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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 <inttypes.h>
     18 #include <stdio.h>
     19 #include <stdlib.h>
     20 #include <sys/stat.h>
     21 #include "base/memory_tool.h"
     22 
     23 #include <fstream>
     24 #include <iostream>
     25 #include <sstream>
     26 #include <string>
     27 #include <unordered_set>
     28 #include <vector>
     29 
     30 #if defined(__linux__) && defined(__arm__)
     31 #include <sys/personality.h>
     32 #include <sys/utsname.h>
     33 #endif
     34 
     35 #include "arch/instruction_set_features.h"
     36 #include "arch/mips/instruction_set_features_mips.h"
     37 #include "art_method-inl.h"
     38 #include "base/dumpable.h"
     39 #include "base/macros.h"
     40 #include "base/scoped_flock.h"
     41 #include "base/stl_util.h"
     42 #include "base/stringpiece.h"
     43 #include "base/time_utils.h"
     44 #include "base/timing_logger.h"
     45 #include "base/unix_file/fd_file.h"
     46 #include "class_linker.h"
     47 #include "compiler.h"
     48 #include "compiler_callbacks.h"
     49 #include "debug/elf_debug_writer.h"
     50 #include "debug/method_debug_info.h"
     51 #include "dex/quick/dex_file_to_method_inliner_map.h"
     52 #include "dex/quick_compiler_callbacks.h"
     53 #include "dex/verification_results.h"
     54 #include "dex_file-inl.h"
     55 #include "driver/compiler_driver.h"
     56 #include "driver/compiler_options.h"
     57 #include "elf_file.h"
     58 #include "elf_writer.h"
     59 #include "elf_writer_quick.h"
     60 #include "gc/space/image_space.h"
     61 #include "gc/space/space-inl.h"
     62 #include "image_writer.h"
     63 #include "interpreter/unstarted_runtime.h"
     64 #include "jit/offline_profiling_info.h"
     65 #include "leb128.h"
     66 #include "linker/multi_oat_relative_patcher.h"
     67 #include "mirror/class-inl.h"
     68 #include "mirror/class_loader.h"
     69 #include "mirror/object-inl.h"
     70 #include "mirror/object_array-inl.h"
     71 #include "oat_file_assistant.h"
     72 #include "oat_writer.h"
     73 #include "os.h"
     74 #include "runtime.h"
     75 #include "runtime_options.h"
     76 #include "ScopedLocalRef.h"
     77 #include "scoped_thread_state_change.h"
     78 #include "utils.h"
     79 #include "well_known_classes.h"
     80 #include "zip_archive.h"
     81 
     82 namespace art {
     83 
     84 static int original_argc;
     85 static char** original_argv;
     86 
     87 static std::string CommandLine() {
     88   std::vector<std::string> command;
     89   for (int i = 0; i < original_argc; ++i) {
     90     command.push_back(original_argv[i]);
     91   }
     92   return Join(command, ' ');
     93 }
     94 
     95 // A stripped version. Remove some less essential parameters. If we see a "--zip-fd=" parameter, be
     96 // even more aggressive. There won't be much reasonable data here for us in that case anyways (the
     97 // locations are all staged).
     98 static std::string StrippedCommandLine() {
     99   std::vector<std::string> command;
    100 
    101   // Do a pre-pass to look for zip-fd.
    102   bool saw_zip_fd = false;
    103   for (int i = 0; i < original_argc; ++i) {
    104     if (StartsWith(original_argv[i], "--zip-fd=")) {
    105       saw_zip_fd = true;
    106       break;
    107     }
    108   }
    109 
    110   // Now filter out things.
    111   for (int i = 0; i < original_argc; ++i) {
    112     // All runtime-arg parameters are dropped.
    113     if (strcmp(original_argv[i], "--runtime-arg") == 0) {
    114       i++;  // Drop the next part, too.
    115       continue;
    116     }
    117 
    118     // Any instruction-setXXX is dropped.
    119     if (StartsWith(original_argv[i], "--instruction-set")) {
    120       continue;
    121     }
    122 
    123     // The boot image is dropped.
    124     if (StartsWith(original_argv[i], "--boot-image=")) {
    125       continue;
    126     }
    127 
    128     // The image format is dropped.
    129     if (StartsWith(original_argv[i], "--image-format=")) {
    130       continue;
    131     }
    132 
    133     // This should leave any dex-file and oat-file options, describing what we compiled.
    134 
    135     // However, we prefer to drop this when we saw --zip-fd.
    136     if (saw_zip_fd) {
    137       // Drop anything --zip-X, --dex-X, --oat-X, --swap-X, or --app-image-X
    138       if (StartsWith(original_argv[i], "--zip-") ||
    139           StartsWith(original_argv[i], "--dex-") ||
    140           StartsWith(original_argv[i], "--oat-") ||
    141           StartsWith(original_argv[i], "--swap-") ||
    142           StartsWith(original_argv[i], "--app-image-")) {
    143         continue;
    144       }
    145     }
    146 
    147     command.push_back(original_argv[i]);
    148   }
    149 
    150   // Construct the final output.
    151   if (command.size() <= 1U) {
    152     // It seems only "/system/bin/dex2oat" is left, or not even that. Use a pretty line.
    153     return "Starting dex2oat.";
    154   }
    155   return Join(command, ' ');
    156 }
    157 
    158 static void UsageErrorV(const char* fmt, va_list ap) {
    159   std::string error;
    160   StringAppendV(&error, fmt, ap);
    161   LOG(ERROR) << error;
    162 }
    163 
    164 static void UsageError(const char* fmt, ...) {
    165   va_list ap;
    166   va_start(ap, fmt);
    167   UsageErrorV(fmt, ap);
    168   va_end(ap);
    169 }
    170 
    171 NO_RETURN static void Usage(const char* fmt, ...) {
    172   va_list ap;
    173   va_start(ap, fmt);
    174   UsageErrorV(fmt, ap);
    175   va_end(ap);
    176 
    177   UsageError("Command: %s", CommandLine().c_str());
    178 
    179   UsageError("Usage: dex2oat [options]...");
    180   UsageError("");
    181   UsageError("  -j<number>: specifies the number of threads used for compilation.");
    182   UsageError("       Default is the number of detected hardware threads available on the");
    183   UsageError("       host system.");
    184   UsageError("      Example: -j12");
    185   UsageError("");
    186   UsageError("  --dex-file=<dex-file>: specifies a .dex, .jar, or .apk file to compile.");
    187   UsageError("      Example: --dex-file=/system/framework/core.jar");
    188   UsageError("");
    189   UsageError("  --dex-location=<dex-location>: specifies an alternative dex location to");
    190   UsageError("      encode in the oat file for the corresponding --dex-file argument.");
    191   UsageError("      Example: --dex-file=/home/build/out/system/framework/core.jar");
    192   UsageError("               --dex-location=/system/framework/core.jar");
    193   UsageError("");
    194   UsageError("  --zip-fd=<file-descriptor>: specifies a file descriptor of a zip file");
    195   UsageError("      containing a classes.dex file to compile.");
    196   UsageError("      Example: --zip-fd=5");
    197   UsageError("");
    198   UsageError("  --zip-location=<zip-location>: specifies a symbolic name for the file");
    199   UsageError("      corresponding to the file descriptor specified by --zip-fd.");
    200   UsageError("      Example: --zip-location=/system/app/Calculator.apk");
    201   UsageError("");
    202   UsageError("  --oat-file=<file.oat>: specifies an oat output destination via a filename.");
    203   UsageError("      Example: --oat-file=/system/framework/boot.oat");
    204   UsageError("");
    205   UsageError("  --oat-fd=<number>: specifies the oat output destination via a file descriptor.");
    206   UsageError("      Example: --oat-fd=6");
    207   UsageError("");
    208   UsageError("  --oat-location=<oat-name>: specifies a symbolic name for the file corresponding");
    209   UsageError("      to the file descriptor specified by --oat-fd.");
    210   UsageError("      Example: --oat-location=/data/dalvik-cache/system@app (at) Calculator.apk.oat");
    211   UsageError("");
    212   UsageError("  --oat-symbols=<file.oat>: specifies an oat output destination with full symbols.");
    213   UsageError("      Example: --oat-symbols=/symbols/system/framework/boot.oat");
    214   UsageError("");
    215   UsageError("  --image=<file.art>: specifies an output image filename.");
    216   UsageError("      Example: --image=/system/framework/boot.art");
    217   UsageError("");
    218   UsageError("  --image-format=(uncompressed|lz4|lz4hc):");
    219   UsageError("      Which format to store the image.");
    220   UsageError("      Example: --image-format=lz4");
    221   UsageError("      Default: uncompressed");
    222   UsageError("");
    223   UsageError("  --image-classes=<classname-file>: specifies classes to include in an image.");
    224   UsageError("      Example: --image=frameworks/base/preloaded-classes");
    225   UsageError("");
    226   UsageError("  --base=<hex-address>: specifies the base address when creating a boot image.");
    227   UsageError("      Example: --base=0x50000000");
    228   UsageError("");
    229   UsageError("  --boot-image=<file.art>: provide the image file for the boot class path.");
    230   UsageError("      Do not include the arch as part of the name, it is added automatically.");
    231   UsageError("      Example: --boot-image=/system/framework/boot.art");
    232   UsageError("               (specifies /system/framework/<arch>/boot.art as the image file)");
    233   UsageError("      Default: $ANDROID_ROOT/system/framework/boot.art");
    234   UsageError("");
    235   UsageError("  --android-root=<path>: used to locate libraries for portable linking.");
    236   UsageError("      Example: --android-root=out/host/linux-x86");
    237   UsageError("      Default: $ANDROID_ROOT");
    238   UsageError("");
    239   UsageError("  --instruction-set=(arm|arm64|mips|mips64|x86|x86_64): compile for a particular");
    240   UsageError("      instruction set.");
    241   UsageError("      Example: --instruction-set=x86");
    242   UsageError("      Default: arm");
    243   UsageError("");
    244   UsageError("  --instruction-set-features=...,: Specify instruction set features");
    245   UsageError("      Example: --instruction-set-features=div");
    246   UsageError("      Default: default");
    247   UsageError("");
    248   UsageError("  --compile-pic: Force indirect use of code, methods, and classes");
    249   UsageError("      Default: disabled");
    250   UsageError("");
    251   UsageError("  --compiler-backend=(Quick|Optimizing): select compiler backend");
    252   UsageError("      set.");
    253   UsageError("      Example: --compiler-backend=Optimizing");
    254   UsageError("      Default: Optimizing");
    255   UsageError("");
    256   UsageError("  --compiler-filter="
    257                 "(verify-none"
    258                 "|verify-at-runtime"
    259                 "|verify-profile"
    260                 "|interpret-only"
    261                 "|time"
    262                 "|space-profile"
    263                 "|space"
    264                 "|balanced"
    265                 "|speed-profile"
    266                 "|speed"
    267                 "|everything-profile"
    268                 "|everything):");
    269   UsageError("      select compiler filter.");
    270   UsageError("      verify-profile requires a --profile(-fd) to also be passed in.");
    271   UsageError("      Example: --compiler-filter=everything");
    272   UsageError("      Default: speed");
    273   UsageError("");
    274   UsageError("  --huge-method-max=<method-instruction-count>: threshold size for a huge");
    275   UsageError("      method for compiler filter tuning.");
    276   UsageError("      Example: --huge-method-max=%d", CompilerOptions::kDefaultHugeMethodThreshold);
    277   UsageError("      Default: %d", CompilerOptions::kDefaultHugeMethodThreshold);
    278   UsageError("");
    279   UsageError("  --large-method-max=<method-instruction-count>: threshold size for a large");
    280   UsageError("      method for compiler filter tuning.");
    281   UsageError("      Example: --large-method-max=%d", CompilerOptions::kDefaultLargeMethodThreshold);
    282   UsageError("      Default: %d", CompilerOptions::kDefaultLargeMethodThreshold);
    283   UsageError("");
    284   UsageError("  --small-method-max=<method-instruction-count>: threshold size for a small");
    285   UsageError("      method for compiler filter tuning.");
    286   UsageError("      Example: --small-method-max=%d", CompilerOptions::kDefaultSmallMethodThreshold);
    287   UsageError("      Default: %d", CompilerOptions::kDefaultSmallMethodThreshold);
    288   UsageError("");
    289   UsageError("  --tiny-method-max=<method-instruction-count>: threshold size for a tiny");
    290   UsageError("      method for compiler filter tuning.");
    291   UsageError("      Example: --tiny-method-max=%d", CompilerOptions::kDefaultTinyMethodThreshold);
    292   UsageError("      Default: %d", CompilerOptions::kDefaultTinyMethodThreshold);
    293   UsageError("");
    294   UsageError("  --num-dex-methods=<method-count>: threshold size for a small dex file for");
    295   UsageError("      compiler filter tuning. If the input has fewer than this many methods");
    296   UsageError("      and the filter is not interpret-only or verify-none or verify-at-runtime, ");
    297   UsageError("      overrides the filter to use speed");
    298   UsageError("      Example: --num-dex-method=%d", CompilerOptions::kDefaultNumDexMethodsThreshold);
    299   UsageError("      Default: %d", CompilerOptions::kDefaultNumDexMethodsThreshold);
    300   UsageError("");
    301   UsageError("  --inline-depth-limit=<depth-limit>: the depth limit of inlining for fine tuning");
    302   UsageError("      the compiler. A zero value will disable inlining. Honored only by Optimizing.");
    303   UsageError("      Has priority over the --compiler-filter option. Intended for ");
    304   UsageError("      development/experimental use.");
    305   UsageError("      Example: --inline-depth-limit=%d", CompilerOptions::kDefaultInlineDepthLimit);
    306   UsageError("      Default: %d", CompilerOptions::kDefaultInlineDepthLimit);
    307   UsageError("");
    308   UsageError("  --inline-max-code-units=<code-units-count>: the maximum code units that a method");
    309   UsageError("      can have to be considered for inlining. A zero value will disable inlining.");
    310   UsageError("      Honored only by Optimizing. Has priority over the --compiler-filter option.");
    311   UsageError("      Intended for development/experimental use.");
    312   UsageError("      Example: --inline-max-code-units=%d",
    313              CompilerOptions::kDefaultInlineMaxCodeUnits);
    314   UsageError("      Default: %d", CompilerOptions::kDefaultInlineMaxCodeUnits);
    315   UsageError("");
    316   UsageError("  --dump-timing: display a breakdown of where time was spent");
    317   UsageError("");
    318   UsageError("  --include-patch-information: Include patching information so the generated code");
    319   UsageError("      can have its base address moved without full recompilation.");
    320   UsageError("");
    321   UsageError("  --no-include-patch-information: Do not include patching information.");
    322   UsageError("");
    323   UsageError("  -g");
    324   UsageError("  --generate-debug-info: Generate debug information for native debugging,");
    325   UsageError("      such as stack unwinding information, ELF symbols and DWARF sections.");
    326   UsageError("      If used without --debuggable, it will be best-effort only.");
    327   UsageError("      This option does not affect the generated code. (disabled by default)");
    328   UsageError("");
    329   UsageError("  --no-generate-debug-info: Do not generate debug information for native debugging.");
    330   UsageError("");
    331   UsageError("  --generate-mini-debug-info: Generate minimal amount of LZMA-compressed");
    332   UsageError("      debug information necessary to print backtraces. (disabled by default)");
    333   UsageError("");
    334   UsageError("  --no-generate-mini-debug-info: Do not generate backtrace info.");
    335   UsageError("");
    336   UsageError("  --debuggable: Produce code debuggable with Java debugger.");
    337   UsageError("");
    338   UsageError("  --runtime-arg <argument>: used to specify various arguments for the runtime,");
    339   UsageError("      such as initial heap size, maximum heap size, and verbose output.");
    340   UsageError("      Use a separate --runtime-arg switch for each argument.");
    341   UsageError("      Example: --runtime-arg -Xms256m");
    342   UsageError("");
    343   UsageError("  --profile-file=<filename>: specify profiler output file to use for compilation.");
    344   UsageError("");
    345   UsageError("  --profile-file-fd=<number>: same as --profile-file but accepts a file descriptor.");
    346   UsageError("      Cannot be used together with --profile-file.");
    347   UsageError("");
    348   UsageError("  --swap-file=<file-name>:  specifies a file to use for swap.");
    349   UsageError("      Example: --swap-file=/data/tmp/swap.001");
    350   UsageError("");
    351   UsageError("  --swap-fd=<file-descriptor>:  specifies a file to use for swap (by descriptor).");
    352   UsageError("      Example: --swap-fd=10");
    353   UsageError("");
    354   UsageError("  --app-image-fd=<file-descriptor>: specify output file descriptor for app image.");
    355   UsageError("      Example: --app-image-fd=10");
    356   UsageError("");
    357   UsageError("  --app-image-file=<file-name>: specify a file name for app image.");
    358   UsageError("      Example: --app-image-file=/data/dalvik-cache/system@app (at) Calculator.apk.art");
    359   UsageError("");
    360   UsageError("  --multi-image: specify that separate oat and image files be generated for each "
    361              "input dex file.");
    362   UsageError("");
    363   UsageError("  --force-determinism: force the compiler to emit a deterministic output.");
    364   UsageError("      This option is incompatible with read barriers (e.g., if dex2oat has been");
    365   UsageError("      built with the environment variable `ART_USE_READ_BARRIER` set to `true`).");
    366   UsageError("");
    367   std::cerr << "See log for usage error information\n";
    368   exit(EXIT_FAILURE);
    369 }
    370 
    371 // The primary goal of the watchdog is to prevent stuck build servers
    372 // during development when fatal aborts lead to a cascade of failures
    373 // that result in a deadlock.
