1 //=-- InstrProfReader.cpp - Instrumented profiling reader -------------------=// 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 contains support for reading profiling data for clang's 11 // instrumentation based PGO and coverage. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "llvm/ProfileData/InstrProfReader.h" 16 #include "llvm/ADT/STLExtras.h" 17 #include <cassert> 18 19 using namespace llvm; 20 21 static ErrorOr<std::unique_ptr<MemoryBuffer>> 22 setupMemoryBuffer(std::string Path) { 23 ErrorOr<std::unique_ptr<MemoryBuffer>> BufferOrErr = 24 MemoryBuffer::getFileOrSTDIN(Path); 25 if (std::error_code EC = BufferOrErr.getError()) 26 return EC; 27 return std::move(BufferOrErr.get()); 28 } 29 30 static std::error_code initializeReader(InstrProfReader &Reader) { 31 return Reader.readHeader(); 32 } 33 34 ErrorOr<std::unique_ptr<InstrProfReader>> 35 InstrProfReader::create(std::string Path) { 36 // Set up the buffer to read. 37 auto BufferOrError = setupMemoryBuffer(Path); 38 if (std::error_code EC = BufferOrError.getError()) 39 return EC; 40 return InstrProfReader::create(std::move(BufferOrError.get())); 41 } 42 43 ErrorOr<std::unique_ptr<InstrProfReader>> 44 InstrProfReader::create(std::unique_ptr<MemoryBuffer> Buffer) { 45 // Sanity check the buffer. 46 if (Buffer->getBufferSize() > std::numeric_limits<unsigned>::max()) 47 return instrprof_error::too_large; 48 49 std::unique_ptr<InstrProfReader> Result; 50 // Create the reader. 51 if (IndexedInstrProfReader::hasFormat(*Buffer)) 52 Result.reset(new IndexedInstrProfReader(std::move(Buffer))); 53 else if (RawInstrProfReader64::hasFormat(*Buffer)) 54 Result.reset(new RawInstrProfReader64(std::move(Buffer))); 55 else if (RawInstrProfReader32::hasFormat(*Buffer)) 56 Result.reset(new RawInstrProfReader32(std::move(Buffer))); 57 else if (TextInstrProfReader::hasFormat(*Buffer)) 58 Result.reset(new TextInstrProfReader(std::move(Buffer))); 59 else 60 return instrprof_error::unrecognized_format; 61 62 // Initialize the reader and return the result. 63 if (std::error_code EC = initializeReader(*Result)) 64 return EC; 65 66 return std::move(Result); 67 } 68 69 ErrorOr<std::unique_ptr<IndexedInstrProfReader>> 70 IndexedInstrProfReader::create(std::string Path) { 71 // Set up the buffer to read. 72 auto BufferOrError = setupMemoryBuffer(Path); 73 if (std::error_code EC = BufferOrError.getError()) 74 return EC; 75 return IndexedInstrProfReader::create(std::move(BufferOrError.get())); 76 } 77 78 79 ErrorOr<std::unique_ptr<IndexedInstrProfReader>> 80 IndexedInstrProfReader::create(std::unique_ptr<MemoryBuffer> Buffer) { 81 // Sanity check the buffer. 82 if (Buffer->getBufferSize() > std::numeric_limits<unsigned>::max()) 83 return instrprof_error::too_large; 84 85 // Create the reader. 86 if (!IndexedInstrProfReader::hasFormat(*Buffer)) 87 return instrprof_error::bad_magic; 88 auto Result = llvm::make_unique<IndexedInstrProfReader>(std::move(Buffer)); 89 90 // Initialize the reader and return the result. 91 if (std::error_code EC = initializeReader(*Result)) 92 return EC; 93 94 return std::move(Result); 95 } 96 97 void InstrProfIterator::Increment() { 98 if (Reader->readNextRecord(Record)) 99 *this = InstrProfIterator(); 100 } 101 102 bool TextInstrProfReader::hasFormat(const MemoryBuffer &Buffer) { 103 // Verify that this really looks like plain ASCII text by checking a 104 // 'reasonable' number of characters (up to profile magic size). 