1 //===--- CoverageMappingGen.cpp - Coverage mapping generation ---*- C++ -*-===//
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 // Instrumentation-based code coverage mapping generator
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "CoverageMappingGen.h"
15 #include "CodeGenFunction.h"
16 #include "clang/AST/StmtVisitor.h"
17 #include "clang/Lex/Lexer.h"
18 #include "llvm/ADT/SmallSet.h"
19 #include "llvm/ADT/StringExtras.h"
20 #include "llvm/ADT/Optional.h"
21 #include "llvm/ProfileData/Coverage/CoverageMapping.h"
22 #include "llvm/ProfileData/Coverage/CoverageMappingReader.h"
23 #include "llvm/ProfileData/Coverage/CoverageMappingWriter.h"
24 #include "llvm/ProfileData/InstrProfReader.h"
25 #include "llvm/Support/FileSystem.h"
26 #include "llvm/Support/Path.h"
27 
28 using namespace clang;
29 using namespace CodeGen;
30 using namespace llvm::coverage;
31 
32 void CoverageSourceInfo::SourceRangeSkipped(SourceRange Range) {
33   SkippedRanges.push_back(Range);
34 }
35 
36 namespace {
37 
38 /// \brief A region of source code that can be mapped to a counter.
39 class SourceMappingRegion {
40   Counter Count;
41 
42   /// \brief The region's starting location.
43   Optional<SourceLocation> LocStart;
44 
45   /// \brief The region's ending location.
46   Optional<SourceLocation> LocEnd;
47 
48 public:
49   SourceMappingRegion(Counter Count, Optional<SourceLocation> LocStart,
50                       Optional<SourceLocation> LocEnd)
51       : Count(Count), LocStart(LocStart), LocEnd(LocEnd) {}
52 
53   const Counter &getCounter() const { return Count; }
54 
55   void setCounter(Counter C) { Count = C; }
56 
57   bool hasStartLoc() const { return LocStart.hasValue(); }
58 
59   void setStartLoc(SourceLocation Loc) { LocStart = Loc; }
60 
61   SourceLocation getStartLoc() const {
62     assert(LocStart && "Region has no start location");
63     return *LocStart;
64   }
65 
66   bool hasEndLoc() const { return LocEnd.hasValue(); }
67 
68   void setEndLoc(SourceLocation Loc) { LocEnd = Loc; }
69 
70   SourceLocation getEndLoc() const {
71     assert(LocEnd && "Region has no end location");
72     return *LocEnd;
73   }
74 };
75 
76 /// \brief Provides the common functionality for the different
77 /// coverage mapping region builders.
78 class CoverageMappingBuilder {
79 public:
80   CoverageMappingModuleGen &CVM;
81   SourceManager &SM;
82   const LangOptions &LangOpts;
83 
84 private:
85   /// \brief Map of clang's FileIDs to IDs used for coverage mapping.
86   llvm::SmallDenseMap<FileID, std::pair<unsigned, SourceLocation>, 8>
87       FileIDMapping;
88 
89 public:
90   /// \brief The coverage mapping regions for this function
91   llvm::SmallVector<CounterMappingRegion, 32> MappingRegions;
92   /// \brief The source mapping regions for this function.
93   std::vector<SourceMappingRegion> SourceRegions;
94 
95   CoverageMappingBuilder(CoverageMappingModuleGen &CVM, SourceManager &SM,
96                          const LangOptions &LangOpts)
97       : CVM(CVM), SM(SM), LangOpts(LangOpts) {}
98 
99   /// \brief Return the precise end location for the given token.
100   SourceLocation getPreciseTokenLocEnd(SourceLocation Loc) {
101     // We avoid getLocForEndOfToken here, because it doesn't do what we want for
102     // macro locations, which we just treat as expanded files.
103     unsigned TokLen =
104         Lexer::MeasureTokenLength(SM.getSpellingLoc(Loc), SM, LangOpts);
105     return Loc.getLocWithOffset(TokLen);
106   }
107 
108   /// \brief Return the start location of an included file or expanded macro.
109   SourceLocation getStartOfFileOrMacro(SourceLocation Loc) {
110     if (Loc.isMacroID())
111       return Loc.getLocWithOffset(-SM.getFileOffset(Loc));
112     return SM.getLocForStartOfFile(SM.getFileID(Loc));
113   }
114 
115   /// \brief Return the end location of an included file or expanded macro.
116   SourceLocation getEndOfFileOrMacro(SourceLocation Loc) {
117     if (Loc.isMacroID())
118       return Loc.getLocWithOffset(SM.getFileIDSize(SM.getFileID(Loc)) -
119                                   SM.getFileOffset(Loc));
120     return SM.getLocForEndOfFile(SM.getFileID(Loc));
121   }
122 
123   /// \brief Find out where the current file is included or macro is expanded.
124   SourceLocation getIncludeOrExpansionLoc(SourceLocation Loc) {
125     return Loc.isMacroID() ? SM.getImmediateExpansionRange(Loc).first
126                            : SM.getIncludeLoc(SM.getFileID(Loc));
127   }
128 
129   /// \brief Return true if \c Loc is a location in a built-in macro.
130   bool isInBuiltin(SourceLocation Loc) {
131     return strcmp(SM.getBufferName(SM.getSpellingLoc(Loc)), "<built-in>") == 0;
132   }
133 
134   /// \brief Check whether \c Loc is included or expanded from \c Parent.
135   bool isNestedIn(SourceLocation Loc, FileID Parent) {
136     do {
137       Loc = getIncludeOrExpansionLoc(Loc);
138       if (Loc.isInvalid())
139         return false;
140     } while (!SM.isInFileID(Loc, Parent));
141     return true;
142   }
143 
144   /// \brief Get the start of \c S ignoring macro arguments and builtin macros.
145   SourceLocation getStart(const Stmt *S) {
146     SourceLocation Loc = S->getLocStart();
147     while (SM.isMacroArgExpansion(Loc) || isInBuiltin(Loc))
148       Loc = SM.getImmediateExpansionRange(Loc).first;
149     return Loc;
150   }
151 
152   /// \brief Get the end of \c S ignoring macro arguments and builtin macros.
