1188     }
1189 
1190     case Primitive::kPrimBoolean:
1191     case Primitive::kPrimChar:
1192     case Primitive::kPrimFloat:
1193     case Primitive::kPrimDouble:
1194     case Primitive::kPrimVoid:
1195     case Primitive::kPrimNot:
1196       LOG(FATAL) << "Not in the Memory API: " << type;
1197       UNREACHABLE();
1198   }
1199   LOG(FATAL) << "Should not reach here";
1200   UNREACHABLE();
1201 }
1202 
UnstartedMemoryPeekByte(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1203 void UnstartedRuntime::UnstartedMemoryPeekByte(
1204     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1205   UnstartedMemoryPeek(Primitive::kPrimByte, shadow_frame, result, arg_offset);
1206 }
1207 
UnstartedMemoryPeekShort(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1208 void UnstartedRuntime::UnstartedMemoryPeekShort(
1209     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1210   UnstartedMemoryPeek(Primitive::kPrimShort, shadow_frame, result, arg_offset);
1211 }
1212 
UnstartedMemoryPeekInt(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1213 void UnstartedRuntime::UnstartedMemoryPeekInt(
1214     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1215   UnstartedMemoryPeek(Primitive::kPrimInt, shadow_frame, result, arg_offset);
1216 }
1217 
UnstartedMemoryPeekLong(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1218 void UnstartedRuntime::UnstartedMemoryPeekLong(
1219     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1220   UnstartedMemoryPeek(Primitive::kPrimLong, shadow_frame, result, arg_offset);
1221 }
1222 
UnstartedMemoryPeekArray(Primitive::Type type,Thread * self,ShadowFrame * shadow_frame,size_t arg_offset)1223 static void UnstartedMemoryPeekArray(
1224     Primitive::Type type, Thread* self, ShadowFrame* shadow_frame, size_t arg_offset)
1225     REQUIRES_SHARED(Locks::mutator_lock_) {
1226   int64_t address_long = shadow_frame->GetVRegLong(arg_offset);
1227   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset + 2);
1228   if (obj == nullptr) {
1229     Runtime::Current()->AbortTransactionAndThrowAbortError(self, "Null pointer in peekArray");
1230     return;
1231   }
1232   ObjPtr<mirror::Array> array = obj->AsArray();
1233 
1234   int offset = shadow_frame->GetVReg(arg_offset + 3);
1235   int count = shadow_frame->GetVReg(arg_offset + 4);
1236   if (offset < 0 || offset + count > array->GetLength()) {
1237     std::string error_msg(StringPrintf("Array out of bounds in peekArray: %d/%d vs %d",
1238                                        offset, count, array->GetLength()));
1239     Runtime::Current()->AbortTransactionAndThrowAbortError(self, error_msg.c_str());
1240     return;
1241   }
1242 
1243   switch (type) {
1244     case Primitive::kPrimByte: {
1245       int8_t* address = reinterpret_cast<int8_t*>(static_cast<intptr_t>(address_long));
1246       ObjPtr<mirror::ByteArray> byte_array = array->AsByteArray();
1247       for (int32_t i = 0; i < count; ++i, ++address) {
1248         byte_array->SetWithoutChecks<true>(i + offset, *address);
1249       }
1250       return;
1251     }
1252 
1253     case Primitive::kPrimShort:
1254     case Primitive::kPrimInt:
1255     case Primitive::kPrimLong:
1256       LOG(FATAL) << "Type unimplemented for Memory Array API, should not reach here: " << type;
1257       UNREACHABLE();
1258 
1259     case Primitive::kPrimBoolean:
1260     case Primitive::kPrimChar:
1261     case Primitive::kPrimFloat:
1262     case Primitive::kPrimDouble:
1263     case Primitive::kPrimVoid:
1264     case Primitive::kPrimNot:
1265       LOG(FATAL) << "Not in the Memory API: " << type;
1266       UNREACHABLE();
1267   }
1268   LOG(FATAL) << "Should not reach here";
1269   UNREACHABLE();
1270 }
1271 
UnstartedMemoryPeekByteArray(Thread * self,ShadowFrame * shadow_frame,JValue * result ATTRIBUTE_UNUSED,size_t arg_offset)1272 void UnstartedRuntime::UnstartedMemoryPeekByteArray(
1273     Thread* self, ShadowFrame* shadow_frame, JValue* result ATTRIBUTE_UNUSED, size_t arg_offset) {
1274   UnstartedMemoryPeekArray(Primitive::kPrimByte, self, shadow_frame, arg_offset);
1275 }
1276 
1277 // This allows reading the new style of String objects during compilation.
UnstartedStringGetCharsNoCheck(Thread * self,ShadowFrame * shadow_frame,JValue * result ATTRIBUTE_UNUSED,size_t arg_offset)1278 void UnstartedRuntime::UnstartedStringGetCharsNoCheck(
1279     Thread* self, ShadowFrame* shadow_frame, JValue* result ATTRIBUTE_UNUSED, size_t arg_offset) {
1280   jint start = shadow_frame->GetVReg(arg_offset + 1);
1281   jint end = shadow_frame->GetVReg(arg_offset + 2);
1282   jint index = shadow_frame->GetVReg(arg_offset + 4);
1283   ObjPtr<mirror::String> string = shadow_frame->GetVRegReference(arg_offset)->AsString();
1284   if (string == nullptr) {
1285     AbortTransactionOrFail(self, "String.getCharsNoCheck with null object");
1286     return;
1287   }
1288   DCHECK_GE(start, 0);
1289   DCHECK_LE(start, end);
1290   DCHECK_LE(end, string->GetLength());
1291   StackHandleScope<1> hs(self);
1292   Handle<mirror::CharArray> h_char_array(
1293       hs.NewHandle(shadow_frame->GetVRegReference(arg_offset + 3)->AsCharArray()));
1294   DCHECK_GE(index, 0);
1295   DCHECK_LE(index, h_char_array->GetLength());
1296   DCHECK_LE(end - start, h_char_array->GetLength() - index);
1297   string->GetChars(start, end, h_char_array, index);
1298 }
1299 
1300 // This allows reading chars from the new style of String objects during compilation.
UnstartedStringCharAt(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1301 void UnstartedRuntime::UnstartedStringCharAt(
1302     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1303   jint index = shadow_frame->GetVReg(arg_offset + 1);
1304   ObjPtr<mirror::String> string = shadow_frame->GetVRegReference(arg_offset)->AsString();
1305   if (string == nullptr) {
1306     AbortTransactionOrFail(self, "String.charAt with null object");
1307     return;
1308   }
1309   result->SetC(string->CharAt(index));
1310 }
1311 
1312 // This allows creating String objects with replaced characters during compilation.