    374 class WatchDog {
    375 // WatchDog defines its own CHECK_PTHREAD_CALL to avoid using LOG which uses locks
    376 #undef CHECK_PTHREAD_CALL
    377 #define CHECK_WATCH_DOG_PTHREAD_CALL(call, args, what) \
    378   do { \
    379     int rc = call args; \
    380     if (rc != 0) { \
    381       errno = rc; \
    382       std::string message(# call); \
    383       message += " failed for "; \
    384       message += reason; \
    385       Fatal(message); \
    386     } \
    387   } while (false)
    388 
    389  public:
    390   explicit WatchDog(bool is_watch_dog_enabled) {
    391     is_watch_dog_enabled_ = is_watch_dog_enabled;
    392     if (!is_watch_dog_enabled_) {
    393       return;
    394     }
    395     shutting_down_ = false;
    396     const char* reason = "dex2oat watch dog thread startup";
    397     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_init, (&mutex_, nullptr), reason);
    398     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_init, (&cond_, nullptr), reason);
    399     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_init, (&attr_), reason);
    400     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_create, (&pthread_, &attr_, &CallBack, this), reason);
    401     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_destroy, (&attr_), reason);
    402   }
    403   ~WatchDog() {
    404     if (!is_watch_dog_enabled_) {
    405       return;
    406     }
    407     const char* reason = "dex2oat watch dog thread shutdown";
    408     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
    409     shutting_down_ = true;
    410     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_signal, (&cond_), reason);
    411     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
    412 
    413     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_join, (pthread_, nullptr), reason);
    414 
    415     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_destroy, (&cond_), reason);
    416     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_destroy, (&mutex_), reason);
    417   }
    418 
    419  private:
    420   static void* CallBack(void* arg) {
    421     WatchDog* self = reinterpret_cast<WatchDog*>(arg);
    422     ::art::SetThreadName("dex2oat watch dog");
    423     self->Wait();
    424     return nullptr;
    425   }
    426 
    427   NO_RETURN static void Fatal(const std::string& message) {
    428     // TODO: When we can guarantee it won't prevent shutdown in error cases, move to LOG. However,
    429     //       it's rather easy to hang in unwinding.
    430     //       LogLine also avoids ART logging lock issues, as it's really only a wrapper around
    431     //       logcat logging or stderr output.
    432     LogMessage::LogLine(__FILE__, __LINE__, LogSeverity::FATAL, message.c_str());
    433     exit(1);
    434   }
    435 
    436   void Wait() {
    437     // TODO: tune the multiplier for GC verification, the following is just to make the timeout
    438     //       large.
    439     constexpr int64_t multiplier = kVerifyObjectSupport > kVerifyObjectModeFast ? 100 : 1;
    440     timespec timeout_ts;
    441     InitTimeSpec(true, CLOCK_REALTIME, multiplier * kWatchDogTimeoutSeconds * 1000, 0, &timeout_ts);
    442     const char* reason = "dex2oat watch dog thread waiting";
    443     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
    444     while (!shutting_down_) {
    445       int rc = TEMP_FAILURE_RETRY(pthread_cond_timedwait(&cond_, &mutex_, &timeout_ts));
    446       if (rc == ETIMEDOUT) {
    447         Fatal(StringPrintf("dex2oat did not finish after %" PRId64 " seconds",
    448                            kWatchDogTimeoutSeconds));
    449       } else if (rc != 0) {
    450         std::string message(StringPrintf("pthread_cond_timedwait failed: %s",
    451                                          strerror(errno)));
    452         Fatal(message.c_str());
    453       }
    454     }
    455     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
    456   }
    457 
    458   // When setting timeouts, keep in mind that the build server may not be as fast as your desktop.
    459   // Debug builds are slower so they have larger timeouts.
    460   static constexpr int64_t kSlowdownFactor = kIsDebugBuild ? 5U : 1U;
    461 
    462   // 9.5 minutes scaled by kSlowdownFactor. This is slightly smaller than the Package Manager
    463   // watchdog (PackageManagerService.WATCHDOG_TIMEOUT, 10 minutes), so that dex2oat will abort
    464   // itself before that watchdog would take down the system server.
    465   static constexpr int64_t kWatchDogTimeoutSeconds = kSlowdownFactor * (9 * 60 + 30);
    466 
    467   bool is_watch_dog_enabled_;
    468   bool shutting_down_;
    469   // TODO: Switch to Mutex when we can guarantee it won't prevent shutdown in error cases.
    470   pthread_mutex_t mutex_;
    471   pthread_cond_t cond_;
    472   pthread_attr_t attr_;
    473   pthread_t pthread_;
    474 };
    475 
    476 static constexpr size_t kMinDexFilesForSwap = 2;
    477 static constexpr size_t kMinDexFileCumulativeSizeForSwap = 20 * MB;
    478 
    479 static bool UseSwap(bool is_image, std::vector<const DexFile*>& dex_files) {
    480   if (is_image) {
    481     // Don't use swap, we know generation should succeed, and we don't want to slow it down.
    482     return false;
    483   }
    484   if (dex_files.size() < kMinDexFilesForSwap) {
    485     // If there are less dex files than the threshold, assume it's gonna be fine.
    486     return false;
    487   }
    488   size_t dex_files_size = 0;
    489   for (const auto* dex_file : dex_files) {
    490     dex_files_size += dex_file->GetHeader().file_size_;
    491   }
    492   return dex_files_size >= kMinDexFileCumulativeSizeForSwap;
    493 }
    494 
    495 class Dex2Oat FINAL {
    496  public:
    497   explicit Dex2Oat(TimingLogger* timings) :
    498       compiler_kind_(Compiler::kOptimizing),
    499       instruction_set_(kRuntimeISA),
    500       // Take the default set of instruction features from the build.
    501       image_file_location_oat_checksum_(0),
    502       image_file_location_oat_data_begin_(0),
    503       image_patch_delta_(0),
    504       key_value_store_(nullptr),
    505       verification_results_(nullptr),
    506       method_inliner_map_(),
    507       runtime_(nullptr),
    508       thread_count_(sysconf(_SC_NPROCESSORS_CONF)),
    509       start_ns_(NanoTime()),
    510       oat_fd_(-1),
    511       zip_fd_(-1),
    512       image_base_(0U),
    513       image_classes_zip_filename_(nullptr),
    514       image_classes_filename_(nullptr),
    515       image_storage_mode_(ImageHeader::kStorageModeUncompressed),
    516       compiled_classes_zip_filename_(nullptr),
    517       compiled_classes_filename_(nullptr),
    518       compiled_methods_zip_filename_(nullptr),
    519       compiled_methods_filename_(nullptr),
    520       app_image_(false),
    521       boot_image_(false),
    522       multi_image_(false),
    523       is_host_(false),
    524       class_loader_(nullptr),
    525       elf_writers_(),
    526       oat_writers_(),
    527       rodata_(),
    528       image_writer_(nullptr),
    529       driver_(nullptr),
    530       opened_dex_files_maps_(),
    531       opened_dex_files_(),
    532       no_inline_from_dex_files_(),
    533       dump_stats_(false),
    534       dump_passes_(false),
    535       dump_timing_(false),
    536       dump_slow_timing_(kIsDebugBuild),
    537       swap_fd_(kInvalidFd),
    538       app_image_fd_(kInvalidFd),
    539       profile_file_fd_(kInvalidFd),
    540       timings_(timings),
    541       force_determinism_(false)
    542       {}
    543 
    544   ~Dex2Oat() {
    545     // Log completion time before deleting the runtime_, because this accesses
    546     // the runtime.
    547     LogCompletionTime();
    548 
    549     if (!kIsDebugBuild && !(RUNNING_ON_MEMORY_TOOL && kMemoryToolDetectsLeaks)) {
    550       // We want to just exit on non-debug builds, not bringing the runtime down
    551       // in an orderly fashion. So release the following fields.
    552       driver_.release();
    553       image_writer_.release();
    554       for (std::unique_ptr<const DexFile>& dex_file : opened_dex_files_) {
    555         dex_file.release();
    556       }
    557       for (std::unique_ptr<MemMap>& map : opened_dex_files_maps_) {
    558         map.release();
    559       }
    560       for (std::unique_ptr<File>& oat_file : oat_files_) {
    561         oat_file.release();
    562       }
    563       runtime_.release();
    564       verification_results_.release();
    565       key_value_store_.release();
    566     }
    567   }
    568 
    569   struct ParserOptions {
    570     std::vector<const char*> oat_symbols;
    571     std::string boot_image_filename;
    572     bool watch_dog_enabled = true;
    573     bool requested_specific_compiler = false;
    574     std::string error_msg;
    575   };
    576 
    577   void ParseZipFd(const StringPiece& option) {
    578     ParseUintOption(option, "--zip-fd", &zip_fd_, Usage);
    579   }
    580 
    581   void ParseOatFd(const StringPiece& option) {
    582     ParseUintOption(option, "--oat-fd", &oat_fd_, Usage);
    583   }
    584 
    585   void ParseFdForCollection(const StringPiece& option,
    586                             const char* arg_name,
    587                             std::vector<uint32_t>* fds) {
    588     uint32_t fd;
    589     ParseUintOption(option, arg_name, &fd, Usage);
    590     fds->push_back(fd);
    591   }
    592 
    593   void ParseJ(const StringPiece& option) {
    594     ParseUintOption(option, "-j", &thread_count_, Usage, /* is_long_option */ false);
    595   }
    596 
    597   void ParseBase(const StringPiece& option) {
    598     DCHECK(option.starts_with("--base="));
    599     const char* image_base_str = option.substr(strlen("--base=")).data();
    600     char* end;
    601     image_base_ = strtoul(image_base_str, &end, 16);
    602     if (end == image_base_str || *end != '\0') {
    603       Usage("Failed to parse hexadecimal value for option %s", option.data());
    604     }
    605   }
    606 
    607   void ParseInstructionSet(const StringPiece& option) {
    608     DCHECK(option.starts_with("--instruction-set="));
    609     StringPiece instruction_set_str = option.substr(strlen("--instruction-set=")).data();
    610     // StringPiece is not necessarily zero-terminated, so need to make a copy and ensure it.
    611     std::unique_ptr<char[]> buf(new char[instruction_set_str.length() + 1]);
    612     strncpy(buf.get(), instruction_set_str.data(), instruction_set_str.length());
    613     buf.get()[instruction_set_str.length()] = 0;
    614     instruction_set_ = GetInstructionSetFromString(buf.get());
    615     // arm actually means thumb2.
    616     if (instruction_set_ == InstructionSet::kArm) {
    617       instruction_set_ = InstructionSet::kThumb2;
    618     }
    619   }
    620 
    621   void ParseInstructionSetVariant(const StringPiece& option, ParserOptions* parser_options) {
    622     DCHECK(option.starts_with("--instruction-set-variant="));
    623     StringPiece str = option.substr(strlen("--instruction-set-variant=")).data();
    624     instruction_set_features_.reset(
    625         InstructionSetFeatures::FromVariant(
    626             instruction_set_, str.as_string(), &parser_options->error_msg));
    627     if (instruction_set_features_.get() == nullptr) {
    628       Usage("%s", parser_options->error_msg.c_str());
    629     }
    630   }
    631 
    632   void ParseInstructionSetFeatures(const StringPiece& option, ParserOptions* parser_options) {
    633     DCHECK(option.starts_with("--instruction-set-features="));
    634     StringPiece str = option.substr(strlen("--instruction-set-features=")).data();
    635     if (instruction_set_features_.get() == nullptr) {
    636       instruction_set_features_.reset(
    637           InstructionSetFeatures::FromVariant(
    638               instruction_set_, "default", &parser_options->error_msg));
    639       if (instruction_set_features_.get() == nullptr) {
    640         Usage("Problem initializing default instruction set features variant: %s",
    641               parser_options->error_msg.c_str());
    642       }
    643     }
    644     instruction_set_features_.reset(
    645         instruction_set_features_->AddFeaturesFromString(str.as_string(),
    646                                                          &parser_options->error_msg));
    647     if (instruction_set_features_.get() == nullptr) {
    648       Usage("Error parsing '%s': %s", option.data(), parser_options->error_msg.c_str());
    649     }
    650   }
    651 
    652   void ParseCompilerBackend(const StringPiece& option, ParserOptions* parser_options) {
    653     DCHECK(option.starts_with("--compiler-backend="));
    654     parser_options->requested_specific_compiler = true;
    655     StringPiece backend_str = option.substr(strlen("--compiler-backend=")).data();
    656     if (backend_str == "Quick") {
    657       compiler_kind_ = Compiler::kQuick;
    658     } else if (backend_str == "Optimizing") {
    659       compiler_kind_ = Compiler::kOptimizing;
    660     } else {
    661       Usage("Unknown compiler backend: %s", backend_str.data());
    662     }
    663   }
    664 
    665   void ParseImageFormat(const StringPiece& option) {
    666     const StringPiece substr("--image-format=");
    667     DCHECK(option.starts_with(substr));
    668     const StringPiece format_str = option.substr(substr.length());
    669     if (format_str == "lz4") {
    670       image_storage_mode_ = ImageHeader::kStorageModeLZ4;
    671     } else if (format_str == "lz4hc") {
    672       image_storage_mode_ = ImageHeader::kStorageModeLZ4HC;
    673     } else if (format_str == "uncompressed") {
    674       image_storage_mode_ = ImageHeader::kStorageModeUncompressed;
    675     } else {
    676       Usage("Unknown image format: %s", format_str.data());
    677     }
    678   }
    679 
    680   void ProcessOptions(ParserOptions* parser_options) {
    681     boot_image_ = !image_filenames_.empty();
    682     app_image_ = app_image_fd_ != -1 || !app_image_file_name_.empty();
    683 
    684     if (IsAppImage() && IsBootImage()) {
    685       Usage("Can't have both --image and (--app-image-fd or --app-image-file)");
    686     }
    687 
    688     if (IsBootImage()) {
    689       // We need the boot image to always be debuggable.
