1 /* 2 * Copyright (C) 2011 The Android Open Source Project 3 * 4 * Licensed under the Apache License, Version 2.0 (the "License"); 5 * you may not use this file except in compliance with the License. 6 * You may obtain a copy of the License at 7 * 8 * http://www.apache.org/licenses/LICENSE-2.0 9 * 10 * Unless required by applicable law or agreed to in writing, software 11 * distributed under the License is distributed on an "AS IS" BASIS, 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 * See the License for the specific language governing permissions and 14 * limitations under the License. 15 */ 16 17 #include "image_writer.h" 18 19 #include <sys/stat.h> 20 21 #include <vector> 22 23 #include "base/logging.h" 24 #include "base/unix_file/fd_file.h" 25 #include "class_linker.h" 26 #include "compiled_method.h" 27 #include "dex_file-inl.h" 28 #include "driver/compiler_driver.h" 29 #include "elf_writer.h" 30 #include "gc/accounting/card_table-inl.h" 31 #include "gc/accounting/heap_bitmap.h" 32 #include "gc/accounting/space_bitmap-inl.h" 33 #include "gc/heap.h" 34 #include "gc/space/large_object_space.h" 35 #include "gc/space/space-inl.h" 36 #include "globals.h" 37 #include "image.h" 38 #include "intern_table.h" 39 #include "mirror/art_field-inl.h" 40 #include "mirror/art_method-inl.h" 41 #include "mirror/array-inl.h" 42 #include "mirror/class-inl.h" 43 #include "mirror/class_loader.h" 44 #include "mirror/dex_cache-inl.h" 45 #include "mirror/object-inl.h" 46 #include "mirror/object_array-inl.h" 47 #include "oat.h" 48 #include "oat_file.h" 49 #include "object_utils.h" 50 #include "runtime.h" 51 #include "scoped_thread_state_change.h" 52 #include "sirt_ref.h" 53 #include "UniquePtr.h" 54 #include "utils.h" 55 56 using ::art::mirror::ArtField; 57 using ::art::mirror::ArtMethod; 58 using ::art::mirror::Class; 59 using ::art::mirror::DexCache; 60 using ::art::mirror::EntryPointFromInterpreter; 61 using ::art::mirror::Object; 62 using ::art::mirror::ObjectArray; 63 using ::art::mirror::String; 64 65 namespace art { 66 67 bool ImageWriter::Write(const std::string& image_filename, 68 uintptr_t image_begin, 69 const std::string& oat_filename, 70 const std::string& oat_location) { 71 CHECK(!image_filename.empty()); 72 73 CHECK_NE(image_begin, 0U); 74 image_begin_ = reinterpret_cast<byte*>(image_begin); 75 76 ClassLinker* class_linker = Runtime::Current()->GetClassLinker(); 77 const std::vector<DexCache*>& all_dex_caches = class_linker->GetDexCaches(); 78 dex_caches_.insert(all_dex_caches.begin(), all_dex_caches.end()); 79 80 UniquePtr<File> oat_file(OS::OpenFileReadWrite(oat_filename.c_str())); 81 if (oat_file.get() == NULL) { 82 LOG(ERROR) << "Failed to open oat file " << oat_filename << " for " << oat_location; 83 return false; 84 } 85 oat_file_ = OatFile::OpenWritable(oat_file.get(), oat_location); 86 if (oat_file_ == NULL) { 87 LOG(ERROR) << "Failed to open writable oat file " << oat_filename << " for " << oat_location; 88 return false; 89 } 90 class_linker->RegisterOatFile(*oat_file_); 91 92 interpreter_to_interpreter_bridge_offset_ = 93 oat_file_->GetOatHeader().GetInterpreterToInterpreterBridgeOffset(); 94 interpreter_to_compiled_code_bridge_offset_ = 95 oat_file_->GetOatHeader().GetInterpreterToCompiledCodeBridgeOffset(); 96 97 jni_dlsym_lookup_offset_ = oat_file_->GetOatHeader().GetJniDlsymLookupOffset(); 98 99 portable_resolution_trampoline_offset_ = 100 oat_file_->GetOatHeader().GetPortableResolutionTrampolineOffset(); 101 portable_to_interpreter_bridge_offset_ = 102 oat_file_->GetOatHeader().GetPortableToInterpreterBridgeOffset(); 103 104 quick_resolution_trampoline_offset_ = 105 oat_file_->GetOatHeader().GetQuickResolutionTrampolineOffset(); 106 quick_to_interpreter_bridge_offset_ = 107 oat_file_->GetOatHeader().GetQuickToInterpreterBridgeOffset(); 108 { 109 Thread::Current()->TransitionFromSuspendedToRunnable(); 110 PruneNonImageClasses(); // Remove junk 111 ComputeLazyFieldsForImageClasses(); // Add useful information 112 ComputeEagerResolvedStrings(); 113 Thread::Current()->TransitionFromRunnableToSuspended(kNative); 114 } 115 gc::Heap* heap = Runtime::Current()->GetHeap(); 116 heap->CollectGarbage(false); // Remove garbage. 117 // Trim size of alloc spaces. 118 for (const auto& space : heap->GetContinuousSpaces()) { 119 if (space->IsDlMallocSpace()) { 120 space->AsDlMallocSpace()->Trim(); 121 } 122 } 123 124 if (!AllocMemory()) { 125 return false; 126 } 127 #ifndef NDEBUG 128 { // NOLINT(whitespace/braces) 129 ScopedObjectAccess soa(Thread::Current()); 130 CheckNonImageClassesRemoved(); 131 } 132 #endif 133 Thread::Current()->TransitionFromSuspendedToRunnable(); 134 size_t oat_loaded_size = 0; 135 size_t oat_data_offset = 0; 136 ElfWriter::GetOatElfInformation(oat_file.get(), oat_loaded_size, oat_data_offset); 137 CalculateNewObjectOffsets(oat_loaded_size, oat_data_offset); 138 CopyAndFixupObjects(); 139 PatchOatCodeAndMethods(); 140 // Record allocations into the image bitmap. 141 RecordImageAllocations(); 142 Thread::Current()->TransitionFromRunnableToSuspended(kNative); 143 144 UniquePtr<File> image_file(OS::CreateEmptyFile(image_filename.c_str())); 145 ImageHeader* image_header = reinterpret_cast<ImageHeader*>(image_->Begin()); 146 if (image_file.get() == NULL) { 147 LOG(ERROR) << "Failed to open image file " << image_filename; 148 return false; 149 } 150 if (fchmod(image_file->Fd(), 0644) != 0) { 151 PLOG(ERROR) << "Failed to make image file world readable: " << image_filename; 152 return EXIT_FAILURE; 153 } 154 155 // Write out the image. 156 CHECK_EQ(image_end_, image_header->GetImageSize()); 157 if (!image_file->WriteFully(image_->Begin(), image_end_)) { 158 PLOG(ERROR) << "Failed to write image file " << image_filename; 159 return false; 160 } 161 162 // Write out the image bitmap at the page aligned start of the image end. 163 CHECK_ALIGNED(image_header->GetImageBitmapOffset(), kPageSize); 164 if (!image_file->Write(reinterpret_cast<char*>(image_bitmap_->Begin()), 165 image_header->GetImageBitmapSize(), 166 image_header->GetImageBitmapOffset())) { 167 PLOG(ERROR) << "Failed to write image file " << image_filename; 168 return false; 169 } 170 171 return true; 172 } 173 174 void ImageWriter::RecordImageAllocations() { 175 uint64_t start_time = NanoTime(); 176 CHECK(image_bitmap_.get() != nullptr); 177 for (const auto& it : offsets_) { 178 mirror::Object* obj = reinterpret_cast<mirror::Object*>(image_->Begin() + it.second); 179 DCHECK_ALIGNED(obj, kObjectAlignment); 180 image_bitmap_->Set(obj); 181 } 182 LOG(INFO) << "RecordImageAllocations took " << PrettyDuration(NanoTime() - start_time); 183 } 184 185 bool ImageWriter::AllocMemory() { 186 size_t size = 0; 187 for (const auto& space : Runtime::Current()->GetHeap()->GetContinuousSpaces()) { 188 if (space->IsDlMallocSpace()) { 189 size += space->Size(); 190 } 191 } 192 193 int prot = PROT_READ | PROT_WRITE; 194 size_t length = RoundUp(size, kPageSize); 195 image_.reset(MemMap::MapAnonymous("image writer image", NULL, length, prot)); 196 if (image_.get() == NULL) { 197 LOG(ERROR) << "Failed to allocate memory for image file generation"; 198 return false; 199 } 200 return true; 201 } 202 203 void ImageWriter::ComputeLazyFieldsForImageClasses() { 204 Runtime* runtime = Runtime::Current(); 