1b842725cSMichael J. Spencer //===- CallGraphSort.cpp --------------------------------------------------===// 2b842725cSMichael J. Spencer // 3b842725cSMichael J. Spencer // The LLVM Linker 4b842725cSMichael J. Spencer // 5b842725cSMichael J. Spencer // This file is distributed under the University of Illinois Open Source 6b842725cSMichael J. Spencer // License. See LICENSE.TXT for details. 7b842725cSMichael J. Spencer // 8b842725cSMichael J. Spencer //===----------------------------------------------------------------------===// 9b842725cSMichael J. Spencer /// 10b842725cSMichael J. Spencer /// Implementation of Call-Chain Clustering from: Optimizing Function Placement 11b842725cSMichael J. Spencer /// for Large-Scale Data-Center Applications 12b842725cSMichael J. Spencer /// https://research.fb.com/wp-content/uploads/2017/01/cgo2017-hfsort-final1.pdf 13b842725cSMichael J. Spencer /// 14b842725cSMichael J. Spencer /// The goal of this algorithm is to improve runtime performance of the final 15b842725cSMichael J. Spencer /// executable by arranging code sections such that page table and i-cache 16b842725cSMichael J. Spencer /// misses are minimized. 17b842725cSMichael J. Spencer /// 18b842725cSMichael J. Spencer /// Definitions: 19b842725cSMichael J. Spencer /// * Cluster 20b842725cSMichael J. Spencer /// * An ordered list of input sections which are layed out as a unit. At the 21b842725cSMichael J. Spencer /// beginning of the algorithm each input section has its own cluster and 22b842725cSMichael J. Spencer /// the weight of the cluster is the sum of the weight of all incomming 23b842725cSMichael J. Spencer /// edges. 24b842725cSMichael J. Spencer /// * Call-Chain Clustering (C³) Heuristic 25b842725cSMichael J. Spencer /// * Defines when and how clusters are combined. Pick the highest weighted 26b842725cSMichael J. Spencer /// input section then add it to its most likely predecessor if it wouldn't 27b842725cSMichael J. Spencer /// penalize it too much. 28b842725cSMichael J. Spencer /// * Density 29b842725cSMichael J. Spencer /// * The weight of the cluster divided by the size of the cluster. This is a 30b842725cSMichael J. Spencer /// proxy for the ammount of execution time spent per byte of the cluster. 31b842725cSMichael J. Spencer /// 32b842725cSMichael J. Spencer /// It does so given a call graph profile by the following: 33b842725cSMichael J. Spencer /// * Build a weighted call graph from the call graph profile 34b842725cSMichael J. Spencer /// * Sort input sections by weight 35b842725cSMichael J. Spencer /// * For each input section starting with the highest weight 36b842725cSMichael J. Spencer /// * Find its most likely predecessor cluster 37b842725cSMichael J. Spencer /// * Check if the combined cluster would be too large, or would have too low 38b842725cSMichael J. Spencer /// a density. 39b842725cSMichael J. Spencer /// * If not, then combine the clusters. 40b842725cSMichael J. Spencer /// * Sort non-empty clusters by density 41b842725cSMichael J. Spencer /// 42b842725cSMichael J. Spencer //===----------------------------------------------------------------------===// 43b842725cSMichael J. Spencer 44b842725cSMichael J. Spencer #include "CallGraphSort.h" 45b842725cSMichael J. Spencer #include "OutputSections.h" 46b842725cSMichael J. Spencer #include "SymbolTable.h" 47b842725cSMichael J. Spencer #include "Symbols.h" 48b842725cSMichael J. Spencer 49b842725cSMichael J. Spencer using namespace llvm; 50b842725cSMichael J. Spencer using namespace lld; 51b842725cSMichael J. Spencer using namespace lld::elf; 52b842725cSMichael J. Spencer 53b842725cSMichael J. Spencer namespace { 54b842725cSMichael J. Spencer struct Edge { 55b842725cSMichael J. Spencer