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george.karpenkov29efa6d2017-08-21 23:25:50 +00001//===- FuzzerTracePC.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// fuzzer::TracePC
10//===----------------------------------------------------------------------===//
11
12#ifndef LLVM_FUZZER_TRACE_PC
13#define LLVM_FUZZER_TRACE_PC
14
15#include "FuzzerDefs.h"
16#include "FuzzerDictionary.h"
17#include "FuzzerValueBitMap.h"
18
19#include <set>
20
21namespace fuzzer {
22
23// TableOfRecentCompares (TORC) remembers the most recently performed
24// comparisons of type T.
25// We record the arguments of CMP instructions in this table unconditionally
26// because it seems cheaper this way than to compute some expensive
27// conditions inside __sanitizer_cov_trace_cmp*.
28// After the unit has been executed we may decide to use the contents of
29// this table to populate a Dictionary.
30template<class T, size_t kSizeT>
31struct TableOfRecentCompares {
32 static const size_t kSize = kSizeT;
33 struct Pair {
34 T A, B;
35 };
36 ATTRIBUTE_NO_SANITIZE_ALL
37 void Insert(size_t Idx, const T &Arg1, const T &Arg2) {
38 Idx = Idx % kSize;
39 Table[Idx].A = Arg1;
40 Table[Idx].B = Arg2;
41 }
42
43 Pair Get(size_t I) { return Table[I % kSize]; }
44
45 Pair Table[kSize];
46};
47
48template <size_t kSizeT>
49struct MemMemTable {
50 static const size_t kSize = kSizeT;
51 Word MemMemWords[kSize];
52 Word EmptyWord;
53
54 void Add(const uint8_t *Data, size_t Size) {
55 if (Size <= 2) return;
56 Size = std::min(Size, Word::GetMaxSize());
57 size_t Idx = SimpleFastHash(Data, Size) % kSize;
58 MemMemWords[Idx].Set(Data, Size);
59 }
60 const Word &Get(size_t Idx) {
61 for (size_t i = 0; i < kSize; i++) {
62 const Word &W = MemMemWords[(Idx + i) % kSize];
63 if (W.size()) return W;
64 }
65 EmptyWord.Set(nullptr, 0);
66 return EmptyWord;
67 }
68};
69
70class TracePC {
71 public:
72 static const size_t kNumPCs = 1 << 21;
73 // How many bits of PC are used from __sanitizer_cov_trace_pc.
74 static const size_t kTracePcBits = 18;
75
76 void HandleInit(uint32_t *Start, uint32_t *Stop);
77 void HandleInline8bitCountersInit(uint8_t *Start, uint8_t *Stop);
kcc98957a12017-08-25 19:29:47 +000078 void HandlePCsInit(const uintptr_t *Start, const uintptr_t *Stop);
george.karpenkov29efa6d2017-08-21 23:25:50 +000079 void HandleCallerCallee(uintptr_t Caller, uintptr_t Callee);
80 template <class T> void HandleCmp(uintptr_t PC, T Arg1, T Arg2);
81 size_t GetTotalPCCoverage();
82 void SetUseCounters(bool UC) { UseCounters = UC; }
83 void SetUseValueProfile(bool VP) { UseValueProfile = VP; }
84 void SetPrintNewPCs(bool P) { DoPrintNewPCs = P; }
kccec9da662017-08-28 22:52:22 +000085 void SetPrintNewFuncs(size_t P) { NumPrintNewFuncs = P; }
george.karpenkov29efa6d2017-08-21 23:25:50 +000086 void UpdateObservedPCs();
87 template <class Callback> void CollectFeatures(Callback CB) const;
88
89 void ResetMaps() {
90 ValueProfileMap.Reset();
91 if (NumModules)
92 memset(Counters(), 0, GetNumPCs());
93 ClearExtraCounters();
94 ClearInlineCounters();
95 }
96
97 void ClearInlineCounters();
98
99 void UpdateFeatureSet(size_t CurrentElementIdx, size_t CurrentElementSize);
100 void PrintFeatureSet();
101
102 void PrintModuleInfo();
103
104 void PrintCoverage();
kcca7dd2a92018-05-21 19:47:00 +0000105 void DumpCoverage();
george.karpenkov29efa6d2017-08-21 23:25:50 +0000106
kcc85cad3d2018-05-11 01:17:52 +0000107 template<class CallBack>
108 void IterateCoveredFunctions(CallBack CB);
109
george.karpenkov29efa6d2017-08-21 23:25:50 +0000110 void AddValueForMemcmp(void *caller_pc, const void *s1, const void *s2,
111 size_t n, bool StopAtZero);
