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410
dependencies/libarchive-3.4.2/libarchive/test/test_read_format_cab.c
vendored
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410
dependencies/libarchive-3.4.2/libarchive/test/test_read_format_cab.c
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@ -0,0 +1,410 @@
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/*-
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* Copyright (c) 2010 Michihiro NAKAJIMA
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR(S) ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR(S) BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "test.h"
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__FBSDID("$FreeBSD");
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/*
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Execute the following command to rebuild the data for this program:
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tail -n +44 test_read_format_cab.c | /bin/sh
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And following works are:
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1. Move /tmp/cab/cab.zip to Windows PC
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2. Extract cab.zip
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3. Open command prompt and change current directory where you extracted cab.zip
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4. Execute cab.bat
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5. Then you will see that there is a cabinet file, test.cab
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6. Move test.cab to posix platform
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7. Extract test.cab with this version of bsdtar
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8. Execute the following command to make uuencoded files.
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uuencode test_read_format_cab_1.cab test_read_format_cab_1.cab > test_read_format_cab_1.cab.uu
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uuencode test_read_format_cab_2.cab test_read_format_cab_2.cab > test_read_format_cab_2.cab.uu
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uuencode test_read_format_cab_3.cab test_read_format_cab_3.cab > test_read_format_cab_3.cab.uu
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#!/bin/sh
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#
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# How to make test data.
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#
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# Temporary directory.
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base=/tmp/cab
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# Owner id
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owner=1001
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# Group id
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group=1001
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#
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# Make contents of a cabinet file.
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#
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rm -rf ${base}
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mkdir ${base}
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mkdir ${base}/dir1
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mkdir ${base}/dir2
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#
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touch ${base}/empty
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cat > ${base}/dir1/file1 << END
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file 1 contents
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hello
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hello
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hello
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END
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#
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cat > ${base}/dir2/file2 << END
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file 2 contents
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hello
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hello
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hello
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hello
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hello
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hello
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END
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#
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dd if=/dev/zero of=${base}/zero bs=1 count=33000 > /dev/null 2>&1
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#
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cab1=test_read_format_cab_1.cab
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cab2=test_read_format_cab_2.cab
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cab3=test_read_format_cab_3.cab
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#
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#
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cat > ${base}/mkcab1 << END
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.Set Compress=OFF
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.Set DiskDirectory1=.
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.Set InfDate=1980-01-02
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.Set InfTime=00:00:00
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.Set CabinetName1=${cab1}
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empty
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.Set DestinationDir=dir1
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dir1/file1
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.Set DestinationDir=dir2
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dir2/file2
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END
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#
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cat > ${base}/mkcab2 << END
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.Set CompressionType=MSZIP
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.Set DiskDirectory1=.
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.Set InfDate=1980-01-02
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.Set InfTime=00:00:00
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.Set CabinetName1=${cab2}
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empty
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zero
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.Set DestinationDir=dir1
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dir1/file1
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.Set DestinationDir=dir2
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dir2/file2
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END
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#
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cat > ${base}/mkcab3 << END
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.Set CompressionType=LZX
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.Set DiskDirectory1=.
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.Set InfDate=1980-01-02
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.Set InfTime=00:00:00
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.Set CabinetName1=${cab3}
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empty
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zero
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.Set DestinationDir=dir1
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dir1/file1
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.Set DestinationDir=dir2
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dir2/file2
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END
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#
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cat > ${base}/mkcab4 << END
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.Set CompressionType=MSZIP
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.Set DiskDirectory1=.
