1 //===- FuzzerDataFlowTrace.cpp - DataFlowTrace ---*- C++ -* ===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // fuzzer::DataFlowTrace 9 //===----------------------------------------------------------------------===// 10 11 #include "FuzzerDataFlowTrace.h" 12 13 #include "FuzzerCommand.h" 14 #include "FuzzerIO.h" 15 #include "FuzzerRandom.h" 16 #include "FuzzerSHA1.h" 17 #include "FuzzerUtil.h" 18 19 #include <cstdlib> 20 #include <fstream> 21 #include <numeric> 22 #include <queue> 23 #include <sstream> 24 #include <string> 25 #include <unordered_map> 26 #include <unordered_set> 27 #include <vector> 28 29 namespace fuzzer { 30 static const char *kFunctionsTxt = "functions.txt"; 31 32 bool BlockCoverage::AppendCoverage(const std::string &S) { 33 std::stringstream SS(S); 34 return AppendCoverage(SS); 35 } 36 37 // Coverage lines have this form: 38 // CN X Y Z T 39 // where N is the number of the function, T is the total number of instrumented 40 // BBs, and X,Y,Z, if present, are the indecies of covered BB. 41 // BB #0, which is the entry block, is not explicitly listed. 42 bool BlockCoverage::AppendCoverage(std::istream &IN) { 43 std::string L; 44 while (std::getline(IN, L, '\n')) { 45 if (L.empty() || L[0] != 'C') 46 continue; // Ignore non-coverage lines. 47 std::stringstream SS(L.c_str() + 1); 48 size_t FunctionId = 0; 49 SS >> FunctionId; 50 Vector<uint32_t> CoveredBlocks; 51 while (true) { 52 uint32_t BB = 0; 53 SS >> BB; 54 if (!SS) break; 55 CoveredBlocks.push_back(BB); 56 } 57 if (CoveredBlocks.empty()) return false; 58 uint32_t NumBlocks = CoveredBlocks.back(); 59 CoveredBlocks.pop_back(); 60 for (auto BB : CoveredBlocks) 61 if (BB >= NumBlocks) return false; 62 auto It = Functions.find(FunctionId); 63 auto &Counters = 64 It == Functions.end() 65 ? Functions.insert({FunctionId, Vector<uint32_t>(NumBlocks)}) 66 .first->second 67 : It->second; 68 69 if (Counters.size() != NumBlocks) return false; // wrong number of blocks. 70 71 Counters[0]++; 72 for (auto BB : CoveredBlocks) 73 Counters[BB]++; 74 } 75 return true; 76 } 77 78 // Assign weights to each function. 79 // General principles: 80 // * any uncovered function gets weight 0. 81 // * a function with lots of uncovered blocks gets bigger weight. 82 // * a function with a less frequently executed code gets bigger weight. 83 Vector<double> BlockCoverage::FunctionWeights(size_t NumFunctions) const { 84 Vector<double> Res(NumFunctions); 85 for (auto It : Functions) { 86 auto FunctionID = It.first; 87 auto Counters = It.second; 88 assert(FunctionID < NumFunctions); 89 auto &Weight = Res[FunctionID]; 90 Weight = 1000.; // this function is covered. 91 Weight /= SmallestNonZeroCounter(Counters); 92 Weight *= NumberOfUncoveredBlocks(Counters) + 1; // make sure it's not 0. 93 } 94 return Res; 95 } 96 97 void DataFlowTrace::ReadCoverage(const std::string &DirPath) { 98 Vector<SizedFile> Files; 99 GetSizedFilesFromDir(DirPath, &Files); 100 for (auto &SF : Files) { 101 auto Name = Basename(SF.File); 102 if (Name == kFunctionsTxt) continue; 103 std::ifstream IF(SF.File); 104 Coverage.AppendCoverage(IF); 105 } 106 } 107 108 static void DFTStringAppendToVector(Vector<uint8_t> *DFT, 109 const std::string &DFTString) { 110 assert(DFT->size() == DFTString.size()); 111 for (size_t I = 0, Len = DFT->size(); I < Len; I++) 112 (*DFT)[I] = DFTString[I] == '1'; 113 } 114 115 // converts a string of '0' and '1' into a Vector<uint8_t> 116 static Vector<uint8_t> DFTStringToVector(const std::string &DFTString) { 117 Vector<uint8_t> DFT(DFTString.size()); 118 DFTStringAppendToVector(&DFT, DFTString); 119 return DFT; 120 } 121 122 static std::ostream &operator<<(std::ostream &OS, const Vector<uint8_t> &DFT) { 123 for (auto B : DFT) 124 OS << (B ? "1" : "0"); 125 return OS; 126 } 127 128 static bool ParseError(const char *Err, const std::string &Line) { 129 Printf("DataFlowTrace: parse error: %s: Line: %s\n", Err, Line.c_str()); 130 return false; 131 }; 132 133 // TODO(metzman): replace std::string with std::string_view for 134 // better performance. Need to figure our how to use string_view on Windows. 