1 //===-- UnreachableBlockElim.cpp - Remove unreachable blocks for codegen --===// 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 // 9 // This pass is an extremely simple version of the SimplifyCFG pass. Its sole 10 // job is to delete LLVM basic blocks that are not reachable from the entry 11 // node. To do this, it performs a simple depth first traversal of the CFG, 12 // then deletes any unvisited nodes. 13 // 14 // Note that this pass is really a hack. In particular, the instruction 15 // selectors for various targets should just not generate code for unreachable 16 // blocks. Until LLVM has a more systematic way of defining instruction 17 // selectors, however, we cannot really expect them to handle additional 18 // complexity. 19 // 20 //===----------------------------------------------------------------------===// 21 22 #include "llvm/CodeGen/UnreachableBlockElim.h" 23 #include "llvm/ADT/DepthFirstIterator.h" 24 #include "llvm/ADT/SmallPtrSet.h" 25 #include "llvm/CodeGen/MachineDominators.h" 26 #include "llvm/CodeGen/MachineFunctionPass.h" 27 #include "llvm/CodeGen/MachineInstrBuilder.h" 28 #include "llvm/CodeGen/MachineLoopInfo.h" 29 #include "llvm/CodeGen/MachineRegisterInfo.h" 30 #include "llvm/CodeGen/Passes.h" 31 #include "llvm/CodeGen/TargetInstrInfo.h" 32 #include "llvm/IR/Dominators.h" 33 #include "llvm/InitializePasses.h" 34 #include "llvm/Pass.h" 35 #include "llvm/Transforms/Utils/BasicBlockUtils.h" 36 using namespace llvm; 37 38 namespace { 39 class UnreachableBlockElimLegacyPass : public FunctionPass { 40 bool runOnFunction(Function &F) override { 41 return llvm::EliminateUnreachableBlocks(F); 42 } 43 44 public: 45 static char ID; // Pass identification, replacement for typeid 46 UnreachableBlockElimLegacyPass() : FunctionPass(ID) { 47 initializeUnreachableBlockElimLegacyPassPass( 48 *PassRegistry::getPassRegistry()); 49 } 50 51 void getAnalysisUsage(AnalysisUsage &AU) const override { 52 AU.addPreserved<DominatorTreeWrapperPass>(); 53 } 54 }; 55 } 56 char UnreachableBlockElimLegacyPass::ID = 0; 57 INITIALIZE_PASS(UnreachableBlockElimLegacyPass, "unreachableblockelim", 58 "Remove unreachable blocks from the CFG", false, false) 59 60 FunctionPass *llvm::createUnreachableBlockEliminationPass() { 61 return new UnreachableBlockElimLegacyPass(); 62 } 63 64 PreservedAnalyses UnreachableBlockElimPass::run(Function &F, 65 FunctionAnalysisManager &AM) { 66 bool Changed = llvm::EliminateUnreachableBlocks(F); 67 if (!Changed) 68 return PreservedAnalyses::all(); 69 PreservedAnalyses PA; 70 PA.preserve<DominatorTreeAnalysis>(); 71 return PA; 72 } 73 74 namespace { 75 class UnreachableMachineBlockElim : public MachineFunctionPass { 76 bool runOnMachineFunction(MachineFunction &F) override; 77 void getAnalysisUsage(AnalysisUsage &AU) const override; 78 79 public: 80 static char ID; // Pass identification, replacement for typeid 81 UnreachableMachineBlockElim() : MachineFunctionPass(ID) {} 82 }; 83 } 84 char UnreachableMachineBlockElim::ID = 0; 85 86 INITIALIZE_PASS(UnreachableMachineBlockElim, "unreachable-mbb-elimination", 87 "Remove unreachable machine basic blocks", false, false) 88 89 char &llvm::UnreachableMachineBlockElimID = UnreachableMachineBlockElim::ID; 90 91 void UnreachableMachineBlockElim::getAnalysisUsage(AnalysisUsage &AU) const { 92 AU.addPreserved<MachineLoopInfo>(); 93 AU.addPreserved<MachineDominatorTree>(); 94 MachineFunctionPass::getAnalysisUsage(AU); 95 } 96 97 bool UnreachableMachineBlockElim::runOnMachineFunction(MachineFunction &F) { 98 df_iterator_default_set<MachineBasicBlock*> Reachable; 99 bool ModifiedPHI = false; 100 101 MachineDominatorTree *MDT = getAnalysisIfAvailable<MachineDominatorTree>(); 102 MachineLoopInfo *MLI = getAnalysisIfAvailable<MachineLoopInfo>(); 103 104 // Mark all reachable blocks. 