coff2yaml.cpp 10 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278
  1. //===------ utils/obj2yaml.cpp - obj2yaml conversion tool -------*- C++ -*-===//
  2. //
  3. // The LLVM Compiler Infrastructure
  4. //
  5. // This file is distributed under the University of Illinois Open Source
  6. // License. See LICENSE.TXT for details.
  7. //
  8. //===----------------------------------------------------------------------===//
  9. #include "obj2yaml.h"
  10. #include "llvm/Object/COFF.h"
  11. #include "llvm/Object/COFFYAML.h"
  12. #include "llvm/Support/ErrorHandling.h"
  13. #include "llvm/Support/YAMLTraits.h"
  14. using namespace llvm;
  15. namespace {
  16. class COFFDumper {
  17. const object::COFFObjectFile &Obj;
  18. COFFYAML::Object YAMLObj;
  19. template <typename T>
  20. void dumpOptionalHeader(T OptionalHeader);
  21. void dumpHeader();
  22. void dumpSections(unsigned numSections);
  23. void dumpSymbols(unsigned numSymbols);
  24. public:
  25. COFFDumper(const object::COFFObjectFile &Obj);
  26. COFFYAML::Object &getYAMLObj();
  27. };
  28. }
  29. COFFDumper::COFFDumper(const object::COFFObjectFile &Obj) : Obj(Obj) {
  30. const object::pe32_header *PE32Header = nullptr;
  31. Obj.getPE32Header(PE32Header);
  32. if (PE32Header) {
  33. dumpOptionalHeader(PE32Header);
  34. } else {
  35. const object::pe32plus_header *PE32PlusHeader = nullptr;
  36. Obj.getPE32PlusHeader(PE32PlusHeader);
  37. if (PE32PlusHeader) {
  38. dumpOptionalHeader(PE32PlusHeader);
  39. }
  40. }
  41. dumpHeader();
  42. dumpSections(Obj.getNumberOfSections());
  43. dumpSymbols(Obj.getNumberOfSymbols());
  44. }
  45. template <typename T> void COFFDumper::dumpOptionalHeader(T OptionalHeader) {
  46. YAMLObj.OptionalHeader = COFFYAML::PEHeader();
  47. YAMLObj.OptionalHeader->Header.AddressOfEntryPoint =
  48. OptionalHeader->AddressOfEntryPoint;
  49. YAMLObj.OptionalHeader->Header.AddressOfEntryPoint =
  50. OptionalHeader->AddressOfEntryPoint;
  51. YAMLObj.OptionalHeader->Header.ImageBase = OptionalHeader->ImageBase;
  52. YAMLObj.OptionalHeader->Header.SectionAlignment =
  53. OptionalHeader->SectionAlignment;
  54. YAMLObj.OptionalHeader->Header.FileAlignment = OptionalHeader->FileAlignment;
  55. YAMLObj.OptionalHeader->Header.MajorOperatingSystemVersion =
  56. OptionalHeader->MajorOperatingSystemVersion;
  57. YAMLObj.OptionalHeader->Header.MinorOperatingSystemVersion =
  58. OptionalHeader->MinorOperatingSystemVersion;
  59. YAMLObj.OptionalHeader->Header.MajorImageVersion =
  60. OptionalHeader->MajorImageVersion;
  61. YAMLObj.OptionalHeader->Header.MinorImageVersion =
  62. OptionalHeader->MinorImageVersion;
  63. YAMLObj.OptionalHeader->Header.MajorSubsystemVersion =
  64. OptionalHeader->MajorSubsystemVersion;
  65. YAMLObj.OptionalHeader->Header.MinorSubsystemVersion =
  66. OptionalHeader->MinorSubsystemVersion;
  67. YAMLObj.OptionalHeader->Header.Subsystem = OptionalHeader->Subsystem;
  68. YAMLObj.OptionalHeader->Header.DLLCharacteristics =
  69. OptionalHeader->DLLCharacteristics;
  70. YAMLObj.OptionalHeader->Header.SizeOfStackReserve =
  71. OptionalHeader->SizeOfStackReserve;
  72. YAMLObj.OptionalHeader->Header.SizeOfStackCommit =
  73. OptionalHeader->SizeOfStackCommit;
  74. YAMLObj.OptionalHeader->Header.SizeOfHeapReserve =
  75. OptionalHeader->SizeOfHeapReserve;
  76. YAMLObj.OptionalHeader->Header.SizeOfHeapCommit =
  77. OptionalHeader->SizeOfHeapCommit;
  78. unsigned I = 0;
  79. for (auto &DestDD : YAMLObj.OptionalHeader->DataDirectories) {
  80. const object::data_directory *DD;
  81. if (Obj.getDataDirectory(I++, DD))
  82. continue;
  83. DestDD = COFF::DataDirectory();
  84. DestDD->RelativeVirtualAddress = DD->RelativeVirtualAddress;
