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#!/usr/bin/env bash
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##
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## Author......: See docs/credits.txt
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## License.....: MIT
##
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OPTS = "--quiet --potfile-disable --runtime 400 --hwmon-disable"
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TDIR = " $( cd " $( dirname " ${ BASH_SOURCE [0] } " ) " && pwd ) "
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# List of TrueCrypt modes which have test containers
TC_MODES = "6211 6212 6213 6221 6222 6223 6231 6232 6233 6241 6242 6243"
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# List of VeraCrypt modes which have test containers
VC_MODES = "13711 13712 13713 13721 13722 13723 13731 13732 13733 13741 13742 13743 13751 13752 13753 13761 13762 13763 13771 13772 13773"
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# List of modes which either are OPTS_TYPE_PT_NEVERCRACK or produce collisions
NEVER_CRACK = "9720 9820 14900 18100"
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# List of modes which return a different output hash format than the input hash format
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NOCHECK_ENCODING = "16800 22000"
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# LUKS mode has test containers
LUKS_MODE = "14600"
# missing hash types: 5200
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HASH_TYPES = $( ls " ${ TDIR } " /test_modules/*.pm | sed -E 's/.*m0*([0-9]+).pm/\1/' )
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HASH_TYPES = " ${ HASH_TYPES } ${ TC_MODES } ${ VC_MODES } ${ LUKS_MODE } "
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HASH_TYPES = $( echo -n " ${ HASH_TYPES } " | tr ' ' '\n' | sort -u -n | tr '\n' ' ' )
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VECTOR_WIDTHS = "1 2 4 8 16"
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HASHFILE_ONLY = $( grep -l OPTS_TYPE_BINARY_HASHFILE " ${ TDIR } " /../src/modules/module_*.c | sed -E 's/.*module_0*([0-9]+).c/\1/' | tr '\n' ' ' )
SLOW_ALGOS = $( grep -l ATTACK_EXEC_OUTSIDE_KERNEL " ${ TDIR } " /../src/modules/module_*.c | sed -E 's/.*module_0*([0-9]+).c/\1/' | tr '\n' ' ' )
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OUTD = " test_ $( date +%s) "
PACKAGE_CMD = "7z a"
PACKAGE_FOLDER = ""
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EXTRACT_CMD = "7z x"
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mask_3[ 0] = ""
mask_3[ 1] = "?d"
mask_3[ 2] = "?d?d"
mask_3[ 3] = "?d?d?d"
mask_3[ 4] = "?d?d?d?d"
mask_3[ 5] = "?d?d?d?d?d"
mask_3[ 6] = "?d?d?d?d?d?d"
mask_3[ 7] = "?d?d?d?d?d?d?d"
mask_3[ 8] = "?d?d?d?d?d?d?d?d"
mask_3[ 9] = "?d?d?d?d?d?d?d?d?d"
mask_3[ 10] = "?d?d?d?d?d?d?d?d?d?d"
mask_3[ 11] = "?d?d?d?d?d?d?d?d?d?d?d"
mask_3[ 12] = "?d?d?d?d?d?d?d?d?d?d?d?d"
mask_3[ 13] = "?d?d?d?d?d?d?d?d?d?d?d?d?d"
mask_3[ 14] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d"
mask_3[ 15] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d"
mask_3[ 16] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d0"
mask_3[ 17] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d00"
mask_3[ 18] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d000"
mask_3[ 19] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d0000"
mask_3[ 20] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d00000"
mask_3[ 21] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d000000"
mask_3[ 22] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d0000000"
mask_3[ 23] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d00000000"
mask_3[ 24] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d000000000"
mask_3[ 25] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d0000000000"
mask_3[ 26] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d00000000000"
mask_3[ 27] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d000000000000"
mask_3[ 28] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d0000000000000"
mask_3[ 29] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d00000000000000"
mask_3[ 30] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d000000000000000"
mask_3[ 31] = "?d?d?d?d?d?d?d?d?d?d?d?d?d?d?d0000000000000000"
mask_6[ 0] = ""
mask_6[ 1] = ""
mask_6[ 2] = "?d"
mask_6[ 3] = "?d?d"
mask_6[ 4] = "?d?d"
mask_6[ 5] = "?d?d?d"
mask_6[ 6] = "?d?d?d"
mask_6[ 7] = "?d?d?d?d"
mask_6[ 8] = "?d?d?d?d"
mask_6[ 9] = "?d?d?d?d?d"
mask_6[ 10] = "?d?d?d?d?d"
mask_6[ 11] = "?d?d?d?d?d?d"
mask_6[ 12] = "?d?d?d?d?d?d"
mask_6[ 13] = "?d?d?d?d?d?d?d"
mask_6[ 14] = "?d?d?d?d?d?d?d"
mask_6[ 15] = "?d?d?d?d?d?d?d?d"
mask_6[ 16] = "?d?d?d?d?d?d?d?d"
mask_6[ 17] = "?d?d?d?d?d?d?d?d0"
mask_6[ 18] = "?d?d?d?d?d?d?d?d0"
mask_6[ 19] = "?d?d?d?d?d?d?d?d00"
mask_6[ 20] = "?d?d?d?d?d?d?d?d00"
mask_6[ 21] = "?d?d?d?d?d?d?d?d000"
mask_6[ 22] = "?d?d?d?d?d?d?d?d000"
mask_6[ 23] = "?d?d?d?d?d?d?d?d0000"
mask_6[ 24] = "?d?d?d?d?d?d?d?d0000"
mask_6[ 25] = "?d?d?d?d?d?d?d?d00000"
mask_6[ 26] = "?d?d?d?d?d?d?d?d00000"
mask_6[ 27] = "?d?d?d?d?d?d?d?d000000"
mask_6[ 28] = "?d?d?d?d?d?d?d?d000000"
mask_6[ 29] = "?d?d?d?d?d?d?d?d0000000"
mask_6[ 30] = "?d?d?d?d?d?d?d?d0000000"
mask_6[ 31] = "?d?d?d?d?d?d?d?d00000000"
mask_7[ 0] = ""
mask_7[ 1] = ""
mask_7[ 2] = "?d"
mask_7[ 3] = "?d"
mask_7[ 4] = "?d?d"
mask_7[ 5] = "?d?d"
mask_7[ 6] = "?d?d?d"
mask_7[ 7] = "?d?d?d"
mask_7[ 8] = "?d?d?d?d"
mask_7[ 9] = "?d?d?d?d"
mask_7[ 10] = "?d?d?d?d?d"
mask_7[ 11] = "?d?d?d?d?d"
mask_7[ 12] = "?d?d?d?d?d?d"
mask_7[ 13] = "?d?d?d?d?d?d"
mask_7[ 14] = "?d?d?d?d?d?d?d"
mask_7[ 15] = "?d?d?d?d?d?d?d"
mask_7[ 16] = "?d?d?d?d?d?d?d?d"
mask_7[ 17] = "?d?d?d?d?d?d?d?d"
mask_7[ 18] = "?d?d?d?d?d?d?d?d0"
mask_7[ 19] = "?d?d?d?d?d?d?d?d0"
mask_7[ 20] = "?d?d?d?d?d?d?d?d00"
mask_7[ 21] = "?d?d?d?d?d?d?d?d00"
mask_7[ 22] = "?d?d?d?d?d?d?d?d000"
mask_7[ 23] = "?d?d?d?d?d?d?d?d000"
mask_7[ 24] = "?d?d?d?d?d?d?d?d0000"
mask_7[ 25] = "?d?d?d?d?d?d?d?d0000"
mask_7[ 26] = "?d?d?d?d?d?d?d?d00000"
mask_7[ 27] = "?d?d?d?d?d?d?d?d00000"
mask_7[ 28] = "?d?d?d?d?d?d?d?d000000"
mask_7[ 29] = "?d?d?d?d?d?d?d?d000000"
mask_7[ 30] = "?d?d?d?d?d?d?d?d0000000"
mask_7[ 31] = "?d?d?d?d?d?d?d?d0000000"
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# Array lookup
# $1: value
# $2: array
# Returns 0 (SUCCESS) if the value is found, 1 otherwise
function is_in_array( )
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{
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for e in " ${ @ : 2 } " ; do
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[ " $e " = " $1 " ] && return 0
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done
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return 1
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}
function init( )
{
if [ " ${ PACKAGE } " -eq 1 ] ; then
echo " [ ${ OUTD } ] > Generate tests for hash type $hash_type . "
else
echo " [ ${ OUTD } ] > Init test for hash type $hash_type . "
fi
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rm -rf " ${ OUTD } / ${ hash_type } .sh " " ${ OUTD } / ${ hash_type } _passwords.txt " " ${ OUTD } / ${ hash_type } _hashes.txt "
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# Exclude TrueCrypt and VeraCrypt testing modes
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if is_in_array " ${ hash_type } " ${ TC_MODES } ; then
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return 0
fi
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if is_in_array " ${ hash_type } " ${ VC_MODES } ; then
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return 0
fi
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if [ " ${ hash_type } " -eq ${ LUKS_MODE } ] ; then
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luks_tests_folder = " ${ TDIR } /luks_tests/ "
if [ ! -d " ${ luks_tests_folder } " ] ; then
mkdir -p " ${ luks_tests_folder } "
fi
luks_first_test_file = " ${ luks_tests_folder } /hashcat_ripemd160_aes_cbc-essiv_128.luks "
if [ ! -f " ${ luks_first_test_file } " ] ; then
luks_tests = "hashcat_luks_testfiles.7z"
luks_tests_url = " https://hashcat.net/misc/example_hashes/ ${ luks_tests } "
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cd " ${ TDIR } " || exit
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# if the file already exists, but was not successfully extracted, we assume it's a broken
# downloaded file and therefore it should be deleted
if [ -f " ${ luks_tests } " ] ; then
rm -f " ${ luks_tests } "
fi
echo ""
echo " ATTENTION: the luks test files (for -m ${ hash_type } ) are currently missing on your system. "
echo " They will be fetched from ${ luks_tests_url } "
echo "Note: this needs to be done only once and could take a little bit to download/extract."
echo "These luks test files are not shipped directly with hashcat because the file sizes are"
echo "particularily large and therefore a bandwidth burner for users who do not run these tests."
