1 //===- SampleProfReader.cpp - Read 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 reads LLVM sample profiles. It
10 // supports three file formats: text, binary and gcov.
11 //
12 // The textual representation is useful for debugging and testing purposes. The
13 // binary representation is more compact, resulting in smaller file sizes.
14 //
15 // The gcov encoding is the one generated by GCC's AutoFDO profile creation
16 // tool (https://github.com/google/autofdo)
17 //
18 // All three encodings can be used interchangeably as an input sample profile.
19 //
20 //===----------------------------------------------------------------------===//
21 
22 #include "llvm/ProfileData/SampleProfReader.h"
23 #include "llvm/ADT/DenseMap.h"
24 #include "llvm/ADT/STLExtras.h"
25 #include "llvm/ADT/StringRef.h"
26 #include "llvm/IR/ProfileSummary.h"
27 #include "llvm/ProfileData/ProfileCommon.h"
28 #include "llvm/ProfileData/SampleProf.h"
29 #include "llvm/Support/ErrorOr.h"
30 #include "llvm/Support/LEB128.h"
31 #include "llvm/Support/LineIterator.h"
32 #include "llvm/Support/MD5.h"
33 #include "llvm/Support/MemoryBuffer.h"
34 #include "llvm/Support/raw_ostream.h"
35 #include <algorithm>
36 #include <cstddef>
37 #include <cstdint>
38 #include <limits>
39 #include <memory>
40 #include <system_error>
41 #include <vector>
42 
43 using namespace llvm;
44 using namespace sampleprof;
45 
46 /// Dump the function profile for \p FName.
47 ///
48 /// \param FName Name of the function to print.
49 /// \param OS Stream to emit the output to.
50 void SampleProfileReader::dumpFunctionProfile(StringRef FName,
51                                               raw_ostream &OS) {
52   OS << "Function: " << FName << ": " << Profiles[FName];
53 }
54 
55 /// Dump all the function profiles found on stream \p OS.
56 void SampleProfileReader::dump(raw_ostream &OS) {
57   for (const auto &I : Profiles)
58     dumpFunctionProfile(I.getKey(), OS);
59 }
60 
61 /// Parse \p Input as function head.
62 ///
63 /// Parse one line of \p Input, and update function name in \p FName,
64 /// function's total sample count in \p NumSamples, function's entry
65 /// count in \p NumHeadSamples.
66 ///
67 /// \returns true if parsing is successful.
68 static bool ParseHead(const StringRef &Input, StringRef &FName,
69                       uint64_t &NumSamples, uint64_t &NumHeadSamples) {
70   if (Input[0] == ' ')
71     return false;
72   size_t n2 = Input.rfind(':');
73   size_t n1 = Input.rfind(':', n2 - 1);
74   FName = Input.substr(0, n1);
75   if (Input.substr(n1 + 1, n2 - n1 - 1).getAsInteger(10, NumSamples))
76     return false;
77   if (Input.substr(n2 + 1).getAsInteger(10, NumHeadSamples))
78     return false;
79   return true;
80 }
81 
82 /// Returns true if line offset \p L is legal (only has 16 bits).
83 static bool isOffsetLegal(unsigned L) { return (L & 0xffff) == L; }
84 
85 /// Parse \p Input as line sample.
86 ///
87 /// \param Input input line.
88 /// \param IsCallsite true if the line represents an inlined callsite.
89 /// \param Depth the depth of the inline stack.
90 /// \param NumSamples total samples of the line/inlined callsite.
91 /// \param LineOffset line offset to the start of the function.
92 /// \param Discriminator discriminator of the line.
93 /// \param TargetCountMap map from indirect call target to count.
94 ///
95 /// returns true if parsing is successful.
96 static bool ParseLine(const StringRef &Input, bool &IsCallsite, uint32_t &Depth,
97                       uint64_t &NumSamples, uint32_t &LineOffset,
98                       uint32_t &Discriminator, StringRef &CalleeName,
99                       DenseMap<StringRef, uint64_t> &TargetCountMap) {
100   for (Depth = 0; Input[Depth] == ' '; Depth++)
101     ;
102   if (Depth == 0)
103     return false;
104 
105   size_t n1 = Input.find(':');
106   StringRef Loc = Input.substr(Depth, n1 - Depth);
107   size_t n2 = Loc.find('.');
108   if (n2 == StringRef::npos) {
109     if (Loc.getAsInteger(10, LineOffset) || !isOffsetLegal(LineOffset))
110       return false;
111     Discriminator = 0;
112   } else {
113     if (Loc.substr(0, n2).getAsInteger(10, LineOffset))
114       return false;
115     if (Loc.substr(n2 + 1).getAsInteger(10, Discriminator))
116       return false;
117   }
118 
119   StringRef Rest = Input.substr(n1 + 2);
120   if (Rest[0] >= '0' && Rest[0] <= '9') {
121     IsCallsite = false;
122     size_t n3 = Rest.find(' ');
123     if (n3 == StringRef::npos) {
124       if (Rest.getAsInteger(10, NumSamples))
125         return false;
126     } else {
127       if (Rest.substr(0, n3).getAsInteger(10, NumSamples))
128         return false;
129     }
130     // Find call targets and their sample counts.
131     // Note: In some cases, there are symbols in the profile which are not
132     // mangled. To accommodate such cases, use colon + integer pairs as the
133     // anchor points.
134     // An example:
135     // _M_construct<char *>:1000 string_view<std::allocator<char> >:437
136     // ":1000" and ":437" are used as anchor points so the string above will
137     // be interpreted as
138     // target: _M_construct<char *>
139     // count: 1000
140     // target: string_view<std::allocator<char> >
141     // count: 437
142     while (n3 != StringRef::npos) {
143       n3 += Rest.substr(n3).find_first_not_of(' ');
144       Rest = Rest.substr(n3);
145       n3 = Rest.find_first_of(':');
146       if (n3 == StringRef::npos || n3 == 0)
147         return false;
148 
149       StringRef Target;
150       uint64_t count, n4;
151       while (true) {
152         // Get the segment after the current colon.
