dex2oat.cc revision 509f2ab308032534f14d8f4f374f60da8a615fa2
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#define ATRACE_TAG ATRACE_TAG_DALVIK
36#include <cutils/trace.h>
37
38#include "art_method-inl.h"
39#include "arch/instruction_set_features.h"
40#include "arch/mips/instruction_set_features_mips.h"
41#include "base/dumpable.h"
42#include "base/macros.h"
43#include "base/stl_util.h"
44#include "base/stringpiece.h"
45#include "base/time_utils.h"
46#include "base/timing_logger.h"
47#include "base/unix_file/fd_file.h"
48#include "class_linker.h"
49#include "compiler.h"
50#include "compiler_callbacks.h"
51#include "dex_file-inl.h"
52#include "dex/pass_manager.h"
53#include "dex/verification_results.h"
54#include "dex/quick_compiler_callbacks.h"
55#include "dex/quick/dex_file_to_method_inliner_map.h"
56#include "driver/compiler_driver.h"
57#include "driver/compiler_options.h"
58#include "dwarf/method_debug_info.h"
59#include "elf_file.h"
60#include "elf_writer.h"
61#include "elf_writer_quick.h"
62#include "gc/space/image_space.h"
63#include "gc/space/space-inl.h"
64#include "image_writer.h"
65#include "interpreter/unstarted_runtime.h"
66#include "jit/offline_profiling_info.h"
67#include "leb128.h"
68#include "mirror/class-inl.h"
69#include "mirror/class_loader.h"
70#include "mirror/object-inl.h"
71#include "mirror/object_array-inl.h"
72#include "oat_writer.h"
73#include "os.h"
74#include "profile_assistant.h"
75#include "runtime.h"
76#include "runtime_options.h"
77#include "ScopedLocalRef.h"
78#include "scoped_thread_state_change.h"
79#include "utils.h"
80#include "well_known_classes.h"
81#include "zip_archive.h"
82
83namespace art {
84
85static int original_argc;
86static char** original_argv;
87
88static std::string CommandLine() {
89  std::vector<std::string> command;
90  for (int i = 0; i < original_argc; ++i) {
91    command.push_back(original_argv[i]);
92  }
93  return Join(command, ' ');
94}
95
96// A stripped version. Remove some less essential parameters. If we see a "--zip-fd=" parameter, be
97// even more aggressive. There won't be much reasonable data here for us in that case anyways (the
98// locations are all staged).
99static std::string StrippedCommandLine() {
100  std::vector<std::string> command;
101
102  // Do a pre-pass to look for zip-fd.
103  bool saw_zip_fd = false;
104  for (int i = 0; i < original_argc; ++i) {
105    if (StartsWith(original_argv[i], "--zip-fd=")) {
106      saw_zip_fd = true;
107      break;
108    }
109  }
110
111  // Now filter out things.
112  for (int i = 0; i < original_argc; ++i) {
113    // All runtime-arg parameters are dropped.
114    if (strcmp(original_argv[i], "--runtime-arg") == 0) {
115      i++;  // Drop the next part, too.
116      continue;
117    }
118
119    // Any instruction-setXXX is dropped.
120    if (StartsWith(original_argv[i], "--instruction-set")) {
121      continue;
122    }
123
124    // The boot image is dropped.
125    if (StartsWith(original_argv[i], "--boot-image=")) {
126      continue;
127    }
128
129    // This should leave any dex-file and oat-file options, describing what we compiled.
130
131    // However, we prefer to drop this when we saw --zip-fd.
132    if (saw_zip_fd) {
133      // Drop anything --zip-X, --dex-X, --oat-X, --swap-X, or --app-image-X
134      if (StartsWith(original_argv[i], "--zip-") ||
135          StartsWith(original_argv[i], "--dex-") ||
136          StartsWith(original_argv[i], "--oat-") ||
137          StartsWith(original_argv[i], "--swap-") ||
138          StartsWith(original_argv[i], "--app-image-")) {
139        continue;
140      }
141    }
142
143    command.push_back(original_argv[i]);
144  }
145
146  // Construct the final output.
147  if (command.size() <= 1U) {
148    // It seems only "/system/bin/dex2oat" is left, or not even that. Use a pretty line.
149    return "Starting dex2oat.";
150  }
151  return Join(command, ' ');
152}
153
154static void UsageErrorV(const char* fmt, va_list ap) {
155  std::string error;
156  StringAppendV(&error, fmt, ap);
157  LOG(ERROR) << error;
158}
159
160static void UsageError(const char* fmt, ...) {
161  va_list ap;
162  va_start(ap, fmt);
163  UsageErrorV(fmt, ap);
164  va_end(ap);
165}
166
167NO_RETURN static void Usage(const char* fmt, ...) {
168  va_list ap;
169  va_start(ap, fmt);
170  UsageErrorV(fmt, ap);
171  va_end(ap);
172
173  UsageError("Command: %s", CommandLine().c_str());
174
175  UsageError("Usage: dex2oat [options]...");
176  UsageError("");
177  UsageError("  -j<number>: specifies the number of threads used for compilation.");
178  UsageError("       Default is the number of detected hardware threads available on the");
179  UsageError("       host system.");
180  UsageError("      Example: -j12");
181  UsageError("");
182  UsageError("  --dex-file=<dex-file>: specifies a .dex, .jar, or .apk file to compile.");
183  UsageError("      Example: --dex-file=/system/framework/core.jar");
184  UsageError("");
185  UsageError("  --dex-location=<dex-location>: specifies an alternative dex location to");
186  UsageError("      encode in the oat file for the corresponding --dex-file argument.");
187  UsageError("      Example: --dex-file=/home/build/out/system/framework/core.jar");
188  UsageError("               --dex-location=/system/framework/core.jar");
189  UsageError("");
190  UsageError("  --zip-fd=<file-descriptor>: specifies a file descriptor of a zip file");
191  UsageError("      containing a classes.dex file to compile.");
192  UsageError("      Example: --zip-fd=5");
193  UsageError("");
194  UsageError("  --zip-location=<zip-location>: specifies a symbolic name for the file");
195  UsageError("      corresponding to the file descriptor specified by --zip-fd.");
196  UsageError("      Example: --zip-location=/system/app/Calculator.apk");
197  UsageError("");
198  UsageError("  --oat-file=<file.oat>: specifies an oat output destination via a filename.");
199  UsageError("      Example: --oat-file=/system/framework/boot.oat");
200  UsageError("");
201  UsageError("  --oat-fd=<number>: specifies the oat output destination via a file descriptor.");
202  UsageError("      Example: --oat-fd=6");
203  UsageError("");
204  UsageError("  --oat-location=<oat-name>: specifies a symbolic name for the file corresponding");
205  UsageError("      to the file descriptor specified by --oat-fd.");
206  UsageError("      Example: --oat-location=/data/dalvik-cache/system@app@Calculator.apk.oat");
207  UsageError("");
208  UsageError("  --oat-symbols=<file.oat>: specifies an oat output destination with full symbols.");
209  UsageError("      Example: --oat-symbols=/symbols/system/framework/boot.oat");
210  UsageError("");
211  UsageError("  --image=<file.art>: specifies an output image filename.");
212  UsageError("      Example: --image=/system/framework/boot.art");
213  UsageError("");
214  UsageError("  --image-format=(uncompressed|lz4):");
215  UsageError("      Which format to store the image.");
216  UsageError("      Example: --image-format=lz4");
217  UsageError("      Default: uncompressed");
218  UsageError("");
219  UsageError("  --image-classes=<classname-file>: specifies classes to include in an image.");
220  UsageError("      Example: --image=frameworks/base/preloaded-classes");
221  UsageError("");
222  UsageError("  --base=<hex-address>: specifies the base address when creating a boot image.");
223  UsageError("      Example: --base=0x50000000");
224  UsageError("");
225  UsageError("  --boot-image=<file.art>: provide the image file for the boot class path.");
226  UsageError("      Do not include the arch as part of the name, it is added automatically.");
227  UsageError("      Example: --boot-image=/system/framework/boot.art");
228  UsageError("               (specifies /system/framework/<arch>/boot.art as the image file)");
229  UsageError("      Default: $ANDROID_ROOT/system/framework/boot.art");
230  UsageError("");
231  UsageError("  --android-root=<path>: used to locate libraries for portable linking.");
232  UsageError("      Example: --android-root=out/host/linux-x86");
233  UsageError("      Default: $ANDROID_ROOT");
234  UsageError("");
235  UsageError("  --instruction-set=(arm|arm64|mips|mips64|x86|x86_64): compile for a particular");
236  UsageError("      instruction set.");
237  UsageError("      Example: --instruction-set=x86");
238  UsageError("      Default: arm");
239  UsageError("");
240  UsageError("  --instruction-set-features=...,: Specify instruction set features");
241  UsageError("      Example: --instruction-set-features=div");
242  UsageError("      Default: default");
243  UsageError("");
244  UsageError("  --compile-pic: Force indirect use of code, methods, and classes");
245  UsageError("      Default: disabled");
246  UsageError("");
247  UsageError("  --compiler-backend=(Quick|Optimizing): select compiler backend");
248  UsageError("      set.");
249  UsageError("      Example: --compiler-backend=Optimizing");
250  UsageError("      Default: Optimizing");
251  UsageError("");
252  UsageError("  --compiler-filter="
253                "(verify-none"
254                "|interpret-only"
255                "|space"
256                "|balanced"
257                "|speed"
258                "|everything"
259                "|time):");
260  UsageError("      select compiler filter.");
261  UsageError("      Example: --compiler-filter=everything");
262  UsageError("      Default: speed");
263  UsageError("");
264  UsageError("  --huge-method-max=<method-instruction-count>: threshold size for a huge");
265  UsageError("      method for compiler filter tuning.");
266  UsageError("      Example: --huge-method-max=%d", CompilerOptions::kDefaultHugeMethodThreshold);
267  UsageError("      Default: %d", CompilerOptions::kDefaultHugeMethodThreshold);
268  UsageError("");
269  UsageError("  --large-method-max=<method-instruction-count>: threshold size for a large");
270  UsageError("      method for compiler filter tuning.");
271  UsageError("      Example: --large-method-max=%d", CompilerOptions::kDefaultLargeMethodThreshold);
272  UsageError("      Default: %d", CompilerOptions::kDefaultLargeMethodThreshold);
273  UsageError("");
274  UsageError("  --small-method-max=<method-instruction-count>: threshold size for a small");
275  UsageError("      method for compiler filter tuning.");
276  UsageError("      Example: --small-method-max=%d", CompilerOptions::kDefaultSmallMethodThreshold);
277  UsageError("      Default: %d", CompilerOptions::kDefaultSmallMethodThreshold);
278  UsageError("");
279  UsageError("  --tiny-method-max=<method-instruction-count>: threshold size for a tiny");
280  UsageError("      method for compiler filter tuning.");
281  UsageError("      Example: --tiny-method-max=%d", CompilerOptions::kDefaultTinyMethodThreshold);
282  UsageError("      Default: %d", CompilerOptions::kDefaultTinyMethodThreshold);
283  UsageError("");
284  UsageError("  --num-dex-methods=<method-count>: threshold size for a small dex file for");
285  UsageError("      compiler filter tuning. If the input has fewer than this many methods");
286  UsageError("      and the filter is not interpret-only or verify-none, overrides the");
287  UsageError("      filter to use speed");
288  UsageError("      Example: --num-dex-method=%d", CompilerOptions::kDefaultNumDexMethodsThreshold);
289  UsageError("      Default: %d", CompilerOptions::kDefaultNumDexMethodsThreshold);
290  UsageError("");
291  UsageError("  --inline-depth-limit=<depth-limit>: the depth limit of inlining for fine tuning");
292  UsageError("      the compiler. A zero value will disable inlining. Honored only by Optimizing.");
293  UsageError("      Has priority over the --compiler-filter option. Intended for ");
294  UsageError("      development/experimental use.");
295  UsageError("      Example: --inline-depth-limit=%d", CompilerOptions::kDefaultInlineDepthLimit);
296  UsageError("      Default: %d", CompilerOptions::kDefaultInlineDepthLimit);
297  UsageError("");
298  UsageError("  --inline-max-code-units=<code-units-count>: the maximum code units that a method");
299  UsageError("      can have to be considered for inlining. A zero value will disable inlining.");
300  UsageError("      Honored only by Optimizing. Has priority over the --compiler-filter option.");
301  UsageError("      Intended for development/experimental use.");
302  UsageError("      Example: --inline-max-code-units=%d",
303             CompilerOptions::kDefaultInlineMaxCodeUnits);
304  UsageError("      Default: %d", CompilerOptions::kDefaultInlineMaxCodeUnits);
305  UsageError("");
306  UsageError("  --dump-timing: display a breakdown of where time was spent");
307  UsageError("");
308  UsageError("  --include-patch-information: Include patching information so the generated code");
309  UsageError("      can have its base address moved without full recompilation.");
310  UsageError("");
311  UsageError("  --no-include-patch-information: Do not include patching information.");
312  UsageError("");
313  UsageError("  -g");
314  UsageError("  --generate-debug-info: Generate debug information for native debugging,");
315  UsageError("      such as stack unwinding information, ELF symbols and DWARF sections.");
316  UsageError("      This generates all the available information. Unneeded parts can be");
317  UsageError("      stripped using standard command line tools such as strip or objcopy.");
318  UsageError("      (enabled by default in debug builds, disabled by default otherwise)");
319  UsageError("");
320  UsageError("  --no-generate-debug-info: Do not generate debug information for native debugging.");
321  UsageError("");
322  UsageError("  --debuggable: Produce code debuggable with Java debugger. Implies -g.");
323  UsageError("");
324  UsageError("  --native-debuggable: Produce code debuggable with native debugger (like LLDB).");
325  UsageError("      Implies --debuggable.");
326  UsageError("");
327  UsageError("  --runtime-arg <argument>: used to specify various arguments for the runtime,");
328  UsageError("      such as initial heap size, maximum heap size, and verbose output.");
329  UsageError("      Use a separate --runtime-arg switch for each argument.");
330  UsageError("      Example: --runtime-arg -Xms256m");
331  UsageError("");
332  UsageError("  --profile-file=<filename>: specify profiler output file to use for compilation.");
333  UsageError("      Can be specified multiple time, in which case the data from the different");
334  UsageError("      profiles will be aggregated.");
335  UsageError("");
336  UsageError("  --reference-profile-file=<filename>: specify a reference profile file to use when");
337  UsageError("      compiling. The data in this file will be compared with the data in the");
338  UsageError("      associated --profile-file and the compilation will proceed only if there is");
339  UsageError("      a significant difference (--reference-profile-file is paired with");
340  UsageError("      --profile-file in the natural order). If the compilation was attempted then");
341  UsageError("      --profile-file will be merged into --reference-profile-file. Valid only when");
342  UsageError("      specified together with --profile-file.");
343  UsageError("");
344  UsageError("  --print-pass-names: print a list of pass names");
345  UsageError("");
346  UsageError("  --disable-passes=<pass-names>:  disable one or more passes separated by comma.");
347  UsageError("      Example: --disable-passes=UseCount,BBOptimizations");
348  UsageError("");
349  UsageError("  --print-pass-options: print a list of passes that have configurable options along "
350             "with the setting.");
351  UsageError("      Will print default if no overridden setting exists.");
352  UsageError("");
353  UsageError("  --pass-options=Pass1Name:Pass1OptionName:Pass1Option#,"
354             "Pass2Name:Pass2OptionName:Pass2Option#");
355  UsageError("      Used to specify a pass specific option. The setting itself must be integer.");
356  UsageError("      Separator used between options is a comma.");
357  UsageError("");
358  UsageError("  --swap-file=<file-name>:  specifies a file to use for swap.");
359  UsageError("      Example: --swap-file=/data/tmp/swap.001");
360  UsageError("");
361  UsageError("  --swap-fd=<file-descriptor>:  specifies a file to use for swap (by descriptor).");
362  UsageError("      Example: --swap-fd=10");
363  UsageError("");
364  UsageError("  --app-image-fd=<file-descriptor>: specify output file descriptor for app image.");
365  UsageError("      Example: --app-image-fd=10");
366  UsageError("");
367  UsageError("  --app-image-file=<file-name>: specify a file name for app image.");
368  UsageError("      Example: --app-image-file=/data/dalvik-cache/system@app@Calculator.apk.art");
369  UsageError("");
370  UsageError("  --multi-image: specify that separate oat and image files be generated for each "
371             "input dex file.");
372  UsageError("");
373  std::cerr << "See log for usage error information\n";
374  exit(EXIT_FAILURE);
375}
376
377// The primary goal of the watchdog is to prevent stuck build servers
378// during development when fatal aborts lead to a cascade of failures
379// that result in a deadlock.