echo ""
# download:
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if ! wget -q " ${ luks_tests_url } " >/dev/null 2>/dev/null; then
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cd - >/dev/null
echo " ERROR: Could not fetch the luks test files from this url: ${ luks_tests_url } "
exit 1
fi
# extract:
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${ EXTRACT_CMD } " ${ luks_tests } " >/dev/null 2>/dev/null
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# cleanup:
rm -f " ${ luks_tests } "
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cd - >/dev/null || exit
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# just to be very sure, check again that (one of) the files now exist:
if [ ! -f " ${ luks_first_test_file } " ] ; then
echo " ERROR: downloading and extracting ${ luks_tests } into ${ luks_tests_folder } did not complete successfully "
exit 1
fi
fi
return 0
fi
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# create list of password and hashes of same type
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cmd_file = ${ OUTD } /${ hash_type } .sh
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grep " ${ hash_type } ' " " ${ OUTD } /all.sh " > " ${ cmd_file } " 2>/dev/null
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# create separate list of password and hashes
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sed 's/^echo *|.*$//' " ${ cmd_file } " | awk '{print $2}' > " ${ OUTD } / ${ hash_type } _passwords.txt "
sed 's/^echo *|/echo "" |/' " ${ cmd_file } " | awk '{print $10}' | cut -d"'" -f2 > " ${ OUTD } / ${ hash_type } _hashes.txt "
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if [ " ${ hash_type } " -eq 10300 ] ; then
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#cat ${OUTD}/${hash_type}.sh | cut -d' ' -f11- | cut -d"'" -f2 > ${OUTD}/${hash_type}_hashes.txt
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cut -d"'" -f2 " ${ OUTD } / ${ hash_type } .sh " > " ${ OUTD } / ${ hash_type } _hashes.txt "
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fi
# truncate dicts
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rm -rf " ${ OUTD } / ${ hash_type } _dict1 " " ${ OUTD } / ${ hash_type } _dict2 "
touch " ${ OUTD } / ${ hash_type } _dict1 " " ${ OUTD } / ${ hash_type } _dict2 "
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# minimum password length
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min = 1 # minimum line number from start of the file
min_offset = 0 # minimum offset starting from ${min} lines
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if [ " ${ hash_type } " -eq 2500 ] ; then
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min_offset = 7 # means length 8, since we start with 0
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elif [ " ${ hash_type } " -eq 14000 ] ; then
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min = 0
min_offset = 4
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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min = 0
min_offset = 3
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elif [ " ${ hash_type } " -eq 14900 ] ; then
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min = 0
min_offset = 5
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elif [ " ${ hash_type } " -eq 15400 ] ; then
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min = 0
min_offset = 3
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elif [ " ${ hash_type } " -eq 16800 ] ; then
min_offset = 7 # means length 8, since we start with 0
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elif [ " ${ hash_type } " -eq 22000 ] ; then
min_offset = 7 # means length 8, since we start with 0
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fi
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# foreach password entry split password in 2 (skip first entry, is len 1)
i = 1
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while read -r -u 9 pass; do
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if [ ${ i } -gt ${ min } ] ; then
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# split password, 'i' is the len
p0 = $(( i / 2 ))
p1 = $(( p0 + 1 ))
# special case (passwords longer than expected)
pass_len = ${# pass }
if [ " ${ pass_len } " -gt 1 ]
then
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p1 = $(( p1 + min_offset))
p0 = $(( p0 + min_offset))
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if [ " ${ p1 } " -gt " ${ pass_len } " ] ; then
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p1 = ${ pass_len }
p0 = $(( p1 - 1 ))
fi
# add splitted password to dicts
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echo " ${ pass } " | cut -c -${ p0 } >> " ${ OUTD } / ${ hash_type } _dict1 "
echo " ${ pass } " | cut -c ${ p1 } - >> " ${ OUTD } / ${ hash_type } _dict2 "
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elif [ " ${ pass_len } " -eq 1 ] ; then
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echo " ${ pass } " >> " ${ OUTD } / ${ hash_type } _dict1 "
echo >> " ${ OUTD } / ${ hash_type } _dict2 "
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else
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echo >> " ${ OUTD } / ${ hash_type } _dict1 "
echo >> " ${ OUTD } / ${ hash_type } _dict2 "
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fi
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fi
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i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _passwords.txt "
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min_len = 0
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if [ " ${ hash_type } " -eq 2500 ] ; then
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min_len = 7 # means length 8, since we start with 0
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elif [ " ${ hash_type } " -eq 14000 ] ; then
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min_len = 7
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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min_len = 23
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elif [ " ${ hash_type } " -eq 14900 ] ; then
min_len = 9
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elif [ " ${ hash_type } " -eq 15400 ] ; then
min_len = 31
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elif [ " ${ hash_type } " -eq 16800 ] ; then
min_len = 7 # means length 8, since we start with 0
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elif [ " ${ hash_type } " -eq 22000 ] ; then
min_len = 7 # means length 8, since we start with 0
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fi
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# generate multiple pass/hash foreach len (2 to 8)
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if [ " ${ MODE } " -ge 1 ] ; then
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i = 2
while [ " $i " -lt 9 ] ; do
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cmd_file = ${ OUTD } /${ hash_type } _multi_${ i } .txt
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rm -rf " ${ cmd_file } " " ${ OUTD } / ${ hash_type } _passwords_multi_ ${ i } .txt " " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
rm -rf " ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } " " ${ OUTD } / ${ hash_type } _dict2_multi_ ${ i } "
touch " ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } " " ${ OUTD } / ${ hash_type } _dict2_multi_ ${ i } "
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perl tools/test.pl single " ${ hash_type } " ${ i } > " ${ cmd_file } "
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sed 's/^echo *|.*$//' " ${ cmd_file } " | awk '{print $2}' > " ${ OUTD } / ${ hash_type } _passwords_multi_ ${ i } .txt "
sed 's/^echo *|/echo "" |/' " ${ cmd_file } " | awk '{print $10}' | cut -d"'" -f2 > " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
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if [ " ${ hash_type } " -eq 10300 ] ; then
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#cat ${OUTD}/${hash_type}_multi_${i}.txt | cut -d' ' -f11- | cut -d"'" -f2 > ${OUTD}/${hash_type}_hashes_multi_${i}.txt
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cut -d"'" -f2 " ${ OUTD } / ${ hash_type } _multi_ ${ i } .txt " > " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
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fi
# split password, 'i' is the len
p0 = $(( i / 2 ))
p1 = $(( p0 + 1 ))
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p0 = $(( p0 + min_len))
p1 = $(( p1 + min_len))
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while read -r -u 9 pass; do
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# add splitted password to dicts
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echo " ${ pass } " | cut -c -${ p0 } >> " ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } "
echo " ${ pass } " | cut -c ${ p1 } - >> " ${ OUTD } / ${ hash_type } _dict2_multi_ ${ i } "
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done 9< " ${ OUTD } / ${ hash_type } _passwords_multi_ ${ i } .txt "
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i = $(( i + 1 ))
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done
fi
}
function status( )
{
RET = $1
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cnt = $(( cnt + 1 ))
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if [ " ${ RET } " -ne 0 ] ; then
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case ${ RET } in
1)
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if ! is_in_array " ${ hash_type } " ${ NEVER_CRACK_ALGOS } ; then
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echo " password not found, cmdline : ${ CMD } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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e_nf = $(( e_nf + 1 ))
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fi
; ;
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4)
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echo " timeout reached, cmdline : ${ CMD } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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e_to = $(( e_to + 1 ))
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; ;
10)
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if is_in_array " ${ hash_type } " ${ NEVER_CRACK_ALGOS } ; then
return
fi
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if [ " ${ pass_only } " -eq 1 ] ; then
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echo " plains not found in output, cmdline : ${ CMD } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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else
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echo " hash:plains not matched in output, cmdline : ${ CMD } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.tx " t
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fi
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e_nm = $(( e_nm + 1 ))
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; ;
*)
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echo " ! unhandled return code ${ RET } , cmdline : ${ CMD } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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echo " ! unhandled return code, see ${ OUTD } /logfull.txt for details. "
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e_nf = $(( e_nf + 1 ))
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; ;
esac
fi
}
function attack_0( )
{
file_only = 0
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if is_in_array " ${ hash_type } " ${ FILE_BASED_ALGOS } ; then
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file_only = 1
fi
# single hash
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if [ " ${ MODE } " -ne 1 ] ; then
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
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echo " > Testing hash type $hash_type with attack mode 0, markov ${ MARKOV } , single hash, device-type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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max = 32
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if is_in_array " ${ hash_type } " ${ TIMEOUT_ALGOS } ; then
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max = 12
fi
i = 0
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while read -r -u 9 line; do
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if [ " ${ i } " -ge ${ max } ] ; then
break
fi
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hash = " $( echo " ${ line } " | cut -d\' -f2) "
pass = " $( echo " ${ line } " | cut -d' ' -f2) "
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if [ -z " ${ hash } " ] ; then
break
fi
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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if [ " ${ hash_type } " -ne 22000 ] ; then
echo " ${ hash } " | base64 -d > " ${ temp_file } "
else
echo " ${ hash } " > " ${ temp_file } "
fi
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hash = " ${ temp_file } "
fi
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pass_old = ${ pass }
if [ " ${ hash_type } " -eq 20510 ] ; then # special case for PKZIP Master Key
pass = $( echo " ${ pass } " | cut -b 7-) # skip the first 6 chars
fi
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CMD = " echo ${ pass } | ./ ${ BIN } ${ OPTS } -a 0 -m ${ hash_type } ' ${ hash } ' "
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echo -n " [ len $(( i + 1 )) ] " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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output = $( echo " ${ pass } " | ./${ BIN } ${ OPTS } -a 0 -m ${ hash_type } " ${ hash } " 2>& 1)
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ret = ${ ? }
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pass = ${ pass_old }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ pass } "
else
search = " ${ hash } : ${ pass } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
fi
fi
status ${ ret }
i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } .sh "
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msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 0, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
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fi
# multihash
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if [ " ${ MODE } " -ne 0 ] ; then
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
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echo " > Testing hash type $hash_type with attack mode 0, markov ${ MARKOV } , multi hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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hash_file = ${ OUTD } /${ hash_type } _hashes.txt
# if file_only -> decode all base64 "hashes" and put them in the temporary file
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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rm -f " ${ temp_file } "
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hash_file = ${ temp_file }
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while read -r file_only_hash; do
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2019-12-17 16:01:57 +01:00
if [ " ${ hash_type } " -ne 22000 ] ; then
echo -n " ${ file_only_hash } " | base64 -d >> " ${ temp_file } "
else
echo " ${ file_only_hash } " >> " ${ temp_file } "
fi
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done < " ${ OUTD } / ${ hash_type } _hashes.txt "
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fi
CMD = " cat ${ OUTD } / ${ hash_type } _passwords.txt | ./ ${ BIN } ${ OPTS } -a 0 -m ${ hash_type } ${ hash_file } "
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output = $( ./${ BIN } ${ OPTS } -a 0 -m ${ hash_type } ${ hash_file } < ${ OUTD } /${ hash_type } _passwords.txt 2>& 1)
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ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
i = 1
