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