153         StringRef AfterColon = Rest.substr(n3 + 1);
154         // Get the target symbol before the current colon.
155         Target = Rest.substr(0, n3);
156         // Check if the word after the current colon is an integer.
157         n4 = AfterColon.find_first_of(' ');
158         n4 = (n4 != StringRef::npos) ? n3 + n4 + 1 : Rest.size();
159         StringRef WordAfterColon = Rest.substr(n3 + 1, n4 - n3 - 1);
160         if (!WordAfterColon.getAsInteger(10, count))
161           break;
162 
163         // Try to find the next colon.
164         uint64_t n5 = AfterColon.find_first_of(':');
165         if (n5 == StringRef::npos)
166           return false;
167         n3 += n5 + 1;
168       }
169 
170       // An anchor point is found. Save the {target, count} pair
171       TargetCountMap[Target] = count;
172       if (n4 == Rest.size())
173         break;
174       // Change n3 to the next blank space after colon + integer pair.
175       n3 = n4;
176     }
177   } else {
178     IsCallsite = true;
179     size_t n3 = Rest.find_last_of(':');
180     CalleeName = Rest.substr(0, n3);
181     if (Rest.substr(n3 + 1).getAsInteger(10, NumSamples))
182       return false;
183   }
184   return true;
185 }
186 
187 /// Load samples from a text file.
188 ///
189 /// See the documentation at the top of the file for an explanation of
190 /// the expected format.
191 ///
192 /// \returns true if the file was loaded successfully, false otherwise.
193 std::error_code SampleProfileReaderText::read() {
194   line_iterator LineIt(*Buffer, /*SkipBlanks=*/true, '#');
195   sampleprof_error Result = sampleprof_error::success;
196 
197   InlineCallStack InlineStack;
198 
199   for (; !LineIt.is_at_eof(); ++LineIt) {
200     if ((*LineIt)[(*LineIt).find_first_not_of(' ')] == '#')
201       continue;
202     // Read the header of each function.
203     //
204     // Note that for function identifiers we are actually expecting
205     // mangled names, but we may not always get them. This happens when
206     // the compiler decides not to emit the function (e.g., it was inlined
207     // and removed). In this case, the binary will not have the linkage
208     // name for the function, so the profiler will emit the function's
209     // unmangled name, which may contain characters like ':' and '>' in its
210     // name (member functions, templates, etc).
211     //
212     // The only requirement we place on the identifier, then, is that it
213     // should not begin with a number.
214     if ((*LineIt)[0] != ' ') {
215       uint64_t NumSamples, NumHeadSamples;
216       StringRef FName;
217       if (!ParseHead(*LineIt, FName, NumSamples, NumHeadSamples)) {
218         reportError(LineIt.line_number(),
219                     "Expected 'mangled_name:NUM:NUM', found " + *LineIt);
220         return sampleprof_error::malformed;
221       }
222       Profiles[FName] = FunctionSamples();
223       FunctionSamples &FProfile = Profiles[FName];
224       FProfile.setName(FName);
225       MergeResult(Result, FProfile.addTotalSamples(NumSamples));
226       MergeResult(Result, FProfile.addHeadSamples(NumHeadSamples));
227       InlineStack.clear();
228       InlineStack.push_back(&FProfile);
229     } else {
230       uint64_t NumSamples;
231       StringRef FName;
232       DenseMap<StringRef, uint64_t> TargetCountMap;
233       bool IsCallsite;
234       uint32_t Depth, LineOffset, Discriminator;
235       if (!ParseLine(*LineIt, IsCallsite, Depth, NumSamples, LineOffset,
236                      Discriminator, FName, TargetCountMap)) {
237         reportError(LineIt.line_number(),
238                     "Expected 'NUM[.NUM]: NUM[ mangled_name:NUM]*', found " +
239                         *LineIt);
240         return sampleprof_error::malformed;
241       }
242       if (IsCallsite) {
243         while (InlineStack.size() > Depth) {
244           InlineStack.pop_back();
245         }
246         FunctionSamples &FSamples = InlineStack.back()->functionSamplesAt(
247             LineLocation(LineOffset, Discriminator))[FName];
248         FSamples.setName(FName);
249         MergeResult(Result, FSamples.addTotalSamples(NumSamples));
250         InlineStack.push_back(&FSamples);
251       } else {
252         while (InlineStack.size() > Depth) {
253           InlineStack.pop_back();
254         }
255         FunctionSamples &FProfile = *InlineStack.back();
256         for (const auto &name_count : TargetCountMap) {
257           MergeResult(Result, FProfile.addCalledTargetSamples(
258                                   LineOffset, Discriminator, name_count.first,
259                                   name_count.second));
260         }
261         MergeResult(Result, FProfile.addBodySamples(LineOffset, Discriminator,
262                                                     NumSamples));
263       }
264     }
265   }
266   if (Result == sampleprof_error::success)
267     computeSummary();
268 
269   return Result;
270 }
271 
272 bool SampleProfileReaderText::hasFormat(const MemoryBuffer &Buffer) {
273   bool result = false;
274 
275   // Check that the first non-comment line is a valid function header.
