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Kostya Serebryanyda63c1d2016-02-26 21:33:56 +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.
Kostya Serebryanya00b2432016-09-14 02:13:06 +000010// This module implements __sanitizer_cov_trace_pc_guard[_init],
11// the callback required for -fsanitize-coverage=trace-pc-guard instrumentation.
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +000012//
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +000013//===----------------------------------------------------------------------===//
14
Kostya Serebryany1c73f1b2016-10-05 22:56:21 +000015#include "FuzzerCorpus.h"
Kostya Serebryany86586182016-09-21 21:17:23 +000016#include "FuzzerDefs.h"
Kostya Serebryanya5f94fb2016-10-14 20:20:33 +000017#include "FuzzerDictionary.h"
Kostya Serebryany95b1a432016-10-19 00:12:03 +000018#include "FuzzerExtFunctions.h"
Zachary Turner24a148b2016-11-30 19:06:14 +000019#include "FuzzerIO.h"
Kostya Serebryany6f5a8042016-09-21 01:50:50 +000020#include "FuzzerTracePC.h"
Kostya Serebryany86586182016-09-21 21:17:23 +000021#include "FuzzerValueBitMap.h"
Zachary Turner24a148b2016-11-30 19:06:14 +000022#include <map>
23#include <set>
24#include <sstream>
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +000025
26namespace fuzzer {
Mike Aizatsky1aa501e2016-05-10 23:43:15 +000027
Kostya Serebryanya00b2432016-09-14 02:13:06 +000028TracePC TPC;
Mike Aizatsky1aa501e2016-05-10 23:43:15 +000029
Kostya Serebryanya9b0dd02016-09-29 17:43:24 +000030void TracePC::HandleTrace(uint32_t *Guard, uintptr_t PC) {
31 uint32_t Idx = *Guard;
Kostya Serebryany8e781a82016-09-18 04:52:23 +000032 if (!Idx) return;
Kostya Serebryany2fabeca2016-10-26 18:52:04 +000033 PCs[Idx % kNumPCs] = PC;
34 Counters[Idx % kNumCounters]++;
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +000035}
Kostya Serebryanya5277d52016-09-15 01:30:18 +000036
Kostya Serebryany275e2602016-10-25 23:52:25 +000037size_t TracePC::GetTotalPCCoverage() {
38 size_t Res = 0;
Kostya Serebryany06b87572016-10-26 00:42:52 +000039 for (size_t i = 1; i < GetNumPCs(); i++)
Kostya Serebryany275e2602016-10-25 23:52:25 +000040 if (PCs[i])
41 Res++;
42 return Res;
43}
44
Kostya Serebryanya9b0dd02016-09-29 17:43:24 +000045void TracePC::HandleInit(uint32_t *Start, uint32_t *Stop) {
Kostya Serebryany3e36ec12016-09-17 05:04:47 +000046 if (Start == Stop || *Start) return;
47 assert(NumModules < sizeof(Modules) / sizeof(Modules[0]));
Kostya Serebryanya9b0dd02016-09-29 17:43:24 +000048 for (uint32_t *P = Start; P < Stop; P++)
Kostya Serebryany8e781a82016-09-18 04:52:23 +000049 *P = ++NumGuards;
Kostya Serebryany3e36ec12016-09-17 05:04:47 +000050 Modules[NumModules].Start = Start;
51 Modules[NumModules].Stop = Stop;
52 NumModules++;
53}
54
55void TracePC::PrintModuleInfo() {
56 Printf("INFO: Loaded %zd modules (%zd guards): ", NumModules, NumGuards);
57 for (size_t i = 0; i < NumModules; i++)
58 Printf("[%p, %p), ", Modules[i].Start, Modules[i].Stop);
59 Printf("\n");
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +000060}
Kostya Serebryanya5277d52016-09-15 01:30:18 +000061
Kostya Serebryany09845172016-09-15 22:16:15 +000062void TracePC::HandleCallerCallee(uintptr_t Caller, uintptr_t Callee) {
63 const uintptr_t kBits = 12;
64 const uintptr_t kMask = (1 << kBits) - 1;
Kostya Serebryany1c73f1b2016-10-05 22:56:21 +000065 uintptr_t Idx = (Caller & kMask) | ((Callee & kMask) << kBits);
66 HandleValueProfile(Idx);
Kostya Serebryany09845172016-09-15 22:16:15 +000067}
68
Kostya Serebryany95b1a432016-10-19 00:12:03 +000069static bool IsInterestingCoverageFile(std::string &File) {
70 if (File.find("compiler-rt/lib/") != std::string::npos)
71 return false; // sanitizer internal.