380class WatchDog {
381// WatchDog defines its own CHECK_PTHREAD_CALL to avoid using LOG which uses locks
382#undef CHECK_PTHREAD_CALL
383#define CHECK_WATCH_DOG_PTHREAD_CALL(call, args, what) \
384  do { \
385    int rc = call args; \
386    if (rc != 0) { \
387      errno = rc; \
388      std::string message(# call); \
389      message += " failed for "; \
390      message += reason; \
391      Fatal(message); \
392    } \
393  } while (false)
394
395 public:
396  explicit WatchDog(bool is_watch_dog_enabled) {
397    is_watch_dog_enabled_ = is_watch_dog_enabled;
398    if (!is_watch_dog_enabled_) {
399      return;
400    }
401    shutting_down_ = false;
402    const char* reason = "dex2oat watch dog thread startup";
403    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_init, (&mutex_, nullptr), reason);
404    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_init, (&cond_, nullptr), reason);
405    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_init, (&attr_), reason);
406    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_create, (&pthread_, &attr_, &CallBack, this), reason);
407    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_destroy, (&attr_), reason);
408  }
409  ~WatchDog() {
410    if (!is_watch_dog_enabled_) {
411      return;
412    }
413    const char* reason = "dex2oat watch dog thread shutdown";
414    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
415    shutting_down_ = true;
416    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_signal, (&cond_), reason);
417    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
418
419    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_join, (pthread_, nullptr), reason);
420
421    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_destroy, (&cond_), reason);
422    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_destroy, (&mutex_), reason);
423  }
424
425 private:
426  static void* CallBack(void* arg) {
427    WatchDog* self = reinterpret_cast<WatchDog*>(arg);
428    ::art::SetThreadName("dex2oat watch dog");
429    self->Wait();
430    return nullptr;
431  }
432
433  NO_RETURN static void Fatal(const std::string& message) {
434    // TODO: When we can guarantee it won't prevent shutdown in error cases, move to LOG. However,
435    //       it's rather easy to hang in unwinding.
436    //       LogLine also avoids ART logging lock issues, as it's really only a wrapper around
437    //       logcat logging or stderr output.
438    LogMessage::LogLine(__FILE__, __LINE__, LogSeverity::FATAL, message.c_str());
439    exit(1);
440  }
441
442  void Wait() {
443    // TODO: tune the multiplier for GC verification, the following is just to make the timeout
444    //       large.
445    constexpr int64_t multiplier = kVerifyObjectSupport > kVerifyObjectModeFast ? 100 : 1;
446    timespec timeout_ts;
447    InitTimeSpec(true, CLOCK_REALTIME, multiplier * kWatchDogTimeoutSeconds * 1000, 0, &timeout_ts);
448    const char* reason = "dex2oat watch dog thread waiting";
449    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
450    while (!shutting_down_) {
451      int rc = TEMP_FAILURE_RETRY(pthread_cond_timedwait(&cond_, &mutex_, &timeout_ts));
452      if (rc == ETIMEDOUT) {
453        Fatal(StringPrintf("dex2oat did not finish after %" PRId64 " seconds",
454                           kWatchDogTimeoutSeconds));
455      } else if (rc != 0) {
456        std::string message(StringPrintf("pthread_cond_timedwait failed: %s",
457                                         strerror(errno)));
458        Fatal(message.c_str());
459      }
460    }
461    CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
462  }
463
464  // When setting timeouts, keep in mind that the build server may not be as fast as your desktop.
465  // Debug builds are slower so they have larger timeouts.
466  static constexpr int64_t kSlowdownFactor = kIsDebugBuild ? 5U : 1U;
467
468  // 9.5 minutes scaled by kSlowdownFactor. This is slightly smaller than the Package Manager
469  // watchdog (PackageManagerService.WATCHDOG_TIMEOUT, 10 minutes), so that dex2oat will abort
470  // itself before that watchdog would take down the system server.
471  static constexpr int64_t kWatchDogTimeoutSeconds = kSlowdownFactor * (9 * 60 + 30);
472
473  bool is_watch_dog_enabled_;
474  bool shutting_down_;
475  // TODO: Switch to Mutex when we can guarantee it won't prevent shutdown in error cases.
476  pthread_mutex_t mutex_;
477  pthread_cond_t cond_;
478  pthread_attr_t attr_;
479  pthread_t pthread_;
480};
481
482static constexpr size_t kMinDexFilesForSwap = 2;
483static constexpr size_t kMinDexFileCumulativeSizeForSwap = 20 * MB;
484
485static bool UseSwap(bool is_image, std::vector<const DexFile*>& dex_files) {
486  if (is_image) {
487    // Don't use swap, we know generation should succeed, and we don't want to slow it down.
488    return false;
489  }
490  if (dex_files.size() < kMinDexFilesForSwap) {
491    // If there are less dex files than the threshold, assume it's gonna be fine.
492    return false;
493  }
494  size_t dex_files_size = 0;
495  for (const auto* dex_file : dex_files) {
496    dex_files_size += dex_file->GetHeader().file_size_;
497  }
498  return dex_files_size >= kMinDexFileCumulativeSizeForSwap;
499}
500
501class Dex2Oat FINAL {
502 public:
503  explicit Dex2Oat(TimingLogger* timings) :
504      compiler_kind_(Compiler::kOptimizing),
505      instruction_set_(kRuntimeISA),
506      // Take the default set of instruction features from the build.
507      verification_results_(nullptr),
508      method_inliner_map_(),
509      runtime_(nullptr),
510      thread_count_(sysconf(_SC_NPROCESSORS_CONF)),
511      start_ns_(NanoTime()),
512      oat_fd_(-1),
513      zip_fd_(-1),
514      image_base_(0U),
515      image_classes_zip_filename_(nullptr),
516      image_classes_filename_(nullptr),
517      image_storage_mode_(ImageHeader::kStorageModeUncompressed),
518      compiled_classes_zip_filename_(nullptr),
519      compiled_classes_filename_(nullptr),
520      compiled_methods_zip_filename_(nullptr),
521      compiled_methods_filename_(nullptr),
522      app_image_(false),
523      boot_image_(false),
524      is_host_(false),
525      image_writer_(nullptr),
526      driver_(nullptr),
527      dump_stats_(false),
528      dump_passes_(false),
529      dump_timing_(false),
530      dump_slow_timing_(kIsDebugBuild),
531      dump_cfg_append_(false),
532      swap_fd_(-1),
533      app_image_fd_(kInvalidImageFd),
534      timings_(timings) {}
535
536  ~Dex2Oat() {
537    // Free opened dex files before deleting the runtime_, because ~DexFile
538    // uses MemMap, which is shut down by ~Runtime.
539    class_path_files_.clear();
540    opened_dex_files_.clear();
541
542    // Log completion time before deleting the runtime_, because this accesses
543    // the runtime.
544    LogCompletionTime();
545
546    if (!kIsDebugBuild && !(RUNNING_ON_MEMORY_TOOL && kMemoryToolDetectsLeaks)) {
547      // We want to just exit on non-debug builds, not bringing the runtime down
548      // in an orderly fashion. So release the following fields.
549      driver_.release();
550      image_writer_.release();
551      for (std::unique_ptr<const DexFile>& dex_file : opened_dex_files_) {
552        dex_file.release();
553      }
554      for (std::unique_ptr<File>& oat_file : oat_files_) {
555        oat_file.release();
556      }
557      runtime_.release();
558      verification_results_.release();
559      key_value_store_.release();
560    }
561  }
562
563  struct ParserOptions {
564    std::vector<const char*> oat_symbols;
565    std::string boot_image_filename;
566    bool watch_dog_enabled = true;
567    bool requested_specific_compiler = false;
568    std::string error_msg;
569  };
570
571  void ParseZipFd(const StringPiece& option) {
572    ParseUintOption(option, "--zip-fd", &zip_fd_, Usage);
573  }
574
575  void ParseOatFd(const StringPiece& option) {
576    ParseUintOption(option, "--oat-fd", &oat_fd_, Usage);
577  }
578
579  void ParseJ(const StringPiece& option) {
580    ParseUintOption(option, "-j", &thread_count_, Usage, /* is_long_option */ false);
581  }
582
583  void ParseBase(const StringPiece& option) {
584    DCHECK(option.starts_with("--base="));
585    const char* image_base_str = option.substr(strlen("--base=")).data();
586    char* end;
587    image_base_ = strtoul(image_base_str, &end, 16);
588    if (end == image_base_str || *end != '\0') {
589      Usage("Failed to parse hexadecimal value for option %s", option.data());
590    }
591  }
592
593  void ParseInstructionSet(const StringPiece& option) {
594    DCHECK(option.starts_with("--instruction-set="));
595    StringPiece instruction_set_str = option.substr(strlen("--instruction-set=")).data();
596    // StringPiece is not necessarily zero-terminated, so need to make a copy and ensure it.
597    std::unique_ptr<char[]> buf(new char[instruction_set_str.length() + 1]);
598    strncpy(buf.get(), instruction_set_str.data(), instruction_set_str.length());
599    buf.get()[instruction_set_str.length()] = 0;
600    instruction_set_ = GetInstructionSetFromString(buf.get());
601    // arm actually means thumb2.
