2005-12-17 06:46:23 +00:00
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#!/usr/bin/env ruby
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2005-07-10 07:15:20 +00:00
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2005-07-10 07:27:50 +00:00
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$:.unshift(File.join(File.dirname(__FILE__), '..'))
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2005-07-10 07:15:20 +00:00
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require 'test/unit'
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require 'rex/text'
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2006-03-08 17:25:40 +00:00
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require 'rex/exceptions'
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2005-07-10 07:15:20 +00:00
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class Rex::Text::UnitTest < Test::Unit::TestCase
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2006-02-27 19:51:17 +00:00
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def test_uri_encode
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srand(0)
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assert_equal('A1%21', Rex::Text.uri_encode('A1!'), 'uri encode')
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2006-02-27 19:53:36 +00:00
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assert_equal('A1!', Rex::Text.uri_encode('A1!', 'none'), 'uri encode: none')
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2006-02-27 19:51:17 +00:00
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assert_equal('A1%21', Rex::Text.uri_encode('A1!', 'hex-normal'), 'uri encode: hex-normal')
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assert_equal('%41%31%21', Rex::Text.uri_encode('A1!', 'hex-all'), 'uri encode: hex-all')
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assert_equal('A1%u01c3', Rex::Text.uri_encode('A1!', 'u-normal'), 'uri encode: u-normal')
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assert_equal('%uff21%u2081%uff01', Rex::Text.uri_encode('A1!', 'u-all'), 'uri encode: u-all')
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assert_raises(TypeError) {
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Rex::Text.uri_encode('a', 'umpa lumpa')
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}
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end
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2006-01-31 22:25:55 +00:00
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def test_rand_text
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srand(0)
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assert_equal("\254/u\300C\373\303g\t\323", Rex::Text.rand_text(10), 'rand text 1')
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assert_equal("\025\362$WF\330X\214:\301", Rex::Text.rand_text(10), 'rand text 2')
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assert_equal("\346'W\256XQ\245\031MH", Rex::Text.rand_text(10), 'rand text 3')
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assert_equal('bababbabba', Rex::Text.rand_text(10, nil, 'ab'), 'rand text with specified "good"')
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2006-04-21 03:59:07 +00:00
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assert_equal('MA', Rex::Text.rand_state(), 'rand state')
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assert_equal('xzdttongb.5gfk0xjly3.aak.fmo0rp.com', Rex::Text.rand_hostname(), 'rand hostname')
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2006-01-31 22:25:55 +00:00
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end
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2006-01-19 15:12:22 +00:00
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def test_unicode
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2006-02-10 17:30:41 +00:00
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assert_equal("a\x00b\x00c\x00", Rex::Text.to_unicode('abc'), 'unicode, default = little endian')
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assert_equal("a\x00b\x00c\x00", Rex::Text.to_unicode('abc', 'utf-16le'), 'utf-16le')
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assert_equal("\x00a\x00b\x00c", Rex::Text.to_unicode('abc', 'utf-16be'), 'utf-16be')
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assert_equal("a\x00\x00\x00b\x00\x00\x00c\x00\x00\x00", Rex::Text.to_unicode('abc', 'utf-32le'), 'utf-32le')
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assert_equal("\x00\x00\x00a\x00\x00\x00b\x00\x00\x00c", Rex::Text.to_unicode('abc', 'utf-32be'), 'utf-32be')
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assert_equal("abc+-abc-+AAA-", Rex::Text.to_unicode("abc+abc-\x00", 'utf-7'), 'utf-7')
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2006-02-13 22:52:01 +00:00
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assert_equal("+AGE-+AGI-+AGM-+ACs-+AGE-+AGI-+AGM-+AC0-+AAA-", Rex::Text.to_unicode("abc+abc-\x00", 'utf-7', 'all'), 'utf-7-all')
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assert_equal("a\303\272", Rex::Text.to_unicode("a\xFA", 'utf-8'))
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assert_equal("\xC1\xA1", Rex::Text.to_unicode('a', 'utf-8', 'overlong', 2), 'utf-8 overlong')
