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1 /*
2  * Copyright (C) 2011 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include <stdio.h>
18 #include <stdlib.h>
19 #include <sys/stat.h>
20 #include <valgrind.h>
21 
22 #include <fstream>
23 #include <iostream>
24 #include <sstream>
25 #include <string>
26 #include <vector>
27 
28 #include "base/stl_util.h"
29 #include "base/stringpiece.h"
30 #include "base/timing_logger.h"
31 #include "base/unix_file/fd_file.h"
32 #include "class_linker.h"
33 #include "dex_file-inl.h"
34 #include "driver/compiler_driver.h"
35 #include "elf_fixup.h"
36 #include "elf_stripper.h"
37 #include "gc/space/image_space.h"
38 #include "gc/space/space-inl.h"
39 #include "image_writer.h"
40 #include "leb128.h"
41 #include "mirror/art_method-inl.h"
42 #include "mirror/class-inl.h"
43 #include "mirror/class_loader.h"
44 #include "mirror/object-inl.h"
45 #include "mirror/object_array-inl.h"
46 #include "oat_writer.h"
47 #include "object_utils.h"
48 #include "os.h"
49 #include "runtime.h"
50 #include "ScopedLocalRef.h"
51 #include "scoped_thread_state_change.h"
52 #include "sirt_ref.h"
53 #include "vector_output_stream.h"
54 #include "well_known_classes.h"
55 #include "zip_archive.h"
56 
57 namespace art {
58 
UsageErrorV(const char * fmt,va_list ap)59 static void UsageErrorV(const char* fmt, va_list ap) {
60   std::string error;
61   StringAppendV(&error, fmt, ap);
62   LOG(ERROR) << error;
63 }
64 
UsageError(const char * fmt,...)65 static void UsageError(const char* fmt, ...) {
66   va_list ap;
67   va_start(ap, fmt);
68   UsageErrorV(fmt, ap);
69   va_end(ap);
70 }
71 
Usage(const char * fmt,...)72 static void Usage(const char* fmt, ...) {
73   va_list ap;
74   va_start(ap, fmt);
75   UsageErrorV(fmt, ap);
76   va_end(ap);
77 
78   UsageError("Usage: dex2oat [options]...");
79   UsageError("");
80   UsageError("  --dex-file=<dex-file>: specifies a .dex file to compile.");
81   UsageError("      Example: --dex-file=/system/framework/core.jar");
82   UsageError("");
83   UsageError("  --zip-fd=<file-descriptor>: specifies a file descriptor of a zip file");
84   UsageError("      containing a classes.dex file to compile.");
85   UsageError("      Example: --zip-fd=5");
86   UsageError("");
87   UsageError("  --zip-location=<zip-location>: specifies a symbolic name for the file");
88   UsageError("      corresponding to the file descriptor specified by --zip-fd.");
89   UsageError("      Example: --zip-location=/system/app/Calculator.apk");
90   UsageError("");
91   UsageError("  --oat-file=<file.oat>: specifies the oat output destination via a filename.");
92   UsageError("      Example: --oat-file=/system/framework/boot.oat");
93   UsageError("");
94   UsageError("  --oat-fd=<number>: specifies the oat output destination via a file descriptor.");
95   UsageError("      Example: --oat-file=/system/framework/boot.oat");
96   UsageError("");
97   UsageError("  --oat-location=<oat-name>: specifies a symbolic name for the file corresponding");
98   UsageError("      to the file descriptor specified by --oat-fd.");
99   UsageError("      Example: --oat-location=/data/dalvik-cache/system@app@Calculator.apk.oat");
100   UsageError("");
101   UsageError("  --oat-symbols=<file.oat>: specifies the oat output destination with full symbols.");
102   UsageError("      Example: --oat-symbols=/symbols/system/framework/boot.oat");
103   UsageError("");
104   UsageError("  --bitcode=<file.bc>: specifies the optional bitcode filename.");
105   UsageError("      Example: --bitcode=/system/framework/boot.bc");
106   UsageError("");
107   UsageError("  --image=<file.art>: specifies the output image filename.");
108   UsageError("      Example: --image=/system/framework/boot.art");
109   UsageError("");
110   UsageError("  --image-classes=<classname-file>: specifies classes to include in an image.");
111   UsageError("      Example: --image=frameworks/base/preloaded-classes");
112   UsageError("");
113   UsageError("  --base=<hex-address>: specifies the base address when creating a boot image.");
114   UsageError("      Example: --base=0x50000000");
115   UsageError("");
116   UsageError("  --boot-image=<file.art>: provide the image file for the boot class path.");
117   UsageError("      Example: --boot-image=/system/framework/boot.art");
118   UsageError("      Default: <host-prefix>/system/framework/boot.art");
119   UsageError("");
120   UsageError("  --host-prefix=<path>: used to translate host paths to target paths during");
121   UsageError("      cross compilation.");
122   UsageError("      Example: --host-prefix=out/target/product/crespo");
123   UsageError("      Default: $ANDROID_PRODUCT_OUT");
124   UsageError("");
125   UsageError("  --android-root=<path>: used to locate libraries for portable linking.");
126   UsageError("      Example: --android-root=out/host/linux-x86");
127   UsageError("      Default: $ANDROID_ROOT");
128   UsageError("");
129   UsageError("  --instruction-set=(arm|mips|x86): compile for a particular instruction");
130   UsageError("      set.");
131   UsageError("      Example: --instruction-set=x86");
132   UsageError("      Default: arm");
133   UsageError("");
134   UsageError("  --compiler-backend=(Quick|QuickGBC|Portable): select compiler backend");
135   UsageError("      set.");
136   UsageError("      Example: --instruction-set=Portable");
137   UsageError("      Default: Quick");
138   UsageError("");
139   UsageError("  --host: used with Portable backend to link against host runtime libraries");
140   UsageError("");
141   UsageError("  --dump-timing: display a breakdown of where time was spent");
142   UsageError("");
143   UsageError("  --runtime-arg <argument>: used to specify various arguments for the runtime,");
144   UsageError("      such as initial heap size, maximum heap size, and verbose output.");
145   UsageError("      Use a separate --runtime-arg switch for each argument.");
146   UsageError("      Example: --runtime-arg -Xms256m");
147   UsageError("");
