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George Karpenkov10ab2ac2017-08-21 23:25:501//===- 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 "FuzzerCorpus.h"
13#include "FuzzerIO.h"
14#include "FuzzerInternal.h"
15#include "FuzzerMutate.h"
16#include "FuzzerRandom.h"
17#include "FuzzerShmem.h"
18#include "FuzzerTracePC.h"
19#include <algorithm>
20#include <cstring>
21#include <memory>
Vitaly Buka7dbc1d82017-11-01 03:02:5922#include <mutex>
George Karpenkov10ab2ac2017-08-21 23:25:5023#include <set>
24
25#if defined(__has_include)
26#if __has_include(<sanitizer / lsan_interface.h>)
27#include <sanitizer/lsan_interface.h>
28#endif
29#endif
30
31#define NO_SANITIZE_MEMORY
32#if defined(__has_feature)
33#if __has_feature(memory_sanitizer)
34#undef NO_SANITIZE_MEMORY
35#define NO_SANITIZE_MEMORY __attribute__((no_sanitize_memory))
36#endif
37#endif
38
39namespace fuzzer {
40static const size_t kMaxUnitSizeToPrint = 256;
41
42thread_local bool Fuzzer::IsMyThread;
43
44SharedMemoryRegion SMR;
45
46// Only one Fuzzer per process.
47static Fuzzer *F;
48
49// Leak detection is expensive, so we first check if there were more mallocs
50// than frees (using the sanitizer malloc hooks) and only then try to call lsan.
51struct MallocFreeTracer {
52 void Start(int TraceLevel) {
53 this->TraceLevel = TraceLevel;
54 if (TraceLevel)
55 Printf("MallocFreeTracer: START\n");
56 Mallocs = 0;
57 Frees = 0;
58 }
59 // Returns true if there were more mallocs than frees.
60 bool Stop() {
61 if (TraceLevel)
62 Printf("MallocFreeTracer: STOP %zd %zd (%s)\n", Mallocs.load(),
63 Frees.load(), Mallocs == Frees ? "same" : "DIFFERENT");
64 bool Result = Mallocs > Frees;
65 Mallocs = 0;
66 Frees = 0;
67 TraceLevel = 0;
68 return Result;
69 }
70 std::atomic<size_t> Mallocs;
71 std::atomic<size_t> Frees;
72 int TraceLevel = 0;
Vitaly Buka7d223242017-11-02 04:12:1073
74 std::recursive_mutex TraceMutex;
75 bool TraceDisabled = false;
George Karpenkov10ab2ac2017-08-21 23:25:5076};
77
78static MallocFreeTracer AllocTracer;
79
Vitaly Buka7d223242017-11-02 04:12:1080// Locks printing and avoids nested hooks triggered from mallocs/frees in
81// sanitizer.
82class TraceLock {
83public:
84 TraceLock() : Lock(AllocTracer.TraceMutex) {
85 AllocTracer.TraceDisabled = !AllocTracer.TraceDisabled;
86 }
87 ~TraceLock() { AllocTracer.TraceDisabled = !AllocTracer.TraceDisabled; }
88
89 bool IsDisabled() const {
90 // This is already inverted value.
91 return !AllocTracer.TraceDisabled;
92 }
93
94private:
95 std::lock_guard<std::recursive_mutex> Lock;
96};
Vitaly Buka7dbc1d82017-11-01 03:02:5997
George Karpenkov10ab2ac2017-08-21 23:25:5098ATTRIBUTE_NO_SANITIZE_MEMORY
99void MallocHook(const volatile void *ptr, size_t size) {
100 size_t N = AllocTracer.Mallocs++;
101 F->HandleMalloc(size);
102 if (int TraceLevel = AllocTracer.TraceLevel) {
Vitaly Buka7d223242017-11-02 04:12:10103 TraceLock Lock;
104 if (Lock.IsDisabled())
105 return;
George Karpenkov10ab2ac2017-08-21 23:25:50106 Printf("MALLOC[%zd] %p %zd\n", N, ptr, size);
107 if (TraceLevel >= 2 && EF)
Matt Morehouse14cf71a2018-05-08 23:45:05108 PrintStackTrace();
George Karpenkov10ab2ac2017-08-21 23:25:50109 }
110}
111
112ATTRIBUTE_NO_SANITIZE_MEMORY
113void FreeHook(const volatile void *ptr) {
114 size_t N = AllocTracer.Frees++;
115 if (int TraceLevel = AllocTracer.TraceLevel) {
Vitaly Buka7d223242017-11-02 04:12:10116 TraceLock Lock;
117 if (Lock.IsDisabled())
118 return;
George Karpenkov10ab2ac2017-08-21 23:25:50119 Printf("FREE[%zd] %p\n", N, ptr);
120 if (TraceLevel >= 2 && EF)
Matt Morehouse14cf71a2018-05-08 23:45:05121 PrintStackTrace();
George Karpenkov10ab2ac2017-08-21 23:25:50122 }
123}
124
125// Crash on a single malloc that exceeds the rss limit.
126void Fuzzer::HandleMalloc(size_t Size) {
Kostya Serebryanyde9bafb2017-12-01 22:12:04127 if (!Options.MallocLimitMb || (Size >> 20) < (size_t)Options.MallocLimitMb)
George Karpenkov10ab2ac2017-08-21 23:25:50128 return;
129 Printf("==%d== ERROR: libFuzzer: out-of-memory (malloc(%zd))\n", GetPid(),
130 Size);
131 Printf(" To change the out-of-memory limit use -rss_limit_mb=<N>\n\n");
Matt Morehouse14cf71a2018-05-08 23:45:05132 PrintStackTrace();
George Karpenkov10ab2ac2017-08-21 23:25:50133 DumpCurrentUnit("oom-");
134 Printf("SUMMARY: libFuzzer: out-of-memory\n");
135 PrintFinalStats();
136 _Exit(Options.ErrorExitCode); // Stop right now.
