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/ADT/StringSet.h" 23 #include "llvm/ProfileData/ProfileCommon.h" 24 #include "llvm/ProfileData/SampleProf.h" 25 #include "llvm/Support/Compression.h" 26 #include "llvm/Support/Endian.h" 27 #include "llvm/Support/EndianStream.h" 28 #include "llvm/Support/ErrorOr.h" 29 #include "llvm/Support/FileSystem.h" 30 #include "llvm/Support/LEB128.h" 31 #include "llvm/Support/MD5.h" 32 #include "llvm/Support/raw_ostream.h" 33 #include <algorithm> 34 #include <cstdint> 35 #include <memory> 36 #include <set> 37 #include <system_error> 38 #include <utility> 39 #include <vector> 40 41 using namespace llvm; 42 using namespace sampleprof; 43 44 std::error_code SampleProfileWriter::writeFuncProfiles( 45 const StringMap<FunctionSamples> &ProfileMap) { 46 // Sort the ProfileMap by total samples. 47 typedef std::pair<StringRef, const FunctionSamples *> NameFunctionSamples; 48 std::vector<NameFunctionSamples> V; 49 for (const auto &I : ProfileMap) 50 V.push_back(std::make_pair(I.getKey(), &I.second)); 51 52 llvm::stable_sort( 53 V, [](const NameFunctionSamples &A, const NameFunctionSamples &B) { 54 if (A.second->getTotalSamples() == B.second->getTotalSamples()) 55 return A.first > B.first; 56 return A.second->getTotalSamples() > B.second->getTotalSamples(); 57 }); 58 59 for (const auto &I : V) { 60 if (std::error_code EC = writeSample(*I.second)) 61 return EC; 62 } 63 return sampleprof_error::success; 64 } 65 66 std::error_code 67 SampleProfileWriter::write(const StringMap<FunctionSamples> &ProfileMap) { 68 if (std::error_code EC = writeHeader(ProfileMap)) 69 return EC; 70 71 if (std::error_code EC = writeFuncProfiles(ProfileMap)) 72 return EC; 73 74 return sampleprof_error::success; 75 } 76 77 /// Return the current position and prepare to use it as the start 78 /// position of a section given the section type \p Type and its position 79 /// \p LayoutIdx in SectionHdrLayout. 80 uint64_t 81 SampleProfileWriterExtBinaryBase::markSectionStart(SecType Type, 82 uint32_t LayoutIdx) { 83 uint64_t SectionStart = OutputStream->tell(); 84 assert(LayoutIdx < SectionHdrLayout.size() && "LayoutIdx out of range"); 85 const auto &Entry = SectionHdrLayout[LayoutIdx]; 86 assert(Entry.Type == Type && "Unexpected section type"); 87 // Use LocalBuf as a temporary output for writting data. 88 if (hasSecFlag(Entry, SecCommonFlags::SecFlagCompress)) 89 LocalBufStream.swap(OutputStream); 90 return SectionStart; 91 } 92 93 std::error_code SampleProfileWriterExtBinaryBase::compressAndOutput() { 94 if (!llvm::zlib::isAvailable()) 95 return sampleprof_error::zlib_unavailable; 96 std::string &UncompressedStrings = 97 static_cast<raw_string_ostream *>(LocalBufStream.get())->str(); 98 if (UncompressedStrings.size() == 0) 99 return sampleprof_error::success; 100 auto &OS = *OutputStream; 101 SmallString<128> CompressedStrings; 102 llvm::Error E = zlib::compress(UncompressedStrings, CompressedStrings, 103 zlib::BestSizeCompression); 104 if (E) 105 return sampleprof_error::compress_failed; 106 encodeULEB128(UncompressedStrings.size(), OS); 107 encodeULEB128(CompressedStrings.size(), OS); 108 OS << CompressedStrings.str(); 109 UncompressedStrings.clear(); 110 return sampleprof_error::success; 111 } 112 113 /// Add a new section into section header table given