276   line_iterator LineIt(Buffer, /*SkipBlanks=*/true, '#');
277   if (!LineIt.is_at_eof()) {
278     if ((*LineIt)[0] != ' ') {
279       uint64_t NumSamples, NumHeadSamples;
280       StringRef FName;
281       result = ParseHead(*LineIt, FName, NumSamples, NumHeadSamples);
282     }
283   }
284 
285   return result;
286 }
287 
288 template <typename T> ErrorOr<T> SampleProfileReaderBinary::readNumber() {
289   unsigned NumBytesRead = 0;
290   std::error_code EC;
291   uint64_t Val = decodeULEB128(Data, &NumBytesRead);
292 
293   if (Val > std::numeric_limits<T>::max())
294     EC = sampleprof_error::malformed;
295   else if (Data + NumBytesRead > End)
296     EC = sampleprof_error::truncated;
297   else
298     EC = sampleprof_error::success;
299 
300   if (EC) {
301     reportError(0, EC.message());
302     return EC;
303   }
304 
305   Data += NumBytesRead;
306   return static_cast<T>(Val);
307 }
308 
309 ErrorOr<StringRef> SampleProfileReaderBinary::readString() {
310   std::error_code EC;
311   StringRef Str(reinterpret_cast<const char *>(Data));
312   if (Data + Str.size() + 1 > End) {
313     EC = sampleprof_error::truncated;
314     reportError(0, EC.message());
315     return EC;
316   }
317 
318   Data += Str.size() + 1;
319   return Str;
320 }
321 
322 template <typename T>
323 ErrorOr<T> SampleProfileReaderBinary::readUnencodedNumber() {
324   std::error_code EC;
325 
326   if (Data + sizeof(T) > End) {
327     EC = sampleprof_error::truncated;
328     reportError(0, EC.message());
329     return EC;
330   }
331 
332   using namespace support;
333   T Val = endian::readNext<T, little, unaligned>(Data);
334   return Val;
335 }
336 
337 template <typename T>
338 inline ErrorOr<uint32_t> SampleProfileReaderBinary::readStringIndex(T &Table) {
339   std::error_code EC;
340   auto Idx = readNumber<uint32_t>();
341   if (std::error_code EC = Idx.getError())
342     return EC;
343   if (*Idx >= Table.size())
344     return sampleprof_error::truncated_name_table;
345   return *Idx;
346 }
347 
348 ErrorOr<StringRef> SampleProfileReaderBinary::readStringFromTable() {
349   auto Idx = readStringIndex(NameTable);
350   if (std::error_code EC = Idx.getError())
351     return EC;
352 
353   return NameTable[*Idx];
354 }
355 
356 ErrorOr<StringRef> SampleProfileReaderCompactBinary::readStringFromTable() {
357   auto Idx = readStringIndex(NameTable);
358   if (std::error_code EC = Idx.getError())
359     return EC;
360 
361   return StringRef(NameTable[*Idx]);
362 }
363 
364 std::error_code
365 SampleProfileReaderBinary::readProfile(FunctionSamples &FProfile) {
366   auto NumSamples = readNumber<uint64_t>();
367   if (std::error_code EC = NumSamples.getError())
368     return EC;
369   FProfile.addTotalSamples(*NumSamples);
370 
371   // Read the samples in the body.
372   auto NumRecords = readNumber<uint32_t>();
373   if (std::error_code EC = NumRecords.getError())
374     return EC;
375 
376   for (uint32_t I = 0; I < *NumRecords; ++I) {
377     auto LineOffset = readNumber<uint64_t>();
378     if (std::error_code EC = LineOffset.getError())
379       return EC;
380 
381     if (!isOffsetLegal(*LineOffset)) {
382       return std::error_code();
383     }
384 
385     auto Discriminator = readNumber<uint64_t>();
386     if (std::error_code EC = Discriminator.getError())
387       return EC;
388 
389     auto NumSamples = readNumber<uint64_t>();
390     if (std::error_code EC = NumSamples.getError())
391       return EC;
392 
393     auto NumCalls = readNumber<uint32_t>();
394     if (std::error_code EC = NumCalls.getError())
395       return EC;
396 
397     for (uint32_t J = 0; J < *NumCalls; ++J) {
398       auto CalledFunction(readStringFromTable());
399       if (std::error_code EC = CalledFunction.getError())
400         return EC;
401 
402       auto CalledFunctionSamples = readNumber<uint64_t>();
403       if (std::error_code EC = CalledFunctionSamples.getError())
404         return EC;
405 
406       FProfile.addCalledTargetSamples(*LineOffset, *Discriminator,
407                                       *CalledFunction, *CalledFunctionSamples);
408     }
409 
410     FProfile.addBodySamples(*LineOffset, *Discriminator, *NumSamples);
411   }
412 
413   // Read all the samples for inlined function calls.
