forked from OSchip/llvm-project
618 lines
20 KiB
C++
618 lines
20 KiB
C++
//===- Cloning.cpp - Unit tests for the Cloner ----------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/Transforms/Utils/Cloning.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/SmallPtrSet.h"
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#include "llvm/IR/Argument.h"
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#include "llvm/IR/Constant.h"
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#include "llvm/IR/DIBuilder.h"
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#include "llvm/IR/DebugInfo.h"
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#include "llvm/IR/Function.h"
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#include "llvm/IR/IRBuilder.h"
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#include "llvm/IR/InstIterator.h"
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#include "llvm/IR/Instructions.h"
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#include "llvm/IR/IntrinsicInst.h"
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#include "llvm/IR/LLVMContext.h"
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#include "llvm/IR/Module.h"
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#include "llvm/IR/Verifier.h"
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#include "gtest/gtest.h"
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using namespace llvm;
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namespace {
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class CloneInstruction : public ::testing::Test {
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protected:
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void SetUp() override { V = nullptr; }
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template <typename T>
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T *clone(T *V1) {
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Value *V2 = V1->clone();
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Orig.insert(V1);
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Clones.insert(V2);
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return cast<T>(V2);
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}
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void eraseClones() {
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for (Value *V : Clones)
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V->deleteValue();
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Clones.clear();
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}
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void TearDown() override {
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eraseClones();
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for (Value *V : Orig)
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V->deleteValue();
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Orig.clear();
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if (V)
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V->deleteValue();
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}
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SmallPtrSet<Value *, 4> Orig; // Erase on exit
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SmallPtrSet<Value *, 4> Clones; // Erase in eraseClones
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LLVMContext context;
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Value *V;
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};
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TEST_F(CloneInstruction, OverflowBits) {
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V = new Argument(Type::getInt32Ty(context));
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BinaryOperator *Add = BinaryOperator::Create(Instruction::Add, V, V);
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BinaryOperator *Sub = BinaryOperator::Create(Instruction::Sub, V, V);
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BinaryOperator *Mul = BinaryOperator::Create(Instruction::Mul, V, V);
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BinaryOperator *AddClone = this->clone(Add);
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BinaryOperator *SubClone = this->clone(Sub);
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BinaryOperator *MulClone = this->clone(Mul);
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EXPECT_FALSE(AddClone->hasNoUnsignedWrap());
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EXPECT_FALSE(AddClone->hasNoSignedWrap());
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EXPECT_FALSE(SubClone->hasNoUnsignedWrap());
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EXPECT_FALSE(SubClone->hasNoSignedWrap());
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EXPECT_FALSE(MulClone->hasNoUnsignedWrap());
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EXPECT_FALSE(MulClone->hasNoSignedWrap());
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eraseClones();
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Add->setHasNoUnsignedWrap();
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Sub->setHasNoUnsignedWrap();
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Mul->setHasNoUnsignedWrap();
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AddClone = this->clone(Add);
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SubClone = this->clone(Sub);
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MulClone = this->clone(Mul);
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EXPECT_TRUE(AddClone->hasNoUnsignedWrap());
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EXPECT_FALSE(AddClone->hasNoSignedWrap());
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EXPECT_TRUE(SubClone->hasNoUnsignedWrap());
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EXPECT_FALSE(SubClone->hasNoSignedWrap());
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EXPECT_TRUE(MulClone->hasNoUnsignedWrap());
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EXPECT_FALSE(MulClone->hasNoSignedWrap());
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eraseClones();
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Add->setHasNoSignedWrap();
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Sub->setHasNoSignedWrap();
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Mul->setHasNoSignedWrap();
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AddClone = this->clone(Add);
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SubClone = this->clone(Sub);
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MulClone = this->clone(Mul);
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EXPECT_TRUE(AddClone->hasNoUnsignedWrap());
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EXPECT_TRUE(AddClone->hasNoSignedWrap());
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EXPECT_TRUE(SubClone->hasNoUnsignedWrap());
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EXPECT_TRUE(SubClone->hasNoSignedWrap());
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EXPECT_TRUE(MulClone->hasNoUnsignedWrap());