153   SourceLocation getEnd(const Stmt *S) {
154     SourceLocation Loc = S->getLocEnd();
155     while (SM.isMacroArgExpansion(Loc) || isInBuiltin(Loc))
156       Loc = SM.getImmediateExpansionRange(Loc).first;
157     return getPreciseTokenLocEnd(Loc);
158   }
159 
160   /// \brief Find the set of files we have regions for and assign IDs
161   ///
162   /// Fills \c Mapping with the virtual file mapping needed to write out
163   /// coverage and collects the necessary file information to emit source and
164   /// expansion regions.
165   void gatherFileIDs(SmallVectorImpl<unsigned> &Mapping) {
166     FileIDMapping.clear();
167 
168     llvm::SmallSet<FileID, 8> Visited;
169     SmallVector<std::pair<SourceLocation, unsigned>, 8> FileLocs;
170     for (const auto &Region : SourceRegions) {
171       SourceLocation Loc = Region.getStartLoc();
172       FileID File = SM.getFileID(Loc);
173       if (!Visited.insert(File).second)
174         continue;
175 
176       // Do not map FileID's associated with system headers.
177       if (SM.isInSystemHeader(SM.getSpellingLoc(Loc)))
178         continue;
179 
180       unsigned Depth = 0;
181       for (SourceLocation Parent = getIncludeOrExpansionLoc(Loc);
182            Parent.isValid(); Parent = getIncludeOrExpansionLoc(Parent))
183         ++Depth;
184       FileLocs.push_back(std::make_pair(Loc, Depth));
185     }
186     std::stable_sort(FileLocs.begin(), FileLocs.end(), llvm::less_second());
187 
188     for (const auto &FL : FileLocs) {
189       SourceLocation Loc = FL.first;
190       FileID SpellingFile = SM.getDecomposedSpellingLoc(Loc).first;
191       auto Entry = SM.getFileEntryForID(SpellingFile);
192       if (!Entry)
193         continue;
194 
195       FileIDMapping[SM.getFileID(Loc)] = std::make_pair(Mapping.size(), Loc);
196       Mapping.push_back(CVM.getFileID(Entry));
197     }
198   }
199 
200   /// \brief Get the coverage mapping file ID for \c Loc.
201   ///
202   /// If such file id doesn't exist, return None.
203   Optional<unsigned> getCoverageFileID(SourceLocation Loc) {
204     auto Mapping = FileIDMapping.find(SM.getFileID(Loc));
205     if (Mapping != FileIDMapping.end())
206       return Mapping->second.first;
207     return None;
208   }
209 
210   /// \brief Gather all the regions that were skipped by the preprocessor
211   /// using the constructs like #if.
212   void gatherSkippedRegions() {
213     /// An array of the minimum lineStarts and the maximum lineEnds
214     /// for mapping regions from the appropriate source files.
215     llvm::SmallVector<std::pair<unsigned, unsigned>, 8> FileLineRanges;
216     FileLineRanges.resize(
217         FileIDMapping.size(),
218         std::make_pair(std::numeric_limits<unsigned>::max(), 0));
219     for (const auto &R : MappingRegions) {
220       FileLineRanges[R.FileID].first =
221           std::min(FileLineRanges[R.FileID].first, R.LineStart);
222       FileLineRanges[R.FileID].second =
223           std::max(FileLineRanges[R.FileID].second, R.LineEnd);
224     }
225 
226     auto SkippedRanges = CVM.getSourceInfo().getSkippedRanges();
227     for (const auto &I : SkippedRanges) {
228       auto LocStart = I.getBegin();
229       auto LocEnd = I.getEnd();
230       assert(SM.isWrittenInSameFile(LocStart, LocEnd) &&
231              "region spans multiple files");
232 
233       auto CovFileID = getCoverageFileID(LocStart);
234       if (!CovFileID)
235         continue;
236       unsigned LineStart = SM.getSpellingLineNumber(LocStart);
237       unsigned ColumnStart = SM.getSpellingColumnNumber(LocStart);
238       unsigned LineEnd = SM.getSpellingLineNumber(LocEnd);
239       unsigned ColumnEnd = SM.getSpellingColumnNumber(LocEnd);
240       auto Region = CounterMappingRegion::makeSkipped(
241           *CovFileID, LineStart, ColumnStart, LineEnd, ColumnEnd);
242       // Make sure that we only collect the regions that are inside
243       // the souce code of this function.
244       if (Region.LineStart >= FileLineRanges[*CovFileID].first &&
245           Region.LineEnd <= FileLineRanges[*CovFileID].second)
246         MappingRegions.push_back(Region);
247     }
248   }
249 
250   /// \brief Generate the coverage counter mapping regions from collected
251   /// source regions.
252   void emitSourceRegions() {
253     for (const auto &Region : SourceRegions) {
254       assert(Region.hasEndLoc() && "incomplete region");
255 
256       SourceLocation LocStart = Region.getStartLoc();
257       assert(SM.getFileID(LocStart).isValid() && "region in invalid file");
258 
259       // Ignore regions from system headers.
260       if (SM.isInSystemHeader(SM.getSpellingLoc(LocStart)))
261         continue;
262 
263       auto CovFileID = getCoverageFileID(LocStart);
264       // Ignore regions that don't have a file, such as builtin macros.
265       if (!CovFileID)
266         continue;
267 
268       SourceLocation LocEnd = Region.getEndLoc();
269       assert(SM.isWrittenInSameFile(LocStart, LocEnd) &&
270              "region spans multiple files");
271 
272       // Find the spilling locations for the mapping region.
273       unsigned LineStart = SM.getSpellingLineNumber(LocStart);
274       unsigned ColumnStart = SM.getSpellingColumnNumber(LocStart);
275       unsigned LineEnd = SM.getSpellingLineNumber(LocEnd);
276       unsigned ColumnEnd = SM.getSpellingColumnNumber(LocEnd);
277 
278       assert(LineStart <= LineEnd && "region start and end out of order");
279       MappingRegions.push_back(CounterMappingRegion::makeRegion(
280           Region.getCounter(), *CovFileID, LineStart, ColumnStart, LineEnd,
281           ColumnEnd));
282     }
283   }
284 
285   /// \brief Generate expansion regions for each virtual file we've seen.