105 size_t count = std::min(Buffer.getBufferSize(), sizeof(uint64_t)); 106 StringRef buffer = Buffer.getBufferStart(); 107 return count == 0 || 108 std::all_of(buffer.begin(), buffer.begin() + count, 109 [](char c) { return ::isprint(c) || ::isspace(c); }); 110 } 111 112 // Read the profile variant flag from the header: ":FE" means this is a FE 113 // generated profile. ":IR" means this is an IR level profile. Other strings 114 // with a leading ':' will be reported an error format. 115 std::error_code TextInstrProfReader::readHeader() { 116 Symtab.reset(new InstrProfSymtab()); 117 bool IsIRInstr = false; 118 if (!Line->startswith(":")) { 119 IsIRLevelProfile = false; 120 return success(); 121 } 122 StringRef Str = (Line)->substr(1); 123 if (Str.equals_lower("ir")) 124 IsIRInstr = true; 125 else if (Str.equals_lower("fe")) 126 IsIRInstr = false; 127 else 128 return instrprof_error::bad_header; 129 130 ++Line; 131 IsIRLevelProfile = IsIRInstr; 132 return success(); 133 } 134 135 std::error_code 136 TextInstrProfReader::readValueProfileData(InstrProfRecord &Record) { 137 138 #define CHECK_LINE_END(Line) \ 139 if (Line.is_at_end()) \ 140 return error(instrprof_error::truncated); 141 #define READ_NUM(Str, Dst) \ 142 if ((Str).getAsInteger(10, (Dst))) \ 143 return error(instrprof_error::malformed); 144 #define VP_READ_ADVANCE(Val) \ 145 CHECK_LINE_END(Line); \ 146 uint32_t Val; \ 147 READ_NUM((*Line), (Val)); \ 148 Line++; 149 150 if (Line.is_at_end()) 151 return success(); 152 153 uint32_t NumValueKinds; 154 if (Line->getAsInteger(10, NumValueKinds)) { 155 // No value profile data 156 return success(); 157 } 158 if (NumValueKinds == 0 || NumValueKinds > IPVK_Last + 1) 159 return error(instrprof_error::malformed); 160 Line++; 161 162 for (uint32_t VK = 0; VK < NumValueKinds; VK++) { 163 VP_READ_ADVANCE(ValueKind); 164 if (ValueKind > IPVK_Last) 165 return error(instrprof_error::malformed); 166 VP_READ_ADVANCE(NumValueSites); 167 if (!NumValueSites) 168 continue; 169 170 Record.reserveSites(VK, NumValueSites); 171 for (uint32_t S = 0; S < NumValueSites; S++) { 172 VP_READ_ADVANCE(NumValueData); 173 174 std::vector<InstrProfValueData> CurrentValues; 175 for (uint32_t V = 0; V < NumValueData; V++) { 176 CHECK_LINE_END(Line); 177 std::pair<StringRef, StringRef> VD = Line->split(':'); 178 uint64_t TakenCount, Value; 179 if (VK == IPVK_IndirectCallTarget) { 180 Symtab->addFuncName(VD.first); 181 Value = IndexedInstrProf::ComputeHash(VD.first); 182 } else { 183 READ_NUM(VD.first, Value); 184 } 185 READ_NUM(VD.second, TakenCount); 186 CurrentValues.push_back({Value, TakenCount}); 187 Line++; 188 } 189 Record.addValueData(VK, S, CurrentValues.data(), NumValueData, nullptr); 190 } 191 } 192 return success(); 193 194 #undef CHECK_LINE_END 195 #undef READ_NUM 196 #undef VP_READ_ADVANCE 197 } 198 199 std::error_code TextInstrProfReader::readNextRecord(InstrProfRecord &Record) { 200 // Skip empty lines and comments. 201 while (!Line.is_at_end() && (Line->empty() || Line->startswith("#"))) 202 ++Line; 203 // If we hit EOF while looking for a name, we're done. 204 if (Line.is_at_end()) { 205 Symtab->finalizeSymtab(); 206 return error(instrprof_error::eof); 207 } 208 209 // Read the function name. 210 Record.Name = *Line++; 211 Symtab->addFuncName(Record.Name); 212 213 // Read the function hash. 214 if (Line.is_at_end()) 215 return error(instrprof_error::truncated); 216 if ((Line++)->getAsInteger(0, Record.Hash)) 217 return error(instrprof_error::malformed); 218 219 // Read the number of counters. 