1 //===- Localizer.cpp ---------------------- Localize some instrs -*- C++ -*-==// 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 /// \file 9 /// This file implements the Localizer class. 10 //===----------------------------------------------------------------------===// 11 12 #include "llvm/CodeGen/GlobalISel/Localizer.h" 13 #include "llvm/ADT/DenseMap.h" 14 #include "llvm/ADT/STLExtras.h" 15 #include "llvm/Analysis/TargetTransformInfo.h" 16 #include "llvm/CodeGen/MachineRegisterInfo.h" 17 #include "llvm/CodeGen/TargetLowering.h" 18 #include "llvm/InitializePasses.h" 19 #include "llvm/Support/Debug.h" 20 21 #define DEBUG_TYPE "localizer" 22 23 using namespace llvm; 24 25 char Localizer::ID = 0; 26 INITIALIZE_PASS_BEGIN(Localizer, DEBUG_TYPE, 27 "Move/duplicate certain instructions close to their use", 28 false, false) 29 INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass) 30 INITIALIZE_PASS_END(Localizer, DEBUG_TYPE, 31 "Move/duplicate certain instructions close to their use", 32 false, false) 33 34 Localizer::Localizer(std::function<bool(const MachineFunction &)> F) 35 : MachineFunctionPass(ID), DoNotRunPass(F) {} 36 37 Localizer::Localizer() 38 : Localizer([](const MachineFunction &) { return false; }) {} 39 40 void Localizer::init(MachineFunction &MF) { 41 MRI = &MF.getRegInfo(); 42 TTI = &getAnalysis<TargetTransformInfoWrapperPass>().getTTI(MF.getFunction()); 43 } 44 45 void Localizer::getAnalysisUsage(AnalysisUsage &AU) const { 46 AU.addRequired<TargetTransformInfoWrapperPass>(); 47 getSelectionDAGFallbackAnalysisUsage(AU); 48 MachineFunctionPass::getAnalysisUsage(AU); 49 } 50 51 bool Localizer::isLocalUse(MachineOperand &MOUse, const MachineInstr &Def, 52 MachineBasicBlock *&InsertMBB) { 53 MachineInstr &MIUse = *MOUse.getParent(); 54 InsertMBB = MIUse.getParent(); 55 if (MIUse.isPHI()) 56 InsertMBB = MIUse.getOperand(MIUse.getOperandNo(&MOUse) + 1).getMBB(); 57 return InsertMBB == Def.getParent(); 58 } 59 60 bool Localizer::isNonUniquePhiValue(MachineOperand &Op) const { 61 MachineInstr *MI = Op.getParent(); 62 if (!MI->isPHI()) 63 return false; 64 65 Register SrcReg = Op.getReg(); 66 for (unsigned Idx = 1; Idx < MI->getNumOperands(); Idx += 2) { 67 auto &MO = MI->getOperand(Idx); 68 if (&MO != &Op && MO.isReg() && MO.getReg() == SrcReg) 69 return true; 70 } 71 return false; 72 } 73 74 bool Localizer::localizeInterBlock(MachineFunction &MF, 75 LocalizedSetVecT &LocalizedInstrs) { 76 bool Changed = false; 77 DenseMap<std::pair<MachineBasicBlock *, unsigned>, unsigned> MBBWithLocalDef; 78 79 // Since the IRTranslator only emits constants into the entry block, and the 80 // rest of the GISel pipeline generally emits constants close to their users, 81 // we only localize instructions in the entry block here. This might change if 82 // we start doing CSE across blocks. 83 auto &MBB = MF.front(); 84 auto &TL = *MF.getSubtarget().getTargetLowering(); 85 for (MachineInstr &MI : llvm::reverse(MBB)) { 86 if (!TL.shouldLocalize(MI, TTI)) 87 continue; 88 LLVM_DEBUG(dbgs() << "Should localize: " << MI); 89 assert(MI.getDesc().getNumDefs() == 1 && 90 "More than one definition not supported yet"); 91 Register Reg = MI.getOperand(0).getReg(); 92 // Check if all the users of MI are local. 93 // We are going to invalidation the list of use operands, so we 94 // can't use range iterator. 95 for (auto MOIt = MRI->use_begin(Reg), MOItEnd = MRI->use_end(); 96 MOIt != MOItEnd;) { 97 MachineOperand &MOUse = *MOIt++; 98 // Check if the use is already local. 99 MachineBasicBlock *InsertMBB; 100 LLVM_DEBUG(MachineInstr &MIUse = *MOUse.getParent(); 101 dbgs() << "Checking use: " << MIUse 102 << " #Opd: " << MIUse.getOperandNo(&MOUse) << '\n'); 103 if (isLocalUse(MOUse, MI, InsertMBB)) { 104 // Even if we're in the same block, if the block is very large we could 105 // still have many long live ranges. Try to do intra-block localization 106 // too. 107 LocalizedInstrs.insert(&MI); 108 continue; 109 } 110 111 // If the use is a phi operand that's not unique, don't try to localize. 