72 if (File.find("/usr/lib/") != std::string::npos)
73 return false;
74 if (File.find("/usr/include/") != std::string::npos)
75 return false;
76 if (File == "<null>")
77 return false;
78 return true;
79}
80
Kostya Serebryanya5b2e542016-10-26 00:20:51 +000081void TracePC::PrintNewPCs() {
82 if (DoPrintNewPCs) {
83 if (!PrintedPCs)
84 PrintedPCs = new std::set<uintptr_t>;
Kostya Serebryany06b87572016-10-26 00:42:52 +000085 for (size_t i = 1; i < GetNumPCs(); i++)
Kostya Serebryanya5b2e542016-10-26 00:20:51 +000086 if (PCs[i] && PrintedPCs->insert(PCs[i]).second)
87 PrintPC("\tNEW_PC: %p %F %L\n", "\tNEW_PC: %p\n", PCs[i]);
88 }
89}
90
Kostya Serebryanyb706b482016-09-18 21:47:08 +000091void TracePC::PrintCoverage() {
Kostya Serebryany95b1a432016-10-19 00:12:03 +000092 if (!EF->__sanitizer_symbolize_pc) {
93 Printf("INFO: __sanitizer_symbolize_pc is not available,"
94 " not printing coverage\n");
95 return;
96 }
97 std::map<std::string, std::vector<uintptr_t>> CoveredPCsPerModule;
98 std::map<std::string, uintptr_t> ModuleOffsets;
Kostya Serebryany1cba0a92016-11-30 21:53:32 +000099 std::set<std::string> CoveredDirs, CoveredFiles, CoveredFunctions,
100 CoveredLines;
Kostya Serebryanyb706b482016-09-18 21:47:08 +0000101 Printf("COVERAGE:\n");
Kostya Serebryany06b87572016-10-26 00:42:52 +0000102 for (size_t i = 1; i < GetNumPCs(); i++) {
Kostya Serebryany95b1a432016-10-19 00:12:03 +0000103 if (!PCs[i]) continue;
104 std::string FileStr = DescribePC("%s", PCs[i]);
105 if (!IsInterestingCoverageFile(FileStr)) continue;
106 std::string FixedPCStr = DescribePC("%p", PCs[i]);
107 std::string FunctionStr = DescribePC("%F", PCs[i]);
108 std::string LineStr = DescribePC("%l", PCs[i]);
109 // TODO(kcc): get the module using some other way since this
110 // does not work with ASAN_OPTIONS=strip_path_prefix=something.
111 std::string Module = DescribePC("%m", PCs[i]);
112 std::string OffsetStr = DescribePC("%o", PCs[i]);
113 uintptr_t FixedPC = std::stol(FixedPCStr, 0, 16);
114 uintptr_t PcOffset = std::stol(OffsetStr, 0, 16);
115 ModuleOffsets[Module] = FixedPC - PcOffset;
116 CoveredPCsPerModule[Module].push_back(PcOffset);
117 CoveredFunctions.insert(FunctionStr);
118 CoveredFiles.insert(FileStr);
Kostya Serebryany1cba0a92016-11-30 21:53:32 +0000119 CoveredDirs.insert(DirName(FileStr));
Kostya Serebryany95b1a432016-10-19 00:12:03 +0000120 if (!CoveredLines.insert(FileStr + ":" + LineStr).second)
121 continue;
122 Printf("COVERED: %s %s:%s\n", FunctionStr.c_str(),
123 FileStr.c_str(), LineStr.c_str());
124 }
125
Kostya Serebryany1cba0a92016-11-30 21:53:32 +0000126 std::string CoveredDirsStr;
127 for (auto &Dir : CoveredDirs) {
128 if (!CoveredDirsStr.empty())
129 CoveredDirsStr += ",";
130 CoveredDirsStr += Dir;
131 }
132 Printf("COVERED_DIRS: %s\n", CoveredDirsStr.c_str());
133
Kostya Serebryany95b1a432016-10-19 00:12:03 +0000134 for (auto &M : CoveredPCsPerModule) {
135 std::set<std::string> UncoveredFiles, UncoveredFunctions;
136 std::map<std::string, std::set<int> > UncoveredLines; // Func+File => lines
137 auto &ModuleName = M.first;
138 auto &CoveredOffsets = M.second;
139 uintptr_t ModuleOffset = ModuleOffsets[ModuleName];
140 std::sort(CoveredOffsets.begin(), CoveredOffsets.end());
141 Printf("MODULE_WITH_COVERAGE: %s\n", ModuleName.c_str());
142 // sancov does not yet fully support DSOs.