220 uint64_t NumCounters; 221 if (Line.is_at_end()) 222 return error(instrprof_error::truncated); 223 if ((Line++)->getAsInteger(10, NumCounters)) 224 return error(instrprof_error::malformed); 225 if (NumCounters == 0) 226 return error(instrprof_error::malformed); 227 228 // Read each counter and fill our internal storage with the values. 229 Record.Counts.clear(); 230 Record.Counts.reserve(NumCounters); 231 for (uint64_t I = 0; I < NumCounters; ++I) { 232 if (Line.is_at_end()) 233 return error(instrprof_error::truncated); 234 uint64_t Count; 235 if ((Line++)->getAsInteger(10, Count)) 236 return error(instrprof_error::malformed); 237 Record.Counts.push_back(Count); 238 } 239 240 // Check if value profile data exists and read it if so. 241 if (std::error_code EC = readValueProfileData(Record)) 242 return EC; 243 244 // This is needed to avoid two pass parsing because llvm-profdata 245 // does dumping while reading. 246 Symtab->finalizeSymtab(); 247 return success(); 248 } 249 250 template <class IntPtrT> 251 bool RawInstrProfReader<IntPtrT>::hasFormat(const MemoryBuffer &DataBuffer) { 252 if (DataBuffer.getBufferSize() < sizeof(uint64_t)) 253 return false; 254 uint64_t Magic = 255 *reinterpret_cast<const uint64_t *>(DataBuffer.getBufferStart()); 256 return RawInstrProf::getMagic<IntPtrT>() == Magic || 257 sys::getSwappedBytes(RawInstrProf::getMagic<IntPtrT>()) == Magic; 258 } 259 260 template <class IntPtrT> 261 std::error_code RawInstrProfReader<IntPtrT>::readHeader() { 262 if (!hasFormat(*DataBuffer)) 263 return error(instrprof_error::bad_magic); 264 if (DataBuffer->getBufferSize() < sizeof(RawInstrProf::Header)) 265 return error(instrprof_error::bad_header); 266 auto *Header = reinterpret_cast<const RawInstrProf::Header *>( 267 DataBuffer->getBufferStart()); 268 ShouldSwapBytes = Header->Magic != RawInstrProf::getMagic<IntPtrT>(); 269 return readHeader(*Header); 270 } 271 272 template <class IntPtrT> 273 std::error_code 274 RawInstrProfReader<IntPtrT>::readNextHeader(const char *CurrentPos) { 275 const char *End = DataBuffer->getBufferEnd(); 276 // Skip zero padding between profiles. 277 while (CurrentPos != End && *CurrentPos == 0) 278 ++CurrentPos; 279 // If there's nothing left, we're done. 280 if (CurrentPos == End) 281 return instrprof_error::eof; 282 // If there isn't enough space for another header, this is probably just 283 // garbage at the end of the file. 284 if (CurrentPos + sizeof(RawInstrProf::Header) > End) 285 return instrprof_error::malformed; 286 // The writer ensures each profile is padded to start at an aligned address. 287 if (reinterpret_cast<size_t>(CurrentPos) % alignOf<uint64_t>()) 288 return instrprof_error::malformed; 289 // The magic should have the same byte order as in the previous header. 290 uint64_t Magic = *reinterpret_cast<const uint64_t *>(CurrentPos); 291 if (Magic != swap(RawInstrProf::getMagic<IntPtrT>())) 292 return instrprof_error::bad_magic; 293 294 // There's another profile to read, so we need to process the header. 