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Rong Xuf430ae42015-12-09 18:08:16 +00001//===-- PGOInstrumentation.cpp - MST-based PGO Instrumentation ------------===//
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 PGO instrumentation using a minimum spanning tree based
11// on the following paper:
12// [1] Donald E. Knuth, Francis R. Stevenson. Optimal measurement of points
13// for program frequency counts. BIT Numerical Mathematics 1973, Volume 13,
14// Issue 3, pp 313-322
15// The idea of the algorithm based on the fact that for each node (except for
16// the entry and exit), the sum of incoming edge counts equals the sum of
17// outgoing edge counts. The count of edge on spanning tree can be derived from
18// those edges not on the spanning tree. Knuth proves this method instruments
19// the minimum number of edges.
20//
21// The minimal spanning tree here is actually a maximum weight tree -- on-tree
22// edges have higher frequencies (more likely to execute). The idea is to
23// instrument those less frequently executed edges to reduce the runtime
24// overhead of instrumented binaries.
25//
26// This file contains two passes:
27// (1) Pass PGOInstrumentationGen which instruments the IR to generate edge
Rong Xu13b01dc2016-02-10 18:24:45 +000028// count profile, and generates the instrumentation for indirect call
29// profiling.
Rong Xuf430ae42015-12-09 18:08:16 +000030// (2) Pass PGOInstrumentationUse which reads the edge count profile and
Rong Xu13b01dc2016-02-10 18:24:45 +000031// annotates the branch weights. It also reads the indirect call value
32// profiling records and annotate the indirect call instructions.
33//
Rong Xuf430ae42015-12-09 18:08:16 +000034// To get the precise counter information, These two passes need to invoke at
35// the same compilation point (so they see the same IR). For pass
36// PGOInstrumentationGen, the real work is done in instrumentOneFunc(). For
37// pass PGOInstrumentationUse, the real work in done in class PGOUseFunc and
38// the profile is opened in module level and passed to each PGOUseFunc instance.
39// The shared code for PGOInstrumentationGen and PGOInstrumentationUse is put
40// in class FuncPGOInstrumentation.
41//
42// Class PGOEdge represents a CFG edge and some auxiliary information. Class
43// BBInfo contains auxiliary information for each BB. These two classes are used
44// in pass PGOInstrumentationGen. Class PGOUseEdge and UseBBInfo are the derived
45// class of PGOEdge and BBInfo, respectively. They contains extra data structure
46// used in populating profile counters.
47// The MST implementation is in Class CFGMST (CFGMST.h).
48//
49//===----------------------------------------------------------------------===//
50
Rong Xuf430ae42015-12-09 18:08:16 +000051#include "CFGMST.h"
Rong Xu0eb36032016-04-01 23:16:44 +000052#include "IndirectCallSiteVisitor.h"
Rong Xuf430ae42015-12-09 18:08:16 +000053#include "llvm/ADT/STLExtras.h"
54#include "llvm/ADT/Statistic.h"
Rong Xu33c76c02016-02-10 17:18:30 +000055#include "llvm/ADT/Triple.h"
Rong Xuf430ae42015-12-09 18:08:16 +000056#include "llvm/Analysis/BlockFrequencyInfo.h"
57#include "llvm/Analysis/BranchProbabilityInfo.h"
58#include "llvm/Analysis/CFG.h"
Rong Xued9fec72016-01-21 18:11:44 +000059#include "llvm/IR/CallSite.h"
Rong Xuf430ae42015-12-09 18:08:16 +000060#include "llvm/IR/DiagnosticInfo.h"
61#include "llvm/IR/IRBuilder.h"
62#include "llvm/IR/InstIterator.h"
63#include "llvm/IR/Instructions.h"
64#include "llvm/IR/IntrinsicInst.h"
65#include "llvm/IR/MDBuilder.h"
66#include "llvm/IR/Module.h"
67#include "llvm/Pass.h"
68#include "llvm/ProfileData/InstrProfReader.h"
69#include "llvm/Support/BranchProbability.h"
70#include "llvm/Support/Debug.h"
71#include "llvm/Support/JamCRC.h"
Rong Xued9fec72016-01-21 18:11:44 +000072#include "llvm/Transforms/Instrumentation.h"
Rong Xuf430ae42015-12-09 18:08:16 +000073#include "llvm/Transforms/Utils/BasicBlockUtils.h"
74#include <string>
75#include <utility>
76#include <vector>
77
78using namespace llvm;
79
80#define DEBUG_TYPE "pgo-instrumentation"
81
82STATISTIC(NumOfPGOInstrument, "Number of edges instrumented.");
83STATISTIC(NumOfPGOEdge, "Number of edges.");
84STATISTIC(NumOfPGOBB, "Number of basic-blocks.");
85STATISTIC(NumOfPGOSplit, "Number of critical edge splits.");
86STATISTIC(NumOfPGOFunc, "Number of functions having valid profile counts.");
87STATISTIC(NumOfPGOMismatch, "Number of functions having mismatch profile.");
88STATISTIC(NumOfPGOMissing, "Number of functions without profile.");
Rong Xu13b01dc2016-02-10 18:24:45 +000089STATISTIC(NumOfPGOICall, "Number of indirect call value instrumentations.");
Rong Xuf430ae42015-12-09 18:08:16 +000090
91// Command line option to specify the file to read profile from. This is
92// mainly used for testing.
