oatdump.cc revision 956af0f0cb05422e38c1d22cbef309d16b8a1a12
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
20#include <fstream>
21#include <iostream>
22#include <string>
23#include <unordered_map>
24#include <vector>
25
26#include "arch/instruction_set_features.h"
27#include "base/stringpiece.h"
28#include "base/unix_file/fd_file.h"
29#include "class_linker.h"
30#include "class_linker-inl.h"
31#include "dex_file-inl.h"
32#include "dex_instruction.h"
33#include "disassembler.h"
34#include "elf_builder.h"
35#include "gc_map.h"
36#include "gc/space/image_space.h"
37#include "gc/space/large_object_space.h"
38#include "gc/space/space-inl.h"
39#include "image.h"
40#include "indenter.h"
41#include "mapping_table.h"
42#include "mirror/art_field-inl.h"
43#include "mirror/art_method-inl.h"
44#include "mirror/array-inl.h"
45#include "mirror/class-inl.h"
46#include "mirror/object-inl.h"
47#include "mirror/object_array-inl.h"
48#include "noop_compiler_callbacks.h"
49#include "oat.h"
50#include "oat_file-inl.h"
51#include "os.h"
52#include "output_stream.h"
53#include "runtime.h"
54#include "safe_map.h"
55#include "scoped_thread_state_change.h"
56#include "ScopedLocalRef.h"
57#include "thread_list.h"
58#include "verifier/dex_gc_map.h"
59#include "verifier/method_verifier.h"
60#include "vmap_table.h"
61#include "well_known_classes.h"
62
63namespace art {
64
65static void usage() {
66  fprintf(stderr,
67          "Usage: oatdump [options] ...\n"
68          "    Example: oatdump --image=$ANDROID_PRODUCT_OUT/system/framework/boot.art\n"
69          "    Example: adb shell oatdump --image=/system/framework/boot.art\n"
70          "\n");
71  fprintf(stderr,
72          "  --oat-file=<file.oat>: specifies an input oat filename.\n"
73          "      Example: --oat-file=/system/framework/boot.oat\n"
74          "\n");
75  fprintf(stderr,
76          "  --image=<file.art>: specifies an input image filename.\n"
77          "      Example: --image=/system/framework/boot.art\n"
78          "\n");
79  fprintf(stderr,
80          "  --boot-image=<file.art>: provide the image file for the boot class path.\n"
81          "      Example: --boot-image=/system/framework/boot.art\n"
82          "\n");
83  fprintf(stderr,
84          "  --instruction-set=(arm|arm64|mips|x86|x86_64): for locating the image\n"
85          "      file based on the image location set.\n"
86          "      Example: --instruction-set=x86\n"
87          "      Default: %s\n"
88          "\n",
89          GetInstructionSetString(kRuntimeISA));
90  fprintf(stderr,
91          "  --output=<file> may be used to send the output to a file.\n"
92          "      Example: --output=/tmp/oatdump.txt\n"
93          "\n");
94  fprintf(stderr,
95          "  --dump:raw_mapping_table enables dumping of the mapping table.\n"
96          "      Example: --dump:raw_mapping_table\n"
97          "\n");
98  fprintf(stderr,
99          "  --dump:raw_mapping_table enables dumping of the GC map.\n"
100          "      Example: --dump:raw_gc_map\n"
101          "\n");
102  fprintf(stderr,
103          "  --no-dump:vmap may be used to disable vmap dumping.\n"
104          "      Example: --no-dump:vmap\n"
105          "\n");
106  fprintf(stderr,
107          "  --no-disassemble may be used to disable disassembly.\n"
108          "      Example: --no-disassemble\n"
109          "\n");
110  fprintf(stderr,
111          "  --method-filter=<method name>: only dumps methods that contain the filter.\n"
112          "      Example: --method-filter=foo\n"
113          "\n");
114}
115
116const char* image_roots_descriptions_[] = {
117  "kResolutionMethod",
118  "kImtConflictMethod",
119  "kImtUnimplementedMethod",
120  "kDefaultImt",
121  "kCalleeSaveMethod",
122  "kRefsOnlySaveMethod",
123  "kRefsAndArgsSaveMethod",
124  "kDexCaches",
125  "kClassRoots",
126};
127
128class OatSymbolizer FINAL : public CodeOutput {
129 public:
130  explicit OatSymbolizer(const OatFile* oat_file, const std::string& output_name) :
131      oat_file_(oat_file), builder_(nullptr), elf_output_(nullptr),
132      output_name_(output_name.empty() ? "symbolized.oat" : output_name) {
133  }
134
135  bool Init() {
136    Elf32_Word oat_data_size = oat_file_->GetOatHeader().GetExecutableOffset();
137
138    uint32_t diff = static_cast<uint32_t>(oat_file_->End() - oat_file_->Begin());
139    uint32_t oat_exec_size = diff - oat_data_size;
140
141    elf_output_ = OS::CreateEmptyFile(output_name_.c_str());
142
143    builder_.reset(new ElfBuilder<Elf32_Word, Elf32_Sword, Elf32_Addr, Elf32_Dyn,
144                                  Elf32_Sym, Elf32_Ehdr, Elf32_Phdr, Elf32_Shdr>(
145        this,
146        elf_output_,
147        oat_file_->GetOatHeader().GetInstructionSet(),
148        0,
149        oat_data_size,
150        oat_data_size,
151        oat_exec_size,
152        true,
153        false));
154
155    if (!builder_->Init()) {
156      builder_.reset(nullptr);
157      return false;
158    }
159
160    return true;
161  }
162
163  typedef void (OatSymbolizer::*Callback)(const DexFile::ClassDef&,
164                                          uint32_t,
165                                          const OatFile::OatMethod&,
166                                          const DexFile&,
167                                          uint32_t,
168                                          const DexFile::CodeItem*,
169                                          uint32_t);
170
171  bool Symbolize() {
172    if (builder_.get() == nullptr) {
173      return false;
174    }
175
176    Walk(&art::OatSymbolizer::RegisterForDedup);
177
178    NormalizeState();
179
180    Walk(&art::OatSymbolizer::AddSymbol);
181
182    bool result = builder_->Write();
183
184    // Ignore I/O errors.
185    UNUSED(elf_output_->FlushClose());
186
187    return result;
188  }
189
190  void Walk(Callback callback) {
191    std::vector<const OatFile::OatDexFile*> oat_dex_files = oat_file_->GetOatDexFiles();
192    for (size_t i = 0; i < oat_dex_files.size(); i++) {
193      const OatFile::OatDexFile* oat_dex_file = oat_dex_files[i];
194      CHECK(oat_dex_file != NULL);
195      WalkOatDexFile(oat_dex_file, callback);
196    }
197  }
198
199  void WalkOatDexFile(const OatFile::OatDexFile* oat_dex_file, Callback callback) {
200    std::string error_msg;
201    std::unique_ptr<const DexFile> dex_file(oat_dex_file->OpenDexFile(&error_msg));
202    if (dex_file.get() == nullptr) {
203      return;
204    }
205    for (size_t class_def_index = 0;
206        class_def_index < dex_file->NumClassDefs();
207        class_def_index++) {
208      const DexFile::ClassDef& class_def = dex_file->GetClassDef(class_def_index);
209      const OatFile::OatClass oat_class = oat_dex_file->GetOatClass(class_def_index);
210      OatClassType type = oat_class.GetType();
211      switch (type) {
212        case kOatClassAllCompiled:
213        case kOatClassSomeCompiled:
214          WalkOatClass(oat_class, *dex_file.get(), class_def, callback);
215          break;
216
217        case kOatClassNoneCompiled:
218        case kOatClassMax:
219          // Ignore.
220          break;
221      }
222    }
223  }
224
225  void WalkOatClass(const OatFile::OatClass& oat_class, const DexFile& dex_file,
226                    const DexFile::ClassDef& class_def, Callback callback) {
227    const uint8_t* class_data = dex_file.GetClassData(class_def);
228    if (class_data == nullptr) {  // empty class such as a marker interface?
229      return;
230    }
231    // Note: even if this is an interface or a native class, we still have to walk it, as there
232    //       might be a static initializer.
233    ClassDataItemIterator it(dex_file, class_data);
234    SkipAllFields(&it);
235    uint32_t class_method_idx = 0;
236    while (it.HasNextDirectMethod()) {
237      const OatFile::OatMethod oat_method = oat_class.GetOatMethod(class_method_idx);
238      WalkOatMethod(class_def, class_method_idx, oat_method, dex_file, it.GetMemberIndex(),
239                    it.GetMethodCodeItem(), it.GetMethodAccessFlags(), callback);
240      class_method_idx++;
241      it.Next();
242    }
243    while (it.HasNextVirtualMethod()) {
244      const OatFile::OatMethod oat_method = oat_class.GetOatMethod(class_method_idx);
245      WalkOatMethod(class_def, class_method_idx, oat_method, dex_file, it.GetMemberIndex(),
246                    it.GetMethodCodeItem(), it.GetMethodAccessFlags(), callback);
247      class_method_idx++;
248      it.Next();
249    }
250    DCHECK(!it.HasNext());
251  }
252
253  void WalkOatMethod(const DexFile::ClassDef& class_def, uint32_t class_method_index,
254                     const OatFile::OatMethod& oat_method, const DexFile& dex_file,
255                     uint32_t dex_method_idx, const DexFile::CodeItem* code_item,
256                     uint32_t method_access_flags, Callback callback) {
257    if ((method_access_flags & kAccAbstract) != 0) {
258      // Abstract method, no code.
259      return;
260    }
261    if (oat_method.GetCodeOffset() == 0) {
262      // No code.
263      return;
264    }
265
266    (this->*callback)(class_def, class_method_index, oat_method, dex_file, dex_method_idx, code_item,
267                      method_access_flags);
268  }
269
270  void RegisterForDedup(const DexFile::ClassDef& class_def ATTRIBUTE_UNUSED,
271                        uint32_t class_method_index ATTRIBUTE_UNUSED,
272                        const OatFile::OatMethod& oat_method,
273                        const DexFile& dex_file ATTRIBUTE_UNUSED,
274                        uint32_t dex_method_idx ATTRIBUTE_UNUSED,
275                        const DexFile::CodeItem* code_item ATTRIBUTE_UNUSED,
276                        uint32_t method_access_flags ATTRIBUTE_UNUSED) {
277    state_[oat_method.GetCodeOffset()]++;
278  }
279
280  void NormalizeState() {
281    for (auto& x : state_) {
282      if (x.second == 1) {
283        state_[x.first] = 0;
284      }
285    }
286  }
287
288  enum class DedupState {  // private
289    kNotDeduplicated,
290    kDeduplicatedFirst,
291    kDeduplicatedOther
292  };
293  DedupState IsDuplicated(uint32_t offset) {
294    if (state_[offset] == 0) {
295      return DedupState::kNotDeduplicated;
296    }
297    if (state_[offset] == 1) {
298      return DedupState::kDeduplicatedOther;
299    }
300    state_[offset] = 1;
301    return DedupState::kDeduplicatedFirst;
302  }
303
304  void AddSymbol(const DexFile::ClassDef& class_def ATTRIBUTE_UNUSED,
305                 uint32_t class_method_index ATTRIBUTE_UNUSED,
306                 const OatFile::OatMethod& oat_method,
307                 const DexFile& dex_file,
308                 uint32_t dex_method_idx,
309                 const DexFile::CodeItem* code_item ATTRIBUTE_UNUSED,
310                 uint32_t method_access_flags ATTRIBUTE_UNUSED) {
311    DedupState dedup = IsDuplicated(oat_method.GetCodeOffset());
312    if (dedup != DedupState::kDeduplicatedOther) {
313      std::string pretty_name = PrettyMethod(dex_method_idx, dex_file, true);
314
315      if (dedup == DedupState::kDeduplicatedFirst) {
316        pretty_name = "[Dedup]" + pretty_name;
317      }
318
319      ElfSymtabBuilder<Elf32_Word, Elf32_Sword, Elf32_Addr,
320      Elf32_Sym, Elf32_Shdr>* symtab = builder_->GetSymtabBuilder();
321
322      symtab->AddSymbol(pretty_name, &builder_->GetTextBuilder(),
323          oat_method.GetCodeOffset() - oat_file_->GetOatHeader().GetExecutableOffset(),
324          true, oat_method.GetQuickCodeSize(), STB_GLOBAL, STT_FUNC);
325    }
326  }
327
328  // Set oat data offset. Required by ElfBuilder/CodeOutput.
329  void SetCodeOffset(size_t offset ATTRIBUTE_UNUSED) {
330    // Nothing to do.
331  }
332
333  // Write oat code. Required by ElfBuilder/CodeOutput.