137}
138
139Fuzzer::Fuzzer(UserCallback CB, InputCorpus &Corpus, MutationDispatcher &MD,
140 FuzzingOptions Options)
141 : CB(CB), Corpus(Corpus), MD(MD), Options(Options) {
142 if (EF->__sanitizer_set_death_callback)
143 EF->__sanitizer_set_death_callback(StaticDeathCallback);
144 assert(!F);
145 F = this;
146 TPC.ResetMaps();
147 IsMyThread = true;
148 if (Options.DetectLeaks && EF->__sanitizer_install_malloc_and_free_hooks)
149 EF->__sanitizer_install_malloc_and_free_hooks(MallocHook, FreeHook);
150 TPC.SetUseCounters(Options.UseCounters);
151 TPC.SetUseValueProfile(Options.UseValueProfile);
George Karpenkov10ab2ac2017-08-21 23:25:50152
153 if (Options.Verbosity)
154 TPC.PrintModuleInfo();
155 if (!Options.OutputCorpus.empty() && Options.ReloadIntervalSec)
156 EpochOfLastReadOfOutputCorpus = GetEpoch(Options.OutputCorpus);
157 MaxInputLen = MaxMutationLen = Options.MaxLen;
158 TmpMaxMutationLen = Max(size_t(4), Corpus.MaxInputSize());
159 AllocateCurrentUnitData();
160 CurrentUnitSize = 0;
161 memset(BaseSha1, 0, sizeof(BaseSha1));
Kostya Serebryanye9c6f062018-05-16 23:26:37162 TPC.SetFocusFunction(Options.FocusFunction);
Kostya Serebryany1fd005f2018-06-06 01:23:29163 DFT.Init(Options.DataFlowTrace, Options.FocusFunction);
George Karpenkov10ab2ac2017-08-21 23:25:50164}
165
Alex Shlyapnikov5ded0702017-10-23 23:24:33166Fuzzer::~Fuzzer() {}
George Karpenkov10ab2ac2017-08-21 23:25:50167
168void Fuzzer::AllocateCurrentUnitData() {
Alex Shlyapnikov5ded0702017-10-23 23:24:33169 if (CurrentUnitData || MaxInputLen == 0)
170 return;
George Karpenkov10ab2ac2017-08-21 23:25:50171 CurrentUnitData = new uint8_t[MaxInputLen];
172}
173
174void Fuzzer::StaticDeathCallback() {
175 assert(F);
176 F->DeathCallback();
177}
178
179void Fuzzer::DumpCurrentUnit(const char *Prefix) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33180 if (!CurrentUnitData)
181 return; // Happens when running individual inputs.
George Karpenkov10ab2ac2017-08-21 23:25:50182 MD.PrintMutationSequence();
183 Printf("; base unit: %s\n", Sha1ToString(BaseSha1).c_str());
184 size_t UnitSize = CurrentUnitSize;
185 if (UnitSize <= kMaxUnitSizeToPrint) {
186 PrintHexArray(CurrentUnitData, UnitSize, "\n");
187 PrintASCII(CurrentUnitData, UnitSize, "\n");
188 }
189 WriteUnitToFileWithPrefix({CurrentUnitData, CurrentUnitData + UnitSize},
190 Prefix);
191}
192
193NO_SANITIZE_MEMORY
194void Fuzzer::DeathCallback() {
195 DumpCurrentUnit("crash-");
196 PrintFinalStats();
197}
198
199void Fuzzer::StaticAlarmCallback() {
200 assert(F);
201 F->AlarmCallback();
202}
203
204void Fuzzer::StaticCrashSignalCallback() {
205 assert(F);
206 F->CrashCallback();
207}
208
209void Fuzzer::StaticExitCallback() {
210 assert(F);
211 F->ExitCallback();
212}
213
214void Fuzzer::StaticInterruptCallback() {
215 assert(F);
216 F->InterruptCallback();
217}
218
Kostya Serebryanya2ca2dc2017-11-09 20:30:19219void Fuzzer::StaticGracefulExitCallback() {
220 assert(F);
221 F->GracefulExitRequested = true;
222 Printf("INFO: signal received, trying to exit gracefully\n");
223}
224
George Karpenkov10ab2ac2017-08-21 23:25:50225void Fuzzer::StaticFileSizeExceedCallback() {
226 Printf("==%lu== ERROR: libFuzzer: file size exceeded\n", GetPid());
227 exit(1);
228}
229
230void Fuzzer::CrashCallback() {
Matt Morehouse7764a042018-05-02 02:55:28231 if (EF->__sanitizer_acquire_crash_state)
232 EF->__sanitizer_acquire_crash_state();
George Karpenkov10ab2ac2017-08-21 23:25:50233 Printf("==%lu== ERROR: libFuzzer: deadly signal\n", GetPid());
Matt Morehouse14cf71a2018-05-08 23:45:05234 PrintStackTrace();
George Karpenkov10ab2ac2017-08-21 23:25:50235 Printf("NOTE: libFuzzer has rudimentary signal handlers.\n"
236 " Combine libFuzzer with AddressSanitizer or similar for better "
237 "crash reports.\n");
238 Printf("SUMMARY: libFuzzer: deadly signal\n");
239 DumpCurrentUnit("crash-");
240 PrintFinalStats();
Alex Shlyapnikov5ded0702017-10-23 23:24:33241 _Exit(Options.ErrorExitCode); // Stop right now.
