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Chandler Carruth74b6a772013-01-07 15:35:46 +00001//===- llvm/unittest/IR/IRBuilderTest.cpp - IRBuilder tests ---------------===//
Nick Lewyckybabca9a2011-05-21 23:14:36 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
Chandler Carruth9fb823b2013-01-02 11:36:10 +000010#include "llvm/IR/IRBuilder.h"
Chandler Carruth130cec22012-12-04 10:23:08 +000011#include "llvm/ADT/OwningPtr.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000012#include "llvm/IR/BasicBlock.h"
13#include "llvm/IR/DataLayout.h"
14#include "llvm/IR/Function.h"
15#include "llvm/IR/IntrinsicInst.h"
16#include "llvm/IR/LLVMContext.h"
17#include "llvm/IR/MDBuilder.h"
18#include "llvm/IR/Module.h"
Chandler Carruth64396b02014-03-04 12:05:47 +000019#include "llvm/IR/NoFolder.h"
Nick Lewyckybabca9a2011-05-21 23:14:36 +000020#include "gtest/gtest.h"
21
22using namespace llvm;
23
David Blaikiea379b1812011-12-20 02:50:00 +000024namespace {
Chandler Carruth35e67062012-06-20 08:39:27 +000025
Nick Lewyckybabca9a2011-05-21 23:14:36 +000026class IRBuilderTest : public testing::Test {
27protected:
28 virtual void SetUp() {
Benjamin Kramer63d39da2013-11-15 09:34:33 +000029 M.reset(new Module("MyModule", Ctx));
30 FunctionType *FTy = FunctionType::get(Type::getVoidTy(Ctx),
Nick Lewyckybabca9a2011-05-21 23:14:36 +000031 /*isVarArg=*/false);
Chandler Carruthb39c55f2012-07-16 07:44:51 +000032 F = Function::Create(FTy, Function::ExternalLinkage, "", M.get());
Benjamin Kramer63d39da2013-11-15 09:34:33 +000033 BB = BasicBlock::Create(Ctx, "", F);
34 GV = new GlobalVariable(*M, Type::getFloatTy(Ctx), true,
NAKAMURA Takumi74936582013-01-23 08:30:39 +000035 GlobalValue::ExternalLinkage, 0);
Nick Lewyckybabca9a2011-05-21 23:14:36 +000036 }
37
38 virtual void TearDown() {
39 BB = 0;
40 M.reset();
41 }
42
Benjamin Kramer63d39da2013-11-15 09:34:33 +000043 LLVMContext Ctx;
Nick Lewyckybabca9a2011-05-21 23:14:36 +000044 OwningPtr<Module> M;
Chandler Carruthb39c55f2012-07-16 07:44:51 +000045 Function *F;
Nick Lewyckybabca9a2011-05-21 23:14:36 +000046 BasicBlock *BB;
Michael Ilseman01853022012-11-28 21:17:34 +000047 GlobalVariable *GV;
Nick Lewyckybabca9a2011-05-21 23:14:36 +000048};
Nick Lewyckybabca9a2011-05-21 23:14:36 +000049
50TEST_F(IRBuilderTest, Lifetime) {
51 IRBuilder<> Builder(BB);
52 AllocaInst *Var1 = Builder.CreateAlloca(Builder.getInt8Ty());
53 AllocaInst *Var2 = Builder.CreateAlloca(Builder.getInt32Ty());
54 AllocaInst *Var3 = Builder.CreateAlloca(Builder.getInt8Ty(),
55 Builder.getInt32(123));
56
57 CallInst *Start1 = Builder.CreateLifetimeStart(Var1);
58 CallInst *Start2 = Builder.CreateLifetimeStart(Var2);
59 CallInst *Start3 = Builder.CreateLifetimeStart(Var3, Builder.getInt64(100));
60
61 EXPECT_EQ(Start1->getArgOperand(0), Builder.getInt64(-1));
62 EXPECT_EQ(Start2->getArgOperand(0), Builder.getInt64(-1));
63 EXPECT_EQ(Start3->getArgOperand(0), Builder.getInt64(100));