the section type 114 /// \p Type, its position \p LayoutIdx in SectionHdrLayout and the 115 /// location \p SectionStart where the section should be written to. 116 std::error_code SampleProfileWriterExtBinaryBase::addNewSection( 117 SecType Type, uint32_t LayoutIdx, uint64_t SectionStart) { 118 assert(LayoutIdx < SectionHdrLayout.size() && "LayoutIdx out of range"); 119 const auto &Entry = SectionHdrLayout[LayoutIdx]; 120 assert(Entry.Type == Type && "Unexpected section type"); 121 if (hasSecFlag(Entry, SecCommonFlags::SecFlagCompress)) { 122 LocalBufStream.swap(OutputStream); 123 if (std::error_code EC = compressAndOutput()) 124 return EC; 125 } 126 SecHdrTable.push_back({Type, Entry.Flags, SectionStart - FileStart, 127 OutputStream->tell() - SectionStart, LayoutIdx}); 128 return sampleprof_error::success; 129 } 130 131 std::error_code SampleProfileWriterExtBinaryBase::write( 132 const StringMap<FunctionSamples> &ProfileMap) { 133 if (std::error_code EC = writeHeader(ProfileMap)) 134 return EC; 135 136 std::string LocalBuf; 137 LocalBufStream = std::make_unique<raw_string_ostream>(LocalBuf); 138 if (std::error_code EC = writeSections(ProfileMap)) 139 return EC; 140 141 if (std::error_code EC = writeSecHdrTable()) 142 return EC; 143 144 return sampleprof_error::success; 145 } 146 147 std::error_code 148 SampleProfileWriterExtBinaryBase::writeSample(const FunctionSamples &S) { 149 uint64_t Offset = OutputStream->tell(); 150 StringRef Name = S.getNameWithContext(true); 151 FuncOffsetTable[Name] = Offset - SecLBRProfileStart; 152 encodeULEB128(S.getHeadSamples(), *OutputStream); 153 return writeBody(S); 154 } 155 156 std::error_code SampleProfileWriterExtBinaryBase::writeFuncOffsetTable() { 157 auto &OS = *OutputStream; 158 159 // Write out the table size. 160 encodeULEB128(FuncOffsetTable.size(), OS); 161 162 // Write out FuncOffsetTable. 163 for (auto entry : FuncOffsetTable) { 164 writeNameIdx(entry.first); 165 encodeULEB128(entry.second, OS); 166 } 167 FuncOffsetTable.clear(); 168 return sampleprof_error::success; 169 } 170 171 std::error_code SampleProfileWriterExtBinaryBase::writeFuncMetadata( 172 const StringMap<FunctionSamples> &Profiles) { 173 if (!FunctionSamples::ProfileIsProbeBased) 174 return sampleprof_error::success; 175 auto &OS = *OutputStream; 176 for (const auto &Entry : Profiles) { 177 writeNameIdx(Entry.first()); 178 encodeULEB128(Entry.second.getFunctionHash(), OS); 179 } 180 return sampleprof_error::success; 181 } 182 183 std::error_code SampleProfileWriterExtBinaryBase::writeNameTable() { 184 if (!UseMD5) 185 return SampleProfileWriterBinary::writeNameTable(); 186 187 auto &OS = *OutputStream; 188 std::set<StringRef> V; 189 stablizeNameTable(V); 190 191 // Write out the MD5 name table. We wrote unencoded MD5 so reader can 192 // retrieve the name using the name index without having to read the 193 // whole name table. 194 encodeULEB128(NameTable.size(), OS); 195 support::endian::Writer Writer(OS, support::little); 196 for (auto N : V) 197 Writer.write(MD5Hash(N)); 198 return sampleprof_error::success; 199 } 200 201 std::error_code SampleProfileWriterExtBinaryBase::writeNameTableSection( 202 const StringMap<FunctionSamples> &ProfileMap) { 203 for (const auto &I : ProfileMap) { 204 addName(I.first()); 205 addNames(I.second); 206 } 207 208 // If NameTable contains ".