IRObjectFile.cpp 8.9 KB

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  1. //===- IRObjectFile.cpp - IR object file implementation ---------*- 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. //
  10. // Part of the IRObjectFile class implementation.
  11. //
  12. //===----------------------------------------------------------------------===//
  13. #include "llvm/Object/IRObjectFile.h"
  14. #include "RecordStreamer.h"
  15. #include "llvm/ADT/STLExtras.h"
  16. #include "llvm/Bitcode/ReaderWriter.h"
  17. #include "llvm/IR/GVMaterializer.h"
  18. #include "llvm/IR/LLVMContext.h"
  19. #include "llvm/IR/Mangler.h"
  20. #include "llvm/IR/Module.h"
  21. #include "llvm/MC/MCAsmInfo.h"
  22. #include "llvm/MC/MCContext.h"
  23. #include "llvm/MC/MCInstrInfo.h"
  24. #include "llvm/MC/MCObjectFileInfo.h"
  25. #include "llvm/MC/MCParser/MCAsmParser.h"
  26. #include "llvm/MC/MCRegisterInfo.h"
  27. #include "llvm/MC/MCTargetAsmParser.h"
  28. #include "llvm/Object/ObjectFile.h"
  29. #include "llvm/Support/MemoryBuffer.h"
  30. #include "llvm/Support/SourceMgr.h"
  31. #include "llvm/Support/TargetRegistry.h"
  32. #include "llvm/Support/raw_ostream.h"
  33. using namespace llvm;
  34. using namespace object;
  35. IRObjectFile::IRObjectFile(MemoryBufferRef Object, std::unique_ptr<Module> Mod)
  36. : SymbolicFile(Binary::ID_IR, Object), M(std::move(Mod)) {
  37. // Setup a mangler with the DataLayout.
  38. const DataLayout &DL = M->getDataLayout();
  39. Mang.reset(new Mangler(&DL));
  40. const std::string &InlineAsm = M->getModuleInlineAsm();
  41. if (InlineAsm.empty())
  42. return;
  43. StringRef Triple = M->getTargetTriple();
  44. std::string Err;
  45. const Target *T = TargetRegistry::lookupTarget(Triple, Err);
  46. if (!T)
  47. return;
  48. std::unique_ptr<MCRegisterInfo> MRI(T->createMCRegInfo(Triple));
  49. if (!MRI)
  50. return;
  51. std::unique_ptr<MCAsmInfo> MAI(T->createMCAsmInfo(*MRI, Triple));
  52. if (!MAI)
  53. return;
  54. std::unique_ptr<MCSubtargetInfo> STI(
  55. T->createMCSubtargetInfo(Triple, "", ""));
  56. if (!STI)
  57. return;
  58. std::unique_ptr<MCInstrInfo> MCII(T->createMCInstrInfo());
  59. if (!MCII)
  60. return;
  61. MCObjectFileInfo MOFI;
  62. MCContext MCCtx(MAI.get(), MRI.get(), &MOFI);
  63. MOFI.InitMCObjectFileInfo(Triple, Reloc::Default, CodeModel::Default, MCCtx);
  64. std::unique_ptr<RecordStreamer> Streamer(new RecordStreamer(MCCtx));
  65. T->createNullTargetStreamer(*Streamer);
  66. std::unique_ptr<MemoryBuffer> Buffer(MemoryBuffer::getMemBuffer(InlineAsm));
  67. SourceMgr SrcMgr;
  68. SrcMgr.AddNewSourceBuffer(std::move(Buffer), SMLoc());
  69. std::unique_ptr<MCAsmParser> Parser(
  70. createMCAsmParser(SrcMgr, MCCtx, *Streamer, *MAI));
  71. MCTargetOptions MCOptions;
  72. std::unique_ptr<MCTargetAsmParser> TAP(
  73. T->createMCAsmParser(*STI, *Parser, *MCII, MCOptions));
  74. if (!TAP)
  75. return;
  76. Parser->setTargetParser(*TAP);
  77. if (Parser->Run(false))
  78. return;
  79. for (auto &KV : *Streamer) {
  80. StringRef Key = KV.first();
  81. RecordStreamer::State Value = KV.second;
  82. uint32_t Res = BasicSymbolRef::SF_None;
  83. switch (Value) {
  84. case RecordStreamer::NeverSeen:
  85. llvm_unreachable("foo");
  86. case RecordStreamer::DefinedGlobal:
  87. Res |= BasicSymbolRef::SF_Global;
  88. break;
  89. case RecordStreamer::Defined:
  90. break;
  91. case RecordStreamer::Global:
  92. case RecordStreamer::Used:
  93. Res |= BasicSymbolRef::SF_Undefined;