    690       // TODO: Remove this once we better deal with full frame deoptimization.
    691       compiler_options_->debuggable_ = true;
    692     }
    693 
    694     if (oat_filenames_.empty() && oat_fd_ == -1) {
    695       Usage("Output must be supplied with either --oat-file or --oat-fd");
    696     }
    697 
    698     if (!oat_filenames_.empty() && oat_fd_ != -1) {
    699       Usage("--oat-file should not be used with --oat-fd");
    700     }
    701 
    702     if (!parser_options->oat_symbols.empty() && oat_fd_ != -1) {
    703       Usage("--oat-symbols should not be used with --oat-fd");
    704     }
    705 
    706     if (!parser_options->oat_symbols.empty() && is_host_) {
    707       Usage("--oat-symbols should not be used with --host");
    708     }
    709 
    710     if (oat_fd_ != -1 && !image_filenames_.empty()) {
    711       Usage("--oat-fd should not be used with --image");
    712     }
    713 
    714     if (!parser_options->oat_symbols.empty() &&
    715         parser_options->oat_symbols.size() != oat_filenames_.size()) {
    716       Usage("--oat-file arguments do not match --oat-symbols arguments");
    717     }
    718 
    719     if (!image_filenames_.empty() && image_filenames_.size() != oat_filenames_.size()) {
    720       Usage("--oat-file arguments do not match --image arguments");
    721     }
    722 
    723     if (android_root_.empty()) {
    724       const char* android_root_env_var = getenv("ANDROID_ROOT");
    725       if (android_root_env_var == nullptr) {
    726         Usage("--android-root unspecified and ANDROID_ROOT not set");
    727       }
    728       android_root_ += android_root_env_var;
    729     }
    730 
    731     if (!boot_image_ && parser_options->boot_image_filename.empty()) {
    732       parser_options->boot_image_filename += android_root_;
    733       parser_options->boot_image_filename += "/framework/boot.art";
    734     }
    735     if (!parser_options->boot_image_filename.empty()) {
    736       boot_image_filename_ = parser_options->boot_image_filename;
    737     }
    738 
    739     if (image_classes_filename_ != nullptr && !IsBootImage()) {
    740       Usage("--image-classes should only be used with --image");
    741     }
    742 
    743     if (image_classes_filename_ != nullptr && !boot_image_filename_.empty()) {
    744       Usage("--image-classes should not be used with --boot-image");
    745     }
    746 
    747     if (image_classes_zip_filename_ != nullptr && image_classes_filename_ == nullptr) {
    748       Usage("--image-classes-zip should be used with --image-classes");
    749     }
    750 
    751     if (compiled_classes_filename_ != nullptr && !IsBootImage()) {
    752       Usage("--compiled-classes should only be used with --image");
    753     }
    754 
    755     if (compiled_classes_filename_ != nullptr && !boot_image_filename_.empty()) {
    756       Usage("--compiled-classes should not be used with --boot-image");
    757     }
    758 
    759     if (compiled_classes_zip_filename_ != nullptr && compiled_classes_filename_ == nullptr) {
    760       Usage("--compiled-classes-zip should be used with --compiled-classes");
    761     }
    762 
    763     if (dex_filenames_.empty() && zip_fd_ == -1) {
    764       Usage("Input must be supplied with either --dex-file or --zip-fd");
    765     }
    766 
    767     if (!dex_filenames_.empty() && zip_fd_ != -1) {
    768       Usage("--dex-file should not be used with --zip-fd");
    769     }
    770 
    771     if (!dex_filenames_.empty() && !zip_location_.empty()) {
    772       Usage("--dex-file should not be used with --zip-location");
    773     }
    774 
    775     if (dex_locations_.empty()) {
    776       for (const char* dex_file_name : dex_filenames_) {
    777         dex_locations_.push_back(dex_file_name);
    778       }
    779     } else if (dex_locations_.size() != dex_filenames_.size()) {
    780       Usage("--dex-location arguments do not match --dex-file arguments");
    781     }
    782 
    783     if (!dex_filenames_.empty() && !oat_filenames_.empty()) {
    784       if (oat_filenames_.size() != 1 && oat_filenames_.size() != dex_filenames_.size()) {
    785         Usage("--oat-file arguments must be singular or match --dex-file arguments");
    786       }
    787     }
    788 
    789     if (zip_fd_ != -1 && zip_location_.empty()) {
    790       Usage("--zip-location should be supplied with --zip-fd");
    791     }
    792 
    793     if (boot_image_filename_.empty()) {
    794       if (image_base_ == 0) {
    795         Usage("Non-zero --base not specified");
    796       }
    797     }
    798 
    799     const bool have_profile_file = !profile_file_.empty();
    800     const bool have_profile_fd = profile_file_fd_ != kInvalidFd;
    801     if (have_profile_file && have_profile_fd) {
    802       Usage("Profile file should not be specified with both --profile-file-fd and --profile-file");
    803     }
    804 
    805     if (!parser_options->oat_symbols.empty()) {
    806       oat_unstripped_ = std::move(parser_options->oat_symbols);
    807     }
    808 
    809     // If no instruction set feature was given, use the default one for the target
    810     // instruction set.
    811     if (instruction_set_features_.get() == nullptr) {
    812       instruction_set_features_.reset(
    813           InstructionSetFeatures::FromVariant(
    814               instruction_set_, "default", &parser_options->error_msg));
    815       if (instruction_set_features_.get() == nullptr) {
    816         Usage("Problem initializing default instruction set features variant: %s",
    817               parser_options->error_msg.c_str());
    818       }
    819     }
    820 
    821     if (instruction_set_ == kRuntimeISA) {
    822       std::unique_ptr<const InstructionSetFeatures> runtime_features(
    823           InstructionSetFeatures::FromCppDefines());
    824       if (!instruction_set_features_->Equals(runtime_features.get())) {
    825         LOG(WARNING) << "Mismatch between dex2oat instruction set features ("
    826             << *instruction_set_features_ << ") and those of dex2oat executable ("
    827             << *runtime_features <<") for the command line:\n"
    828             << CommandLine();
    829       }
    830     }
    831 
    832     // It they are not set, use default values for inlining settings.
    833     // TODO: We should rethink the compiler filter. We mostly save
    834     // time here, which is orthogonal to space.
    835     if (compiler_options_->inline_depth_limit_ == CompilerOptions::kUnsetInlineDepthLimit) {
    836       compiler_options_->inline_depth_limit_ =
    837           (compiler_options_->compiler_filter_ == CompilerFilter::kSpace)
    838           // Implementation of the space filter: limit inlining depth.
    839           ? CompilerOptions::kSpaceFilterInlineDepthLimit
    840           : CompilerOptions::kDefaultInlineDepthLimit;
    841     }
    842     if (compiler_options_->inline_max_code_units_ == CompilerOptions::kUnsetInlineMaxCodeUnits) {
    843       compiler_options_->inline_max_code_units_ =
    844           (compiler_options_->compiler_filter_ == CompilerFilter::kSpace)
    845           // Implementation of the space filter: limit inlining max code units.
    846           ? CompilerOptions::kSpaceFilterInlineMaxCodeUnits
    847           : CompilerOptions::kDefaultInlineMaxCodeUnits;
    848     }
    849 
    850     // Checks are all explicit until we know the architecture.
    851     // Set the compilation target's implicit checks options.
    852     switch (instruction_set_) {
    853       case kArm:
    854       case kThumb2:
    855       case kArm64:
    856       case kX86:
    857       case kX86_64:
    858       case kMips:
    859       case kMips64:
    860         compiler_options_->implicit_null_checks_ = true;
    861         compiler_options_->implicit_so_checks_ = true;
    862         break;
    863 
    864       default:
    865         // Defaults are correct.
    866         break;
    867     }
    868 
    869     compiler_options_->verbose_methods_ = verbose_methods_.empty() ? nullptr : &verbose_methods_;
    870 
    871     if (!IsBootImage() && multi_image_) {
    872       Usage("--multi-image can only be used when creating boot images");
    873     }
    874     if (IsBootImage() && multi_image_ && image_filenames_.size() > 1) {
    875       Usage("--multi-image cannot be used with multiple image names");
    876     }
    877 
    878     // For now, if we're on the host and compile the boot image, *always* use multiple image files.
    879     if (!kIsTargetBuild && IsBootImage()) {
    880       if (image_filenames_.size() == 1) {
    881         multi_image_ = true;
    882       }
    883     }
    884 
    885     // Done with usage checks, enable watchdog if requested
    886     if (parser_options->watch_dog_enabled) {
    887       watchdog_.reset(new WatchDog(true));
    888     }
    889 
    890     // Fill some values into the key-value store for the oat header.
    891     key_value_store_.reset(new SafeMap<std::string, std::string>());
    892 
    893     // Automatically force determinism for the boot image in a host build if the default GC is CMS
    894     // or MS and read barriers are not enabled, as the former switches the GC to a non-concurrent
    895     // one by passing the option `-Xgc:nonconcurrent` (see below).
    896     if (!kIsTargetBuild && IsBootImage()) {
    897       if (SupportsDeterministicCompilation()) {
    898         force_determinism_ = true;
    899       } else {
    900         LOG(WARNING) << "Deterministic compilation is disabled.";
    901       }
    902     }
    903     compiler_options_->force_determinism_ = force_determinism_;
    904   }
    905 
    906   static bool SupportsDeterministicCompilation() {
    907     return (gc::kCollectorTypeDefault == gc::kCollectorTypeCMS ||
    908             gc::kCollectorTypeDefault == gc::kCollectorTypeMS) &&
    909         !kEmitCompilerReadBarrier;
    910   }
    911 
    912   void ExpandOatAndImageFilenames() {
    913     std::string base_oat = oat_filenames_[0];
    914     size_t last_oat_slash = base_oat.rfind('/');
    915     if (last_oat_slash == std::string::npos) {
    916       Usage("--multi-image used with unusable oat filename %s", base_oat.c_str());
    917     }
    918     // We also need to honor path components that were encoded through '@'. Otherwise the loading
    919     // code won't be able to find the images.
    920     if (base_oat.find('@', last_oat_slash) != std::string::npos) {
    921       last_oat_slash = base_oat.rfind('@');
    922     }
    923     base_oat = base_oat.substr(0, last_oat_slash + 1);
    924 
    925     std::string base_img = image_filenames_[0];
    926     size_t last_img_slash = base_img.rfind('/');
    927     if (last_img_slash == std::string::npos) {
    928       Usage("--multi-image used with unusable image filename %s", base_img.c_str());
    929     }
    930     // We also need to honor path components that were encoded through '@'. Otherwise the loading
    931     // code won't be able to find the images.
    932     if (base_img.find('@', last_img_slash) != std::string::npos) {
    933       last_img_slash = base_img.rfind('@');
    934     }
    935 
    936     // Get the prefix, which is the primary image name (without path components). Strip the
    937     // extension.
    938     std::string prefix = base_img.substr(last_img_slash + 1);
    939     if (prefix.rfind('.') != std::string::npos) {
    940       prefix = prefix.substr(0, prefix.rfind('.'));
    941     }
    942     if (!prefix.empty()) {
    943       prefix = prefix + "-";
    944     }
    945 
    946     base_img = base_img.substr(0, last_img_slash + 1);
    947 
    948     // Note: we have some special case here for our testing. We have to inject the differentiating
    949     //       parts for the different core images.
    950     std::string infix;  // Empty infix by default.
    951     {
    952       // Check the first name.
    953       std::string dex_file = oat_filenames_[0];
    954       size_t last_dex_slash = dex_file.rfind('/');
    955       if (last_dex_slash != std::string::npos) {
    956         dex_file = dex_file.substr(last_dex_slash + 1);
    957       }
    958       size_t last_dex_dot = dex_file.rfind('.');
    959       if (last_dex_dot != std::string::npos) {
    960         dex_file = dex_file.substr(0, last_dex_dot);
    961       }
    962       if (StartsWith(dex_file, "core-")) {
    963         infix = dex_file.substr(strlen("core"));
    964       }
    965     }
    966 
    967     // Now create the other names. Use a counted loop to skip the first one.
    968     for (size_t i = 1; i < dex_locations_.size(); ++i) {
    969       // TODO: Make everything properly std::string.
    970       std::string image_name = CreateMultiImageName(dex_locations_[i], prefix, infix, ".art");
    971       char_backing_storage_.push_back(base_img + image_name);
    972       image_filenames_.push_back((char_backing_storage_.end() - 1)->c_str());
    973 
    974       std::string oat_name = CreateMultiImageName(dex_locations_[i], prefix, infix, ".oat");
    975       char_backing_storage_.push_back(base_oat + oat_name);
    976       oat_filenames_.push_back((char_backing_storage_.end() - 1)->c_str());
    977     }
    978   }
    979 
    980   // Modify the input string in the following way:
    981   //   0) Assume input is /a/b/c.d
    982   //   1) Strip the path  -> c.d
    983   //   2) Inject prefix p -> pc.d
    984   //   3) Inject infix i  -> pci.d
    985   //   4) Replace suffix with s if it's "jar"  -> d == "jar" -> pci.s
    986   static std::string CreateMultiImageName(std::string in,
    987                                           const std::string& prefix,
    988                                           const std::string& infix,
    989                                           const char* replace_suffix) {
    990     size_t last_dex_slash = in.rfind('/');
    991     if (last_dex_slash != std::string::npos) {
    992       in = in.substr(last_dex_slash + 1);
    993     }
    994     if (!prefix.empty()) {
    995       in = prefix + in;
    996     }
    997     if (!infix.empty()) {
    998       // Inject infix.
    999       size_t last_dot = in.rfind('.');
   1000       if (last_dot != std::string::npos) {
   1001         in.insert(last_dot, infix);
   1002       }
   1003     }
   1004     if (EndsWith(in, ".jar")) {
   1005       in = in.substr(0, in.length() - strlen(".jar")) +
   1006           (replace_suffix != nullptr ? replace_suffix : "");
   1007     }
   1008     return in;
   1009   }
   1010 
   1011   void InsertCompileOptions(int argc, char** argv) {
   1012     std::ostringstream oss;
   1013     for (int i = 0; i < argc; ++i) {
   1014       if (i > 0) {
   1015         oss << ' ';
   1016       }
   1017       oss << argv[i];
   1018     }
   1019     key_value_store_->Put(OatHeader::kDex2OatCmdLineKey, oss.str());
   1020     oss.str("");  // Reset.
   1021     oss << kRuntimeISA;
   1022     key_value_store_->Put(OatHeader::kDex2OatHostKey, oss.str());
   1023     key_value_store_->Put(
   1024         OatHeader::kPicKey,
   1025         compiler_options_->compile_pic_ ? OatHeader::kTrueValue : OatHeader::kFalseValue);
   1026     key_value_store_->Put(
   1027         OatHeader::kDebuggableKey,
   1028         compiler_options_->debuggable_ ? OatHeader::kTrueValue : OatHeader::kFalseValue);
   1029     key_value_store_->Put(
   1030         OatHeader::kNativeDebuggableKey,
   1031         compiler_options_->GetNativeDebuggable() ? OatHeader::kTrueValue : OatHeader::kFalseValue);
   1032     key_value_store_->Put(OatHeader::kCompilerFilter,
   1033         CompilerFilter::NameOfFilter(compiler_options_->GetCompilerFilter()));
   1034     key_value_store_->Put(OatHeader::kHasPatchInfoKey,
   1035         compiler_options_->GetIncludePatchInformation() ? OatHeader::kTrueValue
   1036                                                         : OatHeader::kFalseValue);
   1037   }
   1038 
   1039   // Parse the arguments from the command line. In case of an unrecognized option or impossible
   1040   // values/combinations, a usage error will be displayed and exit() is called. Thus, if the method
   1041   // returns, arguments have been successfully parsed.