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while read -r -u 9 hash; do
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pass = $( sed -n ${ i } p " ${ OUTD } / ${ hash_type } _passwords.txt " )
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ pass } "
else
search = " ${ hash } : ${ pass } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
break
fi
i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _hashes.txt "
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fi
status ${ ret }
msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 0, Mode multi, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
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fi
}
function attack_1( )
{
file_only = 0
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if is_in_array " ${ hash_type } " ${ FILE_BASED_ALGOS } ; then
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file_only = 1
fi
# single hash
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if [ " ${ MODE } " -ne 1 ] ; then
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
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min = 1
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max = 8
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if [ " ${ hash_type } " -eq 14000 ] ; then
min = 0
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max = 5
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elif [ " ${ hash_type } " -eq 14100 ] ; then
min = 0
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max = 5
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elif [ " ${ hash_type } " -eq 14900 ] ; then
min = 0
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max = 5
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elif [ " ${ hash_type } " -eq 15400 ] ; then
min = 0
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max = 5
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fi
2019-08-07 03:30:37 +02:00
echo " > Testing hash type $hash_type with attack mode 1, markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
i = 1
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while read -r -u 9 hash; do
2015-12-04 15:47:52 +01:00
2017-07-20 23:40:11 +02:00
if [ $i -gt ${ min } ] ; then
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if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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if [ " ${ hash_type } " -ne 22000 ] ; then
echo " ${ hash } " | base64 -d > " ${ temp_file } "
else
echo " ${ hash } " > " ${ temp_file } "
fi
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hash = " ${ temp_file } "
fi
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line_nr = 1
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if [ " $min " -eq 0 ] ; then
line_nr = $i
elif [ " ${ i } " -gt 1 ] ; then
2019-08-04 08:43:15 +02:00
line_nr = $(( i - 1 ))
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fi
dict1 = " ${ OUTD } / ${ hash_type } _dict1 "
dict2 = " ${ OUTD } / ${ hash_type } _dict2 "
if [ " ${ hash_type } " -eq 20510 ] ; then # special case for PKZIP Master Key
2019-08-07 03:30:37 +02:00
line_dict1 = $( sed -n ${ line_nr } p " ${ dict1 } " )
line_dict2 = $( sed -n ${ line_nr } p " ${ dict2 } " )
line_num = $( wc -l " ${ dict1 } " | sed -E 's/ *([0-9]+) .*$/\1/' )
2019-06-07 16:22:31 +02:00
line_dict1_orig = ${ line_dict1 }
line_dict2_orig = ${ line_dict2 }
if [ " ${# line_dict1 } " -ge 6 ] ; then
line_dict1 = $( echo " ${ line_dict1 } " | cut -b 7-) # skip the first 6 chars
else
# we need to also "steal" some chars from the second dict
num_to_steal = $(( 6 - ${# line_dict1 } ))
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num_steal_start = $(( num_to_steal + 1 ))
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if [ " ${# line_dict2 } " -ge 6 ] ; then
2019-08-04 08:43:15 +02:00
num_to_steal_new = $(( ( ${# line_dict2 } - num_to_steal) / 2 ))
2019-06-07 16:22:31 +02:00
if [ " ${ num_to_steal_new } " -gt ${ num_to_steal } ] ; then
num_to_steal = ${ num_to_steal_new }
fi
fi
line_chars_stolen = $( echo " ${ line_dict2 } " | cut -b -${ num_to_steal } | cut -b ${ num_steal_start } -)
line_dict1 = " ${ line_chars_stolen } "
2019-08-04 08:43:15 +02:00
line_dict2 = $( echo " ${ line_dict2 } " | cut -b $(( num_to_steal + 1 )) -)
2019-06-07 16:22:31 +02:00
fi
# finally, modify the dicts accordingly:
tmp_file = " ${ dict1 } _mod "
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head -n $(( line_nr - 1 )) " ${ dict1 } " > " ${ tmp_file } "
echo " ${ line_dict1 } " >> " ${ tmp_file } "
tail -n $(( line_num - line_nr - 1 )) " ${ dict1 } " >> " ${ tmp_file } "
2019-06-07 16:22:31 +02:00
dict1 = ${ tmp_file }
tmp_file = " ${ dict2 } _mod "
2019-08-07 03:30:37 +02:00
head -n $(( line_nr - 1 )) " ${ dict2 } " > " ${ tmp_file } "
echo " ${ line_dict2 } " >> " ${ tmp_file } "
tail -n $(( line_num - line_nr - 1 )) " ${ dict2 } " >> " ${ tmp_file } "
2019-06-07 16:22:31 +02:00
dict2 = ${ tmp_file }
fi
CMD = " ./ ${ BIN } ${ OPTS } -a 1 -m ${ hash_type } ' ${ hash } ' ${ dict1 } ${ dict2 } "
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
echo -n " [ len $i ] " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
2019-06-07 16:22:31 +02:00
output = $( ./${ BIN } ${ OPTS } -a 1 -m ${ hash_type } " ${ hash } " ${ dict1 } ${ dict2 } 2>& 1)
2015-12-04 15:47:52 +01:00
ret = ${ ? }
2019-08-07 03:30:37 +02:00
echo " ${ output } " >> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
if [ " ${ ret } " -eq 0 ] ; then
2019-08-07 03:30:37 +02:00
line_dict1 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict1 " )
line_dict2 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict2 " )
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ pass_only } " -eq 1 ] ; then
2015-12-04 15:47:52 +01:00
search = " : ${ line_dict1 } ${ line_dict2 } "
else
search = " ${ hash } : ${ line_dict1 } ${ line_dict2 } "
fi
2019-04-07 17:57:52 +02:00
echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
2015-12-04 15:47:52 +01:00
if [ " ${ ? } " -ne 0 ] ; then
ret = 10
fi
fi
status ${ ret }
fi
2020-12-26 16:00:22 +01:00
if [ $i -eq ${ max } ] ; then break; fi
2019-08-10 22:13:29 +02:00
i = $(( i + 1 ))
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
done 9< " ${ OUTD } / ${ hash_type } _hashes.txt "
2015-12-04 15:47:52 +01:00
msg = "OK"
2019-08-04 08:43:15 +02:00
if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
2015-12-04 15:47:52 +01:00
msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
2016-01-31 00:37:53 +01:00
echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 1, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
2015-12-04 15:47:52 +01:00
fi
# multihash
2019-08-07 03:30:37 +02:00
if [ " ${ MODE } " -ne 0 ] ; then
2015-12-04 15:47:52 +01:00
2017-07-20 23:40:11 +02:00
# no multi hash checks for these modes (because we only have 1 hash for each of them)
if [ " ${ hash_type } " -eq 14000 ] ; then
return
elif [ " ${ hash_type } " -eq 14100 ] ; then
return
elif [ " ${ hash_type } " -eq 14900 ] ; then
return
elif [ " ${ hash_type } " -eq 15400 ] ; then
return
fi
2015-12-04 15:47:52 +01:00
e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
2018-12-28 20:50:59 +01:00
offset = 7
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ hash_type } " -eq 5800 ] ; then
2015-12-04 15:47:52 +01:00
offset = 6
2019-08-07 03:30:37 +02:00
elif [ " ${ hash_type } " -eq 3000 ] ; then
2015-12-04 15:47:52 +01:00
offset = 6
fi
2017-01-21 15:37:44 +01:00
2015-12-04 15:47:52 +01:00
hash_file = ${ OUTD } /${ hash_type } _multihash_combi.txt
2019-08-07 03:30:37 +02:00
tail -n ${ offset } " ${ OUTD } / ${ hash_type } _hashes.txt " > " ${ hash_file } "
2015-12-04 15:47:52 +01:00
# if file_only -> decode all base64 "hashes" and put them in the temporary file
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
2019-08-07 03:30:37 +02:00
rm -f " ${ temp_file } "
2015-12-04 15:47:52 +01:00
hash_file = ${ temp_file }
2019-12-17 16:01:57 +01:00
while read -r file_only_hash; do
2015-12-04 15:47:52 +01:00
2019-12-17 16:01:57 +01:00
if [ " ${ hash_type } " -ne 22000 ] ; then
echo -n " ${ file_only_hash } " | base64 -d >> " ${ temp_file } "
else
echo " ${ file_only_hash } " >> " ${ temp_file } "
fi
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
done < " ${ OUTD } / ${ hash_type } _multihash_combi.txt "
2015-12-04 15:47:52 +01:00
fi
CMD = " ./ ${ BIN } ${ OPTS } -a 1 -m ${ hash_type } ${ hash_file } ${ OUTD } / ${ hash_type } _dict1 ${ OUTD } / ${ hash_type } _dict2 "
2019-08-07 03:30:37 +02:00
echo " > Testing hash type $hash_type with attack mode 1, markov ${ MARKOV } , multi hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
output = $( ./${ BIN } ${ OPTS } -a 1 -m ${ hash_type } ${ hash_file } ${ OUTD } /${ hash_type } _dict1 ${ OUTD } /${ hash_type } _dict2 2>& 1)
ret = ${ ? }
2019-08-07 03:30:37 +02:00
echo " ${ output } " >> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
if [ " ${ ret } " -eq 0 ] ; then
i = 0
2019-08-04 08:43:15 +02:00
while read -r -u 9 hash; do
2015-12-04 15:47:52 +01:00
2017-07-20 23:40:11 +02:00
line_nr = 1
if [ " ${ offset } " -gt ${ i } ] ; then
2019-08-04 08:43:15 +02:00
line_nr = $(( offset - i))
2017-07-20 23:40:11 +02:00
fi
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
line_dict1 = $( tail -n ${ line_nr } " ${ OUTD } / ${ hash_type } _dict1 " | head -1)
line_dict2 = $( tail -n ${ line_nr } " ${ OUTD } / ${ hash_type } _dict2 " | head -1)
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ pass_only } " -eq 1 ] ; then
2015-12-04 15:47:52 +01:00
search = " : ${ line_dict1 } ${ line_dict2 } "
else
search = " ${ hash } : ${ line_dict1 } ${ line_dict2 } "
fi
2019-04-07 17:57:52 +02:00
echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
2015-12-04 15:47:52 +01:00
if [ " ${ ? } " -ne 0 ] ; then
ret = 10
break
fi
i = $(( i + 1 ))
2019-08-07 03:30:37 +02:00
done 9< " ${ OUTD } / ${ hash_type } _multihash_combi.txt "
2015-12-04 15:47:52 +01:00
fi
status ${ ret }
msg = "OK"
2019-08-04 08:43:15 +02:00
if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
2015-12-04 15:47:52 +01:00
msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 1, Mode multi, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
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fi
}
function attack_3( )
{
file_only = 0
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if is_in_array " ${ hash_type } " ${ FILE_BASED_ALGOS } ; then
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file_only = 1
fi
# single hash
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if [ " ${ MODE } " -ne 1 ] ; then
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
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echo " > Testing hash type $hash_type with attack mode 3, markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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max = 8
# some algos have a minimum password length
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if [ " ${ hash_type } " -eq 2500 ] ; then
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max = 7
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elif [ " ${ hash_type } " -eq 14000 ] ; then
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max = 1
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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max = 1
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elif [ " ${ hash_type } " -eq 14900 ] ; then
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max = 1
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elif [ " ${ hash_type } " -eq 15400 ] ; then
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max = 1
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elif [ " ${ hash_type } " -eq 16800 ] ; then
max = 7
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elif [ " ${ hash_type } " -eq 22000 ] ; then
max = 7
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fi
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i = 1
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while read -r -u 9 hash; do
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if [ " ${ i } " -gt 6 ] ; then
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if is_in_array " ${ hash_type } " ${ TIMEOUT_ALGOS } ; then
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break
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fi
fi
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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if [ " ${ hash_type } " -ne 22000 ] ; then
echo " ${ hash } " | base64 -d > " ${ temp_file } "
else
echo " ${ hash } " > " ${ temp_file } "
fi
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hash = " ${ temp_file } "
fi
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# construct a meaningful mask from the password itself:
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dict = " ${ OUTD } / ${ hash_type } _passwords.txt "
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pass = $( sed -n ${ i } p " ${ dict } " )
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# passwords can't be smaller than mask in -a 3 = mask attack
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if [ " ${# pass } " -lt ${ i } ] ; then
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i = $(( i + 1 ))
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continue
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fi
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pass_part_2 = $( echo -n " ${ pass } " | cut -b $(( i + 1 )) -)
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mask = ""
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if [ " ${ hash_type } " -eq 14000 ] ; then
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mask = " ${ pass } "
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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mask = " ${ pass } "
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else
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for i in $( seq 1 ${ i } ) ; do
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mask = " ${ mask } ?d "
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done
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mask = " ${ mask } ${ pass_part_2 } "
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2017-07-20 23:40:11 +02:00
fi
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if [ " ${ hash_type } " -eq 20510 ] ; then # special case for PKZIP Master Key
if [ " ${ i } " -le 1 ] ; then
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i = $(( i + 1 ))
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continue
fi
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cut_pos = $(( i * 2 + 6 - i + 1 )) # skip it in groups of 2 ("?d"), at least 6, offset +1 for cut to work
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if [ " ${ i } " -gt 6 ] ; then
cut_pos = 13 # 6 * ?d + 1 (6 * 2 + 1)
fi
mask = $( echo " ${ mask } " | cut -b ${ cut_pos } -)
fi
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CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m ${ hash_type } ' ${ hash } ' ${ mask } "
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echo -n " [ len $i ] " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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output = $( ./${ BIN } ${ OPTS } -a 3 -m ${ hash_type } " ${ hash } " ${ mask } 2>& 1)
ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
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line_dict = $( sed -n ${ i } p " ${ dict } " )
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ line_dict } "
else
search = " ${ hash } : ${ line_dict } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
fi
fi
status ${ ret }
if [ $i -eq ${ max } ] ; then break; fi
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i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _hashes.txt "
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msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 3, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
