1 //===- ProfileSummaryInfo.cpp - Global profile summary information --------===// 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 // This file contains a pass that provides access to the global profile summary 11 // information. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "llvm/Analysis/ProfileSummaryInfo.h" 16 #include "llvm/Analysis/BlockFrequencyInfo.h" 17 #include "llvm/IR/BasicBlock.h" 18 #include "llvm/IR/CallSite.h" 19 #include "llvm/IR/Metadata.h" 20 #include "llvm/IR/Module.h" 21 #include "llvm/IR/ProfileSummary.h" 22 using namespace llvm; 23 24 // The following two parameters determine the threshold for a count to be 25 // considered hot/cold. These two parameters are percentile values (multiplied 26 // by 10000). If the counts are sorted in descending order, the minimum count to 27 // reach ProfileSummaryCutoffHot gives the threshold to determine a hot count. 28 // Similarly, the minimum count to reach ProfileSummaryCutoffCold gives the 29 // threshold for determining cold count (everything <= this threshold is 30 // considered cold). 31 32 static cl::opt<int> ProfileSummaryCutoffHot( 33 "profile-summary-cutoff-hot", cl::Hidden, cl::init(990000), cl::ZeroOrMore, 34 cl::desc("A count is hot if it exceeds the minimum count to" 35 " reach this percentile of total counts.")); 36 37 static cl::opt<int> ProfileSummaryCutoffCold( 38 "profile-summary-cutoff-cold", cl::Hidden, cl::init(999999), cl::ZeroOrMore, 39 cl::desc("A count is cold if it is below the minimum count" 40 " to reach this percentile of total counts.")); 41 42 static cl::opt<bool> ProfileSampleAccurate( 43 "profile-sample-accurate", cl::Hidden, cl::init(false), 44 cl::desc("If the sample profile is accurate, we will mark all un-sampled " 45 "callsite as cold. Otherwise, treat un-sampled callsites as if " 46 "we have no profile.")); 47 static cl::opt<unsigned> ProfileSummaryHugeWorkingSetSizeThreshold( 48 "profile-summary-huge-working-set-size-threshold", cl::Hidden, 49 cl::init(15000), cl::ZeroOrMore, 50 cl::desc("The code working set size is considered huge if the number of" 51 " blocks required to reach the -profile-summary-cutoff-hot" 52 " percentile exceeds this count.")); 53 54 // Find the summary entry for a desired percentile of counts. 55 static const ProfileSummaryEntry &getEntryForPercentile(SummaryEntryVector &DS, 56 uint64_t Percentile) { 57 auto Compare = [](const ProfileSummaryEntry &Entry, uint64_t Percentile) { 58 return Entry.Cutoff < Percentile; 59 }; 60 auto It = std::lower_bound(DS.begin(), DS.end(), Percentile, Compare); 61 // The required percentile has to be <= one of the percentiles in the 62 // detailed summary. 63 if (It == DS.end()) 64 report_fatal_error("Desired percentile exceeds the maximum cutoff"); 65 return *It; 66 } 67 68 // The profile summary metadata may be attached either by the frontend or by 69 // any backend passes (IR level instrumentation, for example). This method 70 // checks if the Summary is null and if so checks if the summary metadata is now 71 // available in the module and parses it to get the Summary object. Returns true 72 // if a valid Summary is available. 