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      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 <stdio.h>
     18 #include <stdlib.h>
     19 #include <sys/stat.h>
     20 #include <valgrind.h>
     21 
     22 #include <fstream>
     23 #include <iostream>
     24 #include <sstream>
     25 #include <string>
     26 #include <vector>
     27 
     28 #if defined(__linux__) && defined(__arm__)
     29 #include <sys/personality.h>
     30 #include <sys/utsname.h>
     31 #endif
     32 
     33 #include "base/stl_util.h"
     34 #include "base/stringpiece.h"
     35 #include "base/timing_logger.h"
     36 #include "base/unix_file/fd_file.h"
     37 #include "class_linker.h"
     38 #include "compiler.h"
     39 #include "compiler_callbacks.h"
     40 #include "dex_file-inl.h"
     41 #include "dex/pass_driver_me_opts.h"
     42 #include "dex/verification_results.h"
     43 #include "dex/quick_compiler_callbacks.h"
     44 #include "dex/quick/dex_file_to_method_inliner_map.h"
     45 #include "driver/compiler_driver.h"
     46 #include "driver/compiler_options.h"
     47 #include "elf_fixup.h"
     48 #include "elf_patcher.h"
     49 #include "elf_stripper.h"
     50 #include "gc/space/image_space.h"
     51 #include "gc/space/space-inl.h"
     52 #include "image_writer.h"
     53 #include "leb128.h"
     54 #include "mirror/art_method-inl.h"
     55 #include "mirror/class-inl.h"
     56 #include "mirror/class_loader.h"
     57 #include "mirror/object-inl.h"
     58 #include "mirror/object_array-inl.h"
     59 #include "oat_writer.h"
     60 #include "os.h"
     61 #include "runtime.h"
     62 #include "ScopedLocalRef.h"
     63 #include "scoped_thread_state_change.h"
     64 #include "utils.h"
     65 #include "vector_output_stream.h"
     66 #include "well_known_classes.h"
     67 #include "zip_archive.h"
     68 
     69 namespace art {
     70 
     71 static int original_argc;
     72 static char** original_argv;
     73 
     74 static std::string CommandLine() {
     75   std::vector<std::string> command;
     76   for (int i = 0; i < original_argc; ++i) {
     77     command.push_back(original_argv[i]);
     78   }
     79   return Join(command, ' ');
     80 }
     81 
     82 static void UsageErrorV(const char* fmt, va_list ap) {
     83   std::string error;
     84   StringAppendV(&error, fmt, ap);
     85   LOG(ERROR) << error;
     86 }
     87 
     88 static void UsageError(const char* fmt, ...) {
     89   va_list ap;
     90   va_start(ap, fmt);
     91   UsageErrorV(fmt, ap);
     92   va_end(ap);
     93 }
     94 
     95 static void Usage(const char* fmt, ...) {
     96   va_list ap;
     97   va_start(ap, fmt);
     98   UsageErrorV(fmt, ap);
     99   va_end(ap);
    100 
    101   UsageError("Command: %s", CommandLine().c_str());
    102 
    103   UsageError("Usage: dex2oat [options]...");
    104   UsageError("");
    105   UsageError("  --dex-file=<dex-file>: specifies a .dex file to compile.");
    106   UsageError("      Example: --dex-file=/system/framework/core.jar");
    107   UsageError("");
    108   UsageError("  --zip-fd=<file-descriptor>: specifies a file descriptor of a zip file");
    109   UsageError("      containing a classes.dex file to compile.");
    110   UsageError("      Example: --zip-fd=5");
    111   UsageError("");
    112   UsageError("  --zip-location=<zip-location>: specifies a symbolic name for the file");
    113   UsageError("      corresponding to the file descriptor specified by --zip-fd.");
    114   UsageError("      Example: --zip-location=/system/app/Calculator.apk");
    115   UsageError("");
    116   UsageError("  --oat-file=<file.oat>: specifies the oat output destination via a filename.");
    117   UsageError("      Example: --oat-file=/system/framework/boot.oat");
    118   UsageError("");
    119   UsageError("  --oat-fd=<number>: specifies the oat output destination via a file descriptor.");
    120   UsageError("      Example: --oat-fd=6");
    121   UsageError("");
    122   UsageError("  --oat-location=<oat-name>: specifies a symbolic name for the file corresponding");
    123   UsageError("      to the file descriptor specified by --oat-fd.");
    124   UsageError("      Example: --oat-location=/data/dalvik-cache/system@app (at) Calculator.apk.oat");
    125   UsageError("");
    126   UsageError("  --oat-symbols=<file.oat>: specifies the oat output destination with full symbols.");
    127   UsageError("      Example: --oat-symbols=/symbols/system/framework/boot.oat");
    128   UsageError("");
    129   UsageError("  --bitcode=<file.bc>: specifies the optional bitcode filename.");
    130   UsageError("      Example: --bitcode=/system/framework/boot.bc");
    131   UsageError("");
    132   UsageError("  --image=<file.art>: specifies the output image filename.");
    133   UsageError("      Example: --image=/system/framework/boot.art");
    134   UsageError("");
    135   UsageError("  --image-classes=<classname-file>: specifies classes to include in an image.");
    136   UsageError("      Example: --image=frameworks/base/preloaded-classes");
    137   UsageError("");
    138   UsageError("  --base=<hex-address>: specifies the base address when creating a boot image.");
    139   UsageError("      Example: --base=0x50000000");
    140   UsageError("");
    141   UsageError("  --boot-image=<file.art>: provide the image file for the boot class path.");
    142   UsageError("      Example: --boot-image=/system/framework/boot.art");
    143   UsageError("      Default: $ANDROID_ROOT/system/framework/boot.art");
    144   UsageError("");
    145   UsageError("  --android-root=<path>: used to locate libraries for portable linking.");
    146   UsageError("      Example: --android-root=out/host/linux-x86");
    147   UsageError("      Default: $ANDROID_ROOT");
    148   UsageError("");
    149   UsageError("  --instruction-set=(arm|arm64|mips|x86|x86_64): compile for a particular");
    150   UsageError("      instruction set.");
    151   UsageError("      Example: --instruction-set=x86");
    152   UsageError("      Default: arm");
    153   UsageError("");
    154   UsageError("  --instruction-set-features=...,: Specify instruction set features");
    155   UsageError("      Example: --instruction-set-features=div");
    156   UsageError("      Default: default");
    157   UsageError("");
    158   UsageError("  --compile-pic: Force indirect use of code, methods, and classes");
    159   UsageError("      Default: disabled");
    160   UsageError("");
    161   UsageError("  --compiler-backend=(Quick|Optimizing|Portable): select compiler backend");
    162   UsageError("      set.");
    163   UsageError("      Example: --compiler-backend=Portable");
    164   UsageError("      Default: Quick");
    165   UsageError("");
    166   UsageError("  --compiler-filter=(verify-none|interpret-only|space|balanced|speed|everything):");
    167   UsageError("      select compiler filter.");
    168   UsageError("      Example: --compiler-filter=everything");
    169 #if ART_SMALL_MODE
    170   UsageError("      Default: interpret-only");
    171 #else
    172   UsageError("      Default: speed");
    173 #endif
    174   UsageError("");
    175   UsageError("  --huge-method-max=<method-instruction-count>: the threshold size for a huge");
    176   UsageError("      method for compiler filter tuning.");
    177   UsageError("      Example: --huge-method-max=%d", CompilerOptions::kDefaultHugeMethodThreshold);
    178   UsageError("      Default: %d", CompilerOptions::kDefaultHugeMethodThreshold);
    179   UsageError("");
    180   UsageError("  --huge-method-max=<method-instruction-count>: threshold size for a huge");
    181   UsageError("      method for compiler filter tuning.");
    182   UsageError("      Example: --huge-method-max=%d", CompilerOptions::kDefaultHugeMethodThreshold);
    183   UsageError("      Default: %d", CompilerOptions::kDefaultHugeMethodThreshold);
    184   UsageError("");
    185   UsageError("  --large-method-max=<method-instruction-count>: threshold size for a large");
    186   UsageError("      method for compiler filter tuning.");
    187   UsageError("      Example: --large-method-max=%d", CompilerOptions::kDefaultLargeMethodThreshold);
    188   UsageError("      Default: %d", CompilerOptions::kDefaultLargeMethodThreshold);
    189   UsageError("");
    190   UsageError("  --small-method-max=<method-instruction-count>: threshold size for a small");
    191   UsageError("      method for compiler filter tuning.");
    192   UsageError("      Example: --small-method-max=%d", CompilerOptions::kDefaultSmallMethodThreshold);
    193   UsageError("      Default: %d", CompilerOptions::kDefaultSmallMethodThreshold);
    194   UsageError("");
    195   UsageError("  --tiny-method-max=<method-instruction-count>: threshold size for a tiny");
    196   UsageError("      method for compiler filter tuning.");
    197   UsageError("      Example: --tiny-method-max=%d", CompilerOptions::kDefaultTinyMethodThreshold);
    198   UsageError("      Default: %d", CompilerOptions::kDefaultTinyMethodThreshold);
    199   UsageError("");
    200   UsageError("  --num-dex-methods=<method-count>: threshold size for a small dex file for");
    201   UsageError("      compiler filter tuning. If the input has fewer than this many methods");
    202   UsageError("      and the filter is not interpret-only or verify-none, overrides the");
    203   UsageError("      filter to use speed");
    204   UsageError("      Example: --num-dex-method=%d", CompilerOptions::kDefaultNumDexMethodsThreshold);
    205   UsageError("      Default: %d", CompilerOptions::kDefaultNumDexMethodsThreshold);
    206   UsageError("");
    207   UsageError("  --host: used with Portable backend to link against host runtime libraries");
    208   UsageError("");
    209   UsageError("  --dump-timing: display a breakdown of where time was spent");
    210   UsageError("");
    211   UsageError("  --include-patch-information: Include patching information so the generated code");
    212   UsageError("      can have its base address moved without full recompilation.");
    213   UsageError("");
    214   UsageError("  --no-include-patch-information: Do not include patching information.");
    215   UsageError("");
    216   UsageError("  --include-debug-symbols: Include ELF symbols in this oat file");
    217   UsageError("");
    218   UsageError("  --no-include-debug-symbols: Do not include ELF symbols in this oat file");
    219   UsageError("");
    220   UsageError("  --runtime-arg <argument>: used to specify various arguments for the runtime,");
    221   UsageError("      such as initial heap size, maximum heap size, and verbose output.");
    222   UsageError("      Use a separate --runtime-arg switch for each argument.");
    223   UsageError("      Example: --runtime-arg -Xms256m");
    224   UsageError("");
    225   UsageError("  --profile-file=<filename>: specify profiler output file to use for compilation.");
    226   UsageError("");
    227   UsageError("  --print-pass-names: print a list of pass names");
    228   UsageError("");
    229   UsageError("  --disable-passes=<pass-names>:  disable one or more passes separated by comma.");
    230   UsageError("      Example: --disable-passes=UseCount,BBOptimizations");
    231   UsageError("");
    232   UsageError("  --swap-file=<file-name>:  specifies a file to use for swap.");
    233   UsageError("      Example: --swap-file=/data/tmp/swap.001");
    234   UsageError("");
    235   UsageError("  --swap-fd=<file-descriptor>:  specifies a file to use for swap (by descriptor).");
    236   UsageError("      Example: --swap-fd=10");
    237   UsageError("");
    238   std::cerr << "See log for usage error information\n";
    239   exit(EXIT_FAILURE);
