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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
Diego Novillo8d6568b2013-11-13 12:22:21 +000025#include "llvm/ADT/DenseMap.h"
Diego Novillo0accb3d2014-01-10 23:23:46 +000026#include "llvm/ADT/SmallPtrSet.h"
Chandler Carruth07baed52014-01-13 08:04:33 +000027#include "llvm/ADT/SmallSet.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000028#include "llvm/ADT/StringRef.h"
Diego Novillo0accb3d2014-01-10 23:23:46 +000029#include "llvm/Analysis/LoopInfo.h"
Chandler Carruth07baed52014-01-13 08:04:33 +000030#include "llvm/Analysis/PostDominators.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000031#include "llvm/IR/Constants.h"
Chandler Carruth9a4c9e52014-03-06 00:46:21 +000032#include "llvm/IR/DebugInfo.h"
Diego Novilloa32aa322014-03-14 21:58:59 +000033#include "llvm/IR/DiagnosticInfo.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000034#include "llvm/IR/Dominators.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000035#include "llvm/IR/Function.h"
Chandler Carruth83948572014-03-04 10:30:26 +000036#include "llvm/IR/InstIterator.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000037#include "llvm/IR/Instructions.h"
38#include "llvm/IR/LLVMContext.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000039#include "llvm/IR/MDBuilder.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000040#include "llvm/IR/Metadata.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000041#include "llvm/IR/Module.h"
42#include "llvm/Pass.h"
Diego Novillode1ab262014-09-09 12:40:50 +000043#include "llvm/ProfileData/SampleProfReader.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000044#include "llvm/Support/CommandLine.h"
45#include "llvm/Support/Debug.h"
Dehao Chen8e7df832015-09-29 18:28:15 +000046#include "llvm/Support/ErrorOr.h"
Diego Novillo8d6568b2013-11-13 12:22:21 +000047#include "llvm/Support/raw_ostream.h"
Diego Novillo4d711132015-08-25 15:25:11 +000048#include "llvm/Transforms/IPO.h"
Dehao Chen67226882015-09-30 00:42:46 +000049#include "llvm/Transforms/Utils/Cloning.h"
Logan Chien61c6df02014-02-22 06:34:10 +000050#include <cctype>
Diego Novillo8d6568b2013-11-13 12:22:21 +000051
52using namespace llvm;
Diego Novillode1ab262014-09-09 12:40:50 +000053using namespace sampleprof;
Diego Novillo8d6568b2013-11-13 12:22:21 +000054
Chandler Carruth964daaa2014-04-22 02:55:47 +000055#define DEBUG_TYPE "sample-profile"
56
Diego Novillo8d6568b2013-11-13 12:22:21 +000057// Command line option to specify the file to read samples from. This is
58// mainly used for debugging.
59static cl::opt<std::string> SampleProfileFile(
60 "sample-profile-file", cl::init(""), cl::value_desc("filename"),
61 cl::desc("Profile file loaded by -sample-profile"), cl::Hidden);
Diego Novillo0accb3d2014-01-10 23:23:46 +000062static cl::opt<unsigned> SampleProfileMaxPropagateIterations(
63 "sample-profile-max-propagate-iterations", cl::init(100),
64 cl::desc("Maximum number of iterations to go through when propagating "
65 "sample block/edge weights through the CFG."));
Diego Novillo748b3ffe2015-10-28 22:30:25 +000066static cl::opt<unsigned> SampleProfileCoverage(
67 "sample-profile-check-coverage", cl::init(0), cl::value_desc("N"),
68 cl::desc("Emit a warning if less than N% of samples in the input profile "
69 "are matched to the IR."));
Diego Novillo8d6568b2013-11-13 12:22:21 +000070
71namespace {
Diego Novillo38be3332015-10-15 16:36:21 +000072typedef DenseMap<const BasicBlock *, uint64_t> BlockWeightMap;
Dehao Chen8e7df832015-09-29 18:28:15 +000073typedef DenseMap<const BasicBlock *, const BasicBlock *> EquivalenceClassMap;
74typedef std::pair<const BasicBlock *, const BasicBlock *> Edge;
Diego Novillo38be3332015-10-15 16:36:21 +000075typedef DenseMap<Edge, uint64_t> EdgeWeightMap;
Dehao Chen8e7df832015-09-29 18:28:15 +000076typedef DenseMap<const BasicBlock *, SmallVector<const BasicBlock *, 8>>
77 BlockEdgeMap;
Diego Novilloc0dd1032013-11-26 20:37:33 +000078
Diego Novillode1ab262014-09-09 12:40:50 +000079/// \brief Sample profile pass.
Diego Novilloc0dd1032013-11-26 20:37:33 +000080///
Diego Novillode1ab262014-09-09 12:40:50 +000081/// This pass reads profile data from the file specified by
82/// -sample-profile-file and annotates every affected function with the
83/// profile information found in that file.
Diego Novillo4d711132015-08-25 15:25:11 +000084class SampleProfileLoader : public ModulePass {
Diego Novilloc0dd1032013-11-26 20:37:33 +000085public:
Diego Novillode1ab262014-09-09 12:40:50 +000086 // Class identification, replacement for typeinfo
87 static char ID;
Diego Novilloc0dd1032013-11-26 20:37:33 +000088
Diego Novillode1ab262014-09-09 12:40:50 +000089 SampleProfileLoader(StringRef Name = SampleProfileFile)
Diego Novillo7732ae42015-08-26 20:00:27 +000090 : ModulePass(ID), DT(nullptr), PDT(nullptr), LI(nullptr), Reader(),
91 Samples(nullptr), Filename(Name), ProfileIsValid(false) {
Diego Novillode1ab262014-09-09 12:40:50 +000092 initializeSampleProfileLoaderPass(*PassRegistry::getPassRegistry());
93 }
94
95 bool doInitialization(Module &M) override;
96
97 void dump() { Reader->dump(); }
98
99 const char *getPassName() const override { return "Sample profile pass"; }
100
Diego Novillo4d711132015-08-25 15:25:11 +0000101 bool runOnModule(Module &M) override;
Diego Novillode1ab262014-09-09 12:40:50 +0000102
103 void getAnalysisUsage(AnalysisUsage &AU) const override {
104 AU.setPreservesCFG();
Diego Novillode1ab262014-09-09 12:40:50 +0000105 }
106
107protected:
Diego Novillo4d711132015-08-25 15:25:11 +0000108 bool runOnFunction(Function &F);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000109 unsigned getFunctionLoc(Function &F);
Diego Novillode1ab262014-09-09 12:40:50 +0000110 bool emitAnnotations(Function &F);
Diego Novillo38be3332015-10-15 16:36:21 +0000111 ErrorOr<uint64_t> getInstWeight(const Instruction &I) const;
112 ErrorOr<uint64_t> getBlockWeight(const BasicBlock *BB) const;
Dehao Chen67226882015-09-30 00:42:46 +0000113 const FunctionSamples *findCalleeFunctionSamples(const CallInst &I) const;
114 const FunctionSamples *findFunctionSamples(const Instruction &I) const;
115 bool inlineHotFunctions(Function &F);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000116 void printEdgeWeight(raw_ostream &OS, Edge E);
Dehao Chen8e7df832015-09-29 18:28:15 +0000117 void printBlockWeight(raw_ostream &OS, const BasicBlock *BB) const;
118 void printBlockEquivalence(raw_ostream &OS, const BasicBlock *BB);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000119 bool computeBlockWeights(Function &F);
120 void findEquivalenceClasses(Function &F);
121 void findEquivalencesFor(BasicBlock *BB1,
122 SmallVector<BasicBlock *, 8> Descendants,
123 DominatorTreeBase<BasicBlock> *DomTree);
124 void propagateWeights(Function &F);
Diego Novillo38be3332015-10-15 16:36:21 +0000125 uint64_t visitEdge(Edge E, unsigned *NumUnknownEdges, Edge *UnknownEdge);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000126 void buildEdges(Function &F);
127 bool propagateThroughEdges(Function &F);
Diego Novillo7732ae42015-08-26 20:00:27 +0000128 void computeDominanceAndLoopInfo(Function &F);
Dehao Chen10042412015-10-21 01:22:27 +0000129 unsigned getOffset(unsigned L, unsigned H) const;
Diego Novilloa8a3bd22015-10-28 17:40:22 +0000130 void clearFunctionData();
Diego Novilloc0dd1032013-11-26 20:37:33 +0000131
Diego Novilloc0dd1032013-11-26 20:37:33 +0000132 /// \brief Map basic blocks to their computed weights.
