Object.cpp 11 KB

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  1. //===- Object.cpp - C bindings to the object file library--------*- C++ -*-===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. //
  9. // This file defines the C bindings to the file-format-independent object
  10. // library.
  11. //
  12. //===----------------------------------------------------------------------===//
  13. #include "llvm-c/Object.h"
  14. #include "llvm/ADT/SmallVector.h"
  15. #include "llvm/IR/LLVMContext.h"
  16. #include "llvm/Object/ObjectFile.h"
  17. #include "llvm/Object/MachOUniversal.h"
  18. using namespace llvm;
  19. using namespace object;
  20. inline OwningBinary<ObjectFile> *unwrap(LLVMObjectFileRef OF) {
  21. return reinterpret_cast<OwningBinary<ObjectFile> *>(OF);
  22. }
  23. inline LLVMObjectFileRef wrap(const OwningBinary<ObjectFile> *OF) {
  24. return reinterpret_cast<LLVMObjectFileRef>(
  25. const_cast<OwningBinary<ObjectFile> *>(OF));
  26. }
  27. inline section_iterator *unwrap(LLVMSectionIteratorRef SI) {
  28. return reinterpret_cast<section_iterator*>(SI);
  29. }
  30. inline LLVMSectionIteratorRef
  31. wrap(const section_iterator *SI) {
  32. return reinterpret_cast<LLVMSectionIteratorRef>
  33. (const_cast<section_iterator*>(SI));
  34. }
  35. inline symbol_iterator *unwrap(LLVMSymbolIteratorRef SI) {
  36. return reinterpret_cast<symbol_iterator*>(SI);
  37. }
  38. inline LLVMSymbolIteratorRef
  39. wrap(const symbol_iterator *SI) {
  40. return reinterpret_cast<LLVMSymbolIteratorRef>
  41. (const_cast<symbol_iterator*>(SI));
  42. }
  43. inline relocation_iterator *unwrap(LLVMRelocationIteratorRef SI) {
  44. return reinterpret_cast<relocation_iterator*>(SI);
  45. }
  46. inline LLVMRelocationIteratorRef
  47. wrap(const relocation_iterator *SI) {
  48. return reinterpret_cast<LLVMRelocationIteratorRef>
  49. (const_cast<relocation_iterator*>(SI));
  50. }
  51. /*--.. Operations on binary files ..........................................--*/
  52. LLVMBinaryRef LLVMCreateBinary(LLVMMemoryBufferRef MemBuf,
  53. LLVMContextRef Context,
  54. char **ErrorMessage) {
  55. auto maybeContext = Context ? unwrap(Context) : nullptr;
  56. Expected<std::unique_ptr<Binary>> ObjOrErr(
  57. createBinary(unwrap(MemBuf)->getMemBufferRef(), maybeContext));
  58. if (!ObjOrErr) {
  59. *ErrorMessage = strdup(toString(ObjOrErr.takeError()).c_str());
  60. return nullptr;
  61. }
  62. return wrap(ObjOrErr.get().release());
  63. }
  64. LLVMMemoryBufferRef LLVMBinaryCopyMemoryBuffer(LLVMBinaryRef BR) {
  65. auto Buf = unwrap(BR)->getMemoryBufferRef();
  66. return wrap(llvm::MemoryBuffer::getMemBuffer(
  67. Buf.getBuffer(), Buf.getBufferIdentifier(),
  68. /*RequiresNullTerminator*/false).release());
  69. }
  70. void LLVMDisposeBinary(LLVMBinaryRef BR) {
  71. delete unwrap(BR);
  72. }
  73. LLVMBinaryType LLVMBinaryGetType(LLVMBinaryRef BR) {
  74. class BinaryTypeMapper final : public Binary {
  75. public:
  76. static LLVMBinaryType mapBinaryTypeToLLVMBinaryType(unsigned Kind) {
  77. switch (Kind) {
  78. case ID_Archive:
  79. return LLVMBinaryTypeArchive;
