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Diego Novillo8d6568b2013-11-13 12:22:21 +00001//===- SampleProfile.cpp - Incorporate sample profiles into the IR --------===//
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 implements the SampleProfileLoader transformation. This pass
11// reads a profile file generated by a sampling profiler (e.g. Linux Perf -
12// http://perf.wiki.kernel.org/) and generates IR metadata to reflect the
13// profile information in the given profile.
14//
15// This pass generates branch weight annotations on the IR:
16//
17// - prof: Represents branch weights. This annotation is added to branches
18// to indicate the weights of each edge coming out of the branch.
19// The weight of each edge is the weight of the target block for
20// that edge. The weight of a block B is computed as the maximum
21// number of samples found in B.
22//
23//===----------------------------------------------------------------------===//
24
Xinliang David Lid38392e2016-05-27 23:20:16 +000025#include "llvm/Transforms/SampleProfile.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000026#include "llvm/ADT/ArrayRef.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000027#include "llvm/ADT/DenseMap.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000028#include "llvm/ADT/DenseSet.h"
29#include "llvm/ADT/None.h"
Diego Novillo0accb3d2014-01-10 23:23:46 +000030#include "llvm/ADT/SmallPtrSet.h"
Chandler Carruth07baed52014-01-13 08:04:33 +000031#include "llvm/ADT/SmallSet.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000032#include "llvm/ADT/SmallVector.h"
33#include "llvm/ADT/StringMap.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000034#include "llvm/ADT/StringRef.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000035#include "llvm/ADT/Twine.h"
Daniel Jasperaec2fa32016-12-19 08:22:17 +000036#include "llvm/Analysis/AssumptionCache.h"
Dehao Chen3a81f842017-09-14 17:29:56 +000037#include "llvm/Analysis/InlineCost.h"
Diego Novillo0accb3d2014-01-10 23:23:46 +000038#include "llvm/Analysis/LoopInfo.h"
Adam Nemet0965da22017-10-09 23:19:02 +000039#include "llvm/Analysis/OptimizationRemarkEmitter.h"
Dehao Chen3a81f842017-09-14 17:29:56 +000040#include "llvm/Analysis/TargetTransformInfo.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000041#include "llvm/IR/BasicBlock.h"
42#include "llvm/IR/CFG.h"
43#include "llvm/IR/CallSite.h"
44#include "llvm/IR/DebugInfoMetadata.h"
45#include "llvm/IR/DebugLoc.h"
Diego Novilloa32aa322014-03-14 21:58:59 +000046#include "llvm/IR/DiagnosticInfo.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000047#include "llvm/IR/Dominators.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000048#include "llvm/IR/Function.h"
Dehao Chen77079002017-01-20 22:56:07 +000049#include "llvm/IR/GlobalValue.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000050#include "llvm/IR/InstrTypes.h"
51#include "llvm/IR/Instruction.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000052#include "llvm/IR/Instructions.h"
Xinliang David Lid38392e2016-05-27 23:20:16 +000053#include "llvm/IR/IntrinsicInst.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000054#include "llvm/IR/LLVMContext.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000055#include "llvm/IR/MDBuilder.h"
56#include "llvm/IR/Module.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000057#include "llvm/IR/PassManager.h"
Dehao Chen1ea8bd82017-04-17 22:23:05 +000058#include "llvm/IR/ValueSymbolTable.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000059#include "llvm/Pass.h"
Dehao Chen77079002017-01-20 22:56:07 +000060#include "llvm/ProfileData/InstrProf.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000061#include "llvm/ProfileData/SampleProf.h"
Diego Novillode1ab262014-09-09 12:40:50 +000062#include "llvm/ProfileData/SampleProfReader.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000063#include "llvm/Support/Casting.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000064#include "llvm/Support/CommandLine.h"
65#include "llvm/Support/Debug.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000066#include "llvm/Support/ErrorHandling.h"
Dehao Chen8e7df832015-09-29 18:28:15 +000067#include "llvm/Support/ErrorOr.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000068#include "llvm/Support/GenericDomTree.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000069#include "llvm/Support/raw_ostream.h"
Diego Novillo4d711132015-08-25 15:25:11 +000070#include "llvm/Transforms/IPO.h"
Dehao Chen274df5e2017-01-31 17:49:37 +000071#include "llvm/Transforms/Instrumentation.h"
Dehao Chen57d1dda2016-03-03 18:09:32 +000072#include "llvm/Transforms/Utils/Cloning.h"
Eugene Zelenkof27d1612017-10-19 21:21:30 +000073#include <algorithm>
74#include <cassert>
75#include <cstdint>
76#include <functional>
77#include <limits>
78#include <map>
79#include <memory>
80#include <string>
81#include <system_error>
82#include <utility>
83#include <vector>
Diego Novillo8d6568b2013-11-13 12:22:21 +000084
85using namespace llvm;
Diego Novillode1ab262014-09-09 12:40:50 +000086using namespace sampleprof;
Diego Novillo8d6568b2013-11-13 12:22:21 +000087
Chandler Carruth964daaa2014-04-22 02:55:47 +000088#define DEBUG_TYPE "sample-profile"
89
Diego Novillo8d6568b2013-11-13 12:22:21 +000090// Command line option to specify the file to read samples from. This is
91// mainly used for debugging.
92static cl::opt<std::string> SampleProfileFile(
93 "sample-profile-file", cl::init(""), cl::value_desc("filename"),
94 cl::desc("Profile file loaded by -sample-profile"), cl::Hidden);
Eugene Zelenkof27d1612017-10-19 21:21:30 +000095
Diego Novillo0accb3d2014-01-10 23:23:46 +000096static cl::opt<unsigned> SampleProfileMaxPropagateIterations(
97 "sample-profile-max-propagate-iterations", cl::init(100),
98 cl::desc("Maximum number of iterations to go through when propagating "
99 "sample block/edge weights through the CFG."));
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000100
Diego Novillo243ea6a2015-11-23 20:12:21 +0000101static cl::opt<unsigned> SampleProfileRecordCoverage(
102 "sample-profile-check-record-coverage", cl::init(0), cl::value_desc("N"),
103 cl::desc("Emit a warning if less than N% of records in the input profile "
104 "are matched to the IR."));
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000105
Diego Novillo243ea6a2015-11-23 20:12:21 +0000106static cl::opt<unsigned> SampleProfileSampleCoverage(
107 "sample-profile-check-sample-coverage", cl::init(0), cl::value_desc("N"),
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000108 cl::desc("Emit a warning if less than N% of samples in the input profile "
109 "are matched to the IR."));
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000110
Diego Novillob5792402015-11-27 23:14:49 +0000111static cl::opt<double> SampleProfileHotThreshold(
112 "sample-profile-inline-hot-threshold", cl::init(0.1), cl::value_desc("N"),
Diego Novillo0b6985a2015-11-24 22:38:37 +0000113 cl::desc("Inlined functions that account for more than N% of all samples "
114 "collected in the parent function, will be inlined again."));
Diego Novillo8d6568b2013-11-13 12:22:21 +0000115
116namespace {
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000117
118using BlockWeightMap = DenseMap<const BasicBlock *, uint64_t>;
119using EquivalenceClassMap = DenseMap<const BasicBlock *, const BasicBlock *>;
120using Edge = std::pair<const BasicBlock *, const BasicBlock *>;
121using EdgeWeightMap = DenseMap<Edge, uint64_t>;
122using BlockEdgeMap =
123 DenseMap<const BasicBlock *, SmallVector<const BasicBlock *, 8>>;
Diego Novilloc0dd1032013-11-26 20:37:33 +0000124
Dehao Chen0f35fa92016-12-13 22:13:18 +0000125class SampleCoverageTracker {
126public:
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000127 SampleCoverageTracker() = default;
Dehao Chen0f35fa92016-12-13 22:13:18 +0000128
129 bool markSamplesUsed(const FunctionSamples *FS, uint32_t LineOffset,
130 uint32_t Discriminator, uint64_t Samples);
131 unsigned computeCoverage(unsigned Used, unsigned Total) const;
132 unsigned countUsedRecords(const FunctionSamples *FS) const;
133 unsigned countBodyRecords(const FunctionSamples *FS) const;
134 uint64_t getTotalUsedSamples() const { return TotalUsedSamples; }
135 uint64_t countBodySamples(const FunctionSamples *FS) const;
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000136
Dehao Chen0f35fa92016-12-13 22:13:18 +0000137 void clear() {
138 SampleCoverage.clear();
139 TotalUsedSamples = 0;
140 }
141
142private:
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000143 using BodySampleCoverageMap = std::map<LineLocation, unsigned>;
144 using FunctionSamplesCoverageMap =
145 DenseMap<const FunctionSamples *, BodySampleCoverageMap>;
Dehao Chen0f35fa92016-12-13 22:13:18 +0000146
147 /// Coverage map for sampling records.
148 ///
149 /// This map keeps a record of sampling records that have been matched to
150 /// an IR instruction. This is used to detect some form of staleness in
151 /// profiles (see flag -sample-profile-check-coverage).
152 ///
153 /// Each entry in the map corresponds to a FunctionSamples instance. This is
154 /// another map that counts how many times the sample record at the
155 /// given location has been used.
156 FunctionSamplesCoverageMap SampleCoverage;
157
158 /// Number of samples used from the profile.
159 ///
160 /// When a sampling record is used for the first time, the samples from
161 /// that record are added to this accumulator. Coverage is later computed
162 /// based on the total number of samples available in this function and
163 /// its callsites.
164 ///
165 /// Note that this accumulator tracks samples used from a single function
166 /// and all the inlined callsites. Strictly, we should have a map of counters
167 /// keyed by FunctionSamples pointers, but these stats are cleared after
168 /// every function, so we just need to keep a single counter.
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000169 uint64_t TotalUsedSamples = 0;
Dehao Chen0f35fa92016-12-13 22:13:18 +0000170};
171
Diego Novillode1ab262014-09-09 12:40:50 +0000172/// \brief Sample profile pass.
Diego Novilloc0dd1032013-11-26 20:37:33 +0000173///
Diego Novillode1ab262014-09-09 12:40:50 +0000174/// This pass reads profile data from the file specified by
175/// -sample-profile-file and annotates every affected function with the
176/// profile information found in that file.
Xinliang David Lie897edb2016-05-27 22:30:44 +0000177class SampleProfileLoader {
Diego Novilloc0dd1032013-11-26 20:37:33 +0000178public:
Dehao Chenf3ed14d2017-09-12 21:55:55 +0000179 SampleProfileLoader(
Dehao Chend26dae02017-10-01 05:24:51 +0000180 StringRef Name, bool IsThinLTOPreLink,
Dehao Chen3a81f842017-09-14 17:29:56 +0000181 std::function<AssumptionCache &(Function &)> GetAssumptionCache,
182 std::function<TargetTransformInfo &(Function &)> GetTargetTransformInfo)
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000183 : GetAC(GetAssumptionCache), GetTTI(GetTargetTransformInfo),
184 Filename(Name), IsThinLTOPreLink(IsThinLTOPreLink) {}
Diego Novillode1ab262014-09-09 12:40:50 +0000185
Xinliang David Lie897edb2016-05-27 22:30:44 +0000186 bool doInitialization(Module &M);
Eli Friedman51cf2602017-08-11 21:12:04 +0000187 bool runOnModule(Module &M, ModuleAnalysisManager *AM);
Diego Novillode1ab262014-09-09 12:40:50 +0000188
189 void dump() { Reader->dump(); }
190
Diego Novillode1ab262014-09-09 12:40:50 +0000191protected:
Eli Friedman51cf2602017-08-11 21:12:04 +0000192 bool runOnFunction(Function &F, ModuleAnalysisManager *AM);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000193 unsigned getFunctionLoc(Function &F);
Diego Novillode1ab262014-09-09 12:40:50 +0000194 bool emitAnnotations(Function &F);
Dehao Chen0f35fa92016-12-13 22:13:18 +0000195 ErrorOr<uint64_t> getInstWeight(const Instruction &I);
196 ErrorOr<uint64_t> getBlockWeight(const BasicBlock *BB);
Dehao Chen41cde0b2016-09-18 23:11:37 +0000197 const FunctionSamples *findCalleeFunctionSamples(const Instruction &I) const;
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000198 std::vector<const FunctionSamples *>
Dehao Chen3f56a052017-10-10 21:13:50 +0000199 findIndirectCallFunctionSamples(const Instruction &I, uint64_t &Sum) const;
Dehao Chen67226882015-09-30 00:42:46 +0000200 const FunctionSamples *findFunctionSamples(const Instruction &I) const;
Dehao Chen4f5d8302017-09-30 20:46:15 +0000201 bool inlineCallInstruction(Instruction *I);
Dehao Chena60cdd32017-02-28 18:09:44 +0000202 bool inlineHotFunctions(Function &F,
Dehao Chenc6c051f2017-11-01 20:26:47 +0000203 DenseSet<GlobalValue::GUID> &InlinedGUIDs);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000204 void printEdgeWeight(raw_ostream &OS, Edge E);
Dehao Chen8e7df832015-09-29 18:28:15 +0000205 void printBlockWeight(raw_ostream &OS, const BasicBlock *BB) const;
206 void printBlockEquivalence(raw_ostream &OS, const BasicBlock *BB);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000207 bool computeBlockWeights(Function &F);
208 void findEquivalenceClasses(Function &F);
Jakub Kuderskib292c222017-07-14 18:26:09 +0000209 template <bool IsPostDom>
Benjamin Kramer8a752e32016-02-13 16:01:12 +0000210 void findEquivalencesFor(BasicBlock *BB1, ArrayRef<BasicBlock *> Descendants,
Jakub Kuderskib292c222017-07-14 18:26:09 +0000211 DominatorTreeBase<BasicBlock, IsPostDom> *DomTree);
212
Diego Novillo0accb3d2014-01-10 23:23:46 +0000213 void propagateWeights(Function &F);
Diego Novillo38be3332015-10-15 16:36:21 +0000214 uint64_t visitEdge(Edge E, unsigned *NumUnknownEdges, Edge *UnknownEdge);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000215 void buildEdges(Function &F);
Dehao Chenc0a1e432016-08-12 16:22:12 +0000216 bool propagateThroughEdges(Function &F, bool UpdateBlockCount);
Diego Novillo7732ae42015-08-26 20:00:27 +0000217 void computeDominanceAndLoopInfo(Function &F);
Dehao Chen448b5792017-02-05 07:32:17 +0000218 unsigned getOffset(const DILocation *DIL) const;
Diego Novilloa8a3bd22015-10-28 17:40:22 +0000219 void clearFunctionData();
Diego Novilloc0dd1032013-11-26 20:37:33 +0000220
Diego Novilloc0dd1032013-11-26 20:37:33 +0000221 /// \brief Map basic blocks to their computed weights.