1313 // String.doReplace(char, char) is called from String.replace(char, char) when there is a match.
UnstartedStringDoReplace(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1314 void UnstartedRuntime::UnstartedStringDoReplace(
1315     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1316   jchar old_c = shadow_frame->GetVReg(arg_offset + 1);
1317   jchar new_c = shadow_frame->GetVReg(arg_offset + 2);
1318   StackHandleScope<1> hs(self);
1319   Handle<mirror::String> string =
1320       hs.NewHandle(shadow_frame->GetVRegReference(arg_offset)->AsString());
1321   if (string == nullptr) {
1322     AbortTransactionOrFail(self, "String.replaceWithMatch with null object");
1323     return;
1324   }
1325   result->SetL(mirror::String::DoReplace(self, string, old_c, new_c));
1326 }
1327 
1328 // This allows creating the new style of String objects during compilation.
UnstartedStringFactoryNewStringFromChars(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1329 void UnstartedRuntime::UnstartedStringFactoryNewStringFromChars(
1330     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1331   jint offset = shadow_frame->GetVReg(arg_offset);
1332   jint char_count = shadow_frame->GetVReg(arg_offset + 1);
1333   DCHECK_GE(char_count, 0);
1334   StackHandleScope<1> hs(self);
1335   Handle<mirror::CharArray> h_char_array(
1336       hs.NewHandle(shadow_frame->GetVRegReference(arg_offset + 2)->AsCharArray()));
1337   Runtime* runtime = Runtime::Current();
1338   gc::AllocatorType allocator = runtime->GetHeap()->GetCurrentAllocator();
1339   result->SetL(
1340       mirror::String::AllocFromCharArray(self, char_count, h_char_array, offset, allocator));
1341 }
1342 
1343 // This allows creating the new style of String objects during compilation.
UnstartedStringFactoryNewStringFromString(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1344 void UnstartedRuntime::UnstartedStringFactoryNewStringFromString(
1345     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1346   ObjPtr<mirror::String> to_copy = shadow_frame->GetVRegReference(arg_offset)->AsString();
1347   if (to_copy == nullptr) {
1348     AbortTransactionOrFail(self, "StringFactory.newStringFromString with null object");
1349     return;
1350   }
1351   StackHandleScope<1> hs(self);
1352   Handle<mirror::String> h_string(hs.NewHandle(to_copy));
1353   Runtime* runtime = Runtime::Current();
1354   gc::AllocatorType allocator = runtime->GetHeap()->GetCurrentAllocator();
1355   result->SetL(
1356       mirror::String::AllocFromString(self, h_string->GetLength(), h_string, 0, allocator));
1357 }
1358 
UnstartedStringFastSubstring(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1359 void UnstartedRuntime::UnstartedStringFastSubstring(
1360     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1361   jint start = shadow_frame->GetVReg(arg_offset + 1);
1362   jint length = shadow_frame->GetVReg(arg_offset + 2);
1363   DCHECK_GE(start, 0);
1364   DCHECK_GE(length, 0);
1365   StackHandleScope<1> hs(self);
1366   Handle<mirror::String> h_string(
1367       hs.NewHandle(shadow_frame->GetVRegReference(arg_offset)->AsString()));
1368   DCHECK_LE(start, h_string->GetLength());
1369   DCHECK_LE(start + length, h_string->GetLength());
1370   Runtime* runtime = Runtime::Current();
1371   gc::AllocatorType allocator = runtime->GetHeap()->GetCurrentAllocator();
1372   result->SetL(mirror::String::AllocFromString(self, length, h_string, start, allocator));
1373 }
1374 
1375 // This allows getting the char array for new style of String objects during compilation.
UnstartedStringToCharArray(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1376 void UnstartedRuntime::UnstartedStringToCharArray(
1377     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset)
1378     REQUIRES_SHARED(Locks::mutator_lock_) {
1379   StackHandleScope<1> hs(self);
1380   Handle<mirror::String> string =
1381       hs.NewHandle(shadow_frame->GetVRegReference(arg_offset)->AsString());
1382   if (string == nullptr) {
1383     AbortTransactionOrFail(self, "String.charAt with null object");
1384     return;
1385   }
1386   result->SetL(mirror::String::ToCharArray(string, self));
1387 }
1388 
1389 // This allows statically initializing ConcurrentHashMap and SynchronousQueue.
UnstartedReferenceGetReferent(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1390 void UnstartedRuntime::UnstartedReferenceGetReferent(
1391     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1392   const ObjPtr<mirror::Reference> ref = ObjPtr<mirror::Reference>::DownCast(
1393       shadow_frame->GetVRegReference(arg_offset));
1394   if (ref == nullptr) {
1395     AbortTransactionOrFail(self, "Reference.getReferent() with null object");
1396     return;
1397   }
1398   const ObjPtr<mirror::Object> referent =
1399       Runtime::Current()->GetHeap()->GetReferenceProcessor()->GetReferent(self, ref);
1400   result->SetL(referent);
1401 }
1402 
UnstartedReferenceRefersTo(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1403 void UnstartedRuntime::UnstartedReferenceRefersTo(
1404     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1405   // Use the naive implementation that may block and needlessly extend the lifetime
1406   // of the referenced object.
1407   const ObjPtr<mirror::Reference> ref = ObjPtr<mirror::Reference>::DownCast(
1408       shadow_frame->GetVRegReference(arg_offset));
1409   if (ref == nullptr) {
1410     AbortTransactionOrFail(self, "Reference.refersTo() with null object");
1411     return;
1412   }
1413   const ObjPtr<mirror::Object> referent =
1414       Runtime::Current()->GetHeap()->GetReferenceProcessor()->GetReferent(self, ref);
1415   const ObjPtr<mirror::Object> o = shadow_frame->GetVRegReference(arg_offset + 1);
1416   result->SetZ(o == referent);
1417 }
1418 
1419 // This allows statically initializing ConcurrentHashMap and SynchronousQueue. We use a somewhat
1420 // conservative upper bound. We restrict the callers to SynchronousQueue and ConcurrentHashMap,
1421 // where we can predict the behavior (somewhat).
1422 // Note: this is required (instead of lazy initialization) as these classes are used in the static
1423 //       initialization of other classes, so will *use* the value.
