1 //===- CloneModule.cpp - Clone an entire module ---------------------------===// 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 // This file implements the CloneModule interface which makes a copy of an 10 // entire module. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm-c/Core.h" 15 #include "llvm/IR/DerivedTypes.h" 16 #include "llvm/IR/Module.h" 17 #include "llvm/Transforms/Utils/Cloning.h" 18 #include "llvm/Transforms/Utils/ValueMapper.h" 19 using namespace llvm; 20 21 namespace llvm { 22 class Constant; 23 } 24 25 static void copyComdat(GlobalObject *Dst, const GlobalObject *Src) { 26 const Comdat *SC = Src->getComdat(); 27 if (!SC) 28 return; 29 Comdat *DC = Dst->getParent()->getOrInsertComdat(SC->getName()); 30 DC->setSelectionKind(SC->getSelectionKind()); 31 Dst->setComdat(DC); 32 } 33 34 /// This is not as easy as it might seem because we have to worry about making 35 /// copies of global variables and functions, and making their (initializers and 36 /// references, respectively) refer to the right globals. 37 /// 38 /// Cloning un-materialized modules is not currently supported, so any 39 /// modules initialized via lazy loading should be materialized before cloning 40 std::unique_ptr<Module> llvm::CloneModule(const Module &M) { 41 // Create the value map that maps things from the old module over to the new 42 // module. 43 ValueToValueMapTy VMap; 44 return CloneModule(M, VMap); 45 } 46 47 std::unique_ptr<Module> llvm::CloneModule(const Module &M, 48 ValueToValueMapTy &VMap) { 49 return CloneModule(M, VMap, [](const GlobalValue *GV) { return true; }); 50 } 51 52 std::unique_ptr<Module> llvm::CloneModule( 53 const Module &M, ValueToValueMapTy &VMap, 54 function_ref<bool(const GlobalValue *)> ShouldCloneDefinition) { 55 56 assert(M.isMaterialized() && "Module must be materialized before cloning!"); 57 58 // First off, we need to create the new module. 59 std::unique_ptr<Module> New = 60 std::make_unique<Module>(M.getModuleIdentifier(), M.getContext()); 61 New->setSourceFileName(M.getSourceFileName()); 62 New->setDataLayout(M.getDataLayout()); 63 New->setTargetTriple(M.getTargetTriple()); 64 New->setModuleInlineAsm(M.getModuleInlineAsm()); 65 66 // Loop over all of the global variables, making corresponding globals in the 67 // new module. Here we add them to the VMap and to the new Module. We 68 // don't worry about attributes or initializers, they will come later. 69 // 70 for (const GlobalVariable &I : M.globals()) { 71 GlobalVariable *NewGV = new GlobalVariable( 72 *New, I.getValueType(), I.isConstant(), I.getLinkage(), 73 (Constant *)nullptr, I.getName(), (GlobalVariable *)nullptr, 74 I.getThreadLocalMode(), I.getType()->getAddressSpace()); 75 NewGV->copyAttributesFrom(&I); 76 VMap[&I] = NewGV; 77 } 78 79 // Loop over the functions in the module, making external functions as before 80 for (const Function &I : M) { 81 Function *NF = 82 Function::Create(cast<FunctionType>(I.getValueType()), I.getLinkage(), 83 I.getAddressSpace(), I.getName(), New.get()); 84 NF->copyAttributesFrom(&I); 85 VMap[&I] = NF; 86 } 87 88 // Loop over the aliases in the module 89 for (const GlobalAlias &I : M.aliases()) { 90 if (!ShouldCloneDefinition(&I)) { 91 // An alias cannot act as an external reference, so we need to create 92 // either a function or a global variable depending on the value type. 93 // FIXME: Once pointee types are gone we can probably pick one or the 94 // other. 95 GlobalValue *GV; 96 if (I.getValueType()->isFunctionTy()) 97 GV = Function::Create(cast<FunctionType>(I.getValueType()), 98 GlobalValue::ExternalLinkage, I.getAddressSpace(), 99 I.getName(), New.get()); 100 else 101 GV = new GlobalVariable(*New, I.getValueType(), false, 102 GlobalValue::ExternalLinkage, nullptr, 103 I.getName(), nullptr, I.getThreadLocalMode(), 104 I.getType()->getAddressSpace()); 105 VMap[&I] = GV; 106 // We do not copy attributes (mainly because copying between different 107 // kinds of globals is forbidden), but this is generally not required for 108 // correctness. 