1 //===- ExecutionUtils.h - Utilities for executing code in Orc ---*- 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 // Contains utilities for executing code in Orc. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #ifndef LLVM_EXECUTIONENGINE_ORC_EXECUTIONUTILS_H 14 #define LLVM_EXECUTIONENGINE_ORC_EXECUTIONUTILS_H 15 16 #include "llvm/ADT/StringMap.h" 17 #include "llvm/ADT/iterator_range.h" 18 #include "llvm/ExecutionEngine/JITSymbol.h" 19 #include "llvm/ExecutionEngine/Orc/Core.h" 20 #include "llvm/ExecutionEngine/Orc/OrcError.h" 21 #include "llvm/ExecutionEngine/RuntimeDyld.h" 22 #include "llvm/Object/Archive.h" 23 #include "llvm/Support/DynamicLibrary.h" 24 #include <algorithm> 25 #include <cstdint> 26 #include <string> 27 #include <utility> 28 #include <vector> 29 30 namespace llvm { 31 32 class ConstantArray; 33 class GlobalVariable; 34 class Function; 35 class Module; 36 class TargetMachine; 37 class Value; 38 39 namespace orc { 40 41 class ObjectLayer; 42 43 /// Run a main function, returning the result. 44 /// 45 /// If the optional ProgramName argument is given then it will be inserted 46 /// before the strings in Args as the first argument to the called function. 47 /// 48 /// It is legal to have an empty argument list and no program name, however 49 /// many main functions will expect a name argument at least, and will fail 50 /// if none is provided. 51 int runAsMain(int (*Main)(int, char *[]), ArrayRef<std::string> Args, 52 Optional<StringRef> ProgramName = None); 53 54 /// This iterator provides a convenient way to iterate over the elements 55 /// of an llvm.global_ctors/llvm.global_dtors instance. 56 /// 57 /// The easiest way to get hold of instances of this class is to use the 58 /// getConstructors/getDestructors functions. 59 class CtorDtorIterator { 60 public: 61 /// Accessor for an element of the global_ctors/global_dtors array. 62 /// 63 /// This class provides a read-only view of the element with any casts on 64 /// the function stripped away. 65 struct Element { 66 Element(unsigned Priority, Function *Func, Value *Data) 67 : Priority(Priority), Func(Func), Data(Data) {} 68 69 unsigned Priority; 70 Function *Func; 71 Value *Data; 72 }; 73 74 /// Construct an iterator instance. If End is true then this iterator 75 /// acts as the end of the range, otherwise it is the beginning. 76 CtorDtorIterator(const GlobalVariable *GV, bool End); 77 78 /// Test iterators for equality. 79 bool operator==(const CtorDtorIterator &Other) const; 80 81 /// Test iterators for inequality. 82 bool operator!=(const CtorDtorIterator &Other) const; 83 84 /// Pre-increment iterator. 85 CtorDtorIterator& operator++(); 86 87 /// Post-increment iterator. 88 CtorDtorIterator operator++(int); 89 90 /// Dereference iterator. The resulting value provides a read-only view 91 /// of this element of the global_ctors/global_dtors list. 92 Element operator*() const; 93 94 private: 95 const ConstantArray *InitList; 96 unsigned I; 97 }; 98 99 /// Create an iterator range over the entries of the llvm.global_ctors 100 /// array. 101 iterator_range<CtorDtorIterator> getConstructors(const Module &M); 102 103 /// Create an iterator range over the entries of the llvm.global_ctors 104 /// array. 105 iterator_range<CtorDtorIterator> getDestructors(const Module &M); 106 107 /// Convenience class for recording constructor/destructor names for 108 /// later execution. 109 template <typename JITLayerT> 110 class LegacyCtorDtorRunner { 111 public: 112 /// Construct a CtorDtorRunner for the given range using the given 113 /// name mangling function. 114 LLVM_ATTRIBUTE_DEPRECATED( 115 LegacyCtorDtorRunner(std::vector<std::string> CtorDtorNames, 116 VModuleKey K), 117 "ORCv1 utilities (utilities with the 'Legacy' prefix) are deprecated. " 118 "Please use the ORCv2 CtorDtorRunner utility instead"); 119 120 LegacyCtorDtorRunner(ORCv1DeprecationAcknowledgement, 121 std::vector<std::string> CtorDtorNames, VModuleKey K) 122 : CtorDtorNames(std::move(CtorDtorNames)), K(K) {} 123 124 /// Run the recorded constructors/destructors through the given JIT 125 /// layer. 