1 //===-- InstrProfiling.cpp - Frontend instrumentation based 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 lowers instrprof_* intrinsics emitted by a frontend for profiling. 11 // It also builds the data structures and initialization code needed for 12 // updating execution counts and emitting the profile at runtime. 13 // 14 //===----------------------------------------------------------------------===// 15 16 #include "llvm/ADT/Triple.h" 17 #include "llvm/IR/IRBuilder.h" 18 #include "llvm/IR/IntrinsicInst.h" 19 #include "llvm/IR/Module.h" 20 #include "llvm/ProfileData/InstrProf.h" 21 #include "llvm/Transforms/Instrumentation.h" 22 #include "llvm/Transforms/Utils/ModuleUtils.h" 23 24 using namespace llvm; 25 26 #define DEBUG_TYPE "instrprof" 27 28 namespace { 29 30 class InstrProfiling : public ModulePass { 31 public: 32 static char ID; 33 34 InstrProfiling() : ModulePass(ID) {} 35 36 InstrProfiling(const InstrProfOptions &Options) 37 : ModulePass(ID), Options(Options) {} 38 39 const char *getPassName() const override { 40 return "Frontend instrumentation-based coverage lowering"; 41 } 42 43 bool runOnModule(Module &M) override; 44 45 void getAnalysisUsage(AnalysisUsage &AU) const override { 46 AU.setPreservesCFG(); 47 } 48 49 private: 50 InstrProfOptions Options; 51 Module *M; 52 typedef struct PerFunctionProfileData { 53 uint32_t NumValueSites[IPVK_Last+1]; 54 GlobalVariable* RegionCounters; 55 GlobalVariable* DataVar; 56 PerFunctionProfileData() : RegionCounters(nullptr), DataVar(nullptr) { 57 memset(NumValueSites, 0, sizeof(uint32_t) * (IPVK_Last+1)); 58 } 59 } PerFunctionProfileData; 60 DenseMap<GlobalVariable *, PerFunctionProfileData> ProfileDataMap; 61 std::vector<Value *> UsedVars; 62 63 bool isMachO() const { 64 return Triple(M->getTargetTriple()).isOSBinFormatMachO(); 65 } 66 67 /// Get the section name for the counter variables. 68 StringRef getCountersSection() const { 69 return getInstrProfCountersSectionName(isMachO()); 70 } 71 72 /// Get the section name for the name variables. 73 StringRef getNameSection() const { 74 return getInstrProfNameSectionName(isMachO()); 75 } 76 77 /// Get the section name for the profile data variables. 78 StringRef getDataSection() const { 79 return getInstrProfDataSectionName(isMachO()); 80 } 81 82 /// Get the section name for the coverage mapping data. 83 StringRef getCoverageSection() const { 84 return getInstrProfCoverageSectionName(isMachO()); 85 } 86 87 /// Count the number of instrumented value sites for the function. 88 void computeNumValueSiteCounts(InstrProfValueProfileInst *Ins); 89 90 /// Replace instrprof_value_profile with a call to runtime library. 91 void lowerValueProfileInst(InstrProfValueProfileInst *Ins); 92 93 /// Replace instrprof_increment with an increment of the appropriate value. 94 void lowerIncrement(InstrProfIncrementInst *Inc); 95 96 /// Set up the section and uses for coverage data and its references. 97 void lowerCoverageData(GlobalVariable *CoverageData); 98 99 /// Get the region counters for an increment, creating them if necessary. 100 /// 101 /// If the counter array doesn't yet exist, the profile data variables 102 /// referring to them will also be created. 103 GlobalVariable *getOrCreateRegionCounters(InstrProfIncrementInst *Inc); 104 105 /// Emit runtime registration functions for each profile data variable. 106 void emitRegistration(); 107 108 /// Emit the necessary plumbing to pull in the runtime initialization. 