631 lines
23 KiB
C++
631 lines
23 KiB
C++
/* Unzcrash - Tests robustness of decompressors to corrupted data.
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Inspired by unzcrash.c from Julian Seward's bzip2.
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Copyright (C) 2008-2024 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 2 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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/*
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Exit status: 0 for a normal exit, 1 for environmental problems
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(file not found, invalid command-line options, I/O errors, etc), 2 to
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indicate a corrupt or invalid input file, 3 for an internal consistency
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error (e.g., bug) which caused unzcrash to panic.
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*/
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#define _FILE_OFFSET_BITS 64
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#include <algorithm>
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#include <cerrno>
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#include <climits> // SSIZE_MAX
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#include <csignal>
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#include <cstdio>
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#include <cstdlib>
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#include <cstring>
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#include <string>
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#include <vector>
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#include <stdint.h> // SIZE_MAX
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#include <unistd.h>
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#include <sys/wait.h>
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#include "arg_parser.h"
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#include "common.h"
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#if CHAR_BIT != 8
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#error "Environments where CHAR_BIT != 8 are not supported."
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#endif
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#if ( defined SIZE_MAX && SIZE_MAX < ULONG_MAX ) || \
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( defined SSIZE_MAX && SSIZE_MAX < LONG_MAX )
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#error "Environments where 'size_t' is narrower than 'long' are not supported."
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#endif
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namespace {
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const char * const program_name = "unzcrash";
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const char * invocation_name = program_name; // default value
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int verbosity = 0;
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void show_help()
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{
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std::printf( "Unzcrash tests the robustness of decompressors to corrupted data.\n"
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"\nBy default, unzcrash reads the file specified and then repeatedly\n"
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"decompresses it, increasing 256 times each byte of the compressed data, so\n"
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"as to test all possible one-byte errors. Note that it may take years or even\n"
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"centuries to test all possible one-byte errors in a large file (tens of MB).\n"
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"\nIf the option '--block' is given, unzcrash reads the file specified and\n"
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"then repeatedly decompresses it, setting all bytes in each successive block\n"
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"to the value given, so as to test all possible full sector errors.\n"
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"\nIf the option '--truncate' is given, unzcrash reads the file specified\n"
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"and then repeatedly decompresses it, truncating the file to increasing\n"
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"lengths, so as to test all possible truncation points.\n"
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"\nNone of the three test modes described above should cause any invalid memory\n"
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"accesses. If any of them does, please, report it as a bug to the maintainers\n"
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"of the decompressor being tested.\n"
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"\nIf the decompressor returns with zero status, unzcrash compares the output\n"
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"of the decompressor for the original and corrupt files. If the outputs\n"
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"differ, it means that the decompressor returned a false negative; it failed\n"
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"to recognize the corruption and produced garbage output. The only exception\n"
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"is when a multimember file is truncated just after the last byte of a\n"
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"member, producing a shorter but valid compressed file. Except in this latter\n"
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"case, please, report any false negative as a bug.\n"
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"\nIn order to compare the outputs, unzcrash needs a 'zcmp' program able to\n"
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"understand the format being tested. For example the zcmp provided by zutils.\n"
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"Use '--zcmp=false' to disable comparisons.\n"
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"\nUsage: %s [options] 'lzip -t' file.lz\n", invocation_name );
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std::printf( "\nOptions:\n"
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" -h, --help display this help and exit\n"
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" -V, --version output version information and exit\n"
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" -b, --bits=<range> test N-bit errors instead of full byte\n"
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" -B, --block[=<size>][,<val>] test blocks of given size [512,0]\n"
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" -d, --delta=<n> test one byte/block/truncation every n bytes\n"
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" -e, --set-byte=<pos>,<val> set byte at position <pos> to value <val>\n"
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" -n, --no-check skip initial test of file.lz and zcmp\n"
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" -p, --position=<bytes> first byte position to test [default 0]\n"
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" -q, --quiet suppress all messages\n"
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" -s, --size=<bytes> number of byte positions to test [all]\n"
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" -t, --truncate test decompression of truncated file\n"
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" -v, --verbose be verbose (a 2nd -v gives more)\n"
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" -z, --zcmp=<command> set zcmp command name and options [zcmp]\n"
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"Examples of <range>: 1 1,2,3 1-4 1,3-5,8 1-3,5-8\n"
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"A negative position is relative to the end of file.\n"
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"A negative size is relative to the rest of the file.\n"
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"\nExit status: 0 for a normal exit, 1 for environmental problems\n"
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"(file not found, invalid command-line options, I/O errors, etc), 2 to\n"
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"indicate a corrupt or invalid input file, 3 for an internal consistency\n"
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"error (e.g., bug) which caused unzcrash to panic.\n"
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"\nReport bugs to lzip-bug@nongnu.org\n"
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"Lziprecover home page: http://www.nongnu.org/lzip/lziprecover.html\n" );
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}
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} // end namespace
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#include "main_common.cc"
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namespace {
