
This flag was used to let us incrementally introduce debug records into LLVM, however everything is now using records. It serves no purpose now, so delete it.
224 lines
7.8 KiB
C++
224 lines
7.8 KiB
C++
//===- CloneModule.cpp - Clone an entire module ---------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements the CloneModule interface which makes a copy of an
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// entire module.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/IR/DerivedTypes.h"
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#include "llvm/IR/Module.h"
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#include "llvm/Transforms/Utils/Cloning.h"
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#include "llvm/Transforms/Utils/ValueMapper.h"
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using namespace llvm;
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namespace llvm {
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class Constant;
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}
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static void copyComdat(GlobalObject *Dst, const GlobalObject *Src) {
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const Comdat *SC = Src->getComdat();
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if (!SC)
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return;
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Comdat *DC = Dst->getParent()->getOrInsertComdat(SC->getName());
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DC->setSelectionKind(SC->getSelectionKind());
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Dst->setComdat(DC);
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}
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/// This is not as easy as it might seem because we have to worry about making
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/// copies of global variables and functions, and making their (initializers and
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/// references, respectively) refer to the right globals.
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///
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/// Cloning un-materialized modules is not currently supported, so any
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/// modules initialized via lazy loading should be materialized before cloning
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std::unique_ptr<Module> llvm::CloneModule(const Module &M) {
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// Create the value map that maps things from the old module over to the new
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// module.
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ValueToValueMapTy VMap;
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return CloneModule(M, VMap);
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}
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std::unique_ptr<Module> llvm::CloneModule(const Module &M,
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ValueToValueMapTy &VMap) {
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return CloneModule(M, VMap, [](const GlobalValue *GV) { return true; });
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}
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std::unique_ptr<Module> llvm::CloneModule(
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const Module &M, ValueToValueMapTy &VMap,
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function_ref<bool(const GlobalValue *)> ShouldCloneDefinition) {
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assert(M.isMaterialized() && "Module must be materialized before cloning!");
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// First off, we need to create the new module.
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std::unique_ptr<Module> New =
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std::make_unique<Module>(M.getModuleIdentifier(), M.getContext());
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New->setSourceFileName(M.getSourceFileName());
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New->setDataLayout(M.getDataLayout());
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New->setTargetTriple(M.getTargetTriple());
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New->setModuleInlineAsm(M.getModuleInlineAsm());
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// Loop over all of the global variables, making corresponding globals in the
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// new module. Here we add them to the VMap and to the new Module. We
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// don't worry about attributes or initializers, they will come later.
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//
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for (const GlobalVariable &I : M.globals()) {
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GlobalVariable *NewGV = new GlobalVariable(
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*New, I.getValueType(), I.isConstant(), I.getLinkage(),
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(Constant *)nullptr, I.getName(), (GlobalVariable *)nullptr,
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I.getThreadLocalMode(), I.getType()->getAddressSpace());
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NewGV->copyAttributesFrom(&I);
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VMap[&I] = NewGV;
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}
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// Loop over the functions in the module, making external functions as before
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for (const Function &I : M) {
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Function *NF =
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Function::Create(cast<FunctionType>(I.getValueType()), I.getLinkage(),
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I.getAddressSpace(), I.getName(), New.get());
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NF->copyAttributesFrom(&I);
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VMap[&I] = NF;
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}
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// Loop over the aliases in the module
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for (const GlobalAlias &I : M.aliases()) {
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if (!ShouldCloneDefinition(&I)) {
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// An alias cannot act as an external reference, so we need to create
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// either a function or a global variable depending on the value type.
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// FIXME: Once pointee types are gone we can probably pick one or the
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// other.
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GlobalValue *GV;
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if (I.getValueType()->isFunctionTy())
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GV = Function::Create(cast<FunctionType>(I.getValueType()),
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GlobalValue::ExternalLinkage, I.getAddressSpace(),
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I.getName(), New.get());
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else
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GV = new GlobalVariable(*New, I.getValueType(), false,
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GlobalValue::ExternalLinkage, nullptr,
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I.getName(), nullptr, I.getThreadLocalMode(),
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I.getType()->getAddressSpace());
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VMap[&I] = GV;
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// We do not copy attributes (mainly because copying between different
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// kinds of globals is forbidden), but this is generally not required for
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// correctness.