2015-12-04 15:47:52 +01:00
fi
# multihash
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if [ " ${ MODE } " -ne 0 ] ; then
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2017-07-20 23:40:11 +02:00
# no multi hash checks for these modes (because we only have 1 hash for each of them)
if [ " ${ hash_type } " -eq 14000 ] ; then
return
elif [ " ${ hash_type } " -eq 14100 ] ; then
return
elif [ " ${ hash_type } " -eq 14900 ] ; then
return
elif [ " ${ hash_type } " -eq 15400 ] ; then
return
fi
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
increment_max = 8
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if is_in_array " ${ hash_type } " ${ TIMEOUT_ALGOS } ; then
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increment_max = 5
fi
increment_min = 1
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if [ " ${ hash_type } " -eq 2500 ] ; then
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increment_min = 8
increment_max = 9
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fi
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if [ " ${ hash_type } " -eq 16800 ] ; then
increment_min = 8
increment_max = 9
fi
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if [ " ${ hash_type } " -eq 22000 ] ; then
increment_min = 8
increment_max = 9
fi
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# if file_only -> decode all base64 "hashes" and put them in the temporary file
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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rm -f " ${ temp_file } "
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hash_file = ${ temp_file }
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while read -r file_only_hash; do
2015-12-04 15:47:52 +01:00
2019-12-17 16:01:57 +01:00
if [ " ${ hash_type } " -ne 22000 ] ; then
echo -n " ${ file_only_hash } " | base64 -d >> " ${ temp_file } "
else
echo " ${ file_only_hash } " >> " ${ temp_file } "
fi
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2019-08-07 03:30:37 +02:00
done < " ${ OUTD } / ${ hash_type } _multihash_bruteforce.txt "
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fi
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hash_file = ${ OUTD } /${ hash_type } _multihash_bruteforce.txt
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tail_hashes = $( awk " length >= ${ increment_min } && length <= ${ increment_max } " " ${ OUTD } / ${ hash_type } _passwords.txt " | wc -l)
head_hashes = $( awk " length <= ${ increment_max } " " ${ OUTD } / ${ hash_type } _passwords.txt " | wc -l)
2018-12-28 22:32:54 +01:00
# in very rare cases (e.g. without -O and long passwords) we need to use .hcmask files with the passwords in it
# otherwise there are no good masks we can test for such long passwords
need_hcmask = 0
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if [ " ${ tail_hashes } " -gt " ${ head_hashes } " ] ; then
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need_hcmask = 1
fi
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if [ " ${ tail_hashes } " -lt 1 ] ; then
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need_hcmask = 1
fi
if [ ${ need_hcmask } -eq 0 ] ; then
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head -n " ${ head_hashes } " " ${ OUTD } / ${ hash_type } _hashes.txt " | tail -n " ${ tail_hashes } " > " ${ hash_file } "
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else
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tail_hashes = $( awk " length >= ${ increment_min } " " ${ OUTD } / ${ hash_type } _passwords.txt " | wc -l)
2018-12-28 22:32:54 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ tail_hashes } " -lt 1 ] ; then
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return
fi
2019-08-07 03:30:37 +02:00
tail -n " ${ tail_hashes } " " ${ OUTD } / ${ hash_type } _hashes.txt " > " ${ hash_file } "
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fi
2017-01-29 16:43:08 +01:00
mask_pos = 8
if [ " ${ increment_min } " -gt ${ mask_pos } ] ; then
mask_pos = ${ increment_min }
fi
2018-12-28 22:32:54 +01:00
mask = ""
cracks_offset = 0
if [ ${ need_hcmask } -eq 0 ] ; then
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cracks_offset = $(( head_hashes - tail_hashes))
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mask = ${ mask_3 [ ${ mask_pos } ] }
else
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num_hashes = $( wc -l < " ${ OUTD } / ${ hash_type } _hashes.txt " )
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cracks_offset = $(( num_hashes - tail_hashes))
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mask = ${ OUTD } /${ hash_type } _passwords.txt # fake hcmask file (i.e. the original dict)
fi
2015-12-04 15:47:52 +01:00
custom_charsets = ""
# modify "default" mask if needed (and set custom charset to reduce keyspace)
2017-09-18 13:21:00 +02:00
if [ " ${ hash_type } " -eq 2500 ] ; then
2015-12-04 15:47:52 +01:00
mask = "?d?d?d?d?d?1?2?3?4"
charset_1 = ""
charset_2 = ""
charset_3 = ""
charset_4 = ""
# check positions (here we assume that mask is always composed of non literal chars
# i.e. something like ?d?l?u?s?1 is possible, but ?d?dsuffix not
charset_1_pos = $( expr index " ${ mask } " 1)
charset_2_pos = $( expr index " ${ mask } " 2)
charset_3_pos = $( expr index " ${ mask } " 3)
charset_4_pos = $( expr index " ${ mask } " 4)
# divide each charset position by 2 since each of them occupies 2 positions in the mask
charset_1_pos = $(( charset_1_pos / 2 ))
charset_2_pos = $(( charset_2_pos / 2 ))
charset_3_pos = $(( charset_3_pos / 2 ))
charset_4_pos = $(( charset_4_pos / 2 ))
i = 1
2019-08-04 08:43:15 +02:00
while read -r -u 9 hash; do
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
pass = $( sed -n ${ i } p " ${ OUTD } / ${ hash_type } _passwords.txt " )
2015-12-04 15:47:52 +01:00
# charset 1
char = $( echo " ${ pass } " | cut -b ${ charset_1_pos } )
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charset_1 = $( printf "%s\n%s\n" " ${ charset_1 } " " ${ char } " )
2015-12-04 15:47:52 +01:00
# charset 2
char = $( echo " ${ pass } " | cut -b ${ charset_2_pos } )
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charset_2 = $( printf "%s\n%s\n" " ${ charset_2 } " " ${ char } " )
2015-12-04 15:47:52 +01:00
# charset 3
char = $( echo " ${ pass } " | cut -b ${ charset_3_pos } )
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charset_3 = $( printf "%s\n%s\n" " ${ charset_3 } " " ${ char } " )
2015-12-04 15:47:52 +01:00
# charset 4
char = $( echo " ${ pass } " | cut -b ${ charset_4_pos } )
2019-08-04 08:43:15 +02:00
charset_4 = $( printf "%s\n%s\n" " ${ charset_4 } " " ${ char } " )
2015-12-04 15:47:52 +01:00
i = $(( i + 1 ))
2019-08-07 03:30:37 +02:00
done 9< " ${ OUTD } / ${ hash_type } _multihash_bruteforce.txt "
2015-12-04 15:47:52 +01:00
# just make sure that all custom charset fields are initialized
if [ -z " ${ charset_1 } " ] ; then
charset_1 = "1"
fi
if [ -z " ${ charset_2 } " ] ; then
charset_2 = "2"
fi
if [ -z " ${ charset_3 } " ] ; then
charset_3 = "3"
fi
if [ -z " ${ charset_4 } " ] ; then
charset_4 = "4"
fi
# unique and remove new lines
charset_1 = $( echo " ${ charset_1 } " | sort -u | tr -d '\n' )
charset_2 = $( echo " ${ charset_2 } " | sort -u | tr -d '\n' )
charset_3 = $( echo " ${ charset_3 } " | sort -u | tr -d '\n' )
charset_4 = $( echo " ${ charset_4 } " | sort -u | tr -d '\n' )
custom_charsets = " -1 ${ charset_1 } -2 ${ charset_2 } -3 ${ charset_3 } -4 ${ charset_4 } "
fi
2018-07-25 16:46:06 +02:00
if [ " ${ hash_type } " -eq 16800 ] ; then
mask = "?d?d?d?d?d?1?2?3?4"
charset_1 = ""
charset_2 = ""
charset_3 = ""
charset_4 = ""
# check positions (here we assume that mask is always composed of non literal chars
# i.e. something like ?d?l?u?s?1 is possible, but ?d?dsuffix not
charset_1_pos = $( expr index " ${ mask } " 1)
charset_2_pos = $( expr index " ${ mask } " 2)
charset_3_pos = $( expr index " ${ mask } " 3)
charset_4_pos = $( expr index " ${ mask } " 4)
# divide each charset position by 2 since each of them occupies 2 positions in the mask
charset_1_pos = $(( charset_1_pos / 2 ))
charset_2_pos = $(( charset_2_pos / 2 ))
charset_3_pos = $(( charset_3_pos / 2 ))
charset_4_pos = $(( charset_4_pos / 2 ))
i = 1
2019-08-04 08:43:15 +02:00
while read -r -u 9 hash; do
2018-07-25 16:46:06 +02:00
2019-08-07 03:30:37 +02:00
pass = $( sed -n ${ i } p " ${ OUTD } / ${ hash_type } _passwords.txt " )
2018-07-25 16:46:06 +02:00
# charset 1
char = $( echo " ${ pass } " | cut -b ${ charset_1_pos } )
2019-08-07 03:30:37 +02:00
charset_1 = $( printf "%s\n%s\n" " ${ charset_1 } " " ${ char } " )
2018-07-25 16:46:06 +02:00
# charset 2
char = $( echo " ${ pass } " | cut -b ${ charset_2_pos } )
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charset_2 = $( printf "%s\n%s\n" " ${ charset_2 } " " ${ char } " )
2018-07-25 16:46:06 +02:00
# charset 3
char = $( echo " ${ pass } " | cut -b ${ charset_3_pos } )
2019-08-07 03:30:37 +02:00
charset_3 = $( printf "%s\n%s\n" " ${ charset_3 } " " ${ char } " )
2018-07-25 16:46:06 +02:00
# charset 4
char = $( echo " ${ pass } " | cut -b ${ charset_4_pos } )
2019-08-07 03:30:37 +02:00
charset_4 = $( printf "%s\n%s\n" " ${ charset_4 } " " ${ char } " )
2018-07-25 16:46:06 +02:00
i = $(( i + 1 ))
2019-08-07 03:30:37 +02:00
done 9< " ${ OUTD } / ${ hash_type } _multihash_bruteforce.txt "
2018-07-25 16:46:06 +02:00
# just make sure that all custom charset fields are initialized
if [ -z " ${ charset_1 } " ] ; then
charset_1 = "1"
fi
if [ -z " ${ charset_2 } " ] ; then
charset_2 = "2"
fi
if [ -z " ${ charset_3 } " ] ; then
charset_3 = "3"
fi
if [ -z " ${ charset_4 } " ] ; then
charset_4 = "4"
fi
# unique and remove new lines
charset_1 = $( echo " ${ charset_1 } " | sort -u | tr -d '\n' )
charset_2 = $( echo " ${ charset_2 } " | sort -u | tr -d '\n' )
charset_3 = $( echo " ${ charset_3 } " | sort -u | tr -d '\n' )
charset_4 = $( echo " ${ charset_4 } " | sort -u | tr -d '\n' )
custom_charsets = " -1 ${ charset_1 } -2 ${ charset_2 } -3 ${ charset_3 } -4 ${ charset_4 } "
fi
2019-12-15 21:09:04 +01:00
if [ " ${ hash_type } " -eq 22000 ] ; then
mask = "?d?d?d?d?d?1?2?3?4"
charset_1 = ""
charset_2 = ""
charset_3 = ""
charset_4 = ""
# check positions (here we assume that mask is always composed of non literal chars
# i.e. something like ?d?l?u?s?1 is possible, but ?d?dsuffix not
charset_1_pos = $( expr index " ${ mask } " 1)
charset_2_pos = $( expr index " ${ mask } " 2)
charset_3_pos = $( expr index " ${ mask } " 3)
charset_4_pos = $( expr index " ${ mask } " 4)
# divide each charset position by 2 since each of them occupies 2 positions in the mask
charset_1_pos = $(( charset_1_pos / 2 ))
charset_2_pos = $(( charset_2_pos / 2 ))
charset_3_pos = $(( charset_3_pos / 2 ))
charset_4_pos = $(( charset_4_pos / 2 ))
i = 1
while read -r -u 9 hash; do
pass = $( sed -n ${ i } p " ${ OUTD } / ${ hash_type } _passwords.txt " )
# charset 1
char = $( echo " ${ pass } " | cut -b ${ charset_1_pos } )
charset_1 = $( printf "%s\n%s\n" " ${ charset_1 } " " ${ char } " )
# charset 2
char = $( echo " ${ pass } " | cut -b ${ charset_2_pos } )
charset_2 = $( printf "%s\n%s\n" " ${ charset_2 } " " ${ char } " )
# charset 3
char = $( echo " ${ pass } " | cut -b ${ charset_3_pos } )
charset_3 = $( printf "%s\n%s\n" " ${ charset_3 } " " ${ char } " )
# charset 4
char = $( echo " ${ pass } " | cut -b ${ charset_4_pos } )
charset_4 = $( printf "%s\n%s\n" " ${ charset_4 } " " ${ char } " )
i = $(( i + 1 ))
done 9< " ${ OUTD } / ${ hash_type } _multihash_bruteforce.txt "
# just make sure that all custom charset fields are initialized
if [ -z " ${ charset_1 } " ] ; then
charset_1 = "1"
fi
if [ -z " ${ charset_2 } " ] ; then
charset_2 = "2"
fi
if [ -z " ${ charset_3 } " ] ; then
charset_3 = "3"
fi
if [ -z " ${ charset_4 } " ] ; then
charset_4 = "4"
fi
# unique and remove new lines
charset_1 = $( echo " ${ charset_1 } " | sort -u | tr -d '\n' )
charset_2 = $( echo " ${ charset_2 } " | sort -u | tr -d '\n' )
charset_3 = $( echo " ${ charset_3 } " | sort -u | tr -d '\n' )
charset_4 = $( echo " ${ charset_4 } " | sort -u | tr -d '\n' )
custom_charsets = " -1 ${ charset_1 } -2 ${ charset_2 } -3 ${ charset_3 } -4 ${ charset_4 } "
fi
2018-12-28 22:32:54 +01:00
increment_charset_opts = ""
if [ ${ need_hcmask } -eq 0 ] ; then # the "normal" case without .hcmask file
increment_charset_opts = " --increment --increment-min ${ increment_min } --increment-max ${ increment_max } "
if [ -n " ${ custom_charsets } " ] ; then
increment_charset_opts = " ${ increment_charset_opts } ${ custom_charsets } "
fi
fi
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m ${ hash_type } ${ increment_charset_opts } ${ hash_file } ${ mask } "
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
echo " > Testing hash type $hash_type with attack mode 3, markov ${ MARKOV } , multi hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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output = $( ./${ BIN } ${ OPTS } -a 3 -m ${ hash_type } ${ increment_charset_opts } ${ hash_file } ${ mask } 2>& 1)
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ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
i = 1
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while read -r -u 9 hash; do
line_nr = $(( i + cracks_offset))
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pass = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _passwords.txt " )
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ pass } "
else
search = " ${ hash } : ${ pass } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
break
fi
i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _multihash_bruteforce.txt "
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fi
status ${ ret }
msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 3, Mode multi, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
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fi
}
function attack_6( )
{
file_only = 0
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if is_in_array " ${ hash_type } " ${ FILE_BASED_ALGOS } ; then
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file_only = 1
fi
# single hash
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if [ " ${ MODE } " -ne 1 ] ; then
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
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echo " > Testing hash type $hash_type with attack mode 6, markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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min = 1
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max = 8
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mask_offset = 0
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if [ " ${ hash_type } " -eq 2500 ] ; then
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max = 6
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elif [ " ${ hash_type } " -eq 14000 ] ; then
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min = 0
max = 1
mask_offset = 4
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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min = 0
max = 1
mask_offset = 21
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elif [ " ${ hash_type } " -eq 14900 ] ; then
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min = 0
max = 1
mask_offset = 5
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elif [ " ${ hash_type } " -eq 15400 ] ; then
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min = 0
max = 1
mask_offset = 29
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elif [ " ${ hash_type } " -eq 16800 ] ; then
max = 6
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elif [ " ${ hash_type } " -eq 22000 ] ; then
max = 6
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fi
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# special case: we need to split the first line
if [ " ${ min } " -eq 0 ] ; then
