1857c21b4SMisha Brukman //===-- ExecutionEngine.cpp - Common Implementation shared by EEs ---------===// 2996fe010SChris Lattner // 3482202a6SJohn Criswell // The LLVM Compiler Infrastructure 4482202a6SJohn Criswell // 5f3ebc3f3SChris Lattner // This file is distributed under the University of Illinois Open Source 6f3ebc3f3SChris Lattner // License. See LICENSE.TXT for details. 7482202a6SJohn Criswell // 8482202a6SJohn Criswell //===----------------------------------------------------------------------===// 9482202a6SJohn Criswell // 10996fe010SChris Lattner // This file defines the common interface used by the various execution engine 11996fe010SChris Lattner // subclasses. 12996fe010SChris Lattner // 13996fe010SChris Lattner //===----------------------------------------------------------------------===// 14996fe010SChris Lattner 15ee937c80SChris Lattner #define DEBUG_TYPE "jit" 16996fe010SChris Lattner #include "llvm/Constants.h" 17260b0c88SMisha Brukman #include "llvm/DerivedTypes.h" 18996fe010SChris Lattner #include "llvm/Module.h" 19260b0c88SMisha Brukman #include "llvm/ModuleProvider.h" 2070e37278SReid Spencer #include "llvm/ADT/Statistic.h" 211202d1b1SDuncan Sands #include "llvm/Config/alloca.h" 22260b0c88SMisha Brukman #include "llvm/ExecutionEngine/ExecutionEngine.h" 23ad481312SChris Lattner #include "llvm/ExecutionEngine/GenericValue.h" 247c16caa3SReid Spencer #include "llvm/Support/Debug.h" 256c2d233eSTorok Edwin #include "llvm/Support/ErrorHandling.h" 266d8dd189SChris Lattner #include "llvm/Support/MutexGuard.h" 27ccb29cd2STorok Edwin #include "llvm/Support/raw_ostream.h" 2870e37278SReid Spencer #include "llvm/System/DynamicLibrary.h" 29fde55674SDuncan Sands #include "llvm/System/Host.h" 3070e37278SReid Spencer #include "llvm/Target/TargetData.h" 31579f0713SAnton Korobeynikov #include <cmath> 32579f0713SAnton Korobeynikov #include <cstring> 3329681deeSChris Lattner using namespace llvm; 34996fe010SChris Lattner 35c346ecd7SChris Lattner STATISTIC(NumInitBytes, "Number of bytes of global vars initialized"); 36c346ecd7SChris Lattner STATISTIC(NumGlobals , "Number of global vars initialized"); 37996fe010SChris Lattner 38*fc8a2d5aSReid Kleckner ExecutionEngine *(*ExecutionEngine::JITCtor)(ModuleProvider *MP, 39*fc8a2d5aSReid Kleckner std::string *ErrorStr, 40*fc8a2d5aSReid Kleckner JITMemoryManager *JMM, 41*fc8a2d5aSReid Kleckner CodeGenOpt::Level OptLevel, 42*fc8a2d5aSReid Kleckner bool GVsWithCode) = 0; 43*fc8a2d5aSReid Kleckner ExecutionEngine *(*ExecutionEngine::InterpCtor)(ModuleProvider *MP, 44*fc8a2d5aSReid Kleckner std::string *ErrorStr) = 0; 4521ad494fSNicolas Geoffray ExecutionEngine::EERegisterFn ExecutionEngine::ExceptionTableRegister = 0; 4621ad494fSNicolas Geoffray 472d52c1b8SChris Lattner 48fd6f3257SChris Lattner ExecutionEngine::ExecutionEngine(ModuleProvider *P) : LazyFunctionCreator(0) { 4987aee74cSChris Lattner LazyCompilationDisabled = false; 50cdc0060eSEvan Cheng GVCompilationDisabled = false; 5184a9055eSEvan Cheng SymbolSearchingDisabled = false; 5218d85e74SNate Begeman DlsymStubsEnabled = false; 530621caefSChris Lattner Modules.push_back(P); 54260b0c88SMisha Brukman assert(P && "ModuleProvider is null?"); 55260b0c88SMisha Brukman } 56260b0c88SMisha Brukman 5792f8b30dSBrian Gaeke ExecutionEngine::~ExecutionEngine() { 58603682adSReid Spencer clearAllGlobalMappings(); 590621caefSChris Lattner for (unsigned i = 0, e = Modules.size(); i != e; ++i) 600621caefSChris Lattner delete Modules[i]; 6192f8b30dSBrian Gaeke } 6292f8b30dSBrian Gaeke 635457ce9aSNicolas Geoffray char* ExecutionEngine::getMemoryForGV(const GlobalVariable* GV) { 645457ce9aSNicolas Geoffray const Type *ElTy = GV->getType()->getElementType(); 65af9eaa83SDuncan Sands size_t GVSize = (size_t)getTargetData()->getTypeAllocSize(ElTy); 665457ce9aSNicolas Geoffray return new char[GVSize]; 675457ce9aSNicolas Geoffray } 685457ce9aSNicolas Geoffray 69324fe890SDevang Patel /// removeModuleProvider - Remove a ModuleProvider from the list of modules. 70617001d8SNate Begeman /// Relases the Module from the ModuleProvider, materializing it in the 71617001d8SNate Begeman /// process, and returns the materialized Module. 72324fe890SDevang Patel Module* ExecutionEngine::removeModuleProvider(ModuleProvider *P, 73324fe890SDevang Patel std::string *ErrInfo) { 74324fe890SDevang Patel for(SmallVector<ModuleProvider *, 1>::iterator I = Modules.begin(), 75324fe890SDevang Patel E = Modules.end(); I != E; ++I) { 76324fe890SDevang Patel ModuleProvider *MP = *I; 77324fe890SDevang Patel if (MP == P) { 78324fe890SDevang Patel Modules.erase(I); 798f83fc4dSNate Begeman clearGlobalMappingsFromModule(MP->getModule()); 80324fe890SDevang Patel return MP->releaseModule(ErrInfo); 81324fe890SDevang Patel } 82324fe890SDevang Patel } 83324fe890SDevang Patel return NULL; 84324fe890SDevang Patel } 85324fe890SDevang Patel 86617001d8SNate Begeman /// deleteModuleProvider - Remove a ModuleProvider from the list of modules, 87617001d8SNate Begeman /// and deletes the ModuleProvider and owned Module. Avoids materializing 88617001d8SNate Begeman /// the underlying module. 89617001d8SNate Begeman void ExecutionEngine::deleteModuleProvider(ModuleProvider *P, 90617001d8SNate Begeman std::string *ErrInfo) { 91617001d8SNate Begeman for(SmallVector<ModuleProvider *, 1>::iterator I = Modules.begin(), 92617001d8SNate Begeman E = Modules.end(); I != E; ++I) { 93617001d8SNate Begeman ModuleProvider *MP = *I; 94617001d8SNate Begeman if (MP == P) { 95617001d8SNate Begeman Modules.erase(I); 96617001d8SNate Begeman clearGlobalMappingsFromModule(MP->getModule()); 97617001d8SNate Begeman delete MP; 98617001d8SNate Begeman return; 99617001d8SNate Begeman } 100617001d8SNate Begeman } 101617001d8SNate Begeman } 102617001d8SNate Begeman 1030621caefSChris Lattner /// FindFunctionNamed - Search all of the active modules to find the one that 1040621caefSChris Lattner /// defines FnName. This is very slow operation and shouldn't be used for 1050621caefSChris Lattner /// general code. 1060621caefSChris Lattner Function *ExecutionEngine::FindFunctionNamed(const char *FnName) { 1070621caefSChris Lattner for (unsigned i = 0, e = Modules.size(); i != e; ++i) { 1081241d6d5SReid Spencer if (Function *F = Modules[i]->getModule()->getFunction(FnName)) 1090621caefSChris Lattner return F; 1100621caefSChris Lattner } 1110621caefSChris Lattner return 0; 1120621caefSChris Lattner } 1130621caefSChris Lattner 1140621caefSChris Lattner 1156d8dd189SChris Lattner /// addGlobalMapping - Tell the execution engine that the specified global is 1166d8dd189SChris Lattner /// at the specified location. This is used internally as functions are JIT'd 1176d8dd189SChris Lattner /// and as global variables are laid out in memory. It can and should also be 1186d8dd189SChris Lattner /// used by clients of the EE that want to have an LLVM global overlay 1196d8dd189SChris Lattner /// existing data in memory. 