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EXPECT_TRUE(MulClone->hasNoSignedWrap());
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eraseClones();
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Add->setHasNoUnsignedWrap(false);
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Sub->setHasNoUnsignedWrap(false);
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Mul->setHasNoUnsignedWrap(false);
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AddClone = this->clone(Add);
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SubClone = this->clone(Sub);
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MulClone = this->clone(Mul);
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EXPECT_FALSE(AddClone->hasNoUnsignedWrap());
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EXPECT_TRUE(AddClone->hasNoSignedWrap());
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EXPECT_FALSE(SubClone->hasNoUnsignedWrap());
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EXPECT_TRUE(SubClone->hasNoSignedWrap());
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EXPECT_FALSE(MulClone->hasNoUnsignedWrap());
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EXPECT_TRUE(MulClone->hasNoSignedWrap());
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}
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TEST_F(CloneInstruction, Inbounds) {
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V = new Argument(Type::getInt32PtrTy(context));
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Constant *Z = Constant::getNullValue(Type::getInt32Ty(context));
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std::vector<Value *> ops;
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ops.push_back(Z);
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GetElementPtrInst *GEP =
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GetElementPtrInst::Create(Type::getInt32Ty(context), V, ops);
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EXPECT_FALSE(this->clone(GEP)->isInBounds());
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GEP->setIsInBounds();
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EXPECT_TRUE(this->clone(GEP)->isInBounds());
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}
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TEST_F(CloneInstruction, Exact) {
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V = new Argument(Type::getInt32Ty(context));
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BinaryOperator *SDiv = BinaryOperator::Create(Instruction::SDiv, V, V);
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EXPECT_FALSE(this->clone(SDiv)->isExact());
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SDiv->setIsExact(true);
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EXPECT_TRUE(this->clone(SDiv)->isExact());
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}
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TEST_F(CloneInstruction, Attributes) {
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Type *ArgTy1[] = { Type::getInt32PtrTy(context) };
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FunctionType *FT1 = FunctionType::get(Type::getVoidTy(context), ArgTy1, false);
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Function *F1 = Function::Create(FT1, Function::ExternalLinkage);
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BasicBlock *BB = BasicBlock::Create(context, "", F1);
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IRBuilder<> Builder(BB);
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Builder.CreateRetVoid();
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Function *F2 = Function::Create(FT1, Function::ExternalLinkage);
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Argument *A = &*F1->arg_begin();
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A->addAttr(Attribute::NoCapture);
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SmallVector<ReturnInst*, 4> Returns;
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ValueToValueMapTy VMap;
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VMap[A] = UndefValue::get(A->getType());
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CloneFunctionInto(F2, F1, VMap, false, Returns);
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EXPECT_FALSE(F2->arg_begin()->hasNoCaptureAttr());
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delete F1;
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delete F2;
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}
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TEST_F(CloneInstruction, CallingConvention) {
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Type *ArgTy1[] = { Type::getInt32PtrTy(context) };
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FunctionType *FT1 = FunctionType::get(Type::getVoidTy(context), ArgTy1, false);
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Function *F1 = Function::Create(FT1, Function::ExternalLinkage);
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F1->setCallingConv(CallingConv::Cold);
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BasicBlock *BB = BasicBlock::Create(context, "", F1);
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IRBuilder<> Builder(BB);
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Builder.CreateRetVoid();
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Function *F2 = Function::Create(FT1, Function::ExternalLinkage);
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SmallVector<ReturnInst*, 4> Returns;
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ValueToValueMapTy VMap;
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VMap[&*F1->arg_begin()] = &*F2->arg_begin();
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CloneFunctionInto(F2, F1, VMap, false, Returns);
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EXPECT_EQ(CallingConv::Cold, F2->getCallingConv());
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delete F1;
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delete F2;
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}
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TEST_F(CloneInstruction, DuplicateInstructionsToSplit) {
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Type *ArgTy1[] = {Type::getInt32PtrTy(context)};
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FunctionType *FT = FunctionType::get(Type::getVoidTy(context), ArgTy1, false);
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V = new Argument(Type::getInt32Ty(context));
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Function *F = Function::Create(FT, Function::ExternalLinkage);
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BasicBlock *BB1 = BasicBlock::Create(context, "", F);
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IRBuilder<> Builder1(BB1);
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BasicBlock *BB2 = BasicBlock::Create(context, "", F);
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IRBuilder<> Builder2(BB2);
