Easwaran Raman | 019e0bf | 2016-06-03 22:54:26 +0000 | [diff] [blame^] | 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/IR/Metadata.h" |
| 17 | #include "llvm/IR/Module.h" |
| 18 | #include "llvm/IR/ProfileSummary.h" |
| 19 | using namespace llvm; |
| 20 | |
| 21 | // The following two parameters determine the threshold for a count to be |
| 22 | // considered hot/cold. These two parameters are percentile values (multiplied |
| 23 | // by 10000). If the counts are sorted in descending order, the minimum count to |
| 24 | // reach ProfileSummaryCutoffHot gives the threshold to determine a hot count. |
| 25 | // Similarly, the minimum count to reach ProfileSummaryCutoffCold gives the |
| 26 | // threshold for determining cold count (everything <= this threshold is |
| 27 | // considered cold). |
| 28 | |
| 29 | static cl::opt<int> ProfileSummaryCutoffHot( |
| 30 | "profile-summary-cutoff-hot", cl::Hidden, cl::init(999000), cl::ZeroOrMore, |
| 31 | cl::desc("A count is hot if it exceeds the minimum count to" |
| 32 | " reach this percentile of total counts.")); |
| 33 | |
| 34 | static cl::opt<int> ProfileSummaryCutoffCold( |
| 35 | "profile-summary-cutoff-cold", cl::Hidden, cl::init(999999), cl::ZeroOrMore, |
| 36 | cl::desc("A count is cold if it is below the minimum count" |
| 37 | " to reach this percentile of total counts.")); |
| 38 | |
| 39 | // Find the minimum count to reach a desired percentile of counts. |
| 40 | static uint64_t getMinCountForPercentile(SummaryEntryVector &DS, |
| 41 | uint64_t Percentile) { |
| 42 | auto Compare = [](const ProfileSummaryEntry &Entry, uint64_t Percentile) { |
| 43 | return Entry.Cutoff < Percentile; |
| 44 | }; |
| 45 | auto It = std::lower_bound(DS.begin(), DS.end(), Percentile, Compare); |
| 46 | // The required percentile has to be <= one of the percentiles in the |
| 47 | // detailed summary. |
| 48 | if (It == DS.end()) |
| 49 | report_fatal_error("Desired percentile exceeds the maximum cutoff"); |
| 50 | return It->MinCount; |
| 51 | } |
| 52 | |
| 53 | // The profile summary metadata may be attached either by the frontend or by |
| 54 | // any backend passes (IR level instrumentation, for example). This method |
| 55 | // checks if the Summary is null and if so checks if the summary metadata is now |
| 56 | // available in the module and parses it to get the Summary object. |
| 57 | void ProfileSummaryInfo::computeSummary() { |
| 58 | if (Summary) |
| 59 | return; |
| 60 | auto *SummaryMD = M.getProfileSummary(); |
| 61 | if (!SummaryMD) |
| 62 | return; |
| 63 | Summary.reset(ProfileSummary::getFromMD(SummaryMD)); |
| 64 | } |
| 65 | |
| 66 | // Returns true if the function is a hot function. If it returns false, it |
| 67 | // either means it is not hot or it is unknown whether F is hot or not (for |
| 68 | // example, no profile data is available). |
| 69 | bool ProfileSummaryInfo::isHotFunction(const Function *F) { |
| 70 | computeSummary(); |
| 71 | if (!F || !Summary) |
| 72 | return false; |
| 73 | auto FunctionCount = F->getEntryCount(); |
| 74 | // FIXME: The heuristic used below for determining hotness is based on |
| 75 | // preliminary SPEC tuning for inliner. This will eventually be a |
| 76 | // convenience method that calls isHotCount. |
| 77 | return (FunctionCount && |
| 78 | FunctionCount.getValue() >= |