   1042   void ParseArgs(int argc, char** argv) {
   1043     original_argc = argc;
   1044     original_argv = argv;
   1045 
   1046     InitLogging(argv);
   1047 
   1048     // Skip over argv[0].
   1049     argv++;
   1050     argc--;
   1051 
   1052     if (argc == 0) {
   1053       Usage("No arguments specified");
   1054     }
   1055 
   1056     std::unique_ptr<ParserOptions> parser_options(new ParserOptions());
   1057     compiler_options_.reset(new CompilerOptions());
   1058 
   1059     for (int i = 0; i < argc; i++) {
   1060       const StringPiece option(argv[i]);
   1061       const bool log_options = false;
   1062       if (log_options) {
   1063         LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
   1064       }
   1065       if (option.starts_with("--dex-file=")) {
   1066         dex_filenames_.push_back(option.substr(strlen("--dex-file=")).data());
   1067       } else if (option.starts_with("--dex-location=")) {
   1068         dex_locations_.push_back(option.substr(strlen("--dex-location=")).data());
   1069       } else if (option.starts_with("--zip-fd=")) {
   1070         ParseZipFd(option);
   1071       } else if (option.starts_with("--zip-location=")) {
   1072         zip_location_ = option.substr(strlen("--zip-location=")).data();
   1073       } else if (option.starts_with("--oat-file=")) {
   1074         oat_filenames_.push_back(option.substr(strlen("--oat-file=")).data());
   1075       } else if (option.starts_with("--oat-symbols=")) {
   1076         parser_options->oat_symbols.push_back(option.substr(strlen("--oat-symbols=")).data());
   1077       } else if (option.starts_with("--oat-fd=")) {
   1078         ParseOatFd(option);
   1079       } else if (option == "--watch-dog") {
   1080         parser_options->watch_dog_enabled = true;
   1081       } else if (option == "--no-watch-dog") {
   1082         parser_options->watch_dog_enabled = false;
   1083       } else if (option.starts_with("-j")) {
   1084         ParseJ(option);
   1085       } else if (option.starts_with("--oat-location=")) {
   1086         oat_location_ = option.substr(strlen("--oat-location=")).data();
   1087       } else if (option.starts_with("--image=")) {
   1088         image_filenames_.push_back(option.substr(strlen("--image=")).data());
   1089       } else if (option.starts_with("--image-classes=")) {
   1090         image_classes_filename_ = option.substr(strlen("--image-classes=")).data();
   1091       } else if (option.starts_with("--image-classes-zip=")) {
   1092         image_classes_zip_filename_ = option.substr(strlen("--image-classes-zip=")).data();
   1093       } else if (option.starts_with("--image-format=")) {
   1094         ParseImageFormat(option);
   1095       } else if (option.starts_with("--compiled-classes=")) {
   1096         compiled_classes_filename_ = option.substr(strlen("--compiled-classes=")).data();
   1097       } else if (option.starts_with("--compiled-classes-zip=")) {
   1098         compiled_classes_zip_filename_ = option.substr(strlen("--compiled-classes-zip=")).data();
   1099       } else if (option.starts_with("--compiled-methods=")) {
   1100         compiled_methods_filename_ = option.substr(strlen("--compiled-methods=")).data();
   1101       } else if (option.starts_with("--compiled-methods-zip=")) {
   1102         compiled_methods_zip_filename_ = option.substr(strlen("--compiled-methods-zip=")).data();
   1103       } else if (option.starts_with("--base=")) {
   1104         ParseBase(option);
   1105       } else if (option.starts_with("--boot-image=")) {
   1106         parser_options->boot_image_filename = option.substr(strlen("--boot-image=")).data();
   1107       } else if (option.starts_with("--android-root=")) {
   1108         android_root_ = option.substr(strlen("--android-root=")).data();
   1109       } else if (option.starts_with("--instruction-set=")) {
   1110         ParseInstructionSet(option);
   1111       } else if (option.starts_with("--instruction-set-variant=")) {
   1112         ParseInstructionSetVariant(option, parser_options.get());
   1113       } else if (option.starts_with("--instruction-set-features=")) {
   1114         ParseInstructionSetFeatures(option, parser_options.get());
   1115       } else if (option.starts_with("--compiler-backend=")) {
   1116         ParseCompilerBackend(option, parser_options.get());
   1117       } else if (option.starts_with("--profile-file=")) {
   1118         profile_file_ = option.substr(strlen("--profile-file=")).ToString();
   1119       } else if (option.starts_with("--profile-file-fd=")) {
   1120         ParseUintOption(option, "--profile-file-fd", &profile_file_fd_, Usage);
   1121       } else if (option == "--host") {
   1122         is_host_ = true;
   1123       } else if (option == "--runtime-arg") {
   1124         if (++i >= argc) {
   1125           Usage("Missing required argument for --runtime-arg");
   1126         }
   1127         if (log_options) {
   1128           LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
   1129         }
   1130         runtime_args_.push_back(argv[i]);
   1131       } else if (option == "--dump-timing") {
   1132         dump_timing_ = true;
   1133       } else if (option == "--dump-passes") {
   1134         dump_passes_ = true;
   1135       } else if (option == "--dump-stats") {
   1136         dump_stats_ = true;
   1137       } else if (option.starts_with("--swap-file=")) {
   1138         swap_file_name_ = option.substr(strlen("--swap-file=")).data();
   1139       } else if (option.starts_with("--swap-fd=")) {
   1140         ParseUintOption(option, "--swap-fd", &swap_fd_, Usage);
   1141       } else if (option.starts_with("--app-image-file=")) {
   1142         app_image_file_name_ = option.substr(strlen("--app-image-file=")).data();
   1143       } else if (option.starts_with("--app-image-fd=")) {
   1144         ParseUintOption(option, "--app-image-fd", &app_image_fd_, Usage);
   1145       } else if (option.starts_with("--verbose-methods=")) {
   1146         // TODO: rather than switch off compiler logging, make all VLOG(compiler) messages
   1147         //       conditional on having verbost methods.
   1148         gLogVerbosity.compiler = false;
   1149         Split(option.substr(strlen("--verbose-methods=")).ToString(), ',', &verbose_methods_);
   1150       } else if (option == "--multi-image") {
   1151         multi_image_ = true;
   1152       } else if (option.starts_with("--no-inline-from=")) {
   1153         no_inline_from_string_ = option.substr(strlen("--no-inline-from=")).data();
   1154       } else if (option == "--force-determinism") {
   1155         if (!SupportsDeterministicCompilation()) {
   1156           Usage("Cannot use --force-determinism with read barriers or non-CMS garbage collector");
   1157         }
   1158         force_determinism_ = true;
   1159       } else if (!compiler_options_->ParseCompilerOption(option, Usage)) {
   1160         Usage("Unknown argument %s", option.data());
   1161       }
   1162     }
   1163 
   1164     ProcessOptions(parser_options.get());
   1165 
   1166     // Insert some compiler things.
   1167     InsertCompileOptions(argc, argv);
   1168   }
   1169 
   1170   // Check whether the oat output files are writable, and open them for later. Also open a swap
   1171   // file, if a name is given.
   1172   bool OpenFile() {
   1173     // Prune non-existent dex files now so that we don't create empty oat files for multi-image.
   1174     PruneNonExistentDexFiles();
   1175 
   1176     // Expand oat and image filenames for multi image.
   1177     if (IsBootImage() && multi_image_) {
   1178       ExpandOatAndImageFilenames();
   1179     }
   1180 
   1181     bool create_file = oat_fd_ == -1;  // as opposed to using open file descriptor
   1182     if (create_file) {
   1183       for (const char* oat_filename : oat_filenames_) {
   1184         std::unique_ptr<File> oat_file(OS::CreateEmptyFile(oat_filename));
   1185         if (oat_file.get() == nullptr) {
   1186           PLOG(ERROR) << "Failed to create oat file: " << oat_filename;
   1187           return false;
   1188         }
   1189         if (create_file && fchmod(oat_file->Fd(), 0644) != 0) {
   1190           PLOG(ERROR) << "Failed to make oat file world readable: " << oat_filename;
   1191           oat_file->Erase();
   1192           return false;
   1193         }
   1194         oat_files_.push_back(std::move(oat_file));
   1195       }
   1196     } else {
   1197       std::unique_ptr<File> oat_file(new File(oat_fd_, oat_location_, true));
   1198       oat_file->DisableAutoClose();
   1199       if (oat_file->SetLength(0) != 0) {
   1200         PLOG(WARNING) << "Truncating oat file " << oat_location_ << " failed.";
   1201       }
   1202       if (oat_file.get() == nullptr) {
   1203         PLOG(ERROR) << "Failed to create oat file: " << oat_location_;
   1204         return false;
   1205       }
   1206       if (create_file && fchmod(oat_file->Fd(), 0644) != 0) {
   1207         PLOG(ERROR) << "Failed to make oat file world readable: " << oat_location_;
   1208         oat_file->Erase();
   1209         return false;
   1210       }
   1211       oat_filenames_.push_back(oat_location_.c_str());
   1212       oat_files_.push_back(std::move(oat_file));
   1213     }
   1214 
   1215     // Swap file handling.
   1216     //
   1217     // If the swap fd is not -1, we assume this is the file descriptor of an open but unlinked file
   1218     // that we can use for swap.
   1219     //
   1220     // If the swap fd is -1 and we have a swap-file string, open the given file as a swap file. We
   1221     // will immediately unlink to satisfy the swap fd assumption.
   1222     if (swap_fd_ == -1 && !swap_file_name_.empty()) {
   1223       std::unique_ptr<File> swap_file(OS::CreateEmptyFile(swap_file_name_.c_str()));
   1224       if (swap_file.get() == nullptr) {
   1225         PLOG(ERROR) << "Failed to create swap file: " << swap_file_name_;
   1226         return false;
   1227       }
   1228       swap_fd_ = swap_file->Fd();
   1229       swap_file->MarkUnchecked();     // We don't we to track this, it will be unlinked immediately.
   1230       swap_file->DisableAutoClose();  // We'll handle it ourselves, the File object will be
   1231                                       // released immediately.
   1232       unlink(swap_file_name_.c_str());
   1233     }
   1234 
   1235     return true;
   1236   }
   1237 
   1238   void EraseOatFiles() {
   1239     for (size_t i = 0; i < oat_files_.size(); ++i) {
   1240       DCHECK(oat_files_[i].get() != nullptr);
   1241       oat_files_[i]->Erase();
   1242       oat_files_[i].reset();
   1243     }
   1244   }
   1245 
   1246   void Shutdown() {
   1247     ScopedObjectAccess soa(Thread::Current());
   1248     for (jobject dex_cache : dex_caches_) {
   1249       soa.Env()->DeleteLocalRef(dex_cache);
   1250     }
   1251     dex_caches_.clear();
   1252   }
   1253 
   1254   void LoadClassProfileDescriptors() {
   1255     if (profile_compilation_info_ != nullptr && app_image_) {
   1256       Runtime* runtime = Runtime::Current();
   1257       CHECK(runtime != nullptr);
   1258       std::set<DexCacheResolvedClasses> resolved_classes(
   1259           profile_compilation_info_->GetResolvedClasses());
   1260 
   1261       // Filter out class path classes since we don't want to include these in the image.
   1262       std::unordered_set<std::string> dex_files_locations;
   1263       for (const DexFile* dex_file : dex_files_) {
   1264         dex_files_locations.insert(dex_file->GetLocation());
   1265       }
   1266       for (auto it = resolved_classes.begin(); it != resolved_classes.end(); ) {
   1267         if (dex_files_locations.find(it->GetDexLocation()) == dex_files_locations.end()) {
   1268           VLOG(compiler) << "Removed profile samples for non-app dex file " << it->GetDexLocation();
   1269           it = resolved_classes.erase(it);
   1270         } else {
   1271           ++it;
   1272         }
   1273       }
   1274 
   1275       image_classes_.reset(new std::unordered_set<std::string>(
   1276           runtime->GetClassLinker()->GetClassDescriptorsForProfileKeys(resolved_classes)));
   1277       VLOG(compiler) << "Loaded " << image_classes_->size()
   1278                      << " image class descriptors from profile";
   1279       if (VLOG_IS_ON(compiler)) {
   1280         for (const std::string& s : *image_classes_) {
   1281           LOG(INFO) << "Image class " << s;
   1282         }
   1283       }
   1284     }
   1285   }
   1286 
   1287   // Set up the environment for compilation. Includes starting the runtime and loading/opening the
   1288   // boot class path.
   1289   bool Setup() {
   1290     TimingLogger::ScopedTiming t("dex2oat Setup", timings_);
   1291     art::MemMap::Init();  // For ZipEntry::ExtractToMemMap.
   1292 
   1293     if (!PrepareImageClasses() || !PrepareCompiledClasses() || !PrepareCompiledMethods()) {
   1294       return false;
   1295     }
   1296 
   1297     verification_results_.reset(new VerificationResults(compiler_options_.get()));
   1298     callbacks_.reset(new QuickCompilerCallbacks(
   1299         verification_results_.get(),
   1300         &method_inliner_map_,
   1301         IsBootImage() ?
   1302             CompilerCallbacks::CallbackMode::kCompileBootImage :
   1303             CompilerCallbacks::CallbackMode::kCompileApp));
   1304 
   1305     RuntimeArgumentMap runtime_options;
   1306     if (!PrepareRuntimeOptions(&runtime_options)) {
   1307       return false;
   1308     }
   1309 
   1310     CreateOatWriters();
   1311     if (!AddDexFileSources()) {
   1312       return false;
   1313     }
   1314 
   1315     if (IsBootImage() && image_filenames_.size() > 1) {
   1316       // If we're compiling the boot image, store the boot classpath into the Key-Value store.
   1317       // We need this for the multi-image case.
   1318       key_value_store_->Put(OatHeader::kBootClassPathKey, GetMultiImageBootClassPath());
   1319     }
   1320 
   1321     if (!IsBootImage()) {
   1322       // When compiling an app, create the runtime early to retrieve
   1323       // the image location key needed for the oat header.
   1324       if (!CreateRuntime(std::move(runtime_options))) {
   1325         return false;
   1326       }
   1327 
   1328       if (CompilerFilter::DependsOnImageChecksum(compiler_options_->GetCompilerFilter())) {
   1329         TimingLogger::ScopedTiming t3("Loading image checksum", timings_);
   1330         std::vector<gc::space::ImageSpace*> image_spaces =
   1331             Runtime::Current()->GetHeap()->GetBootImageSpaces();
   1332         image_file_location_oat_checksum_ = OatFileAssistant::CalculateCombinedImageChecksum();
   1333         image_file_location_oat_data_begin_ =
   1334             reinterpret_cast<uintptr_t>(image_spaces[0]->GetImageHeader().GetOatDataBegin());
   1335         image_patch_delta_ = image_spaces[0]->GetImageHeader().GetPatchDelta();
   1336         // Store the boot image filename(s).
   1337         std::vector<std::string> image_filenames;
   1338         for (const gc::space::ImageSpace* image_space : image_spaces) {
   1339           image_filenames.push_back(image_space->GetImageFilename());
   1340         }
   1341         std::string image_file_location = Join(image_filenames, ':');
   1342         if (!image_file_location.empty()) {
   1343           key_value_store_->Put(OatHeader::kImageLocationKey, image_file_location);
   1344         }
   1345       } else {
   1346         image_file_location_oat_checksum_ = 0u;
   1347         image_file_location_oat_data_begin_ = 0u;
   1348         image_patch_delta_ = 0;
   1349       }
   1350 
   1351       // Open dex files for class path.