109 void emitRuntimeHook(); 110 111 /// Add uses of our data variables and runtime hook. 112 void emitUses(); 113 114 /// Create a static initializer for our data, on platforms that need it, 115 /// and for any profile output file that was specified. 116 void emitInitialization(); 117 }; 118 119 } // anonymous namespace 120 121 char InstrProfiling::ID = 0; 122 INITIALIZE_PASS(InstrProfiling, "instrprof", 123 "Frontend instrumentation-based coverage lowering.", false, 124 false) 125 126 ModulePass *llvm::createInstrProfilingPass(const InstrProfOptions &Options) { 127 return new InstrProfiling(Options); 128 } 129 130 bool InstrProfiling::runOnModule(Module &M) { 131 bool MadeChange = false; 132 133 this->M = &M; 134 ProfileDataMap.clear(); 135 UsedVars.clear(); 136 137 // We did not know how many value sites there would be inside 138 // the instrumented function. This is counting the number of instrumented 139 // target value sites to enter it as field in the profile data variable. 140 for (Function &F : M) 141 for (BasicBlock &BB : F) 142 for (auto I = BB.begin(), E = BB.end(); I != E;) 143 if (auto *Ind = dyn_cast<InstrProfValueProfileInst>(I++)) 144 computeNumValueSiteCounts(Ind); 145 146 for (Function &F : M) 147 for (BasicBlock &BB : F) 148 for (auto I = BB.begin(), E = BB.end(); I != E;) { 149 auto Instr = I++; 150 if (auto *Inc = dyn_cast<InstrProfIncrementInst>(Instr)) { 151 lowerIncrement(Inc); 152 MadeChange = true; 153 } else if (auto *Ind = dyn_cast<InstrProfValueProfileInst>(Instr)) { 154 lowerValueProfileInst(Ind); 155 MadeChange = true; 156 } 157 } 158 159 if (GlobalVariable *Coverage = 160 M.getNamedGlobal(getCoverageMappingVarName())) { 161 lowerCoverageData(Coverage); 162 MadeChange = true; 163 } 164 165 if (!MadeChange) 166 return false; 167 168 emitRegistration(); 169 emitRuntimeHook(); 170 emitUses(); 171 emitInitialization(); 172 return true; 173 } 174 175 static Constant *getOrInsertValueProfilingCall(Module &M) { 176 LLVMContext &Ctx = M.getContext(); 177 auto *ReturnTy = Type::getVoidTy(M.getContext()); 178 Type *ParamTypes[] = { 179 #define VALUE_PROF_FUNC_PARAM(ParamType, ParamName, ParamLLVMType) ParamLLVMType 180 #include "llvm/ProfileData/InstrProfData.inc" 181 }; 182 auto *ValueProfilingCallTy = 183 FunctionType::get(ReturnTy, makeArrayRef(ParamTypes), false); 184 return M.getOrInsertFunction(getInstrProfValueProfFuncName(), 185 ValueProfilingCallTy); 186 } 187 188 void InstrProfiling::computeNumValueSiteCounts(InstrProfValueProfileInst *Ind) { 189 190 GlobalVariable *Name = Ind->getName(); 191 uint64_t ValueKind = Ind->getValueKind()->getZExtValue(); 192 uint64_t Index = Ind->getIndex()->getZExtValue(); 193 auto It = ProfileDataMap.find(Name); 194 if (It == ProfileDataMap.end()) { 195 PerFunctionProfileData PD; 196 PD.NumValueSites[ValueKind] = Index + 1; 197 ProfileDataMap[Name] = PD; 198 } else if (It->second.NumValueSites[ValueKind] <= Index) 199 It->second.NumValueSites[ValueKind] = Index + 1; 200 } 201 202 void InstrProfiling::lowerValueProfileInst(InstrProfValueProfileInst *Ind) { 203 204 GlobalVariable *Name = Ind->getName(); 205 auto It = ProfileDataMap.find(Name); 206 assert(It != ProfileDataMap.end() && It->second.DataVar && 207 "value profiling detected in function with no counter incerement"); 208 209 GlobalVariable *DataVar = It->second.DataVar; 210 uint64_t ValueKind = Ind->getValueKind()->getZExtValue(); 211 uint64_t Index = Ind->getIndex()->getZExtValue(); 212 for (uint32_t Kind = IPVK_First; Kind < ValueKind; ++Kind) 213 Index += It->second.NumValueSites[Kind]; 214 215 IRBuilder<> Builder(Ind); 216 Value* Args[3] = {Ind->getTargetValue(), 217 Builder.CreateBitCast(DataVar, Builder.getInt8PtrTy()), 