334  bool Write(OutputStream* out) {
335    return out->WriteFully(oat_file_->Begin(), oat_file_->End() - oat_file_->Begin());
336  }
337
338 private:
339  static void SkipAllFields(ClassDataItemIterator* it) {
340    while (it->HasNextStaticField()) {
341      it->Next();
342    }
343    while (it->HasNextInstanceField()) {
344      it->Next();
345    }
346  }
347
348  const OatFile* oat_file_;
349  std::unique_ptr<ElfBuilder<Elf32_Word, Elf32_Sword, Elf32_Addr, Elf32_Dyn,
350                              Elf32_Sym, Elf32_Ehdr, Elf32_Phdr, Elf32_Shdr> > builder_;
351  File* elf_output_;
352  std::unordered_map<uint32_t, uint32_t> state_;
353  const std::string output_name_;
354};
355
356class OatDumperOptions {
357 public:
358  OatDumperOptions(bool dump_raw_mapping_table,
359                   bool dump_raw_gc_map,
360                   bool dump_vmap,
361                   bool disassemble_code,
362                   bool absolute_addresses,
363                   const char* method_filter,
364                   Handle<mirror::ClassLoader>* class_loader)
365    : dump_raw_mapping_table_(dump_raw_mapping_table),
366      dump_raw_gc_map_(dump_raw_gc_map),
367      dump_vmap_(dump_vmap),
368      disassemble_code_(disassemble_code),
369      absolute_addresses_(absolute_addresses),
370      method_filter_(method_filter),
371      class_loader_(class_loader) {}
372
373  const bool dump_raw_mapping_table_;
374  const bool dump_raw_gc_map_;
375  const bool dump_vmap_;
376  const bool disassemble_code_;
377  const bool absolute_addresses_;
378  const char* const method_filter_;
379  Handle<mirror::ClassLoader>* class_loader_;
380};
381
382class OatDumper {
383 public:
384  explicit OatDumper(const OatFile& oat_file, OatDumperOptions* options)
385    : oat_file_(oat_file),
386      oat_dex_files_(oat_file.GetOatDexFiles()),
387      options_(options),
388      instruction_set_(oat_file_.GetOatHeader().GetInstructionSet()),
389      disassembler_(Disassembler::Create(instruction_set_,
390                                         new DisassemblerOptions(options_->absolute_addresses_,
391                                                                 oat_file.Begin(),
392                                                                 true /* can_read_litals_ */))) {
393    CHECK(options_->class_loader_ != nullptr);
394    AddAllOffsets();
395  }
396
397  ~OatDumper() {
398    delete options_;
399    delete disassembler_;
400  }
401
402  InstructionSet GetInstructionSet() {
403    return instruction_set_;
404  }
405
406  bool Dump(std::ostream& os) {
407    bool success = true;
408    const OatHeader& oat_header = oat_file_.GetOatHeader();
409
410    os << "MAGIC:\n";
411    os << oat_header.GetMagic() << "\n\n";
412
413    os << "CHECKSUM:\n";
414    os << StringPrintf("0x%08x\n\n", oat_header.GetChecksum());
415
416    os << "INSTRUCTION SET:\n";
417    os << oat_header.GetInstructionSet() << "\n\n";
418
419    {
420      std::unique_ptr<const InstructionSetFeatures> features(
421          InstructionSetFeatures::FromBitmap(oat_header.GetInstructionSet(),
422                                             oat_header.GetInstructionSetFeaturesBitmap()));
423      os << "INSTRUCTION SET FEATURES:\n";
424      os << features->GetFeatureString() << "\n\n";
425    }
426
427    os << "DEX FILE COUNT:\n";
428    os << oat_header.GetDexFileCount() << "\n\n";
429
430#define DUMP_OAT_HEADER_OFFSET(label, offset) \
431    os << label " OFFSET:\n"; \
432    os << StringPrintf("0x%08x", oat_header.offset()); \
433    if (oat_header.offset() != 0 && options_->absolute_addresses_) { \
434      os << StringPrintf(" (%p)", oat_file_.Begin() + oat_header.offset()); \
435    } \
436    os << StringPrintf("\n\n");
437
438    DUMP_OAT_HEADER_OFFSET("EXECUTABLE", GetExecutableOffset);
439    DUMP_OAT_HEADER_OFFSET("INTERPRETER TO INTERPRETER BRIDGE",
440                           GetInterpreterToInterpreterBridgeOffset);
441    DUMP_OAT_HEADER_OFFSET("INTERPRETER TO COMPILED CODE BRIDGE",
442                           GetInterpreterToCompiledCodeBridgeOffset);
443    DUMP_OAT_HEADER_OFFSET("JNI DLSYM LOOKUP",
444                           GetJniDlsymLookupOffset);
445    DUMP_OAT_HEADER_OFFSET("QUICK GENERIC JNI TRAMPOLINE",
446                           GetQuickGenericJniTrampolineOffset);
447    DUMP_OAT_HEADER_OFFSET("QUICK IMT CONFLICT TRAMPOLINE",
448                           GetQuickImtConflictTrampolineOffset);
449    DUMP_OAT_HEADER_OFFSET("QUICK RESOLUTION TRAMPOLINE",
450                           GetQuickResolutionTrampolineOffset);
451    DUMP_OAT_HEADER_OFFSET("QUICK TO INTERPRETER BRIDGE",
452                           GetQuickToInterpreterBridgeOffset);
453#undef DUMP_OAT_HEADER_OFFSET
454
455    os << "IMAGE PATCH DELTA:\n";
456    os << StringPrintf("%d (0x%08x)\n\n",
457                       oat_header.GetImagePatchDelta(),
458                       oat_header.GetImagePatchDelta());
459
460    os << "IMAGE FILE LOCATION OAT CHECKSUM:\n";
461    os << StringPrintf("0x%08x\n\n", oat_header.GetImageFileLocationOatChecksum());
462
463    os << "IMAGE FILE LOCATION OAT BEGIN:\n";
464    os << StringPrintf("0x%08x\n\n", oat_header.GetImageFileLocationOatDataBegin());
465
466    // Print the key-value store.
467    {
468      os << "KEY VALUE STORE:\n";
469      size_t index = 0;
470      const char* key;
471      const char* value;
472      while (oat_header.GetStoreKeyValuePairByIndex(index, &key, &value)) {
473        os << key << " = " << value << "\n";
474        index++;
475      }
476      os << "\n";
477    }
478
479    if (options_->absolute_addresses_) {
480      os << "BEGIN:\n";
481      os << reinterpret_cast<const void*>(oat_file_.Begin()) << "\n\n";
482
483      os << "END:\n";
484      os << reinterpret_cast<const void*>(oat_file_.End()) << "\n\n";
485    }
486
487    os << "SIZE:\n";
488    os << oat_file_.Size() << "\n\n";
489
490    os << std::flush;
491
492    for (size_t i = 0; i < oat_dex_files_.size(); i++) {
493      const OatFile::OatDexFile* oat_dex_file = oat_dex_files_[i];
494      CHECK(oat_dex_file != nullptr);
495      if (!DumpOatDexFile(os, *oat_dex_file)) {
496        success = false;
497      }
498    }
499    os << std::flush;
500    return success;
501  }
502
503  size_t ComputeSize(const void* oat_data) {
504    if (reinterpret_cast<const uint8_t*>(oat_data) < oat_file_.Begin() ||
505        reinterpret_cast<const uint8_t*>(oat_data) > oat_file_.End()) {
506      return 0;  // Address not in oat file
507    }
508    uintptr_t begin_offset = reinterpret_cast<uintptr_t>(oat_data) -
509                             reinterpret_cast<uintptr_t>(oat_file_.Begin());
510    auto it = offsets_.upper_bound(begin_offset);
511    CHECK(it != offsets_.end());
512    uintptr_t end_offset = *it;
513    return end_offset - begin_offset;
514  }
515
516  InstructionSet GetOatInstructionSet() {
517    return oat_file_.GetOatHeader().GetInstructionSet();
518  }
519
520  const void* GetQuickOatCode(mirror::ArtMethod* m) SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
521    for (size_t i = 0; i < oat_dex_files_.size(); i++) {
522      const OatFile::OatDexFile* oat_dex_file = oat_dex_files_[i];
523      CHECK(oat_dex_file != nullptr);
524      std::string error_msg;
525      std::unique_ptr<const DexFile> dex_file(oat_dex_file->OpenDexFile(&error_msg));
526      if (dex_file.get() == nullptr) {
527        LOG(WARNING) << "Failed to open dex file '" << oat_dex_file->GetDexFileLocation()
528            << "': " << error_msg;
529      } else {
530        const char* descriptor = m->GetDeclaringClassDescriptor();
531        const DexFile::ClassDef* class_def =
532            dex_file->FindClassDef(descriptor, ComputeModifiedUtf8Hash(descriptor));
533        if (class_def != nullptr) {
534          uint16_t class_def_index = dex_file->GetIndexForClassDef(*class_def);
535          const OatFile::OatClass oat_class = oat_dex_file->GetOatClass(class_def_index);
536          size_t method_index = m->GetMethodIndex();
537          return oat_class.GetOatMethod(method_index).GetQuickCode();
538        }
539      }
540    }
541    return nullptr;
542  }
543
544 private:
545  void AddAllOffsets() {
546    // We don't know the length of the code for each method, but we need to know where to stop
547    // when disassembling. What we do know is that a region of code will be followed by some other
548    // region, so if we keep a sorted sequence of the start of each region, we can infer the length
549    // of a piece of code by using upper_bound to find the start of the next region.
550    for (size_t i = 0; i < oat_dex_files_.size(); i++) {
551      const OatFile::OatDexFile* oat_dex_file = oat_dex_files_[i];
552      CHECK(oat_dex_file != nullptr);
553      std::string error_msg;
554      std::unique_ptr<const DexFile> dex_file(oat_dex_file->OpenDexFile(&error_msg));
555      if (dex_file.get() == nullptr) {
556        LOG(WARNING) << "Failed to open dex file '" << oat_dex_file->GetDexFileLocation()
557            << "': " << error_msg;
558        continue;
559      }
560      offsets_.insert(reinterpret_cast<uintptr_t>(&dex_file->GetHeader()));
561      for (size_t class_def_index = 0;
562           class_def_index < dex_file->NumClassDefs();
563           class_def_index++) {
564        const DexFile::ClassDef& class_def = dex_file->GetClassDef(class_def_index);
565        const OatFile::OatClass oat_class = oat_dex_file->GetOatClass(class_def_index);
566        const uint8_t* class_data = dex_file->GetClassData(class_def);
567        if (class_data != nullptr) {
568          ClassDataItemIterator it(*dex_file, class_data);
569          SkipAllFields(it);
570          uint32_t class_method_index = 0;
571          while (it.HasNextDirectMethod()) {
572            AddOffsets(oat_class.GetOatMethod(class_method_index++));
573            it.Next();
574          }
575          while (it.HasNextVirtualMethod()) {
576            AddOffsets(oat_class.GetOatMethod(class_method_index++));
577            it.Next();
578          }
579        }
580      }
581    }
582
583    // If the last thing in the file is code for a method, there won't be an offset for the "next"
584    // thing. Instead of having a special case in the upper_bound code, let's just add an entry
585    // for the end of the file.
586    offsets_.insert(oat_file_.Size());
587  }
588
589  static uint32_t AlignCodeOffset(uint32_t maybe_thumb_offset) {
590    return maybe_thumb_offset & ~0x1;  // TODO: Make this Thumb2 specific.
591  }
592
593  void AddOffsets(const OatFile::OatMethod& oat_method) {
594    uint32_t code_offset = oat_method.GetCodeOffset();
595    if (oat_file_.GetOatHeader().GetInstructionSet() == kThumb2) {
596      code_offset &= ~0x1;
597    }
598    offsets_.insert(code_offset);
599    offsets_.insert(oat_method.GetMappingTableOffset());
600    offsets_.insert(oat_method.GetVmapTableOffset());
601    offsets_.insert(oat_method.GetGcMapOffset());
602  }
603
604  bool DumpOatDexFile(std::ostream& os, const OatFile::OatDexFile& oat_dex_file) {
605    bool success = true;
606    os << "OatDexFile:\n";
607    os << StringPrintf("location: %s\n", oat_dex_file.GetDexFileLocation().c_str());
608    os << StringPrintf("checksum: 0x%08x\n", oat_dex_file.GetDexFileLocationChecksum());
609
610    // Create the verifier early.
611
612    std::string error_msg;
613    std::unique_ptr<const DexFile> dex_file(oat_dex_file.OpenDexFile(&error_msg));
614    if (dex_file.get() == nullptr) {
615      os << "NOT FOUND: " << error_msg << "\n\n";
616      os << std::flush;
617      return false;
618    }
619    for (size_t class_def_index = 0;
620         class_def_index < dex_file->NumClassDefs();
621         class_def_index++) {
622      const DexFile::ClassDef& class_def = dex_file->GetClassDef(class_def_index);
623      const char* descriptor = dex_file->GetClassDescriptor(class_def);
624      uint32_t oat_class_offset = oat_dex_file.GetOatClassOffset(class_def_index);
625      const OatFile::OatClass oat_class = oat_dex_file.GetOatClass(class_def_index);
626      os << StringPrintf("%zd: %s (offset=0x%08x) (type_idx=%d)",
627                         class_def_index, descriptor, oat_class_offset, class_def.class_idx_)
628         << " (" << oat_class.GetStatus() << ")"
629         << " (" << oat_class.GetType() << ")\n";
630      // TODO: include bitmap here if type is kOatClassSomeCompiled?