205 ClassLinker* class_linker = runtime->GetClassLinker(); 206 class_linker->VisitClassesWithoutClassesLock(ComputeLazyFieldsForClassesVisitor, NULL); 207 } 208 209 bool ImageWriter::ComputeLazyFieldsForClassesVisitor(Class* c, void* /*arg*/) { 210 c->ComputeName(); 211 return true; 212 } 213 214 void ImageWriter::ComputeEagerResolvedStringsCallback(Object* obj, void* arg) { 215 if (!obj->GetClass()->IsStringClass()) { 216 return; 217 } 218 String* string = obj->AsString(); 219 const uint16_t* utf16_string = string->GetCharArray()->GetData() + string->GetOffset(); 220 ImageWriter* writer = reinterpret_cast<ImageWriter*>(arg); 221 for (DexCache* dex_cache : writer->dex_caches_) { 222 const DexFile& dex_file = *dex_cache->GetDexFile(); 223 const DexFile::StringId* string_id = dex_file.FindStringId(utf16_string); 224 if (string_id != NULL) { 225 // This string occurs in this dex file, assign the dex cache entry. 226 uint32_t string_idx = dex_file.GetIndexForStringId(*string_id); 227 if (dex_cache->GetResolvedString(string_idx) == NULL) { 228 dex_cache->SetResolvedString(string_idx, string); 229 } 230 } 231 } 232 } 233 234 void ImageWriter::ComputeEagerResolvedStrings() 235 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) { 236 // TODO: Check image spaces only? 237 gc::Heap* heap = Runtime::Current()->GetHeap(); 238 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_); 239 heap->FlushAllocStack(); 240 heap->GetLiveBitmap()->Walk(ComputeEagerResolvedStringsCallback, this); 241 } 242 243 bool ImageWriter::IsImageClass(const Class* klass) { 244 return compiler_driver_.IsImageClass(ClassHelper(klass).GetDescriptor()); 245 } 246 247 struct NonImageClasses { 248 ImageWriter* image_writer; 249 std::set<std::string>* non_image_classes; 250 }; 251 252 void ImageWriter::PruneNonImageClasses() { 253 if (compiler_driver_.GetImageClasses() == NULL) { 254 return; 255 } 256 Runtime* runtime = Runtime::Current(); 257 ClassLinker* class_linker = runtime->GetClassLinker(); 258 259 // Make a list of classes we would like to prune. 260 std::set<std::string> non_image_classes; 261 NonImageClasses context; 262 context.image_writer = this; 263 context.non_image_classes = &non_image_classes; 264 class_linker->VisitClasses(NonImageClassesVisitor, &context); 265 266 // Remove the undesired classes from the class roots. 267 for (const std::string& it : non_image_classes) { 268 class_linker->RemoveClass(it.c_str(), NULL); 269 } 270 271 // Clear references to removed classes from the DexCaches. 272 ArtMethod* resolution_method = runtime->GetResolutionMethod(); 273 for (DexCache* dex_cache : dex_caches_) { 274 for (size_t i = 0; i < dex_cache->NumResolvedTypes(); i++) { 275 Class* klass = dex_cache->GetResolvedType(i); 276 if (klass != NULL && !IsImageClass(klass)) { 277 dex_cache->SetResolvedType(i, NULL); 278 dex_cache->GetInitializedStaticStorage()->Set(i, NULL); 279 } 280 } 281 for (size_t i = 0; i < dex_cache->NumResolvedMethods(); i++) { 282 ArtMethod* method = dex_cache->GetResolvedMethod(i); 283 if (method != NULL && !IsImageClass(method->GetDeclaringClass())) { 284 dex_cache->SetResolvedMethod(i, resolution_method); 285 } 286 } 287 for (size_t i = 0; i < dex_cache->NumResolvedFields(); i++) { 288 ArtField* field = dex_cache->GetResolvedField(i); 289 if (field != NULL && !IsImageClass(field->GetDeclaringClass())) { 290 dex_cache->SetResolvedField(i, NULL); 291 } 292 } 293 } 294 } 295 296 bool ImageWriter::NonImageClassesVisitor(Class* klass, void* arg) { 297 NonImageClasses* context = reinterpret_cast<NonImageClasses*>(arg); 298 if (!context->image_writer->IsImageClass(klass)) { 299 