__uniq." suffix, set SecFlagUniqSuffix flag 209 // so compiler won't strip the suffix during profile matching after 210 // seeing the flag in the profile. 211 for (const auto &I : NameTable) { 212 if (I.first.find(FunctionSamples::UniqSuffix) != StringRef::npos) { 213 addSectionFlag(SecNameTable, SecNameTableFlags::SecFlagUniqSuffix); 214 break; 215 } 216 } 217 218 if (auto EC = writeNameTable()) 219 return EC; 220 return sampleprof_error::success; 221 } 222 223 std::error_code 224 SampleProfileWriterExtBinaryBase::writeProfileSymbolListSection() { 225 if (ProfSymList && ProfSymList->size() > 0) 226 if (std::error_code EC = ProfSymList->write(*OutputStream)) 227 return EC; 228 229 return sampleprof_error::success; 230 } 231 232 std::error_code SampleProfileWriterExtBinaryBase::writeOneSection( 233 SecType Type, uint32_t LayoutIdx, 234 const StringMap<FunctionSamples> &ProfileMap) { 235 // The setting of SecFlagCompress should happen before markSectionStart. 236 if (Type == SecProfileSymbolList && ProfSymList && ProfSymList->toCompress()) 237 setToCompressSection(SecProfileSymbolList); 238 if (Type == SecFuncMetadata && FunctionSamples::ProfileIsProbeBased) 239 addSectionFlag(SecFuncMetadata, SecFuncMetadataFlags::SecFlagIsProbeBased); 240 241 uint64_t SectionStart = markSectionStart(Type, LayoutIdx); 242 switch (Type) { 243 case SecProfSummary: 244 computeSummary(ProfileMap); 245 if (auto EC = writeSummary()) 246 return EC; 247 break; 248 case SecNameTable: 249 if (auto EC = writeNameTableSection(ProfileMap)) 250 return EC; 251 break; 252 case SecLBRProfile: 253 SecLBRProfileStart = OutputStream->tell(); 254 if (std::error_code EC = writeFuncProfiles(ProfileMap)) 255 return EC; 256 break; 257 case SecFuncOffsetTable: 258 if (auto EC = writeFuncOffsetTable()) 259 return EC; 260 break; 261 case SecFuncMetadata: 262 if (std::error_code EC = writeFuncMetadata(ProfileMap)) 263 return EC; 264 break; 265 case SecProfileSymbolList: 266 if (auto EC = writeProfileSymbolListSection()) 267 return EC; 268 break; 269 default: 270 if (auto EC = writeCustomSection(Type)) 271 return EC; 272 break; 273 } 274 if (std::error_code EC = addNewSection(Type, LayoutIdx, SectionStart)) 275 return EC; 276 return sampleprof_error::success; 277 } 278 279 std::error_code SampleProfileWriterExtBinary::writeDefaultLayout( 280 const StringMap<FunctionSamples> &ProfileMap) { 281 // The const indices passed to writeOneSection below are specifying the 282 // positions of the sections in SectionHdrLayout. Look at 283 // initSectionHdrLayout to find out where each section is located in 284 // SectionHdrLayout. 285 if (auto EC = writeOneSection(SecProfSummary, 0, ProfileMap)) 286 return EC; 287 if (auto EC = writeOneSection(SecNameTable, 1, ProfileMap)) 288 return EC; 289 if (auto EC = writeOneSection(SecLBRProfile, 3, ProfileMap)) 290 return EC; 291 if (auto EC = writeOneSection(SecProfileSymbolList, 4, ProfileMap)) 292 return EC; 293 if (auto EC = writeOneSection(SecFuncOffsetTable, 2, ProfileMap)) 294 return EC; 295 if (auto EC = writeOneSection(SecFuncMetadata, 5, ProfileMap)) 296 return EC; 297 return sampleprof_error::success; 298 } 299 300 static void 301 splitProfileMapToTwo(const StringMap<FunctionSamples> &ProfileMap, 302 StringMap<FunctionSamples> &ContextProfileMap, 