222 ///
223 /// The weight of a basic block is defined to be the maximum
224 /// of all the instruction weights in that block.
225 BlockWeightMap BlockWeights;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000226
227 /// \brief Map edges to their computed weights.
228 ///
229 /// Edge weights are computed by propagating basic block weights in
230 /// SampleProfile::propagateWeights.
231 EdgeWeightMap EdgeWeights;
232
233 /// \brief Set of visited blocks during propagation.
Matthias Braunb30f2f512016-01-30 01:24:31 +0000234 SmallPtrSet<const BasicBlock *, 32> VisitedBlocks;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000235
236 /// \brief Set of visited edges during propagation.
Matthias Braunb30f2f512016-01-30 01:24:31 +0000237 SmallSet<Edge, 32> VisitedEdges;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000238
239 /// \brief Equivalence classes for block weights.
240 ///
241 /// Two blocks BB1 and BB2 are in the same equivalence class if they
242 /// dominate and post-dominate each other, and they are in the same loop
243 /// nest. When this happens, the two blocks are guaranteed to execute
244 /// the same number of times.
245 EquivalenceClassMap EquivalenceClass;
246
Dehao Chen1ea8bd82017-04-17 22:23:05 +0000247 /// Map from function name to Function *. Used to find the function from
248 /// the function name. If the function name contains suffix, additional
249 /// entry is added to map from the stripped name to the function if there
250 /// is one-to-one mapping.
251 StringMap<Function *> SymbolMap;
252
Diego Novillo0accb3d2014-01-10 23:23:46 +0000253 /// \brief Dominance, post-dominance and loop information.
Diego Novillo7732ae42015-08-26 20:00:27 +0000254 std::unique_ptr<DominatorTree> DT;
Jakub Kuderskib292c222017-07-14 18:26:09 +0000255 std::unique_ptr<PostDomTreeBase<BasicBlock>> PDT;
Diego Novillo7732ae42015-08-26 20:00:27 +0000256 std::unique_ptr<LoopInfo> LI;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000257
Dehao Chenf3ed14d2017-09-12 21:55:55 +0000258 std::function<AssumptionCache &(Function &)> GetAC;
Dehao Chen3a81f842017-09-14 17:29:56 +0000259 std::function<TargetTransformInfo &(Function &)> GetTTI;
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000260
Diego Novillo0accb3d2014-01-10 23:23:46 +0000261 /// \brief Predecessors for each basic block in the CFG.
262 BlockEdgeMap Predecessors;
263
264 /// \brief Successors for each basic block in the CFG.
265 BlockEdgeMap Successors;
Diego Novillo92aa8c22014-03-10 22:41:28 +0000266
Dehao Chen0f35fa92016-12-13 22:13:18 +0000267 SampleCoverageTracker CoverageTracker;
268
Diego Novillo8d6568b2013-11-13 12:22:21 +0000269 /// \brief Profile reader object.
Diego Novillode1ab262014-09-09 12:40:50 +0000270 std::unique_ptr<SampleProfileReader> Reader;
271
272 /// \brief Samples collected for the body of this function.
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000273 FunctionSamples *Samples = nullptr;
Diego Novillo8d6568b2013-11-13 12:22:21 +0000274
275 /// \brief Name of the profile file to load.
Dehao Chenfb699612016-12-14 22:03:08 +0000276 std::string Filename;
Diego Novilloa32aa322014-03-14 21:58:59 +0000277
Alp Toker16f98b22014-04-09 14:47:27 +0000278 /// \brief Flag indicating whether the profile input loaded successfully.
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000279 bool ProfileIsValid = false;
Diego Novillo84f06cc2015-11-27 23:14:51 +0000280
Dehao Chend26dae02017-10-01 05:24:51 +0000281 /// \brief Flag indicating if the pass is invoked in ThinLTO compile phase.
282 ///
283 /// In this phase, in annotation, we should not promote indirect calls.
284 /// Instead, we will mark GUIDs that needs to be annotated to the function.
285 bool IsThinLTOPreLink;
286
Diego Novillo84f06cc2015-11-27 23:14:51 +0000287 /// \brief Total number of samples collected in this profile.
288 ///
289 /// This is the sum of all the samples collected in all the functions executed
290 /// at runtime.
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000291 uint64_t TotalCollectedSamples = 0;
Eli Friedman51cf2602017-08-11 21:12:04 +0000292
293 /// \brief Optimization Remark Emitter used to emit diagnostic remarks.
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000294 OptimizationRemarkEmitter *ORE = nullptr;
Diego Novillo8d6568b2013-11-13 12:22:21 +0000295};
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000296
Xinliang David Lie897edb2016-05-27 22:30:44 +0000297class SampleProfileLoaderLegacyPass : public ModulePass {
298public:
299 // Class identification, replacement for typeinfo
300 static char ID;
301
Dehao Chend26dae02017-10-01 05:24:51 +0000302 SampleProfileLoaderLegacyPass(StringRef Name = SampleProfileFile,
303 bool IsThinLTOPreLink = false)
304 : ModulePass(ID), SampleLoader(Name, IsThinLTOPreLink,
Dehao Chenf3ed14d2017-09-12 21:55:55 +0000305 [&](Function &F) -> AssumptionCache & {
306 return ACT->getAssumptionCache(F);
Dehao Chen3a81f842017-09-14 17:29:56 +0000307 },
308 [&](Function &F) -> TargetTransformInfo & {
309 return TTIWP->getTTI(F);
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000310 }) {
Xinliang David Lie897edb2016-05-27 22:30:44 +0000311 initializeSampleProfileLoaderLegacyPassPass(
312 *PassRegistry::getPassRegistry());
313 }
314
315 void dump() { SampleLoader.dump(); }
316
317 bool doInitialization(Module &M) override {
318 return SampleLoader.doInitialization(M);
319 }
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000320
Mehdi Amini117296c2016-10-01 02:56:57 +0000321 StringRef getPassName() const override { return "Sample profile pass"; }
Xinliang David Lie897edb2016-05-27 22:30:44 +0000322 bool runOnModule(Module &M) override;
323
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000324 void getAnalysisUsage(AnalysisUsage &AU) const override {
325 AU.addRequired<AssumptionCacheTracker>();
Dehao Chen3a81f842017-09-14 17:29:56 +0000326 AU.addRequired<TargetTransformInfoWrapperPass>();
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000327 }
328
Xinliang David Lie897edb2016-05-27 22:30:44 +0000329private:
330 SampleProfileLoader SampleLoader;
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000331 AssumptionCacheTracker *ACT = nullptr;
332 TargetTransformInfoWrapperPass *TTIWP = nullptr;
Xinliang David Lie897edb2016-05-27 22:30:44 +0000333};
334
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000335} // end anonymous namespace
336
Diego Novillo0b6985a2015-11-24 22:38:37 +0000337/// Return true if the given callsite is hot wrt to its caller.
338///
339/// Functions that were inlined in the original binary will be represented
340/// in the inline stack in the sample profile. If the profile shows that
341/// the original inline decision was "good" (i.e., the callsite is executed
342/// frequently), then we will recreate the inline decision and apply the
343/// profile from the inlined callsite.
344///
345/// To decide whether an inlined callsite is hot, we compute the fraction
346/// of samples used by the callsite with respect to the total number of samples
347/// collected in the caller.
348///
349/// If that fraction is larger than the default given by
350/// SampleProfileHotThreshold, the callsite will be inlined again.
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000351static bool callsiteIsHot(const FunctionSamples *CallerFS,
352 const FunctionSamples *CallsiteFS) {
Diego Novillo0b6985a2015-11-24 22:38:37 +0000353 if (!CallsiteFS)
354 return false; // The callsite was not inlined in the original binary.
355
356 uint64_t ParentTotalSamples = CallerFS->getTotalSamples();
357 if (ParentTotalSamples == 0)
358 return false; // Avoid division by zero.
359
360 uint64_t CallsiteTotalSamples = CallsiteFS->getTotalSamples();
361 if (CallsiteTotalSamples == 0)
362 return false; // Callsite is trivially cold.
363
Diego Novillob5792402015-11-27 23:14:49 +0000364 double PercentSamples =
365 (double)CallsiteTotalSamples / (double)ParentTotalSamples * 100.0;
Diego Novillo0b6985a2015-11-24 22:38:37 +0000366 return PercentSamples >= SampleProfileHotThreshold;
367}
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000368
369/// Mark as used the sample record for the given function samples at
370/// (LineOffset, Discriminator).
Diego Novillof9ed08e2015-10-31 21:53:58 +0000371///
372/// \returns true if this is the first time we mark the given record.
Diego Novillo243ea6a2015-11-23 20:12:21 +0000373bool SampleCoverageTracker::markSamplesUsed(const FunctionSamples *FS,
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000374 uint32_t LineOffset,
Diego Novillo243ea6a2015-11-23 20:12:21 +0000375 uint32_t Discriminator,
376 uint64_t Samples) {
Diego Novillof9ed08e2015-10-31 21:53:58 +0000377 LineLocation Loc(LineOffset, Discriminator);
Diego Novillo243ea6a2015-11-23 20:12:21 +0000378 unsigned &Count = SampleCoverage[FS][Loc];
379 bool FirstTime = (++Count == 1);
380 if (FirstTime)
381 TotalUsedSamples += Samples;
382 return FirstTime;
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000383}
384
385/// Return the number of sample records that were applied from this profile.
Diego Novillo0b6985a2015-11-24 22:38:37 +0000386///
387/// This count does not include records from cold inlined callsites.
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000388unsigned
Diego Novillo243ea6a2015-11-23 20:12:21 +0000389SampleCoverageTracker::countUsedRecords(const FunctionSamples *FS) const {
390 auto I = SampleCoverage.find(FS);
Diego Novillo5fb49e52015-11-20 21:46:38 +0000391
Diego Novillo243ea6a2015-11-23 20:12:21 +0000392 // The size of the coverage map for FS represents the number of records
Diego Novillo5fb49e52015-11-20 21:46:38 +0000393 // that were marked used at least once.
Diego Novillof9ed08e2015-10-31 21:53:58 +0000394 unsigned Count = (I != SampleCoverage.end()) ? I->second.size() : 0;
Diego Novillo5fb49e52015-11-20 21:46:38 +0000395
396 // If there are inlined callsites in this function, count the samples found
397 // in the respective bodies. However, do not bother counting callees with 0
398 // total samples, these are callees that were never invoked at runtime.
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000399 for (const auto &I : FS->getCallsiteSamples())
400 for (const auto &J : I.second) {
401 const FunctionSamples *CalleeSamples = &J.second;
402 if (callsiteIsHot(FS, CalleeSamples))
403 Count += countUsedRecords(CalleeSamples);
404 }
Diego Novillo5fb49e52015-11-20 21:46:38 +0000405
Diego Novillof9ed08e2015-10-31 21:53:58 +0000406 return Count;
407}
408
409/// Return the number of sample records in the body of this profile.