148   std::cerr << "See log for usage error information\n";
149   exit(EXIT_FAILURE);
150 }
151 
152 class Dex2Oat {
153  public:
Create(Dex2Oat ** p_dex2oat,Runtime::Options & options,CompilerBackend compiler_backend,InstructionSet instruction_set,size_t thread_count)154   static bool Create(Dex2Oat** p_dex2oat,
155                      Runtime::Options& options,
156                      CompilerBackend compiler_backend,
157                      InstructionSet instruction_set,
158                      size_t thread_count)
159       SHARED_TRYLOCK_FUNCTION(true, Locks::mutator_lock_) {
160     if (!CreateRuntime(options, instruction_set)) {
161       *p_dex2oat = NULL;
162       return false;
163     }
164     *p_dex2oat = new Dex2Oat(Runtime::Current(), compiler_backend, instruction_set, thread_count);
165     return true;
166   }
167 
~Dex2Oat()168   ~Dex2Oat() {
169     delete runtime_;
170     VLOG(compiler) << "dex2oat took " << PrettyDuration(NanoTime() - start_ns_)
171               << " (threads: " << thread_count_ << ")";
172   }
173 
174 
175   // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
ReadImageClassesFromFile(const char * image_classes_filename)176   CompilerDriver::DescriptorSet* ReadImageClassesFromFile(const char* image_classes_filename) {
177     UniquePtr<std::ifstream> image_classes_file(new std::ifstream(image_classes_filename,
178                                                                   std::ifstream::in));
179     if (image_classes_file.get() == NULL) {
180       LOG(ERROR) << "Failed to open image classes file " << image_classes_filename;
181       return NULL;
182     }
183     UniquePtr<CompilerDriver::DescriptorSet> result(ReadImageClasses(*image_classes_file.get()));
184     image_classes_file->close();
185     return result.release();
186   }
187 
ReadImageClasses(std::istream & image_classes_stream)188   CompilerDriver::DescriptorSet* ReadImageClasses(std::istream& image_classes_stream) {
189     UniquePtr<CompilerDriver::DescriptorSet> image_classes(new CompilerDriver::DescriptorSet);
190     while (image_classes_stream.good()) {
191       std::string dot;
192       std::getline(image_classes_stream, dot);
193       if (StartsWith(dot, "#") || dot.empty()) {
194         continue;
195       }
196       std::string descriptor(DotToDescriptor(dot.c_str()));
197       image_classes->insert(descriptor);
198     }
199     return image_classes.release();
200   }
201 
202   // Reads the class names (java.lang.Object) and returns a set of descriptors (Ljava/lang/Object;)
ReadImageClassesFromZip(const std::string & zip_filename,const char * image_classes_filename)203   CompilerDriver::DescriptorSet* ReadImageClassesFromZip(const std::string& zip_filename,
204                                                          const char* image_classes_filename) {
205     UniquePtr<ZipArchive> zip_archive(ZipArchive::Open(zip_filename));
206     if (zip_archive.get() == NULL) {
207       LOG(ERROR) << "Failed to open zip file " << zip_filename;
208       return NULL;
209     }
210     UniquePtr<ZipEntry> zip_entry(zip_archive->Find(image_classes_filename));
211     if (zip_entry.get() == NULL) {
212       LOG(ERROR) << "Failed to find " << image_classes_filename << " within " << zip_filename;
213       return NULL;
214     }
215     UniquePtr<MemMap> image_classes_file(zip_entry->ExtractToMemMap(image_classes_filename));
216     if (image_classes_file.get() == NULL) {
217       LOG(ERROR) << "Failed to extract " << image_classes_filename << " from " << zip_filename;
218       return NULL;
219     }
220     const std::string image_classes_string(reinterpret_cast<char*>(image_classes_file->Begin()),
221                                            image_classes_file->Size());
222     std::istringstream image_classes_stream(image_classes_string);
223     return ReadImageClasses(image_classes_stream);
224   }
225 
CreateOatFile(const std::string & boot_image_option,const std::string * host_prefix,const std::string & android_root,bool is_host,const std::vector<const DexFile * > & dex_files,File * oat_file,const std::string & bitcode_filename,bool image,UniquePtr<CompilerDriver::DescriptorSet> & image_classes,bool dump_stats,base::TimingLogger & timings)226   const CompilerDriver* CreateOatFile(const std::string& boot_image_option,
227                                       const std::string* host_prefix,
228                                       const std::string& android_root,
229                                       bool is_host,
230                                       const std::vector<const DexFile*>& dex_files,
231                                       File* oat_file,
232                                       const std::string& bitcode_filename,
233                                       bool image,
234                                       UniquePtr<CompilerDriver::DescriptorSet>& image_classes,
235                                       bool dump_stats,
236                                       base::TimingLogger& timings) {
237     // SirtRef and ClassLoader creation needs to come after Runtime::Create
238     jobject class_loader = NULL;
239     Thread* self = Thread::Current();
240     if (!boot_image_option.empty()) {
241       ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
242       std::vector<const DexFile*> class_path_files(dex_files);
243       OpenClassPathFiles(runtime_->GetClassPathString(), class_path_files);
244       ScopedObjectAccess soa(self);
245       for (size_t i = 0; i < class_path_files.size(); i++) {
246         class_linker->RegisterDexFile(*class_path_files[i]);
247       }
248       soa.Env()->AllocObject(WellKnownClasses::dalvik_system_PathClassLoader);
249       ScopedLocalRef<jobject> class_loader_local(soa.Env(),
250           soa.Env()->AllocObject(WellKnownClasses::dalvik_system_PathClassLoader));
251       class_loader = soa.Env()->NewGlobalRef(class_loader_local.get());
252       Runtime::Current()->SetCompileTimeClassPath(class_loader, class_path_files);
253     }
254 
