216 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			216 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C++
		
	
	
	
//===- FuzzerIO.cpp - IO utils. -------------------------------------------===//
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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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// IO functions.
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//===----------------------------------------------------------------------===//
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#include "FuzzerDefs.h"
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#include "FuzzerExtFunctions.h"
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#include "FuzzerIO.h"
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#include "FuzzerUtil.h"
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#include <algorithm>
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#include <cstdarg>
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#include <fstream>
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#include <iterator>
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#include <sys/stat.h>
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#include <sys/types.h>
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namespace fuzzer {
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static FILE *OutputFile = stderr;
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FILE *GetOutputFile() {
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  return OutputFile;
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}
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void SetOutputFile(FILE *NewOutputFile) {
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  OutputFile = NewOutputFile;
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}
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long GetEpoch(const std::string &Path) {
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  struct stat St;
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  if (stat(Path.c_str(), &St))
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    return 0;  // Can't stat, be conservative.
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  return St.st_mtime;
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}
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Unit FileToVector(const std::string &Path, size_t MaxSize, bool ExitOnError) {
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  std::ifstream T(Path, std::ios::binary);
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  if (ExitOnError && !T) {
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    Printf("No such directory: %s; exiting\n", Path.c_str());
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    exit(1);
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  }
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  T.seekg(0, T.end);
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  auto EndPos = T.tellg();
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  if (EndPos < 0) return {};
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  size_t FileLen = EndPos;
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  if (MaxSize)
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    FileLen = std::min(FileLen, MaxSize);
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  T.seekg(0, T.beg);
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  Unit Res(FileLen);
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  T.read(reinterpret_cast<char *>(Res.data()), FileLen);
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  return Res;
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}
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std::string FileToString(const std::string &Path) {
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  std::ifstream T(Path, std::ios::binary);
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  return std::string((std::istreambuf_iterator<char>(T)),
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                     std::istreambuf_iterator<char>());
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}
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void CopyFileToErr(const std::string &Path) {
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  Printf("%s", FileToString(Path).c_str());
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}
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void WriteToFile(const Unit &U, const std::string &Path) {
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  WriteToFile(U.data(), U.size(), Path);
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}
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void WriteToFile(const std::string &Data, const std::string &Path) {
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  WriteToFile(reinterpret_cast<const uint8_t *>(Data.c_str()), Data.size(),
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              Path);
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}
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void WriteToFile(const uint8_t *Data, size_t Size, const std::string &Path) {
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  // Use raw C interface because this function may be called from a sig handler.
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  FILE *Out = fopen(Path.c_str(), "wb");
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  if (!Out) return;
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  fwrite(Data, sizeof(Data[0]), Size, Out);
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  fclose(Out);
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}
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void AppendToFile(const std::string &Data, const std::string &Path) {
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  AppendToFile(reinterpret_cast<const uint8_t *>(Data.data()), Data.size(),
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               Path);
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}
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void AppendToFile(const uint8_t *Data, size_t Size, const std::string &Path) {
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  FILE *Out = fopen(Path.c_str(), "a");
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  if (!Out)
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    return;
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  fwrite(Data, sizeof(Data[0]), Size, Out);
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  fclose(Out);
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}
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void ReadDirToVectorOfUnits(const char *Path, std::vector<Unit> *V, long *Epoch,
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                            size_t MaxSize, bool ExitOnError,
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                            std::vector<std::string> *VPaths) {
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  long E = Epoch ? *Epoch : 0;
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  std::vector<std::string> Files;
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  ListFilesInDirRecursive(Path, Epoch, &Files, /*TopDir*/true);
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  size_t NumLoaded = 0;
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  for (size_t i = 0; i < Files.size(); i++) {
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    auto &X = Files[i];
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    if (Epoch && GetEpoch(X) < E) continue;
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    NumLoaded++;
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    if ((NumLoaded & (NumLoaded - 1)) == 0 && NumLoaded >= 1024)
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      Printf("Loaded %zd/%zd files from %s\n", NumLoaded, Files.size(), Path);
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    auto S = FileToVector(X, MaxSize, ExitOnError);
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    if (!S.empty()) {
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      V->push_back(S);
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      if (VPaths)
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        VPaths->push_back(X);
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    }
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  }
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}
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void GetSizedFilesFromDir(const std::string &Dir, std::vector<SizedFile> *V) {
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  std::vector<std::string> Files;
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  ListFilesInDirRecursive(Dir, 0, &Files, /*TopDir*/true);
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  for (auto &File : Files)
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    if (size_t Size = FileSize(File))
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      V->push_back({File, Size});
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}
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std::string DirPlusFile(const std::string &DirPath,
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                        const std::string &FileName) {
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  return DirPath + GetSeparator() + FileName;
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}
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void DupAndCloseStderr() {
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  int OutputFd = DuplicateFile(2);
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  if (OutputFd >= 0) {
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    FILE *NewOutputFile = OpenFile(OutputFd, "w");
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    if (NewOutputFile) {
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      OutputFile = NewOutputFile;
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      if (EF->__sanitizer_set_report_fd)
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        EF->__sanitizer_set_report_fd(
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            reinterpret_cast<void *>(GetHandleFromFd(OutputFd)));
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      DiscardOutput(2);
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    }
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  }
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}
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void CloseStdout() {
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  DiscardOutput(1);
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}
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void Printf(const char *Fmt, ...) {
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  va_list ap;
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  va_start(ap, Fmt);
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  vfprintf(OutputFile, Fmt, ap);
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  va_end(ap);
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  fflush(OutputFile);
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}
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void VPrintf(bool Verbose, const char *Fmt, ...) {
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  if (!Verbose) return;
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  va_list ap;
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  va_start(ap, Fmt);
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  vfprintf(OutputFile, Fmt, ap);
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  va_end(ap);
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  fflush(OutputFile);
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}
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static bool MkDirRecursiveInner(const std::string &Leaf) {
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  // Prevent chance of potential infinite recursion
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  if (Leaf == ".")
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    return true;
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  const std::string &Dir = DirName(Leaf);
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  if (IsDirectory(Dir)) {
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    MkDir(Leaf);
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    return IsDirectory(Leaf);
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  }
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  bool ret = MkDirRecursiveInner(Dir);
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  if (!ret) {
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    // Give up early if a previous MkDir failed
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    return ret;
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  }
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  MkDir(Leaf);
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  return IsDirectory(Leaf);
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}
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bool MkDirRecursive(const std::string &Dir) {
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  if (Dir.empty())
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    return false;
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  if (IsDirectory(Dir))
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    return true;
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  return MkDirRecursiveInner(Dir);
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}
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void RmDirRecursive(const std::string &Dir) {
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  IterateDirRecursive(
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      Dir, [](const std::string &Path) {},
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      [](const std::string &Path) { RmDir(Path); },
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      [](const std::string &Path) { RemoveFile(Path); });
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}
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std::string TempPath(const char *Prefix, const char *Extension) {
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  return DirPlusFile(TmpDir(), std::string("libFuzzerTemp.") + Prefix +
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                                   std::to_string(GetPid()) + Extension);
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}
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}  // namespace fuzzer
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