414   auto NumCallsites = readNumber<uint32_t>();
415   if (std::error_code EC = NumCallsites.getError())
416     return EC;
417 
418   for (uint32_t J = 0; J < *NumCallsites; ++J) {
419     auto LineOffset = readNumber<uint64_t>();
420     if (std::error_code EC = LineOffset.getError())
421       return EC;
422 
423     auto Discriminator = readNumber<uint64_t>();
424     if (std::error_code EC = Discriminator.getError())
425       return EC;
426 
427     auto FName(readStringFromTable());
428     if (std::error_code EC = FName.getError())
429       return EC;
430 
431     FunctionSamples &CalleeProfile = FProfile.functionSamplesAt(
432         LineLocation(*LineOffset, *Discriminator))[*FName];
433     CalleeProfile.setName(*FName);
434     if (std::error_code EC = readProfile(CalleeProfile))
435       return EC;
436   }
437 
438   return sampleprof_error::success;
439 }
440 
441 std::error_code SampleProfileReaderBinary::readFuncProfile() {
442   auto NumHeadSamples = readNumber<uint64_t>();
443   if (std::error_code EC = NumHeadSamples.getError())
444     return EC;
445 
446   auto FName(readStringFromTable());
447   if (std::error_code EC = FName.getError())
448     return EC;
449 
450   Profiles[*FName] = FunctionSamples();
451   FunctionSamples &FProfile = Profiles[*FName];
452   FProfile.setName(*FName);
453 
454   FProfile.addHeadSamples(*NumHeadSamples);
455 
456   if (std::error_code EC = readProfile(FProfile))
457     return EC;
458   return sampleprof_error::success;
459 }
460 
461 std::error_code SampleProfileReaderBinary::read() {
462   while (!at_eof()) {
463     if (std::error_code EC = readFuncProfile())
464       return EC;
465   }
466 
467   return sampleprof_error::success;
468 }
469 
470 std::error_code
471 SampleProfileReaderExtBinary::readOneSection(const uint8_t *Start,
472                                              uint64_t Size, SecType Type) {
473   Data = Start;
474   switch (Type) {
475   case SecProfSummary:
476     if (std::error_code EC = readSummary())
477       return EC;
478     break;
479   case SecNameTable:
480     if (std::error_code EC = readNameTable())
481       return EC;
482     break;
483   case SecLBRProfile:
484     while (Data < Start + Size) {
485       if (std::error_code EC = readFuncProfile())
486         return EC;
487     }
488     break;
489   case SecProfileSymbolList:
490     if (std::error_code EC = readProfileSymbolList())
491       return EC;
492     break;
493   default:
494     break;
495   }
496   return sampleprof_error::success;
497 }
498 
499 std::error_code SampleProfileReaderExtBinary::readProfileSymbolList() {
500   auto UncompressSize = readNumber<uint64_t>();
501   if (std::error_code EC = UncompressSize.getError())
502     return EC;
503 
504   auto CompressSize = readNumber<uint64_t>();
505   if (std::error_code EC = CompressSize.getError())
506     return EC;
507 
508   if (!ProfSymList)
509     ProfSymList = std::make_unique<ProfileSymbolList>();
510 
511   if (std::error_code EC =
512           ProfSymList->read(*CompressSize, *UncompressSize, Data))
513     return EC;
514 
515   // CompressSize is zero only when ProfileSymbolList is not compressed.
516   if (*CompressSize == 0)
517     Data = Data + *UncompressSize;
518   else
519     Data = Data + *CompressSize;
520   return sampleprof_error::success;
521 }
522 
523 std::error_code SampleProfileReaderExtBinaryBase::read() {
524   const uint8_t *BufStart =
525       reinterpret_cast<const uint8_t *>(Buffer->getBufferStart());
526 
527   for (auto &Entry : SecHdrTable) {
528     // Skip empty section.
529     if (!Entry.Size)
530       continue;
531     const uint8_t *SecStart = BufStart + Entry.Offset;
532     if (std::error_code EC = readOneSection(SecStart, Entry.Size, Entry.Type))
533       return EC;
534     if (Data != SecStart + Entry.Size)
535       return sampleprof_error::malformed;
536   }
537 
538   return sampleprof_error::success;
539 }
540 
541 std::error_code SampleProfileReaderCompactBinary::read() {
542   std::vector<uint64_t> OffsetsToUse;
543   if (UseAllFuncs) {
544     for (auto FuncEntry : FuncOffsetTable) {
545       OffsetsToUse.push_back(FuncEntry.second);
546     }
547   }
548   else {
549     for (auto Name : FuncsToUse) {
550       auto GUID = std::to_string(MD5Hash(Name));
551       auto iter = FuncOffsetTable.find(StringRef(GUID));
552       if (iter == FuncOffsetTable.end())
553         continue;
554       OffsetsToUse.push_back(iter->second);
555     }
556   }
557 
558   for (auto Offset : OffsetsToUse) {
559     const uint8_t *SavedData = Data;
560     Data = reinterpret_cast<const uint8_t *>(Buffer->getBufferStart()) +
561            Offset;
562     if (std::error_code EC = readFuncProfile())
563       return EC;
564     Data = SavedData;
565   }
566   return sampleprof_error::success;
567 }
568 
569 std::error_code SampleProfileReaderRawBinary::verifySPMagic(uint64_t Magic) {
570   if (Magic == SPMagic())
571     return sampleprof_error::success;
572   return sampleprof_error::bad_magic;
573 }
574 
575 std::error_code SampleProfileReaderExtBinary::verifySPMagic(uint64_t Magic) {
576   if (Magic == SPMagic(SPF_Ext_Binary))
577     return sampleprof_error::success;
578   return sampleprof_error::bad_magic;
579 }
580 
581 std::error_code
582 SampleProfileReaderCompactBinary::verifySPMagic(uint64_t Magic) {
583   if (Magic == SPMagic(SPF_Compact_Binary))
584     return sampleprof_error::success;
585   return sampleprof_error::bad_magic;
586 }
587 
588 std::error_code SampleProfileReaderBinary::readNameTable() {
589   auto Size = readNumber<uint32_t>();
590   if (std::error_code EC = Size.getError())
591     return EC;
592   NameTable.reserve(*Size);
593   for (uint32_t I = 0; I < *Size; ++I) {
594     auto Name(readString());
595     if (std::error_code EC = Name.getError())
596       return EC;
597     NameTable.push_back(*Name);
598   }
599 
600   return sampleprof_error::success;