George Karpenkov10ab2ac2017-08-21 23:25:50242}
243
244void Fuzzer::ExitCallback() {
245 if (!RunningCB)
246 return; // This exit did not come from the user callback
Matt Morehouse52fd1692018-05-01 21:01:53247 if (EF->__sanitizer_acquire_crash_state &&
248 !EF->__sanitizer_acquire_crash_state())
249 return;
George Karpenkov10ab2ac2017-08-21 23:25:50250 Printf("==%lu== ERROR: libFuzzer: fuzz target exited\n", GetPid());
Matt Morehouse14cf71a2018-05-08 23:45:05251 PrintStackTrace();
George Karpenkov10ab2ac2017-08-21 23:25:50252 Printf("SUMMARY: libFuzzer: fuzz target exited\n");
253 DumpCurrentUnit("crash-");
254 PrintFinalStats();
255 _Exit(Options.ErrorExitCode);
256}
257
Kostya Serebryanya2ca2dc2017-11-09 20:30:19258void Fuzzer::MaybeExitGracefully() {
259 if (!GracefulExitRequested) return;
260 Printf("==%lu== INFO: libFuzzer: exiting as requested\n", GetPid());
261 PrintFinalStats();
262 _Exit(0);
263}
264
George Karpenkov10ab2ac2017-08-21 23:25:50265void Fuzzer::InterruptCallback() {
266 Printf("==%lu== libFuzzer: run interrupted; exiting\n", GetPid());
267 PrintFinalStats();
Alex Shlyapnikov5ded0702017-10-23 23:24:33268 _Exit(0); // Stop right now, don't perform any at-exit actions.
George Karpenkov10ab2ac2017-08-21 23:25:50269}
270
271NO_SANITIZE_MEMORY
272void Fuzzer::AlarmCallback() {
273 assert(Options.UnitTimeoutSec > 0);
274 // In Windows Alarm callback is executed by a different thread.
275#if !LIBFUZZER_WINDOWS
Alex Shlyapnikov5ded0702017-10-23 23:24:33276 if (!InFuzzingThread())
277 return;
George Karpenkov10ab2ac2017-08-21 23:25:50278#endif
279 if (!RunningCB)
280 return; // We have not started running units yet.
281 size_t Seconds =
282 duration_cast<seconds>(system_clock::now() - UnitStartTime).count();
283 if (Seconds == 0)
284 return;
285 if (Options.Verbosity >= 2)
286 Printf("AlarmCallback %zd\n", Seconds);
287 if (Seconds >= (size_t)Options.UnitTimeoutSec) {
Matt Morehouse52fd1692018-05-01 21:01:53288 if (EF->__sanitizer_acquire_crash_state &&
289 !EF->__sanitizer_acquire_crash_state())
290 return;
George Karpenkov10ab2ac2017-08-21 23:25:50291 Printf("ALARM: working on the last Unit for %zd seconds\n", Seconds);
292 Printf(" and the timeout value is %d (use -timeout=N to change)\n",
293 Options.UnitTimeoutSec);
294 DumpCurrentUnit("timeout-");
295 Printf("==%lu== ERROR: libFuzzer: timeout after %d seconds\n", GetPid(),
296 Seconds);
Matt Morehouse14cf71a2018-05-08 23:45:05297 PrintStackTrace();
George Karpenkov10ab2ac2017-08-21 23:25:50298 Printf("SUMMARY: libFuzzer: timeout\n");
299 PrintFinalStats();
300 _Exit(Options.TimeoutExitCode); // Stop right now.
301 }
302}
303
304void Fuzzer::RssLimitCallback() {
Matt Morehouse52fd1692018-05-01 21:01:53305 if (EF->__sanitizer_acquire_crash_state &&
306 !EF->__sanitizer_acquire_crash_state())
307 return;
George Karpenkov10ab2ac2017-08-21 23:25:50308 Printf(
309 "==%lu== ERROR: libFuzzer: out-of-memory (used: %zdMb; limit: %zdMb)\n",
310 GetPid(), GetPeakRSSMb(), Options.RssLimitMb);
311 Printf(" To change the out-of-memory limit use -rss_limit_mb=<N>\n\n");
Matt Morehouse14cf71a2018-05-08 23:45:05312 PrintMemoryProfile();
George Karpenkov10ab2ac2017-08-21 23:25:50313 DumpCurrentUnit("oom-");
314 Printf("SUMMARY: libFuzzer: out-of-memory\n");
315 PrintFinalStats();
316 _Exit(Options.ErrorExitCode); // Stop right now.
317}
318
319void Fuzzer::PrintStats(const char *Where, const char *End, size_t Units) {
320 size_t ExecPerSec = execPerSec();
321 if (!Options.Verbosity)
322 return;
323 Printf("#%zd\t%s", TotalNumberOfRuns, Where);
324 if (size_t N = TPC.GetTotalPCCoverage())
325 Printf(" cov: %zd", N);
326 if (size_t N = Corpus.NumFeatures())
Alex Shlyapnikov5ded0702017-10-23 23:24:33327 Printf(" ft: %zd", N);
George Karpenkov10ab2ac2017-08-21 23:25:50328 if (!Corpus.empty()) {
329 Printf(" corp: %zd", Corpus.NumActiveUnits());
330 if (size_t N = Corpus.SizeInBytes()) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33331 if (N < (1 << 14))
George Karpenkov10ab2ac2017-08-21 23:25:50332 Printf("/%zdb", N);
333 else if (N < (1 << 24))
334 Printf("/%zdKb", N >> 10);
335 else
336 Printf("/%zdMb", N >> 20);
337 }
Kostya Serebryanye9c6f062018-05-16 23:26:37338 if (size_t FF = Corpus.NumInputsThatTouchFocusFunction())
339 Printf(" focus: %zd", FF);
George Karpenkov10ab2ac2017-08-21 23:25:50340 }
Matt Morehouseddf352b2018-02-22 19:00:17341 if (TmpMaxMutationLen)
342 Printf(" lim: %zd", TmpMaxMutationLen);
George Karpenkov10ab2ac2017-08-21 23:25:50343 if (Units)
344 Printf(" units: %zd", Units);
345
346 Printf(" exec/s: %zd", ExecPerSec);
347 Printf(" rss: %zdMb", GetPeakRSSMb());
348 Printf("%s", End);
349}
350
351void Fuzzer::PrintFinalStats() {
352 if (Options.PrintCoverage)
353 TPC.PrintCoverage();
Kostya Serebryany69c2b712018-05-21 19:47:00354 if (Options.DumpCoverage)
355 TPC.DumpCoverage();
George Karpenkov10ab2ac2017-08-21 23:25:50356 if (Options.PrintCorpusStats)
357 Corpus.PrintStats();
Alex Shlyapnikov5ded0702017-10-23 23:24:33358 if (!Options.PrintFinalStats)
359 return;
George Karpenkov10ab2ac2017-08-21 23:25:50360 size_t ExecPerSec = execPerSec();
361 Printf("stat::number_of_executed_units: %zd\n", TotalNumberOfRuns);
362 Printf("stat::average_exec_per_sec: %zd\n", ExecPerSec);
363 Printf("stat::new_units_added: %zd\n", NumberOfNewUnitsAdded);
364 Printf("stat::slowest_unit_time_sec: %zd\n", TimeOfLongestUnitInSeconds);
365 Printf("stat::peak_rss_mb: %zd\n", GetPeakRSSMb());
366}
367
368void Fuzzer::SetMaxInputLen(size_t MaxInputLen) {
369 assert(this->MaxInputLen == 0); // Can only reset MaxInputLen from 0 to non-0.