  80. case ID_MachOUniversalBinary:
  81. return LLVMBinaryTypeMachOUniversalBinary;
  82. case ID_COFFImportFile:
  83. return LLVMBinaryTypeCOFFImportFile;
  84. case ID_IR:
  85. return LLVMBinaryTypeIR;
  86. case ID_WinRes:
  87. return LLVMBinaryTypeWinRes;
  88. case ID_COFF:
  89. return LLVMBinaryTypeCOFF;
  90. case ID_ELF32L:
  91. return LLVMBinaryTypeELF32L;
  92. case ID_ELF32B:
  93. return LLVMBinaryTypeELF32B;
  94. case ID_ELF64L:
  95. return LLVMBinaryTypeELF64L;
  96. case ID_ELF64B:
  97. return LLVMBinaryTypeELF64B;
  98. case ID_MachO32L:
  99. return LLVMBinaryTypeMachO32L;
  100. case ID_MachO32B:
  101. return LLVMBinaryTypeMachO32B;
  102. case ID_MachO64L:
  103. return LLVMBinaryTypeMachO64L;
  104. case ID_MachO64B:
  105. return LLVMBinaryTypeMachO64B;
  106. case ID_Wasm:
  107. return LLVMBinaryTypeWasm;
  108. case ID_StartObjects:
  109. case ID_EndObjects:
  110. llvm_unreachable("Marker types are not valid binary kinds!");
  111. default:
  112. llvm_unreachable("Unknown binary kind!");
  113. }
  114. }
  115. };
  116. return BinaryTypeMapper::mapBinaryTypeToLLVMBinaryType(unwrap(BR)->getType());
  117. }
  118. LLVMBinaryRef LLVMMachOUniversalBinaryCopyObjectForArch(LLVMBinaryRef BR,
  119. const char *Arch,
  120. size_t ArchLen,
  121. char **ErrorMessage) {
  122. auto universal = cast<MachOUniversalBinary>(unwrap(BR));
  123. Expected<std::unique_ptr<ObjectFile>> ObjOrErr(
  124. universal->getMachOObjectForArch({Arch, ArchLen}));
  125. if (!ObjOrErr) {
  126. *ErrorMessage = strdup(toString(ObjOrErr.takeError()).c_str());
  127. return nullptr;
  128. }
  129. return wrap(ObjOrErr.get().release());
  130. }
  131. LLVMSectionIteratorRef LLVMObjectFileCopySectionIterator(LLVMBinaryRef BR) {
  132. auto OF = cast<ObjectFile>(unwrap(BR));
  133. auto sections = OF->sections();
  134. if (sections.begin() == sections.end())
  135. return nullptr;
  136. return wrap(new section_iterator(sections.begin()));
  137. }
  138. LLVMBool LLVMObjectFileIsSectionIteratorAtEnd(LLVMBinaryRef BR,
  139. LLVMSectionIteratorRef SI) {
  140. auto OF = cast<ObjectFile>(unwrap(BR));
  141. return (*unwrap(SI) == OF->section_end()) ? 1 : 0;
  142. }
  143. LLVMSymbolIteratorRef LLVMObjectFileCopySymbolIterator(LLVMBinaryRef BR) {
  144. auto OF = cast<ObjectFile>(unwrap(BR));
  145. auto symbols = OF->symbols();
  146. if (symbols.begin() == symbols.end())
  147. return nullptr;
  148. return wrap(new symbol_iterator(symbols.begin()));
  149. }
  150. LLVMBool LLVMObjectFileIsSymbolIteratorAtEnd(LLVMBinaryRef BR,
  151. LLVMSymbolIteratorRef SI) {
  152. auto OF = cast<ObjectFile>(unwrap(BR));
  153. return (*unwrap(SI) == OF->symbol_end()) ? 1 : 0;
  154. }
  155. // ObjectFile creation
  156. LLVMObjectFileRef LLVMCreateObjectFile(LLVMMemoryBufferRef MemBuf) {
  157. std::unique_ptr<MemoryBuffer> Buf(unwrap(MemBuf));
  158. Expected<std::unique_ptr<ObjectFile>> ObjOrErr(
  159. ObjectFile::createObjectFile(Buf->getMemBufferRef()));
  160. std::unique_ptr<ObjectFile> Obj;
  161. if (!ObjOrErr) {
  162. // TODO: Actually report errors helpfully.
