1 //===- ProfileSummaryInfo.cpp - Global profile summary information --------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file contains a pass that provides access to the global profile summary
10 // information.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "llvm/Analysis/ProfileSummaryInfo.h"
15 #include "llvm/Analysis/BlockFrequencyInfo.h"
16 #include "llvm/IR/BasicBlock.h"
17 #include "llvm/IR/Instructions.h"
18 #include "llvm/IR/Module.h"
19 #include "llvm/IR/ProfileSummary.h"
20 #include "llvm/InitializePasses.h"
21 #include "llvm/ProfileData/ProfileCommon.h"
22 #include "llvm/Support/CommandLine.h"
23 using namespace llvm;
24
25 // Knobs for profile summary based thresholds.
26 extern cl::opt<int> ProfileSummaryCutoffHot;
27 extern cl::opt<int> ProfileSummaryCutoffCold;
28 extern cl::opt<unsigned> ProfileSummaryHugeWorkingSetSizeThreshold;
29 extern cl::opt<unsigned> ProfileSummaryLargeWorkingSetSizeThreshold;
30 extern cl::opt<int> ProfileSummaryHotCount;
31 extern cl::opt<int> ProfileSummaryColdCount;
32
33 static cl::opt<bool> PartialProfile(
34 "partial-profile", cl::Hidden, cl::init(false),
35 cl::desc("Specify the current profile is used as a partial profile."));
36
37 cl::opt<bool> ScalePartialSampleProfileWorkingSetSize(
38 "scale-partial-sample-profile-working-set-size", cl::Hidden, cl::init(true),
39 cl::desc(
40 "If true, scale the working set size of the partial sample profile "
41 "by the partial profile ratio to reflect the size of the program "
42 "being compiled."));
43
44 static cl::opt<double> PartialSampleProfileWorkingSetSizeScaleFactor(
45 "partial-sample-profile-working-set-size-scale-factor", cl::Hidden,
46 cl::init(0.008),
47 cl::desc("The scale factor used to scale the working set size of the "
48 "partial sample profile along with the partial profile ratio. "
49 "This includes the factor of the profile counter per block "
50 "and the factor to scale the working set size to use the same "
51 "shared thresholds as PGO."));
52
53 // The profile summary metadata may be attached either by the frontend or by
54 // any backend passes (IR level instrumentation, for example). This method
55 // checks if the Summary is null and if so checks if the summary metadata is now
56 // available in the module and parses it to get the Summary object.
refresh()57 void ProfileSummaryInfo::refresh() {
58 if (hasProfileSummary())
59 return;
60 // First try to get context sensitive ProfileSummary.
61 auto *SummaryMD = M->getProfileSummary(/* IsCS */ true);
62 if (SummaryMD)
63 Summary.reset(ProfileSummary::getFromMD(SummaryMD));
64
65 if (!hasProfileSummary()) {
66 // This will actually return PSK_Instr or PSK_Sample summary.
67 SummaryMD = M->getProfileSummary(/* IsCS */ false);
68 if (SummaryMD)
69 Summary.reset(ProfileSummary::getFromMD(SummaryMD));
70 }
71 if (!hasProfileSummary())
72 return;
73 computeThresholds();
74 }
75
getProfileCount(const CallBase & Call,BlockFrequencyInfo * BFI,bool AllowSynthetic) const76 Optional<uint64_t> ProfileSummaryInfo::getProfileCount(
77 const CallBase &Call, BlockFrequencyInfo *BFI, bool AllowSynthetic) const {
78 assert((isa<CallInst>(Call) || isa<InvokeInst>(Call)) &&
79 "We can only get profile count for call/invoke instruction.");
80 if (hasSampleProfile()) {
81 // In sample PGO mode, check if there is a profile metadata on the
82 // instruction. If it is present, determine hotness solely based on that,
83 // since the sampled entry count may not be accurate. If there is no
84 // annotated on the instruction, return None.