410///
Diego Novillo0b6985a2015-11-24 22:38:37 +0000411/// This count does not include records from cold inlined callsites.
Diego Novillof9ed08e2015-10-31 21:53:58 +0000412unsigned
Diego Novillo243ea6a2015-11-23 20:12:21 +0000413SampleCoverageTracker::countBodyRecords(const FunctionSamples *FS) const {
414 unsigned Count = FS->getBodySamples().size();
Diego Novillo5fb49e52015-11-20 21:46:38 +0000415
Diego Novillo0b6985a2015-11-24 22:38:37 +0000416 // Only count records in hot callsites.
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000417 for (const auto &I : FS->getCallsiteSamples())
418 for (const auto &J : I.second) {
419 const FunctionSamples *CalleeSamples = &J.second;
420 if (callsiteIsHot(FS, CalleeSamples))
421 Count += countBodyRecords(CalleeSamples);
422 }
Diego Novillo5fb49e52015-11-20 21:46:38 +0000423
Diego Novillof9ed08e2015-10-31 21:53:58 +0000424 return Count;
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000425}
426
Diego Novillo243ea6a2015-11-23 20:12:21 +0000427/// Return the number of samples collected in the body of this profile.
428///
Diego Novillo0b6985a2015-11-24 22:38:37 +0000429/// This count does not include samples from cold inlined callsites.
Diego Novillo243ea6a2015-11-23 20:12:21 +0000430uint64_t
431SampleCoverageTracker::countBodySamples(const FunctionSamples *FS) const {
432 uint64_t Total = 0;
433 for (const auto &I : FS->getBodySamples())
434 Total += I.second.getSamples();
435
Diego Novillo0b6985a2015-11-24 22:38:37 +0000436 // Only count samples in hot callsites.
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000437 for (const auto &I : FS->getCallsiteSamples())
438 for (const auto &J : I.second) {
439 const FunctionSamples *CalleeSamples = &J.second;
440 if (callsiteIsHot(FS, CalleeSamples))
441 Total += countBodySamples(CalleeSamples);
442 }
Diego Novillo243ea6a2015-11-23 20:12:21 +0000443
444 return Total;
445}
446
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000447/// Return the fraction of sample records used in this profile.
448///
449/// The returned value is an unsigned integer in the range 0-100 indicating
450/// the percentage of sample records that were used while applying this
451/// profile to the associated function.
Diego Novillof9ed08e2015-10-31 21:53:58 +0000452unsigned SampleCoverageTracker::computeCoverage(unsigned Used,
453 unsigned Total) const {
454 assert(Used <= Total &&
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000455 "number of used records cannot exceed the total number of records");
Diego Novillof9ed08e2015-10-31 21:53:58 +0000456 return Total > 0 ? Used * 100 / Total : 100;
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000457}
Diego Novillo8d6568b2013-11-13 12:22:21 +0000458
Diego Novilloa8a3bd22015-10-28 17:40:22 +0000459/// Clear all the per-function data used to load samples and propagate weights.
460void SampleProfileLoader::clearFunctionData() {
461 BlockWeights.clear();
462 EdgeWeights.clear();
463 VisitedBlocks.clear();
464 VisitedEdges.clear();
465 EquivalenceClass.clear();
466 DT = nullptr;
467 PDT = nullptr;
468 LI = nullptr;
469 Predecessors.clear();
470 Successors.clear();
Diego Novillo1ca881c2015-11-23 16:30:17 +0000471 CoverageTracker.clear();
Diego Novilloa8a3bd22015-10-28 17:40:22 +0000472}
473
Dehao Chen448b5792017-02-05 07:32:17 +0000474/// Returns the line offset to the start line of the subprogram.
Dehao Chen10042412015-10-21 01:22:27 +0000475/// We assume that a single function will not exceed 65535 LOC.
Dehao Chen448b5792017-02-05 07:32:17 +0000476unsigned SampleProfileLoader::getOffset(const DILocation *DIL) const {
477 return (DIL->getLine() - DIL->getScope()->getSubprogram()->getLine()) &
478 0xffff;
Dehao Chen10042412015-10-21 01:22:27 +0000479}
480
Florian Hahn6b3216a2017-07-31 10:07:49 +0000481#ifndef NDEBUG
Diego Novillo0accb3d2014-01-10 23:23:46 +0000482/// \brief Print the weight of edge \p E on stream \p OS.
483///
484/// \param OS Stream to emit the output to.
485/// \param E Edge to print.
Diego Novillode1ab262014-09-09 12:40:50 +0000486void SampleProfileLoader::printEdgeWeight(raw_ostream &OS, Edge E) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000487 OS << "weight[" << E.first->getName() << "->" << E.second->getName()
488 << "]: " << EdgeWeights[E] << "\n";
489}
490
491/// \brief Print the equivalence class of block \p BB on stream \p OS.
492///
493/// \param OS Stream to emit the output to.
494/// \param BB Block to print.
Diego Novillode1ab262014-09-09 12:40:50 +0000495void SampleProfileLoader::printBlockEquivalence(raw_ostream &OS,
Dehao Chen8e7df832015-09-29 18:28:15 +0000496 const BasicBlock *BB) {
497 const BasicBlock *Equiv = EquivalenceClass[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000498 OS << "equivalence[" << BB->getName()
499 << "]: " << ((Equiv) ? EquivalenceClass[BB]->getName() : "NONE") << "\n";
500}
501
502/// \brief Print the weight of block \p BB on stream \p OS.
503///
504/// \param OS Stream to emit the output to.
505/// \param BB Block to print.
Dehao Chen8e7df832015-09-29 18:28:15 +0000506void SampleProfileLoader::printBlockWeight(raw_ostream &OS,
507 const BasicBlock *BB) const {
508 const auto &I = BlockWeights.find(BB);
Diego Novillo38be3332015-10-15 16:36:21 +0000509 uint64_t W = (I == BlockWeights.end() ? 0 : I->second);
Dehao Chen8e7df832015-09-29 18:28:15 +0000510 OS << "weight[" << BB->getName() << "]: " << W << "\n";
Diego Novillo0accb3d2014-01-10 23:23:46 +0000511}
Florian Hahn6b3216a2017-07-31 10:07:49 +0000512#endif
Diego Novillo0accb3d2014-01-10 23:23:46 +0000513
Diego Novillo0accb3d2014-01-10 23:23:46 +0000514/// \brief Get the weight for an instruction.
515///
516/// The "weight" of an instruction \p Inst is the number of samples
517/// collected on that instruction at runtime. To retrieve it, we
518/// need to compute the line number of \p Inst relative to the start of its
519/// function. We use HeaderLineno to compute the offset. We then
520/// look up the samples collected for \p Inst using BodySamples.
521///
522/// \param Inst Instruction to query.
523///
Dehao Chen8e7df832015-09-29 18:28:15 +0000524/// \returns the weight of \p Inst.
Dehao Chen94f369f2017-01-19 23:20:31 +0000525ErrorOr<uint64_t> SampleProfileLoader::getInstWeight(const Instruction &Inst) {
Benjamin Kramer4fed9282016-05-27 12:30:51 +0000526 const DebugLoc &DLoc = Inst.getDebugLoc();
Duncan P. N. Exon Smithec819c02015-03-30 19:49:49 +0000527 if (!DLoc)
Dehao Chen8e7df832015-09-29 18:28:15 +0000528 return std::error_code();
Duncan P. N. Exon Smith41a15462015-03-20 00:56:55 +0000529
Dehao Chen67226882015-09-30 00:42:46 +0000530 const FunctionSamples *FS = findFunctionSamples(Inst);
531 if (!FS)
532 return std::error_code();
Dehao Chen41dc5a62015-10-09 16:50:16 +0000533
Dehao Chenc0a1e432016-08-12 16:22:12 +0000534 // Ignore all intrinsics and branch instructions.
535 // Branch instruction usually contains debug info from sources outside of
536 // the residing basic block, thus we ignore them during annotation.
537 if (isa<BranchInst>(Inst) || isa<IntrinsicInst>(Inst))
Dehao Chena8bae822016-04-20 23:36:23 +0000538 return std::error_code();
539
Dehao Chen16f01fb2017-10-05 20:15:29 +0000540 // If a direct call/invoke instruction is inlined in profile
541 // (findCalleeFunctionSamples returns non-empty result), but not inlined here,
Dehao Chenc0a1e432016-08-12 16:22:12 +0000542 // it means that the inlined callsite has no sample, thus the call
543 // instruction should have 0 count.
Dehao Chenc632a392017-03-06 17:49:59 +0000544 if ((isa<CallInst>(Inst) || isa<InvokeInst>(Inst)) &&
Dehao Chen16f01fb2017-10-05 20:15:29 +0000545 !ImmutableCallSite(&Inst).isIndirectCall() &&
Dehao Chenc632a392017-03-06 17:49:59 +0000546 findCalleeFunctionSamples(Inst))
Dehao Chen41cde0b2016-09-18 23:11:37 +0000547 return 0;
Dehao Chenc0a1e432016-08-12 16:22:12 +0000548
Dehao Chen41dc5a62015-10-09 16:50:16 +0000549 const DILocation *DIL = DLoc;
Dehao Chen448b5792017-02-05 07:32:17 +0000550 uint32_t LineOffset = getOffset(DIL);
Dehao Chen533bc6e2017-02-23 18:27:45 +0000551 uint32_t Discriminator = DIL->getBaseDiscriminator();
Dehao Chenc632a392017-03-06 17:49:59 +0000552 ErrorOr<uint64_t> R = FS->findSamplesAt(LineOffset, Discriminator);
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000553 if (R) {
Diego Novillof9ed08e2015-10-31 21:53:58 +0000554 bool FirstMark =
Diego Novillo243ea6a2015-11-23 20:12:21 +0000555 CoverageTracker.markSamplesUsed(FS, LineOffset, Discriminator, R.get());
Diego Novillof9ed08e2015-10-31 21:53:58 +0000556 if (FirstMark) {
Vivek Pandya95906582017-10-11 17:12:59 +0000557 ORE->emit([&]() {
558 OptimizationRemarkAnalysis Remark(DEBUG_TYPE, "AppliedSamples", &Inst);
559 Remark << "Applied " << ore::NV("NumSamples", *R);
560 Remark << " samples from profile (offset: ";
561 Remark << ore::NV("LineOffset", LineOffset);
562 if (Discriminator) {
563 Remark << ".";
564 Remark << ore::NV("Discriminator", Discriminator);
565 }
566 Remark << ")";
567 return Remark;
568 });
Diego Novillof9ed08e2015-10-31 21:53:58 +0000569 }
Dehao Chen533bc6e2017-02-23 18:27:45 +0000570 DEBUG(dbgs() << " " << DLoc.getLine() << "."
571 << DIL->getBaseDiscriminator() << ":" << Inst
572 << " (line offset: " << LineOffset << "."
573 << DIL->getBaseDiscriminator() << " - weight: " << R.get()
Dehao Chen8e7df832015-09-29 18:28:15 +0000574 << ")\n");
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000575 }
Dehao Chen8e7df832015-09-29 18:28:15 +0000576 return R;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000577}
578
579/// \brief Compute the weight of a basic block.
580///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000581/// The weight of basic block \p BB is the maximum weight of all the
Dehao Chen8e7df832015-09-29 18:28:15 +0000582/// instructions in BB.
Diego Novillo0accb3d2014-01-10 23:23:46 +0000583///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000584/// \param BB The basic block to query.
Diego Novillo0accb3d2014-01-10 23:23:46 +0000585///
Dehao Chen8e7df832015-09-29 18:28:15 +0000586/// \returns the weight for \p BB.
Dehao Chen94f369f2017-01-19 23:20:31 +0000587ErrorOr<uint64_t> SampleProfileLoader::getBlockWeight(const BasicBlock *BB) {
Dehao Chen160fbc32016-09-21 16:26:51 +0000588 uint64_t Max = 0;
589 bool HasWeight = false;
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000590 for (auto &I : BB->getInstList()) {
Diego Novillo38be3332015-10-15 16:36:21 +0000591 const ErrorOr<uint64_t> &R = getInstWeight(I);
Dehao Chen160fbc32016-09-21 16:26:51 +0000592 if (R) {
593 Max = std::max(Max, R.get());
594 HasWeight = true;
Dehao Chen8e7df832015-09-29 18:28:15 +0000595 }
Diego Novillo0accb3d2014-01-10 23:23:46 +0000596 }
Dehao Chen160fbc32016-09-21 16:26:51 +0000597 return HasWeight ? ErrorOr<uint64_t>(Max) : std::error_code();
Diego Novillo0accb3d2014-01-10 23:23:46 +0000598}
599
600/// \brief Compute and store the weights of every basic block.
