1 //===-- SanitizerCoverage.cpp - coverage instrumentation for sanitizers ---===// 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 // Coverage instrumentation that works with AddressSanitizer 11 // and potentially with other Sanitizers. 12 // 13 // We create a Guard variable with the same linkage 14 // as the function and inject this code into the entry block (CoverageLevel=1) 15 // or all blocks (CoverageLevel>=2): 16 // if (Guard < 0) { 17 // __sanitizer_cov(&Guard); 18 // } 19 // The accesses to Guard are atomic. The rest of the logic is 20 // in __sanitizer_cov (it's fine to call it more than once). 21 // 22 // With CoverageLevel>=3 we also split critical edges this effectively 23 // instrumenting all edges. 24 // 25 // CoverageLevel>=4 add indirect call profiling implented as a function call. 26 // 27 // This coverage implementation provides very limited data: 28 // it only tells if a given function (block) was ever executed. No counters. 29 // But for many use cases this is what we need and the added slowdown small. 30 // 31 //===----------------------------------------------------------------------===// 32 33 #include "llvm/Transforms/Instrumentation.h" 34 #include "llvm/ADT/ArrayRef.h" 35 #include "llvm/ADT/SmallVector.h" 36 #include "llvm/IR/CallSite.h" 37 #include "llvm/IR/DataLayout.h" 38 #include "llvm/IR/Function.h" 39 #include "llvm/IR/IRBuilder.h" 40 #include "llvm/IR/InlineAsm.h" 41 #include "llvm/IR/LLVMContext.h" 42 #include "llvm/IR/MDBuilder.h" 43 #include "llvm/IR/Module.h" 44 #include "llvm/IR/Type.h" 45 #include "llvm/Support/CommandLine.h" 46 #include "llvm/Support/Debug.h" 47 #include "llvm/Support/raw_ostream.h" 48 #include "llvm/Transforms/Scalar.h" 49 #include "llvm/Transforms/Utils/BasicBlockUtils.h" 50 #include "llvm/Transforms/Utils/ModuleUtils.h" 51 52 using namespace llvm; 53 54 #define DEBUG_TYPE "sancov" 55 56 static const char *const kSanCovModuleInitName = "__sanitizer_cov_module_init"; 57 static const char *const kSanCovName = "__sanitizer_cov"; 58 static const char *const kSanCovWithCheckName = "__sanitizer_cov_with_check"; 59 static const char *const kSanCovIndirCallName = "__sanitizer_cov_indir_call16"; 60 static const char *const kSanCovTraceEnter = "__sanitizer_cov_trace_func_enter"; 61 static const char *const kSanCovTraceBB = "__sanitizer_cov_trace_basic_block"; 62 static const char *const kSanCovModuleCtorName = "sancov.module_ctor"; 63 static const uint64_t kSanCtorAndDtorPriority = 2; 64 65 static cl::opt<int> ClCoverageLevel("sanitizer-coverage-level", 66 cl::desc("Sanitizer Coverage. 0: none, 1: entry block, 2: all blocks, " 67 "3: all blocks and critical edges, " 68 "4: above plus indirect calls"), 69 cl::Hidden, cl::init(0)); 70 71 static cl::opt<unsigned> ClCoverageBlockThreshold( 72 "sanitizer-coverage-block-threshold", 73 cl::desc("Use a callback with a guard check inside it if there are" 74 " more than this number of blocks."), 75 cl::Hidden, cl::init(1000)); 76 77 static cl::opt<bool> 78 ClExperimentalTracing("sanitizer-coverage-experimental-tracing", 79 cl::desc("Experimental basic-block tracing: insert " 80 "callbacks at every basic block"), 81 cl::Hidden, cl::init(false)); 82 83 // Experimental 8-bit counters used as an additional search heuristic during 84 // coverage-guided fuzzing. 85 // The counters are not thread-friendly: 86 // - contention on these counters may cause significant slowdown; 87 // - the counter updates are racy and the results may be inaccurate. 88 // They are also inaccurate due to 8-bit integer overflow. 