1 //===- SampleProfWriter.cpp - Write LLVM sample profile data --------------===//
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 implements the class that writes LLVM sample profiles. It
10 // supports two file formats: text and binary. The textual representation
11 // is useful for debugging and testing purposes. The binary representation
12 // is more compact, resulting in smaller file sizes. However, they can
13 // both be used interchangeably.
14 //
15 // See lib/ProfileData/SampleProfReader.cpp for documentation on each of the
16 // supported formats.
17 //
18 //===----------------------------------------------------------------------===//
19
20 #include "llvm/ProfileData/SampleProfWriter.h"
21 #include "llvm/ADT/StringRef.h"
22 #include "llvm/ProfileData/ProfileCommon.h"
23 #include "llvm/ProfileData/SampleProf.h"
24 #include "llvm/Support/Compression.h"
25 #include "llvm/Support/EndianStream.h"
26 #include "llvm/Support/ErrorOr.h"
27 #include "llvm/Support/FileSystem.h"
28 #include "llvm/Support/LEB128.h"
29 #include "llvm/Support/MD5.h"
30 #include "llvm/Support/raw_ostream.h"
31 #include <cmath>
32 #include <cstdint>
33 #include <memory>
34 #include <set>
35 #include <system_error>
36 #include <utility>
37 #include <vector>
38
39 #define DEBUG_TYPE "llvm-profdata"
40
41 using namespace llvm;
42 using namespace sampleprof;
43
44 namespace llvm {
45 namespace support {
46 namespace endian {
47 namespace {
48
49 // Adapter class to llvm::support::endian::Writer for pwrite().
50 struct SeekableWriter {
51 raw_pwrite_stream &OS;
52 endianness Endian;
SeekableWriterllvm::support::endian::__anonbc33b9800111::SeekableWriter53 SeekableWriter(raw_pwrite_stream &OS, endianness Endian)
54 : OS(OS), Endian(Endian) {}
55
56 template <typename ValueType>
pwritellvm::support::endian::__anonbc33b9800111::SeekableWriter57 void pwrite(ValueType Val, size_t Offset) {
58 std::string StringBuf;
59 raw_string_ostream SStream(StringBuf);
60 Writer(SStream, Endian).write(Val);
61 OS.pwrite(StringBuf.data(), StringBuf.size(), Offset);
62 }
63 };
64
65 } // namespace
66 } // namespace endian
67 } // namespace support
68 } // namespace llvm
69
DefaultFunctionPruningStrategy(SampleProfileMap & ProfileMap,size_t OutputSizeLimit)70 DefaultFunctionPruningStrategy::DefaultFunctionPruningStrategy(
71 SampleProfileMap &ProfileMap, size_t OutputSizeLimit)
72 : FunctionPruningStrategy(ProfileMap, OutputSizeLimit) {
73 sortFuncProfiles(ProfileMap, SortedFunctions);
74 }
75
Erase(size_t CurrentOutputSize)76 void DefaultFunctionPruningStrategy::Erase(size_t CurrentOutputSize) {
77 double D = (double)OutputSizeLimit / CurrentOutputSize;
78 size_t NewSize = (size_t)round(ProfileMap.size() * D * D);
79 size_t NumToRemove = ProfileMap.size() - NewSize;
80 if (NumToRemove < 1)
81 NumToRemove = 1;
82
83 assert(NumToRemove <= SortedFunctions.size());
84 for (const NameFunctionSamples &E :
85 llvm::drop_begin(SortedFunctions, SortedFunctions.size() - NumToRemove))
86 ProfileMap.erase(E.first);
87 SortedFunctions.resize(SortedFunctions.size() - NumToRemove);
88 }
89
writeWithSizeLimitInternal(SampleProfileMap & ProfileMap,size_t OutputSizeLimit,FunctionPruningStrategy * Strategy)90 std::error_code SampleProfileWriter::writeWithSizeLimitInternal(
91 SampleProfileMap &ProfileMap, size_t OutputSizeLimit,
92 FunctionPruningStrategy *Strategy) {
93 if (OutputSizeLimit == 0)
94 return write(ProfileMap);
95
96 size_t OriginalFunctionCount = ProfileMap.size();
97
98 std::unique_ptr<raw_ostream> OriginalOutputStream;
99 OutputStream.swap(OriginalOutputStream);
100
101 size_t IterationCount = 0;
102 size_t TotalSize;
103
104 SmallVector<char> StringBuffer;
105 do {
106 StringBuffer.clear();
107 OutputStream.reset(new raw_svector_ostream(StringBuffer));
108 if (std::error_code EC = write(ProfileMap))
109 return EC;
110
111 TotalSize = StringBuffer.size();
112 // On Windows every "\n" is actually written as "\r\n" to disk but not to
113 // memory buffer, this difference should be added when considering the total
114 // output size.
115 #ifdef _WIN32
116 if (Format == SPF_Text)
117 TotalSize += LineCount;
118 #endif
119 if (TotalSize <= OutputSizeLimit)
120 break;
121
122 Strategy->Erase(TotalSize);
123 IterationCount++;
124 } while (ProfileMap.size() != 0);
125
126 if (ProfileMap.size() == 0)
127 return sampleprof_error::too_large;
128
129 OutputStream.swap(OriginalOutputStream);
130 OutputStream->write(StringBuffer.data(), StringBuffer.size());
131 LLVM_DEBUG(dbgs() << "Profile originally has " << OriginalFunctionCount
132 << " functions, reduced to " << ProfileMap.size() << " in "
133 << IterationCount << " iterations\n");
134 // Silence warning on Release build.