  85. DestDD->Size = DD->Size;
  86. }
  87. }
  88. void COFFDumper::dumpHeader() {
  89. YAMLObj.Header.Machine = Obj.getMachine();
  90. YAMLObj.Header.Characteristics = Obj.getCharacteristics();
  91. }
  92. void COFFDumper::dumpSections(unsigned NumSections) {
  93. std::vector<COFFYAML::Section> &YAMLSections = YAMLObj.Sections;
  94. for (const auto &ObjSection : Obj.sections()) {
  95. const object::coff_section *COFFSection = Obj.getCOFFSection(ObjSection);
  96. COFFYAML::Section NewYAMLSection;
  97. ObjSection.getName(NewYAMLSection.Name);
  98. NewYAMLSection.Header.Characteristics = COFFSection->Characteristics;
  99. NewYAMLSection.Header.VirtualAddress = ObjSection.getAddress();
  100. NewYAMLSection.Header.VirtualSize = COFFSection->VirtualSize;
  101. NewYAMLSection.Alignment = ObjSection.getAlignment();
  102. ArrayRef<uint8_t> sectionData;
  103. if (!ObjSection.isBSS())
  104. Obj.getSectionContents(COFFSection, sectionData);
  105. NewYAMLSection.SectionData = yaml::BinaryRef(sectionData);
  106. std::vector<COFFYAML::Relocation> Relocations;
  107. for (const auto &Reloc : ObjSection.relocations()) {
  108. const object::coff_relocation *reloc = Obj.getCOFFRelocation(Reloc);
  109. COFFYAML::Relocation Rel;
  110. object::symbol_iterator Sym = Reloc.getSymbol();
  111. ErrorOr<StringRef> SymbolNameOrErr = Sym->getName();
  112. if (std::error_code EC = SymbolNameOrErr.getError())
  113. report_fatal_error(EC.message());
  114. Rel.SymbolName = *SymbolNameOrErr;
  115. Rel.VirtualAddress = reloc->VirtualAddress;
  116. Rel.Type = reloc->Type;
  117. Relocations.push_back(Rel);
  118. }
  119. NewYAMLSection.Relocations = Relocations;
  120. YAMLSections.push_back(NewYAMLSection);
  121. }
  122. }
  123. static void
  124. dumpFunctionDefinition(COFFYAML::Symbol *Sym,
  125. const object::coff_aux_function_definition *ObjFD) {
  126. COFF::AuxiliaryFunctionDefinition YAMLFD;
  127. YAMLFD.TagIndex = ObjFD->TagIndex;
  128. YAMLFD.TotalSize = ObjFD->TotalSize;
  129. YAMLFD.PointerToLinenumber = ObjFD->PointerToLinenumber;
  130. YAMLFD.PointerToNextFunction = ObjFD->PointerToNextFunction;
  131. Sym->FunctionDefinition = YAMLFD;
  132. }
  133. static void
  134. dumpbfAndEfLineInfo(COFFYAML::Symbol *Sym,
  135. const object::coff_aux_bf_and_ef_symbol *ObjBES) {
  136. COFF::AuxiliarybfAndefSymbol YAMLAAS;
  137. YAMLAAS.Linenumber = ObjBES->Linenumber;
  138. YAMLAAS.PointerToNextFunction = ObjBES->PointerToNextFunction;
  139. Sym->bfAndefSymbol = YAMLAAS;
  140. }
  141. static void dumpWeakExternal(COFFYAML::Symbol *Sym,
  142. const object::coff_aux_weak_external *ObjWE) {
  143. COFF::AuxiliaryWeakExternal YAMLWE;
  144. YAMLWE.TagIndex = ObjWE->TagIndex;
  145. YAMLWE.Characteristics = ObjWE->Characteristics;
  146. Sym->WeakExternal = YAMLWE;
  147. }
  148. static void
  149. dumpSectionDefinition(COFFYAML::Symbol *Sym,
  150. const object::coff_aux_section_definition *ObjSD,
  151. bool IsBigObj) {
  152. COFF::AuxiliarySectionDefinition YAMLASD;
  153. int32_t AuxNumber = ObjSD->getNumber(IsBigObj);
  154. YAMLASD.Length = ObjSD->Length;
  155. YAMLASD.NumberOfRelocations = ObjSD->NumberOfRelocations;
  156. YAMLASD.NumberOfLinenumbers = ObjSD->NumberOfLinenumbers;
  157. YAMLASD.CheckSum = ObjSD->CheckSum;
  158. YAMLASD.Number = AuxNumber;
  159. YAMLASD.Selection = ObjSD->Selection;
  160. Sym->SectionDefinition = YAMLASD;
  161. }
  162. static void
  163. dumpCLRTokenDefinition(COFFYAML::Symbol *Sym,
  164. const object::coff_aux_clr_token *ObjCLRToken) {
  165. COFF::AuxiliaryCLRToken YAMLCLRToken;
  166. YAMLCLRToken.AuxType = ObjCLRToken->AuxType;