1206d8dd189SChris Lattner void ExecutionEngine::addGlobalMapping(const GlobalValue *GV, void *Addr) { 1216d8dd189SChris Lattner MutexGuard locked(lock); 1226d8dd189SChris Lattner 123077f686dSEvan Cheng DOUT << "JIT: Map \'" << GV->getNameStart() << "\' to [" << Addr << "]\n"; 1246d8dd189SChris Lattner void *&CurVal = state.getGlobalAddressMap(locked)[GV]; 1256d8dd189SChris Lattner assert((CurVal == 0 || Addr == 0) && "GlobalMapping already established!"); 1266d8dd189SChris Lattner CurVal = Addr; 1276d8dd189SChris Lattner 1286d8dd189SChris Lattner // If we are using the reverse mapping, add it too 1296d8dd189SChris Lattner if (!state.getGlobalAddressReverseMap(locked).empty()) { 1306d8dd189SChris Lattner const GlobalValue *&V = state.getGlobalAddressReverseMap(locked)[Addr]; 1316d8dd189SChris Lattner assert((V == 0 || GV == 0) && "GlobalMapping already established!"); 1326d8dd189SChris Lattner V = GV; 1336d8dd189SChris Lattner } 1346d8dd189SChris Lattner } 1356d8dd189SChris Lattner 1366d8dd189SChris Lattner /// clearAllGlobalMappings - Clear all global mappings and start over again 1376d8dd189SChris Lattner /// use in dynamic compilation scenarios when you want to move globals 1386d8dd189SChris Lattner void ExecutionEngine::clearAllGlobalMappings() { 1396d8dd189SChris Lattner MutexGuard locked(lock); 1406d8dd189SChris Lattner 1416d8dd189SChris Lattner state.getGlobalAddressMap(locked).clear(); 1426d8dd189SChris Lattner state.getGlobalAddressReverseMap(locked).clear(); 1436d8dd189SChris Lattner } 1446d8dd189SChris Lattner 1458f83fc4dSNate Begeman /// clearGlobalMappingsFromModule - Clear all global mappings that came from a 1468f83fc4dSNate Begeman /// particular module, because it has been removed from the JIT. 1478f83fc4dSNate Begeman void ExecutionEngine::clearGlobalMappingsFromModule(Module *M) { 1488f83fc4dSNate Begeman MutexGuard locked(lock); 1498f83fc4dSNate Begeman 1508f83fc4dSNate Begeman for (Module::iterator FI = M->begin(), FE = M->end(); FI != FE; ++FI) { 1518f83fc4dSNate Begeman state.getGlobalAddressMap(locked).erase(FI); 1528f83fc4dSNate Begeman state.getGlobalAddressReverseMap(locked).erase(FI); 1538f83fc4dSNate Begeman } 1548f83fc4dSNate Begeman for (Module::global_iterator GI = M->global_begin(), GE = M->global_end(); 1558f83fc4dSNate Begeman GI != GE; ++GI) { 1568f83fc4dSNate Begeman state.getGlobalAddressMap(locked).erase(GI); 1578f83fc4dSNate Begeman state.getGlobalAddressReverseMap(locked).erase(GI); 1588f83fc4dSNate Begeman } 1598f83fc4dSNate Begeman } 1608f83fc4dSNate Begeman 1616d8dd189SChris Lattner /// updateGlobalMapping - Replace an existing mapping for GV with a new 1626d8dd189SChris Lattner /// address. This updates both maps as required. If "Addr" is null, the 1636d8dd189SChris Lattner /// entry for the global is removed from the mappings. 164ee181730SChris Lattner void *ExecutionEngine::updateGlobalMapping(const GlobalValue *GV, void *Addr) { 1656d8dd189SChris Lattner MutexGuard locked(lock); 1666d8dd189SChris Lattner 167ee181730SChris Lattner std::map<const GlobalValue*, void *> &Map = state.getGlobalAddressMap(locked); 168ee181730SChris Lattner 1696d8dd189SChris Lattner // Deleting from the mapping? 1706d8dd189SChris Lattner if (Addr == 0) { 171ee181730SChris Lattner std::map<const GlobalValue*, void *>::iterator I = Map.find(GV); 172ee181730SChris Lattner void *OldVal; 173ee181730SChris Lattner if (I == Map.end()) 174ee181730SChris Lattner OldVal = 0; 175ee181730SChris Lattner else { 176ee181730SChris Lattner OldVal = I->second; 177ee181730SChris Lattner Map.erase(I); 1786d8dd189SChris Lattner } 1796d8dd189SChris Lattner 180ee181730SChris Lattner if (!state.getGlobalAddressReverseMap(locked).empty()) 181ee181730SChris Lattner state.getGlobalAddressReverseMap(locked).erase(Addr); 182ee181730SChris Lattner return OldVal; 183ee181730SChris Lattner } 184ee181730SChris Lattner 185ee181730SChris Lattner void *&CurVal = Map[GV]; 186ee181730SChris Lattner void *OldVal = CurVal; 187ee181730SChris Lattner 1886d8dd189SChris Lattner if (CurVal && !state.getGlobalAddressReverseMap(locked).empty()) 1896d8dd189SChris Lattner state.getGlobalAddressReverseMap(locked).erase(CurVal); 1906d8dd189SChris Lattner CurVal = Addr; 1916d8dd189SChris Lattner 1926d8dd189SChris Lattner // If we are using the reverse mapping, add it too 1936d8dd189SChris Lattner if (!state.getGlobalAddressReverseMap(locked).empty()) { 1946d8dd189SChris Lattner const GlobalValue *&V = state.getGlobalAddressReverseMap(locked)[Addr]; 1956d8dd189SChris Lattner assert((V == 0 || GV == 0) && "GlobalMapping already established!"); 1966d8dd189SChris Lattner V = GV; 1976d8dd189SChris Lattner } 198ee181730SChris Lattner return OldVal; 1996d8dd189SChris Lattner } 2006d8dd189SChris Lattner 2016d8dd189SChris Lattner /// getPointerToGlobalIfAvailable - This returns the address of the specified 2026d8dd189SChris Lattner /// global value if it is has already been codegen'd, otherwise it returns null. 2036d8dd189SChris Lattner /// 2046d8dd189SChris Lattner void *ExecutionEngine::getPointerToGlobalIfAvailable(const GlobalValue *GV) { 2056d8dd189SChris Lattner MutexGuard locked(lock); 2066d8dd189SChris Lattner 2076d8dd189SChris Lattner std::map<const GlobalValue*, void*>::iterator I = 2086d8dd189SChris Lattner state.getGlobalAddressMap(locked).find(GV); 2096d8dd189SChris Lattner return I != state.getGlobalAddressMap(locked).end() ? I->second : 0; 2106d8dd189SChris Lattner } 2116d8dd189SChris Lattner 212748e8579SChris Lattner /// getGlobalValueAtAddress - Return the LLVM global value object that starts 213748e8579SChris Lattner /// at the specified address. 214748e8579SChris Lattner /// 215748e8579SChris Lattner const GlobalValue *ExecutionEngine::getGlobalValueAtAddress(void *Addr) { 21679876f52SReid Spencer MutexGuard locked(lock); 21779876f52SReid Spencer 218748e8579SChris Lattner // If we haven't computed the reverse mapping yet, do so first. 21979876f52SReid Spencer if (state.getGlobalAddressReverseMap(locked).empty()) { 2206d8dd189SChris Lattner for (std::map<const GlobalValue*, void *>::iterator 2216d8dd189SChris Lattner I = state.getGlobalAddressMap(locked).begin(), 2226d8dd189SChris Lattner E = state.getGlobalAddressMap(locked).end(); I != E; ++I) 2236d8dd189SChris Lattner state.getGlobalAddressReverseMap(locked).insert(std::make_pair(I->second, 2246d8dd189SChris Lattner I->first)); 225748e8579SChris Lattner } 226748e8579SChris Lattner 227748e8579SChris Lattner std::map<void *, const GlobalValue*>::iterator I = 22879876f52SReid Spencer state.getGlobalAddressReverseMap(locked).find(Addr); 22979876f52SReid Spencer return I != state.getGlobalAddressReverseMap(locked).end() ? I->second : 0; 230748e8579SChris Lattner } 2315a0d4829SChris Lattner 2325a0d4829SChris Lattner // CreateArgv - Turn a vector of strings into a nice argv style array of 2335a0d4829SChris Lattner // pointers to null terminated strings. 2345a0d4829SChris Lattner // 2355a0d4829SChris Lattner static void *CreateArgv(ExecutionEngine *EE, 2365a0d4829SChris Lattner const std::vector<std::string> &InputArgv) { 23720a631fdSOwen Anderson unsigned PtrSize = EE->getTargetData()->getPointerSize(); 2385a0d4829SChris Lattner char *Result = new char[(InputArgv.size()+1)*PtrSize]; 2395a0d4829SChris Lattner 240972fd1a1SEvan Cheng DOUT << "JIT: ARGV = " << (void*)Result << "\n"; 241edf07887SChristopher Lamb const Type *SBytePtr = PointerType::getUnqual(Type::Int8Ty); 2425a0d4829SChris Lattner 2435a0d4829SChris Lattner for (unsigned i = 0; i != InputArgv.size(); ++i) { 2445a0d4829SChris Lattner unsigned Size = InputArgv[i].size()+1; 2455a0d4829SChris Lattner char *Dest = new char[Size]; 246972fd1a1SEvan Cheng DOUT << "JIT: ARGV[" << i << "] = " << (void*)Dest << "\n"; 2475a0d4829SChris Lattner 2485a0d4829SChris Lattner std::copy(InputArgv[i].begin(), InputArgv[i].end(), Dest); 2495a0d4829SChris Lattner Dest[Size-1] = 0; 2505a0d4829SChris Lattner 2515a0d4829SChris Lattner // Endian safe: Result[i] = (PointerTy)Dest; 2525a0d4829SChris Lattner EE->StoreValueToMemory(PTOGV(Dest), (GenericValue*)(Result+i*PtrSize), 2535a0d4829SChris Lattner SBytePtr); 2545a0d4829SChris Lattner } 2555a0d4829SChris Lattner 2565a0d4829SChris Lattner // Null terminate it 2575a0d4829SChris Lattner EE->StoreValueToMemory(PTOGV(0), 2585a0d4829SChris Lattner (GenericValue*)(Result+InputArgv.size()*PtrSize), 2595a0d4829SChris Lattner SBytePtr); 2605a0d4829SChris Lattner return Result; 2615a0d4829SChris Lattner } 2625a0d4829SChris Lattner 263faae50b6SChris Lattner 264faae50b6SChris Lattner /// runStaticConstructorsDestructors - This method is used to execute all of 2651a9a0b7bSEvan Cheng /// the static constructors or destructors for a module, depending on the 266faae50b6SChris Lattner /// value of isDtors. 