602    if (instruction_set_ == InstructionSet::kArm) {
603      instruction_set_ = InstructionSet::kThumb2;
604    }
605  }
606
607  void ParseInstructionSetVariant(const StringPiece& option, ParserOptions* parser_options) {
608    DCHECK(option.starts_with("--instruction-set-variant="));
609    StringPiece str = option.substr(strlen("--instruction-set-variant=")).data();
610    instruction_set_features_.reset(
611        InstructionSetFeatures::FromVariant(
612            instruction_set_, str.as_string(), &parser_options->error_msg));
613    if (instruction_set_features_.get() == nullptr) {
614      Usage("%s", parser_options->error_msg.c_str());
615    }
616  }
617
618  void ParseInstructionSetFeatures(const StringPiece& option, ParserOptions* parser_options) {
619    DCHECK(option.starts_with("--instruction-set-features="));
620    StringPiece str = option.substr(strlen("--instruction-set-features=")).data();
621    if (instruction_set_features_.get() == nullptr) {
622      instruction_set_features_.reset(
623          InstructionSetFeatures::FromVariant(
624              instruction_set_, "default", &parser_options->error_msg));
625      if (instruction_set_features_.get() == nullptr) {
626        Usage("Problem initializing default instruction set features variant: %s",
627              parser_options->error_msg.c_str());
628      }
629    }
630    instruction_set_features_.reset(
631        instruction_set_features_->AddFeaturesFromString(str.as_string(),
632                                                         &parser_options->error_msg));
633    if (instruction_set_features_.get() == nullptr) {
634      Usage("Error parsing '%s': %s", option.data(), parser_options->error_msg.c_str());
635    }
636  }
637
638  void ParseCompilerBackend(const StringPiece& option, ParserOptions* parser_options) {
639    DCHECK(option.starts_with("--compiler-backend="));
640    parser_options->requested_specific_compiler = true;
641    StringPiece backend_str = option.substr(strlen("--compiler-backend=")).data();
642    if (backend_str == "Quick") {
643      compiler_kind_ = Compiler::kQuick;
644    } else if (backend_str == "Optimizing") {
645      compiler_kind_ = Compiler::kOptimizing;
646    } else {
647      Usage("Unknown compiler backend: %s", backend_str.data());
648    }
649  }
650
651  void ParseImageFormat(const StringPiece& option) {
652    const StringPiece substr("--image-format=");
653    DCHECK(option.starts_with(substr));
654    const StringPiece format_str = option.substr(substr.length());
655    if (format_str == "lz4") {
656      image_storage_mode_ = ImageHeader::kStorageModeLZ4;
657    } else if (format_str == "uncompressed") {
658      image_storage_mode_ = ImageHeader::kStorageModeUncompressed;
659    } else {
660      Usage("Unknown image format: %s", format_str.data());
661    }
662  }
663
664  void ProcessOptions(ParserOptions* parser_options, bool multi_image) {
665    boot_image_ = !image_filenames_.empty();
666    app_image_ = app_image_fd_ != -1 || !app_image_file_name_.empty();
667
668    if (IsAppImage() && IsBootImage()) {
669      Usage("Can't have both --image and (--app-image-fd or --app-image-file)");
670    }
671
672    if (IsBootImage()) {
673      // We need the boot image to always be debuggable.
674      compiler_options_->debuggable_ = true;
675    }
676
677    if (oat_filenames_.empty() && oat_fd_ == -1) {
678      Usage("Output must be supplied with either --oat-file or --oat-fd");
679    }
680
681    if (!oat_filenames_.empty() && oat_fd_ != -1) {
682      Usage("--oat-file should not be used with --oat-fd");
683    }
684
685    if (!parser_options->oat_symbols.empty() && oat_fd_ != -1) {
686      Usage("--oat-symbols should not be used with --oat-fd");
687    }
688
689    if (!parser_options->oat_symbols.empty() && is_host_) {
690      Usage("--oat-symbols should not be used with --host");
691    }
692
693    if (oat_fd_ != -1 && !image_filenames_.empty()) {
694      Usage("--oat-fd should not be used with --image");
695    }
696
697    if (!parser_options->oat_symbols.empty() &&
698        parser_options->oat_symbols.size() != oat_filenames_.size()) {
699      Usage("--oat-file arguments do not match --oat-symbols arguments");
700    }
701
702    if (!image_filenames_.empty() && image_filenames_.size() != oat_filenames_.size()) {
703      Usage("--oat-file arguments do not match --image arguments");
704    }
705
706    if (android_root_.empty()) {
707      const char* android_root_env_var = getenv("ANDROID_ROOT");
708      if (android_root_env_var == nullptr) {
709        Usage("--android-root unspecified and ANDROID_ROOT not set");
710      }
711      android_root_ += android_root_env_var;
712    }
713
714    if (!boot_image_ && parser_options->boot_image_filename.empty()) {
715      parser_options->boot_image_filename += android_root_;
716      parser_options->boot_image_filename += "/framework/boot.art";
717    }
718    if (!parser_options->boot_image_filename.empty()) {
719      boot_image_filename_ = parser_options->boot_image_filename;
720    }
721
722    if (image_classes_filename_ != nullptr && !IsBootImage()) {
723      Usage("--image-classes should only be used with --image");
724    }
725
726    if (image_classes_filename_ != nullptr && !boot_image_filename_.empty()) {
727      Usage("--image-classes should not be used with --boot-image");
728    }
729
730    if (image_classes_zip_filename_ != nullptr && image_classes_filename_ == nullptr) {
731      Usage("--image-classes-zip should be used with --image-classes");
732    }
733
734    if (compiled_classes_filename_ != nullptr && !IsBootImage()) {
735      Usage("--compiled-classes should only be used with --image");
736    }
737
738    if (compiled_classes_filename_ != nullptr && !boot_image_filename_.empty()) {
739      Usage("--compiled-classes should not be used with --boot-image");
740    }
741
742    if (compiled_classes_zip_filename_ != nullptr && compiled_classes_filename_ == nullptr) {
743      Usage("--compiled-classes-zip should be used with --compiled-classes");
744    }
745
746    if (dex_filenames_.empty() && zip_fd_ == -1) {
747      Usage("Input must be supplied with either --dex-file or --zip-fd");
748    }
749
750    if (!dex_filenames_.empty() && zip_fd_ != -1) {
751      Usage("--dex-file should not be used with --zip-fd");
752    }
753
754    if (!dex_filenames_.empty() && !zip_location_.empty()) {
755      Usage("--dex-file should not be used with --zip-location");
756    }
757
758    if (dex_locations_.empty()) {
759      for (const char* dex_file_name : dex_filenames_) {
760        dex_locations_.push_back(dex_file_name);
761      }
762    } else if (dex_locations_.size() != dex_filenames_.size()) {
763      Usage("--dex-location arguments do not match --dex-file arguments");
764    }
765
766    if (!dex_filenames_.empty() && !oat_filenames_.empty()) {
767      if (oat_filenames_.size() != 1 && oat_filenames_.size() != dex_filenames_.size()) {
768        Usage("--oat-file arguments must be singular or match --dex-file arguments");
769      }
770    }
771
772    if (zip_fd_ != -1 && zip_location_.empty()) {
773      Usage("--zip-location should be supplied with --zip-fd");
774    }
775
776    if (boot_image_filename_.empty()) {
777      if (image_base_ == 0) {
778        Usage("Non-zero --base not specified");
779      }
780    }
781
782    if (!profile_files_.empty()) {
783      if (!reference_profile_files_.empty() &&
784          (reference_profile_files_.size() != profile_files_.size())) {
785        Usage("If specified, --reference-profile-file should match the number of --profile-file.");
786      }
787    }
788
789    if (!parser_options->oat_symbols.empty()) {
790      oat_unstripped_ = std::move(parser_options->oat_symbols);
791    }
792
793    // If no instruction set feature was given, use the default one for the target
794    // instruction set.
795    if (instruction_set_features_.get() == nullptr) {
796      instruction_set_features_.reset(
797          InstructionSetFeatures::FromVariant(
798              instruction_set_, "default", &parser_options->error_msg));
799      if (instruction_set_features_.get() == nullptr) {
800        Usage("Problem initializing default instruction set features variant: %s",
801              parser_options->error_msg.c_str());
802      }
803    }
804
805    if (instruction_set_ == kRuntimeISA) {
806      std::unique_ptr<const InstructionSetFeatures> runtime_features(
807          InstructionSetFeatures::FromCppDefines());
808      if (!instruction_set_features_->Equals(runtime_features.get())) {
809        LOG(WARNING) << "Mismatch between dex2oat instruction set features ("
810            << *instruction_set_features_ << ") and those of dex2oat executable ("
811            << *runtime_features <<") for the command line:\n"
812            << CommandLine();
813      }
814    }
815
816    // It they are not set, use default values for inlining settings.
817    // TODO: We should rethink the compiler filter. We mostly save
818    // time here, which is orthogonal to space.
819    if (compiler_options_->inline_depth_limit_ == CompilerOptions::kUnsetInlineDepthLimit) {
820      compiler_options_->inline_depth_limit_ =
821          (compiler_options_->compiler_filter_ == CompilerOptions::kSpace)
822          // Implementation of the space filter: limit inlining depth.
823          ? CompilerOptions::kSpaceFilterInlineDepthLimit
824          : CompilerOptions::kDefaultInlineDepthLimit;
825    }
826    if (compiler_options_->inline_max_code_units_ == CompilerOptions::kUnsetInlineMaxCodeUnits) {
827      compiler_options_->inline_max_code_units_ =
828          (compiler_options_->compiler_filter_ == CompilerOptions::kSpace)
829          // Implementation of the space filter: limit inlining max code units.
830          ? CompilerOptions::kSpaceFilterInlineMaxCodeUnits
831          : CompilerOptions::kDefaultInlineMaxCodeUnits;
832    }
833
834    // Checks are all explicit until we know the architecture.
835    // Set the compilation target's implicit checks options.
836    switch (instruction_set_) {
837      case kArm:
838      case kThumb2:
839      case kArm64:
840      case kX86:
841      case kX86_64:
842      case kMips:
843      case kMips64:
844        compiler_options_->implicit_null_checks_ = true;
845        compiler_options_->implicit_so_checks_ = true;
846        break;
847
848      default:
849        // Defaults are correct.
850        break;
851    }
852
853    compiler_options_->verbose_methods_ = verbose_methods_.empty() ? nullptr : &verbose_methods_;
854
855    if (!IsBootImage() && multi_image) {
856      Usage("--multi-image can only be used when creating boot images");
857    }
858    if (IsBootImage() && multi_image && image_filenames_.size() > 1) {
859      Usage("--multi-image cannot be used with multiple image names");
860    }
861
862    // For now, if we're on the host and compile the boot image, *always* use multiple image files.
863    if (!kIsTargetBuild && IsBootImage()) {
864      if (image_filenames_.size() == 1) {
865        multi_image = true;
866      }
867    }
868
869    if (IsBootImage() && multi_image) {
870      // Expand the oat and image filenames.
871      std::string base_oat = oat_filenames_[0];
872      size_t last_oat_slash = base_oat.rfind('/');
873      if (last_oat_slash == std::string::npos) {
874        Usage("--multi-image used with unusable oat filename %s", base_oat.c_str());
875      }
876      // We also need to honor path components that were encoded through '@'. Otherwise the loading
877      // code won't be able to find the images.
878      if (base_oat.find('@', last_oat_slash) != std::string::npos) {
879        last_oat_slash = base_oat.rfind('@');
880      }
881      base_oat = base_oat.substr(0, last_oat_slash + 1);
882
883      std::string base_img = image_filenames_[0];
884      size_t last_img_slash = base_img.rfind('/');
885      if (last_img_slash == std::string::npos) {
886        Usage("--multi-image used with unusable image filename %s", base_img.c_str());
887      }
888      // We also need to honor path components that were encoded through '@'. Otherwise the loading
889      // code won't be able to find the images.
890      if (base_img.find('@', last_img_slash) != std::string::npos) {
891        last_img_slash = base_img.rfind('@');
892      }
893
894      // Get the prefix, which is the primary image name (without path components). Strip the
895      // extension.
896      std::string prefix = base_img.substr(last_img_slash + 1);
897      if (prefix.rfind('.') != std::string::npos) {
898        prefix = prefix.substr(0, prefix.rfind('.'));
899      }
900      if (!prefix.empty()) {
901        prefix = prefix + "-";
902      }
903
904      base_img = base_img.substr(0, last_img_slash + 1);
905
906      // Note: we have some special case here for our testing. We have to inject the differentiating
907      //       parts for the different core images.
908      std::string infix;  // Empty infix by default.
909      {
910        // Check the first name.
911        std::string dex_file = oat_filenames_[0];
912        size_t last_dex_slash = dex_file.rfind('/');
913        if (last_dex_slash != std::string::npos) {
914          dex_file = dex_file.substr(last_dex_slash + 1);
915        }
916        size_t last_dex_dot = dex_file.rfind('.');
917        if (last_dex_dot != std::string::npos) {
918          dex_file = dex_file.substr(0, last_dex_dot);
919        }
920        if (StartsWith(dex_file, "core-")) {
921          infix = dex_file.substr(strlen("core"));
922        }
923      }
924
925      // Now create the other names. Use a counted loop to skip the first one.
926      for (size_t i = 1; i < dex_locations_.size(); ++i) {
927        // TODO: Make everything properly std::string.
928        std::string image_name = CreateMultiImageName(dex_locations_[i], prefix, infix, ".art");
929        char_backing_storage_.push_back(base_img + image_name);
930        image_filenames_.push_back((char_backing_storage_.end() - 1)->c_str());
931
932        std::string oat_name = CreateMultiImageName(dex_locations_[i], prefix, infix, ".oat");
933        char_backing_storage_.push_back(base_oat + oat_name);
934        oat_filenames_.push_back((char_backing_storage_.end() - 1)->c_str());
935      }
936    }
937
938    // Done with usage checks, enable watchdog if requested
939    if (parser_options->watch_dog_enabled) {
940      watchdog_.reset(new WatchDog(true));
941    }
942
943    // Fill some values into the key-value store for the oat header.
