1 //===- GCOVProfiling.cpp - Insert edge counters for gcov profiling --------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This pass implements GCOV-style profiling. When this pass is run it emits 11 // "gcno" files next to the existing source, and instruments the code that runs 12 // to records the edges between blocks that run and emit a complementary "gcda" 13 // file on exit. 14 // 15 //===----------------------------------------------------------------------===// 16 17 #include "llvm/ADT/DenseMap.h" 18 #include "llvm/ADT/Hashing.h" 19 #include "llvm/ADT/STLExtras.h" 20 #include "llvm/ADT/Statistic.h" 21 #include "llvm/ADT/StringExtras.h" 22 #include "llvm/ADT/StringMap.h" 23 #include "llvm/ADT/UniqueVector.h" 24 #include "llvm/IR/DebugInfo.h" 25 #include "llvm/IR/DebugLoc.h" 26 #include "llvm/IR/IRBuilder.h" 27 #include "llvm/IR/InstIterator.h" 28 #include "llvm/IR/Instructions.h" 29 #include "llvm/IR/IntrinsicInst.h" 30 #include "llvm/IR/Module.h" 31 #include "llvm/Pass.h" 32 #include "llvm/Support/CommandLine.h" 33 #include "llvm/Support/Debug.h" 34 #include "llvm/Support/FileSystem.h" 35 #include "llvm/Support/Path.h" 36 #include "llvm/Support/raw_ostream.h" 37 #include "llvm/Transforms/GCOVProfiler.h" 38 #include "llvm/Transforms/Instrumentation.h" 39 #include "llvm/Transforms/Utils/ModuleUtils.h" 40 #include <algorithm> 41 #include <memory> 42 #include <string> 43 #include <utility> 44 using namespace llvm; 45 46 #define DEBUG_TYPE "insert-gcov-profiling" 47 48 static cl::opt<std::string> 49 DefaultGCOVVersion("default-gcov-version", cl::init("402*"), cl::Hidden, 50 cl::ValueRequired); 51 static cl::opt<bool> DefaultExitBlockBeforeBody("gcov-exit-block-before-body", 52 cl::init(false), cl::Hidden); 53 54 GCOVOptions GCOVOptions::getDefault() { 55 GCOVOptions Options; 56 Options.EmitNotes = true; 57 Options.EmitData = true; 58 Options.UseCfgChecksum = false; 59 Options.NoRedZone = false; 60 Options.FunctionNamesInData = true; 61 Options.ExitBlockBeforeBody = DefaultExitBlockBeforeBody; 62 63 if (DefaultGCOVVersion.size() != 4) { 64 llvm::report_fatal_error(std::string("Invalid -default-gcov-version: ") + 65 DefaultGCOVVersion); 66 } 67 memcpy(Options.Version, DefaultGCOVVersion.c_str(), 4); 68 return Options; 69 } 70 71 namespace { 72 class GCOVFunction; 73 74 class GCOVProfiler { 75 public: 76 GCOVProfiler() : GCOVProfiler(GCOVOptions::getDefault()) {} 77 GCOVProfiler(const GCOVOptions &Opts) : Options(Opts) { 78 assert((Options.EmitNotes || Options.EmitData) && 79 "GCOVProfiler asked to do nothing?"); 80 ReversedVersion[0] = Options.Version[3]; 81 ReversedVersion[1] = Options.Version[2]; 82 ReversedVersion[2] = Options.Version[1]; 83 ReversedVersion[3] = Options.Version[0]; 84 ReversedVersion[4] = '\0'; 85 } 86 bool runOnModule(Module &M); 87 88 private: 89 // Create the .gcno files for the Module based on DebugInfo. 90 void emitProfileNotes(); 91 92 // Modify the program to track transitions along edges and call into the 93 // profiling runtime to emit .gcda files when run. 94 bool emitProfileArcs(); 95 96 // Get pointers to the functions in the runtime library. 97 Constant *getStartFileFunc(); 98 Constant *getIncrementIndirectCounterFunc(); 99 Constant *getEmitFunctionFunc(); 100 Constant *getEmitArcsFunc(); 101 Constant *getSummaryInfoFunc(); 102 Constant *getEndFileFunc(); 103 104 // Create or retrieve an i32 state value that is used to represent the 105 // pred block number for certain non-trivial edges. 106 GlobalVariable *getEdgeStateValue(); 107 108 // Produce a table of pointers to counters, by predecessor and successor 109 // block number. 110 GlobalVariable *buildEdgeLookupTable(Function *F, GlobalVariable *Counter, 111 const UniqueVector<BasicBlock *> &Preds, 112 const UniqueVector<BasicBlock *> &Succs); 113 114 // Add the function to write out all our counters to the global destructor 115 // list. 116 Function * 117 insertCounterWriteout(ArrayRef<std::pair<GlobalVariable *, MDNode *>>); 118 Function *insertFlush(ArrayRef<std::pair<GlobalVariable *, MDNode *>>); 119 void insertIndirectCounterIncrement(); 120 121 enum class GCovFileType { GCNO, GCDA }; 122 std::string mangleName(const DICompileUnit *CU, GCovFileType FileType); 123 124 GCOVOptions Options; 125 126 // Reversed, NUL-terminated copy of Options.Version. 