295 auto *Header = reinterpret_cast<const RawInstrProf::Header *>(CurrentPos); 296 return readHeader(*Header); 297 } 298 299 template <class IntPtrT> 300 void RawInstrProfReader<IntPtrT>::createSymtab(InstrProfSymtab &Symtab) { 301 Symtab.create(StringRef(NamesStart, NamesSize)); 302 for (const RawInstrProf::ProfileData<IntPtrT> *I = Data; I != DataEnd; ++I) { 303 const IntPtrT FPtr = swap(I->FunctionPointer); 304 if (!FPtr) 305 continue; 306 Symtab.mapAddress(FPtr, I->NameRef); 307 } 308 Symtab.finalizeSymtab(); 309 } 310 311 template <class IntPtrT> 312 std::error_code 313 RawInstrProfReader<IntPtrT>::readHeader(const RawInstrProf::Header &Header) { 314 Version = swap(Header.Version); 315 if (GET_VERSION(Version) != RawInstrProf::Version) 316 return error(instrprof_error::unsupported_version); 317 318 CountersDelta = swap(Header.CountersDelta); 319 NamesDelta = swap(Header.NamesDelta); 320 auto DataSize = swap(Header.DataSize); 321 auto CountersSize = swap(Header.CountersSize); 322 NamesSize = swap(Header.NamesSize); 323 auto ValueDataSize = swap(Header.ValueDataSize); 324 ValueKindLast = swap(Header.ValueKindLast); 325 326 auto DataSizeInBytes = DataSize * sizeof(RawInstrProf::ProfileData<IntPtrT>); 327 auto PaddingSize = getNumPaddingBytes(NamesSize); 328 329 ptrdiff_t DataOffset = sizeof(RawInstrProf::Header); 330 ptrdiff_t CountersOffset = DataOffset + DataSizeInBytes; 331 ptrdiff_t NamesOffset = CountersOffset + sizeof(uint64_t) * CountersSize; 332 ptrdiff_t ValueDataOffset = NamesOffset + NamesSize + PaddingSize; 333 size_t ProfileSize = ValueDataOffset + ValueDataSize; 334 335 auto *Start = reinterpret_cast<const char *>(&Header); 336 if (Start + ProfileSize > DataBuffer->getBufferEnd()) 337 return error(instrprof_error::bad_header); 338 339 Data = reinterpret_cast<const RawInstrProf::ProfileData<IntPtrT> *>( 340 Start + DataOffset); 341 DataEnd = Data + DataSize; 342 CountersStart = reinterpret_cast<const uint64_t *>(Start + CountersOffset); 343 NamesStart = Start + NamesOffset; 344 ValueDataStart = reinterpret_cast<const uint8_t *>(Start + ValueDataOffset); 345 ProfileEnd = Start + ProfileSize; 346 347 std::unique_ptr<InstrProfSymtab> NewSymtab = make_unique<InstrProfSymtab>(); 348 createSymtab(*NewSymtab.get()); 349 Symtab = std::move(NewSymtab); 350 return success(); 351 } 352 353 template <class IntPtrT> 354 std::error_code RawInstrProfReader<IntPtrT>::readName(InstrProfRecord &Record) { 355 Record.Name = getName(Data->NameRef); 356 return success(); 357 } 358 359 template <class IntPtrT> 360 std::error_code RawInstrProfReader<IntPtrT>::readFuncHash( 361 InstrProfRecord &Record) { 362 Record.Hash = swap(Data->FuncHash); 363 return success(); 364 } 365 366 template <class IntPtrT> 367 std::error_code RawInstrProfReader<IntPtrT>::readRawCounts( 368 InstrProfRecord &Record) { 369 uint32_t NumCounters = swap(Data->NumCounters); 370 IntPtrT CounterPtr = Data->CounterPtr; 371 if (NumCounters == 0) 372 return error(instrprof_error::malformed); 373 374 auto RawCounts = makeArrayRef(getCounter(CounterPtr), NumCounters); 375 auto *NamesStartAsCounter = reinterpret_cast<const uint64_t *>(NamesStart); 376 377 // Check bounds. 378 if (RawCounts.data() < CountersStart || 379 RawCounts.data() + RawCounts.size() > NamesStartAsCounter) 380 return error(instrprof_error::malformed); 381 382 if (ShouldSwapBytes) { 383 Record.Counts.clear(); 384 Record.Counts.reserve(RawCounts.size()); 385 for (uint64_t Count : RawCounts) 386 Record.Counts.push_back(swap(Count)); 387 } else 388 Record.Counts = RawCounts; 389 390 return success(); 391 } 392 393 template <class IntPtrT> 394 std::error_code 395 RawInstrProfReader<IntPtrT>::readValueProfilingData(InstrProfRecord &Record) { 396 397 Record.clearValueData(); 398 CurValueDataSize = 0; 399 // Need to match the logic in value profile dumper code