601 }
602 
603 std::error_code SampleProfileReaderCompactBinary::readNameTable() {
604   auto Size = readNumber<uint64_t>();
605   if (std::error_code EC = Size.getError())
606     return EC;
607   NameTable.reserve(*Size);
608   for (uint32_t I = 0; I < *Size; ++I) {
609     auto FID = readNumber<uint64_t>();
610     if (std::error_code EC = FID.getError())
611       return EC;
612     NameTable.push_back(std::to_string(*FID));
613   }
614   return sampleprof_error::success;
615 }
616 
617 std::error_code SampleProfileReaderExtBinaryBase::readSecHdrTableEntry() {
618   SecHdrTableEntry Entry;
619   auto Type = readUnencodedNumber<uint64_t>();
620   if (std::error_code EC = Type.getError())
621     return EC;
622   Entry.Type = static_cast<SecType>(*Type);
623 
624   auto Flag = readUnencodedNumber<uint64_t>();
625   if (std::error_code EC = Flag.getError())
626     return EC;
627   Entry.Flag = *Flag;
628 
629   auto Offset = readUnencodedNumber<uint64_t>();
630   if (std::error_code EC = Offset.getError())
631     return EC;
632   Entry.Offset = *Offset;
633 
634   auto Size = readUnencodedNumber<uint64_t>();
635   if (std::error_code EC = Size.getError())
636     return EC;
637   Entry.Size = *Size;
638 
639   SecHdrTable.push_back(std::move(Entry));
640   return sampleprof_error::success;
641 }
642 
643 std::error_code SampleProfileReaderExtBinaryBase::readSecHdrTable() {
644   auto EntryNum = readUnencodedNumber<uint64_t>();
645   if (std::error_code EC = EntryNum.getError())
646     return EC;
647 
648   for (uint32_t i = 0; i < (*EntryNum); i++)
649     if (std::error_code EC = readSecHdrTableEntry())
650       return EC;
651 
652   return sampleprof_error::success;
653 }
654 
655 std::error_code SampleProfileReaderExtBinaryBase::readHeader() {
656   const uint8_t *BufStart =
657       reinterpret_cast<const uint8_t *>(Buffer->getBufferStart());
658   Data = BufStart;
659   End = BufStart + Buffer->getBufferSize();
660 
661   if (std::error_code EC = readMagicIdent())
662     return EC;
663 
664   if (std::error_code EC = readSecHdrTable())
665     return EC;
666 
667   return sampleprof_error::success;
668 }
669 
670 std::error_code SampleProfileReaderBinary::readMagicIdent() {
671   // Read and check the magic identifier.
672   auto Magic = readNumber<uint64_t>();
673   if (std::error_code EC = Magic.getError())
674     return EC;
675   else if (std::error_code EC = verifySPMagic(*Magic))
676     return EC;
677 
678   // Read the version number.
679   auto Version = readNumber<uint64_t>();
680   if (std::error_code EC = Version.getError())
681     return EC;
682   else if (*Version != SPVersion())
683     return sampleprof_error::unsupported_version;
684 
685   return sampleprof_error::success;
686 }
687 
688 std::error_code SampleProfileReaderBinary::readHeader() {
689   Data = reinterpret_cast<const uint8_t *>(Buffer->getBufferStart());
690   End = Data + Buffer->getBufferSize();
691 
692   if (std::error_code EC = readMagicIdent())
693     return EC;
694 
695   if (std::error_code EC = readSummary())
696     return EC;
697 
698   if (std::error_code EC = readNameTable())
699     return EC;
700   return sampleprof_error::success;
701 }
702 
703 std::error_code SampleProfileReaderCompactBinary::readHeader() {
704   SampleProfileReaderBinary::readHeader();
705   if (std::error_code EC = readFuncOffsetTable())
706     return EC;
707   return sampleprof_error::success;
708 }
709 
710 std::error_code SampleProfileReaderCompactBinary::readFuncOffsetTable() {
711   auto TableOffset = readUnencodedNumber<uint64_t>();
712   if (std::error_code EC = TableOffset.getError())
713     return EC;
714 
715   const uint8_t *SavedData = Data;
716   const uint8_t *TableStart =
717       reinterpret_cast<const uint8_t *>(Buffer->getBufferStart()) +
718       *TableOffset;
719   Data = TableStart;
720 
721   auto Size = readNumber<uint64_t>();
722   if (std::error_code EC = Size.getError())
723     return EC;
724 
725   FuncOffsetTable.reserve(*Size);
726   for (uint32_t I = 0; I < *Size; ++I) {
727     auto FName(readStringFromTable());
728     if (std::error_code EC = FName.getError())
729       return EC;
730 
731     auto Offset = readNumber<uint64_t>();
732     if (std::error_code EC = Offset.getError())
733       return EC;
734 
735     FuncOffsetTable[*FName] = *Offset;
736   }
737   End = TableStart;
738   Data = SavedData;
739   return sampleprof_error::success;
740 }
741 
742 void SampleProfileReaderCompactBinary::collectFuncsToUse(const Module &M) {
743   UseAllFuncs = false;
744   FuncsToUse.clear();
745   for (auto &F : M) {
746     StringRef CanonName = FunctionSamples::getCanonicalFnName(F);
747     FuncsToUse.insert(CanonName);
748   }
749 }
750 
751 std::error_code SampleProfileReaderBinary::readSummaryEntry(
752     std::vector<ProfileSummaryEntry> &Entries) {
753   auto Cutoff = readNumber<uint64_t>();
754   if (std::error_code EC = Cutoff.getError())
755     return EC;
756 
757   auto MinBlockCount = readNumber<uint64_t>();
758   if (std::error_code EC = MinBlockCount.getError())
759     return EC;
760 
761   auto NumBlocks = readNumber<uint64_t>();
762   if (std::error_code EC = NumBlocks.getError())
763     return EC;
764 
765   Entries.emplace_back(*Cutoff, *MinBlockCount, *NumBlocks);
766   return sampleprof_error::success;
767 }
768 
769 std::error_code SampleProfileReaderBinary::readSummary() {
770   auto TotalCount = readNumber<uint64_t>();
771   if (std::error_code EC = TotalCount.getError())
772     return EC;
773 
774   auto MaxBlockCount = readNumber<uint64_t>();
775   if (std::error_code EC = MaxBlockCount.getError())
776     return EC;
777 
778   auto MaxFunctionCount = readNumber<uint64_t>();
779   if (std::error_code EC = MaxFunctionCount.getError())
780     return EC;
781 
782   auto NumBlocks = readNumber<uint64_t>();
783   if (std::error_code EC = NumBlocks.getError())