93static cl::opt<std::string>
94 PGOTestProfileFile("pgo-test-profile-file", cl::init(""), cl::Hidden,
95 cl::value_desc("filename"),
96 cl::desc("Specify the path of profile data file. This is"
97 "mainly for test purpose."));
98
Rong Xuecdc98f2016-03-04 22:08:44 +000099// Command line option to disable value profiling. The default is false:
Rong Xu13b01dc2016-02-10 18:24:45 +0000100// i.e. value profiling is enabled by default. This is for debug purpose.
Rong Xu9e926e82016-02-29 19:16:04 +0000101static cl::opt<bool> DisableValueProfiling("disable-vp", cl::init(false),
102 cl::Hidden,
103 cl::desc("Disable Value Profiling"));
Rong Xued9fec72016-01-21 18:11:44 +0000104
Rong Xuecdc98f2016-03-04 22:08:44 +0000105// Command line option to set the maximum number of VP annotations to write to
Rong Xu08afb052016-04-28 17:31:22 +0000106// the metadata for a single indirect call callsite.
107static cl::opt<unsigned> MaxNumAnnotations(
108 "icp-max-annotations", cl::init(3), cl::Hidden, cl::ZeroOrMore,
109 cl::desc("Max number of annotations for a single indirect "
110 "call callsite"));
Rong Xuecdc98f2016-03-04 22:08:44 +0000111
Rong Xuf430ae42015-12-09 18:08:16 +0000112namespace {
113class PGOInstrumentationGen : public ModulePass {
114public:
115 static char ID;
116
117 PGOInstrumentationGen() : ModulePass(ID) {
118 initializePGOInstrumentationGenPass(*PassRegistry::getPassRegistry());
119 }
120
121 const char *getPassName() const override {
122 return "PGOInstrumentationGenPass";
123 }
124
125private:
126 bool runOnModule(Module &M) override;
127
128 void getAnalysisUsage(AnalysisUsage &AU) const override {
129 AU.addRequired<BlockFrequencyInfoWrapperPass>();
130 }
131};
132
133class PGOInstrumentationUse : public ModulePass {
134public:
135 static char ID;
136
137 // Provide the profile filename as the parameter.
138 PGOInstrumentationUse(std::string Filename = "")
139 : ModulePass(ID), ProfileFileName(Filename) {
140 if (!PGOTestProfileFile.empty())
141 ProfileFileName = PGOTestProfileFile;
142 initializePGOInstrumentationUsePass(*PassRegistry::getPassRegistry());
143 }
144
145 const char *getPassName() const override {
146 return "PGOInstrumentationUsePass";
147 }
148
149private:
150 std::string ProfileFileName;
151 std::unique_ptr<IndexedInstrProfReader> PGOReader;
152 bool runOnModule(Module &M) override;
153
154 void getAnalysisUsage(AnalysisUsage &AU) const override {
155 AU.addRequired<BlockFrequencyInfoWrapperPass>();
156 }
157};
158} // end anonymous namespace
159
160char PGOInstrumentationGen::ID = 0;
161INITIALIZE_PASS_BEGIN(PGOInstrumentationGen, "pgo-instr-gen",
162 "PGO instrumentation.", false, false)
163INITIALIZE_PASS_DEPENDENCY(BlockFrequencyInfoWrapperPass)
164INITIALIZE_PASS_DEPENDENCY(BranchProbabilityInfoWrapperPass)
165INITIALIZE_PASS_END(PGOInstrumentationGen, "pgo-instr-gen",
166 "PGO instrumentation.", false, false)
167
168ModulePass *llvm::createPGOInstrumentationGenPass() {
169 return new PGOInstrumentationGen();
170}
171
172char PGOInstrumentationUse::ID = 0;
173INITIALIZE_PASS_BEGIN(PGOInstrumentationUse, "pgo-instr-use",
174 "Read PGO instrumentation profile.", false, false)
175INITIALIZE_PASS_DEPENDENCY(BlockFrequencyInfoWrapperPass)
176INITIALIZE_PASS_DEPENDENCY(BranchProbabilityInfoWrapperPass)
177INITIALIZE_PASS_END(PGOInstrumentationUse, "pgo-instr-use",
178 "Read PGO instrumentation profile.", false, false)
179
180ModulePass *llvm::createPGOInstrumentationUsePass(StringRef Filename) {
181 return new PGOInstrumentationUse(Filename.str());
182}
183
184namespace {
185/// \brief An MST based instrumentation for PGO
186///
187/// Implements a Minimum Spanning Tree (MST) based instrumentation for PGO
188/// in the function level.
189struct PGOEdge {
190 // This class implements the CFG edges. Note the CFG can be a multi-graph.
191 // So there might be multiple edges with same SrcBB and DestBB.
192 const BasicBlock *SrcBB;
193 const BasicBlock *DestBB;
194 uint64_t Weight;
195 bool InMST;
196 bool Removed;
197 bool IsCritical;
198 PGOEdge(const BasicBlock *Src, const BasicBlock *Dest, unsigned W = 1)
199 : SrcBB(Src), DestBB(Dest), Weight(W), InMST(false), Removed(false),
200 IsCritical(false) {}
201 // Return the information string of an edge.
202 const std::string infoString() const {
203 return (Twine(Removed ? "-" : " ") + (InMST ? " " : "*") +
204 (IsCritical ? "c" : " ") + " W=" + Twine(Weight)).str();
205 }
206};
207
208// This class stores the auxiliary information for each BB.
209struct BBInfo {
210 BBInfo *Group;
211 uint32_t Index;
212 uint32_t Rank;
213
214 BBInfo(unsigned IX) : Group(this), Index(IX), Rank(0) {}
215
216 // Return the information string of this object.
