1 //===-- LoopPredication.cpp - Guard based loop predication pass -----------===// 2 // 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 // 10 // The LoopPredication pass tries to convert loop variant range checks to loop 11 // invariant by widening checks across loop iterations. For example, it will 12 // convert 13 // 14 // for (i = 0; i < n; i++) { 15 // guard(i < len); 16 // ... 17 // } 18 // 19 // to 20 // 21 // for (i = 0; i < n; i++) { 22 // guard(n - 1 < len); 23 // ... 24 // } 25 // 26 // After this transformation the condition of the guard is loop invariant, so 27 // loop-unswitch can later unswitch the loop by this condition which basically 28 // predicates the loop by the widened condition: 29 // 30 // if (n - 1 < len) 31 // for (i = 0; i < n; i++) { 32 // ... 33 // } 34 // else 35 // deoptimize 36 // 37 //===----------------------------------------------------------------------===// 38 39 #include "llvm/Transforms/Scalar/LoopPredication.h" 40 #include "llvm/Pass.h" 41 #include "llvm/Analysis/LoopInfo.h" 42 #include "llvm/Analysis/LoopPass.h" 43 #include "llvm/Analysis/ScalarEvolution.h" 44 #include "llvm/Analysis/ScalarEvolutionExpander.h" 45 #include "llvm/Analysis/ScalarEvolutionExpressions.h" 46 #include "llvm/IR/Function.h" 47 #include "llvm/IR/GlobalValue.h" 48 #include "llvm/IR/IntrinsicInst.h" 49 #include "llvm/IR/Module.h" 50 #include "llvm/IR/PatternMatch.h" 51 #include "llvm/Support/Debug.h" 52 #include "llvm/Transforms/Scalar.h" 53 #include "llvm/Transforms/Utils/LoopUtils.h" 54 55 #define DEBUG_TYPE "loop-predication" 56 57 using namespace llvm; 58 59 namespace { 60 class LoopPredication { 61 ScalarEvolution *SE; 62 63 Loop *L; 64 const DataLayout *DL; 65 BasicBlock *Preheader; 66 67 Optional<Value *> widenICmpRangeCheck(ICmpInst *ICI, SCEVExpander &Expander, 68 IRBuilder<> &Builder); 69 bool widenGuardConditions(IntrinsicInst *II, SCEVExpander &Expander); 70 71 public: 72 LoopPredication(ScalarEvolution *SE) : SE(SE){}; 73 bool runOnLoop(Loop *L); 74 }; 75 76 class LoopPredicationLegacyPass : public LoopPass { 77 public: 78 static char ID; 79 LoopPredicationLegacyPass() : LoopPass(ID) { 80 initializeLoopPredicationLegacyPassPass(*PassRegistry::getPassRegistry()); 81 } 82 83 void getAnalysisUsage(AnalysisUsage &AU) const override { 84 getLoopAnalysisUsage(AU); 85 } 86 87 bool runOnLoop(Loop *L, LPPassManager &LPM) override { 88 if (skipLoop(L)) 89 return false; 90 auto *SE = &getAnalysis<ScalarEvolutionWrapperPass>().getSE(); 91 LoopPredication LP(SE); 92 return LP.runOnLoop(L); 93 } 94 }; 95 96 char LoopPredicationLegacyPass::ID = 0; 97 } // end namespace llvm 98 99 INITIALIZE_PASS_BEGIN(LoopPredicationLegacyPass, "loop-predication", 100 "Loop predication", false, false) 101 INITIALIZE_PASS_DEPENDENCY(LoopPass) 102 INITIALIZE_PASS_END(LoopPredicationLegacyPass, "loop-predication", 103 "Loop predication", false, false) 104 105 Pass *llvm::createLoopPredicationPass() { 106 return new LoopPredicationLegacyPass(); 107 } 108 109 PreservedAnalyses LoopPredicationPass::run(Loop &L, LoopAnalysisManager &AM, 110 LoopStandardAnalysisResults &AR, 111 LPMUpdater &U) { 112 LoopPredication LP(&AR.SE); 113 if (!LP.runOnLoop(&L)) 114 return PreservedAnalyses::all(); 115 116 return getLoopPassPreservedAnalyses(); 117 } 118 119 /// If ICI can be widened to a loop invariant condition emits the loop 120 /// invariant condition in the loop preheader and return it, otherwise 121 /// returns None. 122 Optional<Value *> LoopPredication::widenICmpRangeCheck(ICmpInst *ICI, 123 SCEVExpander &Expander, 124 IRBuilder<> &Builder) { 125 DEBUG(dbgs() << "Analyzing ICmpInst condition:\n"); 126 DEBUG(ICI->dump()); 127 128 ICmpInst::Predicate Pred = ICI->getPredicate(); 129 Value *LHS = ICI->getOperand(0); 130 Value *RHS = ICI->getOperand(1); 131 const SCEV *LHSS = SE->getSCEV(LHS); 132 if (isa<SCEVCouldNotCompute>(LHSS)) 133 return None; 134 const SCEV *RHSS = SE->getSCEV(RHS); 135 if (isa<SCEVCouldNotCompute>(RHSS)) 136 return None; 137 138 // Canonicalize RHS to be loop invariant bound, LHS - a loop computable index 139 if (SE->isLoopInvariant(LHSS, L)) { 140 std::swap(LHS, RHS); 141 std::swap(LHSS, RHSS); 142 Pred = ICmpInst::getSwappedPredicate(Pred); 143 } 144 if (!SE->isLoopInvariant(RHSS, L)) 145 return None; 146 147 Value *Bound = RHS; 148 const SCEVAddRecExpr *IndexAR = dyn_cast<SCEVAddRecExpr>(LHSS); 149 if (!IndexAR || IndexAR->getLoop() != L) 150 return None; 151 152 DEBUG(dbgs() << "IndexAR: "); 153 DEBUG(IndexAR->dump()); 154 155 bool IsIncreasing = false; 156 if (!SE->isMonotonicPredicate(IndexAR, Pred, IsIncreasing)) 157 return None; 158 159 // If the predicate is increasing the condition can change from false to true 160 // as the loop progresses, in this case take the value on the first iteration 161 // for the widened check. Otherwise the condition can change from true to 162 // false as the loop progresses, so take the value on the last iteration. 163 const SCEV *NewLHSS = IsIncreasing 164 ? IndexAR->getStart() 165 : SE->getSCEVAtScope(IndexAR, L->getParentLoop()); 166 if (NewLHSS == IndexAR) { 167 DEBUG(dbgs() << "Can't compute NewLHSS!"); 168 return None; 169 } 170 171 DEBUG(dbgs() << "NewLHSS: "); 172 DEBUG(NewLHSS->dump()); 173 174 if (!SE->isLoopInvariant(NewLHSS, L) || !isSafeToExpand(NewLHSS, *SE)) 175 return None; 176 177 DEBUG(dbgs() << "NewLHSS is loop invariant and safe to expand. Expand!\n"); 178 179 Value *NewLHS = Expander.expandCodeFor(NewLHSS, Bound->getType(), 180 Preheader->getTerminator()); 181 return Builder.CreateICmp(Pred, NewLHS, Bound); 182 } 183 184 bool LoopPredication::widenGuardConditions(IntrinsicInst *Guard, 185 SCEVExpander &Expander) { 186 DEBUG(dbgs() << "Processing guard:\n"); 187 DEBUG(Guard->dump()); 188 189 IRBuilder<> Builder(cast<Instruction>(Preheader->getTerminator())); 190 191 // The guard condition is expected to be in form of: 192 // cond1 && cond2 && cond3 ... 193 // Iterate over subconditions looking for for icmp conditions which can be 194 // widened across loop iterations. Widening these conditions remember the 195 // resulting list of subconditions in Checks vector. 196 SmallVector<Value *, 4> Worklist(1, Guard->getOperand(0)); 197 SmallPtrSet<Value *, 4> Visited; 198 199 SmallVector<Value *, 4> Checks; 200 201 unsigned NumWidened = 0; 202 do { 203 Value *Condition = Worklist.pop_back_val(); 204 if (!Visited.insert(Condition).second) 205 continue; 206 207 Value *LHS, *RHS; 208 using namespace llvm::PatternMatch; 209 if (match(Condition, m_And(m_Value(LHS), m_Value(RHS)))) { 210 Worklist.push_back(LHS); 211 Worklist.push_back(RHS); 212 continue; 213 } 214 215 if (ICmpInst *ICI = dyn_cast<ICmpInst>(Condition)) { 216 if (auto NewRangeCheck = widenICmpRangeCheck(ICI, Expander, Builder)) { 217 Checks.push_back(NewRangeCheck.getValue()); 218 NumWidened++; 219 continue; 220 } 221 } 222 223 // Save the condition as is if we can't widen it 224 Checks.push_back(Condition); 225 } while (Worklist.size() != 0); 226 227 if (NumWidened == 0) 228 return false; 229 230 // Emit the new guard condition 231 Builder.SetInsertPoint(Guard); 232 Value *LastCheck = nullptr; 233 for (auto *Check : Checks) 234 if (!LastCheck) 235 LastCheck = Check; 236 else 237 LastCheck = Builder.CreateAnd(LastCheck, Check); 238 Guard->setOperand(0, LastCheck); 239 240 DEBUG(dbgs() << "Widened checks = " << NumWidened << "\n"); 241 return true; 242 } 243 244 bool LoopPredication::runOnLoop(Loop *Loop) { 245 L = Loop; 246 247 DEBUG(dbgs() << "Analyzing "); 248 DEBUG(L->dump()); 249 250 Module *M = L->getHeader()->getModule(); 251 252 // There is nothing to do if the module doesn't use guards 253 auto *GuardDecl = 254 M->getFunction(Intrinsic::getName(Intrinsic::experimental_guard)); 255 if (!GuardDecl || GuardDecl->use_empty()) 256 return false; 257 258 DL = &M->getDataLayout(); 259 260 Preheader = L->getLoopPreheader(); 261 if (!Preheader) 262 return false; 263 264 // Collect all the guards into a vector and process later, so as not 265 // to invalidate the instruction iterator. 266 SmallVector<IntrinsicInst *, 4> Guards; 267 for (const auto BB : L->blocks()) 268 for (auto &I : *BB) 269 if (auto *II = dyn_cast<IntrinsicInst>(&I)) 270 if (II->getIntrinsicID() == Intrinsic::experimental_guard) 271 Guards.push_back(II); 272 273 SCEVExpander Expander(*SE, *DL, "loop-predication"); 274 275 bool Changed = false; 276 for (auto *Guard : Guards) 277 Changed |= widenGuardConditions(Guard, Expander); 278 279 return Changed; 280 } 281