206 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			206 lines
		
	
	
		
			7.1 KiB
		
	
	
	
		
			C++
		
	
	
	
| /*===- DataFlow.cpp - a standalone DataFlow tracer                  -------===//
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| //
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| // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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| // See https://llvm.org/LICENSE.txt for license information.
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| // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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| //
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| //===----------------------------------------------------------------------===//
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| // An experimental data-flow tracer for fuzz targets.
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| // It is based on DFSan and SanitizerCoverage.
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| // https://clang.llvm.org/docs/DataFlowSanitizer.html
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| // https://clang.llvm.org/docs/SanitizerCoverage.html#tracing-data-flow
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| //
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| // It executes the fuzz target on the given input while monitoring the
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| // data flow for every instrumented comparison instruction.
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| //
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| // The output shows which functions depend on which bytes of the input,
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| // and also provides basic-block coverage for every input.
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| //
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| // Build:
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| //   1. Compile this file (DataFlow.cpp) with -fsanitize=dataflow and -O2.
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| //   2. Compile DataFlowCallbacks.cpp with -O2 -fPIC.
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| //   3. Build the fuzz target with -g -fsanitize=dataflow
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| //       -fsanitize-coverage=trace-pc-guard,pc-table,bb,trace-cmp
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| //   4. Link those together with -fsanitize=dataflow
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| //
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| //  -fsanitize-coverage=trace-cmp inserts callbacks around every comparison
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| //  instruction, DFSan modifies the calls to pass the data flow labels.
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| //  The callbacks update the data flow label for the current function.
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| //  See e.g. __dfsw___sanitizer_cov_trace_cmp1 below.
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| //
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| //  -fsanitize-coverage=trace-pc-guard,pc-table,bb instruments function
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| //  entries so that the comparison callback knows that current function.
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| //  -fsanitize-coverage=...,bb also allows to collect basic block coverage.
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| //
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| //
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| // Run:
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| //   # Collect data flow and coverage for INPUT_FILE
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| //   # write to OUTPUT_FILE (default: stdout)
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| //   export DFSAN_OPTIONS=warn_unimplemented=0
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| //   ./a.out INPUT_FILE [OUTPUT_FILE]
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| //
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| //   # Print all instrumented functions. llvm-symbolizer must be present in PATH
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| //   ./a.out
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| //
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| // Example output:
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| // ===============
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| //  F0 11111111111111
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| //  F1 10000000000000
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| //  C0 1 2 3 4 5
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| //  C1 8
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| //  ===============
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| // "FN xxxxxxxxxx": tells what bytes of the input does the function N depend on.
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| // "CN X Y Z T": tells that a function N has basic blocks X, Y, and Z covered
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| //    in addition to the function's entry block, out of T total instrumented
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| //    blocks.
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| //
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| //===----------------------------------------------------------------------===*/
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| 
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| #include <assert.h>
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| #include <stdio.h>
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| #include <stdlib.h>
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| #include <stdint.h>
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| #include <string.h>
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| 
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| #include <execinfo.h>  // backtrace_symbols_fd
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| 
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| #include "DataFlow.h"
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| 
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| extern "C" {
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| extern int LLVMFuzzerTestOneInput(const unsigned char *Data, size_t Size);
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| __attribute__((weak)) extern int LLVMFuzzerInitialize(int *argc, char ***argv);
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| } // extern "C"
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| 
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| CallbackData __dft;
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| static size_t InputLen;
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| static size_t NumIterations;
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| static dfsan_label **FuncLabelsPerIter;  // NumIterations x NumFuncs;
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| 
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| static inline bool BlockIsEntry(size_t BlockIdx) {
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|   return __dft.PCsBeg[BlockIdx * 2 + 1] & PCFLAG_FUNC_ENTRY;
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| }
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| 
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| const int kNumLabels = 8;
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| 
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| // Prints all instrumented functions.
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| static int PrintFunctions() {
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|   // We don't have the symbolizer integrated with dfsan yet.
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|   // So use backtrace_symbols_fd and pipe it through llvm-symbolizer.
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|   // TODO(kcc): this is pretty ugly and may break in lots of ways.
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|   //      We'll need to make a proper in-process symbolizer work with DFSan.
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|   FILE *Pipe = popen("sed 's/(+/ /g; s/).*//g' "
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|                      "| llvm-symbolizer "
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|                      "| grep '\\.dfsan' "
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|                      "| sed 's/\\.dfsan//g' "
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|                      "| c++filt",
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|                      "w");
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|   for (size_t I = 0; I < __dft.NumGuards; I++) {
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|     uintptr_t PC = __dft.PCsBeg[I * 2];
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|     if (!BlockIsEntry(I)) continue;