105 for (MachineBasicBlock *BB : depth_first_ext(&F, Reachable)) 106 (void)BB/* Mark all reachable blocks */; 107 108 // Loop over all dead blocks, remembering them and deleting all instructions 109 // in them. 110 std::vector<MachineBasicBlock*> DeadBlocks; 111 for (MachineBasicBlock &BB : F) { 112 // Test for deadness. 113 if (!Reachable.count(&BB)) { 114 DeadBlocks.push_back(&BB); 115 116 // Update dominator and loop info. 117 if (MLI) MLI->removeBlock(&BB); 118 if (MDT && MDT->getNode(&BB)) MDT->eraseNode(&BB); 119 120 while (BB.succ_begin() != BB.succ_end()) { 121 MachineBasicBlock* succ = *BB.succ_begin(); 122 123 MachineBasicBlock::iterator start = succ->begin(); 124 while (start != succ->end() && start->isPHI()) { 125 for (unsigned i = start->getNumOperands() - 1; i >= 2; i-=2) 126 if (start->getOperand(i).isMBB() && 127 start->getOperand(i).getMBB() == &BB) { 128 start->removeOperand(i); 129 start->removeOperand(i-1); 130 } 131 132 start++; 133 } 134 135 BB.removeSuccessor(BB.succ_begin()); 136 } 137 } 138 } 139 140 // Actually remove the blocks now. 141 for (MachineBasicBlock *BB : DeadBlocks) { 142 // Remove any call site information for calls in the block. 143 for (auto &I : BB->instrs()) 144 if (I.shouldUpdateCallSiteInfo()) 145 BB->getParent()->eraseCallSiteInfo(&I); 146 147 BB->eraseFromParent(); 148 } 149 150 // Cleanup PHI nodes. 151 for (MachineBasicBlock &BB : F) { 152 // Prune unneeded PHI entries. 153 SmallPtrSet<MachineBasicBlock*, 8> preds(BB.pred_begin(), 154 BB.pred_end()); 155 MachineBasicBlock::iterator phi = BB.begin(); 156 while (phi != BB.end() && phi->isPHI()) { 157 for (unsigned i = phi->getNumOperands() - 1; i >= 2; i-=2) 158 if (!preds.count(phi->getOperand(i).getMBB())) { 159 phi->removeOperand(i); 160 phi->removeOperand(i-1); 161 ModifiedPHI = true; 162 } 163 164 if (phi->getNumOperands() == 3) { 165 const MachineOperand &Input = phi->getOperand(1); 166 const MachineOperand &Output = phi->getOperand(0); 167 Register InputReg = Input.getReg(); 168 Register OutputReg = Output.getReg(); 169 assert(Output.getSubReg() == 0 && "Cannot have output subregister"); 170 ModifiedPHI = true; 171 172 if (InputReg != OutputReg) { 173 MachineRegisterInfo &MRI = F.getRegInfo(); 174 unsigned InputSub = Input.getSubReg(); 175 if (InputSub == 0 && 176 MRI.constrainRegClass(InputReg, MRI.getRegClass(OutputReg)) && 177 !Input.isUndef()) { 178 MRI.replaceRegWith(OutputReg, InputReg); 179 } else { 180 // The input register to the PHI has a subregister or it can't be 181 // constrained to the proper register class or it is undef: 182 // insert a COPY instead of simply replacing the output 183 // with the input. 184 const TargetInstrInfo *TII = F.getSubtarget().getInstrInfo(); 185 BuildMI(BB, BB.getFirstNonPHI(), phi->getDebugLoc(), 186 TII->get(TargetOpcode::COPY), OutputReg) 187 .addReg(InputReg, getRegState(Input), InputSub); 188 } 189 phi++->eraseFromParent(); 190 } 191 continue; 192 } 193 194 ++phi; 195 } 196 } 197 198 F.RenumberBlocks(); 199 200 return (!DeadBlocks.empty() || ModifiedPHI); 201 } 202