1 /*===- DataFlow.cpp - a standalone DataFlow tracer -------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // An experimental data-flow tracer for fuzz targets. 9 // It is based on DFSan and SanitizerCoverage. 10 // https://clang.llvm.org/docs/DataFlowSanitizer.html 11 // https://clang.llvm.org/docs/SanitizerCoverage.html#tracing-data-flow 12 // 13 // It executes the fuzz target on the given input while monitoring the 14 // data flow for every instrumented comparison instruction. 15 // 16 // The output shows which functions depend on which bytes of the input, 17 // and also provides basic-block coverage for every input. 18 // 19 // Build: 20 // 1. Compile this file with -fsanitize=dataflow 21 // 2. Build the fuzz target with -g -fsanitize=dataflow 22 // -fsanitize-coverage=trace-pc-guard,pc-table,bb,trace-cmp 23 // 3. Link those together with -fsanitize=dataflow 24 // 25 // -fsanitize-coverage=trace-cmp inserts callbacks around every comparison 26 // instruction, DFSan modifies the calls to pass the data flow labels. 27 // The callbacks update the data flow label for the current function. 28 // See e.g. __dfsw___sanitizer_cov_trace_cmp1 below. 29 // 30 // -fsanitize-coverage=trace-pc-guard,pc-table,bb instruments function 31 // entries so that the comparison callback knows that current function. 32 // -fsanitize-coverage=...,bb also allows to collect basic block coverage. 33 // 34 // 35 // Run: 36 // # Collect data flow and coverage for INPUT_FILE 37 // # write to OUTPUT_FILE (default: stdout) 38 // export DFSAN_OPTIONS=fast16labels=1:warn_unimplemented=0 39 // ./a.out INPUT_FILE [OUTPUT_FILE] 40 // 41 // # Print all instrumented functions. llvm-symbolizer must be present in PATH 42 // ./a.out 43 // 44 // Example output: 45 // =============== 46 // F0 11111111111111 47 // F1 10000000000000 48 // C0 1 2 3 4 5 49 // C1 8 50 // =============== 51 // "FN xxxxxxxxxx": tells what bytes of the input does the function N depend on. 52 // "CN X Y Z T": tells that a function N has basic blocks X, Y, and Z covered 53 // in addition to the function's entry block, out of T total instrumented 54 // blocks. 55 // 56 //===----------------------------------------------------------------------===*/ 57 58 #include <assert.h> 59 #include <stdio.h> 60 #include <stdlib.h> 61 #include <stdint.h> 62 #include <string.h> 63 64 #include <execinfo.h> // backtrace_symbols_fd 65 66 #include <sanitizer/dfsan_interface.h> 67 68 extern "C" { 69 extern int LLVMFuzzerTestOneInput(const unsigned char *Data, size_t Size); 70 __attribute__((weak)) extern int LLVMFuzzerInitialize(int *argc, char ***argv); 71 } // extern "C" 72 73 static size_t InputLen; 74 static size_t NumIterations; 75 static size_t NumFuncs, NumGuards; 76 static uint32_t *GuardsBeg, *GuardsEnd; 77 static const uintptr_t *PCsBeg, *PCsEnd; 78 static __thread size_t CurrentFunc, CurrentIteration; 79 static dfsan_label **FuncLabels; // NumFuncs x NumIterations. 80 static bool *BBExecuted; // Array of NumGuards elements. 81 82 enum { 83 PCFLAG_FUNC_ENTRY = 1, 84 }; 85 86 const int kNumLabels = 16; 87 88 static inline bool BlockIsEntry(size_t BlockIdx) { 89 return PCsBeg[BlockIdx * 2 + 1] & PCFLAG_FUNC_ENTRY; 90 } 91 92 // Prints all instrumented functions. 