SSAUpdaterBulkTest.cpp 7.1 KB

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  1. //===- SSAUpdaterBulk.cpp - Unit tests for SSAUpdaterBulk -----------------===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. #include "llvm/Transforms/Utils/SSAUpdaterBulk.h"
  9. #include "llvm/AsmParser/Parser.h"
  10. #include "llvm/IR/BasicBlock.h"
  11. #include "llvm/IR/Dominators.h"
  12. #include "llvm/IR/IRBuilder.h"
  13. #include "llvm/IR/Instructions.h"
  14. #include "llvm/IR/LLVMContext.h"
  15. #include "llvm/IR/Module.h"
  16. #include "gtest/gtest.h"
  17. using namespace llvm;
  18. TEST(SSAUpdaterBulk, SimpleMerge) {
  19. SSAUpdaterBulk Updater;
  20. LLVMContext C;
  21. Module M("SSAUpdaterTest", C);
  22. IRBuilder<> B(C);
  23. Type *I32Ty = B.getInt32Ty();
  24. auto *F = Function::Create(FunctionType::get(B.getVoidTy(), {I32Ty}, false),
  25. GlobalValue::ExternalLinkage, "F", &M);
  26. // Generate a simple program:
  27. // if:
  28. // br i1 true, label %true, label %false
  29. // true:
  30. // %1 = add i32 %0, 1
  31. // %2 = sub i32 %0, 2
  32. // br label %merge
  33. // false:
  34. // %3 = add i32 %0, 3
  35. // %4 = sub i32 %0, 4
  36. // br label %merge
  37. // merge:
  38. // %5 = add i32 %1, 5
  39. // %6 = add i32 %3, 6
  40. // %7 = add i32 %2, %4
  41. // %8 = sub i32 %2, %4
  42. Argument *FirstArg = &*(F->arg_begin());
  43. BasicBlock *IfBB = BasicBlock::Create(C, "if", F);
  44. BasicBlock *TrueBB = BasicBlock::Create(C, "true", F);
  45. BasicBlock *FalseBB = BasicBlock::Create(C, "false", F);
  46. BasicBlock *MergeBB = BasicBlock::Create(C, "merge", F);
  47. B.SetInsertPoint(IfBB);
  48. B.CreateCondBr(B.getTrue(), TrueBB, FalseBB);
  49. B.SetInsertPoint(TrueBB);
  50. Value *AddOp1 = B.CreateAdd(FirstArg, ConstantInt::get(I32Ty, 1));
  51. Value *SubOp1 = B.CreateSub(FirstArg, ConstantInt::get(I32Ty, 2));
  52. B.CreateBr(MergeBB);
  53. B.SetInsertPoint(FalseBB);
  54. Value *AddOp2 = B.CreateAdd(FirstArg, ConstantInt::get(I32Ty, 3));
  55. Value *SubOp2 = B.CreateSub(FirstArg, ConstantInt::get(I32Ty, 4));
  56. B.CreateBr(MergeBB);
  57. B.SetInsertPoint(MergeBB, MergeBB->begin());
  58. auto *I1 = cast<Instruction>(B.CreateAdd(AddOp1, ConstantInt::get(I32Ty, 5)));
  59. auto *I2 = cast<Instruction>(B.CreateAdd(AddOp2, ConstantInt::get(I32Ty, 6)));
  60. auto *I3 = cast<Instruction>(B.CreateAdd(SubOp1, SubOp2));
  61. auto *I4 = cast<Instruction>(B.CreateSub(SubOp1, SubOp2));
  62. // Now rewrite uses in instructions %5, %6, %7. They need to use a phi, which
  63. // SSAUpdater should insert into %merge.
  64. // Intentionally don't touch %8 to see that SSAUpdater only changes
  65. // instructions that were explicitly specified.
  66. unsigned VarNum = Updater.AddVariable("a", I32Ty);
  67. Updater.AddAvailableValue(VarNum, TrueBB, AddOp1);
  68. Updater.AddAvailableValue(VarNum, FalseBB, AddOp2);
  69. Updater.AddUse(VarNum, &I1->getOperandUse(0));
  70. Updater.AddUse(VarNum, &I2->getOperandUse(0));
  71. VarNum = Updater.AddVariable("b", I32Ty);
  72. Updater.AddAvailableValue(VarNum, TrueBB, SubOp1);
  73. Updater.AddAvailableValue(VarNum, FalseBB, SubOp2);
  74. Updater.AddUse(VarNum, &I3->getOperandUse(0));
  75. Updater.AddUse(VarNum, &I3->getOperandUse(1));
  76. DominatorTree DT(*F);
  77. Updater.RewriteAllUses(&DT);
  78. // Check how %5 and %6 were rewritten.
  79. PHINode *UpdatePhiA = dyn_cast_or_null<PHINode>(I1->getOperand(0));
  80. EXPECT_NE(UpdatePhiA, nullptr);
  81. EXPECT_EQ(UpdatePhiA->getIncomingValueForBlock(TrueBB), AddOp1);
  82. EXPECT_EQ(UpdatePhiA->getIncomingValueForBlock(FalseBB), AddOp2);
  83. EXPECT_EQ(UpdatePhiA, dyn_cast_or_null<PHINode>(I1->getOperand(0)));
  84. // Check how %7 was rewritten.