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.Set CabinetName1=test.cab
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${cab1}
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${cab2}
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${cab3}
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END
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#
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cat > ${base}/cab.bat << END
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makecab.exe /F mkcab1
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makecab.exe /F mkcab2
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makecab.exe /F mkcab3
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makecab.exe /F mkcab4
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del setup.inf setup.rpt
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del empty zero dir1\file1 dir2\file2 mkcab1 mkcab2 mkcab3 mkcab4
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del ${cab1} ${cab2} ${cab3}
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rmdir dir1 dir2
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END
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#
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f=cab.zip
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(cd ${base}; zip -q -c $f empty zero dir1/file1 dir2/file2 mkcab1 mkcab2 mkcab3 mkcab4 cab.bat)
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#
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exit 1
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*/
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static const char file1[] = {
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" file 1 contents\n"
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"hello\n"
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"hello\n"
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"hello\n"
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};
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#define file1_size (sizeof(file1)-1)
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static const char file2[] = {
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" file 2 contents\n"
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"hello\n"
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"hello\n"
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"hello\n"
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"hello\n"
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"hello\n"
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"hello\n"
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};
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#define file2_size (sizeof(file2)-1)
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enum comp_type {
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STORE = 0,
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MSZIP,
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LZX
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};
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static void
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verify(const char *refname, enum comp_type comp)
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{
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struct archive_entry *ae;
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struct archive *a;
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char buff[128];
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char zero[128];
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size_t s;
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memset(zero, 0, sizeof(zero));
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extract_reference_file(refname);
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assert((a = archive_read_new()) != NULL);
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assertEqualIntA(a, ARCHIVE_OK, archive_read_support_filter_all(a));
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assertEqualIntA(a, ARCHIVE_OK, archive_read_support_format_all(a));
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assertEqualIntA(a, ARCHIVE_OK,
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archive_read_open_filename(a, refname, 10240));
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/* Verify regular empty. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt((AE_IFREG | 0666), archive_entry_mode(ae));
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assertEqualString("empty", archive_entry_pathname(ae));
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assertEqualInt(0, archive_entry_uid(ae));
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assertEqualInt(0, archive_entry_gid(ae));
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assertEqualInt(0, archive_entry_size(ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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if (comp != STORE) {
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/* Verify regular zero.
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* Maximum CFDATA size is 32768, so we need over 32768 bytes
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* file to check if we properly handle multiple CFDATA.
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*/
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt((AE_IFREG | 0666), archive_entry_mode(ae));
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assertEqualString("zero", archive_entry_pathname(ae));
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assertEqualInt(0, archive_entry_uid(ae));
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assertEqualInt(0, archive_entry_gid(ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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assertEqualInt(33000, archive_entry_size(ae));
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for (s = 0; s + sizeof(buff) < 33000; s+= sizeof(buff)) {
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ssize_t rsize = archive_read_data(a, buff, sizeof(buff));
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if (comp == MSZIP && rsize == ARCHIVE_FATAL && archive_zlib_version() == NULL) {
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skipping("Skipping CAB format(MSZIP) check: %s",
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archive_error_string(a));
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goto finish;
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}
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assertEqualInt(sizeof(buff), rsize);
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assertEqualMem(buff, zero, sizeof(buff));
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}
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assertEqualInt(33000 - s, archive_read_data(a, buff, 33000 - s));
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assertEqualMem(buff, zero, 33000 - s);
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}
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/* Verify regular file1. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt((AE_IFREG | 0666), archive_entry_mode(ae));
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assertEqualString("dir1/file1", archive_entry_pathname(ae));
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assertEqualInt(0, archive_entry_uid(ae));
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assertEqualInt(0, archive_entry_gid(ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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assertEqualInt(file1_size, archive_entry_size(ae));
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assertEqualInt(file1_size, archive_read_data(a, buff, file1_size));
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assertEqualMem(buff, file1, file1_size);
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/* Verify regular file2. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt((AE_IFREG | 0666), archive_entry_mode(ae));
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assertEqualString("dir2/file2", archive_entry_pathname(ae));
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assertEqualInt(0, archive_entry_uid(ae));
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assertEqualInt(0, archive_entry_gid(ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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assertEqualInt(file2_size, archive_entry_size(ae));
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assertEqualInt(file2_size, archive_read_data(a, buff, file2_size));
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assertEqualMem(buff, file2, file2_size);
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/* End of archive. */
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assertEqualIntA(a, ARCHIVE_EOF, archive_read_next_header(a, &ae));
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if (comp != STORE) {
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assertEqualInt(4, archive_file_count(a));
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} else {
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assertEqualInt(3, archive_file_count(a));
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}
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/* Verify archive format. */
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assertEqualIntA(a, ARCHIVE_FILTER_NONE, archive_filter_code(a, 0));
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assertEqualIntA(a, ARCHIVE_FORMAT_CAB, archive_format(a));
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/* Close the archive. */
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finish:
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assertEqualInt(ARCHIVE_OK, archive_read_close(a));
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assertEqualInt(ARCHIVE_OK, archive_read_free(a));
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}
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/*
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* Skip beginning files and Read the last file.