135 (void)OriginalFunctionCount;
136 (void)IterationCount;
137 return sampleprof_error::success;
138 }
139
140 std::error_code
writeFuncProfiles(const SampleProfileMap & ProfileMap)141 SampleProfileWriter::writeFuncProfiles(const SampleProfileMap &ProfileMap) {
142 std::vector<NameFunctionSamples> V;
143 sortFuncProfiles(ProfileMap, V);
144 for (const auto &I : V) {
145 if (std::error_code EC = writeSample(*I.second))
146 return EC;
147 }
148 return sampleprof_error::success;
149 }
150
write(const SampleProfileMap & ProfileMap)151 std::error_code SampleProfileWriter::write(const SampleProfileMap &ProfileMap) {
152 if (std::error_code EC = writeHeader(ProfileMap))
153 return EC;
154
155 if (std::error_code EC = writeFuncProfiles(ProfileMap))
156 return EC;
157
158 return sampleprof_error::success;
159 }
160
161 /// Return the current position and prepare to use it as the start
162 /// position of a section given the section type \p Type and its position
163 /// \p LayoutIdx in SectionHdrLayout.
164 uint64_t
markSectionStart(SecType Type,uint32_t LayoutIdx)165 SampleProfileWriterExtBinaryBase::markSectionStart(SecType Type,
166 uint32_t LayoutIdx) {
167 uint64_t SectionStart = OutputStream->tell();
168 assert(LayoutIdx < SectionHdrLayout.size() && "LayoutIdx out of range");
169 const auto &Entry = SectionHdrLayout[LayoutIdx];
170 assert(Entry.Type == Type && "Unexpected section type");
171 // Use LocalBuf as a temporary output for writting data.
172 if (hasSecFlag(Entry, SecCommonFlags::SecFlagCompress))
173 LocalBufStream.swap(OutputStream);
174 return SectionStart;
175 }
176
compressAndOutput()177 std::error_code SampleProfileWriterExtBinaryBase::compressAndOutput() {
178 if (!llvm::compression::zlib::isAvailable())
179 return sampleprof_error::zlib_unavailable;
180 std::string &UncompressedStrings =
181 static_cast<raw_string_ostream *>(LocalBufStream.get())->str();
182 if (UncompressedStrings.size() == 0)
183 return sampleprof_error::success;
184 auto &OS = *OutputStream;
185 SmallVector<uint8_t, 128> CompressedStrings;
186 compression::zlib::compress(arrayRefFromStringRef(UncompressedStrings),
187 CompressedStrings,
188 compression::zlib::BestSizeCompression);
189 encodeULEB128(UncompressedStrings.size(), OS);
190 encodeULEB128(CompressedStrings.size(), OS);
191 OS << toStringRef(CompressedStrings);
192 UncompressedStrings.clear();
193 return sampleprof_error::success;
194 }
195
196 /// Add a new section into section header table given the section type
197 /// \p Type, its position \p LayoutIdx in SectionHdrLayout and the
198 /// location \p SectionStart where the section should be written to.
addNewSection(SecType Type,uint32_t LayoutIdx,uint64_t SectionStart)199 std::error_code SampleProfileWriterExtBinaryBase::addNewSection(
200 SecType Type, uint32_t LayoutIdx, uint64_t SectionStart) {
201 assert(LayoutIdx < SectionHdrLayout.size() && "LayoutIdx out of range");
202 const auto &Entry = SectionHdrLayout[LayoutIdx];
203 assert(Entry.Type == Type && "Unexpected section type");
204 if (hasSecFlag(Entry, SecCommonFlags::SecFlagCompress)) {
205 LocalBufStream.swap(OutputStream);
206 if (std::error_code EC = compressAndOutput())
207 return EC;
208 }
209 SecHdrTable.push_back({Type, Entry.Flags, SectionStart - FileStart,
210 OutputStream->tell() - SectionStart, LayoutIdx});
211 return sampleprof_error::success;
212 }
213
214 std::error_code
write(const SampleProfileMap & ProfileMap)215 SampleProfileWriterExtBinaryBase::write(const SampleProfileMap &ProfileMap) {
216 // When calling write on a different profile map, existing states should be
217 // cleared.