631      Indenter indent_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
632      std::ostream indented_os(&indent_filter);
633      if (!DumpOatClass(indented_os, oat_class, *(dex_file.get()), class_def)) {
634        success = false;
635      }
636    }
637
638    os << std::flush;
639    return success;
640  }
641
642  static void SkipAllFields(ClassDataItemIterator& it) {
643    while (it.HasNextStaticField()) {
644      it.Next();
645    }
646    while (it.HasNextInstanceField()) {
647      it.Next();
648    }
649  }
650
651  bool DumpOatClass(std::ostream& os, const OatFile::OatClass& oat_class, const DexFile& dex_file,
652                    const DexFile::ClassDef& class_def) {
653    bool success = true;
654    const uint8_t* class_data = dex_file.GetClassData(class_def);
655    if (class_data == nullptr) {  // empty class such as a marker interface?
656      os << std::flush;
657      return success;
658    }
659    ClassDataItemIterator it(dex_file, class_data);
660    SkipAllFields(it);
661    uint32_t class_method_index = 0;
662    while (it.HasNextDirectMethod()) {
663      if (!DumpOatMethod(os, class_def, class_method_index, oat_class, dex_file,
664                         it.GetMemberIndex(), it.GetMethodCodeItem(),
665                         it.GetRawMemberAccessFlags())) {
666        success = false;
667      }
668      class_method_index++;
669      it.Next();
670    }
671    while (it.HasNextVirtualMethod()) {
672      if (!DumpOatMethod(os, class_def, class_method_index, oat_class, dex_file,
673                         it.GetMemberIndex(), it.GetMethodCodeItem(),
674                         it.GetRawMemberAccessFlags())) {
675        success = false;
676      }
677      class_method_index++;
678      it.Next();
679    }
680    DCHECK(!it.HasNext());
681    os << std::flush;
682    return success;
683  }
684
685  static constexpr uint32_t kPrologueBytes = 16;
686
687  // When this was picked, the largest arm method was 55,256 bytes and arm64 was 50,412 bytes.
688  static constexpr uint32_t kMaxCodeSize = 100 * 1000;
689
690  bool DumpOatMethod(std::ostream& os, const DexFile::ClassDef& class_def,
691                     uint32_t class_method_index,
692                     const OatFile::OatClass& oat_class, const DexFile& dex_file,
693                     uint32_t dex_method_idx, const DexFile::CodeItem* code_item,
694                     uint32_t method_access_flags) {
695    bool success = true;
696    std::string pretty_method = PrettyMethod(dex_method_idx, dex_file, true);
697    if (pretty_method.find(options_->method_filter_) == std::string::npos) {
698      return success;
699    }
700
701    os << StringPrintf("%d: %s (dex_method_idx=%d)\n",
702                       class_method_index, pretty_method.c_str(),
703                       dex_method_idx);
704    Indenter indent1_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
705    std::unique_ptr<std::ostream> indent1_os(new std::ostream(&indent1_filter));
706    Indenter indent2_filter(indent1_os->rdbuf(), kIndentChar, kIndentBy1Count);
707    std::unique_ptr<std::ostream> indent2_os(new std::ostream(&indent2_filter));
708    {
709      *indent1_os << "DEX CODE:\n";
710      DumpDexCode(*indent2_os, dex_file, code_item);
711    }
712
713    std::unique_ptr<verifier::MethodVerifier> verifier;
714    if (Runtime::Current() != nullptr) {
715      *indent1_os << "VERIFIER TYPE ANALYSIS:\n";
716      verifier.reset(DumpVerifier(*indent2_os, dex_method_idx, &dex_file, class_def, code_item,
717                                  method_access_flags));
718    }
719
720    uint32_t oat_method_offsets_offset = oat_class.GetOatMethodOffsetsOffset(class_method_index);
721    const OatMethodOffsets* oat_method_offsets = oat_class.GetOatMethodOffsets(class_method_index);
722    const OatFile::OatMethod oat_method = oat_class.GetOatMethod(class_method_index);
723    {
724      *indent1_os << "OatMethodOffsets ";
725      if (options_->absolute_addresses_) {
726        *indent1_os << StringPrintf("%p ", oat_method_offsets);
727      }
728      *indent1_os << StringPrintf("(offset=0x%08x)\n", oat_method_offsets_offset);
729      if (oat_method_offsets_offset > oat_file_.Size()) {
730        *indent1_os << StringPrintf(
731            "WARNING: oat method offsets offset 0x%08x is past end of file 0x%08zx.\n",
732            oat_method_offsets_offset, oat_file_.Size());
733        // If we can't read OatMethodOffsets, the rest of the data is dangerous to read.
734        os << std::flush;
735        return false;
736      }
737
738      uint32_t code_offset = oat_method.GetCodeOffset();
739      *indent2_os << StringPrintf("code_offset: 0x%08x ", code_offset);
740      uint32_t aligned_code_begin = AlignCodeOffset(oat_method.GetCodeOffset());
741      if (aligned_code_begin > oat_file_.Size()) {
742        *indent2_os << StringPrintf("WARNING: "
743                                    "code offset 0x%08x is past end of file 0x%08zx.\n",
744                                    aligned_code_begin, oat_file_.Size());
745        success = false;
746      }
747      *indent2_os << "\n";
748
749      *indent2_os << "gc_map: ";
750      if (options_->absolute_addresses_) {
751        *indent2_os << StringPrintf("%p ", oat_method.GetGcMap());
752      }
753      uint32_t gc_map_offset = oat_method.GetGcMapOffset();
754      *indent2_os << StringPrintf("(offset=0x%08x)\n", gc_map_offset);
755      if (gc_map_offset > oat_file_.Size()) {
756        *indent2_os << StringPrintf("WARNING: "
757                                    "gc map table offset 0x%08x is past end of file 0x%08zx.\n",
758                                    gc_map_offset, oat_file_.Size());
759        success = false;
760      } else if (options_->dump_raw_gc_map_) {
761        Indenter indent3_filter(indent2_os->rdbuf(), kIndentChar, kIndentBy1Count);
762        std::ostream indent3_os(&indent3_filter);
763        DumpGcMap(indent3_os, oat_method, code_item);
764      }
765    }
766    {
767      *indent1_os << "OatQuickMethodHeader ";
768      uint32_t method_header_offset = oat_method.GetOatQuickMethodHeaderOffset();
769      const OatQuickMethodHeader* method_header = oat_method.GetOatQuickMethodHeader();
770
771      if (options_->absolute_addresses_) {
772        *indent1_os << StringPrintf("%p ", method_header);
773      }
774      *indent1_os << StringPrintf("(offset=0x%08x)\n", method_header_offset);
775      if (method_header_offset > oat_file_.Size()) {
776        *indent1_os << StringPrintf(
777            "WARNING: oat quick method header offset 0x%08x is past end of file 0x%08zx.\n",
778            method_header_offset, oat_file_.Size());
779        // If we can't read the OatQuickMethodHeader, the rest of the data is dangerous to read.
780        os << std::flush;
781        return false;
782      }
783
784      *indent2_os << "mapping_table: ";
785      if (options_->absolute_addresses_) {
786        *indent2_os << StringPrintf("%p ", oat_method.GetMappingTable());
787      }
788      uint32_t mapping_table_offset = oat_method.GetMappingTableOffset();
789      *indent2_os << StringPrintf("(offset=0x%08x)\n", oat_method.GetMappingTableOffset());
790      if (mapping_table_offset > oat_file_.Size()) {
791        *indent2_os << StringPrintf("WARNING: "
792                                    "mapping table offset 0x%08x is past end of file 0x%08zx. "
793                                    "mapping table offset was loaded from offset 0x%08x.\n",
794                                    mapping_table_offset, oat_file_.Size(),
795                                    oat_method.GetMappingTableOffsetOffset());
796        success = false;
797      } else if (options_->dump_raw_mapping_table_) {
798        Indenter indent3_filter(indent2_os->rdbuf(), kIndentChar, kIndentBy1Count);
799        std::ostream indent3_os(&indent3_filter);
800        DumpMappingTable(indent3_os, oat_method);
801      }
802
803      *indent2_os << "vmap_table: ";
804      if (options_->absolute_addresses_) {
805        *indent2_os << StringPrintf("%p ", oat_method.GetVmapTable());
806      }
807      uint32_t vmap_table_offset = oat_method.GetVmapTableOffset();
808      *indent2_os << StringPrintf("(offset=0x%08x)\n", vmap_table_offset);
809      if (vmap_table_offset > oat_file_.Size()) {
810        *indent2_os << StringPrintf("WARNING: "
811                                    "vmap table offset 0x%08x is past end of file 0x%08zx. "
812                                    "vmap table offset was loaded from offset 0x%08x.\n",
813                                    vmap_table_offset, oat_file_.Size(),
814                                    oat_method.GetVmapTableOffsetOffset());
815        success = false;
816      } else if (options_->dump_vmap_) {
817        DumpVmap(*indent2_os, oat_method);
818      }
819    }
820    {
821      *indent1_os << "QuickMethodFrameInfo\n";
822
823      *indent2_os << StringPrintf("frame_size_in_bytes: %zd\n", oat_method.GetFrameSizeInBytes());
824      *indent2_os << StringPrintf("core_spill_mask: 0x%08x ", oat_method.GetCoreSpillMask());
825      DumpSpillMask(*indent2_os, oat_method.GetCoreSpillMask(), false);
826      *indent2_os << "\n";
827      *indent2_os << StringPrintf("fp_spill_mask: 0x%08x ", oat_method.GetFpSpillMask());
828      DumpSpillMask(*indent2_os, oat_method.GetFpSpillMask(), true);
829      *indent2_os << "\n";
830    }
831    {
832        // Based on spill masks from QuickMethodFrameInfo so placed
833        // after it is dumped, but useful for understanding quick
834        // code, so dumped here.
835        DumpVregLocations(*indent2_os, oat_method, code_item);
836    }
837    {
838      *indent1_os << "CODE: ";
839      uint32_t code_size_offset = oat_method.GetQuickCodeSizeOffset();
840      if (code_size_offset > oat_file_.Size()) {
841        *indent2_os << StringPrintf("WARNING: "
842                                    "code size offset 0x%08x is past end of file 0x%08zx.",
843                                    code_size_offset, oat_file_.Size());
844        success = false;
845      } else {
846        const void* code = oat_method.GetQuickCode();
847        uint32_t code_size = oat_method.GetQuickCodeSize();
848        uint32_t code_offset = oat_method.GetCodeOffset();
849        uint32_t aligned_code_begin = AlignCodeOffset(code_offset);
850        uint64_t aligned_code_end = aligned_code_begin + code_size;
851
852        if (options_->absolute_addresses_) {
853          *indent1_os << StringPrintf("%p ", code);
854        }
855        *indent1_os << StringPrintf("(code_offset=0x%08x size_offset=0x%08x size=%u)%s\n",
856                                    code_offset,
857                                    code_size_offset,
858                                    code_size,
859                                    code != nullptr ? "..." : "");
860
861        if (aligned_code_begin > oat_file_.Size()) {
862          *indent2_os << StringPrintf("WARNING: "
863                                      "start of code at 0x%08x is past end of file 0x%08zx.",
864                                      aligned_code_begin, oat_file_.Size());
865          success = false;
866        } else if (aligned_code_end > oat_file_.Size()) {
867          *indent2_os << StringPrintf("WARNING: "
868                                      "end of code at 0x%08" PRIx64 " is past end of file 0x%08zx. "
869                                      "code size is 0x%08x loaded from offset 0x%08x.\n",
870                                      aligned_code_end, oat_file_.Size(),
871                                      code_size, code_size_offset);
872          success = false;
873          if (options_->disassemble_code_) {
874            if (code_size_offset + kPrologueBytes <= oat_file_.Size()) {
875              DumpCode(*indent2_os, verifier.get(), oat_method, code_item, true, kPrologueBytes);
876            }
877          }
878        } else if (code_size > kMaxCodeSize) {
879          *indent2_os << StringPrintf("WARNING: "
880                                      "code size %d is bigger than max expected threshold of %d. "
881                                      "code size is 0x%08x loaded from offset 0x%08x.\n",
882                                      code_size, kMaxCodeSize,
883                                      code_size, code_size_offset);
884          success = false;
885          if (options_->disassemble_code_) {
886            if (code_size_offset + kPrologueBytes <= oat_file_.Size()) {
887              DumpCode(*indent2_os, verifier.get(), oat_method, code_item, true, kPrologueBytes);
888            }
889          }
890        } else if (options_->disassemble_code_) {
891          DumpCode(*indent2_os, verifier.get(), oat_method, code_item, !success, 0);
892        }
893      }
894    }
895    os << std::flush;
896    return success;
897  }
898
899  void DumpSpillMask(std::ostream& os, uint32_t spill_mask, bool is_float) {
900    if (spill_mask == 0) {
901      return;
902    }
903    os << "(";
904    for (size_t i = 0; i < 32; i++) {
905      if ((spill_mask & (1 << i)) != 0) {
906        if (is_float) {
907          os << "fr" << i;
908        } else {
909          os << "r" << i;
910        }
911        spill_mask ^= 1 << i;  // clear bit
912        if (spill_mask != 0) {
913          os << ", ";
914        } else {
915          break;
916        }
917      }
918    }
919    os << ")";
920  }
921
922  void DumpVmap(std::ostream& os, const OatFile::OatMethod& oat_method) {
923    // If the native GC map is null, then this method has been compiled with the
924    // optimizing compiler. The optimizing compiler currently outputs its stack map
925    // in the vmap table, and the code below does not work with such a stack map.