255     UniquePtr<CompilerDriver> driver(new CompilerDriver(compiler_backend_,
256                                                         instruction_set_,
257                                                         image,
258                                                         image_classes.release(),
259                                                         thread_count_,
260                                                         dump_stats));
261 
262     if (compiler_backend_ == kPortable) {
263       driver->SetBitcodeFileName(bitcode_filename);
264     }
265 
266     driver->CompileAll(class_loader, dex_files, timings);
267 
268     timings.NewSplit("dex2oat OatWriter");
269     std::string image_file_location;
270     uint32_t image_file_location_oat_checksum = 0;
271     uint32_t image_file_location_oat_data_begin = 0;
272     if (!driver->IsImage()) {
273       gc::space::ImageSpace* image_space = Runtime::Current()->GetHeap()->GetImageSpace();
274       image_file_location_oat_checksum = image_space->GetImageHeader().GetOatChecksum();
275       image_file_location_oat_data_begin =
276           reinterpret_cast<uint32_t>(image_space->GetImageHeader().GetOatDataBegin());
277       image_file_location = image_space->GetImageFilename();
278       if (host_prefix != NULL && StartsWith(image_file_location, host_prefix->c_str())) {
279         image_file_location = image_file_location.substr(host_prefix->size());
280       }
281     }
282 
283     OatWriter oat_writer(dex_files,
284                          image_file_location_oat_checksum,
285                          image_file_location_oat_data_begin,
286                          image_file_location,
287                          driver.get());
288 
289     if (!driver->WriteElf(android_root, is_host, dex_files, oat_writer, oat_file)) {
290       LOG(ERROR) << "Failed to write ELF file " << oat_file->GetPath();
291       return NULL;
292     }
293 
294     return driver.release();
295   }
296 
CreateImageFile(const std::string & image_filename,uintptr_t image_base,const std::string & oat_filename,const std::string & oat_location,const CompilerDriver & compiler)297   bool CreateImageFile(const std::string& image_filename,
298                        uintptr_t image_base,
299                        const std::string& oat_filename,
300                        const std::string& oat_location,
301                        const CompilerDriver& compiler)
302       LOCKS_EXCLUDED(Locks::mutator_lock_) {
303     uintptr_t oat_data_begin;
304     {
305       // ImageWriter is scoped so it can free memory before doing FixupElf
306       ImageWriter image_writer(compiler);
307       if (!image_writer.Write(image_filename, image_base, oat_filename, oat_location)) {
308         LOG(ERROR) << "Failed to create image file " << image_filename;
309         return false;
310       }
311       oat_data_begin = image_writer.GetOatDataBegin();
312     }
313 
314     UniquePtr<File> oat_file(OS::OpenFileReadWrite(oat_filename.c_str()));
315     if (oat_file.get() == NULL) {
316       PLOG(ERROR) << "Failed to open ELF file: " << oat_filename;
317       return false;
318     }
319     if (!ElfFixup::Fixup(oat_file.get(), oat_data_begin)) {
320       LOG(ERROR) << "Failed to fixup ELF file " << oat_file->GetPath();
321       return false;
322     }
323     return true;
324   }
325 
326  private:
Dex2Oat(Runtime * runtime,CompilerBackend compiler_backend,InstructionSet instruction_set,size_t thread_count)327   explicit Dex2Oat(Runtime* runtime,
328                    CompilerBackend compiler_backend,
329                    InstructionSet instruction_set,
330                    size_t thread_count)
331       : compiler_backend_(compiler_backend),
332         instruction_set_(instruction_set),
333         runtime_(runtime),
334         thread_count_(thread_count),
335         start_ns_(NanoTime()) {
336   }
337 
CreateRuntime(Runtime::Options & options,InstructionSet instruction_set)338   static bool CreateRuntime(Runtime::Options& options, InstructionSet instruction_set)
339       SHARED_TRYLOCK_FUNCTION(true, Locks::mutator_lock_) {
340     if (!Runtime::Create(options, false)) {
341       LOG(ERROR) << "Failed to create runtime";
342       return false;
343     }
344     Runtime* runtime = Runtime::Current();
345     // if we loaded an existing image, we will reuse values from the image roots.
346     if (!runtime->HasResolutionMethod()) {
347       runtime->SetResolutionMethod(runtime->CreateResolutionMethod());
348     }
349     for (int i = 0; i < Runtime::kLastCalleeSaveType; i++) {
350       Runtime::CalleeSaveType type = Runtime::CalleeSaveType(i);
351       if (!runtime->HasCalleeSaveMethod(type)) {
352         runtime->SetCalleeSaveMethod(runtime->CreateCalleeSaveMethod(instruction_set, type), type);
353       }
354     }
355     runtime->GetClassLinker()->FixupDexCaches(runtime->GetResolutionMethod());
356     return true;
357   }
358 
359   // Appends to dex_files any elements of class_path that it doesn't already
360   // contain. This will open those dex files as necessary.
OpenClassPathFiles(const std::string & class_path,std::vector<const DexFile * > & dex_files)361   static void OpenClassPathFiles(const std::string& class_path,
362                                  std::vector<const DexFile*>& dex_files) {
363     std::vector<std::string> parsed;
364     Split(class_path, ':', parsed);
365     // Take Locks::mutator_lock_ so that lock ordering on the ClassLinker::dex_lock_ is maintained.
366     ScopedObjectAccess soa(Thread::Current());
367     for (size_t i = 0; i < parsed.size(); ++i) {
368       if (DexFilesContains(dex_files, parsed[i])) {
369         continue;
370       }
371       const DexFile* dex_file = DexFile::Open(parsed[i], parsed[i]);
372       if (dex_file == NULL) {
373         LOG(WARNING) << "Failed to open dex file " << parsed[i];
374       } else {
375         dex_files.push_back(dex_file);
376       }
377     }
378   }
379 
380   // Returns true if dex_files has a dex with the named location.