  163. consumeError(ObjOrErr.takeError());
  164. return nullptr;
  165. }
  166. auto *Ret = new OwningBinary<ObjectFile>(std::move(ObjOrErr.get()), std::move(Buf));
  167. return wrap(Ret);
  168. }
  169. void LLVMDisposeObjectFile(LLVMObjectFileRef ObjectFile) {
  170. delete unwrap(ObjectFile);
  171. }
  172. // ObjectFile Section iterators
  173. LLVMSectionIteratorRef LLVMGetSections(LLVMObjectFileRef OF) {
  174. OwningBinary<ObjectFile> *OB = unwrap(OF);
  175. section_iterator SI = OB->getBinary()->section_begin();
  176. return wrap(new section_iterator(SI));
  177. }
  178. void LLVMDisposeSectionIterator(LLVMSectionIteratorRef SI) {
  179. delete unwrap(SI);
  180. }
  181. LLVMBool LLVMIsSectionIteratorAtEnd(LLVMObjectFileRef OF,
  182. LLVMSectionIteratorRef SI) {
  183. OwningBinary<ObjectFile> *OB = unwrap(OF);
  184. return (*unwrap(SI) == OB->getBinary()->section_end()) ? 1 : 0;
  185. }
  186. void LLVMMoveToNextSection(LLVMSectionIteratorRef SI) {
  187. ++(*unwrap(SI));
  188. }
  189. void LLVMMoveToContainingSection(LLVMSectionIteratorRef Sect,
  190. LLVMSymbolIteratorRef Sym) {
  191. Expected<section_iterator> SecOrErr = (*unwrap(Sym))->getSection();
  192. if (!SecOrErr) {
  193. std::string Buf;
  194. raw_string_ostream OS(Buf);
  195. logAllUnhandledErrors(SecOrErr.takeError(), OS);
  196. OS.flush();
  197. report_fatal_error(Buf);
  198. }
  199. *unwrap(Sect) = *SecOrErr;
  200. }
  201. // ObjectFile Symbol iterators
  202. LLVMSymbolIteratorRef LLVMGetSymbols(LLVMObjectFileRef OF) {
  203. OwningBinary<ObjectFile> *OB = unwrap(OF);
  204. symbol_iterator SI = OB->getBinary()->symbol_begin();
  205. return wrap(new symbol_iterator(SI));
  206. }
  207. void LLVMDisposeSymbolIterator(LLVMSymbolIteratorRef SI) {
  208. delete unwrap(SI);
  209. }
  210. LLVMBool LLVMIsSymbolIteratorAtEnd(LLVMObjectFileRef OF,
  211. LLVMSymbolIteratorRef SI) {
  212. OwningBinary<ObjectFile> *OB = unwrap(OF);
  213. return (*unwrap(SI) == OB->getBinary()->symbol_end()) ? 1 : 0;
  214. }
  215. void LLVMMoveToNextSymbol(LLVMSymbolIteratorRef SI) {
  216. ++(*unwrap(SI));
  217. }
  218. // SectionRef accessors
  219. const char *LLVMGetSectionName(LLVMSectionIteratorRef SI) {
  220. auto NameOrErr = (*unwrap(SI))->getName();
  221. if (!NameOrErr)
  222. report_fatal_error(NameOrErr.takeError());
  223. return NameOrErr->data();
  224. }
  225. uint64_t LLVMGetSectionSize(LLVMSectionIteratorRef SI) {
  226. return (*unwrap(SI))->getSize();
  227. }
  228. const char *LLVMGetSectionContents(LLVMSectionIteratorRef SI) {
  229. if (Expected<StringRef> E = (*unwrap(SI))->getContents())
  230. return E->data();
  231. else
  232. report_fatal_error(E.takeError());
  233. }