370 assert(MaxInputLen);
371 this->MaxInputLen = MaxInputLen;
372 this->MaxMutationLen = MaxInputLen;
373 AllocateCurrentUnitData();
374 Printf("INFO: -max_len is not provided; "
375 "libFuzzer will not generate inputs larger than %zd bytes\n",
376 MaxInputLen);
377}
378
379void Fuzzer::SetMaxMutationLen(size_t MaxMutationLen) {
380 assert(MaxMutationLen && MaxMutationLen <= MaxInputLen);
381 this->MaxMutationLen = MaxMutationLen;
382}
383
384void Fuzzer::CheckExitOnSrcPosOrItem() {
385 if (!Options.ExitOnSrcPos.empty()) {
George Karpenkovbebcbfb2017-08-27 23:20:09386 static auto *PCsSet = new Set<uintptr_t>;
George Karpenkov10ab2ac2017-08-21 23:25:50387 auto HandlePC = [&](uintptr_t PC) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33388 if (!PCsSet->insert(PC).second)
389 return;
George Karpenkov10ab2ac2017-08-21 23:25:50390 std::string Descr = DescribePC("%F %L", PC + 1);
391 if (Descr.find(Options.ExitOnSrcPos) != std::string::npos) {
392 Printf("INFO: found line matching '%s', exiting.\n",
393 Options.ExitOnSrcPos.c_str());
394 _Exit(0);
395 }
396 };
397 TPC.ForEachObservedPC(HandlePC);
398 }
399 if (!Options.ExitOnItem.empty()) {
400 if (Corpus.HasUnit(Options.ExitOnItem)) {
401 Printf("INFO: found item with checksum '%s', exiting.\n",
402 Options.ExitOnItem.c_str());
403 _Exit(0);
404 }
405 }
406}
407
408void Fuzzer::RereadOutputCorpus(size_t MaxSize) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33409 if (Options.OutputCorpus.empty() || !Options.ReloadIntervalSec)
410 return;
George Karpenkovbebcbfb2017-08-27 23:20:09411 Vector<Unit> AdditionalCorpus;
George Karpenkov10ab2ac2017-08-21 23:25:50412 ReadDirToVectorOfUnits(Options.OutputCorpus.c_str(), &AdditionalCorpus,
413 &EpochOfLastReadOfOutputCorpus, MaxSize,
414 /*ExitOnError*/ false);
415 if (Options.Verbosity >= 2)
416 Printf("Reload: read %zd new units.\n", AdditionalCorpus.size());
417 bool Reloaded = false;
418 for (auto &U : AdditionalCorpus) {
419 if (U.size() > MaxSize)
420 U.resize(MaxSize);
421 if (!Corpus.HasUnit(U)) {
422 if (RunOne(U.data(), U.size())) {
423 CheckExitOnSrcPosOrItem();
424 Reloaded = true;
425 }
426 }
427 }
428 if (Reloaded)
429 PrintStats("RELOAD");
430}
431
George Karpenkov10ab2ac2017-08-21 23:25:50432void Fuzzer::PrintPulseAndReportSlowInput(const uint8_t *Data, size_t Size) {
433 auto TimeOfUnit =
434 duration_cast<seconds>(UnitStopTime - UnitStartTime).count();
435 if (!(TotalNumberOfRuns & (TotalNumberOfRuns - 1)) &&
436 secondsSinceProcessStartUp() >= 2)
437 PrintStats("pulse ");
438 if (TimeOfUnit > TimeOfLongestUnitInSeconds * 1.1 &&
439 TimeOfUnit >= Options.ReportSlowUnits) {
440 TimeOfLongestUnitInSeconds = TimeOfUnit;
441 Printf("Slowest unit: %zd s:\n", TimeOfLongestUnitInSeconds);
442 WriteUnitToFileWithPrefix({Data, Data + Size}, "slow-unit-");
443 }
444}
445
446bool Fuzzer::RunOne(const uint8_t *Data, size_t Size, bool MayDeleteFile,
Kostya Serebryanyad05ee02017-12-01 19:18:38447 InputInfo *II, bool *FoundUniqFeatures) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33448 if (!Size)
449 return false;
George Karpenkov10ab2ac2017-08-21 23:25:50450
451 ExecuteCallback(Data, Size);
452
453 UniqFeatureSetTmp.clear();
454 size_t FoundUniqFeaturesOfII = 0;
455 size_t NumUpdatesBefore = Corpus.NumFeatureUpdates();
456 TPC.CollectFeatures([&](size_t Feature) {
Kostya Serebryany2659c632017-12-08 22:21:42457 if (Options.UseFeatureFrequency)
458 Corpus.UpdateFeatureFrequency(Feature);
George Karpenkov10ab2ac2017-08-21 23:25:50459 if (Corpus.AddFeature(Feature, Size, Options.Shrink))
460 UniqFeatureSetTmp.push_back(Feature);
461 if (Options.ReduceInputs && II)
462 if (std::binary_search(II->UniqFeatureSet.begin(),
463 II->UniqFeatureSet.end(), Feature))
464 FoundUniqFeaturesOfII++;
465 });
Kostya Serebryanyad05ee02017-12-01 19:18:38466 if (FoundUniqFeatures)
467 *FoundUniqFeatures = FoundUniqFeaturesOfII;
George Karpenkov10ab2ac2017-08-21 23:25:50468 PrintPulseAndReportSlowInput(Data, Size);
469 size_t NumNewFeatures = Corpus.NumFeatureUpdates() - NumUpdatesBefore;