133 ///
134 /// The weight of a basic block is defined to be the maximum
135 /// of all the instruction weights in that block.
136 BlockWeightMap BlockWeights;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000137
138 /// \brief Map edges to their computed weights.
139 ///
140 /// Edge weights are computed by propagating basic block weights in
141 /// SampleProfile::propagateWeights.
142 EdgeWeightMap EdgeWeights;
143
144 /// \brief Set of visited blocks during propagation.
Dehao Chen8e7df832015-09-29 18:28:15 +0000145 SmallPtrSet<const BasicBlock *, 128> VisitedBlocks;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000146
147 /// \brief Set of visited edges during propagation.
148 SmallSet<Edge, 128> VisitedEdges;
149
150 /// \brief Equivalence classes for block weights.
151 ///
152 /// Two blocks BB1 and BB2 are in the same equivalence class if they
153 /// dominate and post-dominate each other, and they are in the same loop
154 /// nest. When this happens, the two blocks are guaranteed to execute
155 /// the same number of times.
156 EquivalenceClassMap EquivalenceClass;
157
158 /// \brief Dominance, post-dominance and loop information.
Diego Novillo7732ae42015-08-26 20:00:27 +0000159 std::unique_ptr<DominatorTree> DT;
160 std::unique_ptr<DominatorTreeBase<BasicBlock>> PDT;
161 std::unique_ptr<LoopInfo> LI;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000162
163 /// \brief Predecessors for each basic block in the CFG.
164 BlockEdgeMap Predecessors;
165
166 /// \brief Successors for each basic block in the CFG.
167 BlockEdgeMap Successors;
Diego Novillo92aa8c22014-03-10 22:41:28 +0000168
Diego Novillo8d6568b2013-11-13 12:22:21 +0000169 /// \brief Profile reader object.
Diego Novillode1ab262014-09-09 12:40:50 +0000170 std::unique_ptr<SampleProfileReader> Reader;
171
172 /// \brief Samples collected for the body of this function.
173 FunctionSamples *Samples;
Diego Novillo8d6568b2013-11-13 12:22:21 +0000174
175 /// \brief Name of the profile file to load.
176 StringRef Filename;
Diego Novilloa32aa322014-03-14 21:58:59 +0000177
Alp Toker16f98b22014-04-09 14:47:27 +0000178 /// \brief Flag indicating whether the profile input loaded successfully.
Diego Novilloa32aa322014-03-14 21:58:59 +0000179 bool ProfileIsValid;
Diego Novillo8d6568b2013-11-13 12:22:21 +0000180};
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000181
182class SampleCoverageTracker {
183public:
184 SampleCoverageTracker() : SampleCoverage() {}
185
186 void markSamplesUsed(const FunctionSamples *Samples, uint32_t LineOffset,
187 uint32_t Discriminator);
188 unsigned computeCoverage(const FunctionSamples *Samples) const;
189 unsigned getNumUsedSamples(const FunctionSamples *Samples) const;
190
191private:
192 typedef DenseMap<LineLocation, unsigned> BodySampleCoverageMap;
193 typedef DenseMap<const FunctionSamples *, BodySampleCoverageMap>
194 FunctionSamplesCoverageMap;
195
196 /// Coverage map for sampling records.
197 ///
198 /// This map keeps a record of sampling records that have been matched to
199 /// an IR instruction. This is used to detect some form of staleness in
200 /// profiles (see flag -sample-profile-check-coverage).
201 ///
202 /// Each entry in the map corresponds to a FunctionSamples instance. This is
203 /// another map that counts how many times the sample record at the
204 /// given location has been used.
205 FunctionSamplesCoverageMap SampleCoverage;
206};
207
208SampleCoverageTracker CoverageTracker;
209}
210
211/// Mark as used the sample record for the given function samples at
212/// (LineOffset, Discriminator).
213void SampleCoverageTracker::markSamplesUsed(const FunctionSamples *Samples,
214 uint32_t LineOffset,
215 uint32_t Discriminator) {
216 BodySampleCoverageMap &Coverage = SampleCoverage[Samples];
217 Coverage[LineLocation(LineOffset, Discriminator)]++;
218}
219
220/// Return the number of sample records that were applied from this profile.
221unsigned
222SampleCoverageTracker::getNumUsedSamples(const FunctionSamples *Samples) const {
223 auto I = SampleCoverage.find(Samples);
224 return (I != SampleCoverage.end()) ? I->second.size() : 0;
225}
226
227/// Return the fraction of sample records used in this profile.
228///
229/// The returned value is an unsigned integer in the range 0-100 indicating
230/// the percentage of sample records that were used while applying this
231/// profile to the associated function.
232unsigned
233SampleCoverageTracker::computeCoverage(const FunctionSamples *Samples) const {
234 uint32_t NumTotalRecords = Samples->getBodySamples().size();
235 uint32_t NumUsedRecords = getNumUsedSamples(Samples);
236 assert(NumUsedRecords <= NumTotalRecords &&
237 "number of used records cannot exceed the total number of records");
238 return NumTotalRecords > 0 ? NumUsedRecords * 100 / NumTotalRecords : 100;
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000239}
Diego Novillo8d6568b2013-11-13 12:22:21 +0000240
Diego Novilloa8a3bd22015-10-28 17:40:22 +0000241/// Clear all the per-function data used to load samples and propagate weights.
242void SampleProfileLoader::clearFunctionData() {
243 BlockWeights.clear();
244 EdgeWeights.clear();
245 VisitedBlocks.clear();
246 VisitedEdges.clear();
247 EquivalenceClass.clear();
248 DT = nullptr;
249 PDT = nullptr;
250 LI = nullptr;
251 Predecessors.clear();
252 Successors.clear();
253}
254
Dehao Chen10042412015-10-21 01:22:27 +0000255/// \brief Returns the offset of lineno \p L to head_lineno \p H
256///
257/// \param L Lineno
258/// \param H Header lineno of the function
259///
260/// \returns offset to the header lineno. 16 bits are used to represent offset.
261/// We assume that a single function will not exceed 65535 LOC.