112 // If we do, we can cause unnecessary instruction bloat by duplicating 113 // into each predecessor block, when the existing one is sufficient and 114 // allows for easier optimization later. 115 if (isNonUniquePhiValue(MOUse)) 116 continue; 117 118 LLVM_DEBUG(dbgs() << "Fixing non-local use\n"); 119 Changed = true; 120 auto MBBAndReg = std::make_pair(InsertMBB, Reg); 121 auto NewVRegIt = MBBWithLocalDef.find(MBBAndReg); 122 if (NewVRegIt == MBBWithLocalDef.end()) { 123 // Create the localized instruction. 124 MachineInstr *LocalizedMI = MF.CloneMachineInstr(&MI); 125 LocalizedInstrs.insert(LocalizedMI); 126 MachineInstr &UseMI = *MOUse.getParent(); 127 if (MRI->hasOneUse(Reg) && !UseMI.isPHI()) 128 InsertMBB->insert(InsertMBB->SkipPHIsAndLabels(UseMI), LocalizedMI); 129 else 130 InsertMBB->insert(InsertMBB->SkipPHIsAndLabels(InsertMBB->begin()), 131 LocalizedMI); 132 133 // Set a new register for the definition. 134 Register NewReg = MRI->createGenericVirtualRegister(MRI->getType(Reg)); 135 MRI->setRegClassOrRegBank(NewReg, MRI->getRegClassOrRegBank(Reg)); 136 LocalizedMI->getOperand(0).setReg(NewReg); 137 NewVRegIt = 138 MBBWithLocalDef.insert(std::make_pair(MBBAndReg, NewReg)).first; 139 LLVM_DEBUG(dbgs() << "Inserted: " << *LocalizedMI); 140 } 141 LLVM_DEBUG(dbgs() << "Update use with: " << printReg(NewVRegIt->second) 142 << '\n'); 143 // Update the user reg. 144 MOUse.setReg(NewVRegIt->second); 145 } 146 } 147 return Changed; 148 } 149 150 bool Localizer::localizeIntraBlock(LocalizedSetVecT &LocalizedInstrs) { 151 bool Changed = false; 152 153 // For each already-localized instruction which has multiple users, then we 154 // scan the block top down from the current position until we hit one of them. 155 156 // FIXME: Consider doing inst duplication if live ranges are very long due to 157 // many users, but this case may be better served by regalloc improvements. 158 159 for (MachineInstr *MI : LocalizedInstrs) { 160 Register Reg = MI->getOperand(0).getReg(); 161 MachineBasicBlock &MBB = *MI->getParent(); 162 // All of the user MIs of this reg. 163 SmallPtrSet<MachineInstr *, 32> Users; 164 for (MachineInstr &UseMI : MRI->use_nodbg_instructions(Reg)) { 165 if (!UseMI.isPHI()) 166 Users.insert(&UseMI); 167 } 168 // If all the users were PHIs then they're not going to be in our block, 169 // don't try to move this instruction. 170 if (Users.empty()) 171 continue; 172 173 MachineBasicBlock::iterator II(MI); 174 ++II; 175 while (II != MBB.end() && !Users.count(&*II)) 176 ++II; 177 178 LLVM_DEBUG(dbgs() << "Intra-block: moving " << *MI << " before " << *&*II 179 << "\n"); 180 assert(II != MBB.end() && "Didn't find the user in the MBB"); 181 MI->removeFromParent(); 182 MBB.insert(II, MI); 183 Changed = true; 184 } 185 return Changed; 186 } 187 188 bool Localizer::runOnMachineFunction(MachineFunction &MF) { 189 // If the ISel pipeline failed, do not bother running that pass. 190 if (MF.getProperties().hasProperty( 191 MachineFunctionProperties::Property::FailedISel)) 192 return false; 193 194 // Don't run the pass if the target asked so. 195 if (DoNotRunPass(MF)) 196 return false; 197 198 LLVM_DEBUG(dbgs() << "Localize instructions for: " << MF.getName() << '\n'); 199 200 init(MF); 201 202 // Keep track of the instructions we localized. We'll do a second pass of 203 // intra-block localization to further reduce live ranges. 204 LocalizedSetVecT LocalizedInstrs; 205 206 bool Changed = localizeInterBlock(MF, LocalizedInstrs); 207 Changed |= localizeIntraBlock(LocalizedInstrs); 208 return Changed; 209 } 210