218 Builder.getInt32(Index)}; 219 Ind->replaceAllUsesWith( 220 Builder.CreateCall(getOrInsertValueProfilingCall(*M), Args)); 221 Ind->eraseFromParent(); 222 } 223 224 void InstrProfiling::lowerIncrement(InstrProfIncrementInst *Inc) { 225 GlobalVariable *Counters = getOrCreateRegionCounters(Inc); 226 227 IRBuilder<> Builder(Inc); 228 uint64_t Index = Inc->getIndex()->getZExtValue(); 229 Value *Addr = Builder.CreateConstInBoundsGEP2_64(Counters, 0, Index); 230 Value *Count = Builder.CreateLoad(Addr, "pgocount"); 231 Count = Builder.CreateAdd(Count, Builder.getInt64(1)); 232 Inc->replaceAllUsesWith(Builder.CreateStore(Count, Addr)); 233 Inc->eraseFromParent(); 234 } 235 236 void InstrProfiling::lowerCoverageData(GlobalVariable *CoverageData) { 237 CoverageData->setSection(getCoverageSection()); 238 CoverageData->setAlignment(8); 239 240 Constant *Init = CoverageData->getInitializer(); 241 // We're expecting { i32, i32, i32, i32, [n x { i8*, i32, i32 }], [m x i8] } 242 // for some C. If not, the frontend's given us something broken. 243 assert(Init->getNumOperands() == 6 && "bad number of fields in coverage map"); 244 assert(isa<ConstantArray>(Init->getAggregateElement(4)) && 245 "invalid function list in coverage map"); 246 ConstantArray *Records = cast<ConstantArray>(Init->getAggregateElement(4)); 247 for (unsigned I = 0, E = Records->getNumOperands(); I < E; ++I) { 248 Constant *Record = Records->getOperand(I); 249 Value *V = const_cast<Value *>(Record->getOperand(0))->stripPointerCasts(); 250 251 assert(isa<GlobalVariable>(V) && "Missing reference to function name"); 252 GlobalVariable *Name = cast<GlobalVariable>(V); 253 254 // If we have region counters for this name, we've already handled it. 255 auto It = ProfileDataMap.find(Name); 256 if (It != ProfileDataMap.end()) 257 if (It->second.RegionCounters) 258 continue; 259 260 // Move the name variable to the right section. 261 Name->setSection(getNameSection()); 262 Name->setAlignment(1); 263 } 264 } 265 266 /// Get the name of a profiling variable for a particular function. 267 static std::string getVarName(InstrProfIncrementInst *Inc, StringRef Prefix) { 268 auto *Arr = cast<ConstantDataArray>(Inc->getName()->getInitializer()); 269 StringRef Name = Arr->isCString() ? Arr->getAsCString() : Arr->getAsString(); 270 return (Prefix + Name).str(); 271 } 272 273 static inline bool shouldRecordFunctionAddr(Function *F) { 274 // Check the linkage 275 if (!F->hasLinkOnceLinkage() && !F->hasLocalLinkage() && 276 !F->hasAvailableExternallyLinkage()) 277 return true; 278 // Check uses of this function for other than direct calls or invokes to it. 279 return F->hasAddressTaken(); 280 } 281 282 GlobalVariable * 283 InstrProfiling::getOrCreateRegionCounters(InstrProfIncrementInst *Inc) { 284 GlobalVariable *NamePtr = Inc->getName(); 285 auto It = ProfileDataMap.find(NamePtr); 286 PerFunctionProfileData PD; 287 if (It != ProfileDataMap.end()) { 288 if (It->second.RegionCounters) 289 return It->second.RegionCounters; 290 PD = It->second; 291 } 292 293 // Move the name variable to the right section. Place them in a COMDAT group 294 // if the associated function is a COMDAT. This will make sure that 295 // only one copy of counters of the COMDAT function will be emitted after 296 // linking. 297 Function *Fn = Inc->getParent()->getParent(); 298 Comdat *ProfileVarsComdat = nullptr; 299 if (Fn->hasComdat()) 300 ProfileVarsComdat = M->getOrInsertComdat( 301 StringRef(getVarName(Inc, getInstrProfComdatPrefix()))); 302 NamePtr->setSection(getNameSection()); 303 NamePtr->setAlignment(1); 304 NamePtr->setComdat(ProfileVarsComdat); 305 306 uint64_t NumCounters = Inc->getNumCounters()->getZExtValue(); 307 LLVMContext &Ctx = M->getContext(); 308 ArrayType *CounterTy = ArrayType::get(Type::getInt64Ty(Ctx), NumCounters); 309 310 // Create the counters variable. 