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pass_part_1 = $( sed -n 1p " ${ OUTD } / ${ hash_type } _dict1 " )
pass_part_2 = $( sed -n 1p " ${ OUTD } / ${ hash_type } _dict2 " )
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pass = " ${ pass_part_1 } ${ pass_part_2 } "
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echo -n " ${ pass } " | cut -b -$(( mask_offset + 0 )) > " ${ OUTD } / ${ hash_type } _dict1_custom "
echo -n " ${ pass } " | cut -b $(( mask_offset + 1 )) - > " ${ OUTD } / ${ hash_type } _dict2_custom "
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mask_custom = ""
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for i in $( seq 1 $(( ${# pass } - mask_offset)) ) ; do
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if [ " ${ hash_type } " -eq 14000 ] ; then
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char = $( echo -n " ${ pass } " | cut -b $(( i + mask_offset)) )
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mask_custom = " ${ mask_custom } ${ char } "
elif [ " ${ hash_type } " -eq 14100 ] ; then
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char = $( echo -n " ${ pass } " | cut -b $(( i + mask_offset)) )
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mask_custom = " ${ mask_custom } ${ char } "
else
mask_custom = " ${ mask_custom } ?d "
fi
done
fi
i = 1
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while read -r -u 9 hash; do
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if [ " ${ i } " -gt 6 ] ; then
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if is_in_array " ${ hash_type } " ${ TIMEOUT_ALGOS } ; then
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break
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fi
fi
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if [ ${ i } -gt ${ min } ] ; then
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if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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if [ " ${ hash_type } " -ne 22000 ] ; then
echo " ${ hash } " | base64 -d > " ${ temp_file } "
else
echo " ${ hash } " > " ${ temp_file } "
fi
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hash = " ${ temp_file } "
fi
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dict1 = ${ OUTD } /${ hash_type } _dict1
dict2 = ${ OUTD } /${ hash_type } _dict2
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dict1_a6 = ${ OUTD } /${ hash_type } _dict1_a6
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cp " ${ dict1 } " " ${ dict1_a6 } "
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pass = $( sed -n ${ i } p " ${ OUTD } / ${ hash_type } _passwords.txt " )
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if [ " ${ hash_type } " -eq 20510 ] ; then # special case for PKZIP Master Key
pass = $( echo " ${ pass } " | cut -b 7-) # skip the first 6 chars
fi
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if [ ${# pass } -le ${ i } ] ; then
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i = $(( i + 1 ))
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continue
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fi
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echo " ${ pass } " | cut -b -$(( ${# pass } - i)) >> " ${ dict1_a6 } "
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# the block below is just a fancy way to do a "shuf" (or sort -R) because macOS doesn't really support it natively
# we do not really need a shuf, but it's actually better for testing purposes
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rm -f " ${ dict1_a6 } .txt " # temporary file
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line_num = $( wc -l " ${ dict1_a6 } " | sed -E 's/ *([0-9]+) .*$/\1/' )
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sorted_lines = $( seq 1 " ${ line_num } " )
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for lines in $( seq 1 " ${ line_num } " ) ; do
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random_num = $(( RANDOM % line_num))
random_num = $(( random_num + 1 )) # sed -n [n]p starts counting with 1 (not 0)
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random_line = $( echo -n " ${ sorted_lines } " | sed -n ${ random_num } p)
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sed -n ${ random_line } p " ${ dict1_a6 } " >> " ${ dict1_a6 } .txt "
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# update the temp list of lines
sorted_lines = $( echo -n " ${ sorted_lines } " | grep -v " ^ ${ random_line } $" )
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line_num = $(( line_num - 1 ))
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done
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mv " ${ dict1_a6 } .txt " " ${ dict1_a6 } "
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# end of shuf/sort -R
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mask = ""
for j in $( seq 1 ${ i } ) ; do
mask = " ${ mask } ?d "
done
CMD = " ./ ${ BIN } ${ OPTS } -a 6 -m ${ hash_type } ' ${ hash } ' ${ dict1_a6 } ${ mask } "
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echo -n " [ len $i ] " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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output = $( ./${ BIN } ${ OPTS } -a 6 -m ${ hash_type } " ${ hash } " ${ dict1_a6 } ${ mask } 2>& 1)
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ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
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line_nr = 1
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if [ " ${ i } " -gt 1 ] ; then
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line_nr = $(( i - 1 ))
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fi
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line_dict1 = $( sed -n ${ line_nr } p " ${ dict1 } " )
line_dict2 = $( sed -n ${ line_nr } p " ${ dict2 } " )
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ line_dict1 } ${ line_dict2 } "
else
search = " ${ hash } : ${ line_dict1 } ${ line_dict2 } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
fi
fi
status ${ ret }
fi
if [ " ${ i } " -eq ${ max } ] ; then break; fi
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i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _hashes.txt "
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msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 6, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
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rm -f " ${ OUTD } / ${ hash_type } _dict1_custom "
rm -f " ${ OUTD } / ${ hash_type } _dict2_custom "
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fi
# multihash
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if [ " ${ MODE } " -ne 0 ] ; then
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# no multi hash checks for these modes (because we only have 1 hash for each of them)
if [ " ${ hash_type } " -eq 14000 ] ; then
return
elif [ " ${ hash_type } " -eq 14100 ] ; then
return
elif [ " ${ hash_type } " -eq 14900 ] ; then
return
elif [ " ${ hash_type } " -eq 15400 ] ; then
return
fi
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
max = 9
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if [ " ${ hash_type } " -eq 2500 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 3000 ] ; then
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max = 8
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elif [ " ${ hash_type } " -eq 7700 ] || [ " ${ hash_type } " -eq 7701 ] ; then
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max = 8
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elif [ " ${ hash_type } " -eq 8500 ] ; then
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max = 8
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elif [ " ${ hash_type } " -eq 16800 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 22000 ] ; then
max = 5
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fi
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if is_in_array " ${ hash_type } " ${ TIMEOUT_ALGOS } ; then
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max = 5
if [ " ${ hash_type } " -eq 3200 ] ; then
max = 3
fi
fi
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i = 2
while [ " $i " -lt " $max " ] ; do
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hash_file = ${ OUTD } /${ hash_type } _hashes_multi_${ i } .txt
# if file_only -> decode all base64 "hashes" and put them in the temporary file
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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rm -f " ${ temp_file } "
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hash_file = ${ temp_file }
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while read -r file_only_hash; do
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2019-12-17 16:01:57 +01:00
if [ " ${ hash_type } " -ne 22000 ] ; then
echo -n " ${ file_only_hash } " | base64 -d >> " ${ temp_file } "
else
echo " ${ file_only_hash } " >> " ${ temp_file } "
fi
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done < " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
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fi
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mask = ${ mask_6 [ $i ] }
CMD = " ./ ${ BIN } ${ OPTS } -a 6 -m ${ hash_type } ${ hash_file } ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } ${ mask } "
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echo " > Testing hash type $hash_type with attack mode 6, markov ${ MARKOV } , multi hash with word len ${ i } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
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output = $( ./${ BIN } ${ OPTS } -a 6 -m ${ hash_type } ${ hash_file } ${ OUTD } /${ hash_type } _dict1_multi_${ i } ${ mask } 2>& 1)
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ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
j = 1
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while read -r -u 9 hash; do
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line_dict1 = $( sed -n ${ j } p " ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } " )
line_dict2 = $( sed -n ${ j } p " ${ OUTD } / ${ hash_type } _dict2_multi_ ${ i } " )
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ line_dict1 } ${ line_dict2 } "
else
search = " ${ hash } : ${ line_dict1 } ${ line_dict2 } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
break
fi
j = $(( j + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
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fi
status ${ ret }
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i = $(( i + 1 ))
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done
msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 6, Mode multi, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
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fi
}
function attack_7( )
{
file_only = 0
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if is_in_array " ${ hash_type } " ${ FILE_BASED_ALGOS } ; then
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file_only = 1
fi
# single hash
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if [ " ${ MODE } " -ne 1 ] ; then
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e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
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echo " > Testing hash type $hash_type with attack mode 7, markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
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min = 1
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max = 8
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mask_offset = 0
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if [ " ${ hash_type } " -eq 2500 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 14000 ] ; then
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mask_offset = 4
min = 0
max = 1
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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mask_offset = 3
min = 0
max = 1
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elif [ " ${ hash_type } " -eq 14900 ] ; then
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mask_offset = 5
min = 0
max = 1
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elif [ " ${ hash_type } " -eq 15400 ] ; then
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mask_offset = 3
min = 0
max = 1
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elif [ " ${ hash_type } " -eq 16800 ] ; then
max = 5
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elif [ " ${ hash_type } " -eq 22000 ] ; then
max = 5
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fi
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# special case: we need to split the first line
if [ " ${ min } " -eq 0 ] ; then
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pass_part_1 = $( sed -n 1p " ${ OUTD } / ${ hash_type } _dict1 " )
pass_part_2 = $( sed -n 1p " ${ OUTD } / ${ hash_type } _dict2 " )
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pass = " ${ pass_part_1 } ${ pass_part_2 } "
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echo -n " ${ pass } " | cut -b -$(( mask_offset + 0 )) > " ${ OUTD } / ${ hash_type } _dict1_custom "
echo -n " ${ pass } " | cut -b $(( mask_offset + 1 )) - > " ${ OUTD } / ${ hash_type } _dict2_custom "
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mask_custom = ""
for i in $( seq 1 ${ mask_offset } ) ; do
if [ " ${ hash_type } " -eq 14000 ] ; then
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char = $( echo -n " ${ pass } " | cut -b ${ i } )
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mask_custom = " ${ mask_custom } ${ char } "
elif [ " ${ hash_type } " -eq 14100 ] ; then
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char = $( echo -n " ${ pass } " | cut -b ${ i } )
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mask_custom = " ${ mask_custom } ${ char } "
else
mask_custom = " ${ mask_custom } ?d "
fi
done
fi
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i = 1
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while read -r -u 9 hash; do
2015-12-04 15:47:52 +01:00
2017-07-20 23:40:11 +02:00
if [ ${ i } -gt ${ min } ] ; then
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if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
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if [ " ${ hash_type } " -ne 22000 ] ; then
echo " ${ hash } " | base64 -d > " ${ temp_file } "
else
echo " ${ hash } " > " ${ temp_file } "
fi
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hash = " ${ temp_file } "
fi
mask = ${ mask_7 [ $i ] }
# adjust mask if needed
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line_nr = 1
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if [ " ${ i } " -gt 1 ] ; then
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line_nr = $(( i - 1 ))
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fi
2017-07-20 23:40:11 +02:00
2019-06-07 16:22:31 +02:00
if [ " ${ hash_type } " -eq 2500 ] ; then
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2019-08-07 03:30:37 +02:00
pass_part_1 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict1 " )
pass_part_2 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict2 " )
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pass_part_2_len = ${# pass_part_2 }
pass = ${ pass_part_1 } ${ pass_part_2 }
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pass_len = ${# pass }
# add first x chars of password to mask and append the (old) mask
mask_len = ${# mask }
mask_len = $(( mask_len / 2 ))
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mask_prefix = $( echo ${ pass } | cut -b -$(( pass_len - mask_len - pass_part_2_len)) )
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mask = ${ mask_prefix } ${ mask }
fi
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if [ " ${ hash_type } " -eq 16800 ] ; then