218 NameTable.clear();
219 CSNameTable.clear();
220 SecHdrTable.clear();
221
222 if (std::error_code EC = writeHeader(ProfileMap))
223 return EC;
224
225 std::string LocalBuf;
226 LocalBufStream = std::make_unique<raw_string_ostream>(LocalBuf);
227 if (std::error_code EC = writeSections(ProfileMap))
228 return EC;
229
230 if (std::error_code EC = writeSecHdrTable())
231 return EC;
232
233 return sampleprof_error::success;
234 }
235
writeContextIdx(const SampleContext & Context)236 std::error_code SampleProfileWriterExtBinaryBase::writeContextIdx(
237 const SampleContext &Context) {
238 if (Context.hasContext())
239 return writeCSNameIdx(Context);
240 else
241 return SampleProfileWriterBinary::writeNameIdx(Context.getFunction());
242 }
243
244 std::error_code
writeCSNameIdx(const SampleContext & Context)245 SampleProfileWriterExtBinaryBase::writeCSNameIdx(const SampleContext &Context) {
246 const auto &Ret = CSNameTable.find(Context);
247 if (Ret == CSNameTable.end())
248 return sampleprof_error::truncated_name_table;
249 encodeULEB128(Ret->second, *OutputStream);
250 return sampleprof_error::success;
251 }
252
253 std::error_code
writeSample(const FunctionSamples & S)254 SampleProfileWriterExtBinaryBase::writeSample(const FunctionSamples &S) {
255 uint64_t Offset = OutputStream->tell();
256 auto &Context = S.getContext();
257 FuncOffsetTable[Context] = Offset - SecLBRProfileStart;
258 encodeULEB128(S.getHeadSamples(), *OutputStream);
259 return writeBody(S);
260 }
261
writeFuncOffsetTable()262 std::error_code SampleProfileWriterExtBinaryBase::writeFuncOffsetTable() {
263 auto &OS = *OutputStream;
264
265 // Write out the table size.
266 encodeULEB128(FuncOffsetTable.size(), OS);
267
268 // Write out FuncOffsetTable.
269 auto WriteItem = [&](const SampleContext &Context, uint64_t Offset) {
270 if (std::error_code EC = writeContextIdx(Context))
271 return EC;
272 encodeULEB128(Offset, OS);
273 return (std::error_code)sampleprof_error::success;
274 };
275
276 if (FunctionSamples::ProfileIsCS) {
277 // Sort the contexts before writing them out. This is to help fast load all
278 // context profiles for a function as well as their callee contexts which
279 // can help profile-guided importing for ThinLTO.
280 std::map<SampleContext, uint64_t> OrderedFuncOffsetTable(
281 FuncOffsetTable.begin(), FuncOffsetTable.end());
282 for (const auto &Entry : OrderedFuncOffsetTable) {
283 if (std::error_code EC = WriteItem(Entry.first, Entry.second))
284 return EC;
285 }
286 addSectionFlag(SecFuncOffsetTable, SecFuncOffsetFlags::SecFlagOrdered);
287 } else {
288 for (const auto &Entry : FuncOffsetTable) {
289 if (std::error_code EC = WriteItem(Entry.first, Entry.second))
290 return EC;
291 }
292 }
293
294 FuncOffsetTable.clear();
295 return sampleprof_error::success;
296 }
297
writeFuncMetadata(const FunctionSamples & FunctionProfile)298 std::error_code SampleProfileWriterExtBinaryBase::writeFuncMetadata(
299 const FunctionSamples &FunctionProfile) {
300 auto &OS = *OutputStream;
301 if (std::error_code EC = writeContextIdx(FunctionProfile.getContext()))
302 return EC;
303
304 if (FunctionSamples::ProfileIsProbeBased)
305 encodeULEB128(FunctionProfile.getFunctionHash(), OS);
306 if (FunctionSamples::ProfileIsCS || FunctionSamples::ProfileIsPreInlined) {
307 encodeULEB128(FunctionProfile.getContext().getAllAttributes(), OS);
308 }
309
310 if (!FunctionSamples::ProfileIsCS) {
311 // Recursively emit attributes for all callee samples.
312 uint64_t NumCallsites = 0;
313 for (const auto &J : FunctionProfile.getCallsiteSamples())
314 NumCallsites += J.second.size();
315 encodeULEB128(NumCallsites, OS);
316 for (const auto &J : FunctionProfile.getCallsiteSamples()) {
317 for (const auto &FS : J.second) {
318 LineLocation Loc = J.first;
319 encodeULEB128(Loc.LineOffset, OS);
320 encodeULEB128(Loc.Discriminator, OS);
321 if (std::error_code EC = writeFuncMetadata(FS.second))
322 return EC;
323 }
324 }
325 }
326
327 return sampleprof_error::success;
328 }
329
writeFuncMetadata(const SampleProfileMap & Profiles)330 std::error_code SampleProfileWriterExtBinaryBase::writeFuncMetadata(
331 const SampleProfileMap &Profiles) {
332 if (!FunctionSamples::ProfileIsProbeBased && !FunctionSamples::ProfileIsCS &&
333 !FunctionSamples::ProfileIsPreInlined)
334 return sampleprof_error::success;
335 for (const auto &Entry : Profiles) {
336 if (std::error_code EC = writeFuncMetadata(Entry.second))
337 return EC;
338 }
339 return sampleprof_error::success;
340 }
341
writeNameTable()342 std::error_code SampleProfileWriterExtBinaryBase::writeNameTable() {
343 if (!UseMD5)
344 return SampleProfileWriterBinary::writeNameTable();
345
346 auto &OS = *OutputStream;
347 std::set<FunctionId> V;
348 stablizeNameTable(NameTable, V);
349
350 // Write out the MD5 name table. We wrote unencoded MD5 so reader can
351 // retrieve the name using the name index without having to read the
352 // whole name table.