303 StringMap<FunctionSamples> &NoContextProfileMap) { 304 for (const auto &I : ProfileMap) { 305 if (I.second.getCallsiteSamples().size()) 306 ContextProfileMap.insert({I.first(), I.second}); 307 else 308 NoContextProfileMap.insert({I.first(), I.second}); 309 } 310 } 311 312 std::error_code SampleProfileWriterExtBinary::writeCtxSplitLayout( 313 const StringMap<FunctionSamples> &ProfileMap) { 314 StringMap<FunctionSamples> ContextProfileMap, NoContextProfileMap; 315 splitProfileMapToTwo(ProfileMap, ContextProfileMap, NoContextProfileMap); 316 317 if (auto EC = writeOneSection(SecProfSummary, 0, ProfileMap)) 318 return EC; 319 if (auto EC = writeOneSection(SecNameTable, 1, ProfileMap)) 320 return EC; 321 if (auto EC = writeOneSection(SecLBRProfile, 3, ContextProfileMap)) 322 return EC; 323 if (auto EC = writeOneSection(SecFuncOffsetTable, 2, ContextProfileMap)) 324 return EC; 325 // Mark the section to have no context. Note section flag needs to be set 326 // before writing the section. 327 addSectionFlag(5, SecCommonFlags::SecFlagFlat); 328 if (auto EC = writeOneSection(SecLBRProfile, 5, NoContextProfileMap)) 329 return EC; 330 // Mark the section to have no context. Note section flag needs to be set 331 // before writing the section. 332 addSectionFlag(4, SecCommonFlags::SecFlagFlat); 333 if (auto EC = writeOneSection(SecFuncOffsetTable, 4, NoContextProfileMap)) 334 return EC; 335 if (auto EC = writeOneSection(SecProfileSymbolList, 6, ProfileMap)) 336 return EC; 337 if (auto EC = writeOneSection(SecFuncMetadata, 7, ProfileMap)) 338 return EC; 339 340 return sampleprof_error::success; 341 } 342 343 std::error_code SampleProfileWriterExtBinary::writeSections( 344 const StringMap<FunctionSamples> &ProfileMap) { 345 std::error_code EC; 346 if (SecLayout == DefaultLayout) 347 EC = writeDefaultLayout(ProfileMap); 348 else if (SecLayout == CtxSplitLayout) 349 EC = writeCtxSplitLayout(ProfileMap); 350 else 351 llvm_unreachable("Unsupported layout"); 352 return EC; 353 } 354 355 std::error_code SampleProfileWriterCompactBinary::write( 356 const StringMap<FunctionSamples> &ProfileMap) { 357 if (std::error_code EC = SampleProfileWriter::write(ProfileMap)) 358 return EC; 359 if (std::error_code EC = writeFuncOffsetTable()) 360 return EC; 361 return sampleprof_error::success; 362 } 363 364 /// Write samples to a text file. 365 /// 366 /// Note: it may be tempting to implement this in terms of 367 /// FunctionSamples::print(). Please don't. The dump functionality is intended 368 /// for debugging and has no specified form. 369 /// 370 /// The format used here is more structured and deliberate because 371 /// it needs to be parsed by the SampleProfileReaderText class. 372 std::error_code SampleProfileWriterText::writeSample(const FunctionSamples &S) { 373 auto &OS = *OutputStream; 374 OS << S.getNameWithContext(true) << ":" << S.getTotalSamples(); 375 if (Indent == 0) 376 OS << ":" << S.getHeadSamples(); 377 OS << "\n"; 378 379 SampleSorter<LineLocation, SampleRecord> SortedSamples(S.getBodySamples()); 380 for (const auto &I : SortedSamples.get()) { 381 LineLocation Loc = I->first; 382 const SampleRecord &Sample = I->second; 383 OS.indent(Indent + 1); 384 if (Loc.Discriminator == 0) 385 OS << Loc.LineOffset << ": "; 386 else 387 OS << Loc.LineOffset << "." << Loc.Discriminator << ": "; 388 389 OS << Sample.getSamples(); 390 391 for (const auto &J : Sample.getSortedCallTargets()) 392 OS << " " << J.first << ":" << J.second; 393 OS << "\n"; 394 } 395 396 SampleSorter<LineLocation, FunctionSamplesMap> SortedCallsiteSamples( 397 S.getCallsiteSamples()); 398 Indent += 1; 399 for (const auto &I : SortedCallsiteSamples.get()) 400 for (const auto &FS : I->second) { 401 LineLocation Loc = I->first; 402 const FunctionSamples &CalleeSamples = FS.second; 403 OS.indent(Indent); 404 if (Loc.Discriminator == 0) 405 OS << Loc.LineOffset << ": "; 406 else 407 OS << Loc.LineOffset << "." << Loc.Discriminator << ": "; 408 if (std::error_code EC = writeSample(CalleeSamples)) 409 return EC; 410 } 411 Indent -= 1; 412 413 if (Indent == 0) { 414 if (FunctionSamples::ProfileIsProbeBased) { 415 OS.indent(Indent + 1); 416 OS << "!CFGChecksum: " << S.getFunctionHash() << "\n"; 417 } 418 } 419 420 return sampleprof_error::success; 421 } 422 423 std::error_code SampleProfileWriterBinary::writeNameIdx(StringRef FName) { 424 const auto &ret = NameTable.find(FName); 425 if (ret == NameTable.end()) 426 return sampleprof_error::truncated_name_table; 427 encodeULEB128(ret->second, *OutputStream); 428 return sampleprof_error::success; 429 } 430 431 void SampleProfileWriterBinary::addName(StringRef FName) { 432 NameTable.insert(std::make_pair(FName, 0)); 433 } 434 435 void SampleProfileWriterBinary::addNames(const FunctionSamples &S) { 436 // Add all the names in indirect call targets. 437 for (const auto &I : S.getBodySamples()) { 438 const SampleRecord &Sample = I.second; 439 for (const auto &J : Sample.getCallTargets()) 440 addName(J.first()); 441 } 442 443 // Recursively add all the names for inlined callsites. 444 for (const auto &J : S.getCallsiteSamples()) 445 for (const auto &FS : J.second) { 446 const FunctionSamples &CalleeSamples = FS.second; 447 addName(CalleeSamples.getName()); 448 addNames(CalleeSamples); 449 } 450 } 451 452 void SampleProfileWriterBinary::stablizeNameTable(std::set<StringRef> &V) { 453 // Sort the names to make NameTable deterministic. 454 for (const auto &I : NameTable) 455 V.insert(I.first); 456 int i = 0; 457 for (const StringRef &N : V) 458 NameTable[N] = i++; 459 } 460 461 std::error_code SampleProfileWriterBinary::writeNameTable() { 462 auto &OS = *OutputStream; 463 std::set<StringRef> V; 464 stablizeNameTable(V); 465 466 // Write out the name table. 467 encodeULEB128(NameTable.size(), OS); 468 for (auto N : V) { 469 OS << N; 470 encodeULEB128(0, OS); 471 } 472 return sampleprof_error::success; 473 } 474 475 std::error_code SampleProfileWriterCompactBinary::writeFuncOffsetTable() { 476 auto &OS = *OutputStream; 477 478 // Fill the slot remembered by TableOffset with the offset of FuncOffsetTable. 479 auto &OFS = static_cast<raw_fd_ostream &>(OS); 480 uint64_t FuncOffsetTableStart = OS.tell(); 481 if (OFS.seek(TableOffset) == (uint64_t)-1) 482 return sampleprof_error::ostream_seek_unsupported; 483 support::endian::Writer Writer(*OutputStream, support::little); 484 Writer.write(FuncOffsetTableStart); 485 if (OFS.seek(FuncOffsetTableStart) == (uint64_t)-1) 486 return sampleprof_error::ostream_seek_unsupported; 487 488 // Write out the table size. 489 encodeULEB128(FuncOffsetTable.size(), OS); 490 491 // Write out FuncOffsetTable. 