RTDyldObjectLinkingLayer.cpp 11 KB

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  1. //===-- RTDyldObjectLinkingLayer.cpp - RuntimeDyld backed ORC ObjectLayer -===//
  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. #include "llvm/ExecutionEngine/Orc/RTDyldObjectLinkingLayer.h"
  9. #include "llvm/Object/COFF.h"
  10. namespace {
  11. using namespace llvm;
  12. using namespace llvm::orc;
  13. class JITDylibSearchOrderResolver : public JITSymbolResolver {
  14. public:
  15. JITDylibSearchOrderResolver(MaterializationResponsibility &MR) : MR(MR) {}
  16. void lookup(const LookupSet &Symbols, OnResolvedFunction OnResolved) override {
  17. auto &ES = MR.getTargetJITDylib().getExecutionSession();
  18. SymbolLookupSet InternedSymbols;
  19. // Intern the requested symbols: lookup takes interned strings.
  20. for (auto &S : Symbols)
  21. InternedSymbols.add(ES.intern(S));
  22. // Build an OnResolve callback to unwrap the interned strings and pass them
  23. // to the OnResolved callback.
  24. auto OnResolvedWithUnwrap =
  25. [OnResolved = std::move(OnResolved)](
  26. Expected<SymbolMap> InternedResult) mutable {
  27. if (!InternedResult) {
  28. OnResolved(InternedResult.takeError());
  29. return;
  30. }
  31. LookupResult Result;
  32. for (auto &KV : *InternedResult)
  33. Result[*KV.first] = std::move(KV.second);
  34. OnResolved(Result);
  35. };
  36. // Register dependencies for all symbols contained in this set.
  37. auto RegisterDependencies = [&](const SymbolDependenceMap &Deps) {
  38. MR.addDependenciesForAll(Deps);
  39. };
  40. JITDylibSearchOrder LinkOrder;
  41. MR.getTargetJITDylib().withLinkOrderDo(
  42. [&](const JITDylibSearchOrder &LO) { LinkOrder = LO; });
  43. ES.lookup(LookupKind::Static, LinkOrder, InternedSymbols,
  44. SymbolState::Resolved, std::move(OnResolvedWithUnwrap),
  45. RegisterDependencies);
  46. }
  47. Expected<LookupSet> getResponsibilitySet(const LookupSet &Symbols) override {
  48. LookupSet Result;
  49. for (auto &KV : MR.getSymbols()) {
  50. if (Symbols.count(*KV.first))
  51. Result.insert(*KV.first);
  52. }
  53. return Result;
  54. }
  55. private:
  56. MaterializationResponsibility &MR;
  57. };
  58. } // end anonymous namespace
  59. namespace llvm {
  60. namespace orc {
  61. char RTDyldObjectLinkingLayer::ID;
  62. using BaseT = RTTIExtends<RTDyldObjectLinkingLayer, ObjectLayer>;
  63. RTDyldObjectLinkingLayer::RTDyldObjectLinkingLayer(
  64. ExecutionSession &ES, GetMemoryManagerFunction GetMemoryManager)
  65. : BaseT(ES), GetMemoryManager(GetMemoryManager) {
  66. ES.registerResourceManager(*this);
  67. }
  68. RTDyldObjectLinkingLayer::~RTDyldObjectLinkingLayer() {
  69. assert(MemMgrs.empty() && "Layer destroyed with resources still attached");
  70. }
  71. void RTDyldObjectLinkingLayer::emit(
  72. std::unique_ptr<MaterializationResponsibility> R,
  73. std::unique_ptr<MemoryBuffer> O) {
  74. assert(O && "Object must not be null");
  75. auto &ES = getExecutionSession();
  76. auto Obj = object::ObjectFile::createObjectFile(*O);
  77. if (!Obj) {
  78. getExecutionSession().reportError(Obj.takeError());
  79. R->failMaterialization();
  80. return;
  81. }
  82. // Collect the internal symbols from the object file: We will need to
  83. // filter these later.
  84. auto InternalSymbols = std::make_shared<std::set<StringRef>>();
  85. {
  86. for (auto &Sym : (*Obj)->symbols()) {
  87. // Skip file symbols.
  88. if (auto SymType = Sym.getType()) {
  89. if (*SymType == object::SymbolRef::ST_File)
  90. continue;
  91. } else {
  92. ES.reportError(SymType.takeError());
  93. R->failMaterialization();
  94. return;
  95. }
  96. Expected<uint32_t> SymFlagsOrErr = Sym.getFlags();
  97. if (!SymFlagsOrErr) {
  98. // TODO: Test this error.
  99. ES.reportError(SymFlagsOrErr.takeError());
  100. R->failMaterialization();
  101. return;
  102. }
  103. // Don't include symbols that aren't global.