286   void emitExpansionRegions() {
287     for (const auto &FM : FileIDMapping) {
288       SourceLocation ExpandedLoc = FM.second.second;
289       SourceLocation ParentLoc = getIncludeOrExpansionLoc(ExpandedLoc);
290       if (ParentLoc.isInvalid())
291         continue;
292 
293       auto ParentFileID = getCoverageFileID(ParentLoc);
294       if (!ParentFileID)
295         continue;
296       auto ExpandedFileID = getCoverageFileID(ExpandedLoc);
297       assert(ExpandedFileID && "expansion in uncovered file");
298 
299       SourceLocation LocEnd = getPreciseTokenLocEnd(ParentLoc);
300       assert(SM.isWrittenInSameFile(ParentLoc, LocEnd) &&
301              "region spans multiple files");
302 
303       unsigned LineStart = SM.getSpellingLineNumber(ParentLoc);
304       unsigned ColumnStart = SM.getSpellingColumnNumber(ParentLoc);
305       unsigned LineEnd = SM.getSpellingLineNumber(LocEnd);
306       unsigned ColumnEnd = SM.getSpellingColumnNumber(LocEnd);
307 
308       MappingRegions.push_back(CounterMappingRegion::makeExpansion(
309           *ParentFileID, *ExpandedFileID, LineStart, ColumnStart, LineEnd,
310           ColumnEnd));
311     }
312   }
313 };
314 
315 /// \brief Creates unreachable coverage regions for the functions that
316 /// are not emitted.
317 struct EmptyCoverageMappingBuilder : public CoverageMappingBuilder {
318   EmptyCoverageMappingBuilder(CoverageMappingModuleGen &CVM, SourceManager &SM,
319                               const LangOptions &LangOpts)
320       : CoverageMappingBuilder(CVM, SM, LangOpts) {}
321 
322   void VisitDecl(const Decl *D) {
323     if (!D->hasBody())
324       return;
325     auto Body = D->getBody();
326     SourceLocation Start = getStart(Body);
327     SourceLocation End = getEnd(Body);
328     if (!SM.isWrittenInSameFile(Start, End)) {
329       // Walk up to find the common ancestor.
330       // Correct the locations accordingly.
331       FileID StartFileID = SM.getFileID(Start);
332       FileID EndFileID = SM.getFileID(End);
333       while (StartFileID != EndFileID && !isNestedIn(End, StartFileID)) {
334         Start = getIncludeOrExpansionLoc(Start);
335         assert(Start.isValid() &&
336                "Declaration start location not nested within a known region");
337         StartFileID = SM.getFileID(Start);
338       }
339       while (StartFileID != EndFileID) {
340         End = getPreciseTokenLocEnd(getIncludeOrExpansionLoc(End));
341         assert(End.isValid() &&
342                "Declaration end location not nested within a known region");
343         EndFileID = SM.getFileID(End);
344       }
345     }
346     SourceRegions.emplace_back(Counter(), Start, End);
347   }
348 
349   /// \brief Write the mapping data to the output stream
350   void write(llvm::raw_ostream &OS) {
351     SmallVector<unsigned, 16> FileIDMapping;
352     gatherFileIDs(FileIDMapping);
353     emitSourceRegions();
354 
355     CoverageMappingWriter Writer(FileIDMapping, None, MappingRegions);
356     Writer.write(OS);
357   }
358 };
359 
360 /// \brief A StmtVisitor that creates coverage mapping regions which map
361 /// from the source code locations to the PGO counters.
362 struct CounterCoverageMappingBuilder
363     : public CoverageMappingBuilder,
364       public ConstStmtVisitor<CounterCoverageMappingBuilder> {
365   /// \brief The map of statements to count values.
366   llvm::DenseMap<const Stmt *, unsigned> &CounterMap;
367 
368   /// \brief A stack of currently live regions.
369   std::vector<SourceMappingRegion> RegionStack;
370 
371   CounterExpressionBuilder Builder;
372 
373   /// \brief A location in the most recently visited file or macro.
374   ///
375   /// This is used to adjust the active source regions appropriately when
376   /// expressions cross file or macro boundaries.
377   SourceLocation MostRecentLocation;
378 
379   /// \brief Return a counter for the subtraction of \c RHS from \c LHS
380   Counter subtractCounters(Counter LHS, Counter RHS) {
381     return Builder.subtract(LHS, RHS);
382   }
383 
384   /// \brief Return a counter for the sum of \c LHS and \c RHS.
385   Counter addCounters(Counter LHS, Counter RHS) {
386     return Builder.add(LHS, RHS);
387   }
388 
389   Counter addCounters(Counter C1, Counter C2, Counter C3) {
390     return addCounters(addCounters(C1, C2), C3);
391   }
392 
393   /// \brief Return the region counter for the given statement.
394   ///
395   /// This should only be called on statements that have a dedicated counter.
396   Counter getRegionCounter(const Stmt *S) {
397     return Counter::getCounter(CounterMap[S]);
398   }
399 
400   /// \brief Push a region onto the stack.
401   ///
402   /// Returns the index on the stack where the region was pushed. This can be
403   /// used with popRegions to exit a "scope", ending the region that was pushed.
404   size_t pushRegion(Counter Count, Optional<SourceLocation> StartLoc = None,
405                     Optional<SourceLocation> EndLoc = None) {
406     if (StartLoc)
407       MostRecentLocation = *StartLoc;
408     RegionStack.emplace_back(Count, StartLoc, EndLoc);
409 
410     return RegionStack.size() - 1;
411   }
412 
413   /// \brief Pop regions from the stack into the function's list of regions.
414   ///
415   /// Adds all regions from \c ParentIndex to the top of the stack to the
416   /// function's \c SourceRegions.