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void parse_block( const char * const arg, const char * const option_name,
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long & size, uint8_t & value )
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{
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const char * tail = arg;
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if( tail[0] != ',' )
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size = getnum( arg, option_name, 0, 1, INT_MAX, &tail );
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if( tail[0] == ',' )
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value = getnum( tail + 1, option_name, 0, 0, 255 );
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else if( tail[0] )
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{ show_option_error( arg, "Missing comma between <size> and <value> in",
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option_name ); std::exit( 1 ); }
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}
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/* Return the address of a malloc'd buffer containing the file data and
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the file size in '*file_sizep'.
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In case of error, return 0 and do not modify '*file_sizep'.
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*/
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uint8_t * read_file( const char * const filename, long * const file_sizep )
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{
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FILE * const f = std::fopen( filename, "rb" );
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if( !f )
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{ show_file_error( filename, "Can't open input file", errno ); return 0; }
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long buffer_size = 65536;
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uint8_t * buffer = (uint8_t *)std::malloc( buffer_size );
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if( !buffer ) { show_error( mem_msg ); return 0; }
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long file_size = std::fread( buffer, 1, buffer_size, f );
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while( file_size >= buffer_size || ( !std::ferror( f ) && !std::feof( f ) ) )
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{
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if( file_size >= buffer_size ) // may be false because of EINTR
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{
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if( buffer_size >= LONG_MAX )
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{ show_file_error( filename, "Input file is larger than LONG_MAX." );
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std::free( buffer ); return 0; }
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buffer_size = ( buffer_size <= LONG_MAX / 2 ) ? 2 * buffer_size : LONG_MAX;
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uint8_t * const tmp = (uint8_t *)std::realloc( buffer, buffer_size );
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if( !tmp ) { show_error( mem_msg ); std::free( buffer ); return 0; }
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buffer = tmp;
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}
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file_size += std::fread( buffer + file_size, 1, buffer_size - file_size, f );
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}
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if( std::ferror( f ) || !std::feof( f ) )
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{
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show_file_error( filename, "Error reading input file", errno );
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std::free( buffer ); return 0;
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}
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std::fclose( f );
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*file_sizep = file_size;
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return buffer;
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}
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class Bitset8 // 8 value bitset (1 to 8)
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{
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bool data[8];
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static bool valid_digit( const unsigned char ch )
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{ return ( ch >= '1' && ch <= '8' ); }
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public:
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Bitset8() { for( int i = 0; i < 8; ++i ) data[i] = true; }
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bool includes( const int i ) const
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{ return ( i >= 1 && i <= 8 && data[i-1] ); }
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// Recognized formats: 1 1,2,3 1-4 1,3-5,8 1-3,5-8
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void parse_bs( const char * const arg, const char * const option_name )
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{
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const char * p = arg;
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for( int i = 0; i < 8; ++i ) data[i] = false;
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while( true )
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{
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const unsigned char ch1 = *p++;
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if( !valid_digit( ch1 ) ) break;
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if( *p != '-' ) data[ch1-'1'] = true;
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else
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{
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++p;
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if( !valid_digit( *p ) || ch1 > *p ) break;
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for( int c = ch1; c <= *p; ++c ) data[c-'1'] = true;
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++p;
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}
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if( *p == 0 ) return;
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if( *p == ',' ) ++p; else break;
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}
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show_option_error( arg, "Invalid bit position or range in", option_name );
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std::exit( 1 );
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}
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// number of N-bit errors per byte (N=0 to 8): 1 8 28 56 70 56 28 8 1
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void print() const
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{
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std::fflush( stderr );
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int c = 0;
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for( int i = 0; i < 8; ++i ) if( data[i] ) ++c;
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if( c == 8 ) std::fputs( "Testing full byte.\n", stdout );
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else if( c == 0 ) std::fputs( "Nothing to test.\n", stdout );
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else
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{
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std::fputs( "Testing ", stdout );
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for( int i = 0; i < 8; ++i )
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if( data[i] )
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{
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std::printf( "%d", i + 1 );
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if( --c ) std::fputc( ',', stdout );
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}
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std::fputs( " bit errors.\n", stdout );
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}
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std::fflush( stdout );
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}
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};
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int differing_bits( const uint8_t byte1, const uint8_t byte2 )
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{
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int count = 0;
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uint8_t dif = byte1 ^ byte2;
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while( dif )
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{ count += ( dif & 1 ); dif >>= 1; }
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return count;
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}
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/* Return the number of bytes really written.