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assert_equal("\xE0\x81\xA1", Rex::Text.to_unicode('a', 'utf-8', 'overlong', 3), 'utf-8 overlong')
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assert_equal("\xF0\x80\x81\xA1", Rex::Text.to_unicode('a', 'utf-8', 'overlong', 4), 'utf-8 overlong')
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assert_equal("\xF8\x80\x80\x81\xA1", Rex::Text.to_unicode('a', 'utf-8', 'overlong', 5), 'utf-8 overlong')
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assert_equal("\xFC\x80\x80\x80\x81\xA1", Rex::Text.to_unicode('a', 'utf-8', 'overlong', 6), 'utf-8 overlong')
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assert_equal("\xFE\x80\x80\x80\x80\x81\xA1", Rex::Text.to_unicode('a', 'utf-8', 'overlong', 7), 'utf-8 overlong')
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100.times {
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assert(["\xC1\x21","\xC1\x61","\xC1\xE1"].include?(Rex::Text.to_unicode('a', 'utf-8', 'invalid')), 'utf-8 invalid')
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assert(["\xE0\x01\x21","\xE0\x01\x61","\xE0\x01\xA1","\xE0\x01\xE1","\xE0\x41\x21","\xE0\x41\x61","\xE0\x41\xA1","\xE0\x41\xE1","\xE0\x81\x21","\xE0\x81\x61","\xE0\x81\xA1","\xE0\x81\xE1","\xE0\xC1\x21","\xE0\xC1\x61","\xE0\xC1\xA1","\xE0\xC1\xE1"].include?(Rex::Text.to_unicode('a', 'utf-8', 'invalid', 3)), 'utf-8 invalid 3 byte')
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}
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2006-02-14 01:04:29 +00:00
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a = ["\xC1\x21","\xC1\x61","\xC1\xE1"]
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10.times {
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encoded = Rex::Text.to_unicode('a', 'utf-8', 'invalid')
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if a.include?(encoded)
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a.delete(encoded)
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end
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}
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assert_equal([], a, 'all possible values')
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2006-02-13 22:52:01 +00:00
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assert_raises(TypeError) {
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Rex::Text.to_unicode('a', 'utf-8', '', 8)
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}
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assert_raises(TypeError) {
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Rex::Text.to_unicode('a', 'utf-8', 'foo', 6)
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}
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2006-02-22 23:29:34 +00:00
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assert_raises(TypeError) {
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Rex::Text.to_unicode('a', 'uhwtfms', -1)
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}
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100.times {
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assert(["\x01\x00","\x01\x02","\x01\x04","\x01\xcd","\x01\xde","\xff\x21"].include?(Rex::Text.to_unicode('A', 'uhwtfms')), 'uhwtfms')
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assert(["\x00\xc0","\x00\xc1","\x00\xc2","\x00\xc3","\x00\xc4","\x00\xc5"].include?(Rex::Text.to_unicode('A', 'uhwtfms', 949)), 'uhwtfms codepage 949')
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}
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a = ["\x01\x00","\x01\x02","\x01\x04","\x01\xcd","\x01\xde","\xff\x21"]
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20.times {
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encoded = Rex::Text.to_unicode('A', 'uhwtfms')
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if a.include?(encoded)
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a.delete(encoded)
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end
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}
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assert_equal([], a, 'all possible values uhwtfms')
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2006-01-19 15:12:22 +00:00
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end
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2006-01-27 05:33:08 +00:00
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def test_zlib
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assert_equal("x\234\313\310T\310\315\317\005\000\a\225\002;", Rex::Text.zlib_deflate('hi mom'), 'compress')
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assert_equal('hi mom', Rex::Text.zlib_inflate("x\234\313\310T\310\315\317\005\000\a\225\002;"), 'decompress')
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end
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def test_gzip
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string = Rex::Text.gzip('hi mom')
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assert_equal("\x1f\x8b\x08\x00", string.slice!(0,4), 'gzip headers')
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# skip the next 6 bytes as it is host & time specific (zlib's example gun does, so why not us too?)
