1 //===- FuzzerInternal.h - Internal header for the Fuzzer --------*- 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 // Define the main class fuzzer::Fuzzer and most functions. 10 //===----------------------------------------------------------------------===// 11 12 #ifndef LLVM_FUZZER_INTERNAL_H 13 #define LLVM_FUZZER_INTERNAL_H 14 15 #include <algorithm> 16 #include <atomic> 17 #include <chrono> 18 #include <climits> 19 #include <cstdlib> 20 #include <string.h> 21 22 #include "FuzzerDefs.h" 23 #include "FuzzerExtFunctions.h" 24 #include "FuzzerInterface.h" 25 #include "FuzzerOptions.h" 26 #include "FuzzerValueBitMap.h" 27 28 namespace fuzzer { 29 30 using namespace std::chrono; 31 32 class Fuzzer { 33 public: 34 35 // Aggregates all available coverage measurements. 36 struct Coverage { 37 Coverage() { Reset(); } 38 39 void Reset() { 40 BlockCoverage = 0; 41 CallerCalleeCoverage = 0; 42 CounterBitmapBits = 0; 43 CounterBitmap.clear(); 44 VPMap.Reset(); 45 } 46 47 size_t BlockCoverage; 48 size_t CallerCalleeCoverage; 49 // Precalculated number of bits in CounterBitmap. 50 size_t CounterBitmapBits; 51 std::vector<uint8_t> CounterBitmap; 52 ValueBitMap VPMap; 53 }; 54 55 Fuzzer(UserCallback CB, InputCorpus &Corpus, MutationDispatcher &MD, 56 FuzzingOptions Options); 57 ~Fuzzer(); 58 void Loop(); 59 void MinimizeCrashLoop(const Unit &U); 60 void ShuffleAndMinimize(UnitVector *V); 61 void InitializeTraceState(); 62 void RereadOutputCorpus(size_t MaxSize); 63 64 size_t secondsSinceProcessStartUp() { 65 return duration_cast<seconds>(system_clock::now() - ProcessStartTime) 66 .count(); 67 } 68 69 bool TimedOut() { 70 return Options.MaxTotalTimeSec > 0 && 71 secondsSinceProcessStartUp() > 72 static_cast<size_t>(Options.MaxTotalTimeSec); 73 } 74 75 size_t execPerSec() { 76 size_t Seconds = secondsSinceProcessStartUp(); 77 return Seconds ? TotalNumberOfRuns / Seconds : 0; 78 } 79 80 size_t getTotalNumberOfRuns() { return TotalNumberOfRuns; } 81 82 static void StaticAlarmCallback(); 83 static void StaticCrashSignalCallback(); 84 static void StaticInterruptCallback(); 85 86 void ExecuteCallback(const uint8_t *Data, size_t Size); 87 size_t RunOne(const uint8_t *Data, size_t Size); 88 89 // Merge Corpora[1:] into Corpora[0]. 90 void Merge(const std::vector<std::string> &Corpora); 91 // Returns a subset of 'Extra' that adds coverage to 'Initial'. 92 UnitVector FindExtraUnits(const UnitVector &Initial, const UnitVector &Extra); 93 MutationDispatcher &GetMD() { return MD; } 94 void PrintFinalStats(); 95 void SetMaxInputLen(size_t MaxInputLen); 96 void SetMaxMutationLen(size_t MaxMutationLen); 97 void RssLimitCallback(); 98 99 // Public for tests. 100 void ResetCoverage(); 101 102 bool InFuzzingThread() const { return IsMyThread; } 103 size_t GetCurrentUnitInFuzzingThead(const uint8_t **Data) const; 104 void TryDetectingAMemoryLeak(const uint8_t *Data, size_t Size, 105 bool DuringInitialCorpusExecution); 106 107 private: 108 void AlarmCallback(); 109 void CrashCallback(); 110 void InterruptCallback(); 111 void MutateAndTestOne(); 112 void ReportNewCoverage(InputInfo *II, const Unit &U); 113 size_t RunOne(const Unit &U) { return RunOne(U.data(), U.size()); } 114 void WriteToOutputCorpus(const Unit &U); 115 void WriteUnitToFileWithPrefix(const Unit &U, const char *Prefix); 116 void PrintStats(const char *Where, const char *End = "\n", size_t Units = 0); 117 void PrintStatusForNewUnit(const Unit &U); 118 void ShuffleCorpus(UnitVector *V); 119 void AddToCorpus(const Unit &U); 120 void CheckExitOnSrcPosOrItem(); 121 122 // Trace-based fuzzing: we run a unit with some kind of tracing 123 // enabled and record potentially useful mutations. Then 124 // We apply these mutations one by one to the unit and run it again. 125 126 // Start tracing; forget all previously proposed mutations. 127 void StartTraceRecording(); 128 // Stop tracing. 129 void StopTraceRecording(); 130 131 void SetDeathCallback(); 132 static void StaticDeathCallback(); 133 void DumpCurrentUnit(const char *Prefix); 134 void DeathCallback(); 135 136 void ResetEdgeCoverage(); 137 void ResetCounters(); 138 void PrepareCounters(Fuzzer::Coverage *C); 139 bool RecordMaxCoverage(Fuzzer::Coverage *C); 140 141 void AllocateCurrentUnitData(); 142 uint8_t *CurrentUnitData = nullptr; 143 std::atomic<size_t> CurrentUnitSize; 144 uint8_t BaseSha1[kSHA1NumBytes]; // Checksum of the base unit. 145 146 size_t TotalNumberOfRuns = 0; 147 size_t NumberOfNewUnitsAdded = 0; 148 149 bool HasMoreMallocsThanFrees = false; 150 size_t NumberOfLeakDetectionAttempts = 0; 151 152 UserCallback CB; 153 InputCorpus &Corpus; 154 MutationDispatcher &MD; 155 FuzzingOptions Options; 156 157 system_clock::time_point ProcessStartTime = system_clock::now(); 158 system_clock::time_point UnitStartTime, UnitStopTime; 159 long TimeOfLongestUnitInSeconds = 0; 160 long EpochOfLastReadOfOutputCorpus = 0; 161 162 // Maximum recorded coverage. 163 Coverage MaxCoverage; 164 165 size_t MaxInputLen = 0; 166 size_t MaxMutationLen = 0; 167 168 // Need to know our own thread. 169 static thread_local bool IsMyThread; 170 171 bool InMergeMode = false; 172 }; 173 174 }; // namespace fuzzer 175 176 #endif // LLVM_FUZZER_INTERNAL_H 177