1 //===--- CoverageMappingGen.cpp - Coverage mapping generation ---*- C++ -*-===// 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 // Instrumentation-based code coverage mapping generator 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "CoverageMappingGen.h" 14 #include "CodeGenFunction.h" 15 #include "clang/AST/StmtVisitor.h" 16 #include "clang/Basic/Diagnostic.h" 17 #include "clang/Basic/FileManager.h" 18 #include "clang/Frontend/FrontendDiagnostic.h" 19 #include "clang/Lex/Lexer.h" 20 #include "llvm/ADT/Optional.h" 21 #include "llvm/ADT/SmallSet.h" 22 #include "llvm/ADT/StringExtras.h" 23 #include "llvm/ProfileData/Coverage/CoverageMapping.h" 24 #include "llvm/ProfileData/Coverage/CoverageMappingReader.h" 25 #include "llvm/ProfileData/Coverage/CoverageMappingWriter.h" 26 #include "llvm/ProfileData/InstrProfReader.h" 27 #include "llvm/Support/FileSystem.h" 28 #include "llvm/Support/Path.h" 29 30 // This selects the coverage mapping format defined when `InstrProfData.inc` 31 // is textually included. 32 #define COVMAP_V3 33 34 using namespace clang; 35 using namespace CodeGen; 36 using namespace llvm::coverage; 37 38 CoverageSourceInfo * 39 CoverageMappingModuleGen::setUpCoverageCallbacks(Preprocessor &PP) { 40 CoverageSourceInfo *CoverageInfo = new CoverageSourceInfo(); 41 PP.addPPCallbacks(std::unique_ptr<PPCallbacks>(CoverageInfo)); 42 PP.addCommentHandler(CoverageInfo); 43 PP.setPreprocessToken(true); 44 PP.setTokenWatcher([CoverageInfo](clang::Token Tok) { 45 // Update previous token location. 46 CoverageInfo->PrevTokLoc = Tok.getLocation(); 47 if (Tok.getKind() != clang::tok::eod) 48 CoverageInfo->updateNextTokLoc(Tok.getLocation()); 49 }); 50 return CoverageInfo; 51 } 52 53 void CoverageSourceInfo::SourceRangeSkipped(SourceRange Range, SourceLocation) { 54 SkippedRanges.push_back({Range}); 55 } 56 57 bool CoverageSourceInfo::HandleComment(Preprocessor &PP, SourceRange Range) { 58 SkippedRanges.push_back({Range, PrevTokLoc}); 59 AfterComment = true; 60 return false; 61 } 62 63 void CoverageSourceInfo::updateNextTokLoc(SourceLocation Loc) { 64 if (AfterComment) { 65 SkippedRanges.back().NextTokLoc = Loc; 66 AfterComment = false; 67 } 68 } 69 70 namespace { 71 72 /// A region of source code that can be mapped to a counter. 73 class SourceMappingRegion { 74 Counter Count; 75 76 /// The region's starting location. 77 Optional<SourceLocation> LocStart; 78 79 /// The region's ending location. 80 Optional<SourceLocation> LocEnd; 81 82 /// Whether this region should be emitted after its parent is emitted. 83 bool DeferRegion; 84 85 /// Whether this region is a gap region. The count from a gap region is set 86 /// as the line execution count if there are no other regions on the line. 87 bool GapRegion; 88 89 public: 90 SourceMappingRegion(Counter Count, Optional<SourceLocation> LocStart, 91 Optional<SourceLocation> LocEnd, bool DeferRegion = false, 92 bool GapRegion = false) 93 : Count(Count), LocStart(LocStart), LocEnd(LocEnd), 94 DeferRegion(DeferRegion), GapRegion(GapRegion) {} 95 96 const Counter &getCounter() const { return Count; } 97 98 void setCounter(Counter C) { Count = C; } 99 100 bool hasStartLoc() const { return LocStart.hasValue(); } 101 102 void setStartLoc(SourceLocation Loc) { LocStart = Loc; } 103 104 SourceLocation getBeginLoc() const { 105 assert(LocStart && "Region has no start location"); 106 return *LocStart; 107 } 108 109 bool hasEndLoc() const { return LocEnd.hasValue(); } 110 111 void setEndLoc(SourceLocation Loc) { 112 assert(Loc.isValid() && "Setting an invalid end location"); 113 LocEnd = Loc; 114 } 115 116 SourceLocation getEndLoc() const { 117 assert(LocEnd && "Region has no end location"); 118 return *LocEnd; 119 } 120 121 bool isDeferred() const { return DeferRegion; } 122 123 void setDeferred(bool Deferred) { DeferRegion = Deferred; } 124 125 bool isGap() const { return GapRegion; } 126 127 void setGap(bool Gap) { GapRegion = Gap; } 128 }; 129 130 /// Spelling locations for the start and end of a source region. 131 struct SpellingRegion { 132 /// The line where the region starts. 133 unsigned LineStart; 134 135 /// The column where the region starts. 136 unsigned ColumnStart; 137 138 /// The line where the region ends. 139 unsigned LineEnd; 140 141 /// The column where the region ends. 142 unsigned ColumnEnd; 143 144 SpellingRegion(SourceManager &SM, SourceLocation LocStart, 145 SourceLocation LocEnd) { 146 LineStart = SM.getSpellingLineNumber(LocStart); 147 ColumnStart = SM.getSpellingColumnNumber(LocStart); 148 LineEnd = SM.getSpellingLineNumber(LocEnd); 149 ColumnEnd = SM.getSpellingColumnNumber(LocEnd); 150 } 151 152 SpellingRegion(SourceManager &SM, SourceMappingRegion &R) 153 : SpellingRegion(SM, R.getBeginLoc(), R.getEndLoc()) {} 154 155 /// Check if the start and end locations appear in source order, i.e 156 /// top->bottom, left->right. 157 bool isInSourceOrder() const { 158 return (LineStart < LineEnd) || 159 (LineStart == LineEnd && ColumnStart <= ColumnEnd); 160 } 161 }; 162 163 /// Provides the common functionality for the different 164 /// coverage mapping region builders. 165 class CoverageMappingBuilder { 166 public: 167 CoverageMappingModuleGen &CVM; 168 SourceManager &SM; 169 const LangOptions &LangOpts; 170 171 private: 172 /// Map of clang's FileIDs to IDs used for coverage mapping. 173 llvm::SmallDenseMap<FileID, std::pair<unsigned, SourceLocation>, 8> 174 FileIDMapping; 175 176 public: 177 /// The coverage mapping regions for this function 178 llvm::SmallVector<CounterMappingRegion, 32> MappingRegions; 179 /// The source mapping regions for this function. 180 std::vector<SourceMappingRegion> SourceRegions; 181 182 /// A set of regions which can be used as a filter. 183 /// 184 /// It is produced by emitExpansionRegions() and is used in 185 /// emitSourceRegions() to suppress producing code regions if 186 /// the same area is covered by expansion regions. 187 typedef llvm::SmallSet<std::pair<SourceLocation, SourceLocation>, 8> 188 SourceRegionFilter; 189 190 CoverageMappingBuilder(CoverageMappingModuleGen &CVM, SourceManager &SM, 191 const LangOptions &LangOpts) 192 : CVM(CVM), SM(SM), LangOpts(LangOpts) {} 193 194 /// Return the precise end location for the given token. 195 SourceLocation getPreciseTokenLocEnd(SourceLocation Loc) { 196 // We avoid getLocForEndOfToken here, because it doesn't do what we want for 197 // macro locations, which we just treat as expanded files. 198 unsigned TokLen = 199 Lexer::MeasureTokenLength(SM.getSpellingLoc(Loc), SM, LangOpts); 200 return Loc.getLocWithOffset(TokLen); 201 } 202 203 /// Return the start location of an included file or expanded macro. 204 SourceLocation getStartOfFileOrMacro(SourceLocation Loc) { 205 if (Loc.isMacroID()) 206 return Loc.getLocWithOffset(-SM.getFileOffset(Loc)); 207 return SM.getLocForStartOfFile(SM.getFileID(Loc)); 208 } 209 210 /// Return the end location of an included file or expanded macro. 211 SourceLocation getEndOfFileOrMacro(SourceLocation Loc) { 212 if (Loc.isMacroID()) 213 return Loc.getLocWithOffset(SM.getFileIDSize(SM.getFileID(Loc)) - 214 SM.getFileOffset(Loc)); 215 return SM.getLocForEndOfFile(SM.getFileID(Loc)); 216 } 217 218 /// Find out where the current file is included or macro is expanded. 