2671a9a0b7bSEvan Cheng void ExecutionEngine::runStaticConstructorsDestructors(Module *module, bool isDtors) { 268faae50b6SChris Lattner const char *Name = isDtors ? "llvm.global_dtors" : "llvm.global_ctors"; 2690621caefSChris Lattner 2700621caefSChris Lattner // Execute global ctors/dtors for each module in the program. 2711a9a0b7bSEvan Cheng 2721a9a0b7bSEvan Cheng GlobalVariable *GV = module->getNamedGlobal(Name); 273fe36eaebSChris Lattner 274fe36eaebSChris Lattner // If this global has internal linkage, or if it has a use, then it must be 275fe36eaebSChris Lattner // an old-style (llvmgcc3) static ctor with __main linked in and in use. If 2760621caefSChris Lattner // this is the case, don't execute any of the global ctors, __main will do 2770621caefSChris Lattner // it. 2786de96a1bSRafael Espindola if (!GV || GV->isDeclaration() || GV->hasLocalLinkage()) return; 279faae50b6SChris Lattner 2800621caefSChris Lattner // Should be an array of '{ int, void ()* }' structs. The first value is 2810621caefSChris Lattner // the init priority, which we ignore. 282faae50b6SChris Lattner ConstantArray *InitList = dyn_cast<ConstantArray>(GV->getInitializer()); 2831a9a0b7bSEvan Cheng if (!InitList) return; 284faae50b6SChris Lattner for (unsigned i = 0, e = InitList->getNumOperands(); i != e; ++i) 2850621caefSChris Lattner if (ConstantStruct *CS = 2860621caefSChris Lattner dyn_cast<ConstantStruct>(InitList->getOperand(i))) { 2871a9a0b7bSEvan Cheng if (CS->getNumOperands() != 2) return; // Not array of 2-element structs. 288faae50b6SChris Lattner 289faae50b6SChris Lattner Constant *FP = CS->getOperand(1); 290faae50b6SChris Lattner if (FP->isNullValue()) 2910621caefSChris Lattner break; // Found a null terminator, exit. 292faae50b6SChris Lattner 293faae50b6SChris Lattner if (ConstantExpr *CE = dyn_cast<ConstantExpr>(FP)) 2946c38f0bbSReid Spencer if (CE->isCast()) 295faae50b6SChris Lattner FP = CE->getOperand(0); 296faae50b6SChris Lattner if (Function *F = dyn_cast<Function>(FP)) { 297faae50b6SChris Lattner // Execute the ctor/dtor function! 298faae50b6SChris Lattner runFunction(F, std::vector<GenericValue>()); 299faae50b6SChris Lattner } 300faae50b6SChris Lattner } 301faae50b6SChris Lattner } 3021a9a0b7bSEvan Cheng 3031a9a0b7bSEvan Cheng /// runStaticConstructorsDestructors - This method is used to execute all of 3041a9a0b7bSEvan Cheng /// the static constructors or destructors for a program, depending on the 3051a9a0b7bSEvan Cheng /// value of isDtors. 3061a9a0b7bSEvan Cheng void ExecutionEngine::runStaticConstructorsDestructors(bool isDtors) { 3071a9a0b7bSEvan Cheng // Execute global ctors/dtors for each module in the program. 3081a9a0b7bSEvan Cheng for (unsigned m = 0, e = Modules.size(); m != e; ++m) 3091a9a0b7bSEvan Cheng runStaticConstructorsDestructors(Modules[m]->getModule(), isDtors); 3100621caefSChris Lattner } 311faae50b6SChris Lattner 312cf3e3017SDan Gohman #ifndef NDEBUG 3131202d1b1SDuncan Sands /// isTargetNullPtr - Return whether the target pointer stored at Loc is null. 3141202d1b1SDuncan Sands static bool isTargetNullPtr(ExecutionEngine *EE, void *Loc) { 3151202d1b1SDuncan Sands unsigned PtrSize = EE->getTargetData()->getPointerSize(); 3161202d1b1SDuncan Sands for (unsigned i = 0; i < PtrSize; ++i) 3171202d1b1SDuncan Sands if (*(i + (uint8_t*)Loc)) 3181202d1b1SDuncan Sands return false; 3191202d1b1SDuncan Sands return true; 3201202d1b1SDuncan Sands } 321cf3e3017SDan Gohman #endif 3221202d1b1SDuncan Sands 3235a0d4829SChris Lattner /// runFunctionAsMain - This is a helper function which wraps runFunction to 3245a0d4829SChris Lattner /// handle the common task of starting up main with the specified argc, argv, 3255a0d4829SChris Lattner /// and envp parameters. 3265a0d4829SChris Lattner int ExecutionEngine::runFunctionAsMain(Function *Fn, 3275a0d4829SChris Lattner const std::vector<std::string> &argv, 3285a0d4829SChris Lattner const char * const * envp) { 3295a0d4829SChris Lattner std::vector<GenericValue> GVArgs; 3305a0d4829SChris Lattner GenericValue GVArgc; 33187aa65f4SReid Spencer GVArgc.IntVal = APInt(32, argv.size()); 3328c32c111SAnton Korobeynikov 3338c32c111SAnton Korobeynikov // Check main() type 334b1cad0b3SChris Lattner unsigned NumArgs = Fn->getFunctionType()->getNumParams(); 3358c32c111SAnton Korobeynikov const FunctionType *FTy = Fn->getFunctionType(); 336edf07887SChristopher Lamb const Type* PPInt8Ty = 337edf07887SChristopher Lamb PointerType::getUnqual(PointerType::getUnqual(Type::Int8Ty)); 3388c32c111SAnton Korobeynikov switch (NumArgs) { 3398c32c111SAnton Korobeynikov case 3: 3408c32c111SAnton Korobeynikov if (FTy->getParamType(2) != PPInt8Ty) { 341ccb29cd2STorok Edwin llvm_report_error("Invalid type for third argument of main() supplied"); 3428c32c111SAnton Korobeynikov } 343b781886dSAnton Korobeynikov // FALLS THROUGH 3448c32c111SAnton Korobeynikov case 2: 3458c32c111SAnton Korobeynikov if (FTy->getParamType(1) != PPInt8Ty) { 346ccb29cd2STorok Edwin llvm_report_error("Invalid type for second argument of main() supplied"); 3478c32c111SAnton Korobeynikov } 348b781886dSAnton Korobeynikov // FALLS THROUGH 3498c32c111SAnton Korobeynikov case 1: 3508c32c111SAnton Korobeynikov if (FTy->getParamType(0) != Type::Int32Ty) { 351ccb29cd2STorok Edwin llvm_report_error("Invalid type for first argument of main() supplied"); 3528c32c111SAnton Korobeynikov } 353b781886dSAnton Korobeynikov // FALLS THROUGH 3548c32c111SAnton Korobeynikov case 0: 355370ec10dSChris Lattner if (!isa<IntegerType>(FTy->getReturnType()) && 3568c32c111SAnton Korobeynikov FTy->getReturnType() != Type::VoidTy) { 357ccb29cd2STorok Edwin llvm_report_error("Invalid return type of main() supplied"); 3588c32c111SAnton Korobeynikov } 3598c32c111SAnton Korobeynikov break; 3608c32c111SAnton Korobeynikov default: 361ccb29cd2STorok Edwin llvm_report_error("Invalid number of arguments of main() supplied"); 3628c32c111SAnton Korobeynikov } 3638c32c111SAnton Korobeynikov 364b1cad0b3SChris Lattner if (NumArgs) { 3655a0d4829SChris Lattner GVArgs.push_back(GVArgc); // Arg #0 = argc. 366b1cad0b3SChris Lattner if (NumArgs > 1) { 3675a0d4829SChris Lattner GVArgs.push_back(PTOGV(CreateArgv(this, argv))); // Arg #1 = argv. 3681202d1b1SDuncan Sands assert(!isTargetNullPtr(this, GVTOP(GVArgs[1])) && 369b1cad0b3SChris Lattner "argv[0] was null after CreateArgv"); 370b1cad0b3SChris Lattner if (NumArgs > 2) { 3715a0d4829SChris Lattner std::vector<std::string> EnvVars; 3725a0d4829SChris Lattner for (unsigned i = 0; envp[i]; ++i) 3735a0d4829SChris Lattner EnvVars.push_back(envp[i]); 3745a0d4829SChris Lattner GVArgs.push_back(PTOGV(CreateArgv(this, EnvVars))); // Arg #2 = envp. 375b1cad0b3SChris Lattner } 376b1cad0b3SChris Lattner } 377b1cad0b3SChris Lattner } 37887aa65f4SReid Spencer return runFunction(Fn, GVArgs).IntVal.getZExtValue(); 3795a0d4829SChris Lattner } 3805a0d4829SChris Lattner 381260b0c88SMisha Brukman /// If possible, create a JIT, unless the caller specifically requests an 382260b0c88SMisha Brukman /// Interpreter or there's an error. If even an Interpreter cannot be created, 383260b0c88SMisha Brukman /// NULL is returned. 