in compiler-rt: 400 uint32_t NumValueKinds = 0; 401 for (uint32_t I = 0; I < IPVK_Last + 1; I++) 402 NumValueKinds += (Data->NumValueSites[I] != 0); 403 404 if (!NumValueKinds) 405 return success(); 406 407 ErrorOr<std::unique_ptr<ValueProfData>> VDataPtrOrErr = 408 ValueProfData::getValueProfData(ValueDataStart, 409 (const unsigned char *)ProfileEnd, 410 getDataEndianness()); 411 412 if (VDataPtrOrErr.getError()) 413 return VDataPtrOrErr.getError(); 414 415 // Note that besides deserialization, this also performs the conversion for 416 // indirect call targets. The function pointers from the raw profile are 417 // remapped into function name hashes. 418 VDataPtrOrErr.get()->deserializeTo(Record, &Symtab->getAddrHashMap()); 419 CurValueDataSize = VDataPtrOrErr.get()->getSize(); 420 return success(); 421 } 422 423 template <class IntPtrT> 424 std::error_code 425 RawInstrProfReader<IntPtrT>::readNextRecord(InstrProfRecord &Record) { 426 if (atEnd()) 427 if (std::error_code EC = readNextHeader(ProfileEnd)) 428 return EC; 429 430 // Read name ad set it in Record. 431 if (std::error_code EC = readName(Record)) 432 return EC; 433 434 // Read FuncHash and set it in Record. 435 if (std::error_code EC = readFuncHash(Record)) 436 return EC; 437 438 // Read raw counts and set Record. 439 if (std::error_code EC = readRawCounts(Record)) 440 return EC; 441 442 // Read value data and set Record. 443 if (std::error_code EC = readValueProfilingData(Record)) 444 return EC; 445 446 // Iterate. 447 advanceData(); 448 return success(); 449 } 450 451 namespace llvm { 452 template class RawInstrProfReader<uint32_t>; 453 template class RawInstrProfReader<uint64_t>; 454 } 455 456 InstrProfLookupTrait::hash_value_type 457 InstrProfLookupTrait::ComputeHash(StringRef K) { 458 return IndexedInstrProf::ComputeHash(HashType, K); 459 } 460 461 typedef InstrProfLookupTrait::data_type data_type; 462 typedef InstrProfLookupTrait::offset_type offset_type; 463 464 bool InstrProfLookupTrait::readValueProfilingData( 465 const unsigned char *&D, const unsigned char *const End) { 466 ErrorOr<std::unique_ptr<ValueProfData>> VDataPtrOrErr = 467 ValueProfData::getValueProfData(D, End, ValueProfDataEndianness); 468 469 if (VDataPtrOrErr.getError()) 470 return false; 471 472 VDataPtrOrErr.get()->deserializeTo(DataBuffer.back(), nullptr); 473 D += VDataPtrOrErr.get()->TotalSize; 474 475 return true; 476 } 477 478 data_type InstrProfLookupTrait::ReadData(StringRef K, const unsigned char *D, 479 offset_type N) { 480 // Check if the data is corrupt. If so, don't try to read it. 481 if (N % sizeof(uint64_t)) 482 return data_type(); 483 484 DataBuffer.clear(); 485 std::vector<uint64_t> CounterBuffer; 486 487 using namespace support; 488 const unsigned char *End = D + N; 489 while (D < End) { 490 // Read hash. 491 if (D + sizeof(uint64_t) >= End) 492 return data_type(); 493 uint64_t Hash = endian::readNext<uint64_t, little, unaligned>(D); 494 495 // Initialize number of counters for GET_VERSION(FormatVersion) == 1. 496 uint64_t CountsSize = N / sizeof(uint64_t) - 1; 497 // If format version is different then read the number of counters. 498 if (GET_VERSION(FormatVersion) != IndexedInstrProf::ProfVersion::Version1) { 499 if (D + sizeof(uint64_t) > End) 500 return data_type(); 501 CountsSize = endian::readNext<uint64_t, little, unaligned>(D); 502 } 503 // Read counter values. 