492 for (auto entry : FuncOffsetTable) { 493 writeNameIdx(entry.first); 494 encodeULEB128(entry.second, OS); 495 } 496 return sampleprof_error::success; 497 } 498 499 std::error_code SampleProfileWriterCompactBinary::writeNameTable() { 500 auto &OS = *OutputStream; 501 std::set<StringRef> V; 502 stablizeNameTable(V); 503 504 // Write out the name table. 505 encodeULEB128(NameTable.size(), OS); 506 for (auto N : V) { 507 encodeULEB128(MD5Hash(N), OS); 508 } 509 return sampleprof_error::success; 510 } 511 512 std::error_code 513 SampleProfileWriterBinary::writeMagicIdent(SampleProfileFormat Format) { 514 auto &OS = *OutputStream; 515 // Write file magic identifier. 516 encodeULEB128(SPMagic(Format), OS); 517 encodeULEB128(SPVersion(), OS); 518 return sampleprof_error::success; 519 } 520 521 std::error_code SampleProfileWriterBinary::writeHeader( 522 const StringMap<FunctionSamples> &ProfileMap) { 523 writeMagicIdent(Format); 524 525 computeSummary(ProfileMap); 526 if (auto EC = writeSummary()) 527 return EC; 528 529 // Generate the name table for all the functions referenced in the profile. 530 for (const auto &I : ProfileMap) { 531 addName(I.first()); 532 addNames(I.second); 533 } 534 535 writeNameTable(); 536 return sampleprof_error::success; 537 } 538 539 void SampleProfileWriterExtBinaryBase::setToCompressAllSections() { 540 for (auto &Entry : SectionHdrLayout) 541 addSecFlag(Entry, SecCommonFlags::SecFlagCompress); 542 } 543 544 void SampleProfileWriterExtBinaryBase::setToCompressSection(SecType Type) { 545 addSectionFlag(Type, SecCommonFlags::SecFlagCompress); 546 } 547 548 void SampleProfileWriterExtBinaryBase::allocSecHdrTable() { 549 support::endian::Writer Writer(*OutputStream, support::little); 550 551 Writer.write(static_cast<uint64_t>(SectionHdrLayout.size())); 552 SecHdrTableOffset = OutputStream->tell(); 553 for (uint32_t i = 0; i < SectionHdrLayout.size(); i++) { 554 Writer.write(static_cast<uint64_t>(-1)); 555 Writer.write(static_cast<uint64_t>(-1)); 556 Writer.write(static_cast<uint64_t>(-1)); 557 Writer.write(static_cast<uint64_t>(-1)); 558 } 559 } 560 561 std::error_code SampleProfileWriterExtBinaryBase::writeSecHdrTable() { 562 auto &OFS = static_cast<raw_fd_ostream &>(*OutputStream); 563 uint64_t Saved = OutputStream->tell(); 564 565 // Set OutputStream to the location saved in SecHdrTableOffset. 566 if (OFS.seek(SecHdrTableOffset) == (uint64_t)-1) 567 return sampleprof_error::ostream_seek_unsupported; 568 support::endian::Writer Writer(*OutputStream, support::little); 569 570 assert(SecHdrTable.size() == SectionHdrLayout.size() && 571 "SecHdrTable entries doesn't match SectionHdrLayout"); 572 SmallVector<uint32_t, 16> IndexMap(SecHdrTable.size(), -1); 573 for (uint32_t TableIdx = 0; TableIdx < SecHdrTable.size(); TableIdx++) { 574 IndexMap[SecHdrTable[TableIdx].LayoutIndex] = TableIdx; 575 } 576 577 // Write the section header table in the order specified in 578 // SectionHdrLayout. SectionHdrLayout specifies the sections 579 // order in which profile reader expect to read, so the section 580 // header table should be written in the order in SectionHdrLayout. 