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If (value returned < size), it is always an error.
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*/
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long writeblock( const int fd, const uint8_t * const buf, const long size )
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{
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long sz = 0;
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errno = 0;
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while( sz < size )
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{
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const long n = write( fd, buf + sz, size - sz );
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if( n > 0 ) sz += n;
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else if( n < 0 && errno != EINTR ) break;
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errno = 0;
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}
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return sz;
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}
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void show_exec_error( const char * const prog_name )
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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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program_name, prog_name, std::strerror( errno ) );
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}
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void show_fork_error( const char * const prog_name )
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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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program_name, prog_name, std::strerror( errno ) );
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}
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int wait_for_child( const pid_t pid, const char * const name )
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{
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int status;
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while( waitpid( pid, &status, 0 ) == -1 )
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{
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if( errno != EINTR )
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{
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if( verbosity >= 0 )
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std::fprintf( stderr, "%s: Error waiting termination of '%s': %s\n",
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program_name, name, std::strerror( errno ) );
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return -1;
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}
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}
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if( WIFEXITED( status ) )
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{ const int ret = WEXITSTATUS( status ); if( ret != 255 ) return ret; }
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return -1;
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}
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bool word_split( const char * const command, std::vector< std::string > & args )
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{
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const unsigned long old_size = args.size();
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for( const char * p = command; *p; )
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{
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while( *p && std::isspace( *p ) ) ++p; // strip leading space
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if( !*p ) break;
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if( *p == '\'' || *p == '"' ) // quoted name
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{
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const char quote = *p;
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const char * const begin = ++p; // skip leading quote
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while( *p && *p != quote ) ++p;
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if( !*p || begin == p ) return false; // umbalanced or empty
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args.push_back( std::string( begin, p - begin ) );
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++p; continue; // skip trailing quote
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}
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const char * const begin = p++;
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while( *p && !std::isspace( *p ) ) ++p;
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args.push_back( std::string( begin, p - begin ) );
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}
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return args.size() > old_size;
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}
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// return -1 if fatal error, 0 if OK, > 0 if error
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int fork_and_feed( const uint8_t * const buffer, const long buffer_size,