217 const std::string infoString() const {
218 return (Twine("Index=") + Twine(Index)).str();
219 }
220};
221
222// This class implements the CFG edges. Note the CFG can be a multi-graph.
223template <class Edge, class BBInfo> class FuncPGOInstrumentation {
224private:
225 Function &F;
226 void computeCFGHash();
227
228public:
229 std::string FuncName;
230 GlobalVariable *FuncNameVar;
231 // CFG hash value for this function.
232 uint64_t FunctionHash;
233
234 // The Minimum Spanning Tree of function CFG.
235 CFGMST<Edge, BBInfo> MST;
236
237 // Give an edge, find the BB that will be instrumented.
238 // Return nullptr if there is no BB to be instrumented.
239 BasicBlock *getInstrBB(Edge *E);
240
241 // Return the auxiliary BB information.
242 BBInfo &getBBInfo(const BasicBlock *BB) const { return MST.getBBInfo(BB); }
243
244 // Dump edges and BB information.
245 void dumpInfo(std::string Str = "") const {
246 MST.dumpEdges(dbgs(), Twine("Dump Function ") + FuncName + " Hash: " +
Rong Xued9fec72016-01-21 18:11:44 +0000247 Twine(FunctionHash) + "\t" + Str);
Rong Xuf430ae42015-12-09 18:08:16 +0000248 }
249
250 FuncPGOInstrumentation(Function &Func, bool CreateGlobalVar = false,
251 BranchProbabilityInfo *BPI = nullptr,
252 BlockFrequencyInfo *BFI = nullptr)
253 : F(Func), FunctionHash(0), MST(F, BPI, BFI) {
254 FuncName = getPGOFuncName(F);
255 computeCFGHash();
256 DEBUG(dumpInfo("after CFGMST"));
257
258 NumOfPGOBB += MST.BBInfos.size();
259 for (auto &E : MST.AllEdges) {
260 if (E->Removed)
261 continue;
262 NumOfPGOEdge++;
263 if (!E->InMST)
264 NumOfPGOInstrument++;
265 }
266
267 if (CreateGlobalVar)
268 FuncNameVar = createPGOFuncNameVar(F, FuncName);
Eugene Zelenko6ac3f732016-01-26 18:48:36 +0000269 }
Rong Xuf430ae42015-12-09 18:08:16 +0000270};
271
272// Compute Hash value for the CFG: the lower 32 bits are CRC32 of the index
273// value of each BB in the CFG. The higher 32 bits record the number of edges.
274template <class Edge, class BBInfo>
275void FuncPGOInstrumentation<Edge, BBInfo>::computeCFGHash() {
276 std::vector<char> Indexes;
277 JamCRC JC;
278 for (auto &BB : F) {
279 const TerminatorInst *TI = BB.getTerminator();
280 for (unsigned I = 0, E = TI->getNumSuccessors(); I != E; ++I) {
281 BasicBlock *Succ = TI->getSuccessor(I);
282 uint32_t Index = getBBInfo(Succ).Index;
283 for (int J = 0; J < 4; J++)
284 Indexes.push_back((char)(Index >> (J * 8)));
285 }
286 }
287 JC.update(Indexes);
288 FunctionHash = (uint64_t)MST.AllEdges.size() << 32 | JC.getCRC();
289}
290
291// Given a CFG E to be instrumented, find which BB to place the instrumented
292// code. The function will split the critical edge if necessary.
293template <class Edge, class BBInfo>
294BasicBlock *FuncPGOInstrumentation<Edge, BBInfo>::getInstrBB(Edge *E) {
295 if (E->InMST || E->Removed)
296 return nullptr;
297
298 BasicBlock *SrcBB = const_cast<BasicBlock *>(E->SrcBB);
299 BasicBlock *DestBB = const_cast<BasicBlock *>(E->DestBB);
300 // For a fake edge, instrument the real BB.
301 if (SrcBB == nullptr)
302 return DestBB;
303 if (DestBB == nullptr)
304 return SrcBB;
305
306 // Instrument the SrcBB if it has a single successor,
307 // otherwise, the DestBB if this is not a critical edge.
308 TerminatorInst *TI = SrcBB->getTerminator();
309 if (TI->getNumSuccessors() <= 1)
310 return SrcBB;
311 if (!E->IsCritical)
312 return DestBB;
313
314 // For a critical edge, we have to split. Instrument the newly
315 // created BB.
316 NumOfPGOSplit++;
317 DEBUG(dbgs() << "Split critical edge: " << getBBInfo(SrcBB).Index << " --> "
318 << getBBInfo(DestBB).Index << "\n");
319 unsigned SuccNum = GetSuccessorNumber(SrcBB, DestBB);
320 BasicBlock *InstrBB = SplitCriticalEdge(TI, SuccNum);
321 assert(InstrBB && "Critical edge is not split");
322
323 E->Removed = true;
324 return InstrBB;
325}
326
Rong Xued9fec72016-01-21 18:11:44 +0000327// Visit all edge and instrument the edges not in MST, and do value profiling.
Rong Xuf430ae42015-12-09 18:08:16 +0000328// Critical edges will be split.