581 // Note that the section order in SecHdrTable may be different 582 // from the order in SectionHdrLayout, for example, SecFuncOffsetTable 583 // needs to be computed after SecLBRProfile (the order in SecHdrTable), 584 // but it needs to be read before SecLBRProfile (the order in 585 // SectionHdrLayout). So we use IndexMap above to switch the order. 586 for (uint32_t LayoutIdx = 0; LayoutIdx < SectionHdrLayout.size(); 587 LayoutIdx++) { 588 assert(IndexMap[LayoutIdx] < SecHdrTable.size() && 589 "Incorrect LayoutIdx in SecHdrTable"); 590 auto Entry = SecHdrTable[IndexMap[LayoutIdx]]; 591 Writer.write(static_cast<uint64_t>(Entry.Type)); 592 Writer.write(static_cast<uint64_t>(Entry.Flags)); 593 Writer.write(static_cast<uint64_t>(Entry.Offset)); 594 Writer.write(static_cast<uint64_t>(Entry.Size)); 595 } 596 597 // Reset OutputStream. 598 if (OFS.seek(Saved) == (uint64_t)-1) 599 return sampleprof_error::ostream_seek_unsupported; 600 601 return sampleprof_error::success; 602 } 603 604 std::error_code SampleProfileWriterExtBinaryBase::writeHeader( 605 const StringMap<FunctionSamples> &ProfileMap) { 606 auto &OS = *OutputStream; 607 FileStart = OS.tell(); 608 writeMagicIdent(Format); 609 610 allocSecHdrTable(); 611 return sampleprof_error::success; 612 } 613 614 std::error_code SampleProfileWriterCompactBinary::writeHeader( 615 const StringMap<FunctionSamples> &ProfileMap) { 616 support::endian::Writer Writer(*OutputStream, support::little); 617 if (auto EC = SampleProfileWriterBinary::writeHeader(ProfileMap)) 618 return EC; 619 620 // Reserve a slot for the offset of function offset table. The slot will 621 // be populated with the offset of FuncOffsetTable later. 622 TableOffset = OutputStream->tell(); 623 Writer.write(static_cast<uint64_t>(-2)); 624 return sampleprof_error::success; 625 } 626 627 std::error_code SampleProfileWriterBinary::writeSummary() { 628 auto &OS = *OutputStream; 629 encodeULEB128(Summary->getTotalCount(), OS); 630 encodeULEB128(Summary->getMaxCount(), OS); 631 encodeULEB128(Summary->getMaxFunctionCount(), OS); 632 encodeULEB128(Summary->getNumCounts(), OS); 633 encodeULEB128(Summary->getNumFunctions(), OS); 634 std::vector<ProfileSummaryEntry> &Entries = Summary->getDetailedSummary(); 635 encodeULEB128(Entries.size(), OS); 636 for (auto Entry : Entries) { 637 encodeULEB128(Entry.Cutoff, OS); 638 encodeULEB128(Entry.MinCount, OS); 639 encodeULEB128(Entry.NumCounts, OS); 640 } 641 return sampleprof_error::success; 642 } 643 std::error_code SampleProfileWriterBinary::writeBody(const FunctionSamples &S) { 644 auto &OS = *OutputStream; 645 646 if (std::error_code EC = writeNameIdx(S.getNameWithContext(true))) 647 return EC; 648 649 encodeULEB128(S.getTotalSamples(), OS); 650 651 // Emit all the body samples. 652 encodeULEB128(S.getBodySamples().size(), OS); 653 for (const auto &I : S.getBodySamples()) { 654 LineLocation Loc = I.first; 655 const SampleRecord &Sample = I.second; 656 encodeULEB128(Loc.LineOffset, OS); 657 encodeULEB128(Loc.Discriminator, OS); 658 encodeULEB128(Sample.getSamples(), OS); 659 encodeULEB128(Sample.getCallTargets().size(), OS); 660 for (const auto &J : Sample.getSortedCallTargets()) { 661 StringRef Callee = J.first; 662 uint64_t CalleeSamples = J.second; 663 if (std::error_code EC = writeNameIdx(Callee)) 664 return EC; 665 encodeULEB128(CalleeSamples, OS); 666 } 667 } 668 669 // Recursively emit all the callsite samples. 