   1352       const std::vector<std::string> class_path_locations =
   1353           GetClassPathLocations(runtime_->GetClassPathString());
   1354       OpenClassPathFiles(class_path_locations,
   1355                          &class_path_files_,
   1356                          &opened_oat_files_,
   1357                          runtime_->GetInstructionSet());
   1358 
   1359       // Store the classpath we have right now.
   1360       std::vector<const DexFile*> class_path_files = MakeNonOwningPointerVector(class_path_files_);
   1361       std::string encoded_class_path;
   1362       if (class_path_locations.size() == 1 &&
   1363           class_path_locations[0] == OatFile::kSpecialSharedLibrary) {
   1364         // When passing the special shared library as the classpath, it is the only path.
   1365         encoded_class_path = OatFile::kSpecialSharedLibrary;
   1366       } else {
   1367         encoded_class_path = OatFile::EncodeDexFileDependencies(class_path_files);
   1368       }
   1369       key_value_store_->Put(OatHeader::kClassPathKey, encoded_class_path);
   1370     }
   1371 
   1372     // Now that we have finalized key_value_store_, start writing the oat file.
   1373     {
   1374       TimingLogger::ScopedTiming t_dex("Writing and opening dex files", timings_);
   1375       rodata_.reserve(oat_writers_.size());
   1376       for (size_t i = 0, size = oat_writers_.size(); i != size; ++i) {
   1377         rodata_.push_back(elf_writers_[i]->StartRoData());
   1378         // Unzip or copy dex files straight to the oat file.
   1379         std::unique_ptr<MemMap> opened_dex_files_map;
   1380         std::vector<std::unique_ptr<const DexFile>> opened_dex_files;
   1381         if (!oat_writers_[i]->WriteAndOpenDexFiles(rodata_.back(),
   1382                                                    oat_files_[i].get(),
   1383                                                    instruction_set_,
   1384                                                    instruction_set_features_.get(),
   1385                                                    key_value_store_.get(),
   1386                                                    /* verify */ true,
   1387                                                    &opened_dex_files_map,
   1388                                                    &opened_dex_files)) {
   1389           return false;
   1390         }
   1391         dex_files_per_oat_file_.push_back(MakeNonOwningPointerVector(opened_dex_files));
   1392         if (opened_dex_files_map != nullptr) {
   1393           opened_dex_files_maps_.push_back(std::move(opened_dex_files_map));
   1394           for (std::unique_ptr<const DexFile>& dex_file : opened_dex_files) {
   1395             dex_file_oat_index_map_.emplace(dex_file.get(), i);
   1396             opened_dex_files_.push_back(std::move(dex_file));
   1397           }
   1398         } else {
   1399           DCHECK(opened_dex_files.empty());
   1400         }
   1401       }
   1402     }
   1403 
   1404     dex_files_ = MakeNonOwningPointerVector(opened_dex_files_);
   1405 
   1406     // We had to postpone the swap decision till now, as this is the point when we actually
   1407     // know about the dex files we're going to use.
   1408 
   1409     // Make sure that we didn't create the driver, yet.
   1410     CHECK(driver_ == nullptr);
   1411     // If we use a swap file, ensure we are above the threshold to make it necessary.
   1412     if (swap_fd_ != -1) {
   1413       if (!UseSwap(IsBootImage(), dex_files_)) {
   1414         close(swap_fd_);
   1415         swap_fd_ = -1;
   1416         VLOG(compiler) << "Decided to run without swap.";
   1417       } else {
   1418         LOG(INFO) << "Large app, accepted running with swap.";
   1419       }
   1420     }
   1421     // Note that dex2oat won't close the swap_fd_. The compiler driver's swap space will do that.
   1422 
   1423     if (IsBootImage()) {
   1424       // For boot image, pass opened dex files to the Runtime::Create().
   1425       // Note: Runtime acquires ownership of these dex files.
   1426       runtime_options.Set(RuntimeArgumentMap::BootClassPathDexList, &opened_dex_files_);
   1427       if (!CreateRuntime(std::move(runtime_options))) {
   1428         return false;
   1429       }
   1430     }
   1431 
   1432     // If we're doing the image, override the compiler filter to force full compilation. Must be
   1433     // done ahead of WellKnownClasses::Init that causes verification.  Note: doesn't force
   1434     // compilation of class initializers.
   1435     // Whilst we're in native take the opportunity to initialize well known classes.
   1436     Thread* self = Thread::Current();
   1437     WellKnownClasses::Init(self->GetJniEnv());
   1438 
   1439     ClassLinker* const class_linker = Runtime::Current()->GetClassLinker();
   1440     if (!IsBootImage()) {
   1441       constexpr bool kSaveDexInput = false;
   1442       if (kSaveDexInput) {
   1443         SaveDexInput();
   1444       }
   1445 
   1446       // Handle and ClassLoader creation needs to come after Runtime::Create.
   1447       ScopedObjectAccess soa(self);
   1448 
   1449       // Classpath: first the class-path given.
   1450       std::vector<const DexFile*> class_path_files = MakeNonOwningPointerVector(class_path_files_);
   1451 
   1452       // Then the dex files we'll compile. Thus we'll resolve the class-path first.
   1453       class_path_files.insert(class_path_files.end(), dex_files_.begin(), dex_files_.end());
   1454 
   1455       class_loader_ = class_linker->CreatePathClassLoader(self, class_path_files);
   1456     }
   1457 
   1458     // Ensure opened dex files are writable for dex-to-dex transformations.
   1459     for (const std::unique_ptr<MemMap>& map : opened_dex_files_maps_) {
   1460       if (!map->Protect(PROT_READ | PROT_WRITE)) {
   1461         PLOG(ERROR) << "Failed to make .dex files writeable.";
   1462         return false;
   1463       }
   1464     }
   1465 
   1466     // Ensure that the dex caches stay live since we don't want class unloading
   1467     // to occur during compilation.
   1468     for (const auto& dex_file : dex_files_) {
   1469       ScopedObjectAccess soa(self);
   1470       dex_caches_.push_back(soa.AddLocalReference<jobject>(
   1471           class_linker->RegisterDexFile(*dex_file,
   1472                                         soa.Decode<mirror::ClassLoader*>(class_loader_))));
   1473     }
   1474 
   1475     return true;
   1476   }
   1477 
   1478   // If we need to keep the oat file open for the image writer.
   1479   bool ShouldKeepOatFileOpen() const {
   1480     return IsImage() && oat_fd_ != kInvalidFd;
   1481   }
   1482 
   1483   // Create and invoke the compiler driver. This will compile all the dex files.
   1484   void Compile() {
   1485     TimingLogger::ScopedTiming t("dex2oat Compile", timings_);
   1486     compiler_phases_timings_.reset(new CumulativeLogger("compilation times"));
   1487 
   1488     // Find the dex files we should not inline from.
   1489 
   1490     std::vector<std::string> no_inline_filters;
   1491     Split(no_inline_from_string_, ',', &no_inline_filters);
   1492 
   1493     // For now, on the host always have core-oj removed.
   1494     const std::string core_oj = "core-oj";
   1495     if (!kIsTargetBuild && !ContainsElement(no_inline_filters, core_oj)) {
   1496       no_inline_filters.push_back(core_oj);
   1497     }
   1498 
   1499     if (!no_inline_filters.empty()) {
   1500       ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
   1501       std::vector<const DexFile*> class_path_files = MakeNonOwningPointerVector(class_path_files_);
   1502       std::vector<const std::vector<const DexFile*>*> dex_file_vectors = {
   1503           &class_linker->GetBootClassPath(),
   1504           &class_path_files,
   1505           &dex_files_
   1506       };
   1507       for (const std::vector<const DexFile*>* dex_file_vector : dex_file_vectors) {
   1508         for (const DexFile* dex_file : *dex_file_vector) {
   1509           for (const std::string& filter : no_inline_filters) {
   1510             // Use dex_file->GetLocation() rather than dex_file->GetBaseLocation(). This
   1511             // allows tests to specify <test-dexfile>:classes2.dex if needed but if the
   1512             // base location passes the StartsWith() test, so do all extra locations.
   1513             std::string dex_location = dex_file->GetLocation();
   1514             if (filter.find('/') == std::string::npos) {
   1515               // The filter does not contain the path. Remove the path from dex_location as well.
   1516               size_t last_slash = dex_file->GetLocation().rfind('/');
   1517               if (last_slash != std::string::npos) {
   1518                 dex_location = dex_location.substr(last_slash + 1);
   1519               }
   1520             }
   1521 
   1522             if (StartsWith(dex_location, filter.c_str())) {
   1523               VLOG(compiler) << "Disabling inlining from " << dex_file->GetLocation();
   1524               no_inline_from_dex_files_.push_back(dex_file);
   1525               break;
   1526             }
   1527           }
   1528         }
   1529       }
   1530       if (!no_inline_from_dex_files_.empty()) {
   1531         compiler_options_->no_inline_from_ = &no_inline_from_dex_files_;
   1532       }
   1533     }
   1534 
   1535     driver_.reset(new CompilerDriver(compiler_options_.get(),
   1536                                      verification_results_.get(),
   1537                                      &method_inliner_map_,
   1538                                      compiler_kind_,
   1539                                      instruction_set_,
   1540                                      instruction_set_features_.get(),
   1541                                      IsBootImage(),
   1542                                      IsAppImage(),
   1543                                      image_classes_.release(),
   1544                                      compiled_classes_.release(),
   1545                                      /* compiled_methods */ nullptr,
   1546                                      thread_count_,
   1547                                      dump_stats_,
   1548                                      dump_passes_,
   1549                                      compiler_phases_timings_.get(),
   1550                                      swap_fd_,
   1551                                      profile_compilation_info_.get()));
   1552     driver_->SetDexFilesForOatFile(dex_files_);
   1553     driver_->CompileAll(class_loader_, dex_files_, timings_);
   1554   }
   1555 
   1556   // Notes on the interleaving of creating the images and oat files to
   1557   // ensure the references between the two are correct.
   1558   //
   1559   // Currently we have a memory layout that looks something like this:
   1560   //
   1561   // +--------------+
   1562   // | images       |
   1563   // +--------------+
   1564   // | oat files    |
   1565   // +--------------+
   1566   // | alloc spaces |
   1567   // +--------------+
   1568   //
   1569   // There are several constraints on the loading of the images and oat files.
   1570   //
   1571   // 1. The images are expected to be loaded at an absolute address and
   1572   // contain Objects with absolute pointers within the images.
   1573   //
   1574   // 2. There are absolute pointers from Methods in the images to their
   1575   // code in the oat files.
   1576   //
   1577   // 3. There are absolute pointers from the code in the oat files to Methods
   1578   // in the images.
   1579   //
   1580   // 4. There are absolute pointers from code in the oat files to other code
   1581   // in the oat files.
   1582   //
   1583   // To get this all correct, we go through several steps.
   1584   //
   1585   // 1. We prepare offsets for all data in the oat files and calculate
   1586   // the oat data size and code size. During this stage, we also set
   1587   // oat code offsets in methods for use by the image writer.
   1588   //
   1589   // 2. We prepare offsets for the objects in the images and calculate
   1590   // the image sizes.
   1591   //
   1592   // 3. We create the oat files. Originally this was just our own proprietary
   1593   // file but now it is contained within an ELF dynamic object (aka an .so
   1594   // file). Since we know the image sizes and oat data sizes and code sizes we
   1595   // can prepare the ELF headers and we then know the ELF memory segment
   1596   // layout and we can now resolve all references. The compiler provides
   1597   // LinkerPatch information in each CompiledMethod and we resolve these,
   1598   // using the layout information and image object locations provided by
   1599   // image writer, as we're writing the method code.
   1600   //
   1601   // 4. We create the image files. They need to know where the oat files
   1602   // will be loaded after itself. Originally oat files were simply
   1603   // memory mapped so we could predict where their contents were based
   1604   // on the file size. Now that they are ELF files, we need to inspect
   1605   // the ELF files to understand the in memory segment layout including
   1606   // where the oat header is located within.
   1607   // TODO: We could just remember this information from step 3.
   1608   //
   1609   // 5. We fixup the ELF program headers so that dlopen will try to
   1610   // load the .so at the desired location at runtime by offsetting the
   1611   // Elf32_Phdr.p_vaddr values by the desired base address.
   1612   // TODO: Do this in step 3. We already know the layout there.
   1613   //
   1614   // Steps 1.-3. are done by the CreateOatFile() above, steps 4.-5.
   1615   // are done by the CreateImageFile() below.
   1616 
   1617   // Write out the generated code part. Calls the OatWriter and ElfBuilder. Also prepares the
   1618   // ImageWriter, if necessary.
   1619   // Note: Flushing (and closing) the file is the caller's responsibility, except for the failure
   1620   //       case (when the file will be explicitly erased).
   1621   bool WriteOatFiles() {
   1622     TimingLogger::ScopedTiming t("dex2oat Oat", timings_);
   1623 
   1624     // Sync the data to the file, in case we did dex2dex transformations.
   1625     for (const std::unique_ptr<MemMap>& map : opened_dex_files_maps_) {
   1626       if (!map->Sync()) {
   1627         PLOG(ERROR) << "Failed to Sync() dex2dex output. Map: " << map->GetName();
   1628         return false;
   1629       }
   1630     }
   1631 
   1632     if (IsImage()) {
   1633       if (app_image_ && image_base_ == 0) {
   1634         gc::Heap* const heap = Runtime::Current()->GetHeap();
   1635         for (gc::space::ImageSpace* image_space : heap->GetBootImageSpaces()) {
   1636           image_base_ = std::max(image_base_, RoundUp(
   1637               reinterpret_cast<uintptr_t>(image_space->GetImageHeader().GetOatFileEnd()),
   1638               kPageSize));
   1639         }
   1640         // The non moving space is right after the oat file. Put the preferred app image location
   1641         // right after the non moving space so that we ideally get a continuous immune region for
   1642         // the GC.
   1643         // Use the default non moving space capacity since dex2oat does not have a separate non-
   1644         // moving space. This means the runtime's non moving space space size will be as large
   1645         // as the growth limit for dex2oat, but smaller in the zygote.
   1646         const size_t non_moving_space_capacity = gc::Heap::kDefaultNonMovingSpaceCapacity;
   1647         image_base_ += non_moving_space_capacity;
   1648         VLOG(compiler) << "App image base=" << reinterpret_cast<void*>(image_base_);
   1649       }
   1650 
   1651       image_writer_.reset(new ImageWriter(*driver_,
   1652                                           image_base_,
   1653                                           compiler_options_->GetCompilePic(),
   1654                                           IsAppImage(),
   1655                                           image_storage_mode_,
   1656                                           oat_filenames_,
   1657                                           dex_file_oat_index_map_));
   1658 
   1659       // We need to prepare method offsets in the image address space for direct method patching.
   1660       TimingLogger::ScopedTiming t2("dex2oat Prepare image address space", timings_);
   1661       if (!image_writer_->PrepareImageAddressSpace()) {
   1662         LOG(ERROR) << "Failed to prepare image address space.";
   1663         return false;
   1664       }
   1665     }
   1666 
   1667     linker::MultiOatRelativePatcher patcher(instruction_set_, instruction_set_features_.get());
   1668     {
   1669       TimingLogger::ScopedTiming t2("dex2oat Write ELF", timings_);
   1670       for (size_t i = 0, size = oat_files_.size(); i != size; ++i) {
   1671         std::unique_ptr<ElfWriter>& elf_writer = elf_writers_[i];
   1672         std::unique_ptr<OatWriter>& oat_writer = oat_writers_[i];
   1673 
   1674         std::vector<const DexFile*>& dex_files = dex_files_per_oat_file_[i];
   1675         oat_writer->PrepareLayout(driver_.get(), image_writer_.get(), dex_files, &patcher);
   1676 
   1677         size_t rodata_size = oat_writer->GetOatHeader().GetExecutableOffset();
   1678         size_t text_size = oat_writer->GetSize() - rodata_size;
   1679         elf_writer->SetLoadedSectionSizes(rodata_size, text_size, oat_writer->GetBssSize());
   1680 
   1681         if (IsImage()) {
   1682           // Update oat layout.