  104. if (!(*SymFlagsOrErr & object::BasicSymbolRef::SF_Global)) {
  105. if (auto SymName = Sym.getName())
  106. InternalSymbols->insert(*SymName);
  107. else {
  108. ES.reportError(SymName.takeError());
  109. R->failMaterialization();
  110. return;
  111. }
  112. }
  113. }
  114. }
  115. auto MemMgr = GetMemoryManager();
  116. auto &MemMgrRef = *MemMgr;
  117. // Switch to shared ownership of MR so that it can be captured by both
  118. // lambdas below.
  119. std::shared_ptr<MaterializationResponsibility> SharedR(std::move(R));
  120. JITDylibSearchOrderResolver Resolver(*SharedR);
  121. jitLinkForORC(
  122. object::OwningBinary<object::ObjectFile>(std::move(*Obj), std::move(O)),
  123. MemMgrRef, Resolver, ProcessAllSections,
  124. [this, SharedR, &MemMgrRef, InternalSymbols](
  125. const object::ObjectFile &Obj,
  126. RuntimeDyld::LoadedObjectInfo &LoadedObjInfo,
  127. std::map<StringRef, JITEvaluatedSymbol> ResolvedSymbols) {
  128. return onObjLoad(*SharedR, Obj, MemMgrRef, LoadedObjInfo,
  129. ResolvedSymbols, *InternalSymbols);
  130. },
  131. [this, SharedR, MemMgr = std::move(MemMgr)](
  132. object::OwningBinary<object::ObjectFile> Obj,
  133. std::unique_ptr<RuntimeDyld::LoadedObjectInfo> LoadedObjInfo,
  134. Error Err) mutable {
  135. onObjEmit(*SharedR, std::move(Obj), std::move(MemMgr),
  136. std::move(LoadedObjInfo), std::move(Err));
  137. });
  138. }
  139. void RTDyldObjectLinkingLayer::registerJITEventListener(JITEventListener &L) {
  140. std::lock_guard<std::mutex> Lock(RTDyldLayerMutex);
  141. assert(!llvm::is_contained(EventListeners, &L) &&
  142. "Listener has already been registered");
  143. EventListeners.push_back(&L);
  144. }
  145. void RTDyldObjectLinkingLayer::unregisterJITEventListener(JITEventListener &L) {
  146. std::lock_guard<std::mutex> Lock(RTDyldLayerMutex);
  147. auto I = llvm::find(EventListeners, &L);
  148. assert(I != EventListeners.end() && "Listener not registered");
  149. EventListeners.erase(I);
  150. }
  151. Error RTDyldObjectLinkingLayer::onObjLoad(
  152. MaterializationResponsibility &R, const object::ObjectFile &Obj,
  153. RuntimeDyld::MemoryManager &MemMgr,
  154. RuntimeDyld::LoadedObjectInfo &LoadedObjInfo,
  155. std::map<StringRef, JITEvaluatedSymbol> Resolved,
  156. std::set<StringRef> &InternalSymbols) {
  157. SymbolFlagsMap ExtraSymbolsToClaim;
  158. SymbolMap Symbols;
  159. // Hack to support COFF constant pool comdats introduced during compilation:
  160. // (See http://llvm.org/PR40074)
  161. if (auto *COFFObj = dyn_cast<object::COFFObjectFile>(&Obj)) {
  162. auto &ES = getExecutionSession();
  163. // For all resolved symbols that are not already in the responsibilty set:
  164. // check whether the symbol is in a comdat section and if so mark it as
  165. // weak.
  166. for (auto &Sym : COFFObj->symbols()) {
  167. // getFlags() on COFF symbols can't fail.
  168. uint32_t SymFlags = cantFail(Sym.getFlags());
  169. if (SymFlags & object::BasicSymbolRef::SF_Undefined)
  170. continue;
  171. auto Name = Sym.getName();
  172. if (!Name)
  173. return Name.takeError();
  174. auto I = Resolved.find(*Name);
  175. // Skip unresolved symbols, internal symbols, and symbols that are
  176. // already in the responsibility set.
  177. if (I == Resolved.end() || InternalSymbols.count(*Name) ||
  178. R.getSymbols().count(ES.intern(*Name)))
  179. continue;
  180. auto Sec = Sym.getSection();
  181. if (!Sec)
  182. return Sec.takeError();
  183. if (*Sec == COFFObj->section_end())
  184. continue;
  185. auto &COFFSec = *COFFObj->getCOFFSection(**Sec);
  186. if (COFFSec.Characteristics & COFF::IMAGE_SCN_LNK_COMDAT)
  187. I->second.setFlags(I->second.getFlags() | JITSymbolFlags::Weak);
  188. }
  189. }
  190. for (auto &KV : Resolved) {
  191. // Scan the symbols and add them to the Symbols map for resolution.
  192. // We never claim internal symbols.