417   void popRegions(size_t ParentIndex) {
418     assert(RegionStack.size() >= ParentIndex && "parent not in stack");
419     while (RegionStack.size() > ParentIndex) {
420       SourceMappingRegion &Region = RegionStack.back();
421       if (Region.hasStartLoc()) {
422         SourceLocation StartLoc = Region.getStartLoc();
423         SourceLocation EndLoc = Region.hasEndLoc()
424                                     ? Region.getEndLoc()
425                                     : RegionStack[ParentIndex].getEndLoc();
426         while (!SM.isWrittenInSameFile(StartLoc, EndLoc)) {
427           // The region ends in a nested file or macro expansion. Create a
428           // separate region for each expansion.
429           SourceLocation NestedLoc = getStartOfFileOrMacro(EndLoc);
430           assert(SM.isWrittenInSameFile(NestedLoc, EndLoc));
431 
432           SourceRegions.emplace_back(Region.getCounter(), NestedLoc, EndLoc);
433 
434           EndLoc = getPreciseTokenLocEnd(getIncludeOrExpansionLoc(EndLoc));
435           if (EndLoc.isInvalid())
436             llvm::report_fatal_error("File exit not handled before popRegions");
437         }
438         Region.setEndLoc(EndLoc);
439 
440         MostRecentLocation = EndLoc;
441         // If this region happens to span an entire expansion, we need to make
442         // sure we don't overlap the parent region with it.
443         if (StartLoc == getStartOfFileOrMacro(StartLoc) &&
444             EndLoc == getEndOfFileOrMacro(EndLoc))
445           MostRecentLocation = getIncludeOrExpansionLoc(EndLoc);
446 
447         assert(SM.isWrittenInSameFile(Region.getStartLoc(), EndLoc));
448         SourceRegions.push_back(Region);
449       }
450       RegionStack.pop_back();
451     }
452   }
453 
454   /// \brief Return the currently active region.
455   SourceMappingRegion &getRegion() {
456     assert(!RegionStack.empty() && "statement has no region");
457     return RegionStack.back();
458   }
459 
460   /// \brief Propagate counts through the children of \c S.
461   Counter propagateCounts(Counter TopCount, const Stmt *S) {
462     size_t Index = pushRegion(TopCount, getStart(S), getEnd(S));
463     Visit(S);
464     Counter ExitCount = getRegion().getCounter();
465     popRegions(Index);
466 
467     // The statement may be spanned by an expansion. Make sure we handle a file
468     // exit out of this expansion before moving to the next statement.
469     if (SM.isBeforeInTranslationUnit(getStart(S), S->getLocStart()))
470       MostRecentLocation = getEnd(S);
471 
472     return ExitCount;
473   }
474 
475   /// \brief Check whether a region with bounds \c StartLoc and \c EndLoc
476   /// is already added to \c SourceRegions.
477   bool isRegionAlreadyAdded(SourceLocation StartLoc, SourceLocation EndLoc) {
478     return SourceRegions.rend() !=
479            std::find_if(SourceRegions.rbegin(), SourceRegions.rend(),
480                         [&](const SourceMappingRegion &Region) {
481                           return Region.getStartLoc() == StartLoc &&
482                                  Region.getEndLoc() == EndLoc;
483                         });
484   }
485 
486   /// \brief Adjust the most recently visited location to \c EndLoc.
487   ///
488   /// This should be used after visiting any statements in non-source order.
489   void adjustForOutOfOrderTraversal(SourceLocation EndLoc) {
490     MostRecentLocation = EndLoc;
491     // The code region for a whole macro is created in handleFileExit() when
492     // it detects exiting of the virtual file of that macro. If we visited
493     // statements in non-source order, we might already have such a region
494     // added, for example, if a body of a loop is divided among multiple
495     // macros. Avoid adding duplicate regions in such case.
496     if (getRegion().hasEndLoc() &&
497         MostRecentLocation == getEndOfFileOrMacro(MostRecentLocation) &&
498         isRegionAlreadyAdded(getStartOfFileOrMacro(MostRecentLocation),
499                              MostRecentLocation))
500       MostRecentLocation = getIncludeOrExpansionLoc(MostRecentLocation);
501   }
502 
503   /// \brief Adjust regions and state when \c NewLoc exits a file.
504   ///
505   /// If moving from our most recently tracked location to \c NewLoc exits any
506   /// files, this adjusts our current region stack and creates the file regions
507   /// for the exited file.
508   void handleFileExit(SourceLocation NewLoc) {
509     if (NewLoc.isInvalid() ||
510         SM.isWrittenInSameFile(MostRecentLocation, NewLoc))
511       return;
512 
513     // If NewLoc is not in a file that contains MostRecentLocation, walk up to
514     // find the common ancestor.
515     SourceLocation LCA = NewLoc;
516     FileID ParentFile = SM.getFileID(LCA);
517     while (!isNestedIn(MostRecentLocation, ParentFile)) {
518       LCA = getIncludeOrExpansionLoc(LCA);
519       if (LCA.isInvalid() || SM.isWrittenInSameFile(LCA, MostRecentLocation)) {
520         // Since there isn't a common ancestor, no file was exited. We just need
521         // to adjust our location to the new file.
522         MostRecentLocation = NewLoc;
523         return;
524       }
525       ParentFile = SM.getFileID(LCA);
526     }
527 
528     llvm::SmallSet<SourceLocation, 8> StartLocs;
529     Optional<Counter> ParentCounter;
530     for (SourceMappingRegion &I : llvm::reverse(RegionStack)) {
531       if (!I.hasStartLoc())
532         continue;
533       SourceLocation Loc = I.getStartLoc();
534       if (!isNestedIn(Loc, ParentFile)) {
535         ParentCounter = I.getCounter();
536         break;
537       }
538 
539       while (!SM.isInFileID(Loc, ParentFile)) {
540         // The most nested region for each start location is the one with the
541         // correct count. We avoid creating redundant regions by stopping once
542         // we've seen this region.
543         if (StartLocs.insert(Loc).second)
544           SourceRegions.emplace_back(I.getCounter(), Loc,
545                                      getEndOfFileOrMacro(Loc));
546         Loc = getIncludeOrExpansionLoc(Loc);
547       }
548       I.setStartLoc(getPreciseTokenLocEnd(Loc));
549     }
550 
551     if (ParentCounter) {
552       // If the file is contained completely by another region and doesn't
553       // immediately start its own region, the whole file gets a region
554       // corresponding to the parent.