UnstartedRuntimeAvailableProcessors(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset ATTRIBUTE_UNUSED)1424 void UnstartedRuntime::UnstartedRuntimeAvailableProcessors(
1425     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset ATTRIBUTE_UNUSED) {
1426   if (CheckCallers(shadow_frame, { "void java.util.concurrent.SynchronousQueue.<clinit>()" })) {
1427     // SynchronousQueue really only separates between single- and multiprocessor case. Return
1428     // 8 as a conservative upper approximation.
1429     result->SetI(8);
1430   } else if (CheckCallers(shadow_frame,
1431                           { "void java.util.concurrent.ConcurrentHashMap.<clinit>()" })) {
1432     // ConcurrentHashMap uses it for striding. 8 still seems an OK general value, as it's likely
1433     // a good upper bound.
1434     // TODO: Consider resetting in the zygote?
1435     result->SetI(8);
1436   } else {
1437     // Not supported.
1438     AbortTransactionOrFail(self, "Accessing availableProcessors not allowed");
1439   }
1440 }
1441 
1442 // This allows accessing ConcurrentHashMap/SynchronousQueue.
1443 
UnstartedUnsafeCompareAndSwapLong(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1444 void UnstartedRuntime::UnstartedUnsafeCompareAndSwapLong(
1445     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1446   // Argument 0 is the Unsafe instance, skip.
1447   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset + 1);
1448   if (obj == nullptr) {
1449     AbortTransactionOrFail(self, "Cannot access null object, retry at runtime.");
1450     return;
1451   }
1452   int64_t offset = shadow_frame->GetVRegLong(arg_offset + 2);
1453   int64_t expectedValue = shadow_frame->GetVRegLong(arg_offset + 4);
1454   int64_t newValue = shadow_frame->GetVRegLong(arg_offset + 6);
1455   bool success;
1456   // Check whether we're in a transaction, call accordingly.
1457   if (Runtime::Current()->IsActiveTransaction()) {
1458     if (!CheckWriteConstraint(self, obj)) {
1459       DCHECK(self->IsExceptionPending());
1460       return;
1461     }
1462     success = obj->CasFieldStrongSequentiallyConsistent64<true>(MemberOffset(offset),
1463                                                                 expectedValue,
1464                                                                 newValue);
1465   } else {
1466     success = obj->CasFieldStrongSequentiallyConsistent64<false>(MemberOffset(offset),
1467                                                                  expectedValue,
1468                                                                  newValue);
1469   }
1470   result->SetZ(success ? 1 : 0);
1471 }
1472 
UnstartedUnsafeCompareAndSwapObject(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1473 void UnstartedRuntime::UnstartedUnsafeCompareAndSwapObject(
1474     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
1475   // Argument 0 is the Unsafe instance, skip.
1476   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset + 1);
1477   if (obj == nullptr) {
1478     AbortTransactionOrFail(self, "Cannot access null object, retry at runtime.");
1479     return;
1480   }
1481   int64_t offset = shadow_frame->GetVRegLong(arg_offset + 2);
1482   mirror::Object* expected_value = shadow_frame->GetVRegReference(arg_offset + 4);
1483   mirror::Object* new_value = shadow_frame->GetVRegReference(arg_offset + 5);
1484 
1485   // Must use non transactional mode.
1486   if (kUseReadBarrier) {
1487     // Need to make sure the reference stored in the field is a to-space one before attempting the
1488     // CAS or the CAS could fail incorrectly.
1489     mirror::HeapReference<mirror::Object>* field_addr =
1490         reinterpret_cast<mirror::HeapReference<mirror::Object>*>(
1491             reinterpret_cast<uint8_t*>(obj) + static_cast<size_t>(offset));
1492     ReadBarrier::Barrier<
1493         mirror::Object,
1494         /* kIsVolatile= */ false,
1495         kWithReadBarrier,
1496         /* kAlwaysUpdateField= */ true>(
1497         obj,
1498         MemberOffset(offset),
1499         field_addr);
1500   }
1501   bool success;
1502   // Check whether we're in a transaction, call accordingly.
1503   if (Runtime::Current()->IsActiveTransaction()) {
1504     if (!CheckWriteConstraint(self, obj) || !CheckWriteValueConstraint(self, new_value)) {
1505       DCHECK(self->IsExceptionPending());
1506       return;
1507     }
1508     success = obj->CasFieldObject<true>(MemberOffset(offset),
1509                                         expected_value,
1510                                         new_value,
1511                                         CASMode::kStrong,
1512                                         std::memory_order_seq_cst);
1513   } else {
1514     success = obj->CasFieldObject<false>(MemberOffset(offset),
1515                                          expected_value,
1516                                          new_value,
1517                                          CASMode::kStrong,
1518                                          std::memory_order_seq_cst);
1519   }
1520   result->SetZ(success ? 1 : 0);
1521 }
1522 
UnstartedUnsafeGetObjectVolatile(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1523 void UnstartedRuntime::UnstartedUnsafeGetObjectVolatile(
1524     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset)
1525     REQUIRES_SHARED(Locks::mutator_lock_) {
1526   // Argument 0 is the Unsafe instance, skip.
1527   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset + 1);
1528   if (obj == nullptr) {
1529     AbortTransactionOrFail(self, "Cannot access null object, retry at runtime.");
1530     return;
1531   }
1532   int64_t offset = shadow_frame->GetVRegLong(arg_offset + 2);
1533   ObjPtr<mirror::Object> value = obj->GetFieldObjectVolatile<mirror::Object>(MemberOffset(offset));
1534   result->SetL(value);
1535 }
1536 
UnstartedUnsafePutObjectVolatile(Thread * self,ShadowFrame * shadow_frame,JValue * result ATTRIBUTE_UNUSED,size_t arg_offset)1537 void UnstartedRuntime::UnstartedUnsafePutObjectVolatile(
1538     Thread* self, ShadowFrame* shadow_frame, JValue* result ATTRIBUTE_UNUSED, size_t arg_offset)
1539     REQUIRES_SHARED(Locks::mutator_lock_) {
1540   // Argument 0 is the Unsafe instance, skip.