context->non_image_classes->insert(ClassHelper(klass).GetDescriptor()); 300 } 301 return true; 302 } 303 304 void ImageWriter::CheckNonImageClassesRemoved() 305 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) { 306 if (compiler_driver_.GetImageClasses() == NULL) { 307 return; 308 } 309 310 gc::Heap* heap = Runtime::Current()->GetHeap(); 311 Thread* self = Thread::Current(); 312 { 313 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_); 314 heap->FlushAllocStack(); 315 } 316 317 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_); 318 heap->GetLiveBitmap()->Walk(CheckNonImageClassesRemovedCallback, this); 319 } 320 321 void ImageWriter::CheckNonImageClassesRemovedCallback(Object* obj, void* arg) { 322 ImageWriter* image_writer = reinterpret_cast<ImageWriter*>(arg); 323 if (!obj->IsClass()) { 324 return; 325 } 326 Class* klass = obj->AsClass(); 327 if (!image_writer->IsImageClass(klass)) { 328 image_writer->DumpImageClasses(); 329 CHECK(image_writer->IsImageClass(klass)) << ClassHelper(klass).GetDescriptor() 330 << " " << PrettyDescriptor(klass); 331 } 332 } 333 334 void ImageWriter::DumpImageClasses() { 335 CompilerDriver::DescriptorSet* image_classes = compiler_driver_.GetImageClasses(); 336 CHECK(image_classes != NULL); 337 for (const std::string& image_class : *image_classes) { 338 LOG(INFO) << " " << image_class; 339 } 340 } 341 342 void ImageWriter::CalculateNewObjectOffsetsCallback(Object* obj, void* arg) { 343 DCHECK(obj != NULL); 344 DCHECK(arg != NULL); 345 ImageWriter* image_writer = reinterpret_cast<ImageWriter*>(arg); 346 347 // if it is a string, we want to intern it if its not interned. 348 if (obj->GetClass()->IsStringClass()) { 349 // we must be an interned string that was forward referenced and already assigned 350 if (image_writer->IsImageOffsetAssigned(obj)) { 351 DCHECK_EQ(obj, obj->AsString()->Intern()); 352 return; 353 } 354 SirtRef<String> interned(Thread::Current(), obj->AsString()->Intern()); 355 if (obj != interned.get()) { 356 if (!image_writer->IsImageOffsetAssigned(interned.get())) { 357 // interned obj is after us, allocate its location early 358 image_writer->AssignImageOffset(interned.get()); 359 } 360 // point those looking for this object to the interned version. 361 image_writer->SetImageOffset(obj, image_writer->GetImageOffset(interned.get())); 362 return; 363 } 364 // else (obj == interned), nothing to do but fall through to the normal case 365 } 366 367 image_writer->AssignImageOffset(obj); 368 } 369 370 ObjectArray<Object>* ImageWriter::CreateImageRoots() const { 371 Runtime* runtime = Runtime::Current(); 372 ClassLinker* class_linker = runtime->GetClassLinker(); 373 Class* object_array_class = class_linker->FindSystemClass("[Ljava/lang/Object;"); 374 Thread* self = Thread::Current(); 375 376 // build an Object[] of all the DexCaches used in the source_space_ 377 ObjectArray<Object>* dex_caches = ObjectArray<Object>::Alloc(self, object_array_class, 378 dex_caches_.size()); 379 int i = 0; 380 for (DexCache* dex_cache : dex_caches_) { 381 dex_caches->Set(i++, dex_cache); 382 } 383 384 // build an Object[] of the roots needed to restore the runtime 385 SirtRef<ObjectArray<Object> > 386 image_roots(self, 387 ObjectArray<Object>::Alloc(self, object_array_class, 388 ImageHeader::kImageRootsMax)); 389 image_roots->Set(ImageHeader::kResolutionMethod, runtime->GetResolutionMethod()); 390 image_roots->Set(ImageHeader::kCalleeSaveMethod, 391 runtime->GetCalleeSaveMethod(Runtime::kSaveAll)); 392 image_roots->Set(ImageHeader::kRefsOnlySaveMethod, 393 runtime->GetCalleeSaveMethod(Runtime::kRefsOnly)); 394 image_roots->Set(ImageHeader::kRefsAndArgsSaveMethod, 