219 SourceLocation getIncludeOrExpansionLoc(SourceLocation Loc) { 220 return Loc.isMacroID() ? SM.getImmediateExpansionRange(Loc).getBegin() 221 : SM.getIncludeLoc(SM.getFileID(Loc)); 222 } 223 224 /// Return true if \c Loc is a location in a built-in macro. 225 bool isInBuiltin(SourceLocation Loc) { 226 return SM.getBufferName(SM.getSpellingLoc(Loc)) == "<built-in>"; 227 } 228 229 /// Check whether \c Loc is included or expanded from \c Parent. 230 bool isNestedIn(SourceLocation Loc, FileID Parent) { 231 do { 232 Loc = getIncludeOrExpansionLoc(Loc); 233 if (Loc.isInvalid()) 234 return false; 235 } while (!SM.isInFileID(Loc, Parent)); 236 return true; 237 } 238 239 /// Get the start of \c S ignoring macro arguments and builtin macros. 240 SourceLocation getStart(const Stmt *S) { 241 SourceLocation Loc = S->getBeginLoc(); 242 while (SM.isMacroArgExpansion(Loc) || isInBuiltin(Loc)) 243 Loc = SM.getImmediateExpansionRange(Loc).getBegin(); 244 return Loc; 245 } 246 247 /// Get the end of \c S ignoring macro arguments and builtin macros. 248 SourceLocation getEnd(const Stmt *S) { 249 SourceLocation Loc = S->getEndLoc(); 250 while (SM.isMacroArgExpansion(Loc) || isInBuiltin(Loc)) 251 Loc = SM.getImmediateExpansionRange(Loc).getBegin(); 252 return getPreciseTokenLocEnd(Loc); 253 } 254 255 /// Find the set of files we have regions for and assign IDs 256 /// 257 /// Fills \c Mapping with the virtual file mapping needed to write out 258 /// coverage and collects the necessary file information to emit source and 259 /// expansion regions. 260 void gatherFileIDs(SmallVectorImpl<unsigned> &Mapping) { 261 FileIDMapping.clear(); 262 263 llvm::SmallSet<FileID, 8> Visited; 264 SmallVector<std::pair<SourceLocation, unsigned>, 8> FileLocs; 265 for (const auto &Region : SourceRegions) { 266 SourceLocation Loc = Region.getBeginLoc(); 267 FileID File = SM.getFileID(Loc); 268 if (!Visited.insert(File).second) 269 continue; 270 271 // Do not map FileID's associated with system headers. 272 if (SM.isInSystemHeader(SM.getSpellingLoc(Loc))) 273 continue; 274 275 unsigned Depth = 0; 276 for (SourceLocation Parent = getIncludeOrExpansionLoc(Loc); 277 Parent.isValid(); Parent = getIncludeOrExpansionLoc(Parent)) 278 ++Depth; 279 FileLocs.push_back(std::make_pair(Loc, Depth)); 280 } 281 llvm::stable_sort(FileLocs, llvm::less_second()); 282 283 for (const auto &FL : FileLocs) { 284 SourceLocation Loc = FL.first; 285 FileID SpellingFile = SM.getDecomposedSpellingLoc(Loc).first; 286 auto Entry = SM.getFileEntryForID(SpellingFile); 287 if (!Entry) 288 continue; 289 290 FileIDMapping[SM.getFileID(Loc)] = std::make_pair(Mapping.size(), Loc); 291 Mapping.push_back(CVM.getFileID(Entry)); 292 } 293 } 294 295 /// Get the coverage mapping file ID for \c Loc. 296 /// 297 /// If such file id doesn't exist, return None. 298 Optional<unsigned> getCoverageFileID(SourceLocation Loc) { 299 auto Mapping = FileIDMapping.find(SM.getFileID(Loc)); 300 if (Mapping != FileIDMapping.end()) 301 return Mapping->second.first; 302 return None; 303 } 304 305 /// This shrinks the skipped range if it spans a line that contains a 306 /// non-comment token. If shrinking the skipped range would make it empty, 307 /// this returns None. 308 Optional<SpellingRegion> adjustSkippedRange(SourceManager &SM, 309 SourceLocation LocStart, 310 SourceLocation LocEnd, 311 SourceLocation PrevTokLoc, 312 SourceLocation NextTokLoc) { 313 SpellingRegion SR{SM, LocStart, LocEnd}; 314 // If Range begin location is invalid, it's not a comment region. 315 if (PrevTokLoc.isInvalid()) 316 return SR; 317 unsigned PrevTokLine = SM.getSpellingLineNumber(PrevTokLoc); 318 unsigned NextTokLine = SM.getSpellingLineNumber(NextTokLoc); 319 SpellingRegion newSR(SR); 320 if (SM.isWrittenInSameFile(LocStart, PrevTokLoc) && 321 SR.LineStart == PrevTokLine) { 322 newSR.LineStart = SR.LineStart + 1; 323 newSR.ColumnStart = 1; 324 } 325 if (SM.isWrittenInSameFile(LocEnd, NextTokLoc) && 326 SR.LineEnd == NextTokLine) { 327 newSR.LineEnd = SR.LineEnd - 1; 328 newSR.ColumnEnd = SR.ColumnStart + 1; 329 } 330 if (newSR.isInSourceOrder()) 331 return newSR; 332 return None; 333 } 334 335 /// Gather all the regions that were skipped by the preprocessor 336 /// using the constructs like #if or comments. 337 void gatherSkippedRegions() { 338 /// An array of the minimum lineStarts and the maximum lineEnds 339 /// for mapping regions from the appropriate source files. 340 llvm::SmallVector<std::pair<unsigned, unsigned>, 8> FileLineRanges; 341 FileLineRanges.resize( 342 FileIDMapping.size(), 343 std::make_pair(std::numeric_limits<unsigned>::max(), 0)); 344 for (const auto &R : MappingRegions) { 345 FileLineRanges[R.FileID].first = 346 std::min(FileLineRanges[R.FileID].first, R.LineStart); 347 FileLineRanges[R.FileID].second = 348 std::max(FileLineRanges[R.FileID].second, R.LineEnd); 349 } 350 351 auto SkippedRanges = CVM.getSourceInfo().getSkippedRanges(); 352 for (auto &I : SkippedRanges) { 353 SourceRange Range = I.Range; 354 auto LocStart = Range.getBegin(); 355 auto LocEnd = Range.getEnd(); 356 assert(SM.isWrittenInSameFile(LocStart, LocEnd) && 357 "region spans multiple files"); 358 359 auto CovFileID = getCoverageFileID(LocStart); 360 if (!CovFileID) 361 continue; 362 Optional<SpellingRegion> SR = 363 adjustSkippedRange(SM, LocStart, LocEnd, I.PrevTokLoc, I.NextTokLoc); 364 if (!SR.hasValue()) 365 continue; 366 auto Region = CounterMappingRegion::makeSkipped( 367 *CovFileID, SR->LineStart, SR->ColumnStart, SR->LineEnd, 368 SR->ColumnEnd); 369 // Make sure that we only collect the regions that are inside 370 // the source code of this function. 371 if (Region.LineStart >= FileLineRanges[*CovFileID].first && 372 Region.LineEnd <= FileLineRanges[*CovFileID].second) 373 MappingRegions.push_back(Region); 374 } 375 } 376 377 /// Generate the coverage counter mapping regions from collected 378 /// source regions. 379 void emitSourceRegions(const SourceRegionFilter &Filter) { 380 for (const auto &Region : SourceRegions) { 381 assert(Region.hasEndLoc() && "incomplete region"); 382 383 SourceLocation LocStart = Region.getBeginLoc(); 384 assert(SM.getFileID(LocStart).isValid() && "region in invalid file"); 385 386 // Ignore regions from system headers. 387 if (SM.isInSystemHeader(SM.getSpellingLoc(LocStart))) 388 continue; 389 390 auto CovFileID = getCoverageFileID(LocStart); 391 // Ignore regions that don't have a file, such as builtin macros. 392 if (!CovFileID) 393 continue; 394 395 SourceLocation LocEnd = Region.getEndLoc(); 396 assert(SM.isWrittenInSameFile(LocStart, LocEnd) && 397 "region spans multiple files"); 398 399 // Don't add code regions for the area covered by expansion regions. 400 // This not only suppresses redundant regions, but sometimes prevents 401 // creating regions with wrong counters if, for example, a statement's 402 // body ends at the end of a nested macro. 403 if (Filter.count(std::make_pair(LocStart, LocEnd))) 404 continue; 405 406 // Find the spelling locations for the mapping region. 