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pass_part_1 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict1 " )
pass_part_2 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict2 " )
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pass_part_2_len = ${# pass_part_2 }
pass = ${ pass_part_1 } ${ pass_part_2 }
pass_len = ${# pass }
# add first x chars of password to mask and append the (old) mask
mask_len = ${# mask }
mask_len = $(( mask_len / 2 ))
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mask_prefix = $( echo " ${ pass } " | cut -b -$(( pass_len - mask_len - pass_part_2_len)) )
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mask = ${ mask_prefix } ${ mask }
fi
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if [ " ${ hash_type } " -eq 22000 ] ; then
pass_part_1 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict1 " )
pass_part_2 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict2 " )
pass_part_2_len = ${# pass_part_2 }
pass = ${ pass_part_1 } ${ pass_part_2 }
pass_len = ${# pass }
# add first x chars of password to mask and append the (old) mask
mask_len = ${# mask }
mask_len = $(( mask_len / 2 ))
mask_prefix = $( echo " ${ pass } " | cut -b -$(( pass_len - mask_len - pass_part_2_len)) )
mask = ${ mask_prefix } ${ mask }
fi
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if [ " ${ hash_type } " -eq 20510 ] ; then
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pass_part_1 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict1 " )
pass_part_2 = $( sed -n ${ line_nr } p " ${ OUTD } / ${ hash_type } _dict2 " )
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pass = ${ pass_part_1 } ${ pass_part_2 }
pass_len = ${# pass }
if [ " ${ pass_len } " -le 6 ] ; then
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i = $(( i + 1 ))
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continue
fi
pass_old = ${ pass }
pass = $( echo " ${ pass } " | cut -b 7-) # skip the first 6 chars
mask_len = $(( ${# mask } / 2 ))
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echo " ${ pass_old } " | cut -b -$(( 6 + mask_len)) > " ${ OUTD } / ${ hash_type } _dict1_custom "
echo " ${ pass } " | cut -b $(( mask_len + 1 )) - > " ${ OUTD } / ${ hash_type } _dict2_custom "
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min = 0 # hack to use the custom dict
mask_custom = ${ mask }
fi
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dict1 = ${ OUTD } /${ hash_type } _dict1
dict2 = ${ OUTD } /${ hash_type } _dict2
if [ " ${ min } " -eq 0 ] ; then
mask = ${ mask_custom }
dict1 = ${ OUTD } /${ hash_type } _dict1_custom
dict2 = ${ OUTD } /${ hash_type } _dict2_custom
fi
CMD = " ./ ${ BIN } ${ OPTS } -a 7 -m ${ hash_type } ' ${ hash } ' ${ mask } ${ dict2 } "
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echo -n " [ len $i ] " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
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2017-07-20 23:40:11 +02:00
output = $( ./${ BIN } ${ OPTS } -a 7 -m ${ hash_type } " ${ hash } " ${ mask } ${ dict2 } 2>& 1)
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ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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if [ " ${ ret } " -eq 0 ] ; then
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line_nr = 1
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if [ " ${ i } " -gt 1 ] ; then
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line_nr = $(( i - 1 ))
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fi
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line_dict1 = $( sed -n ${ line_nr } p " ${ dict1 } " )
line_dict2 = $( sed -n ${ line_nr } p " ${ dict2 } " )
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if [ " ${ pass_only } " -eq 1 ] ; then
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search = " : ${ line_dict1 } ${ line_dict2 } "
else
search = " ${ hash } : ${ line_dict1 } ${ line_dict2 } "
fi
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echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ] ; then
ret = 10
fi
fi
status ${ ret }
fi
if [ $i -eq ${ max } ] ; then break; fi
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i = $(( i + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _hashes.txt "
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msg = "OK"
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if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
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msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
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echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 7, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
2015-12-04 15:47:52 +01:00
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rm -f " ${ OUTD } / ${ hash_type } _dict1_custom "
rm -f " ${ OUTD } / ${ hash_type } _dict2_custom "
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fi
# multihash
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if [ " ${ MODE } " -ne 0 ] ; then
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# no multi hash checks for these modes (because we only have 1 hash for each of them)
if [ " ${ hash_type } " -eq 14000 ] ; then
return
elif [ " ${ hash_type } " -eq 14100 ] ; then
return
elif [ " ${ hash_type } " -eq 14900 ] ; then
return
elif [ " ${ hash_type } " -eq 15400 ] ; then
return
fi
2015-12-04 15:47:52 +01:00
e_to = 0
e_nf = 0
e_nm = 0
cnt = 0
max = 9
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if [ " ${ hash_type } " -eq 2500 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 3000 ] ; then
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max = 8
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elif [ " ${ hash_type } " -eq 7700 ] || [ " ${ hash_type } " -eq 7701 ] ; then
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max = 8
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elif [ " ${ hash_type } " -eq 8500 ] ; then
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max = 8
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elif [ " ${ hash_type } " -eq 14000 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 14100 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 14900 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 15400 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 16800 ] ; then
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max = 5
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elif [ " ${ hash_type } " -eq 22000 ] ; then
max = 5
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fi
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if is_in_array " ${ hash_type } " ${ TIMEOUT_ALGOS } ; then
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max = 7
if [ " ${ hash_type } " -eq 3200 ] ; then
max = 4
fi
fi
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i = 2
while [ " $i " -lt " $max " ] ; do
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hash_file = ${ OUTD } /${ hash_type } _hashes_multi_${ i } .txt
dict_file = ${ OUTD } /${ hash_type } _dict2_multi_${ i }
mask = ${ mask_7 [ $i ] }
# if file_only -> decode all base64 "hashes" and put them in the temporary file
if [ " ${ file_only } " -eq 1 ] ; then
temp_file = " ${ OUTD } / ${ hash_type } _filebased_only_temp.txt "
2019-08-07 03:30:37 +02:00
rm -f " ${ temp_file } "
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hash_file = ${ temp_file }
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while read -r file_only_hash; do
2015-12-04 15:47:52 +01:00
2019-12-17 16:01:57 +01:00
if [ " ${ hash_type } " -ne 22000 ] ; then
echo -n " ${ file_only_hash } " | base64 -d >> " ${ temp_file } "
else
echo " ${ file_only_hash } " >> " ${ temp_file } "
fi
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
done < " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
2015-12-04 15:47:52 +01:00
# a little hack: since we don't want to have a very large mask (and wpa has minimum length of 8),
# we need to create a temporary dict file on-the-fly and use it like this: [small mask] [long(er) words in dict]
dict_file = ${ OUTD } /${ hash_type } _dict2_multi_${ i } _longer
2019-08-07 03:30:37 +02:00
rm -f " ${ dict_file } "
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mask_len = ${# mask }
mask_len = $(( mask_len / 2 ))
j = 1
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while read -r -u 9 hash; do
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pass_part_1 = $( sed -n ${ j } p " ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } " )
pass_part_2 = $( sed -n ${ j } p " ${ OUTD } / ${ hash_type } _dict2_multi_ ${ i } " )
2015-12-04 15:47:52 +01:00
pass = " ${ pass_part_1 } ${ pass_part_2 } "
pass_suffix = $( echo " ${ pass } " | cut -b $(( mask_len + 1 )) -)
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echo " ${ pass_suffix } " >> " ${ dict_file } "
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j = $(( j + 1 ))
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done 9< " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
2015-12-04 15:47:52 +01:00
fi
CMD = " ./ ${ BIN } ${ OPTS } -a 7 -m ${ hash_type } ${ hash_file } ${ mask } ${ dict_file } "
2019-08-07 03:30:37 +02:00
echo " > Testing hash type $hash_type with attack mode 7, markov ${ MARKOV } , multi hash with word len ${ i } . " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
output = $( ./${ BIN } ${ OPTS } -a 7 -m ${ hash_type } ${ hash_file } ${ mask } ${ dict_file } 2>& 1)
ret = ${ ? }
2019-08-07 03:30:37 +02:00
echo " ${ output } " >> " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
if [ " ${ ret } " -eq 0 ] ; then
j = 1
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while read -r -u 9 hash; do
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
line_dict1 = $( sed -n ${ j } p " ${ OUTD } / ${ hash_type } _dict1_multi_ ${ i } " )
line_dict2 = $( sed -n ${ j } p " ${ OUTD } / ${ hash_type } _dict2_multi_ ${ i } " )
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ pass_only } " -eq 1 ] ; then
2015-12-04 15:47:52 +01:00
search = " : ${ line_dict1 } ${ line_dict2 } "
else
search = " ${ hash } : ${ line_dict1 } ${ line_dict2 } "
fi
2019-04-07 17:57:52 +02:00
echo " ${ output } " | grep -F " ${ search } " >/dev/null 2>/dev/null
2015-12-04 15:47:52 +01:00
if [ " ${ ? } " -ne 0 ] ; then
ret = 10
break
fi
j = $(( j + 1 ))
2019-08-07 03:30:37 +02:00
done 9< " ${ OUTD } / ${ hash_type } _hashes_multi_ ${ i } .txt "
2015-12-04 15:47:52 +01:00
fi
status ${ ret }
2019-08-10 22:13:29 +02:00
i = $(( i + 1 ))
2015-12-04 15:47:52 +01:00
done
msg = "OK"
2019-08-04 08:43:15 +02:00
if [ " ${ e_nf } " -ne 0 ] || [ " ${ e_nm } " -ne 0 ] ; then
2015-12-04 15:47:52 +01:00
msg = "Error"
elif [ " ${ e_to } " -ne 0 ] ; then
msg = "Warning"
fi
2016-01-31 18:45:05 +01:00
echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 7, Mode multi, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } ] > $msg : ${ e_nf } / ${ cnt } not found, ${ e_nm } / ${ cnt } not matched, ${ e_to } / ${ cnt } timeout "
2015-12-04 15:47:52 +01:00
fi
}
2016-12-03 17:25:50 +01:00
function truecrypt_test( )
{
hashType = $1
tcMode = $2
CMD = "unset"
case $hashType in
6211)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6211 ${ TDIR } /tc_tests/hashcat_ripemd160_aes.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6211 ${ TDIR } /tc_tests/hashcat_ripemd160_serpent.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6211 ${ TDIR } /tc_tests/hashcat_ripemd160_twofish.tc hashca?l "
; ;
esac
; ;
6212)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6212 ${ TDIR } /tc_tests/hashcat_ripemd160_aes-twofish.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6212 ${ TDIR } /tc_tests/hashcat_ripemd160_serpent-aes.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6212 ${ TDIR } /tc_tests/hashcat_ripemd160_twofish-serpent.tc hashca?l "
; ;
esac
; ;
6213)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6213 ${ TDIR } /tc_tests/hashcat_ripemd160_aes-twofish-serpent.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6213 ${ TDIR } /tc_tests/hashcat_ripemd160_serpent-twofish-aes.tc hashca?l "
; ;
esac
; ;
6221)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6221 ${ TDIR } /tc_tests/hashcat_sha512_aes.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6221 ${ TDIR } /tc_tests/hashcat_sha512_serpent.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6221 ${ TDIR } /tc_tests/hashcat_sha512_twofish.tc hashca?l "
; ;
esac
; ;
6222)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6222 ${ TDIR } /tc_tests/hashcat_sha512_aes-twofish.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6222 ${ TDIR } /tc_tests/hashcat_sha512_serpent-aes.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6222 ${ TDIR } /tc_tests/hashcat_sha512_twofish-serpent.tc hashca?l "
; ;
esac
; ;
6223)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6223 ${ TDIR } /tc_tests/hashcat_sha512_aes-twofish-serpent.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6223 ${ TDIR } /tc_tests/hashcat_sha512_serpent-twofish-aes.tc hashca?l "
; ;
esac
; ;
6231)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6231 ${ TDIR } /tc_tests/hashcat_whirlpool_aes.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6231 ${ TDIR } /tc_tests/hashcat_whirlpool_serpent.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6231 ${ TDIR } /tc_tests/hashcat_whirlpool_twofish.tc hashca?l "
; ;
esac
; ;
6232)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6232 ${ TDIR } /tc_tests/hashcat_whirlpool_aes-twofish.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6232 ${ TDIR } /tc_tests/hashcat_whirlpool_serpent-aes.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6232 ${ TDIR } /tc_tests/hashcat_whirlpool_twofish-serpent.tc hashca?l "
; ;
esac
; ;
6233)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6233 ${ TDIR } /tc_tests/hashcat_whirlpool_aes-twofish-serpent.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6233 ${ TDIR } /tc_tests/hashcat_whirlpool_serpent-twofish-aes.tc hashca?l "
; ;
esac
; ;
6241)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6241 ${ TDIR } /tc_tests/hashcat_ripemd160_aes_boot.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6241 ${ TDIR } /tc_tests/hashcat_ripemd160_serpent_boot.tc hashca?l "
; ;
2)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6241 ${ TDIR } /tc_tests/hashcat_ripemd160_twofish_boot.tc hashca?l "
; ;
esac
; ;
6242)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6242 ${ TDIR } /tc_tests/hashcat_ripemd160_aes-twofish_boot.tc hashca?l "
; ;
1)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6242 ${ TDIR } /tc_tests/hashcat_ripemd160_serpent-aes_boot.tc hashca?l "
; ;
esac
; ;
6243)
case $tcMode in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m 6243 ${ TDIR } /tc_tests/hashcat_ripemd160_aes-twofish-serpent_boot.tc hashca?l "
; ;
esac
; ;
esac
if [ ${# CMD } -gt 5 ] ; then
2019-08-07 03:30:37 +02:00
echo " > Testing hash type $hashType with attack mode 3, markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } , tcMode ${ tcMode } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2016-12-03 17:25:50 +01:00
output = $( ${ CMD } 2>& 1)
ret = ${ ? }
2019-08-07 03:30:37 +02:00
echo " ${ output } " >> " ${ OUTD } /logfull.txt "
2016-12-03 17:25:50 +01:00
cnt = 1
e_nf = 0
msg = "OK"
if [ ${ ret } -ne 0 ] ; then
e_nf = 1
msg = "Error"
fi
echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 3, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } , tcMode ${ tcMode } ] > $msg : ${ e_nf } / ${ cnt } not found "
status ${ ret }
fi
}
2018-11-08 17:08:40 +01:00
# Compose and execute hashcat command on a VeraCrypt test container
# Must not be called for hash types other than 137XY
2018-11-28 14:21:14 +01:00
# $1: cipher variation, can be 0-6
2018-11-08 17:08:40 +01:00
function veracrypt_test( )
{
2018-11-22 16:07:45 +01:00
cipher_variation = $1
2018-11-08 17:08:40 +01:00
hash_function = ""
hash_digit = " ${ hash_type : 3 : 1 } "
2018-11-09 11:35:23 +01:00