262unsigned SampleProfileLoader::getOffset(unsigned L, unsigned H) const {
263 return (L - H) & 0xffff;
264}
265
Diego Novillo0accb3d2014-01-10 23:23:46 +0000266/// \brief Print the weight of edge \p E on stream \p OS.
267///
268/// \param OS Stream to emit the output to.
269/// \param E Edge to print.
Diego Novillode1ab262014-09-09 12:40:50 +0000270void SampleProfileLoader::printEdgeWeight(raw_ostream &OS, Edge E) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000271 OS << "weight[" << E.first->getName() << "->" << E.second->getName()
272 << "]: " << EdgeWeights[E] << "\n";
273}
274
275/// \brief Print the equivalence class of block \p BB on stream \p OS.
276///
277/// \param OS Stream to emit the output to.
278/// \param BB Block to print.
Diego Novillode1ab262014-09-09 12:40:50 +0000279void SampleProfileLoader::printBlockEquivalence(raw_ostream &OS,
Dehao Chen8e7df832015-09-29 18:28:15 +0000280 const BasicBlock *BB) {
281 const BasicBlock *Equiv = EquivalenceClass[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000282 OS << "equivalence[" << BB->getName()
283 << "]: " << ((Equiv) ? EquivalenceClass[BB]->getName() : "NONE") << "\n";
284}
285
286/// \brief Print the weight of block \p BB on stream \p OS.
287///
288/// \param OS Stream to emit the output to.
289/// \param BB Block to print.
Dehao Chen8e7df832015-09-29 18:28:15 +0000290void SampleProfileLoader::printBlockWeight(raw_ostream &OS,
291 const BasicBlock *BB) const {
292 const auto &I = BlockWeights.find(BB);
Diego Novillo38be3332015-10-15 16:36:21 +0000293 uint64_t W = (I == BlockWeights.end() ? 0 : I->second);
Dehao Chen8e7df832015-09-29 18:28:15 +0000294 OS << "weight[" << BB->getName() << "]: " << W << "\n";
Diego Novillo0accb3d2014-01-10 23:23:46 +0000295}
296
Diego Novillo0accb3d2014-01-10 23:23:46 +0000297/// \brief Get the weight for an instruction.
298///
299/// The "weight" of an instruction \p Inst is the number of samples
300/// collected on that instruction at runtime. To retrieve it, we
301/// need to compute the line number of \p Inst relative to the start of its
302/// function. We use HeaderLineno to compute the offset. We then
303/// look up the samples collected for \p Inst using BodySamples.
304///
305/// \param Inst Instruction to query.
306///
Dehao Chen8e7df832015-09-29 18:28:15 +0000307/// \returns the weight of \p Inst.
Diego Novillo38be3332015-10-15 16:36:21 +0000308ErrorOr<uint64_t>
Dehao Chen8e7df832015-09-29 18:28:15 +0000309SampleProfileLoader::getInstWeight(const Instruction &Inst) const {
Diego Novillo92aa8c22014-03-10 22:41:28 +0000310 DebugLoc DLoc = Inst.getDebugLoc();
Duncan P. N. Exon Smithec819c02015-03-30 19:49:49 +0000311 if (!DLoc)
Dehao Chen8e7df832015-09-29 18:28:15 +0000312 return std::error_code();
Duncan P. N. Exon Smith41a15462015-03-20 00:56:55 +0000313
Dehao Chen67226882015-09-30 00:42:46 +0000314 const FunctionSamples *FS = findFunctionSamples(Inst);
315 if (!FS)
316 return std::error_code();
Dehao Chen41dc5a62015-10-09 16:50:16 +0000317
318 const DILocation *DIL = DLoc;
319 unsigned Lineno = DLoc.getLine();
320 unsigned HeaderLineno = DIL->getScope()->getSubprogram()->getLine();
Dehao Chen41dc5a62015-10-09 16:50:16 +0000321
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000322 uint32_t LineOffset = getOffset(Lineno, HeaderLineno);
323 uint32_t Discriminator = DIL->getDiscriminator();
324 ErrorOr<uint64_t> R = FS->findSamplesAt(LineOffset, Discriminator);
325 if (R) {
326 if (SampleProfileCoverage)
327 CoverageTracker.markSamplesUsed(FS, LineOffset, Discriminator);
Dehao Chen8e7df832015-09-29 18:28:15 +0000328 DEBUG(dbgs() << " " << Lineno << "." << DIL->getDiscriminator() << ":"
329 << Inst << " (line offset: " << Lineno - HeaderLineno << "."
330 << DIL->getDiscriminator() << " - weight: " << R.get()
331 << ")\n");
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000332 }
Dehao Chen8e7df832015-09-29 18:28:15 +0000333 return R;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000334}
335
336/// \brief Compute the weight of a basic block.
337///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000338/// The weight of basic block \p BB is the maximum weight of all the
Dehao Chen8e7df832015-09-29 18:28:15 +0000339/// instructions in BB.
Diego Novillo0accb3d2014-01-10 23:23:46 +0000340///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000341/// \param BB The basic block to query.
Diego Novillo0accb3d2014-01-10 23:23:46 +0000342///
Dehao Chen8e7df832015-09-29 18:28:15 +0000343/// \returns the weight for \p BB.
Diego Novillo38be3332015-10-15 16:36:21 +0000344ErrorOr<uint64_t>
Dehao Chen8e7df832015-09-29 18:28:15 +0000345SampleProfileLoader::getBlockWeight(const BasicBlock *BB) const {
346 bool Found = false;
Diego Novillo38be3332015-10-15 16:36:21 +0000347 uint64_t Weight = 0;
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000348 for (auto &I : BB->getInstList()) {
Diego Novillo38be3332015-10-15 16:36:21 +0000349 const ErrorOr<uint64_t> &R = getInstWeight(I);
Dehao Chen8e7df832015-09-29 18:28:15 +0000350 if (R && R.get() >= Weight) {
351 Weight = R.get();
352 Found = true;
353 }
Diego Novillo0accb3d2014-01-10 23:23:46 +0000354 }
Dehao Chen8e7df832015-09-29 18:28:15 +0000355 if (Found)
356 return Weight;
357 else
358 return std::error_code();
Diego Novillo0accb3d2014-01-10 23:23:46 +0000359}
360
361/// \brief Compute and store the weights of every basic block.
362///
363/// This populates the BlockWeights map by computing
364/// the weights of every basic block in the CFG.
365///
366/// \param F The function to query.
Diego Novillode1ab262014-09-09 12:40:50 +0000367bool SampleProfileLoader::computeBlockWeights(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000368 bool Changed = false;
369 DEBUG(dbgs() << "Block weights\n");
Dehao Chen8e7df832015-09-29 18:28:15 +0000370 for (const auto &BB : F) {
Diego Novillo38be3332015-10-15 16:36:21 +0000371 ErrorOr<uint64_t> Weight = getBlockWeight(&BB);
Dehao Chen8e7df832015-09-29 18:28:15 +0000372 if (Weight) {
373 BlockWeights[&BB] = Weight.get();
Dehao Chen7c41dd62015-10-01 00:26:56 +0000374 VisitedBlocks.insert(&BB);
Dehao Chen8e7df832015-09-29 18:28:15 +0000375 Changed = true;
376 }
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000377 DEBUG(printBlockWeight(dbgs(), &BB));
Diego Novillo0accb3d2014-01-10 23:23:46 +0000378 }
379
Diego Novillo748b3ffe2015-10-28 22:30:25 +0000380 if (SampleProfileCoverage) {
381 unsigned Coverage = CoverageTracker.computeCoverage(Samples);
382 if (Coverage < SampleProfileCoverage) {
383 const char *Filename = getDISubprogram(&F)->getFilename().str().c_str();
384 F.getContext().diagnose(DiagnosticInfoSampleProfile(
385 Filename, getFunctionLoc(F),
386 Twine(CoverageTracker.getNumUsedSamples(Samples)) + " of " +
387 Twine(Samples->getBodySamples().size()) +
388 " available profile records (" + Twine(Coverage) +
389 "%) were applied",
390 DS_Warning));
391 }
392 }
393
Diego Novillo0accb3d2014-01-10 23:23:46 +0000394 return Changed;
395}
396
Dehao Chen67226882015-09-30 00:42:46 +0000397/// \brief Get the FunctionSamples for a call instruction.