384857c21b4SMisha Brukman /// 3852f1e2002SMisha Brukman ExecutionEngine *ExecutionEngine::create(ModuleProvider *MP, 386603682adSReid Spencer bool ForceInterpreter, 3877ff05bf5SEvan Cheng std::string *ErrorStr, 38870415d97SJeffrey Yasskin CodeGenOpt::Level OptLevel, 38970415d97SJeffrey Yasskin bool GVsWithCode) { 390*fc8a2d5aSReid Kleckner return EngineBuilder(MP) 391*fc8a2d5aSReid Kleckner .setEngineKind(ForceInterpreter 392*fc8a2d5aSReid Kleckner ? EngineKind::Interpreter 393*fc8a2d5aSReid Kleckner : EngineKind::JIT) 394*fc8a2d5aSReid Kleckner .setErrorStr(ErrorStr) 395*fc8a2d5aSReid Kleckner .setOptLevel(OptLevel) 396*fc8a2d5aSReid Kleckner .setAllocateGVsWithCode(GVsWithCode) 397*fc8a2d5aSReid Kleckner .create(); 398*fc8a2d5aSReid Kleckner } 3994bd3bd5bSBrian Gaeke 400*fc8a2d5aSReid Kleckner ExecutionEngine *ExecutionEngine::create(Module *M) { 401*fc8a2d5aSReid Kleckner return EngineBuilder(M).create(); 402*fc8a2d5aSReid Kleckner } 403*fc8a2d5aSReid Kleckner 404*fc8a2d5aSReid Kleckner /// EngineBuilder - Overloaded constructor that automatically creates an 405*fc8a2d5aSReid Kleckner /// ExistingModuleProvider for an existing module. 406*fc8a2d5aSReid Kleckner EngineBuilder::EngineBuilder(Module *m) : MP(new ExistingModuleProvider(m)) { 407*fc8a2d5aSReid Kleckner InitEngine(); 408*fc8a2d5aSReid Kleckner } 409*fc8a2d5aSReid Kleckner 410*fc8a2d5aSReid Kleckner ExecutionEngine *EngineBuilder::create() { 411a53414fdSNick Lewycky // Make sure we can resolve symbols in the program as well. The zero arg 412a53414fdSNick Lewycky // to the function tells DynamicLibrary to load the program, not a library. 413a53414fdSNick Lewycky if (sys::DynamicLibrary::LoadLibraryPermanently(0, ErrorStr)) 414a53414fdSNick Lewycky return 0; 415a53414fdSNick Lewycky 416*fc8a2d5aSReid Kleckner // If the user specified a memory manager but didn't specify which engine to 417*fc8a2d5aSReid Kleckner // create, we assume they only want the JIT, and we fail if they only want 418*fc8a2d5aSReid Kleckner // the interpreter. 419*fc8a2d5aSReid Kleckner if (JMM) { 420*fc8a2d5aSReid Kleckner if (WhichEngine & EngineKind::JIT) { 421*fc8a2d5aSReid Kleckner WhichEngine = EngineKind::JIT; 422*fc8a2d5aSReid Kleckner } else { 423*fc8a2d5aSReid Kleckner *ErrorStr = "Cannot create an interpreter with a memory manager."; 424*fc8a2d5aSReid Kleckner } 4254bd3bd5bSBrian Gaeke } 4264bd3bd5bSBrian Gaeke 427*fc8a2d5aSReid Kleckner ExecutionEngine *EE = 0; 428*fc8a2d5aSReid Kleckner 429*fc8a2d5aSReid Kleckner // Unless the interpreter was explicitly selected or the JIT is not linked, 430*fc8a2d5aSReid Kleckner // try making a JIT. 431*fc8a2d5aSReid Kleckner if (WhichEngine & EngineKind::JIT && ExecutionEngine::JITCtor) { 432*fc8a2d5aSReid Kleckner EE = ExecutionEngine::JITCtor(MP, ErrorStr, JMM, OptLevel, 433*fc8a2d5aSReid Kleckner AllocateGVsWithCode); 434*fc8a2d5aSReid Kleckner } 435*fc8a2d5aSReid Kleckner 436*fc8a2d5aSReid Kleckner // If we can't make a JIT and we didn't request one specifically, try making 437*fc8a2d5aSReid Kleckner // an interpreter instead. 438*fc8a2d5aSReid Kleckner if (WhichEngine & EngineKind::Interpreter && EE == 0 && 439*fc8a2d5aSReid Kleckner ExecutionEngine::InterpCtor) { 440*fc8a2d5aSReid Kleckner EE = ExecutionEngine::InterpCtor(MP, ErrorStr); 441*fc8a2d5aSReid Kleckner } 442*fc8a2d5aSReid Kleckner 443*fc8a2d5aSReid Kleckner return EE; 444b5163bb9SChris Lattner } 445b5163bb9SChris Lattner 446857c21b4SMisha Brukman /// getPointerToGlobal - This returns the address of the specified global 447857c21b4SMisha Brukman /// value. This may involve code generation if it's a function. 448857c21b4SMisha Brukman /// 449996fe010SChris Lattner void *ExecutionEngine::getPointerToGlobal(const GlobalValue *GV) { 4501678e859SBrian Gaeke if (Function *F = const_cast<Function*>(dyn_cast<Function>(GV))) 451996fe010SChris Lattner return getPointerToFunction(F); 452996fe010SChris Lattner 45379876f52SReid Spencer MutexGuard locked(lock); 45469e84901SJeff Cohen void *p = state.getGlobalAddressMap(locked)[GV]; 45569e84901SJeff Cohen if (p) 45669e84901SJeff Cohen return p; 45769e84901SJeff Cohen 45869e84901SJeff Cohen // Global variable might have been added since interpreter started. 45969e84901SJeff Cohen if (GlobalVariable *GVar = 46069e84901SJeff Cohen const_cast<GlobalVariable *>(dyn_cast<GlobalVariable>(GV))) 46169e84901SJeff Cohen EmitGlobalVariable(GVar); 46269e84901SJeff Cohen else 463fbcc663cSTorok Edwin llvm_unreachable("Global hasn't had an address allocated yet!"); 46479876f52SReid Spencer return state.getGlobalAddressMap(locked)[GV]; 465996fe010SChris Lattner } 466996fe010SChris Lattner 4676c38f0bbSReid Spencer /// This function converts a Constant* into a GenericValue. The interesting 4686c38f0bbSReid Spencer /// part is if C is a ConstantExpr. 4692dc9f132SReid Spencer /// @brief Get a GenericValue for a Constant* 470996fe010SChris Lattner GenericValue ExecutionEngine::getConstantValue(const Constant *C) { 4716c38f0bbSReid Spencer // If its undefined, return the garbage. 4724fd528f2SReid Spencer if (isa<UndefValue>(C)) 4734fd528f2SReid Spencer return GenericValue(); 4749de0d14dSChris Lattner 4756c38f0bbSReid Spencer // If the value is a ConstantExpr 4766c38f0bbSReid Spencer if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(C)) { 4774fd528f2SReid Spencer Constant *Op0 = CE->getOperand(0); 4789de0d14dSChris Lattner switch (CE->getOpcode()) { 4799de0d14dSChris Lattner case Instruction::GetElementPtr: { 4806c38f0bbSReid Spencer // Compute the index 4814fd528f2SReid Spencer GenericValue Result = getConstantValue(Op0); 482c44bd78aSChris Lattner SmallVector<Value*, 8> Indices(CE->op_begin()+1, CE->op_end()); 4839de0d14dSChris Lattner uint64_t Offset = 4844fd528f2SReid Spencer TD->getIndexedOffset(Op0->getType(), &Indices[0], Indices.size()); 4859de0d14dSChris Lattner 48687aa65f4SReid Spencer char* tmp = (char*) Result.PointerVal; 48787aa65f4SReid Spencer Result = PTOGV(tmp + Offset); 4889de0d14dSChris Lattner return Result; 4899de0d14dSChris Lattner } 4904fd528f2SReid Spencer case Instruction::Trunc: { 4914fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 4924fd528f2SReid Spencer uint32_t BitWidth = cast<IntegerType>(CE->getType())->getBitWidth(); 4934fd528f2SReid Spencer GV.IntVal = GV.IntVal.trunc(BitWidth); 4944fd528f2SReid Spencer return GV; 4954fd528f2SReid Spencer } 4964fd528f2SReid Spencer case Instruction::ZExt: { 4974fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 4984fd528f2SReid Spencer uint32_t BitWidth = cast<IntegerType>(CE->getType())->getBitWidth(); 4994fd528f2SReid Spencer GV.IntVal = GV.IntVal.zext(BitWidth); 5004fd528f2SReid Spencer return GV; 5014fd528f2SReid Spencer } 5024fd528f2SReid Spencer case Instruction::SExt: { 5034fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5044fd528f2SReid Spencer uint32_t BitWidth = cast<IntegerType>(CE->getType())->getBitWidth(); 5054fd528f2SReid Spencer GV.IntVal = GV.IntVal.sext(BitWidth); 5064fd528f2SReid Spencer return GV; 5074fd528f2SReid Spencer } 5084fd528f2SReid Spencer case Instruction::FPTrunc: { 509a1336cf5SDale Johannesen // FIXME long double 5104fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5114fd528f2SReid Spencer GV.FloatVal = float(GV.DoubleVal); 5124fd528f2SReid Spencer return GV; 5134fd528f2SReid Spencer } 5144fd528f2SReid Spencer case Instruction::FPExt:{ 515a1336cf5SDale Johannesen // FIXME long double 5164fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5174fd528f2SReid Spencer GV.DoubleVal = double(GV.FloatVal); 5184fd528f2SReid Spencer return GV; 5194fd528f2SReid Spencer } 5204fd528f2SReid Spencer case Instruction::UIToFP: { 5214fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5224fd528f2SReid Spencer if (CE->getType() == Type::FloatTy) 5234fd528f2SReid Spencer GV.FloatVal = float(GV.IntVal.roundToDouble()); 524a1336cf5SDale Johannesen else if (CE->getType() == Type::DoubleTy) 5254fd528f2SReid Spencer GV.DoubleVal = GV.IntVal.roundToDouble(); 526a1336cf5SDale Johannesen else if (CE->getType() == Type::X86_FP80Ty) { 527a1336cf5SDale Johannesen const uint64_t zero[] = {0, 0}; 528a1336cf5SDale