127 char ReversedVersion[5]; 128 // Checksum, produced by hash of EdgeDestinations 129 SmallVector<uint32_t, 4> FileChecksums; 130 131 Module *M; 132 LLVMContext *Ctx; 133 SmallVector<std::unique_ptr<GCOVFunction>, 16> Funcs; 134 }; 135 136 class GCOVProfilerLegacyPass : public ModulePass { 137 public: 138 static char ID; 139 GCOVProfilerLegacyPass() 140 : GCOVProfilerLegacyPass(GCOVOptions::getDefault()) {} 141 GCOVProfilerLegacyPass(const GCOVOptions &Opts) 142 : ModulePass(ID), Profiler(Opts) { 143 initializeGCOVProfilerLegacyPassPass(*PassRegistry::getPassRegistry()); 144 } 145 StringRef getPassName() const override { return "GCOV Profiler"; } 146 147 bool runOnModule(Module &M) override { return Profiler.runOnModule(M); } 148 149 private: 150 GCOVProfiler Profiler; 151 }; 152 } 153 154 char GCOVProfilerLegacyPass::ID = 0; 155 INITIALIZE_PASS(GCOVProfilerLegacyPass, "insert-gcov-profiling", 156 "Insert instrumentation for GCOV profiling", false, false) 157 158 ModulePass *llvm::createGCOVProfilerPass(const GCOVOptions &Options) { 159 return new GCOVProfilerLegacyPass(Options); 160 } 161 162 static StringRef getFunctionName(const DISubprogram *SP) { 163 if (!SP->getLinkageName().empty()) 164 return SP->getLinkageName(); 165 return SP->getName(); 166 } 167 168 namespace { 169 class GCOVRecord { 170 protected: 171 static const char *const LinesTag; 172 static const char *const FunctionTag; 173 static const char *const BlockTag; 174 static const char *const EdgeTag; 175 176 GCOVRecord() = default; 177 178 void writeBytes(const char *Bytes, int Size) { 179 os->write(Bytes, Size); 180 } 181 182 void write(uint32_t i) { 183 writeBytes(reinterpret_cast<char*>(&i), 4); 184 } 185 186 // Returns the length measured in 4-byte blocks that will be used to 187 // represent this string in a GCOV file 188 static unsigned lengthOfGCOVString(StringRef s) { 189 // A GCOV string is a length, followed by a NUL, then between 0 and 3 NULs 190 // padding out to the next 4-byte word. The length is measured in 4-byte 191 // words including padding, not bytes of actual string. 192 return (s.size() / 4) + 1; 193 } 194 195 void writeGCOVString(StringRef s) { 196 uint32_t Len = lengthOfGCOVString(s); 197 write(Len); 198 writeBytes(s.data(), s.size()); 199 200 // Write 1 to 4 bytes of NUL padding. 201 assert((unsigned)(4 - (s.size() % 4)) > 0); 202 assert((unsigned)(4 - (s.size() % 4)) <= 4); 203 writeBytes("\0\0\0\0", 4 - (s.size() % 4)); 204 } 205 206 raw_ostream *os; 207 }; 208 const char *const GCOVRecord::LinesTag = "\0\0\x45\x01"; 209 const char *const GCOVRecord::FunctionTag = "\0\0\0\1"; 210 const char *const GCOVRecord::BlockTag = "\0\0\x41\x01"; 211 const char *const GCOVRecord::EdgeTag = "\0\0\x43\x01"; 212 213 class GCOVFunction; 214 class GCOVBlock; 215 216 // Constructed only by requesting it from a GCOVBlock, this object stores a 217 // list of line numbers and a single filename, representing lines that belong 218 // to the block. 219 class GCOVLines : public GCOVRecord { 220 public: 221 void addLine(uint32_t Line) { 222 assert(Line != 0 && "Line zero is not a valid real line number."); 223 Lines.push_back(Line); 224 } 225 226 uint32_t length() const { 227 // Here 2 = 1 for string length + 1 for '0' id#. 228 return lengthOfGCOVString(Filename) + 2 + Lines.size(); 229 } 230 231 void writeOut() { 232 write(0); 233 writeGCOVString(Filename); 234 for (int i = 0, e = Lines.size(); i != e; ++i) 235 write(Lines[i]); 236 } 237 238 GCOVLines(StringRef F, raw_ostream *os) 239 : Filename(F) { 240 this->os = os; 241 } 242 243 private: 244 StringRef Filename; 245 SmallVector<uint32_t, 32> Lines; 246 }; 247 248 249 // Represent a basic block in GCOV. Each block has a unique number in the 250 // function, number of lines belonging to each block, and a set of edges to 251 // other blocks. 