  193. if (InternalSymbols.count(KV.first))
  194. continue;
  195. auto InternedName = getExecutionSession().intern(KV.first);
  196. auto Flags = KV.second.getFlags();
  197. // Override object flags and claim responsibility for symbols if
  198. // requested.
  199. if (OverrideObjectFlags || AutoClaimObjectSymbols) {
  200. auto I = R.getSymbols().find(InternedName);
  201. if (OverrideObjectFlags && I != R.getSymbols().end())
  202. Flags = I->second;
  203. else if (AutoClaimObjectSymbols && I == R.getSymbols().end())
  204. ExtraSymbolsToClaim[InternedName] = Flags;
  205. }
  206. Symbols[InternedName] = JITEvaluatedSymbol(KV.second.getAddress(), Flags);
  207. }
  208. if (!ExtraSymbolsToClaim.empty()) {
  209. if (auto Err = R.defineMaterializing(ExtraSymbolsToClaim))
  210. return Err;
  211. // If we claimed responsibility for any weak symbols but were rejected then
  212. // we need to remove them from the resolved set.
  213. for (auto &KV : ExtraSymbolsToClaim)
  214. if (KV.second.isWeak() && !R.getSymbols().count(KV.first))
  215. Symbols.erase(KV.first);
  216. }
  217. if (auto Err = R.notifyResolved(Symbols)) {
  218. R.failMaterialization();
  219. return Err;
  220. }
  221. if (NotifyLoaded)
  222. NotifyLoaded(R, Obj, LoadedObjInfo);
  223. return Error::success();
  224. }
  225. void RTDyldObjectLinkingLayer::onObjEmit(
  226. MaterializationResponsibility &R,
  227. object::OwningBinary<object::ObjectFile> O,
  228. std::unique_ptr<RuntimeDyld::MemoryManager> MemMgr,
  229. std::unique_ptr<RuntimeDyld::LoadedObjectInfo> LoadedObjInfo, Error Err) {
  230. if (Err) {
  231. getExecutionSession().reportError(std::move(Err));
  232. R.failMaterialization();
  233. return;
  234. }
  235. if (auto Err = R.notifyEmitted()) {
  236. getExecutionSession().reportError(std::move(Err));
  237. R.failMaterialization();
  238. return;
  239. }
  240. std::unique_ptr<object::ObjectFile> Obj;
  241. std::unique_ptr<MemoryBuffer> ObjBuffer;
  242. std::tie(Obj, ObjBuffer) = O.takeBinary();
  243. // Run EventListener notifyLoaded callbacks.
  244. {
  245. std::lock_guard<std::mutex> Lock(RTDyldLayerMutex);
  246. for (auto *L : EventListeners)
  247. L->notifyObjectLoaded(pointerToJITTargetAddress(MemMgr.get()), *Obj,
  248. *LoadedObjInfo);
  249. }
  250. if (NotifyEmitted)
  251. NotifyEmitted(R, std::move(ObjBuffer));
  252. if (auto Err = R.withResourceKeyDo(
  253. [&](ResourceKey K) { MemMgrs[K].push_back(std::move(MemMgr)); })) {
  254. getExecutionSession().reportError(std::move(Err));
  255. R.failMaterialization();
  256. }
  257. }
  258. Error RTDyldObjectLinkingLayer::handleRemoveResources(ResourceKey K) {
  259. std::vector<MemoryManagerUP> MemMgrsToRemove;
  260. getExecutionSession().runSessionLocked([&] {
  261. auto I = MemMgrs.find(K);
  262. if (I != MemMgrs.end()) {
  263. std::swap(MemMgrsToRemove, I->second);
  264. MemMgrs.erase(I);
  265. }
  266. });
  267. {
  268. std::lock_guard<std::mutex> Lock(RTDyldLayerMutex);
  269. for (auto &MemMgr : MemMgrsToRemove) {
  270. for (auto *L : EventListeners)
  271. L->notifyFreeingObject(pointerToJITTargetAddress(MemMgr.get()));
  272. MemMgr->deregisterEHFrames();
  273. }
  274. }
  275. return Error::success();
  276. }
  277. void RTDyldObjectLinkingLayer::handleTransferResources(ResourceKey DstKey,
  278. ResourceKey SrcKey) {
  279. auto I = MemMgrs.find(SrcKey);
  280. if (I != MemMgrs.end()) {
  281. auto &SrcMemMgrs = I->second;
  282. auto &DstMemMgrs = MemMgrs[DstKey];
  283. DstMemMgrs.reserve(DstMemMgrs.size() + SrcMemMgrs.size());
  284. for (auto &MemMgr : SrcMemMgrs)
  285. DstMemMgrs.push_back(std::move(MemMgr));
  286. // Erase SrcKey entry using value rather than iterator I: I may have been
  287. // invalidated when we looked up DstKey.
  288. MemMgrs.erase(SrcKey);
  289. }
  290. }
  291. } // End namespace orc.
  292. } // End namespace llvm.