DexFilesContains(const std::vector<const DexFile * > & dex_files,const std::string & location)381   static bool DexFilesContains(const std::vector<const DexFile*>& dex_files,
382                                const std::string& location) {
383     for (size_t i = 0; i < dex_files.size(); ++i) {
384       if (dex_files[i]->GetLocation() == location) {
385         return true;
386       }
387     }
388     return false;
389   }
390 
391   const CompilerBackend compiler_backend_;
392 
393   const InstructionSet instruction_set_;
394 
395   Runtime* runtime_;
396   size_t thread_count_;
397   uint64_t start_ns_;
398 
399   DISALLOW_IMPLICIT_CONSTRUCTORS(Dex2Oat);
400 };
401 
ParseInt(const char * in,int * out)402 static bool ParseInt(const char* in, int* out) {
403   char* end;
404   int result = strtol(in, &end, 10);
405   if (in == end || *end != '\0') {
406     return false;
407   }
408   *out = result;
409   return true;
410 }
411 
OpenDexFiles(const std::vector<const char * > & dex_filenames,const std::vector<const char * > & dex_locations,std::vector<const DexFile * > & dex_files)412 static size_t OpenDexFiles(const std::vector<const char*>& dex_filenames,
413                            const std::vector<const char*>& dex_locations,
414                            std::vector<const DexFile*>& dex_files) {
415   size_t failure_count = 0;
416   for (size_t i = 0; i < dex_filenames.size(); i++) {
417     const char* dex_filename = dex_filenames[i];
418     const char* dex_location = dex_locations[i];
419     std::string error_msg;
420     if (!OS::FileExists(dex_filename)) {
421       LOG(WARNING) << "Skipping non-existent dex file '" << dex_filename << "'";
422       continue;
423     }
424     const DexFile* dex_file = DexFile::Open(dex_filename, dex_location);
425     if (dex_file == NULL) {
426       LOG(WARNING) << "Failed to open .dex from file '" << dex_filename << "'\n";
427       ++failure_count;
428     } else {
429       dex_files.push_back(dex_file);
430     }
431   }
432   return failure_count;
433 }
434 
435 // The primary goal of the watchdog is to prevent stuck build servers
436 // during development when fatal aborts lead to a cascade of failures
437 // that result in a deadlock.
438 class WatchDog {
439 // WatchDog defines its own CHECK_PTHREAD_CALL to avoid using Log which uses locks
440 #undef CHECK_PTHREAD_CALL
441 #define CHECK_WATCH_DOG_PTHREAD_CALL(call, args, what) \
442   do { \
443     int rc = call args; \
444     if (rc != 0) { \
445       errno = rc; \
446       std::string message(# call); \
447       message += " failed for "; \
448       message += reason; \
449       Fatal(message); \
450     } \
451   } while (false)
452 
453  public:
WatchDog(bool is_watch_dog_enabled)454   explicit WatchDog(bool is_watch_dog_enabled) {
455     is_watch_dog_enabled_ = is_watch_dog_enabled;
456     if (!is_watch_dog_enabled_) {
457       return;
458     }
459     shutting_down_ = false;
460     const char* reason = "dex2oat watch dog thread startup";
461     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_init, (&mutex_, NULL), reason);
462     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_init, (&cond_, NULL), reason);
463     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_init, (&attr_), reason);
464     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_create, (&pthread_, &attr_, &CallBack, this), reason);
465     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_attr_destroy, (&attr_), reason);
466   }
~WatchDog()467   ~WatchDog() {
468     if (!is_watch_dog_enabled_) {
469       return;
470     }
471     const char* reason = "dex2oat watch dog thread shutdown";
472     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
473     shutting_down_ = true;
474     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_signal, (&cond_), reason);
475     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
476 
477     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_join, (pthread_, NULL), reason);
478 
479     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_cond_destroy, (&cond_), reason);
480     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_destroy, (&mutex_), reason);
481   }
482 
483  private:
CallBack(void * arg)484   static void* CallBack(void* arg) {
485     WatchDog* self = reinterpret_cast<WatchDog*>(arg);
486     ::art::SetThreadName("dex2oat watch dog");
487     self->Wait();
488     return NULL;
489   }
490 
Message(char severity,const std::string & message)491   static void Message(char severity, const std::string& message) {
492     // TODO: Remove when we switch to LOG when we can guarantee it won't prevent shutdown in error
493     //       cases.
494     fprintf(stderr, "dex2oat%s %c %d %d %s\n",
495             kIsDebugBuild ? "d" : "",
496             severity,
497             getpid(),
498             GetTid(),
499             message.c_str());
500   }
501 
Warn(const std::string & message)502   static void Warn(const std::string& message) {
503     Message('W', message);
504   }
505 
Fatal(const std::string & message)506   static void Fatal(const std::string& message) {
507     Message('F', message);
508     exit(1);
509   }
510 
Wait()511   void Wait() {
512     bool warning = true;
513     CHECK_GT(kWatchDogTimeoutSeconds, kWatchDogWarningSeconds);
514     // TODO: tune the multiplier for GC verification, the following is just to make the timeout
515     //       large.
516     int64_t multiplier = gc::kDesiredHeapVerification > gc::kVerifyAllFast ? 100 : 1;
517     timespec warning_ts;
518     InitTimeSpec(true, CLOCK_REALTIME, multiplier * kWatchDogWarningSeconds * 1000, 0, &warning_ts);
519     timespec timeout_ts;
520     InitTimeSpec(true, CLOCK_REALTIME, multiplier * kWatchDogTimeoutSeconds * 1000, 0, &timeout_ts);
521     const char* reason = "dex2oat watch dog thread waiting";
522     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_lock, (&mutex_), reason);
523     while (!shutting_down_) {
524       int rc = TEMP_FAILURE_RETRY(pthread_cond_timedwait(&cond_, &mutex_,
525                                                          warning ? &warning_ts
526                                                                  : &timeout_ts));
527       if (rc == ETIMEDOUT) {
528         std::string message(StringPrintf("dex2oat did not finish after %d seconds",
529                                          warning ? kWatchDogWarningSeconds
530                                                  : kWatchDogTimeoutSeconds));
531         if (warning) {
532           Warn(message.c_str());
533           warning = false;
534         } else {
535           Fatal(message.c_str());
536         }
537       } else if (rc != 0) {
538         std::string message(StringPrintf("pthread_cond_timedwait failed: %s",
539                                          strerror(errno)));
540         Fatal(message.c_str());
541       }
542     }
543     CHECK_WATCH_DOG_PTHREAD_CALL(pthread_mutex_unlock, (&mutex_), reason);
544   }
545 
546   // When setting timeouts, keep in mind that the build server may not be as fast as your desktop.