1541   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset + 1);
1542   if (obj == nullptr) {
1543     AbortTransactionOrFail(self, "Cannot access null object, retry at runtime.");
1544     return;
1545   }
1546   int64_t offset = shadow_frame->GetVRegLong(arg_offset + 2);
1547   mirror::Object* value = shadow_frame->GetVRegReference(arg_offset + 4);
1548   if (Runtime::Current()->IsActiveTransaction()) {
1549     if (!CheckWriteConstraint(self, obj) || !CheckWriteValueConstraint(self, value)) {
1550       DCHECK(self->IsExceptionPending());
1551       return;
1552     }
1553     obj->SetFieldObjectVolatile<true>(MemberOffset(offset), value);
1554   } else {
1555     obj->SetFieldObjectVolatile<false>(MemberOffset(offset), value);
1556   }
1557 }
1558 
UnstartedUnsafePutOrderedObject(Thread * self,ShadowFrame * shadow_frame,JValue * result ATTRIBUTE_UNUSED,size_t arg_offset)1559 void UnstartedRuntime::UnstartedUnsafePutOrderedObject(
1560     Thread* self, ShadowFrame* shadow_frame, JValue* result ATTRIBUTE_UNUSED, size_t arg_offset)
1561     REQUIRES_SHARED(Locks::mutator_lock_) {
1562   // Argument 0 is the Unsafe instance, skip.
1563   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset + 1);
1564   if (obj == nullptr) {
1565     AbortTransactionOrFail(self, "Cannot access null object, retry at runtime.");
1566     return;
1567   }
1568   int64_t offset = shadow_frame->GetVRegLong(arg_offset + 2);
1569   mirror::Object* new_value = shadow_frame->GetVRegReference(arg_offset + 4);
1570   std::atomic_thread_fence(std::memory_order_release);
1571   if (Runtime::Current()->IsActiveTransaction()) {
1572     if (!CheckWriteConstraint(self, obj) || !CheckWriteValueConstraint(self, new_value)) {
1573       DCHECK(self->IsExceptionPending());
1574       return;
1575     }
1576     obj->SetFieldObject<true>(MemberOffset(offset), new_value);
1577   } else {
1578     obj->SetFieldObject<false>(MemberOffset(offset), new_value);
1579   }
1580 }
1581 
1582 // A cutout for Integer.parseInt(String). Note: this code is conservative and will bail instead
1583 // of correctly handling the corner cases.
UnstartedIntegerParseInt(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1584 void UnstartedRuntime::UnstartedIntegerParseInt(
1585     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset)
1586     REQUIRES_SHARED(Locks::mutator_lock_) {
1587   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset);
1588   if (obj == nullptr) {
1589     AbortTransactionOrFail(self, "Cannot parse null string, retry at runtime.");
1590     return;
1591   }
1592 
1593   std::string string_value = obj->AsString()->ToModifiedUtf8();
1594   if (string_value.empty()) {
1595     AbortTransactionOrFail(self, "Cannot parse empty string, retry at runtime.");
1596     return;
1597   }
1598 
1599   const char* c_str = string_value.c_str();
1600   char *end;
1601   // Can we set errno to 0? Is this always a variable, and not a macro?
1602   // Worst case, we'll incorrectly fail a transaction. Seems OK.
1603   int64_t l = strtol(c_str, &end, 10);
1604 
1605   if ((errno == ERANGE && l == LONG_MAX) || l > std::numeric_limits<int32_t>::max() ||
1606       (errno == ERANGE && l == LONG_MIN) || l < std::numeric_limits<int32_t>::min()) {
1607     AbortTransactionOrFail(self, "Cannot parse string %s, retry at runtime.", c_str);
1608     return;
1609   }
1610   if (l == 0) {
1611     // Check whether the string wasn't exactly zero.
1612     if (string_value != "0") {
1613       AbortTransactionOrFail(self, "Cannot parse string %s, retry at runtime.", c_str);
1614       return;
1615     }
1616   } else if (*end != '\0') {
1617     AbortTransactionOrFail(self, "Cannot parse string %s, retry at runtime.", c_str);
1618     return;
1619   }
1620 
1621   result->SetI(static_cast<int32_t>(l));
1622 }
1623 
1624 // A cutout for Long.parseLong.
1625 //
1626 // Note: for now use code equivalent to Integer.parseInt, as the full range may not be supported
1627 //       well.
UnstartedLongParseLong(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1628 void UnstartedRuntime::UnstartedLongParseLong(
1629     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset)
1630     REQUIRES_SHARED(Locks::mutator_lock_) {
1631   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset);
1632   if (obj == nullptr) {
1633     AbortTransactionOrFail(self, "Cannot parse null string, retry at runtime.");
1634     return;
1635   }
1636 
1637   std::string string_value = obj->AsString()->ToModifiedUtf8();
1638   if (string_value.empty()) {
1639     AbortTransactionOrFail(self, "Cannot parse empty string, retry at runtime.");
1640     return;
1641   }
1642 
1643   const char* c_str = string_value.c_str();
1644   char *end;
1645   // Can we set errno to 0? Is this always a variable, and not a macro?
1646   // Worst case, we'll incorrectly fail a transaction. Seems OK.
1647   int64_t l = strtol(c_str, &end, 10);
1648 
1649   // Note: comparing against int32_t min/max is intentional here.
1650   if ((errno == ERANGE && l == LONG_MAX) || l > std::numeric_limits<int32_t>::max() ||
1651       (errno == ERANGE && l == LONG_MIN) || l < std::numeric_limits<int32_t>::min()) {
1652     AbortTransactionOrFail(self, "Cannot parse string %s, retry at runtime.", c_str);
1653     return;
1654   }
1655   if (l == 0) {
1656     // Check whether the string wasn't exactly zero.
1657     if (string_value != "0") {
1658       AbortTransactionOrFail(self, "Cannot parse string %s, retry at runtime.", c_str);
1659       return;
1660     }
1661   } else if (*end != '\0') {
1662     AbortTransactionOrFail(self, "Cannot parse string %s, retry at runtime.", c_str);
1663     return;
1664   }
1665 
1666   result->SetJ(l);
1667 }
1668 
UnstartedMethodInvoke(Thread * self,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1669 void UnstartedRuntime::UnstartedMethodInvoke(
1670     Thread* self, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset)
1671     REQUIRES_SHARED(Locks::mutator_lock_) {
1672   JNIEnvExt* env = self->GetJniEnv();
1673   ScopedObjectAccessUnchecked soa(self);
1674 
1675   ObjPtr<mirror::Object> java_method_obj = shadow_frame->GetVRegReference(arg_offset);
1676   ScopedLocalRef<jobject> java_method(env,
1677       java_method_obj == nullptr ? nullptr : env->AddLocalReference<jobject>(java_method_obj));
1678 
1679   ObjPtr<mirror::Object> java_receiver_obj = shadow_frame->GetVRegReference(arg_offset + 1);
1680   ScopedLocalRef<jobject> java_receiver(env,
1681       java_receiver_obj == nullptr ? nullptr : env->AddLocalReference<jobject>(java_receiver_obj));
1682 
1683   ObjPtr<mirror::Object> java_args_obj = shadow_frame->GetVRegReference(arg_offset + 2);
1684   ScopedLocalRef<jobject> java_args(env,
1685       java_args_obj == nullptr ? nullptr : env->AddLocalReference<jobject>(java_args_obj));
1686 
1687   PointerSize pointer_size = Runtime::Current()->GetClassLinker()->GetImagePointerSize();
1688   ScopedLocalRef<jobject> result_jobj(env,
1689       (pointer_size == PointerSize::k64)
1690           ? InvokeMethod<PointerSize::k64>(soa,
1691                                            java_method.get(),
1692                                            java_receiver.get(),
1693                                            java_args.get())
1694           : InvokeMethod<PointerSize::k32>(soa,
1695                                            java_method.get(),
1696                                            java_receiver.get(),
1697                                            java_args.get()));
1698 
1699   result->SetL(self->DecodeJObject(result_jobj.get()));
1700 
1701   // Conservatively flag all exceptions as transaction aborts. This way we don't need to unwrap
1702   // InvocationTargetExceptions.