407 SpellingRegion SR{SM, LocStart, LocEnd}; 408 assert(SR.isInSourceOrder() && "region start and end out of order"); 409 410 if (Region.isGap()) { 411 MappingRegions.push_back(CounterMappingRegion::makeGapRegion( 412 Region.getCounter(), *CovFileID, SR.LineStart, SR.ColumnStart, 413 SR.LineEnd, SR.ColumnEnd)); 414 } else { 415 MappingRegions.push_back(CounterMappingRegion::makeRegion( 416 Region.getCounter(), *CovFileID, SR.LineStart, SR.ColumnStart, 417 SR.LineEnd, SR.ColumnEnd)); 418 } 419 } 420 } 421 422 /// Generate expansion regions for each virtual file we've seen. 423 SourceRegionFilter emitExpansionRegions() { 424 SourceRegionFilter Filter; 425 for (const auto &FM : FileIDMapping) { 426 SourceLocation ExpandedLoc = FM.second.second; 427 SourceLocation ParentLoc = getIncludeOrExpansionLoc(ExpandedLoc); 428 if (ParentLoc.isInvalid()) 429 continue; 430 431 auto ParentFileID = getCoverageFileID(ParentLoc); 432 if (!ParentFileID) 433 continue; 434 auto ExpandedFileID = getCoverageFileID(ExpandedLoc); 435 assert(ExpandedFileID && "expansion in uncovered file"); 436 437 SourceLocation LocEnd = getPreciseTokenLocEnd(ParentLoc); 438 assert(SM.isWrittenInSameFile(ParentLoc, LocEnd) && 439 "region spans multiple files"); 440 Filter.insert(std::make_pair(ParentLoc, LocEnd)); 441 442 SpellingRegion SR{SM, ParentLoc, LocEnd}; 443 assert(SR.isInSourceOrder() && "region start and end out of order"); 444 MappingRegions.push_back(CounterMappingRegion::makeExpansion( 445 *ParentFileID, *ExpandedFileID, SR.LineStart, SR.ColumnStart, 446 SR.LineEnd, SR.ColumnEnd)); 447 } 448 return Filter; 449 } 450 }; 451 452 /// Creates unreachable coverage regions for the functions that 453 /// are not emitted. 454 struct EmptyCoverageMappingBuilder : public CoverageMappingBuilder { 455 EmptyCoverageMappingBuilder(CoverageMappingModuleGen &CVM, SourceManager &SM, 456 const LangOptions &LangOpts) 457 : CoverageMappingBuilder(CVM, SM, LangOpts) {} 458 459 void VisitDecl(const Decl *D) { 460 if (!D->hasBody()) 461 return; 462 auto Body = D->getBody(); 463 SourceLocation Start = getStart(Body); 464 SourceLocation End = getEnd(Body); 465 if (!SM.isWrittenInSameFile(Start, End)) { 466 // Walk up to find the common ancestor. 467 // Correct the locations accordingly. 468 FileID StartFileID = SM.getFileID(Start); 469 FileID EndFileID = SM.getFileID(End); 470 while (StartFileID != EndFileID && !isNestedIn(End, StartFileID)) { 471 Start = getIncludeOrExpansionLoc(Start); 472 assert(Start.isValid() && 473 "Declaration start location not nested within a known region"); 474 StartFileID = SM.getFileID(Start); 475 } 476 while (StartFileID != EndFileID) { 477 End = getPreciseTokenLocEnd(getIncludeOrExpansionLoc(End)); 478 assert(End.isValid() && 479 "Declaration end location not nested within a known region"); 480 EndFileID = SM.getFileID(End); 481 } 482 } 483 SourceRegions.emplace_back(Counter(), Start, End); 484 } 485 486 /// Write the mapping data to the output stream 487 void write(llvm::raw_ostream &OS) { 488 SmallVector<unsigned, 16> FileIDMapping; 489 gatherFileIDs(FileIDMapping); 490 emitSourceRegions(SourceRegionFilter()); 491 492 if (MappingRegions.empty()) 493 return; 494 495 CoverageMappingWriter Writer(FileIDMapping, None, MappingRegions); 496 Writer.write(OS); 497 } 498 }; 499 500 /// A StmtVisitor that creates coverage mapping regions which map 501 /// from the source code locations to the PGO counters. 502 struct CounterCoverageMappingBuilder 503 : public CoverageMappingBuilder, 504 public ConstStmtVisitor<CounterCoverageMappingBuilder> { 505 /// The map of statements to count values. 506 llvm::DenseMap<const Stmt *, unsigned> &CounterMap; 507 508 /// A stack of currently live regions. 509 std::vector<SourceMappingRegion> RegionStack; 510 511 /// The currently deferred region: its end location and count can be set once 512 /// its parent has been popped from the region stack. 513 Optional<SourceMappingRegion> DeferredRegion; 514 515 CounterExpressionBuilder Builder; 516 517 /// A location in the most recently visited file or macro. 518 /// 519 /// This is used to adjust the active source regions appropriately when 520 /// expressions cross file or macro boundaries. 521 SourceLocation MostRecentLocation; 522 523 /// Location of the last terminated region. 524 Optional<std::pair<SourceLocation, size_t>> LastTerminatedRegion; 525 526 /// Return a counter for the subtraction of \c RHS from \c LHS 527 Counter subtractCounters(Counter LHS, Counter RHS) { 528 return Builder.subtract(LHS, RHS); 529 } 530 531 /// Return a counter for the sum of \c LHS and \c RHS. 532 Counter addCounters(Counter LHS, Counter RHS) { 533 return Builder.add(LHS, RHS); 534 } 535 536 Counter addCounters(Counter C1, Counter C2, Counter C3) { 537 return addCounters(addCounters(C1, C2), C3); 538 } 539 540 /// Return the region counter for the given statement. 541 /// 542 /// This should only be called on statements that have a dedicated counter. 543 Counter getRegionCounter(const Stmt *S) { 544 return Counter::getCounter(CounterMap[S]); 545 } 546 547 /// Push a region onto the stack. 548 /// 549 /// Returns the index on the stack where the region was pushed. This can be 550 /// used with popRegions to exit a "scope", ending the region that was pushed. 551 size_t pushRegion(Counter Count, Optional<SourceLocation> StartLoc = None, 552 Optional<SourceLocation> EndLoc = None) { 553 if (StartLoc) { 554 MostRecentLocation = *StartLoc; 555 completeDeferred(Count, MostRecentLocation); 556 } 557 RegionStack.emplace_back(Count, StartLoc, EndLoc); 558 559 return RegionStack.size() - 1; 560 } 561 562 /// Complete any pending deferred region by setting its end location and 563 /// count, and then pushing it onto the region stack. 564 size_t completeDeferred(Counter Count, SourceLocation DeferredEndLoc) { 565 size_t Index = RegionStack.size(); 566 if (!DeferredRegion) 567 return Index; 568 569 // Consume the pending region. 570 SourceMappingRegion DR = DeferredRegion.getValue(); 571 DeferredRegion = None; 572 573 // If the region ends in an expansion, find the expansion site. 574 FileID StartFile = SM.getFileID(DR.getBeginLoc()); 575 if (SM.getFileID(DeferredEndLoc) != StartFile) { 576 if (isNestedIn(DeferredEndLoc, StartFile)) { 577 do { 578 DeferredEndLoc = getIncludeOrExpansionLoc(DeferredEndLoc); 579 } while (StartFile != SM.getFileID(DeferredEndLoc)); 580 } else { 581 return Index; 582 } 583 } 584 585 // The parent of this deferred region ends where the containing decl ends, 586 // so the region isn't useful. 587 if (DR.getBeginLoc() == DeferredEndLoc) 588 return Index; 589 590 // If we're visiting statements in non-source order (e.g switch cases or 591 // a loop condition) we can't construct a sensible deferred region. 592 if (!SpellingRegion(SM, DR.getBeginLoc(), DeferredEndLoc).isInSourceOrder()) 593 return Index; 594 595 DR.setGap(true); 596 DR.setCounter(Count); 597 DR.setEndLoc(DeferredEndLoc); 598 handleFileExit(DeferredEndLoc); 599 RegionStack.push_back(DR); 600 return Index; 601 } 602 603 /// Complete a deferred region created after a terminated region at the 604 /// top-level. 