    240 }
    241 
    242 class Dex2Oat {
    243  public:
    244   static bool Create(Dex2Oat** p_dex2oat,
    245                      const RuntimeOptions& runtime_options,
    246                      const CompilerOptions& compiler_options,
    247                      Compiler::Kind compiler_kind,
    248                      InstructionSet instruction_set,
    249                      InstructionSetFeatures instruction_set_features,
    250                      VerificationResults* verification_results,
    251                      DexFileToMethodInlinerMap* method_inliner_map,
    252                      size_t thread_count)
    253       SHARED_TRYLOCK_FUNCTION(true, Locks::mutator_lock_) {
    254     CHECK(verification_results != nullptr);
    255     CHECK(method_inliner_map != nullptr);
    256     std::unique_ptr<Dex2Oat> dex2oat(new Dex2Oat(&compiler_options,
    257                                            compiler_kind,
    258                                            instruction_set,
    259                                            instruction_set_features,
    260                                            verification_results,
    261                                            method_inliner_map,
    262                                            thread_count));
    263     if (!dex2oat->CreateRuntime(runtime_options, instruction_set)) {
    264       *p_dex2oat = nullptr;
    265       return false;
    266     }
    267     *p_dex2oat = dex2oat.release();
    268     return true;
    269   }
    270 
    271   ~Dex2Oat() {
    272     delete runtime_;
    273   }
    274 
    275   void LogCompletionTime(const CompilerDriver* compiler) {
    276     LOG(INFO) << "dex2oat took " << PrettyDuration(NanoTime() - start_ns_)
    277               << " (threads: " << thread_count_ << ") "
    278               << compiler->GetMemoryUsageString(kIsDebugBuild || VLOG_IS_ON(compiler));
    279   }
    280 
    281 
    282   // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
    283   std::set<std::string>* ReadImageClassesFromFile(const char* image_classes_filename) {
    284     std::unique_ptr<std::ifstream> image_classes_file(new std::ifstream(image_classes_filename,
    285                                                                   std::ifstream::in));
    286     if (image_classes_file.get() == nullptr) {
    287       LOG(ERROR) << "Failed to open image classes file " << image_classes_filename;
    288       return nullptr;
    289     }
    290     std::unique_ptr<std::set<std::string>> result(ReadImageClasses(*image_classes_file));
    291     image_classes_file->close();
    292     return result.release();
    293   }
    294 
    295   std::set<std::string>* ReadImageClasses(std::istream& image_classes_stream) {
    296     std::unique_ptr<std::set<std::string>> image_classes(new std::set<std::string>);
    297     while (image_classes_stream.good()) {
    298       std::string dot;
    299       std::getline(image_classes_stream, dot);
    300       if (StartsWith(dot, "#") || dot.empty()) {
    301         continue;
    302       }
    303       std::string descriptor(DotToDescriptor(dot.c_str()));
    304       image_classes->insert(descriptor);
    305     }
    306     return image_classes.release();
    307   }
    308 
    309   // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
    310   std::set<std::string>* ReadImageClassesFromZip(const char* zip_filename,
    311                                                          const char* image_classes_filename,
    312                                                          std::string* error_msg) {
    313     std::unique_ptr<ZipArchive> zip_archive(ZipArchive::Open(zip_filename, error_msg));
    314     if (zip_archive.get() == nullptr) {
    315       return nullptr;
    316     }
    317     std::unique_ptr<ZipEntry> zip_entry(zip_archive->Find(image_classes_filename, error_msg));
    318     if (zip_entry.get() == nullptr) {
    319       *error_msg = StringPrintf("Failed to find '%s' within '%s': %s", image_classes_filename,
    320                                 zip_filename, error_msg->c_str());
    321       return nullptr;
    322     }
    323     std::unique_ptr<MemMap> image_classes_file(zip_entry->ExtractToMemMap(zip_filename,
    324                                                                           image_classes_filename,
    325                                                                           error_msg));
    326     if (image_classes_file.get() == nullptr) {
    327       *error_msg = StringPrintf("Failed to extract '%s' from '%s': %s", image_classes_filename,
    328                                 zip_filename, error_msg->c_str());
    329       return nullptr;
    330     }
    331     const std::string image_classes_string(reinterpret_cast<char*>(image_classes_file->Begin()),
    332                                            image_classes_file->Size());
    333     std::istringstream image_classes_stream(image_classes_string);
    334     return ReadImageClasses(image_classes_stream);
    335   }
    336 
    337   bool PatchOatCode(const CompilerDriver* compiler_driver, File* oat_file,
    338                     const std::string& oat_location, std::string* error_msg) {
    339     // We asked to include patch information but we are not making an image. We need to fix
    340     // everything up manually.
    341     std::unique_ptr<ElfFile> elf_file(ElfFile::Open(oat_file, PROT_READ|PROT_WRITE,
    342                                                     MAP_SHARED, error_msg));
    343     if (elf_file.get() == NULL) {
    344       LOG(ERROR) << error_msg;
    345       return false;
    346     }
    347     {
    348       ReaderMutexLock mu(Thread::Current(), *Locks::mutator_lock_);
    349       return ElfPatcher::Patch(compiler_driver, elf_file.get(), oat_location, error_msg);
    350     }
    351   }
    352 
    353   const CompilerDriver* CreateOatFile(const std::string& boot_image_option,
    354                                       const std::string& android_root,
    355                                       bool is_host,
    356                                       const std::vector<const DexFile*>& dex_files,
    357                                       File* oat_file,
    358                                       const std::string& oat_location,
    359                                       const std::string& bitcode_filename,
    360                                       bool image,
    361                                       std::unique_ptr<std::set<std::string>>& image_classes,
    362                                       std::unique_ptr<std::set<std::string>>& compiled_classes,
    363                                       bool dump_stats,
    364                                       bool dump_passes,
    365                                       TimingLogger& timings,
    366                                       CumulativeLogger& compiler_phases_timings,
    367                                       int swap_fd,
    368                                       std::string profile_file,
    369                                       SafeMap<std::string, std::string>* key_value_store) {
    370     CHECK(key_value_store != nullptr);
    371 
    372     // Handle and ClassLoader creation needs to come after Runtime::Create
    373     jobject class_loader = nullptr;
    374     Thread* self = Thread::Current();
    375     if (!boot_image_option.empty()) {
    376       ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
    377       std::vector<const DexFile*> class_path_files(dex_files);
    378       OpenClassPathFiles(runtime_->GetClassPathString(), class_path_files);
    379       ScopedObjectAccess soa(self);
    380       for (size_t i = 0; i < class_path_files.size(); i++) {
    381         class_linker->RegisterDexFile(*class_path_files[i]);
    382       }
    383       soa.Env()->AllocObject(WellKnownClasses::dalvik_system_PathClassLoader);
    384       ScopedLocalRef<jobject> class_loader_local(soa.Env(),
    385           soa.Env()->AllocObject(WellKnownClasses::dalvik_system_PathClassLoader));
    386       class_loader = soa.Env()->NewGlobalRef(class_loader_local.get());
    387       Runtime::Current()->SetCompileTimeClassPath(class_loader, class_path_files);
    388     }
    389 
    390     std::unique_ptr<CompilerDriver> driver(new CompilerDriver(compiler_options_,
    391                                                               verification_results_,
    392                                                               method_inliner_map_,
    393                                                               compiler_kind_,
    394                                                               instruction_set_,
    395                                                               instruction_set_features_,
    396                                                               image,
    397                                                               image_classes.release(),
    398                                                               compiled_classes.release(),
    399                                                               thread_count_,
    400                                                               dump_stats,
    401                                                               dump_passes,
    402                                                               &compiler_phases_timings,
    403                                                               swap_fd,
    404                                                               profile_file));
    405 
    406     driver->GetCompiler()->SetBitcodeFileName(*driver.get(), bitcode_filename);
    407 
    408     driver->CompileAll(class_loader, dex_files, &timings);
    409 
    410     TimingLogger::ScopedTiming t2("dex2oat OatWriter", &timings);
    411     std::string image_file_location;
    412     uint32_t image_file_location_oat_checksum = 0;
    413     uintptr_t image_file_location_oat_data_begin = 0;
    414     int32_t image_patch_delta = 0;
    415     if (!driver->IsImage()) {
    416       TimingLogger::ScopedTiming t3("Loading image checksum", &timings);
    417       gc::space::ImageSpace* image_space = Runtime::Current()->GetHeap()->GetImageSpace();
    418       image_file_location_oat_checksum = image_space->GetImageHeader().GetOatChecksum();
    419       image_file_location_oat_data_begin =
    420           reinterpret_cast<uintptr_t>(image_space->GetImageHeader().GetOatDataBegin());
    421       image_file_location = image_space->GetImageFilename();
    422       image_patch_delta = image_space->GetImageHeader().GetPatchDelta();
    423     }
    424 
    425     if (!image_file_location.empty()) {
    426       key_value_store->Put(OatHeader::kImageLocationKey, image_file_location);
    427     }
    428 
    429     OatWriter oat_writer(dex_files, image_file_location_oat_checksum,
    430                          image_file_location_oat_data_begin,
    431                          image_patch_delta,
    432                          driver.get(),
    433                          &timings,
    434                          key_value_store);
    435 
    436     t2.NewTiming("Writing ELF");
    437     if (!driver->WriteElf(android_root, is_host, dex_files, &oat_writer, oat_file)) {
    438       LOG(ERROR) << "Failed to write ELF file " << oat_file->GetPath();
    439       oat_file->Erase();
    440       return nullptr;
    441     }
    442 
    443     // Flush result to disk. Patching code will re-open the file (mmap), so ensure that our view
    444     // of the file already made it there and won't be re-ordered with writes from PatchOat or
    445     // image patching.