135 static bool ParseDFTLine(const std::string &Line, size_t *FunctionNum, 136 std::string *DFTString) { 137 if (!Line.empty() && Line[0] != 'F') 138 return false; // Ignore coverage. 139 size_t SpacePos = Line.find(' '); 140 if (SpacePos == std::string::npos) 141 return ParseError("no space in the trace line", Line); 142 if (Line.empty() || Line[0] != 'F') 143 return ParseError("the trace line doesn't start with 'F'", Line); 144 *FunctionNum = std::atol(Line.c_str() + 1); 145 const char *Beg = Line.c_str() + SpacePos + 1; 146 const char *End = Line.c_str() + Line.size(); 147 assert(Beg < End); 148 size_t Len = End - Beg; 149 for (size_t I = 0; I < Len; I++) { 150 if (Beg[I] != '0' && Beg[I] != '1') 151 return ParseError("the trace should contain only 0 or 1", Line); 152 } 153 *DFTString = Beg; 154 return true; 155 } 156 157 bool DataFlowTrace::Init(const std::string &DirPath, 158 std::string *FocusFunction, 159 Random &Rand) { 160 if (DirPath.empty()) return false; 161 Printf("INFO: DataFlowTrace: reading from '%s'\n", DirPath.c_str()); 162 Vector<SizedFile> Files; 163 GetSizedFilesFromDir(DirPath, &Files); 164 std::string L; 165 size_t FocusFuncIdx = SIZE_MAX; 166 Vector<std::string> FunctionNames; 167 168 // Read functions.txt 169 std::ifstream IF(DirPlusFile(DirPath, kFunctionsTxt)); 170 size_t NumFunctions = 0; 171 while (std::getline(IF, L, '\n')) { 172 FunctionNames.push_back(L); 173 NumFunctions++; 174 if (*FocusFunction == L) 175 FocusFuncIdx = NumFunctions - 1; 176 } 177 178 if (*FocusFunction == "auto") { 179 // AUTOFOCUS works like this: 180 // * reads the coverage data from the DFT files. 181 // * assigns weights to functions based on coverage. 182 // * chooses a random function according to the weights. 183 ReadCoverage(DirPath); 184 auto Weights = Coverage.FunctionWeights(NumFunctions); 185 Vector<double> Intervals(NumFunctions + 1); 186 std::iota(Intervals.begin(), Intervals.end(), 0); 187 auto Distribution = std::piecewise_constant_distribution<double>( 188 Intervals.begin(), Intervals.end(), Weights.begin()); 189 FocusFuncIdx = static_cast<size_t>(Distribution(Rand)); 190 *FocusFunction = FunctionNames[FocusFuncIdx]; 191 assert(FocusFuncIdx < NumFunctions); 192 Printf("INFO: AUTOFOCUS: %zd %s\n", FocusFuncIdx, 193 FunctionNames[FocusFuncIdx].c_str()); 194 for (size_t i = 0; i < NumFunctions; i++) { 195 if (!Weights[i]) continue; 196 Printf(" [%zd] W %g\tBB-tot %u\tBB-cov %u\tEntryFreq %u:\t%s\n", i, 197 Weights[i], Coverage.GetNumberOfBlocks(i), 198 Coverage.GetNumberOfCoveredBlocks(i), Coverage.GetCounter(i, 0), 199 FunctionNames[i].c_str()); 200 } 201 } 202 203 if (!NumFunctions || FocusFuncIdx == SIZE_MAX || Files.size() <= 1) 204 return false; 205 206 // Read traces. 207 size_t NumTraceFiles = 0; 208 size_t NumTracesWithFocusFunction = 0; 209 for (auto &SF : Files) { 210 auto Name = Basename(SF.File); 211 if (Name == kFunctionsTxt) continue; 212 NumTraceFiles++; 213 // Printf("=== %s\n", Name.c_str()); 214 std::ifstream IF(SF.File); 215 while (std::getline(IF, L, '\n')) { 216 size_t FunctionNum = 0; 217 std::string DFTString; 218 if (ParseDFTLine(L, &FunctionNum, &DFTString) && 219 FunctionNum == FocusFuncIdx) { 220 NumTracesWithFocusFunction++; 221 222 if (FunctionNum >= NumFunctions) 223 return ParseError("N is greater than the number of functions", L); 224 Traces[Name] = DFTStringToVector(DFTString); 225 // Print just a few small traces. 