85 uint64_t TotalCount;
86 if (Call.extractProfTotalWeight(TotalCount))
87 return TotalCount;
88 return None;
89 }
90 if (BFI)
91 return BFI->getBlockProfileCount(Call.getParent(), AllowSynthetic);
92 return None;
93 }
94
95 /// Returns true if the function's entry is hot. If it returns false, it
96 /// either means it is not hot or it is unknown whether it is hot or not (for
97 /// example, no profile data is available).
isFunctionEntryHot(const Function * F) const98 bool ProfileSummaryInfo::isFunctionEntryHot(const Function *F) const {
99 if (!F || !hasProfileSummary())
100 return false;
101 auto FunctionCount = F->getEntryCount();
102 // FIXME: The heuristic used below for determining hotness is based on
103 // preliminary SPEC tuning for inliner. This will eventually be a
104 // convenience method that calls isHotCount.
105 return FunctionCount && isHotCount(FunctionCount->getCount());
106 }
107
108 /// Returns true if the function contains hot code. This can include a hot
109 /// function entry count, hot basic block, or (in the case of Sample PGO)
110 /// hot total call edge count.
111 /// If it returns false, it either means it is not hot or it is unknown
112 /// (for example, no profile data is available).
isFunctionHotInCallGraph(const Function * F,BlockFrequencyInfo & BFI) const113 bool ProfileSummaryInfo::isFunctionHotInCallGraph(
114 const Function *F, BlockFrequencyInfo &BFI) const {
115 if (!F || !hasProfileSummary())
116 return false;
117 if (auto FunctionCount = F->getEntryCount())
118 if (isHotCount(FunctionCount->getCount()))
119 return true;
120
121 if (hasSampleProfile()) {
122 uint64_t TotalCallCount = 0;
123 for (const auto &BB : *F)
124 for (const auto &I : BB)
125 if (isa<CallInst>(I) || isa<InvokeInst>(I))
126 if (auto CallCount = getProfileCount(cast<CallBase>(I), nullptr))
127 TotalCallCount += *CallCount;
128 if (isHotCount(TotalCallCount))
129 return true;
130 }
131 for (const auto &BB : *F)
132 if (isHotBlock(&BB, &BFI))
133 return true;
134 return false;
135 }
136
137 /// Returns true if the function only contains cold code. This means that
138 /// the function entry and blocks are all cold, and (in the case of Sample PGO)
139 /// the total call edge count is cold.
140 /// If it returns false, it either means it is not cold or it is unknown
141 /// (for example, no profile data is available).
isFunctionColdInCallGraph(const Function * F,BlockFrequencyInfo & BFI) const142 bool ProfileSummaryInfo::isFunctionColdInCallGraph(
143 const Function *F, BlockFrequencyInfo &BFI) const {
144 if (!F || !hasProfileSummary())
145 return false;
146 if (auto FunctionCount = F->getEntryCount())
147 if (!isColdCount(FunctionCount->getCount()))
148 return false;
149
150 if (hasSampleProfile()) {
151 uint64_t TotalCallCount = 0;
152 for (const auto &BB : *F)
153 for (const auto &I : BB)
154 if (isa<CallInst>(I) || isa<InvokeInst>(I))
155 if (auto CallCount = getProfileCount(cast<CallBase>(I), nullptr))
156 TotalCallCount += *CallCount;
157 if (!isColdCount(TotalCallCount))
158 return false;
159 }
160 for (const auto &BB : *F)
161 if (!isColdBlock(&BB, &BFI))
162 return false;
163 return true;
164 }
165
isFunctionHotnessUnknown(const Function & F) const166 bool ProfileSummaryInfo::isFunctionHotnessUnknown(const Function &F) const {
167 assert(hasPartialSampleProfile() && "Expect partial sample profile");
168 return !F.getEntryCount();
169 }
170
171 template <bool isHot>
isFunctionHotOrColdInCallGraphNthPercentile(int PercentileCutoff,const Function * F,BlockFrequencyInfo & BFI) const172 bool ProfileSummaryInfo::isFunctionHotOrColdInCallGraphNthPercentile(
173 int PercentileCutoff, const Function *F, BlockFrequencyInfo &BFI) const {
174 if (!F || !hasProfileSummary())
175 return false;
176 if (auto FunctionCount = F->getEntryCount()) {
177 if (isHot &&
178 isHotCountNthPercentile(PercentileCutoff, FunctionCount->getCount()))
179 return true;
180 if (!isHot &&
181 !isColdCountNthPercentile(PercentileCutoff, FunctionCount->getCount()))
182 return false;
183 }
184 if (hasSampleProfile()) {
185 uint64_t TotalCallCount = 0;
186 for (const auto &BB : *F)
187 for (const auto &I : BB)
188 if (isa<CallInst>(I) || isa<InvokeInst>(I))
189 if (auto CallCount = getProfileCount(cast<CallBase>(I), nullptr))
190 TotalCallCount += *CallCount;
191 if (isHot && isHotCountNthPercentile(PercentileCutoff, TotalCallCount))
192 return true;
193 if (!isHot && !isColdCountNthPercentile(PercentileCutoff, TotalCallCount))
194 return false;
195 }
196 for (const auto &BB : *F) {
197 if (isHot && isHotBlockNthPercentile(PercentileCutoff, &BB, &BFI))
198 return true;
199 if (!isHot && !isColdBlockNthPercentile(PercentileCutoff, &BB, &BFI))
200 return false;
201 }
202 return !isHot;
203 }
204
205 // Like isFunctionHotInCallGraph but for a given cutoff.