112
113 TableOfRecentCompares<uint32_t, 32> TORC4;
114 TableOfRecentCompares<uint64_t, 32> TORC8;
115 TableOfRecentCompares<Word, 32> TORCW;
116 MemMemTable<1024> MMT;
117
118 size_t GetNumPCs() const {
119 return NumGuards == 0 ? (1 << kTracePcBits) : Min(kNumPCs, NumGuards + 1);
120 }
121 uintptr_t GetPC(size_t Idx) {
122 assert(Idx < GetNumPCs());
123 return PCs()[Idx];
124 }
125
kcc1c0379f2017-08-22 01:28:32 +0000126 void RecordInitialStack();
127 uintptr_t GetMaxStackOffset() const;
george.karpenkov29efa6d2017-08-21 23:25:50 +0000128
129 template<class CallBack>
130 void ForEachObservedPC(CallBack CB) {
131 for (auto PC : ObservedPCs)
132 CB(PC);
133 }
134
kcc3acbe072018-05-16 23:26:37 +0000135 void SetFocusFunction(const std::string &FuncName);
136 bool ObservedFocusFunction();
137
george.karpenkov29efa6d2017-08-21 23:25:50 +0000138private:
139 bool UseCounters = false;
140 bool UseValueProfile = false;
141 bool DoPrintNewPCs = false;
kccec9da662017-08-28 22:52:22 +0000142 size_t NumPrintNewFuncs = 0;
george.karpenkov29efa6d2017-08-21 23:25:50 +0000143
144 struct Module {
145 uint32_t *Start, *Stop;
146 };
147
148 Module Modules[4096];
149 size_t NumModules; // linker-initialized.
150 size_t NumGuards; // linker-initialized.
151
152 struct { uint8_t *Start, *Stop; } ModuleCounters[4096];
153 size_t NumModulesWithInline8bitCounters; // linker-initialized.
154 size_t NumInline8bitCounters;
155
kcc98957a12017-08-25 19:29:47 +0000156 struct PCTableEntry {
157 uintptr_t PC, PCFlags;
158 };
159
160 struct { const PCTableEntry *Start, *Stop; } ModulePCTable[4096];
george.karpenkov29efa6d2017-08-21 23:25:50 +0000161 size_t NumPCTables;
162 size_t NumPCsInPCTables;
163
164 uint8_t *Counters() const;
165 uintptr_t *PCs() const;
166
george.karpenkovfbfa45c2017-08-27 23:20:09 +0000167 Set<uintptr_t> ObservedPCs;
168 Set<uintptr_t> ObservedFuncs;
george.karpenkov29efa6d2017-08-21 23:25:50 +0000169
kcc3acbe072018-05-16 23:26:37 +0000170 std::pair<size_t, size_t> FocusFunction = {-1, -1}; // Module and PC IDs.
171
172
george.karpenkov29efa6d2017-08-21 23:25:50 +0000173 ValueBitMap ValueProfileMap;
kcc1c0379f2017-08-22 01:28:32 +0000174 uintptr_t InitialStack;
george.karpenkov29efa6d2017-08-21 23:25:50 +0000175};
176
177template <class Callback>
178// void Callback(size_t FirstFeature, size_t Idx, uint8_t Value);
179ATTRIBUTE_NO_SANITIZE_ALL
180void ForEachNonZeroByte(const uint8_t *Begin, const uint8_t *End,
181 size_t FirstFeature, Callback Handle8bitCounter) {
182 typedef uintptr_t LargeType;
183 const size_t Step = sizeof(LargeType) / sizeof(uint8_t);
184 const size_t StepMask = Step - 1;
185 auto P = Begin;
186 // Iterate by 1 byte until either the alignment boundary or the end.
187 for (; reinterpret_cast<uintptr_t>(P) & StepMask && P < End; P++)
188 if (uint8_t V = *P)
189 Handle8bitCounter(FirstFeature, P - Begin, V);
190
191 // Iterate by Step bytes at a time.
192 for (; P < End; P += Step)
193 if (LargeType Bundle = *reinterpret_cast<const LargeType *>(P))
194 for (size_t I = 0; I < Step; I++, Bundle >>= 8)
195 if (uint8_t V = Bundle & 0xff)
196 Handle8bitCounter(FirstFeature, P - Begin + I, V);
197
198 // Iterate by 1 byte until the end.
199 for (; P < End; P++)
200 if (uint8_t V = *P)
201 Handle8bitCounter(FirstFeature, P - Begin, V);
202}
203
delcypher64c03342017-11-28 17:41:58 +0000204// Given a non-zero Counter returns a number in the range [0,7].
kcc1c0379f2017-08-22 01:28:32 +0000205template<class T>
206unsigned CounterToFeature(T Counter) {
delcypher64c03342017-11-28 17:41:58 +0000207 // Returns a feature number by placing Counters into buckets as illustrated
208 // below.