555       SourceLocation Loc = MostRecentLocation;
556       while (isNestedIn(Loc, ParentFile)) {
557         SourceLocation FileStart = getStartOfFileOrMacro(Loc);
558         if (StartLocs.insert(FileStart).second)
559           SourceRegions.emplace_back(*ParentCounter, FileStart,
560                                      getEndOfFileOrMacro(Loc));
561         Loc = getIncludeOrExpansionLoc(Loc);
562       }
563     }
564 
565     MostRecentLocation = NewLoc;
566   }
567 
568   /// \brief Ensure that \c S is included in the current region.
569   void extendRegion(const Stmt *S) {
570     SourceMappingRegion &Region = getRegion();
571     SourceLocation StartLoc = getStart(S);
572 
573     handleFileExit(StartLoc);
574     if (!Region.hasStartLoc())
575       Region.setStartLoc(StartLoc);
576   }
577 
578   /// \brief Mark \c S as a terminator, starting a zero region.
579   void terminateRegion(const Stmt *S) {
580     extendRegion(S);
581     SourceMappingRegion &Region = getRegion();
582     if (!Region.hasEndLoc())
583       Region.setEndLoc(getEnd(S));
584     pushRegion(Counter::getZero());
585   }
586 
587   /// \brief Keep counts of breaks and continues inside loops.
588   struct BreakContinue {
589     Counter BreakCount;
590     Counter ContinueCount;
591   };
592   SmallVector<BreakContinue, 8> BreakContinueStack;
593 
594   CounterCoverageMappingBuilder(
595       CoverageMappingModuleGen &CVM,
596       llvm::DenseMap<const Stmt *, unsigned> &CounterMap, SourceManager &SM,
597       const LangOptions &LangOpts)
598       : CoverageMappingBuilder(CVM, SM, LangOpts), CounterMap(CounterMap) {}
599 
600   /// \brief Write the mapping data to the output stream
601   void write(llvm::raw_ostream &OS) {
602     llvm::SmallVector<unsigned, 8> VirtualFileMapping;
603     gatherFileIDs(VirtualFileMapping);
604     emitSourceRegions();
605     emitExpansionRegions();
606     gatherSkippedRegions();
607 
608     CoverageMappingWriter Writer(VirtualFileMapping, Builder.getExpressions(),
609                                  MappingRegions);
610     Writer.write(OS);
611   }
612 
613   void VisitStmt(const Stmt *S) {
614     if (S->getLocStart().isValid())
615       extendRegion(S);
616     for (const Stmt *Child : S->children())
617       if (Child)
618         this->Visit(Child);
619     handleFileExit(getEnd(S));
620   }
621 
622   void VisitDecl(const Decl *D) {
623     Stmt *Body = D->getBody();
624     propagateCounts(getRegionCounter(Body), Body);
625   }
626 
627   void VisitReturnStmt(const ReturnStmt *S) {
628     extendRegion(S);
629     if (S->getRetValue())
630       Visit(S->getRetValue());
631     terminateRegion(S);
632   }
633 
634   void VisitCXXThrowExpr(const CXXThrowExpr *E) {
635     extendRegion(E);
636     if (E->getSubExpr())
637       Visit(E->getSubExpr());
638     terminateRegion(E);
639   }
640 
641   void VisitGotoStmt(const GotoStmt *S) { terminateRegion(S); }
642 
643   void VisitLabelStmt(const LabelStmt *S) {
644     SourceLocation Start = getStart(S);
645     // We can't extendRegion here or we risk overlapping with our new region.
646     handleFileExit(Start);
647     pushRegion(getRegionCounter(S), Start);
648     Visit(S->getSubStmt());
649   }
650 
651   void VisitBreakStmt(const BreakStmt *S) {
652     assert(!BreakContinueStack.empty() && "break not in a loop or switch!");
653     BreakContinueStack.back().BreakCount = addCounters(
654         BreakContinueStack.back().BreakCount, getRegion().getCounter());
655     terminateRegion(S);
656   }
657 
658   void VisitContinueStmt(const ContinueStmt *S) {
659     assert(!BreakContinueStack.empty() && "continue stmt not in a loop!");
660     BreakContinueStack.back().ContinueCount = addCounters(
661         BreakContinueStack.back().ContinueCount, getRegion().getCounter());
662     terminateRegion(S);
663   }
664 
665   void VisitWhileStmt(const WhileStmt *S) {
666     extendRegion(S);
667 
668     Counter ParentCount = getRegion().getCounter();
669     Counter BodyCount = getRegionCounter(S);
670 
671     // Handle the body first so that we can get the backedge count.
672     BreakContinueStack.push_back(BreakContinue());
673     extendRegion(S->getBody());
674     Counter BackedgeCount = propagateCounts(BodyCount, S->getBody());
675     BreakContinue BC = BreakContinueStack.pop_back_val();
676 
677     // Go back to handle the condition.
678     Counter CondCount =
679         addCounters(ParentCount, BackedgeCount, BC.ContinueCount);
680     propagateCounts(CondCount, S->getCond());
681     adjustForOutOfOrderTraversal(getEnd(S));
682 
683     Counter OutCount =
684         addCounters(BC.BreakCount, subtractCounters(CondCount, BodyCount));
685     if (OutCount != ParentCount)
686       pushRegion(OutCount);
687   }
688 
689   void VisitDoStmt(const DoStmt *S) {
690     extendRegion(S);
691 
692     Counter ParentCount = getRegion().getCounter();
693     Counter BodyCount = getRegionCounter(S);
694 
695     BreakContinueStack.push_back(BreakContinue());
696     extendRegion(S->getBody());
697     Counter BackedgeCount =
698         propagateCounts(addCounters(ParentCount, BodyCount), S->getBody());
699     BreakContinue BC = BreakContinueStack.pop_back_val();
700 
701     Counter CondCount = addCounters(BackedgeCount, BC.ContinueCount);
702     propagateCounts(CondCount, S->getCond());
703 
704     Counter OutCount =
705         addCounters(BC.BreakCount, subtractCounters(CondCount, BodyCount));
706     if (OutCount != ParentCount)
707       pushRegion(OutCount);
708   }
709 
710   void VisitForStmt(const ForStmt *S) {
711     extendRegion(S);
712     if (S->getInit())
713       Visit(S->getInit());
714 
715     Counter ParentCount = getRegion().getCounter();
716     Counter BodyCount = getRegionCounter(S);
717 
718     // Handle the body first so that we can get the backedge count.