Johannesen APFloat apf = APFloat(APInt(80, 2, zero)); 529ca24fd90SDan Gohman (void)apf.convertFromAPInt(GV.IntVal, 530ca24fd90SDan Gohman false, 5319150652bSDale Johannesen APFloat::rmNearestTiesToEven); 53254306fe4SDale Johannesen GV.IntVal = apf.bitcastToAPInt(); 533a1336cf5SDale Johannesen } 5344fd528f2SReid Spencer return GV; 5354fd528f2SReid Spencer } 5364fd528f2SReid Spencer case Instruction::SIToFP: { 5374fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5384fd528f2SReid Spencer if (CE->getType() == Type::FloatTy) 5394fd528f2SReid Spencer GV.FloatVal = float(GV.IntVal.signedRoundToDouble()); 540a1336cf5SDale Johannesen else if (CE->getType() == Type::DoubleTy) 5414fd528f2SReid Spencer GV.DoubleVal = GV.IntVal.signedRoundToDouble(); 542a1336cf5SDale Johannesen else if (CE->getType() == Type::X86_FP80Ty) { 543a1336cf5SDale Johannesen const uint64_t zero[] = { 0, 0}; 544a1336cf5SDale Johannesen APFloat apf = APFloat(APInt(80, 2, zero)); 545ca24fd90SDan Gohman (void)apf.convertFromAPInt(GV.IntVal, 546ca24fd90SDan Gohman true, 5479150652bSDale Johannesen APFloat::rmNearestTiesToEven); 54854306fe4SDale Johannesen GV.IntVal = apf.bitcastToAPInt(); 549a1336cf5SDale Johannesen } 5504fd528f2SReid Spencer return GV; 5514fd528f2SReid Spencer } 5524fd528f2SReid Spencer case Instruction::FPToUI: // double->APInt conversion handles sign 5534fd528f2SReid Spencer case Instruction::FPToSI: { 5544fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5554fd528f2SReid Spencer uint32_t BitWidth = cast<IntegerType>(CE->getType())->getBitWidth(); 5564fd528f2SReid Spencer if (Op0->getType() == Type::FloatTy) 5574fd528f2SReid Spencer GV.IntVal = APIntOps::RoundFloatToAPInt(GV.FloatVal, BitWidth); 558a1336cf5SDale Johannesen else if (Op0->getType() == Type::DoubleTy) 5594fd528f2SReid Spencer GV.IntVal = APIntOps::RoundDoubleToAPInt(GV.DoubleVal, BitWidth); 560a1336cf5SDale Johannesen else if (Op0->getType() == Type::X86_FP80Ty) { 561a1336cf5SDale Johannesen APFloat apf = APFloat(GV.IntVal); 562a1336cf5SDale Johannesen uint64_t v; 5634f0bd68cSDale Johannesen bool ignored; 564a1336cf5SDale Johannesen (void)apf.convertToInteger(&v, BitWidth, 565a1336cf5SDale Johannesen CE->getOpcode()==Instruction::FPToSI, 5664f0bd68cSDale Johannesen APFloat::rmTowardZero, &ignored); 567a1336cf5SDale Johannesen GV.IntVal = v; // endian? 568a1336cf5SDale Johannesen } 5694fd528f2SReid Spencer return GV; 5704fd528f2SReid Spencer } 5716c38f0bbSReid Spencer case Instruction::PtrToInt: { 5724fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5734fd528f2SReid Spencer uint32_t PtrWidth = TD->getPointerSizeInBits(); 5744fd528f2SReid Spencer GV.IntVal = APInt(PtrWidth, uintptr_t(GV.PointerVal)); 5754fd528f2SReid Spencer return GV; 5764fd528f2SReid Spencer } 5774fd528f2SReid Spencer case Instruction::IntToPtr: { 5784fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5794fd528f2SReid Spencer uint32_t PtrWidth = TD->getPointerSizeInBits(); 5804fd528f2SReid Spencer if (PtrWidth != GV.IntVal.getBitWidth()) 5814fd528f2SReid Spencer GV.IntVal = GV.IntVal.zextOrTrunc(PtrWidth); 5824fd528f2SReid Spencer assert(GV.IntVal.getBitWidth() <= 64 && "Bad pointer width"); 5834fd528f2SReid Spencer GV.PointerVal = PointerTy(uintptr_t(GV.IntVal.getZExtValue())); 5846c38f0bbSReid Spencer return GV; 5856c38f0bbSReid Spencer } 5866c38f0bbSReid Spencer case Instruction::BitCast: { 5874fd528f2SReid Spencer GenericValue GV = getConstantValue(Op0); 5884fd528f2SReid Spencer const Type* DestTy = CE->getType(); 5894fd528f2SReid Spencer switch (Op0->getType()->getTypeID()) { 590fbcc663cSTorok Edwin default: llvm_unreachable("Invalid bitcast operand"); 5914fd528f2SReid Spencer case Type::IntegerTyID: 5924fd528f2SReid Spencer assert(DestTy->isFloatingPoint() && "invalid bitcast"); 5934fd528f2SReid Spencer if (DestTy == Type::FloatTy) 5944fd528f2SReid Spencer GV.FloatVal = GV.IntVal.bitsToFloat(); 5954fd528f2SReid Spencer else if (DestTy == Type::DoubleTy) 5964fd528f2SReid Spencer GV.DoubleVal = GV.IntVal.bitsToDouble(); 5976c38f0bbSReid Spencer break; 5984fd528f2SReid Spencer case Type::FloatTyID: 5994fd528f2SReid Spencer assert(DestTy == Type::Int32Ty && "Invalid bitcast"); 6004fd528f2SReid Spencer GV.IntVal.floatToBits(GV.FloatVal); 6014fd528f2SReid Spencer break; 6024fd528f2SReid Spencer case Type::DoubleTyID: 6034fd528f2SReid Spencer assert(DestTy == Type::Int64Ty && "Invalid bitcast"); 6044fd528f2SReid Spencer GV.IntVal.doubleToBits(GV.DoubleVal); 6054fd528f2SReid Spencer break; 6064fd528f2SReid Spencer case Type::PointerTyID: 6074fd528f2SReid Spencer assert(isa<PointerType>(DestTy) && "Invalid bitcast"); 6084fd528f2SReid Spencer break; // getConstantValue(Op0) above already converted it 6096c38f0bbSReid Spencer } 6104fd528f2SReid Spencer return GV; 61168cbcc3eSChris Lattner } 61268cbcc3eSChris Lattner case Instruction::Add: 613a5b9645cSDan Gohman case Instruction::FAdd: 6144fd528f2SReid Spencer case Instruction::Sub: 615a5b9645cSDan Gohman case Instruction::FSub: 6164fd528f2SReid Spencer case Instruction::Mul: 617a5b9645cSDan Gohman case Instruction::FMul: 6184fd528f2SReid Spencer case Instruction::UDiv: 6194fd528f2SReid Spencer case Instruction::SDiv: 6204fd528f2SReid Spencer case Instruction::URem: 6214fd528f2SReid Spencer case Instruction::SRem: 6224fd528f2SReid Spencer case Instruction::And: 6234fd528f2SReid Spencer case Instruction::Or: 6244fd528f2SReid Spencer case Instruction::Xor: { 6254fd528f2SReid Spencer GenericValue LHS = getConstantValue(Op0); 6264fd528f2SReid Spencer GenericValue RHS = getConstantValue(CE->getOperand(1)); 6274fd528f2SReid Spencer GenericValue GV; 628c4e6bb5fSChris Lattner switch (CE->getOperand(0)->getType()->getTypeID()) { 629fbcc663cSTorok Edwin default: llvm_unreachable("Bad add type!"); 6307a9c62baSReid Spencer case Type::IntegerTyID: 6314fd528f2SReid Spencer switch (CE->getOpcode()) { 632fbcc663cSTorok Edwin default: llvm_unreachable("Invalid integer opcode"); 6334fd528f2SReid Spencer case Instruction::Add: GV.IntVal = LHS.IntVal + RHS.IntVal; break; 6344fd528f2SReid Spencer case Instruction::Sub: GV.IntVal = LHS.IntVal - RHS.IntVal; break; 6354fd528f2SReid Spencer case Instruction::Mul: GV.IntVal = LHS.IntVal * RHS.IntVal; break; 6364fd528f2SReid Spencer case Instruction::UDiv:GV.IntVal = LHS.IntVal.udiv(RHS.IntVal); break; 6374fd528f2SReid Spencer case Instruction::SDiv:GV.IntVal = LHS.IntVal.sdiv(RHS.IntVal); break; 6384fd528f2SReid Spencer case Instruction::URem:GV.IntVal = LHS.IntVal.urem(RHS.IntVal); break; 6394fd528f2SReid Spencer case Instruction::SRem:GV.IntVal = LHS.IntVal.srem(RHS.IntVal); break; 6404fd528f2SReid Spencer case Instruction::And: GV.IntVal = LHS.IntVal & RHS.IntVal; break; 6414fd528f2SReid Spencer case Instruction::Or: GV.IntVal = LHS.IntVal | RHS.IntVal; break; 6424fd528f2SReid Spencer case Instruction::Xor: GV.IntVal = LHS.IntVal ^ RHS.IntVal; break; 6434fd528f2SReid Spencer } 644c4e6bb5fSChris Lattner break; 645c4e6bb5fSChris Lattner case Type::FloatTyID: 6464fd528f2SReid Spencer switch (CE->getOpcode()) { 647fbcc663cSTorok Edwin default: llvm_unreachable("Invalid float opcode"); 648a5b9645cSDan Gohman case Instruction::FAdd: 6494fd528f2SReid Spencer GV.FloatVal = LHS.FloatVal + RHS.FloatVal; break; 650a5b9645cSDan Gohman case Instruction::FSub: 6514fd528f2SReid Spencer GV.FloatVal = LHS.FloatVal - RHS.FloatVal; break; 652a5b9645cSDan Gohman case Instruction::FMul: 6534fd528f2SReid Spencer GV.FloatVal = LHS.FloatVal * RHS.FloatVal; break; 6544fd528f2SReid Spencer case Instruction::FDiv: 6554fd528f2SReid Spencer GV.FloatVal = LHS.FloatVal / RHS.FloatVal; break; 6564fd528f2SReid Spencer case Instruction::FRem: 6574fd528f2SReid Spencer GV.FloatVal = ::fmodf(LHS.FloatVal,RHS.FloatVal); break; 