784     return EC;
785 
786   auto NumFunctions = readNumber<uint64_t>();
787   if (std::error_code EC = NumFunctions.getError())
788     return EC;
789 
790   auto NumSummaryEntries = readNumber<uint64_t>();
791   if (std::error_code EC = NumSummaryEntries.getError())
792     return EC;
793 
794   std::vector<ProfileSummaryEntry> Entries;
795   for (unsigned i = 0; i < *NumSummaryEntries; i++) {
796     std::error_code EC = readSummaryEntry(Entries);
797     if (EC != sampleprof_error::success)
798       return EC;
799   }
800   Summary = std::make_unique<ProfileSummary>(
801       ProfileSummary::PSK_Sample, Entries, *TotalCount, *MaxBlockCount, 0,
802       *MaxFunctionCount, *NumBlocks, *NumFunctions);
803 
804   return sampleprof_error::success;
805 }
806 
807 bool SampleProfileReaderRawBinary::hasFormat(const MemoryBuffer &Buffer) {
808   const uint8_t *Data =
809       reinterpret_cast<const uint8_t *>(Buffer.getBufferStart());
810   uint64_t Magic = decodeULEB128(Data);
811   return Magic == SPMagic();
812 }
813 
814 bool SampleProfileReaderExtBinary::hasFormat(const MemoryBuffer &Buffer) {
815   const uint8_t *Data =
816       reinterpret_cast<const uint8_t *>(Buffer.getBufferStart());
817   uint64_t Magic = decodeULEB128(Data);
818   return Magic == SPMagic(SPF_Ext_Binary);
819 }
820 
821 bool SampleProfileReaderCompactBinary::hasFormat(const MemoryBuffer &Buffer) {
822   const uint8_t *Data =
823       reinterpret_cast<const uint8_t *>(Buffer.getBufferStart());
824   uint64_t Magic = decodeULEB128(Data);
825   return Magic == SPMagic(SPF_Compact_Binary);
826 }
827 
828 std::error_code SampleProfileReaderGCC::skipNextWord() {
829   uint32_t dummy;
830   if (!GcovBuffer.readInt(dummy))
831     return sampleprof_error::truncated;
832   return sampleprof_error::success;
833 }
834 
835 template <typename T> ErrorOr<T> SampleProfileReaderGCC::readNumber() {
836   if (sizeof(T) <= sizeof(uint32_t)) {
837     uint32_t Val;
838     if (GcovBuffer.readInt(Val) && Val <= std::numeric_limits<T>::max())
839       return static_cast<T>(Val);
840   } else if (sizeof(T) <= sizeof(uint64_t)) {
841     uint64_t Val;
842     if (GcovBuffer.readInt64(Val) && Val <= std::numeric_limits<T>::max())
843       return static_cast<T>(Val);
844   }
845 
846   std::error_code EC = sampleprof_error::malformed;
847   reportError(0, EC.message());
848   return EC;
849 }
850 
851 ErrorOr<StringRef> SampleProfileReaderGCC::readString() {
852   StringRef Str;
853   if (!GcovBuffer.readString(Str))
854     return sampleprof_error::truncated;
855   return Str;
856 }
857 
858 std::error_code SampleProfileReaderGCC::readHeader() {
859   // Read the magic identifier.
860   if (!GcovBuffer.readGCDAFormat())
861     return sampleprof_error::unrecognized_format;
862 
863   // Read the version number. Note - the GCC reader does not validate this
864   // version, but the profile creator generates v704.
865   GCOV::GCOVVersion version;
866   if (!GcovBuffer.readGCOVVersion(version))
867     return sampleprof_error::unrecognized_format;
868 
869   if (version != GCOV::V704)
870     return sampleprof_error::unsupported_version;
871 
872   // Skip the empty integer.
873   if (std::error_code EC = skipNextWord())
874     return EC;
875 
876   return sampleprof_error::success;
877 }
878 
879 std::error_code SampleProfileReaderGCC::readSectionTag(uint32_t Expected) {
880   uint32_t Tag;
881   if (!GcovBuffer.readInt(Tag))
882     return sampleprof_error::truncated;
883 
884   if (Tag != Expected)
885     return sampleprof_error::malformed;
886 
887   if (std::error_code EC = skipNextWord())
888     return EC;
889 
890   return sampleprof_error::success;
891 }
892 
893 std::error_code SampleProfileReaderGCC::readNameTable() {
894   if (std::error_code EC = readSectionTag(GCOVTagAFDOFileNames))
895     return EC;
896 
897   uint32_t Size;
898   if (!GcovBuffer.readInt(Size))
899     return sampleprof_error::truncated;
900 
901   for (uint32_t I = 0; I < Size; ++I) {
902     StringRef Str;
903     if (!GcovBuffer.readString(Str))
904       return sampleprof_error::truncated;
905     Names.push_back(Str);
906   }
907 
908   return sampleprof_error::success;
909 }
910 
911 std::error_code SampleProfileReaderGCC::readFunctionProfiles() {
912   if (std::error_code EC = readSectionTag(GCOVTagAFDOFunction))
913     return EC;
914 
915   uint32_t NumFunctions;
916   if (!GcovBuffer.readInt(NumFunctions))
917     return sampleprof_error::truncated;
918 
919   InlineCallStack Stack;
920   for (uint32_t I = 0; I < NumFunctions; ++I)
921     if (std::error_code EC = readOneFunctionProfile(Stack, true, 0))
922       return EC;
923 
924   computeSummary();
925   return sampleprof_error::success;
926 }
927 
928 std::error_code SampleProfileReaderGCC::readOneFunctionProfile(
929     const InlineCallStack &InlineStack, bool Update, uint32_t Offset) {
930   uint64_t HeadCount = 0;
931   if (InlineStack.size() == 0)
932     if (!GcovBuffer.readInt64(HeadCount))
933       return sampleprof_error::truncated;
934 
935   uint32_t NameIdx;
936   if (!GcovBuffer.readInt(NameIdx))
937     return sampleprof_error::truncated;
938 
939   StringRef Name(Names[NameIdx]);
940 
941   uint32_t NumPosCounts;
942   if (!GcovBuffer.readInt(NumPosCounts))
943     return sampleprof_error::truncated;
944 
945   uint32_t NumCallsites;
946   if (!GcovBuffer.readInt(NumCallsites))
947     return sampleprof_error::truncated;
948 
949   FunctionSamples *FProfile = nullptr;
950   if (InlineStack.size() == 0) {
951     // If this is a top function that we have already processed, do not
952     // update its profile again.  This happens in the presence of
953     // function aliases.  Since these aliases share the same function
954     // body, there will be identical replicated profiles for the
955     // original function.  In this case, we simply not bother updating
956     // the profile of the original function.
