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george.karpenkov29efa6d2017-08-21 23:25:50 +00001//===- FuzzerTracePC.cpp - PC tracing--------------------------------------===//
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// Trace PCs.
10// This module implements __sanitizer_cov_trace_pc_guard[_init],
11// the callback required for -fsanitize-coverage=trace-pc-guard instrumentation.
12//
13//===----------------------------------------------------------------------===//
14
15#include "FuzzerTracePC.h"
16#include "FuzzerCorpus.h"
17#include "FuzzerDefs.h"
18#include "FuzzerDictionary.h"
19#include "FuzzerExtFunctions.h"
20#include "FuzzerIO.h"
21#include "FuzzerUtil.h"
22#include "FuzzerValueBitMap.h"
23#include <set>
24
25// The coverage counters and PCs.
26// These are declared as global variables named "__sancov_*" to simplify
27// experiments with inlined instrumentation.
28alignas(64) ATTRIBUTE_INTERFACE
29uint8_t __sancov_trace_pc_guard_8bit_counters[fuzzer::TracePC::kNumPCs];
30
31ATTRIBUTE_INTERFACE
32uintptr_t __sancov_trace_pc_pcs[fuzzer::TracePC::kNumPCs];
33
kcc1c0379f2017-08-22 01:28:32 +000034// Used by -fsanitize-coverage=stack-depth to track stack depth
morehouse398297f2017-08-22 21:28:29 +000035ATTRIBUTE_INTERFACE __attribute__((tls_model("initial-exec")))
36thread_local uintptr_t __sancov_lowest_stack;
kcc1c0379f2017-08-22 01:28:32 +000037
george.karpenkov29efa6d2017-08-21 23:25:50 +000038namespace fuzzer {
39
40TracePC TPC;
41
42int ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr;
43
44uint8_t *TracePC::Counters() const {
45 return __sancov_trace_pc_guard_8bit_counters;
46}
47
48uintptr_t *TracePC::PCs() const {
49 return __sancov_trace_pc_pcs;
50}
51
52size_t TracePC::GetTotalPCCoverage() {
53 if (ObservedPCs.size())
54 return ObservedPCs.size();
55 size_t Res = 0;
56 for (size_t i = 1, N = GetNumPCs(); i < N; i++)
57 if (PCs()[i])
58 Res++;
59 return Res;
60}
61
62
63void TracePC::HandleInline8bitCountersInit(uint8_t *Start, uint8_t *Stop) {
64 if (Start == Stop) return;
65 if (NumModulesWithInline8bitCounters &&
66 ModuleCounters[NumModulesWithInline8bitCounters-1].Start == Start) return;
67 assert(NumModulesWithInline8bitCounters <
68 sizeof(ModuleCounters) / sizeof(ModuleCounters[0]));
69 ModuleCounters[NumModulesWithInline8bitCounters++] = {Start, Stop};
70 NumInline8bitCounters += Stop - Start;
71}
72
kcc98957a12017-08-25 19:29:47 +000073void TracePC::HandlePCsInit(const uintptr_t *Start, const uintptr_t *Stop) {
74 const PCTableEntry *B = reinterpret_cast<const PCTableEntry *>(Start);
75 const PCTableEntry *E = reinterpret_cast<const PCTableEntry *>(Stop);
george.karpenkov29efa6d2017-08-21 23:25:50 +000076 if (NumPCTables && ModulePCTable[NumPCTables - 1].Start == B) return;
77 assert(NumPCTables < sizeof(ModulePCTable) / sizeof(ModulePCTable[0]));
78 ModulePCTable[NumPCTables++] = {B, E};
79 NumPCsInPCTables += E - B;
80}
81
82void TracePC::HandleInit(uint32_t *Start, uint32_t *Stop) {
83 if (Start == Stop || *Start) return;
84 assert(NumModules < sizeof(Modules) / sizeof(Modules[0]));
85 for (uint32_t *P = Start; P < Stop; P++) {
