Merging upstream version 0.8.
Signed-off-by: Daniel Baumann <daniel@debian.org>
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32 changed files with 3798 additions and 1551 deletions
119
ztest.cc
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119
ztest.cc
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/* Ztest - verify integrity of compressed files
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Copyright (C) 2010 Antonio Diaz Diaz.
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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void show_ztest_help() throw()
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{
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std::printf( "Ztest verifies the integrity of the specified compressed files.\n" );
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std::printf( "Non-compressed files are ignored. If no files are specified, the\n" );
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std::printf( "integrity of compressed data read from standard input is verified. Data\n" );
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std::printf( "read from standard input must be all compressed with the same compressor.\n" );
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std::printf( "The supported compressors are bzip2, gzip, lzip and xz.\n" );
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std::printf( "\nUsage: ztest [options] [files]\n" );
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std::printf( "\nExit status is 2 if any compressed file is corrupt, 0 otherwise.\n" );
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std::printf( "\nOptions:\n" );
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std::printf( " -h, --help display this help and exit\n" );
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std::printf( " -V, --version output version information and exit\n" );
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std::printf( " -q, --quiet suppress all messages\n" );
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std::printf( " -r, --recursive operate recursively on directories\n" );
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std::printf( " -v, --verbose be verbose (a 2nd -v gives more)\n" );
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show_help_addr();
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}
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int ztest_stdin( const int infd,
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const std::vector< const char * > & ztest_args )
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{
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std::string file_type;
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const uint8_t * magic_data;
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int magic_size = 0;
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if( !test_format( infd, file_type, &magic_data, &magic_size ) )
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{ show_error( "Unknown data format read from stdin." ); return 2; }
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int fda[2];
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if( pipe( fda ) < 0 )
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{ show_error( "Can't create pipe", errno ); return 1; }
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const pid_t pid = fork();
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if( pid == 0 ) // child (decompressor)
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{
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if( dup2( fda[0], STDIN_FILENO ) >= 0 &&
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close( fda[0] ) == 0 && close( fda[1] ) == 0 )
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{
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const char ** const argv = new const char *[ztest_args.size()+3];
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argv[0] = file_type.c_str();
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for( unsigned int i = 0; i < ztest_args.size(); ++i )
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argv[i+1] = ztest_args[i];
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argv[ztest_args.size()+1] = "-t";
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argv[ztest_args.size()+2] = 0;
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execvp( argv[0], (char **)argv );
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}
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if( verbosity >= 0 )
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std::fprintf( stderr, "%s: Can't exec `%s': %s.\n",
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util_name, file_type.c_str(), std::strerror( errno ) );
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_exit( 1 );
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}
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// parent
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if( pid < 0 )
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{
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if( verbosity >= 0 )
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std::fprintf( stderr, "%s: Can't fork `%s': %s.\n",
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util_name, file_type.c_str(), std::strerror( errno ) );
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return 1;
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}
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close( fda[0] );
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if( !feed_data( infd, fda[1], magic_data, magic_size ) ) return 1;
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if( close( fda[1] ) != 0 )
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{ show_error( "Can't close output of data feeder", errno ); return 1; }
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return wait_for_child( pid, file_type.c_str() );
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}
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int ztest_file( const int infd, const std::string & input_filename,
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const std::vector< const char * > & ztest_args )
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{
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std::string file_type;
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const uint8_t * magic_data;
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int magic_size = 0;
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if( !test_format( infd, file_type, &magic_data, &magic_size ) )
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return 0; // ignored
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const pid_t pid = fork();
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if( pid == 0 ) // child (decompressor)
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{
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const char ** const argv = new const char *[ztest_args.size()+5];
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argv[0] = file_type.c_str();
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for( unsigned int i = 0; i < ztest_args.size(); ++i )
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argv[i+1] = ztest_args[i];
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argv[ztest_args.size()+1] = "-t";
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argv[ztest_args.size()+2] = "--";
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argv[ztest_args.size()+3] = input_filename.c_str();
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argv[ztest_args.size()+4] = 0;
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execvp( argv[0], (char **)argv );
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if( verbosity >= 0 )
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std::fprintf( stderr, "%s: Can't exec `%s': %s.\n",
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util_name, argv[0], std::strerror( errno ) );
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_exit( 1 );
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}
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// parent
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if( pid < 0 )
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{
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if( verbosity >= 0 )
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std::fprintf( stderr, "%s: Can't fork `%s': %s.\n",
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util_name, file_type.c_str(), std::strerror( errno ) );
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return 1;
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}
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return wait_for_child( pid, file_type.c_str() );
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}
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