398///
399/// The FunctionSamples of a call instruction \p Inst is the inlined
400/// instance in which that call instruction is calling to. It contains
401/// all samples that resides in the inlined instance. We first find the
402/// inlined instance in which the call instruction is from, then we
403/// traverse its children to find the callsite with the matching
404/// location and callee function name.
405///
406/// \param Inst Call instruction to query.
407///
408/// \returns The FunctionSamples pointer to the inlined instance.
409const FunctionSamples *
410SampleProfileLoader::findCalleeFunctionSamples(const CallInst &Inst) const {
411 const DILocation *DIL = Inst.getDebugLoc();
412 if (!DIL) {
413 return nullptr;
414 }
415 DISubprogram *SP = DIL->getScope()->getSubprogram();
Dehao Chen10042412015-10-21 01:22:27 +0000416 if (!SP)
Dehao Chen67226882015-09-30 00:42:46 +0000417 return nullptr;
418
419 Function *CalleeFunc = Inst.getCalledFunction();
420 if (!CalleeFunc) {
421 return nullptr;
422 }
423
424 StringRef CalleeName = CalleeFunc->getName();
425 const FunctionSamples *FS = findFunctionSamples(Inst);
426 if (FS == nullptr)
427 return nullptr;
428
Dehao Chen10042412015-10-21 01:22:27 +0000429 return FS->findFunctionSamplesAt(
430 CallsiteLocation(getOffset(DIL->getLine(), SP->getLine()),
431 DIL->getDiscriminator(), CalleeName));
Dehao Chen67226882015-09-30 00:42:46 +0000432}
433
434/// \brief Get the FunctionSamples for an instruction.
435///
436/// The FunctionSamples of an instruction \p Inst is the inlined instance
437/// in which that instruction is coming from. We traverse the inline stack
438/// of that instruction, and match it with the tree nodes in the profile.
439///
440/// \param Inst Instruction to query.
441///
442/// \returns the FunctionSamples pointer to the inlined instance.
443const FunctionSamples *
444SampleProfileLoader::findFunctionSamples(const Instruction &Inst) const {
445 SmallVector<CallsiteLocation, 10> S;
446 const DILocation *DIL = Inst.getDebugLoc();
447 if (!DIL) {
448 return Samples;
449 }
450 StringRef CalleeName;
451 for (const DILocation *DIL = Inst.getDebugLoc(); DIL;
452 DIL = DIL->getInlinedAt()) {
453 DISubprogram *SP = DIL->getScope()->getSubprogram();
Dehao Chen10042412015-10-21 01:22:27 +0000454 if (!SP)
Dehao Chen67226882015-09-30 00:42:46 +0000455 return nullptr;
456 if (!CalleeName.empty()) {
Dehao Chen10042412015-10-21 01:22:27 +0000457 S.push_back(CallsiteLocation(getOffset(DIL->getLine(), SP->getLine()),
Dehao Chen67226882015-09-30 00:42:46 +0000458 DIL->getDiscriminator(), CalleeName));
459 }
460 CalleeName = SP->getLinkageName();
461 }
462 if (S.size() == 0)
463 return Samples;
464 const FunctionSamples *FS = Samples;
465 for (int i = S.size() - 1; i >= 0 && FS != nullptr; i--) {
466 FS = FS->findFunctionSamplesAt(S[i]);
467 }
468 return FS;
469}
470
471/// \brief Iteratively inline hot callsites of a function.
472///
473/// Iteratively traverse all callsites of the function \p F, and find if
474/// the corresponding inlined instance exists and is hot in profile. If
475/// it is hot enough, inline the callsites and adds new callsites of the
476/// callee into the caller.
477///
478/// TODO: investigate the possibility of not invoking InlineFunction directly.
479///
480/// \param F function to perform iterative inlining.
481///
482/// \returns True if there is any inline happened.
483bool SampleProfileLoader::inlineHotFunctions(Function &F) {
484 bool Changed = false;
Diego Novillo7963ea12015-10-26 18:52:53 +0000485 LLVMContext &Ctx = F.getContext();
Dehao Chen67226882015-09-30 00:42:46 +0000486 while (true) {
487 bool LocalChanged = false;
488 SmallVector<CallInst *, 10> CIS;
489 for (auto &BB : F) {
490 for (auto &I : BB.getInstList()) {
491 CallInst *CI = dyn_cast<CallInst>(&I);
492 if (CI) {
493 const FunctionSamples *FS = findCalleeFunctionSamples(*CI);
494 if (FS && FS->getTotalSamples() > 0) {
495 CIS.push_back(CI);
496 }
497 }
498 }
499 }
500 for (auto CI : CIS) {
501 InlineFunctionInfo IFI;
Diego Novillo7963ea12015-10-26 18:52:53 +0000502 Function *CalledFunction = CI->getCalledFunction();
503 DebugLoc DLoc = CI->getDebugLoc();
504 uint64_t NumSamples = findCalleeFunctionSamples(*CI)->getTotalSamples();
505 if (InlineFunction(CI, IFI)) {
Dehao Chen67226882015-09-30 00:42:46 +0000506 LocalChanged = true;
Diego Novillo7963ea12015-10-26 18:52:53 +0000507 emitOptimizationRemark(Ctx, DEBUG_TYPE, F, DLoc,
508 Twine("inlined hot callee '") +
509 CalledFunction->getName() + "' with " +
510 Twine(NumSamples) + " samples into '" +
511 F.getName() + "'");
512 }
Dehao Chen67226882015-09-30 00:42:46 +0000513 }
514 if (LocalChanged) {
515 Changed = true;
516 } else {
517 break;
518 }
519 }
520 return Changed;
521}
522
Diego Novillo0accb3d2014-01-10 23:23:46 +0000523/// \brief Find equivalence classes for the given block.
524///
525/// This finds all the blocks that are guaranteed to execute the same
Eric Christopher572e03a2015-06-19 01:53:21 +0000526/// number of times as \p BB1. To do this, it traverses all the
Diego Novillo0accb3d2014-01-10 23:23:46 +0000527/// descendants of \p BB1 in the dominator or post-dominator tree.
528///
529/// A block BB2 will be in the same equivalence class as \p BB1 if
530/// the following holds:
531///
532/// 1- \p BB1 is a descendant of BB2 in the opposite tree. So, if BB2
533/// is a descendant of \p BB1 in the dominator tree, then BB2 should
534/// dominate BB1 in the post-dominator tree.
535///
536/// 2- Both BB2 and \p BB1 must be in the same loop.