547 #if ART_USE_PORTABLE_COMPILER
548   static const unsigned int kWatchDogWarningSeconds =  2 * 60;  // 2 minutes.
549   static const unsigned int kWatchDogTimeoutSeconds = 30 * 60;  // 25 minutes + buffer.
550 #else
551   static const unsigned int kWatchDogWarningSeconds =  1 * 60;  // 1 minute.
552   static const unsigned int kWatchDogTimeoutSeconds =  6 * 60;  // 5 minutes + buffer.
553 #endif
554 
555   bool is_watch_dog_enabled_;
556   bool shutting_down_;
557   // TODO: Switch to Mutex when we can guarantee it won't prevent shutdown in error cases.
558   pthread_mutex_t mutex_;
559   pthread_cond_t cond_;
560   pthread_attr_t attr_;
561   pthread_t pthread_;
562 };
563 const unsigned int WatchDog::kWatchDogWarningSeconds;
564 const unsigned int WatchDog::kWatchDogTimeoutSeconds;
565 
dex2oat(int argc,char ** argv)566 static int dex2oat(int argc, char** argv) {
567   base::TimingLogger timings("compiler", false, false);
568 
569   InitLogging(argv);
570 
571   // Skip over argv[0].
572   argv++;
573   argc--;
574 
575   if (argc == 0) {
576     Usage("No arguments specified");
577   }
578 
579   std::vector<const char*> dex_filenames;
580   std::vector<const char*> dex_locations;
581   int zip_fd = -1;
582   std::string zip_location;
583   std::string oat_filename;
584   std::string oat_symbols;
585   std::string oat_location;
586   int oat_fd = -1;
587   std::string bitcode_filename;
588   const char* image_classes_zip_filename = NULL;
589   const char* image_classes_filename = NULL;
590   std::string image_filename;
591   std::string boot_image_filename;
592   uintptr_t image_base = 0;
593   UniquePtr<std::string> host_prefix;
594   std::string android_root;
595   std::vector<const char*> runtime_args;
596   int thread_count = sysconf(_SC_NPROCESSORS_CONF);
597 #if defined(ART_USE_PORTABLE_COMPILER)
598   CompilerBackend compiler_backend = kPortable;
599 #else
600   CompilerBackend compiler_backend = kQuick;
601 #endif
602 #if defined(__arm__)
603   InstructionSet instruction_set = kThumb2;
604 #elif defined(__i386__)
605   InstructionSet instruction_set = kX86;
606 #elif defined(__mips__)
607   InstructionSet instruction_set = kMips;
608 #else
609 #error "Unsupported architecture"
610 #endif
611   bool is_host = false;
612   bool dump_stats = kIsDebugBuild;
613   bool dump_timing = false;
614   bool dump_slow_timing = kIsDebugBuild;
615   bool watch_dog_enabled = !kIsTargetBuild;
616 
617 
618   for (int i = 0; i < argc; i++) {
619     const StringPiece option(argv[i]);
620     bool log_options = false;
621     if (log_options) {
622       LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
623     }
624     if (option.starts_with("--dex-file=")) {
625       dex_filenames.push_back(option.substr(strlen("--dex-file=")).data());
626     } else if (option.starts_with("--dex-location=")) {
627       dex_locations.push_back(option.substr(strlen("--dex-location=")).data());
628     } else if (option.starts_with("--zip-fd=")) {
629       const char* zip_fd_str = option.substr(strlen("--zip-fd=")).data();
630       if (!ParseInt(zip_fd_str, &zip_fd)) {
631         Usage("Failed to parse --zip-fd argument '%s' as an integer", zip_fd_str);
632       }
633     } else if (option.starts_with("--zip-location=")) {
634       zip_location = option.substr(strlen("--zip-location=")).data();
635     } else if (option.starts_with("--oat-file=")) {
636       oat_filename = option.substr(strlen("--oat-file=")).data();
637     } else if (option.starts_with("--oat-symbols=")) {
638       oat_symbols = option.substr(strlen("--oat-symbols=")).data();
639     } else if (option.starts_with("--oat-fd=")) {
640       const char* oat_fd_str = option.substr(strlen("--oat-fd=")).data();
641       if (!ParseInt(oat_fd_str, &oat_fd)) {
642         Usage("Failed to parse --oat-fd argument '%s' as an integer", oat_fd_str);
643       }
644     } else if (option == "--watch-dog") {
645       watch_dog_enabled = true;
646     } else if (option == "--no-watch-dog") {
647       watch_dog_enabled = false;
648     } else if (option.starts_with("-j")) {
649       const char* thread_count_str = option.substr(strlen("-j")).data();
650       if (!ParseInt(thread_count_str, &thread_count)) {
651         Usage("Failed to parse -j argument '%s' as an integer", thread_count_str);
652       }
653     } else if (option.starts_with("--oat-location=")) {
654       oat_location = option.substr(strlen("--oat-location=")).data();
655     } else if (option.starts_with("--bitcode=")) {
656       bitcode_filename = option.substr(strlen("--bitcode=")).data();
657     } else if (option.starts_with("--image=")) {
658       image_filename = option.substr(strlen("--image=")).data();
659     } else if (option.starts_with("--image-classes=")) {
660       image_classes_filename = option.substr(strlen("--image-classes=")).data();
661     } else if (option.starts_with("--image-classes-zip=")) {
662       image_classes_zip_filename = option.substr(strlen("--image-classes-zip=")).data();
663     } else if (option.starts_with("--base=")) {
664       const char* image_base_str = option.substr(strlen("--base=")).data();
665       char* end;
666       image_base = strtoul(image_base_str, &end, 16);
667       if (end == image_base_str || *end != '\0') {
668         Usage("Failed to parse hexadecimal value for option %s", option.data());
669       }