64
65 EXPECT_EQ(Start1->getArgOperand(1), Var1);
66 EXPECT_NE(Start2->getArgOperand(1), Var2);
67 EXPECT_EQ(Start3->getArgOperand(1), Var3);
68
69 Value *End1 = Builder.CreateLifetimeEnd(Var1);
70 Builder.CreateLifetimeEnd(Var2);
71 Builder.CreateLifetimeEnd(Var3);
72
73 IntrinsicInst *II_Start1 = dyn_cast<IntrinsicInst>(Start1);
74 IntrinsicInst *II_End1 = dyn_cast<IntrinsicInst>(End1);
75 ASSERT_TRUE(II_Start1 != NULL);
76 EXPECT_EQ(II_Start1->getIntrinsicID(), Intrinsic::lifetime_start);
77 ASSERT_TRUE(II_End1 != NULL);
78 EXPECT_EQ(II_End1->getIntrinsicID(), Intrinsic::lifetime_end);
79}
Chandler Carruth35e67062012-06-20 08:39:27 +000080
Chandler Carruthb39c55f2012-07-16 07:44:51 +000081TEST_F(IRBuilderTest, CreateCondBr) {
82 IRBuilder<> Builder(BB);
Benjamin Kramer63d39da2013-11-15 09:34:33 +000083 BasicBlock *TBB = BasicBlock::Create(Ctx, "", F);
84 BasicBlock *FBB = BasicBlock::Create(Ctx, "", F);
Chandler Carruthb39c55f2012-07-16 07:44:51 +000085
86 BranchInst *BI = Builder.CreateCondBr(Builder.getTrue(), TBB, FBB);
87 TerminatorInst *TI = BB->getTerminator();
88 EXPECT_EQ(BI, TI);
89 EXPECT_EQ(2u, TI->getNumSuccessors());
90 EXPECT_EQ(TBB, TI->getSuccessor(0));
91 EXPECT_EQ(FBB, TI->getSuccessor(1));
Chandler Carruthf5fe5562012-07-16 07:45:06 +000092
93 BI->eraseFromParent();
Benjamin Kramer63d39da2013-11-15 09:34:33 +000094 MDNode *Weights = MDBuilder(Ctx).createBranchWeights(42, 13);
Chandler Carruthf5fe5562012-07-16 07:45:06 +000095 BI = Builder.CreateCondBr(Builder.getTrue(), TBB, FBB, Weights);
96 TI = BB->getTerminator();
97 EXPECT_EQ(BI, TI);
98 EXPECT_EQ(2u, TI->getNumSuccessors());
99 EXPECT_EQ(TBB, TI->getSuccessor(0));
100 EXPECT_EQ(FBB, TI->getSuccessor(1));
101 EXPECT_EQ(Weights, TI->getMetadata(LLVMContext::MD_prof));
Chandler Carruthb39c55f2012-07-16 07:44:51 +0000102}
103
Duncan Sands0ac84732012-12-21 12:03:03 +0000104TEST_F(IRBuilderTest, LandingPadName) {
105 IRBuilder<> Builder(BB);
106 LandingPadInst *LP = Builder.CreateLandingPad(Builder.getInt32Ty(),
107 Builder.getInt32(0), 0, "LP");
108 EXPECT_EQ(LP->getName(), "LP");
109}
110
Rafael Espindola248ac132014-02-25 22:23:04 +0000111TEST_F(IRBuilderTest, DataLayout) {
112 OwningPtr<Module> M(new Module("test", Ctx));
113 M->setDataLayout("e-n32");
114 EXPECT_TRUE(M->getDataLayout()->isLegalInteger(32));
115 M->setDataLayout("e");
116 EXPECT_FALSE(M->getDataLayout()->isLegalInteger(32));
117}
118
Evgeniy Stepanovef941692012-10-31 09:50:01 +0000119TEST_F(IRBuilderTest, GetIntTy) {
120 IRBuilder<> Builder(BB);
121 IntegerType *Ty1 = Builder.getInt1Ty();
Benjamin Kramer63d39da2013-11-15 09:34:33 +0000122 EXPECT_EQ(Ty1, IntegerType::get(Ctx, 1));
Evgeniy Stepanovef941692012-10-31 09:50:01 +0000123
124 DataLayout* DL = new DataLayout(M.get());
125 IntegerType *IntPtrTy = Builder.getIntPtrTy(DL);
126 unsigned IntPtrBitSize = DL->getPointerSizeInBits(0);