   1683           DCHECK(image_writer_ != nullptr);
   1684           DCHECK_LT(i, oat_filenames_.size());
   1685           image_writer_->UpdateOatFileLayout(i,
   1686                                              elf_writer->GetLoadedSize(),
   1687                                              oat_writer->GetOatDataOffset(),
   1688                                              oat_writer->GetSize());
   1689         }
   1690       }
   1691 
   1692       for (size_t i = 0, size = oat_files_.size(); i != size; ++i) {
   1693         std::unique_ptr<File>& oat_file = oat_files_[i];
   1694         std::unique_ptr<ElfWriter>& elf_writer = elf_writers_[i];
   1695         std::unique_ptr<OatWriter>& oat_writer = oat_writers_[i];
   1696 
   1697         oat_writer->AddMethodDebugInfos(debug::MakeTrampolineInfos(oat_writer->GetOatHeader()));
   1698 
   1699         // We need to mirror the layout of the ELF file in the compressed debug-info.
   1700         // Therefore PrepareDebugInfo() relies on the SetLoadedSectionSizes() call further above.
   1701         elf_writer->PrepareDebugInfo(oat_writer->GetMethodDebugInfo());
   1702 
   1703         OutputStream*& rodata = rodata_[i];
   1704         DCHECK(rodata != nullptr);
   1705         if (!oat_writer->WriteRodata(rodata)) {
   1706           LOG(ERROR) << "Failed to write .rodata section to the ELF file " << oat_file->GetPath();
   1707           return false;
   1708         }
   1709         elf_writer->EndRoData(rodata);
   1710         rodata = nullptr;
   1711 
   1712         OutputStream* text = elf_writer->StartText();
   1713         if (!oat_writer->WriteCode(text)) {
   1714           LOG(ERROR) << "Failed to write .text section to the ELF file " << oat_file->GetPath();
   1715           return false;
   1716         }
   1717         elf_writer->EndText(text);
   1718 
   1719         if (!oat_writer->WriteHeader(elf_writer->GetStream(),
   1720                                      image_file_location_oat_checksum_,
   1721                                      image_file_location_oat_data_begin_,
   1722                                      image_patch_delta_)) {
   1723           LOG(ERROR) << "Failed to write oat header to the ELF file " << oat_file->GetPath();
   1724           return false;
   1725         }
   1726 
   1727         if (IsImage()) {
   1728           // Update oat header information.
   1729           DCHECK(image_writer_ != nullptr);
   1730           DCHECK_LT(i, oat_filenames_.size());
   1731           image_writer_->UpdateOatFileHeader(i, oat_writer->GetOatHeader());
   1732         }
   1733 
   1734         elf_writer->WriteDynamicSection();
   1735         elf_writer->WriteDebugInfo(oat_writer->GetMethodDebugInfo());
   1736         elf_writer->WritePatchLocations(oat_writer->GetAbsolutePatchLocations());
   1737 
   1738         if (!elf_writer->End()) {
   1739           LOG(ERROR) << "Failed to write ELF file " << oat_file->GetPath();
   1740           return false;
   1741         }
   1742 
   1743         // Flush the oat file.
   1744         if (oat_files_[i] != nullptr) {
   1745           if (oat_files_[i]->Flush() != 0) {
   1746             PLOG(ERROR) << "Failed to flush oat file: " << oat_filenames_[i];
   1747             return false;
   1748           }
   1749         }
   1750 
   1751         VLOG(compiler) << "Oat file written successfully: " << oat_filenames_[i];
   1752 
   1753         oat_writer.reset();
   1754         elf_writer.reset();
   1755       }
   1756     }
   1757 
   1758     return true;
   1759   }
   1760 
   1761   // If we are compiling an image, invoke the image creation routine. Else just skip.
   1762   bool HandleImage() {
   1763     if (IsImage()) {
   1764       TimingLogger::ScopedTiming t("dex2oat ImageWriter", timings_);
   1765       if (!CreateImageFile()) {
   1766         return false;
   1767       }
   1768       VLOG(compiler) << "Images written successfully";
   1769     }
   1770     return true;
   1771   }
   1772 
   1773   // Create a copy from stripped to unstripped.
   1774   bool CopyStrippedToUnstripped() {
   1775     for (size_t i = 0; i < oat_unstripped_.size(); ++i) {
   1776       // If we don't want to strip in place, copy from stripped location to unstripped location.
   1777       // We need to strip after image creation because FixupElf needs to use .strtab.
   1778       if (strcmp(oat_unstripped_[i], oat_filenames_[i]) != 0) {
   1779         // If the oat file is still open, flush it.
   1780         if (oat_files_[i].get() != nullptr && oat_files_[i]->IsOpened()) {
   1781           if (!FlushCloseOatFile(i)) {
   1782             return false;
   1783           }
   1784         }
   1785 
   1786         TimingLogger::ScopedTiming t("dex2oat OatFile copy", timings_);
   1787         std::unique_ptr<File> in(OS::OpenFileForReading(oat_filenames_[i]));
   1788         std::unique_ptr<File> out(OS::CreateEmptyFile(oat_unstripped_[i]));
   1789         size_t buffer_size = 8192;
   1790         std::unique_ptr<uint8_t[]> buffer(new uint8_t[buffer_size]);
   1791         while (true) {
   1792           int bytes_read = TEMP_FAILURE_RETRY(read(in->Fd(), buffer.get(), buffer_size));
   1793           if (bytes_read <= 0) {
   1794             break;
   1795           }
   1796           bool write_ok = out->WriteFully(buffer.get(), bytes_read);
   1797           CHECK(write_ok);
   1798         }
   1799         if (out->FlushCloseOrErase() != 0) {
   1800           PLOG(ERROR) << "Failed to flush and close copied oat file: " << oat_unstripped_[i];
   1801           return false;
   1802         }
   1803         VLOG(compiler) << "Oat file copied successfully (unstripped): " << oat_unstripped_[i];
   1804       }
   1805     }
   1806     return true;
   1807   }
   1808 
   1809   bool FlushOatFiles() {
   1810     TimingLogger::ScopedTiming t2("dex2oat Flush ELF", timings_);
   1811     for (size_t i = 0; i < oat_files_.size(); ++i) {
   1812       if (oat_files_[i].get() != nullptr) {
   1813         if (oat_files_[i]->Flush() != 0) {
   1814           PLOG(ERROR) << "Failed to flush oat file: " << oat_filenames_[i];
   1815           oat_files_[i]->Erase();
   1816           return false;
   1817         }
   1818       }
   1819     }
   1820     return true;
   1821   }
   1822 
   1823   bool FlushCloseOatFile(size_t i) {
   1824     if (oat_files_[i].get() != nullptr) {
   1825       std::unique_ptr<File> tmp(oat_files_[i].release());
   1826       if (tmp->FlushCloseOrErase() != 0) {
   1827         PLOG(ERROR) << "Failed to flush and close oat file: " << oat_filenames_[i];
   1828         return false;
   1829       }
   1830     }
   1831     return true;
   1832   }
   1833 
   1834   bool FlushCloseOatFiles() {
   1835     bool result = true;
   1836     for (size_t i = 0; i < oat_files_.size(); ++i) {
   1837       result &= FlushCloseOatFile(i);
   1838     }
   1839     return result;
   1840   }
   1841 
   1842   void DumpTiming() {
   1843     if (dump_timing_ || (dump_slow_timing_ && timings_->GetTotalNs() > MsToNs(1000))) {
   1844       LOG(INFO) << Dumpable<TimingLogger>(*timings_);
   1845     }
   1846     if (dump_passes_) {
   1847       LOG(INFO) << Dumpable<CumulativeLogger>(*driver_->GetTimingsLogger());
   1848     }
   1849   }
   1850 
   1851   CompilerOptions* GetCompilerOptions() const {
   1852     return compiler_options_.get();
   1853   }
   1854 
   1855   bool IsImage() const {
   1856     return IsAppImage() || IsBootImage();
   1857   }
   1858 
   1859   bool IsAppImage() const {
   1860     return app_image_;
   1861   }
   1862 
   1863   bool IsBootImage() const {
   1864     return boot_image_;
   1865   }
   1866 
   1867   bool IsHost() const {
   1868     return is_host_;
   1869   }
   1870 
   1871   bool UseProfileGuidedCompilation() const {
   1872     return CompilerFilter::DependsOnProfile(compiler_options_->GetCompilerFilter());
   1873   }
   1874 
   1875   bool LoadProfile() {
   1876     DCHECK(UseProfileGuidedCompilation());
   1877 
   1878     profile_compilation_info_.reset(new ProfileCompilationInfo());
   1879     ScopedFlock flock;
   1880     bool success = true;
   1881     std::string error;
   1882     if (profile_file_fd_ != -1) {
   1883       // The file doesn't need to be flushed so don't check the usage.
   1884       // Pass a bogus path so that we can easily attribute any reported error.
   1885       File file(profile_file_fd_, "profile", /*check_usage*/ false, /*read_only_mode*/ true);
   1886       if (flock.Init(&file, &error)) {
   1887         success = profile_compilation_info_->Load(profile_file_fd_);
   1888       }
   1889     } else if (profile_file_ != "") {
   1890       if (flock.Init(profile_file_.c_str(), O_RDONLY, /* block */ true, &error)) {
   1891         success = profile_compilation_info_->Load(flock.GetFile()->Fd());
   1892       }
   1893     }
   1894     if (!error.empty()) {
   1895       LOG(WARNING) << "Cannot lock profiles: " << error;
   1896     }
   1897 
   1898     if (!success) {
   1899       profile_compilation_info_.reset(nullptr);
   1900     }
   1901 
   1902     return success;
   1903   }
   1904 
   1905  private:
   1906   template <typename T>
   1907   static std::vector<T*> MakeNonOwningPointerVector(const std::vector<std::unique_ptr<T>>& src) {
   1908     std::vector<T*> result;
   1909     result.reserve(src.size());
   1910     for (const std::unique_ptr<T>& t : src) {
   1911       result.push_back(t.get());
   1912     }
   1913     return result;
   1914   }
   1915 
   1916   std::string GetMultiImageBootClassPath() {
   1917     DCHECK(IsBootImage());
   1918     DCHECK_GT(oat_filenames_.size(), 1u);
   1919     // If the image filename was adapted (e.g., for our tests), we need to change this here,
   1920     // too, but need to strip all path components (they will be re-established when loading).
   1921     std::ostringstream bootcp_oss;
   1922     bool first_bootcp = true;
   1923     for (size_t i = 0; i < dex_locations_.size(); ++i) {
   1924       if (!first_bootcp) {
   1925         bootcp_oss << ":";
   1926       }
   1927 
   1928       std::string dex_loc = dex_locations_[i];
   1929       std::string image_filename = image_filenames_[i];
   1930 
   1931       // Use the dex_loc path, but the image_filename name (without path elements).
   1932       size_t dex_last_slash = dex_loc.rfind('/');
   1933 
   1934       // npos is max(size_t). That makes this a bit ugly.
   1935       size_t image_last_slash = image_filename.rfind('/');
   1936       size_t image_last_at = image_filename.rfind('@');
   1937       size_t image_last_sep = (image_last_slash == std::string::npos)
   1938                                   ? image_last_at
   1939                                   : (image_last_at == std::string::npos)
   1940                                         ? std::string::npos
   1941                                         : std::max(image_last_slash, image_last_at);
   1942       // Note: whenever image_last_sep == npos, +1 overflow means using the full string.
   1943 
   1944       if (dex_last_slash == std::string::npos) {
   1945         dex_loc = image_filename.substr(image_last_sep + 1);
   1946       } else {
   1947         dex_loc = dex_loc.substr(0, dex_last_slash + 1) +
   1948             image_filename.substr(image_last_sep + 1);
   1949       }
   1950 
   1951       // Image filenames already end with .art, no need to replace.
   1952 
   1953       bootcp_oss << dex_loc;
   1954       first_bootcp = false;
   1955     }
   1956     return bootcp_oss.str();
   1957   }
   1958 
   1959   std::vector<std::string> GetClassPathLocations(const std::string& class_path) {
   1960     // This function is used only for apps and for an app we have exactly one oat file.
   1961     DCHECK(!IsBootImage());
   1962     DCHECK_EQ(oat_writers_.size(), 1u);
   1963     std::vector<std::string> dex_files_canonical_locations;
   1964     for (const char* location : oat_writers_[0]->GetSourceLocations()) {
   1965       dex_files_canonical_locations.push_back(DexFile::GetDexCanonicalLocation(location));
   1966     }
   1967 
   1968     std::vector<std::string> parsed;
   1969     Split(class_path, ':', &parsed);
   1970     auto kept_it = std::remove_if(parsed.begin(),
   1971                                   parsed.end(),
   1972                                   [dex_files_canonical_locations](const std::string& location) {
   1973       return ContainsElement(dex_files_canonical_locations,
   1974                              DexFile::GetDexCanonicalLocation(location.c_str()));
   1975     });
   1976     parsed.erase(kept_it, parsed.end());
   1977     return parsed;
   1978   }
   1979 
   1980   // Opens requested class path files and appends them to opened_dex_files. If the dex files have
   1981   // been stripped, this opens them from their oat files and appends them to opened_oat_files.
   1982   static void OpenClassPathFiles(const std::vector<std::string>& class_path_locations,
   1983                                  std::vector<std::unique_ptr<const DexFile>>* opened_dex_files,
   1984                                  std::vector<std::unique_ptr<OatFile>>* opened_oat_files,
   1985                                  InstructionSet isa) {
   1986     DCHECK(opened_dex_files != nullptr) << "OpenClassPathFiles dex out-param is nullptr";
   1987     DCHECK(opened_oat_files != nullptr) << "OpenClassPathFiles oat out-param is nullptr";
   1988     for (const std::string& location : class_path_locations) {
   1989       // Stop early if we detect the special shared library, which may be passed as the classpath
   1990       // for dex2oat when we want to skip the shared libraries check.
   1991       if (location == OatFile::kSpecialSharedLibrary) {
   1992         break;
   1993       }
   1994       std::string error_msg;
   1995       if (!DexFile::Open(location.c_str(), location.c_str(), &error_msg, opened_dex_files)) {
   1996         // If we fail to open the dex file because it's been stripped, try to open the dex file
   1997         // from its corresponding oat file.
   1998         OatFileAssistant oat_file_assistant(location.c_str(), isa, false, false);
   1999         std::unique_ptr<OatFile> oat_file(oat_file_assistant.GetBestOatFile());
   2000         if (oat_file == nullptr) {
   2001           LOG(WARNING) << "Failed to open dex file and associated oat file for '" << location
   2002                        << "': " << error_msg;
   2003         } else {
   2004           std::vector<std::unique_ptr<const DexFile>> oat_dex_files =
   2005               oat_file_assistant.LoadDexFiles(*oat_file, location.c_str());
   2006           opened_oat_files->push_back(std::move(oat_file));
   2007           opened_dex_files->insert(opened_dex_files->end(),
   2008                                    std::make_move_iterator(oat_dex_files.begin()),
   2009                                    std::make_move_iterator(oat_dex_files.end()));
   2010         }
   2011       }
   2012     }
   2013   }
   2014 
   2015   bool PrepareImageClasses() {
   2016     // If --image-classes was specified, calculate the full list of classes to include in the image.