73 bool ProfileSummaryInfo::computeSummary() { 74 if (Summary) 75 return true; 76 auto *SummaryMD = M.getProfileSummary(); 77 if (!SummaryMD) 78 return false; 79 Summary.reset(ProfileSummary::getFromMD(SummaryMD)); 80 return true; 81 } 82 83 Optional<uint64_t> 84 ProfileSummaryInfo::getProfileCount(const Instruction *Inst, 85 BlockFrequencyInfo *BFI) { 86 if (!Inst) 87 return None; 88 assert((isa<CallInst>(Inst) || isa<InvokeInst>(Inst)) && 89 "We can only get profile count for call/invoke instruction."); 90 if (hasSampleProfile()) { 91 // In sample PGO mode, check if there is a profile metadata on the 92 // instruction. If it is present, determine hotness solely based on that, 93 // since the sampled entry count may not be accurate. If there is no 94 // annotated on the instruction, return None. 95 uint64_t TotalCount; 96 if (Inst->extractProfTotalWeight(TotalCount)) 97 return TotalCount; 98 return None; 99 } 100 if (BFI) 101 return BFI->getBlockProfileCount(Inst->getParent()); 102 return None; 103 } 104 105 /// Returns true if the function's entry is hot. If it returns false, it 106 /// either means it is not hot or it is unknown whether it is hot or not (for 107 /// example, no profile data is available). 108 bool ProfileSummaryInfo::isFunctionEntryHot(const Function *F) { 109 if (!F || !computeSummary()) 110 return false; 111 auto FunctionCount = F->getEntryCount(); 112 // FIXME: The heuristic used below for determining hotness is based on 113 // preliminary SPEC tuning for inliner. This will eventually be a 114 // convenience method that calls isHotCount. 115 return FunctionCount && isHotCount(FunctionCount.getValue()); 116 } 117 118 /// Returns true if the function's entry or total call edge count is hot. 119 /// If it returns false, it either means it is not hot or it is unknown 120 /// whether it is hot or not (for example, no profile data is available). 121 bool ProfileSummaryInfo::isFunctionHotInCallGraph(const Function *F) { 122 if (!F || !computeSummary()) 123 return false; 124 if (auto FunctionCount = F->getEntryCount()) 125 if (isHotCount(FunctionCount.getValue())) 126 return true; 127 128 uint64_t TotalCallCount = 0; 129 for (const auto &BB : *F) 130 for (const auto &I : BB) 131 if (isa<CallInst>(I) || isa<InvokeInst>(I)) 132 if (auto CallCount = getProfileCount(&I, nullptr)) 133 TotalCallCount += CallCount.getValue(); 134 return isHotCount(TotalCallCount); 135 } 136 137 /// Returns true if the function's entry and total call edge count is cold. 138 /// If it returns false, it either means it is not cold or it is unknown 139 /// whether it is cold or not (for example, no profile data is available). 140 bool ProfileSummaryInfo::isFunctionColdInCallGraph(const Function *F) { 141 if (!F || !computeSummary()) 142 return false; 143 if (auto FunctionCount = F->getEntryCount()) 144 if (!isColdCount(FunctionCount.getValue())) 145 return false; 146 147 uint64_t TotalCallCount = 0; 148 for (const auto &BB : *F) 149 for (const auto &I : BB) 150 if (isa<CallInst>(I) || isa<InvokeInst>(I)) 151 if (auto CallCount = getProfileCount(&I, nullptr)) 152 TotalCallCount += CallCount.getValue(); 153 return isColdCount(TotalCallCount); 154 } 155 156 /// Returns true if the function's entry is a cold. If it returns false, it 157 /// either means it is not cold or it is unknown whether it is cold or not (for 158 /// example, no profile data is available). 159 bool ProfileSummaryInfo::isFunctionEntryCold(const Function *F) { 160 if (!F) 161 return false; 162 if (F->hasFnAttribute(Attribute::Cold)) 163 return true; 164 if (!computeSummary()) 165 return false; 166 auto FunctionCount = F->getEntryCount(); 167 // FIXME: The heuristic used below for determining coldness is based on 168 // preliminary SPEC tuning for inliner. This will eventually be a 169 // convenience method that calls isHotCount. 170 return FunctionCount && isColdCount(FunctionCount.getValue()); 171 } 172 173 /// Compute the hot and cold thresholds. 