252 class GCOVBlock : public GCOVRecord { 253 public: 254 GCOVLines &getFile(StringRef Filename) { 255 return LinesByFile.try_emplace(Filename, Filename, os).first->second; 256 } 257 258 void addEdge(GCOVBlock &Successor) { 259 OutEdges.push_back(&Successor); 260 } 261 262 void writeOut() { 263 uint32_t Len = 3; 264 SmallVector<StringMapEntry<GCOVLines> *, 32> SortedLinesByFile; 265 for (auto &I : LinesByFile) { 266 Len += I.second.length(); 267 SortedLinesByFile.push_back(&I); 268 } 269 270 writeBytes(LinesTag, 4); 271 write(Len); 272 write(Number); 273 274 std::sort( 275 SortedLinesByFile.begin(), SortedLinesByFile.end(), 276 [](StringMapEntry<GCOVLines> *LHS, StringMapEntry<GCOVLines> *RHS) { 277 return LHS->getKey() < RHS->getKey(); 278 }); 279 for (auto &I : SortedLinesByFile) 280 I->getValue().writeOut(); 281 write(0); 282 write(0); 283 } 284 285 GCOVBlock(const GCOVBlock &RHS) : GCOVRecord(RHS), Number(RHS.Number) { 286 // Only allow copy before edges and lines have been added. After that, 287 // there are inter-block pointers (eg: edges) that won't take kindly to 288 // blocks being copied or moved around. 289 assert(LinesByFile.empty()); 290 assert(OutEdges.empty()); 291 } 292 293 private: 294 friend class GCOVFunction; 295 296 GCOVBlock(uint32_t Number, raw_ostream *os) 297 : Number(Number) { 298 this->os = os; 299 } 300 301 uint32_t Number; 302 StringMap<GCOVLines> LinesByFile; 303 SmallVector<GCOVBlock *, 4> OutEdges; 304 }; 305 306 // A function has a unique identifier, a checksum (we leave as zero) and a 307 // set of blocks and a map of edges between blocks. This is the only GCOV 308 // object users can construct, the blocks and lines will be rooted here. 309 class GCOVFunction : public GCOVRecord { 310 public: 311 GCOVFunction(const DISubprogram *SP, Function *F, raw_ostream *os, 312 uint32_t Ident, bool UseCfgChecksum, bool ExitBlockBeforeBody) 313 : SP(SP), Ident(Ident), UseCfgChecksum(UseCfgChecksum), CfgChecksum(0), 314 ReturnBlock(1, os) { 315 this->os = os; 316 317 DEBUG(dbgs() << "Function: " << getFunctionName(SP) << "\n"); 318 319 uint32_t i = 0; 320 for (auto &BB : *F) { 321 // Skip index 1 if it's assigned to the ReturnBlock. 322 if (i == 1 && ExitBlockBeforeBody) 323 ++i; 324 Blocks.insert(std::make_pair(&BB, GCOVBlock(i++, os))); 325 } 326 if (!ExitBlockBeforeBody) 327 ReturnBlock.Number = i; 328 329 std::string FunctionNameAndLine; 330 raw_string_ostream FNLOS(FunctionNameAndLine); 331 FNLOS << getFunctionName(SP) << SP->getLine(); 332 FNLOS.flush(); 333 FuncChecksum = hash_value(FunctionNameAndLine); 334 } 335 336 GCOVBlock &getBlock(BasicBlock *BB) { 337 return Blocks.find(BB)->second; 338 } 339 340 GCOVBlock &getReturnBlock() { 341 return ReturnBlock; 342 } 343 344 std::string getEdgeDestinations() { 345 std::string EdgeDestinations; 346 raw_string_ostream EDOS(EdgeDestinations); 347 Function *F = Blocks.begin()->first->getParent(); 348 for (BasicBlock &I : *F) { 349 GCOVBlock &Block = getBlock(&I); 350 for (int i = 0, e = Block.OutEdges.size(); i != e; ++i) 351 EDOS << Block.OutEdges[i]->Number; 352 } 353 return EdgeDestinations; 354 } 355 356 uint32_t getFuncChecksum() { 357 return FuncChecksum; 358 } 359 360 void setCfgChecksum(uint32_t Checksum) { 361 CfgChecksum = Checksum; 362 } 363 364 void writeOut() { 365 writeBytes(FunctionTag, 4); 366 uint32_t BlockLen = 1 + 1 + 1 + lengthOfGCOVString(getFunctionName(SP)) + 367 1 + lengthOfGCOVString(SP->getFilename()) + 1; 368 if (UseCfgChecksum) 369 ++BlockLen; 370 write(BlockLen); 371 write(Ident); 372 write(FuncChecksum); 373 if (UseCfgChecksum) 374 write(CfgChecksum); 375 writeGCOVString(getFunctionName(SP)); 376 writeGCOVString(SP->getFilename()); 377 write(SP->getLine()); 378 379 // Emit count of blocks. 380 writeBytes(BlockTag, 4); 381 write(Blocks.size() + 1); 382 for (int i = 0, e = Blocks.size() + 1; i != e; ++i) { 383 write(0); // No flags on our blocks. 384 } 385 DEBUG(dbgs() << Blocks.size() << " blocks.\n"); 386 387 // Emit edges between blocks. 388 if (Blocks.empty()) return; 389 Function *F = Blocks.begin()->first->getParent(); 390 for (BasicBlock &I : *F) { 391 GCOVBlock &Block = getBlock(&I); 392 if (Block.OutEdges.empty()) continue; 393 394 writeBytes(EdgeTag, 4); 395 write(Block.OutEdges.size() * 2 + 1); 396 write(Block.Number); 397 for (int i = 0, e = Block.OutEdges.size(); i != e; ++i) { 398 DEBUG(dbgs() << Block.Number << " -> " << Block.OutEdges[i]->Number 399 << "\n"); 400 write(Block.OutEdges[i]->Number); 401 write(0); // no flags 402 } 403 } 404 405 // Emit lines for each block. 