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Builder1.CreateBr(BB2);
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Instruction *AddInst = cast<Instruction>(Builder2.CreateAdd(V, V));
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Instruction *MulInst = cast<Instruction>(Builder2.CreateMul(AddInst, V));
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Instruction *SubInst = cast<Instruction>(Builder2.CreateSub(MulInst, V));
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Builder2.CreateRetVoid();
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ValueToValueMapTy Mapping;
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auto Split = DuplicateInstructionsInSplitBetween(BB2, BB1, SubInst, Mapping);
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EXPECT_TRUE(Split);
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EXPECT_EQ(Mapping.size(), 2u);
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EXPECT_TRUE(Mapping.find(AddInst) != Mapping.end());
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EXPECT_TRUE(Mapping.find(MulInst) != Mapping.end());
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auto AddSplit = dyn_cast<Instruction>(Mapping[AddInst]);
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EXPECT_TRUE(AddSplit);
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EXPECT_EQ(AddSplit->getOperand(0), V);
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EXPECT_EQ(AddSplit->getOperand(1), V);
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EXPECT_EQ(AddSplit->getParent(), Split);
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auto MulSplit = dyn_cast<Instruction>(Mapping[MulInst]);
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EXPECT_TRUE(MulSplit);
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EXPECT_EQ(MulSplit->getOperand(0), AddSplit);
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EXPECT_EQ(MulSplit->getOperand(1), V);
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EXPECT_EQ(MulSplit->getParent(), Split);
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EXPECT_EQ(AddSplit->getNextNode(), MulSplit);
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EXPECT_EQ(MulSplit->getNextNode(), Split->getTerminator());
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delete F;
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}
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class CloneFunc : public ::testing::Test {
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protected:
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void SetUp() override {
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SetupModule();
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CreateOldFunc();
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CreateNewFunc();
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SetupFinder();
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}
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void TearDown() override { delete Finder; }
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void SetupModule() {
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M = new Module("", C);
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}
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void CreateOldFunc() {
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FunctionType* FuncType = FunctionType::get(Type::getVoidTy(C), false);
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OldFunc = Function::Create(FuncType, GlobalValue::PrivateLinkage, "f", M);
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CreateOldFunctionBodyAndDI();
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}
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void CreateOldFunctionBodyAndDI() {
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DIBuilder DBuilder(*M);
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IRBuilder<> IBuilder(C);
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// Function DI
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auto *File = DBuilder.createFile("filename.c", "/file/dir/");
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DITypeRefArray ParamTypes = DBuilder.getOrCreateTypeArray(None);
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DISubroutineType *FuncType =
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DBuilder.createSubroutineType(ParamTypes);
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auto *CU = DBuilder.createCompileUnit(dwarf::DW_LANG_C99,
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DBuilder.createFile("filename.c",
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"/file/dir"),
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"CloneFunc", false, "", 0);
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auto *Subprogram =
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DBuilder.createFunction(CU, "f", "f", File, 4, FuncType, true, true, 3,
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DINode::FlagZero, false);
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OldFunc->setSubprogram(Subprogram);
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// Function body
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BasicBlock* Entry = BasicBlock::Create(C, "", OldFunc);
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IBuilder.SetInsertPoint(Entry);
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DebugLoc Loc = DebugLoc::get(3, 2, Subprogram);
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IBuilder.SetCurrentDebugLocation(Loc);
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AllocaInst* Alloca = IBuilder.CreateAlloca(IntegerType::getInt32Ty(C));
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IBuilder.SetCurrentDebugLocation(DebugLoc::get(4, 2, Subprogram));
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Value* AllocaContent = IBuilder.getInt32(1);
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Instruction* Store = IBuilder.CreateStore(AllocaContent, Alloca);
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IBuilder.SetCurrentDebugLocation(DebugLoc::get(5, 2, Subprogram));
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// Create a local variable around the alloca
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auto *IntType = DBuilder.createBasicType("int", 32, dwarf::DW_ATE_signed);
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auto *E = DBuilder.createExpression();
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auto *Variable =
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DBuilder.createAutoVariable(Subprogram, "x", File, 5, IntType, true);
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auto *DL = DILocation::get(Subprogram->getContext(), 5, 0, Subprogram);
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DBuilder.insertDeclare(Alloca, Variable, E, DL, Store);
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DBuilder.insertDbgValueIntrinsic(AllocaContent, Variable, E, DL, Entry);
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// Also create an inlined variable.