[ " $hash_digit " -eq "1" ] && hash_function = "ripemd160"
2018-11-08 17:08:40 +01:00
[ " $hash_digit " -eq "2" ] && hash_function = "sha512"
[ " $hash_digit " -eq "3" ] && hash_function = "whirlpool"
[ " $hash_digit " -eq "5" ] && hash_function = "sha256"
[ " $hash_digit " -eq "7" ] && hash_function = "streebog"
[ -n " $hash_function " ] || return
cipher_cascade = ""
cipher_digit = " ${ hash_type : 4 : 1 } "
case $cipher_digit in
1)
2019-08-07 03:30:37 +02:00
[ " $cipher_variation " -eq "0" ] && cipher_cascade = "aes"
[ " $cipher_variation " -eq "1" ] && cipher_cascade = "serpent"
[ " $cipher_variation " -eq "2" ] && cipher_cascade = "twofish"
[ " $cipher_variation " -eq "3" ] && cipher_cascade = "camellia"
[ " $cipher_variation " -eq "5" ] && cipher_cascade = "kuznyechik"
2018-11-08 17:08:40 +01:00
; ;
2)
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[ " $cipher_variation " -eq "0" ] && cipher_cascade = "aes-twofish"
[ " $cipher_variation " -eq "1" ] && cipher_cascade = "serpent-aes"
[ " $cipher_variation " -eq "2" ] && cipher_cascade = "twofish-serpent"
[ " $cipher_variation " -eq "3" ] && cipher_cascade = "camellia-kuznyechik"
[ " $cipher_variation " -eq "4" ] && cipher_cascade = "camellia-serpent"
[ " $cipher_variation " -eq "5" ] && cipher_cascade = "kuznyechik-aes"
[ " $cipher_variation " -eq "6" ] && cipher_cascade = "kuznyechik-twofish"
2018-11-08 17:08:40 +01:00
; ;
3)
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[ " $cipher_variation " -eq "0" ] && cipher_cascade = "aes-twofish-serpent"
[ " $cipher_variation " -eq "1" ] && cipher_cascade = "serpent-twofish-aes"
[ " $cipher_variation " -eq "5" ] && cipher_cascade = "kuznyechik-serpent-camellia"
2018-11-08 17:08:40 +01:00
; ;
esac
[ -n " $cipher_cascade " ] || return
2018-11-22 16:07:45 +01:00
filename = " ${ TDIR } /vc_tests/hashcat_ ${ hash_function } _ ${ cipher_cascade } .vc "
# The hash-cipher combination might be invalid (e.g. RIPEMD-160 + Kuznyechik)
[ -f " ${ filename } " ] || return
2019-02-20 11:09:20 +01:00
CMD = " echo hashca{a..z} | ./ ${ BIN } ${ OPTS } -a 0 -m ${ hash_type } ${ filename } "
2018-11-08 17:08:40 +01:00
2019-08-07 03:30:37 +02:00
echo " > Testing hash type ${ hash_type } with attack mode 0, markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } , cipher ${ cipher_cascade } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2018-11-08 17:08:40 +01:00
output = $( ${ CMD } 2>& 1)
ret = ${ ? }
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echo " ${ output } " >> " ${ OUTD } /logfull.txt "
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cnt = 1
e_nf = 0
msg = "OK"
if [ ${ ret } -ne 0 ] ; then
e_nf = 1
msg = "Error"
fi
2019-02-20 11:09:20 +01:00
echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack 0, Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } , Cipher ${ cipher_cascade } ] > $msg : ${ e_nf } / ${ cnt } not found "
2018-11-08 17:08:40 +01:00
status ${ ret }
}
2017-01-21 15:37:44 +01:00
function luks_test( )
{
hashType = $1
attackType = $2
# if -m all was set let us default to -a 3 only. You could specify the attack type directly, e.g. -m 0
# the problem with defaulting to all=0,1,3,6,7 is that it could take way too long
if [ " ${ attackType } " -eq 65535 ] ; then
attackType = 3
fi
#LUKS_HASHES="sha1 sha256 sha512 ripemd160 whirlpool"
LUKS_HASHES = "sha1 sha256 sha512 ripemd160"
LUKS_CIPHERS = "aes serpent twofish"
LUKS_MODES = "cbc-essiv cbc-plain64 xts-plain64"
LUKS_KEYSIZES = "128 256 512"
LUKS_PASSWORD = $( cat " ${ TDIR } /luks_tests/pw " )
for luks_h in ${ LUKS_HASHES } ; do
for luks_c in ${ LUKS_CIPHERS } ; do
for luks_m in ${ LUKS_MODES } ; do
for luks_k in ${ LUKS_KEYSIZES } ; do
CMD = ""
# filter out not supported combinations:
case " ${ luks_k } " in
128)
case " ${ luks_m } " in
cbc-essiv| cbc-plain64)
; ;
*)
continue
; ;
esac
; ;
256)
case " ${ luks_m } " in
cbc-essiv| cbc-plain64| xts-plain64)
; ;
*)
continue
; ;
esac
; ;
512)
case " ${ luks_m } " in
xts-plain64)
; ;
*)
continue
; ;
esac
; ;
esac
luks_mode = " ${ luks_h } - ${ luks_c } - ${ luks_m } - ${ luks_k } "
luks_file = " ${ TDIR } /luks_tests/hashcat_ ${ luks_h } _ ${ luks_c } _ ${ luks_m } _ ${ luks_k } .luks "
luks_main_mask = "?l"
luks_mask = " ${ luks_main_mask } "
# for combination or hybrid attacks
luks_pass_part_file1 = " ${ OUTD } / ${ hashType } _dict1 "
luks_pass_part_file2 = " ${ OUTD } / ${ hashType } _dict2 "
case $attackType in
0)
CMD = " ./ ${ BIN } ${ OPTS } -a 0 -m ${ hashType } ${ luks_file } ${ TDIR } /luks_tests/pw "
; ;
1)
luks_pass_part1_len = $(( ${# LUKS_PASSWORD } / 2 ))
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luks_pass_part2_start = $(( luks_pass_part1_len + 1 ))
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echo " ${ LUKS_PASSWORD } " | cut -c-${ luks_pass_part1_len } > " ${ luks_pass_part_file1 } "
echo " ${ LUKS_PASSWORD } " | cut -c${ luks_pass_part2_start } - > " ${ luks_pass_part_file2 } "
CMD = " ./ ${ BIN } ${ OPTS } -a 6 -m ${ hashType } ${ luks_file } ${ luks_pass_part_file1 } ${ luks_pass_part_file2 } "
; ;
3)
luks_mask_fixed_len = $(( ${# LUKS_PASSWORD } - 1 ))
luks_mask = " $( echo " ${ LUKS_PASSWORD } " | cut -c-${ luks_mask_fixed_len } ) "
luks_mask = " ${ luks_mask } ${ luks_main_mask } "
CMD = " ./ ${ BIN } ${ OPTS } -a 3 -m ${ hashType } ${ luks_file } ${ luks_mask } "
; ;
6)
luks_pass_part1_len = $(( ${# LUKS_PASSWORD } - 1 ))
echo " ${ LUKS_PASSWORD } " | cut -c-${ luks_pass_part1_len } > " ${ luks_pass_part_file1 } "
CMD = " ./ ${ BIN } ${ OPTS } -a 6 -m ${ hashType } ${ luks_file } ${ luks_pass_part_file1 } ${ luks_mask } "
; ;
7)
echo " ${ LUKS_PASSWORD } " | cut -c2- > " ${ luks_pass_part_file1 } "
CMD = " ./ ${ BIN } ${ OPTS } -a 7 -m ${ hashType } ${ luks_file } ${ luks_mask } ${ luks_pass_part_file1 } "
; ;
esac
if [ -n " ${ CMD } " ] ; then
2019-08-07 03:30:37 +02:00
echo " > Testing hash type ${ hashType } with attack mode ${ attackType } , markov ${ MARKOV } , single hash, Device-Type ${ TYPE } , vector-width ${ VECTOR } , luksMode ${ luks_mode } " >> " ${ OUTD } /logfull.txt " 2>> " ${ OUTD } /logfull.txt "
2017-01-21 15:37:44 +01:00
output = $( ${ CMD } 2>& 1)
ret = ${ ? }
2019-08-07 03:30:37 +02:00
echo " ${ output } " >> " ${ OUTD } /logfull.txt "
2017-01-21 15:37:44 +01:00
cnt = 1
e_nf = 0
msg = "OK"
if [ ${ ret } -ne 0 ] ; then
e_nf = 1
msg = "Error"
fi
echo " [ ${ OUTD } ] [ Type ${ hash_type } , Attack ${ attackType } , Mode single, Device-Type ${ TYPE } , Vector-Width ${ VECTOR } , luksMode ${ luks_mode } ] > $msg : ${ e_nf } / ${ cnt } not found "
status ${ ret }
fi
done
done
done
done
}
2015-12-04 15:47:52 +01:00
function usage( )
{
cat << EOF
> Usage : ${ 0 } <options>
OPTIONS:
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-V Backend vector-width ( either 1, 2, 4 or 8) , overrides value from device query :
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'1' = > vector-width 1
'2' = > vector-width 2 ( default)
'4' = > vector-width 4
'8' = > vector-width 8
'all' = > test sequentially vector-width ${ VECTOR_WIDTHS }
2016-01-31 00:37:53 +01:00
2015-12-04 15:47:52 +01:00
-t Select test mode :
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'single' = > single hash ( default)
'multi' = > multi hash
'all' = > single and multi hash
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-m Select hash type :
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'all' = > all hash type supported
( int) = > hash type integer code ( default : 0)
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( int) -( int) = > hash type integer range
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-a Select attack mode :
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'all' = > all attack modes
( int) = > attack mode integer code ( default : 0)
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-x Select cpu architecture :
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'32' = > 32 bit architecture
'64' = > 64 bit architecture ( default)
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-o Select operating system :
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'win' = > Windows operating system ( use .exe file extension)
'linux' = > Linux operating system ( use .bin file extension)
'macos' = > macOS operating system ( use .app file extension)
2015-12-04 15:47:52 +01:00
2019-05-06 15:06:02 +02:00
-d Select the Backend device :
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( int) [ ,int] = > comma separated list of devices ( default : 1)
-D Select the OpenCL device types :
'1' = > CPU
'2' = > GPU ( default)
'3' = > FPGA, DSP, Co-Processor
( int) [ ,int] = > multiple comma separated device types from the list above
-O Use optimized kernels ( default : -O)
-P Use pure kernels instead of optimized kernels ( default : -O)
-s Use this session name instead of the default one ( default : "hashcat" )
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-c Disables markov-chains
-p Package the tests into a .7z file
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-F Use this folder as test folder instead of the default one
( string) = > path to folder
-I Use this folder as input/output folder for packaged tests
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( string) = > path to folder
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-h Show this help
EOF
exit 1
}
2016-05-10 19:07:07 +02:00
BIN = "hashcat"
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MARKOV = "enabled"
ATTACK = 0
MODE = 0
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TYPE = "null"
2016-02-06 16:33:37 +01:00
VECTOR = "default"
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HT = 0
PACKAGE = 0
2019-05-20 21:16:25 +02:00
OPTIMIZED = 1
2015-12-04 15:47:52 +01:00
2019-03-08 14:51:26 +01:00
while getopts "V:t:m:a:b:hcpd:x:o:d:D:F:POI:s:" opt; do
2015-12-04 15:47:52 +01:00
case ${ opt } in
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"V" )
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if [ " ${ OPTARG } " = "1" ] ; then
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VECTOR = 1
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elif [ " ${ OPTARG } " = "2" ] ; then
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VECTOR = 2
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elif [ " ${ OPTARG } " = "4" ] ; then
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VECTOR = 4
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elif [ " ${ OPTARG } " = "8" ] ; then
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VECTOR = 8
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elif [ " ${ OPTARG } " = "16" ] ; then
2016-02-16 16:42:08 +01:00
VECTOR = 16
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elif [ " ${ OPTARG } " = "all" ] ; then
2016-01-31 18:45:05 +01:00
VECTOR = "all"
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else
usage
fi
; ;
2015-12-04 15:47:52 +01:00
"t" )
2019-08-07 03:30:37 +02:00
if [ " ${ OPTARG } " = "single" ] ; then
2015-12-04 15:47:52 +01:00
MODE = 0
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "multi" ] ; then
2015-12-04 15:47:52 +01:00
MODE = 1
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "all" ] ; then
2015-12-04 15:47:52 +01:00
MODE = 2
else
usage
fi
; ;
"m" )
2019-08-07 03:30:37 +02:00
if [ " ${ OPTARG } " = "all" ] ; then
2015-12-04 15:47:52 +01:00
HT = 65535
else
HT = ${ OPTARG }
fi
; ;
"a" )
2019-08-07 03:30:37 +02:00
if [ " ${ OPTARG } " = "all" ] ; then
2015-12-04 15:47:52 +01:00
ATTACK = 65535
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "0" ] ; then
2015-12-04 15:47:52 +01:00
ATTACK = 0
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elif [ " ${ OPTARG } " = "1" ] ; then
2015-12-04 15:47:52 +01:00
ATTACK = 1
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "3" ] ; then
2015-12-04 15:47:52 +01:00
ATTACK = 3
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "6" ] ; then
2015-12-04 15:47:52 +01:00
ATTACK = 6
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elif [ " ${ OPTARG } " = "7" ] ; then
2015-12-04 15:47:52 +01:00
ATTACK = 7
else
usage
fi
; ;
"c" )
OPTS = " ${ OPTS } --markov-disable "
MARKOV = "disabled"
; ;
2019-03-08 14:51:26 +01:00
"I" )
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PACKAGE_FOLDER = $( echo " ${ OPTARG } " | sed 's!/$!!g' )
2015-12-04 15:47:52 +01:00
; ;
2019-03-08 14:51:26 +01:00
"s" )
OPTS = " ${ OPTS } --session \" ${ OPTARG } \" "
; ;
2015-12-04 15:47:52 +01:00
"p" )
PACKAGE = 1
; ;
"x" )
2019-08-07 03:30:37 +02:00
if [ " ${ OPTARG } " = "32" ] ; then
2015-12-04 15:47:52 +01:00
ARCHITECTURE = 32
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "64" ] ; then
2015-12-04 15:47:52 +01:00
ARCHITECTURE = 64
else
usage
fi
; ;
"o" )
2019-08-07 03:30:37 +02:00
if [ " ${ OPTARG } " = "win" ] ; then
2015-12-04 15:47:52 +01:00
EXTENSION = "exe"
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "linux" ] ; then
2015-12-04 15:47:52 +01:00
EXTENSION = "bin"
2019-08-07 03:30:37 +02:00
elif [ " ${ OPTARG } " = "macos" ] ; then
2016-01-24 17:31:31 +01:00
EXTENSION = "app"
2015-12-04 15:47:52 +01:00
else
usage
fi
; ;
2019-03-08 14:51:26 +01:00
"O" )
# optimized is already default, ignore it
; ;
"d" )
OPTS = " ${ OPTS } -d ${ OPTARG } "
; ;
"D" )
2019-08-07 03:30:37 +02:00
if [ " ${ OPTARG } " = "1" ] ; then
2019-03-08 14:51:26 +01:00
OPTS = " ${ OPTS } -D 1 "
TYPE = "Cpu"
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elif [ " ${ OPTARG } " = "2" ] ; then
2019-03-08 14:51:26 +01:00
OPTS = " ${ OPTS } -D 2 "
TYPE = "Gpu"
else
OPTS = " ${ OPTS } -D ${ OPTARG } "
TYPE = "Cpu + Gpu"
fi
; ;
"F" )
2019-08-07 03:30:37 +02:00
OUTD = $( echo " ${ OPTARG } " | sed 's!/$!!g' )
2019-03-08 14:51:26 +01:00
; ;
"P" )
2019-03-08 16:10:01 +01:00
OPTIMIZED = 0
2019-03-08 14:51:26 +01:00
; ;
2015-12-04 15:47:52 +01:00
\? )
usage
; ;
"h" )
usage
; ;
esac
done
2019-03-08 16:10:01 +01:00
export IS_OPTIMIZED = ${ OPTIMIZED }
2019-03-08 16:37:10 +01:00
if [ " ${ OPTIMIZED } " -eq 1 ] ; then
OPTS = " ${ OPTS } -O "
fi
2019-08-04 08:43:15 +02:00
if [ " ${ TYPE } " = "null" ] ; then
2019-03-08 16:37:10 +01:00
OPTS = " ${ OPTS } -D 2 "
TYPE = "Gpu"
2016-01-31 00:37:53 +01:00
fi
2015-12-04 15:47:52 +01:00
if [ -n " ${ ARCHITECTURE } " ] ; then
2016-01-24 17:31:31 +01:00
BIN = " ${ BIN } ${ ARCHITECTURE } "
2015-12-04 15:47:52 +01:00
fi
if [ -n " ${ EXTENSION } " ] ; then
2016-01-24 17:31:31 +01:00
BIN = " ${ BIN } . ${ EXTENSION } "
2015-12-04 15:47:52 +01:00
fi
if [ -n " ${ PACKAGE_FOLDER } " ] ; then
if [ ! -e " ${ PACKAGE_FOLDER } " ] ; then
echo " ! folder ' ${ PACKAGE_FOLDER } ' does not exist "
exit 1
fi
fi
2019-08-04 08:43:15 +02:00
if [ " ${ PACKAGE } " -eq 0 ] || [ -z " ${ PACKAGE_FOLDER } " ] ; then
2015-12-04 15:47:52 +01:00
# check existence of binary
if [ ! -e " ${ BIN } " ] ; then
echo " ! ${ BIN } not found, please build binary before run test. "
exit 1
fi
2019-02-15 18:38:19 +01:00
HT_MIN = 0
HT_MAX = 0
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if echo -n " ${ HT } " | grep -q '^[0-9]\+$' ; then
2019-02-15 18:38:19 +01:00
HT_MIN = ${ HT }
HT_MAX = ${ HT }
2019-08-07 03:30:37 +02:00
elif echo -n " ${ HT } " | grep -q '^[0-9]\+-[1-9][0-9]*$' ; then
2015-12-04 15:47:52 +01:00
2019-02-15 18:38:19 +01:00
HT_MIN = $( echo -n ${ HT } | sed "s/-.*//" )
HT_MAX = $( echo -n ${ HT } | sed "s/.*-//" )
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ HT_MIN } " -gt " ${ HT_MAX } " ] ; then
2019-02-15 18:38:19 +01:00
echo " ! hash type range -m ${ HT } is not valid ... "
usage
fi
else
echo "! hash type is not a number ..."
usage
fi
2015-12-04 15:47:52 +01:00
2019-02-15 18:38:19 +01:00
HT = ${ HT_MIN }
2015-12-04 15:47:52 +01:00
2019-02-15 18:38:19 +01:00
# filter by hash_type
2019-08-07 03:30:37 +02:00
if [ " ${ HT } " -ne 65535 ] ; then
2019-02-15 18:38:19 +01:00
# validate filter
2015-12-04 15:47:52 +01:00
2019-08-07 03:30:37 +02:00
if ! is_in_array " ${ HT_MIN } " ${ HASH_TYPES } ; then
2015-12-04 15:47:52 +01:00
echo "! invalid hash type selected ..."