   2017     if (image_classes_filename_ != nullptr) {
   2018       image_classes_ =
   2019           ReadClasses(image_classes_zip_filename_, image_classes_filename_, "image");
   2020       if (image_classes_ == nullptr) {
   2021         return false;
   2022       }
   2023     } else if (IsBootImage()) {
   2024       image_classes_.reset(new std::unordered_set<std::string>);
   2025     }
   2026     return true;
   2027   }
   2028 
   2029   bool PrepareCompiledClasses() {
   2030     // If --compiled-classes was specified, calculate the full list of classes to compile in the
   2031     // image.
   2032     if (compiled_classes_filename_ != nullptr) {
   2033       compiled_classes_ =
   2034           ReadClasses(compiled_classes_zip_filename_, compiled_classes_filename_, "compiled");
   2035       if (compiled_classes_ == nullptr) {
   2036         return false;
   2037       }
   2038     } else {
   2039       compiled_classes_.reset(nullptr);  // By default compile everything.
   2040     }
   2041     return true;
   2042   }
   2043 
   2044   static std::unique_ptr<std::unordered_set<std::string>> ReadClasses(const char* zip_filename,
   2045                                                                       const char* classes_filename,
   2046                                                                       const char* tag) {
   2047     std::unique_ptr<std::unordered_set<std::string>> classes;
   2048     std::string error_msg;
   2049     if (zip_filename != nullptr) {
   2050       classes.reset(ReadImageClassesFromZip(zip_filename, classes_filename, &error_msg));
   2051     } else {
   2052       classes.reset(ReadImageClassesFromFile(classes_filename));
   2053     }
   2054     if (classes == nullptr) {
   2055       LOG(ERROR) << "Failed to create list of " << tag << " classes from '"
   2056                  << classes_filename << "': " << error_msg;
   2057     }
   2058     return classes;
   2059   }
   2060 
   2061   bool PrepareCompiledMethods() {
   2062     // If --compiled-methods was specified, read the methods to compile from the given file(s).
   2063     if (compiled_methods_filename_ != nullptr) {
   2064       std::string error_msg;
   2065       if (compiled_methods_zip_filename_ != nullptr) {
   2066         compiled_methods_.reset(ReadCommentedInputFromZip(compiled_methods_zip_filename_,
   2067                                                           compiled_methods_filename_,
   2068                                                           nullptr,            // No post-processing.
   2069                                                           &error_msg));
   2070       } else {
   2071         compiled_methods_.reset(ReadCommentedInputFromFile(compiled_methods_filename_,
   2072                                                            nullptr));         // No post-processing.
   2073       }
   2074       if (compiled_methods_.get() == nullptr) {
   2075         LOG(ERROR) << "Failed to create list of compiled methods from '"
   2076             << compiled_methods_filename_ << "': " << error_msg;
   2077         return false;
   2078       }
   2079     } else {
   2080       compiled_methods_.reset(nullptr);  // By default compile everything.
   2081     }
   2082     return true;
   2083   }
   2084 
   2085   void PruneNonExistentDexFiles() {
   2086     DCHECK_EQ(dex_filenames_.size(), dex_locations_.size());
   2087     size_t kept = 0u;
   2088     for (size_t i = 0, size = dex_filenames_.size(); i != size; ++i) {
   2089       if (!OS::FileExists(dex_filenames_[i])) {
   2090         LOG(WARNING) << "Skipping non-existent dex file '" << dex_filenames_[i] << "'";
   2091       } else {
   2092         dex_filenames_[kept] = dex_filenames_[i];
   2093         dex_locations_[kept] = dex_locations_[i];
   2094         ++kept;
   2095       }
   2096     }
   2097     dex_filenames_.resize(kept);
   2098     dex_locations_.resize(kept);
   2099   }
   2100 
   2101   bool AddDexFileSources() {
   2102     TimingLogger::ScopedTiming t2("AddDexFileSources", timings_);
   2103     if (zip_fd_ != -1) {
   2104       DCHECK_EQ(oat_writers_.size(), 1u);
   2105       if (!oat_writers_[0]->AddZippedDexFilesSource(ScopedFd(zip_fd_), zip_location_.c_str())) {
   2106         return false;
   2107       }
   2108     } else if (oat_writers_.size() > 1u) {
   2109       // Multi-image.
   2110       DCHECK_EQ(oat_writers_.size(), dex_filenames_.size());
   2111       DCHECK_EQ(oat_writers_.size(), dex_locations_.size());
   2112       for (size_t i = 0, size = oat_writers_.size(); i != size; ++i) {
   2113         if (!oat_writers_[i]->AddDexFileSource(dex_filenames_[i], dex_locations_[i])) {
   2114           return false;
   2115         }
   2116       }
   2117     } else {
   2118       DCHECK_EQ(oat_writers_.size(), 1u);
   2119       DCHECK_EQ(dex_filenames_.size(), dex_locations_.size());
   2120       DCHECK_NE(dex_filenames_.size(), 0u);
   2121       for (size_t i = 0; i != dex_filenames_.size(); ++i) {
   2122         if (!oat_writers_[0]->AddDexFileSource(dex_filenames_[i], dex_locations_[i])) {
   2123           return false;
   2124         }
   2125       }
   2126     }
   2127     return true;
   2128   }
   2129 
   2130   void CreateOatWriters() {
   2131     TimingLogger::ScopedTiming t2("CreateOatWriters", timings_);
   2132     elf_writers_.reserve(oat_files_.size());
   2133     oat_writers_.reserve(oat_files_.size());
   2134     for (const std::unique_ptr<File>& oat_file : oat_files_) {
   2135       elf_writers_.emplace_back(CreateElfWriterQuick(instruction_set_,
   2136                                                      instruction_set_features_.get(),
   2137                                                      compiler_options_.get(),
   2138                                                      oat_file.get()));
   2139       elf_writers_.back()->Start();
   2140       oat_writers_.emplace_back(new OatWriter(IsBootImage(), timings_));
   2141     }
   2142   }
   2143 
   2144   void SaveDexInput() {
   2145     for (size_t i = 0; i < dex_files_.size(); ++i) {
   2146       const DexFile* dex_file = dex_files_[i];
   2147       std::string tmp_file_name(StringPrintf("/data/local/tmp/dex2oat.%d.%zd.dex",
   2148                                              getpid(), i));
   2149       std::unique_ptr<File> tmp_file(OS::CreateEmptyFile(tmp_file_name.c_str()));
   2150       if (tmp_file.get() == nullptr) {
   2151         PLOG(ERROR) << "Failed to open file " << tmp_file_name
   2152             << ". Try: adb shell chmod 777 /data/local/tmp";
   2153         continue;
   2154       }
   2155       // This is just dumping files for debugging. Ignore errors, and leave remnants.
   2156       UNUSED(tmp_file->WriteFully(dex_file->Begin(), dex_file->Size()));
   2157       UNUSED(tmp_file->Flush());
   2158       UNUSED(tmp_file->Close());
   2159       LOG(INFO) << "Wrote input to " << tmp_file_name;
   2160     }
   2161   }
   2162 
   2163   bool PrepareRuntimeOptions(RuntimeArgumentMap* runtime_options) {
   2164     RuntimeOptions raw_options;
   2165     if (boot_image_filename_.empty()) {
   2166       std::string boot_class_path = "-Xbootclasspath:";
   2167       boot_class_path += Join(dex_filenames_, ':');
   2168       raw_options.push_back(std::make_pair(boot_class_path, nullptr));
   2169       std::string boot_class_path_locations = "-Xbootclasspath-locations:";
   2170       boot_class_path_locations += Join(dex_locations_, ':');
   2171       raw_options.push_back(std::make_pair(boot_class_path_locations, nullptr));
   2172     } else {
   2173       std::string boot_image_option = "-Ximage:";
   2174       boot_image_option += boot_image_filename_;
   2175       raw_options.push_back(std::make_pair(boot_image_option, nullptr));
   2176     }
   2177     for (size_t i = 0; i < runtime_args_.size(); i++) {
   2178       raw_options.push_back(std::make_pair(runtime_args_[i], nullptr));
   2179     }
   2180 
   2181     raw_options.push_back(std::make_pair("compilercallbacks", callbacks_.get()));
   2182     raw_options.push_back(
   2183         std::make_pair("imageinstructionset", GetInstructionSetString(instruction_set_)));
   2184 
   2185     // Only allow no boot image for the runtime if we're compiling one. When we compile an app,
   2186     // we don't want fallback mode, it will abort as we do not push a boot classpath (it might
   2187     // have been stripped in preopting, anyways).
   2188     if (!IsBootImage()) {
   2189       raw_options.push_back(std::make_pair("-Xno-dex-file-fallback", nullptr));
   2190     }
   2191     // Disable libsigchain. We don't don't need it during compilation and it prevents us
   2192     // from getting a statically linked version of dex2oat (because of dlsym and RTLD_NEXT).
   2193     raw_options.push_back(std::make_pair("-Xno-sig-chain", nullptr));
   2194     // Disable Hspace compaction to save heap size virtual space.
   2195     // Only need disable Hspace for OOM becasue background collector is equal to
   2196     // foreground collector by default for dex2oat.
   2197     raw_options.push_back(std::make_pair("-XX:DisableHSpaceCompactForOOM", nullptr));
   2198 
   2199     // If we're asked to be deterministic, ensure non-concurrent GC for determinism. Also
   2200     // force the free-list implementation for large objects.
   2201     if (compiler_options_->IsForceDeterminism()) {
   2202       raw_options.push_back(std::make_pair("-Xgc:nonconcurrent", nullptr));
   2203       raw_options.push_back(std::make_pair("-XX:LargeObjectSpace=freelist", nullptr));
   2204 
   2205       // We also need to turn off the nonmoving space. For that, we need to disable HSpace
   2206       // compaction (done above) and ensure that neither foreground nor background collectors
   2207       // are concurrent.
   2208       raw_options.push_back(std::make_pair("-XX:BackgroundGC=nonconcurrent", nullptr));
   2209 
   2210       // To make identity hashcode deterministic, set a known seed.
   2211       mirror::Object::SetHashCodeSeed(987654321U);
   2212     }
   2213 
   2214     if (!Runtime::ParseOptions(raw_options, false, runtime_options)) {
   2215       LOG(ERROR) << "Failed to parse runtime options";
   2216       return false;
   2217     }
   2218     return true;
   2219   }
   2220 
   2221   // Create a runtime necessary for compilation.
   2222   bool CreateRuntime(RuntimeArgumentMap&& runtime_options) {
   2223     TimingLogger::ScopedTiming t_runtime("Create runtime", timings_);
   2224     if (!Runtime::Create(std::move(runtime_options))) {
   2225       LOG(ERROR) << "Failed to create runtime";
   2226       return false;
   2227     }
   2228     runtime_.reset(Runtime::Current());
   2229     runtime_->SetInstructionSet(instruction_set_);
   2230     for (int i = 0; i < Runtime::kLastCalleeSaveType; i++) {
   2231       Runtime::CalleeSaveType type = Runtime::CalleeSaveType(i);
   2232       if (!runtime_->HasCalleeSaveMethod(type)) {
   2233         runtime_->SetCalleeSaveMethod(runtime_->CreateCalleeSaveMethod(), type);
   2234       }
   2235     }
   2236     runtime_->GetClassLinker()->FixupDexCaches(runtime_->GetResolutionMethod());
   2237 
   2238     // Initialize maps for unstarted runtime. This needs to be here, as running clinits needs this
   2239     // set up.
   2240     interpreter::UnstartedRuntime::Initialize();
   2241 
   2242     runtime_->GetClassLinker()->RunRootClinits();
   2243 
   2244     // Runtime::Create acquired the mutator_lock_ that is normally given away when we
   2245     // Runtime::Start, give it away now so that we don't starve GC.
   2246     Thread* self = Thread::Current();
   2247     self->TransitionFromRunnableToSuspended(kNative);
   2248 
   2249     return true;
   2250   }
   2251 
   2252   // Let the ImageWriter write the image files. If we do not compile PIC, also fix up the oat files.
   2253   bool CreateImageFile()
   2254       REQUIRES(!Locks::mutator_lock_) {
   2255     CHECK(image_writer_ != nullptr);
   2256     if (!IsBootImage()) {
   2257       CHECK(image_filenames_.empty());
   2258       image_filenames_.push_back(app_image_file_name_.c_str());
   2259     }
   2260     if (!image_writer_->Write(app_image_fd_,
   2261                               image_filenames_,
   2262                               oat_filenames_)) {
   2263       LOG(ERROR) << "Failure during image file creation";
   2264       return false;
   2265     }
   2266 
   2267     // We need the OatDataBegin entries.
   2268     dchecked_vector<uintptr_t> oat_data_begins;
   2269     for (size_t i = 0, size = oat_filenames_.size(); i != size; ++i) {
   2270       oat_data_begins.push_back(image_writer_->GetOatDataBegin(i));
   2271     }
   2272     // Destroy ImageWriter before doing FixupElf.
   2273     image_writer_.reset();
   2274 
   2275     for (size_t i = 0, size = oat_filenames_.size(); i != size; ++i) {
   2276       const char* oat_filename = oat_filenames_[i];
   2277       // Do not fix up the ELF file if we are --compile-pic or compiling the app image
   2278       if (!compiler_options_->GetCompilePic() && IsBootImage()) {
   2279         std::unique_ptr<File> oat_file(OS::OpenFileReadWrite(oat_filename));
   2280         if (oat_file.get() == nullptr) {
   2281           PLOG(ERROR) << "Failed to open ELF file: " << oat_filename;
   2282           return false;
   2283         }
   2284 
   2285         if (!ElfWriter::Fixup(oat_file.get(), oat_data_begins[i])) {
   2286           oat_file->Erase();
   2287           LOG(ERROR) << "Failed to fixup ELF file " << oat_file->GetPath();
   2288           return false;
   2289         }
   2290 
   2291         if (oat_file->FlushCloseOrErase()) {
   2292           PLOG(ERROR) << "Failed to flush and close fixed ELF file " << oat_file->GetPath();
   2293           return false;
   2294         }
   2295       }
   2296     }
   2297 
   2298     return true;
   2299   }
   2300 
   2301   // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
   2302   static std::unordered_set<std::string>* ReadImageClassesFromFile(
   2303       const char* image_classes_filename) {
   2304     std::function<std::string(const char*)> process = DotToDescriptor;
   2305     return ReadCommentedInputFromFile(image_classes_filename, &process);
   2306   }
   2307 
   2308   // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
   2309   static std::unordered_set<std::string>* ReadImageClassesFromZip(
   2310         const char* zip_filename,
   2311         const char* image_classes_filename,
   2312         std::string* error_msg) {
   2313     std::function<std::string(const char*)> process = DotToDescriptor;
   2314     return ReadCommentedInputFromZip(zip_filename, image_classes_filename, &process, error_msg);
   2315   }
   2316 
   2317   // Read lines from the given file, dropping comments and empty lines. Post-process each line with
   2318   // the given function.
   2319   static std::unordered_set<std::string>* ReadCommentedInputFromFile(
   2320       const char* input_filename, std::function<std::string(const char*)>* process) {
   2321     std::unique_ptr<std::ifstream> input_file(new std::ifstream(input_filename, std::ifstream::in));
   2322     if (input_file.get() == nullptr) {
   2323       LOG(ERROR) << "Failed to open input file " << input_filename;
   2324       return nullptr;
   2325     }
   2326     std::unique_ptr<std::unordered_set<std::string>> result(
   2327         ReadCommentedInputStream(*input_file, process));
   2328     input_file->close();
   2329     return result.release();
   2330   }
   2331 
   2332   // Read lines from the given file from the given zip file, dropping comments and empty lines.