329static void instrumentOneFunc(Function &F, Module *M,
330 BranchProbabilityInfo *BPI,
331 BlockFrequencyInfo *BFI) {
332 unsigned NumCounters = 0;
333 FuncPGOInstrumentation<PGOEdge, BBInfo> FuncInfo(F, true, BPI, BFI);
334 for (auto &E : FuncInfo.MST.AllEdges) {
335 if (!E->InMST && !E->Removed)
336 NumCounters++;
337 }
338
339 uint32_t I = 0;
Rong Xued9fec72016-01-21 18:11:44 +0000340 Type *I8PtrTy = Type::getInt8PtrTy(M->getContext());
Rong Xuf430ae42015-12-09 18:08:16 +0000341 for (auto &E : FuncInfo.MST.AllEdges) {
342 BasicBlock *InstrBB = FuncInfo.getInstrBB(E.get());
343 if (!InstrBB)
344 continue;
345
346 IRBuilder<> Builder(InstrBB, InstrBB->getFirstInsertionPt());
347 assert(Builder.GetInsertPoint() != InstrBB->end() &&
348 "Cannot get the Instrumentation point");
Rong Xuf430ae42015-12-09 18:08:16 +0000349 Builder.CreateCall(
350 Intrinsic::getDeclaration(M, Intrinsic::instrprof_increment),
351 {llvm::ConstantExpr::getBitCast(FuncInfo.FuncNameVar, I8PtrTy),
352 Builder.getInt64(FuncInfo.FunctionHash), Builder.getInt32(NumCounters),
353 Builder.getInt32(I++)});
354 }
Rong Xued9fec72016-01-21 18:11:44 +0000355
356 if (DisableValueProfiling)
357 return;
358
359 unsigned NumIndirectCallSites = 0;
Rong Xu0eb36032016-04-01 23:16:44 +0000360 for (auto &I : findIndirectCallSites(F)) {
Rong Xued9fec72016-01-21 18:11:44 +0000361 CallSite CS(I);
362 Value *Callee = CS.getCalledValue();
363 DEBUG(dbgs() << "Instrument one indirect call: CallSite Index = "
364 << NumIndirectCallSites << "\n");
365 IRBuilder<> Builder(I);
366 assert(Builder.GetInsertPoint() != I->getParent()->end() &&
367 "Cannot get the Instrumentation point");
368 Builder.CreateCall(
369 Intrinsic::getDeclaration(M, Intrinsic::instrprof_value_profile),
370 {llvm::ConstantExpr::getBitCast(FuncInfo.FuncNameVar, I8PtrTy),
371 Builder.getInt64(FuncInfo.FunctionHash),
372 Builder.CreatePtrToInt(Callee, Builder.getInt64Ty()),
373 Builder.getInt32(llvm::InstrProfValueKind::IPVK_IndirectCallTarget),
374 Builder.getInt32(NumIndirectCallSites++)});
375 }
376 NumOfPGOICall += NumIndirectCallSites;
Rong Xuf430ae42015-12-09 18:08:16 +0000377}
378
379// This class represents a CFG edge in profile use compilation.
380struct PGOUseEdge : public PGOEdge {
381 bool CountValid;
382 uint64_t CountValue;
383 PGOUseEdge(const BasicBlock *Src, const BasicBlock *Dest, unsigned W = 1)
384 : PGOEdge(Src, Dest, W), CountValid(false), CountValue(0) {}
385
386 // Set edge count value
387 void setEdgeCount(uint64_t Value) {
388 CountValue = Value;
389 CountValid = true;
390 }
391
392 // Return the information string for this object.
393 const std::string infoString() const {
394 if (!CountValid)
395 return PGOEdge::infoString();
Rong Xu9e926e82016-02-29 19:16:04 +0000396 return (Twine(PGOEdge::infoString()) + " Count=" + Twine(CountValue))
397 .str();
Rong Xuf430ae42015-12-09 18:08:16 +0000398 }
399};
400
401typedef SmallVector<PGOUseEdge *, 2> DirectEdges;
402
403// This class stores the auxiliary information for each BB.
404struct UseBBInfo : public BBInfo {
405 uint64_t CountValue;
406 bool CountValid;
407 int32_t UnknownCountInEdge;
408 int32_t UnknownCountOutEdge;
409 DirectEdges InEdges;
410 DirectEdges OutEdges;
411 UseBBInfo(unsigned IX)
412 : BBInfo(IX), CountValue(0), CountValid(false), UnknownCountInEdge(0),
413 UnknownCountOutEdge(0) {}
414 UseBBInfo(unsigned IX, uint64_t C)
415 : BBInfo(IX), CountValue(C), CountValid(true), UnknownCountInEdge(0),
416 UnknownCountOutEdge(0) {}
417
418 // Set the profile count value for this BB.
419 void setBBInfoCount(uint64_t Value) {
420 CountValue = Value;
421 CountValid = true;
422 }
423
424 // Return the information string of this object.
425 const std::string infoString() const {
426 if (!CountValid)
427 return BBInfo::infoString();
428 return (Twine(BBInfo::infoString()) + " Count=" + Twine(CountValue)).str();
429 }
430};
431
432// Sum up the count values for all the edges.
433static uint64_t sumEdgeCount(const ArrayRef<PGOUseEdge *> Edges) {
434 uint64_t Total = 0;
435 for (auto &E : Edges) {
436 if (E->Removed)
437 continue;
438 Total += E->CountValue;
439 }
440 return Total;
441}
442
443class PGOUseFunc {
Rong Xu6090afd2016-03-28 17:08:56 +0000444public:
445 PGOUseFunc(Function &Func, Module *Modu, BranchProbabilityInfo *BPI = nullptr,
446 BlockFrequencyInfo *BFI = nullptr)
447 : F(Func), M(Modu), FuncInfo(Func, false, BPI, BFI),
448 FreqAttr(FFA_Normal) {}
449
450 // Read counts for the instrumented BB from profile.