Benjamin Kramer63d39da2013-11-15 09:34:33 +0000127 EXPECT_EQ(IntPtrTy, IntegerType::get(Ctx, IntPtrBitSize));
NAKAMURA Takumid86cd782013-01-23 08:31:28 +0000128 delete DL;
Evgeniy Stepanovef941692012-10-31 09:50:01 +0000129}
130
Michael Ilseman01853022012-11-28 21:17:34 +0000131TEST_F(IRBuilderTest, FastMathFlags) {
132 IRBuilder<> Builder(BB);
133 Value *F;
134 Instruction *FDiv, *FAdd;
135
136 F = Builder.CreateLoad(GV);
137 F = Builder.CreateFAdd(F, F);
138
Michael Ilseman1833e002012-11-28 21:19:52 +0000139 EXPECT_FALSE(Builder.getFastMathFlags().any());
140 ASSERT_TRUE(isa<Instruction>(F));
141 FAdd = cast<Instruction>(F);
142 EXPECT_FALSE(FAdd->hasNoNaNs());
143
144 FastMathFlags FMF;
145 Builder.SetFastMathFlags(FMF);
146
147 F = Builder.CreateFAdd(F, F);
148 EXPECT_FALSE(Builder.getFastMathFlags().any());
149
Michael Ilseman65f14352012-12-09 21:12:04 +0000150 FMF.setUnsafeAlgebra();
Michael Ilseman1833e002012-11-28 21:19:52 +0000151 Builder.SetFastMathFlags(FMF);
152
153 F = Builder.CreateFAdd(F, F);
154 EXPECT_TRUE(Builder.getFastMathFlags().any());
155 ASSERT_TRUE(isa<Instruction>(F));
156 FAdd = cast<Instruction>(F);
157 EXPECT_TRUE(FAdd->hasNoNaNs());
158
Michael Ilsemanbe92bcb2013-12-05 00:32:09 +0000159 // Now, try it with CreateBinOp
160 F = Builder.CreateBinOp(Instruction::FAdd, F, F);
161 EXPECT_TRUE(Builder.getFastMathFlags().any());
162 ASSERT_TRUE(isa<Instruction>(F));
163 FAdd = cast<Instruction>(F);
164 EXPECT_TRUE(FAdd->hasNoNaNs());
165
Michael Ilseman1833e002012-11-28 21:19:52 +0000166 F = Builder.CreateFDiv(F, F);
167 EXPECT_TRUE(Builder.getFastMathFlags().any());
168 EXPECT_TRUE(Builder.getFastMathFlags().UnsafeAlgebra);
169 ASSERT_TRUE(isa<Instruction>(F));
170 FDiv = cast<Instruction>(F);
171 EXPECT_TRUE(FDiv->hasAllowReciprocal());
172
173 Builder.clearFastMathFlags();
174
175 F = Builder.CreateFDiv(F, F);
176 ASSERT_TRUE(isa<Instruction>(F));
177 FDiv = cast<Instruction>(F);
178 EXPECT_FALSE(FDiv->hasAllowReciprocal());
179
180 FMF.clear();
Michael Ilseman65f14352012-12-09 21:12:04 +0000181 FMF.setAllowReciprocal();
Michael Ilseman1833e002012-11-28 21:19:52 +0000182 Builder.SetFastMathFlags(FMF);
183
184 F = Builder.CreateFDiv(F, F);
185 EXPECT_TRUE(Builder.getFastMathFlags().any());
186 EXPECT_TRUE(Builder.getFastMathFlags().AllowReciprocal);
187 ASSERT_TRUE(isa<Instruction>(F));
188 FDiv = cast<Instruction>(F);
189 EXPECT_TRUE(FDiv->hasAllowReciprocal());
190
Michael Ilseman05d3bf77a2012-11-29 21:25:12 +0000191 Builder.clearFastMathFlags();
192
193 F = Builder.CreateFDiv(F, F);
194 ASSERT_TRUE(isa<Instruction>(F));
195 FDiv = cast<Instruction>(F);
196 EXPECT_FALSE(FDiv->getFastMathFlags().any());
197 FDiv->copyFastMathFlags(FAdd);
198 EXPECT_TRUE(FDiv->hasNoNaNs());
199
Michael Ilseman1833e002012-11-28 21:19:52 +0000200}
201
Chandler Carruth0db10c42014-01-05 03:22:33 +0000202TEST_F(IRBuilderTest, WrapFlags) {
203 IRBuilder<true, NoFolder> Builder(BB);
204
205 // Test instructions.