  85. PHINode *UpdatePhiB = dyn_cast_or_null<PHINode>(I3->getOperand(0));
  86. EXPECT_EQ(UpdatePhiB->getIncomingValueForBlock(TrueBB), SubOp1);
  87. EXPECT_EQ(UpdatePhiB->getIncomingValueForBlock(FalseBB), SubOp2);
  88. EXPECT_EQ(UpdatePhiB, dyn_cast_or_null<PHINode>(I3->getOperand(1)));
  89. // Check that %8 was kept untouched.
  90. EXPECT_EQ(I4->getOperand(0), SubOp1);
  91. EXPECT_EQ(I4->getOperand(1), SubOp2);
  92. }
  93. TEST(SSAUpdaterBulk, Irreducible) {
  94. SSAUpdaterBulk Updater;
  95. LLVMContext C;
  96. Module M("SSAUpdaterTest", C);
  97. IRBuilder<> B(C);
  98. Type *I32Ty = B.getInt32Ty();
  99. auto *F = Function::Create(FunctionType::get(B.getVoidTy(), {I32Ty}, false),
  100. GlobalValue::ExternalLinkage, "F", &M);
  101. // Generate a small program with a multi-entry loop:
  102. // if:
  103. // %1 = add i32 %0, 1
  104. // br i1 true, label %loopmain, label %loopstart
  105. //
  106. // loopstart:
  107. // %2 = add i32 %0, 2
  108. // br label %loopmain
  109. //
  110. // loopmain:
  111. // %3 = add i32 %1, 3
  112. // br i1 true, label %loopstart, label %afterloop
  113. //
  114. // afterloop:
  115. // %4 = add i32 %2, 4
  116. // ret i32 %0
  117. Argument *FirstArg = &*F->arg_begin();
  118. BasicBlock *IfBB = BasicBlock::Create(C, "if", F);
  119. BasicBlock *LoopStartBB = BasicBlock::Create(C, "loopstart", F);
  120. BasicBlock *LoopMainBB = BasicBlock::Create(C, "loopmain", F);
  121. BasicBlock *AfterLoopBB = BasicBlock::Create(C, "afterloop", F);
  122. B.SetInsertPoint(IfBB);
  123. Value *AddOp1 = B.CreateAdd(FirstArg, ConstantInt::get(I32Ty, 1));
  124. B.CreateCondBr(B.getTrue(), LoopMainBB, LoopStartBB);
  125. B.SetInsertPoint(LoopStartBB);
  126. Value *AddOp2 = B.CreateAdd(FirstArg, ConstantInt::get(I32Ty, 2));
  127. B.CreateBr(LoopMainBB);
  128. B.SetInsertPoint(LoopMainBB);
  129. auto *I1 = cast<Instruction>(B.CreateAdd(AddOp1, ConstantInt::get(I32Ty, 3)));
  130. B.CreateCondBr(B.getTrue(), LoopStartBB, AfterLoopBB);
  131. B.SetInsertPoint(AfterLoopBB);
  132. auto *I2 = cast<Instruction>(B.CreateAdd(AddOp2, ConstantInt::get(I32Ty, 4)));
  133. ReturnInst *Return = B.CreateRet(FirstArg);
  134. // Now rewrite uses in instructions %3, %4, and 'ret i32 %0'. Only %4 needs a
  135. // new phi, others should be able to work with existing values.
  136. // The phi for %4 should be inserted into LoopMainBB and should look like
  137. // this:
  138. // %b = phi i32 [ %2, %loopstart ], [ undef, %if ]
  139. // No other rewrites should be made.
  140. // Add use in %3.
  141. unsigned VarNum = Updater.AddVariable("c", I32Ty);
  142. Updater.AddAvailableValue(VarNum, IfBB, AddOp1);
  143. Updater.AddUse(VarNum, &I1->getOperandUse(0));
  144. // Add use in %4.
  145. VarNum = Updater.AddVariable("b", I32Ty);
  146. Updater.AddAvailableValue(VarNum, LoopStartBB, AddOp2);
  147. Updater.AddUse(VarNum, &I2->getOperandUse(0));
  148. // Add use in the return instruction.
  149. VarNum = Updater.AddVariable("a", I32Ty);
  150. Updater.AddAvailableValue(VarNum, &F->getEntryBlock(), FirstArg);
  151. Updater.AddUse(VarNum, &Return->getOperandUse(0));
  152. // Save all inserted phis into a vector.
  153. SmallVector<PHINode *, 8> Inserted;
  154. DominatorTree DT(*F);
  155. Updater.RewriteAllUses(&DT, &Inserted);
  156. // Only one phi should have been inserted.
  157. EXPECT_EQ(Inserted.size(), 1u);
  158. // I1 and Return should use the same values as they used before.
  159. EXPECT_EQ(I1->getOperand(0), AddOp1);
  160. EXPECT_EQ(Return->getOperand(0), FirstArg);
  161. // I2 should use the new phi.
  162. PHINode *UpdatePhi = dyn_cast_or_null<PHINode>(I2->getOperand(0));
  163. EXPECT_NE(UpdatePhi, nullptr);
  164. EXPECT_EQ(UpdatePhi->getIncomingValueForBlock(LoopStartBB), AddOp2);
  165. EXPECT_EQ(UpdatePhi->getIncomingValueForBlock(IfBB), UndefValue::get(I32Ty));
  166. }