1703   if (self->IsExceptionPending()) {
1704     AbortTransactionOrFail(self, "Failed Method.invoke");
1705   }
1706 }
1707 
UnstartedSystemIdentityHashCode(Thread * self ATTRIBUTE_UNUSED,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)1708 void UnstartedRuntime::UnstartedSystemIdentityHashCode(
1709     Thread* self ATTRIBUTE_UNUSED, ShadowFrame* shadow_frame, JValue* result, size_t arg_offset)
1710     REQUIRES_SHARED(Locks::mutator_lock_) {
1711   mirror::Object* obj = shadow_frame->GetVRegReference(arg_offset);
1712   result->SetI((obj != nullptr) ? obj->IdentityHashCode() : 0);
1713 }
1714 
1715 // Checks whether the runtime is s64-bit. This is needed for the clinit of
1716 // java.lang.invoke.VarHandle clinit. The clinit determines sets of
1717 // available VarHandle accessors and these differ based on machine
1718 // word size.
UnstartedJNIVMRuntimeIs64Bit(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1719 void UnstartedRuntime::UnstartedJNIVMRuntimeIs64Bit(
1720     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1721     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1722   PointerSize pointer_size = Runtime::Current()->GetClassLinker()->GetImagePointerSize();
1723   jboolean is64bit = (pointer_size == PointerSize::k64) ? JNI_TRUE : JNI_FALSE;
1724   result->SetZ(is64bit);
1725 }
1726 
UnstartedJNIVMRuntimeNewUnpaddedArray(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1727 void UnstartedRuntime::UnstartedJNIVMRuntimeNewUnpaddedArray(
1728     Thread* self,
1729     ArtMethod* method ATTRIBUTE_UNUSED,
1730     mirror::Object* receiver ATTRIBUTE_UNUSED,
1731     uint32_t* args,
1732     JValue* result) {
1733   int32_t length = args[1];
1734   DCHECK_GE(length, 0);
1735   ObjPtr<mirror::Object> element_class = reinterpret_cast32<mirror::Object*>(args[0])->AsClass();
1736   if (element_class == nullptr) {
1737     AbortTransactionOrFail(self, "VMRuntime.newUnpaddedArray with null element_class.");
1738     return;
1739   }
1740   Runtime* runtime = Runtime::Current();
1741   ObjPtr<mirror::Class> array_class =
1742       runtime->GetClassLinker()->FindArrayClass(self, element_class->AsClass());
1743   DCHECK(array_class != nullptr);
1744   gc::AllocatorType allocator = runtime->GetHeap()->GetCurrentAllocator();
1745   result->SetL(mirror::Array::Alloc</*kIsInstrumented=*/ true, /*kFillUsable=*/ true>(
1746       self, array_class, length, array_class->GetComponentSizeShift(), allocator));
1747 }
1748 
UnstartedJNIVMStackGetCallingClassLoader(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1749 void UnstartedRuntime::UnstartedJNIVMStackGetCallingClassLoader(
1750     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1751     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1752   result->SetL(nullptr);
1753 }
1754 
UnstartedJNIVMStackGetStackClass2(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1755 void UnstartedRuntime::UnstartedJNIVMStackGetStackClass2(
1756     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver ATTRIBUTE_UNUSED,
1757     uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1758   NthCallerVisitor visitor(self, 3);
1759   visitor.WalkStack();
1760   if (visitor.caller != nullptr) {
1761     result->SetL(visitor.caller->GetDeclaringClass());
1762   }
1763 }
1764 
UnstartedJNIMathLog(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1765 void UnstartedRuntime::UnstartedJNIMathLog(
1766     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1767     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args, JValue* result) {
1768   JValue value;
1769   value.SetJ((static_cast<uint64_t>(args[1]) << 32) | args[0]);
1770   result->SetD(log(value.GetD()));
1771 }
1772 
UnstartedJNIMathExp(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1773 void UnstartedRuntime::UnstartedJNIMathExp(
1774     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1775     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args, JValue* result) {
1776   JValue value;
1777   value.SetJ((static_cast<uint64_t>(args[1]) << 32) | args[0]);
1778   result->SetD(exp(value.GetD()));
1779 }
1780 
UnstartedJNIAtomicLongVMSupportsCS8(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1781 void UnstartedRuntime::UnstartedJNIAtomicLongVMSupportsCS8(
1782     Thread* self ATTRIBUTE_UNUSED,
1783     ArtMethod* method ATTRIBUTE_UNUSED,
1784     mirror::Object* receiver ATTRIBUTE_UNUSED,
1785     uint32_t* args ATTRIBUTE_UNUSED,
1786     JValue* result) {
1787   result->SetZ(QuasiAtomic::LongAtomicsUseMutexes(Runtime::Current()->GetInstructionSet())
1788                    ? 0
1789                    : 1);
1790 }
1791 
UnstartedJNIClassGetNameNative(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1792 void UnstartedRuntime::UnstartedJNIClassGetNameNative(
1793     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver,
1794     uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1795   StackHandleScope<1> hs(self);
1796   result->SetL(mirror::Class::ComputeName(hs.NewHandle(receiver->AsClass())));
1797 }
1798 
UnstartedJNIDoubleLongBitsToDouble(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1799 void UnstartedRuntime::UnstartedJNIDoubleLongBitsToDouble(
1800     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1801     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args, JValue* result) {
1802   uint64_t long_input = args[0] | (static_cast<uint64_t>(args[1]) << 32);
1803   result->SetD(bit_cast<double>(long_input));
1804 }
1805 
UnstartedJNIFloatFloatToRawIntBits(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1806 void UnstartedRuntime::UnstartedJNIFloatFloatToRawIntBits(
1807     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1808     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args, JValue* result) {