504 if (D + CountsSize * sizeof(uint64_t) > End) 505 return data_type(); 506 507 CounterBuffer.clear(); 508 CounterBuffer.reserve(CountsSize); 509 for (uint64_t J = 0; J < CountsSize; ++J) 510 CounterBuffer.push_back(endian::readNext<uint64_t, little, unaligned>(D)); 511 512 DataBuffer.emplace_back(K, Hash, std::move(CounterBuffer)); 513 514 // Read value profiling data. 515 if (GET_VERSION(FormatVersion) > IndexedInstrProf::ProfVersion::Version2 && 516 !readValueProfilingData(D, End)) { 517 DataBuffer.clear(); 518 return data_type(); 519 } 520 } 521 return DataBuffer; 522 } 523 524 template <typename HashTableImpl> 525 std::error_code InstrProfReaderIndex<HashTableImpl>::getRecords( 526 StringRef FuncName, ArrayRef<InstrProfRecord> &Data) { 527 auto Iter = HashTable->find(FuncName); 528 if (Iter == HashTable->end()) 529 return instrprof_error::unknown_function; 530 531 Data = (*Iter); 532 if (Data.empty()) 533 return instrprof_error::malformed; 534 535 return instrprof_error::success; 536 } 537 538 template <typename HashTableImpl> 539 std::error_code InstrProfReaderIndex<HashTableImpl>::getRecords( 540 ArrayRef<InstrProfRecord> &Data) { 541 if (atEnd()) 542 return instrprof_error::eof; 543 544 Data = *RecordIterator; 545 546 if (Data.empty()) 547 return instrprof_error::malformed; 548 549 return instrprof_error::success; 550 } 551 552 template <typename HashTableImpl> 553 InstrProfReaderIndex<HashTableImpl>::InstrProfReaderIndex( 554 const unsigned char *Buckets, const unsigned char *const Payload, 555 const unsigned char *const Base, IndexedInstrProf::HashT HashType, 556 uint64_t Version) { 557 FormatVersion = Version; 558 HashTable.reset(HashTableImpl::Create( 559 Buckets, Payload, Base, 560 typename HashTableImpl::InfoType(HashType, Version))); 561 RecordIterator = HashTable->data_begin(); 562 } 563 564 bool IndexedInstrProfReader::hasFormat(const MemoryBuffer &DataBuffer) { 565 if (DataBuffer.getBufferSize() < 8) 566 return false; 567 using namespace support; 568 uint64_t Magic = 569 endian::read<uint64_t, little, aligned>(DataBuffer.getBufferStart()); 570 // Verify that it's magical. 571 return Magic == IndexedInstrProf::Magic; 572 } 573 574 const unsigned char * 575 IndexedInstrProfReader::readSummary(IndexedInstrProf::ProfVersion Version, 576 const unsigned char *Cur) { 577 using namespace support; 578 if (Version >= IndexedInstrProf::Version4) { 579 const IndexedInstrProf::Summary *SummaryInLE = 580 reinterpret_cast<const IndexedInstrProf::Summary *>(Cur); 581 uint64_t NFields = 582 endian::byte_swap<uint64_t, little>(SummaryInLE->NumSummaryFields); 583 uint64_t NEntries = 584 endian::byte_swap<uint64_t, little>(SummaryInLE->NumCutoffEntries); 585 uint32_t SummarySize = 586 IndexedInstrProf::Summary::getSize(NFields, NEntries); 587 std::unique_ptr<IndexedInstrProf::Summary> SummaryData = 588 IndexedInstrProf::allocSummary(SummarySize); 589 590 const uint64_t *Src = reinterpret_cast<const uint64_t *>(SummaryInLE); 591 uint64_t *Dst = reinterpret_cast<uint64_t *>(SummaryData.get()); 592 for (unsigned I = 0; I < SummarySize / sizeof(uint64_t); I++) 593 Dst[I] = endian::byte_swap<uint64_t, little>(Src[I]); 594 595 // initialize InstrProfSummary using the SummaryData from disk. 596 this->Summary = llvm::make_unique<InstrProfSummary>(*(SummaryData.get())); 597 return Cur + SummarySize; 598 } else { 599 // For older version of profile data, we need to compute on the fly: 600 using namespace IndexedInstrProf; 601 this->Summary = 602 llvm::make_unique<InstrProfSummary>(ProfileSummary::DefaultCutoffs); 