    446     if (oat_file->Flush() != 0) {
    447       PLOG(ERROR) << "Failed flushing oat file " << oat_file->GetPath();
    448       oat_file->Erase();
    449       return nullptr;
    450     }
    451 
    452     if (!driver->IsImage() && driver->GetCompilerOptions().GetIncludePatchInformation()) {
    453       t2.NewTiming("Patching ELF");
    454       std::string error_msg;
    455       if (!PatchOatCode(driver.get(), oat_file, oat_location, &error_msg)) {
    456         LOG(ERROR) << "Failed to fixup ELF file " << oat_file->GetPath() << ": " << error_msg;
    457         oat_file->Erase();
    458         return nullptr;
    459       }
    460     }
    461 
    462     return driver.release();
    463   }
    464 
    465   bool CreateImageFile(const std::string& image_filename,
    466                        uintptr_t image_base,
    467                        const std::string& oat_filename,
    468                        const std::string& oat_location,
    469                        const CompilerDriver& compiler)
    470       LOCKS_EXCLUDED(Locks::mutator_lock_) {
    471     uintptr_t oat_data_begin;
    472     {
    473       // ImageWriter is scoped so it can free memory before doing FixupElf
    474       ImageWriter image_writer(compiler);
    475       if (!image_writer.Write(image_filename, image_base, oat_filename, oat_location,
    476                               compiler_options_->GetCompilePic())) {
    477         LOG(ERROR) << "Failed to create image file " << image_filename;
    478         return false;
    479       }
    480       oat_data_begin = image_writer.GetOatDataBegin();
    481     }
    482 
    483 
    484     // Do not fix up the ELF file if we are --compile-pic
    485     if (!compiler_options_->GetCompilePic()) {
    486       std::unique_ptr<File> oat_file(OS::OpenFileReadWrite(oat_filename.c_str()));
    487       if (oat_file.get() == nullptr) {
    488         PLOG(ERROR) << "Failed to open ELF file: " << oat_filename;
    489         return false;
    490       }
    491 
    492       if (!ElfFixup::Fixup(oat_file.get(), oat_data_begin)) {
    493         LOG(ERROR) << "Failed to fixup ELF file " << oat_file->GetPath();
    494         oat_file->Erase();
    495         return false;
    496       }
    497 
    498       if (oat_file->FlushCloseOrErase() != 0) {
    499         PLOG(ERROR) << "Failed to flush and close patched oat file " << oat_filename;
    500         return false;
    501       }
    502     }
    503 
    504     return true;
    505   }
    506 
    507  private:
    508   explicit Dex2Oat(const CompilerOptions* compiler_options,
    509                    Compiler::Kind compiler_kind,
    510                    InstructionSet instruction_set,
    511                    InstructionSetFeatures instruction_set_features,
    512                    VerificationResults* verification_results,
    513                    DexFileToMethodInlinerMap* method_inliner_map,
    514                    size_t thread_count)
    515       : compiler_options_(compiler_options),
    516         compiler_kind_(compiler_kind),
    517         instruction_set_(instruction_set),
    518         instruction_set_features_(instruction_set_features),
    519         verification_results_(verification_results),
    520         method_inliner_map_(method_inliner_map),
    521         runtime_(nullptr),
    522         thread_count_(thread_count),
    523         start_ns_(NanoTime()) {
    524     CHECK(compiler_options != nullptr);
    525     CHECK(verification_results != nullptr);
    526     CHECK(method_inliner_map != nullptr);
    527   }
    528 
    529   bool CreateRuntime(const RuntimeOptions& runtime_options, InstructionSet instruction_set)
    530       SHARED_TRYLOCK_FUNCTION(true, Locks::mutator_lock_) {
    531     if (!Runtime::Create(runtime_options, false)) {
    532       LOG(ERROR) << "Failed to create runtime";
    533       return false;
    534     }
    535     Runtime* runtime = Runtime::Current();
    536     runtime->SetInstructionSet(instruction_set);
    537     for (int i = 0; i < Runtime::kLastCalleeSaveType; i++) {
    538       Runtime::CalleeSaveType type = Runtime::CalleeSaveType(i);
    539       if (!runtime->HasCalleeSaveMethod(type)) {
    540         runtime->SetCalleeSaveMethod(runtime->CreateCalleeSaveMethod(type), type);
    541       }
    542     }
    543     runtime->GetClassLinker()->FixupDexCaches(runtime->GetResolutionMethod());
    544     runtime->GetClassLinker()->RunRootClinits();
    545     runtime_ = runtime;
    546     return true;
    547   }
    548 
    549   // Appends to dex_files any elements of class_path that it doesn't already
    550   // contain. This will open those dex files as necessary.
    551   static void OpenClassPathFiles(const std::string& class_path,
    552                                  std::vector<const DexFile*>& dex_files) {
    553     std::vector<std::string> parsed;
    554     Split(class_path, ':', parsed);
    555     // Take Locks::mutator_lock_ so that lock ordering on the ClassLinker::dex_lock_ is maintained.
    556     ScopedObjectAccess soa(Thread::Current());
    557     for (size_t i = 0; i < parsed.size(); ++i) {
    558       if (DexFilesContains(dex_files, parsed[i])) {
    559         continue;
    560       }
    561       std::string error_msg;
    562       if (!DexFile::Open(parsed[i].c_str(), parsed[i].c_str(), &error_msg, &dex_files)) {
    563         LOG(WARNING) << "Failed to open dex file '" << parsed[i] << "': " << error_msg;
    564       }
    565     }
    566   }
    567 
    568   // Returns true if dex_files has a dex with the named location.
    569   static bool DexFilesContains(const std::vector<const DexFile*>& dex_files,
    570                                const std::string& location) {
    571     for (size_t i = 0; i < dex_files.size(); ++i) {
    572       if (dex_files[i]->GetLocation() == location) {
    573         return true;
    574       }
    575     }
    576     return false;
    577   }
    578 
    579   const CompilerOptions* const compiler_options_;
    580   const Compiler::Kind compiler_kind_;
    581 
    582   const InstructionSet instruction_set_;
    583   const InstructionSetFeatures instruction_set_features_;
    584 
    585   VerificationResults* const verification_results_;
    586   DexFileToMethodInlinerMap* const method_inliner_map_;
    587   Runtime* runtime_;
    588   size_t thread_count_;
    589   uint64_t start_ns_;
    590 
    591   DISALLOW_IMPLICIT_CONSTRUCTORS(Dex2Oat);
    592 };
    593 
    594 static size_t OpenDexFiles(const std::vector<const char*>& dex_filenames,
    595                            const std::vector<const char*>& dex_locations,
    596                            std::vector<const DexFile*>& dex_files) {
    597   size_t failure_count = 0;
    598   for (size_t i = 0; i < dex_filenames.size(); i++) {
    599     const char* dex_filename = dex_filenames[i];
    600     const char* dex_location = dex_locations[i];
    601     ATRACE_BEGIN(StringPrintf("Opening dex file '%s'", dex_filenames[i]).c_str());
    602     std::string error_msg;
    603     if (!OS::FileExists(dex_filename)) {
    604       LOG(WARNING) << "Skipping non-existent dex file '" << dex_filename << "'";
    605       continue;
    606     }
    607     if (!DexFile::Open(dex_filename, dex_location, &error_msg, &dex_files)) {
    608       LOG(WARNING) << "Failed to open .dex from file '" << dex_filename << "': " << error_msg;
    609       ++failure_count;
    610     }
    611     ATRACE_END();
    612   }
    613   return failure_count;
    614 }
    615 
    616 // The primary goal of the watchdog is to prevent stuck build servers
    617 // during development when fatal aborts lead to a cascade of failures
    618 // that result in a deadlock.
    619 class WatchDog {
    620 // WatchDog defines its own CHECK_PTHREAD_CALL to avoid using LOG which uses locks
    621 #undef CHECK_PTHREAD_CALL
    622 #define CHECK_WATCH_DOG_PTHREAD_CALL(call, args, what) \
    623   do { \
    624     int rc = call args; \
    625     if (rc != 0) { \
    626       errno = rc; \
    627       std::string message(# call); \
    628       message += " failed for "; \
    629       message += reason; \
    630       Fatal(message); \
    631     } \
    632   } while (false)
    633 
    634  public:
    635   explicit WatchDog(bool is_watch_dog_enabled) {
    636     is_watch_dog_enabled_ = is_watch_dog_enabled;
    637     if (!is_watch_dog_enabled_) {
    638       return;
    639     }
    640     shutting_down_ = false;
    641     const char* reason = "dex2oat watch dog thread startup";
    642     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_init, (&mutex_, nullptr), reason);
    643     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_init, (&cond_, nullptr), reason);
    644     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_init, (&attr_), reason);
    645     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_create, (&pthread_, &attr_, &CallBack, this), reason);
    646     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_destroy, (&attr_), reason);
    647   }
    648   ~WatchDog() {
    649     if (!is_watch_dog_enabled_) {
    650       return;
    651     }
    652     const char* reason = "dex2oat watch dog thread shutdown";
    653     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
    654     shutting_down_ = true;
    655     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_signal, (&cond_), reason);
    656     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
    657 
    658     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_join, (pthread_, nullptr), reason);
    659 
    660     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_destroy, (&cond_), reason);
    661     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_destroy, (&mutex_), reason);
    662   }
    663 
    664  private:
    665   static void* CallBack(void* arg) {
    666     WatchDog* self = reinterpret_cast<WatchDog*>(arg);
    667     ::art::SetThreadName("dex2oat watch dog");
    668     self->Wait();
    669     return nullptr;
    670   }
    671 
    672   static void Message(char severity, const std::string& message) {
    673     // TODO: Remove when we switch to LOG when we can guarantee it won't prevent shutdown in error
    674     //       cases.