1809   result->SetI(args[0]);
1810 }
1811 
UnstartedJNIFloatIntBitsToFloat(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1812 void UnstartedRuntime::UnstartedJNIFloatIntBitsToFloat(
1813     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED,
1814     mirror::Object* receiver ATTRIBUTE_UNUSED, uint32_t* args, JValue* result) {
1815   result->SetI(args[0]);
1816 }
1817 
UnstartedJNIObjectInternalClone(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1818 void UnstartedRuntime::UnstartedJNIObjectInternalClone(
1819     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver,
1820     uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1821   StackHandleScope<1> hs(self);
1822   Handle<mirror::Object> h_receiver = hs.NewHandle(receiver);
1823   result->SetL(mirror::Object::Clone(h_receiver, self));
1824 }
1825 
UnstartedJNIObjectNotifyAll(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver,uint32_t * args ATTRIBUTE_UNUSED,JValue * result ATTRIBUTE_UNUSED)1826 void UnstartedRuntime::UnstartedJNIObjectNotifyAll(
1827     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver,
1828     uint32_t* args ATTRIBUTE_UNUSED, JValue* result ATTRIBUTE_UNUSED) {
1829   receiver->NotifyAll(self);
1830 }
1831 
UnstartedJNIStringCompareTo(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver,uint32_t * args,JValue * result)1832 void UnstartedRuntime::UnstartedJNIStringCompareTo(Thread* self,
1833                                                    ArtMethod* method ATTRIBUTE_UNUSED,
1834                                                    mirror::Object* receiver,
1835                                                    uint32_t* args,
1836                                                    JValue* result) {
1837   ObjPtr<mirror::Object> rhs = reinterpret_cast32<mirror::Object*>(args[0]);
1838   if (rhs == nullptr) {
1839     AbortTransactionOrFail(self, "String.compareTo with null object.");
1840     return;
1841   }
1842   result->SetI(receiver->AsString()->CompareTo(rhs->AsString()));
1843 }
1844 
UnstartedJNIStringIntern(Thread * self ATTRIBUTE_UNUSED,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1845 void UnstartedRuntime::UnstartedJNIStringIntern(
1846     Thread* self ATTRIBUTE_UNUSED, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver,
1847     uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1848   result->SetL(receiver->AsString()->Intern());
1849 }
1850 
UnstartedJNIArrayCreateMultiArray(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1851 void UnstartedRuntime::UnstartedJNIArrayCreateMultiArray(
1852     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver ATTRIBUTE_UNUSED,
1853     uint32_t* args, JValue* result) {
1854   StackHandleScope<2> hs(self);
1855   auto h_class(hs.NewHandle(reinterpret_cast<mirror::Class*>(args[0])->AsClass()));
1856   auto h_dimensions(hs.NewHandle(reinterpret_cast<mirror::IntArray*>(args[1])->AsIntArray()));
1857   result->SetL(mirror::Array::CreateMultiArray(self, h_class, h_dimensions));
1858 }
1859 
UnstartedJNIArrayCreateObjectArray(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1860 void UnstartedRuntime::UnstartedJNIArrayCreateObjectArray(
1861     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver ATTRIBUTE_UNUSED,
1862     uint32_t* args, JValue* result) {
1863   int32_t length = static_cast<int32_t>(args[1]);
1864   if (length < 0) {
1865     ThrowNegativeArraySizeException(length);
1866     return;
1867   }
1868   ObjPtr<mirror::Class> element_class = reinterpret_cast<mirror::Class*>(args[0])->AsClass();
1869   Runtime* runtime = Runtime::Current();
1870   ClassLinker* class_linker = runtime->GetClassLinker();
1871   ObjPtr<mirror::Class> array_class = class_linker->FindArrayClass(self, element_class);
1872   if (UNLIKELY(array_class == nullptr)) {
1873     CHECK(self->IsExceptionPending());
1874     return;
1875   }
1876   DCHECK(array_class->IsObjectArrayClass());
1877   ObjPtr<mirror::Array> new_array = mirror::ObjectArray<mirror::Object>::Alloc(
1878       self, array_class, length, runtime->GetHeap()->GetCurrentAllocator());
1879   result->SetL(new_array);
1880 }
1881 
UnstartedJNIThrowableNativeFillInStackTrace(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args ATTRIBUTE_UNUSED,JValue * result)1882 void UnstartedRuntime::UnstartedJNIThrowableNativeFillInStackTrace(
1883     Thread* self, ArtMethod* method ATTRIBUTE_UNUSED, mirror::Object* receiver ATTRIBUTE_UNUSED,
1884     uint32_t* args ATTRIBUTE_UNUSED, JValue* result) {
1885   ScopedObjectAccessUnchecked soa(self);
1886   ScopedLocalRef<jobject> stack_trace(self->GetJniEnv(), self->CreateInternalStackTrace(soa));
1887   result->SetL(soa.Decode<mirror::Object>(stack_trace.get()));
1888 }
1889 
UnstartedJNIUnsafeCompareAndSwapInt(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1890 void UnstartedRuntime::UnstartedJNIUnsafeCompareAndSwapInt(
1891     Thread* self,
1892     ArtMethod* method ATTRIBUTE_UNUSED,
1893     mirror::Object* receiver ATTRIBUTE_UNUSED,
1894     uint32_t* args,
1895     JValue* result) {
1896   ObjPtr<mirror::Object> obj = reinterpret_cast32<mirror::Object*>(args[0]);
1897   if (obj == nullptr) {
1898     AbortTransactionOrFail(self, "Unsafe.compareAndSwapInt with null object.");
1899     return;
1900   }
1901   jlong offset = (static_cast<uint64_t>(args[2]) << 32) | args[1];
1902   jint expectedValue = args[3];
1903   jint newValue = args[4];
1904   bool success;
1905   if (Runtime::Current()->IsActiveTransaction()) {
1906     if (!CheckWriteConstraint(self, obj)) {
1907       DCHECK(self->IsExceptionPending());
1908       return;
1909     }
1910     success = obj->CasField32<true>(MemberOffset(offset),