957     FProfile = &Profiles[Name];
958     FProfile->addHeadSamples(HeadCount);
959     if (FProfile->getTotalSamples() > 0)
960       Update = false;
961   } else {
962     // Otherwise, we are reading an inlined instance. The top of the
963     // inline stack contains the profile of the caller. Insert this
964     // callee in the caller's CallsiteMap.
965     FunctionSamples *CallerProfile = InlineStack.front();
966     uint32_t LineOffset = Offset >> 16;
967     uint32_t Discriminator = Offset & 0xffff;
968     FProfile = &CallerProfile->functionSamplesAt(
969         LineLocation(LineOffset, Discriminator))[Name];
970   }
971   FProfile->setName(Name);
972 
973   for (uint32_t I = 0; I < NumPosCounts; ++I) {
974     uint32_t Offset;
975     if (!GcovBuffer.readInt(Offset))
976       return sampleprof_error::truncated;
977 
978     uint32_t NumTargets;
979     if (!GcovBuffer.readInt(NumTargets))
980       return sampleprof_error::truncated;
981 
982     uint64_t Count;
983     if (!GcovBuffer.readInt64(Count))
984       return sampleprof_error::truncated;
985 
986     // The line location is encoded in the offset as:
987     //   high 16 bits: line offset to the start of the function.
988     //   low 16 bits: discriminator.
989     uint32_t LineOffset = Offset >> 16;
990     uint32_t Discriminator = Offset & 0xffff;
991 
992     InlineCallStack NewStack;
993     NewStack.push_back(FProfile);
994     NewStack.insert(NewStack.end(), InlineStack.begin(), InlineStack.end());
995     if (Update) {
996       // Walk up the inline stack, adding the samples on this line to
997       // the total sample count of the callers in the chain.
998       for (auto CallerProfile : NewStack)
999         CallerProfile->addTotalSamples(Count);
1000 
1001       // Update the body samples for the current profile.
1002       FProfile->addBodySamples(LineOffset, Discriminator, Count);
1003     }
1004 
1005     // Process the list of functions called at an indirect call site.
1006     // These are all the targets that a function pointer (or virtual
1007     // function) resolved at runtime.
1008     for (uint32_t J = 0; J < NumTargets; J++) {
1009       uint32_t HistVal;
1010       if (!GcovBuffer.readInt(HistVal))
1011         return sampleprof_error::truncated;
1012 
1013       if (HistVal != HIST_TYPE_INDIR_CALL_TOPN)
1014         return sampleprof_error::malformed;
1015 
1016       uint64_t TargetIdx;
1017       if (!GcovBuffer.readInt64(TargetIdx))
1018         return sampleprof_error::truncated;
1019       StringRef TargetName(Names[TargetIdx]);
1020 
1021       uint64_t TargetCount;
1022       if (!GcovBuffer.readInt64(TargetCount))
1023         return sampleprof_error::truncated;
1024 
1025       if (Update)
1026         FProfile->addCalledTargetSamples(LineOffset, Discriminator,
1027                                          TargetName, TargetCount);
1028     }
1029   }
1030 
1031   // Process all the inlined callers into the current function. These
1032   // are all the callsites that were inlined into this function.
1033   for (uint32_t I = 0; I < NumCallsites; I++) {
1034     // The offset is encoded as:
1035     //   high 16 bits: line offset to the start of the function.
1036     //   low 16 bits: discriminator.
1037     uint32_t Offset;
1038     if (!GcovBuffer.readInt(Offset))
1039       return sampleprof_error::truncated;
1040     InlineCallStack NewStack;
1041     NewStack.push_back(FProfile);
1042     NewStack.insert(NewStack.end(), InlineStack.begin(), InlineStack.end());
1043     if (std::error_code EC = readOneFunctionProfile(NewStack, Update, Offset))
1044       return EC;
1045   }
1046 
1047   return sampleprof_error::success;
1048 }
1049 
1050 /// Read a GCC AutoFDO profile.
1051 ///
1052 /// This format is generated by the Linux Perf conversion tool at
1053 /// https://github.com/google/autofdo.
1054 std::error_code SampleProfileReaderGCC::read() {
1055   // Read the string table.
1056   if (std::error_code EC = readNameTable())
1057     return EC;
1058 
1059   // Read the source profile.
1060   if (std::error_code EC = readFunctionProfiles())
1061     return EC;
1062 
1063   return sampleprof_error::success;
1064 }
1065 
1066 bool SampleProfileReaderGCC::hasFormat(const MemoryBuffer &Buffer) {
1067   StringRef Magic(reinterpret_cast<const char *>(Buffer.getBufferStart()));
1068   return Magic == "adcg*704";
1069 }
1070 
1071 std::error_code SampleProfileReaderItaniumRemapper::read() {
1072   // If the underlying data is in compact format, we can't remap it because
1073   // we don't know what the original function names were.