605 void completeTopLevelDeferredRegion(Counter Count, 606 SourceLocation DeferredEndLoc) { 607 if (DeferredRegion || !LastTerminatedRegion) 608 return; 609 610 if (LastTerminatedRegion->second != RegionStack.size()) 611 return; 612 613 SourceLocation Start = LastTerminatedRegion->first; 614 if (SM.getFileID(Start) != SM.getMainFileID()) 615 return; 616 617 SourceMappingRegion DR = RegionStack.back(); 618 DR.setStartLoc(Start); 619 DR.setDeferred(false); 620 DeferredRegion = DR; 621 completeDeferred(Count, DeferredEndLoc); 622 } 623 624 size_t locationDepth(SourceLocation Loc) { 625 size_t Depth = 0; 626 while (Loc.isValid()) { 627 Loc = getIncludeOrExpansionLoc(Loc); 628 Depth++; 629 } 630 return Depth; 631 } 632 633 /// Pop regions from the stack into the function's list of regions. 634 /// 635 /// Adds all regions from \c ParentIndex to the top of the stack to the 636 /// function's \c SourceRegions. 637 void popRegions(size_t ParentIndex) { 638 assert(RegionStack.size() >= ParentIndex && "parent not in stack"); 639 bool ParentOfDeferredRegion = false; 640 while (RegionStack.size() > ParentIndex) { 641 SourceMappingRegion &Region = RegionStack.back(); 642 if (Region.hasStartLoc()) { 643 SourceLocation StartLoc = Region.getBeginLoc(); 644 SourceLocation EndLoc = Region.hasEndLoc() 645 ? Region.getEndLoc() 646 : RegionStack[ParentIndex].getEndLoc(); 647 size_t StartDepth = locationDepth(StartLoc); 648 size_t EndDepth = locationDepth(EndLoc); 649 while (!SM.isWrittenInSameFile(StartLoc, EndLoc)) { 650 bool UnnestStart = StartDepth >= EndDepth; 651 bool UnnestEnd = EndDepth >= StartDepth; 652 if (UnnestEnd) { 653 // The region ends in a nested file or macro expansion. Create a 654 // separate region for each expansion. 655 SourceLocation NestedLoc = getStartOfFileOrMacro(EndLoc); 656 assert(SM.isWrittenInSameFile(NestedLoc, EndLoc)); 657 658 if (!isRegionAlreadyAdded(NestedLoc, EndLoc)) 659 SourceRegions.emplace_back(Region.getCounter(), NestedLoc, EndLoc); 660 661 EndLoc = getPreciseTokenLocEnd(getIncludeOrExpansionLoc(EndLoc)); 662 if (EndLoc.isInvalid()) 663 llvm::report_fatal_error("File exit not handled before popRegions"); 664 EndDepth--; 665 } 666 if (UnnestStart) { 667 // The region begins in a nested file or macro expansion. Create a 668 // separate region for each expansion. 669 SourceLocation NestedLoc = getEndOfFileOrMacro(StartLoc); 670 assert(SM.isWrittenInSameFile(StartLoc, NestedLoc)); 671 672 if (!isRegionAlreadyAdded(StartLoc, NestedLoc)) 673 SourceRegions.emplace_back(Region.getCounter(), StartLoc, NestedLoc); 674 675 StartLoc = getIncludeOrExpansionLoc(StartLoc); 676 if (StartLoc.isInvalid()) 677 llvm::report_fatal_error("File exit not handled before popRegions"); 678 StartDepth--; 679 } 680 } 681 Region.setStartLoc(StartLoc); 682 Region.setEndLoc(EndLoc); 683 684 MostRecentLocation = EndLoc; 685 // If this region happens to span an entire expansion, we need to make 686 // sure we don't overlap the parent region with it. 687 if (StartLoc == getStartOfFileOrMacro(StartLoc) && 688 EndLoc == getEndOfFileOrMacro(EndLoc)) 689 MostRecentLocation = getIncludeOrExpansionLoc(EndLoc); 690 691 assert(SM.isWrittenInSameFile(Region.getBeginLoc(), EndLoc)); 692 assert(SpellingRegion(SM, Region).isInSourceOrder()); 693 SourceRegions.push_back(Region); 694 695 if (ParentOfDeferredRegion) { 696 ParentOfDeferredRegion = false; 697 698 // If there's an existing deferred region, keep the old one, because 699 // it means there are two consecutive returns (or a similar pattern). 700 if (!DeferredRegion.hasValue() && 701 // File IDs aren't gathered within macro expansions, so it isn't 702 // useful to try and create a deferred region inside of one. 703 !EndLoc.isMacroID()) 704 DeferredRegion = 705 SourceMappingRegion(Counter::getZero(), EndLoc, None); 706 } 707 } else if (Region.isDeferred()) { 708 assert(!ParentOfDeferredRegion && "Consecutive deferred regions"); 709 ParentOfDeferredRegion = true; 710 } 711 RegionStack.pop_back(); 712 713 // If the zero region pushed after the last terminated region no longer 714 // exists, clear its cached information. 715 if (LastTerminatedRegion && 716 RegionStack.size() < LastTerminatedRegion->second) 717 LastTerminatedRegion = None; 718 } 719 assert(!ParentOfDeferredRegion && "Deferred region with no parent"); 720 } 721 722 /// Return the currently active region. 723 SourceMappingRegion &getRegion() { 724 assert(!RegionStack.empty() && "statement has no region"); 725 return RegionStack.back(); 726 } 727 728 /// Propagate counts through the children of \p S if \p VisitChildren is true. 729 /// Otherwise, only emit a count for \p S itself. 730 Counter propagateCounts(Counter TopCount, const Stmt *S, 731 bool VisitChildren = true) { 732 SourceLocation StartLoc = getStart(S); 733 SourceLocation EndLoc = getEnd(S); 734 size_t Index = pushRegion(TopCount, StartLoc, EndLoc); 735 if (VisitChildren) 736 Visit(S); 737 Counter ExitCount = getRegion().getCounter(); 738 popRegions(Index); 739 740 // The statement may be spanned by an expansion. Make sure we handle a file 741 // exit out of this expansion before moving to the next statement. 742 if (SM.isBeforeInTranslationUnit(StartLoc, S->getBeginLoc())) 743 MostRecentLocation = EndLoc; 744 745 return ExitCount; 746 } 747 748 /// Check whether a region with bounds \c StartLoc and \c EndLoc 749 /// is already added to \c SourceRegions. 750 bool isRegionAlreadyAdded(SourceLocation StartLoc, SourceLocation EndLoc) { 751 return SourceRegions.rend() != 752 std::find_if(SourceRegions.rbegin(), SourceRegions.rend(), 753 [&](const SourceMappingRegion &Region) { 754 return Region.getBeginLoc() == StartLoc && 755 Region.getEndLoc() == EndLoc; 756 }); 757 } 758 759 /// Adjust the most recently visited location to \c EndLoc. 760 /// 761 /// This should be used after visiting any statements in non-source order. 762 void adjustForOutOfOrderTraversal(SourceLocation EndLoc) { 763 MostRecentLocation = EndLoc; 764 // The code region for a whole macro is created in handleFileExit() when 765 // it detects exiting of the virtual file of that macro. If we visited 766 // statements in non-source order, we might already have such a region 767 // added, for example, if a body of a loop is divided among multiple 768 // macros. Avoid adding duplicate regions in such case. 769 if (getRegion().hasEndLoc() && 770 MostRecentLocation == getEndOfFileOrMacro(MostRecentLocation) && 771 isRegionAlreadyAdded(getStartOfFileOrMacro(MostRecentLocation), 772 MostRecentLocation)) 773 MostRecentLocation = getIncludeOrExpansionLoc(MostRecentLocation); 774 } 775 776 /// Adjust regions and state when \c NewLoc exits a file. 777 /// 778 /// If moving from our most recently tracked location to \c NewLoc exits any 779 /// files, this adjusts our current region stack and creates the file regions 780 /// for the exited file. 781 void handleFileExit(SourceLocation NewLoc) { 782 if (NewLoc.isInvalid() || 783 SM.isWrittenInSameFile(MostRecentLocation, NewLoc)) 784 return; 785 786 // If NewLoc is not in a file that contains MostRecentLocation, walk up to 787 // find the common ancestor. 