int From; 56b842725cSMichael J. Spencer uint64_t Weight; 57b842725cSMichael J. Spencer }; 58b842725cSMichael J. Spencer 59b842725cSMichael J. Spencer struct Cluster { 60b842725cSMichael J. Spencer Cluster(int Sec, size_t S) { 61b842725cSMichael J. Spencer Sections.push_back(Sec); 62b842725cSMichael J. Spencer Size = S; 63b842725cSMichael J. Spencer } 64b842725cSMichael J. Spencer 65b842725cSMichael J. Spencer double getDensity() const { 66b842725cSMichael J. Spencer if (Size == 0) 67b842725cSMichael J. Spencer return 0; 68b842725cSMichael J. Spencer return double(Weight) / double(Size); 69b842725cSMichael J. Spencer } 70b842725cSMichael J. Spencer 71b842725cSMichael J. Spencer std::vector<int> Sections; 72b842725cSMichael J. Spencer size_t Size = 0; 73b842725cSMichael J. Spencer uint64_t Weight = 0; 74b842725cSMichael J. Spencer uint64_t InitialWeight = 0; 75b842725cSMichael J. Spencer std::vector<Edge> Preds; 76b842725cSMichael J. Spencer }; 77b842725cSMichael J. Spencer 78b842725cSMichael J. Spencer class CallGraphSort { 79b842725cSMichael J. Spencer public: 80b842725cSMichael J. Spencer CallGraphSort(); 81b842725cSMichael J. Spencer 82b842725cSMichael J. Spencer DenseMap<const InputSectionBase *, int> run(); 83b842725cSMichael J. Spencer 84b842725cSMichael J. Spencer private: 85b842725cSMichael J. Spencer std::vector<Cluster> Clusters; 86b842725cSMichael J. Spencer std::vector<const InputSectionBase *> Sections; 87b842725cSMichael J. Spencer 88b842725cSMichael J. Spencer void groupClusters(); 89b842725cSMichael J. Spencer }; 90b842725cSMichael J. Spencer 91b842725cSMichael J. Spencer // Maximum ammount the combined cluster density can be worse than the original 92b842725cSMichael J. Spencer // cluster to consider merging. 93b842725cSMichael J. Spencer constexpr int MAX_DENSITY_DEGRADATION = 8; 94b842725cSMichael J. Spencer 95b842725cSMichael J. Spencer // Maximum cluster size in bytes. 96b842725cSMichael J. Spencer constexpr uint64_t MAX_CLUSTER_SIZE = 1024 * 1024; 97b842725cSMichael J. Spencer } // end anonymous namespace 98b842725cSMichael J. Spencer 99b842725cSMichael J. Spencer // Take the edge list in Config->CallGraphProfile, resolve symbol names to 100b842725cSMichael J. Spencer // Symbols, and generate a graph between InputSections with the provided 101b842725cSMichael J. Spencer // weights. 102b842725cSMichael J. Spencer CallGraphSort::CallGraphSort() { 103b842725cSMichael J. Spencer llvm::MapVector<std::pair<const InputSectionBase *, const InputSectionBase *>, 104b842725cSMichael J. Spencer uint64_t> &Profile = Config->CallGraphProfile; 105b842725cSMichael J. Spencer DenseMap<const InputSectionBase *, int> SecToCluster; 106b842725cSMichael J. Spencer 107b842725cSMichael J. Spencer auto GetOrCreateNode = [&](const InputSectionBase *IS) -> int { 108b842725cSMichael J. Spencer auto Res = SecToCluster.insert(std::make_pair(IS, Clusters.size())); 109b842725cSMichael J. Spencer if (Res.second) { 110b842725cSMichael J. Spencer Sections.push_back(IS); 111b842725cSMichael J. Spencer Clusters.emplace_back(Clusters.size(), IS->getSize()); 112b842725cSMichael J. Spencer } 113b842725cSMichael J. Spencer return Res.first->second; 114b842725cSMichael J. Spencer }; 115b842725cSMichael J. Spencer 116b842725cSMichael J. Spencer // Create the graph. 