670     } else if (option.starts_with("--boot-image=")) {
671       boot_image_filename = option.substr(strlen("--boot-image=")).data();
672     } else if (option.starts_with("--host-prefix=")) {
673       host_prefix.reset(new std::string(option.substr(strlen("--host-prefix=")).data()));
674     } else if (option.starts_with("--android-root=")) {
675       android_root = option.substr(strlen("--android-root=")).data();
676     } else if (option.starts_with("--instruction-set=")) {
677       StringPiece instruction_set_str = option.substr(strlen("--instruction-set=")).data();
678       if (instruction_set_str == "arm") {
679         instruction_set = kThumb2;
680       } else if (instruction_set_str == "mips") {
681         instruction_set = kMips;
682       } else if (instruction_set_str == "x86") {
683         instruction_set = kX86;
684       }
685     } else if (option.starts_with("--compiler-backend=")) {
686       StringPiece backend_str = option.substr(strlen("--compiler-backend=")).data();
687       if (backend_str == "Quick") {
688         compiler_backend = kQuick;
689       } else if (backend_str == "Portable") {
690         compiler_backend = kPortable;
691       }
692     } else if (option == "--host") {
693       is_host = true;
694     } else if (option == "--runtime-arg") {
695       if (++i >= argc) {
696         Usage("Missing required argument for --runtime-arg");
697       }
698       if (log_options) {
699         LOG(INFO) << "dex2oat: option[" << i << "]=" << argv[i];
700       }
701       runtime_args.push_back(argv[i]);
702     } else if (option == "--dump-timing") {
703       dump_timing = true;
704     } else {
705       Usage("Unknown argument %s", option.data());
706     }
707   }
708 
709   if (oat_filename.empty() && oat_fd == -1) {
710     Usage("Output must be supplied with either --oat-file or --oat-fd");
711   }
712 
713   if (!oat_filename.empty() && oat_fd != -1) {
714     Usage("--oat-file should not be used with --oat-fd");
715   }
716 
717   if (!oat_symbols.empty() && oat_fd != -1) {
718     Usage("--oat-symbols should not be used with --oat-fd");
719   }
720 
721   if (!oat_symbols.empty() && is_host) {
722     Usage("--oat-symbols should not be used with --host");
723   }
724 
725   if (oat_fd != -1 && !image_filename.empty()) {
726     Usage("--oat-fd should not be used with --image");
727   }
728 
729   if (host_prefix.get() == NULL) {
730     const char* android_product_out = getenv("ANDROID_PRODUCT_OUT");
731     if (android_product_out != NULL) {
732         host_prefix.reset(new std::string(android_product_out));
733     }
734   }
735 
736   if (android_root.empty()) {
737     const char* android_root_env_var = getenv("ANDROID_ROOT");
738     if (android_root_env_var == NULL) {
739       Usage("--android-root unspecified and ANDROID_ROOT not set");
740     }
741     android_root += android_root_env_var;
742   }
743 
744   bool image = (!image_filename.empty());
745   if (!image && boot_image_filename.empty()) {
746     if (host_prefix.get() == NULL) {
747       boot_image_filename += GetAndroidRoot();
748     } else {
749       boot_image_filename += *host_prefix.get();
750       boot_image_filename += "/system";
751     }
752     boot_image_filename += "/framework/boot.art";
753   }
754   std::string boot_image_option;
755   if (!boot_image_filename.empty()) {
756     boot_image_option += "-Ximage:";
757     boot_image_option += boot_image_filename;
758   }
759 
760   if (image_classes_filename != NULL && !image) {
761     Usage("--image-classes should only be used with --image");
762   }
763 
764   if (image_classes_filename != NULL && !boot_image_option.empty()) {
765     Usage("--image-classes should not be used with --boot-image");
766   }
767 
768   if (image_classes_zip_filename != NULL && image_classes_filename == NULL) {
769     Usage("--image-classes-zip should be used with --image-classes");
770   }
771 
772   if (dex_filenames.empty() && zip_fd == -1) {
773     Usage("Input must be supplied with either --dex-file or --zip-fd");
774   }
775 
776   if (!dex_filenames.empty() && zip_fd != -1) {
777     Usage("--dex-file should not be used with --zip-fd");
778   }
779 
780   if (!dex_filenames.empty() && !zip_location.empty()) {
781     Usage("--dex-file should not be used with --zip-location");
782   }
783 
784   if (dex_locations.empty()) {
785     for (size_t i = 0; i < dex_filenames.size(); i++) {
786       dex_locations.push_back(dex_filenames[i]);
787     }
788   } else if (dex_locations.size() != dex_filenames.size()) {
789     Usage("--dex-location arguments do not match --dex-file arguments");
790   }
791 
792   if (zip_fd != -1 && zip_location.empty()) {
793     Usage("--zip-location should be supplied with --zip-fd");
794   }
795 
796   if (boot_image_option.empty()) {
797     if (image_base == 0) {
798       Usage("Non-zero --base not specified");
799     }
800   }
801 
802   std::string oat_stripped(oat_filename);
803   std::string oat_unstripped;
804   if (!oat_symbols.empty()) {
805     oat_unstripped += oat_symbols;
806   } else {
807     oat_unstripped += oat_filename;
808   }
809 
810   // Done with usage checks, enable watchdog if requested
811   WatchDog watch_dog(watch_dog_enabled);
812 
813   // Check early that the result of compilation can be written
814   UniquePtr<File> oat_file;