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*/
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static void
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verify2(const char *refname, enum comp_type comp)
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{
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struct archive_entry *ae;
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struct archive *a;
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char buff[128];
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char zero[128];
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if (comp == MSZIP && archive_zlib_version() == NULL) {
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skipping("Skipping CAB format(MSZIP) check for %s",
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refname);
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return;
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}
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memset(zero, 0, sizeof(zero));
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extract_reference_file(refname);
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assert((a = archive_read_new()) != NULL);
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assertEqualIntA(a, ARCHIVE_OK, archive_read_support_filter_all(a));
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assertEqualIntA(a, ARCHIVE_OK, archive_read_support_format_all(a));
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assertEqualIntA(a, ARCHIVE_OK,
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archive_read_open_filename(a, refname, 10240));
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/* Verify regular empty. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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if (comp != STORE) {
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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}
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/* Verify regular file1. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
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/* Verify regular file2. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt((AE_IFREG | 0666), archive_entry_mode(ae));
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assertEqualString("dir2/file2", archive_entry_pathname(ae));
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assertEqualInt(0, archive_entry_uid(ae));
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assertEqualInt(0, archive_entry_gid(ae));
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assertEqualInt(file2_size, archive_entry_size(ae));
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assertEqualInt(file2_size, archive_read_data(a, buff, file2_size));
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assertEqualMem(buff, file2, file2_size);
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/* End of archive. */
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assertEqualIntA(a, ARCHIVE_EOF, archive_read_next_header(a, &ae));
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if (comp != STORE) {
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assertEqualInt(4, archive_file_count(a));
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} else {
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assertEqualInt(3, archive_file_count(a));
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}
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/* Verify archive format. */
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assertEqualIntA(a, ARCHIVE_FILTER_NONE, archive_filter_code(a, 0));
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assertEqualIntA(a, ARCHIVE_FORMAT_CAB, archive_format(a));
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/* Close the archive. */
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assertEqualInt(ARCHIVE_OK, archive_read_close(a));
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assertEqualInt(ARCHIVE_OK, archive_read_free(a));
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}
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/*
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* Skip all file like 'bsdtar tvf foo.cab'.
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*/
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static void
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verify3(const char *refname, enum comp_type comp)
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{
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struct archive_entry *ae;
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struct archive *a;
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char zero[128];
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memset(zero, 0, sizeof(zero));
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extract_reference_file(refname);
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assert((a = archive_read_new()) != NULL);
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assertEqualIntA(a, ARCHIVE_OK, archive_read_support_filter_all(a));
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assertEqualIntA(a, ARCHIVE_OK, archive_read_support_format_all(a));
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assertEqualIntA(a, ARCHIVE_OK,
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archive_read_open_filename(a, refname, 10240));
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/* Verify regular empty. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
|
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if (comp != STORE) {
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
|
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
|
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}
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/* Verify regular file1. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
|
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
|
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|
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/* Verify regular file2. */
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assertEqualIntA(a, ARCHIVE_OK, archive_read_next_header(a, &ae));
|
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assertEqualInt(archive_entry_is_encrypted(ae), 0);
|
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assertEqualIntA(a, archive_read_has_encrypted_entries(a), ARCHIVE_READ_FORMAT_ENCRYPTION_UNSUPPORTED);
|
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|
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/* End of archive. */
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assertEqualIntA(a, ARCHIVE_EOF, archive_read_next_header(a, &ae));
|
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|
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if (comp != STORE) {
|
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assertEqualInt(4, archive_file_count(a));
|
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} else {
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assertEqualInt(3, archive_file_count(a));
|
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}
|
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|
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/* Verify archive format. */
|
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assertEqualIntA(a, ARCHIVE_FILTER_NONE, archive_filter_code(a, 0));
|
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assertEqualIntA(a, ARCHIVE_FORMAT_CAB, archive_format(a));
|
||||
|
||||
/* Close the archive. */
|
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assertEqualInt(ARCHIVE_OK, archive_read_close(a));
|
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assertEqualInt(ARCHIVE_OK, archive_read_free(a));
|
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}
|
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|
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DEFINE_TEST(test_read_format_cab)
|
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{
|
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/* Verify Cabinet file in no compression. */
|
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verify("test_read_format_cab_1.cab", STORE);
|
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verify2("test_read_format_cab_1.cab", STORE);
|
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verify3("test_read_format_cab_1.cab", STORE);
|
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/* Verify Cabinet file in MSZIP. */
|
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verify("test_read_format_cab_2.cab", MSZIP);
|
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verify2("test_read_format_cab_2.cab", MSZIP);
|
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verify3("test_read_format_cab_2.cab", MSZIP);
|
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/* Verify Cabinet file in LZX. */
|
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verify("test_read_format_cab_3.cab", LZX);
|
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verify2("test_read_format_cab_3.cab", LZX);
|
||||
verify3("test_read_format_cab_3.cab", LZX);
|
||||
}
|
||||
|
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