406 for (BasicBlock &I : *F) 407 getBlock(&I).writeOut(); 408 } 409 410 private: 411 const DISubprogram *SP; 412 uint32_t Ident; 413 uint32_t FuncChecksum; 414 bool UseCfgChecksum; 415 uint32_t CfgChecksum; 416 DenseMap<BasicBlock *, GCOVBlock> Blocks; 417 GCOVBlock ReturnBlock; 418 }; 419 } 420 421 std::string GCOVProfiler::mangleName(const DICompileUnit *CU, 422 GCovFileType OutputType) { 423 bool Notes = OutputType == GCovFileType::GCNO; 424 425 if (NamedMDNode *GCov = M->getNamedMetadata("llvm.gcov")) { 426 for (int i = 0, e = GCov->getNumOperands(); i != e; ++i) { 427 MDNode *N = GCov->getOperand(i); 428 bool ThreeElement = N->getNumOperands() == 3; 429 if (!ThreeElement && N->getNumOperands() != 2) 430 continue; 431 if (dyn_cast<MDNode>(N->getOperand(ThreeElement ? 2 : 1)) != CU) 432 continue; 433 434 if (ThreeElement) { 435 // These nodes have no mangling to apply, it's stored mangled in the 436 // bitcode. 437 MDString *NotesFile = dyn_cast<MDString>(N->getOperand(0)); 438 MDString *DataFile = dyn_cast<MDString>(N->getOperand(1)); 439 if (!NotesFile || !DataFile) 440 continue; 441 return Notes ? NotesFile->getString() : DataFile->getString(); 442 } 443 444 MDString *GCovFile = dyn_cast<MDString>(N->getOperand(0)); 445 if (!GCovFile) 446 continue; 447 448 SmallString<128> Filename = GCovFile->getString(); 449 sys::path::replace_extension(Filename, Notes ? "gcno" : "gcda"); 450 return Filename.str(); 451 } 452 } 453 454 SmallString<128> Filename = CU->getFilename(); 455 sys::path::replace_extension(Filename, Notes ? "gcno" : "gcda"); 456 StringRef FName = sys::path::filename(Filename); 457 SmallString<128> CurPath; 458 if (sys::fs::current_path(CurPath)) return FName; 459 sys::path::append(CurPath, FName); 460 return CurPath.str(); 461 } 462 463 bool GCOVProfiler::runOnModule(Module &M) { 464 this->M = &M; 465 Ctx = &M.getContext(); 466 467 if (Options.EmitNotes) emitProfileNotes(); 468 if (Options.EmitData) return emitProfileArcs(); 469 return false; 470 } 471 472 PreservedAnalyses GCOVProfilerPass::run(Module &M, 473 ModuleAnalysisManager &AM) { 474 475 GCOVProfiler Profiler(GCOVOpts); 476 477 if (!Profiler.runOnModule(M)) 478 return PreservedAnalyses::all(); 479 480 return PreservedAnalyses::none(); 481 } 482 483 static bool functionHasLines(Function &F) { 484 // Check whether this function actually has any source lines. Not only 485 // do these waste space, they also can crash gcov. 486 for (auto &BB : F) { 487 for (auto &I : BB) { 488 // Debug intrinsic locations correspond to the location of the 489 // declaration, not necessarily any statements or expressions. 490 if (isa<DbgInfoIntrinsic>(&I)) continue; 491 492 const DebugLoc &Loc = I.getDebugLoc(); 493 if (!Loc) 494 continue; 495 496 // Artificial lines such as calls to the global constructors. 497 if (Loc.getLine() == 0) continue; 498 499 return true; 500 } 501 } 502 return false; 503 } 504 505 static bool shouldKeepInEntry(BasicBlock::iterator It) { 506 if (isa<AllocaInst>(*It)) return true; 507 if (isa<DbgInfoIntrinsic>(*It)) return true; 508 if (auto *II = dyn_cast<IntrinsicInst>(It)) { 509 if (II->getIntrinsicID() == llvm::Intrinsic::localescape) return true; 510 } 511 512 return false; 513 } 514 515 void GCOVProfiler::emitProfileNotes() { 516 NamedMDNode *CU_Nodes = M->getNamedMetadata("llvm.dbg.cu"); 517 if (!CU_Nodes) return; 518 519 for (unsigned i = 0, e = CU_Nodes->getNumOperands(); i != e; ++i) { 520 // Each compile unit gets its own .gcno file. This means that whether we run 521 // this pass over the original .o's as they're produced, or run it after 522 // LTO, we'll generate the same .gcno files. 