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|     void *const Buf[1] = {(void*)PC};
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|     backtrace_symbols_fd(Buf, 1, fileno(Pipe));
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|   }
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|   pclose(Pipe);
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|   return 0;
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| }
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| 
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| static void PrintBinary(FILE *Out, dfsan_label L, size_t Len) {
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|   char buf[kNumLabels + 1];
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|   assert(Len <= kNumLabels);
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|   for (int i = 0; i < kNumLabels; i++)
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|     buf[i] = (L & (1 << i)) ? '1' : '0';
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|   buf[Len] = 0;
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|   fprintf(Out, "%s", buf);
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| }
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| 
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| static void PrintDataFlow(FILE *Out) {
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|   for (size_t Func = 0; Func < __dft.NumFuncs; Func++) {
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|     bool HasAny = false;
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|     for (size_t Iter = 0; Iter < NumIterations; Iter++)
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|       if (FuncLabelsPerIter[Iter][Func])
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|         HasAny = true;
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|     if (!HasAny)
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|       continue;
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|     fprintf(Out, "F%zd ", Func);
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|     size_t LenOfLastIteration = kNumLabels;
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|     if (auto Tail = InputLen % kNumLabels)
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|         LenOfLastIteration = Tail;
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|     for (size_t Iter = 0; Iter < NumIterations; Iter++)
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|       PrintBinary(Out, FuncLabelsPerIter[Iter][Func],
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|                   Iter == NumIterations - 1 ? LenOfLastIteration : kNumLabels);
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|     fprintf(Out, "\n");
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|   }
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| }
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| 
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| static void PrintCoverage(FILE *Out) {
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|   ssize_t CurrentFuncGuard = -1;
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|   ssize_t CurrentFuncNum = -1;
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|   ssize_t NumBlocksInCurrentFunc = -1;
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|   for (size_t FuncBeg = 0; FuncBeg < __dft.NumGuards;) {
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|     CurrentFuncNum++;
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|     assert(BlockIsEntry(FuncBeg));
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|     size_t FuncEnd = FuncBeg + 1;
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|     for (; FuncEnd < __dft.NumGuards && !BlockIsEntry(FuncEnd); FuncEnd++)
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|       ;
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|     if (__dft.BBExecuted[FuncBeg]) {
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|       fprintf(Out, "C%zd", CurrentFuncNum);
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|       for (size_t I = FuncBeg + 1; I < FuncEnd; I++)
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|         if (__dft.BBExecuted[I])
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|           fprintf(Out, " %zd", I - FuncBeg);
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|       fprintf(Out, " %zd\n", FuncEnd - FuncBeg);
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|     }
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|     FuncBeg = FuncEnd;
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|   }
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| }
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| 
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| int main(int argc, char **argv) {
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|   if (LLVMFuzzerInitialize)
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|     LLVMFuzzerInitialize(&argc, &argv);
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|   if (argc == 1)
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|     return PrintFunctions();
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|   assert(argc == 2 || argc == 3);
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| 
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|   const char *Input = argv[1];
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|   fprintf(stderr, "INFO: reading '%s'\n", Input);
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|   FILE *In = fopen(Input, "r");
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|   assert(In);
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|   fseek(In, 0, SEEK_END);
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|   InputLen = ftell(In);
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|   fseek(In, 0, SEEK_SET);
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|   unsigned char *Buf = (unsigned char*)malloc(InputLen);
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|   size_t NumBytesRead = fread(Buf, 1, InputLen, In);
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|   assert(NumBytesRead == InputLen);
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|   fclose(In);
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| 
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|   NumIterations = (NumBytesRead + kNumLabels - 1) / kNumLabels;
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|   FuncLabelsPerIter =
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|       (dfsan_label **)calloc(NumIterations, sizeof(dfsan_label *));
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|   for (size_t Iter = 0; Iter < NumIterations; Iter++)
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|     FuncLabelsPerIter[Iter] =
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|         (dfsan_label *)calloc(__dft.NumFuncs, sizeof(dfsan_label));
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| 
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|   for (size_t Iter = 0; Iter < NumIterations; Iter++) {
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|     fprintf(stderr, "INFO: running '%s' %zd/%zd\n", Input, Iter, NumIterations);
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|     dfsan_flush();
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|     dfsan_set_label(0, Buf, InputLen);
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|     __dft.FuncLabels = FuncLabelsPerIter[Iter];
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| 
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|     size_t BaseIdx = Iter * kNumLabels;
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|     size_t LastIdx = BaseIdx + kNumLabels < NumBytesRead ? BaseIdx + kNumLabels
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|                                                          : NumBytesRead;
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|     assert(BaseIdx < LastIdx);
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|     for (size_t Idx = BaseIdx; Idx < LastIdx; Idx++)
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|       dfsan_set_label(1 << (Idx - BaseIdx), Buf + Idx, 1);
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|     LLVMFuzzerTestOneInput(Buf, InputLen);
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|   }
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|   free(Buf);
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| 
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|   bool OutIsStdout = argc == 2;
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|   fprintf(stderr, "INFO: writing dataflow to %s\n",
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|           OutIsStdout ? "<stdout>" : argv[2]);
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|   FILE *Out = OutIsStdout ? stdout : fopen(argv[2], "w");
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|   PrintDataFlow(Out);
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|   PrintCoverage(Out);
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|   if (!OutIsStdout) fclose(Out);
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| }
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