395 runtime->GetCalleeSaveMethod(Runtime::kRefsAndArgs)); 396 image_roots->Set(ImageHeader::kOatLocation, 397 String::AllocFromModifiedUtf8(self, oat_file_->GetLocation().c_str())); 398 image_roots->Set(ImageHeader::kDexCaches, 399 dex_caches); 400 image_roots->Set(ImageHeader::kClassRoots, 401 class_linker->GetClassRoots()); 402 for (int i = 0; i < ImageHeader::kImageRootsMax; i++) { 403 CHECK(image_roots->Get(i) != NULL); 404 } 405 return image_roots.get(); 406 } 407 408 void ImageWriter::CalculateNewObjectOffsets(size_t oat_loaded_size, size_t oat_data_offset) { 409 CHECK_NE(0U, oat_loaded_size); 410 Thread* self = Thread::Current(); 411 SirtRef<ObjectArray<Object> > image_roots(self, CreateImageRoots()); 412 413 gc::Heap* heap = Runtime::Current()->GetHeap(); 414 const auto& spaces = heap->GetContinuousSpaces(); 415 DCHECK(!spaces.empty()); 416 DCHECK_EQ(0U, image_end_); 417 418 // Leave space for the header, but do not write it yet, we need to 419 // know where image_roots is going to end up 420 image_end_ += RoundUp(sizeof(ImageHeader), 8); // 64-bit-alignment 421 422 { 423 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_); 424 heap->FlushAllocStack(); 425 // TODO: Image spaces only? 426 // TODO: Add InOrderWalk to heap bitmap. 427 const char* old = self->StartAssertNoThreadSuspension("ImageWriter"); 428 DCHECK(heap->GetLargeObjectsSpace()->GetLiveObjects()->IsEmpty()); 429 for (const auto& space : spaces) { 430 space->GetLiveBitmap()->InOrderWalk(CalculateNewObjectOffsetsCallback, this); 431 DCHECK_LT(image_end_, image_->Size()); 432 } 433 self->EndAssertNoThreadSuspension(old); 434 } 435 436 // Create the image bitmap. 437 image_bitmap_.reset(gc::accounting::SpaceBitmap::Create("image bitmap", image_->Begin(), 438 image_end_)); 439 const byte* oat_file_begin = image_begin_ + RoundUp(image_end_, kPageSize); 440 const byte* oat_file_end = oat_file_begin + oat_loaded_size; 441 oat_data_begin_ = oat_file_begin + oat_data_offset; 442 const byte* oat_data_end = oat_data_begin_ + oat_file_->Size(); 443 444 // Return to write header at start of image with future location of image_roots. At this point, 445 // image_end_ is the size of the image (excluding bitmaps). 446 ImageHeader image_header(reinterpret_cast<uint32_t>(image_begin_), 447 static_cast<uint32_t>(image_end_), 448 RoundUp(image_end_, kPageSize), 449 image_bitmap_->Size(), 450 reinterpret_cast<uint32_t>(GetImageAddress(image_roots.get())), 451 oat_file_->GetOatHeader().GetChecksum(), 452 reinterpret_cast<uint32_t>(oat_file_begin), 453 reinterpret_cast<uint32_t>(oat_data_begin_), 454 reinterpret_cast<uint32_t>(oat_data_end), 455 reinterpret_cast<uint32_t>(oat_file_end)); 456 memcpy(image_->Begin(), &image_header, sizeof(image_header)); 457 458 // Note that image_end_ is left at end of used space 459 } 460 461 void ImageWriter::CopyAndFixupObjects() 462 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) { 463 Thread* self = Thread::Current(); 464 const char* old_cause = self->StartAssertNoThreadSuspension("ImageWriter"); 465 gc::Heap* heap = Runtime::Current()->GetHeap(); 466 // TODO: heap validation can't handle this fix up pass 467 heap->DisableObjectValidation(); 468 // TODO: Image spaces only? 469 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_); 470 heap->FlushAllocStack(); 471 heap->GetLiveBitmap()->Walk(CopyAndFixupObjectsCallback, this); 472 self->EndAssertNoThreadSuspension(old_cause); 473 } 474 475 void ImageWriter::CopyAndFixupObjectsCallback(Object* object, void* arg) { 476 DCHECK(object != NULL); 477 DCHECK(arg != NULL); 478 const Object* obj = object; 479 ImageWriter* image_writer = reinterpret_cast<ImageWriter*>(arg); 480 481 // see GetLocalAddress for similar computation 482 size_t offset = image_writer->GetImageOffset(obj); 483 byte* dst = image_writer->image_->Begin() + offset; 484 const byte* src = reinterpret_cast<const byte*>(obj); 485 size_t n = obj->SizeOf(); 486 DCHECK_LT(offset + n, image_writer->image_->Size()); 487 memcpy(dst, src, n); 488 Object* copy = reinterpret_cast<Object*>(dst); 489 copy->SetField32(Object::MonitorOffset(), 0, false); // We may have inflated the lock during compilation. 