6584fd528f2SReid Spencer } 659c4e6bb5fSChris Lattner break; 660c4e6bb5fSChris Lattner case Type::DoubleTyID: 6614fd528f2SReid Spencer switch (CE->getOpcode()) { 662fbcc663cSTorok Edwin default: llvm_unreachable("Invalid double opcode"); 663a5b9645cSDan Gohman case Instruction::FAdd: 6644fd528f2SReid Spencer GV.DoubleVal = LHS.DoubleVal + RHS.DoubleVal; break; 665a5b9645cSDan Gohman case Instruction::FSub: 6664fd528f2SReid Spencer GV.DoubleVal = LHS.DoubleVal - RHS.DoubleVal; break; 667a5b9645cSDan Gohman case Instruction::FMul: 6684fd528f2SReid Spencer GV.DoubleVal = LHS.DoubleVal * RHS.DoubleVal; break; 6694fd528f2SReid Spencer case Instruction::FDiv: 6704fd528f2SReid Spencer GV.DoubleVal = LHS.DoubleVal / RHS.DoubleVal; break; 6714fd528f2SReid Spencer case Instruction::FRem: 6724fd528f2SReid Spencer GV.DoubleVal = ::fmod(LHS.DoubleVal,RHS.DoubleVal); break; 6734fd528f2SReid Spencer } 674c4e6bb5fSChris Lattner break; 675a1336cf5SDale Johannesen case Type::X86_FP80TyID: 676a1336cf5SDale Johannesen case Type::PPC_FP128TyID: 677a1336cf5SDale Johannesen case Type::FP128TyID: { 678a1336cf5SDale Johannesen APFloat apfLHS = APFloat(LHS.IntVal); 679a1336cf5SDale Johannesen switch (CE->getOpcode()) { 680fbcc663cSTorok Edwin default: llvm_unreachable("Invalid long double opcode");llvm_unreachable(0); 681a5b9645cSDan Gohman case Instruction::FAdd: 682a1336cf5SDale Johannesen apfLHS.add(APFloat(RHS.IntVal), APFloat::rmNearestTiesToEven); 68354306fe4SDale Johannesen GV.IntVal = apfLHS.bitcastToAPInt(); 684a1336cf5SDale Johannesen break; 685a5b9645cSDan Gohman case Instruction::FSub: 686a1336cf5SDale Johannesen apfLHS.subtract(APFloat(RHS.IntVal), APFloat::rmNearestTiesToEven); 68754306fe4SDale Johannesen GV.IntVal = apfLHS.bitcastToAPInt(); 688a1336cf5SDale Johannesen break; 689a5b9645cSDan Gohman case Instruction::FMul: 690a1336cf5SDale Johannesen apfLHS.multiply(APFloat(RHS.IntVal), APFloat::rmNearestTiesToEven); 69154306fe4SDale Johannesen GV.IntVal = apfLHS.bitcastToAPInt(); 692a1336cf5SDale Johannesen break; 693a1336cf5SDale Johannesen case Instruction::FDiv: 694a1336cf5SDale Johannesen apfLHS.divide(APFloat(RHS.IntVal), APFloat::rmNearestTiesToEven); 69554306fe4SDale Johannesen GV.IntVal = apfLHS.bitcastToAPInt(); 696a1336cf5SDale Johannesen break; 697a1336cf5SDale Johannesen case Instruction::FRem: 698a1336cf5SDale Johannesen apfLHS.mod(APFloat(RHS.IntVal), APFloat::rmNearestTiesToEven); 69954306fe4SDale Johannesen GV.IntVal = apfLHS.bitcastToAPInt(); 700a1336cf5SDale Johannesen break; 701a1336cf5SDale Johannesen } 702a1336cf5SDale Johannesen } 703a1336cf5SDale Johannesen break; 704c4e6bb5fSChris Lattner } 7054fd528f2SReid Spencer return GV; 7064fd528f2SReid Spencer } 7079de0d14dSChris Lattner default: 70868cbcc3eSChris Lattner break; 70968cbcc3eSChris Lattner } 710ccb29cd2STorok Edwin std::string msg; 711ccb29cd2STorok Edwin raw_string_ostream Msg(msg); 712ccb29cd2STorok Edwin Msg << "ConstantExpr not handled: " << *CE; 713ccb29cd2STorok Edwin llvm_report_error(Msg.str()); 7149de0d14dSChris Lattner } 715996fe010SChris Lattner 7164fd528f2SReid Spencer GenericValue Result; 7176b727599SChris Lattner switch (C->getType()->getTypeID()) { 71887aa65f4SReid Spencer case Type::FloatTyID: 719bed9dc42SDale Johannesen Result.FloatVal = cast<ConstantFP>(C)->getValueAPF().convertToFloat(); 7207a9c62baSReid Spencer break; 72187aa65f4SReid Spencer case Type::DoubleTyID: 722bed9dc42SDale Johannesen Result.DoubleVal = cast<ConstantFP>(C)->getValueAPF().convertToDouble(); 72387aa65f4SReid Spencer break; 724a1336cf5SDale Johannesen case Type::X86_FP80TyID: 725a1336cf5SDale Johannesen case Type::FP128TyID: 726a1336cf5SDale Johannesen case Type::PPC_FP128TyID: 72754306fe4SDale Johannesen Result.IntVal = cast <ConstantFP>(C)->getValueAPF().bitcastToAPInt(); 728a1336cf5SDale Johannesen break; 72987aa65f4SReid Spencer case Type::IntegerTyID: 73087aa65f4SReid Spencer Result.IntVal = cast<ConstantInt>(C)->getValue(); 73187aa65f4SReid Spencer break; 732996fe010SChris Lattner case Type::PointerTyID: 7336a0fd73bSReid Spencer if (isa<ConstantPointerNull>(C)) 734996fe010SChris Lattner Result.PointerVal = 0; 7356a0fd73bSReid Spencer else if (const Function *F = dyn_cast<Function>(C)) 7366a0fd73bSReid Spencer Result = PTOGV(getPointerToFunctionOrStub(const_cast<Function*>(F))); 7376a0fd73bSReid Spencer else if (const GlobalVariable* GV = dyn_cast<GlobalVariable>(C)) 7386a0fd73bSReid Spencer Result = PTOGV(getOrEmitGlobalVariable(const_cast<GlobalVariable*>(GV))); 739e6492f10SChris Lattner else 740fbcc663cSTorok Edwin llvm_unreachable("Unknown constant pointer type!"); 741996fe010SChris Lattner break; 742996fe010SChris Lattner default: 743ccb29cd2STorok Edwin std::string msg; 744ccb29cd2STorok Edwin raw_string_ostream Msg(msg); 745ccb29cd2STorok Edwin Msg << "ERROR: Constant unimplemented for type: " << *C->getType(); 746ccb29cd2STorok Edwin llvm_report_error(Msg.str()); 747996fe010SChris Lattner } 748996fe010SChris Lattner return Result; 749996fe010SChris Lattner } 750996fe010SChris Lattner 7511202d1b1SDuncan Sands /// StoreIntToMemory - Fills the StoreBytes bytes of memory starting from Dst 7521202d1b1SDuncan Sands /// with the integer held in IntVal. 7531202d1b1SDuncan Sands static void StoreIntToMemory(const APInt &IntVal, uint8_t *Dst, 7541202d1b1SDuncan Sands unsigned StoreBytes) { 7551202d1b1SDuncan Sands assert((IntVal.getBitWidth()+7)/8 >= StoreBytes && "Integer too small!"); 7561202d1b1SDuncan Sands uint8_t *Src = (uint8_t *)IntVal.getRawData(); 7575c65cb46SDuncan Sands 758aa121227SChris Lattner if (sys::isLittleEndianHost()) 7591202d1b1SDuncan Sands // Little-endian host - the source is ordered from LSB to MSB. Order the 7601202d1b1SDuncan Sands // destination from LSB to MSB: Do a straight copy. 7615c65cb46SDuncan Sands memcpy(Dst, Src, StoreBytes); 7625c65cb46SDuncan Sands else { 7635c65cb46SDuncan Sands // Big-endian host - the source is an array of 64 bit words ordered from 7641202d1b1SDuncan Sands // LSW to MSW. Each word is ordered from MSB to LSB. Order the destination 7651202d1b1SDuncan Sands // from MSB to LSB: Reverse the word order, but not the bytes in a word. 7665c65cb46SDuncan Sands while (StoreBytes > sizeof(uint64_t)) { 7675c65cb46SDuncan Sands StoreBytes -= sizeof(uint64_t); 7685c65cb46SDuncan Sands // May not be aligned so use memcpy. 7695c65cb46SDuncan Sands memcpy(Dst + StoreBytes, Src, sizeof(uint64_t)); 7705c65cb46SDuncan Sands Src += sizeof(uint64_t); 7715c65cb46SDuncan Sands } 7725c65cb46SDuncan Sands 7735c65cb46SDuncan Sands memcpy(Dst, Src + sizeof(uint64_t) - StoreBytes, StoreBytes); 774815f8dd2SReid Spencer } 7757a9c62baSReid Spencer } 7761202d1b1SDuncan Sands 7771202d1b1SDuncan Sands /// StoreValueToMemory - Stores the data in Val of type Ty at address Ptr. Ptr 7781202d1b1SDuncan Sands /// is the address of the memory at which to store Val, cast to GenericValue *. 7791202d1b1SDuncan Sands /// It is not a pointer to a GenericValue containing the address at which to 7801202d1b1SDuncan Sands /// store Val. 78109053e62SEvan Cheng void ExecutionEngine::StoreValueToMemory(const GenericValue &Val, 78209053e62SEvan Cheng GenericValue *Ptr, const Type *Ty) { 7831202d1b1SDuncan Sands const unsigned StoreBytes = getTargetData()->getTypeStoreSize(Ty); 7841202d1b1SDuncan Sands 7851202d1b1SDuncan Sands switch (Ty->getTypeID()) { 7861202d1b1SDuncan Sands case Type::IntegerTyID: 7871202d1b1SDuncan Sands StoreIntToMemory(Val.IntVal, (uint8_t*)Ptr, StoreBytes); 7881202d1b1SDuncan Sands break; 789996fe010SChris Lattner case Type::FloatTyID: 79087aa65f4SReid Spencer *((float*)Ptr) = Val.FloatVal; 79187aa65f4SReid Spencer break; 79287aa65f4SReid Spencer case Type::DoubleTyID: 79387aa65f4SReid Spencer *((double*)Ptr) = Val.DoubleVal; 794996fe010SChris Lattner break; 7954d7e4ee7SDale Johannesen case Type::X86_FP80TyID: 7964d7e4ee7SDale Johannesen memcpy(Ptr, Val.IntVal.getRawData(), 10); 797a1336cf5SDale Johannesen break; 7987a9c62baSReid Spencer case Type::PointerTyID: 7991202d1b1SDuncan Sands // Ensure 64 bit target pointers are fully initialized on 32 bit hosts. 