926    if (oat_method.GetGcMap() == nullptr) {
927      return;
928    }
929    const uint8_t* raw_table = oat_method.GetVmapTable();
930    if (raw_table != nullptr) {
931      const VmapTable vmap_table(raw_table);
932      bool first = true;
933      bool processing_fp = false;
934      uint32_t spill_mask = oat_method.GetCoreSpillMask();
935      for (size_t i = 0; i < vmap_table.Size(); i++) {
936        uint16_t dex_reg = vmap_table[i];
937        uint32_t cpu_reg = vmap_table.ComputeRegister(spill_mask, i,
938                                                      processing_fp ? kFloatVReg : kIntVReg);
939        os << (first ? "v" : ", v")  << dex_reg;
940        if (!processing_fp) {
941          os << "/r" << cpu_reg;
942        } else {
943          os << "/fr" << cpu_reg;
944        }
945        first = false;
946        if (!processing_fp && dex_reg == 0xFFFF) {
947          processing_fp = true;
948          spill_mask = oat_method.GetFpSpillMask();
949        }
950      }
951      os << "\n";
952    }
953  }
954
955  void DumpVregLocations(std::ostream& os, const OatFile::OatMethod& oat_method,
956                         const DexFile::CodeItem* code_item) {
957    if (code_item != nullptr) {
958      size_t num_locals_ins = code_item->registers_size_;
959      size_t num_ins = code_item->ins_size_;
960      size_t num_locals = num_locals_ins - num_ins;
961      size_t num_outs = code_item->outs_size_;
962
963      os << "vr_stack_locations:";
964      for (size_t reg = 0; reg <= num_locals_ins; reg++) {
965        // For readability, delimit the different kinds of VRs.
966        if (reg == num_locals_ins) {
967          os << "\n\tmethod*:";
968        } else if (reg == num_locals && num_ins > 0) {
969          os << "\n\tins:";
970        } else if (reg == 0 && num_locals > 0) {
971          os << "\n\tlocals:";
972        }
973
974        uint32_t offset = StackVisitor::GetVRegOffset(code_item, oat_method.GetCoreSpillMask(),
975                                                      oat_method.GetFpSpillMask(),
976                                                      oat_method.GetFrameSizeInBytes(), reg,
977                                                      GetInstructionSet());
978        os << " v" << reg << "[sp + #" << offset << "]";
979      }
980
981      for (size_t out_reg = 0; out_reg < num_outs; out_reg++) {
982        if (out_reg == 0) {
983          os << "\n\touts:";
984        }
985
986        uint32_t offset = StackVisitor::GetOutVROffset(out_reg, GetInstructionSet());
987        os << " v" << out_reg << "[sp + #" << offset << "]";
988      }
989
990      os << "\n";
991    }
992  }
993
994  void DescribeVReg(std::ostream& os, const OatFile::OatMethod& oat_method,
995                    const DexFile::CodeItem* code_item, size_t reg, VRegKind kind) {
996    const uint8_t* raw_table = oat_method.GetVmapTable();
997    if (raw_table != nullptr) {
998      const VmapTable vmap_table(raw_table);
999      uint32_t vmap_offset;
1000      if (vmap_table.IsInContext(reg, kind, &vmap_offset)) {
1001        bool is_float = (kind == kFloatVReg) || (kind == kDoubleLoVReg) || (kind == kDoubleHiVReg);
1002        uint32_t spill_mask = is_float ? oat_method.GetFpSpillMask()
1003                                       : oat_method.GetCoreSpillMask();
1004        os << (is_float ? "fr" : "r") << vmap_table.ComputeRegister(spill_mask, vmap_offset, kind);
1005      } else {
1006        uint32_t offset = StackVisitor::GetVRegOffset(code_item, oat_method.GetCoreSpillMask(),
1007                                                      oat_method.GetFpSpillMask(),
1008                                                      oat_method.GetFrameSizeInBytes(), reg,
1009                                                      GetInstructionSet());
1010        os << "[sp + #" << offset << "]";
1011      }
1012    }
1013  }
1014
1015  void DumpGcMapRegisters(std::ostream& os, const OatFile::OatMethod& oat_method,
1016                          const DexFile::CodeItem* code_item,
1017                          size_t num_regs, const uint8_t* reg_bitmap) {
1018    bool first = true;
1019    for (size_t reg = 0; reg < num_regs; reg++) {
1020      if (((reg_bitmap[reg / 8] >> (reg % 8)) & 0x01) != 0) {
1021        if (first) {
1022          os << "  v" << reg << " (";
1023          DescribeVReg(os, oat_method, code_item, reg, kReferenceVReg);
1024          os << ")";
1025          first = false;
1026        } else {
1027          os << ", v" << reg << " (";
1028          DescribeVReg(os, oat_method, code_item, reg, kReferenceVReg);
1029          os << ")";
1030        }
1031      }
1032    }
1033    if (first) {
1034      os << "No registers in GC map\n";
1035    } else {
1036      os << "\n";
1037    }
1038  }
1039  void DumpGcMap(std::ostream& os, const OatFile::OatMethod& oat_method,
1040                 const DexFile::CodeItem* code_item) {
1041    const uint8_t* gc_map_raw = oat_method.GetGcMap();
1042    if (gc_map_raw == nullptr) {
1043      return;  // No GC map.
1044    }
1045    const void* quick_code = oat_method.GetQuickCode();
1046    NativePcOffsetToReferenceMap map(gc_map_raw);
1047    for (size_t entry = 0; entry < map.NumEntries(); entry++) {
1048      const uint8_t* native_pc = reinterpret_cast<const uint8_t*>(quick_code) +
1049          map.GetNativePcOffset(entry);
1050      os << StringPrintf("%p", native_pc);
1051      DumpGcMapRegisters(os, oat_method, code_item, map.RegWidth() * 8, map.GetBitMap(entry));
1052    }
1053  }
1054
1055  void DumpMappingTable(std::ostream& os, const OatFile::OatMethod& oat_method) {
1056    const void* quick_code = oat_method.GetQuickCode();
1057    if (quick_code == nullptr) {
1058      return;
1059    }
1060    MappingTable table(oat_method.GetMappingTable());
1061    if (table.TotalSize() != 0) {
1062      Indenter indent_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
1063      std::ostream indent_os(&indent_filter);
1064      if (table.PcToDexSize() != 0) {
1065        typedef MappingTable::PcToDexIterator It;
1066        os << "suspend point mappings {\n";
1067        for (It cur = table.PcToDexBegin(), end = table.PcToDexEnd(); cur != end; ++cur) {
1068          indent_os << StringPrintf("0x%04x -> 0x%04x\n", cur.NativePcOffset(), cur.DexPc());
1069        }
1070        os << "}\n";
1071      }
1072      if (table.DexToPcSize() != 0) {
1073        typedef MappingTable::DexToPcIterator It;
1074        os << "catch entry mappings {\n";
1075        for (It cur = table.DexToPcBegin(), end = table.DexToPcEnd(); cur != end; ++cur) {
1076          indent_os << StringPrintf("0x%04x -> 0x%04x\n", cur.NativePcOffset(), cur.DexPc());
1077        }
1078        os << "}\n";
1079      }
1080    }
1081  }
1082
1083  uint32_t DumpMappingAtOffset(std::ostream& os, const OatFile::OatMethod& oat_method,
1084                               size_t offset, bool suspend_point_mapping) {
1085    MappingTable table(oat_method.GetMappingTable());
1086    if (suspend_point_mapping && table.PcToDexSize() > 0) {
1087      typedef MappingTable::PcToDexIterator It;
1088      for (It cur = table.PcToDexBegin(), end = table.PcToDexEnd(); cur != end; ++cur) {
1089        if (offset == cur.NativePcOffset()) {
1090          os << StringPrintf("suspend point dex PC: 0x%04x\n", cur.DexPc());
1091          return cur.DexPc();
1092        }
1093      }
1094    } else if (!suspend_point_mapping && table.DexToPcSize() > 0) {
1095      typedef MappingTable::DexToPcIterator It;
1096      for (It cur = table.DexToPcBegin(), end = table.DexToPcEnd(); cur != end; ++cur) {
1097        if (offset == cur.NativePcOffset()) {
1098          os << StringPrintf("catch entry dex PC: 0x%04x\n", cur.DexPc());
1099          return cur.DexPc();
1100        }
1101      }
1102    }
1103    return DexFile::kDexNoIndex;
1104  }
1105
1106  void DumpGcMapAtNativePcOffset(std::ostream& os, const OatFile::OatMethod& oat_method,
1107                                 const DexFile::CodeItem* code_item, size_t native_pc_offset) {
1108    const uint8_t* gc_map_raw = oat_method.GetGcMap();
1109    if (gc_map_raw != nullptr) {
1110      NativePcOffsetToReferenceMap map(gc_map_raw);
1111      if (map.HasEntry(native_pc_offset)) {
1112        size_t num_regs = map.RegWidth() * 8;
1113        const uint8_t* reg_bitmap = map.FindBitMap(native_pc_offset);
1114        bool first = true;
1115        for (size_t reg = 0; reg < num_regs; reg++) {
1116          if (((reg_bitmap[reg / 8] >> (reg % 8)) & 0x01) != 0) {
1117            if (first) {
1118              os << "GC map objects:  v" << reg << " (";
1119              DescribeVReg(os, oat_method, code_item, reg, kReferenceVReg);
1120              os << ")";
1121              first = false;
1122            } else {
1123              os << ", v" << reg << " (";
1124              DescribeVReg(os, oat_method, code_item, reg, kReferenceVReg);
1125              os << ")";
1126            }
1127          }
1128        }
1129        if (!first) {
1130          os << "\n";
1131        }
1132      }
1133    }
1134  }
1135
1136  void DumpVRegsAtDexPc(std::ostream& os, verifier::MethodVerifier* verifier,
1137                        const OatFile::OatMethod& oat_method,
1138                        const DexFile::CodeItem* code_item, uint32_t dex_pc) {
1139    DCHECK(verifier != nullptr);
1140    std::vector<int32_t> kinds = verifier->DescribeVRegs(dex_pc);
1141    bool first = true;
1142    for (size_t reg = 0; reg < code_item->registers_size_; reg++) {
1143      VRegKind kind = static_cast<VRegKind>(kinds.at(reg * 2));
1144      if (kind != kUndefined) {
1145        if (first) {
1146          os << "VRegs:  v";
1147          first = false;
1148        } else {
1149          os << ", v";
1150        }
1151        os << reg << " (";
1152        switch (kind) {
1153          case kImpreciseConstant:
1154            os << "Imprecise Constant: " << kinds.at((reg * 2) + 1) << ", ";
1155            DescribeVReg(os, oat_method, code_item, reg, kind);
1156            break;
1157          case kConstant:
1158            os << "Constant: " << kinds.at((reg * 2) + 1);
1159            break;
1160          default:
1161            DescribeVReg(os, oat_method, code_item, reg, kind);
1162            break;
1163        }
1164        os << ")";
1165      }
1166    }
1167    if (!first) {
1168      os << "\n";
1169    }
1170  }
1171
1172
1173  void DumpDexCode(std::ostream& os, const DexFile& dex_file, const DexFile::CodeItem* code_item) {
1174    if (code_item != nullptr) {
1175      size_t i = 0;
1176      while (i < code_item->insns_size_in_code_units_) {
1177        const Instruction* instruction = Instruction::At(&code_item->insns_[i]);
1178        os << StringPrintf("0x%04zx: %s\n", i, instruction->DumpString(&dex_file).c_str());
1179        i += instruction->SizeInCodeUnits();
1180      }
1181    }
1182  }
1183
1184  verifier::MethodVerifier* DumpVerifier(std::ostream& os, uint32_t dex_method_idx,
1185                                         const DexFile* dex_file,
1186                                         const DexFile::ClassDef& class_def,
1187                                         const DexFile::CodeItem* code_item,
1188                                         uint32_t method_access_flags) {
1189    if ((method_access_flags & kAccNative) == 0) {
1190      ScopedObjectAccess soa(Thread::Current());
1191      StackHandleScope<1> hs(soa.Self());
1192      Handle<mirror::DexCache> dex_cache(
1193          hs.NewHandle(Runtime::Current()->GetClassLinker()->FindDexCache(*dex_file)));
1194      DCHECK(options_->class_loader_ != nullptr);
1195      return verifier::MethodVerifier::VerifyMethodAndDump(soa.Self(), os, dex_method_idx, dex_file,
1196                                                           dex_cache,
1197                                                           *options_->class_loader_,
1198                                                           &class_def, code_item,
1199                                                           NullHandle<mirror::ArtMethod>(),