537///
538/// For every block BB2 that meets those two requirements, we set BB2's
539/// equivalence class to \p BB1.
540///
541/// \param BB1 Block to check.
542/// \param Descendants Descendants of \p BB1 in either the dom or pdom tree.
543/// \param DomTree Opposite dominator tree. If \p Descendants is filled
544/// with blocks from \p BB1's dominator tree, then
545/// this is the post-dominator tree, and vice versa.
Diego Novillode1ab262014-09-09 12:40:50 +0000546void SampleProfileLoader::findEquivalencesFor(
Diego Novillo0accb3d2014-01-10 23:23:46 +0000547 BasicBlock *BB1, SmallVector<BasicBlock *, 8> Descendants,
548 DominatorTreeBase<BasicBlock> *DomTree) {
Dehao Chen7c41dd62015-10-01 00:26:56 +0000549 const BasicBlock *EC = EquivalenceClass[BB1];
Diego Novillo38be3332015-10-15 16:36:21 +0000550 uint64_t Weight = BlockWeights[EC];
Dehao Chen8e7df832015-09-29 18:28:15 +0000551 for (const auto *BB2 : Descendants) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000552 bool IsDomParent = DomTree->dominates(BB2, BB1);
553 bool IsInSameLoop = LI->getLoopFor(BB1) == LI->getLoopFor(BB2);
Dehao Chen7c41dd62015-10-01 00:26:56 +0000554 if (BB1 != BB2 && IsDomParent && IsInSameLoop) {
555 EquivalenceClass[BB2] = EC;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000556
557 // If BB2 is heavier than BB1, make BB2 have the same weight
558 // as BB1.
559 //
560 // Note that we don't worry about the opposite situation here
561 // (when BB2 is lighter than BB1). We will deal with this
562 // during the propagation phase. Right now, we just want to
563 // make sure that BB1 has the largest weight of all the
564 // members of its equivalence set.
Dehao Chen7c41dd62015-10-01 00:26:56 +0000565 Weight = std::max(Weight, BlockWeights[BB2]);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000566 }
567 }
Dehao Chen7c41dd62015-10-01 00:26:56 +0000568 BlockWeights[EC] = Weight;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000569}
570
571/// \brief Find equivalence classes.
572///
573/// Since samples may be missing from blocks, we can fill in the gaps by setting
574/// the weights of all the blocks in the same equivalence class to the same
575/// weight. To compute the concept of equivalence, we use dominance and loop
576/// information. Two blocks B1 and B2 are in the same equivalence class if B1
577/// dominates B2, B2 post-dominates B1 and both are in the same loop.
578///
579/// \param F The function to query.
Diego Novillode1ab262014-09-09 12:40:50 +0000580void SampleProfileLoader::findEquivalenceClasses(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000581 SmallVector<BasicBlock *, 8> DominatedBBs;
582 DEBUG(dbgs() << "\nBlock equivalence classes\n");
583 // Find equivalence sets based on dominance and post-dominance information.
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000584 for (auto &BB : F) {
585 BasicBlock *BB1 = &BB;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000586
587 // Compute BB1's equivalence class once.
588 if (EquivalenceClass.count(BB1)) {
589 DEBUG(printBlockEquivalence(dbgs(), BB1));
590 continue;
591 }
592
593 // By default, blocks are in their own equivalence class.
594 EquivalenceClass[BB1] = BB1;
595
596 // Traverse all the blocks dominated by BB1. We are looking for
597 // every basic block BB2 such that:
598 //
599 // 1- BB1 dominates BB2.
600 // 2- BB2 post-dominates BB1.
601 // 3- BB1 and BB2 are in the same loop nest.
602 //
603 // If all those conditions hold, it means that BB2 is executed
604 // as many times as BB1, so they are placed in the same equivalence
605 // class by making BB2's equivalence class be BB1.
606 DominatedBBs.clear();
607 DT->getDescendants(BB1, DominatedBBs);
Diego Novillo7732ae42015-08-26 20:00:27 +0000608 findEquivalencesFor(BB1, DominatedBBs, PDT.get());
Diego Novillo0accb3d2014-01-10 23:23:46 +0000609
Diego Novillo0accb3d2014-01-10 23:23:46 +0000610 DEBUG(printBlockEquivalence(dbgs(), BB1));
611 }
612
613 // Assign weights to equivalence classes.
614 //
615 // All the basic blocks in the same equivalence class will execute
616 // the same number of times. Since we know that the head block in
617 // each equivalence class has the largest weight, assign that weight
618 // to all the blocks in that equivalence class.
619 DEBUG(dbgs() << "\nAssign the same weight to all blocks in the same class\n");
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000620 for (auto &BI : F) {
Dehao Chen8e7df832015-09-29 18:28:15 +0000621 const BasicBlock *BB = &BI;
622 const BasicBlock *EquivBB = EquivalenceClass[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000623 if (BB != EquivBB)
624 BlockWeights[BB] = BlockWeights[EquivBB];
625 DEBUG(printBlockWeight(dbgs(), BB));
626 }
627}
628
629/// \brief Visit the given edge to decide if it has a valid weight.
630///
631/// If \p E has not been visited before, we copy to \p UnknownEdge
632/// and increment the count of unknown edges.
633///
634/// \param E Edge to visit.
635/// \param NumUnknownEdges Current number of unknown edges.
636/// \param UnknownEdge Set if E has not been visited before.
637///
638/// \returns E's weight, if known. Otherwise, return 0.
Diego Novillo38be3332015-10-15 16:36:21 +0000639uint64_t SampleProfileLoader::visitEdge(Edge E, unsigned *NumUnknownEdges,
Diego Novillode1ab262014-09-09 12:40:50 +0000640 Edge *UnknownEdge) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000641 if (!VisitedEdges.count(E)) {
642 (*NumUnknownEdges)++;
643 *UnknownEdge = E;
644 return 0;
645 }
646
647 return EdgeWeights[E];
648}
649
650/// \brief Propagate weights through incoming/outgoing edges.
651///
652/// If the weight of a basic block is known, and there is only one edge
653/// with an unknown weight, we can calculate the weight of that edge.
654///
655/// Similarly, if all the edges have a known count, we can calculate the
656/// count of the basic block, if needed.
657///
658/// \param F Function to process.
659///
660/// \returns True if new weights were assigned to edges or blocks.
Diego Novillode1ab262014-09-09 12:40:50 +0000661bool SampleProfileLoader::propagateThroughEdges(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000662 bool Changed = false;
663 DEBUG(dbgs() << "\nPropagation through edges\n");
Dehao Chen7c41dd62015-10-01 00:26:56 +0000664 for (const auto &BI : F) {
665 const BasicBlock *BB = &BI;
666 const BasicBlock *EC = EquivalenceClass[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000667
668 // Visit all the predecessor and successor edges to determine
669 // which ones have a weight assigned already. Note that it doesn't
670 // matter that we only keep track of a single unknown edge. The
671 // only case we are interested in handling is when only a single
672 // edge is unknown (see setEdgeOrBlockWeight).
673 for (unsigned i = 0; i < 2; i++) {
Diego Novillo38be3332015-10-15 16:36:21 +0000674 uint64_t TotalWeight = 0;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000675 unsigned NumUnknownEdges = 0;
676 Edge UnknownEdge, SelfReferentialEdge;
677
678 if (i == 0) {
679 // First, visit all predecessor edges.