143 // std::string Cmd = "sancov -print-coverage-pcs " + ModuleName;
144 std::string Cmd = "objdump -d " + ModuleName +
145 " | grep 'call.*__sanitizer_cov_trace_pc_guard' | awk -F: '{print $1}'";
146 std::string SanCovOutput;
147 if (!ExecuteCommandAndReadOutput(Cmd, &SanCovOutput)) {
148 Printf("INFO: Command failed: %s\n", Cmd.c_str());
149 continue;
150 }
151 std::istringstream ISS(SanCovOutput);
152 std::string S;
153 while (std::getline(ISS, S, '\n')) {
154 uintptr_t PcOffset = std::stol(S, 0, 16);
155 if (!std::binary_search(CoveredOffsets.begin(), CoveredOffsets.end(),
156 PcOffset)) {
157 uintptr_t PC = ModuleOffset + PcOffset;
158 auto FileStr = DescribePC("%s", PC);
159 if (!IsInterestingCoverageFile(FileStr)) continue;
160 if (CoveredFiles.count(FileStr) == 0) {
161 UncoveredFiles.insert(FileStr);
162 continue;
163 }
164 auto FunctionStr = DescribePC("%F", PC);
165 if (CoveredFunctions.count(FunctionStr) == 0) {
166 UncoveredFunctions.insert(FunctionStr);
167 continue;
168 }
169 std::string LineStr = DescribePC("%l", PC);
170 uintptr_t Line = std::stoi(LineStr);
171 std::string FileLineStr = FileStr + ":" + LineStr;
172 if (CoveredLines.count(FileLineStr) == 0)
173 UncoveredLines[FunctionStr + " " + FileStr].insert(Line);
174 }
175 }
176 for (auto &FileLine: UncoveredLines)
177 for (int Line : FileLine.second)
178 Printf("UNCOVERED_LINE: %s:%d\n", FileLine.first.c_str(), Line);
179 for (auto &Func : UncoveredFunctions)
180 Printf("UNCOVERED_FUNC: %s\n", Func.c_str());
181 for (auto &File : UncoveredFiles)
182 Printf("UNCOVERED_FILE: %s\n", File.c_str());
Kostya Serebryanyb706b482016-09-18 21:47:08 +0000183 }
184}
185
Kostya Serebryany379359c2016-10-05 01:09:40 +0000186// Value profile.
187// We keep track of various values that affect control flow.
188// These values are inserted into a bit-set-based hash map.
189// Every new bit in the map is treated as a new coverage.
190//
191// For memcmp/strcmp/etc the interesting value is the length of the common
192// prefix of the parameters.
193// For cmp instructions the interesting value is a XOR of the parameters.
194// The interesting value is mixed up with the PC and is then added to the map.
195
Kostya Serebryany23567912016-11-11 23:06:53 +0000196#ifdef __clang__ // avoid gcc warning.
197__attribute__((no_sanitize("memory")))
198#endif
Kostya Serebryany379359c2016-10-05 01:09:40 +0000199void TracePC::AddValueForMemcmp(void *caller_pc, const void *s1, const void *s2,
200 size_t n) {
201 if (!n) return;
202 size_t Len = std::min(n, (size_t)32);
203 const uint8_t *A1 = reinterpret_cast<const uint8_t *>(s1);
204 const uint8_t *A2 = reinterpret_cast<const uint8_t *>(s2);
205 size_t I = 0;
206 for (; I < Len; I++)
207 if (A1[I] != A2[I])
208 break;
209 size_t PC = reinterpret_cast<size_t>(caller_pc);
210 size_t Idx = I;
211 // if (I < Len)
212 // Idx += __builtin_popcountl((A1[I] ^ A2[I])) - 1;
213 TPC.HandleValueProfile((PC & 4095) | (Idx << 12));
214}
215
216void TracePC::AddValueForStrcmp(void *caller_pc, const char *s1, const char *s2,
217 size_t n) {
218 if (!n) return;
219 size_t Len = std::min(n, (size_t)32);
220 const uint8_t *A1 = reinterpret_cast<const uint8_t *>(s1);
221 const uint8_t *A2 = reinterpret_cast<const uint8_t *>(s2);
222 size_t I = 0;
223 for (; I < Len; I++)
224 if (A1[I] != A2[I] || A1[I] == 0)
225 break;
226 size_t PC = reinterpret_cast<size_t>(caller_pc);
227 size_t Idx = I;
228 // if (I < Len && A1[I])
229 // Idx += __builtin_popcountl((A1[I] ^ A2[I])) - 1;
230 TPC.HandleValueProfile((PC & 4095) | (Idx << 12));
231}
232
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000233template <class T>
Kostya Serebryany379359c2016-10-05 01:09:40 +0000234ATTRIBUTE_TARGET_POPCNT
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000235#ifdef __clang__ // g++ can't handle this __attribute__ here :(
236__attribute__((always_inline))
237#endif // __clang__
238void TracePC::HandleCmp(void *PC, T Arg1, T Arg2) {
239 uintptr_t PCuint = reinterpret_cast<uintptr_t>(PC);
Kostya Serebryanya5f94fb2016-10-14 20:20:33 +0000240 uint64_t ArgXor = Arg1 ^ Arg2;
241 uint64_t ArgDistance = __builtin_popcountl(ArgXor) + 1; // [1,65]
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000242 uintptr_t Idx = ((PCuint & 4095) + 1) * ArgDistance;