311 auto *CounterPtr = 312 new GlobalVariable(*M, CounterTy, false, NamePtr->getLinkage(), 313 Constant::getNullValue(CounterTy), 314 getVarName(Inc, getInstrProfCountersVarPrefix())); 315 CounterPtr->setVisibility(NamePtr->getVisibility()); 316 CounterPtr->setSection(getCountersSection()); 317 CounterPtr->setAlignment(8); 318 CounterPtr->setComdat(ProfileVarsComdat); 319 320 // Create data variable. 321 auto *Int8PtrTy = Type::getInt8PtrTy(Ctx); 322 auto *Int16Ty = Type::getInt16Ty(Ctx); 323 auto *Int16ArrayTy = ArrayType::get(Int16Ty, IPVK_Last+1); 324 Type *DataTypes[] = { 325 #define INSTR_PROF_DATA(Type, LLVMType, Name, Init) LLVMType, 326 #include "llvm/ProfileData/InstrProfData.inc" 327 }; 328 auto *DataTy = StructType::get(Ctx, makeArrayRef(DataTypes)); 329 330 Constant *FunctionAddr = shouldRecordFunctionAddr(Fn) ? 331 ConstantExpr::getBitCast(Fn, Int8PtrTy) : 332 ConstantPointerNull::get(Int8PtrTy); 333 334 Constant *Int16ArrayVals[IPVK_Last+1]; 335 for (uint32_t Kind = IPVK_First; Kind <= IPVK_Last; ++Kind) 336 Int16ArrayVals[Kind] = ConstantInt::get(Int16Ty, PD.NumValueSites[Kind]); 337 338 Constant *DataVals[] = { 339 #define INSTR_PROF_DATA(Type, LLVMType, Name, Init) Init, 340 #include "llvm/ProfileData/InstrProfData.inc" 341 }; 342 auto *Data = new GlobalVariable(*M, DataTy, false, NamePtr->getLinkage(), 343 ConstantStruct::get(DataTy, DataVals), 344 getVarName(Inc, getInstrProfDataVarPrefix())); 345 Data->setVisibility(NamePtr->getVisibility()); 346 Data->setSection(getDataSection()); 347 Data->setAlignment(INSTR_PROF_DATA_ALIGNMENT); 348 Data->setComdat(ProfileVarsComdat); 349 350 PD.RegionCounters = CounterPtr; 351 PD.DataVar = Data; 352 ProfileDataMap[NamePtr] = PD; 353 354 // Mark the data variable as used so that it isn't stripped out. 355 UsedVars.push_back(Data); 356 357 return CounterPtr; 358 } 359 360 void InstrProfiling::emitRegistration() { 361 // Don't do this for Darwin. compiler-rt uses linker magic. 362 if (Triple(M->getTargetTriple()).isOSDarwin()) 363 return; 364 365 // Use linker script magic to get data/cnts/name start/end. 366 if (Triple(M->getTargetTriple()).isOSLinux() || 367 Triple(M->getTargetTriple()).isOSFreeBSD()) 368 return; 369 370 // Construct the function. 371 auto *VoidTy = Type::getVoidTy(M->getContext()); 372 auto *VoidPtrTy = Type::getInt8PtrTy(M->getContext()); 373 auto *RegisterFTy = FunctionType::get(VoidTy, false); 374 auto *RegisterF = Function::Create(RegisterFTy, GlobalValue::InternalLinkage, 375 getInstrProfRegFuncsName(), M); 376 RegisterF->setUnnamedAddr(true); 377 if (Options.NoRedZone) RegisterF->addFnAttr(Attribute::NoRedZone); 378 379 auto *RuntimeRegisterTy = FunctionType::get(VoidTy, VoidPtrTy, false); 380 auto *RuntimeRegisterF = 381 Function::Create(RuntimeRegisterTy, GlobalVariable::ExternalLinkage, 382 getInstrProfRegFuncName(), M); 383 384 IRBuilder<> IRB(BasicBlock::Create(M->getContext(), "", RegisterF)); 385 for (Value *Data : UsedVars) 386 IRB.CreateCall(RuntimeRegisterF, IRB.CreateBitCast(Data, VoidPtrTy)); 387 IRB.CreateRetVoid(); 388 } 389 390 void InstrProfiling::emitRuntimeHook() { 391 392 // We expect the linker to be invoked with -u<hook_var> flag for linux, 393 // for which case there is no need to emit the user function. 