Magic.cpp 6.5 KB

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  1. //===- llvm/BinaryFormat/Magic.cpp - File magic identification --*- 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 "llvm/BinaryFormat/Magic.h"
  10. #include "llvm/BinaryFormat/COFF.h"
  11. #include "llvm/BinaryFormat/ELF.h"
  12. #include "llvm/BinaryFormat/MachO.h"
  13. #include "llvm/Support/Endian.h"
  14. #include "llvm/Support/FileSystem.h"
  15. #if !defined(_MSC_VER) && !defined(__MINGW32__)
  16. #include <unistd.h>
  17. #else
  18. #include <io.h>
  19. #endif
  20. using namespace llvm;
  21. using namespace llvm::support::endian;
  22. using namespace llvm::sys::fs;
  23. template <size_t N>
  24. static bool startswith(StringRef Magic, const char (&S)[N]) {
  25. return Magic.startswith(StringRef(S, N - 1));
  26. }
  27. /// @brief Identify the magic in magic.
  28. file_magic llvm::identify_magic(StringRef Magic) {
  29. if (Magic.size() < 4)
  30. return file_magic::unknown;
  31. switch ((unsigned char)Magic[0]) {
  32. case 0x00: {
  33. // COFF bigobj, CL.exe's LTO object file, or short import library file
  34. if (startswith(Magic, "\0\0\xFF\xFF")) {
  35. size_t MinSize =
  36. offsetof(COFF::BigObjHeader, UUID) + sizeof(COFF::BigObjMagic);
  37. if (Magic.size() < MinSize)
  38. return file_magic::coff_import_library;
  39. const char *Start = Magic.data() + offsetof(COFF::BigObjHeader, UUID);
  40. if (memcmp(Start, COFF::BigObjMagic, sizeof(COFF::BigObjMagic)) == 0)
  41. return file_magic::coff_object;
  42. if (memcmp(Start, COFF::ClGlObjMagic, sizeof(COFF::BigObjMagic)) == 0)
  43. return file_magic::coff_cl_gl_object;
  44. return file_magic::coff_import_library;
  45. }
  46. // Windows resource file
  47. if (Magic.size() >= sizeof(COFF::WinResMagic) &&
  48. memcmp(Magic.data(), COFF::WinResMagic, sizeof(COFF::WinResMagic)) == 0)
  49. return file_magic::windows_resource;
  50. // 0x0000 = COFF unknown machine type
  51. if (Magic[1] == 0)
  52. return file_magic::coff_object;
  53. if (startswith(Magic, "\0asm"))
  54. return file_magic::wasm_object;
  55. break;
  56. }
  57. case 0xDE: // 0x0B17C0DE = BC wraper
  58. if (startswith(Magic, "\xDE\xC0\x17\x0B"))
  59. return file_magic::bitcode;
  60. break;
  61. case 'B':
  62. if (startswith(Magic, "BC\xC0\xDE"))
  63. return file_magic::bitcode;
  64. break;
  65. case '!':
  66. if (startswith(Magic, "!<arch>\n") || startswith(Magic, "!<thin>\n"))
  67. return file_magic::archive;
  68. break;
  69. case '\177':
  70. if (startswith(Magic, "\177ELF") && Magic.size() >= 18) {
  71. bool Data2MSB = Magic[5] == 2;
  72. unsigned high = Data2MSB ? 16 : 17;
  73. unsigned low = Data2MSB ? 17 : 16;
  74. if (Magic[high] == 0) {
  75. switch (Magic[low]) {
  76. default:
  77. return file_magic::elf;
  78. case 1:
  79. return file_magic::elf_relocatable;
  80. case 2:
  81. return file_magic::elf_executable;
  82. case 3:
  83. return file_magic::elf_shared_object;
  84. case 4:
  85. return file_magic::elf_core;
  86. }
  87. }
  88. // It's still some type of ELF file.
  89. return file_magic::elf;
  90. }
  91. break;
  92. case 0xCA:
  93. if (startswith(Magic, "\xCA\xFE\xBA\xBE") ||
  94. startswith(Magic, "\xCA\xFE\xBA\xBF")) {
  95. // This is complicated by an overlap with Java class files.
  96. // See the Mach-O section in /usr/share/file/magic for details.