1911                                     expectedValue,
1912                                     newValue,
1913                                     CASMode::kStrong,
1914                                     std::memory_order_seq_cst);
1915   } else {
1916     success = obj->CasField32<false>(MemberOffset(offset),
1917                                      expectedValue,
1918                                      newValue,
1919                                      CASMode::kStrong,
1920                                      std::memory_order_seq_cst);
1921   }
1922   result->SetZ(success ? JNI_TRUE : JNI_FALSE);
1923 }
1924 
UnstartedJNIUnsafeGetIntVolatile(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1925 void UnstartedRuntime::UnstartedJNIUnsafeGetIntVolatile(Thread* self,
1926                                                         ArtMethod* method ATTRIBUTE_UNUSED,
1927                                                         mirror::Object* receiver ATTRIBUTE_UNUSED,
1928                                                         uint32_t* args,
1929                                                         JValue* result) {
1930   ObjPtr<mirror::Object> obj = reinterpret_cast32<mirror::Object*>(args[0]);
1931   if (obj == nullptr) {
1932     AbortTransactionOrFail(self, "Unsafe.compareAndSwapIntVolatile with null object.");
1933     return;
1934   }
1935 
1936   jlong offset = (static_cast<uint64_t>(args[2]) << 32) | args[1];
1937   result->SetI(obj->GetField32Volatile(MemberOffset(offset)));
1938 }
1939 
UnstartedJNIUnsafePutObject(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result ATTRIBUTE_UNUSED)1940 void UnstartedRuntime::UnstartedJNIUnsafePutObject(Thread* self,
1941                                                    ArtMethod* method ATTRIBUTE_UNUSED,
1942                                                    mirror::Object* receiver ATTRIBUTE_UNUSED,
1943                                                    uint32_t* args,
1944                                                    JValue* result ATTRIBUTE_UNUSED) {
1945   ObjPtr<mirror::Object> obj = reinterpret_cast32<mirror::Object*>(args[0]);
1946   if (obj == nullptr) {
1947     AbortTransactionOrFail(self, "Unsafe.putObject with null object.");
1948     return;
1949   }
1950   jlong offset = (static_cast<uint64_t>(args[2]) << 32) | args[1];
1951   ObjPtr<mirror::Object> new_value = reinterpret_cast32<mirror::Object*>(args[3]);
1952   if (Runtime::Current()->IsActiveTransaction()) {
1953     if (!CheckWriteConstraint(self, obj) || !CheckWriteValueConstraint(self, new_value)) {
1954       DCHECK(self->IsExceptionPending());
1955       return;
1956     }
1957     obj->SetFieldObject<true>(MemberOffset(offset), new_value);
1958   } else {
1959     obj->SetFieldObject<false>(MemberOffset(offset), new_value);
1960   }
1961 }
1962 
UnstartedJNIUnsafeGetArrayBaseOffsetForComponentType(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1963 void UnstartedRuntime::UnstartedJNIUnsafeGetArrayBaseOffsetForComponentType(
1964     Thread* self,
1965     ArtMethod* method ATTRIBUTE_UNUSED,
1966     mirror::Object* receiver ATTRIBUTE_UNUSED,
1967     uint32_t* args,
1968     JValue* result) {
1969   ObjPtr<mirror::Object> component = reinterpret_cast32<mirror::Object*>(args[0]);
1970   if (component == nullptr) {
1971     AbortTransactionOrFail(self, "Unsafe.getArrayBaseOffsetForComponentType with null component.");
1972     return;
1973   }
1974   Primitive::Type primitive_type = component->AsClass()->GetPrimitiveType();
1975   result->SetI(mirror::Array::DataOffset(Primitive::ComponentSize(primitive_type)).Int32Value());
1976 }
1977 
UnstartedJNIUnsafeGetArrayIndexScaleForComponentType(Thread * self,ArtMethod * method ATTRIBUTE_UNUSED,mirror::Object * receiver ATTRIBUTE_UNUSED,uint32_t * args,JValue * result)1978 void UnstartedRuntime::UnstartedJNIUnsafeGetArrayIndexScaleForComponentType(
1979     Thread* self,
1980     ArtMethod* method ATTRIBUTE_UNUSED,
1981     mirror::Object* receiver ATTRIBUTE_UNUSED,
1982     uint32_t* args,
1983     JValue* result) {
1984   ObjPtr<mirror::Object> component = reinterpret_cast32<mirror::Object*>(args[0]);
1985   if (component == nullptr) {
1986     AbortTransactionOrFail(self, "Unsafe.getArrayIndexScaleForComponentType with null component.");
1987     return;
1988   }
1989   Primitive::Type primitive_type = component->AsClass()->GetPrimitiveType();
1990   result->SetI(Primitive::ComponentSize(primitive_type));
1991 }
1992 
1993 using InvokeHandler = void(*)(Thread* self,
1994                               ShadowFrame* shadow_frame,
1995                               JValue* result,
1996                               size_t arg_size);
1997 
1998 using JNIHandler = void(*)(Thread* self,
1999                            ArtMethod* method,
2000                            mirror::Object* receiver,
2001                            uint32_t* args,
2002                            JValue* result);
2003 
2004 #define ONE_PLUS(ShortNameIgnored, DescriptorIgnored, NameIgnored, SignatureIgnored) 1 +
2005 static constexpr size_t kInvokeHandlersSize = UNSTARTED_RUNTIME_DIRECT_LIST(ONE_PLUS) 0;
2006 static constexpr size_t kJniHandlersSize = UNSTARTED_RUNTIME_JNI_LIST(ONE_PLUS) 0;
2007 #undef ONE_PLUS
2008 
2009 // The actual value of `kMinLoadFactor` is irrelevant because the HashMap<>s below
2010 // are never resized, but we still need to pass a reasonable value to the constructor.
2011 static constexpr double kMinLoadFactor = 0.5;
2012 static constexpr double kMaxLoadFactor = 0.7;
2013 
BufferSize(size_t size)2014 constexpr size_t BufferSize(size_t size) {
2015   // Note: ceil() is not suitable for constexpr, so cast to size_t and adjust by 1 if needed.