601///
602/// This populates the BlockWeights map by computing
603/// the weights of every basic block in the CFG.
604///
605/// \param F The function to query.
Diego Novillode1ab262014-09-09 12:40:50 +0000606bool SampleProfileLoader::computeBlockWeights(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000607 bool Changed = false;
608 DEBUG(dbgs() << "Block weights\n");
Dehao Chen8e7df832015-09-29 18:28:15 +0000609 for (const auto &BB : F) {
Diego Novillo38be3332015-10-15 16:36:21 +0000610 ErrorOr<uint64_t> Weight = getBlockWeight(&BB);
Dehao Chen8e7df832015-09-29 18:28:15 +0000611 if (Weight) {
612 BlockWeights[&BB] = Weight.get();
Dehao Chen7c41dd62015-10-01 00:26:56 +0000613 VisitedBlocks.insert(&BB);
Dehao Chen8e7df832015-09-29 18:28:15 +0000614 Changed = true;
615 }
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000616 DEBUG(printBlockWeight(dbgs(), &BB));
Diego Novillo0accb3d2014-01-10 23:23:46 +0000617 }
618
619 return Changed;
620}
621
Dehao Chen67226882015-09-30 00:42:46 +0000622/// \brief Get the FunctionSamples for a call instruction.
623///
Dehao Chen41cde0b2016-09-18 23:11:37 +0000624/// The FunctionSamples of a call/invoke instruction \p Inst is the inlined
Dehao Chen67226882015-09-30 00:42:46 +0000625/// instance in which that call instruction is calling to. It contains
626/// all samples that resides in the inlined instance. We first find the
627/// inlined instance in which the call instruction is from, then we
628/// traverse its children to find the callsite with the matching
Dehao Chen41cde0b2016-09-18 23:11:37 +0000629/// location.
Dehao Chen67226882015-09-30 00:42:46 +0000630///
Dehao Chen41cde0b2016-09-18 23:11:37 +0000631/// \param Inst Call/Invoke instruction to query.
Dehao Chen67226882015-09-30 00:42:46 +0000632///
633/// \returns The FunctionSamples pointer to the inlined instance.
634const FunctionSamples *
Dehao Chen41cde0b2016-09-18 23:11:37 +0000635SampleProfileLoader::findCalleeFunctionSamples(const Instruction &Inst) const {
Dehao Chen67226882015-09-30 00:42:46 +0000636 const DILocation *DIL = Inst.getDebugLoc();
637 if (!DIL) {
638 return nullptr;
639 }
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000640
641 StringRef CalleeName;
642 if (const CallInst *CI = dyn_cast<CallInst>(&Inst))
643 if (Function *Callee = CI->getCalledFunction())
644 CalleeName = Callee->getName();
645
Dehao Chen67226882015-09-30 00:42:46 +0000646 const FunctionSamples *FS = findFunctionSamples(Inst);
647 if (FS == nullptr)
648 return nullptr;
649
Dehao Chen448b5792017-02-05 07:32:17 +0000650 return FS->findFunctionSamplesAt(
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000651 LineLocation(getOffset(DIL), DIL->getBaseDiscriminator()), CalleeName);
652}
653
654/// Returns a vector of FunctionSamples that are the indirect call targets
Dehao Chen3f56a052017-10-10 21:13:50 +0000655/// of \p Inst. The vector is sorted by the total number of samples. Stores
656/// the total call count of the indirect call in \p Sum.
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000657std::vector<const FunctionSamples *>
658SampleProfileLoader::findIndirectCallFunctionSamples(
Dehao Chen3f56a052017-10-10 21:13:50 +0000659 const Instruction &Inst, uint64_t &Sum) const {
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000660 const DILocation *DIL = Inst.getDebugLoc();
661 std::vector<const FunctionSamples *> R;
662
663 if (!DIL) {
664 return R;
665 }
666
667 const FunctionSamples *FS = findFunctionSamples(Inst);
668 if (FS == nullptr)
669 return R;
670
Dehao Chen3f56a052017-10-10 21:13:50 +0000671 uint32_t LineOffset = getOffset(DIL);
672 uint32_t Discriminator = DIL->getBaseDiscriminator();
673
674 auto T = FS->findCallTargetMapAt(LineOffset, Discriminator);
675 Sum = 0;
676 if (T)
677 for (const auto &T_C : T.get())
678 Sum += T_C.second;
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000679 if (const FunctionSamplesMap *M = FS->findFunctionSamplesMapAt(
680 LineLocation(getOffset(DIL), DIL->getBaseDiscriminator()))) {
Eugene Zelenkof27d1612017-10-19 21:21:30 +0000681 if (M->empty())
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000682 return R;
683 for (const auto &NameFS : *M) {
Dehao Chen3f56a052017-10-10 21:13:50 +0000684 Sum += NameFS.second.getEntrySamples();
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000685 R.push_back(&NameFS.second);
686 }
687 std::sort(R.begin(), R.end(),
688 [](const FunctionSamples *L, const FunctionSamples *R) {
Dehao Chen3f56a052017-10-10 21:13:50 +0000689 return L->getEntrySamples() > R->getEntrySamples();
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000690 });
691 }
692 return R;
Dehao Chen67226882015-09-30 00:42:46 +0000693}
694
695/// \brief Get the FunctionSamples for an instruction.
696///
697/// The FunctionSamples of an instruction \p Inst is the inlined instance
698/// in which that instruction is coming from. We traverse the inline stack
699/// of that instruction, and match it with the tree nodes in the profile.
700///
701/// \param Inst Instruction to query.
702///
703/// \returns the FunctionSamples pointer to the inlined instance.
704const FunctionSamples *
705SampleProfileLoader::findFunctionSamples(const Instruction &Inst) const {
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000706 SmallVector<std::pair<LineLocation, StringRef>, 10> S;
Dehao Chen67226882015-09-30 00:42:46 +0000707 const DILocation *DIL = Inst.getDebugLoc();
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000708 if (!DIL)
Dehao Chen67226882015-09-30 00:42:46 +0000709 return Samples;
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000710
711 const DILocation *PrevDIL = DIL;
712 for (DIL = DIL->getInlinedAt(); DIL; DIL = DIL->getInlinedAt()) {
713 S.push_back(std::make_pair(
714 LineLocation(getOffset(DIL), DIL->getBaseDiscriminator()),
715 PrevDIL->getScope()->getSubprogram()->getLinkageName()));
716 PrevDIL = DIL;
Dehao Chen67226882015-09-30 00:42:46 +0000717 }
Dehao Chen67226882015-09-30 00:42:46 +0000718 if (S.size() == 0)
719 return Samples;
720 const FunctionSamples *FS = Samples;
721 for (int i = S.size() - 1; i >= 0 && FS != nullptr; i--) {
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000722 FS = FS->findFunctionSamplesAt(S[i].first, S[i].second);
Dehao Chen67226882015-09-30 00:42:46 +0000723 }
724 return FS;
725}
726
Dehao Chen4f5d8302017-09-30 20:46:15 +0000727bool SampleProfileLoader::inlineCallInstruction(Instruction *I) {
728 assert(isa<CallInst>(I) || isa<InvokeInst>(I));
729 CallSite CS(I);
730 Function *CalledFunction = CS.getCalledFunction();
731 assert(CalledFunction);
732 DebugLoc DLoc = I->getDebugLoc();
733 BasicBlock *BB = I->getParent();
734 InlineParams Params = getInlineParams();
735 Params.ComputeFullInlineCost = true;
736 // Checks if there is anything in the reachable portion of the callee at
737 // this callsite that makes this inlining potentially illegal. Need to
738 // set ComputeFullInlineCost, otherwise getInlineCost may return early
739 // when cost exceeds threshold without checking all IRs in the callee.
740 // The acutal cost does not matter because we only checks isNever() to
741 // see if it is legal to inline the callsite.
742 InlineCost Cost = getInlineCost(CS, Params, GetTTI(*CalledFunction), GetAC,
743 None, nullptr, nullptr);
744 if (Cost.isNever()) {
745 ORE->emit(OptimizationRemark(DEBUG_TYPE, "Not inline", DLoc, BB)
746 << "incompatible inlining");
747 return false;
748 }
749 InlineFunctionInfo IFI(nullptr, &GetAC);
750 if (InlineFunction(CS, IFI)) {
751 // The call to InlineFunction erases I, so we can't pass it here.
752 ORE->emit(OptimizationRemark(DEBUG_TYPE, "HotInline", DLoc, BB)
753 << "inlined hot callee '" << ore::NV("Callee", CalledFunction)
754 << "' into '" << ore::NV("Caller", BB->getParent()) << "'");
755 return true;
756 }
757 return false;
758}
759
Dehao Chen67226882015-09-30 00:42:46 +0000760/// \brief Iteratively inline hot callsites of a function.
761///
762/// Iteratively traverse all callsites of the function \p F, and find if
763/// the corresponding inlined instance exists and is hot in profile. If
764/// it is hot enough, inline the callsites and adds new callsites of the
Dehao Chen274df5e2017-01-31 17:49:37 +0000765/// callee into the caller. If the call is an indirect call, first promote
766/// it to direct call. Each indirect call is limited with a single target.
Dehao Chen67226882015-09-30 00:42:46 +0000767///
768/// \param F function to perform iterative inlining.
Dehao Chenc6c051f2017-11-01 20:26:47 +0000769/// \param InlinedGUIDs a set to be updated to include all GUIDs that are
770/// inlined in the profiled binary.
Dehao Chen67226882015-09-30 00:42:46 +0000771///
772/// \returns True if there is any inline happened.
Dehao Chena60cdd32017-02-28 18:09:44 +0000773bool SampleProfileLoader::inlineHotFunctions(
Dehao Chenc6c051f2017-11-01 20:26:47 +0000774 Function &F, DenseSet<GlobalValue::GUID> &InlinedGUIDs) {
Dehao Chen274df5e2017-01-31 17:49:37 +0000775 DenseSet<Instruction *> PromotedInsns;
Dehao Chen67226882015-09-30 00:42:46 +0000776 bool Changed = false;
777 while (true) {
778 bool LocalChanged = false;
Dehao Chen41cde0b2016-09-18 23:11:37 +0000779 SmallVector<Instruction *, 10> CIS;
Dehao Chen67226882015-09-30 00:42:46 +0000780 for (auto &BB : F) {
Dehao Chen20866ed2016-09-19 18:38:14 +0000781 bool Hot = false;
782 SmallVector<Instruction *, 10> Candidates;
Dehao Chen67226882015-09-30 00:42:46 +0000783 for (auto &I : BB.getInstList()) {
Dehao Chen41cde0b2016-09-18 23:11:37 +0000784 const FunctionSamples *FS = nullptr;
785 if ((isa<CallInst>(I) || isa<InvokeInst>(I)) &&
Andrea Di Biagioe3edef02017-04-18 10:08:53 +0000786 !isa<IntrinsicInst>(I) && (FS = findCalleeFunctionSamples(I))) {
Dehao Chen20866ed2016-09-19 18:38:14 +0000787 Candidates.push_back(&I);
Dehao Chen41cde0b2016-09-18 23:11:37 +0000788 if (callsiteIsHot(Samples, FS))
Dehao Chen20866ed2016-09-19 18:38:14 +0000789 Hot = true;
Dehao Chen41cde0b2016-09-18 23:11:37 +0000790 }
Dehao Chen67226882015-09-30 00:42:46 +0000791 }
Dehao Chen20866ed2016-09-19 18:38:14 +0000792 if (Hot) {
793 CIS.insert(CIS.begin(), Candidates.begin(), Candidates.end());
794 }
Dehao Chen67226882015-09-30 00:42:46 +0000795 }
Dehao Chen41cde0b2016-09-18 23:11:37 +0000796 for (auto I : CIS) {
Dehao Chen274df5e2017-01-31 17:49:37 +0000797 Function *CalledFunction = CallSite(I).getCalledFunction();
Dehao Chen50f2aa12017-06-21 17:57:43 +0000798 // Do not inline recursive calls.
799 if (CalledFunction == &F)
800 continue;
Dehao Chen4f5d8302017-09-30 20:46:15 +0000801 if (CallSite(I).isIndirectCall()) {
802 if (PromotedInsns.count(I))
803 continue;
Dehao Chen3f56a052017-10-10 21:13:50 +0000804 uint64_t Sum;
805 for (const auto *FS : findIndirectCallFunctionSamples(*I, Sum)) {
Dehao Chend26dae02017-10-01 05:24:51 +0000806 if (IsThinLTOPreLink) {
Dehao Chenc6c051f2017-11-01 20:26:47 +0000807 FS->findInlinedFunctions(InlinedGUIDs, F.getParent(),
808 Samples->getTotalSamples() *
809 SampleProfileHotThreshold / 100);
Dehao Chend26dae02017-10-01 05:24:51 +0000810 continue;
811 }
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000812 auto CalleeFunctionName = FS->getName();
Dehao Chene2a428b2017-06-08 20:11:57 +0000813 // If it is a recursive call, we do not inline it as it could bloat
814 // the code exponentially. There is way to better handle this, e.g.