1200                                                           method_access_flags);
1201    }
1202
1203    return nullptr;
1204  }
1205
1206  void DumpCode(std::ostream& os, verifier::MethodVerifier* verifier,
1207                const OatFile::OatMethod& oat_method, const DexFile::CodeItem* code_item,
1208                bool bad_input, size_t code_size) {
1209    const void* quick_code = oat_method.GetQuickCode();
1210
1211    if (code_size == 0) {
1212      code_size = oat_method.GetQuickCodeSize();
1213    }
1214    if (code_size == 0 || quick_code == nullptr) {
1215      os << "NO CODE!\n";
1216      return;
1217    } else {
1218      const uint8_t* quick_native_pc = reinterpret_cast<const uint8_t*>(quick_code);
1219      size_t offset = 0;
1220      while (offset < code_size) {
1221        if (!bad_input) {
1222          DumpMappingAtOffset(os, oat_method, offset, false);
1223        }
1224        offset += disassembler_->Dump(os, quick_native_pc + offset);
1225        if (!bad_input) {
1226          uint32_t dex_pc = DumpMappingAtOffset(os, oat_method, offset, true);
1227          if (dex_pc != DexFile::kDexNoIndex) {
1228            DumpGcMapAtNativePcOffset(os, oat_method, code_item, offset);
1229            if (verifier != nullptr) {
1230              DumpVRegsAtDexPc(os, verifier, oat_method, code_item, dex_pc);
1231            }
1232          }
1233        }
1234      }
1235    }
1236  }
1237
1238  const OatFile& oat_file_;
1239  const std::vector<const OatFile::OatDexFile*> oat_dex_files_;
1240  const OatDumperOptions* options_;
1241  InstructionSet instruction_set_;
1242  std::set<uintptr_t> offsets_;
1243  Disassembler* disassembler_;
1244};
1245
1246class ImageDumper {
1247 public:
1248  explicit ImageDumper(std::ostream* os, gc::space::ImageSpace& image_space,
1249                       const ImageHeader& image_header, OatDumperOptions* oat_dumper_options)
1250      : os_(os),
1251        image_space_(image_space),
1252        image_header_(image_header),
1253        oat_dumper_options_(oat_dumper_options) {}
1254
1255  bool Dump() SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1256    std::ostream& os = *os_;
1257    os << "MAGIC: " << image_header_.GetMagic() << "\n\n";
1258
1259    os << "IMAGE BEGIN: " << reinterpret_cast<void*>(image_header_.GetImageBegin()) << "\n\n";
1260
1261    os << "IMAGE BITMAP OFFSET: " << reinterpret_cast<void*>(image_header_.GetImageBitmapOffset())
1262       << " SIZE: " << reinterpret_cast<void*>(image_header_.GetImageBitmapSize()) << "\n\n";
1263
1264    os << "OAT CHECKSUM: " << StringPrintf("0x%08x\n\n", image_header_.GetOatChecksum());
1265
1266    os << "OAT FILE BEGIN:" << reinterpret_cast<void*>(image_header_.GetOatFileBegin()) << "\n\n";
1267
1268    os << "OAT DATA BEGIN:" << reinterpret_cast<void*>(image_header_.GetOatDataBegin()) << "\n\n";
1269
1270    os << "OAT DATA END:" << reinterpret_cast<void*>(image_header_.GetOatDataEnd()) << "\n\n";
1271
1272    os << "OAT FILE END:" << reinterpret_cast<void*>(image_header_.GetOatFileEnd()) << "\n\n";
1273
1274    os << "PATCH DELTA:" << image_header_.GetPatchDelta() << "\n\n";
1275
1276    os << "COMPILE PIC: " << (image_header_.CompilePic() ? "yes" : "no") << "\n\n";
1277
1278    {
1279      os << "ROOTS: " << reinterpret_cast<void*>(image_header_.GetImageRoots()) << "\n";
1280      Indenter indent1_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
1281      std::ostream indent1_os(&indent1_filter);
1282      CHECK_EQ(arraysize(image_roots_descriptions_), size_t(ImageHeader::kImageRootsMax));
1283      for (int i = 0; i < ImageHeader::kImageRootsMax; i++) {
1284        ImageHeader::ImageRoot image_root = static_cast<ImageHeader::ImageRoot>(i);
1285        const char* image_root_description = image_roots_descriptions_[i];
1286        mirror::Object* image_root_object = image_header_.GetImageRoot(image_root);
1287        indent1_os << StringPrintf("%s: %p\n", image_root_description, image_root_object);
1288        if (image_root_object->IsObjectArray()) {
1289          Indenter indent2_filter(indent1_os.rdbuf(), kIndentChar, kIndentBy1Count);
1290          std::ostream indent2_os(&indent2_filter);
1291          mirror::ObjectArray<mirror::Object>* image_root_object_array
1292              = image_root_object->AsObjectArray<mirror::Object>();
1293          for (int j = 0; j < image_root_object_array->GetLength(); j++) {
1294            mirror::Object* value = image_root_object_array->Get(j);
1295            size_t run = 0;
1296            for (int32_t k = j + 1; k < image_root_object_array->GetLength(); k++) {
1297              if (value == image_root_object_array->Get(k)) {
1298                run++;
1299              } else {
1300                break;
1301              }
1302            }
1303            if (run == 0) {
1304              indent2_os << StringPrintf("%d: ", j);
1305            } else {
1306              indent2_os << StringPrintf("%d to %zd: ", j, j + run);
1307              j = j + run;
1308            }
1309            if (value != nullptr) {
1310              PrettyObjectValue(indent2_os, value->GetClass(), value);
1311            } else {
1312              indent2_os << j << ": null\n";
1313            }
1314          }
1315        }
1316      }
1317    }
1318    os << "\n";
1319
1320    ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
1321    std::string image_filename = image_space_.GetImageFilename();
1322    std::string oat_location = ImageHeader::GetOatLocationFromImageLocation(image_filename);
1323    os << "OAT LOCATION: " << oat_location;
1324    os << "\n";
1325    std::string error_msg;
1326    const OatFile* oat_file = class_linker->FindOpenedOatFileFromOatLocation(oat_location);
1327    if (oat_file == nullptr) {
1328      oat_file = OatFile::Open(oat_location, oat_location, nullptr, nullptr, false, &error_msg);
1329      if (oat_file == nullptr) {
1330        os << "NOT FOUND: " << error_msg << "\n";
1331        return false;
1332      }
1333    }
1334    os << "\n";
1335
1336    stats_.oat_file_bytes = oat_file->Size();
1337
1338    oat_dumper_.reset(new OatDumper(*oat_file, oat_dumper_options_.release()));
1339
1340    for (const OatFile::OatDexFile* oat_dex_file : oat_file->GetOatDexFiles()) {
1341      CHECK(oat_dex_file != nullptr);
1342      stats_.oat_dex_file_sizes.push_back(std::make_pair(oat_dex_file->GetDexFileLocation(),
1343                                                         oat_dex_file->FileSize()));
1344    }
1345
1346    os << "OBJECTS:\n" << std::flush;
1347
1348    // Loop through all the image spaces and dump their objects.
1349    gc::Heap* heap = Runtime::Current()->GetHeap();
1350    const std::vector<gc::space::ContinuousSpace*>& spaces = heap->GetContinuousSpaces();
1351    Thread* self = Thread::Current();
1352    {
1353      {
1354        WriterMutexLock mu(self, *Locks::heap_bitmap_lock_);
1355        heap->FlushAllocStack();
1356      }
1357      // Since FlushAllocStack() above resets the (active) allocation
1358      // stack. Need to revoke the thread-local allocation stacks that
1359      // point into it.
1360      {
1361        self->TransitionFromRunnableToSuspended(kNative);
1362        ThreadList* thread_list = Runtime::Current()->GetThreadList();
1363        thread_list->SuspendAll();
1364        heap->RevokeAllThreadLocalAllocationStacks(self);
1365        thread_list->ResumeAll();
1366        self->TransitionFromSuspendedToRunnable();
1367      }
1368    }
1369    {
1370      std::ostream* saved_os = os_;
1371      Indenter indent_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
1372      std::ostream indent_os(&indent_filter);
1373      os_ = &indent_os;
1374      ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
1375      for (const auto& space : spaces) {
1376        if (space->IsImageSpace()) {
1377          gc::space::ImageSpace* image_space = space->AsImageSpace();
1378          image_space->GetLiveBitmap()->Walk(ImageDumper::Callback, this);
1379          indent_os << "\n";
1380        }
1381      }
1382      // Dump the large objects separately.
1383      heap->GetLargeObjectsSpace()->GetLiveBitmap()->Walk(ImageDumper::Callback, this);
1384      indent_os << "\n";
1385      os_ = saved_os;
1386    }
1387    os << "STATS:\n" << std::flush;
1388    std::unique_ptr<File> file(OS::OpenFileForReading(image_filename.c_str()));
1389    if (file.get() == nullptr) {
1390      LOG(WARNING) << "Failed to find image in " << image_filename;
1391    }
1392    if (file.get() != nullptr) {
1393      stats_.file_bytes = file->GetLength();
1394    }
1395    size_t header_bytes = sizeof(ImageHeader);
1396    stats_.header_bytes = header_bytes;
1397    size_t alignment_bytes = RoundUp(header_bytes, kObjectAlignment) - header_bytes;
1398    stats_.alignment_bytes += alignment_bytes;
1399    stats_.alignment_bytes += image_header_.GetImageBitmapOffset() - image_header_.GetImageSize();
1400    stats_.bitmap_bytes += image_header_.GetImageBitmapSize();
1401    stats_.Dump(os);
1402    os << "\n";
1403
1404    os << std::flush;
1405
1406    return oat_dumper_->Dump(os);
1407  }
1408
1409 private:
1410  static void PrettyObjectValue(std::ostream& os, mirror::Class* type, mirror::Object* value)
1411      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1412    CHECK(type != nullptr);
1413    if (value == nullptr) {
1414      os << StringPrintf("null   %s\n", PrettyDescriptor(type).c_str());
1415    } else if (type->IsStringClass()) {
1416      mirror::String* string = value->AsString();
1417      os << StringPrintf("%p   String: %s\n", string,
1418                         PrintableString(string->ToModifiedUtf8().c_str()).c_str());
1419    } else if (type->IsClassClass()) {
1420      mirror::Class* klass = value->AsClass();
1421      os << StringPrintf("%p   Class: %s\n", klass, PrettyDescriptor(klass).c_str());
1422    } else if (type->IsArtFieldClass()) {
1423      mirror::ArtField* field = value->AsArtField();
1424      os << StringPrintf("%p   Field: %s\n", field, PrettyField(field).c_str());
1425    } else if (type->IsArtMethodClass()) {
1426      mirror::ArtMethod* method = value->AsArtMethod();
1427      os << StringPrintf("%p   Method: %s\n", method, PrettyMethod(method).c_str());
1428    } else {
1429      os << StringPrintf("%p   %s\n", value, PrettyDescriptor(type).c_str());
1430    }
1431  }
1432
1433  static void PrintField(std::ostream& os, mirror::ArtField* field, mirror::Object* obj)
1434      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1435    os << StringPrintf("%s: ", field->GetName());
1436    switch (field->GetTypeAsPrimitiveType()) {
1437      case Primitive::kPrimLong:
1438        os << StringPrintf("%" PRId64 " (0x%" PRIx64 ")\n", field->Get64(obj), field->Get64(obj));
1439        break;
1440      case Primitive::kPrimDouble:
1441        os << StringPrintf("%f (%a)\n", field->GetDouble(obj), field->GetDouble(obj));
1442        break;
1443      case Primitive::kPrimFloat:
1444        os << StringPrintf("%f (%a)\n", field->GetFloat(obj), field->GetFloat(obj));
1445        break;
1446      case Primitive::kPrimInt:
1447        os << StringPrintf("%d (0x%x)\n", field->Get32(obj), field->Get32(obj));
1448        break;
1449      case Primitive::kPrimChar:
1450        os << StringPrintf("%u (0x%x)\n", field->GetChar(obj), field->GetChar(obj));
1451        break;
1452      case Primitive::kPrimShort:
1453        os << StringPrintf("%d (0x%x)\n", field->GetShort(obj), field->GetShort(obj));
1454        break;
1455      case Primitive::kPrimBoolean:
1456        os << StringPrintf("%s (0x%x)\n", field->GetBoolean(obj)? "true" : "false",
1457            field->GetBoolean(obj));
1458        break;
1459      case Primitive::kPrimByte:
1460        os << StringPrintf("%d (0x%x)\n", field->GetByte(obj), field->GetByte(obj));
1461        break;
1462      case Primitive::kPrimNot: {
1463        // Get the value, don't compute the type unless it is non-null as we don't want
1464        // to cause class loading.