226 if (NumTracesWithFocusFunction <= 3 && DFTString.size() <= 16) 227 Printf("%s => |%s|\n", Name.c_str(), std::string(DFTString).c_str()); 228 break; // No need to parse the following lines. 229 } 230 } 231 } 232 assert(NumTraceFiles == Files.size() - 1); 233 Printf("INFO: DataFlowTrace: %zd trace files, %zd functions, " 234 "%zd traces with focus function\n", 235 NumTraceFiles, NumFunctions, NumTracesWithFocusFunction); 236 return true; 237 } 238 239 int CollectDataFlow(const std::string &DFTBinary, const std::string &DirPath, 240 const Vector<SizedFile> &CorporaFiles) { 241 Printf("INFO: collecting data flow: bin: %s dir: %s files: %zd\n", 242 DFTBinary.c_str(), DirPath.c_str(), CorporaFiles.size()); 243 MkDir(DirPath); 244 auto Temp = TempPath(".dft"); 245 for (auto &F : CorporaFiles) { 246 // For every input F we need to collect the data flow and the coverage. 247 // Data flow collection may fail if we request too many DFSan tags at once. 248 // So, we start from requesting all tags in range [0,Size) and if that fails 249 // we then request tags in [0,Size/2) and [Size/2, Size), and so on. 250 // Function number => DFT. 251 std::unordered_map<size_t, Vector<uint8_t>> DFTMap; 252 std::unordered_set<std::string> Cov; 253 std::queue<std::pair<size_t, size_t>> Q; 254 Q.push({0, F.Size}); 255 while (!Q.empty()) { 256 auto R = Q.front(); 257 Printf("\n\n\n********* Trying: [%zd, %zd)\n", R.first, R.second); 258 Q.pop(); 259 Command Cmd; 260 Cmd.addArgument(DFTBinary); 261 Cmd.addArgument(std::to_string(R.first)); 262 Cmd.addArgument(std::to_string(R.second)); 263 Cmd.addArgument(F.File); 264 Cmd.addArgument(Temp); 265 Printf("CMD: %s\n", Cmd.toString().c_str()); 266 if (ExecuteCommand(Cmd)) { 267 // DFSan has failed, collect tags for two subsets. 268 if (R.second - R.first >= 2) { 269 size_t Mid = (R.second + R.first) / 2; 270 Q.push({R.first, Mid}); 271 Q.push({Mid, R.second}); 272 } 273 } else { 274 Printf("********* Success: [%zd, %zd)\n", R.first, R.second); 275 std::ifstream IF(Temp); 276 std::string L; 277 while (std::getline(IF, L, '\n')) { 278 // Data flow collection has succeeded. 279 // Merge the results with the other runs. 280 if (L.empty()) continue; 281 if (L[0] == 'C') { 282 // Take coverage lines as is, they will be the same in all attempts. 283 Cov.insert(L); 284 } else if (L[0] == 'F') { 285 size_t FunctionNum = 0; 286 std::string DFTString; 287 if (ParseDFTLine(L, &FunctionNum, &DFTString)) { 288 auto &DFT = DFTMap[FunctionNum]; 289 if (DFT.empty()) { 290 // Haven't seen this function before, take DFT as is. 291 DFT = DFTStringToVector(DFTString); 292 } else if (DFT.size() == DFTString.size()) { 293 // Have seen this function already, merge DFTs. 294 DFTStringAppendToVector(&DFT, DFTString); 295 } 296 } 297 } 298 } 299 } 300 } 301 auto OutPath = DirPlusFile(DirPath, Hash(FileToVector(F.File))); 302 // Dump combined DFT to disk. 303 Printf("Producing DFT for %s\n", OutPath.c_str()); 304 std::ofstream OF(OutPath); 305 for (auto &DFT: DFTMap) 306 OF << "F" << DFT.first << " " << DFT.second << std::endl; 307 for (auto &C : Cov) 308 OF << C << std::endl; 309 } 310 RemoveFile(Temp); 311 // Write functions.txt. 312 Command Cmd; 313 Cmd.addArgument(DFTBinary); 314 Cmd.setOutputFile(DirPlusFile(DirPath, "functions.txt")); 315 ExecuteCommand(Cmd); 316 return 0; 317 } 318 319 } // namespace fuzzer 320