815 // clone the caller first, and inline the cloned caller if it is
Dehao Chen4f5d8302017-09-30 20:46:15 +0000816 // recursive. As llvm does not inline recursive calls, we will
817 // simply ignore it instead of handling it explicitly.
Dehao Chene2a428b2017-06-08 20:11:57 +0000818 if (CalleeFunctionName == F.getName())
819 continue;
Dehao Chen4f5d8302017-09-30 20:46:15 +0000820
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000821 const char *Reason = "Callee function not available";
Dehao Chen1ea8bd82017-04-17 22:23:05 +0000822 auto R = SymbolMap.find(CalleeFunctionName);
Dehao Chen4f5d8302017-09-30 20:46:15 +0000823 if (R != SymbolMap.end() && R->getValue() &&
824 !R->getValue()->isDeclaration() &&
825 R->getValue()->getSubprogram() &&
826 isLegalToPromote(I, R->getValue(), &Reason)) {
Dehao Chen3f56a052017-10-10 21:13:50 +0000827 uint64_t C = FS->getEntrySamples();
Dehao Chen9bd60422017-10-06 17:04:55 +0000828 Instruction *DI = promoteIndirectCall(
Dehao Chen3f56a052017-10-10 21:13:50 +0000829 I, R->getValue(), C, Sum, false, ORE);
830 Sum -= C;
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000831 PromotedInsns.insert(I);
Dehao Chen4f5d8302017-09-30 20:46:15 +0000832 // If profile mismatches, we should not attempt to inline DI.
833 if ((isa<CallInst>(DI) || isa<InvokeInst>(DI)) &&
834 inlineCallInstruction(DI))
835 LocalChanged = true;
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000836 } else {
Dehao Chend26dae02017-10-01 05:24:51 +0000837 DEBUG(dbgs()
838 << "\nFailed to promote indirect call to "
839 << CalleeFunctionName << " because " << Reason << "\n");
Dehao Chen2c7ca9b2017-04-13 19:52:10 +0000840 }
Dehao Chen274df5e2017-01-31 17:49:37 +0000841 }
Dehao Chen4f5d8302017-09-30 20:46:15 +0000842 } else if (CalledFunction && CalledFunction->getSubprogram() &&
843 !CalledFunction->isDeclaration()) {
844 if (inlineCallInstruction(I))
845 LocalChanged = true;
Dehao Chend26dae02017-10-01 05:24:51 +0000846 } else if (IsThinLTOPreLink) {
Dehao Chenc6c051f2017-11-01 20:26:47 +0000847 findCalleeFunctionSamples(*I)->findInlinedFunctions(
848 InlinedGUIDs, F.getParent(),
Dehao Chen4f5d8302017-09-30 20:46:15 +0000849 Samples->getTotalSamples() * SampleProfileHotThreshold / 100);
Diego Novillo7963ea12015-10-26 18:52:53 +0000850 }
Dehao Chen67226882015-09-30 00:42:46 +0000851 }
852 if (LocalChanged) {
853 Changed = true;
854 } else {
855 break;
856 }
857 }
858 return Changed;
859}
860
Diego Novillo0accb3d2014-01-10 23:23:46 +0000861/// \brief Find equivalence classes for the given block.
862///
863/// This finds all the blocks that are guaranteed to execute the same
Eric Christopher572e03a2015-06-19 01:53:21 +0000864/// number of times as \p BB1. To do this, it traverses all the
Diego Novillo0accb3d2014-01-10 23:23:46 +0000865/// descendants of \p BB1 in the dominator or post-dominator tree.
866///
867/// A block BB2 will be in the same equivalence class as \p BB1 if
868/// the following holds:
869///
870/// 1- \p BB1 is a descendant of BB2 in the opposite tree. So, if BB2
871/// is a descendant of \p BB1 in the dominator tree, then BB2 should
872/// dominate BB1 in the post-dominator tree.
873///
874/// 2- Both BB2 and \p BB1 must be in the same loop.
875///
876/// For every block BB2 that meets those two requirements, we set BB2's
877/// equivalence class to \p BB1.
878///
879/// \param BB1 Block to check.
880/// \param Descendants Descendants of \p BB1 in either the dom or pdom tree.
881/// \param DomTree Opposite dominator tree. If \p Descendants is filled
882/// with blocks from \p BB1's dominator tree, then
883/// this is the post-dominator tree, and vice versa.
Jakub Kuderskib292c222017-07-14 18:26:09 +0000884template <bool IsPostDom>
Diego Novillode1ab262014-09-09 12:40:50 +0000885void SampleProfileLoader::findEquivalencesFor(
Benjamin Kramer8a752e32016-02-13 16:01:12 +0000886 BasicBlock *BB1, ArrayRef<BasicBlock *> Descendants,
Jakub Kuderskib292c222017-07-14 18:26:09 +0000887 DominatorTreeBase<BasicBlock, IsPostDom> *DomTree) {
Dehao Chen7c41dd62015-10-01 00:26:56 +0000888 const BasicBlock *EC = EquivalenceClass[BB1];
Diego Novillo38be3332015-10-15 16:36:21 +0000889 uint64_t Weight = BlockWeights[EC];
Dehao Chen8e7df832015-09-29 18:28:15 +0000890 for (const auto *BB2 : Descendants) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000891 bool IsDomParent = DomTree->dominates(BB2, BB1);
892 bool IsInSameLoop = LI->getLoopFor(BB1) == LI->getLoopFor(BB2);
Dehao Chen7c41dd62015-10-01 00:26:56 +0000893 if (BB1 != BB2 && IsDomParent && IsInSameLoop) {
894 EquivalenceClass[BB2] = EC;
Dehao Chenc0a1e432016-08-12 16:22:12 +0000895 // If BB2 is visited, then the entire EC should be marked as visited.
896 if (VisitedBlocks.count(BB2)) {
897 VisitedBlocks.insert(EC);
898 }
Diego Novillo0accb3d2014-01-10 23:23:46 +0000899
900 // If BB2 is heavier than BB1, make BB2 have the same weight
901 // as BB1.
902 //
903 // Note that we don't worry about the opposite situation here
904 // (when BB2 is lighter than BB1). We will deal with this
905 // during the propagation phase. Right now, we just want to
906 // make sure that BB1 has the largest weight of all the
907 // members of its equivalence set.
Dehao Chen7c41dd62015-10-01 00:26:56 +0000908 Weight = std::max(Weight, BlockWeights[BB2]);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000909 }
910 }
Dehao Chenc0a1e432016-08-12 16:22:12 +0000911 if (EC == &EC->getParent()->getEntryBlock()) {
912 BlockWeights[EC] = Samples->getHeadSamples() + 1;
913 } else {
914 BlockWeights[EC] = Weight;
915 }
Diego Novillo0accb3d2014-01-10 23:23:46 +0000916}
917
918/// \brief Find equivalence classes.
919///
920/// Since samples may be missing from blocks, we can fill in the gaps by setting
921/// the weights of all the blocks in the same equivalence class to the same
922/// weight. To compute the concept of equivalence, we use dominance and loop
923/// information. Two blocks B1 and B2 are in the same equivalence class if B1
924/// dominates B2, B2 post-dominates B1 and both are in the same loop.
925///
926/// \param F The function to query.
Diego Novillode1ab262014-09-09 12:40:50 +0000927void SampleProfileLoader::findEquivalenceClasses(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000928 SmallVector<BasicBlock *, 8> DominatedBBs;
929 DEBUG(dbgs() << "\nBlock equivalence classes\n");
930 // Find equivalence sets based on dominance and post-dominance information.
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000931 for (auto &BB : F) {
932 BasicBlock *BB1 = &BB;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000933
934 // Compute BB1's equivalence class once.
935 if (EquivalenceClass.count(BB1)) {
936 DEBUG(printBlockEquivalence(dbgs(), BB1));
937 continue;
938 }
939
940 // By default, blocks are in their own equivalence class.
941 EquivalenceClass[BB1] = BB1;
942
943 // Traverse all the blocks dominated by BB1. We are looking for
944 // every basic block BB2 such that:
945 //
946 // 1- BB1 dominates BB2.
947 // 2- BB2 post-dominates BB1.
948 // 3- BB1 and BB2 are in the same loop nest.
949 //
950 // If all those conditions hold, it means that BB2 is executed
951 // as many times as BB1, so they are placed in the same equivalence
952 // class by making BB2's equivalence class be BB1.
953 DominatedBBs.clear();
954 DT->getDescendants(BB1, DominatedBBs);
Diego Novillo7732ae42015-08-26 20:00:27 +0000955 findEquivalencesFor(BB1, DominatedBBs, PDT.get());
Diego Novillo0accb3d2014-01-10 23:23:46 +0000956
Diego Novillo0accb3d2014-01-10 23:23:46 +0000957 DEBUG(printBlockEquivalence(dbgs(), BB1));
958 }
959
960 // Assign weights to equivalence classes.
961 //
962 // All the basic blocks in the same equivalence class will execute
963 // the same number of times. Since we know that the head block in
964 // each equivalence class has the largest weight, assign that weight
965 // to all the blocks in that equivalence class.
966 DEBUG(dbgs() << "\nAssign the same weight to all blocks in the same class\n");
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000967 for (auto &BI : F) {
Dehao Chen8e7df832015-09-29 18:28:15 +0000968 const BasicBlock *BB = &BI;
969 const BasicBlock *EquivBB = EquivalenceClass[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000970 if (BB != EquivBB)
971 BlockWeights[BB] = BlockWeights[EquivBB];
972 DEBUG(printBlockWeight(dbgs(), BB));
973 }
974}
975
976/// \brief Visit the given edge to decide if it has a valid weight.
977///
978/// If \p E has not been visited before, we copy to \p UnknownEdge
979/// and increment the count of unknown edges.
980///
981/// \param E Edge to visit.
982/// \param NumUnknownEdges Current number of unknown edges.
983/// \param UnknownEdge Set if E has not been visited before.
984///
985/// \returns E's weight, if known. Otherwise, return 0.
Diego Novillo38be3332015-10-15 16:36:21 +0000986uint64_t SampleProfileLoader::visitEdge(Edge E, unsigned *NumUnknownEdges,
Diego Novillode1ab262014-09-09 12:40:50 +0000987 Edge *UnknownEdge) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000988 if (!VisitedEdges.count(E)) {
989 (*NumUnknownEdges)++;
990 *UnknownEdge = E;
991 return 0;
992 }
993
994 return EdgeWeights[E];
995}
996
997/// \brief Propagate weights through incoming/outgoing edges.
998///
999/// If the weight of a basic block is known, and there is only one edge
1000/// with an unknown weight, we can calculate the weight of that edge.
1001///
1002/// Similarly, if all the edges have a known count, we can calculate the
1003/// count of the basic block, if needed.
1004///
1005/// \param F Function to process.
Dehao Chenc0a1e432016-08-12 16:22:12 +00001006/// \param UpdateBlockCount Whether we should update basic block counts that
1007/// has already been annotated.
Diego Novillo0accb3d2014-01-10 23:23:46 +00001008///
1009/// \returns True if new weights were assigned to edges or blocks.
Dehao Chenc0a1e432016-08-12 16:22:12 +00001010bool SampleProfileLoader::propagateThroughEdges(Function &F,
1011 bool UpdateBlockCount) {
Diego Novillo0accb3d2014-01-10 23:23:46 +00001012 bool Changed = false;
1013 DEBUG(dbgs() << "\nPropagation through edges\n");
Dehao Chen7c41dd62015-10-01 00:26:56 +00001014 for (const auto &BI : F) {
1015 const BasicBlock *BB = &BI;
1016 const BasicBlock *EC = EquivalenceClass[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +00001017
1018 // Visit all the predecessor and successor edges to determine
1019 // which ones have a weight assigned already. Note that it doesn't
1020 // matter that we only keep track of a single unknown edge. The
1021 // only case we are interested in handling is when only a single
1022 // edge is unknown (see setEdgeOrBlockWeight).
1023 for (unsigned i = 0; i < 2; i++) {
Diego Novillo38be3332015-10-15 16:36:21 +00001024 uint64_t TotalWeight = 0;
Dehao Chen29d26412016-07-11 16:40:17 +00001025 unsigned NumUnknownEdges = 0, NumTotalEdges = 0;
1026 Edge UnknownEdge, SelfReferentialEdge, SingleEdge;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001027
1028 if (i == 0) {
1029 // First, visit all predecessor edges.