8001202d1b1SDuncan Sands if (StoreBytes != sizeof(PointerTy)) 8011202d1b1SDuncan Sands memset(Ptr, 0, StoreBytes); 8021202d1b1SDuncan Sands 80387aa65f4SReid Spencer *((PointerTy*)Ptr) = Val.PointerVal; 804996fe010SChris Lattner break; 805996fe010SChris Lattner default: 806f3baad3eSBill Wendling cerr << "Cannot store value of type " << *Ty << "!\n"; 807996fe010SChris Lattner } 8081202d1b1SDuncan Sands 809aa121227SChris Lattner if (sys::isLittleEndianHost() != getTargetData()->isLittleEndian()) 8101202d1b1SDuncan Sands // Host and target are different endian - reverse the stored bytes. 8111202d1b1SDuncan Sands std::reverse((uint8_t*)Ptr, StoreBytes + (uint8_t*)Ptr); 812996fe010SChris Lattner } 813996fe010SChris Lattner 8141202d1b1SDuncan Sands /// LoadIntFromMemory - Loads the integer stored in the LoadBytes bytes starting 8151202d1b1SDuncan Sands /// from Src into IntVal, which is assumed to be wide enough and to hold zero. 8161202d1b1SDuncan Sands static void LoadIntFromMemory(APInt &IntVal, uint8_t *Src, unsigned LoadBytes) { 8171202d1b1SDuncan Sands assert((IntVal.getBitWidth()+7)/8 >= LoadBytes && "Integer too small!"); 8181202d1b1SDuncan Sands uint8_t *Dst = (uint8_t *)IntVal.getRawData(); 8195c65cb46SDuncan Sands 820aa121227SChris Lattner if (sys::isLittleEndianHost()) 8215c65cb46SDuncan Sands // Little-endian host - the destination must be ordered from LSB to MSB. 8225c65cb46SDuncan Sands // The source is ordered from LSB to MSB: Do a straight copy. 8235c65cb46SDuncan Sands memcpy(Dst, Src, LoadBytes); 8245c65cb46SDuncan Sands else { 8255c65cb46SDuncan Sands // Big-endian - the destination is an array of 64 bit words ordered from 8265c65cb46SDuncan Sands // LSW to MSW. Each word must be ordered from MSB to LSB. The source is 8275c65cb46SDuncan Sands // ordered from MSB to LSB: Reverse the word order, but not the bytes in 8285c65cb46SDuncan Sands // a word. 8295c65cb46SDuncan Sands while (LoadBytes > sizeof(uint64_t)) { 8305c65cb46SDuncan Sands LoadBytes -= sizeof(uint64_t); 8315c65cb46SDuncan Sands // May not be aligned so use memcpy. 8325c65cb46SDuncan Sands memcpy(Dst, Src + LoadBytes, sizeof(uint64_t)); 8335c65cb46SDuncan Sands Dst += sizeof(uint64_t); 8345c65cb46SDuncan Sands } 8355c65cb46SDuncan Sands 8365c65cb46SDuncan Sands memcpy(Dst + sizeof(uint64_t) - LoadBytes, Src, LoadBytes); 8375c65cb46SDuncan Sands } 8387a9c62baSReid Spencer } 8391202d1b1SDuncan Sands 8401202d1b1SDuncan Sands /// FIXME: document 8411202d1b1SDuncan Sands /// 8421202d1b1SDuncan Sands void ExecutionEngine::LoadValueFromMemory(GenericValue &Result, 8431202d1b1SDuncan Sands GenericValue *Ptr, 8441202d1b1SDuncan Sands const Type *Ty) { 8451202d1b1SDuncan Sands const unsigned LoadBytes = getTargetData()->getTypeStoreSize(Ty); 8461202d1b1SDuncan Sands 847aa121227SChris Lattner if (sys::isLittleEndianHost() != getTargetData()->isLittleEndian()) { 8481202d1b1SDuncan Sands // Host and target are different endian - reverse copy the stored 8491202d1b1SDuncan Sands // bytes into a buffer, and load from that. 8501202d1b1SDuncan Sands uint8_t *Src = (uint8_t*)Ptr; 8511202d1b1SDuncan Sands uint8_t *Buf = (uint8_t*)alloca(LoadBytes); 8521202d1b1SDuncan Sands std::reverse_copy(Src, Src + LoadBytes, Buf); 8531202d1b1SDuncan Sands Ptr = (GenericValue*)Buf; 8541202d1b1SDuncan Sands } 8551202d1b1SDuncan Sands 8561202d1b1SDuncan Sands switch (Ty->getTypeID()) { 8571202d1b1SDuncan Sands case Type::IntegerTyID: 8581202d1b1SDuncan Sands // An APInt with all words initially zero. 8591202d1b1SDuncan Sands Result.IntVal = APInt(cast<IntegerType>(Ty)->getBitWidth(), 0); 8601202d1b1SDuncan Sands LoadIntFromMemory(Result.IntVal, (uint8_t*)Ptr, LoadBytes); 8611202d1b1SDuncan Sands break; 8627f389e8cSChris Lattner case Type::FloatTyID: 86387aa65f4SReid Spencer Result.FloatVal = *((float*)Ptr); 86487aa65f4SReid Spencer break; 86587aa65f4SReid Spencer case Type::DoubleTyID: 86687aa65f4SReid Spencer Result.DoubleVal = *((double*)Ptr); 8677f389e8cSChris Lattner break; 8687a9c62baSReid Spencer case Type::PointerTyID: 86987aa65f4SReid Spencer Result.PointerVal = *((PointerTy*)Ptr); 8707f389e8cSChris Lattner break; 871a1336cf5SDale Johannesen case Type::X86_FP80TyID: { 872a1336cf5SDale Johannesen // This is endian dependent, but it will only work on x86 anyway. 87326d6539eSDuncan Sands // FIXME: Will not trap if loading a signaling NaN. 874ff306287SDuncan Sands uint64_t y[2]; 8754d7e4ee7SDale Johannesen memcpy(y, Ptr, 10); 876ff306287SDuncan Sands Result.IntVal = APInt(80, 2, y); 877a1336cf5SDale Johannesen break; 878a1336cf5SDale Johannesen } 8797f389e8cSChris Lattner default: 880ccb29cd2STorok Edwin std::string msg; 881ccb29cd2STorok Edwin raw_string_ostream Msg(msg); 882ccb29cd2STorok Edwin Msg << "Cannot load value of type " << *Ty << "!"; 883ccb29cd2STorok Edwin llvm_report_error(Msg.str()); 8847f389e8cSChris Lattner } 8857f389e8cSChris Lattner } 8867f389e8cSChris Lattner 887996fe010SChris Lattner // InitializeMemory - Recursive function to apply a Constant value into the 888996fe010SChris Lattner // specified memory location... 889996fe010SChris Lattner // 890996fe010SChris Lattner void ExecutionEngine::InitializeMemory(const Constant *Init, void *Addr) { 891972fd1a1SEvan Cheng DOUT << "JIT: Initializing " << Addr << " "; 892b086d382SDale Johannesen DEBUG(Init->dump()); 89361753bf8SChris Lattner if (isa<UndefValue>(Init)) { 89461753bf8SChris Lattner return; 895d84d35baSReid Spencer } else if (const ConstantVector *CP = dyn_cast<ConstantVector>(Init)) { 89669d62138SRobert Bocchino unsigned ElementSize = 897af9eaa83SDuncan Sands getTargetData()->getTypeAllocSize(CP->getType()->getElementType()); 89869d62138SRobert Bocchino for (unsigned i = 0, e = CP->getNumOperands(); i != e; ++i) 89969d62138SRobert Bocchino InitializeMemory(CP->getOperand(i), (char*)Addr+i*ElementSize); 90069d62138SRobert Bocchino return; 9011dd86b11SChris Lattner } else if (isa<ConstantAggregateZero>(Init)) { 902af9eaa83SDuncan Sands memset(Addr, 0, (size_t)getTargetData()->getTypeAllocSize(Init->getType())); 9031dd86b11SChris Lattner return; 90469ddfbfeSDan Gohman } else if (const ConstantArray *CPA = dyn_cast<ConstantArray>(Init)) { 90569ddfbfeSDan Gohman unsigned ElementSize = 906af9eaa83SDuncan Sands getTargetData()->getTypeAllocSize(CPA->getType()->getElementType()); 90769ddfbfeSDan Gohman for (unsigned i = 0, e = CPA->getNumOperands(); i != e; ++i) 90869ddfbfeSDan Gohman InitializeMemory(CPA->getOperand(i), (char*)Addr+i*ElementSize); 90969ddfbfeSDan Gohman return; 91069ddfbfeSDan Gohman } else if (const ConstantStruct *CPS = dyn_cast<ConstantStruct>(Init)) { 91169ddfbfeSDan Gohman const StructLayout *SL = 91269ddfbfeSDan Gohman getTargetData()->getStructLayout(cast<StructType>(CPS->getType())); 91369ddfbfeSDan Gohman for (unsigned i = 0, e = CPS->getNumOperands(); i != e; ++i) 91469ddfbfeSDan Gohman InitializeMemory(CPS->getOperand(i), (char*)Addr+SL->getElementOffset(i)); 91569ddfbfeSDan Gohman return; 91661753bf8SChris Lattner } else if (Init->getType()->isFirstClassType()) { 917996fe010SChris Lattner GenericValue Val = getConstantValue(Init); 918996fe010SChris Lattner StoreValueToMemory(Val, (GenericValue*)Addr, Init->getType()); 919996fe010SChris Lattner return; 920996fe010SChris Lattner } 921996fe010SChris Lattner 922f3baad3eSBill Wendling cerr << "Bad Type: " << *Init->getType() << "\n"; 923fbcc663cSTorok Edwin llvm_unreachable("Unknown constant type to initialize memory with!"); 924996fe010SChris Lattner } 925996fe010SChris Lattner 926996fe010SChris Lattner /// EmitGlobals - Emit all of the global variables to memory, storing their 927996fe010SChris Lattner /// addresses into GlobalAddress. This must make sure to copy the contents of 928996fe010SChris Lattner /// their initializers into the memory. 