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// Create a distinct struct type that we should not duplicate during
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// cloning).
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auto *StructType = DICompositeType::getDistinct(
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C, dwarf::DW_TAG_structure_type, "some_struct", nullptr, 0, nullptr,
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nullptr, 32, 32, 0, DINode::FlagZero, nullptr, 0, nullptr, nullptr);
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auto *InlinedSP =
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DBuilder.createFunction(CU, "inlined", "inlined", File, 8, FuncType,
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true, true, 9, DINode::FlagZero, false);
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auto *InlinedVar =
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DBuilder.createAutoVariable(InlinedSP, "inlined", File, 5, StructType, true);
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auto *Scope = DBuilder.createLexicalBlock(
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DBuilder.createLexicalBlockFile(InlinedSP, File), File, 1, 1);
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auto InlinedDL =
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DebugLoc::get(9, 4, Scope, DebugLoc::get(5, 2, Subprogram));
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IBuilder.SetCurrentDebugLocation(InlinedDL);
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DBuilder.insertDeclare(Alloca, InlinedVar, E, InlinedDL, Store);
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IBuilder.CreateStore(IBuilder.getInt32(2), Alloca);
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// Finalize the debug info.
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DBuilder.finalize();
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IBuilder.CreateRetVoid();
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// Create another, empty, compile unit.
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DIBuilder DBuilder2(*M);
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DBuilder2.createCompileUnit(dwarf::DW_LANG_C99,
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DBuilder.createFile("extra.c", "/file/dir"),
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"CloneFunc", false, "", 0);
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DBuilder2.finalize();
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}
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void CreateNewFunc() {
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ValueToValueMapTy VMap;
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NewFunc = CloneFunction(OldFunc, VMap, nullptr);
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}
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void SetupFinder() {
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Finder = new DebugInfoFinder();
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Finder->processModule(*M);
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}
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LLVMContext C;
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Function* OldFunc;
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Function* NewFunc;
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Module* M;
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DebugInfoFinder* Finder;
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};
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// Test that a new, distinct function was created.
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TEST_F(CloneFunc, NewFunctionCreated) {
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EXPECT_NE(OldFunc, NewFunc);
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}
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// Test that a new subprogram entry was added and is pointing to the new
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// function, while the original subprogram still points to the old one.
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TEST_F(CloneFunc, Subprogram) {
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EXPECT_FALSE(verifyModule(*M, &errs()));
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EXPECT_EQ(3U, Finder->subprogram_count());
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EXPECT_NE(NewFunc->getSubprogram(), OldFunc->getSubprogram());
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}
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// Test that instructions in the old function still belong to it in the
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// metadata, while instruction in the new function belong to the new one.