isFunctionHotInCallGraphNthPercentile(int PercentileCutoff,const Function * F,BlockFrequencyInfo & BFI) const206 bool ProfileSummaryInfo::isFunctionHotInCallGraphNthPercentile(
207 int PercentileCutoff, const Function *F, BlockFrequencyInfo &BFI) const {
208 return isFunctionHotOrColdInCallGraphNthPercentile<true>(
209 PercentileCutoff, F, BFI);
210 }
211
isFunctionColdInCallGraphNthPercentile(int PercentileCutoff,const Function * F,BlockFrequencyInfo & BFI) const212 bool ProfileSummaryInfo::isFunctionColdInCallGraphNthPercentile(
213 int PercentileCutoff, const Function *F, BlockFrequencyInfo &BFI) const {
214 return isFunctionHotOrColdInCallGraphNthPercentile<false>(
215 PercentileCutoff, F, BFI);
216 }
217
218 /// Returns true if the function's entry is a cold. If it returns false, it
219 /// either means it is not cold or it is unknown whether it is cold or not (for
220 /// example, no profile data is available).
isFunctionEntryCold(const Function * F) const221 bool ProfileSummaryInfo::isFunctionEntryCold(const Function *F) const {
222 if (!F)
223 return false;
224 if (F->hasFnAttribute(Attribute::Cold))
225 return true;
226 if (!hasProfileSummary())
227 return false;
228 auto FunctionCount = F->getEntryCount();
229 // FIXME: The heuristic used below for determining coldness is based on
230 // preliminary SPEC tuning for inliner. This will eventually be a
231 // convenience method that calls isHotCount.
232 return FunctionCount && isColdCount(FunctionCount->getCount());
233 }
234
235 /// Compute the hot and cold thresholds.
computeThresholds()236 void ProfileSummaryInfo::computeThresholds() {
237 auto &DetailedSummary = Summary->getDetailedSummary();
238 auto &HotEntry = ProfileSummaryBuilder::getEntryForPercentile(
239 DetailedSummary, ProfileSummaryCutoffHot);
240 HotCountThreshold =
241 ProfileSummaryBuilder::getHotCountThreshold(DetailedSummary);
242 ColdCountThreshold =
243 ProfileSummaryBuilder::getColdCountThreshold(DetailedSummary);
244 assert(ColdCountThreshold <= HotCountThreshold &&
245 "Cold count threshold cannot exceed hot count threshold!");
246 if (!hasPartialSampleProfile() || !ScalePartialSampleProfileWorkingSetSize) {
247 HasHugeWorkingSetSize =
248 HotEntry.NumCounts > ProfileSummaryHugeWorkingSetSizeThreshold;
249 HasLargeWorkingSetSize =
250 HotEntry.NumCounts > ProfileSummaryLargeWorkingSetSizeThreshold;
251 } else {
252 // Scale the working set size of the partial sample profile to reflect the
253 // size of the program being compiled.
