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AMDGPUEmitPrintf.cpp
(8.57 KB)
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ASanStackFrameLayout.cpp
(5.75 KB)
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AddDiscriminators.cpp
(10.78 KB)
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AssumeBundleBuilder.cpp
(21.46 KB)
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BasicBlockUtils.cpp
(51.81 KB)
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BreakCriticalEdges.cpp
(19.03 KB)
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BuildLibCalls.cpp
(43.9 KB)
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BypassSlowDivision.cpp
(17.95 KB)
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CallGraphUpdater.cpp
(5.76 KB)
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CallPromotionUtils.cpp
(22.18 KB)
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CanonicalizeAliases.cpp
(3.18 KB)
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CanonicalizeFreezeInLoops.cpp
(7.93 KB)
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CloneFunction.cpp
(34.49 KB)
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CloneModule.cpp
(7.93 KB)
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CodeExtractor.cpp
(65.69 KB)
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CodeMoverUtils.cpp
(15.82 KB)
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CtorUtils.cpp
(5.1 KB)
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Debugify.cpp
(17.78 KB)
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DemoteRegToStack.cpp
(6.1 KB)
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EntryExitInstrumenter.cpp
(5.83 KB)
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EscapeEnumerator.cpp
(2.96 KB)
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Evaluator.cpp
(27.98 KB)
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FixIrreducible.cpp
(12.68 KB)
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FlattenCFG.cpp
(16.99 KB)
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FunctionComparator.cpp
(34.36 KB)
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FunctionImportUtils.cpp
(13.8 KB)
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GlobalStatus.cpp
(7.23 KB)
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GuardUtils.cpp
(4.76 KB)
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ImportedFunctionsInliningStatistics.cpp
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InjectTLIMappings.cpp
(6.62 KB)
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InlineFunction.cpp
(103.28 KB)
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InstructionNamer.cpp
(1.98 KB)
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IntegerDivision.cpp
(26.17 KB)
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LCSSA.cpp
(18.72 KB)
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LibCallsShrinkWrap.cpp
(18.68 KB)
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Local.cpp
(114.96 KB)
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LoopRotationUtils.cpp
(29.47 KB)
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LoopSimplify.cpp
(36.13 KB)
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LoopUnroll.cpp
(38.07 KB)
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LoopUnrollAndJam.cpp
(37.71 KB)
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LoopUnrollPeel.cpp
(31.88 KB)
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LoopUnrollRuntime.cpp
(40.17 KB)
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LoopUtils.cpp
(65.03 KB)
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LoopVersioning.cpp
(12.42 KB)
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LowerInvoke.cpp
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LowerMemIntrinsics.cpp
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LowerSwitch.cpp
(23.46 KB)
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Mem2Reg.cpp
(3.71 KB)
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MetaRenamer.cpp
(5.29 KB)
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MisExpect.cpp
(6.97 KB)
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ModuleUtils.cpp
(10.99 KB)
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NameAnonGlobals.cpp
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PredicateInfo.cpp
(36.79 KB)
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PromoteMemoryToRegister.cpp
(37.26 KB)
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SSAUpdater.cpp
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SSAUpdaterBulk.cpp
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SanitizerStats.cpp
(4.08 KB)
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ScalarEvolutionExpander.cpp
(101.25 KB)
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SimplifyCFG.cpp
(238.13 KB)
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SimplifyIndVar.cpp
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SimplifyLibCalls.cpp
(122.25 KB)
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SizeOpts.cpp
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SplitModule.cpp
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StripGCRelocates.cpp
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StripNonLineTableDebugInfo.cpp
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SymbolRewriter.cpp
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UnifyFunctionExitNodes.cpp
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UnifyLoopExits.cpp
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UniqueInternalLinkageNames.cpp
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Utils.cpp
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VNCoercion.cpp
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ValueMapper.cpp
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Editing: CloneModule.cpp