394 if (Triple(M->getTargetTriple()).isOSLinux()) 395 return; 396 397 // If the module's provided its own runtime, we don't need to do anything. 398 if (M->getGlobalVariable(getInstrProfRuntimeHookVarName())) return; 399 400 // Declare an external variable that will pull in the runtime initialization. 401 auto *Int32Ty = Type::getInt32Ty(M->getContext()); 402 auto *Var = 403 new GlobalVariable(*M, Int32Ty, false, GlobalValue::ExternalLinkage, 404 nullptr, getInstrProfRuntimeHookVarName()); 405 406 // Make a function that uses it. 407 auto *User = Function::Create(FunctionType::get(Int32Ty, false), 408 GlobalValue::LinkOnceODRLinkage, 409 getInstrProfRuntimeHookVarUseFuncName(), M); 410 User->addFnAttr(Attribute::NoInline); 411 if (Options.NoRedZone) User->addFnAttr(Attribute::NoRedZone); 412 User->setVisibility(GlobalValue::HiddenVisibility); 413 414 IRBuilder<> IRB(BasicBlock::Create(M->getContext(), "", User)); 415 auto *Load = IRB.CreateLoad(Var); 416 IRB.CreateRet(Load); 417 418 // Mark the user variable as used so that it isn't stripped out. 419 UsedVars.push_back(User); 420 } 421 422 void InstrProfiling::emitUses() { 423 if (UsedVars.empty()) 424 return; 425 426 GlobalVariable *LLVMUsed = M->getGlobalVariable("llvm.used"); 427 std::vector<Constant *> MergedVars; 428 if (LLVMUsed) { 429 // Collect the existing members of llvm.used. 430 ConstantArray *Inits = cast<ConstantArray>(LLVMUsed->getInitializer()); 431 for (unsigned I = 0, E = Inits->getNumOperands(); I != E; ++I) 432 MergedVars.push_back(Inits->getOperand(I)); 433 LLVMUsed->eraseFromParent(); 434 } 435 436 Type *i8PTy = Type::getInt8PtrTy(M->getContext()); 437 // Add uses for our data. 438 for (auto *Value : UsedVars) 439 MergedVars.push_back( 440 ConstantExpr::getBitCast(cast<Constant>(Value), i8PTy)); 441 442 // Recreate llvm.used. 443 ArrayType *ATy = ArrayType::get(i8PTy, MergedVars.size()); 444 LLVMUsed = 445 new GlobalVariable(*M, ATy, false, GlobalValue::AppendingLinkage, 446 ConstantArray::get(ATy, MergedVars), "llvm.used"); 447 LLVMUsed->setSection("llvm.metadata"); 448 } 449 450 void InstrProfiling::emitInitialization() { 451 std::string InstrProfileOutput = Options.InstrProfileOutput; 452 453 Constant *RegisterF = M->getFunction(getInstrProfRegFuncsName()); 454 if (!RegisterF && InstrProfileOutput.empty()) return; 455 456 // Create the initialization function. 457 auto *VoidTy = Type::getVoidTy(M->getContext()); 458 auto *F = Function::Create(FunctionType::get(VoidTy, false), 459 GlobalValue::InternalLinkage, 460 getInstrProfInitFuncName(), M); 461 F->setUnnamedAddr(true); 462 F->addFnAttr(Attribute::NoInline); 463 if (Options.NoRedZone) F->addFnAttr(Attribute::NoRedZone); 464 465 // Add the basic block and the necessary calls. 466 IRBuilder<> IRB(BasicBlock::Create(M->getContext(), "", F)); 467 if (RegisterF) 468 IRB.CreateCall(RegisterF, {}); 469 if (!InstrProfileOutput.empty()) { 470 auto *Int8PtrTy = Type::getInt8PtrTy(M->getContext()); 471 auto *SetNameTy = FunctionType::get(VoidTy, Int8PtrTy, false); 472 auto *SetNameF = Function::Create(SetNameTy, GlobalValue::ExternalLinkage, 473 getInstrProfFileOverriderFuncName(), M); 474 475 // Create variable for profile name. 476 Constant *ProfileNameConst = 477 ConstantDataArray::getString(M->getContext(), InstrProfileOutput, true); 478 GlobalVariable *ProfileName = 479 new GlobalVariable(*M, ProfileNameConst->getType(), true, 480 GlobalValue::PrivateLinkage, ProfileNameConst); 481 482 IRB.CreateCall(SetNameF, IRB.CreatePointerCast(ProfileName, Int8PtrTy)); 483 } 484 IRB.CreateRetVoid(); 485 486 appendToGlobalCtors(*M, F, 0); 487 } 488