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Aaron Ballmanef116982015-01-29 16:58:29 +00001//===- FuzzerLoop.cpp - Fuzzer's main loop --------------------------------===//
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's main loop.
10//===----------------------------------------------------------------------===//
11
12#include "FuzzerInternal.h"
Kostya Serebryany4b96ce92015-02-03 19:42:05 +000013#include <sanitizer/coverage_interface.h>
Aaron Ballmanef116982015-01-29 16:58:29 +000014#include <algorithm>
Aaron Ballmanef116982015-01-29 16:58:29 +000015#include <iostream>
Aaron Ballmanef116982015-01-29 16:58:29 +000016
17// This function should be defined by the user.
18extern "C" void TestOneInput(const uint8_t *Data, size_t Size);
19
20namespace fuzzer {
21
22// static
23Unit Fuzzer::CurrentUnit;
24system_clock::time_point Fuzzer::UnitStartTime;
25
26void Fuzzer::SetDeathCallback() {
27 __sanitizer_set_death_callback(DeathCallback);
28}
29
30void Fuzzer::DeathCallback() {
31 std::cerr << "DEATH: " << std::endl;
32 Print(CurrentUnit, "\n");
33 PrintASCII(CurrentUnit, "\n");
34 WriteToCrash(CurrentUnit, "crash-");
35}
36
37void Fuzzer::AlarmCallback() {
38 size_t Seconds =
39 duration_cast<seconds>(system_clock::now() - UnitStartTime).count();
40 std::cerr << "ALARM: working on the last Unit for " << Seconds << " seconds"
41 << std::endl;
42 if (Seconds >= 3) {
43 Print(CurrentUnit, "\n");
44 PrintASCII(CurrentUnit, "\n");
45 WriteToCrash(CurrentUnit, "timeout-");
46 }
47 exit(1);
48}
49
50void Fuzzer::ShuffleAndMinimize() {
Kostya Serebryany92e04762015-02-04 23:42:42 +000051 bool PreferSmall =
52 (Options.PreferSmallDuringInitialShuffle == 1 ||
53 (Options.PreferSmallDuringInitialShuffle == -1 && rand() % 2));
Aaron Ballmanef116982015-01-29 16:58:29 +000054 if (Options.Verbosity)
Kostya Serebryany92e04762015-02-04 23:42:42 +000055 std::cerr << "Shuffle: Size: " << Corpus.size()
56 << " prefer small: " << PreferSmall
57 << "\n";
Aaron Ballmanef116982015-01-29 16:58:29 +000058 std::vector<Unit> NewCorpus;
Kostya Serebryany92e04762015-02-04 23:42:42 +000059 std::random_shuffle(Corpus.begin(), Corpus.end());
60 if (PreferSmall)
61 std::stable_sort(
62 Corpus.begin(), Corpus.end(),
63 [](const Unit &A, const Unit &B) { return A.size() < B.size(); });
Aaron Ballmanef116982015-01-29 16:58:29 +000064 size_t MaxCov = 0;
65 Unit &U = CurrentUnit;
66 for (const auto &C : Corpus) {
67 for (size_t First = 0; First < 1; First++) {
68 U.clear();
69 size_t Last = std::min(First + Options.MaxLen, C.size());
70 U.insert(U.begin(), C.begin() + First, C.begin() + Last);
71 size_t NewCoverage = RunOne(U);
72 if (NewCoverage) {
73 MaxCov = NewCoverage;
74 NewCorpus.push_back(U);
75 if (Options.Verbosity >= 2)
Kostya Serebryany92e04762015-02-04 23:42:42 +000076 std::cerr << "NEW0: " << NewCoverage
77 << " L " << U.size()
78 << "\n";
Aaron Ballmanef116982015-01-29 16:58:29 +000079 }
80 }
81 }
82 Corpus = NewCorpus;
83 if (Options.Verbosity)
84 std::cerr << "Shuffle done: " << Corpus.size() << " IC: " << MaxCov << "\n";
85}
86
87size_t Fuzzer::RunOne(const Unit &U) {
88 UnitStartTime = system_clock::now();
89 TotalNumberOfRuns++;
Kostya Serebryany2c1b33b2015-01-29 23:01:07 +000090 if (Options.UseFullCoverageSet)
91 return RunOneMaximizeFullCoverageSet(U);
92 return RunOneMaximizeTotalCoverage(U);
93}
94
95static uintptr_t HashOfArrayOfPCs(uintptr_t *PCs, uintptr_t NumPCs) {
96 uintptr_t Res = 0;
97 for (uintptr_t i = 0; i < NumPCs; i++) {
98 Res = (Res + PCs[i]) * 7;
99 }
100 return Res;
101}
102
103// Fuly reset the current coverage state, run a single unit,
104// compute a hash function from the full coverage set,
105// return non-zero if the hash value is new.
106// This produces tons of new units and as is it's only suitable for small tests,
107// e.g. test/FullCoverageSetTest.cpp. FIXME: make it scale.