86 NumGuards++;
87 if (NumGuards == kNumPCs) {
88 RawPrint(
89 "WARNING: The binary has too many instrumented PCs.\n"
90 " You may want to reduce the size of the binary\n"
91 " for more efficient fuzzing and precise coverage data\n");
92 }
93 *P = NumGuards % kNumPCs;
94 }
95 Modules[NumModules].Start = Start;
96 Modules[NumModules].Stop = Stop;
97 NumModules++;
98}
99
100void TracePC::PrintModuleInfo() {
101 if (NumGuards) {
102 Printf("INFO: Loaded %zd modules (%zd guards): ", NumModules, NumGuards);
103 for (size_t i = 0; i < NumModules; i++)
104 Printf("%zd [%p, %p), ", Modules[i].Stop - Modules[i].Start,
105 Modules[i].Start, Modules[i].Stop);
106 Printf("\n");
107 }
108 if (NumModulesWithInline8bitCounters) {
109 Printf("INFO: Loaded %zd modules (%zd inline 8-bit counters): ",
110 NumModulesWithInline8bitCounters, NumInline8bitCounters);
111 for (size_t i = 0; i < NumModulesWithInline8bitCounters; i++)
112 Printf("%zd [%p, %p), ", ModuleCounters[i].Stop - ModuleCounters[i].Start,
113 ModuleCounters[i].Start, ModuleCounters[i].Stop);
114 Printf("\n");
115 }
116 if (NumPCTables) {
117 Printf("INFO: Loaded %zd PC tables (%zd PCs): ", NumPCTables,
118 NumPCsInPCTables);
119 for (size_t i = 0; i < NumPCTables; i++) {
120 Printf("%zd [%p,%p), ", ModulePCTable[i].Stop - ModulePCTable[i].Start,
121 ModulePCTable[i].Start, ModulePCTable[i].Stop);
122 }
123 Printf("\n");
124
125 if ((NumGuards && NumGuards != NumPCsInPCTables) ||
126 (NumInline8bitCounters && NumInline8bitCounters != NumPCsInPCTables)) {
127 Printf("ERROR: The size of coverage PC tables does not match the"
128 " number of instrumented PCs. This might be a bug in the compiler,"
129 " please contact the libFuzzer developers.\n");
130 _Exit(1);
131 }
132 }
kcc1c0379f2017-08-22 01:28:32 +0000133 if (size_t NumClangCounters = ClangCountersEnd() - ClangCountersBegin())
134 Printf("INFO: %zd Clang Coverage Counters\n", NumClangCounters);
george.karpenkov29efa6d2017-08-21 23:25:50 +0000135}
136
137ATTRIBUTE_NO_SANITIZE_ALL
138void TracePC::HandleCallerCallee(uintptr_t Caller, uintptr_t Callee) {
139 const uintptr_t kBits = 12;
140 const uintptr_t kMask = (1 << kBits) - 1;
141 uintptr_t Idx = (Caller & kMask) | ((Callee & kMask) << kBits);
142 ValueProfileMap.AddValueModPrime(Idx);
143}
144
145void TracePC::UpdateObservedPCs() {
kcc1c0379f2017-08-22 01:28:32 +0000146 auto Observe = [&](uintptr_t PC) {
147 bool Inserted = ObservedPCs.insert(PC).second;
148 if (Inserted && DoPrintNewPCs)
149 PrintPC("\tNEW_PC: %p %F %L\n", "\tNEW_PC: %p\n", PC + 1);
150 };
george.karpenkov29efa6d2017-08-21 23:25:50 +0000151 if (NumPCsInPCTables) {
george.karpenkov29efa6d2017-08-21 23:25:50 +0000152 if (NumInline8bitCounters == NumPCsInPCTables) {
153 for (size_t i = 0; i < NumModulesWithInline8bitCounters; i++) {
154 uint8_t *Beg = ModuleCounters[i].Start;
155 size_t Size = ModuleCounters[i].Stop - Beg;
156 assert(Size ==
157 (size_t)(ModulePCTable[i].Stop - ModulePCTable[i].Start));
158 for (size_t j = 0; j < Size; j++)
159 if (Beg[j])
kcc98957a12017-08-25 19:29:47 +0000160 Observe(ModulePCTable[i].Start[j].PC);
george.karpenkov29efa6d2017-08-21 23:25:50 +0000161 }