470 if (NumNewFeatures) {
471 TPC.UpdateObservedPCs();
472 Corpus.AddToCorpus({Data, Data + Size}, NumNewFeatures, MayDeleteFile,
Kostya Serebryanye9c6f062018-05-16 23:26:37473 TPC.ObservedFocusFunction(),
George Karpenkov10ab2ac2017-08-21 23:25:50474 UniqFeatureSetTmp);
475 return true;
476 }
477 if (II && FoundUniqFeaturesOfII &&
478 FoundUniqFeaturesOfII == II->UniqFeatureSet.size() &&
479 II->U.size() > Size) {
480 Corpus.Replace(II, {Data, Data + Size});
481 return true;
482 }
483 return false;
484}
485
486size_t Fuzzer::GetCurrentUnitInFuzzingThead(const uint8_t **Data) const {
487 assert(InFuzzingThread());
488 *Data = CurrentUnitData;
489 return CurrentUnitSize;
490}
491
492void Fuzzer::CrashOnOverwrittenData() {
493 Printf("==%d== ERROR: libFuzzer: fuzz target overwrites it's const input\n",
494 GetPid());
495 DumpCurrentUnit("crash-");
496 Printf("SUMMARY: libFuzzer: out-of-memory\n");
497 _Exit(Options.ErrorExitCode); // Stop right now.
498}
499
500// Compare two arrays, but not all bytes if the arrays are large.
501static bool LooseMemeq(const uint8_t *A, const uint8_t *B, size_t Size) {
502 const size_t Limit = 64;
503 if (Size <= 64)
504 return !memcmp(A, B, Size);
505 // Compare first and last Limit/2 bytes.
506 return !memcmp(A, B, Limit / 2) &&
507 !memcmp(A + Size - Limit / 2, B + Size - Limit / 2, Limit / 2);
508}
509
510void Fuzzer::ExecuteCallback(const uint8_t *Data, size_t Size) {
511 TPC.RecordInitialStack();
512 TotalNumberOfRuns++;
513 assert(InFuzzingThread());
514 if (SMR.IsClient())
515 SMR.WriteByteArray(Data, Size);
516 // We copy the contents of Unit into a separate heap buffer
517 // so that we reliably find buffer overflows in it.
518 uint8_t *DataCopy = new uint8_t[Size];
519 memcpy(DataCopy, Data, Size);
520 if (CurrentUnitData && CurrentUnitData != Data)
521 memcpy(CurrentUnitData, Data, Size);
522 CurrentUnitSize = Size;
523 AllocTracer.Start(Options.TraceMalloc);
524 UnitStartTime = system_clock::now();
525 TPC.ResetMaps();
526 RunningCB = true;
527 int Res = CB(DataCopy, Size);
528 RunningCB = false;
529 UnitStopTime = system_clock::now();
530 (void)Res;
531 assert(Res == 0);
532 HasMoreMallocsThanFrees = AllocTracer.Stop();
533 if (!LooseMemeq(DataCopy, Data, Size))
534 CrashOnOverwrittenData();
535 CurrentUnitSize = 0;
536 delete[] DataCopy;
537}
538
539void Fuzzer::WriteToOutputCorpus(const Unit &U) {
540 if (Options.OnlyASCII)
541 assert(IsASCII(U));
542 if (Options.OutputCorpus.empty())
543 return;
544 std::string Path = DirPlusFile(Options.OutputCorpus, Hash(U));
545 WriteToFile(U, Path);
546 if (Options.Verbosity >= 2)
547 Printf("Written %zd bytes to %s\n", U.size(), Path.c_str());
548}
549
550void Fuzzer::WriteUnitToFileWithPrefix(const Unit &U, const char *Prefix) {
551 if (!Options.SaveArtifacts)
552 return;
553 std::string Path = Options.ArtifactPrefix + Prefix + Hash(U);
554 if (!Options.ExactArtifactPath.empty())
555 Path = Options.ExactArtifactPath; // Overrides ArtifactPrefix.
556 WriteToFile(U, Path);
557 Printf("artifact_prefix='%s'; Test unit written to %s\n",
558 Options.ArtifactPrefix.c_str(), Path.c_str());
559 if (U.size() <= kMaxUnitSizeToPrint)
560 Printf("Base64: %s\n", Base64(U).c_str());
561}
562
563void Fuzzer::PrintStatusForNewUnit(const Unit &U, const char *Text) {
564 if (!Options.PrintNEW)
565 return;
566 PrintStats(Text, "");
567 if (Options.Verbosity) {
568 Printf(" L: %zd/%zd ", U.size(), Corpus.MaxInputSize());
569 MD.PrintMutationSequence();
570 Printf("\n");
571 }
572}
573
574void Fuzzer::ReportNewCoverage(InputInfo *II, const Unit &U) {
575 II->NumSuccessfullMutations++;
576 MD.RecordSuccessfulMutationSequence();
Alex Shlyapnikov5ded0702017-10-23 23:24:33577 PrintStatusForNewUnit(U, II->Reduced ? "REDUCE" : "NEW ");
George Karpenkov10ab2ac2017-08-21 23:25:50578 WriteToOutputCorpus(U);
579 NumberOfNewUnitsAdded++;
Alex Shlyapnikov5ded0702017-10-23 23:24:33580 CheckExitOnSrcPosOrItem(); // Check only after the unit is saved to corpus.