788 SourceLocation LCA = NewLoc; 789 FileID ParentFile = SM.getFileID(LCA); 790 while (!isNestedIn(MostRecentLocation, ParentFile)) { 791 LCA = getIncludeOrExpansionLoc(LCA); 792 if (LCA.isInvalid() || SM.isWrittenInSameFile(LCA, MostRecentLocation)) { 793 // Since there isn't a common ancestor, no file was exited. We just need 794 // to adjust our location to the new file. 795 MostRecentLocation = NewLoc; 796 return; 797 } 798 ParentFile = SM.getFileID(LCA); 799 } 800 801 llvm::SmallSet<SourceLocation, 8> StartLocs; 802 Optional<Counter> ParentCounter; 803 for (SourceMappingRegion &I : llvm::reverse(RegionStack)) { 804 if (!I.hasStartLoc()) 805 continue; 806 SourceLocation Loc = I.getBeginLoc(); 807 if (!isNestedIn(Loc, ParentFile)) { 808 ParentCounter = I.getCounter(); 809 break; 810 } 811 812 while (!SM.isInFileID(Loc, ParentFile)) { 813 // The most nested region for each start location is the one with the 814 // correct count. We avoid creating redundant regions by stopping once 815 // we've seen this region. 816 if (StartLocs.insert(Loc).second) 817 SourceRegions.emplace_back(I.getCounter(), Loc, 818 getEndOfFileOrMacro(Loc)); 819 Loc = getIncludeOrExpansionLoc(Loc); 820 } 821 I.setStartLoc(getPreciseTokenLocEnd(Loc)); 822 } 823 824 if (ParentCounter) { 825 // If the file is contained completely by another region and doesn't 826 // immediately start its own region, the whole file gets a region 827 // corresponding to the parent. 828 SourceLocation Loc = MostRecentLocation; 829 while (isNestedIn(Loc, ParentFile)) { 830 SourceLocation FileStart = getStartOfFileOrMacro(Loc); 831 if (StartLocs.insert(FileStart).second) { 832 SourceRegions.emplace_back(*ParentCounter, FileStart, 833 getEndOfFileOrMacro(Loc)); 834 assert(SpellingRegion(SM, SourceRegions.back()).isInSourceOrder()); 835 } 836 Loc = getIncludeOrExpansionLoc(Loc); 837 } 838 } 839 840 MostRecentLocation = NewLoc; 841 } 842 843 /// Ensure that \c S is included in the current region. 844 void extendRegion(const Stmt *S) { 845 SourceMappingRegion &Region = getRegion(); 846 SourceLocation StartLoc = getStart(S); 847 848 handleFileExit(StartLoc); 849 if (!Region.hasStartLoc()) 850 Region.setStartLoc(StartLoc); 851 852 completeDeferred(Region.getCounter(), StartLoc); 853 } 854 855 /// Mark \c S as a terminator, starting a zero region. 856 void terminateRegion(const Stmt *S) { 857 extendRegion(S); 858 SourceMappingRegion &Region = getRegion(); 859 SourceLocation EndLoc = getEnd(S); 860 if (!Region.hasEndLoc()) 861 Region.setEndLoc(EndLoc); 862 pushRegion(Counter::getZero()); 863 auto &ZeroRegion = getRegion(); 864 ZeroRegion.setDeferred(true); 865 LastTerminatedRegion = {EndLoc, RegionStack.size()}; 866 } 867 868 /// Find a valid gap range between \p AfterLoc and \p BeforeLoc. 869 Optional<SourceRange> findGapAreaBetween(SourceLocation AfterLoc, 870 SourceLocation BeforeLoc) { 871 AfterLoc = SM.getExpansionLoc(AfterLoc); 872 BeforeLoc = SM.getExpansionLoc(BeforeLoc); 873 if (!SM.isWrittenInSameFile(AfterLoc, BeforeLoc)) 874 return None; 875 return {{AfterLoc, BeforeLoc}}; 876 } 877 878 /// Emit a gap region between \p StartLoc and \p EndLoc with the given count. 879 void fillGapAreaWithCount(SourceLocation StartLoc, SourceLocation EndLoc, 880 Counter Count) { 881 if (StartLoc == EndLoc) 882 return; 883 assert(SpellingRegion(SM, StartLoc, EndLoc).isInSourceOrder()); 884 handleFileExit(StartLoc); 885 size_t Index = pushRegion(Count, StartLoc, EndLoc); 886 getRegion().setGap(true); 887 handleFileExit(EndLoc); 888 popRegions(Index); 889 } 890 891 /// Keep counts of breaks and continues inside loops. 892 struct BreakContinue { 893 Counter BreakCount; 894 Counter ContinueCount; 895 }; 896 SmallVector<BreakContinue, 8> BreakContinueStack; 897 898 CounterCoverageMappingBuilder( 899 CoverageMappingModuleGen &CVM, 900 llvm::DenseMap<const Stmt *, unsigned> &CounterMap, SourceManager &SM, 901 const LangOptions &LangOpts) 902 : CoverageMappingBuilder(CVM, SM, LangOpts), CounterMap(CounterMap), 903 DeferredRegion(None) {} 904 905 /// Write the mapping data to the output stream 906 void write(llvm::raw_ostream &OS) { 907 llvm::SmallVector<unsigned, 8> VirtualFileMapping; 908 gatherFileIDs(VirtualFileMapping); 909 SourceRegionFilter Filter = emitExpansionRegions(); 910 assert(!DeferredRegion && "Deferred region never completed"); 911 emitSourceRegions(Filter); 912 gatherSkippedRegions(); 913 914 if (MappingRegions.empty()) 915 return; 916 917 CoverageMappingWriter Writer(VirtualFileMapping, Builder.getExpressions(), 918 MappingRegions); 919 Writer.write(OS); 920 } 921 922 void VisitStmt(const Stmt *S) { 923 if (S->getBeginLoc().isValid()) 924 extendRegion(S); 925 for (const Stmt *Child : S->children()) 926 if (Child) 927 this->Visit(Child); 928 handleFileExit(getEnd(S)); 929 } 930 931 void VisitDecl(const Decl *D) { 932 assert(!DeferredRegion && "Deferred region never completed"); 933 934 Stmt *Body = D->getBody(); 935 936 // Do not propagate region counts into system headers. 937 if (Body && SM.isInSystemHeader(SM.getSpellingLoc(getStart(Body)))) 938 return; 939 940 // Do not visit the artificial children nodes of defaulted methods. The 941 // lexer may not be able to report back precise token end locations for 942 // these children nodes (llvm.org/PR39822), and moreover users will not be 943 // able to see coverage for them. 944 bool Defaulted = false; 945 if (auto *Method = dyn_cast<CXXMethodDecl>(D)) 946 Defaulted = Method->isDefaulted(); 947 948 propagateCounts(getRegionCounter(Body), Body, 949 /*VisitChildren=*/!Defaulted); 950 assert(RegionStack.empty() && "Regions entered but never exited"); 951 952 // Discard the last uncompleted deferred region in a decl, if one exists. 953 // This prevents lines at the end of a function containing only whitespace 954 // or closing braces from being marked as uncovered. 955 DeferredRegion = None; 956 } 957 958 void VisitReturnStmt(const ReturnStmt *S) { 959 extendRegion(S); 960 if (S->getRetValue()) 961 Visit(S->getRetValue()); 962 terminateRegion(S); 963 } 964 965 void VisitCoroutineBodyStmt(const CoroutineBodyStmt *S) { 966 extendRegion(S); 967 Visit(S->getBody()); 968 } 969 970 void VisitCoreturnStmt(const CoreturnStmt *S) { 971 extendRegion(S); 972 if (S->getOperand()) 973 Visit(S->getOperand()); 974 terminateRegion(S); 975 } 976 977 void VisitCXXThrowExpr(const CXXThrowExpr *E) { 978 extendRegion(E); 979 if (E->getSubExpr()) 980 Visit(E->getSubExpr()); 981 terminateRegion(E); 982 } 983 984 void VisitGotoStmt(const GotoStmt *S) { terminateRegion(S); } 985 986 void VisitLabelStmt(const LabelStmt *S) { 987 Counter LabelCount = getRegionCounter(S); 988 SourceLocation Start = getStart(S); 989 completeTopLevelDeferredRegion(LabelCount, Start); 990 completeDeferred(LabelCount, Start); 991 // We can't extendRegion here or we risk overlapping with our new region. 