  94. Res |= BasicSymbolRef::SF_Global;
  95. break;
  96. }
  97. AsmSymbols.push_back(
  98. std::make_pair<std::string, uint32_t>(Key, std::move(Res)));
  99. }
  100. }
  101. IRObjectFile::~IRObjectFile() {
  102. }
  103. static GlobalValue *getGV(DataRefImpl &Symb) {
  104. if ((Symb.p & 3) == 3)
  105. return nullptr;
  106. return reinterpret_cast<GlobalValue*>(Symb.p & ~uintptr_t(3));
  107. }
  108. static uintptr_t skipEmpty(Module::const_alias_iterator I, const Module &M) {
  109. if (I == M.alias_end())
  110. return 3;
  111. const GlobalValue *GV = &*I;
  112. return reinterpret_cast<uintptr_t>(GV) | 2;
  113. }
  114. static uintptr_t skipEmpty(Module::const_global_iterator I, const Module &M) {
  115. if (I == M.global_end())
  116. return skipEmpty(M.alias_begin(), M);
  117. const GlobalValue *GV = &*I;
  118. return reinterpret_cast<uintptr_t>(GV) | 1;
  119. }
  120. static uintptr_t skipEmpty(Module::const_iterator I, const Module &M) {
  121. if (I == M.end())
  122. return skipEmpty(M.global_begin(), M);
  123. const GlobalValue *GV = &*I;
  124. return reinterpret_cast<uintptr_t>(GV) | 0;
  125. }
  126. static unsigned getAsmSymIndex(DataRefImpl Symb) {
  127. assert((Symb.p & uintptr_t(3)) == 3);
  128. uintptr_t Index = Symb.p & ~uintptr_t(3);
  129. Index >>= 2;
  130. return Index;
  131. }
  132. void IRObjectFile::moveSymbolNext(DataRefImpl &Symb) const {
  133. const GlobalValue *GV = getGV(Symb);
  134. uintptr_t Res;
  135. switch (Symb.p & 3) {
  136. case 0: {
  137. Module::const_iterator Iter(static_cast<const Function*>(GV));
  138. ++Iter;
  139. Res = skipEmpty(Iter, *M);
  140. break;
  141. }
  142. case 1: {
  143. Module::const_global_iterator Iter(static_cast<const GlobalVariable*>(GV));
  144. ++Iter;
  145. Res = skipEmpty(Iter, *M);
  146. break;
  147. }
  148. case 2: {
  149. Module::const_alias_iterator Iter(static_cast<const GlobalAlias*>(GV));
  150. ++Iter;
  151. Res = skipEmpty(Iter, *M);
  152. break;
  153. }
  154. case 3: {
  155. unsigned Index = getAsmSymIndex(Symb);
  156. assert(Index < AsmSymbols.size());
  157. ++Index;
  158. Res = (Index << 2) | 3;
  159. break;
  160. }
  161. default:
  162. llvm_unreachable("unreachable case");
  163. }
  164. Symb.p = Res;
  165. }
  166. std::error_code IRObjectFile::printSymbolName(raw_ostream &OS,
  167. DataRefImpl Symb) const {
  168. const GlobalValue *GV = getGV(Symb);
  169. if (!GV) {
  170. unsigned Index = getAsmSymIndex(Symb);
  171. assert(Index <= AsmSymbols.size());
  172. OS << AsmSymbols[Index].first;
  173. return object_error::success;;
  174. }
  175. if (Mang)
  176. Mang->getNameWithPrefix(OS, GV, false);
  177. else
  178. OS << GV->getName();
  179. return object_error::success;
  180. }
  181. uint32_t IRObjectFile::getSymbolFlags(DataRefImpl Symb) const {
  182. const GlobalValue *GV = getGV(Symb);
  183. if (!GV) {
  184. unsigned Index = getAsmSymIndex(Symb);
  185. assert(Index <= AsmSymbols.size());
  186. return AsmSymbols[Index].second;
  187. }
  188. uint32_t Res = BasicSymbolRef::SF_None;
  189. if (GV->isDeclarationForLinker())
  190. Res |= BasicSymbolRef::SF_Undefined;
  191. if (GV->hasPrivateLinkage())
  192. Res |= BasicSymbolRef::SF_FormatSpecific;
  193. if (!GV->hasLocalLinkage())
  194. Res |= BasicSymbolRef::SF_Global;
  195. if (GV->hasCommonLinkage())
  196. Res |= BasicSymbolRef::SF_Common;
  197. if (GV->hasLinkOnceLinkage() || GV->hasWeakLinkage())
  198. Res |= BasicSymbolRef::SF_Weak;
  199. if (GV->getName().startswith("llvm."))