162 } else if (NumGuards == NumPCsInPCTables) {
163 size_t GuardIdx = 1;
164 for (size_t i = 0; i < NumModules; i++) {
165 uint32_t *Beg = Modules[i].Start;
166 size_t Size = Modules[i].Stop - Beg;
167 assert(Size ==
168 (size_t)(ModulePCTable[i].Stop - ModulePCTable[i].Start));
169 for (size_t j = 0; j < Size; j++, GuardIdx++)
170 if (Counters()[GuardIdx])
kcc98957a12017-08-25 19:29:47 +0000171 Observe(ModulePCTable[i].Start[j].PC);
george.karpenkov29efa6d2017-08-21 23:25:50 +0000172 }
173 }
174 }
kcc1c0379f2017-08-22 01:28:32 +0000175 if (size_t NumClangCounters =
176 ClangCountersEnd() - ClangCountersBegin()) {
177 auto P = ClangCountersBegin();
178 for (size_t Idx = 0; Idx < NumClangCounters; Idx++)
179 if (P[Idx])
180 Observe((uintptr_t)Idx);
181 }
george.karpenkov29efa6d2017-08-21 23:25:50 +0000182}
183
184inline ALWAYS_INLINE uintptr_t GetPreviousInstructionPc(uintptr_t PC) {
185 // TODO: this implementation is x86 only.
186 // see sanitizer_common GetPreviousInstructionPc for full implementation.
187 return PC - 1;
188}
189
190inline ALWAYS_INLINE uintptr_t GetNextInstructionPc(uintptr_t PC) {
191 // TODO: this implementation is x86 only.
192 // see sanitizer_common GetPreviousInstructionPc for full implementation.
193 return PC + 1;
194}
195
196static std::string GetModuleName(uintptr_t PC) {
197 char ModulePathRaw[4096] = ""; // What's PATH_MAX in portable C++?
198 void *OffsetRaw = nullptr;
199 if (!EF->__sanitizer_get_module_and_offset_for_pc(
200 reinterpret_cast<void *>(PC), ModulePathRaw,
201 sizeof(ModulePathRaw), &OffsetRaw))
202 return "";
203 return ModulePathRaw;
204}
205
206void TracePC::PrintCoverage() {
207 if (!EF->__sanitizer_symbolize_pc ||
208 !EF->__sanitizer_get_module_and_offset_for_pc) {
209 Printf("INFO: __sanitizer_symbolize_pc or "
210 "__sanitizer_get_module_and_offset_for_pc is not available,"
211 " not printing coverage\n");
212 return;
213 }
214 Printf("COVERAGE:\n");
215 std::string LastFunctionName = "";
216 std::string LastFileStr = "";
217 std::set<size_t> UncoveredLines;
218 std::set<size_t> CoveredLines;
219
220 auto FunctionEndCallback = [&](const std::string &CurrentFunc,
221 const std::string &CurrentFile) {
222 if (LastFunctionName != CurrentFunc) {
223 if (CoveredLines.empty() && !UncoveredLines.empty()) {
224 Printf("UNCOVERED_FUNC: %s\n", LastFunctionName.c_str());
225 } else {
226 for (auto Line : UncoveredLines) {
227 if (!CoveredLines.count(Line))
228 Printf("UNCOVERED_LINE: %s %s:%zd\n", LastFunctionName.c_str(),
229 LastFileStr.c_str(), Line);
230 }
231 }
232
233 UncoveredLines.clear();
234 CoveredLines.clear();
235 LastFunctionName = CurrentFunc;
236 LastFileStr = CurrentFile;
237 }
238 };
239
240 for (size_t i = 0; i < NumPCTables; i++) {
241 auto &M = ModulePCTable[i];
242 assert(M.Start < M.Stop);
kcc98957a12017-08-25 19:29:47 +0000243 auto ModuleName = GetModuleName(M.Start->PC);
george.karpenkov29efa6d2017-08-21 23:25:50 +0000244 for (auto Ptr = M.Start; Ptr < M.Stop; Ptr++) {
kcc98957a12017-08-25 19:29:47 +0000245 auto PC = Ptr->PC;
george.karpenkov29efa6d2017-08-21 23:25:50 +0000246 auto VisualizePC = GetNextInstructionPc(PC);