670 uint64_t NumCallsites = 0; 671 for (const auto &J : S.getCallsiteSamples()) 672 NumCallsites += J.second.size(); 673 encodeULEB128(NumCallsites, OS); 674 for (const auto &J : S.getCallsiteSamples()) 675 for (const auto &FS : J.second) { 676 LineLocation Loc = J.first; 677 const FunctionSamples &CalleeSamples = FS.second; 678 encodeULEB128(Loc.LineOffset, OS); 679 encodeULEB128(Loc.Discriminator, OS); 680 if (std::error_code EC = writeBody(CalleeSamples)) 681 return EC; 682 } 683 684 return sampleprof_error::success; 685 } 686 687 /// Write samples of a top-level function to a binary file. 688 /// 689 /// \returns true if the samples were written successfully, false otherwise. 690 std::error_code 691 SampleProfileWriterBinary::writeSample(const FunctionSamples &S) { 692 encodeULEB128(S.getHeadSamples(), *OutputStream); 693 return writeBody(S); 694 } 695 696 std::error_code 697 SampleProfileWriterCompactBinary::writeSample(const FunctionSamples &S) { 698 uint64_t Offset = OutputStream->tell(); 699 StringRef Name = S.getName(); 700 FuncOffsetTable[Name] = Offset; 701 encodeULEB128(S.getHeadSamples(), *OutputStream); 702 return writeBody(S); 703 } 704 705 /// Create a sample profile file writer based on the specified format. 706 /// 707 /// \param Filename The file to create. 708 /// 709 /// \param Format Encoding format for the profile file. 710 /// 711 /// \returns an error code indicating the status of the created writer. 712 ErrorOr<std::unique_ptr<SampleProfileWriter>> 713 SampleProfileWriter::create(StringRef Filename, SampleProfileFormat Format) { 714 std::error_code EC; 715 std::unique_ptr<raw_ostream> OS; 716 if (Format == SPF_Binary || Format == SPF_Ext_Binary || 717 Format == SPF_Compact_Binary) 718 OS.reset(new raw_fd_ostream(Filename, EC, sys::fs::OF_None)); 719 else 720 OS.reset(new raw_fd_ostream(Filename, EC, sys::fs::OF_Text)); 721 if (EC) 722 return EC; 723 724 return create(OS, Format); 725 } 726 727 /// Create a sample profile stream writer based on the specified format. 728 /// 729 /// \param OS The output stream to store the profile data to. 730 /// 731 /// \param Format Encoding format for the profile file. 732 /// 733 /// \returns an error code indicating the status of the created writer. 734 ErrorOr<std::unique_ptr<SampleProfileWriter>> 735 SampleProfileWriter::create(std::unique_ptr<raw_ostream> &OS, 736 SampleProfileFormat Format) { 737 std::error_code EC; 738 std::unique_ptr<SampleProfileWriter> Writer; 739 740 if (Format == SPF_Binary) 741 Writer.reset(new SampleProfileWriterRawBinary(OS)); 742 else if (Format == SPF_Ext_Binary) 743 Writer.reset(new SampleProfileWriterExtBinary(OS)); 744 else if (Format == SPF_Compact_Binary) 745 Writer.reset(new SampleProfileWriterCompactBinary(OS)); 746 else if (Format == SPF_Text) 747 Writer.reset(new SampleProfileWriterText(OS)); 748 else if (Format == SPF_GCC) 749 EC = sampleprof_error::unsupported_writing_format; 750 else 751 EC = sampleprof_error::unrecognized_format; 752 753 if (EC) 754 return EC; 755 756 Writer->Format = Format; 757 return std::move(Writer); 758 } 759 760 void SampleProfileWriter::computeSummary( 761 const StringMap<FunctionSamples> &ProfileMap) { 762 SampleProfileSummaryBuilder Builder(ProfileSummaryBuilder::DefaultCutoffs); 763 Summary = Builder.computeSummaryForProfiles(ProfileMap); 764 } 765