992 handleFileExit(Start); 993 pushRegion(LabelCount, Start); 994 Visit(S->getSubStmt()); 995 } 996 997 void VisitBreakStmt(const BreakStmt *S) { 998 assert(!BreakContinueStack.empty() && "break not in a loop or switch!"); 999 BreakContinueStack.back().BreakCount = addCounters( 1000 BreakContinueStack.back().BreakCount, getRegion().getCounter()); 1001 // FIXME: a break in a switch should terminate regions for all preceding 1002 // case statements, not just the most recent one. 1003 terminateRegion(S); 1004 } 1005 1006 void VisitContinueStmt(const ContinueStmt *S) { 1007 assert(!BreakContinueStack.empty() && "continue stmt not in a loop!"); 1008 BreakContinueStack.back().ContinueCount = addCounters( 1009 BreakContinueStack.back().ContinueCount, getRegion().getCounter()); 1010 terminateRegion(S); 1011 } 1012 1013 void VisitCallExpr(const CallExpr *E) { 1014 VisitStmt(E); 1015 1016 // Terminate the region when we hit a noreturn function. 1017 // (This is helpful dealing with switch statements.) 1018 QualType CalleeType = E->getCallee()->getType(); 1019 if (getFunctionExtInfo(*CalleeType).getNoReturn()) 1020 terminateRegion(E); 1021 } 1022 1023 void VisitWhileStmt(const WhileStmt *S) { 1024 extendRegion(S); 1025 1026 Counter ParentCount = getRegion().getCounter(); 1027 Counter BodyCount = getRegionCounter(S); 1028 1029 // Handle the body first so that we can get the backedge count. 1030 BreakContinueStack.push_back(BreakContinue()); 1031 extendRegion(S->getBody()); 1032 Counter BackedgeCount = propagateCounts(BodyCount, S->getBody()); 1033 BreakContinue BC = BreakContinueStack.pop_back_val(); 1034 1035 // Go back to handle the condition. 1036 Counter CondCount = 1037 addCounters(ParentCount, BackedgeCount, BC.ContinueCount); 1038 propagateCounts(CondCount, S->getCond()); 1039 adjustForOutOfOrderTraversal(getEnd(S)); 1040 1041 // The body count applies to the area immediately after the increment. 1042 auto Gap = findGapAreaBetween(getPreciseTokenLocEnd(S->getRParenLoc()), 1043 getStart(S->getBody())); 1044 if (Gap) 1045 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), BodyCount); 1046 1047 Counter OutCount = 1048 addCounters(BC.BreakCount, subtractCounters(CondCount, BodyCount)); 1049 if (OutCount != ParentCount) 1050 pushRegion(OutCount); 1051 } 1052 1053 void VisitDoStmt(const DoStmt *S) { 1054 extendRegion(S); 1055 1056 Counter ParentCount = getRegion().getCounter(); 1057 Counter BodyCount = getRegionCounter(S); 1058 1059 BreakContinueStack.push_back(BreakContinue()); 1060 extendRegion(S->getBody()); 1061 Counter BackedgeCount = 1062 propagateCounts(addCounters(ParentCount, BodyCount), S->getBody()); 1063 BreakContinue BC = BreakContinueStack.pop_back_val(); 1064 1065 Counter CondCount = addCounters(BackedgeCount, BC.ContinueCount); 1066 propagateCounts(CondCount, S->getCond()); 1067 1068 Counter OutCount = 1069 addCounters(BC.BreakCount, subtractCounters(CondCount, BodyCount)); 1070 if (OutCount != ParentCount) 1071 pushRegion(OutCount); 1072 } 1073 1074 void VisitForStmt(const ForStmt *S) { 1075 extendRegion(S); 1076 if (S->getInit()) 1077 Visit(S->getInit()); 1078 1079 Counter ParentCount = getRegion().getCounter(); 1080 Counter BodyCount = getRegionCounter(S); 1081 1082 // The loop increment may contain a break or continue. 1083 if (S->getInc()) 1084 BreakContinueStack.emplace_back(); 1085 1086 // Handle the body first so that we can get the backedge count. 1087 BreakContinueStack.emplace_back(); 1088 extendRegion(S->getBody()); 1089 Counter BackedgeCount = propagateCounts(BodyCount, S->getBody()); 1090 BreakContinue BodyBC = BreakContinueStack.pop_back_val(); 1091 1092 // The increment is essentially part of the body but it needs to include 1093 // the count for all the continue statements. 1094 BreakContinue IncrementBC; 1095 if (const Stmt *Inc = S->getInc()) { 1096 propagateCounts(addCounters(BackedgeCount, BodyBC.ContinueCount), Inc); 1097 IncrementBC = BreakContinueStack.pop_back_val(); 1098 } 1099 1100 // Go back to handle the condition. 1101 Counter CondCount = addCounters( 1102 addCounters(ParentCount, BackedgeCount, BodyBC.ContinueCount), 1103 IncrementBC.ContinueCount); 1104 if (const Expr *Cond = S->getCond()) { 1105 propagateCounts(CondCount, Cond); 1106 adjustForOutOfOrderTraversal(getEnd(S)); 1107 } 1108 1109 // The body count applies to the area immediately after the increment. 1110 auto Gap = findGapAreaBetween(getPreciseTokenLocEnd(S->getRParenLoc()), 1111 getStart(S->getBody())); 1112 if (Gap) 1113 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), BodyCount); 1114 1115 Counter OutCount = addCounters(BodyBC.BreakCount, IncrementBC.BreakCount, 1116 subtractCounters(CondCount, BodyCount)); 1117 if (OutCount != ParentCount) 1118 pushRegion(OutCount); 1119 } 1120 1121 void VisitCXXForRangeStmt(const CXXForRangeStmt *S) { 1122 extendRegion(S); 1123 if (S->getInit()) 1124 Visit(S->getInit()); 1125 Visit(S->getLoopVarStmt()); 1126 Visit(S->getRangeStmt()); 1127 1128 Counter ParentCount = getRegion().getCounter(); 1129 Counter BodyCount = getRegionCounter(S); 1130 1131 BreakContinueStack.push_back(BreakContinue()); 1132 extendRegion(S->getBody()); 1133 Counter BackedgeCount = propagateCounts(BodyCount, S->getBody()); 1134 BreakContinue BC = BreakContinueStack.pop_back_val(); 1135 1136 // The body count applies to the area immediately after the range. 1137 auto Gap = findGapAreaBetween(getPreciseTokenLocEnd(S->getRParenLoc()), 1138 getStart(S->getBody())); 1139 if (Gap) 1140 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), BodyCount); 1141 1142 Counter LoopCount = 1143 addCounters(ParentCount, BackedgeCount, BC.ContinueCount); 1144 Counter OutCount = 1145 addCounters(BC.BreakCount, subtractCounters(LoopCount, BodyCount)); 1146 if (OutCount != ParentCount) 1147 pushRegion(OutCount); 1148 } 1149 1150 void VisitObjCForCollectionStmt(const ObjCForCollectionStmt *S) { 1151 extendRegion(S); 1152 Visit(S->getElement()); 1153 1154 Counter ParentCount = getRegion().getCounter(); 1155 Counter BodyCount = getRegionCounter(S); 1156 1157 BreakContinueStack.push_back(BreakContinue()); 1158 extendRegion(S->getBody()); 1159 Counter BackedgeCount = propagateCounts(BodyCount, S->getBody()); 1160 BreakContinue BC = BreakContinueStack.pop_back_val(); 1161 1162 // The body count applies to the area immediately after the collection. 1163 auto Gap = findGapAreaBetween(getPreciseTokenLocEnd(S->getRParenLoc()), 1164 getStart(S->getBody())); 1165 if (Gap) 1166 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), BodyCount); 1167 1168 Counter LoopCount = 1169 addCounters(ParentCount, BackedgeCount, BC.ContinueCount); 1170 Counter OutCount = 1171 addCounters(BC.BreakCount, subtractCounters(LoopCount, BodyCount)); 1172 if (OutCount != ParentCount) 1173 pushRegion(OutCount); 1174 } 1175 1176 void VisitSwitchStmt(const SwitchStmt *S) { 1177 extendRegion(S); 1178 if (S->getInit()) 1179 Visit(S->getInit()); 1180 Visit(S->getCond()); 1181 1182 BreakContinueStack.push_back(BreakContinue()); 1183 1184 const Stmt *Body = S->getBody(); 1185 extendRegion(Body); 1186 if (const auto *CS = dyn_cast<CompoundStmt>(Body)) { 1187 if (!CS->body_empty()) { 1188 // Make a region for the body of the switch. If the body starts with 1189 // a case, that case will reuse this region; otherwise, this covers 1190 // the unreachable code at the beginning of the switch body. 1191 size_t Index = pushRegion(Counter::getZero(), getStart(CS)); 1192 getRegion().setGap(true); 1193 for (const auto *Child : CS->children()) 1194 Visit(Child); 1195 1196 // Set the end for the body of the switch, if it isn't already set. 1197 