719     BreakContinueStack.push_back(BreakContinue());
720     extendRegion(S->getBody());
721     Counter BackedgeCount = propagateCounts(BodyCount, S->getBody());
722     BreakContinue BC = BreakContinueStack.pop_back_val();
723 
724     // The increment is essentially part of the body but it needs to include
725     // the count for all the continue statements.
726     if (const Stmt *Inc = S->getInc())
727       propagateCounts(addCounters(BackedgeCount, BC.ContinueCount), Inc);
728 
729     // Go back to handle the condition.
730     Counter CondCount =
731         addCounters(ParentCount, BackedgeCount, BC.ContinueCount);
732     if (const Expr *Cond = S->getCond()) {
733       propagateCounts(CondCount, Cond);
734       adjustForOutOfOrderTraversal(getEnd(S));
735     }
736 
737     Counter OutCount =
738         addCounters(BC.BreakCount, subtractCounters(CondCount, BodyCount));
739     if (OutCount != ParentCount)
740       pushRegion(OutCount);
741   }
742 
743   void VisitCXXForRangeStmt(const CXXForRangeStmt *S) {
744     extendRegion(S);
745     Visit(S->getLoopVarStmt());
746     Visit(S->getRangeStmt());
747 
748     Counter ParentCount = getRegion().getCounter();
749     Counter BodyCount = getRegionCounter(S);
750 
751     BreakContinueStack.push_back(BreakContinue());
752     extendRegion(S->getBody());
753     Counter BackedgeCount = propagateCounts(BodyCount, S->getBody());
754     BreakContinue BC = BreakContinueStack.pop_back_val();
755 
756     Counter LoopCount =
757         addCounters(ParentCount, BackedgeCount, BC.ContinueCount);
758     Counter OutCount =
759         addCounters(BC.BreakCount, subtractCounters(LoopCount, BodyCount));
760     if (OutCount != ParentCount)
761       pushRegion(OutCount);
762   }
763 
764   void VisitObjCForCollectionStmt(const ObjCForCollectionStmt *S) {
765     extendRegion(S);
766     Visit(S->getElement());
767 
768     Counter ParentCount = getRegion().getCounter();
769     Counter BodyCount = getRegionCounter(S);
770 
771     BreakContinueStack.push_back(BreakContinue());
772     extendRegion(S->getBody());
773     Counter BackedgeCount = propagateCounts(BodyCount, S->getBody());
774     BreakContinue BC = BreakContinueStack.pop_back_val();
775 
776     Counter LoopCount =
777         addCounters(ParentCount, BackedgeCount, BC.ContinueCount);
778     Counter OutCount =
779         addCounters(BC.BreakCount, subtractCounters(LoopCount, BodyCount));
780     if (OutCount != ParentCount)
781       pushRegion(OutCount);
782   }
783 
784   void VisitSwitchStmt(const SwitchStmt *S) {
785     extendRegion(S);
786     Visit(S->getCond());
787 
788     BreakContinueStack.push_back(BreakContinue());
789 
790     const Stmt *Body = S->getBody();
791     extendRegion(Body);
792     if (const auto *CS = dyn_cast<CompoundStmt>(Body)) {
793       if (!CS->body_empty()) {
794         // The body of the switch needs a zero region so that fallthrough counts
795         // behave correctly, but it would be misleading to include the braces of
796         // the compound statement in the zeroed area, so we need to handle this
797         // specially.
798         size_t Index =
799             pushRegion(Counter::getZero(), getStart(CS->body_front()),
800                        getEnd(CS->body_back()));
801         for (const auto *Child : CS->children())
802           Visit(Child);
803         popRegions(Index);
804       }
805     } else
806       propagateCounts(Counter::getZero(), Body);
807     BreakContinue BC = BreakContinueStack.pop_back_val();
808 
809     if (!BreakContinueStack.empty())
810       BreakContinueStack.back().ContinueCount = addCounters(
811           BreakContinueStack.back().ContinueCount, BC.ContinueCount);
812 
813     Counter ExitCount = getRegionCounter(S);
814     SourceLocation ExitLoc = getEnd(S);
815     pushRegion(ExitCount, getStart(S), ExitLoc);
816     handleFileExit(ExitLoc);
817   }
818 
819   void VisitSwitchCase(const SwitchCase *S) {
820     extendRegion(S);
821 
822     SourceMappingRegion &Parent = getRegion();
823 
824     Counter Count = addCounters(Parent.getCounter(), getRegionCounter(S));
825     // Reuse the existing region if it starts at our label. This is typical of
826     // the first case in a switch.
827     if (Parent.hasStartLoc() && Parent.getStartLoc() == getStart(S))
828       Parent.setCounter(Count);
829     else
830       pushRegion(Count, getStart(S));
831 
832     if (const auto *CS = dyn_cast<CaseStmt>(S)) {
833       Visit(CS->getLHS());
834       if (const Expr *RHS = CS->getRHS())
835         Visit(RHS);
836     }
837     Visit(S->getSubStmt());
838   }
839 
840   void VisitIfStmt(const IfStmt *S) {
841     extendRegion(S);
842     // Extend into the condition before we propagate through it below - this is
843     // needed to handle macros that generate the "if" but not the condition.
844     extendRegion(S->getCond());
845 
846     Counter ParentCount = getRegion().getCounter();
847     Counter ThenCount = getRegionCounter(S);
848 
849     // Emitting a counter for the condition makes it easier to interpret the
850     // counter for the body when looking at the coverage.
851     propagateCounts(ParentCount, S->getCond());
852 
853     extendRegion(S->getThen());
854     Counter OutCount = propagateCounts(ThenCount, S->getThen());
855 
856     Counter ElseCount = subtractCounters(ParentCount, ThenCount);
857     if (const Stmt *Else = S->getElse()) {
858       extendRegion(S->getElse());
859       OutCount = addCounters(OutCount, propagateCounts(ElseCount, Else));
860     } else
861       OutCount = addCounters(OutCount, ElseCount);
862 
863     if (OutCount != ParentCount)
864       pushRegion(OutCount);
865   }
866 
867   void VisitCXXTryStmt(const CXXTryStmt *S) {
868     extendRegion(S);
869     // Handle macros that generate the "try" but not the rest.