  97. if (Magic.size() >= 8 && Magic[7] < 43)
  98. return file_magic::macho_universal_binary;
  99. }
  100. break;
  101. // The two magic numbers for mach-o are:
  102. // 0xfeedface - 32-bit mach-o
  103. // 0xfeedfacf - 64-bit mach-o
  104. case 0xFE:
  105. case 0xCE:
  106. case 0xCF: {
  107. uint16_t type = 0;
  108. if (startswith(Magic, "\xFE\xED\xFA\xCE") ||
  109. startswith(Magic, "\xFE\xED\xFA\xCF")) {
  110. /* Native endian */
  111. size_t MinSize;
  112. if (Magic[3] == char(0xCE))
  113. MinSize = sizeof(MachO::mach_header);
  114. else
  115. MinSize = sizeof(MachO::mach_header_64);
  116. if (Magic.size() >= MinSize)
  117. type = Magic[12] << 24 | Magic[13] << 12 | Magic[14] << 8 | Magic[15];
  118. } else if (startswith(Magic, "\xCE\xFA\xED\xFE") ||
  119. startswith(Magic, "\xCF\xFA\xED\xFE")) {
  120. /* Reverse endian */
  121. size_t MinSize;
  122. if (Magic[0] == char(0xCE))
  123. MinSize = sizeof(MachO::mach_header);
  124. else
  125. MinSize = sizeof(MachO::mach_header_64);
  126. if (Magic.size() >= MinSize)
  127. type = Magic[15] << 24 | Magic[14] << 12 | Magic[13] << 8 | Magic[12];
  128. }
  129. switch (type) {
  130. default:
  131. break;
  132. case 1:
  133. return file_magic::macho_object;
  134. case 2:
  135. return file_magic::macho_executable;
  136. case 3:
  137. return file_magic::macho_fixed_virtual_memory_shared_lib;
  138. case 4:
  139. return file_magic::macho_core;
  140. case 5:
  141. return file_magic::macho_preload_executable;
  142. case 6:
  143. return file_magic::macho_dynamically_linked_shared_lib;
  144. case 7:
  145. return file_magic::macho_dynamic_linker;
  146. case 8:
  147. return file_magic::macho_bundle;
  148. case 9:
  149. return file_magic::macho_dynamically_linked_shared_lib_stub;
  150. case 10:
  151. return file_magic::macho_dsym_companion;
  152. case 11:
  153. return file_magic::macho_kext_bundle;
  154. }
  155. break;
  156. }
  157. case 0xF0: // PowerPC Windows
  158. case 0x83: // Alpha 32-bit
  159. case 0x84: // Alpha 64-bit
  160. case 0x66: // MPS R4000 Windows
  161. case 0x50: // mc68K
  162. case 0x4c: // 80386 Windows
  163. case 0xc4: // ARMNT Windows
  164. if (Magic[1] == 0x01)
  165. return file_magic::coff_object;
  166. LLVM_FALLTHROUGH;
  167. case 0x90: // PA-RISC Windows
  168. case 0x68: // mc68K Windows
  169. if (Magic[1] == 0x02)
  170. return file_magic::coff_object;
  171. break;
  172. case 'M': // Possible MS-DOS stub on Windows PE file
  173. if (startswith(Magic, "MZ")) {
  174. uint32_t off = read32le(Magic.data() + 0x3c);
  175. // PE/COFF file, either EXE or DLL.
  176. if (off < Magic.size() &&
  177. memcmp(Magic.data() + off, COFF::PEMagic, sizeof(COFF::PEMagic)) == 0)
  178. return file_magic::pecoff_executable;
  179. }
  180. break;
  181. case 0x64: // x86-64 Windows.
  182. if (Magic[1] == char(0x86))
  183. return file_magic::coff_object;
  184. break;
  185. default:
  186. break;
  187. }
  188. return file_magic::unknown;
  189. }
  190. std::error_code llvm::identify_magic(const Twine &Path, file_magic &Result) {
  191. int FD;
  192. if (std::error_code EC = openFileForRead(Path, FD))
  193. return EC;
  194. char Buffer[32];
  195. int Length = read(FD, Buffer, sizeof(Buffer));
  196. if (close(FD) != 0 || Length < 0)
  197. return std::error_code(errno, std::generic_category());
  198. Result = identify_magic(StringRef(Buffer, Length));
  199. return std::error_code();
  200. }