944    key_value_store_.reset(new SafeMap<std::string, std::string>());
945  }
946
947  // Modify the input string in the following way:
948  //   0) Assume input is /a/b/c.d
949  //   1) Strip the path  -> c.d
950  //   2) Inject prefix p -> pc.d
951  //   3) Inject infix i  -> pci.d
952  //   4) Replace suffix with s if it's "jar"  -> d == "jar" -> pci.s
953  static std::string CreateMultiImageName(std::string in,
954                                          const std::string& prefix,
955                                          const std::string& infix,
956                                          const char* replace_suffix) {
957    size_t last_dex_slash = in.rfind('/');
958    if (last_dex_slash != std::string::npos) {
959      in = in.substr(last_dex_slash + 1);
960    }
961    if (!prefix.empty()) {
962      in = prefix + in;
963    }
964    if (!infix.empty()) {
965      // Inject infix.
966      size_t last_dot = in.rfind('.');
967      if (last_dot != std::string::npos) {
968        in.insert(last_dot, infix);
969      }
970    }
971    if (EndsWith(in, ".jar")) {
972      in = in.substr(0, in.length() - strlen(".jar")) +
973          (replace_suffix != nullptr ? replace_suffix : "");
974    }
975    return in;
976  }
977
978  void InsertCompileOptions(int argc, char** argv) {
979    std::ostringstream oss;
980    for (int i = 0; i < argc; ++i) {
981      if (i > 0) {
982        oss << ' ';
983      }
984      oss << argv[i];
985    }
986    key_value_store_->Put(OatHeader::kDex2OatCmdLineKey, oss.str());
987    oss.str("");  // Reset.
988    oss << kRuntimeISA;
989    key_value_store_->Put(OatHeader::kDex2OatHostKey, oss.str());
990    key_value_store_->Put(
991        OatHeader::kPicKey,
992        compiler_options_->compile_pic_ ? OatHeader::kTrueValue : OatHeader::kFalseValue);
993    key_value_store_->Put(
994        OatHeader::kDebuggableKey,
995        compiler_options_->debuggable_ ? OatHeader::kTrueValue : OatHeader::kFalseValue);
996  }
997
998  // Parse the arguments from the command line. In case of an unrecognized option or impossible
999  // values/combinations, a usage error will be displayed and exit() is called. Thus, if the method
1000  // returns, arguments have been successfully parsed.
1001  void ParseArgs(int argc, char** argv) {
1002    original_argc = argc;
1003    original_argv = argv;
1004
1005    InitLogging(argv);
1006
1007    // Skip over argv[0].
1008    argv++;
1009    argc--;
1010
1011    if (argc == 0) {
1012      Usage("No arguments specified");
1013    }
1014
1015    std::unique_ptr<ParserOptions> parser_options(new ParserOptions());
1016    compiler_options_.reset(new CompilerOptions());
1017
1018    bool multi_image = false;
1019
1020    for (int i = 0; i < argc; i++) {
1021      const StringPiece option(argv[i]);
1022      const bool log_options = false;
1023      if (log_options) {
1024        LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
1025      }
1026      if (option.starts_with("--dex-file=")) {
1027        dex_filenames_.push_back(option.substr(strlen("--dex-file=")).data());
1028      } else if (option.starts_with("--dex-location=")) {
1029        dex_locations_.push_back(option.substr(strlen("--dex-location=")).data());
1030      } else if (option.starts_with("--zip-fd=")) {
1031        ParseZipFd(option);
1032      } else if (option.starts_with("--zip-location=")) {
1033        zip_location_ = option.substr(strlen("--zip-location=")).data();
1034      } else if (option.starts_with("--oat-file=")) {
1035        oat_filenames_.push_back(option.substr(strlen("--oat-file=")).data());
1036      } else if (option.starts_with("--oat-symbols=")) {
1037        parser_options->oat_symbols.push_back(option.substr(strlen("--oat-symbols=")).data());
1038      } else if (option.starts_with("--oat-fd=")) {
1039        ParseOatFd(option);
1040      } else if (option == "--watch-dog") {
1041        parser_options->watch_dog_enabled = true;
1042      } else if (option == "--no-watch-dog") {
1043        parser_options->watch_dog_enabled = false;
1044      } else if (option.starts_with("-j")) {
1045        ParseJ(option);
1046      } else if (option.starts_with("--oat-location=")) {
1047        oat_location_ = option.substr(strlen("--oat-location=")).data();
1048      } else if (option.starts_with("--image=")) {
1049        image_filenames_.push_back(option.substr(strlen("--image=")).data());
1050      } else if (option.starts_with("--image-classes=")) {
1051        image_classes_filename_ = option.substr(strlen("--image-classes=")).data();
1052      } else if (option.starts_with("--image-classes-zip=")) {
1053        image_classes_zip_filename_ = option.substr(strlen("--image-classes-zip=")).data();
1054      } else if (option.starts_with("--image-format=")) {
1055        ParseImageFormat(option);
1056      } else if (option.starts_with("--compiled-classes=")) {
1057        compiled_classes_filename_ = option.substr(strlen("--compiled-classes=")).data();
1058      } else if (option.starts_with("--compiled-classes-zip=")) {
1059        compiled_classes_zip_filename_ = option.substr(strlen("--compiled-classes-zip=")).data();
1060      } else if (option.starts_with("--compiled-methods=")) {
1061        compiled_methods_filename_ = option.substr(strlen("--compiled-methods=")).data();
1062      } else if (option.starts_with("--compiled-methods-zip=")) {
1063        compiled_methods_zip_filename_ = option.substr(strlen("--compiled-methods-zip=")).data();
1064      } else if (option.starts_with("--base=")) {
1065        ParseBase(option);
1066      } else if (option.starts_with("--boot-image=")) {
1067        parser_options->boot_image_filename = option.substr(strlen("--boot-image=")).data();
1068      } else if (option.starts_with("--android-root=")) {
1069        android_root_ = option.substr(strlen("--android-root=")).data();
1070      } else if (option.starts_with("--instruction-set=")) {
1071        ParseInstructionSet(option);
1072      } else if (option.starts_with("--instruction-set-variant=")) {
1073        ParseInstructionSetVariant(option, parser_options.get());
1074      } else if (option.starts_with("--instruction-set-features=")) {
1075        ParseInstructionSetFeatures(option, parser_options.get());
1076      } else if (option.starts_with("--compiler-backend=")) {
1077        ParseCompilerBackend(option, parser_options.get());
1078      } else if (option.starts_with("--profile-file=")) {
1079        profile_files_.push_back(option.substr(strlen("--profile-file=")).ToString());
1080      } else if (option.starts_with("--reference-profile-file=")) {
1081        reference_profile_files_.push_back(
1082            option.substr(strlen("--reference-profile-file=")).ToString());
1083      } else if (option == "--no-profile-file") {
1084        // No profile
1085      } else if (option == "--host") {
1086        is_host_ = true;
1087      } else if (option == "--runtime-arg") {
1088        if (++i >= argc) {
1089          Usage("Missing required argument for --runtime-arg");
1090        }
1091        if (log_options) {
1092          LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
1093        }
1094        runtime_args_.push_back(argv[i]);
1095      } else if (option == "--dump-timing") {
1096        dump_timing_ = true;
1097      } else if (option == "--dump-passes") {
1098        dump_passes_ = true;
1099      } else if (option.starts_with("--dump-cfg=")) {
1100        dump_cfg_file_name_ = option.substr(strlen("--dump-cfg=")).data();
1101      } else if (option.starts_with("--dump-cfg-append")) {
1102        dump_cfg_append_ = true;
1103      } else if (option == "--dump-stats") {
1104        dump_stats_ = true;
1105      } else if (option.starts_with("--swap-file=")) {
1106        swap_file_name_ = option.substr(strlen("--swap-file=")).data();
1107      } else if (option.starts_with("--swap-fd=")) {
1108        ParseUintOption(option, "--swap-fd", &swap_fd_, Usage);
1109      } else if (option.starts_with("--app-image-file=")) {
1110        app_image_file_name_ = option.substr(strlen("--app-image-file=")).data();
1111      } else if (option.starts_with("--app-image-fd=")) {
1112        ParseUintOption(option, "--app-image-fd", &app_image_fd_, Usage);
1113      } else if (option.starts_with("--verbose-methods=")) {
1114        // TODO: rather than switch off compiler logging, make all VLOG(compiler) messages
1115        //       conditional on having verbost methods.
1116        gLogVerbosity.compiler = false;
1117        Split(option.substr(strlen("--verbose-methods=")).ToString(), ',', &verbose_methods_);
1118      } else if (option == "--multi-image") {
1119        multi_image = true;
1120      } else if (option.starts_with("--no-inline-from=")) {
1121        no_inline_from_string_ = option.substr(strlen("--no-inline-from=")).data();
1122      } else if (!compiler_options_->ParseCompilerOption(option, Usage)) {
1123        Usage("Unknown argument %s", option.data());
1124      }
1125    }
1126
1127    ProcessOptions(parser_options.get(), multi_image);
1128
1129    // Insert some compiler things.
1130    InsertCompileOptions(argc, argv);
1131  }
1132
1133  // Check whether the oat output files are writable, and open them for later. Also open a swap
1134  // file, if a name is given.
1135  bool OpenFile() {
1136    bool create_file = oat_fd_ == -1;  // as opposed to using open file descriptor
1137    if (create_file) {
1138      for (const char* oat_filename : oat_filenames_) {
1139        std::unique_ptr<File> oat_file(OS::CreateEmptyFile(oat_filename));
1140        if (oat_file.get() == nullptr) {
1141          PLOG(ERROR) << "Failed to create oat file: " << oat_filename;
1142          return false;
1143        }
1144        if (create_file && fchmod(oat_file->Fd(), 0644) != 0) {
1145          PLOG(ERROR) << "Failed to make oat file world readable: " << oat_filename;
1146          oat_file->Erase();
1147          return false;
1148        }
1149        oat_files_.push_back(std::move(oat_file));
1150      }
1151    } else {
1152      std::unique_ptr<File> oat_file(new File(oat_fd_, oat_location_, true));
1153      oat_file->DisableAutoClose();
1154      if (oat_file->SetLength(0) != 0) {
1155        PLOG(WARNING) << "Truncating oat file " << oat_location_ << " failed.";
1156      }
1157      if (oat_file.get() == nullptr) {
1158        PLOG(ERROR) << "Failed to create oat file: " << oat_location_;
1159        return false;
1160      }
1161      if (create_file && fchmod(oat_file->Fd(), 0644) != 0) {
1162        PLOG(ERROR) << "Failed to make oat file world readable: " << oat_location_;
1163        oat_file->Erase();
1164        return false;
1165      }
1166      oat_filenames_.push_back(oat_location_.c_str());
1167      oat_files_.push_back(std::move(oat_file));
1168    }
1169
1170    // Swap file handling.
1171    //
1172    // If the swap fd is not -1, we assume this is the file descriptor of an open but unlinked file
1173    // that we can use for swap.
1174    //
1175    // If the swap fd is -1 and we have a swap-file string, open the given file as a swap file. We
1176    // will immediately unlink to satisfy the swap fd assumption.
1177    if (swap_fd_ == -1 && !swap_file_name_.empty()) {
1178      std::unique_ptr<File> swap_file(OS::CreateEmptyFile(swap_file_name_.c_str()));
1179      if (swap_file.get() == nullptr) {
1180        PLOG(ERROR) << "Failed to create swap file: " << swap_file_name_;
1181        return false;
1182      }
1183      swap_fd_ = swap_file->Fd();
1184      swap_file->MarkUnchecked();     // We don't we to track this, it will be unlinked immediately.
1185      swap_file->DisableAutoClose();  // We'll handle it ourselves, the File object will be
1186                                      // released immediately.
1187      unlink(swap_file_name_.c_str());
1188    }
1189    return true;
1190  }
1191
1192  void EraseOatFiles() {
1193    for (size_t i = 0; i < oat_files_.size(); ++i) {
1194      DCHECK(oat_files_[i].get() != nullptr);
1195      oat_files_[i]->Erase();
1196      oat_files_[i].reset();
1197    }
1198  }
1199
1200  void Shutdown() {
1201    ScopedObjectAccess soa(Thread::Current());
1202    for (jobject dex_cache : dex_caches_) {
1203      soa.Env()->DeleteLocalRef(dex_cache);
1204    }
1205    dex_caches_.clear();
1206  }
1207
1208  // Set up the environment for compilation. Includes starting the runtime and loading/opening the
1209  // boot class path.
1210  bool Setup() {
1211    TimingLogger::ScopedTiming t("dex2oat Setup", timings_);
1212    art::MemMap::Init();  // For ZipEntry::ExtractToMemMap.
1213
1214    if (!PrepareImageClasses() || !PrepareCompiledClasses() || !PrepareCompiledMethods()) {
1215      return false;
1216    }
1217
1218    verification_results_.reset(new VerificationResults(compiler_options_.get()));
1219    callbacks_.reset(new QuickCompilerCallbacks(
1220        verification_results_.get(),
1221        &method_inliner_map_,
1222        IsBootImage() ?
1223            CompilerCallbacks::CallbackMode::kCompileBootImage :
1224            CompilerCallbacks::CallbackMode::kCompileApp));
1225
1226    RuntimeArgumentMap runtime_options;
1227    if (!PrepareRuntimeOptions(&runtime_options)) {
1228      return false;
1229    }
1230
1231    {
1232      TimingLogger::ScopedTiming t_runtime("Create runtime", timings_);
1233      if (!CreateRuntime(std::move(runtime_options))) {
1234        return false;
1235      }
1236    }
1237
1238    // Runtime::Create acquired the mutator_lock_ that is normally given away when we
1239    // Runtime::Start, give it away now so that we don't starve GC.