209 //
210 // Counter bucket: [1] [2] [3] [4-7] [8-15] [16-31] [32-127] [128+]
211 // Feature number: 0 1 2 3 4 5 6 7
212 //
213 // This is a heuristic taken from AFL (see
214 // http://lcamtuf.coredump.cx/afl/technical_details.txt).
215 //
216 // This implementation may change in the future so clients should
217 // not rely on it.
george.karpenkov29efa6d2017-08-21 23:25:50 +0000218 assert(Counter);
219 unsigned Bit = 0;
220 /**/ if (Counter >= 128) Bit = 7;
221 else if (Counter >= 32) Bit = 6;
222 else if (Counter >= 16) Bit = 5;
223 else if (Counter >= 8) Bit = 4;
224 else if (Counter >= 4) Bit = 3;
225 else if (Counter >= 3) Bit = 2;
226 else if (Counter >= 2) Bit = 1;
kcc1c0379f2017-08-22 01:28:32 +0000227 return Bit;
228}
229
kccc924e382017-09-15 22:10:36 +0000230template <class Callback> // void Callback(size_t Feature)
kcc1c0379f2017-08-22 01:28:32 +0000231ATTRIBUTE_NO_SANITIZE_ADDRESS
232__attribute__((noinline))
233void TracePC::CollectFeatures(Callback HandleFeature) const {
234 uint8_t *Counters = this->Counters();
235 size_t N = GetNumPCs();
236 auto Handle8bitCounter = [&](size_t FirstFeature,
237 size_t Idx, uint8_t Counter) {
kcc1f5638d2017-12-08 22:21:42 +0000238 if (UseCounters)
239 HandleFeature(FirstFeature + Idx * 8 + CounterToFeature(Counter));
240 else
241 HandleFeature(FirstFeature + Idx);
george.karpenkov29efa6d2017-08-21 23:25:50 +0000242 };
243
244 size_t FirstFeature = 0;
245
246 if (!NumInline8bitCounters) {
247 ForEachNonZeroByte(Counters, Counters + N, FirstFeature, Handle8bitCounter);
248 FirstFeature += N * 8;
249 }
250
251 if (NumInline8bitCounters) {
252 for (size_t i = 0; i < NumModulesWithInline8bitCounters; i++) {
253 ForEachNonZeroByte(ModuleCounters[i].Start, ModuleCounters[i].Stop,
254 FirstFeature, Handle8bitCounter);
255 FirstFeature += 8 * (ModuleCounters[i].Stop - ModuleCounters[i].Start);
256 }
257 }
258
george.karpenkov29efa6d2017-08-21 23:25:50 +0000259 ForEachNonZeroByte(ExtraCountersBegin(), ExtraCountersEnd(), FirstFeature,
260 Handle8bitCounter);
261 FirstFeature += (ExtraCountersEnd() - ExtraCountersBegin()) * 8;
262
263 if (UseValueProfile) {
264 ValueProfileMap.ForEach([&](size_t Idx) {
265 HandleFeature(FirstFeature + Idx);
266 });
267 FirstFeature += ValueProfileMap.SizeInBits();
268 }
269
kccd804ddb2017-12-09 19:18:10 +0000270 // Step function, grows similar to 8 * Log_2(A).
271 auto StackDepthStepFunction = [](uint32_t A) -> uint32_t {
dor1sa66e7762017-12-20 19:31:51 +0000272 if (!A) return A;
kcce29d7e32017-12-12 23:11:28 +0000273 uint32_t Log2 = Log(A);
kccd804ddb2017-12-09 19:18:10 +0000274 if (Log2 < 3) return A;
275 Log2 -= 3;
276 return (Log2 + 1) * 8 + ((A >> Log2) & 7);
277 };
278 assert(StackDepthStepFunction(1024) == 64);
279 assert(StackDepthStepFunction(1024 * 4) == 80);
280 assert(StackDepthStepFunction(1024 * 1024) == 144);
281
george.karpenkov29efa6d2017-08-21 23:25:50 +0000282 if (auto MaxStackOffset = GetMaxStackOffset())
kccd804ddb2017-12-09 19:18:10 +0000283 HandleFeature(FirstFeature + StackDepthStepFunction(MaxStackOffset / 8));
george.karpenkov29efa6d2017-08-21 23:25:50 +0000284}
285
286extern TracePC TPC;
287
288} // namespace fuzzer
289
290#endif // LLVM_FUZZER_TRACE_PC