353 encodeULEB128(NameTable.size(), OS);
354 support::endian::Writer Writer(OS, llvm::endianness::little);
355 for (auto N : V)
356 Writer.write(N.getHashCode());
357 return sampleprof_error::success;
358 }
359
writeNameTableSection(const SampleProfileMap & ProfileMap)360 std::error_code SampleProfileWriterExtBinaryBase::writeNameTableSection(
361 const SampleProfileMap &ProfileMap) {
362 for (const auto &I : ProfileMap) {
363 addContext(I.second.getContext());
364 addNames(I.second);
365 }
366
367 // If NameTable contains ".__uniq." suffix, set SecFlagUniqSuffix flag
368 // so compiler won't strip the suffix during profile matching after
369 // seeing the flag in the profile.
370 // Original names are unavailable if using MD5, so this option has no use.
371 if (!UseMD5) {
372 for (const auto &I : NameTable) {
373 if (I.first.stringRef().contains(FunctionSamples::UniqSuffix)) {
374 addSectionFlag(SecNameTable, SecNameTableFlags::SecFlagUniqSuffix);
375 break;
376 }
377 }
378 }
379
380 if (auto EC = writeNameTable())
381 return EC;
382 return sampleprof_error::success;
383 }
384
writeCSNameTableSection()385 std::error_code SampleProfileWriterExtBinaryBase::writeCSNameTableSection() {
386 // Sort the names to make CSNameTable deterministic.
387 std::set<SampleContext> OrderedContexts;
388 for (const auto &I : CSNameTable)
389 OrderedContexts.insert(I.first);
390 assert(OrderedContexts.size() == CSNameTable.size() &&
391 "Unmatched ordered and unordered contexts");
392 uint64_t I = 0;
393 for (auto &Context : OrderedContexts)
394 CSNameTable[Context] = I++;
395
396 auto &OS = *OutputStream;
397 encodeULEB128(OrderedContexts.size(), OS);
398 support::endian::Writer Writer(OS, llvm::endianness::little);
399 for (auto Context : OrderedContexts) {
400 auto Frames = Context.getContextFrames();
401 encodeULEB128(Frames.size(), OS);
402 for (auto &Callsite : Frames) {
403 if (std::error_code EC = writeNameIdx(Callsite.Func))
404 return EC;
405 encodeULEB128(Callsite.Location.LineOffset, OS);
406 encodeULEB128(Callsite.Location.Discriminator, OS);
407 }
408 }
409
410 return sampleprof_error::success;
411 }
412
413 std::error_code
writeProfileSymbolListSection()414 SampleProfileWriterExtBinaryBase::writeProfileSymbolListSection() {
415 if (ProfSymList && ProfSymList->size() > 0)
416 if (std::error_code EC = ProfSymList->write(*OutputStream))
417 return EC;
418
419 return sampleprof_error::success;
420 }
421
writeOneSection(SecType Type,uint32_t LayoutIdx,const SampleProfileMap & ProfileMap)422 std::error_code SampleProfileWriterExtBinaryBase::writeOneSection(
423 SecType Type, uint32_t LayoutIdx, const SampleProfileMap &ProfileMap) {
424 // The setting of SecFlagCompress should happen before markSectionStart.
425 if (Type == SecProfileSymbolList && ProfSymList && ProfSymList->toCompress())
426 setToCompressSection(SecProfileSymbolList);
427 if (Type == SecFuncMetadata && FunctionSamples::ProfileIsProbeBased)
428 addSectionFlag(SecFuncMetadata, SecFuncMetadataFlags::SecFlagIsProbeBased);
429 if (Type == SecFuncMetadata &&
430 (FunctionSamples::ProfileIsCS || FunctionSamples::ProfileIsPreInlined))
431 addSectionFlag(SecFuncMetadata, SecFuncMetadataFlags::SecFlagHasAttribute);
432 if (Type == SecProfSummary && FunctionSamples::ProfileIsCS)
433 addSectionFlag(SecProfSummary, SecProfSummaryFlags::SecFlagFullContext);
434 if (Type == SecProfSummary && FunctionSamples::ProfileIsPreInlined)
435 addSectionFlag(SecProfSummary, SecProfSummaryFlags::SecFlagIsPreInlined);
436 if (Type == SecProfSummary && FunctionSamples::ProfileIsFS)
437 addSectionFlag(SecProfSummary, SecProfSummaryFlags::SecFlagFSDiscriminator);
438
439 uint64_t SectionStart = markSectionStart(Type, LayoutIdx);
440 switch (Type) {
441 case SecProfSummary:
442 computeSummary(ProfileMap);
443 if (auto EC = writeSummary())
444 return EC;
445 break;
446 case SecNameTable:
447 if (auto EC = writeNameTableSection(ProfileMap))
448 return EC;
449 break;
450 case SecCSNameTable:
451 if (auto EC = writeCSNameTableSection())
452 return EC;
453 break;
454 case SecLBRProfile:
455 SecLBRProfileStart = OutputStream->tell();
456 if (std::error_code EC = writeFuncProfiles(ProfileMap))
457 return EC;
458 break;
459 case SecFuncOffsetTable:
460 if (auto EC = writeFuncOffsetTable())
461 return EC;
462 break;
463 case SecFuncMetadata:
464 if (std::error_code EC = writeFuncMetadata(ProfileMap))
465 return EC;
466 break;
467 case SecProfileSymbolList:
468 if (auto EC = writeProfileSymbolListSection())
469 return EC;
470 break;
471 default:
472 if (auto EC = writeCustomSection(Type))
473 return EC;
474 break;
475 }
476 if (std::error_code EC = addNewSection(Type, LayoutIdx, SectionStart))
477 return EC;
478 return sampleprof_error::success;
479 }
480
writeDefaultLayout(const SampleProfileMap & ProfileMap)481 std::error_code SampleProfileWriterExtBinary::writeDefaultLayout(
482 const SampleProfileMap &ProfileMap) {
483 // The const indices passed to writeOneSection below are specifying the
484 // positions of the sections in SectionHdrLayout. Look at
485 // initSectionHdrLayout to find out where each section is located in
486 // SectionHdrLayout.