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const char ** const argv, const bool check = false )
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{
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int fda[2]; // pipe to child
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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 = vfork();
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if( pid < 0 ) // parent
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{ show_fork_error( argv[0] ); return -1; }
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else if( pid > 0 ) // parent (feed data to child)
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{
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if( close( fda[0] ) != 0 )
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{ show_error( "Error closing unused pipe", errno ); return -1; }
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if( writeblock( fda[1], buffer, buffer_size ) != buffer_size && check )
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{ show_error( "Can't write to child process", errno ); return -1; }
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if( close( fda[1] ) != 0 )
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{ show_error( "Error closing pipe", errno ); return -1; }
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}
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else if( pid == 0 ) // child
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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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execvp( argv[0], (char **)argv );
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show_exec_error( argv[0] );
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_exit( 255 ); // 255 means fatal error in wait_for_child
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}
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return wait_for_child( pid, argv[0] );
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}
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} // end namespace
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int main( const int argc, const char * const argv[] )
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{
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enum Mode { m_block, m_byte, m_truncate };
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const char * mode_str[3] = { "block", "byte", "size" };
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Bitset8 bits; // if Bitset8::parse_bs not called test full byte
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Bad_byte bad_byte;
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const char * zcmp_program = "zcmp";
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long pos = 0;
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long max_size = LONG_MAX;
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long delta = 0; // to be set later
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long block_size = 512;
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Mode program_mode = m_byte;
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uint8_t block_value = 0;
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bool check = true;
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if( argc > 0 ) invocation_name = argv[0];
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const Arg_parser::Option options[] =
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{
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{ 'h', "help", Arg_parser::no },
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{ 'b', "bits", Arg_parser::yes },
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{ 'B', "block", Arg_parser::maybe },
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{ 'd', "delta", Arg_parser::yes },
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{ 'e', "set-byte", Arg_parser::yes },
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{ 'n', "no-check", Arg_parser::no },
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{ 'n', "no-verify", Arg_parser::no },
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{ 'p', "position", Arg_parser::yes },
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{ 'q', "quiet", Arg_parser::no },
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{ 's', "size", Arg_parser::yes },
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{ 't', "truncate", Arg_parser::no },
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{ 'v', "verbose", Arg_parser::no },
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{ 'V', "version", Arg_parser::no },
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{ 'z', "zcmp", Arg_parser::yes },
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{ 0 , 0, Arg_parser::no } };
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const Arg_parser parser( argc, argv, options );
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if( parser.error().size() ) // bad option
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{ show_error( parser.error().c_str(), 0, true ); return 1; }
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int argind = 0;