Kostya Serebryany94c427c2016-10-27 00:36:38 +0000243 if (sizeof(T) == 4)
244 TORC4.Insert(ArgXor, Arg1, Arg2);
245 else if (sizeof(T) == 8)
246 TORC8.Insert(ArgXor, Arg1, Arg2);
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000247 HandleValueProfile(Idx);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000248}
249
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +0000250} // namespace fuzzer
251
Dan Liew59144072016-06-06 20:27:09 +0000252extern "C" {
Kostya Serebryany32661f92016-08-18 20:52:52 +0000253__attribute__((visibility("default")))
Kostya Serebryanya9b0dd02016-09-29 17:43:24 +0000254void __sanitizer_cov_trace_pc_guard(uint32_t *Guard) {
Kostya Serebryanya00b2432016-09-14 02:13:06 +0000255 uintptr_t PC = (uintptr_t)__builtin_return_address(0);
Kostya Serebryanya5277d52016-09-15 01:30:18 +0000256 fuzzer::TPC.HandleTrace(Guard, PC);
Kostya Serebryanyda63c1d2016-02-26 21:33:56 +0000257}
Dan Liew59144072016-06-06 20:27:09 +0000258
Kostya Serebryany32661f92016-08-18 20:52:52 +0000259__attribute__((visibility("default")))
Kostya Serebryanya9b0dd02016-09-29 17:43:24 +0000260void __sanitizer_cov_trace_pc_guard_init(uint32_t *Start, uint32_t *Stop) {
Kostya Serebryanya5277d52016-09-15 01:30:18 +0000261 fuzzer::TPC.HandleInit(Start, Stop);
Dan Liew59144072016-06-06 20:27:09 +0000262}
Kostya Serebryany09845172016-09-15 22:16:15 +0000263
264__attribute__((visibility("default")))
265void __sanitizer_cov_trace_pc_indir(uintptr_t Callee) {
266 uintptr_t PC = (uintptr_t)__builtin_return_address(0);
267 fuzzer::TPC.HandleCallerCallee(PC, Callee);
268}
Kostya Serebryany379359c2016-10-05 01:09:40 +0000269
Kostya Serebryany379359c2016-10-05 01:09:40 +0000270__attribute__((visibility("default")))
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000271void __sanitizer_cov_trace_cmp8(uint64_t Arg1, uint64_t Arg2) {
272 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Arg1, Arg2);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000273}
274__attribute__((visibility("default")))
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000275void __sanitizer_cov_trace_cmp4(uint32_t Arg1, uint32_t Arg2) {
276 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Arg1, Arg2);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000277}
278__attribute__((visibility("default")))
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000279void __sanitizer_cov_trace_cmp2(uint16_t Arg1, uint16_t Arg2) {
280 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Arg1, Arg2);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000281}
282__attribute__((visibility("default")))
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000283void __sanitizer_cov_trace_cmp1(uint8_t Arg1, uint8_t Arg2) {
284 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Arg1, Arg2);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000285}
286
287__attribute__((visibility("default")))
288void __sanitizer_cov_trace_switch(uint64_t Val, uint64_t *Cases) {
Kostya Serebryanyd19919a2016-10-11 01:14:41 +0000289 uint64_t N = Cases[0];
290 uint64_t *Vals = Cases + 2;
291 char *PC = (char*)__builtin_return_address(0);
292 for (size_t i = 0; i < N; i++)
293 if (Val != Vals[i])
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000294 fuzzer::TPC.HandleCmp(PC + i, Val, Vals[i]);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000295}
296
297__attribute__((visibility("default")))
298void __sanitizer_cov_trace_div4(uint32_t Val) {
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000299 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Val, (uint32_t)0);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000300}
301__attribute__((visibility("default")))
302void __sanitizer_cov_trace_div8(uint64_t Val) {
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000303 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Val, (uint64_t)0);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000304}
305__attribute__((visibility("default")))
306void __sanitizer_cov_trace_gep(uintptr_t Idx) {
Kostya Serebryany17d176e12016-10-13 16:19:09 +0000307 fuzzer::TPC.HandleCmp(__builtin_return_address(0), Idx, (uintptr_t)0);
Kostya Serebryany379359c2016-10-05 01:09:40 +0000308}
309
310} // extern "C"