George Karpenkov10ab2ac2017-08-21 23:25:50581 LastCorpusUpdateRun = TotalNumberOfRuns;
George Karpenkov10ab2ac2017-08-21 23:25:50582}
583
584// Tries detecting a memory leak on the particular input that we have just
585// executed before calling this function.
586void Fuzzer::TryDetectingAMemoryLeak(const uint8_t *Data, size_t Size,
587 bool DuringInitialCorpusExecution) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33588 if (!HasMoreMallocsThanFrees)
589 return; // mallocs==frees, a leak is unlikely.
590 if (!Options.DetectLeaks)
591 return;
Max Moroz3f26dac2017-09-12 02:01:54592 if (!DuringInitialCorpusExecution &&
Alex Shlyapnikov5ded0702017-10-23 23:24:33593 TotalNumberOfRuns >= Options.MaxNumberOfRuns)
594 return;
George Karpenkov10ab2ac2017-08-21 23:25:50595 if (!&(EF->__lsan_enable) || !&(EF->__lsan_disable) ||
596 !(EF->__lsan_do_recoverable_leak_check))
Alex Shlyapnikov5ded0702017-10-23 23:24:33597 return; // No lsan.
George Karpenkov10ab2ac2017-08-21 23:25:50598 // Run the target once again, but with lsan disabled so that if there is
599 // a real leak we do not report it twice.
600 EF->__lsan_disable();
601 ExecuteCallback(Data, Size);
602 EF->__lsan_enable();
Alex Shlyapnikov5ded0702017-10-23 23:24:33603 if (!HasMoreMallocsThanFrees)
604 return; // a leak is unlikely.
George Karpenkov10ab2ac2017-08-21 23:25:50605 if (NumberOfLeakDetectionAttempts++ > 1000) {
606 Options.DetectLeaks = false;
607 Printf("INFO: libFuzzer disabled leak detection after every mutation.\n"
608 " Most likely the target function accumulates allocated\n"
609 " memory in a global state w/o actually leaking it.\n"
610 " You may try running this binary with -trace_malloc=[12]"
611 " to get a trace of mallocs and frees.\n"
612 " If LeakSanitizer is enabled in this process it will still\n"
613 " run on the process shutdown.\n");
614 return;
615 }
616 // Now perform the actual lsan pass. This is expensive and we must ensure
617 // we don't call it too often.
618 if (EF->__lsan_do_recoverable_leak_check()) { // Leak is found, report it.
619 if (DuringInitialCorpusExecution)
620 Printf("\nINFO: a leak has been found in the initial corpus.\n\n");
621 Printf("INFO: to ignore leaks on libFuzzer side use -detect_leaks=0.\n\n");
622 CurrentUnitSize = Size;
623 DumpCurrentUnit("leak-");
624 PrintFinalStats();
Alex Shlyapnikov5ded0702017-10-23 23:24:33625 _Exit(Options.ErrorExitCode); // not exit() to disable lsan further on.
George Karpenkov10ab2ac2017-08-21 23:25:50626 }
627}
628
629void Fuzzer::MutateAndTestOne() {
630 MD.StartMutationSequence();
631
632 auto &II = Corpus.ChooseUnitToMutate(MD.GetRand());
Kostya Serebryany4083d542017-10-11 01:44:26633 if (Options.UseFeatureFrequency)
634 Corpus.UpdateFeatureFrequencyScore(&II);
George Karpenkov10ab2ac2017-08-21 23:25:50635 const auto &U = II.U;
636 memcpy(BaseSha1, II.Sha1, sizeof(BaseSha1));
637 assert(CurrentUnitData);
638 size_t Size = U.size();
639 assert(Size <= MaxInputLen && "Oversized Unit");
640 memcpy(CurrentUnitData, U.data(), Size);
641
642 assert(MaxMutationLen > 0);
643
644 size_t CurrentMaxMutationLen =
645 Min(MaxMutationLen, Max(U.size(), TmpMaxMutationLen));
646 assert(CurrentMaxMutationLen > 0);
647
648 for (int i = 0; i < Options.MutateDepth; i++) {
649 if (TotalNumberOfRuns >= Options.MaxNumberOfRuns)
650 break;
Kostya Serebryanya2ca2dc2017-11-09 20:30:19651 MaybeExitGracefully();
George Karpenkov10ab2ac2017-08-21 23:25:50652 size_t NewSize = 0;
653 NewSize = MD.Mutate(CurrentUnitData, Size, CurrentMaxMutationLen);
654 assert(NewSize > 0 && "Mutator returned empty unit");
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30655 assert(NewSize <= CurrentMaxMutationLen && "Mutator return oversized unit");
George Karpenkov10ab2ac2017-08-21 23:25:50656 Size = NewSize;
657 II.NumExecutedMutations++;
George Karpenkov10ab2ac2017-08-21 23:25:50658
Kostya Serebryanyad05ee02017-12-01 19:18:38659 bool FoundUniqFeatures = false;
660 bool NewCov = RunOne(CurrentUnitData, Size, /*MayDeleteFile=*/true, &II,
661 &FoundUniqFeatures);
George Karpenkov10ab2ac2017-08-21 23:25:50662 TryDetectingAMemoryLeak(CurrentUnitData, Size,
663 /*DuringInitialCorpusExecution*/ false);
Kostya Serebryanyad05ee02017-12-01 19:18:38664 if (NewCov) {
Matt Morehouse947838c2017-11-09 20:44:08665 ReportNewCoverage(&II, {CurrentUnitData, CurrentUnitData + Size});
Kostya Serebryanyad05ee02017-12-01 19:18:38666 break; // We will mutate this input more in the next rounds.