    675     fprintf(stderr, "dex2oat%s %c %d %d %s\n",
    676             kIsDebugBuild ? "d" : "",
    677             severity,
    678             getpid(),
    679             GetTid(),
    680             message.c_str());
    681   }
    682 
    683   static void Fatal(const std::string& message) {
    684     Message('F', message);
    685     exit(1);
    686   }
    687 
    688   void Wait() {
    689     // TODO: tune the multiplier for GC verification, the following is just to make the timeout
    690     //       large.
    691     int64_t multiplier = kVerifyObjectSupport > kVerifyObjectModeFast ? 100 : 1;
    692     timespec timeout_ts;
    693     InitTimeSpec(true, CLOCK_REALTIME, multiplier * kWatchDogTimeoutSeconds * 1000, 0, &timeout_ts);
    694     const char* reason = "dex2oat watch dog thread waiting";
    695     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
    696     while (!shutting_down_) {
    697       int rc = TEMP_FAILURE_RETRY(pthread_cond_timedwait(&cond_, &mutex_, &timeout_ts));
    698       if (rc == ETIMEDOUT) {
    699         Fatal(StringPrintf("dex2oat did not finish after %d seconds", kWatchDogTimeoutSeconds));
    700       } else if (rc != 0) {
    701         std::string message(StringPrintf("pthread_cond_timedwait failed: %s",
    702                                          strerror(errno)));
    703         Fatal(message.c_str());
    704       }
    705     }
    706     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
    707   }
    708 
    709   // When setting timeouts, keep in mind that the build server may not be as fast as your desktop.
    710   // Debug builds are slower so they have larger timeouts.
    711   static const unsigned int kSlowdownFactor = kIsDebugBuild ? 5U : 1U;
    712 #if ART_USE_PORTABLE_COMPILER
    713   // 30 minutes scaled by kSlowdownFactor.
    714   static const unsigned int kWatchDogTimeoutSeconds = kSlowdownFactor * 30 * 60;
    715 #else
    716   // 6 minutes scaled by kSlowdownFactor.
    717   static const unsigned int kWatchDogTimeoutSeconds = kSlowdownFactor * 6 * 60;
    718 #endif
    719 
    720   bool is_watch_dog_enabled_;
    721   bool shutting_down_;
    722   // TODO: Switch to Mutex when we can guarantee it won't prevent shutdown in error cases.
    723   pthread_mutex_t mutex_;
    724   pthread_cond_t cond_;
    725   pthread_attr_t attr_;
    726   pthread_t pthread_;
    727 };
    728 const unsigned int WatchDog::kWatchDogTimeoutSeconds;
    729 
    730 // Given a set of instruction features from the build, parse it.  The
    731 // input 'str' is a comma separated list of feature names.  Parse it and
    732 // return the InstructionSetFeatures object.
    733 static InstructionSetFeatures ParseFeatureList(std::string str) {
    734   InstructionSetFeatures result;
    735   typedef std::vector<std::string> FeatureList;
    736   FeatureList features;
    737   Split(str, ',', features);
    738   for (FeatureList::iterator i = features.begin(); i != features.end(); i++) {
    739     std::string feature = Trim(*i);
    740     if (feature == "default") {
    741       // Nothing to do.
    742     } else if (feature == "div") {
    743       // Supports divide instruction.
    744        result.SetHasDivideInstruction(true);
    745     } else if (feature == "nodiv") {
    746       // Turn off support for divide instruction.
    747       result.SetHasDivideInstruction(false);
    748     } else if (feature == "lpae") {
    749       // Supports Large Physical Address Extension.
    750       result.SetHasLpae(true);
    751     } else if (feature == "nolpae") {
    752       // Turn off support for Large Physical Address Extension.
    753       result.SetHasLpae(false);
    754     } else {
    755       Usage("Unknown instruction set feature: '%s'", feature.c_str());
    756     }
    757   }
    758   // others...
    759   return result;
    760 }
    761 
    762 void ParseStringAfterChar(const std::string& s, char c, std::string* parsed_value) {
    763   std::string::size_type colon = s.find(c);
    764   if (colon == std::string::npos) {
    765     Usage("Missing char %c in option %s\n", c, s.c_str());
    766   }
    767   // Add one to remove the char we were trimming until.
    768   *parsed_value = s.substr(colon + 1);
    769 }
    770 
    771 void ParseDouble(const std::string& option, char after_char,
    772                  double min, double max, double* parsed_value) {
    773   std::string substring;
    774   ParseStringAfterChar(option, after_char, &substring);
    775   bool sane_val = true;
    776   double value;
    777   if (false) {
    778     // TODO: this doesn't seem to work on the emulator.  b/15114595
    779     std::stringstream iss(substring);
    780     iss >> value;
    781     // Ensure that we have a value, there was no cruft after it and it satisfies a sensible range.
    782     sane_val = iss.eof() && (value >= min) && (value <= max);
    783   } else {
    784     char* end = nullptr;
    785     value = strtod(substring.c_str(), &end);
    786     sane_val = *end == '\0' && value >= min && value <= max;
    787   }
    788   if (!sane_val) {
    789     Usage("Invalid double value %s for option %s\n", substring.c_str(), option.c_str());
    790   }
    791   *parsed_value = value;
    792 }
    793 
    794 static void b13564922() {
    795 #if defined(__linux__) && defined(__arm__)
    796   int major, minor;
    797   struct utsname uts;
    798   if (uname(&uts) != -1 &&
    799       sscanf(uts.release, "%d.%d", &major, &minor) == 2 &&
    800       ((major < 3) || ((major == 3) && (minor < 4)))) {
    801     // Kernels before 3.4 don't handle the ASLR well and we can run out of address
    802     // space (http://b/13564922). Work around the issue by inhibiting further mmap() randomization.
    803     int old_personality = personality(0xffffffff);
    804     if ((old_personality & ADDR_NO_RANDOMIZE) == 0) {
    805       int new_personality = personality(old_personality | ADDR_NO_RANDOMIZE);
    806       if (new_personality == -1) {
    807         LOG(WARNING) << "personality(. | ADDR_NO_RANDOMIZE) failed.";
    808       }
    809     }
    810   }
    811 #endif
    812 }
    813 
    814 static constexpr size_t kMinDexFilesForSwap = 2;
    815 static constexpr size_t kMinDexFileCumulativeSizeForSwap = 20 * MB;
    816 
    817 static bool UseSwap(bool is_image, std::vector<const DexFile*>& dex_files) {
    818   if (is_image) {
    819     // Don't use swap, we know generation should succeed, and we don't want to slow it down.
    820     return false;
    821   }
    822   if (dex_files.size() < kMinDexFilesForSwap) {
    823     // If there are less dex files than the threshold, assume it's gonna be fine.
    824     return false;
    825   }
    826   size_t dex_files_size = 0;
    827   for (const auto* dex_file : dex_files) {
    828     dex_files_size += dex_file->GetHeader().file_size_;
    829   }
    830   return dex_files_size >= kMinDexFileCumulativeSizeForSwap;
    831 }
    832 
    833 static int dex2oat(int argc, char** argv) {
    834   b13564922();
    835 
    836   original_argc = argc;
    837   original_argv = argv;
    838 
    839   TimingLogger timings("compiler", false, false);
    840   CumulativeLogger compiler_phases_timings("compilation times");
    841 
    842   InitLogging(argv);
    843 
    844   // Skip over argv[0].
    845   argv++;
    846   argc--;
    847 
    848   if (argc == 0) {
    849     Usage("No arguments specified");
    850   }
    851 
    852   std::vector<const char*> dex_filenames;
    853   std::vector<const char*> dex_locations;
    854   int zip_fd = -1;
    855   std::string zip_location;
    856   std::string oat_filename;
    857   std::string oat_symbols;
    858   std::string oat_location;
    859   int oat_fd = -1;
    860   std::string bitcode_filename;
    861   const char* image_classes_zip_filename = nullptr;
    862   const char* image_classes_filename = nullptr;
    863   const char* compiled_classes_zip_filename = nullptr;
    864   const char* compiled_classes_filename = nullptr;
    865   std::string image_filename;
    866   std::string boot_image_filename;
    867   uintptr_t image_base = 0;
    868   std::string android_root;
    869   std::vector<const char*> runtime_args;
    870   int thread_count = sysconf(_SC_NPROCESSORS_CONF);
    871   Compiler::Kind compiler_kind = kUsePortableCompiler
    872       ? Compiler::kPortable
    873       : Compiler::kQuick;
    874   const char* compiler_filter_string = nullptr;
    875   bool compile_pic = false;
    876   int huge_method_threshold = CompilerOptions::kDefaultHugeMethodThreshold;
    877   int large_method_threshold = CompilerOptions::kDefaultLargeMethodThreshold;
    878   int small_method_threshold = CompilerOptions::kDefaultSmallMethodThreshold;
    879   int tiny_method_threshold = CompilerOptions::kDefaultTinyMethodThreshold;
    880   int num_dex_methods_threshold = CompilerOptions::kDefaultNumDexMethodsThreshold;
    881 
    882   // Take the default set of instruction features from the build.
    883   InstructionSetFeatures instruction_set_features =
    884       ParseFeatureList(Runtime::GetDefaultInstructionSetFeatures());
    885 
    886   InstructionSet instruction_set = kRuntimeISA;
    887 
    888   // Profile file to use
    889   std::string profile_file;
    890   double top_k_profile_threshold = CompilerOptions::kDefaultTopKProfileThreshold;
    891 
    892   bool is_host = false;
    893   bool dump_stats = false;
    894   bool dump_timing = false;
    895   bool dump_passes = false;
    896   bool include_patch_information = CompilerOptions::kDefaultIncludePatchInformation;
    897   bool include_debug_symbols = kIsDebugBuild;
    898   bool dump_slow_timing = kIsDebugBuild;
    899   bool watch_dog_enabled = true;
    900   bool generate_gdb_information = kIsDebugBuild;
    901 
    902   // Checks are all explicit until we know the architecture.