487 if (auto EC = writeOneSection(SecProfSummary, 0, ProfileMap))
488 return EC;
489 if (auto EC = writeOneSection(SecNameTable, 1, ProfileMap))
490 return EC;
491 if (auto EC = writeOneSection(SecCSNameTable, 2, ProfileMap))
492 return EC;
493 if (auto EC = writeOneSection(SecLBRProfile, 4, ProfileMap))
494 return EC;
495 if (auto EC = writeOneSection(SecProfileSymbolList, 5, ProfileMap))
496 return EC;
497 if (auto EC = writeOneSection(SecFuncOffsetTable, 3, ProfileMap))
498 return EC;
499 if (auto EC = writeOneSection(SecFuncMetadata, 6, ProfileMap))
500 return EC;
501 return sampleprof_error::success;
502 }
503
splitProfileMapToTwo(const SampleProfileMap & ProfileMap,SampleProfileMap & ContextProfileMap,SampleProfileMap & NoContextProfileMap)504 static void splitProfileMapToTwo(const SampleProfileMap &ProfileMap,
505 SampleProfileMap &ContextProfileMap,
506 SampleProfileMap &NoContextProfileMap) {
507 for (const auto &I : ProfileMap) {
508 if (I.second.getCallsiteSamples().size())
509 ContextProfileMap.insert({I.first, I.second});
510 else
511 NoContextProfileMap.insert({I.first, I.second});
512 }
513 }
514
writeCtxSplitLayout(const SampleProfileMap & ProfileMap)515 std::error_code SampleProfileWriterExtBinary::writeCtxSplitLayout(
516 const SampleProfileMap &ProfileMap) {
517 SampleProfileMap ContextProfileMap, NoContextProfileMap;
518 splitProfileMapToTwo(ProfileMap, ContextProfileMap, NoContextProfileMap);
519
520 if (auto EC = writeOneSection(SecProfSummary, 0, ProfileMap))
521 return EC;
522 if (auto EC = writeOneSection(SecNameTable, 1, ProfileMap))
523 return EC;
524 if (auto EC = writeOneSection(SecLBRProfile, 3, ContextProfileMap))
525 return EC;
526 if (auto EC = writeOneSection(SecFuncOffsetTable, 2, ContextProfileMap))
527 return EC;
528 // Mark the section to have no context. Note section flag needs to be set
529 // before writing the section.
530 addSectionFlag(5, SecCommonFlags::SecFlagFlat);
531 if (auto EC = writeOneSection(SecLBRProfile, 5, NoContextProfileMap))
532 return EC;
533 // Mark the section to have no context. Note section flag needs to be set
534 // before writing the section.
535 addSectionFlag(4, SecCommonFlags::SecFlagFlat);
536 if (auto EC = writeOneSection(SecFuncOffsetTable, 4, NoContextProfileMap))
537 return EC;
538 if (auto EC = writeOneSection(SecProfileSymbolList, 6, ProfileMap))
539 return EC;
540 if (auto EC = writeOneSection(SecFuncMetadata, 7, ProfileMap))
541 return EC;
542
543 return sampleprof_error::success;
544 }
545
writeSections(const SampleProfileMap & ProfileMap)546 std::error_code SampleProfileWriterExtBinary::writeSections(
547 const SampleProfileMap &ProfileMap) {
548 std::error_code EC;
549 if (SecLayout == DefaultLayout)
550 EC = writeDefaultLayout(ProfileMap);
551 else if (SecLayout == CtxSplitLayout)
552 EC = writeCtxSplitLayout(ProfileMap);
553 else
554 llvm_unreachable("Unsupported layout");
555 return EC;
556 }
557
558 /// Write samples to a text file.
559 ///
560 /// Note: it may be tempting to implement this in terms of
561 /// FunctionSamples::print(). Please don't. The dump functionality is intended
562 /// for debugging and has no specified form.