126 Error runViaLayer(JITLayerT &JITLayer) const { 127 using CtorDtorTy = void (*)(); 128 129 for (const auto &CtorDtorName : CtorDtorNames) { 130 if (auto CtorDtorSym = JITLayer.findSymbolIn(K, CtorDtorName, false)) { 131 if (auto AddrOrErr = CtorDtorSym.getAddress()) { 132 CtorDtorTy CtorDtor = 133 reinterpret_cast<CtorDtorTy>(static_cast<uintptr_t>(*AddrOrErr)); 134 CtorDtor(); 135 } else 136 return AddrOrErr.takeError(); 137 } else { 138 if (auto Err = CtorDtorSym.takeError()) 139 return Err; 140 else 141 return make_error<JITSymbolNotFound>(CtorDtorName); 142 } 143 } 144 return Error::success(); 145 } 146 147 private: 148 std::vector<std::string> CtorDtorNames; 149 orc::VModuleKey K; 150 }; 151 152 template <typename JITLayerT> 153 LegacyCtorDtorRunner<JITLayerT>::LegacyCtorDtorRunner( 154 std::vector<std::string> CtorDtorNames, VModuleKey K) 155 : CtorDtorNames(std::move(CtorDtorNames)), K(K) {} 156 157 class CtorDtorRunner { 158 public: 159 CtorDtorRunner(JITDylib &JD) : JD(JD) {} 160 void add(iterator_range<CtorDtorIterator> CtorDtors); 161 Error run(); 162 163 private: 164 using CtorDtorList = std::vector<SymbolStringPtr>; 165 using CtorDtorPriorityMap = std::map<unsigned, CtorDtorList>; 166 167 JITDylib &JD; 168 CtorDtorPriorityMap CtorDtorsByPriority; 169 }; 170 171 /// Support class for static dtor execution. For hosted (in-process) JITs 172 /// only! 173 /// 174 /// If a __cxa_atexit function isn't found C++ programs that use static 175 /// destructors will fail to link. However, we don't want to use the host 176 /// process's __cxa_atexit, because it will schedule JIT'd destructors to run 177 /// after the JIT has been torn down, which is no good. This class makes it easy 178 /// to override __cxa_atexit (and the related __dso_handle). 179 /// 180 /// To use, clients should manually call searchOverrides from their symbol 181 /// resolver. This should generally be done after attempting symbol resolution 182 /// inside the JIT, but before searching the host process's symbol table. When 183 /// the client determines that destructors should be run (generally at JIT 184 /// teardown or after a return from main), the runDestructors method should be 185 /// called. 186 class LocalCXXRuntimeOverridesBase { 187 public: 188 /// Run any destructors recorded by the overriden __cxa_atexit function 189 /// (CXAAtExitOverride). 190 void runDestructors(); 191 192 protected: 193 template <typename PtrTy> JITTargetAddress toTargetAddress(PtrTy *P) { 194 return static_cast<JITTargetAddress>(reinterpret_cast<uintptr_t>(P)); 195 } 196 197 using DestructorPtr = void (*)(void *); 198 using CXXDestructorDataPair = std::pair<DestructorPtr, void *>; 199 using CXXDestructorDataPairList = std::vector<CXXDestructorDataPair>; 200 CXXDestructorDataPairList DSOHandleOverride; 201 static int CXAAtExitOverride(DestructorPtr Destructor, void *Arg, 202 void *DSOHandle); 203 }; 204 205 class LegacyLocalCXXRuntimeOverrides : public LocalCXXRuntimeOverridesBase { 206 public: 207 /// Create a runtime-overrides class. 208 template <typename MangleFtorT> 209 LLVM_ATTRIBUTE_DEPRECATED( 210 LegacyLocalCXXRuntimeOverrides(const MangleFtorT &Mangle), 211 "ORCv1 utilities (utilities with the 'Legacy' prefix) are deprecated. " 212 "Please use the ORCv2 LocalCXXRuntimeOverrides utility instead"); 213 214 template <typename MangleFtorT> 215 LegacyLocalCXXRuntimeOverrides(ORCv1DeprecationAcknowledgement, 216 const MangleFtorT &Mangle) { 217 addOverride(Mangle("__dso_handle"), toTargetAddress(&DSOHandleOverride)); 218 addOverride(Mangle("__cxa_atexit"), toTargetAddress(&CXAAtExitOverride)); 219 } 220 221 /// Search overrided symbols. 