523 524 auto *CU = cast<DICompileUnit>(CU_Nodes->getOperand(i)); 525 526 // Skip module skeleton (and module) CUs. 527 if (CU->getDWOId()) 528 continue; 529 530 std::error_code EC; 531 raw_fd_ostream out(mangleName(CU, GCovFileType::GCNO), EC, sys::fs::F_None); 532 if (EC) { 533 Ctx->emitError(Twine("failed to open coverage notes file for writing: ") + 534 EC.message()); 535 continue; 536 } 537 538 std::string EdgeDestinations; 539 540 unsigned FunctionIdent = 0; 541 for (auto &F : M->functions()) { 542 DISubprogram *SP = F.getSubprogram(); 543 if (!SP) continue; 544 if (!functionHasLines(F)) continue; 545 546 // gcov expects every function to start with an entry block that has a 547 // single successor, so split the entry block to make sure of that. 548 BasicBlock &EntryBlock = F.getEntryBlock(); 549 BasicBlock::iterator It = EntryBlock.begin(); 550 while (shouldKeepInEntry(It)) 551 ++It; 552 EntryBlock.splitBasicBlock(It); 553 554 Funcs.push_back(make_unique<GCOVFunction>(SP, &F, &out, FunctionIdent++, 555 Options.UseCfgChecksum, 556 Options.ExitBlockBeforeBody)); 557 GCOVFunction &Func = *Funcs.back(); 558 559 for (auto &BB : F) { 560 GCOVBlock &Block = Func.getBlock(&BB); 561 TerminatorInst *TI = BB.getTerminator(); 562 if (int successors = TI->getNumSuccessors()) { 563 for (int i = 0; i != successors; ++i) { 564 Block.addEdge(Func.getBlock(TI->getSuccessor(i))); 565 } 566 } else if (isa<ReturnInst>(TI)) { 567 Block.addEdge(Func.getReturnBlock()); 568 } 569 570 uint32_t Line = 0; 571 for (auto &I : BB) { 572 // Debug intrinsic locations correspond to the location of the 573 // declaration, not necessarily any statements or expressions. 574 if (isa<DbgInfoIntrinsic>(&I)) continue; 575 576 const DebugLoc &Loc = I.getDebugLoc(); 577 if (!Loc) 578 continue; 579 580 // Artificial lines such as calls to the global constructors. 581 if (Loc.getLine() == 0) continue; 582 583 if (Line == Loc.getLine()) continue; 584 Line = Loc.getLine(); 585 if (SP != getDISubprogram(Loc.getScope())) 586 continue; 587 588 GCOVLines &Lines = Block.getFile(SP->getFilename()); 589 Lines.addLine(Loc.getLine()); 590 } 591 } 592 EdgeDestinations += Func.getEdgeDestinations(); 593 } 594 595 FileChecksums.push_back(hash_value(EdgeDestinations)); 596 out.write("oncg", 4); 597 out.write(ReversedVersion, 4); 598 out.write(reinterpret_cast<char*>(&FileChecksums.back()), 4); 599 600 for (auto &Func : Funcs) { 601 Func->setCfgChecksum(FileChecksums.back()); 602 Func->writeOut(); 603 } 604 605 out.write("\0\0\0\0\0\0\0\0", 8); // EOF 606 out.close(); 607 } 608 } 609 610 bool GCOVProfiler::emitProfileArcs() { 611 NamedMDNode *CU_Nodes = M->getNamedMetadata("llvm.dbg.cu"); 612 if (!CU_Nodes) return false; 613 614 bool Result = false; 615 bool InsertIndCounterIncrCode = false; 616 for (unsigned i = 0, e = CU_Nodes->getNumOperands(); i != e; ++i) { 617 SmallVector<std::pair<GlobalVariable *, MDNode *>, 8> CountersBySP; 618 for (auto &F : M->functions()) { 619 DISubprogram *SP = F.getSubprogram(); 620 if (!SP) continue; 621 if (!functionHasLines(F)) continue; 622 if (!Result) Result = true; 623 unsigned Edges = 0; 624 for (auto &BB : F) { 625 TerminatorInst *TI = BB.getTerminator(); 626 if (isa<ReturnInst>(TI)) 627 ++Edges; 628 else 629 Edges += TI->getNumSuccessors(); 630 } 631 632 ArrayType *CounterTy = 633 ArrayType::get(Type::getInt64Ty(*Ctx), Edges); 634 GlobalVariable *Counters = 635 new GlobalVariable(*M, CounterTy, false, 636 GlobalValue::InternalLinkage, 637 Constant::getNullValue(CounterTy), 638 "__llvm_gcov_ctr"); 639 CountersBySP.push_back(std::make_pair(Counters, SP)); 640 641 UniqueVector<BasicBlock *> ComplexEdgePreds; 642 UniqueVector<BasicBlock *> ComplexEdgeSuccs; 643 644 unsigned Edge = 0; 645 for (auto &BB : F) { 646 TerminatorInst *TI = BB.getTerminator(); 647 int Successors = isa<ReturnInst>(TI) ? 1 : TI->getNumSuccessors(); 648 if (Successors) { 649 if (Successors == 1) { 650 IRBuilder<> Builder(&*BB.getFirstInsertionPt()); 651 Value *Counter = Builder.CreateConstInBoundsGEP2_64(Counters, 0, 652 Edge); 653 Value *Count = Builder.CreateLoad(Counter); 654 Count = Builder.CreateAdd(Count, Builder.getInt64(1)); 655 Builder.CreateStore(Count, Counter); 656 } else if (BranchInst *BI = dyn_cast<BranchInst>(TI)) { 657 IRBuilder<> Builder(BI); 658 Value *Sel = Builder.CreateSelect(BI->getCondition(), 659 Builder.getInt64(Edge), 660 Builder.getInt64(Edge + 1)); 661 Value *Counter = Builder.CreateInBoundsGEP( 662 Counters->getValueType(), Counters, {Builder.getInt64(0), Sel}); 663 Value *Count = Builder.CreateLoad(Counter); 664 Count = Builder.CreateAdd(Count, Builder.getInt64(1)); 665 Builder.CreateStore(Count, Counter); 666 } else { 667 ComplexEdgePreds.insert(&BB); 668 for (int i = 0; i != Successors; ++i) 669 ComplexEdgeSuccs.insert(TI->getSuccessor(i)); 670 } 671 672 Edge += Successors; 673 } 674 } 675 676 if (!ComplexEdgePreds.empty()) { 677 GlobalVariable *EdgeTable = 678 buildEdgeLookupTable(&F, Counters, 679 ComplexEdgePreds, ComplexEdgeSuccs); 680 GlobalVariable *EdgeState = getEdgeStateValue(); 681 682 for (int i = 0, e = ComplexEdgePreds.size(); i != e; ++i) { 683 IRBuilder<> Builder(&*ComplexEdgePreds[i + 1]->getFirstInsertionPt()); 684 Builder.CreateStore(Builder.getInt32(i), EdgeState); 685 } 686 687 for (int i = 0, e = ComplexEdgeSuccs.size(); i != e; ++i) { 688 // Call runtime to perform increment. 