254 double PartialProfileRatio = Summary->getPartialProfileRatio();
255 uint64_t ScaledHotEntryNumCounts =
256 static_cast<uint64_t>(HotEntry.NumCounts * PartialProfileRatio *
257 PartialSampleProfileWorkingSetSizeScaleFactor);
258 HasHugeWorkingSetSize =
259 ScaledHotEntryNumCounts > ProfileSummaryHugeWorkingSetSizeThreshold;
260 HasLargeWorkingSetSize =
261 ScaledHotEntryNumCounts > ProfileSummaryLargeWorkingSetSizeThreshold;
262 }
263 }
264
265 Optional<uint64_t>
computeThreshold(int PercentileCutoff) const266 ProfileSummaryInfo::computeThreshold(int PercentileCutoff) const {
267 if (!hasProfileSummary())
268 return None;
269 auto iter = ThresholdCache.find(PercentileCutoff);
270 if (iter != ThresholdCache.end()) {
271 return iter->second;
272 }
273 auto &DetailedSummary = Summary->getDetailedSummary();
274 auto &Entry = ProfileSummaryBuilder::getEntryForPercentile(DetailedSummary,
275 PercentileCutoff);
276 uint64_t CountThreshold = Entry.MinCount;
277 ThresholdCache[PercentileCutoff] = CountThreshold;
278 return CountThreshold;
279 }
280
hasHugeWorkingSetSize() const281 bool ProfileSummaryInfo::hasHugeWorkingSetSize() const {
282 return HasHugeWorkingSetSize && HasHugeWorkingSetSize.value();
283 }
284
hasLargeWorkingSetSize() const285 bool ProfileSummaryInfo::hasLargeWorkingSetSize() const {
286 return HasLargeWorkingSetSize && HasLargeWorkingSetSize.value();
287 }
288
isHotCount(uint64_t C) const289 bool ProfileSummaryInfo::isHotCount(uint64_t C) const {
290 return HotCountThreshold && C >= HotCountThreshold.value();
291 }
292
isColdCount(uint64_t C) const293 bool ProfileSummaryInfo::isColdCount(uint64_t C) const {
294 return ColdCountThreshold && C <= ColdCountThreshold.value();
295 }
296
297 template <bool isHot>
isHotOrColdCountNthPercentile(int PercentileCutoff,uint64_t C) const298 bool ProfileSummaryInfo::isHotOrColdCountNthPercentile(int PercentileCutoff,
299 uint64_t C) const {
300 auto CountThreshold = computeThreshold(PercentileCutoff);
301 if (isHot)
302 return CountThreshold && C >= CountThreshold.value();
303 else
304 return CountThreshold && C <= CountThreshold.value();
305 }
306
isHotCountNthPercentile(int PercentileCutoff,uint64_t C) const307 bool ProfileSummaryInfo::isHotCountNthPercentile(int PercentileCutoff,
308 uint64_t C) const {
309 return isHotOrColdCountNthPercentile<true>(PercentileCutoff, C);
310 }
311
isColdCountNthPercentile(int PercentileCutoff,uint64_t C) const312 bool ProfileSummaryInfo::isColdCountNthPercentile(int PercentileCutoff,
313 uint64_t C) const {
314 return isHotOrColdCountNthPercentile<false>(PercentileCutoff, C);
315 }
316
getOrCompHotCountThreshold() const317 uint64_t ProfileSummaryInfo::getOrCompHotCountThreshold() const {
318 return HotCountThreshold.value_or(UINT64_MAX);
319 }
320
getOrCompColdCountThreshold() const321 uint64_t ProfileSummaryInfo::getOrCompColdCountThreshold() const {
322 return ColdCountThreshold.value_or(0);
323 }
324
isHotBlock(const BasicBlock * BB,BlockFrequencyInfo * BFI) const325 bool ProfileSummaryInfo::isHotBlock(const BasicBlock *BB,
326 BlockFrequencyInfo *BFI) const {
327 auto Count = BFI->getBlockProfileCount(BB);
328 return Count && isHotCount(*Count);
329 }
330
isColdBlock(const BasicBlock * BB,BlockFrequencyInfo * BFI) const331 bool ProfileSummaryInfo::isColdBlock(const BasicBlock *BB,
332 BlockFrequencyInfo *BFI) const {
333 auto Count = BFI->getBlockProfileCount(BB);
334 return Count && isColdCount(*Count);
335 }
336
337 template <bool isHot>