Diego Novillob368b7d2014-10-22 16:51:50 +0000680 for (auto *Pred : Predecessors[BB]) {
681 Edge E = std::make_pair(Pred, BB);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000682 TotalWeight += visitEdge(E, &NumUnknownEdges, &UnknownEdge);
683 if (E.first == E.second)
684 SelfReferentialEdge = E;
685 }
686 } else {
687 // On the second round, visit all successor edges.
Diego Novillob368b7d2014-10-22 16:51:50 +0000688 for (auto *Succ : Successors[BB]) {
689 Edge E = std::make_pair(BB, Succ);
Diego Novillo0accb3d2014-01-10 23:23:46 +0000690 TotalWeight += visitEdge(E, &NumUnknownEdges, &UnknownEdge);
691 }
692 }
693
694 // After visiting all the edges, there are three cases that we
695 // can handle immediately:
696 //
697 // - All the edge weights are known (i.e., NumUnknownEdges == 0).
698 // In this case, we simply check that the sum of all the edges
699 // is the same as BB's weight. If not, we change BB's weight
700 // to match. Additionally, if BB had not been visited before,
701 // we mark it visited.
702 //
703 // - Only one edge is unknown and BB has already been visited.
704 // In this case, we can compute the weight of the edge by
705 // subtracting the total block weight from all the known
706 // edge weights. If the edges weight more than BB, then the
707 // edge of the last remaining edge is set to zero.
708 //
709 // - There exists a self-referential edge and the weight of BB is
710 // known. In this case, this edge can be based on BB's weight.
711 // We add up all the other known edges and set the weight on
712 // the self-referential edge as we did in the previous case.
713 //
714 // In any other case, we must continue iterating. Eventually,
715 // all edges will get a weight, or iteration will stop when
716 // it reaches SampleProfileMaxPropagateIterations.
717 if (NumUnknownEdges <= 1) {
Diego Novillo38be3332015-10-15 16:36:21 +0000718 uint64_t &BBWeight = BlockWeights[EC];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000719 if (NumUnknownEdges == 0) {
720 // If we already know the weight of all edges, the weight of the
721 // basic block can be computed. It should be no larger than the sum
722 // of all edge weights.
723 if (TotalWeight > BBWeight) {
724 BBWeight = TotalWeight;
725 Changed = true;
726 DEBUG(dbgs() << "All edge weights for " << BB->getName()
727 << " known. Set weight for block: ";
728 printBlockWeight(dbgs(), BB););
729 }
Dehao Chen7c41dd62015-10-01 00:26:56 +0000730 if (VisitedBlocks.insert(EC).second)
Diego Novillo0accb3d2014-01-10 23:23:46 +0000731 Changed = true;
Dehao Chen7c41dd62015-10-01 00:26:56 +0000732 } else if (NumUnknownEdges == 1 && VisitedBlocks.count(EC)) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000733 // If there is a single unknown edge and the block has been
734 // visited, then we can compute E's weight.
735 if (BBWeight >= TotalWeight)
736 EdgeWeights[UnknownEdge] = BBWeight - TotalWeight;
737 else
738 EdgeWeights[UnknownEdge] = 0;
739 VisitedEdges.insert(UnknownEdge);
740 Changed = true;
741 DEBUG(dbgs() << "Set weight for edge: ";
742 printEdgeWeight(dbgs(), UnknownEdge));
743 }
Dehao Chen7c41dd62015-10-01 00:26:56 +0000744 } else if (SelfReferentialEdge.first && VisitedBlocks.count(EC)) {
Diego Novillo38be3332015-10-15 16:36:21 +0000745 uint64_t &BBWeight = BlockWeights[BB];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000746 // We have a self-referential edge and the weight of BB is known.
747 if (BBWeight >= TotalWeight)
748 EdgeWeights[SelfReferentialEdge] = BBWeight - TotalWeight;
749 else
750 EdgeWeights[SelfReferentialEdge] = 0;
751 VisitedEdges.insert(SelfReferentialEdge);
752 Changed = true;
753 DEBUG(dbgs() << "Set self-referential edge weight to: ";
754 printEdgeWeight(dbgs(), SelfReferentialEdge));
755 }
756 }
757 }
758
759 return Changed;
760}
761
762/// \brief Build in/out edge lists for each basic block in the CFG.
763///
764/// We are interested in unique edges. If a block B1 has multiple
765/// edges to another block B2, we only add a single B1->B2 edge.
Diego Novillode1ab262014-09-09 12:40:50 +0000766void SampleProfileLoader::buildEdges(Function &F) {
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000767 for (auto &BI : F) {
768 BasicBlock *B1 = &BI;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000769
770 // Add predecessors for B1.
771 SmallPtrSet<BasicBlock *, 16> Visited;
772 if (!Predecessors[B1].empty())
773 llvm_unreachable("Found a stale predecessors list in a basic block.");
Duncan P. N. Exon Smith6c990152014-07-21 17:06:51 +0000774 for (pred_iterator PI = pred_begin(B1), PE = pred_end(B1); PI != PE; ++PI) {
775 BasicBlock *B2 = *PI;
David Blaikie70573dc2014-11-19 07:49:26 +0000776 if (Visited.insert(B2).second)
Diego Novillo0accb3d2014-01-10 23:23:46 +0000777 Predecessors[B1].push_back(B2);
778 }
779
780 // Add successors for B1.
781 Visited.clear();
782 if (!Successors[B1].empty())
783 llvm_unreachable("Found a stale successors list in a basic block.");
Duncan P. N. Exon Smith6c990152014-07-21 17:06:51 +0000784 for (succ_iterator SI = succ_begin(B1), SE = succ_end(B1); SI != SE; ++SI) {
785 BasicBlock *B2 = *SI;
David Blaikie70573dc2014-11-19 07:49:26 +0000786 if (Visited.insert(B2).second)
Diego Novillo0accb3d2014-01-10 23:23:46 +0000787 Successors[B1].push_back(B2);
788 }
789 }
790}
791
792/// \brief Propagate weights into edges
793///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000794/// The following rules are applied to every block BB in the CFG:
Diego Novillo0accb3d2014-01-10 23:23:46 +0000795///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000796/// - If BB has a single predecessor/successor, then the weight
Diego Novillo0accb3d2014-01-10 23:23:46 +0000797/// of that edge is the weight of the block.
798///
799/// - If all incoming or outgoing edges are known except one, and the
800/// weight of the block is already known, the weight of the unknown
801/// edge will be the weight of the block minus the sum of all the known
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000802/// edges. If the sum of all the known edges is larger than BB's weight,
Diego Novillo0accb3d2014-01-10 23:23:46 +0000803/// we set the unknown edge weight to zero.
804///
805/// - If there is a self-referential edge, and the weight of the block is
806/// known, the weight for that edge is set to the weight of the block
807/// minus the weight of the other incoming edges to that block (if
808/// known).
Diego Novillode1ab262014-09-09 12:40:50 +0000809void SampleProfileLoader::propagateWeights(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000810 bool Changed = true;
Diego Novillo38be3332015-10-15 16:36:21 +0000811 unsigned I = 0;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000812
Diego Novilloffc84e32015-05-13 17:04:29 +0000813 // Add an entry count to the function using the samples gathered
814 // at the function entry.