Dehao Chen29d26412016-07-11 16:40:17 +00001030 NumTotalEdges = Predecessors[BB].size();
Diego Novillob368b7d2014-10-22 16:51:50 +00001031 for (auto *Pred : Predecessors[BB]) {
1032 Edge E = std::make_pair(Pred, BB);
Diego Novillo0accb3d2014-01-10 23:23:46 +00001033 TotalWeight += visitEdge(E, &NumUnknownEdges, &UnknownEdge);
1034 if (E.first == E.second)
1035 SelfReferentialEdge = E;
1036 }
Dehao Chen29d26412016-07-11 16:40:17 +00001037 if (NumTotalEdges == 1) {
1038 SingleEdge = std::make_pair(Predecessors[BB][0], BB);
1039 }
Diego Novillo0accb3d2014-01-10 23:23:46 +00001040 } else {
1041 // On the second round, visit all successor edges.
Dehao Chen29d26412016-07-11 16:40:17 +00001042 NumTotalEdges = Successors[BB].size();
Diego Novillob368b7d2014-10-22 16:51:50 +00001043 for (auto *Succ : Successors[BB]) {
1044 Edge E = std::make_pair(BB, Succ);
Diego Novillo0accb3d2014-01-10 23:23:46 +00001045 TotalWeight += visitEdge(E, &NumUnknownEdges, &UnknownEdge);
1046 }
Dehao Chen29d26412016-07-11 16:40:17 +00001047 if (NumTotalEdges == 1) {
1048 SingleEdge = std::make_pair(BB, Successors[BB][0]);
1049 }
Diego Novillo0accb3d2014-01-10 23:23:46 +00001050 }
1051
1052 // After visiting all the edges, there are three cases that we
1053 // can handle immediately:
1054 //
1055 // - All the edge weights are known (i.e., NumUnknownEdges == 0).
1056 // In this case, we simply check that the sum of all the edges
1057 // is the same as BB's weight. If not, we change BB's weight
1058 // to match. Additionally, if BB had not been visited before,
1059 // we mark it visited.
1060 //
1061 // - Only one edge is unknown and BB has already been visited.
1062 // In this case, we can compute the weight of the edge by
1063 // subtracting the total block weight from all the known
1064 // edge weights. If the edges weight more than BB, then the
1065 // edge of the last remaining edge is set to zero.
1066 //
1067 // - There exists a self-referential edge and the weight of BB is
1068 // known. In this case, this edge can be based on BB's weight.
1069 // We add up all the other known edges and set the weight on
1070 // the self-referential edge as we did in the previous case.
1071 //
1072 // In any other case, we must continue iterating. Eventually,
1073 // all edges will get a weight, or iteration will stop when
1074 // it reaches SampleProfileMaxPropagateIterations.
1075 if (NumUnknownEdges <= 1) {
Diego Novillo38be3332015-10-15 16:36:21 +00001076 uint64_t &BBWeight = BlockWeights[EC];
Diego Novillo0accb3d2014-01-10 23:23:46 +00001077 if (NumUnknownEdges == 0) {
Dehao Chen29d26412016-07-11 16:40:17 +00001078 if (!VisitedBlocks.count(EC)) {
1079 // If we already know the weight of all edges, the weight of the
1080 // basic block can be computed. It should be no larger than the sum
1081 // of all edge weights.
1082 if (TotalWeight > BBWeight) {
1083 BBWeight = TotalWeight;
1084 Changed = true;
1085 DEBUG(dbgs() << "All edge weights for " << BB->getName()
1086 << " known. Set weight for block: ";
1087 printBlockWeight(dbgs(), BB););
1088 }
1089 } else if (NumTotalEdges == 1 &&
1090 EdgeWeights[SingleEdge] < BlockWeights[EC]) {
1091 // If there is only one edge for the visited basic block, use the
1092 // block weight to adjust edge weight if edge weight is smaller.
1093 EdgeWeights[SingleEdge] = BlockWeights[EC];
Diego Novillo0accb3d2014-01-10 23:23:46 +00001094 Changed = true;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001095 }
Dehao Chen7c41dd62015-10-01 00:26:56 +00001096 } else if (NumUnknownEdges == 1 && VisitedBlocks.count(EC)) {
Diego Novillo0accb3d2014-01-10 23:23:46 +00001097 // If there is a single unknown edge and the block has been
1098 // visited, then we can compute E's weight.
1099 if (BBWeight >= TotalWeight)
1100 EdgeWeights[UnknownEdge] = BBWeight - TotalWeight;
1101 else
1102 EdgeWeights[UnknownEdge] = 0;
Dehao Chenc0a1e432016-08-12 16:22:12 +00001103 const BasicBlock *OtherEC;
1104 if (i == 0)
1105 OtherEC = EquivalenceClass[UnknownEdge.first];
1106 else
1107 OtherEC = EquivalenceClass[UnknownEdge.second];
1108 // Edge weights should never exceed the BB weights it connects.
1109 if (VisitedBlocks.count(OtherEC) &&
1110 EdgeWeights[UnknownEdge] > BlockWeights[OtherEC])
1111 EdgeWeights[UnknownEdge] = BlockWeights[OtherEC];
Diego Novillo0accb3d2014-01-10 23:23:46 +00001112 VisitedEdges.insert(UnknownEdge);
1113 Changed = true;
1114 DEBUG(dbgs() << "Set weight for edge: ";
1115 printEdgeWeight(dbgs(), UnknownEdge));
1116 }
Dehao Chenc0a1e432016-08-12 16:22:12 +00001117 } else if (VisitedBlocks.count(EC) && BlockWeights[EC] == 0) {
1118 // If a block Weights 0, all its in/out edges should weight 0.
1119 if (i == 0) {
1120 for (auto *Pred : Predecessors[BB]) {
1121 Edge E = std::make_pair(Pred, BB);
1122 EdgeWeights[E] = 0;
1123 VisitedEdges.insert(E);
1124 }
1125 } else {
1126 for (auto *Succ : Successors[BB]) {
1127 Edge E = std::make_pair(BB, Succ);
1128 EdgeWeights[E] = 0;
1129 VisitedEdges.insert(E);
1130 }
1131 }
Dehao Chen7c41dd62015-10-01 00:26:56 +00001132 } else if (SelfReferentialEdge.first && VisitedBlocks.count(EC)) {
Diego Novillo38be3332015-10-15 16:36:21 +00001133 uint64_t &BBWeight = BlockWeights[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +00001134 // We have a self-referential edge and the weight of BB is known.
1135 if (BBWeight >= TotalWeight)
1136 EdgeWeights[SelfReferentialEdge] = BBWeight - TotalWeight;
1137 else
1138 EdgeWeights[SelfReferentialEdge] = 0;
1139 VisitedEdges.insert(SelfReferentialEdge);
1140 Changed = true;
1141 DEBUG(dbgs() << "Set self-referential edge weight to: ";
1142 printEdgeWeight(dbgs(), SelfReferentialEdge));
1143 }
Dehao Chenc0a1e432016-08-12 16:22:12 +00001144 if (UpdateBlockCount && !VisitedBlocks.count(EC) && TotalWeight > 0) {
1145 BlockWeights[EC] = TotalWeight;
1146 VisitedBlocks.insert(EC);
1147 Changed = true;
1148 }
Diego Novillo0accb3d2014-01-10 23:23:46 +00001149 }
1150 }
1151
1152 return Changed;
1153}
1154
1155/// \brief Build in/out edge lists for each basic block in the CFG.
1156///
1157/// We are interested in unique edges. If a block B1 has multiple
1158/// edges to another block B2, we only add a single B1->B2 edge.
Diego Novillode1ab262014-09-09 12:40:50 +00001159void SampleProfileLoader::buildEdges(Function &F) {
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001160 for (auto &BI : F) {
1161 BasicBlock *B1 = &BI;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001162
1163 // Add predecessors for B1.
1164 SmallPtrSet<BasicBlock *, 16> Visited;
1165 if (!Predecessors[B1].empty())
1166 llvm_unreachable("Found a stale predecessors list in a basic block.");
Duncan P. N. Exon Smith6c990152014-07-21 17:06:51 +00001167 for (pred_iterator PI = pred_begin(B1), PE = pred_end(B1); PI != PE; ++PI) {
1168 BasicBlock *B2 = *PI;
David Blaikie70573dc2014-11-19 07:49:26 +00001169 if (Visited.insert(B2).second)
Diego Novillo0accb3d2014-01-10 23:23:46 +00001170 Predecessors[B1].push_back(B2);
1171 }
1172
1173 // Add successors for B1.
1174 Visited.clear();
1175 if (!Successors[B1].empty())
1176 llvm_unreachable("Found a stale successors list in a basic block.");
Duncan P. N. Exon Smith6c990152014-07-21 17:06:51 +00001177 for (succ_iterator SI = succ_begin(B1), SE = succ_end(B1); SI != SE; ++SI) {
1178 BasicBlock *B2 = *SI;
David Blaikie70573dc2014-11-19 07:49:26 +00001179 if (Visited.insert(B2).second)
Diego Novillo0accb3d2014-01-10 23:23:46 +00001180 Successors[B1].push_back(B2);
1181 }
1182 }
1183}
1184
Dehao Chen77079002017-01-20 22:56:07 +00001185/// Sorts the CallTargetMap \p M by count in descending order and stores the
1186/// sorted result in \p Sorted. Returns the total counts.
1187static uint64_t SortCallTargets(SmallVector<InstrProfValueData, 2> &Sorted,
1188 const SampleRecord::CallTargetMap &M) {
1189 Sorted.clear();
1190 uint64_t Sum = 0;
1191 for (auto I = M.begin(); I != M.end(); ++I) {
1192 Sum += I->getValue();
1193 Sorted.push_back({Function::getGUID(I->getKey()), I->getValue()});
1194 }
1195 std::sort(Sorted.begin(), Sorted.end(),
1196 [](const InstrProfValueData &L, const InstrProfValueData &R) {
1197 if (L.Count == R.Count)
1198 return L.Value > R.Value;
1199 else
1200 return L.Count > R.Count;
1201 });
1202 return Sum;
1203}
1204
Diego Novillo0accb3d2014-01-10 23:23:46 +00001205/// \brief Propagate weights into edges
1206///
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001207/// The following rules are applied to every block BB in the CFG:
Diego Novillo0accb3d2014-01-10 23:23:46 +00001208///
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001209/// - If BB has a single predecessor/successor, then the weight
Diego Novillo0accb3d2014-01-10 23:23:46 +00001210/// of that edge is the weight of the block.
1211///
1212/// - If all incoming or outgoing edges are known except one, and the
1213/// weight of the block is already known, the weight of the unknown
1214/// edge will be the weight of the block minus the sum of all the known
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001215/// edges. If the sum of all the known edges is larger than BB's weight,
Diego Novillo0accb3d2014-01-10 23:23:46 +00001216/// we set the unknown edge weight to zero.
1217///
1218/// - If there is a self-referential edge, and the weight of the block is
1219/// known, the weight for that edge is set to the weight of the block
1220/// minus the weight of the other incoming edges to that block (if
1221/// known).
Diego Novillode1ab262014-09-09 12:40:50 +00001222void SampleProfileLoader::propagateWeights(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +00001223 bool Changed = true;
Diego Novillo38be3332015-10-15 16:36:21 +00001224 unsigned I = 0;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001225
Dehao Chenc0a1e432016-08-12 16:22:12 +00001226 // If BB weight is larger than its corresponding loop's header BB weight,
1227 // use the BB weight to replace the loop header BB weight.
1228 for (auto &BI : F) {
1229 BasicBlock *BB = &BI;
1230 Loop *L = LI->getLoopFor(BB);
1231 if (!L) {
1232 continue;
1233 }
1234 BasicBlock *Header = L->getHeader();
1235 if (Header && BlockWeights[BB] > BlockWeights[Header]) {
1236 BlockWeights[Header] = BlockWeights[BB];
1237 }
1238 }
Diego Novilloffc84e32015-05-13 17:04:29 +00001239
Diego Novillo0accb3d2014-01-10 23:23:46 +00001240 // Before propagation starts, build, for each block, a list of
1241 // unique predecessors and successors. This is necessary to handle
1242 // identical edges in multiway branches. Since we visit all blocks and all
1243 // edges of the CFG, it is cleaner to build these lists once at the start
1244 // of the pass.
1245 buildEdges(F);
1246
1247 // Propagate until we converge or we go past the iteration limit.