93 static int PrintFunctions() { 94 // We don't have the symbolizer integrated with dfsan yet. 95 // So use backtrace_symbols_fd and pipe it through llvm-symbolizer. 96 // TODO(kcc): this is pretty ugly and may break in lots of ways. 97 // We'll need to make a proper in-process symbolizer work with DFSan. 98 FILE *Pipe = popen("sed 's/(+/ /g; s/).*//g' " 99 "| llvm-symbolizer " 100 "| grep 'dfs\\$' " 101 "| sed 's/dfs\\$//g' " 102 "| c++filt", 103 "w"); 104 for (size_t I = 0; I < NumGuards; I++) { 105 uintptr_t PC = PCsBeg[I * 2]; 106 if (!BlockIsEntry(I)) continue; 107 void *const Buf[1] = {(void*)PC}; 108 backtrace_symbols_fd(Buf, 1, fileno(Pipe)); 109 } 110 pclose(Pipe); 111 return 0; 112 } 113 114 static void PrintBinary(FILE *Out, dfsan_label L, size_t Len) { 115 char buf[kNumLabels + 1]; 116 assert(Len <= kNumLabels); 117 for (int i = 0; i < kNumLabels; i++) 118 buf[i] = (L & (1 << i)) ? '1' : '0'; 119 buf[Len] = 0; 120 fprintf(Out, "%s", buf); 121 } 122 123 static void PrintDataFlow(FILE *Out) { 124 for (size_t Func = 0; Func < NumFuncs; Func++) { 125 bool HasAny = false; 126 for (size_t Iter = 0; Iter < NumIterations; Iter++) 127 if (FuncLabels[Func][Iter]) 128 HasAny = true; 129 if (!HasAny) 130 continue; 131 fprintf(Out, "F%zd ", Func); 132 size_t LenOfLastIteration = kNumLabels; 133 if (auto Tail = InputLen % kNumLabels) 134 LenOfLastIteration = Tail; 135 for (size_t Iter = 0; Iter < NumIterations; Iter++) 136 PrintBinary(Out, FuncLabels[Func][Iter], 137 Iter == NumIterations - 1 ? LenOfLastIteration : kNumLabels); 138 fprintf(Out, "\n"); 139 } 140 } 141 142 static void PrintCoverage(FILE *Out) { 143 ssize_t CurrentFuncGuard = -1; 144 ssize_t CurrentFuncNum = -1; 145 ssize_t NumBlocksInCurrentFunc = -1; 146 for (size_t FuncBeg = 0; FuncBeg < NumGuards;) { 147 CurrentFuncNum++; 148 assert(BlockIsEntry(FuncBeg)); 149 size_t FuncEnd = FuncBeg + 1; 150 for (; FuncEnd < NumGuards && !BlockIsEntry(FuncEnd); FuncEnd++) 151 ; 152 if (BBExecuted[FuncBeg]) { 153 fprintf(Out, "C%zd", CurrentFuncNum); 154 for (size_t I = FuncBeg + 1; I < FuncEnd; I++) 155 if (BBExecuted[I]) 156 fprintf(Out, " %zd", I - FuncBeg); 157 fprintf(Out, " %zd\n", FuncEnd - FuncBeg); 158 } 159 FuncBeg = FuncEnd; 160 } 161 } 162 163 int main(int argc, char **argv) { 164 if (LLVMFuzzerInitialize) 165 LLVMFuzzerInitialize(&argc, &argv); 166 if (argc == 1) 167 return PrintFunctions(); 168 assert(argc == 2 || argc == 3); 169 170 const char *Input = argv[1]; 171 fprintf(stderr, "INFO: reading '%s'\n", Input); 172 FILE *In = fopen(Input, "r"); 173 assert(In); 174 fseek(In, 0, SEEK_END); 175 InputLen = ftell(In); 176 fseek(In, 0, SEEK_SET); 177 unsigned char *Buf = (unsigned char*)malloc(InputLen); 178 size_t NumBytesRead = fread(Buf, 1, InputLen, In); 179 assert(NumBytesRead == InputLen); 180 fclose(In); 181 182 NumIterations = (NumBytesRead + kNumLabels - 1) / kNumLabels; 183 FuncLabels = (dfsan_label**)calloc(NumFuncs, sizeof(dfsan_label*)); 184 for (size_t Func = 0; Func < NumFuncs; Func++) 185 FuncLabels[Func] = 186 (dfsan_label *)calloc(NumIterations, sizeof(dfsan_label)); 