815 F.setEntryCount(Samples->getHeadSamples());
816
Diego Novillo0accb3d2014-01-10 23:23:46 +0000817 // Before propagation starts, build, for each block, a list of
818 // unique predecessors and successors. This is necessary to handle
819 // identical edges in multiway branches. Since we visit all blocks and all
820 // edges of the CFG, it is cleaner to build these lists once at the start
821 // of the pass.
822 buildEdges(F);
823
824 // Propagate until we converge or we go past the iteration limit.
Diego Novillo38be3332015-10-15 16:36:21 +0000825 while (Changed && I++ < SampleProfileMaxPropagateIterations) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000826 Changed = propagateThroughEdges(F);
827 }
828
829 // Generate MD_prof metadata for every branch instruction using the
830 // edge weights computed during propagation.
831 DEBUG(dbgs() << "\nPropagation complete. Setting branch weights\n");
Diego Novillo7963ea12015-10-26 18:52:53 +0000832 LLVMContext &Ctx = F.getContext();
833 MDBuilder MDB(Ctx);
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000834 for (auto &BI : F) {
835 BasicBlock *BB = &BI;
836 TerminatorInst *TI = BB->getTerminator();
Diego Novillo0accb3d2014-01-10 23:23:46 +0000837 if (TI->getNumSuccessors() == 1)
838 continue;
839 if (!isa<BranchInst>(TI) && !isa<SwitchInst>(TI))
840 continue;
841
842 DEBUG(dbgs() << "\nGetting weights for branch at line "
Diego Novillo92aa8c22014-03-10 22:41:28 +0000843 << TI->getDebugLoc().getLine() << ".\n");
Diego Novillo38be3332015-10-15 16:36:21 +0000844 SmallVector<uint32_t, 4> Weights;
Diego Novillo7963ea12015-10-26 18:52:53 +0000845 uint32_t MaxWeight = 0;
Diego Novillo7963ea12015-10-26 18:52:53 +0000846 DebugLoc MaxDestLoc;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000847 for (unsigned I = 0; I < TI->getNumSuccessors(); ++I) {
848 BasicBlock *Succ = TI->getSuccessor(I);
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000849 Edge E = std::make_pair(BB, Succ);
Diego Novillo38be3332015-10-15 16:36:21 +0000850 uint64_t Weight = EdgeWeights[E];
Diego Novillo0accb3d2014-01-10 23:23:46 +0000851 DEBUG(dbgs() << "\t"; printEdgeWeight(dbgs(), E));
Diego Novillo38be3332015-10-15 16:36:21 +0000852 // Use uint32_t saturated arithmetic to adjust the incoming weights,
853 // if needed. Sample counts in profiles are 64-bit unsigned values,
854 // but internally branch weights are expressed as 32-bit values.
855 if (Weight > std::numeric_limits<uint32_t>::max()) {
856 DEBUG(dbgs() << " (saturated due to uint32_t overflow)");
857 Weight = std::numeric_limits<uint32_t>::max();
858 }
859 Weights.push_back(static_cast<uint32_t>(Weight));
Diego Novillo7963ea12015-10-26 18:52:53 +0000860 if (Weight != 0) {
861 if (Weight > MaxWeight) {
862 MaxWeight = Weight;
Diego Novillo7963ea12015-10-26 18:52:53 +0000863 MaxDestLoc = Succ->getFirstNonPHIOrDbgOrLifetime()->getDebugLoc();
864 }
865 }
Diego Novillo0accb3d2014-01-10 23:23:46 +0000866 }
867
868 // Only set weights if there is at least one non-zero weight.
869 // In any other case, let the analyzer set weights.
Diego Novillo7963ea12015-10-26 18:52:53 +0000870 if (MaxWeight > 0) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000871 DEBUG(dbgs() << "SUCCESS. Found non-zero weights.\n");
872 TI->setMetadata(llvm::LLVMContext::MD_prof,
873 MDB.createBranchWeights(Weights));
Diego Novillo7963ea12015-10-26 18:52:53 +0000874 DebugLoc BranchLoc = TI->getDebugLoc();
875 emitOptimizationRemark(
876 Ctx, DEBUG_TYPE, F, MaxDestLoc,
877 Twine("most popular destination for conditional branches at ") +
Diego Novilloc04270d2015-10-27 17:37:00 +0000878 ((BranchLoc) ? Twine(BranchLoc->getFilename() + ":" +
879 Twine(BranchLoc.getLine()) + ":" +
880 Twine(BranchLoc.getCol()))
881 : Twine("<UNKNOWN LOCATION>")));
Diego Novillo0accb3d2014-01-10 23:23:46 +0000882 } else {
883 DEBUG(dbgs() << "SKIPPED. All branch weights are zero.\n");
884 }
885 }
886}
887
888/// \brief Get the line number for the function header.
889///
890/// This looks up function \p F in the current compilation unit and
891/// retrieves the line number where the function is defined. This is
892/// line 0 for all the samples read from the profile file. Every line
893/// number is relative to this line.
894///
895/// \param F Function object to query.
896///
Diego Novilloa32aa322014-03-14 21:58:59 +0000897/// \returns the line number where \p F is defined. If it returns 0,
898/// it means that there is no debug information available for \p F.
Diego Novillode1ab262014-09-09 12:40:50 +0000899unsigned SampleProfileLoader::getFunctionLoc(Function &F) {
Duncan P. N. Exon Smitha9308c42015-04-29 16:38:44 +0000900 if (DISubprogram *S = getDISubprogram(&F))
Duncan P. N. Exon Smith537b4a82015-04-14 03:40:37 +0000901 return S->getLine();
Diego Novillo0accb3d2014-01-10 23:23:46 +0000902
Diego Novilloaa555072015-10-27 18:41:46 +0000903 // If the start of \p F is missing, emit a diagnostic to inform the user
Diego Novillo8027b802014-10-22 12:59:00 +0000904 // about the missed opportunity.
David Blaikie61079682014-03-16 01:36:18 +0000905 F.getContext().diagnose(DiagnosticInfoSampleProfile(
Diego Novilloa67c0b42014-10-22 13:36:35 +0000906 "No debug information found in function " + F.getName() +
907 ": Function profile not used",
908 DS_Warning));
Diego Novilloa32aa322014-03-14 21:58:59 +0000909 return 0;
Diego Novillo0accb3d2014-01-10 23:23:46 +0000910}
911
Diego Novillo7732ae42015-08-26 20:00:27 +0000912void SampleProfileLoader::computeDominanceAndLoopInfo(Function &F) {
913 DT.reset(new DominatorTree);
914 DT->recalculate(F);
915
916 PDT.reset(new DominatorTreeBase<BasicBlock>(true));
917 PDT->recalculate(F);
918
919 LI.reset(new LoopInfo);
920 LI->analyze(*DT);
921}
922
Diego Novillo0accb3d2014-01-10 23:23:46 +0000923/// \brief Generate branch weight metadata for all branches in \p F.
924///
925/// Branch weights are computed out of instruction samples using a
926/// propagation heuristic. Propagation proceeds in 3 phases:
927///
928/// 1- Assignment of block weights. All the basic blocks in the function
929/// are initial assigned the same weight as their most frequently
930/// executed instruction.
931///
932/// 2- Creation of equivalence classes. Since samples may be missing from
933/// blocks, we can fill in the gaps by setting the weights of all the
934/// blocks in the same equivalence class to the same weight. To compute
935/// the concept of equivalence, we use dominance and loop information.