for (size_t i = RegionStack.size(); i != Index; --i) { 1198 if (!RegionStack[i - 1].hasEndLoc()) 1199 RegionStack[i - 1].setEndLoc(getEnd(CS->body_back())); 1200 } 1201 1202 popRegions(Index); 1203 } 1204 } else 1205 propagateCounts(Counter::getZero(), Body); 1206 BreakContinue BC = BreakContinueStack.pop_back_val(); 1207 1208 if (!BreakContinueStack.empty()) 1209 BreakContinueStack.back().ContinueCount = addCounters( 1210 BreakContinueStack.back().ContinueCount, BC.ContinueCount); 1211 1212 Counter ExitCount = getRegionCounter(S); 1213 SourceLocation ExitLoc = getEnd(S); 1214 pushRegion(ExitCount); 1215 1216 // Ensure that handleFileExit recognizes when the end location is located 1217 // in a different file. 1218 MostRecentLocation = getStart(S); 1219 handleFileExit(ExitLoc); 1220 } 1221 1222 void VisitSwitchCase(const SwitchCase *S) { 1223 extendRegion(S); 1224 1225 SourceMappingRegion &Parent = getRegion(); 1226 1227 Counter Count = addCounters(Parent.getCounter(), getRegionCounter(S)); 1228 // Reuse the existing region if it starts at our label. This is typical of 1229 // the first case in a switch. 1230 if (Parent.hasStartLoc() && Parent.getBeginLoc() == getStart(S)) 1231 Parent.setCounter(Count); 1232 else 1233 pushRegion(Count, getStart(S)); 1234 1235 if (const auto *CS = dyn_cast<CaseStmt>(S)) { 1236 Visit(CS->getLHS()); 1237 if (const Expr *RHS = CS->getRHS()) 1238 Visit(RHS); 1239 } 1240 Visit(S->getSubStmt()); 1241 } 1242 1243 void VisitIfStmt(const IfStmt *S) { 1244 extendRegion(S); 1245 if (S->getInit()) 1246 Visit(S->getInit()); 1247 1248 // Extend into the condition before we propagate through it below - this is 1249 // needed to handle macros that generate the "if" but not the condition. 1250 extendRegion(S->getCond()); 1251 1252 Counter ParentCount = getRegion().getCounter(); 1253 Counter ThenCount = getRegionCounter(S); 1254 1255 // Emitting a counter for the condition makes it easier to interpret the 1256 // counter for the body when looking at the coverage. 1257 propagateCounts(ParentCount, S->getCond()); 1258 1259 // The 'then' count applies to the area immediately after the condition. 1260 auto Gap = findGapAreaBetween(getPreciseTokenLocEnd(S->getRParenLoc()), 1261 getStart(S->getThen())); 1262 if (Gap) 1263 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), ThenCount); 1264 1265 extendRegion(S->getThen()); 1266 Counter OutCount = propagateCounts(ThenCount, S->getThen()); 1267 1268 Counter ElseCount = subtractCounters(ParentCount, ThenCount); 1269 if (const Stmt *Else = S->getElse()) { 1270 // The 'else' count applies to the area immediately after the 'then'. 1271 Gap = findGapAreaBetween(getPreciseTokenLocEnd(getEnd(S->getThen())), 1272 getStart(Else)); 1273 if (Gap) 1274 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), ElseCount); 1275 extendRegion(Else); 1276 OutCount = addCounters(OutCount, propagateCounts(ElseCount, Else)); 1277 } else 1278 OutCount = addCounters(OutCount, ElseCount); 1279 1280 if (OutCount != ParentCount) 1281 pushRegion(OutCount); 1282 } 1283 1284 void VisitCXXTryStmt(const CXXTryStmt *S) { 1285 extendRegion(S); 1286 // Handle macros that generate the "try" but not the rest. 1287 extendRegion(S->getTryBlock()); 1288 1289 Counter ParentCount = getRegion().getCounter(); 1290 propagateCounts(ParentCount, S->getTryBlock()); 1291 1292 for (unsigned I = 0, E = S->getNumHandlers(); I < E; ++I) 1293 Visit(S->getHandler(I)); 1294 1295 Counter ExitCount = getRegionCounter(S); 1296 pushRegion(ExitCount); 1297 } 1298 1299 void VisitCXXCatchStmt(const CXXCatchStmt *S) { 1300 propagateCounts(getRegionCounter(S), S->getHandlerBlock()); 1301 } 1302 1303 void VisitAbstractConditionalOperator(const AbstractConditionalOperator *E) { 1304 extendRegion(E); 1305 1306 Counter ParentCount = getRegion().getCounter(); 1307 Counter TrueCount = getRegionCounter(E); 1308 1309 Visit(E->getCond()); 1310 1311 if (!isa<BinaryConditionalOperator>(E)) { 1312 // The 'then' count applies to the area immediately after the condition. 1313 auto Gap = 1314 findGapAreaBetween(E->getQuestionLoc(), getStart(E->getTrueExpr())); 1315 if (Gap) 1316 fillGapAreaWithCount(Gap->getBegin(), Gap->getEnd(), TrueCount); 1317 1318 extendRegion(E->getTrueExpr()); 1319 propagateCounts(TrueCount, E->getTrueExpr()); 1320 } 1321 1322 extendRegion(E->getFalseExpr()); 1323 propagateCounts(subtractCounters(ParentCount, TrueCount), 1324 E->getFalseExpr()); 1325 } 1326 1327 void VisitBinLAnd(const BinaryOperator *E) { 1328 extendRegion(E->getLHS()); 1329 propagateCounts(getRegion().getCounter(), E->getLHS()); 1330 handleFileExit(getEnd(E->getLHS())); 1331 1332 extendRegion(E->getRHS()); 1333 propagateCounts(getRegionCounter(E), E->getRHS()); 1334 } 1335 1336 void VisitBinLOr(const BinaryOperator *E) { 1337 extendRegion(E->getLHS()); 1338 propagateCounts(getRegion().getCounter(), E->getLHS()); 1339 handleFileExit(getEnd(E->getLHS())); 1340 1341 extendRegion(E->getRHS()); 1342 propagateCounts(getRegionCounter(E), E->getRHS()); 1343 } 1344 1345 void VisitLambdaExpr(const LambdaExpr *LE) { 1346 // Lambdas are treated as their own functions for now, so we shouldn't 1347 // propagate counts into them. 1348 } 1349 }; 1350 1351 std::string normalizeFilename(StringRef Filename) { 1352 llvm::SmallString<256> Path(Filename); 1353 llvm::sys::fs::make_absolute(Path); 1354 llvm::sys::path::remove_dots(Path, /*remove_dot_dot=*/true); 1355 return std::string(Path); 1356 } 1357 1358 } // end anonymous namespace 1359 1360 static void dump(llvm::raw_ostream &OS, StringRef FunctionName, 1361 ArrayRef<CounterExpression> Expressions, 1362 ArrayRef<CounterMappingRegion> Regions) { 1363 OS << FunctionName << ":\n"; 1364 CounterMappingContext Ctx(Expressions); 1365 for (const auto &R : Regions) { 1366 OS.indent(2); 1367 switch (R.Kind) { 1368 case CounterMappingRegion::CodeRegion: 1369 break; 1370 case CounterMappingRegion::ExpansionRegion: 1371 OS << "Expansion,"; 1372 break; 1373 case CounterMappingRegion::SkippedRegion: 1374 OS << "Skipped,"; 1375 break; 1376 case CounterMappingRegion::GapRegion: 1377 OS << "Gap,"; 1378 break; 1379 } 1380 1381 OS << "File " << R.FileID << ", " << R.LineStart << ":" << R.ColumnStart 1382 << " -> " << R.LineEnd << ":" << R.ColumnEnd << " = "; 1383 Ctx.dump(R.Count, OS); 1384 if (R.Kind == CounterMappingRegion::ExpansionRegion) 1385 OS << " (Expanded file = " << R.ExpandedFileID << ")"; 1386 OS << "\n"; 1387 } 1388 } 1389 1390 static std::string getInstrProfSection(const CodeGenModule &CGM, 1391 llvm::InstrProfSectKind SK) { 1392 return llvm::getInstrProfSectionName( 1393 SK, CGM.getContext().getTargetInfo().getTriple().getObjectFormat()); 1394 } 1395 1396 void CoverageMappingModuleGen::emitFunctionMappingRecord( 1397 const FunctionInfo &Info, uint64_t FilenamesRef) { 1398 llvm::LLVMContext &Ctx = CGM.getLLVMContext(); 1399 1400 // Assign a name to the function record. This is used to merge duplicates. 1401 std::string FuncRecordName = "__covrec_" + llvm::utohexstr(Info.NameHash); 1402 1403 // A dummy description for a function included-but-not-used in a TU can be 1404 // replaced by full description provided by a different TU. The two kinds of 1405 // descriptions play distinct roles: therefore, assign them different names 1406 // to prevent `linkonce_odr` merging. 