815   bool create_file = !oat_unstripped.empty();  // as opposed to using open file descriptor
816   if (create_file) {
817     oat_file.reset(OS::CreateEmptyFile(oat_unstripped.c_str()));
818     if (oat_location.empty()) {
819       oat_location = oat_filename;
820     }
821   } else {
822     oat_file.reset(new File(oat_fd, oat_location));
823     oat_file->DisableAutoClose();
824   }
825   if (oat_file.get() == NULL) {
826     PLOG(ERROR) << "Failed to create oat file: " << oat_location;
827     return EXIT_FAILURE;
828   }
829   if (create_file && fchmod(oat_file->Fd(), 0644) != 0) {
830     PLOG(ERROR) << "Failed to make oat file world readable: " << oat_location;
831     return EXIT_FAILURE;
832   }
833 
834   timings.StartSplit("dex2oat Setup");
835   LOG(INFO) << "dex2oat: " << oat_location;
836 
837   if (image) {
838     bool has_compiler_filter = false;
839     for (const char* r : runtime_args) {
840       if (strncmp(r, "-compiler-filter:", 17) == 0) {
841         has_compiler_filter = true;
842         break;
843       }
844     }
845     if (!has_compiler_filter) {
846       runtime_args.push_back("-compiler-filter:everything");
847     }
848   }
849 
850   Runtime::Options options;
851   options.push_back(std::make_pair("compiler", reinterpret_cast<void*>(NULL)));
852   std::vector<const DexFile*> boot_class_path;
853   if (boot_image_option.empty()) {
854     size_t failure_count = OpenDexFiles(dex_filenames, dex_locations, boot_class_path);
855     if (failure_count > 0) {
856       LOG(ERROR) << "Failed to open some dex files: " << failure_count;
857       return EXIT_FAILURE;
858     }
859     options.push_back(std::make_pair("bootclasspath", &boot_class_path));
860   } else {
861     options.push_back(std::make_pair(boot_image_option.c_str(), reinterpret_cast<void*>(NULL)));
862   }
863   if (host_prefix.get() != NULL) {
864     options.push_back(std::make_pair("host-prefix", host_prefix->c_str()));
865   }
866   for (size_t i = 0; i < runtime_args.size(); i++) {
867     options.push_back(std::make_pair(runtime_args[i], reinterpret_cast<void*>(NULL)));
868   }
869 
870 #ifdef ART_SEA_IR_MODE
871   options.push_back(std::make_pair("-sea_ir", reinterpret_cast<void*>(NULL)));
872 #endif
873 
874   Dex2Oat* p_dex2oat;
875   if (!Dex2Oat::Create(&p_dex2oat, options, compiler_backend, instruction_set, thread_count)) {
876     LOG(ERROR) << "Failed to create dex2oat";
877     return EXIT_FAILURE;
878   }
879   UniquePtr<Dex2Oat> dex2oat(p_dex2oat);
880   // Runtime::Create acquired the mutator_lock_ that is normally given away when we Runtime::Start,
881   // give it away now so that we don't starve GC.
882   Thread* self = Thread::Current();
883   self->TransitionFromRunnableToSuspended(kNative);
884   // If we're doing the image, override the compiler filter to force full compilation. Must be
885   // done ahead of WellKnownClasses::Init that causes verification.  Note: doesn't force
886   // compilation of class initializers.
887   // Whilst we're in native take the opportunity to initialize well known classes.
888   WellKnownClasses::Init(self->GetJniEnv());
889 
890   // If --image-classes was specified, calculate the full list of classes to include in the image
891   UniquePtr<CompilerDriver::DescriptorSet> image_classes(NULL);
892   if (image_classes_filename != NULL) {
893     if (image_classes_zip_filename != NULL) {
894       image_classes.reset(dex2oat->ReadImageClassesFromZip(image_classes_zip_filename,
895                                                            image_classes_filename));
896     } else {
897       image_classes.reset(dex2oat->ReadImageClassesFromFile(image_classes_filename));
898     }
899     if (image_classes.get() == NULL) {
900       LOG(ERROR) << "Failed to create list of image classes from " << image_classes_filename;
901       return EXIT_FAILURE;
902     }
903   }
904 
905   std::vector<const DexFile*> dex_files;
906   if (boot_image_option.empty()) {
907     dex_files = Runtime::Current()->GetClassLinker()->GetBootClassPath();
908   } else {
909     if (dex_filenames.empty()) {
910       UniquePtr<ZipArchive> zip_archive(ZipArchive::OpenFromFd(zip_fd));
911       if (zip_archive.get() == NULL) {
912         LOG(ERROR) << "Failed to open zip from file descriptor for " << zip_location;
913         return EXIT_FAILURE;
914       }
915       const DexFile* dex_file = DexFile::Open(*zip_archive.get(), zip_location);
916       if (dex_file == NULL) {
917         LOG(ERROR) << "Failed to open dex from file descriptor for zip file: " << zip_location;
918         return EXIT_FAILURE;
919       }
920       dex_files.push_back(dex_file);
921     } else {
922       size_t failure_count = OpenDexFiles(dex_filenames, dex_locations, dex_files);
923       if (failure_count > 0) {
924         LOG(ERROR) << "Failed to open some dex files: " << failure_count;
925         return EXIT_FAILURE;
926       }
927     }
928 
929     // Ensure opened dex files are writable for dex-to-dex transformations.
930     for (const auto& dex_file : dex_files) {
931       if (!dex_file->EnableWrite()) {
932         PLOG(ERROR) << "Failed to make .dex file writeable '" << dex_file->GetLocation() << "'\n";
933       }
934     }
935   }
936 
937   /*
938    * If we're not in interpret-only mode, go ahead and compile small applications. Don't
939    * bother to check if we're doing the image.