451 bool readCounters(IndexedInstrProfReader *PGOReader);
452
453 // Populate the counts for all BBs.
454 void populateCounters();
455
456 // Set the branch weights based on the count values.
457 void setBranchWeights();
458
459 // Annotate the indirect call sites.
460 void annotateIndirectCallSites();
461
462 // The hotness of the function from the profile count.
463 enum FuncFreqAttr { FFA_Normal, FFA_Cold, FFA_Hot };
464
Rong Xu08afb052016-04-28 17:31:22 +0000465 // Return the function hotness from the profile.
466 FuncFreqAttr getFuncFreqAttr() const { return FreqAttr; }
Rong Xu6090afd2016-03-28 17:08:56 +0000467
Rong Xuf430ae42015-12-09 18:08:16 +0000468private:
469 Function &F;
470 Module *M;
471 // This member stores the shared information with class PGOGenFunc.
472 FuncPGOInstrumentation<PGOUseEdge, UseBBInfo> FuncInfo;
473
474 // Return the auxiliary BB information.
475 UseBBInfo &getBBInfo(const BasicBlock *BB) const {
476 return FuncInfo.getBBInfo(BB);
477 }
478
479 // The maximum count value in the profile. This is only used in PGO use
480 // compilation.
481 uint64_t ProgramMaxCount;
482
Rong Xu13b01dc2016-02-10 18:24:45 +0000483 // ProfileRecord for this function.
484 InstrProfRecord ProfileRecord;
485
Rong Xu6090afd2016-03-28 17:08:56 +0000486 // Function hotness info derived from profile.
487 FuncFreqAttr FreqAttr;
488
Rong Xuf430ae42015-12-09 18:08:16 +0000489 // Find the Instrumented BB and set the value.
490 void setInstrumentedCounts(const std::vector<uint64_t> &CountFromProfile);
491
492 // Set the edge counter value for the unknown edge -- there should be only
493 // one unknown edge.
494 void setEdgeCount(DirectEdges &Edges, uint64_t Value);
495
496 // Return FuncName string;
497 const std::string getFuncName() const { return FuncInfo.FuncName; }
498
499 // Set the hot/cold inline hints based on the count values.
500 // FIXME: This function should be removed once the functionality in
501 // the inliner is implemented.
Rong Xu6090afd2016-03-28 17:08:56 +0000502 void markFunctionAttributes(uint64_t EntryCount, uint64_t MaxCount) {
Rong Xuf430ae42015-12-09 18:08:16 +0000503 if (ProgramMaxCount == 0)
504 return;
505 // Threshold of the hot functions.
506 const BranchProbability HotFunctionThreshold(1, 100);
507 // Threshold of the cold functions.
508 const BranchProbability ColdFunctionThreshold(2, 10000);
509 if (EntryCount >= HotFunctionThreshold.scale(ProgramMaxCount))
Rong Xu6090afd2016-03-28 17:08:56 +0000510 FreqAttr = FFA_Hot;
Rong Xuf430ae42015-12-09 18:08:16 +0000511 else if (MaxCount <= ColdFunctionThreshold.scale(ProgramMaxCount))
Rong Xu6090afd2016-03-28 17:08:56 +0000512 FreqAttr = FFA_Cold;
Rong Xuf430ae42015-12-09 18:08:16 +0000513 }
Rong Xuf430ae42015-12-09 18:08:16 +0000514};
515
516// Visit all the edges and assign the count value for the instrumented
517// edges and the BB.
518void PGOUseFunc::setInstrumentedCounts(
519 const std::vector<uint64_t> &CountFromProfile) {
520
521 // Use a worklist as we will update the vector during the iteration.
522 std::vector<PGOUseEdge *> WorkList;
523 for (auto &E : FuncInfo.MST.AllEdges)
524 WorkList.push_back(E.get());
525
526 uint32_t I = 0;
527 for (auto &E : WorkList) {
528 BasicBlock *InstrBB = FuncInfo.getInstrBB(E);
529 if (!InstrBB)
530 continue;
531 uint64_t CountValue = CountFromProfile[I++];
532 if (!E->Removed) {
533 getBBInfo(InstrBB).setBBInfoCount(CountValue);
534 E->setEdgeCount(CountValue);
535 continue;
536 }
537
538 // Need to add two new edges.
539 BasicBlock *SrcBB = const_cast<BasicBlock *>(E->SrcBB);
540 BasicBlock *DestBB = const_cast<BasicBlock *>(E->DestBB);
541 // Add new edge of SrcBB->InstrBB.
542 PGOUseEdge &NewEdge = FuncInfo.MST.addEdge(SrcBB, InstrBB, 0);
543 NewEdge.setEdgeCount(CountValue);
544 // Add new edge of InstrBB->DestBB.
545 PGOUseEdge &NewEdge1 = FuncInfo.MST.addEdge(InstrBB, DestBB, 0);
546 NewEdge1.setEdgeCount(CountValue);
547 NewEdge1.InMST = true;
548 getBBInfo(InstrBB).setBBInfoCount(CountValue);
549 }
550}
551
552// Set the count value for the unknown edge. There should be one and only one
553// unknown edge in Edges vector.
554void PGOUseFunc::setEdgeCount(DirectEdges &Edges, uint64_t Value) {
555 for (auto &E : Edges) {
556 if (E->CountValid)
557 continue;
558 E->setEdgeCount(Value);
559
560 getBBInfo(E->SrcBB).UnknownCountOutEdge--;
561 getBBInfo(E->DestBB).UnknownCountInEdge--;
562 return;
563 }
564 llvm_unreachable("Cannot find the unknown count edge");
565}
566
567// Read the profile from ProfileFileName and assign the value to the
568// instrumented BB and the edges. This function also updates ProgramMaxCount.