689 IRBuilder<> Builder(&*ComplexEdgeSuccs[i + 1]->getFirstInsertionPt()); 690 Value *CounterPtrArray = 691 Builder.CreateConstInBoundsGEP2_64(EdgeTable, 0, 692 i * ComplexEdgePreds.size()); 693 694 // Build code to increment the counter. 695 InsertIndCounterIncrCode = true; 696 Builder.CreateCall(getIncrementIndirectCounterFunc(), 697 {EdgeState, CounterPtrArray}); 698 } 699 } 700 } 701 702 Function *WriteoutF = insertCounterWriteout(CountersBySP); 703 Function *FlushF = insertFlush(CountersBySP); 704 705 // Create a small bit of code that registers the "__llvm_gcov_writeout" to 706 // be executed at exit and the "__llvm_gcov_flush" function to be executed 707 // when "__gcov_flush" is called. 708 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), false); 709 Function *F = Function::Create(FTy, GlobalValue::InternalLinkage, 710 "__llvm_gcov_init", M); 711 F->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 712 F->setLinkage(GlobalValue::InternalLinkage); 713 F->addFnAttr(Attribute::NoInline); 714 if (Options.NoRedZone) 715 F->addFnAttr(Attribute::NoRedZone); 716 717 BasicBlock *BB = BasicBlock::Create(*Ctx, "entry", F); 718 IRBuilder<> Builder(BB); 719 720 FTy = FunctionType::get(Type::getVoidTy(*Ctx), false); 721 Type *Params[] = { 722 PointerType::get(FTy, 0), 723 PointerType::get(FTy, 0) 724 }; 725 FTy = FunctionType::get(Builder.getVoidTy(), Params, false); 726 727 // Initialize the environment and register the local writeout and flush 728 // functions. 729 Constant *GCOVInit = M->getOrInsertFunction("llvm_gcov_init", FTy); 730 Builder.CreateCall(GCOVInit, {WriteoutF, FlushF}); 731 Builder.CreateRetVoid(); 732 733 appendToGlobalCtors(*M, F, 0); 734 } 735 736 if (InsertIndCounterIncrCode) 737 insertIndirectCounterIncrement(); 738 739 return Result; 740 } 741 742 // All edges with successors that aren't branches are "complex", because it 743 // requires complex logic to pick which counter to update. 744 GlobalVariable *GCOVProfiler::buildEdgeLookupTable( 745 Function *F, 746 GlobalVariable *Counters, 747 const UniqueVector<BasicBlock *> &Preds, 748 const UniqueVector<BasicBlock *> &Succs) { 749 // TODO: support invoke, threads. We rely on the fact that nothing can modify 750 // the whole-Module pred edge# between the time we set it and the time we next 751 // read it. Threads and invoke make this untrue. 752 753 // emit [(succs * preds) x i64*], logically [succ x [pred x i64*]]. 754 size_t TableSize = Succs.size() * Preds.size(); 755 Type *Int64PtrTy = Type::getInt64PtrTy(*Ctx); 756 ArrayType *EdgeTableTy = ArrayType::get(Int64PtrTy, TableSize); 757 758 std::unique_ptr<Constant * []> EdgeTable(new Constant *[TableSize]); 759 Constant *NullValue = Constant::getNullValue(Int64PtrTy); 760 for (size_t i = 0; i != TableSize; ++i) 761 EdgeTable[i] = NullValue; 762 763 unsigned Edge = 0; 764 for (BasicBlock &BB : *F) { 765 TerminatorInst *TI = BB.getTerminator(); 766 int Successors = isa<ReturnInst>(TI) ? 1 : TI->getNumSuccessors(); 767 if (Successors > 1 && !isa<BranchInst>(TI) && !isa<ReturnInst>(TI)) { 768 for (int i = 0; i != Successors; ++i) { 769 BasicBlock *Succ = TI->getSuccessor(i); 770 IRBuilder<> Builder(Succ); 771 Value *Counter = Builder.CreateConstInBoundsGEP2_64(Counters, 0, 772 Edge + i); 773 EdgeTable[((Succs.idFor(Succ) - 1) * Preds.size()) + 774 (Preds.idFor(&BB) - 1)] = cast<Constant>(Counter); 775 } 776 } 777 Edge += Successors; 778 } 779 780 GlobalVariable *EdgeTableGV = 781 new GlobalVariable( 782 *M, EdgeTableTy, true, GlobalValue::InternalLinkage, 783 ConstantArray::get(EdgeTableTy, 784 makeArrayRef(&EdgeTable[0],TableSize)), 785 "__llvm_gcda_edge_table"); 786 EdgeTableGV->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 