89 static cl::opt<bool> ClUse8bitCounters("sanitizer-coverage-8bit-counters", 90 cl::desc("Experimental 8-bit counters"), 91 cl::Hidden, cl::init(false)); 92 93 namespace { 94 95 class SanitizerCoverageModule : public ModulePass { 96 public: 97 SanitizerCoverageModule(int CoverageLevel = 0) 98 : ModulePass(ID), 99 CoverageLevel(std::max(CoverageLevel, (int)ClCoverageLevel)) {} 100 bool runOnModule(Module &M) override; 101 bool runOnFunction(Function &F); 102 static char ID; // Pass identification, replacement for typeid 103 const char *getPassName() const override { 104 return "SanitizerCoverageModule"; 105 } 106 107 void getAnalysisUsage(AnalysisUsage &AU) const override { 108 AU.addRequired<DataLayoutPass>(); 109 } 110 111 private: 112 void InjectCoverageForIndirectCalls(Function &F, 113 ArrayRef<Instruction *> IndirCalls); 114 bool InjectCoverage(Function &F, ArrayRef<BasicBlock *> AllBlocks, 115 ArrayRef<Instruction *> IndirCalls); 116 void InjectCoverageAtBlock(Function &F, BasicBlock &BB, bool UseCalls); 117 Function *SanCovFunction; 118 Function *SanCovWithCheckFunction; 119 Function *SanCovIndirCallFunction; 120 Function *SanCovModuleInit; 121 Function *SanCovTraceEnter, *SanCovTraceBB; 122 InlineAsm *EmptyAsm; 123 Type *IntptrTy; 124 LLVMContext *C; 125 126 GlobalVariable *GuardArray; 127 GlobalVariable *EightBitCounterArray; 128 129 int CoverageLevel; 130 }; 131 132 } // namespace 133 134 static Function *checkInterfaceFunction(Constant *FuncOrBitcast) { 135 if (Function *F = dyn_cast<Function>(FuncOrBitcast)) 136 return F; 137 std::string Err; 138 raw_string_ostream Stream(Err); 139 Stream << "SanitizerCoverage interface function redefined: " 140 << *FuncOrBitcast; 141 report_fatal_error(Err); 142 } 143 144 bool SanitizerCoverageModule::runOnModule(Module &M) { 145 if (!CoverageLevel) return false; 146 C = &(M.getContext()); 147 DataLayoutPass *DLP = &getAnalysis<DataLayoutPass>(); 148 IntptrTy = Type::getIntNTy(*C, DLP->getDataLayout().getPointerSizeInBits()); 149 Type *VoidTy = Type::getVoidTy(*C); 150 IRBuilder<> IRB(*C); 151 Type *Int8PtrTy = PointerType::getUnqual(IRB.getInt8Ty()); 152 Type *Int32PtrTy = PointerType::getUnqual(IRB.getInt32Ty()); 153 154 Function *CtorFunc = 155 Function::Create(FunctionType::get(VoidTy, false), 156 GlobalValue::InternalLinkage, kSanCovModuleCtorName, &M); 157 ReturnInst::Create(*C, BasicBlock::Create(*C, "", CtorFunc)); 158 appendToGlobalCtors(M, CtorFunc, kSanCtorAndDtorPriority); 159 160 SanCovFunction = checkInterfaceFunction( 161 M.getOrInsertFunction(kSanCovName, VoidTy, Int32PtrTy, nullptr)); 162 SanCovWithCheckFunction = checkInterfaceFunction( 163 M.getOrInsertFunction(kSanCovWithCheckName, VoidTy, Int32PtrTy, nullptr)); 164 SanCovIndirCallFunction = checkInterfaceFunction(M.getOrInsertFunction( 165 kSanCovIndirCallName, VoidTy, IntptrTy, IntptrTy, nullptr)); 166 SanCovModuleInit = checkInterfaceFunction(M.getOrInsertFunction( 167 kSanCovModuleInitName, Type::getVoidTy(*C), Int32PtrTy, IntptrTy, 168 Int8PtrTy, Int8PtrTy, nullptr)); 169 SanCovModuleInit->setLinkage(Function::ExternalLinkage); 170 // We insert an empty inline asm after cov callbacks to avoid callback merge. 171 EmptyAsm = InlineAsm::get(FunctionType::get(IRB.getVoidTy(), false), 172 StringRef(""), StringRef(""), 173 /*hasSideEffects=*/true); 174 175 if (ClExperimentalTracing) { 176 SanCovTraceEnter = checkInterfaceFunction( 177 M.getOrInsertFunction(kSanCovTraceEnter, VoidTy, Int32PtrTy, nullptr)); 178 SanCovTraceBB = checkInterfaceFunction( 179 M.getOrInsertFunction(kSanCovTraceBB, VoidTy, Int32PtrTy, nullptr)); 180 } 181 182 // At this point we create a dummy array of guards because we don't 183 // know how many elements we will need. 184 Type *Int32Ty = IRB.getInt32Ty(); 185 Type *Int8Ty = IRB.getInt8Ty(); 186 187 GuardArray = 188 new GlobalVariable(M, Int32Ty, false, GlobalValue::ExternalLinkage, 189 nullptr, "__sancov_gen_cov_tmp"); 190 