247 bool IsObserved = ObservedPCs.count(PC);
248 std::string FileStr = DescribePC("%s", VisualizePC);
249 if (!IsInterestingCoverageFile(FileStr)) continue;
250 std::string FunctionStr = DescribePC("%F", VisualizePC);
251 FunctionEndCallback(FunctionStr, FileStr);
252 std::string LineStr = DescribePC("%l", VisualizePC);
253 size_t Line = std::stoul(LineStr);
254 if (IsObserved && CoveredLines.insert(Line).second)
255 Printf("COVERED: %s %s:%zd\n", FunctionStr.c_str(), FileStr.c_str(),
256 Line);
257 else
258 UncoveredLines.insert(Line);
259 }
260 }
261 FunctionEndCallback("", "");
262}
263
264void TracePC::DumpCoverage() {
265 if (EF->__sanitizer_dump_coverage) {
266 std::vector<uintptr_t> PCsCopy(GetNumPCs());
267 for (size_t i = 0; i < GetNumPCs(); i++)
268 PCsCopy[i] = PCs()[i] ? GetPreviousInstructionPc(PCs()[i]) : 0;
269 EF->__sanitizer_dump_coverage(PCsCopy.data(), PCsCopy.size());
270 }
271}
272
273// Value profile.
274// We keep track of various values that affect control flow.
275// These values are inserted into a bit-set-based hash map.
276// Every new bit in the map is treated as a new coverage.
277//
278// For memcmp/strcmp/etc the interesting value is the length of the common
279// prefix of the parameters.
280// For cmp instructions the interesting value is a XOR of the parameters.
281// The interesting value is mixed up with the PC and is then added to the map.
282
283ATTRIBUTE_NO_SANITIZE_ALL
284void TracePC::AddValueForMemcmp(void *caller_pc, const void *s1, const void *s2,
285 size_t n, bool StopAtZero) {
286 if (!n) return;
287 size_t Len = std::min(n, Word::GetMaxSize());
288 const uint8_t *A1 = reinterpret_cast<const uint8_t *>(s1);
289 const uint8_t *A2 = reinterpret_cast<const uint8_t *>(s2);
290 uint8_t B1[Word::kMaxSize];
291 uint8_t B2[Word::kMaxSize];
292 // Copy the data into locals in this non-msan-instrumented function
293 // to avoid msan complaining further.
294 size_t Hash = 0; // Compute some simple hash of both strings.
295 for (size_t i = 0; i < Len; i++) {
296 B1[i] = A1[i];
297 B2[i] = A2[i];
298 size_t T = B1[i];
299 Hash ^= (T << 8) | B2[i];
300 }
301 size_t I = 0;
302 for (; I < Len; I++)
303 if (B1[I] != B2[I] || (StopAtZero && B1[I] == 0))
304 break;
305 size_t PC = reinterpret_cast<size_t>(caller_pc);
306 size_t Idx = (PC & 4095) | (I << 12);
307 ValueProfileMap.AddValue(Idx);
308 TORCW.Insert(Idx ^ Hash, Word(B1, Len), Word(B2, Len));
309}
310
311template <class T>
312ATTRIBUTE_TARGET_POPCNT ALWAYS_INLINE
313ATTRIBUTE_NO_SANITIZE_ALL
314void TracePC::HandleCmp(uintptr_t PC, T Arg1, T Arg2) {
315 uint64_t ArgXor = Arg1 ^ Arg2;
316 uint64_t ArgDistance = __builtin_popcountll(ArgXor) + 1; // [1,65]
317 uintptr_t Idx = ((PC & 4095) + 1) * ArgDistance;
318 if (sizeof(T) == 4)
319 TORC4.Insert(ArgXor, Arg1, Arg2);
320 else if (sizeof(T) == 8)
321 TORC8.Insert(ArgXor, Arg1, Arg2);
322 ValueProfileMap.AddValue(Idx);
323}
324
325static size_t InternalStrnlen(const char *S, size_t MaxLen) {
326 size_t Len = 0;
327 for (; Len < MaxLen && S[Len]; Len++) {}
328 return Len;
329}
330
331// Finds min of (strlen(S1), strlen(S2)).