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TEST_F(CloneFunc, InstructionOwnership) {
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EXPECT_FALSE(verifyModule(*M));
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inst_iterator OldIter = inst_begin(OldFunc);
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inst_iterator OldEnd = inst_end(OldFunc);
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inst_iterator NewIter = inst_begin(NewFunc);
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inst_iterator NewEnd = inst_end(NewFunc);
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while (OldIter != OldEnd && NewIter != NewEnd) {
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Instruction& OldI = *OldIter;
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Instruction& NewI = *NewIter;
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EXPECT_NE(&OldI, &NewI);
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EXPECT_EQ(OldI.hasMetadata(), NewI.hasMetadata());
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if (OldI.hasMetadata()) {
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const DebugLoc& OldDL = OldI.getDebugLoc();
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const DebugLoc& NewDL = NewI.getDebugLoc();
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// Verify that the debug location data is the same
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EXPECT_EQ(OldDL.getLine(), NewDL.getLine());
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EXPECT_EQ(OldDL.getCol(), NewDL.getCol());
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// But that they belong to different functions
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auto *OldSubprogram = cast<DISubprogram>(OldDL.getInlinedAtScope());
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auto *NewSubprogram = cast<DISubprogram>(NewDL.getInlinedAtScope());
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EXPECT_EQ(OldFunc->getSubprogram(), OldSubprogram);
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EXPECT_EQ(NewFunc->getSubprogram(), NewSubprogram);
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}
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++OldIter;
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++NewIter;
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}
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EXPECT_EQ(OldEnd, OldIter);
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EXPECT_EQ(NewEnd, NewIter);
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}
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// Test that the arguments for debug intrinsics in the new function were
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// properly cloned
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TEST_F(CloneFunc, DebugIntrinsics) {
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EXPECT_FALSE(verifyModule(*M));
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inst_iterator OldIter = inst_begin(OldFunc);
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inst_iterator OldEnd = inst_end(OldFunc);
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inst_iterator NewIter = inst_begin(NewFunc);
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inst_iterator NewEnd = inst_end(NewFunc);
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while (OldIter != OldEnd && NewIter != NewEnd) {
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Instruction& OldI = *OldIter;
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Instruction& NewI = *NewIter;
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if (DbgDeclareInst* OldIntrin = dyn_cast<DbgDeclareInst>(&OldI)) {
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DbgDeclareInst* NewIntrin = dyn_cast<DbgDeclareInst>(&NewI);
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EXPECT_TRUE(NewIntrin);
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// Old address must belong to the old function
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EXPECT_EQ(OldFunc, cast<AllocaInst>(OldIntrin->getAddress())->
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getParent()->getParent());
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// New address must belong to the new function
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EXPECT_EQ(NewFunc, cast<AllocaInst>(NewIntrin->getAddress())->
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getParent()->getParent());
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if (OldIntrin->getDebugLoc()->getInlinedAt()) {
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// Inlined variable should refer to the same DILocalVariable as in the
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// Old Function
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EXPECT_EQ(OldIntrin->getVariable(), NewIntrin->getVariable());
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} else {
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// Old variable must belong to the old function.
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EXPECT_EQ(OldFunc->getSubprogram(),
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cast<DISubprogram>(OldIntrin->getVariable()->getScope()));
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// New variable must belong to the new function.
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EXPECT_EQ(NewFunc->getSubprogram(),
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cast<DISubprogram>(NewIntrin->getVariable()->getScope()));
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}
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} else if (DbgValueInst* OldIntrin = dyn_cast<DbgValueInst>(&OldI)) {
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DbgValueInst* NewIntrin = dyn_cast<DbgValueInst>(&NewI);
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EXPECT_TRUE(NewIntrin);
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if (!OldIntrin->getDebugLoc()->getInlinedAt()) {
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// Old variable must belong to the old function.
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EXPECT_EQ(OldFunc->getSubprogram(),
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cast<DISubprogram>(OldIntrin->getVariable()->getScope()));
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// New variable must belong to the new function.