108size_t Fuzzer::RunOneMaximizeFullCoverageSet(const Unit &U) {
109 __sanitizer_reset_coverage();
110 TestOneInput(U.data(), U.size());
111 uintptr_t *PCs;
112 uintptr_t NumPCs =__sanitizer_get_coverage_guards(&PCs);
113 if (FullCoverageSets.insert(HashOfArrayOfPCs(PCs, NumPCs)).second)
114 return FullCoverageSets.size();
115 return 0;
116}
117
118size_t Fuzzer::RunOneMaximizeTotalCoverage(const Unit &U) {
Aaron Ballmanef116982015-01-29 16:58:29 +0000119 size_t OldCoverage = __sanitizer_get_total_unique_coverage();
120 TestOneInput(U.data(), U.size());
121 size_t NewCoverage = __sanitizer_get_total_unique_coverage();
122 if (!(TotalNumberOfRuns & (TotalNumberOfRuns - 1)) && Options.Verbosity) {
Kostya Serebryany92e04762015-02-04 23:42:42 +0000123 size_t Seconds = secondsSinceProcessStartUp();
Aaron Ballmanef116982015-01-29 16:58:29 +0000124 std::cerr
125 << "#" << TotalNumberOfRuns
126 << "\tcov: " << NewCoverage
127 << "\texec/s: " << (Seconds ? TotalNumberOfRuns / Seconds : 0) << "\n";
128 }
129 if (NewCoverage > OldCoverage)
130 return NewCoverage;
131 return 0;
132}
133
134void Fuzzer::WriteToOutputCorpus(const Unit &U) {
135 if (Options.OutputCorpus.empty()) return;
136 std::string Path = DirPlusFile(Options.OutputCorpus, Hash(U));
137 WriteToFile(U, Path);
138 if (Options.Verbosity >= 2)
139 std::cerr << "Written to " << Path << std::endl;
140}
141
142void Fuzzer::WriteToCrash(const Unit &U, const char *Prefix) {
143 std::string Path = Prefix + Hash(U);
144 WriteToFile(U, Path);
145 std::cerr << "CRASHED; file written to " << Path << std::endl;
146}
147
148void Fuzzer::SaveCorpus() {
149 if (Options.OutputCorpus.empty()) return;
150 for (const auto &U : Corpus)
151 WriteToFile(U, DirPlusFile(Options.OutputCorpus, Hash(U)));
152 if (Options.Verbosity)
153 std::cerr << "Written corpus of " << Corpus.size() << " files to "
154 << Options.OutputCorpus << "\n";
155}
156
157size_t Fuzzer::MutateAndTestOne(Unit *U) {
158 size_t NewUnits = 0;
Kostya Serebryany5b266a82015-02-04 19:10:20 +0000159 for (int i = 0; i < Options.MutateDepth; i++) {
Kostya Serebryany33f86692015-02-04 22:20:09 +0000160 if (TotalNumberOfRuns >= Options.MaxNumberOfRuns)
161 return NewUnits;
Aaron Ballmanef116982015-01-29 16:58:29 +0000162 Mutate(U, Options.MaxLen);
Aaron Ballmanef116982015-01-29 16:58:29 +0000163 size_t NewCoverage = RunOne(*U);
164 if (NewCoverage) {
165 Corpus.push_back(*U);
166 NewUnits++;
167 if (Options.Verbosity) {
168 std::cerr << "#" << TotalNumberOfRuns
169 << "\tNEW: " << NewCoverage
170 << " L: " << U->size()
Kostya Serebryanyfe43aa82015-02-04 01:22:57 +0000171 << " S: " << Corpus.size()
Kostya Serebryany5b266a82015-02-04 19:10:20 +0000172 << " I: " << i
Aaron Ballmanef116982015-01-29 16:58:29 +0000173 << "\t";
174 if (U->size() < 30) {
175 PrintASCII(*U);
176 std::cerr << "\t";
177 Print(*U);
178 }
179 std::cerr << "\n";
180 }
181 WriteToOutputCorpus(*U);
182 if (Options.ExitOnFirst)
183 exit(0);
184 }
185 }
186 return NewUnits;
187}
188
189size_t Fuzzer::Loop(size_t NumIterations) {
190 size_t NewUnits = 0;
191 for (size_t i = 1; i <= NumIterations; i++) {
Kostya Serebryany33f86692015-02-04 22:20:09 +0000192 for (size_t J1 = 0; J1 < Corpus.size(); J1++) {
193 if (TotalNumberOfRuns >= Options.MaxNumberOfRuns)
194 return NewUnits;
195 // First, simply mutate the unit w/o doing crosses.
196 CurrentUnit = Corpus[J1];
197 NewUnits += MutateAndTestOne(&CurrentUnit);
198 // Now, cross with others.
199 if (Options.DoCrossOver) {
Aaron Ballmanef116982015-01-29 16:58:29 +0000200 for (size_t J2 = 0; J2 < Corpus.size(); J2++) {
201 CurrentUnit.clear();
202 CrossOver(Corpus[J1], Corpus[J2], &CurrentUnit, Options.MaxLen);
203 NewUnits += MutateAndTestOne(&CurrentUnit);
204 }
205 }
Aaron Ballmanef116982015-01-29 16:58:29 +0000206 }
207 }
208 return NewUnits;
209}
210
211} // namespace fuzzer