1240    Thread* self = Thread::Current();
1241    self->TransitionFromRunnableToSuspended(kNative);
1242    // If we're doing the image, override the compiler filter to force full compilation. Must be
1243    // done ahead of WellKnownClasses::Init that causes verification.  Note: doesn't force
1244    // compilation of class initializers.
1245    // Whilst we're in native take the opportunity to initialize well known classes.
1246    WellKnownClasses::Init(self->GetJniEnv());
1247
1248    ClassLinker* const class_linker = Runtime::Current()->GetClassLinker();
1249    if (boot_image_filename_.empty()) {
1250      dex_files_ = class_linker->GetBootClassPath();
1251    } else {
1252      TimingLogger::ScopedTiming t_dex("Opening dex files", timings_);
1253      if (dex_filenames_.empty()) {
1254        ATRACE_BEGIN("Opening zip archive from file descriptor");
1255        std::string error_msg;
1256        std::unique_ptr<ZipArchive> zip_archive(ZipArchive::OpenFromFd(zip_fd_,
1257                                                                       zip_location_.c_str(),
1258                                                                       &error_msg));
1259        if (zip_archive.get() == nullptr) {
1260          LOG(ERROR) << "Failed to open zip from file descriptor for '" << zip_location_ << "': "
1261              << error_msg;
1262          return false;
1263        }
1264        if (!DexFile::OpenFromZip(*zip_archive.get(), zip_location_, &error_msg, &opened_dex_files_)) {
1265          LOG(ERROR) << "Failed to open dex from file descriptor for zip file '" << zip_location_
1266              << "': " << error_msg;
1267          return false;
1268        }
1269        for (auto& dex_file : opened_dex_files_) {
1270          dex_files_.push_back(dex_file.get());
1271        }
1272        ATRACE_END();
1273      } else {
1274        size_t failure_count = OpenDexFiles(dex_filenames_, dex_locations_, &opened_dex_files_);
1275        if (failure_count > 0) {
1276          LOG(ERROR) << "Failed to open some dex files: " << failure_count;
1277          return false;
1278        }
1279        for (auto& dex_file : opened_dex_files_) {
1280          dex_files_.push_back(dex_file.get());
1281        }
1282      }
1283
1284      constexpr bool kSaveDexInput = false;
1285      if (kSaveDexInput) {
1286        SaveDexInput();
1287      }
1288    }
1289    // Ensure opened dex files are writable for dex-to-dex transformations. Also ensure that
1290    // the dex caches stay live since we don't want class unloading to occur during compilation.
1291    for (const auto& dex_file : dex_files_) {
1292      if (!dex_file->EnableWrite()) {
1293        PLOG(ERROR) << "Failed to make .dex file writeable '" << dex_file->GetLocation() << "'\n";
1294      }
1295      ScopedObjectAccess soa(self);
1296      dex_caches_.push_back(soa.AddLocalReference<jobject>(
1297          class_linker->RegisterDexFile(*dex_file, Runtime::Current()->GetLinearAlloc())));
1298      dex_file->CreateTypeLookupTable();
1299    }
1300
1301    // If we use a swap file, ensure we are above the threshold to make it necessary.
1302    if (swap_fd_ != -1) {
1303      if (!UseSwap(IsBootImage(), dex_files_)) {
1304        close(swap_fd_);
1305        swap_fd_ = -1;
1306        VLOG(compiler) << "Decided to run without swap.";
1307      } else {
1308        LOG(INFO) << "Large app, accepted running with swap.";
1309      }
1310    }
1311    // Note that dex2oat won't close the swap_fd_. The compiler driver's swap space will do that.
1312
1313    /*
1314     * If we're not in interpret-only or verify-none mode, go ahead and compile small applications.
1315     * Don't bother to check if we're doing the image.
1316     */
1317    if (!IsBootImage() &&
1318        compiler_options_->IsCompilationEnabled() &&
1319        compiler_kind_ == Compiler::kQuick) {
1320      size_t num_methods = 0;
1321      for (size_t i = 0; i != dex_files_.size(); ++i) {
1322        const DexFile* dex_file = dex_files_[i];
1323        CHECK(dex_file != nullptr);
1324        num_methods += dex_file->NumMethodIds();
1325      }
1326      if (num_methods <= compiler_options_->GetNumDexMethodsThreshold()) {
1327        compiler_options_->SetCompilerFilter(CompilerOptions::kSpeed);
1328        VLOG(compiler) << "Below method threshold, compiling anyways";
1329      }
1330    }
1331
1332    // Organize inputs, handling multi-dex and multiple oat file outputs.
1333    CreateDexOatMappings();
1334
1335    return true;
1336  }
1337
1338  void CreateDexOatMappings() {
1339    if (oat_files_.size() > 1) {
1340      // TODO: This needs to change, as it is not a stable mapping. If a dex file is missing,
1341      //       the images will be out of whack. b/26317072
1342      size_t index = 0;
1343      for (size_t i = 0; i < oat_files_.size(); ++i) {
1344        std::vector<const DexFile*> dex_files;
1345        if (index < dex_files_.size()) {
1346          dex_files.push_back(dex_files_[index]);
1347          dex_file_oat_filename_map_.emplace(dex_files_[index], oat_filenames_[i]);
1348          index++;
1349          while (index < dex_files_.size() &&
1350              (dex_files_[index]->GetBaseLocation() == dex_files_[index - 1]->GetBaseLocation())) {
1351            dex_file_oat_filename_map_.emplace(dex_files_[index], oat_filenames_[i]);
1352            dex_files.push_back(dex_files_[index]);
1353            index++;
1354          }
1355        }
1356        dex_files_per_oat_file_.push_back(std::move(dex_files));
1357      }
1358    } else {
1359      dex_files_per_oat_file_.push_back(dex_files_);
1360      for (const DexFile* dex_file : dex_files_) {
1361        dex_file_oat_filename_map_.emplace(dex_file, oat_filenames_[0]);
1362      }
1363    }
1364  }
1365
1366  // Create and invoke the compiler driver. This will compile all the dex files.
1367  void Compile() {
1368    TimingLogger::ScopedTiming t("dex2oat Compile", timings_);
1369    compiler_phases_timings_.reset(new CumulativeLogger("compilation times"));
1370
1371    // Handle and ClassLoader creation needs to come after Runtime::Create
1372    jobject class_loader = nullptr;
1373    jobject class_path_class_loader = nullptr;
1374    Thread* self = Thread::Current();
1375
1376    if (!boot_image_filename_.empty()) {
1377      ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
1378      OpenClassPathFiles(runtime_->GetClassPathString(), dex_files_, &class_path_files_);
1379      ScopedObjectAccess soa(self);
1380
1381      // Classpath: first the class-path given.
1382      std::vector<const DexFile*> class_path_files = MakeNonOwningPointerVector(class_path_files_);
1383
1384      // Store the classpath we have right now.
1385      key_value_store_->Put(OatHeader::kClassPathKey,
1386                            OatFile::EncodeDexFileDependencies(class_path_files));
1387
1388      class_path_class_loader = class_linker->CreatePathClassLoader(self,
1389                                                                    class_path_files,
1390                                                                    nullptr);
1391
1392      // Class path loader as parent so that we'll resolve there first.
1393      class_loader = class_linker->CreatePathClassLoader(self, dex_files_, class_path_class_loader);
1394    }
1395
1396    // Find the dex file we should not inline from.
1397
1398    // For now, on the host always have core-oj removed.
1399    if (!kIsTargetBuild && no_inline_from_string_.empty()) {
1400      no_inline_from_string_ = "core-oj";
1401    }
1402
1403    if (!no_inline_from_string_.empty()) {
1404      ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
1405      std::vector<const DexFile*> class_path_files = MakeNonOwningPointerVector(class_path_files_);
1406      std::vector<const std::vector<const DexFile*>*> dex_file_vectors = {
1407          &class_linker->GetBootClassPath(),
1408          &class_path_files,
1409          &dex_files_
1410      };
1411      for (const std::vector<const DexFile*>* dex_file_vector : dex_file_vectors) {
1412        if (dex_file_vector == nullptr) {
1413          continue;
1414        }
1415
1416        bool found = false;
1417
1418        for (const DexFile* dex_file : *dex_file_vector) {
1419          // Try the complete location first.
1420          found = no_inline_from_string_ == dex_file->GetLocation();
1421          // The try just the name.
1422          if (!found) {
1423            size_t last_slash = dex_file->GetLocation().rfind('/');
1424            if (last_slash != std::string::npos) {
1425              found = StartsWith(dex_file->GetLocation().substr(last_slash + 1),
1426                                 no_inline_from_string_.c_str());
1427            }
1428          }
1429
1430          if (found) {
1431            VLOG(compiler) << "Disabling inlining from " << dex_file->GetLocation();
1432            compiler_options_->no_inline_from_ = dex_file;
1433            break;
1434          }
1435        }
1436
1437        if (found) {
1438          break;
1439        }
1440      }
1441    }
1442
1443    if (IsBootImage() && image_filenames_.size() > 1) {
1444      // If we're compiling the boot image, store the boot classpath into the Key-Value store. If
1445      // the image filename was adapted (e.g., for our tests), we need to change this here, too, but
1446      // need to strip all path components (they will be re-established when loading).
1447      // We need this for the multi-image case.
1448      std::ostringstream bootcp_oss;
1449      bool first_bootcp = true;
1450      for (size_t i = 0; i < dex_locations_.size(); ++i) {
1451        if (!first_bootcp) {
1452          bootcp_oss << ":";
1453        }
1454
1455        std::string dex_loc = dex_locations_[i];
1456        std::string image_filename = image_filenames_[i];
1457
1458        // Use the dex_loc path, but the image_filename name (without path elements).
1459        size_t dex_last_slash = dex_loc.rfind('/');
1460
1461        // npos is max(size_t). That makes this a bit ugly.
1462        size_t image_last_slash = image_filename.rfind('/');
1463        size_t image_last_at = image_filename.rfind('@');
1464        size_t image_last_sep = (image_last_slash == std::string::npos)
1465                                    ? image_last_at
1466                                    : (image_last_at == std::string::npos)
1467                                          ? std::string::npos
1468                                          : std::max(image_last_slash, image_last_at);
1469        // Note: whenever image_last_sep == npos, +1 overflow means using the full string.
1470
1471        if (dex_last_slash == std::string::npos) {
1472          dex_loc = image_filename.substr(image_last_sep + 1);
1473        } else {
1474          dex_loc = dex_loc.substr(0, dex_last_slash + 1) +
1475              image_filename.substr(image_last_sep + 1);
1476        }
1477
1478        // Image filenames already end with .art, no need to replace.
1479
1480        bootcp_oss << dex_loc;
1481        first_bootcp = false;
1482      }
1483      key_value_store_->Put(OatHeader::kBootClassPath, bootcp_oss.str());
1484    }
1485
1486    driver_.reset(new CompilerDriver(compiler_options_.get(),
1487                                     verification_results_.get(),
1488                                     &method_inliner_map_,
1489                                     compiler_kind_,
1490                                     instruction_set_,
1491                                     instruction_set_features_.get(),
1492                                     IsBootImage(),
1493                                     image_classes_.release(),
1494                                     compiled_classes_.release(),
1495                                     nullptr,
1496                                     thread_count_,
1497                                     dump_stats_,
1498                                     dump_passes_,
1499                                     dump_cfg_file_name_,
1500                                     dump_cfg_append_,
1501                                     compiler_phases_timings_.get(),
1502                                     swap_fd_,
1503                                     &dex_file_oat_filename_map_,
1504                                     profile_compilation_info_.get()));
1505    driver_->SetDexFilesForOatFile(dex_files_);
1506    driver_->CompileAll(class_loader, dex_files_, timings_);
1507  }
1508
1509  // TODO: Update comments about how this works for multi image. b/26317072
1510  // Notes on the interleaving of creating the image and oat file to
1511  // ensure the references between the two are correct.
1512  //
1513  // Currently we have a memory layout that looks something like this:
1514  //
1515  // +--------------+
1516  // | image        |
1517  // +--------------+
1518  // | boot oat     |
1519  // +--------------+
1520  // | alloc spaces |
1521  // +--------------+
1522  //
1523  // There are several constraints on the loading of the image and boot.oat.
1524  //
1525  // 1. The image is expected to be loaded at an absolute address and
1526  // contains Objects with absolute pointers within the image.
1527  //
1528  // 2. There are absolute pointers from Methods in the image to their
1529  // code in the oat.
1530  //
1531  // 3. There are absolute pointers from the code in the oat to Methods
1532  // in the image.
1533  //
1534  // 4. There are absolute pointers from code in the oat to other code
1535  // in the oat.
1536  //
1537  // To get this all correct, we go through several steps.
1538  //
1539  // 1. We prepare offsets for all data in the oat file and calculate
1540  // the oat data size and code size. During this stage, we also set
1541  // oat code offsets in methods for use by the image writer.
1542  //
1543  // 2. We prepare offsets for the objects in the image and calculate
1544  // the image size.
1545  //
1546  // 3. We create the oat file. Originally this was just our own proprietary
1547  // file but now it is contained within an ELF dynamic object (aka an .so
1548  // file). Since we know the image size and oat data size and code size we
1549  // can prepare the ELF headers and we then know the ELF memory segment
1550  // layout and we can now resolve all references. The compiler provides
1551  // LinkerPatch information in each CompiledMethod and we resolve these,
1552  // using the layout information and image object locations provided by
1553  // image writer, as we're writing the method code.