117b842725cSMichael J. Spencer for (const auto &C : Profile) { 118b842725cSMichael J. Spencer const auto *FromSB = cast<InputSectionBase>(C.first.first->Repl); 119b842725cSMichael J. Spencer const auto *ToSB = cast<InputSectionBase>(C.first.second->Repl); 120b842725cSMichael J. Spencer uint64_t Weight = C.second; 121b842725cSMichael J. Spencer 122b842725cSMichael J. Spencer // Ignore edges between input sections belonging to different output 123b842725cSMichael J. Spencer // sections. This is done because otherwise we would end up with clusters 124b842725cSMichael J. Spencer // containing input sections that can't actually be placed adjacently in the 125b842725cSMichael J. Spencer // output. This messes with the cluster size and density calculations. We 126b842725cSMichael J. Spencer // would also end up moving input sections in other output sections without 127b842725cSMichael J. Spencer // moving them closer to what calls them. 128b842725cSMichael J. Spencer if (FromSB->getOutputSection() != ToSB->getOutputSection()) 129b842725cSMichael J. Spencer continue; 130b842725cSMichael J. Spencer 131b842725cSMichael J. Spencer int From = GetOrCreateNode(FromSB); 132b842725cSMichael J. Spencer int To = GetOrCreateNode(ToSB); 133b842725cSMichael J. Spencer 134b842725cSMichael J. Spencer Clusters[To].Weight += Weight; 135b842725cSMichael J. Spencer 136b842725cSMichael J. Spencer if (From == To) 137b842725cSMichael J. Spencer continue; 138b842725cSMichael J. Spencer 139b842725cSMichael J. Spencer // Add an edge 140b842725cSMichael J. Spencer Clusters[To].Preds.push_back({From, Weight}); 141b842725cSMichael J. Spencer } 142b842725cSMichael J. Spencer for (Cluster &C : Clusters) 143b842725cSMichael J. Spencer C.InitialWeight = C.Weight; 144b842725cSMichael J. Spencer } 145b842725cSMichael J. Spencer 146b842725cSMichael J. Spencer // It's bad to merge clusters which would degrade the density too much. 147b842725cSMichael J. Spencer static bool isNewDensityBad(Cluster &A, Cluster &B) { 148b842725cSMichael J. Spencer double NewDensity = double(A.Weight + B.Weight) / double(A.Size + B.Size); 149b842725cSMichael J. Spencer if (NewDensity < A.getDensity() / MAX_DENSITY_DEGRADATION) 150b842725cSMichael J. Spencer return true; 151b842725cSMichael J. Spencer return false; 152b842725cSMichael J. Spencer } 153b842725cSMichael J. Spencer 154b842725cSMichael J. Spencer static void mergeClusters(Cluster &Into, Cluster &From) { 155b842725cSMichael J. Spencer Into.Sections.insert(Into.Sections.end(), From.Sections.begin(), 156b842725cSMichael J. Spencer From.Sections.end()); 157b842725cSMichael J. Spencer Into.Size += From.Size; 158b842725cSMichael J. Spencer Into.Weight += From.Weight; 159b842725cSMichael J. Spencer From.Sections.clear(); 160b842725cSMichael J. Spencer From.Size = 0; 161b842725cSMichael J. Spencer From.Weight = 0; 162b842725cSMichael J. Spencer } 163b842725cSMichael J. Spencer 164b842725cSMichael J. Spencer // Group InputSections into clusters using the Call-Chain Clustering heuristic 165b842725cSMichael J. Spencer // then sort the clusters by density. 166b842725cSMichael J. Spencer void CallGraphSort::groupClusters() { 167b842725cSMichael J. Spencer std::vector<int> SortedSecs(Clusters.size()); 168b842725cSMichael J. Spencer std::vector<Cluster *> SecToCluster(Clusters.size()); 169b842725cSMichael J. Spencer 170b842725cSMichael J. Spencer for (int SI = 0, SE = Clusters.size(); SI != SE; ++SI) { 171b842725cSMichael J. Spencer SortedSecs[SI] = SI; 172b842725cSMichael J. Spencer SecToCluster[SI] = &Clusters[SI]; 173b842725cSMichael J. Spencer } 174b842725cSMichael J. Spencer 175b842725cSMichael J. Spencer std::stable_sort(SortedSecs.begin(), SortedSecs.end(), [&](int A, int B) { 176b842725cSMichael J. Spencer return Clusters[B].getDensity() < Clusters[A].getDensity(); 177b842725cSMichael J. Spencer }); 178b842725cSMichael J. Spencer 179b842725cSMichael J. Spencer for (int SI : SortedSecs) { 180b842725cSMichael J. Spencer // Clusters[SI] is the same as SecToClusters[SI] here because it has not 181b842725cSMichael J. Spencer // been merged into another cluster yet. 182b842725cSMichael