332// Needed bacause one of these strings may actually be non-zero terminated.
333static size_t InternalStrnlen2(const char *S1, const char *S2) {
334 size_t Len = 0;
335 for (; S1[Len] && S2[Len]; Len++) {}
336 return Len;
337}
338
339void TracePC::ClearInlineCounters() {
340 for (size_t i = 0; i < NumModulesWithInline8bitCounters; i++) {
341 uint8_t *Beg = ModuleCounters[i].Start;
342 size_t Size = ModuleCounters[i].Stop - Beg;
343 memset(Beg, 0, Size);
344 }
345}
346
kcc0f3c0312017-08-22 01:50:00 +0000347ATTRIBUTE_NO_SANITIZE_ALL
kcc1c0379f2017-08-22 01:28:32 +0000348void TracePC::RecordInitialStack() {
kcc0f3c0312017-08-22 01:50:00 +0000349 int stack;
350 __sancov_lowest_stack = InitialStack = reinterpret_cast<uintptr_t>(&stack);
kcc1c0379f2017-08-22 01:28:32 +0000351}
352
353uintptr_t TracePC::GetMaxStackOffset() const {
354 return InitialStack - __sancov_lowest_stack; // Stack grows down
355}
356
george.karpenkov29efa6d2017-08-21 23:25:50 +0000357} // namespace fuzzer
358
359extern "C" {
360ATTRIBUTE_INTERFACE
361ATTRIBUTE_NO_SANITIZE_ALL
362void __sanitizer_cov_trace_pc_guard(uint32_t *Guard) {
363 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
364 uint32_t Idx = *Guard;
365 __sancov_trace_pc_pcs[Idx] = PC;
366 __sancov_trace_pc_guard_8bit_counters[Idx]++;
george.karpenkov29efa6d2017-08-21 23:25:50 +0000367}
368
369// Best-effort support for -fsanitize-coverage=trace-pc, which is available
370// in both Clang and GCC.
371ATTRIBUTE_INTERFACE
372ATTRIBUTE_NO_SANITIZE_ALL
373void __sanitizer_cov_trace_pc() {
374 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
375 uintptr_t Idx = PC & (((uintptr_t)1 << fuzzer::TracePC::kTracePcBits) - 1);
376 __sancov_trace_pc_pcs[Idx] = PC;
377 __sancov_trace_pc_guard_8bit_counters[Idx]++;
378}
379
380ATTRIBUTE_INTERFACE
381void __sanitizer_cov_trace_pc_guard_init(uint32_t *Start, uint32_t *Stop) {
382 fuzzer::TPC.HandleInit(Start, Stop);
383}
384
385ATTRIBUTE_INTERFACE
386void __sanitizer_cov_8bit_counters_init(uint8_t *Start, uint8_t *Stop) {
387 fuzzer::TPC.HandleInline8bitCountersInit(Start, Stop);
388}
389
390ATTRIBUTE_INTERFACE
kcc98957a12017-08-25 19:29:47 +0000391void __sanitizer_cov_pcs_init(const uintptr_t *pcs_beg,
392 const uintptr_t *pcs_end) {
george.karpenkov29efa6d2017-08-21 23:25:50 +0000393 fuzzer::TPC.HandlePCsInit(pcs_beg, pcs_end);
394}
395
396ATTRIBUTE_INTERFACE
397ATTRIBUTE_NO_SANITIZE_ALL
398void __sanitizer_cov_trace_pc_indir(uintptr_t Callee) {
399 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
400 fuzzer::TPC.HandleCallerCallee(PC, Callee);
401}
402
403ATTRIBUTE_INTERFACE
404ATTRIBUTE_NO_SANITIZE_ALL
405ATTRIBUTE_TARGET_POPCNT
406void __sanitizer_cov_trace_cmp8(uint64_t Arg1, uint64_t Arg2) {
407 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
408 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
409}
410
411ATTRIBUTE_INTERFACE
412ATTRIBUTE_NO_SANITIZE_ALL
413ATTRIBUTE_TARGET_POPCNT
414// Now the __sanitizer_cov_trace_const_cmp[1248] callbacks just mimic
415// the behaviour of __sanitizer_cov_trace_cmp[1248] ones. This, however,
416// should be changed later to make full use of instrumentation.