109 continue; 110 } 111 auto *GA = GlobalAlias::create(I.getValueType(), 112 I.getType()->getPointerAddressSpace(), 113 I.getLinkage(), I.getName(), New.get()); 114 GA->copyAttributesFrom(&I); 115 VMap[&I] = GA; 116 } 117 118 for (const GlobalIFunc &I : M.ifuncs()) { 119 // Defer setting the resolver function until after functions are cloned. 120 auto *GI = 121 GlobalIFunc::create(I.getValueType(), I.getAddressSpace(), 122 I.getLinkage(), I.getName(), nullptr, New.get()); 123 GI->copyAttributesFrom(&I); 124 VMap[&I] = GI; 125 } 126 127 // Similarly, copy over function bodies now... 128 // 129 for (const Function &I : M) { 130 Function *F = cast<Function>(VMap[&I]); 131 132 if (I.isDeclaration()) { 133 // Copy over metadata for declarations since we're not doing it below in 134 // CloneFunctionInto(). 135 SmallVector<std::pair<unsigned, MDNode *>, 1> MDs; 136 I.getAllMetadata(MDs); 137 for (auto MD : MDs) 138 F->addMetadata(MD.first, *MapMetadata(MD.second, VMap)); 139 continue; 140 } 141 142 if (!ShouldCloneDefinition(&I)) { 143 // Skip after setting the correct linkage for an external reference. 144 F->setLinkage(GlobalValue::ExternalLinkage); 145 // Personality function is not valid on a declaration. 146 F->setPersonalityFn(nullptr); 147 continue; 148 } 149 150 Function::arg_iterator DestI = F->arg_begin(); 151 for (const Argument &J : I.args()) { 152 DestI->setName(J.getName()); 153 VMap[&J] = &*DestI++; 154 } 155 156 SmallVector<ReturnInst *, 8> Returns; // Ignore returns cloned. 157 CloneFunctionInto(F, &I, VMap, CloneFunctionChangeType::ClonedModule, 158 Returns); 159 160 if (I.hasPersonalityFn()) 161 F->setPersonalityFn(MapValue(I.getPersonalityFn(), VMap)); 162 163 copyComdat(F, &I); 164 } 165 166 // And aliases 167 for (const GlobalAlias &I : M.aliases()) { 168 // We already dealt with undefined aliases above. 169 if (!ShouldCloneDefinition(&I)) 170 continue; 171 GlobalAlias *GA = cast<GlobalAlias>(VMap[&I]); 172 if (const Constant *C = I.getAliasee()) 173 GA->setAliasee(MapValue(C, VMap)); 174 } 175 176 for (const GlobalIFunc &I : M.ifuncs()) { 177 GlobalIFunc *GI = cast<GlobalIFunc>(VMap[&I]); 178 if (const Constant *Resolver = I.getResolver()) 179 GI->setResolver(MapValue(Resolver, VMap)); 180 } 181 182 // And named metadata.... 183 for (const NamedMDNode &NMD : M.named_metadata()) { 184 NamedMDNode *NewNMD = New->getOrInsertNamedMetadata(NMD.getName()); 185 for (const MDNode *N : NMD.operands()) 186 NewNMD->addOperand(MapMetadata(N, VMap)); 187 } 188 189 // Now that all of the things that global variable initializer can refer to 190 // have been created, loop through and copy the global variable referrers 191 // over... We also set the attributes on the global now. 192 // 193 for (const GlobalVariable &G : M.globals()) { 194 GlobalVariable *GV = cast<GlobalVariable>(VMap[&G]); 195 196 SmallVector<std::pair<unsigned, MDNode *>, 1> MDs; 197 G.getAllMetadata(MDs); 198 for (auto MD : MDs) 199 GV->addMetadata(MD.first, *MapMetadata(MD.second, VMap)); 200 201 if (G.isDeclaration()) 202 continue; 203 204 if (!ShouldCloneDefinition(&G)) { 205 // Skip after setting the correct linkage for an external reference. 206 GV->setLinkage(GlobalValue::ExternalLinkage); 207 continue; 208 } 209 if (G.hasInitializer()) 210 GV->setInitializer(MapValue(G.getInitializer(), VMap)); 211 212 copyComdat(GV, &G); 213 } 214 215 return New; 216 } 217 218 extern "C" { 219 220 LLVMModuleRef LLVMCloneModule(LLVMModuleRef M) { 221 return wrap(CloneModule(*unwrap(M)).release()); 222 } 223 224 } 225