1465        mirror::Object* value = field->GetObj(obj);
1466        if (value == nullptr) {
1467          os << StringPrintf("null   %s\n", PrettyDescriptor(field->GetTypeDescriptor()).c_str());
1468        } else {
1469          // Grab the field type without causing resolution.
1470          mirror::Class* field_type = field->GetType(false);
1471          if (field_type != nullptr) {
1472            PrettyObjectValue(os, field_type, value);
1473          } else {
1474            os << StringPrintf("%p   %s\n", value,
1475                               PrettyDescriptor(field->GetTypeDescriptor()).c_str());
1476          }
1477        }
1478        break;
1479      }
1480      default:
1481        os << "unexpected field type: " << field->GetTypeDescriptor() << "\n";
1482        break;
1483    }
1484  }
1485
1486  static void DumpFields(std::ostream& os, mirror::Object* obj, mirror::Class* klass)
1487      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1488    mirror::Class* super = klass->GetSuperClass();
1489    if (super != nullptr) {
1490      DumpFields(os, obj, super);
1491    }
1492    mirror::ObjectArray<mirror::ArtField>* fields = klass->GetIFields();
1493    if (fields != nullptr) {
1494      for (int32_t i = 0; i < fields->GetLength(); i++) {
1495        mirror::ArtField* field = fields->Get(i);
1496        PrintField(os, field, obj);
1497      }
1498    }
1499  }
1500
1501  bool InDumpSpace(const mirror::Object* object) {
1502    return image_space_.Contains(object);
1503  }
1504
1505  const void* GetQuickOatCodeBegin(mirror::ArtMethod* m)
1506      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1507    const void* quick_code = m->GetEntryPointFromQuickCompiledCodePtrSize(
1508        InstructionSetPointerSize(oat_dumper_->GetOatInstructionSet()));
1509    if (Runtime::Current()->GetClassLinker()->IsQuickResolutionStub(quick_code)) {
1510      quick_code = oat_dumper_->GetQuickOatCode(m);
1511    }
1512    if (oat_dumper_->GetInstructionSet() == kThumb2) {
1513      quick_code = reinterpret_cast<void*>(reinterpret_cast<uintptr_t>(quick_code) & ~0x1);
1514    }
1515    return quick_code;
1516  }
1517
1518  uint32_t GetQuickOatCodeSize(mirror::ArtMethod* m)
1519      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1520    const uint32_t* oat_code_begin = reinterpret_cast<const uint32_t*>(GetQuickOatCodeBegin(m));
1521    if (oat_code_begin == nullptr) {
1522      return 0;
1523    }
1524    return oat_code_begin[-1];
1525  }
1526
1527  const void* GetQuickOatCodeEnd(mirror::ArtMethod* m)
1528      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1529    const uint8_t* oat_code_begin = reinterpret_cast<const uint8_t*>(GetQuickOatCodeBegin(m));
1530    if (oat_code_begin == nullptr) {
1531      return nullptr;
1532    }
1533    return oat_code_begin + GetQuickOatCodeSize(m);
1534  }
1535
1536  static void Callback(mirror::Object* obj, void* arg)
1537      SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1538    DCHECK(obj != nullptr);
1539    DCHECK(arg != nullptr);
1540    ImageDumper* state = reinterpret_cast<ImageDumper*>(arg);
1541    if (!state->InDumpSpace(obj)) {
1542      return;
1543    }
1544
1545    size_t object_bytes = obj->SizeOf();
1546    size_t alignment_bytes = RoundUp(object_bytes, kObjectAlignment) - object_bytes;
1547    state->stats_.object_bytes += object_bytes;
1548    state->stats_.alignment_bytes += alignment_bytes;
1549
1550    std::ostream& os = *state->os_;
1551    mirror::Class* obj_class = obj->GetClass();
1552    if (obj_class->IsArrayClass()) {
1553      os << StringPrintf("%p: %s length:%d\n", obj, PrettyDescriptor(obj_class).c_str(),
1554                         obj->AsArray()->GetLength());
1555    } else if (obj->IsClass()) {
1556      mirror::Class* klass = obj->AsClass();
1557      os << StringPrintf("%p: java.lang.Class \"%s\" (", obj, PrettyDescriptor(klass).c_str())
1558         << klass->GetStatus() << ")\n";
1559    } else if (obj->IsArtField()) {
1560      os << StringPrintf("%p: java.lang.reflect.ArtField %s\n", obj,
1561                         PrettyField(obj->AsArtField()).c_str());
1562    } else if (obj->IsArtMethod()) {
1563      os << StringPrintf("%p: java.lang.reflect.ArtMethod %s\n", obj,
1564                         PrettyMethod(obj->AsArtMethod()).c_str());
1565    } else if (obj_class->IsStringClass()) {
1566      os << StringPrintf("%p: java.lang.String %s\n", obj,
1567                         PrintableString(obj->AsString()->ToModifiedUtf8().c_str()).c_str());
1568    } else {
1569      os << StringPrintf("%p: %s\n", obj, PrettyDescriptor(obj_class).c_str());
1570    }
1571    Indenter indent_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
1572    std::ostream indent_os(&indent_filter);
1573    DumpFields(indent_os, obj, obj_class);
1574    if (obj->IsObjectArray()) {
1575      mirror::ObjectArray<mirror::Object>* obj_array = obj->AsObjectArray<mirror::Object>();
1576      int32_t length = obj_array->GetLength();
1577      for (int32_t i = 0; i < length; i++) {
1578        mirror::Object* value = obj_array->Get(i);
1579        size_t run = 0;
1580        for (int32_t j = i + 1; j < length; j++) {
1581          if (value == obj_array->Get(j)) {
1582            run++;
1583          } else {
1584            break;
1585          }
1586        }
1587        if (run == 0) {
1588          indent_os << StringPrintf("%d: ", i);
1589        } else {
1590          indent_os << StringPrintf("%d to %zd: ", i, i + run);
1591          i = i + run;
1592        }
1593        mirror::Class* value_class =
1594            (value == nullptr) ? obj_class->GetComponentType() : value->GetClass();
1595        PrettyObjectValue(indent_os, value_class, value);
1596      }
1597    } else if (obj->IsClass()) {
1598      mirror::ObjectArray<mirror::ArtField>* sfields = obj->AsClass()->GetSFields();
1599      if (sfields != nullptr) {
1600        indent_os << "STATICS:\n";
1601        Indenter indent2_filter(indent_os.rdbuf(), kIndentChar, kIndentBy1Count);
1602        std::ostream indent2_os(&indent2_filter);
1603        for (int32_t i = 0; i < sfields->GetLength(); i++) {
1604          mirror::ArtField* field = sfields->Get(i);
1605          PrintField(indent2_os, field, field->GetDeclaringClass());
1606        }
1607      }
1608    } else if (obj->IsArtMethod()) {
1609      const size_t image_pointer_size = InstructionSetPointerSize(
1610          state->oat_dumper_->GetOatInstructionSet());
1611      mirror::ArtMethod* method = obj->AsArtMethod();
1612      if (method->IsNative()) {
1613        DCHECK(method->GetNativeGcMap(image_pointer_size) == nullptr) << PrettyMethod(method);
1614        DCHECK(method->GetMappingTable(image_pointer_size) == nullptr) << PrettyMethod(method);
1615        bool first_occurrence;
1616        const void* quick_oat_code = state->GetQuickOatCodeBegin(method);
1617        uint32_t quick_oat_code_size = state->GetQuickOatCodeSize(method);
1618        state->ComputeOatSize(quick_oat_code, &first_occurrence);
1619        if (first_occurrence) {
1620          state->stats_.native_to_managed_code_bytes += quick_oat_code_size;
1621        }
1622        if (quick_oat_code != method->GetEntryPointFromQuickCompiledCodePtrSize(
1623            image_pointer_size)) {
1624          indent_os << StringPrintf("OAT CODE: %p\n", quick_oat_code);
1625        }
1626      } else if (method->IsAbstract() || method->IsCalleeSaveMethod() ||
1627          method->IsResolutionMethod() || method->IsImtConflictMethod() ||
1628          method->IsImtUnimplementedMethod() || method->IsClassInitializer()) {
1629        DCHECK(method->GetNativeGcMap(image_pointer_size) == nullptr) << PrettyMethod(method);
1630        DCHECK(method->GetMappingTable(image_pointer_size) == nullptr) << PrettyMethod(method);
1631      } else {
1632        const DexFile::CodeItem* code_item = method->GetCodeItem();
1633        size_t dex_instruction_bytes = code_item->insns_size_in_code_units_ * 2;
1634        state->stats_.dex_instruction_bytes += dex_instruction_bytes;
1635
1636        bool first_occurrence;
1637        size_t gc_map_bytes =
1638            state->ComputeOatSize(method->GetNativeGcMap(image_pointer_size), &first_occurrence);
1639        if (first_occurrence) {
1640          state->stats_.gc_map_bytes += gc_map_bytes;
1641        }
1642
1643        size_t pc_mapping_table_bytes =
1644            state->ComputeOatSize(method->GetMappingTable(image_pointer_size), &first_occurrence);
1645        if (first_occurrence) {
1646          state->stats_.pc_mapping_table_bytes += pc_mapping_table_bytes;
1647        }
1648
1649        size_t vmap_table_bytes =
1650            state->ComputeOatSize(method->GetVmapTable(image_pointer_size), &first_occurrence);
1651        if (first_occurrence) {
1652          state->stats_.vmap_table_bytes += vmap_table_bytes;
1653        }
1654
1655        const void* quick_oat_code_begin = state->GetQuickOatCodeBegin(method);
1656        const void* quick_oat_code_end = state->GetQuickOatCodeEnd(method);
1657        uint32_t quick_oat_code_size = state->GetQuickOatCodeSize(method);
1658        state->ComputeOatSize(quick_oat_code_begin, &first_occurrence);
1659        if (first_occurrence) {
1660          state->stats_.managed_code_bytes += quick_oat_code_size;
1661          if (method->IsConstructor()) {
1662            if (method->IsStatic()) {
1663              state->stats_.class_initializer_code_bytes += quick_oat_code_size;
1664            } else if (dex_instruction_bytes > kLargeConstructorDexBytes) {
1665              state->stats_.large_initializer_code_bytes += quick_oat_code_size;
1666            }
1667          } else if (dex_instruction_bytes > kLargeMethodDexBytes) {
1668            state->stats_.large_method_code_bytes += quick_oat_code_size;
1669          }
1670        }
1671        state->stats_.managed_code_bytes_ignoring_deduplication += quick_oat_code_size;
1672
1673        indent_os << StringPrintf("OAT CODE: %p-%p\n", quick_oat_code_begin, quick_oat_code_end);
1674        indent_os << StringPrintf("SIZE: Dex Instructions=%zd GC=%zd Mapping=%zd\n",
1675                                  dex_instruction_bytes, gc_map_bytes, pc_mapping_table_bytes);
1676
1677        size_t total_size = dex_instruction_bytes + gc_map_bytes + pc_mapping_table_bytes +
1678            vmap_table_bytes + quick_oat_code_size + object_bytes;
1679
1680        double expansion =
1681            static_cast<double>(quick_oat_code_size) / static_cast<double>(dex_instruction_bytes);
1682        state->stats_.ComputeOutliers(total_size, expansion, method);
1683      }
1684    }
1685    std::string temp;
1686    state->stats_.Update(obj_class->GetDescriptor(&temp), object_bytes);
1687  }
1688
1689  std::set<const void*> already_seen_;
1690  // Compute the size of the given data within the oat file and whether this is the first time
1691  // this data has been requested
1692  size_t ComputeOatSize(const void* oat_data, bool* first_occurrence) {
1693    if (already_seen_.count(oat_data) == 0) {
1694      *first_occurrence = true;
1695      already_seen_.insert(oat_data);
1696    } else {
1697      *first_occurrence = false;
1698    }
1699    return oat_dumper_->ComputeSize(oat_data);
1700  }
1701
1702 public:
1703  struct Stats {
1704    size_t oat_file_bytes;
1705    size_t file_bytes;
1706
1707    size_t header_bytes;
1708    size_t object_bytes;
1709    size_t bitmap_bytes;
1710    size_t alignment_bytes;
1711
1712    size_t managed_code_bytes;
1713    size_t managed_code_bytes_ignoring_deduplication;
1714    size_t managed_to_native_code_bytes;
1715    size_t native_to_managed_code_bytes;
1716    size_t class_initializer_code_bytes;
1717    size_t large_initializer_code_bytes;
1718    size_t large_method_code_bytes;
1719
1720    size_t gc_map_bytes;
1721    size_t pc_mapping_table_bytes;
1722    size_t vmap_table_bytes;
1723
1724    size_t dex_instruction_bytes;
1725
1726    std::vector<mirror::ArtMethod*> method_outlier;
1727    std::vector<size_t> method_outlier_size;
1728    std::vector<double> method_outlier_expansion;
1729    std::vector<std::pair<std::string, size_t>> oat_dex_file_sizes;
1730
1731    explicit Stats()
1732        : oat_file_bytes(0),
1733          file_bytes(0),