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EXPECT_EQ(NewFunc->getSubprogram(),
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cast<DISubprogram>(NewIntrin->getVariable()->getScope()));
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}
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}
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++OldIter;
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++NewIter;
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}
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}
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class CloneModule : public ::testing::Test {
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protected:
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void SetUp() override {
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SetupModule();
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CreateOldModule();
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CreateNewModule();
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}
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void SetupModule() { OldM = new Module("", C); }
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void CreateOldModule() {
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auto *CD = OldM->getOrInsertComdat("comdat");
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CD->setSelectionKind(Comdat::ExactMatch);
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auto GV = new GlobalVariable(
|
|
*OldM, Type::getInt32Ty(C), false, GlobalValue::ExternalLinkage,
|
|
ConstantInt::get(Type::getInt32Ty(C), 1), "gv");
|
|
GV->addMetadata(LLVMContext::MD_type, *MDNode::get(C, {}));
|
|
GV->setComdat(CD);
|
|
|
|
DIBuilder DBuilder(*OldM);
|
|
IRBuilder<> IBuilder(C);
|
|
|
|
auto *FuncType = FunctionType::get(Type::getVoidTy(C), false);
|
|
auto *PersFn = Function::Create(FuncType, GlobalValue::ExternalLinkage,
|
|
"persfn", OldM);
|
|
auto *F =
|
|
Function::Create(FuncType, GlobalValue::PrivateLinkage, "f", OldM);
|
|
F->setPersonalityFn(PersFn);
|
|
F->setComdat(CD);
|
|
|
|
// Create debug info
|
|
auto *File = DBuilder.createFile("filename.c", "/file/dir/");
|
|
DITypeRefArray ParamTypes = DBuilder.getOrCreateTypeArray(None);
|
|
DISubroutineType *DFuncType = DBuilder.createSubroutineType(ParamTypes);
|
|
auto *CU = DBuilder.createCompileUnit(dwarf::DW_LANG_C99,
|
|
DBuilder.createFile("filename.c",
|
|
"/file/dir"),
|
|
"CloneModule", false, "", 0);
|
|
// Function DI
|
|
auto *Subprogram =
|
|
DBuilder.createFunction(CU, "f", "f", File, 4, DFuncType, true, true, 3,
|
|
DINode::FlagZero, false);
|
|
F->setSubprogram(Subprogram);
|
|
|
|
// Create and assign DIGlobalVariableExpression to gv
|
|
auto GVExpression = DBuilder.createGlobalVariableExpression(
|
|
Subprogram, "gv", "gv", File, 1, DBuilder.createNullPtrType(), false);
|
|
GV->addDebugInfo(GVExpression);
|
|
|
|
// DIGlobalVariableExpression not attached to any global variable
|
|
auto Expr = DBuilder.createExpression(
|
|
ArrayRef<uint64_t>{dwarf::DW_OP_constu, 42U, dwarf::DW_OP_stack_value});
|
|
|
|
DBuilder.createGlobalVariableExpression(
|
|