  167. YAMLCLRToken.SymbolTableIndex = ObjCLRToken->SymbolTableIndex;
  168. Sym->CLRToken = YAMLCLRToken;
  169. }
  170. void COFFDumper::dumpSymbols(unsigned NumSymbols) {
  171. std::vector<COFFYAML::Symbol> &Symbols = YAMLObj.Symbols;
  172. for (const auto &S : Obj.symbols()) {
  173. object::COFFSymbolRef Symbol = Obj.getCOFFSymbol(S);
  174. COFFYAML::Symbol Sym;
  175. Obj.getSymbolName(Symbol, Sym.Name);
  176. Sym.SimpleType = COFF::SymbolBaseType(Symbol.getBaseType());
  177. Sym.ComplexType = COFF::SymbolComplexType(Symbol.getComplexType());
  178. Sym.Header.StorageClass = Symbol.getStorageClass();
  179. Sym.Header.Value = Symbol.getValue();
  180. Sym.Header.SectionNumber = Symbol.getSectionNumber();
  181. Sym.Header.NumberOfAuxSymbols = Symbol.getNumberOfAuxSymbols();
  182. if (Symbol.getNumberOfAuxSymbols() > 0) {
  183. ArrayRef<uint8_t> AuxData = Obj.getSymbolAuxData(Symbol);
  184. if (Symbol.isFunctionDefinition()) {
  185. // This symbol represents a function definition.
  186. assert(Symbol.getNumberOfAuxSymbols() == 1 &&
  187. "Expected a single aux symbol to describe this function!");
  188. const object::coff_aux_function_definition *ObjFD =
  189. reinterpret_cast<const object::coff_aux_function_definition *>(
  190. AuxData.data());
  191. dumpFunctionDefinition(&Sym, ObjFD);
  192. } else if (Symbol.isFunctionLineInfo()) {
  193. // This symbol describes function line number information.
  194. assert(Symbol.getNumberOfAuxSymbols() == 1 &&
  195. "Expected a single aux symbol to describe this function!");
  196. const object::coff_aux_bf_and_ef_symbol *ObjBES =
  197. reinterpret_cast<const object::coff_aux_bf_and_ef_symbol *>(
  198. AuxData.data());
  199. dumpbfAndEfLineInfo(&Sym, ObjBES);
  200. } else if (Symbol.isAnyUndefined()) {
  201. // This symbol represents a weak external definition.
  202. assert(Symbol.getNumberOfAuxSymbols() == 1 &&
  203. "Expected a single aux symbol to describe this weak symbol!");
  204. const object::coff_aux_weak_external *ObjWE =
  205. reinterpret_cast<const object::coff_aux_weak_external *>(
  206. AuxData.data());
  207. dumpWeakExternal(&Sym, ObjWE);
  208. } else if (Symbol.isFileRecord()) {
  209. // This symbol represents a file record.
  210. Sym.File = StringRef(reinterpret_cast<const char *>(AuxData.data()),
  211. Symbol.getNumberOfAuxSymbols() *
  212. Obj.getSymbolTableEntrySize())
  213. .rtrim(StringRef("\0", /*length=*/1));
  214. } else if (Symbol.isSectionDefinition()) {
  215. // This symbol represents a section definition.
  216. assert(Symbol.getNumberOfAuxSymbols() == 1 &&
  217. "Expected a single aux symbol to describe this section!");
  218. const object::coff_aux_section_definition *ObjSD =
  219. reinterpret_cast<const object::coff_aux_section_definition *>(
  220. AuxData.data());
  221. dumpSectionDefinition(&Sym, ObjSD, Symbol.isBigObj());
  222. } else if (Symbol.isCLRToken()) {
  223. // This symbol represents a CLR token definition.
  224. assert(Symbol.getNumberOfAuxSymbols() == 1 &&
  225. "Expected a single aux symbol to describe this CLR Token!");
  226. const object::coff_aux_clr_token *ObjCLRToken =
  227. reinterpret_cast<const object::coff_aux_clr_token *>(
  228. AuxData.data());
  229. dumpCLRTokenDefinition(&Sym, ObjCLRToken);
  230. } else {
  231. llvm_unreachable("Unhandled auxiliary symbol!");
  232. }
  233. }
  234. Symbols.push_back(Sym);
  235. }
  236. }
  237. COFFYAML::Object &COFFDumper::getYAMLObj() {
  238. return YAMLObj;
  239. }
  240. std::error_code coff2yaml(raw_ostream &Out, const object::COFFObjectFile &Obj) {
  241. COFFDumper Dumper(Obj);
  242. yaml::Output Yout(Out);
  243. Yout << Dumper.getYAMLObj();
  244. return std::error_code();
  245. }