569// Return true if the profile are successfully read, and false on errors.
570bool PGOUseFunc::readCounters(IndexedInstrProfReader *PGOReader) {
571 auto &Ctx = M->getContext();
572 ErrorOr<InstrProfRecord> Result =
573 PGOReader->getInstrProfRecord(FuncInfo.FuncName, FuncInfo.FunctionHash);
574 if (std::error_code EC = Result.getError()) {
575 if (EC == instrprof_error::unknown_function)
576 NumOfPGOMissing++;
577 else if (EC == instrprof_error::hash_mismatch ||
578 EC == llvm::instrprof_error::malformed)
579 NumOfPGOMismatch++;
580
581 std::string Msg = EC.message() + std::string(" ") + F.getName().str();
582 Ctx.diagnose(
583 DiagnosticInfoPGOProfile(M->getName().data(), Msg, DS_Warning));
584 return false;
585 }
Rong Xu13b01dc2016-02-10 18:24:45 +0000586 ProfileRecord = std::move(Result.get());
587 std::vector<uint64_t> &CountFromProfile = ProfileRecord.Counts;
Rong Xuf430ae42015-12-09 18:08:16 +0000588
589 NumOfPGOFunc++;
590 DEBUG(dbgs() << CountFromProfile.size() << " counts\n");
591 uint64_t ValueSum = 0;
592 for (unsigned I = 0, S = CountFromProfile.size(); I < S; I++) {
593 DEBUG(dbgs() << " " << I << ": " << CountFromProfile[I] << "\n");
594 ValueSum += CountFromProfile[I];
595 }
596
597 DEBUG(dbgs() << "SUM = " << ValueSum << "\n");
598
599 getBBInfo(nullptr).UnknownCountOutEdge = 2;
600 getBBInfo(nullptr).UnknownCountInEdge = 2;
601
602 setInstrumentedCounts(CountFromProfile);
603 ProgramMaxCount = PGOReader->getMaximumFunctionCount();
604 return true;
605}
606
607// Populate the counters from instrumented BBs to all BBs.
608// In the end of this operation, all BBs should have a valid count value.
609void PGOUseFunc::populateCounters() {
610 // First set up Count variable for all BBs.
611 for (auto &E : FuncInfo.MST.AllEdges) {
612 if (E->Removed)
613 continue;
614
615 const BasicBlock *SrcBB = E->SrcBB;
616 const BasicBlock *DestBB = E->DestBB;
617 UseBBInfo &SrcInfo = getBBInfo(SrcBB);
618 UseBBInfo &DestInfo = getBBInfo(DestBB);
619 SrcInfo.OutEdges.push_back(E.get());
620 DestInfo.InEdges.push_back(E.get());
621 SrcInfo.UnknownCountOutEdge++;
622 DestInfo.UnknownCountInEdge++;
623
624 if (!E->CountValid)
625 continue;
626 DestInfo.UnknownCountInEdge--;
627 SrcInfo.UnknownCountOutEdge--;
628 }
629
630 bool Changes = true;
631 unsigned NumPasses = 0;
632 while (Changes) {
633 NumPasses++;
634 Changes = false;
635
636 // For efficient traversal, it's better to start from the end as most
637 // of the instrumented edges are at the end.
638 for (auto &BB : reverse(F)) {
639 UseBBInfo &Count = getBBInfo(&BB);
640 if (!Count.CountValid) {
641 if (Count.UnknownCountOutEdge == 0) {
642 Count.CountValue = sumEdgeCount(Count.OutEdges);
643 Count.CountValid = true;
644 Changes = true;
645 } else if (Count.UnknownCountInEdge == 0) {
646 Count.CountValue = sumEdgeCount(Count.InEdges);
647 Count.CountValid = true;
648 Changes = true;
649 }
650 }
651 if (Count.CountValid) {
652 if (Count.UnknownCountOutEdge == 1) {
653 uint64_t Total = Count.CountValue - sumEdgeCount(Count.OutEdges);
654 setEdgeCount(Count.OutEdges, Total);
655 Changes = true;
656 }
657 if (Count.UnknownCountInEdge == 1) {
658 uint64_t Total = Count.CountValue - sumEdgeCount(Count.InEdges);
659 setEdgeCount(Count.InEdges, Total);
660 Changes = true;
661 }
662 }
663 }
664 }
665
666 DEBUG(dbgs() << "Populate counts in " << NumPasses << " passes.\n");
667 // Assert every BB has a valid counter.
668 uint64_t FuncEntryCount = getBBInfo(&*F.begin()).CountValue;
669 uint64_t FuncMaxCount = FuncEntryCount;
670 for (auto &BB : F) {
671 assert(getBBInfo(&BB).CountValid && "BB count is not valid");
672 uint64_t Count = getBBInfo(&BB).CountValue;
673 if (Count > FuncMaxCount)
674 FuncMaxCount = Count;
675 }
Rong Xu6090afd2016-03-28 17:08:56 +0000676 markFunctionAttributes(FuncEntryCount, FuncMaxCount);
Rong Xuf430ae42015-12-09 18:08:16 +0000677
678 DEBUG(FuncInfo.dumpInfo("after reading profile."));
679}
680
681// Assign the scaled count values to the BB with multiple out edges.