603 this->Summary->computeDetailedSummary(); 604 return Cur; 605 } 606 } 607 608 std::error_code IndexedInstrProfReader::readHeader() { 609 const unsigned char *Start = 610 (const unsigned char *)DataBuffer->getBufferStart(); 611 const unsigned char *Cur = Start; 612 if ((const unsigned char *)DataBuffer->getBufferEnd() - Cur < 24) 613 return error(instrprof_error::truncated); 614 615 using namespace support; 616 617 auto *Header = reinterpret_cast<const IndexedInstrProf::Header *>(Cur); 618 Cur += sizeof(IndexedInstrProf::Header); 619 620 // Check the magic number. 621 uint64_t Magic = endian::byte_swap<uint64_t, little>(Header->Magic); 622 if (Magic != IndexedInstrProf::Magic) 623 return error(instrprof_error::bad_magic); 624 625 // Read the version. 626 uint64_t FormatVersion = endian::byte_swap<uint64_t, little>(Header->Version); 627 if (GET_VERSION(FormatVersion) > 628 IndexedInstrProf::ProfVersion::CurrentVersion) 629 return error(instrprof_error::unsupported_version); 630 631 Cur = readSummary((IndexedInstrProf::ProfVersion)FormatVersion, Cur); 632 633 // Read the hash type and start offset. 634 IndexedInstrProf::HashT HashType = static_cast<IndexedInstrProf::HashT>( 635 endian::byte_swap<uint64_t, little>(Header->HashType)); 636 if (HashType > IndexedInstrProf::HashT::Last) 637 return error(instrprof_error::unsupported_hash_type); 638 639 uint64_t HashOffset = endian::byte_swap<uint64_t, little>(Header->HashOffset); 640 641 // The rest of the file is an on disk hash table. 642 InstrProfReaderIndexBase *IndexPtr = nullptr; 643 IndexPtr = new InstrProfReaderIndex<OnDiskHashTableImplV3>( 644 Start + HashOffset, Cur, Start, HashType, FormatVersion); 645 Index.reset(IndexPtr); 646 return success(); 647 } 648 649 InstrProfSymtab &IndexedInstrProfReader::getSymtab() { 650 if (Symtab.get()) 651 return *Symtab.get(); 652 653 std::unique_ptr<InstrProfSymtab> NewSymtab = make_unique<InstrProfSymtab>(); 654 Index->populateSymtab(*NewSymtab.get()); 655 656 Symtab = std::move(NewSymtab); 657 return *Symtab.get(); 658 } 659 660 ErrorOr<InstrProfRecord> 661 IndexedInstrProfReader::getInstrProfRecord(StringRef FuncName, 662 uint64_t FuncHash) { 663 ArrayRef<InstrProfRecord> Data; 664 std::error_code EC = Index->getRecords(FuncName, Data); 665 if (EC != instrprof_error::success) 666 return EC; 667 // Found it. Look for counters with the right hash. 668 for (unsigned I = 0, E = Data.size(); I < E; ++I) { 669 // Check for a match and fill the vector if there is one. 670 if (Data[I].Hash == FuncHash) { 671 return std::move(Data[I]); 672 } 673 } 674 return error(instrprof_error::hash_mismatch); 675 } 676 677 std::error_code 678 IndexedInstrProfReader::getFunctionCounts(StringRef FuncName, uint64_t FuncHash, 679 std::vector<uint64_t> &Counts) { 680 ErrorOr<InstrProfRecord> Record = getInstrProfRecord(FuncName, FuncHash); 681 if (std::error_code EC = Record.getError()) 682 return EC; 683 684 Counts = Record.get().Counts; 685 return success(); 686 } 687 688 std::error_code IndexedInstrProfReader::readNextRecord( 689 InstrProfRecord &Record) { 690 static unsigned RecordIndex = 0; 691 692 ArrayRef<InstrProfRecord> Data; 693 694 std::error_code EC = Index->getRecords(Data); 695 if (EC != instrprof_error::success) 696 return error(EC); 697 698 Record = Data[RecordIndex++]; 699 if (RecordIndex >= Data.size()) { 700 Index->advanceToNextKey(); 701 RecordIndex = 0; 702 } 703 return success(); 704 } 705