usage
fi
2019-08-07 03:30:37 +02:00
if ! is_in_array " ${ HT_MAX } " ${ HASH_TYPES } ; then
2019-02-15 18:38:19 +01:00
echo "! invalid hash type selected ..."
usage
fi
2015-12-04 15:47:52 +01:00
fi
if [ -z " ${ PACKAGE_FOLDER } " ] ; then
# make new dir
2019-08-07 03:30:37 +02:00
mkdir -p " ${ OUTD } "
2015-12-04 15:47:52 +01:00
# generate random test entry
2019-08-07 03:30:37 +02:00
if [ " ${ HT } " -eq 65535 ] ; then
2018-12-28 16:51:40 +01:00
for TMP_HT in ${ HASH_TYPES } ; do
2019-08-07 03:30:37 +02:00
if [ " ${ TMP_HT } " -ne ${ LUKS_MODE } ] ; then
if ! is_in_array " ${ TMP_HT } " ${ TC_MODES } ; then
if ! is_in_array " ${ TMP_HT } " ${ VC_MODES } ; then
perl tools/test.pl single " ${ TMP_HT } " >> " ${ OUTD } /all.sh "
2019-02-20 11:09:20 +01:00
fi
fi
fi
2018-12-28 16:51:40 +01:00
done
2019-02-15 18:38:19 +01:00
else
2019-08-07 03:30:37 +02:00
for TMP_HT in $( seq " ${ HT_MIN } " " ${ HT_MAX } " ) ; do
if ! is_in_array " ${ TMP_HT } " ${ HASH_TYPES } ; then
2019-02-15 18:38:19 +01:00
continue
2018-11-09 11:35:23 +01:00
fi
2019-02-15 18:38:19 +01:00
2019-08-07 03:30:37 +02:00
if [ " ${ TMP_HT } " -ne ${ LUKS_MODE } ] ; then
2019-02-15 18:38:19 +01:00
# Exclude TrueCrypt and VeraCrypt testing modes
2019-08-07 03:30:37 +02:00
if ! is_in_array " ${ TMP_HT } " ${ TC_MODES } ; then
if ! is_in_array " ${ TMP_HT } " ${ VC_MODES } ; then
perl tools/test.pl single " ${ TMP_HT } " >> " ${ OUTD } /all.sh "
2019-02-15 18:38:19 +01:00
fi
fi
fi
done
2015-12-04 15:47:52 +01:00
fi
else
OUTD = ${ PACKAGE_FOLDER }
fi
2019-08-07 03:30:37 +02:00
rm -rf " ${ OUTD } /logfull.txt " && touch " ${ OUTD } /logfull.txt "
2015-12-04 15:47:52 +01:00
# populate array of hash types where we only should check if pass is in output (not both hash:pass)
2019-04-03 10:46:50 +02:00
IFS = ';' read -ra PASS_ONLY <<< " ${ HASHFILE_ONLY } ${ NOCHECK_ENCODING } "
2015-12-04 15:47:52 +01:00
IFS = ';' read -ra TIMEOUT_ALGOS <<< " ${ SLOW_ALGOS } "
IFS = ';' read -ra NEVER_CRACK_ALGOS <<< " ${ NEVER_CRACK } "
# for these particular algos we need to save the output to a temporary file
IFS = ';' read -ra FILE_BASED_ALGOS <<< " ${ HASHFILE_ONLY } "
2019-08-04 08:43:15 +02:00
for hash_type in $HASH_TYPES ; do
2015-12-04 15:47:52 +01:00
2019-02-15 18:38:19 +01:00
if [ " ${ HT } " -ne 65535 ] ; then
# check if the loop variable "hash_type" is between HT_MIN and HT_MAX (both included)
2019-08-07 03:30:37 +02:00
if [ " ${ hash_type } " -lt " ${ HT_MIN } " ] ; then
2019-02-15 18:38:19 +01:00
continue
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elif [ " ${ hash_type } " -gt " ${ HT_MAX } " ] ; then
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# we are done because hash_type is larger than range:
break
fi
fi
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if [ " ${ hash_type } " -eq 20510 ] ; then # special case for PKZIP Master Key
if [ " ${ MODE } " -eq 1 ] ; then # if "multi" was forced we need to skip it
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if [ " ${ HT_MIN } " -eq 20510 ] ; then
if [ " ${ HT_MAX } " -eq 20510 ] ; then
echo "ERROR: -m 20510 = PKZIP Master Key can only be run with a single hash"
fi
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fi
continue
fi
fi
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if [ -z " ${ PACKAGE_FOLDER } " ] ; then
# init test data
init
else
echo " [ ${ OUTD } ] > Run packaged test for hash type $hash_type . "
fi
if [ " ${ PACKAGE } " -eq 0 ] ; then
# should we check only the pass?
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pass_only = 0
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is_in_array " ${ hash_type } " ${ PASS_ONLY } && pass_only = 1
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IS_SLOW = 0
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is_in_array " ${ hash_type } " ${ SLOW_ALGOS } && IS_SLOW = 1
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# we use phpass as slow hash for testing the AMP kernel
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[ " ${ hash_type } " -eq 400 ] && IS_SLOW = 0
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OPTS_OLD = ${ OPTS }
VECTOR_OLD = ${ VECTOR }
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MODE_OLD = ${ MODE }
if [ " ${ hash_type } " -eq 20510 ] ; then # special case for PKZIP Master Key
if [ " ${ MODE } " -eq 1 ] ; then # if "multi" was forced we need to skip it
continue
fi
MODE = 0 # force single only
fi
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for CUR_WIDTH in $VECTOR_WIDTHS ; do
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if [ " ${ VECTOR_OLD } " = "all" ] || [ " ${ VECTOR_OLD } " = "default" ] || [ " ${ VECTOR_OLD } " = " ${ CUR_WIDTH } " ] ; then
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if [ " ${ VECTOR_OLD } " = "default" ] && \
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[ " ${ CUR_WIDTH } " != "1" ] && \
[ " ${ CUR_WIDTH } " != "4" ] ; then
continue
fi
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VECTOR = ${ CUR_WIDTH }
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OPTS = " ${ OPTS_OLD } --backend-vector-width ${ VECTOR } "
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if [ ${ IS_SLOW } -eq 1 ] ; then
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# Look up if this is one of supported VeraCrypt modes
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if is_in_array " ${ hash_type } " ${ VC_MODES } ; then
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veracrypt_test 0 # aes
veracrypt_test 1 # serpent
veracrypt_test 2 # twofish
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veracrypt_test 3 # camellia
veracrypt_test 4 # camellia (alternative cascade)
veracrypt_test 5 # kuznyechik
veracrypt_test 6 # kuznyechik (alternative cascade)
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elif is_in_array " ${ hash_type } " ${ TC_MODES } ; then
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# run truecrypt tests
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truecrypt_test " ${ hash_type } " 0
truecrypt_test " ${ hash_type } " 1
truecrypt_test " ${ hash_type } " 2
elif [ " ${ hash_type } " -eq ${ LUKS_MODE } ] ; then
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# run luks tests
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luks_test " ${ hash_type } " ${ ATTACK }
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else
# run attack mode 0 (stdin)
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if [ ${ ATTACK } -eq 65535 ] || [ ${ ATTACK } -eq 0 ] ; then attack_0; fi
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fi
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else
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# run attack mode 0 (stdin)
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if [ ${ ATTACK } -eq 65535 ] || [ ${ ATTACK } -eq 0 ] ; then attack_0; fi
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# run attack mode 1 (combinator)
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if [ ${ ATTACK } -eq 65535 ] || [ ${ ATTACK } -eq 1 ] ; then attack_1; fi
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# run attack mode 3 (bruteforce)
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if [ ${ ATTACK } -eq 65535 ] || [ ${ ATTACK } -eq 3 ] ; then attack_3; fi
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# run attack mode 6 (dict+mask)
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if [ ${ ATTACK } -eq 65535 ] || [ ${ ATTACK } -eq 6 ] ; then attack_6; fi
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# run attack mode 7 (mask+dict)
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if [ ${ ATTACK } -eq 65535 ] || [ ${ ATTACK } -eq 7 ] ; then attack_7; fi
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fi
fi
done
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OPTS = " ${ OPTS_OLD } "
VECTOR = " ${ VECTOR_OLD } "
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MODE = ${ MODE_OLD }
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fi
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done
else
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OUTD = ${ PACKAGE_FOLDER }
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fi
# fix logfile
if [ " ${ PACKAGE } " -eq 0 ] ; then
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cat -vet " ${ OUTD } /logfull.txt " | sed -e 's/\^M \^M//g' | sed -e 's/\$$//g' > " ${ OUTD } /test_report.log "
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fi
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rm -rf " ${ OUTD } /logfull.txt "
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if [ " ${ PACKAGE } " -eq 1 ] ; then
echo " [ ${ OUTD } ] > Generate package ${ OUTD } / ${ OUTD } .7z "
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cp " ${ BASH_SOURCE [0] } " " ${ OUTD } /test.sh "
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copy_luks_dir = 0
copy_tc_dir = 0
copy_vc_dir = 0
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if [ " ${ HT } " -eq 65535 ] ; then
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copy_luks_dir = 1
copy_tc_dir = 1
copy_vc_dir = 1
else
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for TMP_HT in $( seq " ${ HT_MIN } " " ${ HT_MAX } " ) ; do
if [ " ${ TMP_HT } " -eq " ${ LUKS_MODE } " ] ; then
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copy_luks_dir = 1
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elif is_in_array " ${ TMP_HT } " ${ TC_MODES } ; then
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copy_tc_dir = 1
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elif is_in_array " ${ TMP_HT } " ${ VC_MODES } ; then
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copy_vc_dir = 1
fi
done
fi
if [ " ${ copy_luks_dir } " -eq 1 ] ; then
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mkdir " ${ OUTD } /luks_tests/ "
cp ${ TDIR } /luks_tests/* " ${ OUTD } /luks_tests/ "
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fi
if [ " ${ copy_tc_dir } " -eq 1 ] ; then
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mkdir " ${ OUTD } /tc_tests/ "
cp ${ TDIR } /tc_tests/* " ${ OUTD } /tc_tests/ "
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fi
if [ " ${ copy_vc_dir } " -eq 1 ] ; then
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mkdir " ${ OUTD } /vc_tests/ "
cp ${ TDIR } /vc_tests/* " ${ OUTD } /vc_tests/ "
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fi
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# if we package from a given folder, we need to check if e.g. the files needed for multi mode are there
if [ -n " ${ PACKAGE_FOLDER } " ] ; then
MODE = 2
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ls " ${ PACKAGE_FOLDER } " /*multi* >/dev/null 2>/dev/null
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if [ " ${ ? } " -ne 0 ]
then
MODE = 0
fi
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HT = $( grep -o -- "-m *[0-9]*" " ${ PACKAGE_FOLDER } /all.sh " | sort -u | sed 's/-m //' 2> /dev/null)
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if [ -n " ${ HT } " ] ; then
HT_COUNT = $( echo " ${ HT } " | wc -l)
if [ " ${ HT_COUNT } " -gt 1 ] ; then
HT = 65535
fi
fi
#ATTACK=65535 # more appropriate ?
fi
# for convenience: 'run package' is default action for packaged test.sh ( + add other defaults too )
2017-02-11 14:18:42 +01:00
SED_IN_PLACE = '-i'
UNAME = $( uname -s)
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# of course macOS requires us to implement a special case (sed -i "" for the backup file)
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if [ " ${ UNAME } " = "Darwin" ] ; then
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SED_IN_PLACE = '-i ""'
fi
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HT_PACKAGED = ${ HT }
if [ " ${ HT_MIN } " -ne " ${ HT_MAX } " ] ; then
HT_PACKAGED = ${ HT_MIN } -${ HT_MAX }
fi
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HASH_TYPES_PACKAGED = $( echo " ${ HASH_TYPES } " | tr '\n' ' ' | sed 's/ $//' )
HASHFILE_ONLY_PACKAGED = $( echo " ${ HASHFILE_ONLY } " | tr '\n' ' ' | sed 's/ $//' )
NEVER_CRACK_PACKAGED = $( echo " ${ NEVER_CRACK } " | tr '\n' ' ' | sed 's/ $//' )
SLOW_ALGOS_PACKAGED = $( echo " ${ SLOW_ALGOS } " | tr '\n' ' ' | sed 's/ $//' )
2018-12-29 19:50:27 +01:00
2017-02-11 14:18:42 +01:00
sed " ${ SED_IN_PLACE } " -e 's/^\(PACKAGE_FOLDER\)=""/\1="$( echo "${BASH_SOURCE[0]}" | sed \"s!test.sh\\$!!\" )"/' \
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-e " s/^\(HASH_TYPES\)=\$(.*/\1=\" ${ HASH_TYPES_PACKAGED } \"/ " \
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-e " s/^\(HASHFILE_ONLY\)=\$(.*/\1=\" ${ HASHFILE_ONLY_PACKAGED } \"/ " \
-e " s/^\(NEVER_CRACK\)=\$(.*/\1=\" ${ NEVER_CRACK_PACKAGED } \"/ " \
-e " s/^\(SLOW_ALGOS\)=\$(.*/\1=\" ${ SLOW_ALGOS_PACKAGED } \"/ " \
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-e " s/^\(HT\)=0/\1= ${ HT_PACKAGED } / " \
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-e " s/^\(MODE\)=0/\1= ${ MODE } / " \
-e " s/^\(ATTACK\)=0/\1= ${ ATTACK } / " \
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" ${ OUTD } /test.sh "
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2020-08-26 12:24:23 +02:00
${ PACKAGE_CMD } " ${ OUTD } / ${ OUTD } .7z " " ${ OUTD } / " >/dev/null 2>/dev/null
2015-12-04 15:47:52 +01:00
fi