1074   if (getFormat() == SPF_Compact_Binary) {
1075     Ctx.diagnose(DiagnosticInfoSampleProfile(
1076         Buffer->getBufferIdentifier(),
1077         "Profile data remapping cannot be applied to profile data "
1078         "in compact format (original mangled names are not available).",
1079         DS_Warning));
1080     return sampleprof_error::success;
1081   }
1082 
1083   if (Error E = Remappings.read(*Buffer)) {
1084     handleAllErrors(
1085         std::move(E), [&](const SymbolRemappingParseError &ParseError) {
1086           reportError(ParseError.getLineNum(), ParseError.getMessage());
1087         });
1088     return sampleprof_error::malformed;
1089   }
1090 
1091   for (auto &Sample : getProfiles())
1092     if (auto Key = Remappings.insert(Sample.first()))
1093       SampleMap.insert({Key, &Sample.second});
1094 
1095   return sampleprof_error::success;
1096 }
1097 
1098 FunctionSamples *
1099 SampleProfileReaderItaniumRemapper::getSamplesFor(StringRef Fname) {
1100   if (auto Key = Remappings.lookup(Fname))
1101     return SampleMap.lookup(Key);
1102   return SampleProfileReader::getSamplesFor(Fname);
1103 }
1104 
1105 /// Prepare a memory buffer for the contents of \p Filename.
1106 ///
1107 /// \returns an error code indicating the status of the buffer.
1108 static ErrorOr<std::unique_ptr<MemoryBuffer>>
1109 setupMemoryBuffer(const Twine &Filename) {
1110   auto BufferOrErr = MemoryBuffer::getFileOrSTDIN(Filename);
1111   if (std::error_code EC = BufferOrErr.getError())
1112     return EC;
1113   auto Buffer = std::move(BufferOrErr.get());
1114 
1115   // Sanity check the file.
1116   if (uint64_t(Buffer->getBufferSize()) > std::numeric_limits<uint32_t>::max())
1117     return sampleprof_error::too_large;
1118 
1119   return std::move(Buffer);
1120 }
1121 
1122 /// Create a sample profile reader based on the format of the input file.
1123 ///
1124 /// \param Filename The file to open.
1125 ///
1126 /// \param C The LLVM context to use to emit diagnostics.
1127 ///
1128 /// \returns an error code indicating the status of the created reader.
1129 ErrorOr<std::unique_ptr<SampleProfileReader>>
1130 SampleProfileReader::create(const Twine &Filename, LLVMContext &C) {
1131   auto BufferOrError = setupMemoryBuffer(Filename);
1132   if (std::error_code EC = BufferOrError.getError())
1133     return EC;
1134   return create(BufferOrError.get(), C);
1135 }
1136 
1137 /// Create a sample profile remapper from the given input, to remap the
1138 /// function names in the given profile data.
1139 ///
1140 /// \param Filename The file to open.
1141 ///
1142 /// \param C The LLVM context to use to emit diagnostics.
1143 ///
1144 /// \param Underlying The underlying profile data reader to remap.
1145 ///
1146 /// \returns an error code indicating the status of the created reader.
1147 ErrorOr<std::unique_ptr<SampleProfileReader>>
1148 SampleProfileReaderItaniumRemapper::create(
1149     const Twine &Filename, LLVMContext &C,
1150     std::unique_ptr<SampleProfileReader> Underlying) {
1151   auto BufferOrError = setupMemoryBuffer(Filename);
1152   if (std::error_code EC = BufferOrError.getError())
1153     return EC;
1154   return std::make_unique<SampleProfileReaderItaniumRemapper>(
1155       std::move(BufferOrError.get()), C, std::move(Underlying));
1156 }
1157 
1158 /// Create a sample profile reader based on the format of the input data.
1159 ///
1160 /// \param B The memory buffer to create the reader from (assumes ownership).
1161 ///
1162 /// \param C The LLVM context to use to emit diagnostics.
1163 ///
1164 /// \returns an error code indicating the status of the created reader.
1165 ErrorOr<std::unique_ptr<SampleProfileReader>>
1166 SampleProfileReader::create(std::unique_ptr<MemoryBuffer> &B, LLVMContext &C) {
1167   std::unique_ptr<SampleProfileReader> Reader;
1168   if (SampleProfileReaderRawBinary::hasFormat(*B))
1169     Reader.reset(new SampleProfileReaderRawBinary(std::move(B), C));
1170   else if (SampleProfileReaderExtBinary::hasFormat(*B))
1171     Reader.reset(new SampleProfileReaderExtBinary(std::move(B), C));
1172   else if (SampleProfileReaderCompactBinary::hasFormat(*B))
1173     Reader.reset(new SampleProfileReaderCompactBinary(std::move(B), C));
1174   else if (SampleProfileReaderGCC::hasFormat(*B))
1175     Reader.reset(new SampleProfileReaderGCC(std::move(B), C));
1176   else if (SampleProfileReaderText::hasFormat(*B))
1177     Reader.reset(new SampleProfileReaderText(std::move(B), C));
1178   else
1179     return sampleprof_error::unrecognized_format;
1180 
1181   FunctionSamples::Format = Reader->getFormat();
1182   if (std::error_code EC = Reader->readHeader()) {
1183     return EC;
1184   }
1185 
1186   return std::move(Reader);
1187 }
1188 
1189 // For text and GCC file formats, we compute the summary after reading the
1190 // profile. Binary format has the profile summary in its header.
1191 void SampleProfileReader::computeSummary() {
1192   SampleProfileSummaryBuilder Builder(ProfileSummaryBuilder::DefaultCutoffs);
1193   for (const auto &I : Profiles) {
1194     const FunctionSamples &Profile = I.second;
1195     Builder.addRecord(Profile);
1196   }
1197   Summary = Builder.getSummary();
1198 }
1199