940    */
941   if (!image && (Runtime::Current()->GetCompilerFilter() != Runtime::kInterpretOnly)) {
942     size_t num_methods = 0;
943     for (size_t i = 0; i != dex_files.size(); ++i) {
944       const DexFile* dex_file = dex_files[i];
945       CHECK(dex_file != NULL);
946       num_methods += dex_file->NumMethodIds();
947     }
948     if (num_methods <= Runtime::Current()->GetNumDexMethodsThreshold()) {
949       Runtime::Current()->SetCompilerFilter(Runtime::kSpeed);
950       VLOG(compiler) << "Below method threshold, compiling anyways";
951     }
952   }
953 
954   UniquePtr<const CompilerDriver> compiler(dex2oat->CreateOatFile(boot_image_option,
955                                                                   host_prefix.get(),
956                                                                   android_root,
957                                                                   is_host,
958                                                                   dex_files,
959                                                                   oat_file.get(),
960                                                                   bitcode_filename,
961                                                                   image,
962                                                                   image_classes,
963                                                                   dump_stats,
964                                                                   timings));
965 
966   if (compiler.get() == NULL) {
967     LOG(ERROR) << "Failed to create oat file: " << oat_location;
968     return EXIT_FAILURE;
969   }
970 
971   VLOG(compiler) << "Oat file written successfully (unstripped): " << oat_location;
972 
973   // Notes on the interleaving of creating the image and oat file to
974   // ensure the references between the two are correct.
975   //
976   // Currently we have a memory layout that looks something like this:
977   //
978   // +--------------+
979   // | image        |
980   // +--------------+
981   // | boot oat     |
982   // +--------------+
983   // | alloc spaces |
984   // +--------------+
985   //
986   // There are several constraints on the loading of the image and boot.oat.
987   //
988   // 1. The image is expected to be loaded at an absolute address and
989   // contains Objects with absolute pointers within the image.
990   //
991   // 2. There are absolute pointers from Methods in the image to their
992   // code in the oat.
993   //
994   // 3. There are absolute pointers from the code in the oat to Methods
995   // in the image.
996   //
997   // 4. There are absolute pointers from code in the oat to other code
998   // in the oat.
999   //
1000   // To get this all correct, we go through several steps.
1001   //
1002   // 1. We have already created that oat file above with
1003   // CreateOatFile. Originally this was just our own proprietary file
1004   // but now it is contained within an ELF dynamic object (aka an .so
1005   // file). The Compiler returned by CreateOatFile provides
1006   // PatchInformation for references to oat code and Methods that need
1007   // to be update once we know where the oat file will be located
1008   // after the image.
1009   //
1010   // 2. We create the image file. It needs to know where the oat file
1011   // will be loaded after itself. Originally when oat file was simply
1012   // memory mapped so we could predict where its contents were based
1013   // on the file size. Now that it is an ELF file, we need to inspect
1014   // the ELF file to understand the in memory segment layout including
1015   // where the oat header is located within. ImageWriter's
1016   // PatchOatCodeAndMethods uses the PatchInformation from the
1017   // Compiler to touch up absolute references in the oat file.
1018   //
1019   // 3. We fixup the ELF program headers so that dlopen will try to
1020   // load the .so at the desired location at runtime by offsetting the
1021   // Elf32_Phdr.p_vaddr values by the desired base address.
1022   //
1023   if (image) {
1024     timings.NewSplit("dex2oat ImageWriter");
1025     bool image_creation_success = dex2oat->CreateImageFile(image_filename,
1026                                                            image_base,
1027                                                            oat_unstripped,
1028                                                            oat_location,
1029                                                            *compiler.get());
1030     if (!image_creation_success) {
1031       return EXIT_FAILURE;
1032     }
1033     VLOG(compiler) << "Image written successfully: " << image_filename;
1034   }
1035 
1036   if (is_host) {
1037     if (dump_timing || (dump_slow_timing && timings.GetTotalNs() > MsToNs(1000))) {
1038       LOG(INFO) << Dumpable<base::TimingLogger>(timings);
1039     }
1040     return EXIT_SUCCESS;
1041   }
1042 
1043   // If we don't want to strip in place, copy from unstripped location to stripped location.
1044   // We need to strip after image creation because FixupElf needs to use .strtab.
1045   if (oat_unstripped != oat_stripped) {
1046     timings.NewSplit("dex2oat OatFile copy");
1047     oat_file.reset();
1048      UniquePtr<File> in(OS::OpenFileForReading(oat_unstripped.c_str()));
1049     UniquePtr<File> out(OS::CreateEmptyFile(oat_stripped.c_str()));
1050     size_t buffer_size = 8192;
1051     UniquePtr<uint8_t> buffer(new uint8_t[buffer_size]);
1052     while (true) {
1053       int bytes_read = TEMP_FAILURE_RETRY(read(in->Fd(), buffer.get(), buffer_size));
1054       if (bytes_read <= 0) {
1055         break;
1056       }
1057       bool write_ok = out->WriteFully(buffer.get(), bytes_read);
1058       CHECK(write_ok);
1059     }
1060     oat_file.reset(out.release());
1061     VLOG(compiler) << "Oat file copied successfully (stripped): " << oat_stripped;
1062   }
1063 
1064 #if ART_USE_PORTABLE_COMPILER  // We currently only generate symbols on Portable
1065   timings.NewSplit("dex2oat ElfStripper");
1066   // Strip unneeded sections for target
1067   off_t seek_actual = lseek(oat_file->Fd(), 0, SEEK_SET);
1068   CHECK_EQ(0, seek_actual);
1069   ElfStripper::Strip(oat_file.get());
1070 
1071 
1072   // We wrote the oat file successfully, and want to keep it.
1073   VLOG(compiler) << "Oat file written successfully (stripped): " << oat_location;
1074 #endif  // ART_USE_PORTABLE_COMPILER
1075 
1076   timings.EndSplit();
1077 
1078   if (dump_timing || (dump_slow_timing && timings.GetTotalNs() > MsToNs(1000))) {
1079     LOG(INFO) << Dumpable<base::TimingLogger>(timings);
1080   }
1081 
1082   // Everything was successfully written, do an explicit exit here to avoid running Runtime
1083   // destructors that take time (bug 10645725) unless we're a debug build or running on valgrind.
1084   if (!kIsDebugBuild || (RUNNING_ON_VALGRIND == 0)) {
1085     exit(EXIT_SUCCESS);
1086   }
1087 
1088   return EXIT_SUCCESS;
1089 }
1090 
1091 
1092 }  // namespace art
1093 
main(int argc,char ** argv)1094 int main(int argc, char** argv) {
1095   return art::dex2oat(argc, argv);
1096 }
1097