563 ///
564 /// The format used here is more structured and deliberate because
565 /// it needs to be parsed by the SampleProfileReaderText class.
writeSample(const FunctionSamples & S)566 std::error_code SampleProfileWriterText::writeSample(const FunctionSamples &S) {
567 auto &OS = *OutputStream;
568 if (FunctionSamples::ProfileIsCS)
569 OS << "[" << S.getContext().toString() << "]:" << S.getTotalSamples();
570 else
571 OS << S.getFunction() << ":" << S.getTotalSamples();
572
573 if (Indent == 0)
574 OS << ":" << S.getHeadSamples();
575 OS << "\n";
576 LineCount++;
577
578 SampleSorter<LineLocation, SampleRecord> SortedSamples(S.getBodySamples());
579 for (const auto &I : SortedSamples.get()) {
580 LineLocation Loc = I->first;
581 const SampleRecord &Sample = I->second;
582 OS.indent(Indent + 1);
583 Loc.print(OS);
584 OS << ": " << Sample.getSamples();
585
586 for (const auto &J : Sample.getSortedCallTargets())
587 OS << " " << J.first << ":" << J.second;
588 OS << "\n";
589 LineCount++;
590 }
591
592 SampleSorter<LineLocation, FunctionSamplesMap> SortedCallsiteSamples(
593 S.getCallsiteSamples());
594 Indent += 1;
595 for (const auto *Element : SortedCallsiteSamples.get()) {
596 // Element is a pointer to a pair of LineLocation and FunctionSamplesMap.
597 const auto &[Loc, FunctionSamplesMap] = *Element;
598 for (const FunctionSamples &CalleeSamples :
599 make_second_range(FunctionSamplesMap)) {
600 OS.indent(Indent);
601 Loc.print(OS);
602 OS << ": ";
603 if (std::error_code EC = writeSample(CalleeSamples))
604 return EC;
605 }
606 }
607 Indent -= 1;
608
609 if (FunctionSamples::ProfileIsProbeBased) {
610 OS.indent(Indent + 1);
611 OS << "!CFGChecksum: " << S.getFunctionHash() << "\n";
612 LineCount++;
613 }
614
615 if (S.getContext().getAllAttributes()) {
616 OS.indent(Indent + 1);
617 OS << "!Attributes: " << S.getContext().getAllAttributes() << "\n";
618 LineCount++;
619 }
620
621 if (Indent == 0 && MarkFlatProfiles && S.getCallsiteSamples().size() == 0)
622 OS << " !Flat\n";
623
624 return sampleprof_error::success;
625 }
626
627 std::error_code
writeContextIdx(const SampleContext & Context)628 SampleProfileWriterBinary::writeContextIdx(const SampleContext &Context) {
629 assert(!Context.hasContext() && "cs profile is not supported");
630 return writeNameIdx(Context.getFunction());
631 }
632
writeNameIdx(FunctionId FName)633 std::error_code SampleProfileWriterBinary::writeNameIdx(FunctionId FName) {
634 auto &NTable = getNameTable();
635 const auto &Ret = NTable.find(FName);
636 if (Ret == NTable.end())
637 return sampleprof_error::truncated_name_table;
638 encodeULEB128(Ret->second, *OutputStream);
639 return sampleprof_error::success;
640 }
641
addName(FunctionId FName)642 void SampleProfileWriterBinary::addName(FunctionId FName) {
643 auto &NTable = getNameTable();
644 NTable.insert(std::make_pair(FName, 0));
645 }
646
addContext(const SampleContext & Context)647 void SampleProfileWriterBinary::addContext(const SampleContext &Context) {
648 addName(Context.getFunction());
649 }
650
addNames(const FunctionSamples & S)651 void SampleProfileWriterBinary::addNames(const FunctionSamples &S) {
652 // Add all the names in indirect call targets.
653 for (const auto &I : S.getBodySamples()) {
654 const SampleRecord &Sample = I.second;
655 for (const auto &J : Sample.getCallTargets())
656 addName(J.first);
657 }
658
659 // Recursively add all the names for inlined callsites.
660 for (const auto &J : S.getCallsiteSamples())
661 for (const auto &FS : J.second) {
662 const FunctionSamples &CalleeSamples = FS.second;
663 addName(CalleeSamples.getFunction());
664 addNames(CalleeSamples);
665 }
666 }
667
addContext(const SampleContext & Context)668 void SampleProfileWriterExtBinaryBase::addContext(
669 const SampleContext &Context) {
670 if (Context.hasContext()) {
671 for (auto &Callsite : Context.getContextFrames())
672 SampleProfileWriterBinary::addName(Callsite.Func);
673 CSNameTable.insert(std::make_pair(Context, 0));
674 } else {
675 SampleProfileWriterBinary::addName(Context.getFunction());
676 }
677 }
678
stablizeNameTable(MapVector<FunctionId,uint32_t> & NameTable,std::set<FunctionId> & V)679 void SampleProfileWriterBinary::stablizeNameTable(
680 MapVector<FunctionId, uint32_t> &NameTable, std::set<FunctionId> &V) {
681 // Sort the names to make NameTable deterministic.
682 for (const auto &I : NameTable)
683 V.insert(I.first);
684 int i = 0;
685 for (const FunctionId &N : V)
686 NameTable[N] = i++;
687 }
688
writeNameTable()689 std::error_code SampleProfileWriterBinary::writeNameTable() {
690 auto &OS = *OutputStream;
691 std::set<FunctionId> V;
692 stablizeNameTable(NameTable, V);
693
694 // Write out the name table.
695 encodeULEB128(NameTable.size(), OS);
696 for (auto N : V) {
697 OS << N;
698 encodeULEB128(0, OS);
699 }
700 return sampleprof_error::success;
701 }
702
703 std::error_code
writeMagicIdent(SampleProfileFormat Format)704 SampleProfileWriterBinary::writeMagicIdent(SampleProfileFormat Format) {
705 auto &OS = *OutputStream;
706 // Write file magic identifier.