667 }
668 if (Options.ReduceDepth && !FoundUniqFeatures)
669 break;
George Karpenkov10ab2ac2017-08-21 23:25:50670 }
671}
672
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30673void Fuzzer::PurgeAllocator() {
Alex Shlyapnikov5ded0702017-10-23 23:24:33674 if (Options.PurgeAllocatorIntervalSec < 0 || !EF->__sanitizer_purge_allocator)
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30675 return;
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30676 if (duration_cast<seconds>(system_clock::now() -
Alex Shlyapnikov5ded0702017-10-23 23:24:33677 LastAllocatorPurgeAttemptTime)
678 .count() < Options.PurgeAllocatorIntervalSec)
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30679 return;
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30680
681 if (Options.RssLimitMb <= 0 ||
Alex Shlyapnikov5ded0702017-10-23 23:24:33682 GetPeakRSSMb() > static_cast<size_t>(Options.RssLimitMb) / 2)
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30683 EF->__sanitizer_purge_allocator();
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30684
685 LastAllocatorPurgeAttemptTime = system_clock::now();
686}
687
Kostya Serebryany3a8e3c82017-08-29 02:05:01688void Fuzzer::ReadAndExecuteSeedCorpora(const Vector<std::string> &CorpusDirs) {
689 const size_t kMaxSaneLen = 1 << 20;
690 const size_t kMinDefaultLen = 4096;
Kostya Serebryany4faeb872017-08-29 20:51:24691 Vector<SizedFile> SizedFiles;
692 size_t MaxSize = 0;
693 size_t MinSize = -1;
694 size_t TotalSize = 0;
Kostya Serebryany93679be2017-09-12 21:58:07695 size_t LastNumFiles = 0;
Kostya Serebryany4faeb872017-08-29 20:51:24696 for (auto &Dir : CorpusDirs) {
Kostya Serebryany93679be2017-09-12 21:58:07697 GetSizedFilesFromDir(Dir, &SizedFiles);
698 Printf("INFO: % 8zd files found in %s\n", SizedFiles.size() - LastNumFiles,
699 Dir.c_str());
700 LastNumFiles = SizedFiles.size();
701 }
702 for (auto &File : SizedFiles) {
703 MaxSize = Max(File.Size, MaxSize);
704 MinSize = Min(File.Size, MinSize);
705 TotalSize += File.Size;
Kostya Serebryany3a8e3c82017-08-29 02:05:01706 }
Kostya Serebryany4faeb872017-08-29 20:51:24707 if (Options.MaxLen == 0)
708 SetMaxInputLen(std::min(std::max(kMinDefaultLen, MaxSize), kMaxSaneLen));
709 assert(MaxInputLen > 0);
710
Kostya Serebryany51823d32017-10-13 01:12:23711 // Test the callback with empty input and never try it again.
712 uint8_t dummy = 0;
713 ExecuteCallback(&dummy, 0);
714
Kostya Serebryany4faeb872017-08-29 20:51:24715 if (SizedFiles.empty()) {
716 Printf("INFO: A corpus is not provided, starting from an empty corpus\n");
717 Unit U({'\n'}); // Valid ASCII input.
718 RunOne(U.data(), U.size());
719 } else {
720 Printf("INFO: seed corpus: files: %zd min: %zdb max: %zdb total: %zdb"
721 " rss: %zdMb\n",
722 SizedFiles.size(), MinSize, MaxSize, TotalSize, GetPeakRSSMb());
723 if (Options.ShuffleAtStartUp)
724 std::shuffle(SizedFiles.begin(), SizedFiles.end(), MD.GetRand());
725
Kostya Serebryany93679be2017-09-12 21:58:07726 if (Options.PreferSmall) {
727 std::stable_sort(SizedFiles.begin(), SizedFiles.end());
728 assert(SizedFiles.front().Size <= SizedFiles.back().Size);
729 }
Kostya Serebryany4faeb872017-08-29 20:51:24730
731 // Load and execute inputs one by one.