isHotOrColdBlockNthPercentile(int PercentileCutoff,const BasicBlock * BB,BlockFrequencyInfo * BFI) const338 bool ProfileSummaryInfo::isHotOrColdBlockNthPercentile(
339 int PercentileCutoff, const BasicBlock *BB, BlockFrequencyInfo *BFI) const {
340 auto Count = BFI->getBlockProfileCount(BB);
341 if (isHot)
342 return Count && isHotCountNthPercentile(PercentileCutoff, *Count);
343 else
344 return Count && isColdCountNthPercentile(PercentileCutoff, *Count);
345 }
346
isHotBlockNthPercentile(int PercentileCutoff,const BasicBlock * BB,BlockFrequencyInfo * BFI) const347 bool ProfileSummaryInfo::isHotBlockNthPercentile(
348 int PercentileCutoff, const BasicBlock *BB, BlockFrequencyInfo *BFI) const {
349 return isHotOrColdBlockNthPercentile<true>(PercentileCutoff, BB, BFI);
350 }
351
isColdBlockNthPercentile(int PercentileCutoff,const BasicBlock * BB,BlockFrequencyInfo * BFI) const352 bool ProfileSummaryInfo::isColdBlockNthPercentile(
353 int PercentileCutoff, const BasicBlock *BB, BlockFrequencyInfo *BFI) const {
354 return isHotOrColdBlockNthPercentile<false>(PercentileCutoff, BB, BFI);
355 }
356
isHotCallSite(const CallBase & CB,BlockFrequencyInfo * BFI) const357 bool ProfileSummaryInfo::isHotCallSite(const CallBase &CB,
358 BlockFrequencyInfo *BFI) const {
359 auto C = getProfileCount(CB, BFI);
360 return C && isHotCount(*C);
361 }
362
isColdCallSite(const CallBase & CB,BlockFrequencyInfo * BFI) const363 bool ProfileSummaryInfo::isColdCallSite(const CallBase &CB,
364 BlockFrequencyInfo *BFI) const {
365 auto C = getProfileCount(CB, BFI);
366 if (C)
367 return isColdCount(*C);
368
369 // In SamplePGO, if the caller has been sampled, and there is no profile
370 // annotated on the callsite, we consider the callsite as cold.
371 return hasSampleProfile() && CB.getCaller()->hasProfileData();
372 }
373
hasPartialSampleProfile() const374 bool ProfileSummaryInfo::hasPartialSampleProfile() const {
375 return hasProfileSummary() &&
376 Summary->getKind() == ProfileSummary::PSK_Sample &&
377 (PartialProfile || Summary->isPartialProfile());
378 }
379
380 INITIALIZE_PASS(ProfileSummaryInfoWrapperPass, "profile-summary-info",
381 "Profile summary info", false, true)
382
ProfileSummaryInfoWrapperPass()383 ProfileSummaryInfoWrapperPass::ProfileSummaryInfoWrapperPass()
384 : ImmutablePass(ID) {
385 initializeProfileSummaryInfoWrapperPassPass(*PassRegistry::getPassRegistry());
386 }
387
doInitialization(Module & M)388 bool ProfileSummaryInfoWrapperPass::doInitialization(Module &M) {
389 PSI.reset(new ProfileSummaryInfo(M));
390 return false;
391 }
392
doFinalization(Module & M)393 bool ProfileSummaryInfoWrapperPass::doFinalization(Module &M) {
394 PSI.reset();
395 return false;
396 }
397
398 AnalysisKey ProfileSummaryAnalysis::Key;
run(Module & M,ModuleAnalysisManager &)399 ProfileSummaryInfo ProfileSummaryAnalysis::run(Module &M,
400 ModuleAnalysisManager &) {
401 return ProfileSummaryInfo(M);
402 }
403
run(Module & M,ModuleAnalysisManager & AM)404 PreservedAnalyses ProfileSummaryPrinterPass::run(Module &M,
405 ModuleAnalysisManager &AM) {
406 ProfileSummaryInfo &PSI = AM.getResult<ProfileSummaryAnalysis>(M);
407
408 OS << "Functions in " << M.getName() << " with hot/cold annotations: \n";
409 for (auto &F : M) {
410 OS << F.getName();
411 if (PSI.isFunctionEntryHot(&F))
412 OS << " :hot entry ";
413 else if (PSI.isFunctionEntryCold(&F))
414 OS << " :cold entry ";
415 OS << "\n";
416 }
417 return PreservedAnalyses::all();
418 }
419
420 char ProfileSummaryInfoWrapperPass::ID = 0;
421