1407 if (Info.IsUsed) 1408 FuncRecordName += "u"; 1409 1410 // Create the function record type. 1411 const uint64_t NameHash = Info.NameHash; 1412 const uint64_t FuncHash = Info.FuncHash; 1413 const std::string &CoverageMapping = Info.CoverageMapping; 1414 #define COVMAP_FUNC_RECORD(Type, LLVMType, Name, Init) LLVMType, 1415 llvm::Type *FunctionRecordTypes[] = { 1416 #include "llvm/ProfileData/InstrProfData.inc" 1417 }; 1418 auto *FunctionRecordTy = 1419 llvm::StructType::get(Ctx, makeArrayRef(FunctionRecordTypes), 1420 /*isPacked=*/true); 1421 1422 // Create the function record constant. 1423 #define COVMAP_FUNC_RECORD(Type, LLVMType, Name, Init) Init, 1424 llvm::Constant *FunctionRecordVals[] = { 1425 #include "llvm/ProfileData/InstrProfData.inc" 1426 }; 1427 auto *FuncRecordConstant = llvm::ConstantStruct::get( 1428 FunctionRecordTy, makeArrayRef(FunctionRecordVals)); 1429 1430 // Create the function record global. 1431 auto *FuncRecord = new llvm::GlobalVariable( 1432 CGM.getModule(), FunctionRecordTy, /*isConstant=*/true, 1433 llvm::GlobalValue::LinkOnceODRLinkage, FuncRecordConstant, 1434 FuncRecordName); 1435 FuncRecord->setVisibility(llvm::GlobalValue::HiddenVisibility); 1436 FuncRecord->setSection(getInstrProfSection(CGM, llvm::IPSK_covfun)); 1437 FuncRecord->setAlignment(llvm::Align(8)); 1438 if (CGM.supportsCOMDAT()) 1439 FuncRecord->setComdat(CGM.getModule().getOrInsertComdat(FuncRecordName)); 1440 1441 // Make sure the data doesn't get deleted. 1442 CGM.addUsedGlobal(FuncRecord); 1443 } 1444 1445 void CoverageMappingModuleGen::addFunctionMappingRecord( 1446 llvm::GlobalVariable *NamePtr, StringRef NameValue, uint64_t FuncHash, 1447 const std::string &CoverageMapping, bool IsUsed) { 1448 llvm::LLVMContext &Ctx = CGM.getLLVMContext(); 1449 const uint64_t NameHash = llvm::IndexedInstrProf::ComputeHash(NameValue); 1450 FunctionRecords.push_back({NameHash, FuncHash, CoverageMapping, IsUsed}); 1451 1452 if (!IsUsed) 1453 FunctionNames.push_back( 1454 llvm::ConstantExpr::getBitCast(NamePtr, llvm::Type::getInt8PtrTy(Ctx))); 1455 1456 if (CGM.getCodeGenOpts().DumpCoverageMapping) { 1457 // Dump the coverage mapping data for this function by decoding the 1458 // encoded data. This allows us to dump the mapping regions which were 1459 // also processed by the CoverageMappingWriter which performs 1460 // additional minimization operations such as reducing the number of 1461 // expressions. 1462 std::vector<StringRef> Filenames; 1463 std::vector<CounterExpression> Expressions; 1464 std::vector<CounterMappingRegion> Regions; 1465 llvm::SmallVector<std::string, 16> FilenameStrs; 1466 llvm::SmallVector<StringRef, 16> FilenameRefs; 1467 FilenameStrs.resize(FileEntries.size()); 1468 FilenameRefs.resize(FileEntries.size()); 1469 for (const auto &Entry : FileEntries) { 1470 auto I = Entry.second; 1471 FilenameStrs[I] = normalizeFilename(Entry.first->getName()); 1472 FilenameRefs[I] = FilenameStrs[I]; 1473 } 1474 RawCoverageMappingReader Reader(CoverageMapping, FilenameRefs, Filenames, 1475 Expressions, Regions); 1476 if (Reader.read()) 1477 return; 1478 dump(llvm::outs(), NameValue, Expressions, Regions); 1479 } 1480 } 1481 1482 void CoverageMappingModuleGen::emit() { 1483 if (FunctionRecords.empty()) 1484 return; 1485 llvm::LLVMContext &Ctx = CGM.getLLVMContext(); 1486 auto *Int32Ty = llvm::Type::getInt32Ty(Ctx); 1487 1488 // Create the filenames and merge them with coverage mappings 1489 llvm::SmallVector<std::string, 16> FilenameStrs; 1490 llvm::SmallVector<StringRef, 16> FilenameRefs; 1491 FilenameStrs.resize(FileEntries.size()); 1492 FilenameRefs.resize(FileEntries.size()); 1493 for (const auto &Entry : FileEntries) { 1494 auto I = Entry.second; 1495 FilenameStrs[I] = normalizeFilename(Entry.first->getName()); 1496 FilenameRefs[I] = FilenameStrs[I]; 1497 } 1498 1499 std::string Filenames; 1500 { 1501 llvm::raw_string_ostream OS(Filenames); 1502 CoverageFilenamesSectionWriter(FilenameRefs).write(OS); 1503 } 1504 auto *FilenamesVal = 1505 llvm::ConstantDataArray::getString(Ctx, Filenames, false); 1506 const int64_t FilenamesRef = llvm::IndexedInstrProf::ComputeHash(Filenames); 1507 1508 // Emit the function records. 1509 for (const FunctionInfo &Info : FunctionRecords) 1510 emitFunctionMappingRecord(Info, FilenamesRef); 1511 1512 const unsigned NRecords = 0; 1513 const size_t FilenamesSize = Filenames.size(); 1514 const unsigned CoverageMappingSize = 0; 1515 llvm::Type *CovDataHeaderTypes[] = { 1516 #define COVMAP_HEADER(Type, LLVMType, Name, Init) LLVMType, 1517 #include "llvm/ProfileData/InstrProfData.inc" 1518 }; 1519 auto CovDataHeaderTy = 1520 llvm::StructType::get(Ctx, makeArrayRef(CovDataHeaderTypes)); 1521 llvm::Constant *CovDataHeaderVals[] = { 1522 #define COVMAP_HEADER(Type, LLVMType, Name, Init) Init, 1523 #include "llvm/ProfileData/InstrProfData.inc" 1524 }; 1525 auto CovDataHeaderVal = llvm::ConstantStruct::get( 1526 CovDataHeaderTy, makeArrayRef(CovDataHeaderVals)); 1527 1528 // Create the coverage data record 1529 llvm::Type *CovDataTypes[] = {CovDataHeaderTy, FilenamesVal->getType()}; 1530 auto CovDataTy = llvm::StructType::get(Ctx, makeArrayRef(CovDataTypes)); 1531 llvm::Constant *TUDataVals[] = {CovDataHeaderVal, FilenamesVal}; 1532 auto CovDataVal = 1533 llvm::ConstantStruct::get(CovDataTy, makeArrayRef(TUDataVals)); 1534 auto CovData = new llvm::GlobalVariable( 1535 CGM.getModule(), CovDataTy, true, llvm::GlobalValue::PrivateLinkage, 1536 CovDataVal, llvm::getCoverageMappingVarName()); 1537 1538 CovData->setSection(getInstrProfSection(CGM, llvm::IPSK_covmap)); 1539 CovData->setAlignment(llvm::Align(8)); 1540 1541 // Make sure the data doesn't get deleted. 1542 CGM.addUsedGlobal(CovData); 1543 // Create the deferred function records array 1544 if (!FunctionNames.empty()) { 1545 auto NamesArrTy = llvm::ArrayType::get(llvm::Type::getInt8PtrTy(Ctx), 1546 FunctionNames.size()); 1547 auto NamesArrVal = llvm::ConstantArray::get(NamesArrTy, FunctionNames); 1548 // This variable will *NOT* be emitted to the object file. It is used 1549 // to pass the list of names referenced to codegen. 1550 new llvm::GlobalVariable(CGM.getModule(), NamesArrTy, true, 1551 llvm::GlobalValue::InternalLinkage, NamesArrVal, 1552 llvm::getCoverageUnusedNamesVarName()); 1553 } 1554 } 1555 1556 unsigned CoverageMappingModuleGen::getFileID(const FileEntry *File) { 1557 auto It = FileEntries.find(File); 1558 if (It != FileEntries.end()) 1559 return It->second; 1560 unsigned FileID = FileEntries.size(); 1561 FileEntries.insert(std::make_pair(File, FileID)); 1562 return FileID; 1563 } 1564 1565 void CoverageMappingGen::emitCounterMapping(const Decl *D, 1566 llvm::raw_ostream &OS) { 1567 assert(CounterMap); 1568 CounterCoverageMappingBuilder Walker(CVM, *CounterMap, SM, LangOpts); 1569 Walker.VisitDecl(D); 1570 Walker.write(OS); 1571 } 1572 1573 void CoverageMappingGen::emitEmptyMapping(const Decl *D, 1574 llvm::raw_ostream &OS) { 1575 EmptyCoverageMappingBuilder Walker(CVM, SM, LangOpts); 1576 Walker.VisitDecl(D); 1577 Walker.write(OS); 1578 } 1579