1734          header_bytes(0),
1735          object_bytes(0),
1736          bitmap_bytes(0),
1737          alignment_bytes(0),
1738          managed_code_bytes(0),
1739          managed_code_bytes_ignoring_deduplication(0),
1740          managed_to_native_code_bytes(0),
1741          native_to_managed_code_bytes(0),
1742          class_initializer_code_bytes(0),
1743          large_initializer_code_bytes(0),
1744          large_method_code_bytes(0),
1745          gc_map_bytes(0),
1746          pc_mapping_table_bytes(0),
1747          vmap_table_bytes(0),
1748          dex_instruction_bytes(0) {}
1749
1750    struct SizeAndCount {
1751      SizeAndCount(size_t bytes_in, size_t count_in) : bytes(bytes_in), count(count_in) {}
1752      size_t bytes;
1753      size_t count;
1754    };
1755    typedef SafeMap<std::string, SizeAndCount> SizeAndCountTable;
1756    SizeAndCountTable sizes_and_counts;
1757
1758    void Update(const char* descriptor, size_t object_bytes_in) {
1759      SizeAndCountTable::iterator it = sizes_and_counts.find(descriptor);
1760      if (it != sizes_and_counts.end()) {
1761        it->second.bytes += object_bytes_in;
1762        it->second.count += 1;
1763      } else {
1764        sizes_and_counts.Put(descriptor, SizeAndCount(object_bytes_in, 1));
1765      }
1766    }
1767
1768    double PercentOfOatBytes(size_t size) {
1769      return (static_cast<double>(size) / static_cast<double>(oat_file_bytes)) * 100;
1770    }
1771
1772    double PercentOfFileBytes(size_t size) {
1773      return (static_cast<double>(size) / static_cast<double>(file_bytes)) * 100;
1774    }
1775
1776    double PercentOfObjectBytes(size_t size) {
1777      return (static_cast<double>(size) / static_cast<double>(object_bytes)) * 100;
1778    }
1779
1780    void ComputeOutliers(size_t total_size, double expansion, mirror::ArtMethod* method) {
1781      method_outlier_size.push_back(total_size);
1782      method_outlier_expansion.push_back(expansion);
1783      method_outlier.push_back(method);
1784    }
1785
1786    void DumpOutliers(std::ostream& os)
1787        SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1788      size_t sum_of_sizes = 0;
1789      size_t sum_of_sizes_squared = 0;
1790      size_t sum_of_expansion = 0;
1791      size_t sum_of_expansion_squared = 0;
1792      size_t n = method_outlier_size.size();
1793      for (size_t i = 0; i < n; i++) {
1794        size_t cur_size = method_outlier_size[i];
1795        sum_of_sizes += cur_size;
1796        sum_of_sizes_squared += cur_size * cur_size;
1797        double cur_expansion = method_outlier_expansion[i];
1798        sum_of_expansion += cur_expansion;
1799        sum_of_expansion_squared += cur_expansion * cur_expansion;
1800      }
1801      size_t size_mean = sum_of_sizes / n;
1802      size_t size_variance = (sum_of_sizes_squared - sum_of_sizes * size_mean) / (n - 1);
1803      double expansion_mean = sum_of_expansion / n;
1804      double expansion_variance =
1805          (sum_of_expansion_squared - sum_of_expansion * expansion_mean) / (n - 1);
1806
1807      // Dump methods whose size is a certain number of standard deviations from the mean
1808      size_t dumped_values = 0;
1809      size_t skipped_values = 0;
1810      for (size_t i = 100; i > 0; i--) {  // i is the current number of standard deviations
1811        size_t cur_size_variance = i * i * size_variance;
1812        bool first = true;
1813        for (size_t j = 0; j < n; j++) {
1814          size_t cur_size = method_outlier_size[j];
1815          if (cur_size > size_mean) {
1816            size_t cur_var = cur_size - size_mean;
1817            cur_var = cur_var * cur_var;
1818            if (cur_var > cur_size_variance) {
1819              if (dumped_values > 20) {
1820                if (i == 1) {
1821                  skipped_values++;
1822                } else {
1823                  i = 2;  // jump to counting for 1 standard deviation
1824                  break;
1825                }
1826              } else {
1827                if (first) {
1828                  os << "\nBig methods (size > " << i << " standard deviations the norm):\n";
1829                  first = false;
1830                }
1831                os << PrettyMethod(method_outlier[j]) << " requires storage of "
1832                    << PrettySize(cur_size) << "\n";
1833                method_outlier_size[j] = 0;  // don't consider this method again
1834                dumped_values++;
1835              }
1836            }
1837          }
1838        }
1839      }
1840      if (skipped_values > 0) {
1841        os << "... skipped " << skipped_values
1842           << " methods with size > 1 standard deviation from the norm\n";
1843      }
1844      os << std::flush;
1845
1846      // Dump methods whose expansion is a certain number of standard deviations from the mean
1847      dumped_values = 0;
1848      skipped_values = 0;
1849      for (size_t i = 10; i > 0; i--) {  // i is the current number of standard deviations
1850        double cur_expansion_variance = i * i * expansion_variance;
1851        bool first = true;
1852        for (size_t j = 0; j < n; j++) {
1853          double cur_expansion = method_outlier_expansion[j];
1854          if (cur_expansion > expansion_mean) {
1855            size_t cur_var = cur_expansion - expansion_mean;
1856            cur_var = cur_var * cur_var;
1857            if (cur_var > cur_expansion_variance) {
1858              if (dumped_values > 20) {
1859                if (i == 1) {
1860                  skipped_values++;
1861                } else {
1862                  i = 2;  // jump to counting for 1 standard deviation
1863                  break;
1864                }
1865              } else {
1866                if (first) {
1867                  os << "\nLarge expansion methods (size > " << i
1868                      << " standard deviations the norm):\n";
1869                  first = false;
1870                }
1871                os << PrettyMethod(method_outlier[j]) << " expanded code by "
1872                   << cur_expansion << "\n";
1873                method_outlier_expansion[j] = 0.0;  // don't consider this method again
1874                dumped_values++;
1875              }
1876            }
1877          }
1878        }
1879      }
1880      if (skipped_values > 0) {
1881        os << "... skipped " << skipped_values
1882           << " methods with expansion > 1 standard deviation from the norm\n";
1883      }
1884      os << "\n" << std::flush;
1885    }
1886
1887    void Dump(std::ostream& os) SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1888      {
1889        os << "art_file_bytes = " << PrettySize(file_bytes) << "\n\n"
1890           << "art_file_bytes = header_bytes + object_bytes + alignment_bytes\n";
1891        Indenter indent_filter(os.rdbuf(), kIndentChar, kIndentBy1Count);
1892        std::ostream indent_os(&indent_filter);
1893        indent_os << StringPrintf("header_bytes    =  %8zd (%2.0f%% of art file bytes)\n"
1894                                  "object_bytes    =  %8zd (%2.0f%% of art file bytes)\n"
1895                                  "bitmap_bytes    =  %8zd (%2.0f%% of art file bytes)\n"
1896                                  "alignment_bytes =  %8zd (%2.0f%% of art file bytes)\n\n",
1897                                  header_bytes, PercentOfFileBytes(header_bytes),
1898                                  object_bytes, PercentOfFileBytes(object_bytes),
1899                                  bitmap_bytes, PercentOfFileBytes(bitmap_bytes),
1900                                  alignment_bytes, PercentOfFileBytes(alignment_bytes))
1901            << std::flush;
1902        CHECK_EQ(file_bytes, bitmap_bytes + header_bytes + object_bytes + alignment_bytes);
1903      }
1904
1905      os << "object_bytes breakdown:\n";
1906      size_t object_bytes_total = 0;
1907      for (const auto& sizes_and_count : sizes_and_counts) {
1908        const std::string& descriptor(sizes_and_count.first);
1909        double average = static_cast<double>(sizes_and_count.second.bytes) /
1910            static_cast<double>(sizes_and_count.second.count);
1911        double percent = PercentOfObjectBytes(sizes_and_count.second.bytes);
1912        os << StringPrintf("%32s %8zd bytes %6zd instances "
1913                           "(%4.0f bytes/instance) %2.0f%% of object_bytes\n",
1914                           descriptor.c_str(), sizes_and_count.second.bytes,
1915                           sizes_and_count.second.count, average, percent);
1916        object_bytes_total += sizes_and_count.second.bytes;
1917      }
1918      os << "\n" << std::flush;
1919      CHECK_EQ(object_bytes, object_bytes_total);
1920
1921      os << StringPrintf("oat_file_bytes               = %8zd\n"
1922                         "managed_code_bytes           = %8zd (%2.0f%% of oat file bytes)\n"
1923                         "managed_to_native_code_bytes = %8zd (%2.0f%% of oat file bytes)\n"
1924                         "native_to_managed_code_bytes = %8zd (%2.0f%% of oat file bytes)\n\n"
1925                         "class_initializer_code_bytes = %8zd (%2.0f%% of oat file bytes)\n"
1926                         "large_initializer_code_bytes = %8zd (%2.0f%% of oat file bytes)\n"
1927                         "large_method_code_bytes      = %8zd (%2.0f%% of oat file bytes)\n\n",
1928                         oat_file_bytes,
1929                         managed_code_bytes,
1930                         PercentOfOatBytes(managed_code_bytes),
1931                         managed_to_native_code_bytes,
1932                         PercentOfOatBytes(managed_to_native_code_bytes),
1933                         native_to_managed_code_bytes,
1934                         PercentOfOatBytes(native_to_managed_code_bytes),
1935                         class_initializer_code_bytes,
1936                         PercentOfOatBytes(class_initializer_code_bytes),
1937                         large_initializer_code_bytes,
1938                         PercentOfOatBytes(large_initializer_code_bytes),
1939                         large_method_code_bytes,
1940                         PercentOfOatBytes(large_method_code_bytes))
1941            << "DexFile sizes:\n";
1942      for (const std::pair<std::string, size_t>& oat_dex_file_size : oat_dex_file_sizes) {
1943        os << StringPrintf("%s = %zd (%2.0f%% of oat file bytes)\n",
1944                           oat_dex_file_size.first.c_str(), oat_dex_file_size.second,
1945                           PercentOfOatBytes(oat_dex_file_size.second));
1946      }
1947
1948      os << "\n" << StringPrintf("gc_map_bytes           = %7zd (%2.0f%% of oat file bytes)\n"
1949                                 "pc_mapping_table_bytes = %7zd (%2.0f%% of oat file bytes)\n"
1950                                 "vmap_table_bytes       = %7zd (%2.0f%% of oat file bytes)\n\n",
1951                                 gc_map_bytes, PercentOfOatBytes(gc_map_bytes),
1952                                 pc_mapping_table_bytes, PercentOfOatBytes(pc_mapping_table_bytes),
1953                                 vmap_table_bytes, PercentOfOatBytes(vmap_table_bytes))
1954         << std::flush;
1955
1956      os << StringPrintf("dex_instruction_bytes = %zd\n", dex_instruction_bytes)
1957         << StringPrintf("managed_code_bytes expansion = %.2f (ignoring deduplication %.2f)\n\n",
1958                         static_cast<double>(managed_code_bytes) /
1959                             static_cast<double>(dex_instruction_bytes),
1960                         static_cast<double>(managed_code_bytes_ignoring_deduplication) /
1961                             static_cast<double>(dex_instruction_bytes))
1962         << std::flush;
1963
1964      DumpOutliers(os);
1965    }
1966  } stats_;
1967
1968 private:
1969  enum {
1970    // Number of bytes for a constructor to be considered large. Based on the 1000 basic block
1971    // threshold, we assume 2 bytes per instruction and 2 instructions per block.
1972    kLargeConstructorDexBytes = 4000,
1973    // Number of bytes for a method to be considered large. Based on the 4000 basic block
1974    // threshold, we assume 2 bytes per instruction and 2 instructions per block.