206 GlobalVariable *G = new GlobalVariable(*M, Builder.getInt32Ty(), true,
207 GlobalValue::ExternalLinkage, 0);
208 Value *V = Builder.CreateLoad(G);
209 EXPECT_TRUE(
210 cast<BinaryOperator>(Builder.CreateNSWAdd(V, V))->hasNoSignedWrap());
211 EXPECT_TRUE(
212 cast<BinaryOperator>(Builder.CreateNSWMul(V, V))->hasNoSignedWrap());
213 EXPECT_TRUE(
214 cast<BinaryOperator>(Builder.CreateNSWSub(V, V))->hasNoSignedWrap());
215 EXPECT_TRUE(cast<BinaryOperator>(
216 Builder.CreateShl(V, V, "", /* NUW */ false, /* NSW */ true))
217 ->hasNoSignedWrap());
218
219 EXPECT_TRUE(
220 cast<BinaryOperator>(Builder.CreateNUWAdd(V, V))->hasNoUnsignedWrap());
221 EXPECT_TRUE(
222 cast<BinaryOperator>(Builder.CreateNUWMul(V, V))->hasNoUnsignedWrap());
223 EXPECT_TRUE(
224 cast<BinaryOperator>(Builder.CreateNUWSub(V, V))->hasNoUnsignedWrap());
225 EXPECT_TRUE(cast<BinaryOperator>(
226 Builder.CreateShl(V, V, "", /* NUW */ true, /* NSW */ false))
227 ->hasNoUnsignedWrap());
228
229 // Test operators created with constants.
230 Constant *C = Builder.getInt32(42);
231 EXPECT_TRUE(cast<OverflowingBinaryOperator>(Builder.CreateNSWAdd(C, C))
232 ->hasNoSignedWrap());
233 EXPECT_TRUE(cast<OverflowingBinaryOperator>(Builder.CreateNSWSub(C, C))
234 ->hasNoSignedWrap());
235 EXPECT_TRUE(cast<OverflowingBinaryOperator>(Builder.CreateNSWMul(C, C))
236 ->hasNoSignedWrap());
237 EXPECT_TRUE(cast<OverflowingBinaryOperator>(
238 Builder.CreateShl(C, C, "", /* NUW */ false, /* NSW */ true))
239 ->hasNoSignedWrap());
240
241 EXPECT_TRUE(cast<OverflowingBinaryOperator>(Builder.CreateNUWAdd(C, C))
242 ->hasNoUnsignedWrap());
243 EXPECT_TRUE(cast<OverflowingBinaryOperator>(Builder.CreateNUWSub(C, C))
244 ->hasNoUnsignedWrap());
245 EXPECT_TRUE(cast<OverflowingBinaryOperator>(Builder.CreateNUWMul(C, C))
246 ->hasNoUnsignedWrap());
247 EXPECT_TRUE(cast<OverflowingBinaryOperator>(
248 Builder.CreateShl(C, C, "", /* NUW */ true, /* NSW */ false))
249 ->hasNoUnsignedWrap());
250}
251
Benjamin Kramerd36f1ab2013-09-30 15:39:48 +0000252TEST_F(IRBuilderTest, RAIIHelpersTest) {
253 IRBuilder<> Builder(BB);
254 EXPECT_FALSE(Builder.getFastMathFlags().allowReciprocal());
255 MDBuilder MDB(M->getContext());
256
Aaron Ballman3cab3742013-10-05 19:41:41 +0000257 MDNode *FPMathA = MDB.createFPMath(0.01f);
258 MDNode *FPMathB = MDB.createFPMath(0.1f);
Benjamin Kramerd36f1ab2013-09-30 15:39:48 +0000259
260 Builder.SetDefaultFPMathTag(FPMathA);
261
262 {
263 IRBuilder<>::FastMathFlagGuard Guard(Builder);
264 FastMathFlags FMF;
265 FMF.setAllowReciprocal();
266 Builder.SetFastMathFlags(FMF);
267 Builder.SetDefaultFPMathTag(FPMathB);
268 EXPECT_TRUE(Builder.getFastMathFlags().allowReciprocal());
269 EXPECT_EQ(FPMathB, Builder.getDefaultFPMathTag());
270 }
271
272 EXPECT_FALSE(Builder.getFastMathFlags().allowReciprocal());
273 EXPECT_EQ(FPMathA, Builder.getDefaultFPMathTag());
274
275 Value *F = Builder.CreateLoad(GV);
276
277 {
278 IRBuilder<>::InsertPointGuard Guard(Builder);
279 Builder.SetInsertPoint(cast<Instruction>(F));
280 EXPECT_EQ(F, Builder.GetInsertPoint());
281 }
282
283 EXPECT_EQ(BB->end(), Builder.GetInsertPoint());
284 EXPECT_EQ(BB, Builder.GetInsertBlock());
285}
286
287
Chandler Carruth35e67062012-06-20 08:39:27 +0000288}