490 image_writer->FixupObject(obj, copy); 491 } 492 493 void ImageWriter::FixupObject(const Object* orig, Object* copy) { 494 DCHECK(orig != NULL); 495 DCHECK(copy != NULL); 496 copy->SetClass(down_cast<Class*>(GetImageAddress(orig->GetClass()))); 497 // TODO: special case init of pointers to malloc data (or removal of these pointers) 498 if (orig->IsClass()) { 499 FixupClass(orig->AsClass(), down_cast<Class*>(copy)); 500 } else if (orig->IsObjectArray()) { 501 FixupObjectArray(orig->AsObjectArray<Object>(), down_cast<ObjectArray<Object>*>(copy)); 502 } else if (orig->IsArtMethod()) { 503 FixupMethod(orig->AsArtMethod(), down_cast<ArtMethod*>(copy)); 504 } else { 505 FixupInstanceFields(orig, copy); 506 } 507 } 508 509 void ImageWriter::FixupClass(const Class* orig, Class* copy) { 510 FixupInstanceFields(orig, copy); 511 FixupStaticFields(orig, copy); 512 } 513 514 void ImageWriter::FixupMethod(const ArtMethod* orig, ArtMethod* copy) { 515 FixupInstanceFields(orig, copy); 516 517 // OatWriter replaces the code_ with an offset value. Here we re-adjust to a pointer relative to 518 // oat_begin_ 519 520 // The resolution method has a special trampoline to call. 521 if (UNLIKELY(orig == Runtime::Current()->GetResolutionMethod())) { 522 #if defined(ART_USE_PORTABLE_COMPILER) 523 copy->SetEntryPointFromCompiledCode(GetOatAddress(portable_resolution_trampoline_offset_)); 524 #else 525 copy->SetEntryPointFromCompiledCode(GetOatAddress(quick_resolution_trampoline_offset_)); 526 #endif 527 } else { 528 // We assume all methods have code. If they don't currently then we set them to the use the 529 // resolution trampoline. Abstract methods never have code and so we need to make sure their 530 // use results in an AbstractMethodError. We use the interpreter to achieve this. 531 if (UNLIKELY(orig->IsAbstract())) { 532 #if defined(ART_USE_PORTABLE_COMPILER) 533 copy->SetEntryPointFromCompiledCode(GetOatAddress(portable_to_interpreter_bridge_offset_)); 534 #else 535 copy->SetEntryPointFromCompiledCode(GetOatAddress(quick_to_interpreter_bridge_offset_)); 536 #endif 537 copy->SetEntryPointFromInterpreter(reinterpret_cast<EntryPointFromInterpreter*> 538 (GetOatAddress(interpreter_to_interpreter_bridge_offset_))); 539 } else { 540 copy->SetEntryPointFromInterpreter(reinterpret_cast<EntryPointFromInterpreter*> 541 (GetOatAddress(interpreter_to_compiled_code_bridge_offset_))); 542 // Use original code if it exists. Otherwise, set the code pointer to the resolution 543 // trampoline. 544 const byte* code = GetOatAddress(orig->GetOatCodeOffset()); 545 if (code != NULL) { 546 copy->SetEntryPointFromCompiledCode(code); 547 } else { 548 #if defined(ART_USE_PORTABLE_COMPILER) 549 copy->SetEntryPointFromCompiledCode(GetOatAddress(portable_resolution_trampoline_offset_)); 550 #else 551 copy->SetEntryPointFromCompiledCode(GetOatAddress(quick_resolution_trampoline_offset_)); 552 #endif 553 } 554 if (orig->IsNative()) { 555 // The native method's pointer is set to a stub to lookup via dlsym. 556 // Note this is not the code_ pointer, that is handled above. 