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