936/// Two blocks B1 and B2 are in the same equivalence class if B1
937/// dominates B2, B2 post-dominates B1 and both are in the same loop.
938///
939/// 3- Propagation of block weights into edges. This uses a simple
940/// propagation heuristic. The following rules are applied to every
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000941/// block BB in the CFG:
Diego Novillo0accb3d2014-01-10 23:23:46 +0000942///
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000943/// - If BB has a single predecessor/successor, then the weight
Diego Novillo0accb3d2014-01-10 23:23:46 +0000944/// of that edge is the weight of the block.
945///
946/// - If all the edges are known except one, and the weight of the
947/// block is already known, the weight of the unknown edge will
948/// be the weight of the block minus the sum of all the known
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000949/// edges. If the sum of all the known edges is larger than BB's weight,
Diego Novillo0accb3d2014-01-10 23:23:46 +0000950/// we set the unknown edge weight to zero.
951///
952/// - If there is a self-referential edge, and the weight of the block is
953/// known, the weight for that edge is set to the weight of the block
954/// minus the weight of the other incoming edges to that block (if
955/// known).
956///
957/// Since this propagation is not guaranteed to finalize for every CFG, we
958/// only allow it to proceed for a limited number of iterations (controlled
959/// by -sample-profile-max-propagate-iterations).
960///
961/// FIXME: Try to replace this propagation heuristic with a scheme
962/// that is guaranteed to finalize. A work-list approach similar to
963/// the standard value propagation algorithm used by SSA-CCP might
964/// work here.
965///
966/// Once all the branch weights are computed, we emit the MD_prof
Diego Novillo19e7b7e2014-10-22 18:39:50 +0000967/// metadata on BB using the computed values for each of its branches.
Diego Novillo0accb3d2014-01-10 23:23:46 +0000968///
969/// \param F The function to query.
Diego Novilloa32aa322014-03-14 21:58:59 +0000970///
971/// \returns true if \p F was modified. Returns false, otherwise.
Diego Novillode1ab262014-09-09 12:40:50 +0000972bool SampleProfileLoader::emitAnnotations(Function &F) {
Diego Novillo0accb3d2014-01-10 23:23:46 +0000973 bool Changed = false;
974
Dehao Chen41dc5a62015-10-09 16:50:16 +0000975 if (getFunctionLoc(F) == 0)
Diego Novilloa32aa322014-03-14 21:58:59 +0000976 return false;
977
Diego Novillo0accb3d2014-01-10 23:23:46 +0000978 DEBUG(dbgs() << "Line number for the first instruction in " << F.getName()
Dehao Chen41dc5a62015-10-09 16:50:16 +0000979 << ": " << getFunctionLoc(F) << "\n");
Diego Novillo0accb3d2014-01-10 23:23:46 +0000980
Dehao Chen67226882015-09-30 00:42:46 +0000981 Changed |= inlineHotFunctions(F);
982
Diego Novillo0accb3d2014-01-10 23:23:46 +0000983 // Compute basic block weights.
984 Changed |= computeBlockWeights(F);
985
986 if (Changed) {
Diego Novillo7732ae42015-08-26 20:00:27 +0000987 // Compute dominance and loop info needed for propagation.
988 computeDominanceAndLoopInfo(F);
989
Diego Novillo0accb3d2014-01-10 23:23:46 +0000990 // Find equivalence classes.
991 findEquivalenceClasses(F);
992
993 // Propagate weights to all edges.
994 propagateWeights(F);
995 }
996
997 return Changed;
998}
999
Diego Novilloc0dd1032013-11-26 20:37:33 +00001000char SampleProfileLoader::ID = 0;
Diego Novillo0accb3d2014-01-10 23:23:46 +00001001INITIALIZE_PASS_BEGIN(SampleProfileLoader, "sample-profile",
1002 "Sample Profile loader", false, false)
Diego Novillo92aa8c22014-03-10 22:41:28 +00001003INITIALIZE_PASS_DEPENDENCY(AddDiscriminators)
Diego Novillo0accb3d2014-01-10 23:23:46 +00001004INITIALIZE_PASS_END(SampleProfileLoader, "sample-profile",
1005 "Sample Profile loader", false, false)
Diego Novilloc0dd1032013-11-26 20:37:33 +00001006
1007bool SampleProfileLoader::doInitialization(Module &M) {
Diego Novillo7732ae42015-08-26 20:00:27 +00001008 auto &Ctx = M.getContext();
Diego Novillo4d711132015-08-25 15:25:11 +00001009 auto ReaderOrErr = SampleProfileReader::create(Filename, Ctx);
Diego Novillofcd55602014-11-03 00:51:45 +00001010 if (std::error_code EC = ReaderOrErr.getError()) {
Diego Novilloc572e922014-10-30 18:00:06 +00001011 std::string Msg = "Could not open profile: " + EC.message();
Diego Novillo4d711132015-08-25 15:25:11 +00001012 Ctx.diagnose(DiagnosticInfoSampleProfile(Filename.data(), Msg));
Diego Novilloc572e922014-10-30 18:00:06 +00001013 return false;
1014 }
Diego Novillofcd55602014-11-03 00:51:45 +00001015 Reader = std::move(ReaderOrErr.get());
Diego Novilloc572e922014-10-30 18:00:06 +00001016 ProfileIsValid = (Reader->read() == sampleprof_error::success);
Diego Novilloc0dd1032013-11-26 20:37:33 +00001017 return true;
1018}
1019
Diego Novillo4d711132015-08-25 15:25:11 +00001020ModulePass *llvm::createSampleProfileLoaderPass() {
Diego Novilloc0dd1032013-11-26 20:37:33 +00001021 return new SampleProfileLoader(SampleProfileFile);
1022}
1023
Diego Novillo4d711132015-08-25 15:25:11 +00001024ModulePass *llvm::createSampleProfileLoaderPass(StringRef Name) {
Diego Novilloc0dd1032013-11-26 20:37:33 +00001025 return new SampleProfileLoader(Name);
1026}
1027
Diego Novillo4d711132015-08-25 15:25:11 +00001028bool SampleProfileLoader::runOnModule(Module &M) {
Diego Novilloa8a3bd22015-10-28 17:40:22 +00001029 if (!ProfileIsValid)
1030 return false;
1031
Diego Novillo4d711132015-08-25 15:25:11 +00001032 bool retval = false;
1033 for (auto &F : M)
Diego Novilloa8a3bd22015-10-28 17:40:22 +00001034 if (!F.isDeclaration()) {
1035 clearFunctionData();
Diego Novillo4d711132015-08-25 15:25:11 +00001036 retval |= runOnFunction(F);
Diego Novilloa8a3bd22015-10-28 17:40:22 +00001037 }
Diego Novillo4d711132015-08-25 15:25:11 +00001038 return retval;
1039}
1040
Diego Novillo8d6568b2013-11-13 12:22:21 +00001041bool SampleProfileLoader::runOnFunction(Function &F) {
Diego Novillode1ab262014-09-09 12:40:50 +00001042 Samples = Reader->getSamplesFor(F);
1043 if (!Samples->empty())
1044 return emitAnnotations(F);
Diego Novillo0accb3d2014-01-10 23:23:46 +00001045 return false;
Diego Novillo8d6568b2013-11-13 12:22:21 +00001046}