187 188 for (CurrentIteration = 0; CurrentIteration < NumIterations; 189 CurrentIteration++) { 190 fprintf(stderr, "INFO: running '%s' %zd/%zd\n", Input, CurrentIteration, 191 NumIterations); 192 dfsan_flush(); 193 dfsan_set_label(0, Buf, InputLen); 194 195 size_t BaseIdx = CurrentIteration * kNumLabels; 196 size_t LastIdx = BaseIdx + kNumLabels < NumBytesRead ? BaseIdx + kNumLabels 197 : NumBytesRead; 198 assert(BaseIdx < LastIdx); 199 for (size_t Idx = BaseIdx; Idx < LastIdx; Idx++) 200 dfsan_set_label(1 << (Idx - BaseIdx), Buf + Idx, 1); 201 LLVMFuzzerTestOneInput(Buf, InputLen); 202 } 203 free(Buf); 204 205 bool OutIsStdout = argc == 2; 206 fprintf(stderr, "INFO: writing dataflow to %s\n", 207 OutIsStdout ? "<stdout>" : argv[2]); 208 FILE *Out = OutIsStdout ? stdout : fopen(argv[2], "w"); 209 PrintDataFlow(Out); 210 PrintCoverage(Out); 211 if (!OutIsStdout) fclose(Out); 212 } 213 214 extern "C" { 215 216 void __sanitizer_cov_trace_pc_guard_init(uint32_t *start, 217 uint32_t *stop) { 218 assert(NumFuncs == 0 && "This tool does not support DSOs"); 219 assert(start < stop && "The code is not instrumented for coverage"); 220 if (start == stop || *start) return; // Initialize only once. 221 GuardsBeg = start; 222 GuardsEnd = stop; 223 } 224 225 void __sanitizer_cov_pcs_init(const uintptr_t *pcs_beg, 226 const uintptr_t *pcs_end) { 227 if (NumGuards) return; // Initialize only once. 228 NumGuards = GuardsEnd - GuardsBeg; 229 PCsBeg = pcs_beg; 230 PCsEnd = pcs_end; 231 assert(NumGuards == (PCsEnd - PCsBeg) / 2); 232 for (size_t i = 0; i < NumGuards; i++) { 233 if (BlockIsEntry(i)) { 234 NumFuncs++; 235 GuardsBeg[i] = NumFuncs; 236 } 237 } 238 BBExecuted = (bool*)calloc(NumGuards, sizeof(bool)); 239 fprintf(stderr, "INFO: %zd instrumented function(s) observed " 240 "and %zd basic blocks\n", NumFuncs, NumGuards); 241 } 242 243 void __sanitizer_cov_trace_pc_indir(uint64_t x){} // unused. 244 245 void __sanitizer_cov_trace_pc_guard(uint32_t *guard) { 246 size_t GuardIdx = guard - GuardsBeg; 247 assert(GuardIdx < NumGuards); 248 BBExecuted[GuardIdx] = true; 249 if (!*guard) return; // not a function entry. 250 uint32_t FuncNum = *guard - 1; // Guards start from 1. 251 assert(FuncNum < NumFuncs); 252 CurrentFunc = FuncNum; 253 } 254 255 void __dfsw___sanitizer_cov_trace_switch(uint64_t Val, uint64_t *Cases, 256 dfsan_label L1, dfsan_label UnusedL) { 257 assert(CurrentFunc < NumFuncs); 258 FuncLabels[CurrentFunc][CurrentIteration] |= L1; 259 } 260 261 #define HOOK(Name, Type) \ 262 void Name(Type Arg1, Type Arg2, dfsan_label L1, dfsan_label L2) { \ 263 assert(CurrentFunc < NumFuncs); \ 264 FuncLabels[CurrentFunc][CurrentIteration] |= L1 | L2; \ 265 } 266 267 HOOK(__dfsw___sanitizer_cov_trace_const_cmp1, uint8_t) 268 HOOK(__dfsw___sanitizer_cov_trace_const_cmp2, uint16_t) 269 HOOK(__dfsw___sanitizer_cov_trace_const_cmp4, uint32_t) 270 HOOK(__dfsw___sanitizer_cov_trace_const_cmp8, uint64_t) 271 HOOK(__dfsw___sanitizer_cov_trace_cmp1, uint8_t) 272 HOOK(__dfsw___sanitizer_cov_trace_cmp2, uint16_t) 273 HOOK(__dfsw___sanitizer_cov_trace_cmp4, uint32_t) 274 HOOK(__dfsw___sanitizer_cov_trace_cmp8, uint64_t) 275 276 } // extern "C" 277