1554  //
1555  // 4. We create the image file. It needs to know where the oat file
1556  // will be loaded after itself. Originally when oat file was simply
1557  // memory mapped so we could predict where its contents were based
1558  // on the file size. Now that it is an ELF file, we need to inspect
1559  // the ELF file to understand the in memory segment layout including
1560  // where the oat header is located within.
1561  // TODO: We could just remember this information from step 3.
1562  //
1563  // 5. We fixup the ELF program headers so that dlopen will try to
1564  // load the .so at the desired location at runtime by offsetting the
1565  // Elf32_Phdr.p_vaddr values by the desired base address.
1566  // TODO: Do this in step 3. We already know the layout there.
1567  //
1568  // Steps 1.-3. are done by the CreateOatFile() above, steps 4.-5.
1569  // are done by the CreateImageFile() below.
1570
1571  // Write out the generated code part. Calls the OatWriter and ElfBuilder. Also prepares the
1572  // ImageWriter, if necessary.
1573  // Note: Flushing (and closing) the file is the caller's responsibility, except for the failure
1574  //       case (when the file will be explicitly erased).
1575  bool CreateOatFiles() {
1576    CHECK(key_value_store_.get() != nullptr);
1577
1578    TimingLogger::ScopedTiming t("dex2oat Oat", timings_);
1579
1580    std::vector<std::unique_ptr<OatWriter>> oat_writers;
1581    {
1582      TimingLogger::ScopedTiming t2("dex2oat OatWriter", timings_);
1583      std::string image_file_location;
1584      uint32_t image_file_location_oat_checksum = 0;
1585      uintptr_t image_file_location_oat_data_begin = 0;
1586      int32_t image_patch_delta = 0;
1587
1588      if (app_image_ && image_base_ == 0) {
1589        std::vector<gc::space::ImageSpace*> image_spaces =
1590            Runtime::Current()->GetHeap()->GetBootImageSpaces();
1591        for (gc::space::ImageSpace* image_space : image_spaces) {
1592          image_base_ = std::max(image_base_, RoundUp(
1593              reinterpret_cast<uintptr_t>(image_space->GetImageHeader().GetOatFileEnd()),
1594              kPageSize));
1595        }
1596        VLOG(compiler) << "App image base=" << reinterpret_cast<void*>(image_base_);
1597      }
1598
1599      if (IsImage()) {
1600        PrepareImageWriter(image_base_);
1601      }
1602
1603      if (!IsBootImage()) {
1604        TimingLogger::ScopedTiming t3("Loading image checksum", timings_);
1605        std::vector<gc::space::ImageSpace*> image_spaces =
1606            Runtime::Current()->GetHeap()->GetBootImageSpaces();
1607        image_file_location_oat_checksum = image_spaces[0]->GetImageHeader().GetOatChecksum();
1608        image_file_location_oat_data_begin =
1609            reinterpret_cast<uintptr_t>(image_spaces[0]->GetImageHeader().GetOatDataBegin());
1610        image_patch_delta = image_spaces[0]->GetImageHeader().GetPatchDelta();
1611        std::vector<std::string> image_filenames;
1612        for (const gc::space::ImageSpace* image_space : image_spaces) {
1613          image_filenames.push_back(image_space->GetImageFilename());
1614        }
1615        image_file_location = Join(image_filenames, ':');
1616      }
1617
1618      if (!image_file_location.empty()) {
1619        key_value_store_->Put(OatHeader::kImageLocationKey, image_file_location);
1620      }
1621
1622      for (size_t i = 0; i < oat_files_.size(); ++i) {
1623        std::vector<const DexFile*>& dex_files = dex_files_per_oat_file_[i];
1624        std::unique_ptr<OatWriter> oat_writer(new OatWriter(dex_files,
1625                                                            image_file_location_oat_checksum,
1626                                                            image_file_location_oat_data_begin,
1627                                                            image_patch_delta,
1628                                                            driver_.get(),
1629                                                            image_writer_.get(),
1630                                                            IsBootImage(),
1631                                                            timings_,
1632                                                            key_value_store_.get()));
1633        oat_writers.push_back(std::move(oat_writer));
1634      }
1635    }
1636
1637    if (IsImage()) {
1638      // The OatWriter constructor has already updated offsets in methods and we need to
1639      // prepare method offsets in the image address space for direct method patching.
1640      TimingLogger::ScopedTiming t2("dex2oat Prepare image address space", timings_);
1641      if (!image_writer_->PrepareImageAddressSpace()) {
1642        LOG(ERROR) << "Failed to prepare image address space.";
1643        return false;
1644      }
1645    }
1646
1647    {
1648      TimingLogger::ScopedTiming t2("dex2oat Write ELF", timings_);
1649      for (size_t i = 0; i < oat_files_.size(); ++i) {
1650        std::unique_ptr<File>& oat_file = oat_files_[i];
1651        std::unique_ptr<OatWriter>& oat_writer = oat_writers[i];
1652        std::unique_ptr<ElfWriter> elf_writer =
1653            CreateElfWriterQuick(instruction_set_, compiler_options_.get(), oat_file.get());
1654
1655        elf_writer->Start();
1656
1657        OutputStream* rodata = elf_writer->StartRoData();
1658        if (!oat_writer->WriteRodata(rodata)) {
1659          LOG(ERROR) << "Failed to write .rodata section to the ELF file " << oat_file->GetPath();
1660          return false;
1661        }
1662        elf_writer->EndRoData(rodata);
1663
1664        OutputStream* text = elf_writer->StartText();
1665        if (!oat_writer->WriteCode(text)) {
1666          LOG(ERROR) << "Failed to write .text section to the ELF file " << oat_file->GetPath();
1667          return false;
1668        }
1669        elf_writer->EndText(text);
1670
1671        elf_writer->SetBssSize(oat_writer->GetBssSize());
1672        elf_writer->WriteDynamicSection();
1673        elf_writer->WriteDebugInfo(oat_writer->GetMethodDebugInfo());
1674        elf_writer->WritePatchLocations(oat_writer->GetAbsolutePatchLocations());
1675
1676        if (!elf_writer->End()) {
1677          LOG(ERROR) << "Failed to write ELF file " << oat_file->GetPath();
1678          return false;
1679        }
1680
1681        // Flush the oat file.
1682        if (oat_files_[i] != nullptr) {
1683          if (oat_files_[i]->Flush() != 0) {
1684            PLOG(ERROR) << "Failed to flush oat file: " << oat_filenames_[i];
1685            oat_files_[i]->Erase();
1686            return false;
1687          }
1688        }
1689
1690        if (IsImage()) {
1691          // Update oat estimates.
1692          UpdateImageWriter(i);
1693        }
1694
1695        VLOG(compiler) << "Oat file written successfully: " << oat_filenames_[i];
1696      }
1697    }
1698
1699    return true;
1700  }
1701
1702  // If we are compiling an image, invoke the image creation routine. Else just skip.
1703  bool HandleImage() {
1704    if (IsImage()) {
1705      TimingLogger::ScopedTiming t("dex2oat ImageWriter", timings_);
1706      if (!CreateImageFile()) {
1707        return false;
1708      }
1709      VLOG(compiler) << "Images written successfully";
1710    }
1711    return true;
1712  }
1713
1714  // Create a copy from stripped to unstripped.
1715  bool CopyStrippedToUnstripped() {
1716    for (size_t i = 0; i < oat_unstripped_.size(); ++i) {
1717      // If we don't want to strip in place, copy from stripped location to unstripped location.
1718      // We need to strip after image creation because FixupElf needs to use .strtab.
1719      if (strcmp(oat_unstripped_[i], oat_filenames_[i]) != 0) {
1720        // If the oat file is still open, flush it.
1721        if (oat_files_[i].get() != nullptr && oat_files_[i]->IsOpened()) {
1722          if (!FlushCloseOatFile(i)) {
1723            return false;
1724          }
1725        }
1726
1727        TimingLogger::ScopedTiming t("dex2oat OatFile copy", timings_);
1728        std::unique_ptr<File> in(OS::OpenFileForReading(oat_filenames_[i]));
1729        std::unique_ptr<File> out(OS::CreateEmptyFile(oat_unstripped_[i]));
1730        size_t buffer_size = 8192;
1731        std::unique_ptr<uint8_t[]> buffer(new uint8_t[buffer_size]);
1732        while (true) {
1733          int bytes_read = TEMP_FAILURE_RETRY(read(in->Fd(), buffer.get(), buffer_size));
1734          if (bytes_read <= 0) {
1735            break;
1736          }
1737          bool write_ok = out->WriteFully(buffer.get(), bytes_read);
1738          CHECK(write_ok);
1739        }
1740        if (out->FlushCloseOrErase() != 0) {
1741          PLOG(ERROR) << "Failed to flush and close copied oat file: " << oat_unstripped_[i];
1742          return false;
1743        }
1744        VLOG(compiler) << "Oat file copied successfully (unstripped): " << oat_unstripped_[i];
1745      }
1746    }
1747    return true;
1748  }
1749
1750  bool FlushOatFiles() {
1751    TimingLogger::ScopedTiming t2("dex2oat Flush ELF", timings_);
1752    for (size_t i = 0; i < oat_files_.size(); ++i) {
1753      if (oat_files_[i].get() != nullptr) {
1754        if (oat_files_[i]->Flush() != 0) {
1755          PLOG(ERROR) << "Failed to flush oat file: " << oat_filenames_[i];
1756          oat_files_[i]->Erase();
1757          return false;
1758        }
1759      }
1760    }
1761    return true;
1762  }
1763
1764  bool FlushCloseOatFile(size_t i) {
1765    if (oat_files_[i].get() != nullptr) {
1766      std::unique_ptr<File> tmp(oat_files_[i].release());
1767      if (tmp->FlushCloseOrErase() != 0) {
1768        PLOG(ERROR) << "Failed to flush and close oat file: " << oat_filenames_[i];
1769        return false;
1770      }
1771    }
1772    return true;
1773  }
1774
1775  bool FlushCloseOatFiles() {
1776    bool result = true;
1777    for (size_t i = 0; i < oat_files_.size(); ++i) {
1778      result &= FlushCloseOatFile(i);
1779    }
1780    return result;
1781  }
1782
1783  void DumpTiming() {
1784    if (dump_timing_ || (dump_slow_timing_ && timings_->GetTotalNs() > MsToNs(1000))) {
1785      LOG(INFO) << Dumpable<TimingLogger>(*timings_);
1786    }
1787    if (dump_passes_) {
1788      LOG(INFO) << Dumpable<CumulativeLogger>(*driver_->GetTimingsLogger());
1789    }
1790  }
1791
1792  CompilerOptions* GetCompilerOptions() const {
1793    return compiler_options_.get();
1794  }
1795
1796  bool IsImage() const {
1797    return IsAppImage() || IsBootImage();
1798  }
1799
1800  bool IsAppImage() const {
1801    return app_image_;
1802  }
1803
1804  bool IsBootImage() const {
1805    return boot_image_;
1806  }
1807
1808  bool IsHost() const {
1809    return is_host_;
1810  }
1811
1812  bool UseProfileGuidedCompilation() const {
1813    return !profile_files_.empty();
1814  }
1815
1816  bool ProcessProfiles() {
1817    DCHECK(UseProfileGuidedCompilation());
1818    ProfileCompilationInfo* info = nullptr;
1819    if (ProfileAssistant::ProcessProfiles(profile_files_, reference_profile_files_, &info)) {
1820      profile_compilation_info_.reset(info);
1821      return true;
1822    }
1823    return false;
1824  }
1825
1826  bool ShouldCompileBasedOnProfiles() const {
1827    DCHECK(UseProfileGuidedCompilation());
1828    // If we are given profiles, compile only if we have new information.
1829    return profile_compilation_info_ != nullptr;
1830  }
1831
1832 private:
1833  template <typename T>
1834  static std::vector<T*> MakeNonOwningPointerVector(const std::vector<std::unique_ptr<T>>& src) {
1835    std::vector<T*> result;
1836    result.reserve(src.size());
1837    for (const std::unique_ptr<T>& t : src) {
1838      result.push_back(t.get());
1839    }
1840    return result;
1841  }
1842
1843  static size_t OpenDexFiles(const std::vector<const char*>& dex_filenames,
1844                             const std::vector<const char*>& dex_locations,
1845                             std::vector<std::unique_ptr<const DexFile>>* dex_files) {
1846    DCHECK(dex_files != nullptr) << "OpenDexFiles out-param is nullptr";
1847    size_t failure_count = 0;
1848    for (size_t i = 0; i < dex_filenames.size(); i++) {
1849      const char* dex_filename = dex_filenames[i];
1850      const char* dex_location = dex_locations[i];
1851      ATRACE_BEGIN(StringPrintf("Opening dex file '%s'", dex_filenames[i]).c_str());
1852      std::string error_msg;
1853      if (!OS::FileExists(dex_filename)) {
1854        LOG(WARNING) << "Skipping non-existent dex file '" << dex_filename << "'";
1855        continue;
1856      }
1857      if (!DexFile::Open(dex_filename, dex_location, &error_msg, dex_files)) {
1858        LOG(WARNING) << "Failed to open .dex from file '" << dex_filename << "': " << error_msg;
1859        ++failure_count;
1860      }
1861      ATRACE_END();
1862    }
1863    return failure_count;
1864  }
1865
1866  // Returns true if dex_files has a dex with the named location. We compare canonical locations,
1867  // so that relative and absolute paths will match. Not caching for the dex_files isn't very
1868  // efficient, but under normal circumstances the list is neither large nor is this part too
1869  // sensitive.