787 return EdgeTableGV; 788 } 789 790 Constant *GCOVProfiler::getStartFileFunc() { 791 Type *Args[] = { 792 Type::getInt8PtrTy(*Ctx), // const char *orig_filename 793 Type::getInt8PtrTy(*Ctx), // const char version[4] 794 Type::getInt32Ty(*Ctx), // uint32_t checksum 795 }; 796 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), Args, false); 797 return M->getOrInsertFunction("llvm_gcda_start_file", FTy); 798 } 799 800 Constant *GCOVProfiler::getIncrementIndirectCounterFunc() { 801 Type *Int32Ty = Type::getInt32Ty(*Ctx); 802 Type *Int64Ty = Type::getInt64Ty(*Ctx); 803 Type *Args[] = { 804 Int32Ty->getPointerTo(), // uint32_t *predecessor 805 Int64Ty->getPointerTo()->getPointerTo() // uint64_t **counters 806 }; 807 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), Args, false); 808 return M->getOrInsertFunction("__llvm_gcov_indirect_counter_increment", FTy); 809 } 810 811 Constant *GCOVProfiler::getEmitFunctionFunc() { 812 Type *Args[] = { 813 Type::getInt32Ty(*Ctx), // uint32_t ident 814 Type::getInt8PtrTy(*Ctx), // const char *function_name 815 Type::getInt32Ty(*Ctx), // uint32_t func_checksum 816 Type::getInt8Ty(*Ctx), // uint8_t use_extra_checksum 817 Type::getInt32Ty(*Ctx), // uint32_t cfg_checksum 818 }; 819 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), Args, false); 820 return M->getOrInsertFunction("llvm_gcda_emit_function", FTy); 821 } 822 823 Constant *GCOVProfiler::getEmitArcsFunc() { 824 Type *Args[] = { 825 Type::getInt32Ty(*Ctx), // uint32_t num_counters 826 Type::getInt64PtrTy(*Ctx), // uint64_t *counters 827 }; 828 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), Args, false); 829 return M->getOrInsertFunction("llvm_gcda_emit_arcs", FTy); 830 } 831 832 Constant *GCOVProfiler::getSummaryInfoFunc() { 833 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), false); 834 return M->getOrInsertFunction("llvm_gcda_summary_info", FTy); 835 } 836 837 Constant *GCOVProfiler::getEndFileFunc() { 838 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), false); 839 return M->getOrInsertFunction("llvm_gcda_end_file", FTy); 840 } 841 842 GlobalVariable *GCOVProfiler::getEdgeStateValue() { 843 GlobalVariable *GV = M->getGlobalVariable("__llvm_gcov_global_state_pred"); 844 if (!GV) { 845 GV = new GlobalVariable(*M, Type::getInt32Ty(*Ctx), false, 846 GlobalValue::InternalLinkage, 847 ConstantInt::get(Type::getInt32Ty(*Ctx), 848 0xffffffff), 849 "__llvm_gcov_global_state_pred"); 850 GV->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 851 } 852 return GV; 853 } 854 855 Function *GCOVProfiler::insertCounterWriteout( 856 ArrayRef<std::pair<GlobalVariable *, MDNode *> > CountersBySP) { 857 FunctionType *WriteoutFTy = FunctionType::get(Type::getVoidTy(*Ctx), false); 858 Function *WriteoutF = M->getFunction("__llvm_gcov_writeout"); 859 if (!WriteoutF) 860 WriteoutF = Function::Create(WriteoutFTy, GlobalValue::InternalLinkage, 861 "__llvm_gcov_writeout", M); 862 WriteoutF->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 863 WriteoutF->addFnAttr(Attribute::NoInline); 864 if (Options.NoRedZone) 865 WriteoutF->addFnAttr(Attribute::NoRedZone); 866 867 BasicBlock *BB = BasicBlock::Create(*Ctx, "entry", WriteoutF); 868 IRBuilder<> Builder(BB); 869 870 Constant *StartFile = getStartFileFunc(); 871 Constant *EmitFunction = getEmitFunctionFunc(); 872 Constant *EmitArcs = getEmitArcsFunc(); 873 Constant *SummaryInfo = getSummaryInfoFunc(); 874 Constant *EndFile = getEndFileFunc(); 875 876 NamedMDNode *CU_Nodes = M->getNamedMetadata("llvm.dbg.cu"); 877 if (CU_Nodes) { 878 for (unsigned i = 0, e = CU_Nodes->getNumOperands(); i != e; ++i) { 879 auto *CU = cast<DICompileUnit>(CU_Nodes->getOperand(i)); 880 881 // Skip module skeleton (and module) CUs. 882 if (CU->getDWOId()) 883 continue; 884 885 std::string FilenameGcda = mangleName(CU, GCovFileType::GCDA); 886 uint32_t CfgChecksum = FileChecksums.empty() ? 0 : FileChecksums[i]; 887 Builder.CreateCall(StartFile, 888 {Builder.CreateGlobalStringPtr(FilenameGcda), 889 Builder.CreateGlobalStringPtr(ReversedVersion), 890 Builder.getInt32(CfgChecksum)}); 891 for (unsigned j = 0, e = CountersBySP.size(); j != e; ++j) { 892 auto *SP = cast_or_null<DISubprogram>(CountersBySP[j].second); 893 uint32_t FuncChecksum = Funcs.empty() ? 