if (ClUse8bitCounters) 191 EightBitCounterArray = 192 new GlobalVariable(M, Int8Ty, false, GlobalVariable::ExternalLinkage, 193 nullptr, "__sancov_gen_cov_tmp"); 194 195 for (auto &F : M) 196 runOnFunction(F); 197 198 // Now we know how many elements we need. Create an array of guards 199 // with one extra element at the beginning for the size. 200 Type *Int32ArrayNTy = 201 ArrayType::get(Int32Ty, SanCovFunction->getNumUses() + 1); 202 GlobalVariable *RealGuardArray = new GlobalVariable( 203 M, Int32ArrayNTy, false, GlobalValue::PrivateLinkage, 204 Constant::getNullValue(Int32ArrayNTy), "__sancov_gen_cov"); 205 206 207 // Replace the dummy array with the real one. 208 GuardArray->replaceAllUsesWith( 209 IRB.CreatePointerCast(RealGuardArray, Int32PtrTy)); 210 GuardArray->eraseFromParent(); 211 212 GlobalVariable *RealEightBitCounterArray; 213 if (ClUse8bitCounters) { 214 // Make sure the array is 16-aligned. 215 static const int kCounterAlignment = 16; 216 Type *Int8ArrayNTy = 217 ArrayType::get(Int8Ty, RoundUpToAlignment(SanCovFunction->getNumUses(), 218 kCounterAlignment)); 219 RealEightBitCounterArray = new GlobalVariable( 220 M, Int8ArrayNTy, false, GlobalValue::PrivateLinkage, 221 Constant::getNullValue(Int8ArrayNTy), "__sancov_gen_cov_counter"); 222 RealEightBitCounterArray->setAlignment(kCounterAlignment); 223 EightBitCounterArray->replaceAllUsesWith( 224 IRB.CreatePointerCast(RealEightBitCounterArray, Int8PtrTy)); 225 EightBitCounterArray->eraseFromParent(); 226 } 227 228 // Create variable for module (compilation unit) name 229 Constant *ModNameStrConst = 230 ConstantDataArray::getString(M.getContext(), M.getName(), true); 231 GlobalVariable *ModuleName = 232 new GlobalVariable(M, ModNameStrConst->getType(), true, 233 GlobalValue::PrivateLinkage, ModNameStrConst); 234 235 // Call __sanitizer_cov_module_init 236 IRB.SetInsertPoint(CtorFunc->getEntryBlock().getTerminator()); 237 IRB.CreateCall4( 238 SanCovModuleInit, IRB.CreatePointerCast(RealGuardArray, Int32PtrTy), 239 ConstantInt::get(IntptrTy, SanCovFunction->getNumUses()), 240 ClUse8bitCounters 241 ? IRB.CreatePointerCast(RealEightBitCounterArray, Int8PtrTy) 242 : Constant::getNullValue(Int8PtrTy), 243 IRB.CreatePointerCast(ModuleName, Int8PtrTy)); 244 return true; 245 } 246 247 bool SanitizerCoverageModule::runOnFunction(Function &F) { 248 if (F.empty()) return false; 249 if (F.getName().find(".module_ctor") != std::string::npos) 250 return false; // Should not instrument sanitizer init functions. 251 if (CoverageLevel >= 3) 252 SplitAllCriticalEdges(F); 253 SmallVector<Instruction*, 8> IndirCalls; 254 SmallVector<BasicBlock*, 16> AllBlocks; 255 for (auto &BB : F) { 256 AllBlocks.push_back(&BB); 257 if (CoverageLevel >= 4) 258 for (auto &Inst : BB) { 259 CallSite CS(&Inst); 260 if (CS && !CS.getCalledFunction()) 261 IndirCalls.push_back(&Inst); 262 } 263 } 264 InjectCoverage(F, AllBlocks, IndirCalls); 265 return true; 266 } 267 268 bool 269 SanitizerCoverageModule::InjectCoverage(Function &F, 270 ArrayRef<BasicBlock *> AllBlocks, 271 ArrayRef<Instruction *> IndirCalls) { 272 if (!CoverageLevel) return false; 273 274 if (CoverageLevel == 1) { 275 InjectCoverageAtBlock(F, F.getEntryBlock(), false); 276 } else { 277 for (auto BB : AllBlocks) 278 InjectCoverageAtBlock(F, *BB, 279 ClCoverageBlockThreshold < AllBlocks.size()); 280 } 281 InjectCoverageForIndirectCalls(F, IndirCalls); 282 return true; 283 } 284 285 // On every indirect call we call a run-time function 286 // __sanitizer_cov_indir_call* with two parameters: 287 // - callee address, 288 // - global cache array that contains kCacheSize pointers (zero-initialized). 289 // The cache is used to speed up recording the caller-callee pairs. 