1870  static bool DexFilesContains(const std::vector<const DexFile*>& dex_files,
1871                               const std::string& location) {
1872    std::string canonical_location(DexFile::GetDexCanonicalLocation(location.c_str()));
1873    for (size_t i = 0; i < dex_files.size(); ++i) {
1874      if (DexFile::GetDexCanonicalLocation(dex_files[i]->GetLocation().c_str()) ==
1875          canonical_location) {
1876        return true;
1877      }
1878    }
1879    return false;
1880  }
1881
1882  // Appends to opened_dex_files any elements of class_path that dex_files
1883  // doesn't already contain. This will open those dex files as necessary.
1884  static void OpenClassPathFiles(const std::string& class_path,
1885                                 std::vector<const DexFile*> dex_files,
1886                                 std::vector<std::unique_ptr<const DexFile>>* opened_dex_files) {
1887    DCHECK(opened_dex_files != nullptr) << "OpenClassPathFiles out-param is nullptr";
1888    std::vector<std::string> parsed;
1889    Split(class_path, ':', &parsed);
1890    // Take Locks::mutator_lock_ so that lock ordering on the ClassLinker::dex_lock_ is maintained.
1891    ScopedObjectAccess soa(Thread::Current());
1892    for (size_t i = 0; i < parsed.size(); ++i) {
1893      if (DexFilesContains(dex_files, parsed[i])) {
1894        continue;
1895      }
1896      std::string error_msg;
1897      if (!DexFile::Open(parsed[i].c_str(), parsed[i].c_str(), &error_msg, opened_dex_files)) {
1898        LOG(WARNING) << "Failed to open dex file '" << parsed[i] << "': " << error_msg;
1899      }
1900    }
1901  }
1902
1903  bool PrepareImageClasses() {
1904    // If --image-classes was specified, calculate the full list of classes to include in the image.
1905    if (image_classes_filename_ != nullptr) {
1906      image_classes_ =
1907          ReadClasses(image_classes_zip_filename_, image_classes_filename_, "image");
1908      if (image_classes_ == nullptr) {
1909        return false;
1910      }
1911    } else if (IsBootImage()) {
1912      image_classes_.reset(new std::unordered_set<std::string>);
1913    }
1914    return true;
1915  }
1916
1917  bool PrepareCompiledClasses() {
1918    // If --compiled-classes was specified, calculate the full list of classes to compile in the
1919    // image.
1920    if (compiled_classes_filename_ != nullptr) {
1921      compiled_classes_ =
1922          ReadClasses(compiled_classes_zip_filename_, compiled_classes_filename_, "compiled");
1923      if (compiled_classes_ == nullptr) {
1924        return false;
1925      }
1926    } else {
1927      compiled_classes_.reset(nullptr);  // By default compile everything.
1928    }
1929    return true;
1930  }
1931
1932  static std::unique_ptr<std::unordered_set<std::string>> ReadClasses(const char* zip_filename,
1933                                                                      const char* classes_filename,
1934                                                                      const char* tag) {
1935    std::unique_ptr<std::unordered_set<std::string>> classes;
1936    std::string error_msg;
1937    if (zip_filename != nullptr) {
1938      classes.reset(ReadImageClassesFromZip(zip_filename, classes_filename, &error_msg));
1939    } else {
1940      classes.reset(ReadImageClassesFromFile(classes_filename));
1941    }
1942    if (classes == nullptr) {
1943      LOG(ERROR) << "Failed to create list of " << tag << " classes from '"
1944                 << classes_filename << "': " << error_msg;
1945    }
1946    return classes;
1947  }
1948
1949  bool PrepareCompiledMethods() {
1950    // If --compiled-methods was specified, read the methods to compile from the given file(s).
1951    if (compiled_methods_filename_ != nullptr) {
1952      std::string error_msg;
1953      if (compiled_methods_zip_filename_ != nullptr) {
1954        compiled_methods_.reset(ReadCommentedInputFromZip(compiled_methods_zip_filename_,
1955                                                          compiled_methods_filename_,
1956                                                          nullptr,            // No post-processing.
1957                                                          &error_msg));
1958      } else {
1959        compiled_methods_.reset(ReadCommentedInputFromFile(compiled_methods_filename_,
1960                                                           nullptr));         // No post-processing.
1961      }
1962      if (compiled_methods_.get() == nullptr) {
1963        LOG(ERROR) << "Failed to create list of compiled methods from '"
1964            << compiled_methods_filename_ << "': " << error_msg;
1965        return false;
1966      }
1967    } else {
1968      compiled_methods_.reset(nullptr);  // By default compile everything.
1969    }
1970    return true;
1971  }
1972
1973  void SaveDexInput() {
1974    for (size_t i = 0; i < dex_files_.size(); ++i) {
1975      const DexFile* dex_file = dex_files_[i];
1976      std::string tmp_file_name(StringPrintf("/data/local/tmp/dex2oat.%d.%zd.dex",
1977                                             getpid(), i));
1978      std::unique_ptr<File> tmp_file(OS::CreateEmptyFile(tmp_file_name.c_str()));
1979      if (tmp_file.get() == nullptr) {
1980        PLOG(ERROR) << "Failed to open file " << tmp_file_name
1981            << ". Try: adb shell chmod 777 /data/local/tmp";
1982        continue;
1983      }
1984      // This is just dumping files for debugging. Ignore errors, and leave remnants.
1985      UNUSED(tmp_file->WriteFully(dex_file->Begin(), dex_file->Size()));
1986      UNUSED(tmp_file->Flush());
1987      UNUSED(tmp_file->Close());
1988      LOG(INFO) << "Wrote input to " << tmp_file_name;
1989    }
1990  }
1991
1992  bool PrepareRuntimeOptions(RuntimeArgumentMap* runtime_options) {
1993    RuntimeOptions raw_options;
1994    if (boot_image_filename_.empty()) {
1995      std::string boot_class_path = "-Xbootclasspath:";
1996      boot_class_path += Join(dex_filenames_, ':');
1997      raw_options.push_back(std::make_pair(boot_class_path, nullptr));
1998      std::string boot_class_path_locations = "-Xbootclasspath-locations:";
1999      boot_class_path_locations += Join(dex_locations_, ':');
2000      raw_options.push_back(std::make_pair(boot_class_path_locations, nullptr));
2001    } else {
2002      std::string boot_image_option = "-Ximage:";
2003      boot_image_option += boot_image_filename_;
2004      raw_options.push_back(std::make_pair(boot_image_option, nullptr));
2005    }
2006    for (size_t i = 0; i < runtime_args_.size(); i++) {
2007      raw_options.push_back(std::make_pair(runtime_args_[i], nullptr));
2008    }
2009
2010    raw_options.push_back(std::make_pair("compilercallbacks", callbacks_.get()));
2011    raw_options.push_back(
2012        std::make_pair("imageinstructionset", GetInstructionSetString(instruction_set_)));
2013
2014    // Only allow no boot image for the runtime if we're compiling one. When we compile an app,
2015    // we don't want fallback mode, it will abort as we do not push a boot classpath (it might
2016    // have been stripped in preopting, anyways).
2017    if (!IsBootImage()) {
2018      raw_options.push_back(std::make_pair("-Xno-dex-file-fallback", nullptr));
2019    }
2020    // Disable libsigchain. We don't don't need it during compilation and it prevents us
2021    // from getting a statically linked version of dex2oat (because of dlsym and RTLD_NEXT).
2022    raw_options.push_back(std::make_pair("-Xno-sig-chain", nullptr));
2023
2024    if (!Runtime::ParseOptions(raw_options, false, runtime_options)) {
2025      LOG(ERROR) << "Failed to parse runtime options";
2026      return false;
2027    }
2028    return true;
2029  }
2030
2031  // Create a runtime necessary for compilation.
2032  bool CreateRuntime(RuntimeArgumentMap&& runtime_options)
2033      SHARED_TRYLOCK_FUNCTION(true, Locks::mutator_lock_) {
2034    if (!Runtime::Create(std::move(runtime_options))) {
2035      LOG(ERROR) << "Failed to create runtime";
2036      return false;
2037    }
2038    runtime_.reset(Runtime::Current());
2039    runtime_->SetInstructionSet(instruction_set_);
2040    for (int i = 0; i < Runtime::kLastCalleeSaveType; i++) {
2041      Runtime::CalleeSaveType type = Runtime::CalleeSaveType(i);
2042      if (!runtime_->HasCalleeSaveMethod(type)) {
2043        runtime_->SetCalleeSaveMethod(runtime_->CreateCalleeSaveMethod(), type);
2044      }
2045    }
2046    runtime_->GetClassLinker()->FixupDexCaches(runtime_->GetResolutionMethod());
2047
2048    // Initialize maps for unstarted runtime. This needs to be here, as running clinits needs this
2049    // set up.
2050    interpreter::UnstartedRuntime::Initialize();
2051
2052    runtime_->GetClassLinker()->RunRootClinits();
2053
2054    return true;
2055  }
2056
2057  void PrepareImageWriter(uintptr_t image_base) {
2058    DCHECK(IsImage());
2059    image_writer_.reset(new ImageWriter(*driver_,
2060                                        image_base,
2061                                        compiler_options_->GetCompilePic(),
2062                                        IsAppImage(),
2063                                        image_storage_mode_,
2064                                        oat_filenames_,
2065                                        dex_file_oat_filename_map_));
2066  }
2067
2068  // Let the ImageWriter write the image files. If we do not compile PIC, also fix up the oat files.
2069  bool CreateImageFile()
2070      REQUIRES(!Locks::mutator_lock_) {
2071    CHECK(image_writer_ != nullptr);
2072    if (!IsBootImage()) {
2073      image_filenames_.push_back(app_image_file_name_.c_str());
2074    }
2075    if (!image_writer_->Write(app_image_fd_, image_filenames_, oat_filenames_)) {
2076      LOG(ERROR) << "Failure during image file creation";
2077      return false;
2078    }
2079
2080    // We need the OatDataBegin entries.
2081    std::map<const char*, uintptr_t> oat_data_begins;
2082    for (const char* oat_filename : oat_filenames_) {
2083      oat_data_begins.emplace(oat_filename, image_writer_->GetOatDataBegin(oat_filename));
2084    }
2085    // Destroy ImageWriter before doing FixupElf.
2086    image_writer_.reset();
2087
2088    for (const char* oat_filename : oat_filenames_) {
2089      // Do not fix up the ELF file if we are --compile-pic or compiling the app image
2090      if (!compiler_options_->GetCompilePic() && IsBootImage()) {
2091        std::unique_ptr<File> oat_file(OS::OpenFileReadWrite(oat_filename));
2092        if (oat_file.get() == nullptr) {
2093          PLOG(ERROR) << "Failed to open ELF file: " << oat_filename;
2094          return false;
2095        }
2096
2097        uintptr_t oat_data_begin = oat_data_begins.find(oat_filename)->second;
2098
2099        if (!ElfWriter::Fixup(oat_file.get(), oat_data_begin)) {
2100          oat_file->Erase();
2101          LOG(ERROR) << "Failed to fixup ELF file " << oat_file->GetPath();
2102          return false;
2103        }
2104
2105        if (oat_file->FlushCloseOrErase()) {
2106          PLOG(ERROR) << "Failed to flush and close fixed ELF file " << oat_file->GetPath();
2107          return false;
2108        }
2109      }
2110    }
2111
2112    return true;
2113  }
2114
2115  // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
2116  static std::unordered_set<std::string>* ReadImageClassesFromFile(
2117      const char* image_classes_filename) {
2118    std::function<std::string(const char*)> process = DotToDescriptor;
2119    return ReadCommentedInputFromFile(image_classes_filename, &process);
2120  }
2121
2122  // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
2123  static std::unordered_set<std::string>* ReadImageClassesFromZip(
2124        const char* zip_filename,
2125        const char* image_classes_filename,
2126        std::string* error_msg) {
2127    std::function<std::string(const char*)> process = DotToDescriptor;
2128    return ReadCommentedInputFromZip(zip_filename, image_classes_filename, &process, error_msg);
2129  }
2130
2131  // Read lines from the given file, dropping comments and empty lines. Post-process each line with
2132  // the given function.
2133  static std::unordered_set<std::string>* ReadCommentedInputFromFile(
2134      const char* input_filename, std::function<std::string(const char*)>* process) {
2135    std::unique_ptr<std::ifstream> input_file(new std::ifstream(input_filename, std::ifstream::in));
2136    if (input_file.get() == nullptr) {
2137      LOG(ERROR) << "Failed to open input file " << input_filename;
2138      return nullptr;
2139    }
2140    std::unique_ptr<std::unordered_set<std::string>> result(
2141        ReadCommentedInputStream(*input_file, process));
2142    input_file->close();
2143    return result.release();
2144  }
2145
2146  // Read lines from the given file from the given zip file, dropping comments and empty lines.
2147  // Post-process each line with the given function.