0 : Funcs[j]->getFuncChecksum(); 894 Builder.CreateCall( 895 EmitFunction, 896 {Builder.getInt32(j), 897 Options.FunctionNamesInData 898 ? Builder.CreateGlobalStringPtr(getFunctionName(SP)) 899 : Constant::getNullValue(Builder.getInt8PtrTy()), 900 Builder.getInt32(FuncChecksum), 901 Builder.getInt8(Options.UseCfgChecksum), 902 Builder.getInt32(CfgChecksum)}); 903 904 GlobalVariable *GV = CountersBySP[j].first; 905 unsigned Arcs = 906 cast<ArrayType>(GV->getValueType())->getNumElements(); 907 Builder.CreateCall(EmitArcs, {Builder.getInt32(Arcs), 908 Builder.CreateConstGEP2_64(GV, 0, 0)}); 909 } 910 Builder.CreateCall(SummaryInfo, {}); 911 Builder.CreateCall(EndFile, {}); 912 } 913 } 914 915 Builder.CreateRetVoid(); 916 return WriteoutF; 917 } 918 919 void GCOVProfiler::insertIndirectCounterIncrement() { 920 Function *Fn = 921 cast<Function>(GCOVProfiler::getIncrementIndirectCounterFunc()); 922 Fn->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 923 Fn->setLinkage(GlobalValue::InternalLinkage); 924 Fn->addFnAttr(Attribute::NoInline); 925 if (Options.NoRedZone) 926 Fn->addFnAttr(Attribute::NoRedZone); 927 928 // Create basic blocks for function. 929 BasicBlock *BB = BasicBlock::Create(*Ctx, "entry", Fn); 930 IRBuilder<> Builder(BB); 931 932 BasicBlock *PredNotNegOne = BasicBlock::Create(*Ctx, "", Fn); 933 BasicBlock *CounterEnd = BasicBlock::Create(*Ctx, "", Fn); 934 BasicBlock *Exit = BasicBlock::Create(*Ctx, "exit", Fn); 935 936 // uint32_t pred = *predecessor; 937 // if (pred == 0xffffffff) return; 938 Argument *Arg = &*Fn->arg_begin(); 939 Arg->setName("predecessor"); 940 Value *Pred = Builder.CreateLoad(Arg, "pred"); 941 Value *Cond = Builder.CreateICmpEQ(Pred, Builder.getInt32(0xffffffff)); 942 BranchInst::Create(Exit, PredNotNegOne, Cond, BB); 943 944 Builder.SetInsertPoint(PredNotNegOne); 945 946 // uint64_t *counter = counters[pred]; 947 // if (!counter) return; 948 Value *ZExtPred = Builder.CreateZExt(Pred, Builder.getInt64Ty()); 949 Arg = &*std::next(Fn->arg_begin()); 950 Arg->setName("counters"); 951 Value *GEP = Builder.CreateGEP(Type::getInt64PtrTy(*Ctx), Arg, ZExtPred); 952 Value *Counter = Builder.CreateLoad(GEP, "counter"); 953 Cond = Builder.CreateICmpEQ(Counter, 954 Constant::getNullValue( 955 Builder.getInt64Ty()->getPointerTo())); 956 Builder.CreateCondBr(Cond, Exit, CounterEnd); 957 958 // ++*counter; 959 Builder.SetInsertPoint(CounterEnd); 960 Value *Add = Builder.CreateAdd(Builder.CreateLoad(Counter), 961 Builder.getInt64(1)); 962 Builder.CreateStore(Add, Counter); 963 Builder.CreateBr(Exit); 964 965 // Fill in the exit block. 966 Builder.SetInsertPoint(Exit); 967 Builder.CreateRetVoid(); 968 } 969 970 Function *GCOVProfiler:: 971 insertFlush(ArrayRef<std::pair<GlobalVariable*, MDNode*> > CountersBySP) { 972 FunctionType *FTy = FunctionType::get(Type::getVoidTy(*Ctx), false); 973 Function *FlushF = M->getFunction("__llvm_gcov_flush"); 974 if (!FlushF) 975 FlushF = Function::Create(FTy, GlobalValue::InternalLinkage, 976 "__llvm_gcov_flush", M); 977 else 978 FlushF->setLinkage(GlobalValue::InternalLinkage); 979 FlushF->setUnnamedAddr(GlobalValue::UnnamedAddr::Global); 980 FlushF->addFnAttr(Attribute::NoInline); 981 if (Options.NoRedZone) 982 FlushF->addFnAttr(Attribute::NoRedZone); 983 984 BasicBlock *Entry = BasicBlock::Create(*Ctx, "entry", FlushF); 985 986 // Write out the current counters. 987 Constant *WriteoutF = M->getFunction("__llvm_gcov_writeout"); 988 assert(WriteoutF && "Need to create the writeout function first!"); 989 990 IRBuilder<> Builder(Entry); 991 Builder.CreateCall(WriteoutF, {}); 992 993 // Zero out the counters. 994 for (const auto &I : CountersBySP) { 995 GlobalVariable *GV = I.first; 996 Constant *Null = Constant::getNullValue(GV->getValueType()); 997 Builder.CreateStore(Null, GV); 998 } 999 1000 Type *RetTy = FlushF->getReturnType(); 1001 if (RetTy == Type::getVoidTy(*Ctx)) 1002 Builder.CreateRetVoid(); 1003 else if (RetTy->isIntegerTy()) 1004 // Used if __llvm_gcov_flush was implicitly declared. 1005 Builder.CreateRet(ConstantInt::get(RetTy, 0)); 1006 else 1007 report_fatal_error("invalid return type for __llvm_gcov_flush"); 1008 1009 return FlushF; 1010 } 1011