417void __sanitizer_cov_trace_const_cmp8(uint64_t Arg1, uint64_t Arg2) {
418 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
419 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
420}
421
422ATTRIBUTE_INTERFACE
423ATTRIBUTE_NO_SANITIZE_ALL
424ATTRIBUTE_TARGET_POPCNT
425void __sanitizer_cov_trace_cmp4(uint32_t Arg1, uint32_t Arg2) {
426 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
427 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
428}
429
430ATTRIBUTE_INTERFACE
431ATTRIBUTE_NO_SANITIZE_ALL
432ATTRIBUTE_TARGET_POPCNT
433void __sanitizer_cov_trace_const_cmp4(uint32_t Arg1, uint32_t Arg2) {
434 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
435 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
436}
437
438ATTRIBUTE_INTERFACE
439ATTRIBUTE_NO_SANITIZE_ALL
440ATTRIBUTE_TARGET_POPCNT
441void __sanitizer_cov_trace_cmp2(uint16_t Arg1, uint16_t Arg2) {
442 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
443 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
444}
445
446ATTRIBUTE_INTERFACE
447ATTRIBUTE_NO_SANITIZE_ALL
448ATTRIBUTE_TARGET_POPCNT
449void __sanitizer_cov_trace_const_cmp2(uint16_t Arg1, uint16_t Arg2) {
450 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
451 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
452}
453
454ATTRIBUTE_INTERFACE
455ATTRIBUTE_NO_SANITIZE_ALL
456ATTRIBUTE_TARGET_POPCNT
457void __sanitizer_cov_trace_cmp1(uint8_t Arg1, uint8_t Arg2) {
458 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
459 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
460}
461
462ATTRIBUTE_INTERFACE
463ATTRIBUTE_NO_SANITIZE_ALL
464ATTRIBUTE_TARGET_POPCNT
465void __sanitizer_cov_trace_const_cmp1(uint8_t Arg1, uint8_t Arg2) {
466 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
467 fuzzer::TPC.HandleCmp(PC, Arg1, Arg2);
468}
469
470ATTRIBUTE_INTERFACE
471ATTRIBUTE_NO_SANITIZE_ALL
472ATTRIBUTE_TARGET_POPCNT
473void __sanitizer_cov_trace_switch(uint64_t Val, uint64_t *Cases) {
474 uint64_t N = Cases[0];
475 uint64_t ValSizeInBits = Cases[1];
476 uint64_t *Vals = Cases + 2;
477 // Skip the most common and the most boring case.