2148  static std::unordered_set<std::string>* ReadCommentedInputFromZip(
2149      const char* zip_filename,
2150      const char* input_filename,
2151      std::function<std::string(const char*)>* process,
2152      std::string* error_msg) {
2153    std::unique_ptr<ZipArchive> zip_archive(ZipArchive::Open(zip_filename, error_msg));
2154    if (zip_archive.get() == nullptr) {
2155      return nullptr;
2156    }
2157    std::unique_ptr<ZipEntry> zip_entry(zip_archive->Find(input_filename, error_msg));
2158    if (zip_entry.get() == nullptr) {
2159      *error_msg = StringPrintf("Failed to find '%s' within '%s': %s", input_filename,
2160                                zip_filename, error_msg->c_str());
2161      return nullptr;
2162    }
2163    std::unique_ptr<MemMap> input_file(zip_entry->ExtractToMemMap(zip_filename,
2164                                                                  input_filename,
2165                                                                  error_msg));
2166    if (input_file.get() == nullptr) {
2167      *error_msg = StringPrintf("Failed to extract '%s' from '%s': %s", input_filename,
2168                                zip_filename, error_msg->c_str());
2169      return nullptr;
2170    }
2171    const std::string input_string(reinterpret_cast<char*>(input_file->Begin()),
2172                                   input_file->Size());
2173    std::istringstream input_stream(input_string);
2174    return ReadCommentedInputStream(input_stream, process);
2175  }
2176
2177  // Read lines from the given stream, dropping comments and empty lines. Post-process each line
2178  // with the given function.
2179  static std::unordered_set<std::string>* ReadCommentedInputStream(
2180      std::istream& in_stream,
2181      std::function<std::string(const char*)>* process) {
2182    std::unique_ptr<std::unordered_set<std::string>> image_classes(
2183        new std::unordered_set<std::string>);
2184    while (in_stream.good()) {
2185      std::string dot;
2186      std::getline(in_stream, dot);
2187      if (StartsWith(dot, "#") || dot.empty()) {
2188        continue;
2189      }
2190      if (process != nullptr) {
2191        std::string descriptor((*process)(dot.c_str()));
2192        image_classes->insert(descriptor);
2193      } else {
2194        image_classes->insert(dot);
2195      }
2196    }
2197    return image_classes.release();
2198  }
2199
2200  void LogCompletionTime() {
2201    // Note: when creation of a runtime fails, e.g., when trying to compile an app but when there
2202    //       is no image, there won't be a Runtime::Current().
2203    // Note: driver creation can fail when loading an invalid dex file.
2204    LOG(INFO) << "dex2oat took " << PrettyDuration(NanoTime() - start_ns_)
2205              << " (threads: " << thread_count_ << ") "
2206              << ((Runtime::Current() != nullptr && driver_ != nullptr) ?
2207                  driver_->GetMemoryUsageString(kIsDebugBuild || VLOG_IS_ON(compiler)) :
2208                  "");
2209  }
2210
2211  std::string StripIsaFrom(const char* image_filename, InstructionSet isa) {
2212    std::string res(image_filename);
2213    size_t last_slash = res.rfind('/');
2214    if (last_slash == std::string::npos || last_slash == 0) {
2215      return res;
2216    }
2217    size_t penultimate_slash = res.rfind('/', last_slash - 1);
2218    if (penultimate_slash == std::string::npos) {
2219      return res;
2220    }
2221    // Check that the string in-between is the expected one.
2222    if (res.substr(penultimate_slash + 1, last_slash - penultimate_slash - 1) !=
2223            GetInstructionSetString(isa)) {
2224      LOG(WARNING) << "Unexpected string when trying to strip isa: " << res;
2225      return res;
2226    }
2227    return res.substr(0, penultimate_slash) + res.substr(last_slash);
2228  }
2229
2230  // Update the estimate for the oat file with the given index.
2231  void UpdateImageWriter(size_t index) {
2232    DCHECK(image_writer_ != nullptr);
2233    DCHECK_LT(index, oat_filenames_.size());
2234
2235    image_writer_->UpdateOatFile(oat_filenames_[index]);
2236  }
2237
2238  std::unique_ptr<CompilerOptions> compiler_options_;
2239  Compiler::Kind compiler_kind_;
2240
2241  InstructionSet instruction_set_;
2242  std::unique_ptr<const InstructionSetFeatures> instruction_set_features_;
2243
2244  std::unique_ptr<SafeMap<std::string, std::string> > key_value_store_;
2245
2246  std::unique_ptr<VerificationResults> verification_results_;
2247
2248  DexFileToMethodInlinerMap method_inliner_map_;
2249  std::unique_ptr<QuickCompilerCallbacks> callbacks_;
2250
2251  // Ownership for the class path files.
2252  std::vector<std::unique_ptr<const DexFile>> class_path_files_;
2253
2254  std::unique_ptr<Runtime> runtime_;
2255
2256  size_t thread_count_;
2257  uint64_t start_ns_;
2258  std::unique_ptr<WatchDog> watchdog_;
2259  std::vector<std::unique_ptr<File>> oat_files_;
2260  std::string oat_location_;
2261  std::vector<const char*> oat_filenames_;
2262  std::vector<const char*> oat_unstripped_;
2263  int oat_fd_;
2264  std::vector<const char*> dex_filenames_;
2265  std::vector<const char*> dex_locations_;
2266  int zip_fd_;
2267  std::string zip_location_;
2268  std::string boot_image_filename_;
2269  std::vector<const char*> runtime_args_;
2270  std::vector<const char*> image_filenames_;
2271  uintptr_t image_base_;
2272  const char* image_classes_zip_filename_;
2273  const char* image_classes_filename_;
2274  ImageHeader::StorageMode image_storage_mode_;
2275  const char* compiled_classes_zip_filename_;
2276  const char* compiled_classes_filename_;
2277  const char* compiled_methods_zip_filename_;
2278  const char* compiled_methods_filename_;
2279  std::unique_ptr<std::unordered_set<std::string>> image_classes_;
2280  std::unique_ptr<std::unordered_set<std::string>> compiled_classes_;
2281  std::unique_ptr<std::unordered_set<std::string>> compiled_methods_;
2282  bool app_image_;
2283  bool boot_image_;
2284  bool is_host_;
2285  std::string android_root_;
2286  std::vector<const DexFile*> dex_files_;
2287  std::string no_inline_from_string_;
2288  std::vector<jobject> dex_caches_;
2289  std::vector<std::unique_ptr<const DexFile>> opened_dex_files_;
2290
2291  std::unique_ptr<ImageWriter> image_writer_;
2292  std::unique_ptr<CompilerDriver> driver_;
2293
2294  std::vector<std::string> verbose_methods_;
2295  bool dump_stats_;
2296  bool dump_passes_;
2297  bool dump_timing_;
2298  bool dump_slow_timing_;
2299  std::string dump_cfg_file_name_;
2300  bool dump_cfg_append_;
2301  std::string swap_file_name_;
2302  int swap_fd_;
2303  std::string app_image_file_name_;
2304  int app_image_fd_;
2305  std::vector<std::string> profile_files_;
2306  std::vector<std::string> reference_profile_files_;
2307  std::unique_ptr<ProfileCompilationInfo> profile_compilation_info_;
2308  TimingLogger* timings_;
2309  std::unique_ptr<CumulativeLogger> compiler_phases_timings_;
2310  std::vector<std::vector<const DexFile*>> dex_files_per_oat_file_;
2311  std::unordered_map<const DexFile*, const char*> dex_file_oat_filename_map_;
2312
2313  // Backing storage.
2314  std::vector<std::string> char_backing_storage_;
2315
2316  DISALLOW_IMPLICIT_CONSTRUCTORS(Dex2Oat);
2317};
2318
2319static void b13564922() {
2320#if defined(__linux__) && defined(__arm__)
2321  int major, minor;
2322  struct utsname uts;
2323  if (uname(&uts) != -1 &&
2324      sscanf(uts.release, "%d.%d", &major, &minor) == 2 &&
2325      ((major < 3) || ((major == 3) && (minor < 4)))) {
2326    // Kernels before 3.4 don't handle the ASLR well and we can run out of address
2327    // space (http://b/13564922). Work around the issue by inhibiting further mmap() randomization.
2328    int old_personality = personality(0xffffffff);
2329    if ((old_personality & ADDR_NO_RANDOMIZE) == 0) {
2330      int new_personality = personality(old_personality | ADDR_NO_RANDOMIZE);
2331      if (new_personality == -1) {
2332        LOG(WARNING) << "personality(. | ADDR_NO_RANDOMIZE) failed.";
2333      }
2334    }
2335  }
2336#endif
2337}
2338
2339static int CompileImage(Dex2Oat& dex2oat) {
2340  dex2oat.Compile();
2341
2342  if (!dex2oat.CreateOatFiles()) {
2343    dex2oat.EraseOatFiles();
2344    return EXIT_FAILURE;
2345  }
2346
2347  // Close the image oat files. We always expect the output file by name, and it will be
2348  // re-opened from the unstripped name. Note: it's easier to *flush* and close...
2349  if (!dex2oat.FlushCloseOatFiles()) {
2350    return EXIT_FAILURE;
2351  }
2352
2353  // Creates the boot.art and patches the oat files.
2354  if (!dex2oat.HandleImage()) {
2355    return EXIT_FAILURE;
2356  }
2357
2358  // When given --host, finish early without stripping.
2359  if (dex2oat.IsHost()) {
2360    dex2oat.DumpTiming();
2361    return EXIT_SUCCESS;
2362  }
2363
2364  // Copy stripped to unstripped location, if necessary.
2365  if (!dex2oat.CopyStrippedToUnstripped()) {
2366    return EXIT_FAILURE;
2367  }
2368
2369  // FlushClose again, as stripping might have re-opened the oat files.
2370  if (!dex2oat.FlushCloseOatFiles()) {
2371    return EXIT_FAILURE;
2372  }
2373
2374  dex2oat.DumpTiming();
2375  return EXIT_SUCCESS;
2376}
2377
2378static int CompileApp(Dex2Oat& dex2oat) {
2379  dex2oat.Compile();
2380
2381  if (!dex2oat.CreateOatFiles()) {
2382    dex2oat.EraseOatFiles();
2383    return EXIT_FAILURE;
2384  }
2385
2386  // Do not close the oat files here. We might have gotten the output file by file descriptor,
2387  // which we would lose.
2388
2389  // When given --host, finish early without stripping.
2390  if (dex2oat.IsHost()) {
2391    if (!dex2oat.FlushCloseOatFiles()) {
2392      return EXIT_FAILURE;
2393    }
2394
2395    dex2oat.DumpTiming();
2396    return EXIT_SUCCESS;
2397  }
2398
2399  // Copy stripped to unstripped location, if necessary. This will implicitly flush & close the
2400  // stripped versions. If this is given, we expect to be able to open writable files by name.
2401  if (!dex2oat.CopyStrippedToUnstripped()) {
2402    return EXIT_FAILURE;
2403  }
2404
2405  // Flush and close the files.
2406  if (!dex2oat.FlushCloseOatFiles()) {
2407    return EXIT_FAILURE;
2408  }
2409
2410  dex2oat.DumpTiming();
2411  return EXIT_SUCCESS;
2412}
2413
2414static int dex2oat(int argc, char** argv) {
2415  b13564922();
2416
2417  TimingLogger timings("compiler", false, false);
2418
2419  Dex2Oat dex2oat(&timings);
2420
2421  // Parse arguments. Argument mistakes will lead to exit(EXIT_FAILURE) in UsageError.
2422  dex2oat.ParseArgs(argc, argv);
2423
2424  // Process profile information and assess if we need to do a profile guided compilation.
2425  // This operation involves I/O.
2426  if (dex2oat.UseProfileGuidedCompilation()) {
2427    if (dex2oat.ProcessProfiles()) {
2428      if (!dex2oat.ShouldCompileBasedOnProfiles()) {
2429        LOG(INFO) << "Skipped compilation because of insignificant profile delta";
2430        return EXIT_SUCCESS;
2431      }
2432    } else {
2433      LOG(WARNING) << "Failed to process profile files";
2434      return EXIT_FAILURE;
2435    }
2436  }
2437
2438  // Check early that the result of compilation can be written
2439  if (!dex2oat.OpenFile()) {
2440    return EXIT_FAILURE;
2441  }
2442
2443  // Print the complete line when any of the following is true:
2444  //   1) Debug build
2445  //   2) Compiling an image
2446  //   3) Compiling with --host
2447  //   4) Compiling on the host (not a target build)
2448  // Otherwise, print a stripped command line.
2449  if (kIsDebugBuild || dex2oat.IsBootImage() || dex2oat.IsHost() || !kIsTargetBuild) {
2450    LOG(INFO) << CommandLine();
2451  } else {
2452    LOG(INFO) << StrippedCommandLine();
2453  }
2454
2455  if (!dex2oat.Setup()) {
2456    dex2oat.EraseOatFiles();
2457    return EXIT_FAILURE;
2458  }
2459
2460  bool result;
2461  if (dex2oat.IsImage()) {
2462    result = CompileImage(dex2oat);
2463  } else {
2464    result = CompileApp(dex2oat);
2465  }
2466
2467  dex2oat.Shutdown();
2468  return result;
2469}
2470}  // namespace art
2471
2472int main(int argc, char** argv) {
2473  int result = art::dex2oat(argc, argv);
2474  // Everything was done, do an explicit exit here to avoid running Runtime destructors that take
2475  // time (bug 10645725) unless we're a debug build or running on valgrind. Note: The Dex2Oat class
2476  // should not destruct the runtime in this case.
2477  if (!art::kIsDebugBuild && (RUNNING_ON_MEMORY_TOOL == 0)) {
2478    exit(result);
2479  }
2480  return result;
2481}
2482