682void PGOUseFunc::setBranchWeights() {
683 // Generate MD_prof metadata for every branch instruction.
684 DEBUG(dbgs() << "\nSetting branch weights.\n");
685 MDBuilder MDB(M->getContext());
686 for (auto &BB : F) {
687 TerminatorInst *TI = BB.getTerminator();
688 if (TI->getNumSuccessors() < 2)
689 continue;
690 if (!isa<BranchInst>(TI) && !isa<SwitchInst>(TI))
691 continue;
692 if (getBBInfo(&BB).CountValue == 0)
693 continue;
694
695 // We have a non-zero Branch BB.
696 const UseBBInfo &BBCountInfo = getBBInfo(&BB);
697 unsigned Size = BBCountInfo.OutEdges.size();
698 SmallVector<unsigned, 2> EdgeCounts(Size, 0);
699 uint64_t MaxCount = 0;
700 for (unsigned s = 0; s < Size; s++) {
701 const PGOUseEdge *E = BBCountInfo.OutEdges[s];
702 const BasicBlock *SrcBB = E->SrcBB;
703 const BasicBlock *DestBB = E->DestBB;
Eugene Zelenko6ac3f732016-01-26 18:48:36 +0000704 if (DestBB == nullptr)
Rong Xuf430ae42015-12-09 18:08:16 +0000705 continue;
706 unsigned SuccNum = GetSuccessorNumber(SrcBB, DestBB);
707 uint64_t EdgeCount = E->CountValue;
708 if (EdgeCount > MaxCount)
709 MaxCount = EdgeCount;
710 EdgeCounts[SuccNum] = EdgeCount;
711 }
712 assert(MaxCount > 0 && "Bad max count");
713 uint64_t Scale = calculateCountScale(MaxCount);
714 SmallVector<unsigned, 4> Weights;
715 for (const auto &ECI : EdgeCounts)
716 Weights.push_back(scaleBranchCount(ECI, Scale));
717
718 TI->setMetadata(llvm::LLVMContext::MD_prof,
719 MDB.createBranchWeights(Weights));
720 DEBUG(dbgs() << "Weight is: ";
721 for (const auto &W : Weights) { dbgs() << W << " "; }
722 dbgs() << "\n";);
723 }
724}
Rong Xu13b01dc2016-02-10 18:24:45 +0000725
726// Traverse all the indirect callsites and annotate the instructions.
727void PGOUseFunc::annotateIndirectCallSites() {
728 if (DisableValueProfiling)
729 return;
730
Rong Xu8e8fe852016-04-01 16:43:30 +0000731 // Create the PGOFuncName meta data.
Rong Xuf8f051c2016-04-22 21:00:17 +0000732 createPGOFuncNameMetadata(F, FuncInfo.FuncName);
Rong Xub5341662016-03-30 18:37:52 +0000733
Rong Xu13b01dc2016-02-10 18:24:45 +0000734 unsigned IndirectCallSiteIndex = 0;
Rong Xu0eb36032016-04-01 23:16:44 +0000735 auto IndirectCallSites = findIndirectCallSites(F);
Rong Xu9e926e82016-02-29 19:16:04 +0000736 unsigned NumValueSites =
Rong Xu13b01dc2016-02-10 18:24:45 +0000737 ProfileRecord.getNumValueSites(IPVK_IndirectCallTarget);
Rong Xu0eb36032016-04-01 23:16:44 +0000738 if (NumValueSites != IndirectCallSites.size()) {
Rong Xu13b01dc2016-02-10 18:24:45 +0000739 std::string Msg =
740 std::string("Inconsistent number of indirect call sites: ") +
Rong Xu9e926e82016-02-29 19:16:04 +0000741 F.getName().str();
Rong Xu13b01dc2016-02-10 18:24:45 +0000742 auto &Ctx = M->getContext();
743 Ctx.diagnose(
744 DiagnosticInfoPGOProfile(M->getName().data(), Msg, DS_Warning));
745 return;
746 }
747
Rong Xu0eb36032016-04-01 23:16:44 +0000748 for (auto &I : IndirectCallSites) {
Rong Xu13b01dc2016-02-10 18:24:45 +0000749 DEBUG(dbgs() << "Read one indirect call instrumentation: Index="
Rong Xu9e926e82016-02-29 19:16:04 +0000750 << IndirectCallSiteIndex << " out of " << NumValueSites
751 << "\n");
Rong Xu13b01dc2016-02-10 18:24:45 +0000752 annotateValueSite(*M, *I, ProfileRecord, IPVK_IndirectCallTarget,
Rong Xuecdc98f2016-03-04 22:08:44 +0000753 IndirectCallSiteIndex, MaxNumAnnotations);
Rong Xu13b01dc2016-02-10 18:24:45 +0000754 IndirectCallSiteIndex++;
755 }
756}
Rong Xuf430ae42015-12-09 18:08:16 +0000757} // end anonymous namespace
758
Rong Xu33c76c02016-02-10 17:18:30 +0000759// Create a COMDAT variable IR_LEVEL_PROF_VARNAME to make the runtime
760// aware this is an ir_level profile so it can set the version flag.