Diego Novillo38be3332015-10-15 16:36:21 +00001248 while (Changed && I++ < SampleProfileMaxPropagateIterations) {
Dehao Chenc0a1e432016-08-12 16:22:12 +00001249 Changed = propagateThroughEdges(F, false);
1250 }
1251
1252 // The first propagation propagates BB counts from annotated BBs to unknown
1253 // BBs. The 2nd propagation pass resets edges weights, and use all BB weights
1254 // to propagate edge weights.
1255 VisitedEdges.clear();
1256 Changed = true;
1257 while (Changed && I++ < SampleProfileMaxPropagateIterations) {
1258 Changed = propagateThroughEdges(F, false);
1259 }
1260
1261 // The 3rd propagation pass allows adjust annotated BB weights that are
1262 // obviously wrong.
1263 Changed = true;
1264 while (Changed && I++ < SampleProfileMaxPropagateIterations) {
1265 Changed = propagateThroughEdges(F, true);
Diego Novillo0accb3d2014-01-10 23:23:46 +00001266 }
1267
1268 // Generate MD_prof metadata for every branch instruction using the
1269 // edge weights computed during propagation.
1270 DEBUG(dbgs() << "\nPropagation complete. Setting branch weights\n");
Diego Novillo7963ea12015-10-26 18:52:53 +00001271 LLVMContext &Ctx = F.getContext();
1272 MDBuilder MDB(Ctx);
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001273 for (auto &BI : F) {
1274 BasicBlock *BB = &BI;
Dehao Chen9232f982016-07-11 16:48:54 +00001275
1276 if (BlockWeights[BB]) {
1277 for (auto &I : BB->getInstList()) {
Dehao Chen77079002017-01-20 22:56:07 +00001278 if (!isa<CallInst>(I) && !isa<InvokeInst>(I))
1279 continue;
1280 CallSite CS(&I);
1281 if (!CS.getCalledFunction()) {
1282 const DebugLoc &DLoc = I.getDebugLoc();
1283 if (!DLoc)
1284 continue;
1285 const DILocation *DIL = DLoc;
Dehao Chen448b5792017-02-05 07:32:17 +00001286 uint32_t LineOffset = getOffset(DIL);
Dehao Chen533bc6e2017-02-23 18:27:45 +00001287 uint32_t Discriminator = DIL->getBaseDiscriminator();
Dehao Chen77079002017-01-20 22:56:07 +00001288
1289 const FunctionSamples *FS = findFunctionSamples(I);
1290 if (!FS)
1291 continue;
1292 auto T = FS->findCallTargetMapAt(LineOffset, Discriminator);
Eugene Zelenkof27d1612017-10-19 21:21:30 +00001293 if (!T || T.get().empty())
Dehao Chen77079002017-01-20 22:56:07 +00001294 continue;
1295 SmallVector<InstrProfValueData, 2> SortedCallTargets;
1296 uint64_t Sum = SortCallTargets(SortedCallTargets, T.get());
1297 annotateValueSite(*I.getParent()->getParent()->getParent(), I,
1298 SortedCallTargets, Sum, IPVK_IndirectCallTarget,
1299 SortedCallTargets.size());
1300 } else if (!dyn_cast<IntrinsicInst>(&I)) {
1301 SmallVector<uint32_t, 1> Weights;
1302 Weights.push_back(BlockWeights[BB]);
1303 I.setMetadata(LLVMContext::MD_prof, MDB.createBranchWeights(Weights));
Dehao Chen9232f982016-07-11 16:48:54 +00001304 }
1305 }
1306 }
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001307 TerminatorInst *TI = BB->getTerminator();
Diego Novillo0accb3d2014-01-10 23:23:46 +00001308 if (TI->getNumSuccessors() == 1)
1309 continue;
1310 if (!isa<BranchInst>(TI) && !isa<SwitchInst>(TI))
1311 continue;
1312
Andrea Di Biagio517e3fc2017-04-18 11:27:58 +00001313 DebugLoc BranchLoc = TI->getDebugLoc();
Diego Novillo0accb3d2014-01-10 23:23:46 +00001314 DEBUG(dbgs() << "\nGetting weights for branch at line "
Andrea Di Biagio517e3fc2017-04-18 11:27:58 +00001315 << ((BranchLoc) ? Twine(BranchLoc.getLine())
1316 : Twine("<UNKNOWN LOCATION>"))
1317 << ".\n");
Diego Novillo38be3332015-10-15 16:36:21 +00001318 SmallVector<uint32_t, 4> Weights;
Diego Novillo7963ea12015-10-26 18:52:53 +00001319 uint32_t MaxWeight = 0;
Eli Friedman51cf2602017-08-11 21:12:04 +00001320 Instruction *MaxDestInst;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001321 for (unsigned I = 0; I < TI->getNumSuccessors(); ++I) {
1322 BasicBlock *Succ = TI->getSuccessor(I);
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001323 Edge E = std::make_pair(BB, Succ);
Diego Novillo38be3332015-10-15 16:36:21 +00001324 uint64_t Weight = EdgeWeights[E];
Diego Novillo0accb3d2014-01-10 23:23:46 +00001325 DEBUG(dbgs() << "\t"; printEdgeWeight(dbgs(), E));
Diego Novillo38be3332015-10-15 16:36:21 +00001326 // Use uint32_t saturated arithmetic to adjust the incoming weights,
1327 // if needed. Sample counts in profiles are 64-bit unsigned values,
1328 // but internally branch weights are expressed as 32-bit values.
1329 if (Weight > std::numeric_limits<uint32_t>::max()) {
1330 DEBUG(dbgs() << " (saturated due to uint32_t overflow)");
1331 Weight = std::numeric_limits<uint32_t>::max();
1332 }
Dehao Chenc0a1e432016-08-12 16:22:12 +00001333 // Weight is added by one to avoid propagation errors introduced by
1334 // 0 weights.
1335 Weights.push_back(static_cast<uint32_t>(Weight + 1));
Diego Novillo7963ea12015-10-26 18:52:53 +00001336 if (Weight != 0) {
1337 if (Weight > MaxWeight) {
1338 MaxWeight = Weight;
Eli Friedman51cf2602017-08-11 21:12:04 +00001339 MaxDestInst = Succ->getFirstNonPHIOrDbgOrLifetime();
Diego Novillo7963ea12015-10-26 18:52:53 +00001340 }
1341 }
Diego Novillo0accb3d2014-01-10 23:23:46 +00001342 }
1343
Dehao Chen53a0c082017-03-23 14:43:10 +00001344 uint64_t TempWeight;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001345 // Only set weights if there is at least one non-zero weight.
1346 // In any other case, let the analyzer set weights.
Dehao Chen53a0c082017-03-23 14:43:10 +00001347 // Do not set weights if the weights are present. In ThinLTO, the profile
1348 // annotation is done twice. If the first annotation already set the
1349 // weights, the second pass does not need to set it.
1350 if (MaxWeight > 0 && !TI->extractProfTotalWeight(TempWeight)) {
Dehao Chen82667d02016-09-19 16:33:41 +00001351 DEBUG(dbgs() << "SUCCESS. Found non-zero weights.\n");
Eugene Zelenkof27d1612017-10-19 21:21:30 +00001352 TI->setMetadata(LLVMContext::MD_prof,
Dehao Chen82667d02016-09-19 16:33:41 +00001353 MDB.createBranchWeights(Weights));
Vivek Pandya95906582017-10-11 17:12:59 +00001354 ORE->emit([&]() {
1355 return OptimizationRemark(DEBUG_TYPE, "PopularDest", MaxDestInst)
1356 << "most popular destination for conditional branches at "
1357 << ore::NV("CondBranchesLoc", BranchLoc);
1358 });
Dehao Chen82667d02016-09-19 16:33:41 +00001359 } else {
1360 DEBUG(dbgs() << "SKIPPED. All branch weights are zero.\n");
1361 }
Diego Novillo0accb3d2014-01-10 23:23:46 +00001362 }
1363}
1364
1365/// \brief Get the line number for the function header.
1366///
1367/// This looks up function \p F in the current compilation unit and
1368/// retrieves the line number where the function is defined. This is
1369/// line 0 for all the samples read from the profile file. Every line
1370/// number is relative to this line.
1371///
1372/// \param F Function object to query.
1373///
Diego Novilloa32aa322014-03-14 21:58:59 +00001374/// \returns the line number where \p F is defined. If it returns 0,
1375/// it means that there is no debug information available for \p F.
Diego Novillode1ab262014-09-09 12:40:50 +00001376unsigned SampleProfileLoader::getFunctionLoc(Function &F) {
Pete Cooperadebb932016-03-11 02:14:16 +00001377 if (DISubprogram *S = F.getSubprogram())
Duncan P. N. Exon Smith537b4a82015-04-14 03:40:37 +00001378 return S->getLine();
Diego Novillo0accb3d2014-01-10 23:23:46 +00001379
Diego Novilloaa555072015-10-27 18:41:46 +00001380 // If the start of \p F is missing, emit a diagnostic to inform the user
Diego Novillo8027b802014-10-22 12:59:00 +00001381 // about the missed opportunity.
David Blaikie61079682014-03-16 01:36:18 +00001382 F.getContext().diagnose(DiagnosticInfoSampleProfile(
Diego Novilloa67c0b42014-10-22 13:36:35 +00001383 "No debug information found in function " + F.getName() +
1384 ": Function profile not used",
1385 DS_Warning));
Diego Novilloa32aa322014-03-14 21:58:59 +00001386 return 0;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001387}
1388
Diego Novillo7732ae42015-08-26 20:00:27 +00001389void SampleProfileLoader::computeDominanceAndLoopInfo(Function &F) {
1390 DT.reset(new DominatorTree);
1391 DT->recalculate(F);
1392
Jakub Kuderskib292c222017-07-14 18:26:09 +00001393 PDT.reset(new PostDomTreeBase<BasicBlock>());
Diego Novillo7732ae42015-08-26 20:00:27 +00001394 PDT->recalculate(F);
1395
1396 LI.reset(new LoopInfo);
1397 LI->analyze(*DT);
1398}
1399
Diego Novillo0accb3d2014-01-10 23:23:46 +00001400/// \brief Generate branch weight metadata for all branches in \p F.
1401///
1402/// Branch weights are computed out of instruction samples using a
1403/// propagation heuristic. Propagation proceeds in 3 phases:
1404///
1405/// 1- Assignment of block weights. All the basic blocks in the function
1406/// are initial assigned the same weight as their most frequently
1407/// executed instruction.
1408///
1409/// 2- Creation of equivalence classes. Since samples may be missing from
1410/// blocks, we can fill in the gaps by setting the weights of all the
1411/// blocks in the same equivalence class to the same weight. To compute
1412/// the concept of equivalence, we use dominance and loop information.
1413/// Two blocks B1 and B2 are in the same equivalence class if B1
1414/// dominates B2, B2 post-dominates B1 and both are in the same loop.
1415///
1416/// 3- Propagation of block weights into edges. This uses a simple
1417/// propagation heuristic. The following rules are applied to every
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001418/// block BB in the CFG:
Diego Novillo0accb3d2014-01-10 23:23:46 +00001419///
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001420/// - If BB has a single predecessor/successor, then the weight
Diego Novillo0accb3d2014-01-10 23:23:46 +00001421/// of that edge is the weight of the block.
1422///
1423/// - If all the edges are known except one, and the weight of the
1424/// block is already known, the weight of the unknown edge will
1425/// be the weight of the block minus the sum of all the known
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001426/// edges. If the sum of all the known edges is larger than BB's weight,
Diego Novillo0accb3d2014-01-10 23:23:46 +00001427/// we set the unknown edge weight to zero.
1428///
1429/// - If there is a self-referential edge, and the weight of the block is
1430/// known, the weight for that edge is set to the weight of the block
1431/// minus the weight of the other incoming edges to that block (if
1432/// known).
1433///
1434/// Since this propagation is not guaranteed to finalize for every CFG, we
1435/// only allow it to proceed for a limited number of iterations (controlled
1436/// by -sample-profile-max-propagate-iterations).
1437///
1438/// FIXME: Try to replace this propagation heuristic with a scheme
1439/// that is guaranteed to finalize. A work-list approach similar to
1440/// the standard value propagation algorithm used by SSA-CCP might
1441/// work here.
1442///
1443/// Once all the branch weights are computed, we emit the MD_prof
Diego Novillo19e7b7e2014-10-22 18:39:50 +00001444/// metadata on BB using the computed values for each of its branches.
Diego Novillo0accb3d2014-01-10 23:23:46 +00001445///
1446/// \param F The function to query.
Diego Novilloa32aa322014-03-14 21:58:59 +00001447///
1448/// \returns true if \p F was modified. Returns false, otherwise.
