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author | Nico Weber <nicolasweber@gmx.de> | 2018-09-03 12:43:26 +0000 |
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committer | Nico Weber <nicolasweber@gmx.de> | 2018-09-03 12:43:26 +0000 |
commit | 8267b333ee9aaa7cedc6d8aab6ddf15629d9e255 (patch) | |
tree | 1e1efbcc60829d02625e8e6d5c4b149626be0eaf /llvm/unittests/Transforms/Utils/IntegerDivisionTest.cpp | |
parent | d8e7ed6457b1ecad3ec2dc41151092e5a637540c (diff) | |
download | bcm5719-llvm-8267b333ee9aaa7cedc6d8aab6ddf15629d9e255.tar.gz bcm5719-llvm-8267b333ee9aaa7cedc6d8aab6ddf15629d9e255.zip |
Rename a few unittests/.../Foo.cpp files to FooTest.cpp
The convention for unit test sources is that they're called FooTest.cpp.
No behavior change.
https://reviews.llvm.org/D51579
llvm-svn: 341313
Diffstat (limited to 'llvm/unittests/Transforms/Utils/IntegerDivisionTest.cpp')
-rw-r--r-- | llvm/unittests/Transforms/Utils/IntegerDivisionTest.cpp | 264 |
1 files changed, 264 insertions, 0 deletions
diff --git a/llvm/unittests/Transforms/Utils/IntegerDivisionTest.cpp b/llvm/unittests/Transforms/Utils/IntegerDivisionTest.cpp new file mode 100644 index 00000000000..e337b9f547a --- /dev/null +++ b/llvm/unittests/Transforms/Utils/IntegerDivisionTest.cpp @@ -0,0 +1,264 @@ +//===- IntegerDivision.cpp - Unit tests for the integer division code -----===// +// +// The LLVM Compiler Infrastructure +// +// This file is distributed under the University of Illinois Open Source +// License. See LICENSE.TXT for details. +// +//===----------------------------------------------------------------------===// + +#include "llvm/Transforms/Utils/IntegerDivision.h" +#include "llvm/IR/BasicBlock.h" +#include "llvm/IR/Function.h" +#include "llvm/IR/GlobalValue.h" +#include "llvm/IR/IRBuilder.h" +#include "llvm/IR/Module.h" +#include "gtest/gtest.h" + +using namespace llvm; + +namespace { + + +TEST(IntegerDivision, SDiv) { + LLVMContext C; + Module M("test division", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt32Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt32Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Div = Builder.CreateSDiv(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::SDiv); + + Value *Ret = Builder.CreateRet(Div); + + expandDivision(cast<BinaryOperator>(Div)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::AShr); + + Instruction* Quotient = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Quotient && Quotient->getOpcode() == Instruction::Sub); +} + +TEST(IntegerDivision, UDiv) { + LLVMContext C; + Module M("test division", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt32Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt32Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Div = Builder.CreateUDiv(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::UDiv); + + Value *Ret = Builder.CreateRet(Div); + + expandDivision(cast<BinaryOperator>(Div)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::ICmp); + + Instruction* Quotient = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Quotient && Quotient->getOpcode() == Instruction::PHI); +} + +TEST(IntegerDivision, SRem) { + LLVMContext C; + Module M("test remainder", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt32Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt32Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Rem = Builder.CreateSRem(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::SRem); + + Value *Ret = Builder.CreateRet(Rem); + + expandRemainder(cast<BinaryOperator>(Rem)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::AShr); + + Instruction* Remainder = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Remainder && Remainder->getOpcode() == Instruction::Sub); +} + +TEST(IntegerDivision, URem) { + LLVMContext C; + Module M("test remainder", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt32Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt32Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Rem = Builder.CreateURem(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::URem); + + Value *Ret = Builder.CreateRet(Rem); + + expandRemainder(cast<BinaryOperator>(Rem)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::ICmp); + + Instruction* Remainder = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Remainder && Remainder->getOpcode() == Instruction::Sub); +} + + +TEST(IntegerDivision, SDiv64) { + LLVMContext C; + Module M("test division", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt64Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt64Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Div = Builder.CreateSDiv(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::SDiv); + + Value *Ret = Builder.CreateRet(Div); + + expandDivision(cast<BinaryOperator>(Div)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::AShr); + + Instruction* Quotient = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Quotient && Quotient->getOpcode() == Instruction::Sub); +} + +TEST(IntegerDivision, UDiv64) { + LLVMContext C; + Module M("test division", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt64Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt64Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Div = Builder.CreateUDiv(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::UDiv); + + Value *Ret = Builder.CreateRet(Div); + + expandDivision(cast<BinaryOperator>(Div)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::ICmp); + + Instruction* Quotient = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Quotient && Quotient->getOpcode() == Instruction::PHI); +} + +TEST(IntegerDivision, SRem64) { + LLVMContext C; + Module M("test remainder", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt64Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt64Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Rem = Builder.CreateSRem(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::SRem); + + Value *Ret = Builder.CreateRet(Rem); + + expandRemainder(cast<BinaryOperator>(Rem)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::AShr); + + Instruction* Remainder = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Remainder && Remainder->getOpcode() == Instruction::Sub); +} + +TEST(IntegerDivision, URem64) { + LLVMContext C; + Module M("test remainder", C); + IRBuilder<> Builder(C); + + SmallVector<Type*, 2> ArgTys(2, Builder.getInt64Ty()); + Function *F = Function::Create(FunctionType::get(Builder.getInt64Ty(), + ArgTys, false), + GlobalValue::ExternalLinkage, "F", &M); + assert(F->arg_size() == 2); + + BasicBlock *BB = BasicBlock::Create(C, "", F); + Builder.SetInsertPoint(BB); + + Function::arg_iterator AI = F->arg_begin(); + Value *A = &*AI++; + Value *B = &*AI++; + + Value *Rem = Builder.CreateURem(A, B); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::URem); + + Value *Ret = Builder.CreateRet(Rem); + + expandRemainder(cast<BinaryOperator>(Rem)); + EXPECT_TRUE(BB->front().getOpcode() == Instruction::ICmp); + + Instruction* Remainder = dyn_cast<Instruction>(cast<User>(Ret)->getOperand(0)); + EXPECT_TRUE(Remainder && Remainder->getOpcode() == Instruction::Sub); +} + +} |