557 copy->SetNativeMethod(GetOatAddress(jni_dlsym_lookup_offset_)); 558 } else { 559 // Normal (non-abstract non-native) methods have various tables to relocate. 560 uint32_t mapping_table_off = orig->GetOatMappingTableOffset(); 561 const byte* mapping_table = GetOatAddress(mapping_table_off); 562 copy->SetMappingTable(mapping_table); 563 564 uint32_t vmap_table_offset = orig->GetOatVmapTableOffset(); 565 const byte* vmap_table = GetOatAddress(vmap_table_offset); 566 copy->SetVmapTable(vmap_table); 567 568 uint32_t native_gc_map_offset = orig->GetOatNativeGcMapOffset(); 569 const byte* native_gc_map = GetOatAddress(native_gc_map_offset); 570 copy->SetNativeGcMap(reinterpret_cast<const uint8_t*>(native_gc_map)); 571 } 572 } 573 } 574 } 575 576 void ImageWriter::FixupObjectArray(const ObjectArray<Object>* orig, ObjectArray<Object>* copy) { 577 for (int32_t i = 0; i < orig->GetLength(); ++i) { 578 const Object* element = orig->Get(i); 579 copy->SetPtrWithoutChecks(i, GetImageAddress(element)); 580 } 581 } 582 583 void ImageWriter::FixupInstanceFields(const Object* orig, Object* copy) { 584 DCHECK(orig != NULL); 585 DCHECK(copy != NULL); 586 Class* klass = orig->GetClass(); 587 DCHECK(klass != NULL); 588 FixupFields(orig, 589 copy, 590 klass->GetReferenceInstanceOffsets(), 591 false); 592 } 593 594 void ImageWriter::FixupStaticFields(const Class* orig, Class* copy) { 595 DCHECK(orig != NULL); 596 DCHECK(copy != NULL); 597 FixupFields(orig, 598 copy, 599 orig->GetReferenceStaticOffsets(), 600 true); 601 } 602 603 void ImageWriter::FixupFields(const Object* orig, 604 Object* copy, 605 uint32_t ref_offsets, 606 bool is_static) { 607 if (ref_offsets != CLASS_WALK_SUPER) { 608 // Found a reference offset bitmap. Fixup the specified offsets. 609 while (ref_offsets != 0) { 610 size_t right_shift = CLZ(ref_offsets); 611 MemberOffset byte_offset = CLASS_OFFSET_FROM_CLZ(right_shift); 612 const Object* ref = orig->GetFieldObject<const Object*>(byte_offset, false); 613 // Use SetFieldPtr to avoid card marking since we are writing to the image. 614 copy->SetFieldPtr(byte_offset, GetImageAddress(ref), false); 615 ref_offsets &= ~(CLASS_HIGH_BIT >> right_shift); 616 } 617 } else { 618 // There is no reference offset bitmap. In the non-static case, 619 // walk up the class inheritance hierarchy and find reference 620 // offsets the hard way. In the static case, just consider this 621 // class. 622 for (const Class *klass = is_static ? orig->AsClass() : orig->GetClass(); 623 klass != NULL; 624 klass = is_static ? NULL : klass->GetSuperClass()) { 625 size_t num_reference_fields = (is_static 626 ? klass->NumReferenceStaticFields() 627 : klass->NumReferenceInstanceFields()); 628 for (size_t i = 0; i < num_reference_fields; ++i) { 629 ArtField* field = (is_static 630 ? klass->GetStaticField(i) 631 : klass->GetInstanceField(i)); 632 MemberOffset field_offset = field->GetOffset(); 633 const Object* ref = orig->GetFieldObject<const Object*>(field_offset, false); 634 // Use SetFieldPtr to avoid card marking since we are writing to the image. 635 copy->SetFieldPtr(field_offset, GetImageAddress(ref), false); 636 } 637 } 638 } 639 if (!is_static && orig->IsReferenceInstance()) { 640 // Fix-up referent, that isn't marked as an object field, for References. 641 ArtField* field = orig->GetClass()->FindInstanceField("referent", "Ljava/lang/Object;"); 642 MemberOffset field_offset = field->GetOffset(); 643 const Object* ref = orig->GetFieldObject<const Object*>(field_offset, false); 644 // Use SetFieldPtr to avoid card marking since we are writing to the image. 