929996fe010SChris Lattner /// 930996fe010SChris Lattner void ExecutionEngine::emitGlobals() { 931996fe010SChris Lattner 932996fe010SChris Lattner // Loop over all of the global variables in the program, allocating the memory 9330621caefSChris Lattner // to hold them. If there is more than one module, do a prepass over globals 9340621caefSChris Lattner // to figure out how the different modules should link together. 9350621caefSChris Lattner // 9360621caefSChris Lattner std::map<std::pair<std::string, const Type*>, 9370621caefSChris Lattner const GlobalValue*> LinkedGlobalsMap; 9380621caefSChris Lattner 9390621caefSChris Lattner if (Modules.size() != 1) { 9400621caefSChris Lattner for (unsigned m = 0, e = Modules.size(); m != e; ++m) { 9410621caefSChris Lattner Module &M = *Modules[m]->getModule(); 9420621caefSChris Lattner for (Module::const_global_iterator I = M.global_begin(), 9430621caefSChris Lattner E = M.global_end(); I != E; ++I) { 9440621caefSChris Lattner const GlobalValue *GV = I; 9456de96a1bSRafael Espindola if (GV->hasLocalLinkage() || GV->isDeclaration() || 9460621caefSChris Lattner GV->hasAppendingLinkage() || !GV->hasName()) 9470621caefSChris Lattner continue;// Ignore external globals and globals with internal linkage. 9480621caefSChris Lattner 9490621caefSChris Lattner const GlobalValue *&GVEntry = 9500621caefSChris Lattner LinkedGlobalsMap[std::make_pair(GV->getName(), GV->getType())]; 9510621caefSChris Lattner 9520621caefSChris Lattner // If this is the first time we've seen this global, it is the canonical 9530621caefSChris Lattner // version. 9540621caefSChris Lattner if (!GVEntry) { 9550621caefSChris Lattner GVEntry = GV; 9560621caefSChris Lattner continue; 9570621caefSChris Lattner } 9580621caefSChris Lattner 9590621caefSChris Lattner // If the existing global is strong, never replace it. 960d61d39ecSAnton Korobeynikov if (GVEntry->hasExternalLinkage() || 961d61d39ecSAnton Korobeynikov GVEntry->hasDLLImportLinkage() || 962d61d39ecSAnton Korobeynikov GVEntry->hasDLLExportLinkage()) 9630621caefSChris Lattner continue; 9640621caefSChris Lattner 9650621caefSChris Lattner // Otherwise, we know it's linkonce/weak, replace it if this is a strong 966ce4396bcSDale Johannesen // symbol. FIXME is this right for common? 96712c94949SAnton Korobeynikov if (GV->hasExternalLinkage() || GVEntry->hasExternalWeakLinkage()) 9680621caefSChris Lattner GVEntry = GV; 9690621caefSChris Lattner } 9700621caefSChris Lattner } 9710621caefSChris Lattner } 9720621caefSChris Lattner 9730621caefSChris Lattner std::vector<const GlobalValue*> NonCanonicalGlobals; 9740621caefSChris Lattner for (unsigned m = 0, e = Modules.size(); m != e; ++m) { 9750621caefSChris Lattner Module &M = *Modules[m]->getModule(); 9768ffb6611SChris Lattner for (Module::const_global_iterator I = M.global_begin(), E = M.global_end(); 9770621caefSChris Lattner I != E; ++I) { 9780621caefSChris Lattner // In the multi-module case, see what this global maps to. 9790621caefSChris Lattner if (!LinkedGlobalsMap.empty()) { 9800621caefSChris Lattner if (const GlobalValue *GVEntry = 9810621caefSChris Lattner LinkedGlobalsMap[std::make_pair(I->getName(), I->getType())]) { 9820621caefSChris Lattner // If something else is the canonical global, ignore this one. 9830621caefSChris Lattner if (GVEntry != &*I) { 9840621caefSChris Lattner NonCanonicalGlobals.push_back(I); 9850621caefSChris Lattner continue; 9860621caefSChris Lattner } 9870621caefSChris Lattner } 9880621caefSChris Lattner } 9890621caefSChris Lattner 9905301e7c6SReid Spencer if (!I->isDeclaration()) { 9915457ce9aSNicolas Geoffray addGlobalMapping(I, getMemoryForGV(I)); 992996fe010SChris Lattner } else { 993e8bbcfc2SBrian Gaeke // External variable reference. Try to use the dynamic loader to 994e8bbcfc2SBrian Gaeke // get a pointer to it. 9950621caefSChris Lattner if (void *SymAddr = 9960621caefSChris Lattner sys::DynamicLibrary::SearchForAddressOfSymbol(I->getName().c_str())) 997748e8579SChris Lattner addGlobalMapping(I, SymAddr); 9989de0d14dSChris Lattner else { 9996c2d233eSTorok Edwin llvm_report_error("Could not resolve external global address: " 10006c2d233eSTorok Edwin +I->getName()); 10019de0d14dSChris Lattner } 1002996fe010SChris Lattner } 10030621caefSChris Lattner } 10040621caefSChris Lattner 10050621caefSChris Lattner // If there are multiple modules, map the non-canonical globals to their 10060621caefSChris Lattner // canonical location. 10070621caefSChris Lattner if (!NonCanonicalGlobals.empty()) { 10080621caefSChris Lattner for (unsigned i = 0, e = NonCanonicalGlobals.size(); i != e; ++i) { 10090621caefSChris Lattner const GlobalValue *GV = NonCanonicalGlobals[i]; 10100621caefSChris Lattner const GlobalValue *CGV = 10110621caefSChris Lattner LinkedGlobalsMap[std::make_pair(GV->getName(), GV->getType())]; 10120621caefSChris Lattner void *Ptr = getPointerToGlobalIfAvailable(CGV); 10130621caefSChris Lattner assert(Ptr && "Canonical global wasn't codegen'd!"); 1014a67f06b9SNuno Lopes addGlobalMapping(GV, Ptr); 10150621caefSChris Lattner } 10160621caefSChris Lattner } 1017996fe010SChris Lattner 10187a9c62baSReid Spencer // Now that all of the globals are set up in memory, loop through them all 10197a9c62baSReid Spencer // and initialize their contents. 10208ffb6611SChris Lattner for (Module::const_global_iterator I = M.global_begin(), E = M.global_end(); 10210621caefSChris Lattner I != E; ++I) { 10225301e7c6SReid Spencer if (!I->isDeclaration()) { 10230621caefSChris Lattner if (!LinkedGlobalsMap.empty()) { 10240621caefSChris Lattner if (const GlobalValue *GVEntry = 10250621caefSChris Lattner LinkedGlobalsMap[std::make_pair(I->getName(), I->getType())]) 10260621caefSChris Lattner if (GVEntry != &*I) // Not the canonical variable. 10270621caefSChris Lattner continue; 10280621caefSChris Lattner } 10296bbe3eceSChris Lattner EmitGlobalVariable(I); 10306bbe3eceSChris Lattner } 10310621caefSChris Lattner } 10320621caefSChris Lattner } 10330621caefSChris Lattner } 10346bbe3eceSChris Lattner 10356bbe3eceSChris Lattner // EmitGlobalVariable - This method emits the specified global variable to the 10366bbe3eceSChris Lattner // address specified in GlobalAddresses, or allocates new memory if it's not 10376bbe3eceSChris Lattner // already in the map. 1038fbcc0aa1SChris Lattner void ExecutionEngine::EmitGlobalVariable(const GlobalVariable *GV) { 1039748e8579SChris Lattner void *GA = getPointerToGlobalIfAvailable(GV); 1040dc631735SChris Lattner 10416bbe3eceSChris Lattner if (GA == 0) { 10426bbe3eceSChris Lattner // If it's not already specified, allocate memory for the global. 10435457ce9aSNicolas Geoffray GA = getMemoryForGV(GV); 1044748e8579SChris Lattner addGlobalMapping(GV, GA); 10456bbe3eceSChris Lattner } 1046fbcc0aa1SChris Lattner 10475457ce9aSNicolas Geoffray // Don't initialize if it's thread local, let the client do it. 10485457ce9aSNicolas Geoffray if (!GV->isThreadLocal()) 10496bbe3eceSChris Lattner InitializeMemory(GV->getInitializer(), GA); 10505457ce9aSNicolas Geoffray 10515457ce9aSNicolas Geoffray const Type *ElTy = GV->getType()->getElementType(); 1052af9eaa83SDuncan Sands size_t GVSize = (size_t)getTargetData()->getTypeAllocSize(ElTy); 1053df1f1524SChris Lattner NumInitBytes += (unsigned)GVSize; 10546bbe3eceSChris Lattner ++NumGlobals; 1055996fe010SChris Lattner } 1056