Subprogram, "unattached", "unattached", File, 1,
|
|
DBuilder.createNullPtrType(), false, Expr);
|
|
|
|
auto *Entry = BasicBlock::Create(C, "", F);
|
|
IBuilder.SetInsertPoint(Entry);
|
|
IBuilder.CreateRetVoid();
|
|
|
|
// Finalize the debug info
|
|
DBuilder.finalize();
|
|
}
|
|
|
|
void CreateNewModule() { NewM = llvm::CloneModule(OldM).release(); }
|
|
|
|
LLVMContext C;
|
|
Module *OldM;
|
|
Module *NewM;
|
|
};
|
|
|
|
TEST_F(CloneModule, Verify) {
|
|
EXPECT_FALSE(verifyModule(*NewM));
|
|
}
|
|
|
|
TEST_F(CloneModule, OldModuleUnchanged) {
|
|
DebugInfoFinder Finder;
|
|
Finder.processModule(*OldM);
|
|
EXPECT_EQ(1U, Finder.subprogram_count());
|
|
}
|
|
|
|
TEST_F(CloneModule, Subprogram) {
|
|
Function *NewF = NewM->getFunction("f");
|
|
DISubprogram *SP = NewF->getSubprogram();
|
|
EXPECT_TRUE(SP != nullptr);
|
|
EXPECT_EQ(SP->getName(), "f");
|
|
EXPECT_EQ(SP->getFile()->getFilename(), "filename.c");
|
|
EXPECT_EQ(SP->getLine(), (unsigned)4);
|
|
}
|
|
|
|
TEST_F(CloneModule, GlobalMetadata) {
|
|
GlobalVariable *NewGV = NewM->getGlobalVariable("gv");
|
|
EXPECT_NE(nullptr, NewGV->getMetadata(LLVMContext::MD_type));
|
|
}
|
|
|
|
TEST_F(CloneModule, GlobalDebugInfo) {
|
|
GlobalVariable *NewGV = NewM->getGlobalVariable("gv");
|
|
EXPECT_TRUE(NewGV != nullptr);
|
|
|
|
// Find debug info expression assigned to global
|
|
SmallVector<DIGlobalVariableExpression *, 1> GVs;
|
|
NewGV->getDebugInfo(GVs);
|
|
EXPECT_EQ(GVs.size(), 1U);
|
|
|
|
DIGlobalVariableExpression *GVExpr = GVs[0];
|
|
DIGlobalVariable *GV = GVExpr->getVariable();
|
|
EXPECT_TRUE(GV != nullptr);
|
|
|
|
EXPECT_EQ(GV->getName(), "gv");
|
|
EXPECT_EQ(GV->getLine(), 1U);
|
|
|
|
// Assert that the scope of the debug info attached to
|
|
// global variable matches the cloned function.
|
|
DISubprogram *SP = NewM->getFunction("f")->getSubprogram();
|
|
EXPECT_TRUE(SP != nullptr);
|
|
EXPECT_EQ(GV->getScope(), SP);
|
|
}
|
|
|
|
TEST_F(CloneModule, CompileUnit) {
|
|
// Find DICompileUnit listed in llvm.dbg.cu
|
|
auto *NMD = NewM->getNamedMetadata("llvm.dbg.cu");
|
|
EXPECT_TRUE(NMD != nullptr);
|
|
EXPECT_EQ(NMD->getNumOperands(), 1U);
|
|
|
|
DICompileUnit *CU = dyn_cast<llvm::DICompileUnit>(NMD->getOperand(0));
|
|
EXPECT_TRUE(CU != nullptr);
|
|
|
|
// Assert this CU is consistent with the cloned function debug info
|
|
DISubprogram *SP = NewM->getFunction("f")->getSubprogram();
|
|
EXPECT_TRUE(SP != nullptr);
|
|
EXPECT_EQ(SP->getUnit(), CU);
|
|
|
|
// Check globals listed in CU have the correct scope
|
|
DIGlobalVariableExpressionArray GlobalArray = CU->getGlobalVariables();
|
|
EXPECT_EQ(GlobalArray.size(), 2U);
|
|
for (DIGlobalVariableExpression *GVExpr : GlobalArray) {
|
|
DIGlobalVariable *GV = GVExpr->getVariable();
|
|
EXPECT_EQ(GV->getScope(), SP);
|
|
}
|
|
}
|
|
|
|
TEST_F(CloneModule, Comdat) {
|
|
GlobalVariable *NewGV = NewM->getGlobalVariable("gv");
|
|
auto *CD = NewGV->getComdat();
|
|
ASSERT_NE(nullptr, CD);
|
|
EXPECT_EQ("comdat", CD->getName());
|
|
EXPECT_EQ(Comdat::ExactMatch, CD->getSelectionKind());
|
|
|
|
Function *NewF = NewM->getFunction("f");
|
|
EXPECT_EQ(CD, NewF->getComdat());
|
|
}
|
|
}
|