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for( ; argind < parser.arguments(); ++argind )
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{
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const int code = parser.code( argind );
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if( !code ) break; // no more options
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const char * const pn = parser.parsed_name( argind ).c_str();
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const char * const arg = parser.argument( argind ).c_str();
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switch( code )
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{
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case 'h': show_help(); return 0;
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case 'b': bits.parse_bs( arg, pn ); program_mode = m_byte; break;
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case 'B': if( arg[0] ) parse_block( arg, pn, block_size, block_value );
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program_mode = m_block; break;
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case 'd': delta = getnum( arg, pn, block_size, 1, INT_MAX ); break;
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case 'e': bad_byte.parse_bb( arg, pn ); break;
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case 'n': check = false; break;
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case 'p': pos = getnum( arg, pn, block_size, -LONG_MAX, LONG_MAX ); break;
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case 'q': verbosity = -1; break;
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case 's': max_size = getnum( arg, pn, block_size, -LONG_MAX, LONG_MAX ); break;
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case 't': program_mode = m_truncate; break;
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case 'v': if( verbosity < 4 ) ++verbosity; break;
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case 'V': show_version(); return 0;
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case 'z': zcmp_program = arg; break;
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default: internal_error( "uncaught option." );
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}
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} // end process options
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if( parser.arguments() - argind != 2 )
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{
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if( verbosity >= 0 )
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std::fprintf( stderr, "Usage: %s 'lzip -t' file.lz\n", invocation_name );
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return 1;
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}
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if( delta <= 0 ) delta = ( program_mode == m_block ) ? block_size : 1;
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const char * const command = parser.argument( argind ).c_str();
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std::vector< std::string > command_args;
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if( !word_split( command, command_args ) )
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{ show_file_error( command, "Invalid command." ); return 1; }
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const char ** const command_argv = new const char *[command_args.size()+1];
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for( unsigned i = 0; i < command_args.size(); ++i )
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command_argv[i] = command_args[i].c_str();
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command_argv[command_args.size()] = 0;
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const char * const filename = parser.argument( argind + 1 ).c_str();
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long file_size = 0;
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uint8_t * const buffer = read_file( filename, &file_size );
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if( !buffer ) return 1;
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std::string zcmp_command;
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std::vector< std::string > zcmp_args;
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const char ** zcmp_argv = 0;
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if( std::strcmp( zcmp_program, "false" ) != 0 )
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{
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zcmp_command = zcmp_program;
|
|
zcmp_command += " '"; zcmp_command += filename; zcmp_command += "' -";
|
|
if( !word_split( zcmp_command.c_str(), zcmp_args ) )
|
|
{ show_file_error( zcmp_command.c_str(), "Invalid zcmp command." );
|
|
return 1; }
|
|
zcmp_argv = new const char *[zcmp_args.size()+1];
|
|
for( unsigned i = 0; i < zcmp_args.size(); ++i )
|
|
zcmp_argv[i] = zcmp_args[i].c_str();
|
|
zcmp_argv[zcmp_args.size()] = 0;
|
|
}
|
|
|
|
// check original file
|
|
if( verbosity >= 1 ) fprintf( stderr, "Testing file '%s'\n", filename );
|
|
if( check )
|
|
{
|
|