761static void createIRLevelProfileFlagVariable(Module &M) {
762 Type *IntTy64 = Type::getInt64Ty(M.getContext());
763 uint64_t ProfileVersion = (INSTR_PROF_RAW_VERSION | VARIANT_MASK_IR_PROF);
Rong Xu9e926e82016-02-29 19:16:04 +0000764 auto IRLevelVersionVariable = new GlobalVariable(
765 M, IntTy64, true, GlobalVariable::ExternalLinkage,
766 Constant::getIntegerValue(IntTy64, APInt(64, ProfileVersion)),
767 INSTR_PROF_QUOTE(IR_LEVEL_PROF_VERSION_VAR));
Rong Xu33c76c02016-02-10 17:18:30 +0000768 IRLevelVersionVariable->setVisibility(GlobalValue::DefaultVisibility);
769 Triple TT(M.getTargetTriple());
770 if (TT.isOSBinFormatMachO())
771 IRLevelVersionVariable->setLinkage(GlobalValue::LinkOnceODRLinkage);
772 else
Rong Xu9e926e82016-02-29 19:16:04 +0000773 IRLevelVersionVariable->setComdat(M.getOrInsertComdat(
774 StringRef(INSTR_PROF_QUOTE(IR_LEVEL_PROF_VERSION_VAR))));
Rong Xu33c76c02016-02-10 17:18:30 +0000775}
776
Rong Xuf430ae42015-12-09 18:08:16 +0000777bool PGOInstrumentationGen::runOnModule(Module &M) {
Andrew Kayloraa641a52016-04-22 22:06:11 +0000778 if (skipModule(M))
779 return false;
780
Rong Xu33c76c02016-02-10 17:18:30 +0000781 createIRLevelProfileFlagVariable(M);
Rong Xuf430ae42015-12-09 18:08:16 +0000782 for (auto &F : M) {
783 if (F.isDeclaration())
784 continue;
785 BranchProbabilityInfo *BPI =
786 &(getAnalysis<BranchProbabilityInfoWrapperPass>(F).getBPI());
787 BlockFrequencyInfo *BFI =
788 &(getAnalysis<BlockFrequencyInfoWrapperPass>(F).getBFI());
789 instrumentOneFunc(F, &M, BPI, BFI);
790 }
791 return true;
792}
793
794static void setPGOCountOnFunc(PGOUseFunc &Func,
795 IndexedInstrProfReader *PGOReader) {
796 if (Func.readCounters(PGOReader)) {
797 Func.populateCounters();
798 Func.setBranchWeights();
Rong Xu13b01dc2016-02-10 18:24:45 +0000799 Func.annotateIndirectCallSites();
Rong Xuf430ae42015-12-09 18:08:16 +0000800 }
801}
802
803bool PGOInstrumentationUse::runOnModule(Module &M) {
Andrew Kayloraa641a52016-04-22 22:06:11 +0000804 if (skipModule(M))
805 return false;
806
Rong Xuf430ae42015-12-09 18:08:16 +0000807 DEBUG(dbgs() << "Read in profile counters: ");
808 auto &Ctx = M.getContext();
809 // Read the counter array from file.
810 auto ReaderOrErr = IndexedInstrProfReader::create(ProfileFileName);
811 if (std::error_code EC = ReaderOrErr.getError()) {
812 Ctx.diagnose(
813 DiagnosticInfoPGOProfile(ProfileFileName.data(), EC.message()));
814 return false;
815 }
816
817 PGOReader = std::move(ReaderOrErr.get());
818 if (!PGOReader) {
819 Ctx.diagnose(DiagnosticInfoPGOProfile(ProfileFileName.data(),
820 "Cannot get PGOReader"));
821 return false;
822 }
Rong Xu33c76c02016-02-10 17:18:30 +0000823 // TODO: might need to change the warning once the clang option is finalized.
824 if (!PGOReader->isIRLevelProfile()) {
825 Ctx.diagnose(DiagnosticInfoPGOProfile(
826 ProfileFileName.data(), "Not an IR level instrumentation profile"));
827 return false;
828 }
829
Rong Xu6090afd2016-03-28 17:08:56 +0000830 std::vector<Function *> HotFunctions;
831 std::vector<Function *> ColdFunctions;
Rong Xuf430ae42015-12-09 18:08:16 +0000832 for (auto &F : M) {
833 if (F.isDeclaration())
834 continue;
835 BranchProbabilityInfo *BPI =
836 &(getAnalysis<BranchProbabilityInfoWrapperPass>(F).getBPI());
837 BlockFrequencyInfo *BFI =
838 &(getAnalysis<BlockFrequencyInfoWrapperPass>(F).getBFI());
839 PGOUseFunc Func(F, &M, BPI, BFI);
840 setPGOCountOnFunc(Func, PGOReader.get());
Rong Xu6090afd2016-03-28 17:08:56 +0000841 PGOUseFunc::FuncFreqAttr FreqAttr = Func.getFuncFreqAttr();
842 if (FreqAttr == PGOUseFunc::FFA_Cold)
843 ColdFunctions.push_back(&F);
844 else if (FreqAttr == PGOUseFunc::FFA_Hot)
845 HotFunctions.push_back(&F);
Rong Xuf430ae42015-12-09 18:08:16 +0000846 }
Rong Xu6090afd2016-03-28 17:08:56 +0000847
848 // Set function hotness attribute from the profile.
849 for (auto &F : HotFunctions) {
850 F->addFnAttr(llvm::Attribute::InlineHint);
851 DEBUG(dbgs() << "Set inline attribute to function: " << F->getName()
852 << "\n");
853 }
854 for (auto &F : ColdFunctions) {
855 F->addFnAttr(llvm::Attribute::Cold);
856 DEBUG(dbgs() << "Set cold attribute to function: " << F->getName() << "\n");
857 }
858
Rong Xuf430ae42015-12-09 18:08:16 +0000859 return true;
860}