478 if (Vals[N - 1] < 256 && Val < 256)
479 return;
480 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
481 size_t i;
482 uint64_t Token = 0;
483 for (i = 0; i < N; i++) {
484 Token = Val ^ Vals[i];
485 if (Val < Vals[i])
486 break;
487 }
488
489 if (ValSizeInBits == 16)
490 fuzzer::TPC.HandleCmp(PC + i, static_cast<uint16_t>(Token), (uint16_t)(0));
491 else if (ValSizeInBits == 32)
492 fuzzer::TPC.HandleCmp(PC + i, static_cast<uint32_t>(Token), (uint32_t)(0));
493 else
494 fuzzer::TPC.HandleCmp(PC + i, Token, (uint64_t)(0));
495}
496
497ATTRIBUTE_INTERFACE
498ATTRIBUTE_NO_SANITIZE_ALL
499ATTRIBUTE_TARGET_POPCNT
500void __sanitizer_cov_trace_div4(uint32_t Val) {
501 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
502 fuzzer::TPC.HandleCmp(PC, Val, (uint32_t)0);
503}
504
505ATTRIBUTE_INTERFACE
506ATTRIBUTE_NO_SANITIZE_ALL
507ATTRIBUTE_TARGET_POPCNT
508void __sanitizer_cov_trace_div8(uint64_t Val) {
509 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
510 fuzzer::TPC.HandleCmp(PC, Val, (uint64_t)0);
511}
512
513ATTRIBUTE_INTERFACE
514ATTRIBUTE_NO_SANITIZE_ALL
515ATTRIBUTE_TARGET_POPCNT
516void __sanitizer_cov_trace_gep(uintptr_t Idx) {
517 uintptr_t PC = reinterpret_cast<uintptr_t>(__builtin_return_address(0));
518 fuzzer::TPC.HandleCmp(PC, Idx, (uintptr_t)0);
519}
520
521ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
522void __sanitizer_weak_hook_memcmp(void *caller_pc, const void *s1,
523 const void *s2, size_t n, int result) {
524 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
525 if (result == 0) return; // No reason to mutate.
526 if (n <= 1) return; // Not interesting.
527 fuzzer::TPC.AddValueForMemcmp(caller_pc, s1, s2, n, /*StopAtZero*/false);
528}
529
530ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
531void __sanitizer_weak_hook_strncmp(void *caller_pc, const char *s1,
532 const char *s2, size_t n, int result) {
533 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
534 if (result == 0) return; // No reason to mutate.
535 size_t Len1 = fuzzer::InternalStrnlen(s1, n);
536 size_t Len2 = fuzzer::InternalStrnlen(s2, n);
537 n = std::min(n, Len1);
538 n = std::min(n, Len2);
539 if (n <= 1) return; // Not interesting.
540 fuzzer::TPC.AddValueForMemcmp(caller_pc, s1, s2, n, /*StopAtZero*/true);
541}
542
543ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
544void __sanitizer_weak_hook_strcmp(void *caller_pc, const char *s1,
545 const char *s2, int result) {
546 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
547 if (result == 0) return; // No reason to mutate.
548 size_t N = fuzzer::InternalStrnlen2(s1, s2);
549 if (N <= 1) return; // Not interesting.
550 fuzzer::TPC.AddValueForMemcmp(caller_pc, s1, s2, N, /*StopAtZero*/true);
551}
552
553ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
554void __sanitizer_weak_hook_strncasecmp(void *called_pc, const char *s1,
555 const char *s2, size_t n, int result) {
556 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
557 return __sanitizer_weak_hook_strncmp(called_pc, s1, s2, n, result);
558}
559
560ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
561void __sanitizer_weak_hook_strcasecmp(void *called_pc, const char *s1,
562 const char *s2, int result) {
563 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
564 return __sanitizer_weak_hook_strcmp(called_pc, s1, s2, result);
565}
566
567ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
568void __sanitizer_weak_hook_strstr(void *called_pc, const char *s1,
569 const char *s2, char *result) {
570 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
571 fuzzer::TPC.MMT.Add(reinterpret_cast<const uint8_t *>(s2), strlen(s2));
572}
573
574ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
575void __sanitizer_weak_hook_strcasestr(void *called_pc, const char *s1,
576 const char *s2, char *result) {
577 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
578 fuzzer::TPC.MMT.Add(reinterpret_cast<const uint8_t *>(s2), strlen(s2));
579}
580
581ATTRIBUTE_INTERFACE ATTRIBUTE_NO_SANITIZE_MEMORY
582void __sanitizer_weak_hook_memmem(void *called_pc, const void *s1, size_t len1,
583 const void *s2, size_t len2, void *result) {
584 if (fuzzer::ScopedDoingMyOwnMemOrStr::DoingMyOwnMemOrStr) return;
585 fuzzer::TPC.MMT.Add(reinterpret_cast<const uint8_t *>(s2), len2);
586}
587} // extern "C"