707 encodeULEB128(SPMagic(Format), OS);
708 encodeULEB128(SPVersion(), OS);
709 return sampleprof_error::success;
710 }
711
712 std::error_code
writeHeader(const SampleProfileMap & ProfileMap)713 SampleProfileWriterBinary::writeHeader(const SampleProfileMap &ProfileMap) {
714 // When calling write on a different profile map, existing names should be
715 // cleared.
716 NameTable.clear();
717
718 writeMagicIdent(Format);
719
720 computeSummary(ProfileMap);
721 if (auto EC = writeSummary())
722 return EC;
723
724 // Generate the name table for all the functions referenced in the profile.
725 for (const auto &I : ProfileMap) {
726 addContext(I.second.getContext());
727 addNames(I.second);
728 }
729
730 writeNameTable();
731 return sampleprof_error::success;
732 }
733
setToCompressAllSections()734 void SampleProfileWriterExtBinaryBase::setToCompressAllSections() {
735 for (auto &Entry : SectionHdrLayout)
736 addSecFlag(Entry, SecCommonFlags::SecFlagCompress);
737 }
738
setToCompressSection(SecType Type)739 void SampleProfileWriterExtBinaryBase::setToCompressSection(SecType Type) {
740 addSectionFlag(Type, SecCommonFlags::SecFlagCompress);
741 }
742
allocSecHdrTable()743 void SampleProfileWriterExtBinaryBase::allocSecHdrTable() {
744 support::endian::Writer Writer(*OutputStream, llvm::endianness::little);
745
746 Writer.write(static_cast<uint64_t>(SectionHdrLayout.size()));
747 SecHdrTableOffset = OutputStream->tell();
748 for (uint32_t i = 0; i < SectionHdrLayout.size(); i++) {
749 Writer.write(static_cast<uint64_t>(-1));
750 Writer.write(static_cast<uint64_t>(-1));
751 Writer.write(static_cast<uint64_t>(-1));
752 Writer.write(static_cast<uint64_t>(-1));
753 }
754 }
755
writeSecHdrTable()756 std::error_code SampleProfileWriterExtBinaryBase::writeSecHdrTable() {
757 assert(SecHdrTable.size() == SectionHdrLayout.size() &&
758 "SecHdrTable entries doesn't match SectionHdrLayout");
759 SmallVector<uint32_t, 16> IndexMap(SecHdrTable.size(), -1);
760 for (uint32_t TableIdx = 0; TableIdx < SecHdrTable.size(); TableIdx++) {
761 IndexMap[SecHdrTable[TableIdx].LayoutIndex] = TableIdx;
762 }
763
764 // Write the section header table in the order specified in
765 // SectionHdrLayout. SectionHdrLayout specifies the sections
766 // order in which profile reader expect to read, so the section
767 // header table should be written in the order in SectionHdrLayout.
768 // Note that the section order in SecHdrTable may be different
769 // from the order in SectionHdrLayout, for example, SecFuncOffsetTable
770 // needs to be computed after SecLBRProfile (the order in SecHdrTable),
771 // but it needs to be read before SecLBRProfile (the order in
772 // SectionHdrLayout). So we use IndexMap above to switch the order.
773 support::endian::SeekableWriter Writer(
774 static_cast<raw_pwrite_stream &>(*OutputStream),
775 llvm::endianness::little);
776 for (uint32_t LayoutIdx = 0; LayoutIdx < SectionHdrLayout.size();
777 LayoutIdx++) {
778 assert(IndexMap[LayoutIdx] < SecHdrTable.size() &&
779 "Incorrect LayoutIdx in SecHdrTable");
780 auto Entry = SecHdrTable[IndexMap[LayoutIdx]];
781 Writer.pwrite(static_cast<uint64_t>(Entry.Type),
782 SecHdrTableOffset + 4 * LayoutIdx * sizeof(uint64_t));
783 Writer.pwrite(static_cast<uint64_t>(Entry.Flags),
784 SecHdrTableOffset + (4 * LayoutIdx + 1) * sizeof(uint64_t));
785 Writer.pwrite(static_cast<uint64_t>(Entry.Offset),
786 SecHdrTableOffset + (4 * LayoutIdx + 2) * sizeof(uint64_t));
787 Writer.pwrite(static_cast<uint64_t>(Entry.Size),
788 SecHdrTableOffset + (4 * LayoutIdx + 3) * sizeof(uint64_t));
789 }
790
791 return sampleprof_error::success;
792 }
793
writeHeader(const SampleProfileMap & ProfileMap)794 std::error_code SampleProfileWriterExtBinaryBase::writeHeader(
795 const SampleProfileMap &ProfileMap) {
796 auto &OS = *OutputStream;
797 FileStart = OS.tell();
798 writeMagicIdent(Format);
799
800 allocSecHdrTable();
801 return sampleprof_error::success;
802 }
803
writeSummary()804 std::error_code SampleProfileWriterBinary::writeSummary() {
805 auto &OS = *OutputStream;
806 encodeULEB128(Summary->getTotalCount(), OS);
807 encodeULEB128(Summary->getMaxCount(), OS);
808 encodeULEB128(Summary->getMaxFunctionCount(), OS);
809 encodeULEB128(Summary->getNumCounts(), OS);
810 encodeULEB128(Summary->getNumFunctions(), OS);
811 ArrayRef<ProfileSummaryEntry> Entries = Summary->getDetailedSummary();
812 encodeULEB128(Entries.size(), OS);
813 for (auto Entry : Entries) {
814 encodeULEB128(Entry.Cutoff, OS);
815 encodeULEB128(Entry.MinCount, OS);
816 encodeULEB128(Entry.NumCounts, OS);
817 }
818 return sampleprof_error::success;
819 }
writeBody(const FunctionSamples & S)820 std::error_code SampleProfileWriterBinary::writeBody(const FunctionSamples &S) {
821 auto &OS = *OutputStream;
822 if (std::error_code EC = writeContextIdx(S.getContext()))
823 return EC;
824
825 encodeULEB128(S.getTotalSamples(), OS);
826
827 // Emit all the body samples.