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string.slice!(0,6)
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assert_equal("\xcb\xc8\x54\xc8\xcd\xcf\x05\x00\x68\xa4\x1c\xf0\x06\x00\x00\x00", string, 'gzip data')
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assert_equal('hi mom', Rex::Text.ungzip("\037\213\010\000|\261\275C\002\003\313\310T\310\315\317\005\000h\244\034\360\006\000\000\000"), 'ungzip')
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end
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2006-01-19 15:12:22 +00:00
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2005-11-09 04:18:08 +00:00
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def test_badchar_index
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assert_equal(nil, Rex::Text.badchar_index('abcdef', 'gzk'))
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assert_equal(2, Rex::Text.badchar_index('123avd', 'ly3'))
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end
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2005-07-10 07:15:20 +00:00
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def test_hexify
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2006-02-27 19:51:17 +00:00
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str = "\x01\x02\xff\x00"
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2006-01-19 15:12:22 +00:00
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2006-02-27 19:51:17 +00:00
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assert_equal("\\x01\\x02\\xff\\x00", Rex::Text.to_hex(str), 'to_hex')
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assert_equal("ABC01ABC02ABCffABC00", Rex::Text.to_hex(str, 'ABC'), 'to_hex with prefix')
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assert_equal('%u0102%uff00', Rex::Text.to_hex(str, '%u', 2), 'to_hex with chunk size of 2')
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# to_hex, without providing enouigh data to chunk on a given size
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2006-03-08 17:25:40 +00:00
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assert_raises(Rex::RuntimeError){ Rex::Text.to_hex('a', '', 2) }
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2006-02-27 19:51:17 +00:00
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assert_equal("\"\\x01\\x02\\xff\\x00\"\n", Rex::Text.to_ruby(str), 'to_ruby')
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assert_equal("\"\\x01\\x02\\xff\\x00\";\n", Rex::Text.to_perl(str), 'to_perl')
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assert_equal("unsigned char buf[] = \n\"\\x01\\x02\\xff\\x00\";\n", Rex::Text.to_c(str), 'to_c')
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2005-07-10 07:15:20 +00:00
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# 0 -> 20
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str = "\000\001\002\003\004\005\006\a\010\t\n\v\f\r\016\017\020\021\022\023"
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2006-01-19 15:12:22 +00:00
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assert_equal("\"\\x00\\x01\\x02\\x03\" +\n\"\\x04\\x05\\x06\\x07\" +\n\"\\x08\\x09\\x0a\\x0b\" +\n\"\\x0c\\x0d\\x0e\\x0f\" +\n\"\\x10\\x11\\x12\\x13\"\n", Rex::Text.to_ruby(str, 20), 'to_ruby with wrap')
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assert_equal("\"\\x00\\x01\\x02\\x03\" .\n\"\\x04\\x05\\x06\\x07\" .\n\"\\x08\\x09\\x0a\\x0b\" .\n\"\\x0c\\x0d\\x0e\\x0f\" .\n\"\\x10\\x11\\x12\\x13\";\n", Rex::Text.to_perl(str, 20), 'to_perl with wrap')
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assert_equal("unsigned char buf[] = \n\"\\x00\\x01\\x02\\x03\\x04\"\n\"\\x05\\x06\\x07\\x08\\x09\"\n\"\\x0a\\x0b\\x0c\\x0d\\x0e\"\n\"\\x0f\\x10\\x11\\x12\\x13\";\n", Rex::Text.to_c(str, 20, "buf"), 'to_c with wrap')
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2006-03-29 18:39:42 +00:00
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assert_equal("\\x0a", Rex::Text.to_hex("\n"), 'to_hex newline')
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2005-07-10 07:15:20 +00:00
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end
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def test_wordwrap
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txt = "this is a test of the word wrap features"
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assert_equal("this is a \ntest of \nthe word \nwrap \nfeatures\n", Rex::Text.wordwrap(txt, 0, 10))
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end
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2005-09-30 06:48:52 +00:00
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def test_transforms
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assert_equal("acbd18db4cc2f85cedef654fccc4a4d8", Rex::Text.md5('foo'))
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end
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2005-07-10 07:15:20 +00:00
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end
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