222 JITEvaluatedSymbol searchOverrides(const std::string &Name) { 223 auto I = CXXRuntimeOverrides.find(Name); 224 if (I != CXXRuntimeOverrides.end()) 225 return JITEvaluatedSymbol(I->second, JITSymbolFlags::Exported); 226 return nullptr; 227 } 228 229 private: 230 void addOverride(const std::string &Name, JITTargetAddress Addr) { 231 CXXRuntimeOverrides.insert(std::make_pair(Name, Addr)); 232 } 233 234 StringMap<JITTargetAddress> CXXRuntimeOverrides; 235 }; 236 237 template <typename MangleFtorT> 238 LegacyLocalCXXRuntimeOverrides::LegacyLocalCXXRuntimeOverrides( 239 const MangleFtorT &Mangle) { 240 addOverride(Mangle("__dso_handle"), toTargetAddress(&DSOHandleOverride)); 241 addOverride(Mangle("__cxa_atexit"), toTargetAddress(&CXAAtExitOverride)); 242 } 243 244 class LocalCXXRuntimeOverrides : public LocalCXXRuntimeOverridesBase { 245 public: 246 Error enable(JITDylib &JD, MangleAndInterner &Mangler); 247 }; 248 249 /// A utility class to expose symbols found via dlsym to the JIT. 250 /// 251 /// If an instance of this class is attached to a JITDylib as a fallback 252 /// definition generator, then any symbol found in the given DynamicLibrary that 253 /// passes the 'Allow' predicate will be added to the JITDylib. 254 class DynamicLibrarySearchGenerator : public JITDylib::DefinitionGenerator { 255 public: 256 using SymbolPredicate = std::function<bool(const SymbolStringPtr &)>; 257 258 /// Create a DynamicLibrarySearchGenerator that searches for symbols in the 259 /// given sys::DynamicLibrary. 260 /// 261 /// If the Allow predicate is given then only symbols matching the predicate 262 /// will be searched for. If the predicate is not given then all symbols will 263 /// be searched for. 264 DynamicLibrarySearchGenerator(sys::DynamicLibrary Dylib, char GlobalPrefix, 265 SymbolPredicate Allow = SymbolPredicate()); 266 267 /// Permanently loads the library at the given path and, on success, returns 268 /// a DynamicLibrarySearchGenerator that will search it for symbol definitions 269 /// in the library. On failure returns the reason the library failed to load. 270 static Expected<std::unique_ptr<DynamicLibrarySearchGenerator>> 271 Load(const char *FileName, char GlobalPrefix, 272 SymbolPredicate Allow = SymbolPredicate()); 273 274 /// Creates a DynamicLibrarySearchGenerator that searches for symbols in 275 /// the current process. 276 static Expected<std::unique_ptr<DynamicLibrarySearchGenerator>> 277 GetForCurrentProcess(char GlobalPrefix, 278 SymbolPredicate Allow = SymbolPredicate()) { 279 return Load(nullptr, GlobalPrefix, std::move(Allow)); 280 } 281 282 Error tryToGenerate(LookupKind K, JITDylib &JD, 283 JITDylibLookupFlags JDLookupFlags, 284 const SymbolLookupSet &Symbols) override; 285 286 private: 287 sys::DynamicLibrary Dylib; 288 SymbolPredicate Allow; 289 char GlobalPrefix; 290 }; 291 292 /// A utility class to expose symbols from a static library. 293 /// 294 /// If an instance of this class is attached to a JITDylib as a fallback 295 /// definition generator, then any symbol found in the archive will result in 296 /// the containing object being added to the JITDylib. 297 class StaticLibraryDefinitionGenerator : public JITDylib::DefinitionGenerator { 298 public: 299 /// Try to create a StaticLibraryDefinitionGenerator from the given path. 300 /// 301 /// This call will succeed if the file at the given path is a static library 302 /// is a valid archive, otherwise it will return an error. 303 static Expected<std::unique_ptr<StaticLibraryDefinitionGenerator>> 304 Load(ObjectLayer &L, const char *FileName); 305 306 /// Try to create a StaticLibrarySearchGenerator from the given memory buffer. 307 /// This call will succeed if the buffer contains a valid archive, otherwise 308 /// it will return an error. 309 static Expected<std::unique_ptr<StaticLibraryDefinitionGenerator>> 310 Create(ObjectLayer &L, std::unique_ptr<MemoryBuffer> ArchiveBuffer); 311 312 Error tryToGenerate(LookupKind K, JITDylib &JD, 313 JITDylibLookupFlags JDLookupFlags, 314 const SymbolLookupSet &Symbols) override; 315 316 private: 317 StaticLibraryDefinitionGenerator(ObjectLayer &L, 318 std::unique_ptr<MemoryBuffer> ArchiveBuffer, 319 Error &Err); 320 321 ObjectLayer &L; 322 std::unique_ptr<MemoryBuffer> ArchiveBuffer; 323 std::unique_ptr<object::Archive> Archive; 324 }; 325 326 } // end namespace orc 327 } // end namespace llvm 328 329 #endif // LLVM_EXECUTIONENGINE_ORC_EXECUTIONUTILS_H 330