828 encodeULEB128(S.getBodySamples().size(), OS);
829 for (const auto &I : S.getBodySamples()) {
830 LineLocation Loc = I.first;
831 const SampleRecord &Sample = I.second;
832 Loc.serialize(OS);
833 Sample.serialize(OS, getNameTable());
834 }
835
836 // Recursively emit all the callsite samples.
837 uint64_t NumCallsites = 0;
838 for (const auto &J : S.getCallsiteSamples())
839 NumCallsites += J.second.size();
840 encodeULEB128(NumCallsites, OS);
841 for (const auto &[Loc, CalleeFunctionSampleMap] : S.getCallsiteSamples())
842 for (const auto &FunctionSample :
843 llvm::make_second_range(CalleeFunctionSampleMap)) {
844 Loc.serialize(OS);
845 if (std::error_code EC = writeBody(FunctionSample))
846 return EC;
847 }
848
849 return sampleprof_error::success;
850 }
851
852 /// Write samples of a top-level function to a binary file.
853 ///
854 /// \returns true if the samples were written successfully, false otherwise.
855 std::error_code
writeSample(const FunctionSamples & S)856 SampleProfileWriterBinary::writeSample(const FunctionSamples &S) {
857 encodeULEB128(S.getHeadSamples(), *OutputStream);
858 return writeBody(S);
859 }
860
861 /// Create a sample profile file writer based on the specified format.
862 ///
863 /// \param Filename The file to create.
864 ///
865 /// \param Format Encoding format for the profile file.
866 ///
867 /// \returns an error code indicating the status of the created writer.
868 ErrorOr<std::unique_ptr<SampleProfileWriter>>
create(StringRef Filename,SampleProfileFormat Format)869 SampleProfileWriter::create(StringRef Filename, SampleProfileFormat Format) {
870 std::error_code EC;
871 std::unique_ptr<raw_ostream> OS;
872 if (Format == SPF_Binary || Format == SPF_Ext_Binary)
873 OS.reset(new raw_fd_ostream(Filename, EC, sys::fs::OF_None));
874 else
875 OS.reset(new raw_fd_ostream(Filename, EC, sys::fs::OF_TextWithCRLF));
876 if (EC)
877 return EC;
878
879 return create(OS, Format);
880 }
881
882 /// Create a sample profile stream writer based on the specified format.
883 ///
884 /// \param OS The output stream to store the profile data to.
885 ///
886 /// \param Format Encoding format for the profile file.
887 ///
888 /// \returns an error code indicating the status of the created writer.
889 ErrorOr<std::unique_ptr<SampleProfileWriter>>
create(std::unique_ptr<raw_ostream> & OS,SampleProfileFormat Format)890 SampleProfileWriter::create(std::unique_ptr<raw_ostream> &OS,
891 SampleProfileFormat Format) {
892 std::error_code EC;
893 std::unique_ptr<SampleProfileWriter> Writer;
894
895 // Currently only Text and Extended Binary format are supported for CSSPGO.
896 if ((FunctionSamples::ProfileIsCS || FunctionSamples::ProfileIsProbeBased) &&
897 Format == SPF_Binary)
898 return sampleprof_error::unsupported_writing_format;
899
900 if (Format == SPF_Binary)
901 Writer.reset(new SampleProfileWriterRawBinary(OS));
902 else if (Format == SPF_Ext_Binary)
903 Writer.reset(new SampleProfileWriterExtBinary(OS));
904 else if (Format == SPF_Text)
905 Writer.reset(new SampleProfileWriterText(OS));
906 else if (Format == SPF_GCC)
907 EC = sampleprof_error::unsupported_writing_format;
908 else
909 EC = sampleprof_error::unrecognized_format;
910
911 if (EC)
912 return EC;
913
914 Writer->Format = Format;
915 return std::move(Writer);
916 }
917
computeSummary(const SampleProfileMap & ProfileMap)918 void SampleProfileWriter::computeSummary(const SampleProfileMap &ProfileMap) {
919 SampleProfileSummaryBuilder Builder(ProfileSummaryBuilder::DefaultCutoffs);
920 Summary = Builder.computeSummaryForProfiles(ProfileMap);
921 }
922