645 copy->SetFieldPtr(field_offset, GetImageAddress(ref), false); 646 } 647 } 648 649 static ArtMethod* GetTargetMethod(const CompilerDriver::PatchInformation* patch) 650 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) { 651 ClassLinker* class_linker = Runtime::Current()->GetClassLinker(); 652 DexCache* dex_cache = class_linker->FindDexCache(patch->GetDexFile()); 653 ArtMethod* method = class_linker->ResolveMethod(patch->GetDexFile(), 654 patch->GetTargetMethodIdx(), 655 dex_cache, 656 NULL, 657 NULL, 658 patch->GetTargetInvokeType()); 659 CHECK(method != NULL) 660 << patch->GetDexFile().GetLocation() << " " << patch->GetTargetMethodIdx(); 661 CHECK(!method->IsRuntimeMethod()) 662 << patch->GetDexFile().GetLocation() << " " << patch->GetTargetMethodIdx(); 663 CHECK(dex_cache->GetResolvedMethods()->Get(patch->GetTargetMethodIdx()) == method) 664 << patch->GetDexFile().GetLocation() << " " << patch->GetReferrerMethodIdx() << " " 665 << PrettyMethod(dex_cache->GetResolvedMethods()->Get(patch->GetTargetMethodIdx())) << " " 666 << PrettyMethod(method); 667 return method; 668 } 669 670 void ImageWriter::PatchOatCodeAndMethods() { 671 Thread* self = Thread::Current(); 672 ClassLinker* class_linker = Runtime::Current()->GetClassLinker(); 673 const char* old_cause = self->StartAssertNoThreadSuspension("ImageWriter"); 674 675 typedef std::vector<const CompilerDriver::PatchInformation*> Patches; 676 const Patches& code_to_patch = compiler_driver_.GetCodeToPatch(); 677 for (size_t i = 0; i < code_to_patch.size(); i++) { 678 const CompilerDriver::PatchInformation* patch = code_to_patch[i]; 679 ArtMethod* target = GetTargetMethod(patch); 680 uint32_t code = reinterpret_cast<uint32_t>(class_linker->GetOatCodeFor(target)); 681 uint32_t code_base = reinterpret_cast<uint32_t>(&oat_file_->GetOatHeader()); 682 uint32_t code_offset = code - code_base; 683 SetPatchLocation(patch, reinterpret_cast<uint32_t>(GetOatAddress(code_offset))); 684 } 685 686 const Patches& methods_to_patch = compiler_driver_.GetMethodsToPatch(); 687 for (size_t i = 0; i < methods_to_patch.size(); i++) { 688 const CompilerDriver::PatchInformation* patch = methods_to_patch[i]; 689 ArtMethod* target = GetTargetMethod(patch); 690 SetPatchLocation(patch, reinterpret_cast<uint32_t>(GetImageAddress(target))); 691 } 692 693 // Update the image header with the new checksum after patching 694 ImageHeader* image_header = reinterpret_cast<ImageHeader*>(image_->Begin()); 695 image_header->SetOatChecksum(oat_file_->GetOatHeader().GetChecksum()); 696 self->EndAssertNoThreadSuspension(old_cause); 697 } 698 699 void ImageWriter::SetPatchLocation(const CompilerDriver::PatchInformation* patch, uint32_t value) { 700 ClassLinker* class_linker = Runtime::Current()->GetClassLinker(); 701 const void* oat_code = class_linker->GetOatCodeFor(patch->GetDexFile(), 702 patch->GetReferrerClassDefIdx(), 703 patch->GetReferrerMethodIdx()); 704 OatHeader& oat_header = const_cast<OatHeader&>(oat_file_->GetOatHeader()); 705 // TODO: make this Thumb2 specific 706 uint8_t* base = reinterpret_cast<uint8_t*>(reinterpret_cast<uint32_t>(oat_code) & ~0x1); 707 uint32_t* patch_location = reinterpret_cast<uint32_t*>(base + patch->GetLiteralOffset()); 708 #ifndef NDEBUG 709 const DexFile::MethodId& id = patch->GetDexFile().GetMethodId(patch->GetTargetMethodIdx()); 710 uint32_t expected = reinterpret_cast<uint32_t>(&id); 711 uint32_t actual = *patch_location; 712 CHECK(actual == expected || actual == value) << std::hex 713 << "actual=" << actual 714 << "expected=" << expected 715 << "value=" << value; 716 #endif 717 *patch_location = value; 718 oat_header.UpdateChecksum(patch_location, sizeof(value)); 719 } 720 721 } // namespace art 722