| 79 | (uint64_t)(0.3 * (double)Summary->getMaxFunctionCount())); |
| 80 | } |
| 81 | |
| 82 | // Returns true if the function is a cold function. If it returns false, it |
| 83 | // either means it is not cold or it is unknown whether F is cold or not (for |
| 84 | // example, no profile data is available). |
| 85 | bool ProfileSummaryInfo::isColdFunction(const Function *F) { |
| 86 | computeSummary(); |
| 87 | if (F->hasFnAttribute(Attribute::Cold)) { |
| 88 | return true; |
| 89 | } |
| 90 | auto FunctionCount = F->getEntryCount(); |
| 91 | // FIXME: The heuristic used below for determining coldness is based on |
| 92 | // preliminary SPEC tuning for inliner. This will eventually be a |
| 93 | // convenience method that calls isHotCount. |
| 94 | return (FunctionCount && |
| 95 | FunctionCount.getValue() <= |
| 96 | (uint64_t)(0.01 * (double)Summary->getMaxFunctionCount())); |
| 97 | } |
| 98 | |
| 99 | // Compute the hot and cold thresholds. |
| 100 | void ProfileSummaryInfo::computeThresholds() { |
| 101 | if (!Summary) |
| 102 | computeSummary(); |
| 103 | if (!Summary) |
| 104 | return; |
| 105 | auto &DetailedSummary = Summary->getDetailedSummary(); |
| 106 | HotCountThreshold = |
| 107 | getMinCountForPercentile(DetailedSummary, ProfileSummaryCutoffHot); |
| 108 | ColdCountThreshold = |
| 109 | getMinCountForPercentile(DetailedSummary, ProfileSummaryCutoffCold); |
| 110 | } |
| 111 | |
| 112 | bool ProfileSummaryInfo::isHotCount(uint64_t C) { |
| 113 | if (!HotCountThreshold) |
| 114 | computeThresholds(); |
| 115 | return HotCountThreshold && C >= HotCountThreshold.getValue(); |
| 116 | } |
| 117 | |
| 118 | bool ProfileSummaryInfo::isColdCount(uint64_t C) { |
| 119 | if (!ColdCountThreshold) |
| 120 | computeThresholds(); |
| 121 | return ColdCountThreshold && C <= ColdCountThreshold.getValue(); |
| 122 | } |
| 123 | |
| 124 | ProfileSummaryInfo *ProfileSummaryInfoWrapperPass::getPSI(Module &M) { |
| 125 | if (!PSI) |
| 126 | PSI.reset(new ProfileSummaryInfo(M)); |
| 127 | return PSI.get(); |
| 128 | } |
| 129 | |
| 130 | INITIALIZE_PASS(ProfileSummaryInfoWrapperPass, "profile-summary-info", |
| 131 | "Profile summary info", false, true) |
| 132 | |
| 133 | ProfileSummaryInfoWrapperPass::ProfileSummaryInfoWrapperPass() |
| 134 | : ImmutablePass(ID) { |
| 135 | initializeProfileSummaryInfoWrapperPassPass(*PassRegistry::getPassRegistry()); |
| 136 | } |
| 137 | |
| 138 | char ProfileSummaryAnalysis::PassID; |
| 139 | ProfileSummaryInfo ProfileSummaryAnalysis::run(Module &M) { |
| 140 | return ProfileSummaryInfo(M); |
| 141 | } |
| 142 | |
| 143 | // FIXME: This only tests isHotFunction and isColdFunction and not the |
| 144 | // isHotCount and isColdCount calls. |
| 145 | PreservedAnalyses ProfileSummaryPrinterPass::run(Module &M, |
| 146 | AnalysisManager<Module> &AM) { |
| 147 | ProfileSummaryInfo &PSI = AM.getResult<ProfileSummaryAnalysis>(M); |
| 148 | |
| 149 | OS << "Functions in " << M.getName() << " with hot/cold annotations: \n"; |
| 150 | for (auto &F : M) { |
| 151 | OS << F.getName(); |
| 152 | if (PSI.isHotFunction(&F)) |
| 153 | OS << " :hot "; |
| 154 | else if (PSI.isColdFunction(&F)) |
| 155 | OS << " :cold "; |
| 156 | OS << "\n"; |
| 157 | } |
| 158 | return PreservedAnalyses::all(); |
| 159 | } |
| 160 | |
| 161 | char ProfileSummaryInfoWrapperPass::ID = 0; |