    903   bool implicit_null_checks = false;
    904   bool implicit_so_checks = false;
    905   bool implicit_suspend_checks = false;
    906 
    907   // Swap file.
    908   std::string swap_file_name;
    909   int swap_fd = -1;  // No swap file descriptor;
    910 
    911   for (int i = 0; i < argc; i++) {
    912     const StringPiece option(argv[i]);
    913     const bool log_options = false;
    914     if (log_options) {
    915       LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
    916     }
    917     if (option.starts_with("--dex-file=")) {
    918       dex_filenames.push_back(option.substr(strlen("--dex-file=")).data());
    919     } else if (option.starts_with("--dex-location=")) {
    920       dex_locations.push_back(option.substr(strlen("--dex-location=")).data());
    921     } else if (option.starts_with("--zip-fd=")) {
    922       const char* zip_fd_str = option.substr(strlen("--zip-fd=")).data();
    923       if (!ParseInt(zip_fd_str, &zip_fd)) {
    924         Usage("Failed to parse --zip-fd argument '%s' as an integer", zip_fd_str);
    925       }
    926       if (zip_fd < 0) {
    927         Usage("--zip-fd passed a negative value %d", zip_fd);
    928       }
    929     } else if (option.starts_with("--zip-location=")) {
    930       zip_location = option.substr(strlen("--zip-location=")).data();
    931     } else if (option.starts_with("--oat-file=")) {
    932       oat_filename = option.substr(strlen("--oat-file=")).data();
    933     } else if (option.starts_with("--oat-symbols=")) {
    934       oat_symbols = option.substr(strlen("--oat-symbols=")).data();
    935     } else if (option.starts_with("--oat-fd=")) {
    936       const char* oat_fd_str = option.substr(strlen("--oat-fd=")).data();
    937       if (!ParseInt(oat_fd_str, &oat_fd)) {
    938         Usage("Failed to parse --oat-fd argument '%s' as an integer", oat_fd_str);
    939       }
    940       if (oat_fd < 0) {
    941         Usage("--oat-fd passed a negative value %d", oat_fd);
    942       }
    943     } else if (option == "--watch-dog") {
    944       watch_dog_enabled = true;
    945     } else if (option == "--no-watch-dog") {
    946       watch_dog_enabled = false;
    947     } else if (option == "--gen-gdb-info") {
    948       generate_gdb_information = true;
    949       // Debug symbols are needed for gdb information.
    950       include_debug_symbols = true;
    951     } else if (option == "--no-gen-gdb-info") {
    952       generate_gdb_information = false;
    953     } else if (option.starts_with("-j")) {
    954       const char* thread_count_str = option.substr(strlen("-j")).data();
    955       if (!ParseInt(thread_count_str, &thread_count)) {
    956         Usage("Failed to parse -j argument '%s' as an integer", thread_count_str);
    957       }
    958     } else if (option.starts_with("--oat-location=")) {
    959       oat_location = option.substr(strlen("--oat-location=")).data();
    960     } else if (option.starts_with("--bitcode=")) {
    961       bitcode_filename = option.substr(strlen("--bitcode=")).data();
    962     } else if (option.starts_with("--image=")) {
    963       image_filename = option.substr(strlen("--image=")).data();
    964     } else if (option.starts_with("--image-classes=")) {
    965       image_classes_filename = option.substr(strlen("--image-classes=")).data();
    966     } else if (option.starts_with("--image-classes-zip=")) {
    967       image_classes_zip_filename = option.substr(strlen("--image-classes-zip=")).data();
    968     } else if (option.starts_with("--compiled-classes=")) {
    969       compiled_classes_filename = option.substr(strlen("--compiled-classes=")).data();
    970     } else if (option.starts_with("--compiled-classes-zip=")) {
    971       compiled_classes_zip_filename = option.substr(strlen("--compiled-classes-zip=")).data();
    972     } else if (option.starts_with("--base=")) {
    973       const char* image_base_str = option.substr(strlen("--base=")).data();
    974       char* end;
    975       image_base = strtoul(image_base_str, &end, 16);
    976       if (end == image_base_str || *end != '\0') {
    977         Usage("Failed to parse hexadecimal value for option %s", option.data());
    978       }
    979     } else if (option.starts_with("--boot-image=")) {
    980       boot_image_filename = option.substr(strlen("--boot-image=")).data();
    981     } else if (option.starts_with("--android-root=")) {
    982       android_root = option.substr(strlen("--android-root=")).data();
    983     } else if (option.starts_with("--instruction-set=")) {
    984       StringPiece instruction_set_str = option.substr(strlen("--instruction-set=")).data();
    985       if (instruction_set_str == "arm") {
    986         instruction_set = kThumb2;
    987       } else if (instruction_set_str == "arm64") {
    988         instruction_set = kArm64;
    989       } else if (instruction_set_str == "mips") {
    990         instruction_set = kMips;
    991       } else if (instruction_set_str == "x86") {
    992         instruction_set = kX86;
    993       } else if (instruction_set_str == "x86_64") {
    994         instruction_set = kX86_64;
    995       }
    996     } else if (option.starts_with("--instruction-set-features=")) {
    997       StringPiece str = option.substr(strlen("--instruction-set-features=")).data();
    998       instruction_set_features = ParseFeatureList(str.as_string());
    999     } else if (option.starts_with("--compiler-backend=")) {
   1000       StringPiece backend_str = option.substr(strlen("--compiler-backend=")).data();
   1001       if (backend_str == "Quick") {
   1002         compiler_kind = Compiler::kQuick;
   1003       } else if (backend_str == "Optimizing") {
   1004         compiler_kind = Compiler::kOptimizing;
   1005       } else if (backend_str == "Portable") {
   1006         compiler_kind = Compiler::kPortable;
   1007       }
   1008     } else if (option.starts_with("--compiler-filter=")) {
   1009       compiler_filter_string = option.substr(strlen("--compiler-filter=")).data();
   1010     } else if (option == "--compile-pic") {
   1011       compile_pic = true;
   1012     } else if (option.starts_with("--huge-method-max=")) {
   1013       const char* threshold = option.substr(strlen("--huge-method-max=")).data();
   1014       if (!ParseInt(threshold, &huge_method_threshold)) {
   1015         Usage("Failed to parse --huge-method-max '%s' as an integer", threshold);
   1016       }
   1017       if (huge_method_threshold < 0) {
   1018         Usage("--huge-method-max passed a negative value %s", huge_method_threshold);
   1019       }
   1020     } else if (option.starts_with("--large-method-max=")) {
   1021       const char* threshold = option.substr(strlen("--large-method-max=")).data();
   1022       if (!ParseInt(threshold, &large_method_threshold)) {
   1023         Usage("Failed to parse --large-method-max '%s' as an integer", threshold);
   1024       }
   1025       if (large_method_threshold < 0) {
   1026         Usage("--large-method-max passed a negative value %s", large_method_threshold);
   1027       }
   1028     } else if (option.starts_with("--small-method-max=")) {
   1029       const char* threshold = option.substr(strlen("--small-method-max=")).data();
   1030       if (!ParseInt(threshold, &small_method_threshold)) {
   1031         Usage("Failed to parse --small-method-max '%s' as an integer", threshold);
   1032       }
   1033       if (small_method_threshold < 0) {
   1034         Usage("--small-method-max passed a negative value %s", small_method_threshold);
   1035       }
   1036     } else if (option.starts_with("--tiny-method-max=")) {
   1037       const char* threshold = option.substr(strlen("--tiny-method-max=")).data();
   1038       if (!ParseInt(threshold, &tiny_method_threshold)) {
   1039         Usage("Failed to parse --tiny-method-max '%s' as an integer", threshold);
   1040       }
   1041       if (tiny_method_threshold < 0) {
   1042         Usage("--tiny-method-max passed a negative value %s", tiny_method_threshold);
   1043       }
   1044     } else if (option.starts_with("--num-dex-methods=")) {
   1045       const char* threshold = option.substr(strlen("--num-dex-methods=")).data();
   1046       if (!ParseInt(threshold, &num_dex_methods_threshold)) {
   1047         Usage("Failed to parse --num-dex-methods '%s' as an integer", threshold);
   1048       }
   1049       if (num_dex_methods_threshold < 0) {
   1050         Usage("--num-dex-methods passed a negative value %s", num_dex_methods_threshold);
   1051       }
   1052     } else if (option == "--host") {
   1053       is_host = true;
   1054     } else if (option == "--runtime-arg") {
   1055       if (++i >= argc) {
   1056         Usage("Missing required argument for --runtime-arg");
   1057       }
   1058       if (log_options) {
   1059         LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
   1060       }
   1061       runtime_args.push_back(argv[i]);
   1062     } else if (option == "--dump-timing") {
   1063       dump_timing = true;
   1064     } else if (option == "--dump-passes") {
   1065       dump_passes = true;
   1066     } else if (option == "--dump-stats") {
   1067       dump_stats = true;
   1068     } else if (option == "--include-debug-symbols" || option == "--no-strip-symbols") {
   1069       include_debug_symbols = true;
   1070     } else if (option == "--no-include-debug-symbols" || option == "--strip-symbols") {
   1071       include_debug_symbols = false;
   1072       generate_gdb_information = false;  // Depends on debug symbols, see above.