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continue;
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}
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auto *GA = GlobalAlias::create(I.getValueType(),
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I.getType()->getPointerAddressSpace(),
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I.getLinkage(), I.getName(), New.get());
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GA->copyAttributesFrom(&I);
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VMap[&I] = GA;
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}
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for (const GlobalIFunc &I : M.ifuncs()) {
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// Defer setting the resolver function until after functions are cloned.
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auto *GI =
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GlobalIFunc::create(I.getValueType(), I.getAddressSpace(),
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I.getLinkage(), I.getName(), nullptr, New.get());
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GI->copyAttributesFrom(&I);
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VMap[&I] = GI;
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}
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// Similarly, copy over function bodies now...
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//
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for (const Function &I : M) {
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Function *F = cast<Function>(VMap[&I]);
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if (I.isDeclaration()) {
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// Copy over metadata for declarations since we're not doing it below in
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// CloneFunctionInto().
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SmallVector<std::pair<unsigned, MDNode *>, 1> MDs;
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I.getAllMetadata(MDs);
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for (auto MD : MDs)
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F->addMetadata(MD.first, *MapMetadata(MD.second, VMap));
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continue;
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}
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if (!ShouldCloneDefinition(&I)) {
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// Skip after setting the correct linkage for an external reference.
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F->setLinkage(GlobalValue::ExternalLinkage);
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// Personality function is not valid on a declaration.
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F->setPersonalityFn(nullptr);
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continue;
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}
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Function::arg_iterator DestI = F->arg_begin();
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for (const Argument &J : I.args()) {
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DestI->setName(J.getName());
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VMap[&J] = &*DestI++;
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}
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SmallVector<ReturnInst *, 8> Returns; // Ignore returns cloned.
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CloneFunctionInto(F, &I, VMap, CloneFunctionChangeType::ClonedModule,
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Returns);
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if (I.hasPersonalityFn())
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F->setPersonalityFn(MapValue(I.getPersonalityFn(), VMap));
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copyComdat(F, &I);
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}
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// And aliases
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for (const GlobalAlias &I : M.aliases()) {
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// We already dealt with undefined aliases above.
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if (!ShouldCloneDefinition(&I))
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continue;
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GlobalAlias *GA = cast<GlobalAlias>(VMap[&I]);
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if (const Constant *C = I.getAliasee())
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GA->setAliasee(MapValue(C, VMap));
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}
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for (const GlobalIFunc &I : M.ifuncs()) {
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GlobalIFunc *GI = cast<GlobalIFunc>(VMap[&I]);
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if (const Constant *Resolver = I.getResolver())
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GI->setResolver(MapValue(Resolver, VMap));
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}
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// And named metadata....
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for (const NamedMDNode &NMD : M.named_metadata()) {
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NamedMDNode *NewNMD = New->getOrInsertNamedMetadata(NMD.getName());
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for (const MDNode *N : NMD.operands())
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NewNMD->addOperand(MapMetadata(N, VMap));
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}
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// Now that all of the things that global variable initializer can refer to
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// have been created, loop through and copy the global variable referrers
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// over... We also set the attributes on the global now.
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//
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for (const GlobalVariable &G : M.globals()) {
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GlobalVariable *GV = cast<GlobalVariable>(VMap[&G]);
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SmallVector<std::pair<unsigned, MDNode *>, 1> MDs;
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G.getAllMetadata(MDs);
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for (auto MD : MDs)
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GV->addMetadata(MD.first, *MapMetadata(MD.second, VMap));
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if (G.isDeclaration())
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continue;
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if (!ShouldCloneDefinition(&G)) {
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// Skip after setting the correct linkage for an external reference.
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GV->setLinkage(GlobalValue::ExternalLinkage);
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continue;
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}
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if (G.hasInitializer())
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GV->setInitializer(MapValue(G.getInitializer(), VMap));
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copyComdat(GV, &G);
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}
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return New;
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}
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extern "C" {
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LLVMModuleRef LLVMCloneModule(LLVMModuleRef M) {
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return wrap(CloneModule(*unwrap(M)).release());
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}
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}
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