//===- CloneModule.cpp - Clone an entire module ---------------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // // This file implements the CloneModule interface which makes a copy of an // entire module. // //===----------------------------------------------------------------------===// #include "llvm/IR/Constant.h" #include "llvm/IR/DerivedTypes.h" #include "llvm/IR/Module.h" #include "llvm/Transforms/Utils/Cloning.h" #include "llvm/Transforms/Utils/ValueMapper.h" using namespace llvm; static void copyComdat(GlobalObject *Dst, const GlobalObject *Src) { const Comdat *SC = Src->getComdat(); if (!SC) return; Comdat *DC = Dst->getParent()->getOrInsertComdat(SC->getName()); DC->setSelectionKind(SC->getSelectionKind()); Dst->setComdat(DC); } /// This is not as easy as it might seem because we have to worry about making /// copies of global variables and functions, and making their (initializers and /// references, respectively) refer to the right globals. /// std::unique_ptr<Module> llvm::CloneModule(const Module &M) { // Create the value map that maps things from the old module over to the new // module. ValueToValueMapTy VMap; return CloneModule(M, VMap); } std::unique_ptr<Module> llvm::CloneModule(const Module &M, ValueToValueMapTy &VMap) { return CloneModule(M, VMap, [](const GlobalValue *GV) { return true; }); } std::unique_ptr<Module> llvm::CloneModule( const Module &M, ValueToValueMapTy &VMap, function_ref<bool(const GlobalValue *)> ShouldCloneDefinition) { // First off, we need to create the new module. std::unique_ptr<Module> New = std::make_unique<Module>(M.getModuleIdentifier(), M.getContext()); New->setSourceFileName(M.getSourceFileName()); New->setDataLayout(M.getDataLayout()); New->setTargetTriple(M.getTargetTriple()); New->setModuleInlineAsm(M.getModuleInlineAsm()); // Loop over all of the global variables, making corresponding globals in the // new module. Here we add them to the VMap and to the new Module. We // don't worry about attributes or initializers, they will come later. // for (Module::const_global_iterator I = M.global_begin(), E = M.global_end(); I != E; ++I) { GlobalVariable *GV = new GlobalVariable(*New, I->getValueType(), I->isConstant(), I->getLinkage(), (Constant*) nullptr, I->getName(), (GlobalVariable*) nullptr, I->getThreadLocalMode(), I->getType()->getAddressSpace()); GV->copyAttributesFrom(&*I); VMap[&*I] = GV; } // Loop over the functions in the module, making external functions as before for (const Function &I : M) { Function *NF = Function::Create(cast<FunctionType>(I.getValueType()), I.getLinkage(), I.getAddressSpace(), I.getName(), New.get()); NF->copyAttributesFrom(&I); VMap[&I] = NF; } // Loop over the aliases in the module for (Module::const_alias_iterator I = M.alias_begin(), E = M.alias_end(); I != E; ++I) { if (!ShouldCloneDefinition(&*I)) { // An alias cannot act as an external reference, so we need to create // either a function or a global variable depending on the value type. // FIXME: Once pointee types are gone we can probably pick one or the // other. GlobalValue *GV; if (I->getValueType()->isFunctionTy()) GV = Function::Create(cast<FunctionType>(I->getValueType()), GlobalValue::ExternalLinkage, I->getAddressSpace(), I->getName(), New.get()); else GV = new GlobalVariable( *New, I->getValueType(), false, GlobalValue::ExternalLinkage, nullptr, I->getName(), nullptr, I->getThreadLocalMode(), I->getType()->getAddressSpace()); VMap[&*I] = GV; // We do not copy attributes (mainly because copying between different // kinds of globals is forbidden), but this is generally not required for // correctness. continue; } auto *GA = GlobalAlias::create(I->getValueType(), I->getType()->getPointerAddressSpace(), I->getLinkage(), I->getName(), New.get()); GA->copyAttributesFrom(&*I); VMap[&*I] = GA; } // Now that all of the things that global variable initializer can refer to // have been created, loop through and copy the global variable referrers // over... We also set the attributes on the global now. // for (Module::const_global_iterator I = M.global_begin(), E = M.global_end(); I != E; ++I) { if (I->isDeclaration()) continue; GlobalVariable *GV = cast<GlobalVariable>(VMap[&*I]); if (!ShouldCloneDefinition(&*I)) { // Skip after setting the correct linkage for an external reference. GV->setLinkage(GlobalValue::ExternalLinkage); continue; } if (I->hasInitializer()) GV->setInitializer(MapValue(I->getInitializer(), VMap)); SmallVector<std::pair<unsigned, MDNode *>, 1> MDs; I->getAllMetadata(MDs); for (auto MD : MDs) GV->addMetadata(MD.first, *MapMetadata(MD.second, VMap, RF_MoveDistinctMDs)); copyComdat(GV, &*I); } // Similarly, copy over function bodies now... // for (const Function &I : M) { if (I.isDeclaration()) continue; Function *F = cast<Function>(VMap[&I]); if (!ShouldCloneDefinition(&I)) { // Skip after setting the correct linkage for an external reference. F->setLinkage(GlobalValue::ExternalLinkage); // Personality function is not valid on a declaration. F->setPersonalityFn(nullptr); continue; } Function::arg_iterator DestI = F->arg_begin(); for (Function::const_arg_iterator J = I.arg_begin(); J != I.arg_end(); ++J) { DestI->setName(J->getName()); VMap[&*J] = &*DestI++; } SmallVector<ReturnInst *, 8> Returns; // Ignore returns cloned. CloneFunctionInto(F, &I, VMap, /*ModuleLevelChanges=*/true, Returns); if (I.hasPersonalityFn()) F->setPersonalityFn(MapValue(I.getPersonalityFn(), VMap)); copyComdat(F, &I); } // And aliases for (Module::const_alias_iterator I = M.alias_begin(), E = M.alias_end(); I != E; ++I) { // We already dealt with undefined aliases above. if (!ShouldCloneDefinition(&*I)) continue; GlobalAlias *GA = cast<GlobalAlias>(VMap[&*I]); if (const Constant *C = I->getAliasee()) GA->setAliasee(MapValue(C, VMap)); } // And named metadata.... const auto* LLVM_DBG_CU = M.getNamedMetadata("llvm.dbg.cu"); for (Module::const_named_metadata_iterator I = M.named_metadata_begin(), E = M.named_metadata_end(); I != E; ++I) { const NamedMDNode &NMD = *I; NamedMDNode *NewNMD = New->getOrInsertNamedMetadata(NMD.getName()); if (&NMD == LLVM_DBG_CU) { // Do not insert duplicate operands. SmallPtrSet<const void*, 8> Visited; for (const auto* Operand : NewNMD->operands()) Visited.insert(Operand); for (const auto* Operand : NMD.operands()) { auto* MappedOperand = MapMetadata(Operand, VMap); if (Visited.insert(MappedOperand).second) NewNMD->addOperand(MappedOperand); } } else for (unsigned i = 0, e = NMD.getNumOperands(); i != e; ++i) NewNMD->addOperand(MapMetadata(NMD.getOperand(i), VMap)); } return New; } extern "C" { LLVMModuleRef LLVMCloneModule(LLVMModuleRef M) { return wrap(CloneModule(*unwrap(M)).release()); } }
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