   1073     } else if (option.starts_with("--profile-file=")) {
   1074       profile_file = option.substr(strlen("--profile-file=")).data();
   1075       VLOG(compiler) << "dex2oat: profile file is " << profile_file;
   1076     } else if (option == "--no-profile-file") {
   1077       // No profile
   1078     } else if (option.starts_with("--top-k-profile-threshold=")) {
   1079       ParseDouble(option.data(), '=', 0.0, 100.0, &top_k_profile_threshold);
   1080     } else if (option == "--print-pass-names") {
   1081       PassDriverMEOpts::PrintPassNames();
   1082     } else if (option.starts_with("--disable-passes=")) {
   1083       std::string disable_passes = option.substr(strlen("--disable-passes=")).data();
   1084       PassDriverMEOpts::CreateDefaultPassList(disable_passes);
   1085     } else if (option.starts_with("--print-passes=")) {
   1086       std::string print_passes = option.substr(strlen("--print-passes=")).data();
   1087       PassDriverMEOpts::SetPrintPassList(print_passes);
   1088     } else if (option == "--print-all-passes") {
   1089       PassDriverMEOpts::SetPrintAllPasses();
   1090     } else if (option.starts_with("--dump-cfg-passes=")) {
   1091       std::string dump_passes = option.substr(strlen("--dump-cfg-passes=")).data();
   1092       PassDriverMEOpts::SetDumpPassList(dump_passes);
   1093     } else if (option == "--include-patch-information") {
   1094       include_patch_information = true;
   1095     } else if (option == "--no-include-patch-information") {
   1096       include_patch_information = false;
   1097     } else if (option.starts_with("--swap-file=")) {
   1098       swap_file_name = option.substr(strlen("--swap-file=")).data();
   1099     } else if (option.starts_with("--swap-fd=")) {
   1100       const char* swap_fd_str = option.substr(strlen("--swap-fd=")).data();
   1101       if (!ParseInt(swap_fd_str, &swap_fd)) {
   1102         Usage("Failed to parse --swap-fd argument '%s' as an integer", swap_fd_str);
   1103       }
   1104       if (swap_fd < 0) {
   1105         Usage("--swap-fd passed a negative value %d", swap_fd);
   1106       }
   1107     } else {
   1108       Usage("Unknown argument %s", option.data());
   1109     }
   1110   }
   1111 
   1112   if (oat_filename.empty() && oat_fd == -1) {
   1113     Usage("Output must be supplied with either --oat-file or --oat-fd");
   1114   }
   1115 
   1116   if (!oat_filename.empty() && oat_fd != -1) {
   1117     Usage("--oat-file should not be used with --oat-fd");
   1118   }
   1119 
   1120   if (!oat_symbols.empty() && oat_fd != -1) {
   1121     Usage("--oat-symbols should not be used with --oat-fd");
   1122   }
   1123 
   1124   if (!oat_symbols.empty() && is_host) {
   1125     Usage("--oat-symbols should not be used with --host");
   1126   }
   1127 
   1128   if (oat_fd != -1 && !image_filename.empty()) {
   1129     Usage("--oat-fd should not be used with --image");
   1130   }
   1131 
   1132   if (android_root.empty()) {
   1133     const char* android_root_env_var = getenv("ANDROID_ROOT");
   1134     if (android_root_env_var == nullptr) {
   1135       Usage("--android-root unspecified and ANDROID_ROOT not set");
   1136     }
   1137     android_root += android_root_env_var;
   1138   }
   1139 
   1140   bool image = (!image_filename.empty());
   1141   if (!image && boot_image_filename.empty()) {
   1142     boot_image_filename += android_root;
   1143     boot_image_filename += "/framework/boot.art";
   1144   }
   1145   std::string boot_image_option;
   1146   if (!boot_image_filename.empty()) {
   1147     boot_image_option += "-Ximage:";
   1148     boot_image_option += boot_image_filename;
   1149   }
   1150 
   1151   if (image_classes_filename != nullptr && !image) {
   1152     Usage("--image-classes should only be used with --image");
   1153   }
   1154 
   1155   if (image_classes_filename != nullptr && !boot_image_option.empty()) {
   1156     Usage("--image-classes should not be used with --boot-image");
   1157   }
   1158 
   1159   if (image_classes_zip_filename != nullptr && image_classes_filename == nullptr) {
   1160     Usage("--image-classes-zip should be used with --image-classes");
   1161   }
   1162 
   1163   if (compiled_classes_filename != nullptr && !image) {
   1164     Usage("--compiled-classes should only be used with --image");
   1165   }
   1166 
   1167   if (compiled_classes_filename != nullptr && !boot_image_option.empty()) {
   1168     Usage("--compiled-classes should not be used with --boot-image");
   1169   }
   1170 
   1171   if (compiled_classes_zip_filename != nullptr && compiled_classes_filename == nullptr) {
   1172     Usage("--compiled-classes-zip should be used with --compiled-classes");
   1173   }
   1174 
   1175   if (dex_filenames.empty() && zip_fd == -1) {
   1176     Usage("Input must be supplied with either --dex-file or --zip-fd");
   1177   }
   1178 
   1179   if (!dex_filenames.empty() && zip_fd != -1) {
   1180     Usage("--dex-file should not be used with --zip-fd");
   1181   }
   1182 
   1183   if (!dex_filenames.empty() && !zip_location.empty()) {
   1184     Usage("--dex-file should not be used with --zip-location");
   1185   }
   1186 
   1187   if (dex_locations.empty()) {
   1188     for (size_t i = 0; i < dex_filenames.size(); i++) {
   1189       dex_locations.push_back(dex_filenames[i]);
   1190     }
   1191   } else if (dex_locations.size() != dex_filenames.size()) {
   1192     Usage("--dex-location arguments do not match --dex-file arguments");
   1193   }
   1194 
   1195   if (zip_fd != -1 && zip_location.empty()) {
   1196     Usage("--zip-location should be supplied with --zip-fd");
   1197   }
   1198 
   1199   if (boot_image_option.empty()) {
   1200     if (image_base == 0) {
   1201       Usage("Non-zero --base not specified");
   1202     }
   1203   }
   1204 
   1205   std::string oat_stripped(oat_filename);
   1206   std::string oat_unstripped;
   1207   if (!oat_symbols.empty()) {
   1208     oat_unstripped += oat_symbols;
   1209   } else {
   1210     oat_unstripped += oat_filename;
   1211   }
   1212 
   1213   if (compiler_filter_string == nullptr) {
   1214     if (instruction_set == kMips64) {
   1215       // TODO: fix compiler for Mips64.
   1216       compiler_filter_string = "interpret-only";
   1217     } else if (image) {
   1218       compiler_filter_string = "speed";
   1219     } else {
   1220 #if ART_SMALL_MODE
   1221       compiler_filter_string = "interpret-only";
   1222 #else
   1223       compiler_filter_string = "speed";
   1224 #endif
   1225     }
   1226   }
   1227   CHECK(compiler_filter_string != nullptr);
   1228   CompilerOptions::CompilerFilter compiler_filter = CompilerOptions::kDefaultCompilerFilter;
   1229   if (strcmp(compiler_filter_string, "verify-none") == 0) {
   1230     compiler_filter = CompilerOptions::kVerifyNone;
   1231   } else if (strcmp(compiler_filter_string, "interpret-only") == 0) {
   1232     compiler_filter = CompilerOptions::kInterpretOnly;
   1233   } else if (strcmp(compiler_filter_string, "space") == 0) {
   1234     compiler_filter = CompilerOptions::kSpace;
   1235   } else if (strcmp(compiler_filter_string, "balanced") == 0) {
   1236     compiler_filter = CompilerOptions::kBalanced;
   1237   } else if (strcmp(compiler_filter_string, "speed") == 0) {
   1238     compiler_filter = CompilerOptions::kSpeed;
   1239   } else if (strcmp(compiler_filter_string, "everything") == 0) {
   1240     compiler_filter = CompilerOptions::kEverything;
   1241   } else {
   1242     Usage("Unknown --compiler-filter value %s", compiler_filter_string);
   1243   }
   1244 
   1245   // Set the compilation target's implicit checks options.
   1246   switch (instruction_set) {
   1247     case kArm:
   1248     case kThumb2:
   1249     case kArm64:
   1250     case kX86:
   1251     case kX86_64:
   1252       implicit_null_checks = true;
   1253       implicit_so_checks = true;
   1254       break;
   1255 
   1256     default:
   1257       // Defaults are correct.
   1258       break;
   1259   }
   1260 
   1261   std::unique_ptr<CompilerOptions> compiler_options(new CompilerOptions(compiler_filter,
   1262                                                                         huge_method_threshold,
   1263                                                                         large_method_threshold,
   1264                                                                         small_method_threshold,
   1265                                                                         tiny_method_threshold,
   1266                                                                         num_dex_methods_threshold,
   1267                                                                         generate_gdb_information,
   1268                                                                         include_patch_information,
   1269                                                                         top_k_profile_threshold,
   1270                                                                         include_debug_symbols,
   1271                                                                         implicit_null_checks,
   1272                                                                         implicit_so_checks,
   1273                                                                         implicit_suspend_checks,
   1274                                                                         compile_pic
   1275 #ifdef ART_SEA_IR_MODE
   1276                                                                         , compiler_options.sea_ir_ =
   1277                                                                               true;
   1278 #endif
   1279   ));  // NOLINT(whitespace/parens)
   1280 
   1281   // Done with usage checks, enable watchdog if requested
   1282   WatchDog watch_dog(watch_dog_enabled);
   1283 
   1284   // Check early that the result of compilation can be written
   1285   std::unique_ptr<File> oat_file;
   1286   bool create_file = !oat_unstripped.empty();  // as opposed to using open file descriptor
   1287   if (create_file) {
   1288     oat_file.reset(OS::CreateEmptyFile(oat_unstripped.c_str()));
   1289     if (oat_location.empty()) {
   1290       oat_location = oat_filename;
   1291     }
   1292   } else {
   1293     oat_file.reset(new File(oat_fd, oat_location, true));
   1294     oat_file->DisableAutoClose();
   1295     if (oat_file->SetLength(0)) {  // Only warn for truncation error.
   1296       PLOG(WARNING) << "Truncating oat file " << oat_location << " failed.";
   1297     }
   1298   }
   1299   if (oat_file.get() == nullptr) {
   1300     PLOG(ERROR) << "Failed to create oat file: " << oat_location;
   1301     return EXIT_FAILURE;
   1302   }
   1303   if (create_file && fchmod(oat_file->Fd(), 0644) != 0) {
   1304     PLOG(ERROR) << "Failed to make oat file world readable: " << oat_location;
   1305     oat_file->Erase();
   1306     return EXIT_FAILURE;
   1307   }
   1308 
   1309   // Swap file handling.