const int ret = fork_and_feed( buffer, file_size, command_argv, true );
|
|
if( ret != 0 )
|
|
{
|
|
if( verbosity >= 0 )
|
|
{
|
|
if( ret < 0 )
|
|
std::fprintf( stderr, "%s: Can't run '%s'.\n", program_name, command );
|
|
else
|
|
std::fprintf( stderr, "%s: \"%s\" failed (%d).\n",
|
|
program_name, command, ret );
|
|
}
|
|
return 1;
|
|
}
|
|
if( zcmp_command.size() )
|
|
{
|
|
const int ret = fork_and_feed( buffer, file_size, zcmp_argv, true );
|
|
if( ret != 0 )
|
|
{
|
|
if( verbosity >= 0 )
|
|
{
|
|
if( ret < 0 )
|
|
std::fprintf( stderr, "%s: Can't run '%s'.\n",
|
|
program_name, zcmp_command.c_str() );
|
|
else
|
|
std::fprintf( stderr, "%s: \"%s\" failed (%d). Disabling comparisons.\n",
|
|
program_name, zcmp_command.c_str(), ret );
|
|
}
|
|
if( ret < 0 ) return 1;
|
|
zcmp_command.clear();
|
|
}
|
|
}
|
|
}
|
|
|
|
std::signal( SIGPIPE, SIG_IGN );
|
|
|
|
if( pos < 0 ) pos = std::max( 0L, file_size + pos );
|
|
if( pos >= file_size || max_size == 0 ||
|
|
( max_size < 0 && -max_size >= file_size - pos ) )
|
|
{ show_error( "Nothing to do; domain is empty." ); return 0; }
|
|
if( max_size < 0 ) max_size += file_size - pos;
|
|
const long end = ( ( max_size < file_size - pos ) ? pos + max_size : file_size );
|
|
if( bad_byte.pos >= file_size )
|
|
{ show_option_error( bad_byte.argument, "Position is beyond end of file in",
|
|
bad_byte.option_name ); return 1; }
|
|
if( bad_byte.pos >= 0 )
|
|
buffer[bad_byte.pos] = bad_byte( buffer[bad_byte.pos] );
|
|
long positions = 0, decompressions = 0, successes = 0, failed_comparisons = 0;
|
|
if( program_mode == m_truncate )
|
|
for( long i = pos; i < end; i += std::min( delta, end - i ) )
|
|
{
|
|
if( verbosity >= 1 ) std::fprintf( stderr, "length %ld\n", i );
|
|
++positions; ++decompressions;
|
|
const int ret = fork_and_feed( buffer, i, command_argv );
|
|
if( ret < 0 ) return 1;
|
|
if( ret == 0 )
|
|
{
|
|
++successes;
|
|
if( verbosity >= 0 )
|
|
std::fprintf( stderr, "length %ld passed the test\n", i );
|
|
if( zcmp_command.size() )
|
|
{
|
|
const int ret = fork_and_feed( buffer, i, zcmp_argv );
|
|
if( ret < 0 ) return 1;
|
|
if( ret > 0 )
|
|
{
|
|
++failed_comparisons;
|
|
if( verbosity >= 0 )
|
|
std::fprintf( stderr, "length %ld comparison failed\n", i );
|
|
}
|
|
}
|
|
}
|
|
}
|
|
else if( program_mode == m_block )
|
|
{
|
|
uint8_t * block = (uint8_t *)std::malloc( block_size );
|
|
if( !block ) { show_error( mem_msg ); return 1; }
|
|
for( long i = pos; i < end; i += std::min( delta, end - i ) )
|
|
{
|
|
const long size = std::min( block_size, file_size - i );
|
|
if( verbosity >= 1 ) std::fprintf( stderr, "block %ld,%ld\n", i, size );
|
|
++positions; ++decompressions;
|
|
std::memcpy( block, buffer + i, size );
|
|
std::memset( buffer + i, block_value, size );
|
|
const int ret = fork_and_feed( buffer, file_size, command_argv );
|
|
if( ret < 0 ) return 1;
|
|
if( ret == 0 )
|
|
{
|
|
++successes;
|
|
if( verbosity >= 0 )
|
|
std::fprintf( stderr, "block %ld,%ld passed the test\n", i, size );
|
|
if( zcmp_command.size() )
|
|
{
|
|
const int ret = fork_and_feed( buffer, file_size, zcmp_argv );
|
|
if( ret < 0 ) return 1;
|
|
if( ret > 0 )
|
|
{
|
|
++failed_comparisons;
|
|
if( verbosity >= 0 )
|
|
std::fprintf( stderr, "block %ld,%ld comparison failed\n", i, size );
|
|
}
|
|
}
|
|
}
|
|
std::memcpy( buffer + i, block, size );
|
|
}
|
|
std::free( block );
|
|
}
|
|
else
|
|
{
|
|
if( verbosity >= 1 ) bits.print();
|
|
for( long i = pos; i < end; i += std::min( delta, end - i ) )
|
|
{
|
|
if( verbosity >= 1 ) std::fprintf( stderr, "byte %ld\n", i );
|
|
++positions;
|
|
const uint8_t byte = buffer[i];
|
|
for( int j = 1; j < 256; ++j )
|
|
{
|
|
++buffer[i];
|
|
if( bits.includes( differing_bits( byte, buffer[i] ) ) )
|
|
{
|
|
++decompressions;
|
|
if( verbosity >= 2 )
|
|
std::fprintf( stderr, "0x%02X (0x%02X+0x%02X) ",
|
|
buffer[i], byte, j );
|
|
const int ret = fork_and_feed( buffer, file_size, command_argv );
|
|
if( ret < 0 ) return 1;
|
|
if( ret == 0 )
|
|
{
|
|
++successes;
|
|
if( verbosity >= 0 )
|
|
{ if( verbosity < 2 ) // else already printed above
|
|
std::fprintf( stderr, "0x%02X (0x%02X+0x%02X) ",
|
|
buffer[i], byte, j );
|
|
std::fprintf( stderr, "byte %ld passed the test\n", i ); }
|
|
if( zcmp_command.size() )
|
|
{
|
|
const int ret = fork_and_feed( buffer, file_size, zcmp_argv );
|
|
if( ret < 0 ) return 1;
|
|
if( ret > 0 )
|
|
{
|
|
++failed_comparisons;
|
|
if( verbosity >= 0 )
|
|
std::fprintf( stderr, "byte %ld comparison failed\n", i );
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
buffer[i] = byte;
|
|
}
|
|
}
|
|
|
|
if( verbosity >= 0 )
|
|
{
|
|
std::fprintf( stderr, "\n%9ld %ss tested\n%9ld total decompressions"
|
|
"\n%9ld decompressions returned with zero status",
|
|
positions, mode_str[program_mode], decompressions, successes );
|
|
if( successes > 0 )
|
|
{
|
|
if( zcmp_command.empty() )
|
|
std::fputs( "\n comparisons disabled\n", stderr );
|
|
else if( failed_comparisons > 0 )
|
|
std::fprintf( stderr, ", of which\n%9ld comparisons failed\n",
|
|
failed_comparisons );
|
|
else std::fputs( "\n all comparisons passed\n", stderr );
|
|
}
|
|
else std::fputc( '\n', stderr );
|
|
}
|
|
|
|
std::free( buffer );
|
|
return 0;
|
|
}
|