174 void ProfileSummaryInfo::computeThresholds() { 175 if (!computeSummary()) 176 return; 177 auto &DetailedSummary = Summary->getDetailedSummary(); 178 auto &HotEntry = 179 getEntryForPercentile(DetailedSummary, ProfileSummaryCutoffHot); 180 HotCountThreshold = HotEntry.MinCount; 181 auto &ColdEntry = 182 getEntryForPercentile(DetailedSummary, ProfileSummaryCutoffCold); 183 ColdCountThreshold = ColdEntry.MinCount; 184 HasHugeWorkingSetSize = 185 HotEntry.NumCounts > ProfileSummaryHugeWorkingSetSizeThreshold; 186 } 187 188 bool ProfileSummaryInfo::hasHugeWorkingSetSize() { 189 if (!HasHugeWorkingSetSize) 190 computeThresholds(); 191 return HasHugeWorkingSetSize && HasHugeWorkingSetSize.getValue(); 192 } 193 194 bool ProfileSummaryInfo::isHotCount(uint64_t C) { 195 if (!HotCountThreshold) 196 computeThresholds(); 197 return HotCountThreshold && C >= HotCountThreshold.getValue(); 198 } 199 200 bool ProfileSummaryInfo::isColdCount(uint64_t C) { 201 if (!ColdCountThreshold) 202 computeThresholds(); 203 return ColdCountThreshold && C <= ColdCountThreshold.getValue(); 204 } 205 206 bool ProfileSummaryInfo::isHotBB(const BasicBlock *B, BlockFrequencyInfo *BFI) { 207 auto Count = BFI->getBlockProfileCount(B); 208 return Count && isHotCount(*Count); 209 } 210 211 bool ProfileSummaryInfo::isColdBB(const BasicBlock *B, 212 BlockFrequencyInfo *BFI) { 213 auto Count = BFI->getBlockProfileCount(B); 214 return Count && isColdCount(*Count); 215 } 216 217 bool ProfileSummaryInfo::isHotCallSite(const CallSite &CS, 218 BlockFrequencyInfo *BFI) { 219 auto C = getProfileCount(CS.getInstruction(), BFI); 220 return C && isHotCount(*C); 221 } 222 223 bool ProfileSummaryInfo::isColdCallSite(const CallSite &CS, 224 BlockFrequencyInfo *BFI) { 225 auto C = getProfileCount(CS.getInstruction(), BFI); 226 if (C) 227 return isColdCount(*C); 228 229 // In SamplePGO, if the caller has been sampled, and there is no profile 230 // annotatedon the callsite, we consider the callsite as cold. 231 // If there is no profile for the caller, and we know the profile is 232 // accurate, we consider the callsite as cold. 233 return (hasSampleProfile() && 234 (CS.getCaller()->getEntryCount() || ProfileSampleAccurate || 235 CS.getCaller()->hasFnAttribute("profile-sample-accurate"))); 236 } 237 238 INITIALIZE_PASS(ProfileSummaryInfoWrapperPass, "profile-summary-info", 239 "Profile summary info", false, true) 240 241 ProfileSummaryInfoWrapperPass::ProfileSummaryInfoWrapperPass() 242 : ImmutablePass(ID) { 243 initializeProfileSummaryInfoWrapperPassPass(*PassRegistry::getPassRegistry()); 244 } 245 246 bool ProfileSummaryInfoWrapperPass::doInitialization(Module &M) { 247 PSI.reset(new ProfileSummaryInfo(M)); 248 return false; 249 } 250 251 bool ProfileSummaryInfoWrapperPass::doFinalization(Module &M) { 252 PSI.reset(); 253 return false; 254 } 255 256 AnalysisKey ProfileSummaryAnalysis::Key; 257 ProfileSummaryInfo ProfileSummaryAnalysis::run(Module &M, 258 ModuleAnalysisManager &) { 259 return ProfileSummaryInfo(M); 260 } 261 262 PreservedAnalyses ProfileSummaryPrinterPass::run(Module &M, 263 ModuleAnalysisManager &AM) { 264 ProfileSummaryInfo &PSI = AM.getResult<ProfileSummaryAnalysis>(M); 265 266 OS << "Functions in " << M.getName() << " with hot/cold annotations: \n"; 267 for (auto &F : M) { 268 OS << F.getName(); 269 if (PSI.isFunctionEntryHot(&F)) 270 OS << " :hot entry "; 271 else if (PSI.isFunctionEntryCold(&F)) 272 OS << " :cold entry "; 273 OS << "\n"; 274 } 275 return PreservedAnalyses::all(); 276 } 277 278 char ProfileSummaryInfoWrapperPass::ID = 0; 279