  234. uint64_t LLVMGetSectionAddress(LLVMSectionIteratorRef SI) {
  235. return (*unwrap(SI))->getAddress();
  236. }
  237. LLVMBool LLVMGetSectionContainsSymbol(LLVMSectionIteratorRef SI,
  238. LLVMSymbolIteratorRef Sym) {
  239. return (*unwrap(SI))->containsSymbol(**unwrap(Sym));
  240. }
  241. // Section Relocation iterators
  242. LLVMRelocationIteratorRef LLVMGetRelocations(LLVMSectionIteratorRef Section) {
  243. relocation_iterator SI = (*unwrap(Section))->relocation_begin();
  244. return wrap(new relocation_iterator(SI));
  245. }
  246. void LLVMDisposeRelocationIterator(LLVMRelocationIteratorRef SI) {
  247. delete unwrap(SI);
  248. }
  249. LLVMBool LLVMIsRelocationIteratorAtEnd(LLVMSectionIteratorRef Section,
  250. LLVMRelocationIteratorRef SI) {
  251. return (*unwrap(SI) == (*unwrap(Section))->relocation_end()) ? 1 : 0;
  252. }
  253. void LLVMMoveToNextRelocation(LLVMRelocationIteratorRef SI) {
  254. ++(*unwrap(SI));
  255. }
  256. // SymbolRef accessors
  257. const char *LLVMGetSymbolName(LLVMSymbolIteratorRef SI) {
  258. Expected<StringRef> Ret = (*unwrap(SI))->getName();
  259. if (!Ret) {
  260. std::string Buf;
  261. raw_string_ostream OS(Buf);
  262. logAllUnhandledErrors(Ret.takeError(), OS);
  263. OS.flush();
  264. report_fatal_error(Buf);
  265. }
  266. return Ret->data();
  267. }
  268. uint64_t LLVMGetSymbolAddress(LLVMSymbolIteratorRef SI) {
  269. Expected<uint64_t> Ret = (*unwrap(SI))->getAddress();
  270. if (!Ret) {
  271. std::string Buf;
  272. raw_string_ostream OS(Buf);
  273. logAllUnhandledErrors(Ret.takeError(), OS);
  274. OS.flush();
  275. report_fatal_error(Buf);
  276. }
  277. return *Ret;
  278. }
  279. uint64_t LLVMGetSymbolSize(LLVMSymbolIteratorRef SI) {
  280. return (*unwrap(SI))->getCommonSize();
  281. }
  282. // RelocationRef accessors
  283. uint64_t LLVMGetRelocationOffset(LLVMRelocationIteratorRef RI) {
  284. return (*unwrap(RI))->getOffset();
  285. }
  286. LLVMSymbolIteratorRef LLVMGetRelocationSymbol(LLVMRelocationIteratorRef RI) {
  287. symbol_iterator ret = (*unwrap(RI))->getSymbol();
  288. return wrap(new symbol_iterator(ret));
  289. }
  290. uint64_t LLVMGetRelocationType(LLVMRelocationIteratorRef RI) {
  291. return (*unwrap(RI))->getType();
  292. }
  293. // NOTE: Caller takes ownership of returned string.
  294. const char *LLVMGetRelocationTypeName(LLVMRelocationIteratorRef RI) {
  295. SmallVector<char, 0> ret;
  296. (*unwrap(RI))->getTypeName(ret);
  297. char *str = static_cast<char*>(safe_malloc(ret.size()));
  298. llvm::copy(ret, str);
  299. return str;
  300. }
  301. // NOTE: Caller takes ownership of returned string.
  302. const char *LLVMGetRelocationValueString(LLVMRelocationIteratorRef RI) {
  303. return strdup("");
  304. }