   2333   // Post-process each line with the given function.
   2334   static std::unordered_set<std::string>* ReadCommentedInputFromZip(
   2335       const char* zip_filename,
   2336       const char* input_filename,
   2337       std::function<std::string(const char*)>* process,
   2338       std::string* error_msg) {
   2339     std::unique_ptr<ZipArchive> zip_archive(ZipArchive::Open(zip_filename, error_msg));
   2340     if (zip_archive.get() == nullptr) {
   2341       return nullptr;
   2342     }
   2343     std::unique_ptr<ZipEntry> zip_entry(zip_archive->Find(input_filename, error_msg));
   2344     if (zip_entry.get() == nullptr) {
   2345       *error_msg = StringPrintf("Failed to find '%s' within '%s': %s", input_filename,
   2346                                 zip_filename, error_msg->c_str());
   2347       return nullptr;
   2348     }
   2349     std::unique_ptr<MemMap> input_file(zip_entry->ExtractToMemMap(zip_filename,
   2350                                                                   input_filename,
   2351                                                                   error_msg));
   2352     if (input_file.get() == nullptr) {
   2353       *error_msg = StringPrintf("Failed to extract '%s' from '%s': %s", input_filename,
   2354                                 zip_filename, error_msg->c_str());
   2355       return nullptr;
   2356     }
   2357     const std::string input_string(reinterpret_cast<char*>(input_file->Begin()),
   2358                                    input_file->Size());
   2359     std::istringstream input_stream(input_string);
   2360     return ReadCommentedInputStream(input_stream, process);
   2361   }
   2362 
   2363   // Read lines from the given stream, dropping comments and empty lines. Post-process each line
   2364   // with the given function.
   2365   static std::unordered_set<std::string>* ReadCommentedInputStream(
   2366       std::istream& in_stream,
   2367       std::function<std::string(const char*)>* process) {
   2368     std::unique_ptr<std::unordered_set<std::string>> image_classes(
   2369         new std::unordered_set<std::string>);
   2370     while (in_stream.good()) {
   2371       std::string dot;
   2372       std::getline(in_stream, dot);
   2373       if (StartsWith(dot, "#") || dot.empty()) {
   2374         continue;
   2375       }
   2376       if (process != nullptr) {
   2377         std::string descriptor((*process)(dot.c_str()));
   2378         image_classes->insert(descriptor);
   2379       } else {
   2380         image_classes->insert(dot);
   2381       }
   2382     }
   2383     return image_classes.release();
   2384   }
   2385 
   2386   void LogCompletionTime() {
   2387     // Note: when creation of a runtime fails, e.g., when trying to compile an app but when there
   2388     //       is no image, there won't be a Runtime::Current().
   2389     // Note: driver creation can fail when loading an invalid dex file.
   2390     LOG(INFO) << "dex2oat took " << PrettyDuration(NanoTime() - start_ns_)
   2391               << " (threads: " << thread_count_ << ") "
   2392               << ((Runtime::Current() != nullptr && driver_ != nullptr) ?
   2393                   driver_->GetMemoryUsageString(kIsDebugBuild || VLOG_IS_ON(compiler)) :
   2394                   "");
   2395   }
   2396 
   2397   std::string StripIsaFrom(const char* image_filename, InstructionSet isa) {
   2398     std::string res(image_filename);
   2399     size_t last_slash = res.rfind('/');
   2400     if (last_slash == std::string::npos || last_slash == 0) {
   2401       return res;
   2402     }
   2403     size_t penultimate_slash = res.rfind('/', last_slash - 1);
   2404     if (penultimate_slash == std::string::npos) {
   2405       return res;
   2406     }
   2407     // Check that the string in-between is the expected one.
   2408     if (res.substr(penultimate_slash + 1, last_slash - penultimate_slash - 1) !=
   2409             GetInstructionSetString(isa)) {
   2410       LOG(WARNING) << "Unexpected string when trying to strip isa: " << res;
   2411       return res;
   2412     }
   2413     return res.substr(0, penultimate_slash) + res.substr(last_slash);
   2414   }
   2415 
   2416   std::unique_ptr<CompilerOptions> compiler_options_;
   2417   Compiler::Kind compiler_kind_;
   2418 
   2419   InstructionSet instruction_set_;
   2420   std::unique_ptr<const InstructionSetFeatures> instruction_set_features_;
   2421 
   2422   uint32_t image_file_location_oat_checksum_;
   2423   uintptr_t image_file_location_oat_data_begin_;
   2424   int32_t image_patch_delta_;
   2425   std::unique_ptr<SafeMap<std::string, std::string> > key_value_store_;
   2426 
   2427   std::unique_ptr<VerificationResults> verification_results_;
   2428 
   2429   DexFileToMethodInlinerMap method_inliner_map_;
   2430   std::unique_ptr<QuickCompilerCallbacks> callbacks_;
   2431 
   2432   std::unique_ptr<Runtime> runtime_;
   2433 
   2434   // Ownership for the class path files.
   2435   std::vector<std::unique_ptr<const DexFile>> class_path_files_;
   2436 
   2437   size_t thread_count_;
   2438   uint64_t start_ns_;
   2439   std::unique_ptr<WatchDog> watchdog_;
   2440   std::vector<std::unique_ptr<File>> oat_files_;
   2441   std::string oat_location_;
   2442   std::vector<const char*> oat_filenames_;
   2443   std::vector<const char*> oat_unstripped_;
   2444   int oat_fd_;
   2445   std::vector<const char*> dex_filenames_;
   2446   std::vector<const char*> dex_locations_;
   2447   int zip_fd_;
   2448   std::string zip_location_;
   2449   std::string boot_image_filename_;
   2450   std::vector<const char*> runtime_args_;
   2451   std::vector<const char*> image_filenames_;
   2452   uintptr_t image_base_;
   2453   const char* image_classes_zip_filename_;
   2454   const char* image_classes_filename_;
   2455   ImageHeader::StorageMode image_storage_mode_;
   2456   const char* compiled_classes_zip_filename_;
   2457   const char* compiled_classes_filename_;
   2458   const char* compiled_methods_zip_filename_;
   2459   const char* compiled_methods_filename_;
   2460   std::unique_ptr<std::unordered_set<std::string>> image_classes_;
   2461   std::unique_ptr<std::unordered_set<std::string>> compiled_classes_;
   2462   std::unique_ptr<std::unordered_set<std::string>> compiled_methods_;
   2463   bool app_image_;
   2464   bool boot_image_;
   2465   bool multi_image_;
   2466   bool is_host_;
   2467   std::string android_root_;
   2468   // Dex files we are compiling, does not include the class path dex files.
   2469   std::vector<const DexFile*> dex_files_;
   2470   std::string no_inline_from_string_;
   2471   std::vector<jobject> dex_caches_;
   2472   jobject class_loader_;
   2473 
   2474   std::vector<std::unique_ptr<ElfWriter>> elf_writers_;
   2475   std::vector<std::unique_ptr<OatWriter>> oat_writers_;
   2476   std::vector<OutputStream*> rodata_;
   2477   std::unique_ptr<ImageWriter> image_writer_;
   2478   std::unique_ptr<CompilerDriver> driver_;
   2479 
   2480   std::vector<std::unique_ptr<MemMap>> opened_dex_files_maps_;
   2481   std::vector<std::unique_ptr<OatFile>> opened_oat_files_;
   2482   std::vector<std::unique_ptr<const DexFile>> opened_dex_files_;
   2483 
   2484   std::vector<const DexFile*> no_inline_from_dex_files_;
   2485 
   2486   std::vector<std::string> verbose_methods_;
   2487   bool dump_stats_;
   2488   bool dump_passes_;
   2489   bool dump_timing_;
   2490   bool dump_slow_timing_;
   2491   std::string swap_file_name_;
   2492   int swap_fd_;
   2493   std::string app_image_file_name_;
   2494   int app_image_fd_;
   2495   std::string profile_file_;
   2496   int profile_file_fd_;
   2497   std::unique_ptr<ProfileCompilationInfo> profile_compilation_info_;
   2498   TimingLogger* timings_;
   2499   std::unique_ptr<CumulativeLogger> compiler_phases_timings_;
   2500   std::vector<std::vector<const DexFile*>> dex_files_per_oat_file_;
   2501   std::unordered_map<const DexFile*, size_t> dex_file_oat_index_map_;
   2502 
   2503   // Backing storage.
   2504   std::vector<std::string> char_backing_storage_;
   2505 
   2506   // See CompilerOptions.force_determinism_.
   2507   bool force_determinism_;
   2508 
   2509   DISALLOW_IMPLICIT_CONSTRUCTORS(Dex2Oat);
   2510 };
   2511 
   2512 static void b13564922() {
   2513 #if defined(__linux__) && defined(__arm__)
   2514   int major, minor;
   2515   struct utsname uts;
   2516   if (uname(&uts) != -1 &&
   2517       sscanf(uts.release, "%d.%d", &major, &minor) == 2 &&
   2518       ((major < 3) || ((major == 3) && (minor < 4)))) {
   2519     // Kernels before 3.4 don't handle the ASLR well and we can run out of address
   2520     // space (http://b/13564922). Work around the issue by inhibiting further mmap() randomization.
   2521     int old_personality = personality(0xffffffff);
   2522     if ((old_personality & ADDR_NO_RANDOMIZE) == 0) {
   2523       int new_personality = personality(old_personality | ADDR_NO_RANDOMIZE);
   2524       if (new_personality == -1) {
   2525         LOG(WARNING) << "personality(. | ADDR_NO_RANDOMIZE) failed.";
   2526       }
   2527     }
   2528   }
   2529 #endif
   2530 }
   2531 
   2532 static int CompileImage(Dex2Oat& dex2oat) {
   2533   dex2oat.LoadClassProfileDescriptors();
   2534   dex2oat.Compile();
   2535 
   2536   if (!dex2oat.WriteOatFiles()) {
   2537     dex2oat.EraseOatFiles();
   2538     return EXIT_FAILURE;
   2539   }
   2540 
   2541   // Flush boot.oat. We always expect the output file by name, and it will be re-opened from the
   2542   // unstripped name. Do not close the file if we are compiling the image with an oat fd since the
   2543   // image writer will require this fd to generate the image.
   2544   if (dex2oat.ShouldKeepOatFileOpen()) {
   2545     if (!dex2oat.FlushOatFiles()) {
   2546       return EXIT_FAILURE;
   2547     }
   2548   } else if (!dex2oat.FlushCloseOatFiles()) {
   2549     return EXIT_FAILURE;
   2550   }
   2551 
   2552   // Creates the boot.art and patches the oat files.
   2553   if (!dex2oat.HandleImage()) {
   2554     return EXIT_FAILURE;
   2555   }
   2556 
   2557   // When given --host, finish early without stripping.
   2558   if (dex2oat.IsHost()) {
   2559     dex2oat.DumpTiming();
   2560     return EXIT_SUCCESS;
   2561   }
   2562 
   2563   // Copy stripped to unstripped location, if necessary.
   2564   if (!dex2oat.CopyStrippedToUnstripped()) {
   2565     return EXIT_FAILURE;
   2566   }
   2567 
   2568   // FlushClose again, as stripping might have re-opened the oat files.
   2569   if (!dex2oat.FlushCloseOatFiles()) {
   2570     return EXIT_FAILURE;
   2571   }
   2572 
   2573   dex2oat.DumpTiming();
   2574   return EXIT_SUCCESS;
   2575 }
   2576 
   2577 static int CompileApp(Dex2Oat& dex2oat) {
   2578   dex2oat.Compile();
   2579 
   2580   if (!dex2oat.WriteOatFiles()) {
   2581     dex2oat.EraseOatFiles();
   2582     return EXIT_FAILURE;
   2583   }
   2584 
   2585   // Do not close the oat files here. We might have gotten the output file by file descriptor,
   2586   // which we would lose.
   2587 
   2588   // When given --host, finish early without stripping.
   2589   if (dex2oat.IsHost()) {
   2590     if (!dex2oat.FlushCloseOatFiles()) {
   2591       return EXIT_FAILURE;
   2592     }
   2593 
   2594     dex2oat.DumpTiming();
   2595     return EXIT_SUCCESS;
   2596   }
   2597 
   2598   // Copy stripped to unstripped location, if necessary. This will implicitly flush & close the
   2599   // stripped versions. If this is given, we expect to be able to open writable files by name.
   2600   if (!dex2oat.CopyStrippedToUnstripped()) {
   2601     return EXIT_FAILURE;
   2602   }
   2603 
   2604   // Flush and close the files.
   2605   if (!dex2oat.FlushCloseOatFiles()) {
   2606     return EXIT_FAILURE;
   2607   }
   2608 
   2609   dex2oat.DumpTiming();
   2610   return EXIT_SUCCESS;
   2611 }
   2612 
   2613 static int dex2oat(int argc, char** argv) {
   2614   b13564922();
   2615 
   2616   TimingLogger timings("compiler", false, false);
   2617 
   2618   // Allocate `dex2oat` on the heap instead of on the stack, as Clang
   2619   // might produce a stack frame too large for this function or for
   2620   // functions inlining it (such as main), that would not fit the
   2621   // requirements of the `-Wframe-larger-than` option.
   2622   std::unique_ptr<Dex2Oat> dex2oat = MakeUnique<Dex2Oat>(&timings);
   2623 
   2624   // Parse arguments. Argument mistakes will lead to exit(EXIT_FAILURE) in UsageError.
   2625   dex2oat->ParseArgs(argc, argv);
   2626 
   2627   // If needed, process profile information for profile guided compilation.
   2628   // This operation involves I/O.
   2629   if (dex2oat->UseProfileGuidedCompilation()) {
   2630     if (!dex2oat->LoadProfile()) {
   2631       LOG(ERROR) << "Failed to process profile file";
   2632       return EXIT_FAILURE;
   2633     }
   2634   }
   2635 
   2636   // Check early that the result of compilation can be written
   2637   if (!dex2oat->OpenFile()) {
   2638     return EXIT_FAILURE;
   2639   }
   2640 
   2641   // Print the complete line when any of the following is true:
   2642   //   1) Debug build
   2643   //   2) Compiling an image
   2644   //   3) Compiling with --host
   2645   //   4) Compiling on the host (not a target build)
   2646   // Otherwise, print a stripped command line.
   2647   if (kIsDebugBuild || dex2oat->IsBootImage() || dex2oat->IsHost() || !kIsTargetBuild) {
   2648     LOG(INFO) << CommandLine();
   2649   } else {
   2650     LOG(INFO) << StrippedCommandLine();
   2651   }
   2652 
   2653   if (!dex2oat->Setup()) {
   2654     dex2oat->EraseOatFiles();
   2655     return EXIT_FAILURE;
   2656   }
   2657 
   2658   bool result;
   2659   if (dex2oat->IsImage()) {
   2660     result = CompileImage(*dex2oat);
   2661   } else {
   2662     result = CompileApp(*dex2oat);
   2663   }
   2664 
   2665   dex2oat->Shutdown();
   2666   return result;
   2667 }
   2668 }  // namespace art
   2669 
   2670 int main(int argc, char** argv) {
   2671   int result = art::dex2oat(argc, argv);
   2672   // Everything was done, do an explicit exit here to avoid running Runtime destructors that take
   2673   // time (bug 10645725) unless we're a debug build or running on valgrind. Note: The Dex2Oat class
   2674   // should not destruct the runtime in this case.
   2675   if (!art::kIsDebugBuild && (RUNNING_ON_MEMORY_TOOL == 0)) {
   2676     exit(result);
   2677   }
   2678   return result;
   2679 }
   2680