732 for (auto &SF : SizedFiles) {
Kostya Serebryany082e9a72017-08-31 19:17:15733 auto U = FileToVector(SF.File, MaxInputLen, /*ExitOnError=*/false);
Kostya Serebryany4faeb872017-08-29 20:51:24734 assert(U.size() <= MaxInputLen);
735 RunOne(U.data(), U.size());
736 CheckExitOnSrcPosOrItem();
737 TryDetectingAMemoryLeak(U.data(), U.size(),
738 /*DuringInitialCorpusExecution*/ true);
739 }
Kostya Serebryany3a8e3c82017-08-29 02:05:01740 }
741
Kostya Serebryany4faeb872017-08-29 20:51:24742 PrintStats("INITED");
Kostya Serebryanye9c6f062018-05-16 23:26:37743 if (!Options.FocusFunction.empty())
744 Printf("INFO: %zd/%zd inputs touch the focus function\n",
745 Corpus.NumInputsThatTouchFocusFunction(), Corpus.size());
746
Max Morozfe974412018-05-23 19:42:30747 if (Corpus.empty() && Options.MaxNumberOfRuns) {
Kostya Serebryany4faeb872017-08-29 20:51:24748 Printf("ERROR: no interesting inputs were found. "
749 "Is the code instrumented for coverage? Exiting.\n");
750 exit(1);
Kostya Serebryany3a8e3c82017-08-29 02:05:01751 }
Kostya Serebryany3a8e3c82017-08-29 02:05:01752}
753
754void Fuzzer::Loop(const Vector<std::string> &CorpusDirs) {
755 ReadAndExecuteSeedCorpora(CorpusDirs);
George Karpenkov10ab2ac2017-08-21 23:25:50756 TPC.SetPrintNewPCs(Options.PrintNewCovPcs);
Kostya Serebryany2eef8162017-08-25 20:09:25757 TPC.SetPrintNewFuncs(Options.PrintNewCovFuncs);
George Karpenkov10ab2ac2017-08-21 23:25:50758 system_clock::time_point LastCorpusReload = system_clock::now();
759 if (Options.DoCrossOver)
760 MD.SetCorpus(&Corpus);
761 while (true) {
762 auto Now = system_clock::now();
763 if (duration_cast<seconds>(Now - LastCorpusReload).count() >=
764 Options.ReloadIntervalSec) {
765 RereadOutputCorpus(MaxInputLen);
766 LastCorpusReload = system_clock::now();
767 }
768 if (TotalNumberOfRuns >= Options.MaxNumberOfRuns)
769 break;
Alex Shlyapnikov5ded0702017-10-23 23:24:33770 if (TimedOut())
771 break;
George Karpenkov10ab2ac2017-08-21 23:25:50772
773 // Update TmpMaxMutationLen
Matt Morehouse36c89b32018-02-13 20:52:15774 if (Options.LenControl) {
George Karpenkov10ab2ac2017-08-21 23:25:50775 if (TmpMaxMutationLen < MaxMutationLen &&
Kostya Serebryanye9ed2322017-12-12 23:11:28776 TotalNumberOfRuns - LastCorpusUpdateRun >
Matt Morehouse36c89b32018-02-13 20:52:15777 Options.LenControl * Log(TmpMaxMutationLen)) {
George Karpenkov10ab2ac2017-08-21 23:25:50778 TmpMaxMutationLen =
Kostya Serebryanye9ed2322017-12-12 23:11:28779 Min(MaxMutationLen, TmpMaxMutationLen + Log(TmpMaxMutationLen));
Kostya Serebryanye9ed2322017-12-12 23:11:28780 LastCorpusUpdateRun = TotalNumberOfRuns;
George Karpenkov10ab2ac2017-08-21 23:25:50781 }
782 } else {
783 TmpMaxMutationLen = MaxMutationLen;
784 }
785
786 // Perform several mutations and runs.
787 MutateAndTestOne();
Alex Shlyapnikov6f1c26f2017-10-23 22:04:30788
789 PurgeAllocator();
George Karpenkov10ab2ac2017-08-21 23:25:50790 }
791
792 PrintStats("DONE ", "\n");
793 MD.PrintRecommendedDictionary();
794}
795
796void Fuzzer::MinimizeCrashLoop(const Unit &U) {
Alex Shlyapnikov5ded0702017-10-23 23:24:33797 if (U.size() <= 1)
798 return;
George Karpenkov10ab2ac2017-08-21 23:25:50799 while (!TimedOut() && TotalNumberOfRuns < Options.MaxNumberOfRuns) {
800 MD.StartMutationSequence();
801 memcpy(CurrentUnitData, U.data(), U.size());
802 for (int i = 0; i < Options.MutateDepth; i++) {
803 size_t NewSize = MD.Mutate(CurrentUnitData, U.size(), MaxMutationLen);
804 assert(NewSize > 0 && NewSize <= MaxMutationLen);
805 ExecuteCallback(CurrentUnitData, NewSize);
806 PrintPulseAndReportSlowInput(CurrentUnitData, NewSize);
807 TryDetectingAMemoryLeak(CurrentUnitData, NewSize,
808 /*DuringInitialCorpusExecution*/ false);
809 }
810 }
811}
812
813void Fuzzer::AnnounceOutput(const uint8_t *Data, size_t Size) {
814 if (SMR.IsServer()) {
815 SMR.WriteByteArray(Data, Size);
816 } else if (SMR.IsClient()) {
817 SMR.PostClient();
818 SMR.WaitServer();
819 size_t OtherSize = SMR.ReadByteArraySize();
820 uint8_t *OtherData = SMR.GetByteArray();
821 if (Size != OtherSize || memcmp(Data, OtherData, Size) != 0) {
822 size_t i = 0;
823 for (i = 0; i < Min(Size, OtherSize); i++)
824 if (Data[i] != OtherData[i])
825 break;
826 Printf("==%lu== ERROR: libFuzzer: equivalence-mismatch. Sizes: %zd %zd; "
Alex Shlyapnikov5ded0702017-10-23 23:24:33827 "offset %zd\n",
828 GetPid(), Size, OtherSize, i);
George Karpenkov10ab2ac2017-08-21 23:25:50829 DumpCurrentUnit("mismatch-");
830 Printf("SUMMARY: libFuzzer: equivalence-mismatch\n");
831 PrintFinalStats();
832 _Exit(Options.ErrorExitCode);
833 }
834 }
835}
836
837} // namespace fuzzer
838
839extern "C" {
840
Petr Hosekeac2b472018-01-17 20:39:14841__attribute__((visibility("default"))) size_t
842LLVMFuzzerMutate(uint8_t *Data, size_t Size, size_t MaxSize) {
George Karpenkov10ab2ac2017-08-21 23:25:50843 assert(fuzzer::F);
844 return fuzzer::F->GetMD().DefaultMutate(Data, Size, MaxSize);
845}
846
847// Experimental
Petr Hosekeac2b472018-01-17 20:39:14848__attribute__((visibility("default"))) void
849LLVMFuzzerAnnounceOutput(const uint8_t *Data, size_t Size) {
George Karpenkov10ab2ac2017-08-21 23:25:50850 assert(fuzzer::F);
851 fuzzer::F->AnnounceOutput(Data, Size);
852}
Alex Shlyapnikov5ded0702017-10-23 23:24:33853} // extern "C"