1975    kLargeMethodDexBytes = 16000
1976  };
1977  std::ostream* os_;
1978  gc::space::ImageSpace& image_space_;
1979  const ImageHeader& image_header_;
1980  std::unique_ptr<OatDumper> oat_dumper_;
1981  std::unique_ptr<OatDumperOptions> oat_dumper_options_;
1982
1983  DISALLOW_COPY_AND_ASSIGN(ImageDumper);
1984};
1985
1986static NoopCompilerCallbacks callbacks;
1987
1988static Runtime* StartRuntime(const char* boot_image_location, const char* image_location,
1989                             InstructionSet instruction_set) {
1990  RuntimeOptions options;
1991  std::string image_option;
1992  std::string oat_option;
1993  std::string boot_image_option;
1994  std::string boot_oat_option;
1995
1996  // We are more like a compiler than a run-time. We don't want to execute code.
1997  options.push_back(std::make_pair("compilercallbacks", &callbacks));
1998
1999  if (boot_image_location != nullptr) {
2000    boot_image_option += "-Ximage:";
2001    boot_image_option += boot_image_location;
2002    options.push_back(std::make_pair(boot_image_option.c_str(), nullptr));
2003  }
2004  if (image_location != nullptr) {
2005    image_option += "-Ximage:";
2006    image_option += image_location;
2007    options.push_back(std::make_pair(image_option.c_str(), nullptr));
2008  }
2009  options.push_back(
2010      std::make_pair("imageinstructionset",
2011                     reinterpret_cast<const void*>(GetInstructionSetString(instruction_set))));
2012
2013  if (!Runtime::Create(options, false)) {
2014    fprintf(stderr, "Failed to create runtime\n");
2015    return nullptr;
2016  }
2017
2018  // Runtime::Create acquired the mutator_lock_ that is normally given away when we Runtime::Start,
2019  // give it away now and then switch to a more manageable ScopedObjectAccess.
2020  Thread::Current()->TransitionFromRunnableToSuspended(kNative);
2021
2022  return Runtime::Current();
2023}
2024
2025static int DumpImage(Runtime* runtime, const char* image_location, OatDumperOptions* options,
2026                     std::ostream* os) {
2027  // Dumping the image, no explicit class loader.
2028  NullHandle<mirror::ClassLoader> null_class_loader;
2029  options->class_loader_ = &null_class_loader;
2030
2031  ScopedObjectAccess soa(Thread::Current());
2032  gc::Heap* heap = runtime->GetHeap();
2033  gc::space::ImageSpace* image_space = heap->GetImageSpace();
2034  CHECK(image_space != nullptr);
2035  const ImageHeader& image_header = image_space->GetImageHeader();
2036  if (!image_header.IsValid()) {
2037    fprintf(stderr, "Invalid image header %s\n", image_location);
2038    return EXIT_FAILURE;
2039  }
2040  ImageDumper image_dumper(os, *image_space, image_header, options);
2041  bool success = image_dumper.Dump();
2042  return (success) ? EXIT_SUCCESS : EXIT_FAILURE;
2043}
2044
2045static int DumpOatWithRuntime(Runtime* runtime, OatFile* oat_file, OatDumperOptions* options,
2046                              std::ostream* os) {
2047  CHECK(runtime != nullptr && oat_file != nullptr && options != nullptr);
2048
2049  Thread* self = Thread::Current();
2050  CHECK(self != nullptr);
2051  // Need well-known-classes.
2052  WellKnownClasses::Init(self->GetJniEnv());
2053
2054  // Need to register dex files to get a working dex cache.
2055  ScopedObjectAccess soa(self);
2056  ClassLinker* class_linker = runtime->GetClassLinker();
2057  class_linker->RegisterOatFile(oat_file);
2058  std::vector<const DexFile*> dex_files;
2059  for (const OatFile::OatDexFile* odf : oat_file->GetOatDexFiles()) {
2060    std::string error_msg;
2061    const DexFile* dex_file = odf->OpenDexFile(&error_msg);
2062    CHECK(dex_file != nullptr) << error_msg;
2063    class_linker->RegisterDexFile(*dex_file);
2064    dex_files.push_back(dex_file);
2065  }
2066
2067  // Need a class loader.
2068  soa.Env()->AllocObject(WellKnownClasses::dalvik_system_PathClassLoader);
2069  ScopedLocalRef<jobject> class_loader_local(soa.Env(),
2070      soa.Env()->AllocObject(WellKnownClasses::dalvik_system_PathClassLoader));
2071  jobject class_loader = soa.Env()->NewGlobalRef(class_loader_local.get());
2072  // Fake that we're a compiler.
2073  runtime->SetCompileTimeClassPath(class_loader, dex_files);
2074
2075  // Use the class loader while dumping.
2076  StackHandleScope<1> scope(self);
2077  Handle<mirror::ClassLoader> loader_handle = scope.NewHandle(
2078      soa.Decode<mirror::ClassLoader*>(class_loader));
2079  options->class_loader_ = &loader_handle;
2080
2081  OatDumper oat_dumper(*oat_file, options);
2082  bool success = oat_dumper.Dump(*os);
2083  return (success) ? EXIT_SUCCESS : EXIT_FAILURE;
2084}
2085
2086static int DumpOatWithoutRuntime(OatFile* oat_file, OatDumperOptions* options, std::ostream* os) {
2087  // No image = no class loader.
2088  NullHandle<mirror::ClassLoader> null_class_loader;
2089  options->class_loader_ = &null_class_loader;
2090
2091  OatDumper oat_dumper(*oat_file, options);
2092  bool success = oat_dumper.Dump(*os);
2093  return (success) ? EXIT_SUCCESS : EXIT_FAILURE;
2094}
2095
2096static int DumpOat(Runtime* runtime, const char* oat_filename, OatDumperOptions* options,
2097                   std::ostream* os) {
2098  std::string error_msg;
2099  OatFile* oat_file = OatFile::Open(oat_filename, oat_filename, nullptr, nullptr, false, &error_msg);
2100  if (oat_file == nullptr) {
2101    fprintf(stderr, "Failed to open oat file from '%s': %s\n", oat_filename, error_msg.c_str());
2102    return EXIT_FAILURE;
2103  }
2104
2105  if (runtime != nullptr) {
2106    return DumpOatWithRuntime(runtime, oat_file, options, os);
2107  } else {
2108    return DumpOatWithoutRuntime(oat_file, options, os);
2109  }
2110}
2111
2112static int SymbolizeOat(const char* oat_filename, std::string& output_name) {
2113  std::string error_msg;
2114  OatFile* oat_file = OatFile::Open(oat_filename, oat_filename, nullptr, nullptr, false, &error_msg);
2115  if (oat_file == nullptr) {
2116    fprintf(stderr, "Failed to open oat file from '%s': %s\n", oat_filename, error_msg.c_str());
2117    return EXIT_FAILURE;
2118  }
2119
2120  OatSymbolizer oat_symbolizer(oat_file, output_name);
2121  if (!oat_symbolizer.Init()) {
2122    fprintf(stderr, "Failed to initialize symbolizer\n");
2123    return EXIT_FAILURE;
2124  }
2125  if (!oat_symbolizer.Symbolize()) {
2126    fprintf(stderr, "Failed to symbolize\n");
2127    return EXIT_FAILURE;
2128  }
2129
2130  return EXIT_SUCCESS;
2131}
2132
2133struct OatdumpArgs {
2134  bool Parse(int argc, char** argv) {
2135    // Skip over argv[0].
2136    argv++;
2137    argc--;
2138
2139    if (argc == 0) {
2140      fprintf(stderr, "No arguments specified\n");
2141      usage();
2142      return false;
2143    }
2144
2145    for (int i = 0; i < argc; i++) {
2146      const StringPiece option(argv[i]);
2147      if (option.starts_with("--oat-file=")) {
2148        oat_filename_ = option.substr(strlen("--oat-file=")).data();
2149      } else if (option.starts_with("--image=")) {
2150        image_location_ = option.substr(strlen("--image=")).data();
2151      } else if (option.starts_with("--boot-image=")) {
2152        boot_image_location_ = option.substr(strlen("--boot-image=")).data();
2153      } else if (option.starts_with("--instruction-set=")) {
2154        StringPiece instruction_set_str = option.substr(strlen("--instruction-set=")).data();
2155        instruction_set_ = GetInstructionSetFromString(instruction_set_str.data());
2156        if (instruction_set_ == kNone) {
2157          fprintf(stderr, "Unsupported instruction set %s\n", instruction_set_str.data());
2158          usage();
2159          return false;
2160        }
2161      } else if (option =="--dump:raw_mapping_table") {
2162        dump_raw_mapping_table_ = true;
2163      } else if (option == "--dump:raw_gc_map") {
2164        dump_raw_gc_map_ = true;
2165      } else if (option == "--no-dump:vmap") {
2166        dump_vmap_ = false;
2167      } else if (option == "--no-disassemble") {
2168        disassemble_code_ = false;
2169      } else if (option.starts_with("--output=")) {
2170        output_name_ = option.substr(strlen("--output=")).ToString();
2171        const char* filename = output_name_.c_str();
2172        out_.reset(new std::ofstream(filename));
2173        if (!out_->good()) {
2174          fprintf(stderr, "Failed to open output filename %s\n", filename);
2175          usage();
2176          return false;
2177        }
2178        os_ = out_.get();
2179      } else if (option.starts_with("--symbolize=")) {
2180        oat_filename_ = option.substr(strlen("--symbolize=")).data();
2181        symbolize_ = true;
2182      } else if (option.starts_with("--method-filter=")) {
2183        method_filter_ = option.substr(strlen("--method-filter=")).data();
2184      } else {
2185        fprintf(stderr, "Unknown argument %s\n", option.data());
2186        usage();
2187        return false;
2188      }
2189    }
2190
2191    if (image_location_ == nullptr && oat_filename_ == nullptr) {
2192      fprintf(stderr, "Either --image or --oat must be specified\n");
2193      return false;
2194    }
2195
2196    if (image_location_ != nullptr && oat_filename_ != nullptr) {
2197      fprintf(stderr, "Either --image or --oat must be specified but not both\n");
2198      return false;
2199    }
2200
2201    return true;
2202  }
2203
2204  const char* oat_filename_ = nullptr;
2205  const char* method_filter_ = "";
2206  const char* image_location_ = nullptr;
2207  const char* boot_image_location_ = nullptr;
2208  InstructionSet instruction_set_ = kRuntimeISA;
2209  std::string elf_filename_prefix_;
2210  std::ostream* os_ = &std::cout;
2211  std::unique_ptr<std::ofstream> out_;
2212  std::string output_name_;
2213  bool dump_raw_mapping_table_ = false;
2214  bool dump_raw_gc_map_ = false;
2215  bool dump_vmap_ = true;
2216  bool disassemble_code_ = true;
2217  bool symbolize_ = false;
2218};
2219
2220static int oatdump(int argc, char** argv) {
2221  InitLogging(argv);
2222
2223  OatdumpArgs args;
2224  if (!args.Parse(argc, argv)) {
2225    return EXIT_FAILURE;
2226  }
2227
2228  // If we are only doing the oat file, disable absolute_addresses. Keep them for image dumping.
2229  bool absolute_addresses = (args.oat_filename_ == nullptr);
2230
2231  std::unique_ptr<OatDumperOptions> oat_dumper_options(new OatDumperOptions(
2232      args.dump_raw_mapping_table_,
2233      args.dump_raw_gc_map_,
2234      args.dump_vmap_,
2235      args.disassemble_code_,
2236      absolute_addresses,
2237      args.method_filter_,
2238      nullptr));
2239
2240  std::unique_ptr<Runtime> runtime;
2241  if ((args.boot_image_location_ != nullptr || args.image_location_ != nullptr) &&
2242      !args.symbolize_) {
2243    // If we have a boot image option, try to start the runtime; except when just symbolizing.
2244    runtime.reset(StartRuntime(args.boot_image_location_,
2245                               args.image_location_,
2246                               args.instruction_set_));
2247  } else {
2248    MemMap::Init();
2249  }
2250
2251  if (args.oat_filename_ != nullptr) {
2252    if (args.symbolize_) {
2253      return SymbolizeOat(args.oat_filename_, args.output_name_);
2254    } else {
2255      return DumpOat(runtime.get(), args.oat_filename_, oat_dumper_options.release(), args.os_);
2256    }
2257  }
2258
2259  if (runtime.get() == nullptr) {
2260    // We need the runtime when printing an image.
2261    return EXIT_FAILURE;
2262  }
2263
2264  return DumpImage(runtime.get(), args.image_location_, oat_dumper_options.release(), args.os_);
2265}
2266
2267}  // namespace art
2268
2269int main(int argc, char** argv) {
2270  return art::oatdump(argc, argv);
2271}
2272