  200. Res |= BasicSymbolRef::SF_FormatSpecific;
  201. else if (auto *Var = dyn_cast<GlobalVariable>(GV)) {
  202. if (Var->getSection() == StringRef("llvm.metadata"))
  203. Res |= BasicSymbolRef::SF_FormatSpecific;
  204. }
  205. return Res;
  206. }
  207. GlobalValue *IRObjectFile::getSymbolGV(DataRefImpl Symb) { return getGV(Symb); }
  208. std::unique_ptr<Module> IRObjectFile::takeModule() { return std::move(M); }
  209. basic_symbol_iterator IRObjectFile::symbol_begin_impl() const {
  210. Module::const_iterator I = M->begin();
  211. DataRefImpl Ret;
  212. Ret.p = skipEmpty(I, *M);
  213. return basic_symbol_iterator(BasicSymbolRef(Ret, this));
  214. }
  215. basic_symbol_iterator IRObjectFile::symbol_end_impl() const {
  216. DataRefImpl Ret;
  217. uint64_t NumAsm = AsmSymbols.size();
  218. NumAsm <<= 2;
  219. Ret.p = 3 | NumAsm;
  220. return basic_symbol_iterator(BasicSymbolRef(Ret, this));
  221. }
  222. ErrorOr<MemoryBufferRef> IRObjectFile::findBitcodeInObject(const ObjectFile &Obj) {
  223. for (const SectionRef &Sec : Obj.sections()) {
  224. StringRef SecName;
  225. if (std::error_code EC = Sec.getName(SecName))
  226. return EC;
  227. if (SecName == ".llvmbc") {
  228. StringRef SecContents;
  229. if (std::error_code EC = Sec.getContents(SecContents))
  230. return EC;
  231. return MemoryBufferRef(SecContents, Obj.getFileName());
  232. }
  233. }
  234. return object_error::bitcode_section_not_found;
  235. }
  236. ErrorOr<MemoryBufferRef> IRObjectFile::findBitcodeInMemBuffer(MemoryBufferRef Object) {
  237. sys::fs::file_magic Type = sys::fs::identify_magic(Object.getBuffer());
  238. switch (Type) {
  239. case sys::fs::file_magic::bitcode:
  240. return Object;
  241. case sys::fs::file_magic::elf_relocatable:
  242. case sys::fs::file_magic::macho_object:
  243. case sys::fs::file_magic::coff_object: {
  244. ErrorOr<std::unique_ptr<ObjectFile>> ObjFile =
  245. ObjectFile::createObjectFile(Object, Type);
  246. if (!ObjFile)
  247. return ObjFile.getError();
  248. return findBitcodeInObject(*ObjFile->get());
  249. }
  250. default:
  251. return object_error::invalid_file_type;
  252. }
  253. }
  254. ErrorOr<std::unique_ptr<IRObjectFile>>
  255. llvm::object::IRObjectFile::create(MemoryBufferRef Object,
  256. LLVMContext &Context) {
  257. ErrorOr<MemoryBufferRef> BCOrErr = findBitcodeInMemBuffer(Object);
  258. if (!BCOrErr)
  259. return BCOrErr.getError();
  260. std::unique_ptr<MemoryBuffer> Buff(
  261. MemoryBuffer::getMemBuffer(BCOrErr.get(), false));
  262. ErrorOr<Module *> MOrErr = getLazyBitcodeModule(std::move(Buff), Context);
  263. if (std::error_code EC = MOrErr.getError())
  264. return EC;
  265. std::unique_ptr<Module> M(MOrErr.get());
  266. return llvm::make_unique<IRObjectFile>(Object, std::move(M));
  267. }