   1310   //
   1311   // If the swap fd is not -1, we assume this is the file descriptor of an open but unlinked file
   1312   // that we can use for swap.
   1313   //
   1314   // If the swap fd is -1 and we have a swap-file string, open the given file as a swap file. We
   1315   // will immediately unlink to satisfy the swap fd assumption.
   1316   std::unique_ptr<File> swap_file;
   1317   if (swap_fd == -1 && !swap_file_name.empty()) {
   1318     swap_file.reset(OS::CreateEmptyFile(swap_file_name.c_str()));
   1319     if (swap_file.get() == nullptr) {
   1320       PLOG(ERROR) << "Failed to create swap file: " << swap_file_name;
   1321       return EXIT_FAILURE;
   1322     }
   1323     swap_fd = swap_file->Fd();
   1324     swap_file->MarkUnchecked();  // We don't we to track this, it will be unlinked immediately.
   1325     unlink(swap_file_name.c_str());
   1326   }
   1327 
   1328   timings.StartTiming("dex2oat Setup");
   1329   LOG(INFO) << CommandLine();
   1330 
   1331   RuntimeOptions runtime_options;
   1332   std::vector<const DexFile*> boot_class_path;
   1333   art::MemMap::Init();  // For ZipEntry::ExtractToMemMap.
   1334   if (boot_image_option.empty()) {
   1335     size_t failure_count = OpenDexFiles(dex_filenames, dex_locations, boot_class_path);
   1336     if (failure_count > 0) {
   1337       LOG(ERROR) << "Failed to open some dex files: " << failure_count;
   1338       oat_file->Erase();
   1339       return EXIT_FAILURE;
   1340     }
   1341     runtime_options.push_back(std::make_pair("bootclasspath", &boot_class_path));
   1342   } else {
   1343     runtime_options.push_back(std::make_pair(boot_image_option.c_str(), nullptr));
   1344   }
   1345   for (size_t i = 0; i < runtime_args.size(); i++) {
   1346     runtime_options.push_back(std::make_pair(runtime_args[i], nullptr));
   1347   }
   1348 
   1349   std::unique_ptr<VerificationResults> verification_results(new VerificationResults(
   1350                                                             compiler_options.get()));
   1351   DexFileToMethodInlinerMap method_inliner_map;
   1352   QuickCompilerCallbacks callbacks(verification_results.get(), &method_inliner_map);
   1353   runtime_options.push_back(std::make_pair("compilercallbacks", &callbacks));
   1354   runtime_options.push_back(
   1355       std::make_pair("imageinstructionset",
   1356                      reinterpret_cast<const void*>(GetInstructionSetString(instruction_set))));
   1357 
   1358   if (swap_fd != -1) {
   1359     // Swap file indicates low-memory mode. Use GC.
   1360     runtime_options.push_back(std::make_pair("-Xgc:MS", nullptr));
   1361   }
   1362 
   1363   Dex2Oat* p_dex2oat;
   1364   if (!Dex2Oat::Create(&p_dex2oat,
   1365                        runtime_options,
   1366                        *compiler_options,
   1367                        compiler_kind,
   1368                        instruction_set,
   1369                        instruction_set_features,
   1370                        verification_results.get(),
   1371                        &method_inliner_map,
   1372                        thread_count)) {
   1373     LOG(ERROR) << "Failed to create dex2oat";
   1374     timings.EndTiming();
   1375     oat_file->Erase();
   1376     return EXIT_FAILURE;
   1377   }
   1378   std::unique_ptr<Dex2Oat> dex2oat(p_dex2oat);
   1379 
   1380   // Runtime::Create acquired the mutator_lock_ that is normally given away when we Runtime::Start,
   1381   // give it away now so that we don't starve GC.
   1382   Thread* self = Thread::Current();
   1383   self->TransitionFromRunnableToSuspended(kNative);
   1384   // If we're doing the image, override the compiler filter to force full compilation. Must be
   1385   // done ahead of WellKnownClasses::Init that causes verification.  Note: doesn't force
   1386   // compilation of class initializers.
   1387   // Whilst we're in native take the opportunity to initialize well known classes.
   1388   WellKnownClasses::Init(self->GetJniEnv());
   1389 
   1390   // If --image-classes was specified, calculate the full list of classes to include in the image
   1391   std::unique_ptr<std::set<std::string>> image_classes(nullptr);
   1392   if (image_classes_filename != nullptr) {
   1393     std::string error_msg;
   1394     if (image_classes_zip_filename != nullptr) {
   1395       image_classes.reset(dex2oat->ReadImageClassesFromZip(image_classes_zip_filename,
   1396                                                            image_classes_filename,
   1397                                                            &error_msg));
   1398     } else {
   1399       image_classes.reset(dex2oat->ReadImageClassesFromFile(image_classes_filename));
   1400     }
   1401     if (image_classes.get() == nullptr) {
   1402       LOG(ERROR) << "Failed to create list of image classes from '" << image_classes_filename <<
   1403           "': " << error_msg;
   1404       timings.EndTiming();
   1405       oat_file->Erase();
   1406       return EXIT_FAILURE;
   1407     }
   1408   } else if (image) {
   1409     image_classes.reset(new std::set<std::string>);
   1410   }
   1411   // If --compiled-classes was specified, calculate the full list of classes to compile in the
   1412   // image.
   1413   std::unique_ptr<std::set<std::string>> compiled_classes(nullptr);
   1414   if (compiled_classes_filename != nullptr) {
   1415     std::string error_msg;
   1416     if (compiled_classes_zip_filename != nullptr) {
   1417       compiled_classes.reset(dex2oat->ReadImageClassesFromZip(compiled_classes_zip_filename,
   1418                                                               compiled_classes_filename,
   1419                                                               &error_msg));
   1420     } else {
   1421       compiled_classes.reset(dex2oat->ReadImageClassesFromFile(compiled_classes_filename));
   1422     }
   1423     if (compiled_classes.get() == nullptr) {
   1424       LOG(ERROR) << "Failed to create list of compiled classes from '" << compiled_classes_filename
   1425                  << "': " << error_msg;
   1426       timings.EndTiming();
   1427       oat_file->Erase();
   1428       return EXIT_FAILURE;
   1429     }
   1430   } else if (image) {
   1431     compiled_classes.reset(nullptr);  // By default compile everything.
   1432   }
   1433 
   1434   std::vector<const DexFile*> dex_files;
   1435   if (boot_image_option.empty()) {
   1436     dex_files = Runtime::Current()->GetClassLinker()->GetBootClassPath();
   1437   } else {
   1438     if (dex_filenames.empty()) {
   1439       ATRACE_BEGIN("Opening zip archive from file descriptor");
   1440       std::string error_msg;
   1441       std::unique_ptr<ZipArchive> zip_archive(ZipArchive::OpenFromFd(zip_fd, zip_location.c_str(),
   1442                                                                &error_msg));
   1443       if (zip_archive.get() == nullptr) {
   1444         LOG(ERROR) << "Failed to open zip from file descriptor for '" << zip_location << "': "
   1445             << error_msg;
   1446         timings.EndTiming();
   1447         oat_file->Erase();
   1448         return EXIT_FAILURE;
   1449       }
   1450       if (!DexFile::OpenFromZip(*zip_archive.get(), zip_location, &error_msg, &dex_files)) {
   1451         LOG(ERROR) << "Failed to open dex from file descriptor for zip file '" << zip_location
   1452             << "': " << error_msg;
   1453         timings.EndTiming();
   1454         oat_file->Erase();
   1455         return EXIT_FAILURE;
   1456       }
   1457       ATRACE_END();
   1458     } else {
   1459       size_t failure_count = OpenDexFiles(dex_filenames, dex_locations, dex_files);
   1460       if (failure_count > 0) {
   1461         LOG(ERROR) << "Failed to open some dex files: " << failure_count;
   1462         timings.EndTiming();
   1463         oat_file->Erase();
   1464         return EXIT_FAILURE;
   1465       }
   1466     }
   1467 
   1468     const bool kSaveDexInput = false;
   1469     if (kSaveDexInput) {
   1470       for (size_t i = 0; i < dex_files.size(); ++i) {
   1471         const DexFile* dex_file = dex_files[i];
   1472         std::string tmp_file_name(StringPrintf("/data/local/tmp/dex2oat.%d.%zd.dex", getpid(), i));
   1473         std::unique_ptr<File> tmp_file(OS::CreateEmptyFile(tmp_file_name.c_str()));
   1474         if (tmp_file.get() == nullptr) {
   1475             PLOG(ERROR) << "Failed to open file " << tmp_file_name
   1476                         << ". Try: adb shell chmod 777 /data/local/tmp";
   1477             continue;
   1478         }
   1479         // This is just dumping files for debugging. Ignore errors, and leave remnants.
   1480         UNUSED(tmp_file->WriteFully(dex_file->Begin(), dex_file->Size()));
   1481         UNUSED(tmp_file->Flush());
   1482         UNUSED(tmp_file->Close());
   1483         LOG(INFO) << "Wrote input to " << tmp_file_name;
   1484       }
   1485     }
   1486   }
   1487   // Ensure opened dex files are writable for dex-to-dex transformations.
   1488   for (const auto& dex_file : dex_files) {
   1489     if (!dex_file->EnableWrite()) {
   1490       PLOG(ERROR) << "Failed to make .dex file writeable '" << dex_file->GetLocation() << "'\n";
   1491     }
   1492   }
   1493   // If we use a swap file, ensure we are above the threshold to make it necessary.
   1494   if (swap_fd != -1) {
   1495     if (!UseSwap(image, dex_files)) {
   1496       close(swap_fd);
   1497       swap_fd = -1;
   1498       LOG(INFO) << "Decided to run without swap.";
   1499     } else {
   1500       LOG(INFO) << "Accepted running with swap.";
   1501     }
   1502   }
   1503 
   1504   /*
   1505    * If we're not in interpret-only or verify-none mode, go ahead and compile small applications.