J. Spencer Cluster &C = Clusters[SI]; 183b842725cSMichael J. Spencer 184b842725cSMichael J. Spencer int BestPred = -1; 185b842725cSMichael J. Spencer uint64_t BestWeight = 0; 186b842725cSMichael J. Spencer 187b842725cSMichael J. Spencer for (Edge &E : C.Preds) { 188b842725cSMichael J. Spencer if (BestPred == -1 || E.Weight > BestWeight) { 189b842725cSMichael J. Spencer BestPred = E.From; 190b842725cSMichael J. Spencer BestWeight = E.Weight; 191b842725cSMichael J. Spencer } 192b842725cSMichael J. Spencer } 193b842725cSMichael J. Spencer 194b842725cSMichael J. Spencer // don't consider merging if the edge is unlikely. 195b842725cSMichael J. Spencer if (BestWeight * 10 <= C.InitialWeight) 196b842725cSMichael J. Spencer continue; 197b842725cSMichael J. Spencer 198b842725cSMichael J. Spencer Cluster *PredC = SecToCluster[BestPred]; 199b842725cSMichael J. Spencer if (PredC == &C) 200b842725cSMichael J. Spencer continue; 201b842725cSMichael J. Spencer 202b842725cSMichael J. Spencer if (C.Size + PredC->Size > MAX_CLUSTER_SIZE) 203b842725cSMichael J. Spencer continue; 204b842725cSMichael J. Spencer 205b842725cSMichael J. Spencer if (isNewDensityBad(*PredC, C)) 206b842725cSMichael J. Spencer continue; 207b842725cSMichael J. Spencer 208b842725cSMichael J. Spencer // NOTE: Consider using a disjoint-set to track section -> cluster mapping 209b842725cSMichael J. Spencer // if this is ever slow. 210b842725cSMichael J. Spencer for (int SI : C.Sections) 211b842725cSMichael J. Spencer SecToCluster[SI] = PredC; 212b842725cSMichael J. Spencer 213b842725cSMichael J. Spencer mergeClusters(*PredC, C); 214b842725cSMichael J. Spencer } 215b842725cSMichael J. Spencer 216b842725cSMichael J. Spencer // Remove empty or dead nodes. Invalidates all cluster indices. 21797df22f1SGeorge Rimar llvm::erase_if(Clusters, [](const Cluster &C) { 218b842725cSMichael J. Spencer return C.Size == 0 || C.Sections.empty(); 21997df22f1SGeorge Rimar }); 220b842725cSMichael J. Spencer 221b842725cSMichael J. Spencer // Sort by density. 222*de83cbf3SGeorge Rimar std::stable_sort(Clusters.begin(), Clusters.end(), 223b842725cSMichael J. Spencer [](const Cluster &A, const Cluster &B) { 224b842725cSMichael J. Spencer return A.getDensity() > B.getDensity(); 225b842725cSMichael J. Spencer }); 226b842725cSMichael J. Spencer } 227b842725cSMichael J. Spencer 228b842725cSMichael J. Spencer DenseMap<const InputSectionBase *, int> CallGraphSort::run() { 229b842725cSMichael J. Spencer groupClusters(); 230b842725cSMichael J. Spencer 231b842725cSMichael J. Spencer // Generate order. 232b842725cSMichael J. Spencer llvm::DenseMap<const InputSectionBase *, int> OrderMap; 233b842725cSMichael J. Spencer ssize_t CurOrder = 1; 234b842725cSMichael J. Spencer 235b842725cSMichael J. Spencer for (const Cluster &C : Clusters) 236b842725cSMichael J. Spencer for (int SecIndex : C.Sections) 237b842725cSMichael J. Spencer OrderMap[Sections[SecIndex]] = CurOrder++; 238b842725cSMichael J. Spencer 239b842725cSMichael J. Spencer return OrderMap; 240b842725cSMichael J. Spencer } 241b842725cSMichael J. Spencer 242b842725cSMichael J. Spencer // Sort sections by the profile data provided by -callgraph-profile-file 243b842725cSMichael J. Spencer // 244b842725cSMichael J. Spencer // This first builds a call graph based on the profile data then merges sections 245b842725cSMichael J. Spencer // according to the C³ huristic. All clusters are then sorted by a density 246b842725cSMichael J. Spencer // metric to further improve locality. 247b842725cSMichael J. Spencer DenseMap<const InputSectionBase *, int> elf::computeCallGraphProfileOrder() { 248b842725cSMichael J. Spencer return CallGraphSort().run(); 249b842725cSMichael J. Spencer } 250