290 // The address of the caller is passed implicitly via caller PC. 291 // kCacheSize is encoded in the name of the run-time function. 292 void SanitizerCoverageModule::InjectCoverageForIndirectCalls( 293 Function &F, ArrayRef<Instruction *> IndirCalls) { 294 if (IndirCalls.empty()) return; 295 const int kCacheSize = 16; 296 const int kCacheAlignment = 64; // Align for better performance. 297 Type *Ty = ArrayType::get(IntptrTy, kCacheSize); 298 for (auto I : IndirCalls) { 299 IRBuilder<> IRB(I); 300 CallSite CS(I); 301 Value *Callee = CS.getCalledValue(); 302 if (dyn_cast<InlineAsm>(Callee)) continue; 303 GlobalVariable *CalleeCache = new GlobalVariable( 304 *F.getParent(), Ty, false, GlobalValue::PrivateLinkage, 305 Constant::getNullValue(Ty), "__sancov_gen_callee_cache"); 306 CalleeCache->setAlignment(kCacheAlignment); 307 IRB.CreateCall2(SanCovIndirCallFunction, 308 IRB.CreatePointerCast(Callee, IntptrTy), 309 IRB.CreatePointerCast(CalleeCache, IntptrTy)); 310 } 311 } 312 313 void SanitizerCoverageModule::InjectCoverageAtBlock(Function &F, BasicBlock &BB, 314 bool UseCalls) { 315 BasicBlock::iterator IP = BB.getFirstInsertionPt(), BE = BB.end(); 316 // Skip static allocas at the top of the entry block so they don't become 317 // dynamic when we split the block. If we used our optimized stack layout, 318 // then there will only be one alloca and it will come first. 319 for (; IP != BE; ++IP) { 320 AllocaInst *AI = dyn_cast<AllocaInst>(IP); 321 if (!AI || !AI->isStaticAlloca()) 322 break; 323 } 324 325 bool IsEntryBB = &BB == &F.getEntryBlock(); 326 DebugLoc EntryLoc = 327 IsEntryBB ? IP->getDebugLoc().getFnDebugLoc(*C) : IP->getDebugLoc(); 328 IRBuilder<> IRB(IP); 329 IRB.SetCurrentDebugLocation(EntryLoc); 330 SmallVector<Value *, 1> Indices; 331 Value *GuardP = IRB.CreateAdd( 332 IRB.CreatePointerCast(GuardArray, IntptrTy), 333 ConstantInt::get(IntptrTy, (1 + SanCovFunction->getNumUses()) * 4)); 334 Type *Int32PtrTy = PointerType::getUnqual(IRB.getInt32Ty()); 335 GuardP = IRB.CreateIntToPtr(GuardP, Int32PtrTy); 336 if (UseCalls) { 337 IRB.CreateCall(SanCovWithCheckFunction, GuardP); 338 } else { 339 LoadInst *Load = IRB.CreateLoad(GuardP); 340 Load->setAtomic(Monotonic); 341 Load->setAlignment(4); 342 Load->setMetadata(F.getParent()->getMDKindID("nosanitize"), 343 MDNode::get(*C, None)); 344 Value *Cmp = IRB.CreateICmpSGE(Constant::getNullValue(Load->getType()), Load); 345 Instruction *Ins = SplitBlockAndInsertIfThen( 346 Cmp, IP, false, MDBuilder(*C).createBranchWeights(1, 100000)); 347 IRB.SetInsertPoint(Ins); 348 IRB.SetCurrentDebugLocation(EntryLoc); 349 // __sanitizer_cov gets the PC of the instruction using GET_CALLER_PC. 350 IRB.CreateCall(SanCovFunction, GuardP); 351 IRB.CreateCall(EmptyAsm); // Avoids callback merge. 352 } 353 354 if(ClUse8bitCounters) { 355 IRB.SetInsertPoint(IP); 356 Value *P = IRB.CreateAdd( 357 IRB.CreatePointerCast(EightBitCounterArray, IntptrTy), 358 ConstantInt::get(IntptrTy, SanCovFunction->getNumUses() - 1)); 359 P = IRB.CreateIntToPtr(P, IRB.getInt8PtrTy()); 360 Value *LI = IRB.CreateLoad(P); 361 Value *Inc = IRB.CreateAdd(LI, ConstantInt::get(IRB.getInt8Ty(), 1)); 362 IRB.CreateStore(Inc, P); 363 } 364 365 if (ClExperimentalTracing) { 366 // Experimental support for tracing. 367 // Insert a callback with the same guard variable as used for coverage. 368 IRB.SetInsertPoint(IP); 369 IRB.CreateCall(IsEntryBB ? SanCovTraceEnter : SanCovTraceBB, GuardP); 370 } 371 } 372 373 char SanitizerCoverageModule::ID = 0; 374 INITIALIZE_PASS(SanitizerCoverageModule, "sancov", 375 "SanitizerCoverage: TODO." 376 "ModulePass", false, false) 377 ModulePass *llvm::createSanitizerCoverageModulePass(int CoverageLevel) { 378 return new SanitizerCoverageModule(CoverageLevel); 379 } 380