   1506    * Don't bother to check if we're doing the image.
   1507    */
   1508   if (!image && compiler_options->IsCompilationEnabled()) {
   1509     size_t num_methods = 0;
   1510     for (size_t i = 0; i != dex_files.size(); ++i) {
   1511       const DexFile* dex_file = dex_files[i];
   1512       CHECK(dex_file != nullptr);
   1513       num_methods += dex_file->NumMethodIds();
   1514     }
   1515     if (num_methods <= compiler_options->GetNumDexMethodsThreshold()) {
   1516       compiler_options->SetCompilerFilter(CompilerOptions::kSpeed);
   1517       VLOG(compiler) << "Below method threshold, compiling anyways";
   1518     }
   1519   }
   1520 
   1521   // Fill some values into the key-value store for the oat header.
   1522   std::unique_ptr<SafeMap<std::string, std::string> > key_value_store(
   1523       new SafeMap<std::string, std::string>());
   1524 
   1525   // Insert some compiler things.
   1526   {
   1527     std::ostringstream oss;
   1528     for (int i = 0; i < argc; ++i) {
   1529       if (i > 0) {
   1530         oss << ' ';
   1531       }
   1532       oss << argv[i];
   1533     }
   1534     key_value_store->Put(OatHeader::kDex2OatCmdLineKey, oss.str());
   1535     oss.str("");  // Reset.
   1536     oss << kRuntimeISA;
   1537     key_value_store->Put(OatHeader::kDex2OatHostKey, oss.str());
   1538     key_value_store->Put(OatHeader::kPicKey, compile_pic ? "true" : "false");
   1539   }
   1540 
   1541   std::unique_ptr<const CompilerDriver> compiler(dex2oat->CreateOatFile(boot_image_option,
   1542                                                                         android_root,
   1543                                                                         is_host,
   1544                                                                         dex_files,
   1545                                                                         oat_file.get(),
   1546                                                                         oat_location,
   1547                                                                         bitcode_filename,
   1548                                                                         image,
   1549                                                                         image_classes,
   1550                                                                         compiled_classes,
   1551                                                                         dump_stats,
   1552                                                                         dump_passes,
   1553                                                                         timings,
   1554                                                                         compiler_phases_timings,
   1555                                                                         swap_fd,
   1556                                                                         profile_file,
   1557                                                                         key_value_store.get()));
   1558   if (compiler.get() == nullptr) {
   1559     LOG(ERROR) << "Failed to create oat file: " << oat_location;
   1560     timings.EndTiming();
   1561     return EXIT_FAILURE;
   1562   }
   1563 
   1564   if (!kUsePortableCompiler) {
   1565     if (oat_file->FlushCloseOrErase() != 0) {
   1566       PLOG(ERROR) << "Failed to flush and close oat file: " << oat_location;
   1567       timings.EndTiming();
   1568       return EXIT_FAILURE;
   1569     }
   1570     oat_file.reset();
   1571   }
   1572 
   1573   VLOG(compiler) << "Oat file written successfully (unstripped): " << oat_location;
   1574   // Notes on the interleaving of creating the image and oat file to
   1575   // ensure the references between the two are correct.
   1576   //
   1577   // Currently we have a memory layout that looks something like this:
   1578   //
   1579   // +--------------+
   1580   // | image        |
   1581   // +--------------+
   1582   // | boot oat     |
   1583   // +--------------+
   1584   // | alloc spaces |
   1585   // +--------------+
   1586   //
   1587   // There are several constraints on the loading of the image and boot.oat.
   1588   //
   1589   // 1. The image is expected to be loaded at an absolute address and
   1590   // contains Objects with absolute pointers within the image.
   1591   //
   1592   // 2. There are absolute pointers from Methods in the image to their
   1593   // code in the oat.
   1594   //
   1595   // 3. There are absolute pointers from the code in the oat to Methods
   1596   // in the image.
   1597   //
   1598   // 4. There are absolute pointers from code in the oat to other code
   1599   // in the oat.
   1600   //
   1601   // To get this all correct, we go through several steps.
   1602   //
   1603   // 1. We have already created that oat file above with
   1604   // CreateOatFile. Originally this was just our own proprietary file
   1605   // but now it is contained within an ELF dynamic object (aka an .so
   1606   // file). The Compiler returned by CreateOatFile provides
   1607   // PatchInformation for references to oat code and Methods that need
   1608   // to be update once we know where the oat file will be located
   1609   // after the image.
   1610   //
   1611   // 2. We create the image file. It needs to know where the oat file
   1612   // will be loaded after itself. Originally when oat file was simply
   1613   // memory mapped so we could predict where its contents were based
   1614   // on the file size. Now that it is an ELF file, we need to inspect
   1615   // the ELF file to understand the in memory segment layout including
   1616   // where the oat header is located within. ElfPatcher's Patch method
   1617   // uses the PatchInformation from the Compiler to touch up absolute
   1618   // references in the oat file.
   1619   //
   1620   // 3. We fixup the ELF program headers so that dlopen will try to
   1621   // load the .so at the desired location at runtime by offsetting the
   1622   // Elf32_Phdr.p_vaddr values by the desired base address.
   1623   //
   1624   if (image) {
   1625     TimingLogger::ScopedTiming t("dex2oat ImageWriter", &timings);
   1626     bool image_creation_success = dex2oat->CreateImageFile(image_filename,
   1627                                                            image_base,
   1628                                                            oat_unstripped,
   1629                                                            oat_location,
   1630                                                            *compiler.get());
   1631     if (!image_creation_success) {
   1632       timings.EndTiming();
   1633       return EXIT_FAILURE;
   1634     }
   1635     VLOG(compiler) << "Image written successfully: " << image_filename;
   1636   }
   1637 
   1638   if (is_host) {
   1639     timings.EndTiming();
   1640     if (dump_timing || (dump_slow_timing && timings.GetTotalNs() > MsToNs(1000))) {
   1641       LOG(INFO) << Dumpable<TimingLogger>(timings);
   1642     }
   1643     if (dump_passes) {
   1644       LOG(INFO) << Dumpable<CumulativeLogger>(*compiler.get()->GetTimingsLogger());
   1645     }
   1646     return EXIT_SUCCESS;
   1647   }
   1648 
   1649   // If we don't want to strip in place, copy from unstripped location to stripped location.
   1650   // We need to strip after image creation because FixupElf needs to use .strtab.
   1651   if (oat_unstripped != oat_stripped) {
   1652     TimingLogger::ScopedTiming t("dex2oat OatFile copy", &timings);
   1653     if (kUsePortableCompiler) {
   1654       if (oat_file->FlushCloseOrErase() != 0) {
   1655         PLOG(ERROR) << "Failed to flush and close oat file: " << oat_location;
   1656         return EXIT_FAILURE;
   1657       }
   1658       oat_file.reset();
   1659     }
   1660     std::unique_ptr<File> in(OS::OpenFileForReading(oat_unstripped.c_str()));
   1661     std::unique_ptr<File> out(OS::CreateEmptyFile(oat_stripped.c_str()));
   1662     size_t buffer_size = 8192;
   1663     std::unique_ptr<uint8_t> buffer(new uint8_t[buffer_size]);
   1664     while (true) {
   1665       int bytes_read = TEMP_FAILURE_RETRY(read(in->Fd(), buffer.get(), buffer_size));
   1666       if (bytes_read <= 0) {
   1667         break;
   1668       }
   1669       bool write_ok = out->WriteFully(buffer.get(), bytes_read);
   1670       CHECK(write_ok);
   1671     }
   1672     oat_file.reset(out.release());
   1673     VLOG(compiler) << "Oat file copied successfully (stripped): " << oat_stripped;
   1674   }
   1675 
   1676   if (kUsePortableCompiler) {
   1677     if (!compiler_options->GetIncludeDebugSymbols()) {
   1678       timings.NewTiming("dex2oat ElfStripper");
   1679       // Strip unneeded sections for target
   1680       off_t seek_actual = lseek(oat_file->Fd(), 0, SEEK_SET);
   1681       CHECK_EQ(0, seek_actual);
   1682       std::string error_msg;
   1683       CHECK(ElfStripper::Strip(oat_file.get(), &error_msg)) << error_msg;
   1684 
   1685 
   1686       // We wrote the oat file successfully, and want to keep it.
   1687       VLOG(compiler) << "Oat file written successfully (stripped): " << oat_location;
   1688     } else {
   1689       VLOG(compiler) << "Oat file written successfully without stripping: " << oat_location;
   1690     }
   1691     if (oat_file->FlushCloseOrErase() != 0) {
   1692       LOG(ERROR) << "Failed to flush and close oat file: " << oat_location;
   1693       return EXIT_FAILURE;
   1694     }
   1695     oat_file.reset(nullptr);
   1696   }
   1697 
   1698   if (oat_file.get() != nullptr) {
   1699     if (oat_file->FlushCloseOrErase() != 0) {
   1700       PLOG(ERROR) << "Failed to flush and close oat file: " << oat_location << "/" << oat_filename;
   1701       return EXIT_FAILURE;
   1702     }
   1703   }
   1704 
   1705   timings.EndTiming();
   1706 
   1707   if (dump_timing || (dump_slow_timing && timings.GetTotalNs() > MsToNs(1000))) {
   1708     LOG(INFO) << Dumpable<TimingLogger>(timings);
   1709   }
   1710   if (dump_passes) {
   1711     LOG(INFO) << Dumpable<CumulativeLogger>(compiler_phases_timings);
   1712   }
   1713 
   1714   dex2oat->LogCompletionTime(compiler.get());
   1715   // Everything was successfully written, do an explicit exit here to avoid running Runtime
   1716   // destructors that take time (bug 10645725) unless we're a debug build or running on valgrind.
   1717   if (!kIsDebugBuild && (RUNNING_ON_VALGRIND == 0)) {
   1718     exit(EXIT_SUCCESS);
   1719   }
   1720 
   1721   return EXIT_SUCCESS;
   1722 }  // NOLINT(readability/fn_size)
   1723 }  // namespace art
   1724 
   1725 int main(int argc, char** argv) {
   1726   return art::dex2oat(argc, argv);
   1727 }
   1728