Diego Novillode1ab262014-09-09 12:40:50 +00001449bool SampleProfileLoader::emitAnnotations(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +00001450 bool Changed = false;
1451
Dehao Chen41dc5a62015-10-09 16:50:16 +00001452 if (getFunctionLoc(F) == 0)
Diego Novilloa32aa322014-03-14 21:58:59 +00001453 return false;
1454
Diego Novillo0accb3d2014-01-10 23:23:46 +00001455 DEBUG(dbgs() << "Line number for the first instruction in " << F.getName()
Dehao Chen41dc5a62015-10-09 16:50:16 +00001456 << ": " << getFunctionLoc(F) << "\n");
Diego Novillo0accb3d2014-01-10 23:23:46 +00001457
Dehao Chenc6c051f2017-11-01 20:26:47 +00001458 DenseSet<GlobalValue::GUID> InlinedGUIDs;
1459 Changed |= inlineHotFunctions(F, InlinedGUIDs);
Dehao Chen67226882015-09-30 00:42:46 +00001460
Diego Novillo0accb3d2014-01-10 23:23:46 +00001461 // Compute basic block weights.
1462 Changed |= computeBlockWeights(F);
1463
1464 if (Changed) {
Dehao Chena60cdd32017-02-28 18:09:44 +00001465 // Add an entry count to the function using the samples gathered at the
Dehao Chenc6c051f2017-11-01 20:26:47 +00001466 // function entry.
1467 // Sets the GUIDs that are inlined in the profiled binary. This is used
1468 // for ThinLink to make correct liveness analysis, and also make the IR
1469 // match the profiled binary before annotation.
1470 F.setEntryCount(Samples->getHeadSamples() + 1, &InlinedGUIDs);
Dehao Chena60cdd32017-02-28 18:09:44 +00001471
Diego Novillo7732ae42015-08-26 20:00:27 +00001472 // Compute dominance and loop info needed for propagation.
1473 computeDominanceAndLoopInfo(F);
1474
Diego Novillo0accb3d2014-01-10 23:23:46 +00001475 // Find equivalence classes.
1476 findEquivalenceClasses(F);
1477
1478 // Propagate weights to all edges.
1479 propagateWeights(F);
1480 }
1481
Diego Novillof9ed08e2015-10-31 21:53:58 +00001482 // If coverage checking was requested, compute it now.
Diego Novillo243ea6a2015-11-23 20:12:21 +00001483 if (SampleProfileRecordCoverage) {
1484 unsigned Used = CoverageTracker.countUsedRecords(Samples);
1485 unsigned Total = CoverageTracker.countBodyRecords(Samples);
Diego Novillof9ed08e2015-10-31 21:53:58 +00001486 unsigned Coverage = CoverageTracker.computeCoverage(Used, Total);
Diego Novillo243ea6a2015-11-23 20:12:21 +00001487 if (Coverage < SampleProfileRecordCoverage) {
Diego Novillof9ed08e2015-10-31 21:53:58 +00001488 F.getContext().diagnose(DiagnosticInfoSampleProfile(
Pete Cooperadebb932016-03-11 02:14:16 +00001489 F.getSubprogram()->getFilename(), getFunctionLoc(F),
Diego Novillof9ed08e2015-10-31 21:53:58 +00001490 Twine(Used) + " of " + Twine(Total) + " available profile records (" +
1491 Twine(Coverage) + "%) were applied",
1492 DS_Warning));
1493 }
1494 }
1495
Diego Novillo243ea6a2015-11-23 20:12:21 +00001496 if (SampleProfileSampleCoverage) {
1497 uint64_t Used = CoverageTracker.getTotalUsedSamples();
1498 uint64_t Total = CoverageTracker.countBodySamples(Samples);
1499 unsigned Coverage = CoverageTracker.computeCoverage(Used, Total);
1500 if (Coverage < SampleProfileSampleCoverage) {
1501 F.getContext().diagnose(DiagnosticInfoSampleProfile(
Pete Cooperadebb932016-03-11 02:14:16 +00001502 F.getSubprogram()->getFilename(), getFunctionLoc(F),
Diego Novillo243ea6a2015-11-23 20:12:21 +00001503 Twine(Used) + " of " + Twine(Total) + " available profile samples (" +
1504 Twine(Coverage) + "%) were applied",
1505 DS_Warning));
1506 }
1507 }
Diego Novillo0accb3d2014-01-10 23:23:46 +00001508 return Changed;
1509}
1510
Xinliang David Lie897edb2016-05-27 22:30:44 +00001511char SampleProfileLoaderLegacyPass::ID = 0;
Eugene Zelenkof27d1612017-10-19 21:21:30 +00001512
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001513INITIALIZE_PASS_BEGIN(SampleProfileLoaderLegacyPass, "sample-profile",
1514 "Sample Profile loader", false, false)
1515INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker)
Dehao Chen3a81f842017-09-14 17:29:56 +00001516INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001517INITIALIZE_PASS_END(SampleProfileLoaderLegacyPass, "sample-profile",
1518 "Sample Profile loader", false, false)
Diego Novilloc0dd1032013-11-26 20:37:33 +00001519
1520bool SampleProfileLoader::doInitialization(Module &M) {
Diego Novillo7732ae42015-08-26 20:00:27 +00001521 auto &Ctx = M.getContext();
Diego Novillo4d711132015-08-25 15:25:11 +00001522 auto ReaderOrErr = SampleProfileReader::create(Filename, Ctx);
Diego Novillofcd55602014-11-03 00:51:45 +00001523 if (std::error_code EC = ReaderOrErr.getError()) {
Diego Novilloc572e922014-10-30 18:00:06 +00001524 std::string Msg = "Could not open profile: " + EC.message();
David Blaikie2297a912015-11-02 20:01:13 +00001525 Ctx.diagnose(DiagnosticInfoSampleProfile(Filename, Msg));
Diego Novilloc572e922014-10-30 18:00:06 +00001526 return false;
1527 }
Diego Novillofcd55602014-11-03 00:51:45 +00001528 Reader = std::move(ReaderOrErr.get());
Diego Novilloc572e922014-10-30 18:00:06 +00001529 ProfileIsValid = (Reader->read() == sampleprof_error::success);
Diego Novilloc0dd1032013-11-26 20:37:33 +00001530 return true;
1531}
1532
Diego Novillo4d711132015-08-25 15:25:11 +00001533ModulePass *llvm::createSampleProfileLoaderPass() {
Xinliang David Lie897edb2016-05-27 22:30:44 +00001534 return new SampleProfileLoaderLegacyPass(SampleProfileFile);
Diego Novilloc0dd1032013-11-26 20:37:33 +00001535}
1536
Diego Novillo4d711132015-08-25 15:25:11 +00001537ModulePass *llvm::createSampleProfileLoaderPass(StringRef Name) {
Xinliang David Lie897edb2016-05-27 22:30:44 +00001538 return new SampleProfileLoaderLegacyPass(Name);
Diego Novilloc0dd1032013-11-26 20:37:33 +00001539}
1540
Eli Friedman51cf2602017-08-11 21:12:04 +00001541bool SampleProfileLoader::runOnModule(Module &M, ModuleAnalysisManager *AM) {
Diego Novilloa8a3bd22015-10-28 17:40:22 +00001542 if (!ProfileIsValid)
1543 return false;
1544
Diego Novillo84f06cc2015-11-27 23:14:51 +00001545 // Compute the total number of samples collected in this profile.
1546 for (const auto &I : Reader->getProfiles())
1547 TotalCollectedSamples += I.second.getTotalSamples();
1548
Dehao Chen1ea8bd82017-04-17 22:23:05 +00001549 // Populate the symbol map.
1550 for (const auto &N_F : M.getValueSymbolTable()) {
1551 std::string OrigName = N_F.getKey();
1552 Function *F = dyn_cast<Function>(N_F.getValue());
1553 if (F == nullptr)
1554 continue;
1555 SymbolMap[OrigName] = F;
1556 auto pos = OrigName.find('.');
1557 if (pos != std::string::npos) {
1558 std::string NewName = OrigName.substr(0, pos);
1559 auto r = SymbolMap.insert(std::make_pair(NewName, F));
1560 // Failiing to insert means there is already an entry in SymbolMap,
1561 // thus there are multiple functions that are mapped to the same
1562 // stripped name. In this case of name conflicting, set the value
1563 // to nullptr to avoid confusion.
1564 if (!r.second)
1565 r.first->second = nullptr;
1566 }
1567 }
1568
Diego Novillo4d711132015-08-25 15:25:11 +00001569 bool retval = false;
1570 for (auto &F : M)
Diego Novilloa8a3bd22015-10-28 17:40:22 +00001571 if (!F.isDeclaration()) {
1572 clearFunctionData();
Eli Friedman51cf2602017-08-11 21:12:04 +00001573 retval |= runOnFunction(F, AM);
Diego Novilloa8a3bd22015-10-28 17:40:22 +00001574 }
Dehao Chen40dd8c52016-12-14 22:06:49 +00001575 if (M.getProfileSummary() == nullptr)
1576 M.setProfileSummary(Reader->getSummary().getMD(M.getContext()));
Diego Novillo4d711132015-08-25 15:25:11 +00001577 return retval;
1578}
1579
Xinliang David Lie897edb2016-05-27 22:30:44 +00001580bool SampleProfileLoaderLegacyPass::runOnModule(Module &M) {
Dehao Chenf3ed14d2017-09-12 21:55:55 +00001581 ACT = &getAnalysis<AssumptionCacheTracker>();
Dehao Chen3a81f842017-09-14 17:29:56 +00001582 TTIWP = &getAnalysis<TargetTransformInfoWrapperPass>();
Eli Friedman51cf2602017-08-11 21:12:04 +00001583 return SampleLoader.runOnModule(M, nullptr);
Xinliang David Lie897edb2016-05-27 22:30:44 +00001584}
1585
Eli Friedman51cf2602017-08-11 21:12:04 +00001586bool SampleProfileLoader::runOnFunction(Function &F, ModuleAnalysisManager *AM) {
Dehao Chen6c73b492016-02-22 22:46:21 +00001587 F.setEntryCount(0);
Eli Friedman51cf2602017-08-11 21:12:04 +00001588 std::unique_ptr<OptimizationRemarkEmitter> OwnedORE;
1589 if (AM) {
1590 auto &FAM =
1591 AM->getResult<FunctionAnalysisManagerModuleProxy>(*F.getParent())
1592 .getManager();
1593 ORE = &FAM.getResult<OptimizationRemarkEmitterAnalysis>(F);
1594 } else {
1595 OwnedORE = make_unique<OptimizationRemarkEmitter>(&F);
1596 ORE = OwnedORE.get();
1597 }
Diego Novillode1ab262014-09-09 12:40:50 +00001598 Samples = Reader->getSamplesFor(F);
Dehao Chen4a435e02017-03-14 17:33:01 +00001599 if (Samples && !Samples->empty())
Diego Novillode1ab262014-09-09 12:40:50 +00001600 return emitAnnotations(F);
Diego Novillo0accb3d2014-01-10 23:23:46 +00001601 return false;
Diego Novillo8d6568b2013-11-13 12:22:21 +00001602}
Xinliang David Lid38392e2016-05-27 23:20:16 +00001603
1604PreservedAnalyses SampleProfileLoaderPass::run(Module &M,
Sean Silvafd03ac62016-08-09 00:28:38 +00001605 ModuleAnalysisManager &AM) {
Dehao Chenf3ed14d2017-09-12 21:55:55 +00001606 FunctionAnalysisManager &FAM =
1607 AM.getResult<FunctionAnalysisManagerModuleProxy>(M).getManager();
Xinliang David Lid38392e2016-05-27 23:20:16 +00001608
Dehao Chenf3ed14d2017-09-12 21:55:55 +00001609 auto GetAssumptionCache = [&](Function &F) -> AssumptionCache & {
1610 return FAM.getResult<AssumptionAnalysis>(F);
1611 };
Dehao Chen3a81f842017-09-14 17:29:56 +00001612 auto GetTTI = [&](Function &F) -> TargetTransformInfo & {
1613 return FAM.getResult<TargetIRAnalysis>(F);
1614 };
Dehao Chenf3ed14d2017-09-12 21:55:55 +00001615
Dehao Chend26dae02017-10-01 05:24:51 +00001616 SampleProfileLoader SampleLoader(
1617 ProfileFileName.empty() ? SampleProfileFile : ProfileFileName,
1618 IsThinLTOPreLink, GetAssumptionCache, GetTTI);
Xinliang David Lid38392e2016-05-27 23:20:16 +00001619
1620 SampleLoader.doInitialization(M);
1621
Eli Friedman51cf2602017-08-11 21:12:04 +00001622 if (!SampleLoader.runOnModule(M, &AM))
Xinliang David Lid38392e2016-05-27 23:20:16 +00001623 return PreservedAnalyses::all();
1624
1625 return PreservedAnalyses::none();
1626}