2016   const size_t estimate = static_cast<size_t>(size / kMaxLoadFactor);
2017   return static_cast<size_t>(estimate * kMaxLoadFactor) == size ? estimate : estimate + 1u;
2018 }
2019 
2020 static constexpr size_t kInvokeHandlersBufferSize = BufferSize(kInvokeHandlersSize);
2021 static_assert(
2022     static_cast<size_t>(kInvokeHandlersBufferSize * kMaxLoadFactor) == kInvokeHandlersSize);
2023 static constexpr size_t kJniHandlersBufferSize = BufferSize(kJniHandlersSize);
2024 static_assert(static_cast<size_t>(kJniHandlersBufferSize * kMaxLoadFactor) == kJniHandlersSize);
2025 
2026 static bool tables_initialized_ = false;
2027 static std::pair<ArtMethod*, InvokeHandler> kInvokeHandlersBuffer[kInvokeHandlersBufferSize];
2028 static HashMap<ArtMethod*, InvokeHandler> invoke_handlers_(
2029     kMinLoadFactor, kMaxLoadFactor, kInvokeHandlersBuffer, kInvokeHandlersBufferSize);
2030 static std::pair<ArtMethod*, JNIHandler> kJniHandlersBuffer[kJniHandlersBufferSize];
2031 static HashMap<ArtMethod*, JNIHandler> jni_handlers_(
2032     kMinLoadFactor, kMaxLoadFactor, kJniHandlersBuffer, kJniHandlersBufferSize);
2033 
FindMethod(Thread * self,ClassLinker * class_linker,const char * descriptor,std::string_view name,std::string_view signature)2034 static ArtMethod* FindMethod(Thread* self,
2035                              ClassLinker* class_linker,
2036                              const char* descriptor,
2037                              std::string_view name,
2038                              std::string_view signature) REQUIRES_SHARED(Locks::mutator_lock_) {
2039   ObjPtr<mirror::Class> klass = class_linker->FindSystemClass(self, descriptor);
2040   DCHECK(klass != nullptr) << descriptor;
2041   ArtMethod* method = klass->FindClassMethod(name, signature, class_linker->GetImagePointerSize());
2042   DCHECK(method != nullptr) << descriptor << "." << name << signature;
2043   return method;
2044 }
2045 
InitializeInvokeHandlers(Thread * self)2046 void UnstartedRuntime::InitializeInvokeHandlers(Thread* self) {
2047   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
2048 #define UNSTARTED_DIRECT(ShortName, Descriptor, Name, Signature) \
2049   { \
2050     ArtMethod* method = FindMethod(self, class_linker, Descriptor, Name, Signature); \
2051     invoke_handlers_.insert(std::make_pair(method, & UnstartedRuntime::Unstarted ## ShortName)); \
2052   }
2053   UNSTARTED_RUNTIME_DIRECT_LIST(UNSTARTED_DIRECT)
2054 #undef UNSTARTED_DIRECT
2055   DCHECK_EQ(invoke_handlers_.NumBuckets(), kInvokeHandlersBufferSize);
2056 }
2057 
InitializeJNIHandlers(Thread * self)2058 void UnstartedRuntime::InitializeJNIHandlers(Thread* self) {
2059   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
2060 #define UNSTARTED_JNI(ShortName, Descriptor, Name, Signature) \
2061   { \
2062     ArtMethod* method = FindMethod(self, class_linker, Descriptor, Name, Signature); \
2063     jni_handlers_.insert(std::make_pair(method, & UnstartedRuntime::UnstartedJNI ## ShortName)); \
2064   }
2065   UNSTARTED_RUNTIME_JNI_LIST(UNSTARTED_JNI)
2066 #undef UNSTARTED_JNI
2067   DCHECK_EQ(jni_handlers_.NumBuckets(), kJniHandlersBufferSize);
2068 }
2069 
Initialize()2070 void UnstartedRuntime::Initialize() {
2071   CHECK(!tables_initialized_);
2072 
2073   ScopedObjectAccess soa(Thread::Current());
2074   InitializeInvokeHandlers(soa.Self());
2075   InitializeJNIHandlers(soa.Self());
2076 
2077   tables_initialized_ = true;
2078 }
2079 
Reinitialize()2080 void UnstartedRuntime::Reinitialize() {
2081   CHECK(tables_initialized_);
2082 
2083   // Note: HashSet::clear() abandons the pre-allocated storage which we need to keep.
2084   while (!invoke_handlers_.empty()) {
2085     invoke_handlers_.erase(invoke_handlers_.begin());
2086   }
2087   while (!jni_handlers_.empty()) {
2088     jni_handlers_.erase(jni_handlers_.begin());
2089   }
2090 
2091   tables_initialized_ = false;
2092   Initialize();
2093 }
2094 
Invoke(Thread * self,const CodeItemDataAccessor & accessor,ShadowFrame * shadow_frame,JValue * result,size_t arg_offset)2095 void UnstartedRuntime::Invoke(Thread* self, const CodeItemDataAccessor& accessor,
2096                               ShadowFrame* shadow_frame, JValue* result, size_t arg_offset) {
2097   // In a runtime that's not started we intercept certain methods to avoid complicated dependency
2098   // problems in core libraries.
2099   CHECK(tables_initialized_);
2100 
2101   const auto& iter = invoke_handlers_.find(shadow_frame->GetMethod());
2102   if (iter != invoke_handlers_.end()) {
2103     // Clear out the result in case it's not zeroed out.
2104     result->SetL(nullptr);
2105 
2106     // Push the shadow frame. This is so the failing method can be seen in abort dumps.
2107     self->PushShadowFrame(shadow_frame);
2108 
2109     (*iter->second)(self, shadow_frame, result, arg_offset);
2110 
2111     self->PopShadowFrame();
2112   } else {
2113     // Not special, continue with regular interpreter execution.
2114     ArtInterpreterToInterpreterBridge(self, accessor, shadow_frame, result);
2115   }
2116 }
2117 
2118 // Hand select a number of methods to be run in a not yet started runtime without using JNI.
Jni(Thread * self,ArtMethod * method,mirror::Object * receiver,uint32_t * args,JValue * result)2119 void UnstartedRuntime::Jni(Thread* self, ArtMethod* method, mirror::Object* receiver,
2120                            uint32_t* args, JValue* result) {
2121   const auto& iter = jni_handlers_.find(method);
2122   if (iter != jni_handlers_.end()) {
2123     // Clear out the result in case it's not zeroed out.
2124     result->SetL(nullptr);
2125     (*iter->second)(self, method, receiver, args, result);
2126   } else if (Runtime::Current()->IsActiveTransaction()) {
2127     AbortTransactionF(self, "Attempt to invoke native method in non-started runtime: %s",
2128                       ArtMethod::PrettyMethod(method).c_str());
2129   } else {
2130     LOG(FATAL) << "Calling native method " << ArtMethod::PrettyMethod(method) << " in an unstarted "
2131         "non-transactional runtime";
2132   }
2133 }
2134 
2135 }  // namespace interpreter
2136 }  // namespace art
2137