870     extendRegion(S->getTryBlock());
871 
872     Counter ParentCount = getRegion().getCounter();
873     propagateCounts(ParentCount, S->getTryBlock());
874 
875     for (unsigned I = 0, E = S->getNumHandlers(); I < E; ++I)
876       Visit(S->getHandler(I));
877 
878     Counter ExitCount = getRegionCounter(S);
879     pushRegion(ExitCount);
880   }
881 
882   void VisitCXXCatchStmt(const CXXCatchStmt *S) {
883     propagateCounts(getRegionCounter(S), S->getHandlerBlock());
884   }
885 
886   void VisitAbstractConditionalOperator(const AbstractConditionalOperator *E) {
887     extendRegion(E);
888 
889     Counter ParentCount = getRegion().getCounter();
890     Counter TrueCount = getRegionCounter(E);
891 
892     Visit(E->getCond());
893 
894     if (!isa<BinaryConditionalOperator>(E)) {
895       extendRegion(E->getTrueExpr());
896       propagateCounts(TrueCount, E->getTrueExpr());
897     }
898     extendRegion(E->getFalseExpr());
899     propagateCounts(subtractCounters(ParentCount, TrueCount),
900                     E->getFalseExpr());
901   }
902 
903   void VisitBinLAnd(const BinaryOperator *E) {
904     extendRegion(E);
905     Visit(E->getLHS());
906 
907     extendRegion(E->getRHS());
908     propagateCounts(getRegionCounter(E), E->getRHS());
909   }
910 
911   void VisitBinLOr(const BinaryOperator *E) {
912     extendRegion(E);
913     Visit(E->getLHS());
914 
915     extendRegion(E->getRHS());
916     propagateCounts(getRegionCounter(E), E->getRHS());
917   }
918 
919   void VisitLambdaExpr(const LambdaExpr *LE) {
920     // Lambdas are treated as their own functions for now, so we shouldn't
921     // propagate counts into them.
922   }
923 };
924 
925 bool isMachO(const CodeGenModule &CGM) {
926   return CGM.getTarget().getTriple().isOSBinFormatMachO();
927 }
928 
929 StringRef getCoverageSection(const CodeGenModule &CGM) {
930   return llvm::getInstrProfCoverageSectionName(isMachO(CGM));
931 }
932 
933 std::string normalizeFilename(StringRef Filename) {
934   llvm::SmallString<256> Path(Filename);
935   llvm::sys::fs::make_absolute(Path);
936   llvm::sys::path::remove_dots(Path, /*remove_dot_dots=*/true);
937   return Path.str().str();
938 }
939 
940 } // end anonymous namespace
941 
942 static void dump(llvm::raw_ostream &OS, StringRef FunctionName,
943                  ArrayRef<CounterExpression> Expressions,
944                  ArrayRef<CounterMappingRegion> Regions) {
945   OS << FunctionName << ":\n";
946   CounterMappingContext Ctx(Expressions);
947   for (const auto &R : Regions) {
948     OS.indent(2);
949     switch (R.Kind) {
950     case CounterMappingRegion::CodeRegion:
951       break;
952     case CounterMappingRegion::ExpansionRegion:
953       OS << "Expansion,";
954       break;
955     case CounterMappingRegion::SkippedRegion:
956       OS << "Skipped,";
957       break;
958     }
959 
960     OS << "File " << R.FileID << ", " << R.LineStart << ":" << R.ColumnStart
961        << " -> " << R.LineEnd << ":" << R.ColumnEnd << " = ";
962     Ctx.dump(R.Count, OS);
963     if (R.Kind == CounterMappingRegion::ExpansionRegion)
964       OS << " (Expanded file = " << R.ExpandedFileID << ")";
965     OS << "\n";
966   }
967 }
968 
969 void CoverageMappingModuleGen::addFunctionMappingRecord(
970     llvm::GlobalVariable *NamePtr, StringRef NameValue, uint64_t FuncHash,
971     const std::string &CoverageMapping, bool IsUsed) {
972   llvm::LLVMContext &Ctx = CGM.getLLVMContext();
973   if (!FunctionRecordTy) {
974 #define COVMAP_FUNC_RECORD(Type, LLVMType, Name, Init) LLVMType,
975     llvm::Type *FunctionRecordTypes[] = {
976       #include "llvm/ProfileData/InstrProfData.inc"
977     };
978     FunctionRecordTy =
979         llvm::StructType::get(Ctx, makeArrayRef(FunctionRecordTypes),
980                               /*isPacked=*/true);
981   }
982 
983   #define COVMAP_FUNC_RECORD(Type, LLVMType, Name, Init) Init,
984   llvm::Constant *FunctionRecordVals[] = {
985       #include "llvm/ProfileData/InstrProfData.inc"
986   };
987   FunctionRecords.push_back(llvm::ConstantStruct::get(
988       FunctionRecordTy, makeArrayRef(FunctionRecordVals)));
989   if (!IsUsed)
990     FunctionNames.push_back(
991         llvm::ConstantExpr::getBitCast(NamePtr, llvm::Type::getInt8PtrTy(Ctx)));
992   CoverageMappings.push_back(CoverageMapping);
993 
994   if (CGM.getCodeGenOpts().DumpCoverageMapping) {
995     // Dump the coverage mapping data for this function by decoding the
996     // encoded data. This allows us to dump the mapping regions which were
997     // also processed by the CoverageMappingWriter which performs
998     // additional minimization operations such as reducing the number of
999     // expressions.
1000     std::vector<StringRef> Filenames;
1001     std::vector<CounterExpression> Expressions;
1002     std::vector<CounterMappingRegion> Regions;
1003     llvm::SmallVector<StringRef, 16> FilenameRefs;
1004     FilenameRefs.resize(FileEntries.size());
1005     for (const auto &Entry : FileEntries)
1006       FilenameRefs[Entry.second] = normalizeFilename(Entry.first->getName());
1007     RawCoverageMappingReader Reader(CoverageMapping, FilenameRefs, Filenames,
1008                                     Expressions, Regions);
1009     if (Reader.read())
1010       return;
1011     dump(llvm::outs(), NameValue, Expressions, Regions);
1012   }
1013 }
1014 
1015 void CoverageMappingModuleGen::emit() {
1016   if (FunctionRecords.empty())
1017     return;
1018   llvm::LLVMContext &Ctx = CGM.getLLVMContext();
1019   auto *Int32Ty = llvm::Type::getInt32Ty(Ctx);
1020 
1021   // Create the filenames and merge them with coverage mappings
1022   llvm::SmallVector<std::string, 16> FilenameStrs;
1023   llvm::SmallVector<StringRef, 16> FilenameRefs;
1024   FilenameStrs.resize(FileEntries.size());
1025   FilenameRefs.resize(FileEntries.size());
1026   for (const auto &Entry : FileEntries) {
1027     auto I = Entry.second;
1028     FilenameStrs[I] = normalizeFilename(Entry.first->getName());
1029     FilenameRefs[I] = FilenameStrs[I];
1030   }
1031 
1032   std::string FilenamesAndCoverageMappings;
1033   llvm::raw_string_ostream OS(FilenamesAndCoverageMappings);
1034   CoverageFilenamesSectionWriter(FilenameRefs).write(OS);
1035   std::string RawCoverageMappings =
1036       llvm::join(CoverageMappings.begin(), CoverageMappings.end(), "");
1037   OS << RawCoverageMappings;
1038   size_t CoverageMappingSize = RawCoverageMappings.size();
1039   size_t FilenamesSize = OS.str().size() - CoverageMappingSize;
1040   // Append extra zeroes if necessary to ensure that the size of the filenames
1041   // and coverage mappings is a multiple of 8.
1042   if (size_t Rem = OS.str().size() % 8) {
1043     CoverageMappingSize += 8 - Rem;
1044     for (size_t I = 0, S = 8 - Rem; I < S; ++I)
1045       OS << '\0';
1046   }
1047   auto *FilenamesAndMappingsVal =
1048       llvm::ConstantDataArray::getString(Ctx, OS.str(), false);
1049 
1050   // Create the deferred function records array
1051   auto RecordsTy =
1052       llvm::ArrayType::get(FunctionRecordTy, FunctionRecords.size());
1053   auto RecordsVal = llvm::ConstantArray::get(RecordsTy, FunctionRecords);
1054 
1055   llvm::Type *CovDataHeaderTypes[] = {
1056 #define COVMAP_HEADER(Type, LLVMType, Name, Init) LLVMType,
1057 #include "llvm/ProfileData/InstrProfData.inc"
1058   };
1059   auto CovDataHeaderTy =
1060       llvm::StructType::get(Ctx, makeArrayRef(CovDataHeaderTypes));
1061   llvm::Constant *CovDataHeaderVals[] = {
1062 #define COVMAP_HEADER(Type, LLVMType, Name, Init) Init,
1063 #include "llvm/ProfileData/InstrProfData.inc"
1064   };
1065   auto CovDataHeaderVal = llvm::ConstantStruct::get(
1066       CovDataHeaderTy, makeArrayRef(CovDataHeaderVals));
1067 
1068   // Create the coverage data record
1069   llvm::Type *CovDataTypes[] = {CovDataHeaderTy, RecordsTy,
1070                                 FilenamesAndMappingsVal->getType()};
1071   auto CovDataTy = llvm::StructType::get(Ctx, makeArrayRef(CovDataTypes));
1072   llvm::Constant *TUDataVals[] = {CovDataHeaderVal, RecordsVal,
1073                                   FilenamesAndMappingsVal};
1074   auto CovDataVal =
1075       llvm::ConstantStruct::get(CovDataTy, makeArrayRef(TUDataVals));
1076   auto CovData = new llvm::GlobalVariable(
1077       CGM.getModule(), CovDataTy, true, llvm::GlobalValue::InternalLinkage,
1078       CovDataVal, llvm::getCoverageMappingVarName());
1079 
1080   CovData->setSection(getCoverageSection(CGM));
1081   CovData->setAlignment(8);
1082 
1083   // Make sure the data doesn't get deleted.
1084   CGM.addUsedGlobal(CovData);
1085   // Create the deferred function records array
1086   if (!FunctionNames.empty()) {
1087     auto NamesArrTy = llvm::ArrayType::get(llvm::Type::getInt8PtrTy(Ctx),
1088                                            FunctionNames.size());
1089     auto NamesArrVal = llvm::ConstantArray::get(NamesArrTy, FunctionNames);
1090     // This variable will *NOT* be emitted to the object file. It is used
1091     // to pass the list of names referenced to codegen.
1092     new llvm::GlobalVariable(CGM.getModule(), NamesArrTy, true,
1093                              llvm::GlobalValue::InternalLinkage, NamesArrVal,
1094                              llvm::getCoverageUnusedNamesVarName());
1095   }
1096 }
1097 
1098 unsigned CoverageMappingModuleGen::getFileID(const FileEntry *File) {
1099   auto It = FileEntries.find(File);
1100   if (It != FileEntries.end())
1101     return It->second;
1102   unsigned FileID = FileEntries.size();
1103   FileEntries.insert(std::make_pair(File, FileID));
1104   return FileID;
1105 }
1106 
1107 void CoverageMappingGen::emitCounterMapping(const Decl *D,
1108                                             llvm::raw_ostream &OS) {
1109   assert(CounterMap);
1110   CounterCoverageMappingBuilder Walker(CVM, *CounterMap, SM, LangOpts);
1111   Walker.VisitDecl(D);
1112   Walker.write(OS);
1113 }
1114 
1115 void CoverageMappingGen::emitEmptyMapping(const Decl *D,
1116                                           llvm::raw_ostream &OS) {
1117   EmptyCoverageMappingBuilder Walker(CVM, SM, LangOpts);
1118   Walker.VisitDecl(D);
1119   Walker.write(OS);
1120 }
1121